-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   63074.62 Mb (on task=31), Smallest =   62875.91 Mb (on task=0), Average =   63035.67 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=15), Smallest =   64531.71 Mb (on task=31), Average =   64532.00 Mb
Committed_AS:	 Largest =    1656.09 Mb (on task=0), Smallest =    1457.09 Mb (on task=31), Average =    1496.33 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=26), Smallest =   16250.93 Mb (on task=43), Average =   16303.47 Mb
AllocMem:	 Largest =    1656.09 Mb (on task=0), Smallest =    1457.09 Mb (on task=31), Average =    1496.33 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 45 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N1':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         56000
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

Allocated 16264.6 MByte for particle storage.

Allocated 11575.2 MByte for storage of SPH data.

Allocated 2715.76 MByte for storage of MET data.

Allocated 293.973 MByte for storage of BH data.


reading file `data//snapshot_023_z000p199/snap_023_z000p199.0.hdf5' on task=0 (contains 36311696 particles.)
distributing this file to tasks 0-4
Type 0 (gas):   16799108  (tot=     0270926058) masstab=0
Type 1 (halo):  17850968  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13249  (tot=     0000254233) masstab=0
Type 3 (bulge):    97116  (tot=     0002602064) masstab=0
Type 4 (stars):  1549317  (tot=     0015696740) masstab=0
Type 5 (bndry):     1938  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.8.hdf5' on task=27 (contains 36097097 particles.)
distributing this file to tasks 27-29
Type 0 (gas):   16841477  (tot=     0270926058) masstab=0
Type 1 (halo):  18106373  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16325  (tot=     0000254233) masstab=0
Type 3 (bulge):   341741  (tot=     0002602064) masstab=0
Type 4 (stars):   789252  (tot=     0015696740) masstab=0
Type 5 (bndry):     1929  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.1.hdf5' on task=5 (contains 36198922 particles.)
distributing this file to tasks 5-7
Type 0 (gas):   17042675  (tot=     0270926058) masstab=0
Type 1 (halo):  17797212  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9412  (tot=     0000254233) masstab=0
Type 3 (bulge):   267991  (tot=     0002602064) masstab=0
Type 4 (stars):  1079679  (tot=     0015696740) masstab=0
Type 5 (bndry):     1953  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.10.hdf5' on task=31 (contains 35986589 particles.)
distributing this file to tasks 31-32
Type 0 (gas):   16914990  (tot=     0270926058) masstab=0
Type 1 (halo):  18143885  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20688  (tot=     0000254233) masstab=0
Type 3 (bulge):    34142  (tot=     0002602064) masstab=0
Type 4 (stars):   870919  (tot=     0015696740) masstab=0
Type 5 (bndry):     1965  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.7.hdf5' on task=22 (contains 35902902 particles.)
distributing this file to tasks 22-26
Type 0 (gas):   16993363  (tot=     0270926058) masstab=0
Type 1 (halo):  17941838  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15181  (tot=     0000254233) masstab=0
Type 3 (bulge):     5425  (tot=     0002602064) masstab=0
Type 4 (stars):   945227  (tot=     0015696740) masstab=0
Type 5 (bndry):     1868  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.6.hdf5' on task=20 (contains 36186017 particles.)
distributing this file to tasks 20-21
Type 0 (gas):   16929829  (tot=     0270926058) masstab=0
Type 1 (halo):  18019470  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10085  (tot=     0000254233) masstab=0
Type 3 (bulge):   387518  (tot=     0002602064) masstab=0
Type 4 (stars):   837115  (tot=     0015696740) masstab=0
Type 5 (bndry):     2000  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.3.hdf5' on task=11 (contains 36155202 particles.)
distributing this file to tasks 11-15
Type 0 (gas):   16935529  (tot=     0270926058) masstab=0
Type 1 (halo):  17989196  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15529  (tot=     0000254233) masstab=0
Type 3 (bulge):   192136  (tot=     0002602064) masstab=0
Type 4 (stars):  1020894  (tot=     0015696740) masstab=0
Type 5 (bndry):     1918  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.14.hdf5' on task=42 (contains 35924688 particles.)
distributing this file to tasks 42-42
Type 0 (gas):   16897459  (tot=     0270926058) masstab=0
Type 1 (halo):  18096036  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18517  (tot=     0000254233) masstab=0
Type 3 (bulge):    75331  (tot=     0002602064) masstab=0
Type 4 (stars):   835387  (tot=     0015696740) masstab=0
Type 5 (bndry):     1958  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.5.hdf5' on task=19 (contains 35817748 particles.)
distributing this file to tasks 19-19
Type 0 (gas):   17004722  (tot=     0270926058) masstab=0
Type 1 (halo):  17647712  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18039  (tot=     0000254233) masstab=0
Type 3 (bulge):   107752  (tot=     0002602064) masstab=0
Type 4 (stars):  1037599  (tot=     0015696740) masstab=0
Type 5 (bndry):     1924  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.2.hdf5' on task=8 (contains 36288025 particles.)
distributing this file to tasks 8-10
Type 0 (gas):   16918234  (tot=     0270926058) masstab=0
Type 1 (halo):  18067680  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     19221  (tot=     0000254233) masstab=0
Type 3 (bulge):   234728  (tot=     0002602064) masstab=0
Type 4 (stars):  1046223  (tot=     0015696740) masstab=0
Type 5 (bndry):     1939  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.15.hdf5' on task=43 (contains 35499294 particles.)
distributing this file to tasks 43-44
Type 0 (gas):   17056594  (tot=     0270926058) masstab=0
Type 1 (halo):  17584976  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13927  (tot=     0000254233) masstab=0
Type 3 (bulge):   112509  (tot=     0002602064) masstab=0
Type 4 (stars):   729250  (tot=     0015696740) masstab=0
Type 5 (bndry):     2038  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.12.hdf5' on task=36 (contains 35900906 particles.)
distributing this file to tasks 36-38
Type 0 (gas):   16899168  (tot=     0270926058) masstab=0
Type 1 (halo):  17957870  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21391  (tot=     0000254233) masstab=0
Type 3 (bulge):   110231  (tot=     0002602064) masstab=0
Type 4 (stars):   910202  (tot=     0015696740) masstab=0
Type 5 (bndry):     2044  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.4.hdf5' on task=16 (contains 36303512 particles.)
distributing this file to tasks 16-18
Type 0 (gas):   16947710  (tot=     0270926058) masstab=0
Type 1 (halo):  17824994  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     23975  (tot=     0000254233) masstab=0
Type 3 (bulge):   290613  (tot=     0002602064) masstab=0
Type 4 (stars):  1214354  (tot=     0015696740) masstab=0
Type 5 (bndry):     1866  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.11.hdf5' on task=33 (contains 36211181 particles.)
distributing this file to tasks 33-35
Type 0 (gas):   16850644  (tot=     0270926058) masstab=0
Type 1 (halo):  18051330  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11378  (tot=     0000254233) masstab=0
Type 3 (bulge):   297269  (tot=     0002602064) masstab=0
Type 4 (stars):   998648  (tot=     0015696740) masstab=0
Type 5 (bndry):     1912  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.9.hdf5' on task=30 (contains 35738734 particles.)
distributing this file to tasks 30-30
Type 0 (gas):   16934532  (tot=     0270926058) masstab=0
Type 1 (halo):  17859535  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18826  (tot=     0000254233) masstab=0
Type 3 (bulge):    47102  (tot=     0002602064) masstab=0
Type 4 (stars):   876827  (tot=     0015696740) masstab=0
Type 5 (bndry):     1912  (tot=     0000031204) masstab=0


reading file `data//snapshot_023_z000p199/snap_023_z000p199.13.hdf5' on task=39 (contains 35648516 particles.)
distributing this file to tasks 39-41
Type 0 (gas):   16960024  (tot=     0270926058) masstab=0
Type 1 (halo):  17721655  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      8490  (tot=     0000254233) masstab=0
Type 3 (bulge):      460  (tot=     0002602064) masstab=0
Type 4 (stars):   955847  (tot=     0015696740) masstab=0
Type 5 (bndry):     2040  (tot=     0000031204) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576171029


Setting next time for grid output file to Time_next= 0.834624

Setting next time for line of sight file to Time_next= 0.836046

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=14.7643 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=30851.4 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=31293.8 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 31293.8 Mbyte (on task=1), Smallest = 31293.8 Mbyte, Average = 31293.8 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2965 0     ProcessedFlag     48.8426      50.7424  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle    195.3705     246.1129  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin    195.3705     441.4834  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin    195.3705     636.8539  allocate_memory()/allocate.c/61
   1 2969 0                 P  15629.6387   16266.4926  allocate_memory()/allocate.c/67
   1 2970 0              SphP  11575.2099   27841.7024  allocate_memory()/allocate.c/85
   1 2971 0              MetP   2715.7628   30557.4652  allocate_memory()/allocate.c/105
   1 2972 0               BHP    293.9734   30851.4386  allocate_memory()/allocate.c/126
   1 2975 0          TopNodes     20.3186   30871.7792  domain_allocate()/domain.c/570
   1 2976 0        domain_key    390.7410   31262.5201  domain_Decomposition()/domain.c/231
   1 2987 0        domainWork      1.5630   31264.0852  domain_Decomposition()/domain.c/254
   1 2988 0     domainWorkSph      1.5630   31265.6481  domain_Decomposition()/domain.c/256
   1 2989 0       domainCount      1.5630   31267.2111  domain_Decomposition()/domain.c/258
   1 2990 0    domainCountSph      1.5630   31268.7741  domain_Decomposition()/domain.c/260
   1 2995 0  domainCountStars      1.5630   31270.3377  domain_Decomposition()/domain.c/272
   1 3000 0    domainCountBHs      1.5630   31271.9014  domain_Decomposition()/domain.c/285
   1 3001 0          topNodes     21.8815   31293.7829  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=33409
After=35233
NTopleaves= 30829  NTopnodes=35233 (space for 409722)
gravity work-load balance=1.02235   memory-balance=1.02234   SPH work-load balance=1.02086
iter=0 exchange of 0565182669 particles (ret=0)
domain decomposition done. (took 62.6033 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.1427 MByte in top-level domain structure

Allocated 6414.2 MByte for BH-tree, and 0.117603 Mbyte for top-leaves.  (presently allocted 37267.5 MB)

Begin Ngb-tree construction.
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 37992.6 Mbyte (on task=27), Smallest = 37817.5 Mbyte, Average = 37911.7 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
  27 2965 0     ProcessedFlag     48.8426      50.7424  allocate_memory()/allocate.c/52
  27 2966 0  NextActiveParticle    195.3705     246.1129  allocate_memory()/allocate.c/55
  27 2967 0     NextInTimeBin    195.3705     441.4834  allocate_memory()/allocate.c/58
  27 2968 0     PrevInTimeBin    195.3705     636.8539  allocate_memory()/allocate.c/61
  27 2969 0                 P  15629.6387   16266.4926  allocate_memory()/allocate.c/67
  27 2970 0              SphP  11575.2099   27841.7024  allocate_memory()/allocate.c/85
  27 2971 0              MetP   2715.7628   30557.4652  allocate_memory()/allocate.c/105
  27 2972 0               BHP    293.9734   30851.4386  allocate_memory()/allocate.c/126
  27 2975 0          TopNodes      1.7472   30853.2079  domain_allocate()/domain.c/570
  27 2976 0   DomainNodeIndex      0.1176   30853.3255  force_treeallocate()/forcetree.c/4800
  27 2977 0        Nodes_base   3285.4499   34138.7754  force_treeallocate()/forcetree.c/4803
  27 2978 0     Extnodes_base   2737.8749   36876.6503  force_treeallocate()/forcetree.c/4811
  27 2979 0          Nextnode    195.5049   37072.1552  force_treeallocate()/forcetree.c/4820
  27 2980 0            Father    195.3705   37267.5256  force_treeallocate()/forcetree.c/4827
  27 2981 0           Ngblist     48.9823   37316.5079  density()/density.c/690
  27 2982 0              Left     97.9646   37414.4726  density()/density.c/692
  27 2983 0             Right     97.9646   37512.4372  density()/density.c/693
  27 2984 0    DataIndexTable      7.0175   37519.4548  density()/density.c/738
  27 2985 0      DataNodeList     18.7134   37538.1682  density()/density.c/740
  27 2986 0       DensDataGet    137.5119   37675.6801  density()/density.c/893
  27 2987 0    DensDataResult    181.2657   37856.9458  density()/density.c/931
  27 2988 0       DensDataOut    135.6722   37992.6180  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0002440624 particles.
ngb iteration 2: need to repeat for 0000000905 particles.
ngb iteration 3: need to repeat for 0000000260 particles.
ngb iteration 4: need to repeat for 0000000223 particles.
ngb iteration 5: need to repeat for 0000000103 particles.
ngb iteration 6: need to repeat for 0000000075 particles.
ngb iteration 7: need to repeat for 0000000034 particles.
ngb iteration 8: need to repeat for 0000000005 particles.
ngb iteration 9: need to repeat for 0000000002 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.155.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.211.hdf5

Begin to compute FoF group catalogues...  (presently allocated=37267.5 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=30851.4 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=31293.8 MB)
Before=33233
After=36449
NTopleaves= 31893  NTopnodes=36449 (space for 409722)
gravity work-load balance=1.00976   memory-balance=1.00974   SPH work-load balance=1.01033
iter=0 exchange of 0567679082 particles (ret=0)
domain decomposition done. (took 24.2952 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.0871 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=30853.3 MB)
Tree construction.

Start linking particles (presently allocated=37854.2 MB)
links on local processor done (took 45.242 sec).
Marked=0028365784 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=38123.8 MB) 
have done 0000461797 cross links (processed 0028365784, took 7.44496 sec)
have done 0000190404 cross links (processed 0021478388, took 7.11664 sec)
have done 0000130799 cross links (processed 0017172754, took 6.77799 sec)
have done 0000072562 cross links (processed 0009042680, took 5.43188 sec)
have done 0000039713 cross links (processed 0005113779, took 4.90211 sec)
have done 0000017976 cross links (processed 0001739465, took 1.73922 sec)
have done 0000006201 cross links (processed 0000172658, took 0.25669 sec)
have done 0000002091 cross links (processed 0000028732, took 0.167816 sec)
have done 0000000746 cross links (processed 0000009029, took 0.166023 sec)
have done 0000000296 cross links (processed 0000003450, took 0.16521 sec)
have done 0000000124 cross links (processed 0000001615, took 0.165053 sec)
have done 0000000048 cross links (processed 0000000462, took 0.163618 sec)
have done 0000000043 cross links (processed 0000000491, took 0.163563 sec)
have done 0000000042 cross links (processed 0000000480, took 0.163632 sec)
have done 0000000036 cross links (processed 0000000460, took 0.163872 sec)
have done 0000000029 cross links (processed 0000000426, took 0.163847 sec)
have done 0000000010 cross links (processed 0000000145, took 0.163534 sec)
have done 0000000001 cross links (processed 0000000037, took 0.163266 sec)
have done 0000000000 cross links (processed 0000000003, took 0.163456 sec)
Local groups found.

group finding took = 81.3985 sec
Start finding nearest dm-particle (presently allocated=37854.2 MB)
still finding nearest... (presently allocated=38085.7 MB)
fof-nearest iteration 1: need to repeat for 258267163 particles.
still finding nearest... (presently allocated=38092 MB)
fof-nearest iteration 2: need to repeat for 246168006 particles.
still finding nearest... (presently allocated=38103.7 MB)
fof-nearest iteration 3: need to repeat for 223262565 particles.
still finding nearest... (presently allocated=38116.8 MB)
fof-nearest iteration 4: need to repeat for 182717351 particles.
still finding nearest... (presently allocated=38126.1 MB)
fof-nearest iteration 5: need to repeat for 126299957 particles.
still finding nearest... (presently allocated=38131.6 MB)
fof-nearest iteration 6: need to repeat for 60849238 particles.
still finding nearest... (presently allocated=38124 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 51.0526 sec
compiling local group data and catalogue took = 6.19513 sec

Total number of groups with at least 32 particles: 168253
Largest group has 39440963 particles.
Total number of particles in groups: 0207080572

group properties are now allocated.. (presently allocated=31639.9 MB)
computation of group properties took = 0.822643 sec
start global sorting of group catalogues number 23
LargestGroup = 16003.713797; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.285541 sec
Group catalogues globally sorted. took = 4.09492 sec
starting saving of group catalogue number 23
data//groups_023_z000p199
Group catalogues number 23 saved. took = 3.36644 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (270926058).
tree build for species 0 took 3.18017 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0159658846 particles. (took 97.7105 sec)
ngb iteration 2: need to repeat for 0097230460 particles. (took 57.1 sec)
ngb iteration 3: need to repeat for 0081623074 particles. (took 28.2701 sec)
ngb iteration 4: need to repeat for 0073983386 particles. (took 21.2622 sec)
ngb iteration 5: need to repeat for 0065824278 particles. (took 17.6768 sec)
ngb iteration 6: need to repeat for 0053916297 particles. (took 15.0249 sec)
ngb iteration 7: need to repeat for 0039165019 particles. (took 12.3934 sec)
ngb iteration 8: need to repeat for 0025349449 particles. (took 9.16347 sec)
ngb iteration 9: need to repeat for 0015028658 particles. (took 6.15278 sec)
ngb iteration 10: need to repeat for 0008395594 particles. (took 3.93761 sec)
ngb iteration 11: need to repeat for 0004521409 particles. (took 2.38809 sec)
ngb iteration 12: need to repeat for 0002381595 particles. (took 1.52118 sec)
ngb iteration 13: need to repeat for 0001241418 particles. (took 1.03428 sec)
ngb iteration 14: need to repeat for 0000576234 particles. (took 0.724958 sec)
ngb iteration 15: need to repeat for 0000166458 particles. (took 0.491392 sec)
ngb iteration 16: need to repeat for 0000054714 particles. (took 0.314493 sec)
ngb iteration 17: need to repeat for 0000022927 particles. (took 0.259385 sec)
ngb iteration 18: need to repeat for 0000012570 particles. (took 0.245322 sec)
ngb iteration 19: need to repeat for 0000008124 particles. (took 0.241009 sec)
ngb iteration 20: need to repeat for 0000005646 particles. (took 0.23933 sec)
ngb iteration 21: need to repeat for 0000004064 particles. (took 0.238278 sec)
ngb iteration 22: need to repeat for 0000003029 particles. (took 0.239262 sec)
ngb iteration 23: need to repeat for 0000002295 particles. (took 0.237769 sec)
ngb iteration 24: need to repeat for 0000001679 particles. (took 0.237666 sec)
ngb iteration 25: need to repeat for 0000001205 particles. (took 0.237326 sec)
ngb iteration 26: need to repeat for 0000000828 particles. (took 0.237433 sec)
ngb iteration 27: need to repeat for 0000000562 particles. (took 0.237273 sec)
ngb iteration 28: need to repeat for 0000000357 particles. (took 0.237107 sec)
ngb iteration 29: need to repeat for 0000000212 particles. (took 0.237398 sec)
ngb iteration 30: need to repeat for 0000000122 particles. (took 0.23697 sec)
ngb iteration 31: need to repeat for 0000000059 particles. (took 0.237237 sec)
ngb iteration 32: need to repeat for 0000000033 particles. (took 0.236982 sec)
ngb iteration 33: need to repeat for 0000000019 particles. (took 0.2371 sec)
ngb iteration 34: need to repeat for 0000000010 particles. (took 0.236919 sec)
ngb iteration 35: need to repeat for 0000000006 particles. (took 0.237143 sec)
ngb iteration 36: need to repeat for 0000000002 particles. (took 0.237015 sec)
ngb iteration 37: need to repeat for 0000000001 particles. (took 0.237342 sec)
final operations ... 
density and smoothing length for species 0 took 282.308 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 3.40901 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0165233533 particles. (took 133.675 sec)
ngb iteration 2: need to repeat for 0101939140 particles. (took 51.6929 sec)
ngb iteration 3: need to repeat for 0078415621 particles. (took 28.4359 sec)
ngb iteration 4: need to repeat for 0067486590 particles. (took 19.0377 sec)
ngb iteration 5: need to repeat for 0059255929 particles. (took 15.0849 sec)
ngb iteration 6: need to repeat for 0049219103 particles. (took 12.8666 sec)
ngb iteration 7: need to repeat for 0037156857 particles. (took 10.7229 sec)
ngb iteration 8: need to repeat for 0025489499 particles. (took 8.25677 sec)
ngb iteration 9: need to repeat for 0016212384 particles. (took 5.86595 sec)
ngb iteration 10: need to repeat for 0009787419 particles. (took 3.97084 sec)
ngb iteration 11: need to repeat for 0005718053 particles. (took 2.57122 sec)
ngb iteration 12: need to repeat for 0003284247 particles. (took 1.70867 sec)
ngb iteration 13: need to repeat for 0001874554 particles. (took 1.16848 sec)
ngb iteration 14: need to repeat for 0001018344 particles. (took 0.829433 sec)
ngb iteration 15: need to repeat for 0000479005 particles. (took 0.59552 sec)
ngb iteration 16: need to repeat for 0000245145 particles. (took 0.402514 sec)
ngb iteration 17: need to repeat for 0000133364 particles. (took 0.31659 sec)
ngb iteration 18: need to repeat for 0000074206 particles. (took 0.280182 sec)
ngb iteration 19: need to repeat for 0000041366 particles. (took 0.264259 sec)
ngb iteration 20: need to repeat for 0000022712 particles. (took 0.256325 sec)
ngb iteration 21: need to repeat for 0000012087 particles. (took 0.253059 sec)
ngb iteration 22: need to repeat for 0000006342 particles. (took 0.250365 sec)
ngb iteration 23: need to repeat for 0000003100 particles. (took 0.249215 sec)
ngb iteration 24: need to repeat for 0000001468 particles. (took 0.248085 sec)
ngb iteration 25: need to repeat for 0000000641 particles. (took 0.247777 sec)
ngb iteration 26: need to repeat for 0000000281 particles. (took 0.248345 sec)
ngb iteration 27: need to repeat for 0000000095 particles. (took 0.247203 sec)
ngb iteration 28: need to repeat for 0000000032 particles. (took 0.24704 sec)
ngb iteration 29: need to repeat for 0000000011 particles. (took 0.246964 sec)
ngb iteration 30: need to repeat for 0000000002 particles. (took 0.247062 sec)
final operations ... 
density and smoothing length for species 1 took 302.639 sec
Tree construction for species 4 (15696740).
tree build for species 4 took 0.290529 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0008850643 particles. (took 21.1943 sec)
ngb iteration 2: need to repeat for 0006168617 particles. (took 6.59865 sec)
ngb iteration 3: need to repeat for 0004486270 particles. (took 4.23852 sec)
ngb iteration 4: need to repeat for 0003540506 particles. (took 2.91606 sec)
ngb iteration 5: need to repeat for 0002944392 particles. (took 2.10489 sec)
ngb iteration 6: need to repeat for 0002463847 particles. (took 1.63593 sec)
ngb iteration 7: need to repeat for 0002003753 particles. (took 1.37642 sec)
ngb iteration 8: need to repeat for 0001569251 particles. (took 1.20599 sec)
ngb iteration 9: need to repeat for 0001188806 particles. (took 1.04855 sec)
ngb iteration 10: need to repeat for 0000882877 particles. (took 0.877594 sec)
ngb iteration 11: need to repeat for 0000648152 particles. (took 0.74436 sec)
ngb iteration 12: need to repeat for 0000468571 particles. (took 0.638133 sec)
ngb iteration 13: need to repeat for 0000336785 particles. (took 0.553694 sec)
ngb iteration 14: need to repeat for 0000238891 particles. (took 0.494216 sec)
ngb iteration 15: need to repeat for 0000166001 particles. (took 0.44764 sec)
ngb iteration 16: need to repeat for 0000116780 particles. (took 0.413103 sec)
ngb iteration 17: need to repeat for 0000082903 particles. (took 0.387811 sec)
ngb iteration 18: need to repeat for 0000059304 particles. (took 0.364591 sec)
ngb iteration 19: need to repeat for 0000042847 particles. (took 0.350015 sec)
ngb iteration 20: need to repeat for 0000031390 particles. (took 0.340504 sec)
ngb iteration 21: need to repeat for 0000022730 particles. (took 0.331724 sec)
ngb iteration 22: need to repeat for 0000016261 particles. (took 0.327147 sec)
ngb iteration 23: need to repeat for 0000011600 particles. (took 0.325222 sec)
ngb iteration 24: need to repeat for 0000008506 particles. (took 0.323681 sec)
ngb iteration 25: need to repeat for 0000006326 particles. (took 0.322978 sec)
ngb iteration 26: need to repeat for 0000004689 particles. (took 0.322986 sec)
ngb iteration 27: need to repeat for 0000003449 particles. (took 0.321663 sec)
ngb iteration 28: need to repeat for 0000002556 particles. (took 0.321522 sec)
ngb iteration 29: need to repeat for 0000001798 particles. (took 0.321677 sec)
ngb iteration 30: need to repeat for 0000001223 particles. (took 0.320764 sec)
ngb iteration 31: need to repeat for 0000000761 particles. (took 0.320517 sec)
ngb iteration 32: need to repeat for 0000000456 particles. (took 0.321239 sec)
ngb iteration 33: need to repeat for 0000000268 particles. (took 0.320433 sec)
ngb iteration 34: need to repeat for 0000000149 particles. (took 0.320754 sec)
ngb iteration 35: need to repeat for 0000000069 particles. (took 0.32074 sec)
ngb iteration 36: need to repeat for 0000000038 particles. (took 0.32012 sec)
ngb iteration 37: need to repeat for 0000000017 particles. (took 0.320232 sec)
ngb iteration 38: need to repeat for 0000000006 particles. (took 0.320748 sec)
ngb iteration 39: need to repeat for 0000000001 particles. (took 0.320805 sec)
final operations ... 
density and smoothing length for species 4 took 55.8633 sec
Tree construction.
tree build took 7.17899 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000023881 particles. (took 0.483229 sec)
ngb iteration 2: need to repeat for 0000021188 particles. (took 0.369307 sec)
ngb iteration 3: need to repeat for 0000012613 particles. (took 0.368609 sec)
ngb iteration 4: need to repeat for 0000007684 particles. (took 0.361298 sec)
ngb iteration 5: need to repeat for 0000006252 particles. (took 0.353312 sec)
ngb iteration 6: need to repeat for 0000005305 particles. (took 0.34707 sec)
ngb iteration 7: need to repeat for 0000004323 particles. (took 0.341689 sec)
ngb iteration 8: need to repeat for 0000003282 particles. (took 0.336772 sec)
ngb iteration 9: need to repeat for 0000002335 particles. (took 0.332763 sec)
ngb iteration 10: need to repeat for 0000001634 particles. (took 0.329286 sec)
ngb iteration 11: need to repeat for 0000001078 particles. (took 0.32503 sec)
ngb iteration 12: need to repeat for 0000000714 particles. (took 0.322515 sec)
ngb iteration 13: need to repeat for 0000000488 particles. (took 0.330216 sec)
ngb iteration 14: need to repeat for 0000000310 particles. (took 0.321925 sec)
ngb iteration 15: need to repeat for 0000000199 particles. (took 0.320893 sec)
ngb iteration 16: need to repeat for 0000000137 particles. (took 0.320198 sec)
ngb iteration 17: need to repeat for 0000000084 particles. (took 0.320357 sec)
ngb iteration 18: need to repeat for 0000000051 particles. (took 0.319331 sec)
ngb iteration 19: need to repeat for 0000000035 particles. (took 0.319333 sec)
ngb iteration 20: need to repeat for 0000000022 particles. (took 0.319968 sec)
ngb iteration 21: need to repeat for 0000000017 particles. (took 0.319856 sec)
ngb iteration 22: need to repeat for 0000000012 particles. (took 0.320057 sec)
ngb iteration 23: need to repeat for 0000000011 particles. (took 0.320061 sec)
ngb iteration 24: need to repeat for 0000000008 particles. (took 0.319347 sec)
ngb iteration 25: need to repeat for 0000000006 particles. (took 0.31949 sec)
ngb iteration 26: need to repeat for 0000000004 particles. (took 0.319951 sec)
ngb iteration 27: need to repeat for 0000000003 particles. (took 0.319326 sec)
ngb iteration 28: need to repeat for 0000000003 particles. (took 0.319401 sec)
ngb iteration 29: need to repeat for 0000000001 particles. (took 0.3199 sec)
final operations ... 
density and smoothing length for species 5 took 11.4894 sec
Tree construction for species 0 (270926058).
tree build for species 0 took 3.20279 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 186.082 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 3.36803 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 97.4408 sec
Tree construction for species 4 (15696740).
tree build for species 4 took 0.28926 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 27.3429 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.07458 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 18.3167 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 6.6715 sec
saving densities took 9.63377 sec

Number of FOF halos treated with collective SubFind code = 1
(the adopted size-limit for the collective algorithm was 35850640 particles.)
the other 168252 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 129444 - 138420530 

subfind_exchange()() took 4.93431 sec

collectively doing halo 1, num=23
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=36193.2 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=36635.6 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 36635.6 Mbyte (on task=0), Smallest = 32350.4 Mbyte, Average = 32581.9 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2965 0     ProcessedFlag     48.8426      50.7414  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle    195.3705     246.1119  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin    195.3705     441.4824  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin    195.3705     636.8528  allocate_memory()/allocate.c/61
   0 2969 0                 P  15629.6387   16266.4915  allocate_memory()/allocate.c/67
   0 2970 0              SphP  11575.2099   27841.7014  allocate_memory()/allocate.c/85
   0 2971 0              MetP   2715.7628   30557.4642  allocate_memory()/allocate.c/105
   0 2972 0               BHP    293.9734   30851.4376  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      1.8075   30853.2671  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList    293.2200   31146.4871  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    488.7000   31635.1871  fof_fof()/fof.c/337
   0 2978 0             Group      4.7076   31639.8947  fof_fof()/fof.c/380
   0 2979 0          SubGroup   4553.3529   36193.2476  subfind()/subfind.c/376
   0 2982 0          TopNodes     20.3186   36213.5881  domain_allocate()/domain.c/570
   0 2983 0        domain_key    390.7410   36604.3291  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      1.5630   36605.8941  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      1.5630   36607.4571  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      1.5630   36609.0201  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      1.5630   36610.5830  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      1.5630   36612.1467  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      1.5630   36613.7104  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes     21.8815   36635.5919  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=23113
After=29809
NTopleaves= 26083  NTopnodes=29809 (space for 409722)
gravity work-load balance=1.01206   memory-balance=1.01206   SPH work-load balance=1.01108
iter=0 exchange of 0038522695 particles (ret=0)
domain decomposition done. (took 4.56123 sec)
Freed 17.391 MByte in top-level domain structure

At 'SUBFIND', subfind_process_group_collectively()/subfind_collective.c/274: Largest Allocation = 42608.1 Mbyte (on task=0), Smallest = 38323 Mbyte, Average = 38554.4 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2965 0     ProcessedFlag     48.8426      50.7414  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle    195.3705     246.1119  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin    195.3705     441.4824  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin    195.3705     636.8528  allocate_memory()/allocate.c/61
   0 2969 0                 P  15629.6387   16266.4915  allocate_memory()/allocate.c/67
   0 2970 0              SphP  11575.2099   27841.7014  allocate_memory()/allocate.c/85
   0 2971 0              MetP   2715.7628   30557.4642  allocate_memory()/allocate.c/105
   0 2972 0               BHP    293.9734   30851.4376  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      1.8075   30853.2671  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList    293.2200   31146.4871  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    488.7000   31635.1871  fof_fof()/fof.c/337
   0 2978 0             Group      4.7076   31639.8947  fof_fof()/fof.c/380
   0 2979 0          SubGroup   4553.3529   36193.2476  subfind()/subfind.c/376
   0 2982 0          TopNodes      1.4783   36194.7478  domain_allocate()/domain.c/570
   0 2984 0        Nodes_base   3284.9533   39479.8007  force_treeallocate()/forcetree.c/4803
   0 2985 0     Extnodes_base   2737.4611   42217.2617  force_treeallocate()/forcetree.c/4811
   0 2986 0          Nextnode    195.4842   42412.7459  force_treeallocate()/forcetree.c/4820
   0 2987 0            Father    195.3705   42608.1164  force_treeallocate()/forcetree.c/4827
----------------------------------------------------------------------------------------
coldomain_Decomposition() took 6.12073 sec  (presently allocated=42608.1 MB)
force_treebuild() took 5.36719 sec (presently allocated=42608.1 MB)
Start find_linkngb (872021 particles on task=0)
find linkngb iteration 1: need to repeat for 0024765040 particles. (took 42.6585 sec)
find linkngb iteration 2: need to repeat for 0020858373 particles. (took 16.0297 sec)
find linkngb iteration 3: need to repeat for 0017201586 particles. (took 9.32706 sec)
find linkngb iteration 4: need to repeat for 0015796201 particles. (took 5.91734 sec)
find linkngb iteration 5: need to repeat for 0013890911 particles. (took 5.25278 sec)
find linkngb iteration 6: need to repeat for 0011308281 particles. (took 4.48554 sec)
find linkngb iteration 7: need to repeat for 0008183777 particles. (took 3.60187 sec)
find linkngb iteration 8: need to repeat for 0005262175 particles. (took 2.63948 sec)
find linkngb iteration 9: need to repeat for 0003101856 particles. (took 1.71639 sec)
find linkngb iteration 10: need to repeat for 0001734488 particles. (took 1.04376 sec)
find linkngb iteration 11: need to repeat for 0000944804 particles. (took 0.608786 sec)
find linkngb iteration 12: need to repeat for 0000495599 particles. (took 0.353709 sec)
find linkngb iteration 13: need to repeat for 0000164175 particles. (took 0.197547 sec)
find linkngb iteration 14: need to repeat for 0000045597 particles. (took 0.0675189 sec)
find linkngb iteration 15: need to repeat for 0000020870 particles. (took 0.0217159 sec)
find linkngb iteration 16: need to repeat for 0000010559 particles. (took 0.010879 sec)
find linkngb iteration 17: need to repeat for 0000005053 particles. (took 0.00581193 sec)
find linkngb iteration 18: need to repeat for 0000002425 particles. (took 0.00451088 sec)
find linkngb iteration 19: need to repeat for 0000001190 particles. (took 0.00393081 sec)
find linkngb iteration 20: need to repeat for 0000000614 particles. (took 0.00365806 sec)
find linkngb iteration 21: need to repeat for 0000000326 particles. (took 0.00349402 sec)
find linkngb iteration 22: need to repeat for 0000000191 particles. (took 0.00328684 sec)
find linkngb iteration 23: need to repeat for 0000000116 particles. (took 0.00324702 sec)
find linkngb iteration 24: need to repeat for 0000000069 particles. (took 0.00321698 sec)
find linkngb iteration 25: need to repeat for 0000000040 particles. (took 0.00320506 sec)
find linkngb iteration 26: need to repeat for 0000000021 particles. (took 0.00358295 sec)
find linkngb iteration 27: need to repeat for 0000000013 particles. (took 0.00321198 sec)
find linkngb iteration 28: need to repeat for 0000000008 particles. (took 0.00358009 sec)
find linkngb iteration 29: need to repeat for 0000000003 particles. (took 0.00366497 sec)
find_linkngb() took 93.9904 sec
Start finding nearest two (872021 particles on task=0)
find_nearesttwo() took 12.1042 sec (presently allocated=42674.6 MB)
parallel sort of densities done. took 0.541026 sec
building distributed linked list. (presently allocated 42666 MB)
identification of primary candidates took 473.228 sec
adding background as candidate took 0.048893 sec
establishing of rank order took 151.423 sec  (p=39440963, grouplen=39440963) presently allocated 42666 MB

total number of subhalo candidates=143850

number of subhalo candidates that can be done independently=122864.
(Largest size is 4454, finding them took 0.04638 sec)
particles are marked (took 55.8771)
independent subhalos are assembled on individual CPUs for unbinding (0.417214 sec, (presently allocated=42666 MB)
unbinding of independent ones took 0.404885 sec
particles have returned to their original processor (0.495176 sec, presently allocated 42666 MB)

number of subhalo candidates that can be done independently=18976.
(Largest size is 30692, finding them took 2.75131 sec)
particles are marked (took 42.2105)
independent subhalos are assembled on individual CPUs for unbinding (0.404206 sec, (presently allocated=42666 MB)
unbinding of independent ones took 1.60201 sec
particles have returned to their original processor (0.483023 sec, presently allocated 42666 MB)

number of subhalo candidates that can be done independently=1865.
(Largest size is 118032, finding them took 2.72874 sec)
particles are marked (took 33.9542)
independent subhalos are assembled on individual CPUs for unbinding (0.393519 sec, (presently allocated=42666 MB)
unbinding of independent ones took 7.48159 sec
particles have returned to their original processor (0.476222 sec, presently allocated 42666 MB)

number of subhalo candidates that can be done independently=132.
(Largest size is 425508, finding them took 2.33545 sec)
particles are marked (took 29.3988)
independent subhalos are assembled on individual CPUs for unbinding (0.42876 sec, (presently allocated=42666 MB)
unbinding of independent ones took 22.5676 sec
particles have returned to their original processor (0.49416 sec, presently allocated 42666 MB)

number of subhalo candidates that can be done independently=11.
(Largest size is 481129, finding them took 3.80828 sec)
particles are marked (took 25.3095)
independent subhalos are assembled on individual CPUs for unbinding (0.375409 sec, (presently allocated=42666 MB)
unbinding of independent ones took 17.3128 sec
particles have returned to their original processor (0.466467 sec, presently allocated 42666 MB)

number of subhalo candidates that can be done independently=1.
(Largest size is 153419, finding them took 3.12941 sec)
particles are marked (took 20.3671)
independent subhalos are assembled on individual CPUs for unbinding (0.355189 sec, (presently allocated=42666 MB)
unbinding of independent ones took 3.41617 sec
particles have returned to their original processor (0.447384 sec, presently allocated 42666 MB)

number of subhalo candidates that can be done independently=0.
(Largest size is 39440963, finding them took 2.74279 sec)
too few, I do the rest of 1 collectively

collective unbinding of nr=0 (1) of length=39440963 ... maximum alloacted 42669.3 MB
took 331.187 sec

the collective unbinding of remaining halos took 349.816 sec

found 7081 bound substructures in FoF group of length 39440963
determination of parent subhalo took 0.0428991 sec (presently allocated 42669.3 MB)
determining substructure properties took 309.543 sec (presently allocated 42669.3 MB)
processing of collective halos took 1759.57 sec
sort of local particles()() took 6.39428 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 1633.41 sec

Task 36: testing particles ...
Task 44: testing particles ...
Task 40: testing particles ...
Task 34: testing particles ...
unsorting of local particles()() took 5.8589 sec
Task 0: testing particles ...
Task 43: testing particles ...
Task 16: testing particles ...
Task 37: testing particles ...
Task 35: testing particles ...
Task 33: testing particles ...
Task 39: testing particles ...
Task 31: testing particles ...
Task 38: testing particles ...
Task 41: testing particles ...
Task 24: testing particles ...
Task 23: testing particles ...
Task 29: testing particles ...
Task 17: testing particles ...
Task 27: testing particles ...
Task 25: testing particles ...
Task 32: testing particles ...
Task 21: testing particles ...
Task 18: testing particles ...
Task 22: testing particles ...
Task 28: testing particles ...
Task 20: testing particles ...
Task 13: testing particles ...
Task 11: testing particles ...
Task 12: testing particles ...
Task 10: testing particles ...
Task 30: testing particles ...
Task 15: testing particles ...
Task 14: testing particles ...
Task 7: testing particles ...
Task 9: testing particles ...
Task 26: testing particles ...
Task 8: testing particles ...
Task 42: testing particles ...
Task 5: testing particles ...
Task 6: testing particles ...
Task 4: testing particles ...
Task 19: testing particles ...
Task 3: testing particles ...
Task 2: testing particles ...
Task 1: testing particles ...
subfind_exchange() (for return to original CPU)  took 8.37034 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=36193.2 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=36635.6 MB)
Before=33849
After=36801
NTopleaves= 32201  NTopnodes=36801 (space for 409722)
gravity work-load balance=1.01353   memory-balance=1.01351   SPH work-load balance=1.00827
iter=0 exchange of 0561681253 particles (ret=0)
domain decomposition done. (took 26.1987 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.071 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000134525 particles. (took 0.0897288 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.08619 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.0868292 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.0881519 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.0885289 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.0882099 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.0880971 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.0881939 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.0882339 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.0880539 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.0880251 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.0880752 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.08812 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.088125 sec)
SO iteration 15: need to repeat for 0000132338 particles. (took 0.090616 sec)
SO iteration 16: need to repeat for 0000000531 particles. (took 0.082094 sec)
SO iteration 17: need to repeat for 0000000052 particles. (took 0.00209594 sec)
SO iteration 1: need to repeat for 0000134525 particles. (took 0.0902059 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.06286 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.0727749 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.0653658 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.0687799 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.068145 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.067162 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.067286 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.067029 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.067188 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.0670481 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.067055 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.067066 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.0691419 sec)
SO iteration 15: need to repeat for 0000133650 particles. (took 0.0670531 sec)
SO iteration 16: need to repeat for 0000017247 particles. (took 0.066124 sec)
SO iteration 17: need to repeat for 0000000272 particles. (took 0.00953197 sec)
SO iteration 18: need to repeat for 0000000033 particles. (took 0.000808001 sec)
SO iteration 1: need to repeat for 0000134525 particles. (took 0.0896921 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.0621929 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.0502388 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.055728 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.0533412 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.054163 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.0538111 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.0539291 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.053992 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.054039 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.0540318 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.0540609 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.0540159 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.054019 sec)
SO iteration 15: need to repeat for 0000134501 particles. (took 0.0540042 sec)
SO iteration 16: need to repeat for 0000133165 particles. (took 0.0540771 sec)
SO iteration 17: need to repeat for 0000021345 particles. (took 0.053504 sec)
SO iteration 18: need to repeat for 0000000431 particles. (took 0.0107419 sec)
SO iteration 19: need to repeat for 0000000048 particles. (took 0.000901937 sec)
SO iteration 20: need to repeat for 0000000001 particles. (took 0.000136137 sec)
SO iteration 1: need to repeat for 0000134525 particles. (took 0.0897322 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.064914 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.076066 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.0808201 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.0813539 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.080523 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.0803609 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.0802929 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.080507 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.080544 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.0806789 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.080478 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.080514 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.0805562 sec)
SO iteration 15: need to repeat for 0000132592 particles. (took 0.080488 sec)
SO iteration 16: need to repeat for 0000001706 particles. (took 0.074604 sec)
SO iteration 17: need to repeat for 0000000096 particles. (took 0.00229788 sec)
SO iteration 18: need to repeat for 0000000005 particles. (took 0.000571966 sec)
SO iteration 1: need to repeat for 0000134525 particles. (took 0.0896671 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.06306 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.070843 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.065613 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.067034 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.0679781 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.0684581 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.068152 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.068294 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.0682931 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.068254 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.0682471 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.0682371 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.0682209 sec)
SO iteration 15: need to repeat for 0000133511 particles. (took 0.072222 sec)
SO iteration 16: need to repeat for 0000012694 particles. (took 0.0674391 sec)
SO iteration 17: need to repeat for 0000000235 particles. (took 0.00752401 sec)
SO iteration 18: need to repeat for 0000000023 particles. (took 0.000679016 sec)
SO iteration 1: need to repeat for 0000134525 particles. (took 0.0904131 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.062391 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.0524211 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.0573151 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.058264 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.0584249 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.0584912 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.0584099 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.0584259 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.0584059 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.0584412 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.058419 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.058382 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.058392 sec)
SO iteration 15: need to repeat for 0000134367 particles. (took 0.058408 sec)
SO iteration 16: need to repeat for 0000132656 particles. (took 0.0582778 sec)
SO iteration 17: need to repeat for 0000002033 particles. (took 0.0566051 sec)
SO iteration 18: need to repeat for 0000000137 particles. (took 0.00188303 sec)
SO iteration 19: need to repeat for 0000000004 particles. (took 0.000406027 sec)
SO iteration 1: need to repeat for 0000134525 particles. (took 0.089633 sec)
SO iteration 2: need to repeat for 0000134525 particles. (took 0.0621159 sec)
SO iteration 3: need to repeat for 0000134525 particles. (took 0.0499072 sec)
SO iteration 4: need to repeat for 0000134525 particles. (took 0.043627 sec)
SO iteration 5: need to repeat for 0000134525 particles. (took 0.0461168 sec)
SO iteration 6: need to repeat for 0000134525 particles. (took 0.0476379 sec)
SO iteration 7: need to repeat for 0000134525 particles. (took 0.0477269 sec)
SO iteration 8: need to repeat for 0000134525 particles. (took 0.0476241 sec)
SO iteration 9: need to repeat for 0000134525 particles. (took 0.0476232 sec)
SO iteration 10: need to repeat for 0000134525 particles. (took 0.0476122 sec)
SO iteration 11: need to repeat for 0000134525 particles. (took 0.0476129 sec)
SO iteration 12: need to repeat for 0000134525 particles. (took 0.0475669 sec)
SO iteration 13: need to repeat for 0000134525 particles. (took 0.0475919 sec)
SO iteration 14: need to repeat for 0000134525 particles. (took 0.0476191 sec)
SO iteration 15: need to repeat for 0000134519 particles. (took 0.0476449 sec)
SO iteration 16: need to repeat for 0000134266 particles. (took 0.047678 sec)
SO iteration 17: need to repeat for 0000132237 particles. (took 0.047559 sec)
SO iteration 18: need to repeat for 0000004077 particles. (took 0.047262 sec)
SO iteration 19: need to repeat for 0000000172 particles. (took 0.002707 sec)
SO iteration 20: need to repeat for 0000000007 particles. (took 0.000371933 sec)
determining spherical overdensity masses took 7.82281 sec
finding spherical overdensity particles took 0.506423 sec
determining contamination of halos took 0.339364 sec
Global sort of Groups took 0.0564089 sec
Global sort of SubGroups took 0.087153 sec
Global sort of IDs took 2.52106 sec
Writing block 0 (GLEN), n=3739, ptype=0, dtype=0, ndim=1, bpb=4 bytes=14956d
Writing block 1 (GOFF), n=3739, ptype=0, dtype=0, ndim=1, bpb=4 bytes=14956d
Writing block 2 (MTOT), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 3 (GPOS), n=3739, ptype=0, dtype=1, ndim=3, bpb=4 bytes=44868d
Writing block 4 (MMEA), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 5 (RMEA), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 6 (MCRI), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 7 (RCRI), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 8 (MTOP), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 9 (RTOP), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 17 (NCON), n=3739, ptype=0, dtype=0, ndim=1, bpb=4 bytes=14956d
Writing block 18 (MCON), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 22 (NSUB), n=3739, ptype=0, dtype=0, ndim=1, bpb=4 bytes=14956d
Writing block 23 (FSUB), n=3739, ptype=0, dtype=0, ndim=1, bpb=4 bytes=14956d
Writing block 24 (SLEN), n=10740, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42960d
Writing block 25 (SOFF), n=10740, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42960d
Writing block 26 (SSUB), n=10740, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42960d
Writing block 27 (MSUB), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 28 (SPOS), n=10740, ptype=1, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 29 (SVEL), n=10740, ptype=1, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 30 (SCM ), n=10740, ptype=1, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 33 (VMAX), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 34 (RMAX), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 35 (RHMS), n=10740, ptype=1, dtype=1, ndim=6, bpb=4 bytes=257760d
Writing block 36 (MTRH), n=10740, ptype=1, dtype=1, ndim=6, bpb=4 bytes=257760d
Writing block 37 (MBID), n=10740, ptype=1, dtype=2, ndim=1, bpb=8 bytes=85920d
Writing block 38 (GRNR), n=10740, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42960d
Writing block 39 (SUBN), n=10740, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42960d
Writing block 40 (SMST), n=10740, ptype=1, dtype=1, ndim=6, bpb=4 bytes=257760d
Writing block 53 (PID ), n=3972452, ptype=2, dtype=2, ndim=1, bpb=8 bytes=31779616d
Writing block 54 (SLEN), n=10740, ptype=1, dtype=0, ndim=6, bpb=4 bytes=257760d
Writing block 55 (STEN), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 56 (SKEN), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 57 (SUEN), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 58 (SUIT), n=10740, ptype=1, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 59 (BHMA), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 60 (BHMD), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 61 (SVD ), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 62 (SVDH), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 63 (HMPR), n=10740, ptype=1, dtype=1, ndim=6, bpb=4 bytes=257760d
Writing block 64 (SSFR), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 65 (SSA ), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 66 (SSBZ), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 67 (SSIM), n=10740, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 68 (SSPI), n=10740, ptype=4, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 69 (GSPI), n=10740, ptype=1, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 70 (FSPI), n=10740, ptype=5, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 71 (SFM ), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 72 (SFMT), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 73 (SFME), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 74 (SFAE), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 75 (SFKE), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 76 (SFTE), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 77 (SMWP), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 78 (SMM ), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 79 (SMMS), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 80 (SFZ ), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 81 (SFZS), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 82 (SSIA), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 83 (SIAS), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 84 (SMET), n=10740, ptype=5, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 85 (SMTS), n=10740, ptype=5, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 86 (MF1 ), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 87 (MeF1), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 88 (MF  ), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 89 (MeF2), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 90 (MFA ), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 91 (MeFA), n=10740, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 92 (NSPI), n=10740, ptype=6, dtype=1, ndim=3, bpb=4 bytes=128880d
Writing block 93 (NFM ), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 94 (NFMT), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 95 (NFME), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 96 (NFAE), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 97 (NFKE), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 98 (NFTE), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 99 (SMWP), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 100 (SMM ), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 101 (SMMS), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 102 (SSIA), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 103 (SIAS), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 104 (SMET), n=10740, ptype=6, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 105 (SMTS), n=10740, ptype=6, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 106 (MF1 ), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 107 (MeF1), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 108 (MF2 ), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 109 (MeF2), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 110 (MFA ), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 111 (MeFA), n=10740, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 112 (SM  ), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 113 (SFKE), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 114 (SFAE), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 115 (SMWP), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 116 (SMM ), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 117 (SMMS), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 118 (SSIA), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 119 (SIAS), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 120 (SMET), n=10740, ptype=4, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 121 (SMTS), n=10740, ptype=4, dtype=1, ndim=9, bpb=4 bytes=386640d
Writing block 122 (MF1 ), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 123 (MeF1), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 124 (MF2 ), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 125 (MeF2), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 126 (MFA ), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 127 (MeFA), n=10740, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42960d
Writing block 128 (MMe5), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 129 (RMe5), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 130 (MCr5), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 131 (RCr5), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 132 (MMe2), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 133 (RMe2), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 134 (MCr2), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 135 (RCr2), n=3739, ptype=0, dtype=1, ndim=1, bpb=4 bytes=14956d
Writing block 136 (MAPT), n=10740, ptype=7, dtype=1, ndim=60, bpb=4 bytes=2577600d
Writing block 137 (SAPT), n=10740, ptype=8, dtype=1, ndim=10, bpb=4 bytes=429600d
Writing block 138 (VAPT), n=10740, ptype=9, dtype=1, ndim=10, bpb=4 bytes=429600d
Writing block 139 (BEGY), n=3972452, ptype=2, dtype=1, ndim=1, bpb=4 bytes=15889808d
Subgroup catalogues saved. took = 10.173 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 2.532659e+00
 eagle_ph_key_ort: type= 1 timed by volker 2.934437e+00
 eagle_ph_key_ort: type= 2 timed by volker 2.409849e-01
 eagle_ph_key_ort: type= 3 timed by volker 4.881191e-02
 eagle_ph_key_ort: type= 4 timed by volker 1.604462e-01
 eagle_ph_key_ort: type= 5 timed by volker 3.660703e-02
 eagle_ph_key_ort: timing parallel sort = 6.588676e+00
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20462229088

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 36485.7 Mbyte (on task=0), Smallest = 32201.6 Mbyte, Average = 32432.6 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2965 0     ProcessedFlag     48.8426      50.7414  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle    195.3705     246.1119  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin    195.3705     441.4824  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin    195.3705     636.8528  allocate_memory()/allocate.c/61
   0 2969 0                 P  15629.6387   16266.4915  allocate_memory()/allocate.c/67
   0 2970 0              SphP  11575.2099   27841.7014  allocate_memory()/allocate.c/85
   0 2971 0              MetP   2715.7628   30557.4642  allocate_memory()/allocate.c/105
   0 2972 0               BHP    293.9734   30851.4376  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      1.8075   30853.2671  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList    293.2200   31146.4871  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    488.7000   31635.1871  fof_fof()/fof.c/337
   0 2978 0             Group      4.7076   31639.8947  fof_fof()/fof.c/380
   0 2979 0          SubGroup   4553.3529   36193.2476  subfind()/subfind.c/376
   0 2980 0   sort_index_data    292.4501   36485.6977  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 160, max_elements= 214425 number of bytes = 34308000
 eagle_ph_key_ort: timing parallel P exchange = 2.696180e+01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20462229088
 eagle_fetch_elements: max_bytes= 248, max_elements= 1263838 number of bytes = 313431824
 eagle_ph_key_ort: timing parallel SphP exchange = 1.422207e+01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20462229088
 eagle_fetch_elements: max_bytes= 384, max_elements= 2490274 number of bytes = 956265216
 eagle_ph_key_ort: timing parallel MetP exchange = 5.609300e-01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20462229088
 eagle_fetch_elements: max_bytes= 256, max_elements= 4097847 number of bytes = 1049048832
 eagle_ph_key_ort: timing parallel BHP exchange = 1.636291e-02
Sorting particle-data by peano-hilbert key took = 50.8815 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 160, max_elements= 214425 number of bytes= 34308000
 eagle_ph_restore: timing parallel P exchange = 3.134316e+01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 252, max_elements= 1197187 number of bytes= 301691124
 eagle_ph_restore: timing parallel SphP exchange = 1.408276e+01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 2490274 number of bytes= 956265216
 eagle_ph_restore: timing parallel MetP exchange = 5.730920e-01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 4097847 number of bytes= 1049048832
 eagle_ph_restore: timing parallel BHP exchange = 1.563096e-02
Restoring original order after ph key sorting took = 46.1494 sec

finished writing particle file...

Finished with SUBFIND.  (total time=4868.79 sec)

Finished computing FoF groups.  (presently allocated=30853.3 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=30851.4 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=31293.8 MB)
Before=33233
After=36409
NTopleaves= 31858  NTopnodes=36409 (space for 409722)
gravity work-load balance=1.00709   memory-balance=1.00711   SPH work-load balance=1.00343
iter=0 exchange of 0562287110 particles (ret=0)
domain decomposition done. (took 25.8204 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.0889 MByte in top-level domain structure
Tree construction.
task 16: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 5:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 11:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 8:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 20:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 27:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 19:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 16:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 16
task 5: endrun called with an error level of 124


task 11: endrun called with an error level of 124


task 8: endrun called with an error level of 124


task 20: endrun called with an error level of 124


Finished FOF, total time doing fof/subfind = 5088.48 s
task 39: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 31:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 43:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 36:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) task 27: endrun called with an error level of 124


task 19: endrun called with an error level of 124


task 16: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 5
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 5:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 5
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 11
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 11:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 33: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 8
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 20
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 20:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
 An HDF5 error was detected, we'd better stop.
 An HDF5 error was detected, we'd better stop.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
task 31: endrun called with an error level of 124


task 43: endrun called with an error level of 124


task 36: endrun called with an error level of 124


task 42: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 27
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 19
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 16:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 16
task 5: endrun called with an error level of 124


task 11: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 8:
task 20: endrun called with an error level of 124


HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 30:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0task 39: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 31
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 31:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 31
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 43
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 36
MPI-process 42:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 27task 19: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 11
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
task 8: endrun called with an error level of 124


    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 20
task 30: endrun called with an error level of 124


:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
task 31: endrun called with an error level of 124


task 43: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 36:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 42
task 27: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 19:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 19
task 33: endrun called with an error level of 124


  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 8
    minor: Can't get value
task 0: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 43:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 43
task 36: endrun called with an error level of 124


task 42: endrun called with an error level of 124


  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 30
    major: Error API
    minor: Can't get value
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 36
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 42:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 42
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) task 0: endrun called with an error level of 124


:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 27
MPI-process 30:
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 30: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 30
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 22: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
task 22: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   63075.88 Mb (on task=31), Smallest =   62879.46 Mb (on task=0), Average =   63035.78 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=15), Smallest =   64531.71 Mb (on task=31), Average =   64532.00 Mb
Committed_AS:	 Largest =    1652.54 Mb (on task=0), Smallest =    1455.82 Mb (on task=31), Average =    1496.22 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=26), Smallest =   16250.93 Mb (on task=43), Average =   16303.22 Mb
AllocMem:	 Largest =    1652.54 Mb (on task=0), Smallest =    1455.82 Mb (on task=31), Average =    1496.22 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 45 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N1':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         56000
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

Allocated 16264.6 MByte for particle storage.

Allocated 11583.3 MByte for storage of SPH data.

Allocated 2711.19 MByte for storage of MET data.

Allocated 294.178 MByte for storage of BH data.


reading file `data//snapshot_022_z000p247/snap_022_z000p247.0.hdf5' on task=0 (contains 36410087 particles.)
distributing this file to tasks 0-4
Type 0 (gas):   16960155  (tot=     0271114751) masstab=0
Type 1 (halo):  18148554  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13362  (tot=     0000254233) masstab=0
Type 3 (bulge):   297082  (tot=     0002602064) masstab=0
Type 4 (stars):   989026  (tot=     0015509063) masstab=0
Type 5 (bndry):     1908  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.1.hdf5' on task=5 (contains 36185235 particles.)
distributing this file to tasks 5-7
Type 0 (gas):   16888659  (tot=     0271114751) masstab=0
Type 1 (halo):  18035817  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15180  (tot=     0000254233) masstab=0
Type 3 (bulge):   205272  (tot=     0002602064) masstab=0
Type 4 (stars):  1038332  (tot=     0015509063) masstab=0
Type 5 (bndry):     1975  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.12.hdf5' on task=36 (contains 36063070 particles.)
distributing this file to tasks 36-38
Type 0 (gas):   16927547  (tot=     0271114751) masstab=0
Type 1 (halo):  18010678  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20758  (tot=     0000254233) masstab=0
Type 3 (bulge):    75976  (tot=     0002602064) masstab=0
Type 4 (stars):  1026196  (tot=     0015509063) masstab=0
Type 5 (bndry):     1915  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.10.hdf5' on task=31 (contains 35996509 particles.)
distributing this file to tasks 31-32
Type 0 (gas):   16859152  (tot=     0271114751) masstab=0
Type 1 (halo):  18006883  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10089  (tot=     0000254233) masstab=0
Type 3 (bulge):   207747  (tot=     0002602064) masstab=0
Type 4 (stars):   910777  (tot=     0015509063) masstab=0
Type 5 (bndry):     1861  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.3.hdf5' on task=11 (contains 36216396 particles.)
distributing this file to tasks 11-15
Type 0 (gas):   16967848  (tot=     0271114751) masstab=0
Type 1 (halo):  18017561  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9912  (tot=     0000254233) masstab=0
Type 3 (bulge):   244993  (tot=     0002602064) masstab=0
Type 4 (stars):   974185  (tot=     0015509063) masstab=0
Type 5 (bndry):     1897  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.11.hdf5' on task=33 (contains 36065264 particles.)
distributing this file to tasks 33-35
Type 0 (gas):   16996865  (tot=     0271114751) masstab=0
Type 1 (halo):  17928423  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21311  (tot=     0000254233) masstab=0
Type 3 (bulge):   131134  (tot=     0002602064) masstab=0
Type 4 (stars):   985672  (tot=     0015509063) masstab=0
Type 5 (bndry):     1859  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.6.hdf5' on task=20 (contains 36032949 particles.)
distributing this file to tasks 20-21
Type 0 (gas):   16983981  (tot=     0271114751) masstab=0
Type 1 (halo):  18039766  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      7745  (tot=     0000254233) masstab=0
Type 3 (bulge):   130695  (tot=     0002602064) masstab=0
Type 4 (stars):   868907  (tot=     0015509063) masstab=0
Type 5 (bndry):     1855  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.8.hdf5' on task=27 (contains 35934404 particles.)
distributing this file to tasks 27-29
Type 0 (gas):   16988687  (tot=     0271114751) masstab=0
Type 1 (halo):  17914675  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15551  (tot=     0000254233) masstab=0
Type 3 (bulge):    39955  (tot=     0002602064) masstab=0
Type 4 (stars):   973801  (tot=     0015509063) masstab=0
Type 5 (bndry):     1735  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.13.hdf5' on task=39 (contains 35930657 particles.)
distributing this file to tasks 39-41
Type 0 (gas):   16915251  (tot=     0271114751) masstab=0
Type 1 (halo):  18105527  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9956  (tot=     0000254233) masstab=0
Type 3 (bulge):      237  (tot=     0002602064) masstab=0
Type 4 (stars):   897738  (tot=     0015509063) masstab=0
Type 5 (bndry):     1948  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.5.hdf5' on task=19 (contains 36072930 particles.)
distributing this file to tasks 19-19
Type 0 (gas):   16810426  (tot=     0271114751) masstab=0
Type 1 (halo):  18174736  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13780  (tot=     0000254233) masstab=0
Type 3 (bulge):   125314  (tot=     0002602064) masstab=0
Type 4 (stars):   946689  (tot=     0015509063) masstab=0
Type 5 (bndry):     1985  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.4.hdf5' on task=16 (contains 36037690 particles.)
distributing this file to tasks 16-18
Type 0 (gas):   16961345  (tot=     0271114751) masstab=0
Type 1 (halo):  17741570  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11100  (tot=     0000254233) masstab=0
Type 3 (bulge):   259054  (tot=     0002602064) masstab=0
Type 4 (stars):  1062710  (tot=     0015509063) masstab=0
Type 5 (bndry):     1911  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.15.hdf5' on task=43 (contains 35905404 particles.)
distributing this file to tasks 43-44
Type 0 (gas):   16986785  (tot=     0271114751) masstab=0
Type 1 (halo):  17821183  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     23339  (tot=     0000254233) masstab=0
Type 3 (bulge):   206562  (tot=     0002602064) masstab=0
Type 4 (stars):   865656  (tot=     0015509063) masstab=0
Type 5 (bndry):     1879  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.14.hdf5' on task=42 (contains 35900236 particles.)
distributing this file to tasks 42-42
Type 0 (gas):   16914603  (tot=     0271114751) masstab=0
Type 1 (halo):  17929480  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     31694  (tot=     0000254233) masstab=0
Type 3 (bulge):   147107  (tot=     0002602064) masstab=0
Type 4 (stars):   875300  (tot=     0015509063) masstab=0
Type 5 (bndry):     2052  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.7.hdf5' on task=22 (contains 35809254 particles.)
distributing this file to tasks 22-26
Type 0 (gas):   16973031  (tot=     0271114751) masstab=0
Type 1 (halo):  17588645  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14065  (tot=     0000254233) masstab=0
Type 3 (bulge):   225890  (tot=     0002602064) masstab=0
Type 4 (stars):  1005790  (tot=     0015509063) masstab=0
Type 5 (bndry):     1833  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.2.hdf5' on task=8 (contains 35863395 particles.)
distributing this file to tasks 8-10
Type 0 (gas):   17035498  (tot=     0271114751) masstab=0
Type 1 (halo):  17701628  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     24922  (tot=     0000254233) masstab=0
Type 3 (bulge):    61851  (tot=     0002602064) masstab=0
Type 4 (stars):  1037637  (tot=     0015509063) masstab=0
Type 5 (bndry):     1859  (tot=     0000030321) masstab=0


reading file `data//snapshot_022_z000p247/snap_022_z000p247.9.hdf5' on task=30 (contains 35747682 particles.)
distributing this file to tasks 30-30
Type 0 (gas):   16944918  (tot=     0271114751) masstab=0
Type 1 (halo):  17495604  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11469  (tot=     0000254233) masstab=0
Type 3 (bulge):   243195  (tot=     0002602064) masstab=0
Type 4 (stars):  1050647  (tot=     0015509063) masstab=0
Type 5 (bndry):     1849  (tot=     0000030321) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576171162


Setting next time for grid output file to Time_next= 0.814267

Setting next time for line of sight file to Time_next= 0.803424

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=14.7957 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=30855.1 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=31297.5 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 31297.5 Mbyte (on task=1), Smallest = 31297.5 Mbyte, Average = 31297.5 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2965 0     ProcessedFlag     48.8426      50.7425  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle    195.3705     246.1130  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin    195.3705     441.4835  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin    195.3705     636.8540  allocate_memory()/allocate.c/61
   1 2969 0                 P  15629.6423   16266.4964  allocate_memory()/allocate.c/67
   1 2970 0              SphP  11583.2714   27849.7677  allocate_memory()/allocate.c/85
   1 2971 0              MetP   2711.1885   30560.9562  allocate_memory()/allocate.c/105
   1 2972 0               BHP    294.1782   30855.1344  allocate_memory()/allocate.c/126
   1 2975 0          TopNodes     20.3186   30875.4750  domain_allocate()/domain.c/570
   1 2976 0        domain_key    390.7411   31266.2160  domain_Decomposition()/domain.c/231
   1 2987 0        domainWork      1.5630   31267.7811  domain_Decomposition()/domain.c/254
   1 2988 0     domainWorkSph      1.5630   31269.3440  domain_Decomposition()/domain.c/256
   1 2989 0       domainCount      1.5630   31270.9070  domain_Decomposition()/domain.c/258
   1 2990 0    domainCountSph      1.5630   31272.4700  domain_Decomposition()/domain.c/260
   1 2995 0  domainCountStars      1.5630   31274.0336  domain_Decomposition()/domain.c/272
   1 3000 0    domainCountBHs      1.5630   31275.5973  domain_Decomposition()/domain.c/285
   1 3001 0          topNodes     21.8815   31297.4788  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=33033
After=34945
NTopleaves= 30577  NTopnodes=34945 (space for 409722)
gravity work-load balance=1.01861   memory-balance=1.0186   SPH work-load balance=1.01597
iter=0 exchange of 0561230291 particles (ret=0)
domain decomposition done. (took 61.7957 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.1559 MByte in top-level domain structure

Allocated 6414.15 MByte for BH-tree, and 0.116642 Mbyte for top-leaves.  (presently allocted 37271.2 MB)

Begin Ngb-tree construction.
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 37987.6 Mbyte (on task=1), Smallest = 37841.3 Mbyte, Average = 37915.4 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2965 0     ProcessedFlag     48.8426      50.7425  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle    195.3705     246.1130  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin    195.3705     441.4835  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin    195.3705     636.8540  allocate_memory()/allocate.c/61
   1 2969 0                 P  15629.6423   16266.4964  allocate_memory()/allocate.c/67
   1 2970 0              SphP  11583.2714   27849.7677  allocate_memory()/allocate.c/85
   1 2971 0              MetP   2711.1885   30560.9562  allocate_memory()/allocate.c/105
   1 2972 0               BHP    294.1782   30855.1344  allocate_memory()/allocate.c/126
   1 2975 0          TopNodes      1.7330   30856.8894  domain_allocate()/domain.c/570
   1 2976 0   DomainNodeIndex      0.1166   30857.0060  force_treeallocate()/forcetree.c/4800
   1 2977 0        Nodes_base   3285.4243   34142.4303  force_treeallocate()/forcetree.c/4803
   1 2978 0     Extnodes_base   2737.8535   36880.2838  force_treeallocate()/forcetree.c/4811
   1 2979 0          Nextnode    195.5038   37075.7877  force_treeallocate()/forcetree.c/4820
   1 2980 0            Father    195.3705   37271.1582  force_treeallocate()/forcetree.c/4827
   1 2981 0           Ngblist     48.3644   37319.5226  density()/density.c/690
   1 2982 0              Left     96.7289   37416.2515  density()/density.c/692
   1 2983 0             Right     96.7289   37512.9804  density()/density.c/693
   1 2984 0    DataIndexTable      7.0175   37519.9980  density()/density.c/738
   1 2985 0      DataNodeList     18.7134   37538.7114  density()/density.c/740
   1 2986 0       DensDataGet    135.1290   37673.8404  density()/density.c/893
   1 2987 0    DensDataResult    178.1246   37851.9650  density()/density.c/931
   1 2988 0       DensDataOut    135.6724   37987.6374  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0003335629 particles.
ngb iteration 2: need to repeat for 0000000545 particles.
ngb iteration 3: need to repeat for 0000000213 particles.
ngb iteration 4: need to repeat for 0000000138 particles.
ngb iteration 5: need to repeat for 0000000044 particles.
ngb iteration 6: need to repeat for 0000000035 particles.
ngb iteration 7: need to repeat for 0000000021 particles.
ngb iteration 8: need to repeat for 0000000005 particles.
ngb iteration 9: need to repeat for 0000000003 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.211.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.271.hdf5

Begin to compute FoF group catalogues...  (presently allocated=37271.2 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=30855.1 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=31297.5 MB)
Before=33401
After=36425
NTopleaves= 31872  NTopnodes=36425 (space for 409722)
gravity work-load balance=1.01071   memory-balance=1.01074   SPH work-load balance=1.0119
iter=0 exchange of 0561906788 particles (ret=0)
domain decomposition done. (took 25.8121 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.0882 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=30857 MB)
Tree construction.

Start linking particles (presently allocated=37858.9 MB)
links on local processor done (took 42.9228 sec).
Marked=0028299871 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=38128.8 MB) 
have done 0000457513 cross links (processed 0028299871, took 7.9232 sec)
have done 0000187302 cross links (processed 0020964623, took 7.33859 sec)
have done 0000127470 cross links (processed 0017425417, took 7.04395 sec)
have done 0000075386 cross links (processed 0009712136, took 6.62432 sec)
have done 0000040969 cross links (processed 0004472149, took 5.38824 sec)
have done 0000016000 cross links (processed 0000562667, took 1.16317 sec)
have done 0000005776 cross links (processed 0000187472, took 0.388913 sec)
have done 0000001905 cross links (processed 0000037538, took 0.190882 sec)
have done 0000000630 cross links (processed 0000008273, took 0.168764 sec)
have done 0000000235 cross links (processed 0000002694, took 0.166924 sec)
have done 0000000103 cross links (processed 0000001006, took 0.241622 sec)
have done 0000000049 cross links (processed 0000000422, took 0.234521 sec)
have done 0000000024 cross links (processed 0000000228, took 0.233981 sec)
have done 0000000008 cross links (processed 0000000112, took 0.234034 sec)
have done 0000000002 cross links (processed 0000000041, took 0.233845 sec)
have done 0000000001 cross links (processed 0000000006, took 0.234146 sec)
have done 0000000000 cross links (processed 0000000003, took 0.2339 sec)
Local groups found.

group finding took = 81.4251 sec
Start finding nearest dm-particle (presently allocated=37858.9 MB)
still finding nearest... (presently allocated=38090.2 MB)
fof-nearest iteration 1: need to repeat for 258131768 particles.
still finding nearest... (presently allocated=38096.2 MB)
fof-nearest iteration 2: need to repeat for 245578445 particles.
still finding nearest... (presently allocated=38106.7 MB)
fof-nearest iteration 3: need to repeat for 223378084 particles.
still finding nearest... (presently allocated=38121.3 MB)
fof-nearest iteration 4: need to repeat for 184019206 particles.
still finding nearest... (presently allocated=38134.9 MB)
fof-nearest iteration 5: need to repeat for 127451083 particles.
still finding nearest... (presently allocated=38138.8 MB)
fof-nearest iteration 6: need to repeat for 61244108 particles.
still finding nearest... (presently allocated=38125.6 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 47.2422 sec
compiling local group data and catalogue took = 6.17247 sec

Total number of groups with at least 32 particles: 170567
Largest group has 37544690 particles.
Total number of particles in groups: 0203361110

group properties are now allocated.. (presently allocated=31645.2 MB)
computation of group properties took = 0.758856 sec
start global sorting of group catalogues number 22
LargestGroup = 15371.589948; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.251889 sec
Group catalogues globally sorted. took = 4.19621 sec
starting saving of group catalogue number 22
data//groups_022_z000p247
Group catalogues number 22 saved. took = 3.39033 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (271114751).
tree build for species 0 took 3.12322 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0159313046 particles. (took 86.5856 sec)
ngb iteration 2: need to repeat for 0097110873 particles. (took 56.2441 sec)
ngb iteration 3: need to repeat for 0081268361 particles. (took 26.6674 sec)
ngb iteration 4: need to repeat for 0073591040 particles. (took 20.6079 sec)
ngb iteration 5: need to repeat for 0065489443 particles. (took 18.0543 sec)
ngb iteration 6: need to repeat for 0053674882 particles. (took 15.8493 sec)
ngb iteration 7: need to repeat for 0039033157 particles. (took 13.0333 sec)
ngb iteration 8: need to repeat for 0025298712 particles. (took 9.6363 sec)
ngb iteration 9: need to repeat for 0015020881 particles. (took 6.52593 sec)
ngb iteration 10: need to repeat for 0008402318 particles. (took 4.13984 sec)
ngb iteration 11: need to repeat for 0004527992 particles. (took 2.5181 sec)
ngb iteration 12: need to repeat for 0002387910 particles. (took 1.58764 sec)
ngb iteration 13: need to repeat for 0001246201 particles. (took 1.03285 sec)
ngb iteration 14: need to repeat for 0000581973 particles. (took 0.722131 sec)
ngb iteration 15: need to repeat for 0000170091 particles. (took 0.495755 sec)
ngb iteration 16: need to repeat for 0000055136 particles. (took 0.31585 sec)
ngb iteration 17: need to repeat for 0000022147 particles. (took 0.265532 sec)
ngb iteration 18: need to repeat for 0000011193 particles. (took 0.263402 sec)
ngb iteration 19: need to repeat for 0000006655 particles. (took 0.346861 sec)
ngb iteration 20: need to repeat for 0000004465 particles. (took 0.343928 sec)
ngb iteration 21: need to repeat for 0000003157 particles. (took 0.343175 sec)
ngb iteration 22: need to repeat for 0000002361 particles. (took 0.342244 sec)
ngb iteration 23: need to repeat for 0000001762 particles. (took 0.342211 sec)
ngb iteration 24: need to repeat for 0000001326 particles. (took 0.341902 sec)
ngb iteration 25: need to repeat for 0000001010 particles. (took 0.341458 sec)
ngb iteration 26: need to repeat for 0000000775 particles. (took 0.341281 sec)
ngb iteration 27: need to repeat for 0000000569 particles. (took 0.341157 sec)
ngb iteration 28: need to repeat for 0000000405 particles. (took 0.341163 sec)
ngb iteration 29: need to repeat for 0000000276 particles. (took 0.338339 sec)
ngb iteration 30: need to repeat for 0000000164 particles. (took 0.340985 sec)
ngb iteration 31: need to repeat for 0000000095 particles. (took 0.341154 sec)
ngb iteration 32: need to repeat for 0000000050 particles. (took 0.341093 sec)
ngb iteration 33: need to repeat for 0000000028 particles. (took 0.340931 sec)
ngb iteration 34: need to repeat for 0000000015 particles. (took 0.341006 sec)
ngb iteration 35: need to repeat for 0000000010 particles. (took 0.341005 sec)
ngb iteration 36: need to repeat for 0000000006 particles. (took 0.341253 sec)
ngb iteration 37: need to repeat for 0000000002 particles. (took 0.34101 sec)
final operations ... 
density and smoothing length for species 0 took 273.269 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 3.5338 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0164793069 particles. (took 122.614 sec)
ngb iteration 2: need to repeat for 0101937463 particles. (took 52.9239 sec)
ngb iteration 3: need to repeat for 0078254801 particles. (took 29.2998 sec)
ngb iteration 4: need to repeat for 0067272006 particles. (took 20.8676 sec)
ngb iteration 5: need to repeat for 0059079123 particles. (took 17.1291 sec)
ngb iteration 6: need to repeat for 0049112367 particles. (took 14.7191 sec)
ngb iteration 7: need to repeat for 0037117252 particles. (took 12.1891 sec)
ngb iteration 8: need to repeat for 0025496894 particles. (took 9.31019 sec)
ngb iteration 9: need to repeat for 0016240057 particles. (took 6.55768 sec)
ngb iteration 10: need to repeat for 0009807143 particles. (took 4.36111 sec)
ngb iteration 11: need to repeat for 0005736344 particles. (took 2.84858 sec)
ngb iteration 12: need to repeat for 0003296617 particles. (took 1.87966 sec)
ngb iteration 13: need to repeat for 0001885682 particles. (took 1.26787 sec)
ngb iteration 14: need to repeat for 0001027446 particles. (took 0.890255 sec)
ngb iteration 15: need to repeat for 0000488405 particles. (took 0.629785 sec)
ngb iteration 16: need to repeat for 0000251593 particles. (took 0.416691 sec)
ngb iteration 17: need to repeat for 0000137256 particles. (took 0.322036 sec)
ngb iteration 18: need to repeat for 0000077401 particles. (took 0.281616 sec)
ngb iteration 19: need to repeat for 0000043716 particles. (took 0.267012 sec)
ngb iteration 20: need to repeat for 0000024341 particles. (took 0.25742 sec)
ngb iteration 21: need to repeat for 0000013077 particles. (took 0.252843 sec)
ngb iteration 22: need to repeat for 0000006724 particles. (took 0.250267 sec)
ngb iteration 23: need to repeat for 0000003346 particles. (took 0.248963 sec)
ngb iteration 24: need to repeat for 0000001601 particles. (took 0.248164 sec)
ngb iteration 25: need to repeat for 0000000727 particles. (took 0.247438 sec)
ngb iteration 26: need to repeat for 0000000325 particles. (took 0.24699 sec)
ngb iteration 27: need to repeat for 0000000158 particles. (took 0.248041 sec)
ngb iteration 28: need to repeat for 0000000076 particles. (took 0.246894 sec)
ngb iteration 29: need to repeat for 0000000034 particles. (took 0.246551 sec)
ngb iteration 30: need to repeat for 0000000011 particles. (took 0.246564 sec)
ngb iteration 31: need to repeat for 0000000008 particles. (took 0.246801 sec)
ngb iteration 32: need to repeat for 0000000003 particles. (took 0.246748 sec)
ngb iteration 33: need to repeat for 0000000002 particles. (took 0.246501 sec)
ngb iteration 34: need to repeat for 0000000001 particles. (took 0.246553 sec)
final operations ... 
density and smoothing length for species 1 took 304.649 sec
Tree construction for species 4 (15509063).
tree build for species 4 took 0.320736 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0008691992 particles. (took 20.3868 sec)
ngb iteration 2: need to repeat for 0006100069 particles. (took 9.35297 sec)
ngb iteration 3: need to repeat for 0004453511 particles. (took 6.0231 sec)
ngb iteration 4: need to repeat for 0003529567 particles. (took 3.83825 sec)
ngb iteration 5: need to repeat for 0002942580 particles. (took 2.74621 sec)
ngb iteration 6: need to repeat for 0002464315 particles. (took 1.89277 sec)
ngb iteration 7: need to repeat for 0002004192 particles. (took 1.46171 sec)
ngb iteration 8: need to repeat for 0001568200 particles. (took 1.20556 sec)
ngb iteration 9: need to repeat for 0001189318 particles. (took 0.967308 sec)
ngb iteration 10: need to repeat for 0000881858 particles. (took 0.805489 sec)
ngb iteration 11: need to repeat for 0000643477 particles. (took 0.700295 sec)
ngb iteration 12: need to repeat for 0000466634 particles. (took 0.612261 sec)
ngb iteration 13: need to repeat for 0000336702 particles. (took 0.539 sec)
ngb iteration 14: need to repeat for 0000240702 particles. (took 0.481674 sec)
ngb iteration 15: need to repeat for 0000169158 particles. (took 0.577449 sec)
ngb iteration 16: need to repeat for 0000119053 particles. (took 0.554424 sec)
ngb iteration 17: need to repeat for 0000084165 particles. (took 0.531254 sec)
ngb iteration 18: need to repeat for 0000059898 particles. (took 0.513167 sec)
ngb iteration 19: need to repeat for 0000042368 particles. (took 0.502289 sec)
ngb iteration 20: need to repeat for 0000030299 particles. (took 0.489341 sec)
ngb iteration 21: need to repeat for 0000022188 particles. (took 0.476494 sec)
ngb iteration 22: need to repeat for 0000016295 particles. (took 0.469036 sec)
ngb iteration 23: need to repeat for 0000012213 particles. (took 0.465682 sec)
ngb iteration 24: need to repeat for 0000009223 particles. (took 0.463599 sec)
ngb iteration 25: need to repeat for 0000006934 particles. (took 0.462299 sec)
ngb iteration 26: need to repeat for 0000005191 particles. (took 0.46173 sec)
ngb iteration 27: need to repeat for 0000003866 particles. (took 0.461596 sec)
ngb iteration 28: need to repeat for 0000002871 particles. (took 0.460835 sec)
ngb iteration 29: need to repeat for 0000002004 particles. (took 0.460263 sec)
ngb iteration 30: need to repeat for 0000001362 particles. (took 0.460351 sec)
ngb iteration 31: need to repeat for 0000000872 particles. (took 0.459761 sec)
ngb iteration 32: need to repeat for 0000000551 particles. (took 0.459146 sec)
ngb iteration 33: need to repeat for 0000000332 particles. (took 0.458343 sec)
ngb iteration 34: need to repeat for 0000000187 particles. (took 0.459137 sec)
ngb iteration 35: need to repeat for 0000000100 particles. (took 0.458276 sec)
ngb iteration 36: need to repeat for 0000000063 particles. (took 0.458598 sec)
ngb iteration 37: need to repeat for 0000000029 particles. (took 0.45814 sec)
ngb iteration 38: need to repeat for 0000000014 particles. (took 0.458209 sec)
ngb iteration 39: need to repeat for 0000000005 particles. (took 0.458492 sec)
ngb iteration 40: need to repeat for 0000000002 particles. (took 0.458119 sec)
ngb iteration 41: need to repeat for 0000000002 particles. (took 0.458125 sec)
ngb iteration 42: need to repeat for 0000000001 particles. (took 0.458187 sec)
final operations ... 
density and smoothing length for species 4 took 66.2599 sec
Tree construction.
tree build took 7.25448 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000022968 particles. (took 0.5009 sec)
ngb iteration 2: need to repeat for 0000020390 particles. (took 0.362774 sec)
ngb iteration 3: need to repeat for 0000012295 particles. (took 0.354939 sec)
ngb iteration 4: need to repeat for 0000007502 particles. (took 0.346623 sec)
ngb iteration 5: need to repeat for 0000006054 particles. (took 0.339916 sec)
ngb iteration 6: need to repeat for 0000005094 particles. (took 0.47328 sec)
ngb iteration 7: need to repeat for 0000004150 particles. (took 0.469621 sec)
ngb iteration 8: need to repeat for 0000003165 particles. (took 0.468051 sec)
ngb iteration 9: need to repeat for 0000002241 particles. (took 0.465984 sec)
ngb iteration 10: need to repeat for 0000001506 particles. (took 0.464985 sec)
ngb iteration 11: need to repeat for 0000000961 particles. (took 0.463297 sec)
ngb iteration 12: need to repeat for 0000000630 particles. (took 0.462724 sec)
ngb iteration 13: need to repeat for 0000000421 particles. (took 0.461251 sec)
ngb iteration 14: need to repeat for 0000000271 particles. (took 0.460762 sec)
ngb iteration 15: need to repeat for 0000000166 particles. (took 0.459904 sec)
ngb iteration 16: need to repeat for 0000000097 particles. (took 0.459396 sec)
ngb iteration 17: need to repeat for 0000000057 particles. (took 0.459332 sec)
ngb iteration 18: need to repeat for 0000000038 particles. (took 0.458805 sec)
ngb iteration 19: need to repeat for 0000000030 particles. (took 0.459015 sec)
ngb iteration 20: need to repeat for 0000000020 particles. (took 0.458662 sec)
ngb iteration 21: need to repeat for 0000000014 particles. (took 0.459105 sec)
ngb iteration 22: need to repeat for 0000000010 particles. (took 0.458603 sec)
ngb iteration 23: need to repeat for 0000000009 particles. (took 0.458803 sec)
ngb iteration 24: need to repeat for 0000000006 particles. (took 0.458713 sec)
ngb iteration 25: need to repeat for 0000000003 particles. (took 0.458679 sec)
ngb iteration 26: need to repeat for 0000000002 particles. (took 0.458545 sec)
ngb iteration 27: need to repeat for 0000000002 particles. (took 0.458251 sec)
ngb iteration 28: need to repeat for 0000000001 particles. (took 0.458564 sec)
final operations ... 
density and smoothing length for species 5 took 14.4254 sec
Tree construction for species 0 (271114751).
tree build for species 0 took 3.24655 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 181.976 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 3.47611 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 92.7841 sec
Tree construction for species 4 (15509063).
tree build for species 4 took 0.323392 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 26.4675 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.0844679 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 18.2087 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 6.86451 sec
saving densities took 9.81285 sec

Number of FOF halos treated with collective SubFind code = 1
(the adopted size-limit for the collective algorithm was 35850648 particles.)
the other 170566 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 123679 - 136717087 

subfind_exchange()() took 4.48357 sec

collectively doing halo 1, num=22
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=35989.7 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=36432 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 36432 Mbyte (on task=0), Smallest = 32347.3 Mbyte, Average = 32576.6 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2965 0     ProcessedFlag     48.8426      50.7414  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle    195.3705     246.1119  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin    195.3705     441.4825  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin    195.3705     636.8530  allocate_memory()/allocate.c/61
   0 2969 0                 P  15629.6423   16266.4953  allocate_memory()/allocate.c/67
   0 2970 0              SphP  11583.2714   27849.7667  allocate_memory()/allocate.c/85
   0 2971 0              MetP   2711.1885   30560.9552  allocate_memory()/allocate.c/105
   0 2972 0               BHP    294.1782   30855.1334  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      1.8064   30856.9617  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList    293.7198   31150.6815  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    489.5329   31640.2144  fof_fof()/fof.c/337
   0 2978 0             Group      5.0095   31645.2239  fof_fof()/fof.c/380
   0 2979 0          SubGroup   4344.4322   35989.6562  subfind()/subfind.c/376
   0 2982 0          TopNodes     20.3186   36009.9967  domain_allocate()/domain.c/570
   0 2983 0        domain_key    390.7411   36400.7377  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      1.5630   36402.3028  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      1.5630   36403.8658  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      1.5630   36405.4287  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      1.5630   36406.9917  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      1.5630   36408.5554  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      1.5630   36410.1190  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes     21.8815   36432.0005  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=23305
After=29809
NTopleaves= 26083  NTopnodes=29809 (space for 409722)
gravity work-load balance=1.01329   memory-balance=1.01329   SPH work-load balance=1.00969
iter=0 exchange of 0036677802 particles (ret=0)
domain decomposition done. (took 4.5272 sec)
Freed 17.391 MByte in top-level domain structure

At 'SUBFIND', subfind_process_group_collectively()/subfind_collective.c/274: Largest Allocation = 42404.5 Mbyte (on task=0), Smallest = 38319.8 Mbyte, Average = 38549.2 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2965 0     ProcessedFlag     48.8426      50.7414  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle    195.3705     246.1119  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin    195.3705     441.4825  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin    195.3705     636.8530  allocate_memory()/allocate.c/61
   0 2969 0                 P  15629.6423   16266.4953  allocate_memory()/allocate.c/67
   0 2970 0              SphP  11583.2714   27849.7667  allocate_memory()/allocate.c/85
   0 2971 0              MetP   2711.1885   30560.9552  allocate_memory()/allocate.c/105
   0 2972 0               BHP    294.1782   30855.1334  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      1.8064   30856.9617  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList    293.7198   31150.6815  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    489.5329   31640.2144  fof_fof()/fof.c/337
   0 2978 0             Group      5.0095   31645.2239  fof_fof()/fof.c/380
   0 2979 0          SubGroup   4344.4322   35989.6562  subfind()/subfind.c/376
   0 2982 0          TopNodes      1.4783   35991.1564  domain_allocate()/domain.c/570
   0 2984 0        Nodes_base   3284.9540   39276.2099  force_treeallocate()/forcetree.c/4803
   0 2985 0     Extnodes_base   2737.4617   42013.6716  force_treeallocate()/forcetree.c/4811
   0 2986 0          Nextnode    195.4842   42209.1559  force_treeallocate()/forcetree.c/4820
   0 2987 0            Father    195.3705   42404.5264  force_treeallocate()/forcetree.c/4827
----------------------------------------------------------------------------------------
coldomain_Decomposition() took 6.09074 sec  (presently allocated=42404.5 MB)
force_treebuild() took 6.2257 sec (presently allocated=42404.5 MB)
Start find_linkngb (833976 particles on task=0)
find linkngb iteration 1: need to repeat for 0023739617 particles. (took 41.2493 sec)
find linkngb iteration 2: need to repeat for 0020013527 particles. (took 18.7208 sec)
find linkngb iteration 3: need to repeat for 0016566559 particles. (took 9.28296 sec)
find linkngb iteration 4: need to repeat for 0015200381 particles. (took 6.00052 sec)
find linkngb iteration 5: need to repeat for 0013337313 particles. (took 5.27382 sec)
find linkngb iteration 6: need to repeat for 0010829121 particles. (took 4.51729 sec)
find linkngb iteration 7: need to repeat for 0007822400 particles. (took 3.63 sec)
find linkngb iteration 8: need to repeat for 0005030721 particles. (took 2.64376 sec)
find linkngb iteration 9: need to repeat for 0002972019 particles. (took 1.73166 sec)
find linkngb iteration 10: need to repeat for 0001666176 particles. (took 1.05477 sec)
find linkngb iteration 11: need to repeat for 0000907056 particles. (took 0.61549 sec)
find linkngb iteration 12: need to repeat for 0000474127 particles. (took 0.357927 sec)
find linkngb iteration 13: need to repeat for 0000157390 particles. (took 0.199763 sec)
find linkngb iteration 14: need to repeat for 0000045929 particles. (took 0.06863 sec)
find linkngb iteration 15: need to repeat for 0000020225 particles. (took 0.0220258 sec)
find linkngb iteration 16: need to repeat for 0000010176 particles. (took 0.010993 sec)
find linkngb iteration 17: need to repeat for 0000005012 particles. (took 0.0059011 sec)
find linkngb iteration 18: need to repeat for 0000002383 particles. (took 0.00451112 sec)
find linkngb iteration 19: need to repeat for 0000001169 particles. (took 0.00391984 sec)
find linkngb iteration 20: need to repeat for 0000000631 particles. (took 0.00358486 sec)
find linkngb iteration 21: need to repeat for 0000000365 particles. (took 0.00339508 sec)
find linkngb iteration 22: need to repeat for 0000000221 particles. (took 0.00328803 sec)
find linkngb iteration 23: need to repeat for 0000000127 particles. (took 0.00317597 sec)
find linkngb iteration 24: need to repeat for 0000000077 particles. (took 0.00312901 sec)
find linkngb iteration 25: need to repeat for 0000000045 particles. (took 0.00309396 sec)
find linkngb iteration 26: need to repeat for 0000000030 particles. (took 0.00316215 sec)
find linkngb iteration 27: need to repeat for 0000000020 particles. (took 0.00308299 sec)
find linkngb iteration 28: need to repeat for 0000000012 particles. (took 0.00339508 sec)
find linkngb iteration 29: need to repeat for 0000000004 particles. (took 0.00342202 sec)
find linkngb iteration 30: need to repeat for 0000000003 particles. (took 0.00340581 sec)
find linkngb iteration 31: need to repeat for 0000000002 particles. (took 0.00339198 sec)
find_linkngb() took 95.4423 sec
Start finding nearest two (833976 particles on task=0)
find_nearesttwo() took 12.5931 sec (presently allocated=42468.2 MB)
parallel sort of densities done. took 0.514889 sec
building distributed linked list. (presently allocated 42459.9 MB)
identification of primary candidates took 453.951 sec
adding background as candidate took 0.046967 sec
establishing of rank order took 143.696 sec  (p=37544690, grouplen=37544690) presently allocated 42459.9 MB

total number of subhalo candidates=135784

number of subhalo candidates that can be done independently=116386.
(Largest size is 5534, finding them took 0.0397871 sec)
particles are marked (took 52.8452)
independent subhalos are assembled on individual CPUs for unbinding (0.566254 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 0.506284 sec
particles have returned to their original processor (0.739718 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=17487.
(Largest size is 16125, finding them took 4.49949 sec)
particles are marked (took 39.7074)
independent subhalos are assembled on individual CPUs for unbinding (0.546287 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 1.50622 sec
particles have returned to their original processor (0.487108 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=1762.
(Largest size is 107292, finding them took 2.99694 sec)
particles are marked (took 30.8758)
independent subhalos are assembled on individual CPUs for unbinding (0.392651 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 4.05867 sec
particles have returned to their original processor (0.543243 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=134.
(Largest size is 545541, finding them took 2.76903 sec)
particles are marked (took 33.2336)
independent subhalos are assembled on individual CPUs for unbinding (0.576621 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 51.844 sec
particles have returned to their original processor (0.50472 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=11.
(Largest size is 863769, finding them took 3.8196 sec)
particles are marked (took 25.2063)
independent subhalos are assembled on individual CPUs for unbinding (0.457263 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 22.8005 sec
particles have returned to their original processor (0.589049 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=2.
(Largest size is 549916, finding them took 3.17301 sec)
particles are marked (took 21.7211)
independent subhalos are assembled on individual CPUs for unbinding (0.375039 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 12.669 sec
particles have returned to their original processor (0.688908 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=1.
(Largest size is 23973, finding them took 2.28 sec)
particles are marked (took 18.6361)
independent subhalos are assembled on individual CPUs for unbinding (0.489104 sec, (presently allocated=42459.9 MB)
unbinding of independent ones took 0.494042 sec
particles have returned to their original processor (0.670357 sec, presently allocated 42459.9 MB)

number of subhalo candidates that can be done independently=0.
(Largest size is 37544690, finding them took 1.93999 sec)
too few, I do the rest of 1 collectively

collective unbinding of nr=0 (1) of length=37544690 ... maximum alloacted 42463.1 MB
took 590.983 sec

the collective unbinding of remaining halos took 608.589 sec

found 6859 bound substructures in FoF group of length 37544690
determination of parent subhalo took 0.0477791 sec (presently allocated 42463.1 MB)
determining substructure properties took 303.451 sec (presently allocated 42463.1 MB)
processing of collective halos took 2064.14 sec
sort of local particles()() took 6.82881 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 1700.03 sec

Task 43: testing particles ...
Task 44: testing particles ...
Task 40: testing particles ...
Task 39: testing particles ...
Task 37: testing particles ...
Task 36: testing particles ...
Task 41: testing particles ...
Task 38: testing particles ...
unsorting of local particles()() took 6.03855 sec
Task 0: testing particles ...
Task 31: testing particles ...
Task 20: testing particles ...
Task 35: testing particles ...
Task 34: testing particles ...
Task 15: testing particles ...
Task 29: testing particles ...
Task 13: testing particles ...
Task 28: testing particles ...
Task 10: testing particles ...
Task 27: testing particles ...
Task 30: testing particles ...
Task 17: testing particles ...
Task 23: testing particles ...
Task 25: testing particles ...
Task 32: testing particles ...
Task 33: testing particles ...
Task 21: testing particles ...
Task 11: testing particles ...
Task 22: testing particles ...
Task 24: testing particles ...
Task 18: testing particles ...
Task 9: testing particles ...
Task 16: testing particles ...
Task 12: testing particles ...
Task 14: testing particles ...
Task 8: testing particles ...
Task 42: testing particles ...
Task 7: testing particles ...
Task 6: testing particles ...
Task 26: testing particles ...
Task 5: testing particles ...
Task 19: testing particles ...
Task 3: testing particles ...
Task 2: testing particles ...
Task 1: testing particles ...
Task 4: testing particles ...
subfind_exchange() (for return to original CPU)  took 9.53596 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=35989.7 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=36432 MB)
Before=34033
After=36857
NTopleaves= 32250  NTopnodes=36857 (space for 409722)
gravity work-load balance=1.01382   memory-balance=1.01381   SPH work-load balance=1.0083
iter=0 exchange of 0565310654 particles (ret=0)
domain decomposition done. (took 27.7567 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.0684 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000136472 particles. (took 0.0927551 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.082413 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.0837259 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.0842299 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.0843379 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.084558 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.0844429 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.0845311 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.084487 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.084533 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.0844879 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.0844669 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.0844371 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.084511 sec)
SO iteration 15: need to repeat for 0000134285 particles. (took 0.084538 sec)
SO iteration 16: need to repeat for 0000000532 particles. (took 0.081244 sec)
SO iteration 17: need to repeat for 0000000043 particles. (took 0.00134206 sec)
SO iteration 1: need to repeat for 0000136472 particles. (took 0.085675 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.067363 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.0753181 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.0702441 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.0722561 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.07219 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.072181 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.0721891 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.0721819 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.072175 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.0722499 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.0721591 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.072391 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.072119 sec)
SO iteration 15: need to repeat for 0000135619 particles. (took 0.0721152 sec)
SO iteration 16: need to repeat for 0000018214 particles. (took 0.0739801 sec)
SO iteration 17: need to repeat for 0000000278 particles. (took 0.00913286 sec)
SO iteration 18: need to repeat for 0000000034 particles. (took 0.000658035 sec)
SO iteration 1: need to repeat for 0000136472 particles. (took 0.0887749 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.066021 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.0524502 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.0572479 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.0550909 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.0555871 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.0556502 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.0556519 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.0556872 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.0556159 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.0556269 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.055618 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.055604 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.055527 sec)
SO iteration 15: need to repeat for 0000136441 particles. (took 0.0555801 sec)
SO iteration 16: need to repeat for 0000135113 particles. (took 0.0554659 sec)
SO iteration 17: need to repeat for 0000023486 particles. (took 0.0549338 sec)
SO iteration 18: need to repeat for 0000000465 particles. (took 0.00991201 sec)
SO iteration 19: need to repeat for 0000000052 particles. (took 0.00177097 sec)
SO iteration 1: need to repeat for 0000136472 particles. (took 0.085712 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.0668151 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.077132 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.0806189 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.080122 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.0799229 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.080045 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.079936 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.0799439 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.0798512 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.079942 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.0799341 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.079952 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.0799091 sec)
SO iteration 15: need to repeat for 0000134504 particles. (took 0.079947 sec)
SO iteration 16: need to repeat for 0000001572 particles. (took 0.0782571 sec)
SO iteration 17: need to repeat for 0000000084 particles. (took 0.00181198 sec)
SO iteration 18: need to repeat for 0000000003 particles. (took 0.000227928 sec)
SO iteration 1: need to repeat for 0000136472 particles. (took 0.0856471 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.067596 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.075532 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.0712991 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.0730982 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.0735419 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.0736899 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.0738449 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.0737669 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.0737379 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.0739498 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.0738502 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.0736699 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.073746 sec)
SO iteration 15: need to repeat for 0000135345 particles. (took 0.073679 sec)
SO iteration 16: need to repeat for 0000010483 particles. (took 0.0734799 sec)
SO iteration 17: need to repeat for 0000000208 particles. (took 0.00683022 sec)
SO iteration 18: need to repeat for 0000000023 particles. (took 0.000720024 sec)
SO iteration 1: need to repeat for 0000136472 particles. (took 0.0864019 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.0663221 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.05849 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.063309 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.0623851 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.062412 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.0623429 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.0623779 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.0623441 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.0622871 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.062439 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.062314 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.0623219 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.06232 sec)
SO iteration 15: need to repeat for 0000136297 particles. (took 0.0623019 sec)
SO iteration 16: need to repeat for 0000134613 particles. (took 0.0620601 sec)
SO iteration 17: need to repeat for 0000001818 particles. (took 0.061219 sec)
SO iteration 18: need to repeat for 0000000135 particles. (took 0.00231719 sec)
SO iteration 19: need to repeat for 0000000007 particles. (took 0.000305891 sec)
SO iteration 1: need to repeat for 0000136472 particles. (took 0.0859389 sec)
SO iteration 2: need to repeat for 0000136472 particles. (took 0.0659101 sec)
SO iteration 3: need to repeat for 0000136472 particles. (took 0.0522752 sec)
SO iteration 4: need to repeat for 0000136472 particles. (took 0.0453861 sec)
SO iteration 5: need to repeat for 0000136472 particles. (took 0.048259 sec)
SO iteration 6: need to repeat for 0000136472 particles. (took 0.0492899 sec)
SO iteration 7: need to repeat for 0000136472 particles. (took 0.0497069 sec)
SO iteration 8: need to repeat for 0000136472 particles. (took 0.049557 sec)
SO iteration 9: need to repeat for 0000136472 particles. (took 0.049511 sec)
SO iteration 10: need to repeat for 0000136472 particles. (took 0.049561 sec)
SO iteration 11: need to repeat for 0000136472 particles. (took 0.0495439 sec)
SO iteration 12: need to repeat for 0000136472 particles. (took 0.049588 sec)
SO iteration 13: need to repeat for 0000136472 particles. (took 0.0493939 sec)
SO iteration 14: need to repeat for 0000136472 particles. (took 0.0495288 sec)
SO iteration 15: need to repeat for 0000136466 particles. (took 0.0496011 sec)
SO iteration 16: need to repeat for 0000136196 particles. (took 0.049541 sec)
SO iteration 17: need to repeat for 0000133517 particles. (took 0.049463 sec)
SO iteration 18: need to repeat for 0000003945 particles. (took 0.0485849 sec)
SO iteration 19: need to repeat for 0000000163 particles. (took 0.00277495 sec)
SO iteration 20: need to repeat for 0000000010 particles. (took 0.000287056 sec)
determining spherical overdensity masses took 8.02671 sec
finding spherical overdensity particles took 0.542936 sec
determining contamination of halos took 0.349537 sec
Global sort of Groups took 0.0327189 sec
Global sort of SubGroups took 0.082746 sec
Global sort of IDs took 2.45736 sec
Writing block 0 (GLEN), n=3791, ptype=0, dtype=0, ndim=1, bpb=4 bytes=15164d
Writing block 1 (GOFF), n=3791, ptype=0, dtype=0, ndim=1, bpb=4 bytes=15164d
Writing block 2 (MTOT), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 3 (GPOS), n=3791, ptype=0, dtype=1, ndim=3, bpb=4 bytes=45492d
Writing block 4 (MMEA), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 5 (RMEA), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 6 (MCRI), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 7 (RCRI), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 8 (MTOP), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 9 (RTOP), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 17 (NCON), n=3791, ptype=0, dtype=0, ndim=1, bpb=4 bytes=15164d
Writing block 18 (MCON), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 22 (NSUB), n=3791, ptype=0, dtype=0, ndim=1, bpb=4 bytes=15164d
Writing block 23 (FSUB), n=3791, ptype=0, dtype=0, ndim=1, bpb=4 bytes=15164d
Writing block 24 (SLEN), n=10625, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42500d
Writing block 25 (SOFF), n=10625, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42500d
Writing block 26 (SSUB), n=10625, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42500d
Writing block 27 (MSUB), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 28 (SPOS), n=10625, ptype=1, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 29 (SVEL), n=10625, ptype=1, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 30 (SCM ), n=10625, ptype=1, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 33 (VMAX), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 34 (RMAX), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 35 (RHMS), n=10625, ptype=1, dtype=1, ndim=6, bpb=4 bytes=255000d
Writing block 36 (MTRH), n=10625, ptype=1, dtype=1, ndim=6, bpb=4 bytes=255000d
Writing block 37 (MBID), n=10625, ptype=1, dtype=2, ndim=1, bpb=8 bytes=85000d
Writing block 38 (GRNR), n=10625, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42500d
Writing block 39 (SUBN), n=10625, ptype=1, dtype=0, ndim=1, bpb=4 bytes=42500d
Writing block 40 (SMST), n=10625, ptype=1, dtype=1, ndim=6, bpb=4 bytes=255000d
Writing block 53 (PID ), n=4464902, ptype=2, dtype=2, ndim=1, bpb=8 bytes=35719216d
Writing block 54 (SLEN), n=10625, ptype=1, dtype=0, ndim=6, bpb=4 bytes=255000d
Writing block 55 (STEN), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 56 (SKEN), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 57 (SUEN), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 58 (SUIT), n=10625, ptype=1, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 59 (BHMA), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 60 (BHMD), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 61 (SVD ), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 62 (SVDH), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 63 (HMPR), n=10625, ptype=1, dtype=1, ndim=6, bpb=4 bytes=255000d
Writing block 64 (SSFR), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 65 (SSA ), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 66 (SSBZ), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 67 (SSIM), n=10625, ptype=1, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 68 (SSPI), n=10625, ptype=4, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 69 (GSPI), n=10625, ptype=1, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 70 (FSPI), n=10625, ptype=5, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 71 (SFM ), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 72 (SFMT), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 73 (SFME), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 74 (SFAE), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 75 (SFKE), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 76 (SFTE), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 77 (SMWP), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 78 (SMM ), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 79 (SMMS), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 80 (SFZ ), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 81 (SFZS), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 82 (SSIA), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 83 (SIAS), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 84 (SMET), n=10625, ptype=5, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 85 (SMTS), n=10625, ptype=5, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 86 (MF1 ), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 87 (MeF1), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 88 (MF  ), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 89 (MeF2), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 90 (MFA ), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 91 (MeFA), n=10625, ptype=5, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 92 (NSPI), n=10625, ptype=6, dtype=1, ndim=3, bpb=4 bytes=127500d
Writing block 93 (NFM ), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 94 (NFMT), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 95 (NFME), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 96 (NFAE), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 97 (NFKE), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 98 (NFTE), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 99 (SMWP), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 100 (SMM ), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 101 (SMMS), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 102 (SSIA), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 103 (SIAS), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 104 (SMET), n=10625, ptype=6, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 105 (SMTS), n=10625, ptype=6, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 106 (MF1 ), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 107 (MeF1), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 108 (MF2 ), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 109 (MeF2), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 110 (MFA ), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 111 (MeFA), n=10625, ptype=6, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 112 (SM  ), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 113 (SFKE), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 114 (SFAE), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 115 (SMWP), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 116 (SMM ), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 117 (SMMS), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 118 (SSIA), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 119 (SIAS), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 120 (SMET), n=10625, ptype=4, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 121 (SMTS), n=10625, ptype=4, dtype=1, ndim=9, bpb=4 bytes=382500d
Writing block 122 (MF1 ), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 123 (MeF1), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 124 (MF2 ), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 125 (MeF2), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 126 (MFA ), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 127 (MeFA), n=10625, ptype=4, dtype=1, ndim=1, bpb=4 bytes=42500d
Writing block 128 (MMe5), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 129 (RMe5), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 130 (MCr5), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 131 (RCr5), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 132 (MMe2), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 133 (RMe2), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 134 (MCr2), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 135 (RCr2), n=3791, ptype=0, dtype=1, ndim=1, bpb=4 bytes=15164d
Writing block 136 (MAPT), n=10625, ptype=7, dtype=1, ndim=60, bpb=4 bytes=2550000d
Writing block 137 (SAPT), n=10625, ptype=8, dtype=1, ndim=10, bpb=4 bytes=425000d
Writing block 138 (VAPT), n=10625, ptype=9, dtype=1, ndim=10, bpb=4 bytes=425000d
Writing block 139 (BEGY), n=4464902, ptype=2, dtype=1, ndim=1, bpb=4 bytes=17859608d
Subgroup catalogues saved. took = 9.32011 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 2.539694e+00
 eagle_ph_key_ort: type= 1 timed by volker 2.963972e+00
 eagle_ph_key_ort: type= 2 timed by volker 2.114999e-01
 eagle_ph_key_ort: type= 3 timed by volker 4.912305e-02
 eagle_ph_key_ort: type= 4 timed by volker 1.614308e-01
 eagle_ph_key_ort: type= 5 timed by volker 1.612496e-02
 eagle_ph_key_ort: timing parallel sort = 6.589496e+00
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20671984488

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 36285.7 Mbyte (on task=0), Smallest = 32197.2 Mbyte, Average = 32427.4 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2965 0     ProcessedFlag     48.8426      50.7414  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle    195.3705     246.1119  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin    195.3705     441.4825  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin    195.3705     636.8530  allocate_memory()/allocate.c/61
   0 2969 0                 P  15629.6423   16266.4953  allocate_memory()/allocate.c/67
   0 2970 0              SphP  11583.2714   27849.7667  allocate_memory()/allocate.c/85
   0 2971 0              MetP   2711.1885   30560.9552  allocate_memory()/allocate.c/105
   0 2972 0               BHP    294.1782   30855.1334  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      1.8064   30856.9617  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList    293.7198   31150.6815  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    489.5329   31640.2144  fof_fof()/fof.c/337
   0 2978 0             Group      5.0095   31645.2239  fof_fof()/fof.c/380
   0 2979 0          SubGroup   4344.4322   35989.6562  subfind()/subfind.c/376
   0 2980 0   sort_index_data    296.0032   36285.6593  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 160, max_elements= 212595 number of bytes = 34015200
 eagle_ph_key_ort: timing parallel P exchange = 2.717318e+01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20671984488
 eagle_fetch_elements: max_bytes= 248, max_elements= 1261678 number of bytes = 312896144
 eagle_ph_key_ort: timing parallel SphP exchange = 1.463131e+01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20671984488
 eagle_fetch_elements: max_bytes= 384, max_elements= 2504949 number of bytes = 961900416
 eagle_ph_key_ort: timing parallel MetP exchange = 5.472209e-01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 20671984488
 eagle_fetch_elements: max_bytes= 256, max_elements= 4097855 number of bytes = 1049050880
 eagle_ph_key_ort: timing parallel BHP exchange = 1.053691e-02
Sorting particle-data by peano-hilbert key took = 51.5889 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 160, max_elements= 212595 number of bytes= 34015200
 eagle_ph_restore: timing parallel P exchange = 3.079588e+01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 252, max_elements= 1195025 number of bytes= 301146300
 eagle_ph_restore: timing parallel SphP exchange = 1.507305e+01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 2504949 number of bytes= 961900416
 eagle_ph_restore: timing parallel MetP exchange = 5.788081e-01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 4097855 number of bytes= 1049050880
 eagle_ph_restore: timing parallel BHP exchange = 1.390481e-02
Restoring original order after ph key sorting took = 46.6066 sec

finished writing particle file...

Finished with SUBFIND.  (total time=5220.99 sec)

Finished computing FoF groups.  (presently allocated=30857 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=30855.1 MB)
Allocated 20.3405 MByte for top-level domain structure
use of 422.004 MB of temporary storage for domain decomposition... (presently allocated=31297.5 MB)
Before=33449
After=36489
NTopleaves= 31928  NTopnodes=36489 (space for 409722)
gravity work-load balance=1.01303   memory-balance=1.01306   SPH work-load balance=1.01102
iter=0 exchange of 0564916076 particles (ret=0)
domain decomposition done. (took 25.3566 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 17.0853 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 5:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 8: endrun called with an error level of 124


task 5: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 8:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 8
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 5
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 8:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 5:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
task 8: endrun called with an error level of 124


task 5: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 8
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 5
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 16:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 11: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 20:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 36: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 33: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 27:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 39: endrun called with an error level of 124


task 16: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 31:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 11:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 11
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 19:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
Finished FOF, total time doing fof/subfind = 5438.19 s
task 20: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 36:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 36
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 36:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 42:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 43: endrun called with an error level of 124


task 22: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 27: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 16
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 16:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 16
task 31: endrun called with an error level of 124


task 11: endrun called with an error level of 124


task 19: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) application called MPI_Abort(MPI_COMM_WORLD, 124) - process 20
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 20:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 36: endrun called with an error level of 124


task 42: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 43:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 43
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 43application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 33: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 27
task 39: endrun called with an error level of 124


task 16: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 31
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 31:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 11:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 11
MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
task 20: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 36
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 42
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 42:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
task 43: endrun called with an error level of 124


task 22: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 27:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
task 31: endrun called with an error level of 124


task 0: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 20
task 42: endrun called with an error level of 124


:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 43
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
task 27: endrun called with an error level of 124


    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 31
    major: Error API
    minor: Can't get value
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 42
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 27
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 0: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 19
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 19:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 19: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 19
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 30:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
task 30: endrun called with an error level of 124


    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 30
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) task 30: endrun called with an error level of 124


MPI-process 30:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 30
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   63013.05 Mb (on task=28), Smallest =   62820.16 Mb (on task=0), Average =   62975.19 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=60), Smallest =   64531.71 Mb (on task=124), Average =   64532.00 Mb
Committed_AS:	 Largest =    1711.84 Mb (on task=0), Smallest =    1518.94 Mb (on task=28), Average =    1556.81 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=104), Smallest =   16250.93 Mb (on task=172), Average =   16302.72 Mb
AllocMem:	 Largest =    1711.84 Mb (on task=0), Smallest =    1518.94 Mb (on task=28), Average =    1556.81 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 180 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N4':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         14000
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

reading file `data//snapshot_018_z000p411/snap_018_z000p411.10.hdf5' on task=123 (contains 35876352 particles.)
distributing this file to tasks 123-128
Type 0 (gas):   17041789  (tot=     0271823183) masstab=0
Type 1 (halo):  17907279  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13696  (tot=     0000254233) masstab=0
Type 3 (bulge):   123431  (tot=     0002602064) masstab=0
Type 4 (stars):   788427  (tot=     0014803495) masstab=0
Type 5 (bndry):     1730  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.2.hdf5' on task=33 (contains 36073712 particles.)
distributing this file to tasks 33-38
Type 0 (gas):   17031904  (tot=     0271823183) masstab=0
Type 1 (halo):  18019811  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20720  (tot=     0000254233) masstab=0
Type 3 (bulge):    19621  (tot=     0002602064) masstab=0
Type 4 (stars):   979747  (tot=     0014803495) masstab=0
Type 5 (bndry):     1909  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.3.hdf5' on task=39 (contains 36373517 particles.)
distributing this file to tasks 39-44
Type 0 (gas):   16884639  (tot=     0271823183) masstab=0
Type 1 (halo):  18186239  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11927  (tot=     0000254233) masstab=0
Type 3 (bulge):   263888  (tot=     0002602064) masstab=0
Type 4 (stars):  1024990  (tot=     0014803495) masstab=0
Type 5 (bndry):     1834  (tot=     0000027951) masstab=0


Allocated 4066.15 MByte for particle storage.

Allocated 2903.38 MByte for storage of SPH data.

Allocated 673.496 MByte for storage of MET data.

Allocated 73.7366 MByte for storage of BH data.


reading file `data//snapshot_018_z000p411/snap_018_z000p411.0.hdf5' on task=0 (contains 36243232 particles.)
distributing this file to tasks 0-21
Type 0 (gas):   16884068  (tot=     0271823183) masstab=0
Type 1 (halo):  17691429  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     26435  (tot=     0000254233) masstab=0
Type 3 (bulge):   200915  (tot=     0002602064) masstab=0
Type 4 (stars):  1438588  (tot=     0014803495) masstab=0
Type 5 (bndry):     1797  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.15.hdf5' on task=174 (contains 35912089 particles.)
distributing this file to tasks 174-179
Type 0 (gas):   16949379  (tot=     0271823183) masstab=0
Type 1 (halo):  18001020  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      8254  (tot=     0000254233) masstab=0
Type 3 (bulge):   199669  (tot=     0002602064) masstab=0
Type 4 (stars):   752032  (tot=     0014803495) masstab=0
Type 5 (bndry):     1735  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.5.hdf5' on task=67 (contains 35855254 particles.)
distributing this file to tasks 67-77
Type 0 (gas):   17081791  (tot=     0271823183) masstab=0
Type 1 (halo):  17787722  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14073  (tot=     0000254233) masstab=0
Type 3 (bulge):    11902  (tot=     0002602064) masstab=0
Type 4 (stars):   958048  (tot=     0014803495) masstab=0
Type 5 (bndry):     1718  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.6.hdf5' on task=78 (contains 36012919 particles.)
distributing this file to tasks 78-83
Type 0 (gas):   17036068  (tot=     0271823183) masstab=0
Type 1 (halo):  17877660  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     23999  (tot=     0000254233) masstab=0
Type 3 (bulge):   263367  (tot=     0002602064) masstab=0
Type 4 (stars):   810085  (tot=     0014803495) masstab=0
Type 5 (bndry):     1740  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.13.hdf5' on task=157 (contains 35790392 particles.)
distributing this file to tasks 157-167
Type 0 (gas):   17090964  (tot=     0271823183) masstab=0
Type 1 (halo):  17683000  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18936  (tot=     0000254233) masstab=0
Type 3 (bulge):   167493  (tot=     0002602064) masstab=0
Type 4 (stars):   828199  (tot=     0014803495) masstab=0
Type 5 (bndry):     1800  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.14.hdf5' on task=168 (contains 35918477 particles.)
distributing this file to tasks 168-173
Type 0 (gas):   16967921  (tot=     0271823183) masstab=0
Type 1 (halo):  17993186  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11553  (tot=     0000254233) masstab=0
Type 3 (bulge):    80966  (tot=     0002602064) masstab=0
Type 4 (stars):   863023  (tot=     0014803495) masstab=0
Type 5 (bndry):     1828  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.1.hdf5' on task=22 (contains 36217981 particles.)
distributing this file to tasks 22-32
Type 0 (gas):   16895132  (tot=     0271823183) masstab=0
Type 1 (halo):  18000369  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14870  (tot=     0000254233) masstab=0
Type 3 (bulge):   204698  (tot=     0002602064) masstab=0
Type 4 (stars):  1101151  (tot=     0014803495) masstab=0
Type 5 (bndry):     1761  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.7.hdf5' on task=84 (contains 36031872 particles.)
distributing this file to tasks 84-89
Type 0 (gas):   16922545  (tot=     0271823183) masstab=0
Type 1 (halo):  17957144  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9359  (tot=     0000254233) masstab=0
Type 3 (bulge):   240956  (tot=     0002602064) masstab=0
Type 4 (stars):   900119  (tot=     0014803495) masstab=0
Type 5 (bndry):     1749  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.12.hdf5' on task=135 (contains 35882948 particles.)
distributing this file to tasks 135-156
Type 0 (gas):   17068516  (tot=     0271823183) masstab=0
Type 1 (halo):  17793136  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20158  (tot=     0000254233) masstab=0
Type 3 (bulge):   198834  (tot=     0002602064) masstab=0
Type 4 (stars):   800586  (tot=     0014803495) masstab=0
Type 5 (bndry):     1718  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.9.hdf5' on task=112 (contains 35944056 particles.)
distributing this file to tasks 112-122
Type 0 (gas):   16927976  (tot=     0271823183) masstab=0
Type 1 (halo):  18028134  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18219  (tot=     0000254233) masstab=0
Type 3 (bulge):   157916  (tot=     0002602064) masstab=0
Type 4 (stars):   810131  (tot=     0014803495) masstab=0
Type 5 (bndry):     1680  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.8.hdf5' on task=90 (contains 35887431 particles.)
distributing this file to tasks 90-111
Type 0 (gas):   16986744  (tot=     0271823183) masstab=0
Type 1 (halo):  17924324  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17197  (tot=     0000254233) masstab=0
Type 3 (bulge):    95166  (tot=     0002602064) masstab=0
Type 4 (stars):   862342  (tot=     0014803495) masstab=0
Type 5 (bndry):     1658  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.11.hdf5' on task=129 (contains 36099147 particles.)
distributing this file to tasks 129-134
Type 0 (gas):   16980357  (tot=     0271823183) masstab=0
Type 1 (halo):  18031805  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15576  (tot=     0000254233) masstab=0
Type 3 (bulge):   206917  (tot=     0002602064) masstab=0
Type 4 (stars):   862849  (tot=     0014803495) masstab=0
Type 5 (bndry):     1643  (tot=     0000027951) masstab=0


reading file `data//snapshot_018_z000p411/snap_018_z000p411.4.hdf5' on task=45 (contains 36052277 particles.)
distributing this file to tasks 45-66
Type 0 (gas):   17073390  (tot=     0271823183) masstab=0
Type 1 (halo):  17778472  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9261  (tot=     0000254233) masstab=0
Type 3 (bulge):   166325  (tot=     0002602064) masstab=0
Type 4 (stars):  1023178  (tot=     0014803495) masstab=0
Type 5 (bndry):     1651  (tot=     0000027951) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576171656


Setting next time for grid output file to Time_next= 0.719693

Setting next time for line of sight file to Time_next= 0.712998

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=3.58167 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7718.79 MB)
Allocated 5.16755 MByte for top-level domain structure
use of 105.514 MB of temporary storage for domain decomposition... (presently allocated=7829.47 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 7829.47 Mbyte (on task=1), Smallest = 7829.47 Mbyte, Average = 7829.47 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      0.1236       2.0193  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag     12.2107      14.2299  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     48.8427      63.0726  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     48.8427     111.9153  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     48.8427     160.7579  allocate_memory()/allocate.c/61
   1 2969 0                 P   3907.4133    4068.1713  allocate_memory()/allocate.c/67
   1 2970 0              SphP   2903.3833    6971.5546  allocate_memory()/allocate.c/85
   1 2971 0              MetP    673.4956    7645.0502  allocate_memory()/allocate.c/105
   1 2972 0               BHP     73.7366    7718.7867  allocate_memory()/allocate.c/126
   1 2975 0          TopNodes      5.0797    7723.9543  domain_allocate()/domain.c/570
   1 2976 0        domain_key     97.6853    7821.6396  domain_Decomposition()/domain.c/231
   1 2987 0        domainWork      0.3907    7822.0386  domain_Decomposition()/domain.c/254
   1 2988 0     domainWorkSph      0.3907    7822.4294  domain_Decomposition()/domain.c/256
   1 2989 0       domainCount      0.3907    7822.8201  domain_Decomposition()/domain.c/258
   1 2990 0    domainCountSph      0.3907    7823.2109  domain_Decomposition()/domain.c/260
   1 2995 0  domainCountStars      0.3907    7823.6044  domain_Decomposition()/domain.c/272
   1 3000 0    domainCountBHs      0.3907    7823.9978  domain_Decomposition()/domain.c/285
   1 3001 0          topNodes      5.4704    7829.4683  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 6.69144 MByte for top-level domain structure
use of 107.858 MB of temporary storage for domain decomposition... (presently allocated=7833.34 MB)
Before=112521
After=132433
NTopleaves= 115879  NTopnodes=132433 (space for 133160)
gravity work-load balance=1.01273   memory-balance=1.01273   SPH work-load balance=1.01088
iter=0 exchange of 0572745727 particles (ret=0)
domain decomposition done. (took 18.0507 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 0.0332794 MByte in top-level domain structure

Allocated 1624.77 MByte for BH-tree, and 0.442043 Mbyte for top-leaves.  (presently allocted 9350.66 MB)

Begin Ngb-tree construction.
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 9862.69 Mbyte (on task=17), Smallest = 9753.96 Mbyte, Average = 9811.71 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
  17 2964 0  Sendcount_matrix      0.1236       2.0193  allocate_memory()/allocate.c/41
  17 2965 0     ProcessedFlag     12.2107      14.2299  allocate_memory()/allocate.c/52
  17 2966 0  NextActiveParticle     48.8427      63.0726  allocate_memory()/allocate.c/55
  17 2967 0     NextInTimeBin     48.8427     111.9153  allocate_memory()/allocate.c/58
  17 2968 0     PrevInTimeBin     48.8427     160.7579  allocate_memory()/allocate.c/61
  17 2969 0                 P   3907.4133    4068.1713  allocate_memory()/allocate.c/67
  17 2970 0              SphP   2903.3833    6971.5546  allocate_memory()/allocate.c/85
  17 2971 0              MetP    673.4956    7645.0502  allocate_memory()/allocate.c/105
  17 2972 0               BHP     73.7366    7718.7867  allocate_memory()/allocate.c/126
  17 2975 0          TopNodes      6.5675    7725.4421  domain_allocate()/domain.c/570
  17 2976 0   DomainNodeIndex      0.4420    7725.8842  force_treeallocate()/forcetree.c/4800
  17 2977 0        Nodes_base    832.6815    8558.5656  force_treeallocate()/forcetree.c/4803
  17 2978 0     Extnodes_base    693.9012    9252.4669  force_treeallocate()/forcetree.c/4811
  17 2979 0          Nextnode     49.3479    9301.8147  force_treeallocate()/forcetree.c/4820
  17 2980 0            Father     48.8427    9350.6574  force_treeallocate()/forcetree.c/4827
  17 2981 0           Ngblist     12.3164    9362.9737  density()/density.c/690
  17 2982 0              Left     24.6327    9387.6065  density()/density.c/692
  17 2983 0             Right     24.6327    9412.2392  density()/density.c/693
  17 2984 0    DataIndexTable      7.0175    9419.2567  density()/density.c/738
  17 2985 0      DataNodeList     18.7134    9437.9702  density()/density.c/740
  17 2986 0       DensDataGet    124.6859    9562.6561  density()/density.c/893
  17 2987 0    DensDataResult    164.3587    9727.0148  density()/density.c/931
  17 2988 0       DensDataOut    135.6724    9862.6872  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0002489576 particles.
ngb iteration 2: need to repeat for 0000001610 particles.
ngb iteration 3: need to repeat for 0000000454 particles.
ngb iteration 4: need to repeat for 0000000412 particles.
ngb iteration 5: need to repeat for 0000000208 particles.
ngb iteration 6: need to repeat for 0000000149 particles.
ngb iteration 7: need to repeat for 0000000071 particles.
ngb iteration 8: need to repeat for 0000000008 particles.
ngb iteration 9: need to repeat for 0000000006 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.399.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.468.hdf5

Begin to compute FoF group catalogues...  (presently allocated=9350.66 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7718.79 MB)
Allocated 6.69144 MByte for top-level domain structure
use of 107.858 MB of temporary storage for domain decomposition... (presently allocated=7833.34 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7838.36 MB)
Before=124841
After=138593
NTopleaves= 121269  NTopnodes=138593 (space for 173108)
gravity work-load balance=1.01363   memory-balance=1.01363   SPH work-load balance=1.01395
iter=0 exchange of 0572731976 particles (ret=0)
domain decomposition done. (took 11.3348 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.57997 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=7725.75 MB)
Tree construction.

Start linking particles (presently allocated=9498.48 MB)
links on local processor done (took 9.51104 sec).
Marked=0045164420 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=9630.52 MB) 
have done 0000821489 cross links (processed 0045164420, took 3.39201 sec)
have done 0000350198 cross links (processed 0032894909, took 3.20098 sec)
have done 0000246692 cross links (processed 0027099531, took 2.70003 sec)
have done 0000160848 cross links (processed 0017010222, took 1.95258 sec)
have done 0000100855 cross links (processed 0010910855, took 2.42248 sec)
have done 0000063203 cross links (processed 0007188707, took 2.1073 sec)
have done 0000042755 cross links (processed 0004503790, took 1.4525 sec)
have done 0000026518 cross links (processed 0002124308, took 1.66753 sec)
have done 0000014918 cross links (processed 0000818681, took 1.17337 sec)
have done 0000006734 cross links (processed 0000280745, took 0.91198 sec)
have done 0000002881 cross links (processed 0000053469, took 0.061167 sec)
have done 0000001293 cross links (processed 0000026369, took 0.0575979 sec)
have done 0000000630 cross links (processed 0000017062, took 0.056627 sec)
have done 0000000285 cross links (processed 0000008667, took 0.059973 sec)
have done 0000000112 cross links (processed 0000001241, took 0.044452 sec)
have done 0000000061 cross links (processed 0000000494, took 0.0440891 sec)
have done 0000000028 cross links (processed 0000000232, took 0.044596 sec)
have done 0000000010 cross links (processed 0000000099, took 0.044188 sec)
have done 0000000004 cross links (processed 0000000030, took 0.0442901 sec)
have done 0000000003 cross links (processed 0000000012, took 0.0441658 sec)
have done 0000000001 cross links (processed 0000000004, took 0.043859 sec)
have done 0000000000 cross links (processed 0000000002, took 0.0442781 sec)
Local groups found.

group finding took = 31.245 sec
Start finding nearest dm-particle (presently allocated=9498.48 MB)
still finding nearest... (presently allocated=9617.46 MB)
fof-nearest iteration 1: need to repeat for 258532136 particles.
still finding nearest... (presently allocated=9619.21 MB)
fof-nearest iteration 2: need to repeat for 245794547 particles.
still finding nearest... (presently allocated=9623.49 MB)
fof-nearest iteration 3: need to repeat for 226192511 particles.
still finding nearest... (presently allocated=9630.43 MB)
fof-nearest iteration 4: need to repeat for 188191862 particles.
still finding nearest... (presently allocated=9634.95 MB)
fof-nearest iteration 5: need to repeat for 130855129 particles.
still finding nearest... (presently allocated=9635.21 MB)
fof-nearest iteration 6: need to repeat for 62506311 particles.
still finding nearest... (presently allocated=9631.47 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 12.6004 sec
compiling local group data and catalogue took = 1.35552 sec

Total number of groups with at least 32 particles: 177416
Largest group has 32862649 particles.
Total number of particles in groups: 0190596259

group properties are now allocated.. (presently allocated=7922.34 MB)
computation of group properties took = 0.207231 sec
start global sorting of group catalogues number 18
LargestGroup = 13746.047604; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.0778501 sec
Group catalogues globally sorted. took = 1.18298 sec
starting saving of group catalogue number 18
data//groups_018_z000p411
Group catalogues number 18 saved. took = 3.1518 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (271823183).
tree build for species 0 took 0.895936 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0185570892 particles. (took 21.7943 sec)
ngb iteration 2: need to repeat for 0138645495 particles. (took 14.1282 sec)
ngb iteration 3: need to repeat for 0123661875 particles. (took 9.25989 sec)
ngb iteration 4: need to repeat for 0113964336 particles. (took 7.79069 sec)
ngb iteration 5: need to repeat for 0101992584 particles. (took 7.0159 sec)
ngb iteration 6: need to repeat for 0083937939 particles. (took 6.27393 sec)
ngb iteration 7: need to repeat for 0061317772 particles. (took 5.23735 sec)
ngb iteration 8: need to repeat for 0039937381 particles. (took 3.9656 sec)
ngb iteration 9: need to repeat for 0023798445 particles. (took 2.73702 sec)
ngb iteration 10: need to repeat for 0013349583 particles. (took 1.79041 sec)
ngb iteration 11: need to repeat for 0007212943 particles. (took 1.14286 sec)
ngb iteration 12: need to repeat for 0003814051 particles. (took 0.693223 sec)
ngb iteration 13: need to repeat for 0001996081 particles. (took 0.409019 sec)
ngb iteration 14: need to repeat for 0000941989 particles. (took 0.257929 sec)
ngb iteration 15: need to repeat for 0000289004 particles. (took 0.176523 sec)
ngb iteration 16: need to repeat for 0000098214 particles. (took 0.097985 sec)
ngb iteration 17: need to repeat for 0000041600 particles. (took 0.0765278 sec)
ngb iteration 18: need to repeat for 0000022331 particles. (took 0.0699382 sec)
ngb iteration 19: need to repeat for 0000013681 particles. (took 0.066735 sec)
ngb iteration 20: need to repeat for 0000009131 particles. (took 0.0639369 sec)
ngb iteration 21: need to repeat for 0000006355 particles. (took 0.0621972 sec)
ngb iteration 22: need to repeat for 0000004552 particles. (took 0.0616708 sec)
ngb iteration 23: need to repeat for 0000003258 particles. (took 0.0617509 sec)
ngb iteration 24: need to repeat for 0000002282 particles. (took 0.061373 sec)
ngb iteration 25: need to repeat for 0000001599 particles. (took 0.061352 sec)
ngb iteration 26: need to repeat for 0000001117 particles. (took 0.0613339 sec)
ngb iteration 27: need to repeat for 0000000740 particles. (took 0.061527 sec)
ngb iteration 28: need to repeat for 0000000484 particles. (took 0.0615082 sec)
ngb iteration 29: need to repeat for 0000000293 particles. (took 0.061408 sec)
ngb iteration 30: need to repeat for 0000000181 particles. (took 0.061413 sec)
ngb iteration 31: need to repeat for 0000000107 particles. (took 0.061311 sec)
ngb iteration 32: need to repeat for 0000000054 particles. (took 0.061022 sec)
ngb iteration 33: need to repeat for 0000000035 particles. (took 0.0614769 sec)
ngb iteration 34: need to repeat for 0000000021 particles. (took 0.0614231 sec)
ngb iteration 35: need to repeat for 0000000016 particles. (took 0.0612051 sec)
ngb iteration 36: need to repeat for 0000000009 particles. (took 0.0612869 sec)
ngb iteration 37: need to repeat for 0000000003 particles. (took 0.0610719 sec)
ngb iteration 38: need to repeat for 0000000001 particles. (took 0.061131 sec)
ngb iteration 39: need to repeat for 0000000001 particles. (took 0.061254 sec)
final operations ... 
density and smoothing length for species 0 took 84.7121 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 1.0021 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0189542867 particles. (took 32.711 sec)
ngb iteration 2: need to repeat for 0139693043 particles. (took 15.149 sec)
ngb iteration 3: need to repeat for 0118160090 particles. (took 9.9998 sec)
ngb iteration 4: need to repeat for 0106053274 particles. (took 7.88491 sec)
ngb iteration 5: need to repeat for 0094570290 particles. (took 6.77369 sec)
ngb iteration 6: need to repeat for 0079145847 particles. (took 5.95005 sec)
ngb iteration 7: need to repeat for 0060142858 particles. (took 5.00551 sec)
ngb iteration 8: need to repeat for 0041514771 particles. (took 3.8918 sec)
ngb iteration 9: need to repeat for 0026540819 particles. (took 2.80738 sec)
ngb iteration 10: need to repeat for 0016073973 particles. (took 1.93105 sec)
ngb iteration 11: need to repeat for 0009408929 particles. (took 1.29453 sec)
ngb iteration 12: need to repeat for 0005405578 particles. (took 0.85048 sec)
ngb iteration 13: need to repeat for 0003081640 particles. (took 0.539566 sec)
ngb iteration 14: need to repeat for 0001671287 particles. (took 0.343367 sec)
ngb iteration 15: need to repeat for 0000788367 particles. (took 0.22218 sec)
ngb iteration 16: need to repeat for 0000394653 particles. (took 0.137213 sec)
ngb iteration 17: need to repeat for 0000208012 particles. (took 0.101617 sec)
ngb iteration 18: need to repeat for 0000112654 particles. (took 0.0842249 sec)
ngb iteration 19: need to repeat for 0000061234 particles. (took 0.0753529 sec)
ngb iteration 20: need to repeat for 0000032889 particles. (took 0.0706351 sec)
ngb iteration 21: need to repeat for 0000016947 particles. (took 0.06793 sec)
ngb iteration 22: need to repeat for 0000008470 particles. (took 0.0662498 sec)
ngb iteration 23: need to repeat for 0000004143 particles. (took 0.0645201 sec)
ngb iteration 24: need to repeat for 0000001900 particles. (took 0.0643039 sec)
ngb iteration 25: need to repeat for 0000000798 particles. (took 0.063849 sec)
ngb iteration 26: need to repeat for 0000000317 particles. (took 0.063622 sec)
ngb iteration 27: need to repeat for 0000000122 particles. (took 0.0633769 sec)
ngb iteration 28: need to repeat for 0000000042 particles. (took 0.063534 sec)
ngb iteration 29: need to repeat for 0000000014 particles. (took 0.0634282 sec)
ngb iteration 30: need to repeat for 0000000004 particles. (took 0.0636091 sec)
ngb iteration 31: need to repeat for 0000000001 particles. (took 0.063441 sec)
final operations ... 
density and smoothing length for species 1 took 97.0455 sec
Tree construction for species 4 (14803495).
tree build for species 4 took 0.185955 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0009553282 particles. (took 7.42262 sec)
ngb iteration 2: need to repeat for 0007446808 particles. (took 2.84704 sec)
ngb iteration 3: need to repeat for 0006075039 particles. (took 1.95184 sec)
ngb iteration 4: need to repeat for 0005246157 particles. (took 1.51099 sec)
ngb iteration 5: need to repeat for 0004633229 particles. (took 1.14512 sec)
ngb iteration 6: need to repeat for 0004019895 particles. (took 0.963797 sec)
ngb iteration 7: need to repeat for 0003339181 particles. (took 0.816823 sec)
ngb iteration 8: need to repeat for 0002645165 particles. (took 0.656932 sec)
ngb iteration 9: need to repeat for 0002006334 particles. (took 0.529713 sec)
ngb iteration 10: need to repeat for 0001476660 particles. (took 0.443886 sec)
ngb iteration 11: need to repeat for 0001067882 particles. (took 0.366072 sec)
ngb iteration 12: need to repeat for 0000765885 particles. (took 0.304741 sec)
ngb iteration 13: need to repeat for 0000545788 particles. (took 0.24295 sec)
ngb iteration 14: need to repeat for 0000386321 particles. (took 0.194905 sec)
ngb iteration 15: need to repeat for 0000269652 particles. (took 0.162227 sec)
ngb iteration 16: need to repeat for 0000189319 particles. (took 0.143211 sec)
ngb iteration 17: need to repeat for 0000134585 particles. (took 0.126173 sec)
ngb iteration 18: need to repeat for 0000096902 particles. (took 0.112105 sec)
ngb iteration 19: need to repeat for 0000070065 particles. (took 0.108317 sec)
ngb iteration 20: need to repeat for 0000051207 particles. (took 0.103481 sec)
ngb iteration 21: need to repeat for 0000038237 particles. (took 0.104846 sec)
ngb iteration 22: need to repeat for 0000029055 particles. (took 0.097692 sec)
ngb iteration 23: need to repeat for 0000022100 particles. (took 0.0947411 sec)
ngb iteration 24: need to repeat for 0000016797 particles. (took 0.0901859 sec)
ngb iteration 25: need to repeat for 0000012622 particles. (took 0.0873179 sec)
ngb iteration 26: need to repeat for 0000009497 particles. (took 0.0854299 sec)
ngb iteration 27: need to repeat for 0000007119 particles. (took 0.0841532 sec)
ngb iteration 28: need to repeat for 0000005165 particles. (took 0.0841069 sec)
ngb iteration 29: need to repeat for 0000003590 particles. (took 0.084132 sec)
ngb iteration 30: need to repeat for 0000002400 particles. (took 0.0836349 sec)
ngb iteration 31: need to repeat for 0000001555 particles. (took 0.0837281 sec)
ngb iteration 32: need to repeat for 0000000934 particles. (took 0.0838449 sec)
ngb iteration 33: need to repeat for 0000000503 particles. (took 0.083277 sec)
ngb iteration 34: need to repeat for 0000000267 particles. (took 0.083446 sec)
ngb iteration 35: need to repeat for 0000000125 particles. (took 0.0827591 sec)
ngb iteration 36: need to repeat for 0000000060 particles. (took 0.0831089 sec)
ngb iteration 37: need to repeat for 0000000024 particles. (took 0.082963 sec)
ngb iteration 38: need to repeat for 0000000011 particles. (took 0.0820899 sec)
ngb iteration 39: need to repeat for 0000000007 particles. (took 0.082813 sec)
ngb iteration 40: need to repeat for 0000000001 particles. (took 0.0826559 sec)
final operations ... 
density and smoothing length for species 4 took 22.3076 sec
Tree construction.
tree build took 1.94999 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000020372 particles. (took 0.130343 sec)
ngb iteration 2: need to repeat for 0000018120 particles. (took 0.102087 sec)
ngb iteration 3: need to repeat for 0000012427 particles. (took 0.101682 sec)
ngb iteration 4: need to repeat for 0000008661 particles. (took 0.101386 sec)
ngb iteration 5: need to repeat for 0000007433 particles. (took 0.097966 sec)
ngb iteration 6: need to repeat for 0000006422 particles. (took 0.0963509 sec)
ngb iteration 7: need to repeat for 0000005321 particles. (took 0.0950582 sec)
ngb iteration 8: need to repeat for 0000004111 particles. (took 0.095077 sec)
ngb iteration 9: need to repeat for 0000002922 particles. (took 0.0904021 sec)
ngb iteration 10: need to repeat for 0000001986 particles. (took 0.08881 sec)
ngb iteration 11: need to repeat for 0000001278 particles. (took 0.0871398 sec)
ngb iteration 12: need to repeat for 0000000814 particles. (took 0.0859392 sec)
ngb iteration 13: need to repeat for 0000000506 particles. (took 0.0843799 sec)
ngb iteration 14: need to repeat for 0000000336 particles. (took 0.0863101 sec)
ngb iteration 15: need to repeat for 0000000206 particles. (took 0.0839479 sec)
ngb iteration 16: need to repeat for 0000000121 particles. (took 0.0833821 sec)
ngb iteration 17: need to repeat for 0000000069 particles. (took 0.0832758 sec)
ngb iteration 18: need to repeat for 0000000046 particles. (took 0.0832269 sec)
ngb iteration 19: need to repeat for 0000000033 particles. (took 0.082803 sec)
ngb iteration 20: need to repeat for 0000000021 particles. (took 0.082972 sec)
ngb iteration 21: need to repeat for 0000000014 particles. (took 0.0828991 sec)
ngb iteration 22: need to repeat for 0000000008 particles. (took 0.082705 sec)
ngb iteration 23: need to repeat for 0000000006 particles. (took 0.082613 sec)
ngb iteration 24: need to repeat for 0000000006 particles. (took 0.0820422 sec)
ngb iteration 25: need to repeat for 0000000005 particles. (took 0.0827329 sec)
ngb iteration 26: need to repeat for 0000000004 particles. (took 0.0823638 sec)
ngb iteration 27: need to repeat for 0000000004 particles. (took 0.0819719 sec)
ngb iteration 28: need to repeat for 0000000003 particles. (took 0.0823369 sec)
ngb iteration 29: need to repeat for 0000000001 particles. (took 0.0824089 sec)
ngb iteration 30: need to repeat for 0000000001 particles. (took 0.0818648 sec)
ngb iteration 31: need to repeat for 0000000001 particles. (took 0.0824599 sec)
final operations ... 
density and smoothing length for species 5 took 3.16759 sec
Tree construction for species 0 (271823183).
tree build for species 0 took 0.88785 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 45.4922 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.989919 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 21.9878 sec
Tree construction for species 4 (14803495).
tree build for species 4 took 0.177821 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 8.05692 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.092144 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 5.90725 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 1.8 sec
saving densities took 3.69902 sec

Number of FOF halos treated with collective SubFind code = 1
(the adopted size-limit for the collective algorithm was 8962668 particles.)
the other 177415 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 31220 - 112705452 

subfind_exchange()() took 2.89161 sec

collectively doing halo 1, num=18
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=11544.4 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=11664 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 11664 Mbyte (on task=0), Smallest = 8089.92 Mbyte, Average = 8157.13 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9142  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4133    4068.1702  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2903.3833    6971.5535  allocate_memory()/allocate.c/85
   0 2971 0              MetP    673.4956    7645.0491  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.7366    7718.7857  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8730    7725.7466  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.2223    7798.9688  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    122.0371    7921.0060  fof_fof()/fof.c/337
   0 2978 0             Group      1.3292    7922.3351  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3622.0562   11544.3913  subfind()/subfind.c/376
   0 2982 0          TopNodes      8.5846   11553.0638  domain_allocate()/domain.c/570
   0 2983 0        domain_key     97.6853   11650.7492  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      0.6604   11651.4178  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      0.6604   11652.0781  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      0.6604   11652.7385  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      0.6604   11653.3988  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      0.6604   11654.0619  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      0.6604   11654.7250  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes      9.2450   11663.9700  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=89833
After=116433
NTopleaves= 101879  NTopnodes=116433 (space for 173108)
gravity work-load balance=1.01269   memory-balance=1.01269   SPH work-load balance=1.01208
iter=0 exchange of 0032703552 particles (ret=0)
domain decomposition done. (took 2.26688 sec)
Freed 2.59438 MByte in top-level domain structure

At 'SUBFIND', subfind_process_group_collectively()/subfind_collective.c/274: Largest Allocation = 13172.7 Mbyte (on task=0), Smallest = 9598.62 Mbyte, Average = 9665.82 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9142  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4133    4068.1702  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2903.3833    6971.5535  allocate_memory()/allocate.c/85
   0 2971 0              MetP    673.4956    7645.0491  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.7366    7718.7857  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8730    7725.7466  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.2223    7798.9688  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    122.0371    7921.0060  fof_fof()/fof.c/337
   0 2978 0             Group      1.3292    7922.3351  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3622.0562   11544.3913  subfind()/subfind.c/376
   0 2982 0          TopNodes      5.7740   11550.2533  domain_allocate()/domain.c/570
   0 2983 0   DomainNodeIndex      0.3886   11550.6419  force_treeallocate()/forcetree.c/4800
   0 2984 0        Nodes_base    831.2166   12381.8585  force_treeallocate()/forcetree.c/4803
   0 2985 0     Extnodes_base    692.6805   13074.5390  force_treeallocate()/forcetree.c/4811
   0 2986 0          Nextnode     49.2868   13123.8259  force_treeallocate()/forcetree.c/4820
   0 2987 0            Father     48.8427   13172.6685  force_treeallocate()/forcetree.c/4827
----------------------------------------------------------------------------------------
coldomain_Decomposition() took 2.87519 sec  (presently allocated=13172.7 MB)
force_treebuild() took 4.56682 sec (presently allocated=13172.7 MB)
Start find_linkngb (182198 particles on task=0)
find linkngb iteration 1: need to repeat for 0028303074 particles. (took 5.06746 sec)
find linkngb iteration 2: need to repeat for 0025079563 particles. (took 3.10159 sec)
find linkngb iteration 3: need to repeat for 0021442547 particles. (took 1.98214 sec)
find linkngb iteration 4: need to repeat for 0019849142 particles. (took 1.38651 sec)
find linkngb iteration 5: need to repeat for 0017526867 particles. (took 1.27327 sec)
find linkngb iteration 6: need to repeat for 0014293269 particles. (took 1.11978 sec)
find linkngb iteration 7: need to repeat for 0010344245 particles. (took 0.930154 sec)
find linkngb iteration 8: need to repeat for 0006656641 particles. (took 0.690322 sec)
find linkngb iteration 9: need to repeat for 0003931493 particles. (took 0.460825 sec)
find linkngb iteration 10: need to repeat for 0002206332 particles. (took 0.268496 sec)
find linkngb iteration 11: need to repeat for 0001201816 particles. (took 0.148084 sec)
find linkngb iteration 12: need to repeat for 0000625717 particles. (took 0.087028 sec)
find linkngb iteration 13: need to repeat for 0000209191 particles. (took 0.04968 sec)
find linkngb iteration 14: need to repeat for 0000060596 particles. (took 0.0202639 sec)
find linkngb iteration 15: need to repeat for 0000027884 particles. (took 0.00901508 sec)
find linkngb iteration 16: need to repeat for 0000014068 particles. (took 0.00568008 sec)
find linkngb iteration 17: need to repeat for 0000007240 particles. (took 0.00425696 sec)
find linkngb iteration 18: need to repeat for 0000003644 particles. (took 0.00307608 sec)
find linkngb iteration 19: need to repeat for 0000001905 particles. (took 0.002038 sec)
find linkngb iteration 20: need to repeat for 0000001082 particles. (took 0.00145006 sec)
find linkngb iteration 21: need to repeat for 0000000651 particles. (took 0.00106502 sec)
find linkngb iteration 22: need to repeat for 0000000394 particles. (took 0.000980854 sec)
find linkngb iteration 23: need to repeat for 0000000241 particles. (took 0.000910997 sec)
find linkngb iteration 24: need to repeat for 0000000140 particles. (took 0.000869989 sec)
find linkngb iteration 25: need to repeat for 0000000081 particles. (took 0.000874043 sec)
find linkngb iteration 26: need to repeat for 0000000046 particles. (took 0.000838995 sec)
find linkngb iteration 27: need to repeat for 0000000024 particles. (took 0.000832081 sec)
find linkngb iteration 28: need to repeat for 0000000010 particles. (took 0.000834942 sec)
find linkngb iteration 29: need to repeat for 0000000004 particles. (took 0.000833035 sec)
find linkngb iteration 30: need to repeat for 0000000003 particles. (took 0.000882149 sec)
find_linkngb() took 16.6228 sec
Start finding nearest two (182198 particles on task=0)
find_nearesttwo() took 2.02919 sec (presently allocated=13186.6 MB)
parallel sort of densities done. took 0.222289 sec
building distributed linked list. (presently allocated 13184.8 MB)
identification of primary candidates took 618.947 sec
adding background as candidate took 0.086477 sec
establishing of rank order took 207.51 sec  (p=32862649, grouplen=32862649) presently allocated 13184.8 MB

total number of subhalo candidates=119056

number of subhalo candidates that can be done independently=102755.
(Largest size is 3961, finding them took 0.049166 sec)
particles are marked (took 104.456)
independent subhalos are assembled on individual CPUs for unbinding (0.235775 sec, (presently allocated=13184.8 MB)
unbinding of independent ones took 0.140402 sec
particles have returned to their original processor (0.304142 sec, presently allocated 13184.8 MB)

number of subhalo candidates that can be done independently=14677.
(Largest size is 20232, finding them took 2.41139 sec)
particles are marked (took 74.649)
independent subhalos are assembled on individual CPUs for unbinding (0.214712 sec, (presently allocated=13184.8 MB)
unbinding of independent ones took 1.17615 sec
particles have returned to their original processor (0.282783 sec, presently allocated 13184.8 MB)

number of subhalo candidates that can be done independently=1477.
(Largest size is 79419, finding them took 2.35716 sec)
particles are marked (took 62.2224)
independent subhalos are assembled on individual CPUs for unbinding (0.199586 sec, (presently allocated=13184.8 MB)
unbinding of independent ones took 3.51137 sec
particles have returned to their original processor (0.270967 sec, presently allocated 13184.8 MB)

number of subhalo candidates that can be done independently=128.
(Largest size is 883124, finding them took 2.33089 sec)
particles are marked (took 55.6834)
independent subhalos are assembled on individual CPUs for unbinding (0.190779 sec, (presently allocated=13184.8 MB)
unbinding of independent ones took 5.53421 sec
particles have returned to their original processor (0.259393 sec, presently allocated 13184.8 MB)

number of subhalo candidates that can be done independently=13.
(Largest size is 883124, finding them took 0.850469 sec)
particles are marked (took 51.9402)
independent subhalos are assembled on individual CPUs for unbinding (0.184406 sec, (presently allocated=13184.8 MB)
unbinding of independent ones took 12.3098 sec
particles have returned to their original processor (0.261815 sec, presently allocated 13184.8 MB)

number of subhalo candidates that can be done independently=2.
(Largest size is 883124, finding them took 1.34491 sec)
particles are marked (took 48.1986)
independent subhalos are assembled on individual CPUs for unbinding (0.175494 sec, (presently allocated=13184.8 MB)
unbinding of independent ones took 6.74584 sec
particles have returned to their original processor (0.25527 sec, presently allocated 13184.8 MB)

number of subhalo candidates that can be done independently=0.
(Largest size is 883124, finding them took 1.10191 sec)
too few, I do the rest of 4 collectively

collective unbinding of nr=0 (4) of length=785431 ... maximum alloacted 13185.5 MB
took 9.34533 sec
collective unbinding of nr=1 (4) of length=748286 ... maximum alloacted 13185.5 MB
took 10.1831 sec
collective unbinding of nr=2 (4) of length=883124 ... maximum alloacted 13185.5 MB
took 12.5342 sec
collective unbinding of nr=3 (4) of length=32862649 ... maximum alloacted 13185.5 MB
took 435.213 sec

the collective unbinding of remaining halos took 510.739 sec

found 6768 bound substructures in FoF group of length 32862649
determination of parent subhalo took 0.065001 sec (presently allocated 13185.5 MB)
determining substructure properties took 443.871 sec (presently allocated 13185.5 MB)
processing of collective halos took 2269.12 sec
sort of local particles()() took 1.31116 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 1245.62 sec

Task 162: testing particles ...
unsorting of local particles()() took 1.20207 sec
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Task 20: testing particles ...
Task 14: testing particles ...
Task 15: testing particles ...
Task 16: testing particles ...
Task 12: testing particles ...
Task 13: testing particles ...
Task 11: testing particles ...
Task 9: testing particles ...
Task 10: testing particles ...
Task 8: testing particles ...
Task 7: testing particles ...
Task 5: testing particles ...
Task 6: testing particles ...
Task 4: testing particles ...
Task 2: testing particles ...
Task 3: testing particles ...
Task 1: testing particles ...
subfind_exchange() (for return to original CPU)  took 6.84194 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=11544.4 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=11664 MB)
Before=126561
After=139529
NTopleaves= 122088  NTopnodes=139529 (space for 173108)
gravity work-load balance=1.01969   memory-balance=1.01969   SPH work-load balance=1.01699
iter=0 exchange of 0573423250 particles (ret=0)
domain decomposition done. (took 10.1196 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.53712 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000143082 particles. (took 0.0302229 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.0252671 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.0262561 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.0259662 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.0262239 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.0261841 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.0260799 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.026139 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.026123 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.0259819 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.026072 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.0258651 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.0259929 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.025985 sec)
SO iteration 15: need to repeat for 0000140866 particles. (took 0.025985 sec)
SO iteration 16: need to repeat for 0000000701 particles. (took 0.0242851 sec)
SO iteration 17: need to repeat for 0000000036 particles. (took 0.00122595 sec)
SO iteration 1: need to repeat for 0000143082 particles. (took 0.027225 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.0205929 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.0223279 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.022342 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.021699 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.0218 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.0218141 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.0218749 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.0219328 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.0219071 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.0218701 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.021888 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.0218241 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.0217488 sec)
SO iteration 15: need to repeat for 0000142205 particles. (took 0.021826 sec)
SO iteration 16: need to repeat for 0000022904 particles. (took 0.021688 sec)
SO iteration 17: need to repeat for 0000000330 particles. (took 0.00642109 sec)
SO iteration 18: need to repeat for 0000000025 particles. (took 0.000720024 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.00047493 sec)
SO iteration 1: need to repeat for 0000143082 particles. (took 0.026859 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.020195 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.0173759 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.018631 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.0178308 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.017967 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.0178981 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.0179088 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.0179431 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.01792 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.01791 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.0179811 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.0179029 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.0180299 sec)
SO iteration 15: need to repeat for 0000143064 particles. (took 0.017895 sec)
SO iteration 16: need to repeat for 0000141702 particles. (took 0.0179441 sec)
SO iteration 17: need to repeat for 0000032429 particles. (took 0.017807 sec)
SO iteration 18: need to repeat for 0000000607 particles. (took 0.00818896 sec)
SO iteration 19: need to repeat for 0000000041 particles. (took 0.000749111 sec)
SO iteration 20: need to repeat for 0000000001 particles. (took 0.000469923 sec)
SO iteration 1: need to repeat for 0000143082 particles. (took 0.026931 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.0209341 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.023591 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.024559 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.028583 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.0247788 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.0247831 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.024796 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.024828 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.024889 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.024811 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.0248051 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.0248039 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.026417 sec)
SO iteration 15: need to repeat for 0000141000 particles. (took 0.0282271 sec)
SO iteration 16: need to repeat for 0000001389 particles. (took 0.024334 sec)
SO iteration 17: need to repeat for 0000000064 particles. (took 0.00160098 sec)
SO iteration 18: need to repeat for 0000000002 particles. (took 0.000582933 sec)
SO iteration 1: need to repeat for 0000143082 particles. (took 0.0268021 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.020762 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.02315 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.0230849 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.0229678 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.023042 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.023293 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.025115 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.0230269 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.0230231 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.0229292 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.022913 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.0229809 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.027591 sec)
SO iteration 15: need to repeat for 0000141496 particles. (took 0.030715 sec)
SO iteration 16: need to repeat for 0000006520 particles. (took 0.0272131 sec)
SO iteration 17: need to repeat for 0000000163 particles. (took 0.00549483 sec)
SO iteration 18: need to repeat for 0000000008 particles. (took 0.00323391 sec)
SO iteration 1: need to repeat for 0000143082 particles. (took 0.0314569 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.0244019 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.0216789 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.0211182 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.021162 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.0204701 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.0203359 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.020304 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.0206749 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.0242071 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.0204911 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.0204859 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.0207119 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.025471 sec)
SO iteration 15: need to repeat for 0000142849 particles. (took 0.0208619 sec)
SO iteration 16: need to repeat for 0000141111 particles. (took 0.020436 sec)
SO iteration 17: need to repeat for 0000001498 particles. (took 0.02002 sec)
SO iteration 18: need to repeat for 0000000089 particles. (took 0.00153089 sec)
SO iteration 19: need to repeat for 0000000002 particles. (took 0.000460863 sec)
SO iteration 1: need to repeat for 0000143082 particles. (took 0.0268009 sec)
SO iteration 2: need to repeat for 0000143082 particles. (took 0.0258079 sec)
SO iteration 3: need to repeat for 0000143082 particles. (took 0.017318 sec)
SO iteration 4: need to repeat for 0000143082 particles. (took 0.016362 sec)
SO iteration 5: need to repeat for 0000143082 particles. (took 0.021317 sec)
SO iteration 6: need to repeat for 0000143082 particles. (took 0.01719 sec)
SO iteration 7: need to repeat for 0000143082 particles. (took 0.0244682 sec)
SO iteration 8: need to repeat for 0000143082 particles. (took 0.016989 sec)
SO iteration 9: need to repeat for 0000143082 particles. (took 0.0169971 sec)
SO iteration 10: need to repeat for 0000143082 particles. (took 0.016995 sec)
SO iteration 11: need to repeat for 0000143082 particles. (took 0.0170338 sec)
SO iteration 12: need to repeat for 0000143082 particles. (took 0.017035 sec)
SO iteration 13: need to repeat for 0000143082 particles. (took 0.016989 sec)
SO iteration 14: need to repeat for 0000143082 particles. (took 0.0169601 sec)
SO iteration 15: need to repeat for 0000143081 particles. (took 0.0169721 sec)
SO iteration 16: need to repeat for 0000142665 particles. (took 0.016927 sec)
SO iteration 17: need to repeat for 0000134650 particles. (took 0.0169411 sec)
SO iteration 18: need to repeat for 0000003429 particles. (took 0.0164258 sec)
SO iteration 19: need to repeat for 0000000137 particles. (took 0.00193 sec)
SO iteration 20: need to repeat for 0000000004 particles. (took 0.000538111 sec)
determining spherical overdensity masses took 2.63192 sec
finding spherical overdensity particles took 0.335322 sec
determining contamination of halos took 0.196103 sec
Global sort of Groups took 0.0423501 sec
Global sort of SubGroups took 0.118946 sec
Global sort of IDs took 0.639221 sec
Writing block 0 (GLEN), n=986, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3944d
Writing block 1 (GOFF), n=986, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3944d
Writing block 2 (MTOT), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 3 (GPOS), n=986, ptype=0, dtype=1, ndim=3, bpb=4 bytes=11832d
Writing block 4 (MMEA), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 5 (RMEA), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 6 (MCRI), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 7 (RCRI), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 8 (MTOP), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 9 (RTOP), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 17 (NCON), n=986, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3944d
Writing block 18 (MCON), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 22 (NSUB), n=986, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3944d
Writing block 23 (FSUB), n=986, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3944d
Writing block 24 (SLEN), n=7738, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30952d
Writing block 25 (SOFF), n=7738, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30952d
Writing block 26 (SSUB), n=7738, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30952d
Writing block 27 (MSUB), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 28 (SPOS), n=7738, ptype=1, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 29 (SVEL), n=7738, ptype=1, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 30 (SCM ), n=7738, ptype=1, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 33 (VMAX), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 34 (RMAX), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 35 (RHMS), n=7738, ptype=1, dtype=1, ndim=6, bpb=4 bytes=185712d
Writing block 36 (MTRH), n=7738, ptype=1, dtype=1, ndim=6, bpb=4 bytes=185712d
Writing block 37 (MBID), n=7738, ptype=1, dtype=2, ndim=1, bpb=8 bytes=61904d
Writing block 38 (GRNR), n=7738, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30952d
Writing block 39 (SUBN), n=7738, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30952d
Writing block 40 (SMST), n=7738, ptype=1, dtype=1, ndim=6, bpb=4 bytes=185712d
Writing block 53 (PID ), n=1093823, ptype=2, dtype=2, ndim=1, bpb=8 bytes=8750584d
Writing block 54 (SLEN), n=7738, ptype=1, dtype=0, ndim=6, bpb=4 bytes=185712d
Writing block 55 (STEN), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 56 (SKEN), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 57 (SUEN), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 58 (SUIT), n=7738, ptype=1, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 59 (BHMA), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 60 (BHMD), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 61 (SVD ), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 62 (SVDH), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 63 (HMPR), n=7738, ptype=1, dtype=1, ndim=6, bpb=4 bytes=185712d
Writing block 64 (SSFR), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 65 (SSA ), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 66 (SSBZ), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 67 (SSIM), n=7738, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 68 (SSPI), n=7738, ptype=4, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 69 (GSPI), n=7738, ptype=1, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 70 (FSPI), n=7738, ptype=5, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 71 (SFM ), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 72 (SFMT), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 73 (SFME), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 74 (SFAE), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 75 (SFKE), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 76 (SFTE), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 77 (SMWP), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 78 (SMM ), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 79 (SMMS), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 80 (SFZ ), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 81 (SFZS), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 82 (SSIA), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 83 (SIAS), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 84 (SMET), n=7738, ptype=5, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 85 (SMTS), n=7738, ptype=5, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 86 (MF1 ), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 87 (MeF1), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 88 (MF  ), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 89 (MeF2), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 90 (MFA ), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 91 (MeFA), n=7738, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 92 (NSPI), n=7738, ptype=6, dtype=1, ndim=3, bpb=4 bytes=92856d
Writing block 93 (NFM ), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 94 (NFMT), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 95 (NFME), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 96 (NFAE), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 97 (NFKE), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 98 (NFTE), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 99 (SMWP), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 100 (SMM ), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 101 (SMMS), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 102 (SSIA), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 103 (SIAS), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 104 (SMET), n=7738, ptype=6, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 105 (SMTS), n=7738, ptype=6, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 106 (MF1 ), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 107 (MeF1), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 108 (MF2 ), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 109 (MeF2), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 110 (MFA ), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 111 (MeFA), n=7738, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 112 (SM  ), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 113 (SFKE), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 114 (SFAE), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 115 (SMWP), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 116 (SMM ), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 117 (SMMS), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 118 (SSIA), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 119 (SIAS), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 120 (SMET), n=7738, ptype=4, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 121 (SMTS), n=7738, ptype=4, dtype=1, ndim=9, bpb=4 bytes=278568d
Writing block 122 (MF1 ), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 123 (MeF1), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 124 (MF2 ), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 125 (MeF2), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 126 (MFA ), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 127 (MeFA), n=7738, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30952d
Writing block 128 (MMe5), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 129 (RMe5), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 130 (MCr5), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 131 (RCr5), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 132 (MMe2), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 133 (RMe2), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 134 (MCr2), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 135 (RCr2), n=986, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3944d
Writing block 136 (MAPT), n=7738, ptype=7, dtype=1, ndim=60, bpb=4 bytes=1857120d
Writing block 137 (SAPT), n=7738, ptype=8, dtype=1, ndim=10, bpb=4 bytes=309520d
Writing block 138 (VAPT), n=7738, ptype=9, dtype=1, ndim=10, bpb=4 bytes=309520d
Writing block 139 (BEGY), n=1093823, ptype=2, dtype=1, ndim=1, bpb=4 bytes=4375292d
Subgroup catalogues saved. took = 10.4175 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 6.933711e-01
 eagle_ph_key_ort: type= 1 timed by volker 8.080201e-01
 eagle_ph_key_ort: type= 2 timed by volker 7.672310e-02
 eagle_ph_key_ort: type= 3 timed by volker 3.759193e-02
 eagle_ph_key_ort: type= 4 timed by volker 9.095383e-02
 eagle_ph_key_ort: type= 5 timed by volker 2.891493e-02
 eagle_ph_key_ort: timing parallel sort = 1.839812e+00
 eagle_fetch_elements: we are using 1997745196 bytes of memory, FreeBytes= 2497181496

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 11618.5 Mbyte (on task=0), Smallest = 8042.26 Mbyte, Average = 8110.81 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9142  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4133    4068.1702  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2903.3833    6971.5535  allocate_memory()/allocate.c/85
   0 2971 0              MetP    673.4956    7645.0491  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.7366    7718.7857  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8730    7725.7466  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.2223    7798.9688  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    122.0371    7921.0060  fof_fof()/fof.c/337
   0 2978 0             Group      1.3292    7922.3351  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3622.0562   11544.3913  subfind()/subfind.c/376
   0 2980 0   sort_index_data     74.1108   11618.5021  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1462068 number of bytes = 467861760

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 13515.8 Mbyte (on task=0), Smallest = 9910.28 Mbyte, Average = 9996.77 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9142  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4133    4068.1702  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2903.3833    6971.5535  allocate_memory()/allocate.c/85
   0 2971 0              MetP    673.4956    7645.0491  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.7366    7718.7857  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8730    7725.7466  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.2223    7798.9688  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    122.0371    7921.0060  fof_fof()/fof.c/337
   0 2978 0             Group      1.3292    7922.3351  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3622.0562   11544.3913  subfind()/subfind.c/376
   0 2980 0   sort_index_data     74.1108   11618.5021  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      5.5773   11624.0795  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      5.5773   11629.6568  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      5.5773   11635.2342  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    446.1877   12081.4219  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    446.1877   12527.6097  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    988.1442   13515.7539  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 4.858085e+00
 eagle_fetch_elements: we are using 1997745196 bytes of memory, FreeBytes= 2497181496
 eagle_fetch_elements: max_bytes= 504, max_elements= 1199715 number of bytes = 604656360
 eagle_ph_key_ort: timing parallel SphP exchange = 3.660974e+00
 eagle_fetch_elements: we are using 1997745196 bytes of memory, FreeBytes= 2497181496
 eagle_fetch_elements: max_bytes= 384, max_elements= 2478755 number of bytes = 951841920
 eagle_ph_key_ort: timing parallel MetP exchange = 3.787498e-01
 eagle_fetch_elements: we are using 1997745196 bytes of memory, FreeBytes= 2497181496
 eagle_fetch_elements: max_bytes= 256, max_elements= 3812385 number of bytes = 975970560
 eagle_ph_key_ort: timing parallel BHP exchange = 1.019907e-02
Sorting particle-data by peano-hilbert key took = 11.3721 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 1997745196 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1462068 number of bytes= 467861760
 eagle_ph_restore: timing parallel P exchange = 5.026962e+00
 eagle_send_elements: we are using 1997745196 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1199715 number of bytes= 604656360
 eagle_ph_restore: timing parallel SphP exchange = 3.792570e+00
 eagle_send_elements: we are using 1997745196 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 2478755 number of bytes= 951841920
 eagle_ph_restore: timing parallel MetP exchange = 4.133439e-01
 eagle_send_elements: we are using 1997745196 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 3812385 number of bytes= 975970560
 eagle_ph_restore: timing parallel BHP exchange = 9.728909e-03
Restoring original order after ph key sorting took = 9.27509 sec

finished writing particle file...

Finished with SUBFIND.  (total time=4120.85 sec)

Finished computing FoF groups.  (presently allocated=7725.75 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7718.79 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7838.36 MB)
Before=124649
After=138521
NTopleaves= 121206  NTopnodes=138521 (space for 173108)
gravity work-load balance=1.01794   memory-balance=1.01795   SPH work-load balance=1.01771
iter=0 exchange of 0573442842 particles (ret=0)
domain decomposition done. (took 9.93064 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.58327 MByte in top-level domain structure
Tree construction.
task 22: endrun called with an error level of 124


task 33: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
task 22: endrun called with an error level of 124


task 33: endrun called with an error level of 124


task 39: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
task 45: endrun called with an error level of 124


task 39: endrun called with an error level of 124


Finished FOF, total time doing fof/subfind = 4197.61 s
task 123: endrun called with an error level of 124


task 174: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 129:
task 90: endrun called with an error level of 124


task 67: endrun called with an error level of 124


task 168: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 84:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 157: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 78: endrun called with an error level of 124


task 0: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 123:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 123
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 123:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 123
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 174:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 174
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 174:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 174
task 45: endrun called with an error level of 124


task 129: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 67:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 67
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 67:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 67
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 168:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 168
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 168:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 168
task 84: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 157:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 157
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 157:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 157
task 135: endrun called with an error level of 124


task 135: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 78:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 78
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 78:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 78
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 123: endrun called with an error level of 124


task 174: endrun called with an error level of 124


  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


task 67: endrun called with an error level of 124


task 168: endrun called with an error level of 124


task 84: endrun called with an error level of 124


task 157: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
task 78: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
task 129: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 84
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 84:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 84
task 0: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 129
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 129:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 129
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
task 112: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 112:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 112
task 112: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 112:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 112
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   63013.35 Mb (on task=28), Smallest =   62821.32 Mb (on task=0), Average =   62974.54 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=60), Smallest =   64531.71 Mb (on task=124), Average =   64532.00 Mb
Committed_AS:	 Largest =    1710.68 Mb (on task=0), Smallest =    1518.64 Mb (on task=28), Average =    1557.46 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=104), Smallest =   16250.93 Mb (on task=172), Average =   16302.91 Mb
AllocMem:	 Largest =    1710.68 Mb (on task=0), Smallest =    1518.64 Mb (on task=28), Average =    1557.46 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 180 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N4':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         14000
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

reading file `data//snapshot_017_z000p474/snap_017_z000p474.2.hdf5' on task=33 (contains 36021374 particles.)
distributing this file to tasks 33-38
Type 0 (gas):   17021317  (tot=     0272128100) masstab=0
Type 1 (halo):  17832110  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18089  (tot=     0000254233) masstab=0
Type 3 (bulge):   162802  (tot=     0002602064) masstab=0
Type 4 (stars):   985385  (tot=     0014499448) masstab=0
Type 5 (bndry):     1671  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.9.hdf5' on task=112 (contains 36111794 particles.)
distributing this file to tasks 112-122
Type 0 (gas):   16953198  (tot=     0272128100) masstab=0
Type 1 (halo):  18056377  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18983  (tot=     0000254233) masstab=0
Type 3 (bulge):   176278  (tot=     0002602064) masstab=0
Type 4 (stars):   905275  (tot=     0014499448) masstab=0
Type 5 (bndry):     1683  (tot=     0000027262) masstab=0


Allocated 4066.15 MByte for particle storage.

Allocated 2906.64 MByte for storage of SPH data.

Allocated 671.642 MByte for storage of MET data.

Allocated 73.8193 MByte for storage of BH data.


reading file `data//snapshot_017_z000p474/snap_017_z000p474.0.hdf5' on task=0 (contains 36382672 particles.)
distributing this file to tasks 0-21
Type 0 (gas):   16933933  (tot=     0272128100) masstab=0
Type 1 (halo):  18041318  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10539  (tot=     0000254233) masstab=0
Type 3 (bulge):   177809  (tot=     0002602064) masstab=0
Type 4 (stars):  1217321  (tot=     0014499448) masstab=0
Type 5 (bndry):     1752  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.14.hdf5' on task=168 (contains 35651938 particles.)
distributing this file to tasks 168-173
Type 0 (gas):   17038419  (tot=     0272128100) masstab=0
Type 1 (halo):  17760785  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13656  (tot=     0000254233) masstab=0
Type 3 (bulge):    64653  (tot=     0002602064) masstab=0
Type 4 (stars):   772737  (tot=     0014499448) masstab=0
Type 5 (bndry):     1688  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.11.hdf5' on task=129 (contains 36044187 particles.)
distributing this file to tasks 129-134
Type 0 (gas):   17045685  (tot=     0272128100) masstab=0
Type 1 (halo):  18072831  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9383  (tot=     0000254233) masstab=0
Type 3 (bulge):    83714  (tot=     0002602064) masstab=0
Type 4 (stars):   830894  (tot=     0014499448) masstab=0
Type 5 (bndry):     1680  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.10.hdf5' on task=123 (contains 35998139 particles.)
distributing this file to tasks 123-128
Type 0 (gas):   16923237  (tot=     0272128100) masstab=0
Type 1 (halo):  17904302  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12917  (tot=     0000254233) masstab=0
Type 3 (bulge):    63458  (tot=     0002602064) masstab=0
Type 4 (stars):  1092637  (tot=     0014499448) masstab=0
Type 5 (bndry):     1588  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.13.hdf5' on task=157 (contains 36288777 particles.)
distributing this file to tasks 157-167
Type 0 (gas):   16998100  (tot=     0272128100) masstab=0
Type 1 (halo):  18018317  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20746  (tot=     0000254233) masstab=0
Type 3 (bulge):   313245  (tot=     0002602064) masstab=0
Type 4 (stars):   936650  (tot=     0014499448) masstab=0
Type 5 (bndry):     1719  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.3.hdf5' on task=39 (contains 35786982 particles.)
distributing this file to tasks 39-44
Type 0 (gas):   16919146  (tot=     0272128100) masstab=0
Type 1 (halo):  17849008  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11728  (tot=     0000254233) masstab=0
Type 3 (bulge):     3825  (tot=     0002602064) masstab=0
Type 4 (stars):  1001558  (tot=     0014499448) masstab=0
Type 5 (bndry):     1717  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.12.hdf5' on task=135 (contains 35970185 particles.)
distributing this file to tasks 135-156
Type 0 (gas):   17069195  (tot=     0272128100) masstab=0
Type 1 (halo):  17657352  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18089  (tot=     0000254233) masstab=0
Type 3 (bulge):   380761  (tot=     0002602064) masstab=0
Type 4 (stars):   843070  (tot=     0014499448) masstab=0
Type 5 (bndry):     1718  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.15.hdf5' on task=174 (contains 35941355 particles.)
distributing this file to tasks 174-179
Type 0 (gas):   16972837  (tot=     0272128100) masstab=0
Type 1 (halo):  18057236  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14819  (tot=     0000254233) masstab=0
Type 3 (bulge):   139706  (tot=     0002602064) masstab=0
Type 4 (stars):   755104  (tot=     0014499448) masstab=0
Type 5 (bndry):     1653  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.6.hdf5' on task=78 (contains 35858183 particles.)
distributing this file to tasks 78-83
Type 0 (gas):   17104557  (tot=     0272128100) masstab=0
Type 1 (halo):  17792157  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     28871  (tot=     0000254233) masstab=0
Type 3 (bulge):   215009  (tot=     0002602064) masstab=0
Type 4 (stars):   715808  (tot=     0014499448) masstab=0
Type 5 (bndry):     1781  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.1.hdf5' on task=22 (contains 36098944 particles.)
distributing this file to tasks 22-32
Type 0 (gas):   16954789  (tot=     0272128100) masstab=0
Type 1 (halo):  18044973  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      7358  (tot=     0000254233) masstab=0
Type 3 (bulge):    87216  (tot=     0002602064) masstab=0
Type 4 (stars):  1002860  (tot=     0014499448) masstab=0
Type 5 (bndry):     1748  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.7.hdf5' on task=84 (contains 36047847 particles.)
distributing this file to tasks 84-89
Type 0 (gas):   17185996  (tot=     0272128100) masstab=0
Type 1 (halo):  17668886  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11907  (tot=     0000254233) masstab=0
Type 3 (bulge):   349972  (tot=     0002602064) masstab=0
Type 4 (stars):   829390  (tot=     0014499448) masstab=0
Type 5 (bndry):     1696  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.4.hdf5' on task=45 (contains 36039431 particles.)
distributing this file to tasks 45-66
Type 0 (gas):   16961621  (tot=     0272128100) masstab=0
Type 1 (halo):  18076813  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15501  (tot=     0000254233) masstab=0
Type 3 (bulge):    27605  (tot=     0002602064) masstab=0
Type 4 (stars):   956200  (tot=     0014499448) masstab=0
Type 5 (bndry):     1691  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.5.hdf5' on task=67 (contains 35981780 particles.)
distributing this file to tasks 67-77
Type 0 (gas):   16973360  (tot=     0272128100) masstab=0
Type 1 (halo):  17973503  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     23018  (tot=     0000254233) masstab=0
Type 3 (bulge):   186137  (tot=     0002602064) masstab=0
Type 4 (stars):   824083  (tot=     0014499448) masstab=0
Type 5 (bndry):     1679  (tot=     0000027262) masstab=0


reading file `data//snapshot_017_z000p474/snap_017_z000p474.8.hdf5' on task=90 (contains 35948249 particles.)
distributing this file to tasks 90-111
Type 0 (gas):   17072710  (tot=     0272128100) masstab=0
Type 1 (halo):  17854762  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18629  (tot=     0000254233) masstab=0
Type 3 (bulge):   169874  (tot=     0002602064) masstab=0
Type 4 (stars):   830476  (tot=     0014499448) masstab=0
Type 5 (bndry):     1798  (tot=     0000027262) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576171837


Setting next time for grid output file to Time_next= 0.685014

Setting next time for line of sight file to Time_next= 0.678393

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=3.54074 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7720.27 MB)
Allocated 5.16755 MByte for top-level domain structure
use of 105.514 MB of temporary storage for domain decomposition... (presently allocated=7830.95 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 7830.96 Mbyte (on task=1), Smallest = 7830.96 Mbyte, Average = 7830.96 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      0.1236       2.0193  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag     12.2107      14.2299  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     48.8427      63.0726  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     48.8427     111.9153  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     48.8427     160.7580  allocate_memory()/allocate.c/61
   1 2969 0                 P   3907.4146    4068.1725  allocate_memory()/allocate.c/67
   1 2970 0              SphP   2906.6402    6974.8127  allocate_memory()/allocate.c/85
   1 2971 0              MetP    671.6418    7646.4546  allocate_memory()/allocate.c/105
   1 2972 0               BHP     73.8193    7720.2739  allocate_memory()/allocate.c/126
   1 2975 0          TopNodes      5.0797    7725.4415  domain_allocate()/domain.c/570
   1 2976 0        domain_key     97.6854    7823.1268  domain_Decomposition()/domain.c/231
   1 2987 0        domainWork      0.3907    7823.5258  domain_Decomposition()/domain.c/254
   1 2988 0     domainWorkSph      0.3907    7823.9166  domain_Decomposition()/domain.c/256
   1 2989 0       domainCount      0.3907    7824.3073  domain_Decomposition()/domain.c/258
   1 2990 0    domainCountSph      0.3907    7824.6981  domain_Decomposition()/domain.c/260
   1 2995 0  domainCountStars      0.3907    7825.0916  domain_Decomposition()/domain.c/272
   1 3000 0    domainCountBHs      0.3907    7825.4850  domain_Decomposition()/domain.c/285
   1 3001 0          topNodes      5.4704    7830.9555  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 6.69144 MByte for top-level domain structure
use of 107.858 MB of temporary storage for domain decomposition... (presently allocated=7834.82 MB)
Before=110137
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7839.85 MB)
Before=110137
After=133353
NTopleaves= 116684  NTopnodes=133353 (space for 173108)
gravity work-load balance=1.01828   memory-balance=1.01828   SPH work-load balance=1.01707
iter=0 exchange of 0573462801 particles (ret=0)
domain decomposition done. (took 20.8385 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.81984 MByte in top-level domain structure

Allocated 1624.93 MByte for BH-tree, and 0.445114 Mbyte for top-leaves.  (presently allocted 9352.35 MB)

Begin Ngb-tree construction.
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 9861.91 Mbyte (on task=153), Smallest = 9756.74 Mbyte, Average = 9813.41 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
 153 2964 0  Sendcount_matrix      0.1236       2.0193  allocate_memory()/allocate.c/41
 153 2965 0     ProcessedFlag     12.2107      14.2299  allocate_memory()/allocate.c/52
 153 2966 0  NextActiveParticle     48.8427      63.0726  allocate_memory()/allocate.c/55
 153 2967 0     NextInTimeBin     48.8427     111.9153  allocate_memory()/allocate.c/58
 153 2968 0     PrevInTimeBin     48.8427     160.7580  allocate_memory()/allocate.c/61
 153 2969 0                 P   3907.4146    4068.1725  allocate_memory()/allocate.c/67
 153 2970 0              SphP   2906.6402    6974.8127  allocate_memory()/allocate.c/85
 153 2971 0              MetP    671.6418    7646.4546  allocate_memory()/allocate.c/105
 153 2972 0               BHP     73.8193    7720.2739  allocate_memory()/allocate.c/126
 153 2975 0          TopNodes      6.6131    7726.9749  domain_allocate()/domain.c/570
 153 2976 0   DomainNodeIndex      0.4451    7727.4200  force_treeallocate()/forcetree.c/4800
 153 2977 0        Nodes_base    832.7660    8560.1860  force_treeallocate()/forcetree.c/4803
 153 2978 0     Extnodes_base    693.9716    9254.1576  force_treeallocate()/forcetree.c/4811
 153 2979 0          Nextnode     49.3514    9303.5090  force_treeallocate()/forcetree.c/4820
 153 2980 0            Father     48.8427    9352.3517  force_treeallocate()/forcetree.c/4827
 153 2981 0           Ngblist     12.1061    9364.4578  density()/density.c/690
 153 2982 0              Left     24.2122    9388.6700  density()/density.c/692
 153 2983 0             Right     24.2122    9412.8822  density()/density.c/693
 153 2984 0    DataIndexTable      7.0175    9419.8997  density()/density.c/738
 153 2985 0      DataNodeList     18.7134    9438.6132  density()/density.c/740
 153 2986 0       DensDataGet    124.0706    9562.6837  density()/density.c/893
 153 2987 0    DensDataResult    163.5476    9726.2313  density()/density.c/931
 153 2988 0       DensDataOut    135.6724    9861.9038  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0002506174 particles.
ngb iteration 2: need to repeat for 0000001104 particles.
ngb iteration 3: need to repeat for 0000000432 particles.
ngb iteration 4: need to repeat for 0000000355 particles.
ngb iteration 5: need to repeat for 0000000075 particles.
ngb iteration 6: need to repeat for 0000000050 particles.
ngb iteration 7: need to repeat for 0000000028 particles.
ngb iteration 8: need to repeat for 0000000003 particles.
ngb iteration 9: need to repeat for 0000000001 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.468.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.540.hdf5

Begin to compute FoF group catalogues...  (presently allocated=9352.35 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7720.27 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7839.85 MB)
Before=124641
After=139241
NTopleaves= 121836  NTopnodes=139241 (space for 173108)
gravity work-load balance=1.0185   memory-balance=1.0185   SPH work-load balance=1.0185
iter=0 exchange of 0573888678 particles (ret=0)
domain decomposition done. (took 9.98166 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.55031 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=7727.27 MB)
Tree construction.

Start linking particles (presently allocated=9499.74 MB)
links on local processor done (took 9.45543 sec).
Marked=0043843397 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=9631.66 MB) 
have done 0000819664 cross links (processed 0043843397, took 3.73924 sec)
have done 0000348002 cross links (processed 0031563785, took 3.58845 sec)
have done 0000248049 cross links (processed 0026235234, took 3.45935 sec)
have done 0000155972 cross links (processed 0015764082, took 2.78296 sec)
have done 0000090376 cross links (processed 0008413289, took 2.73923 sec)
have done 0000051939 cross links (processed 0005057892, took 2.67868 sec)
have done 0000029937 cross links (processed 0002830455, took 1.18257 sec)
have done 0000018396 cross links (processed 0000951865, took 0.879844 sec)
have done 0000010905 cross links (processed 0000960232, took 0.912916 sec)
have done 0000005995 cross links (processed 0000277550, took 0.556846 sec)
have done 0000003455 cross links (processed 0000162006, took 0.18148 sec)
have done 0000002270 cross links (processed 0000319451, took 0.908486 sec)
have done 0000001257 cross links (processed 0000035096, took 0.0516222 sec)
have done 0000000638 cross links (processed 0000012356, took 0.0483661 sec)
have done 0000000572 cross links (processed 0000073735, took 0.122705 sec)
have done 0000000680 cross links (processed 0000097559, took 0.141739 sec)
have done 0000000542 cross links (processed 0000036295, took 0.0773489 sec)
have done 0000000247 cross links (processed 0000008812, took 0.0482531 sec)
have done 0000000061 cross links (processed 0000001238, took 0.0460591 sec)
have done 0000000018 cross links (processed 0000000216, took 0.0454118 sec)
have done 0000000005 cross links (processed 0000000080, took 0.0451121 sec)
have done 0000000000 cross links (processed 0000000013, took 0.0449669 sec)
Local groups found.

group finding took = 33.8937 sec
Start finding nearest dm-particle (presently allocated=9499.74 MB)
still finding nearest... (presently allocated=9616.39 MB)
fof-nearest iteration 1: need to repeat for 258694923 particles.
still finding nearest... (presently allocated=9618.43 MB)
fof-nearest iteration 2: need to repeat for 245667525 particles.
still finding nearest... (presently allocated=9621.93 MB)
fof-nearest iteration 3: need to repeat for 226772008 particles.
still finding nearest... (presently allocated=9627.68 MB)
fof-nearest iteration 4: need to repeat for 189243197 particles.
still finding nearest... (presently allocated=9633.56 MB)
fof-nearest iteration 5: need to repeat for 131959105 particles.
still finding nearest... (presently allocated=9637.56 MB)
fof-nearest iteration 6: need to repeat for 62961494 particles.
still finding nearest... (presently allocated=9634.81 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 12.6301 sec
compiling local group data and catalogue took = 1.36901 sec

Total number of groups with at least 32 particles: 178946
Largest group has 31694266 particles.
Total number of particles in groups: 0186830131

group properties are now allocated.. (presently allocated=7923.23 MB)
computation of group properties took = 0.196788 sec
start global sorting of group catalogues number 17
LargestGroup = 13357.694967; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.0665169 sec
Group catalogues globally sorted. took = 1.17358 sec
starting saving of group catalogue number 17
data//groups_017_z000p474
Group catalogues number 17 saved. took = 2.99616 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (272128100).
tree build for species 0 took 0.911897 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0185568371 particles. (took 22.152 sec)
ngb iteration 2: need to repeat for 0138823197 particles. (took 13.7813 sec)
ngb iteration 3: need to repeat for 0123648798 particles. (took 9.23456 sec)
ngb iteration 4: need to repeat for 0113920285 particles. (took 7.77913 sec)
ngb iteration 5: need to repeat for 0101985276 particles. (took 7.00638 sec)
ngb iteration 6: need to repeat for 0084020384 particles. (took 6.29094 sec)
ngb iteration 7: need to repeat for 0061472831 particles. (took 5.22884 sec)
ngb iteration 8: need to repeat for 0040098141 particles. (took 3.96145 sec)
ngb iteration 9: need to repeat for 0023931950 particles. (took 2.74241 sec)
ngb iteration 10: need to repeat for 0013441257 particles. (took 1.78588 sec)
ngb iteration 11: need to repeat for 0007270001 particles. (took 1.14927 sec)
ngb iteration 12: need to repeat for 0003846058 particles. (took 0.694775 sec)
ngb iteration 13: need to repeat for 0002013527 particles. (took 0.411113 sec)
ngb iteration 14: need to repeat for 0000954538 particles. (took 0.26137 sec)
ngb iteration 15: need to repeat for 0000298906 particles. (took 0.16956 sec)
ngb iteration 16: need to repeat for 0000103535 particles. (took 0.100711 sec)
ngb iteration 17: need to repeat for 0000046158 particles. (took 0.078501 sec)
ngb iteration 18: need to repeat for 0000025716 particles. (took 0.0712121 sec)
ngb iteration 19: need to repeat for 0000016401 particles. (took 0.0687191 sec)
ngb iteration 20: need to repeat for 0000011194 particles. (took 0.0654061 sec)
ngb iteration 21: need to repeat for 0000007854 particles. (took 0.0639729 sec)
ngb iteration 22: need to repeat for 0000005593 particles. (took 0.063421 sec)
ngb iteration 23: need to repeat for 0000004024 particles. (took 0.063067 sec)
ngb iteration 24: need to repeat for 0000002946 particles. (took 0.0634689 sec)
ngb iteration 25: need to repeat for 0000002115 particles. (took 0.0625038 sec)
ngb iteration 26: need to repeat for 0000001446 particles. (took 0.0625601 sec)
ngb iteration 27: need to repeat for 0000000956 particles. (took 0.0629079 sec)
ngb iteration 28: need to repeat for 0000000585 particles. (took 0.0622749 sec)
ngb iteration 29: need to repeat for 0000000351 particles. (took 0.0626271 sec)
ngb iteration 30: need to repeat for 0000000204 particles. (took 0.0624301 sec)
ngb iteration 31: need to repeat for 0000000107 particles. (took 0.062444 sec)
ngb iteration 32: need to repeat for 0000000062 particles. (took 0.062017 sec)
ngb iteration 33: need to repeat for 0000000028 particles. (took 0.0628541 sec)
ngb iteration 34: need to repeat for 0000000012 particles. (took 0.062721 sec)
ngb iteration 35: need to repeat for 0000000004 particles. (took 0.0629292 sec)
ngb iteration 36: need to repeat for 0000000002 particles. (took 0.0627189 sec)
ngb iteration 37: need to repeat for 0000000001 particles. (took 0.0629129 sec)
final operations ... 
density and smoothing length for species 0 took 84.6035 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 1.02876 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0189246446 particles. (took 34.0985 sec)
ngb iteration 2: need to repeat for 0139726083 particles. (took 14.8163 sec)
ngb iteration 3: need to repeat for 0118057670 particles. (took 10.1832 sec)
ngb iteration 4: need to repeat for 0105932759 particles. (took 7.90886 sec)
ngb iteration 5: need to repeat for 0094517483 particles. (took 6.78601 sec)
ngb iteration 6: need to repeat for 0079195374 particles. (took 5.95488 sec)
ngb iteration 7: need to repeat for 0060287225 particles. (took 5.00687 sec)
ngb iteration 8: need to repeat for 0041702309 particles. (took 3.90667 sec)
ngb iteration 9: need to repeat for 0026708766 particles. (took 2.79237 sec)
ngb iteration 10: need to repeat for 0016201730 particles. (took 1.90681 sec)
ngb iteration 11: need to repeat for 0009493070 particles. (took 1.26937 sec)
ngb iteration 12: need to repeat for 0005458060 particles. (took 0.831791 sec)
ngb iteration 13: need to repeat for 0003112464 particles. (took 0.522052 sec)
ngb iteration 14: need to repeat for 0001692008 particles. (took 0.331856 sec)
ngb iteration 15: need to repeat for 0000802623 particles. (took 0.21677 sec)
ngb iteration 16: need to repeat for 0000402137 particles. (took 0.138737 sec)
ngb iteration 17: need to repeat for 0000211202 particles. (took 0.10158 sec)
ngb iteration 18: need to repeat for 0000113910 particles. (took 0.0833659 sec)
ngb iteration 19: need to repeat for 0000061558 particles. (took 0.075526 sec)
ngb iteration 20: need to repeat for 0000032513 particles. (took 0.0706358 sec)
ngb iteration 21: need to repeat for 0000016829 particles. (took 0.0674241 sec)
ngb iteration 22: need to repeat for 0000008262 particles. (took 0.0660172 sec)
ngb iteration 23: need to repeat for 0000003947 particles. (took 0.0651112 sec)
ngb iteration 24: need to repeat for 0000001770 particles. (took 0.0642021 sec)
ngb iteration 25: need to repeat for 0000000739 particles. (took 0.063623 sec)
ngb iteration 26: need to repeat for 0000000278 particles. (took 0.063704 sec)
ngb iteration 27: need to repeat for 0000000119 particles. (took 0.06339 sec)
ngb iteration 28: need to repeat for 0000000037 particles. (took 0.063426 sec)
ngb iteration 29: need to repeat for 0000000014 particles. (took 0.063242 sec)
ngb iteration 30: need to repeat for 0000000001 particles. (took 0.0633152 sec)
final operations ... 
density and smoothing length for species 1 took 98.1608 sec
Tree construction for species 4 (14499448).
tree build for species 4 took 0.196742 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0009233619 particles. (took 8.04241 sec)
ngb iteration 2: need to repeat for 0007178506 particles. (took 3.05344 sec)
ngb iteration 3: need to repeat for 0005839708 particles. (took 2.25733 sec)
ngb iteration 4: need to repeat for 0005028016 particles. (took 1.57072 sec)
ngb iteration 5: need to repeat for 0004438320 particles. (took 1.32871 sec)
ngb iteration 6: need to repeat for 0003865910 particles. (took 1.10152 sec)
ngb iteration 7: need to repeat for 0003222236 particles. (took 0.93315 sec)
ngb iteration 8: need to repeat for 0002557428 particles. (took 0.787694 sec)
ngb iteration 9: need to repeat for 0001950424 particles. (took 0.624751 sec)
ngb iteration 10: need to repeat for 0001442078 particles. (took 0.461434 sec)
ngb iteration 11: need to repeat for 0001048664 particles. (took 0.352375 sec)
ngb iteration 12: need to repeat for 0000756027 particles. (took 0.281327 sec)
ngb iteration 13: need to repeat for 0000543293 particles. (took 0.235049 sec)
ngb iteration 14: need to repeat for 0000384145 particles. (took 0.190348 sec)
ngb iteration 15: need to repeat for 0000267687 particles. (took 0.147158 sec)
ngb iteration 16: need to repeat for 0000188610 particles. (took 0.129406 sec)
ngb iteration 17: need to repeat for 0000133484 particles. (took 0.117739 sec)
ngb iteration 18: need to repeat for 0000095882 particles. (took 0.110131 sec)
ngb iteration 19: need to repeat for 0000069539 particles. (took 0.107176 sec)
ngb iteration 20: need to repeat for 0000051207 particles. (took 0.103015 sec)
ngb iteration 21: need to repeat for 0000038354 particles. (took 0.0967751 sec)
ngb iteration 22: need to repeat for 0000028865 particles. (took 0.0939901 sec)
ngb iteration 23: need to repeat for 0000021886 particles. (took 0.091387 sec)
ngb iteration 24: need to repeat for 0000016639 particles. (took 0.0879712 sec)
ngb iteration 25: need to repeat for 0000012580 particles. (took 0.0870531 sec)
ngb iteration 26: need to repeat for 0000009336 particles. (took 0.086622 sec)
ngb iteration 27: need to repeat for 0000006852 particles. (took 0.085135 sec)
ngb iteration 28: need to repeat for 0000005034 particles. (took 0.085387 sec)
ngb iteration 29: need to repeat for 0000003630 particles. (took 0.084847 sec)
ngb iteration 30: need to repeat for 0000002524 particles. (took 0.083674 sec)
ngb iteration 31: need to repeat for 0000001710 particles. (took 0.084223 sec)
ngb iteration 32: need to repeat for 0000001118 particles. (took 0.0836298 sec)
ngb iteration 33: need to repeat for 0000000662 particles. (took 0.0833809 sec)
ngb iteration 34: need to repeat for 0000000389 particles. (took 0.0835819 sec)
ngb iteration 35: need to repeat for 0000000206 particles. (took 0.0832801 sec)
ngb iteration 36: need to repeat for 0000000115 particles. (took 0.082849 sec)
ngb iteration 37: need to repeat for 0000000060 particles. (took 0.0839839 sec)
ngb iteration 38: need to repeat for 0000000025 particles. (took 0.083396 sec)
ngb iteration 39: need to repeat for 0000000012 particles. (took 0.082979 sec)
ngb iteration 40: need to repeat for 0000000004 particles. (took 0.0834081 sec)
ngb iteration 41: need to repeat for 0000000001 particles. (took 0.0834019 sec)
ngb iteration 42: need to repeat for 0000000001 particles. (took 0.0832419 sec)
final operations ... 
density and smoothing length for species 4 took 24.2431 sec
Tree construction.
tree build took 1.99665 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000019556 particles. (took 0.143304 sec)
ngb iteration 2: need to repeat for 0000017362 particles. (took 0.099565 sec)
ngb iteration 3: need to repeat for 0000011898 particles. (took 0.099201 sec)
ngb iteration 4: need to repeat for 0000008292 particles. (took 0.098547 sec)
ngb iteration 5: need to repeat for 0000007066 particles. (took 0.0955091 sec)
ngb iteration 6: need to repeat for 0000006077 particles. (took 0.094604 sec)
ngb iteration 7: need to repeat for 0000004991 particles. (took 0.0932729 sec)
ngb iteration 8: need to repeat for 0000003819 particles. (took 0.09288 sec)
ngb iteration 9: need to repeat for 0000002678 particles. (took 0.090802 sec)
ngb iteration 10: need to repeat for 0000001797 particles. (took 0.0896132 sec)
ngb iteration 11: need to repeat for 0000001159 particles. (took 0.0892189 sec)
ngb iteration 12: need to repeat for 0000000709 particles. (took 0.0877612 sec)
ngb iteration 13: need to repeat for 0000000428 particles. (took 0.086031 sec)
ngb iteration 14: need to repeat for 0000000280 particles. (took 0.085968 sec)
ngb iteration 15: need to repeat for 0000000160 particles. (took 0.0876961 sec)
ngb iteration 16: need to repeat for 0000000098 particles. (took 0.0839498 sec)
ngb iteration 17: need to repeat for 0000000069 particles. (took 0.0838029 sec)
ngb iteration 18: need to repeat for 0000000047 particles. (took 0.0839341 sec)
ngb iteration 19: need to repeat for 0000000028 particles. (took 0.083777 sec)
ngb iteration 20: need to repeat for 0000000019 particles. (took 0.0837829 sec)
ngb iteration 21: need to repeat for 0000000013 particles. (took 0.0835629 sec)
ngb iteration 22: need to repeat for 0000000010 particles. (took 0.0837801 sec)
ngb iteration 23: need to repeat for 0000000006 particles. (took 0.0831141 sec)
ngb iteration 24: need to repeat for 0000000005 particles. (took 0.082504 sec)
ngb iteration 25: need to repeat for 0000000003 particles. (took 0.0836451 sec)
ngb iteration 26: need to repeat for 0000000003 particles. (took 0.083616 sec)
ngb iteration 27: need to repeat for 0000000001 particles. (took 0.083461 sec)
ngb iteration 28: need to repeat for 0000000001 particles. (took 0.0831079 sec)
ngb iteration 29: need to repeat for 0000000001 particles. (took 0.0832679 sec)
ngb iteration 30: need to repeat for 0000000001 particles. (took 0.083812 sec)
ngb iteration 31: need to repeat for 0000000001 particles. (took 0.083559 sec)
ngb iteration 32: need to repeat for 0000000001 particles. (took 0.083452 sec)
final operations ... 
density and smoothing length for species 5 took 3.26866 sec
Tree construction for species 0 (272128100).
tree build for species 0 took 0.911751 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 44.1061 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 1.02207 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 21.8366 sec
Tree construction for species 4 (14499448).
tree build for species 4 took 0.181269 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 7.83211 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.100488 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 5.89446 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 1.78 sec
saving densities took 3.40679 sec

Number of FOF halos treated with collective SubFind code = 1
(the adopted size-limit for the collective algorithm was 8962671 particles.)
the other 178945 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 30959 - 109094300 

subfind_exchange()() took 2.86841 sec

collectively doing halo 1, num=17
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=11418.4 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=11538 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 11538 Mbyte (on task=0), Smallest = 8090.58 Mbyte, Average = 8156.38 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4146    4068.1715  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2906.6402    6974.8117  allocate_memory()/allocate.c/85
   0 2971 0              MetP    671.6418    7646.4535  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.8193    7720.2729  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.9051    7727.2659  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.0325    7800.2984  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.7209    7922.0193  fof_fof()/fof.c/337
   0 2978 0             Group      1.2078    7923.2271  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3495.2030   11418.4301  subfind()/subfind.c/376
   0 2982 0          TopNodes      8.5846   11427.1026  domain_allocate()/domain.c/570
   0 2983 0        domain_key     97.6854   11524.7879  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      0.6604   11525.4565  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      0.6604   11526.1169  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      0.6604   11526.7772  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      0.6604   11527.4376  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      0.6604   11528.1007  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      0.6604   11528.7638  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes      9.2450   11538.0088  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=93761
After=121241
NTopleaves= 106086  NTopnodes=121241 (space for 173108)
gravity work-load balance=1.01379   memory-balance=1.01379   SPH work-load balance=1.01307
iter=0 exchange of 0031504216 particles (ret=0)
domain decomposition done. (took 2.21284 sec)
Freed 2.37428 MByte in top-level domain structure

At 'SUBFIND', subfind_process_group_collectively()/subfind_collective.c/274: Largest Allocation = 13047.8 Mbyte (on task=0), Smallest = 9600.36 Mbyte, Average = 9666.16 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4146    4068.1715  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2906.6402    6974.8117  allocate_memory()/allocate.c/85
   0 2971 0              MetP    671.6418    7646.4535  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.8193    7720.2729  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.9051    7727.2659  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.0325    7800.2984  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.7209    7922.0193  fof_fof()/fof.c/337
   0 2978 0             Group      1.2078    7923.2271  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3495.2030   11418.4301  subfind()/subfind.c/376
   0 2982 0          TopNodes      6.0125   11424.5304  domain_allocate()/domain.c/570
   0 2983 0   DomainNodeIndex      0.4047   11424.9351  force_treeallocate()/forcetree.c/4800
   0 2984 0        Nodes_base    831.6571   12256.5922  force_treeallocate()/forcetree.c/4803
   0 2985 0     Extnodes_base    693.0476   12949.6398  force_treeallocate()/forcetree.c/4811
   0 2986 0          Nextnode     49.3052   12998.9449  force_treeallocate()/forcetree.c/4820
   0 2987 0            Father     48.8427   13047.7876  force_treeallocate()/forcetree.c/4827
----------------------------------------------------------------------------------------
coldomain_Decomposition() took 2.86576 sec  (presently allocated=13047.8 MB)
force_treebuild() took 4.70532 sec (presently allocated=13047.8 MB)
Start find_linkngb (175118 particles on task=0)
find linkngb iteration 1: need to repeat for 0027428914 particles. (took 4.80461 sec)
find linkngb iteration 2: need to repeat for 0024365357 particles. (took 2.96452 sec)
find linkngb iteration 3: need to repeat for 0020849988 particles. (took 1.91653 sec)
find linkngb iteration 4: need to repeat for 0019297792 particles. (took 1.35441 sec)
find linkngb iteration 5: need to repeat for 0017048505 particles. (took 1.22959 sec)
find linkngb iteration 6: need to repeat for 0013883927 particles. (took 1.0799 sec)
find linkngb iteration 7: need to repeat for 0010041634 particles. (took 0.893059 sec)
find linkngb iteration 8: need to repeat for 0006472459 particles. (took 0.666443 sec)
find linkngb iteration 9: need to repeat for 0003832599 particles. (took 0.439989 sec)
find linkngb iteration 10: need to repeat for 0002154375 particles. (took 0.259175 sec)
find linkngb iteration 11: need to repeat for 0001174704 particles. (took 0.143991 sec)
find linkngb iteration 12: need to repeat for 0000610661 particles. (took 0.083317 sec)
find linkngb iteration 13: need to repeat for 0000204029 particles. (took 0.0493951 sec)
find linkngb iteration 14: need to repeat for 0000061192 particles. (took 0.0196149 sec)
find linkngb iteration 15: need to repeat for 0000027585 particles. (took 0.00886297 sec)
find linkngb iteration 16: need to repeat for 0000013739 particles. (took 0.00520515 sec)
find linkngb iteration 17: need to repeat for 0000006882 particles. (took 0.00380898 sec)
find linkngb iteration 18: need to repeat for 0000003443 particles. (took 0.00271487 sec)
find linkngb iteration 19: need to repeat for 0000001849 particles. (took 0.00185204 sec)
find linkngb iteration 20: need to repeat for 0000001054 particles. (took 0.00129986 sec)
find linkngb iteration 21: need to repeat for 0000000629 particles. (took 0.00104809 sec)
find linkngb iteration 22: need to repeat for 0000000395 particles. (took 0.000915051 sec)
find linkngb iteration 23: need to repeat for 0000000249 particles. (took 0.000906944 sec)
find linkngb iteration 24: need to repeat for 0000000144 particles. (took 0.000839949 sec)
find linkngb iteration 25: need to repeat for 0000000080 particles. (took 0.000823975 sec)
find linkngb iteration 26: need to repeat for 0000000041 particles. (took 0.000823975 sec)
find linkngb iteration 27: need to repeat for 0000000021 particles. (took 0.00082016 sec)
find linkngb iteration 28: need to repeat for 0000000009 particles. (took 0.000795841 sec)
find linkngb iteration 29: need to repeat for 0000000003 particles. (took 0.000802994 sec)
find linkngb iteration 30: need to repeat for 0000000003 particles. (took 0.000792027 sec)
find_linkngb() took 15.9392 sec
Start finding nearest two (175118 particles on task=0)
find_nearesttwo() took 1.93515 sec (presently allocated=13061.1 MB)
parallel sort of densities done. took 0.219994 sec
building distributed linked list. (presently allocated 13059.4 MB)
identification of primary candidates took 614.23 sec
adding background as candidate took 0.0855141 sec
establishing of rank order took 202.862 sec  (p=31694266, grouplen=31694266) presently allocated 13059.4 MB

total number of subhalo candidates=113196

number of subhalo candidates that can be done independently=98096.
(Largest size is 4904, finding them took 0.0613201 sec)
particles are marked (took 99.0344)
independent subhalos are assembled on individual CPUs for unbinding (0.23908 sec, (presently allocated=13059.4 MB)
unbinding of independent ones took 0.152945 sec
particles have returned to their original processor (0.316135 sec, presently allocated 13059.4 MB)

number of subhalo candidates that can be done independently=13674.
(Largest size is 23318, finding them took 2.50865 sec)
particles are marked (took 70.7768)
independent subhalos are assembled on individual CPUs for unbinding (0.219311 sec, (presently allocated=13059.4 MB)
unbinding of independent ones took 1.18597 sec
particles have returned to their original processor (0.301315 sec, presently allocated 13059.4 MB)

number of subhalo candidates that can be done independently=1295.
(Largest size is 106015, finding them took 2.42639 sec)
particles are marked (took 58.8573)
independent subhalos are assembled on individual CPUs for unbinding (0.198628 sec, (presently allocated=13059.4 MB)
unbinding of independent ones took 2.76652 sec
particles have returned to their original processor (0.274736 sec, presently allocated 13059.4 MB)

number of subhalo candidates that can be done independently=115.
(Largest size is 213711, finding them took 2.39225 sec)
particles are marked (took 59.6647)
independent subhalos are assembled on individual CPUs for unbinding (0.214926 sec, (presently allocated=13059.4 MB)
unbinding of independent ones took 14.7379 sec
particles have returned to their original processor (0.294187 sec, presently allocated 13059.4 MB)

number of subhalo candidates that can be done independently=10.
(Largest size is 1448498, finding them took 1.35206 sec)
particles are marked (took 48.195)
independent subhalos are assembled on individual CPUs for unbinding (0.216969 sec, (presently allocated=13059.4 MB)
unbinding of independent ones took 17.4425 sec
particles have returned to their original processor (0.287575 sec, presently allocated 13059.4 MB)

number of subhalo candidates that can be done independently=2.
(Largest size is 1448498, finding them took 1.32793 sec)
particles are marked (took 43.8966)
independent subhalos are assembled on individual CPUs for unbinding (0.179167 sec, (presently allocated=13059.4 MB)
unbinding of independent ones took 5.09544 sec
particles have returned to their original processor (0.257177 sec, presently allocated 13059.4 MB)

number of subhalo candidates that can be done independently=0.
(Largest size is 1448498, finding them took 1.20412 sec)
too few, I do the rest of 4 collectively

collective unbinding of nr=0 (4) of length=867622 ... maximum alloacted 13060.1 MB
took 10.6843 sec
collective unbinding of nr=1 (4) of length=2472058 ... maximum alloacted 13060.1 MB
took 27.6156 sec
collective unbinding of nr=2 (4) of length=1448498 ... maximum alloacted 13060.1 MB
took 18.9935 sec
collective unbinding of nr=3 (4) of length=31694266 ... maximum alloacted 13060.1 MB
took 394.867 sec

the collective unbinding of remaining halos took 493.493 sec

found 6589 bound substructures in FoF group of length 31694266
determination of parent subhalo took 0.063504 sec (presently allocated 13060.1 MB)
determining substructure properties took 450.657 sec (presently allocated 13060.1 MB)
processing of collective halos took 2245.54 sec
sort of local particles()() took 1.4977 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 1215.41 sec

Task 153: testing particles ...
Task 154: testing particles ...
Task 113: testing particles ...
Task 155: testing particles ...
Task 144: testing particles ...
Task 161: testing particles ...
Task 176: testing particles ...
Task 115: testing particles ...
Task 128: testing particles ...
Task 138: testing particles ...
Task 123: testing particles ...
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unsorting of local particles()() took 1.30412 sec
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subfind_exchange() (for return to original CPU)  took 7.03606 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=11418.4 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=11538 MB)
Before=127025
After=140697
NTopleaves= 123110  NTopnodes=140697 (space for 173108)
gravity work-load balance=1.01394   memory-balance=1.01395   SPH work-load balance=1.01376
iter=0 exchange of 0572987550 particles (ret=0)
domain decomposition done. (took 10.2261 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.48366 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000145384 particles. (took 0.02791 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.02491 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.0258381 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.02618 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.026078 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0259612 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.025898 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.0259459 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.0259678 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.025908 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.025974 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.025852 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.025847 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.0258231 sec)
SO iteration 15: need to repeat for 0000143197 particles. (took 0.025872 sec)
SO iteration 16: need to repeat for 0000000678 particles. (took 0.024837 sec)
SO iteration 17: need to repeat for 0000000052 particles. (took 0.00110102 sec)
SO iteration 1: need to repeat for 0000145384 particles. (took 0.0261638 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.0210099 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.0227559 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.024677 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.0230911 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0223091 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.022444 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.0224349 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.0224509 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.0224149 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.022393 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.0225201 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.022352 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.027519 sec)
SO iteration 15: need to repeat for 0000144540 particles. (took 0.024133 sec)
SO iteration 16: need to repeat for 0000024829 particles. (took 0.0239339 sec)
SO iteration 17: need to repeat for 0000000335 particles. (took 0.00753403 sec)
SO iteration 18: need to repeat for 0000000032 particles. (took 0.000840187 sec)
SO iteration 1: need to repeat for 0000145384 particles. (took 0.0259869 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.0209239 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.016753 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.018743 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.0179598 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0179288 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.017796 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.01791 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.0178251 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.0177791 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.017873 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.0179451 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.0178032 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.0178111 sec)
SO iteration 15: need to repeat for 0000145364 particles. (took 0.0177989 sec)
SO iteration 16: need to repeat for 0000144026 particles. (took 0.0179229 sec)
SO iteration 17: need to repeat for 0000036218 particles. (took 0.0205991 sec)
SO iteration 18: need to repeat for 0000000646 particles. (took 0.00755 sec)
SO iteration 19: need to repeat for 0000000054 particles. (took 0.000888109 sec)
SO iteration 20: need to repeat for 0000000002 particles. (took 0.000460148 sec)
SO iteration 1: need to repeat for 0000145384 particles. (took 0.029783 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.029578 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.026751 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.027199 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.027308 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0259759 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.0258951 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.025269 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.024986 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.0249879 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.0286732 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.0252421 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.025044 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.032645 sec)
SO iteration 15: need to repeat for 0000143307 particles. (took 0.0259421 sec)
SO iteration 16: need to repeat for 0000001270 particles. (took 0.0248249 sec)
SO iteration 17: need to repeat for 0000000068 particles. (took 0.00137305 sec)
SO iteration 18: need to repeat for 0000000001 particles. (took 0.000524044 sec)
SO iteration 1: need to repeat for 0000145384 particles. (took 0.0262239 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.0211282 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.02318 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.023931 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.0278678 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0233042 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.028594 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.0294981 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.023376 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.0233679 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.0233872 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.023361 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.0233412 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.02337 sec)
SO iteration 15: need to repeat for 0000143725 particles. (took 0.023463 sec)
SO iteration 16: need to repeat for 0000005575 particles. (took 0.023133 sec)
SO iteration 17: need to repeat for 0000000156 particles. (took 0.00305796 sec)
SO iteration 18: need to repeat for 0000000011 particles. (took 0.00051713 sec)
SO iteration 1: need to repeat for 0000145384 particles. (took 0.0260231 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.0209489 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.0209029 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.0203178 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.0206189 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0207338 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.021121 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.0208211 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.0209591 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.0209181 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.0208969 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.0208099 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.0208418 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.0207591 sec)
SO iteration 15: need to repeat for 0000145115 particles. (took 0.020859 sec)
SO iteration 16: need to repeat for 0000143429 particles. (took 0.0207958 sec)
SO iteration 17: need to repeat for 0000001350 particles. (took 0.0201039 sec)
SO iteration 18: need to repeat for 0000000107 particles. (took 0.0016408 sec)
SO iteration 1: need to repeat for 0000145384 particles. (took 0.02615 sec)
SO iteration 2: need to repeat for 0000145384 particles. (took 0.0208919 sec)
SO iteration 3: need to repeat for 0000145384 particles. (took 0.016768 sec)
SO iteration 4: need to repeat for 0000145384 particles. (took 0.016923 sec)
SO iteration 5: need to repeat for 0000145384 particles. (took 0.0167429 sec)
SO iteration 6: need to repeat for 0000145384 particles. (took 0.0171108 sec)
SO iteration 7: need to repeat for 0000145384 particles. (took 0.016959 sec)
SO iteration 8: need to repeat for 0000145384 particles. (took 0.0169721 sec)
SO iteration 9: need to repeat for 0000145384 particles. (took 0.0169661 sec)
SO iteration 10: need to repeat for 0000145384 particles. (took 0.016928 sec)
SO iteration 11: need to repeat for 0000145384 particles. (took 0.01702 sec)
SO iteration 12: need to repeat for 0000145384 particles. (took 0.0170369 sec)
SO iteration 13: need to repeat for 0000145384 particles. (took 0.0169911 sec)
SO iteration 14: need to repeat for 0000145384 particles. (took 0.0169721 sec)
SO iteration 15: need to repeat for 0000145377 particles. (took 0.0169179 sec)
SO iteration 16: need to repeat for 0000144924 particles. (took 0.0169959 sec)
SO iteration 17: need to repeat for 0000133905 particles. (took 0.0169671 sec)
SO iteration 18: need to repeat for 0000003220 particles. (took 0.0163429 sec)
SO iteration 19: need to repeat for 0000000152 particles. (took 0.00198197 sec)
SO iteration 20: need to repeat for 0000000003 particles. (took 0.00050211 sec)
determining spherical overdensity masses took 2.63532 sec
finding spherical overdensity particles took 0.322936 sec
determining contamination of halos took 0.261694 sec
Global sort of Groups took 0.0420618 sec
Global sort of SubGroups took 0.118595 sec
Global sort of IDs took 0.674057 sec
Writing block 0 (GLEN), n=995, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3980d
Writing block 1 (GOFF), n=995, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3980d
Writing block 2 (MTOT), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 3 (GPOS), n=995, ptype=0, dtype=1, ndim=3, bpb=4 bytes=11940d
Writing block 4 (MMEA), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 5 (RMEA), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 6 (MCRI), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 7 (RCRI), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 8 (MTOP), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 9 (RTOP), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 17 (NCON), n=995, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3980d
Writing block 18 (MCON), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 22 (NSUB), n=995, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3980d
Writing block 23 (FSUB), n=995, ptype=0, dtype=0, ndim=1, bpb=4 bytes=3980d
Writing block 24 (SLEN), n=7600, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30400d
Writing block 25 (SOFF), n=7600, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30400d
Writing block 26 (SSUB), n=7600, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30400d
Writing block 27 (MSUB), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 28 (SPOS), n=7600, ptype=1, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 29 (SVEL), n=7600, ptype=1, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 30 (SCM ), n=7600, ptype=1, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 33 (VMAX), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 34 (RMAX), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 35 (RHMS), n=7600, ptype=1, dtype=1, ndim=6, bpb=4 bytes=182400d
Writing block 36 (MTRH), n=7600, ptype=1, dtype=1, ndim=6, bpb=4 bytes=182400d
Writing block 37 (MBID), n=7600, ptype=1, dtype=2, ndim=1, bpb=8 bytes=60800d
Writing block 38 (GRNR), n=7600, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30400d
Writing block 39 (SUBN), n=7600, ptype=1, dtype=0, ndim=1, bpb=4 bytes=30400d
Writing block 40 (SMST), n=7600, ptype=1, dtype=1, ndim=6, bpb=4 bytes=182400d
Writing block 53 (PID ), n=932792, ptype=2, dtype=2, ndim=1, bpb=8 bytes=7462336d
Writing block 54 (SLEN), n=7600, ptype=1, dtype=0, ndim=6, bpb=4 bytes=182400d
Writing block 55 (STEN), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 56 (SKEN), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 57 (SUEN), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 58 (SUIT), n=7600, ptype=1, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 59 (BHMA), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 60 (BHMD), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 61 (SVD ), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 62 (SVDH), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 63 (HMPR), n=7600, ptype=1, dtype=1, ndim=6, bpb=4 bytes=182400d
Writing block 64 (SSFR), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 65 (SSA ), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 66 (SSBZ), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 67 (SSIM), n=7600, ptype=1, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 68 (SSPI), n=7600, ptype=4, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 69 (GSPI), n=7600, ptype=1, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 70 (FSPI), n=7600, ptype=5, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 71 (SFM ), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 72 (SFMT), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 73 (SFME), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 74 (SFAE), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 75 (SFKE), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 76 (SFTE), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 77 (SMWP), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 78 (SMM ), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 79 (SMMS), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 80 (SFZ ), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 81 (SFZS), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 82 (SSIA), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 83 (SIAS), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 84 (SMET), n=7600, ptype=5, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 85 (SMTS), n=7600, ptype=5, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 86 (MF1 ), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 87 (MeF1), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 88 (MF  ), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 89 (MeF2), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 90 (MFA ), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 91 (MeFA), n=7600, ptype=5, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 92 (NSPI), n=7600, ptype=6, dtype=1, ndim=3, bpb=4 bytes=91200d
Writing block 93 (NFM ), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 94 (NFMT), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 95 (NFME), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 96 (NFAE), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 97 (NFKE), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 98 (NFTE), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 99 (SMWP), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 100 (SMM ), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 101 (SMMS), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 102 (SSIA), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 103 (SIAS), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 104 (SMET), n=7600, ptype=6, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 105 (SMTS), n=7600, ptype=6, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 106 (MF1 ), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 107 (MeF1), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 108 (MF2 ), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 109 (MeF2), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 110 (MFA ), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 111 (MeFA), n=7600, ptype=6, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 112 (SM  ), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 113 (SFKE), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 114 (SFAE), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 115 (SMWP), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 116 (SMM ), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 117 (SMMS), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 118 (SSIA), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 119 (SIAS), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 120 (SMET), n=7600, ptype=4, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 121 (SMTS), n=7600, ptype=4, dtype=1, ndim=9, bpb=4 bytes=273600d
Writing block 122 (MF1 ), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 123 (MeF1), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 124 (MF2 ), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 125 (MeF2), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 126 (MFA ), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 127 (MeFA), n=7600, ptype=4, dtype=1, ndim=1, bpb=4 bytes=30400d
Writing block 128 (MMe5), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 129 (RMe5), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 130 (MCr5), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 131 (RCr5), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 132 (MMe2), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 133 (RMe2), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 134 (MCr2), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 135 (RCr2), n=995, ptype=0, dtype=1, ndim=1, bpb=4 bytes=3980d
Writing block 136 (MAPT), n=7600, ptype=7, dtype=1, ndim=60, bpb=4 bytes=1824000d
Writing block 137 (SAPT), n=7600, ptype=8, dtype=1, ndim=10, bpb=4 bytes=304000d
Writing block 138 (VAPT), n=7600, ptype=9, dtype=1, ndim=10, bpb=4 bytes=304000d
Writing block 139 (BEGY), n=932792, ptype=2, dtype=1, ndim=1, bpb=4 bytes=3731168d
Subgroup catalogues saved. took = 10.1218 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 7.144740e-01
 eagle_ph_key_ort: type= 1 timed by volker 8.000209e-01
 eagle_ph_key_ort: type= 2 timed by volker 8.727503e-02
 eagle_ph_key_ort: type= 3 timed by volker 4.072309e-02
 eagle_ph_key_ort: type= 4 timed by volker 8.569717e-02
 eagle_ph_key_ort: type= 5 timed by volker 2.699804e-02
 eagle_ph_key_ort: timing parallel sort = 1.854773e+00
 eagle_fetch_elements: we are using 2104634483 bytes of memory, FreeBytes= 2630793104

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 11491.1 Mbyte (on task=0), Smallest = 8043.83 Mbyte, Average = 8110.06 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4146    4068.1715  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2906.6402    6974.8117  allocate_memory()/allocate.c/85
   0 2971 0              MetP    671.6418    7646.4535  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.8193    7720.2729  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.9051    7727.2659  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.0325    7800.2984  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.7209    7922.0193  fof_fof()/fof.c/337
   0 2978 0             Group      1.2078    7923.2271  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3495.2030   11418.4301  subfind()/subfind.c/376
   0 2980 0   sort_index_data     72.6501   11491.0802  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1635033 number of bytes = 523210560

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 13476.4 Mbyte (on task=0), Smallest = 10027.9 Mbyte, Average = 10103.6 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7569  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4146    4068.1715  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2906.6402    6974.8117  allocate_memory()/allocate.c/85
   0 2971 0              MetP    671.6418    7646.4535  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.8193    7720.2729  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.9051    7727.2659  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     73.0325    7800.2984  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.7209    7922.0193  fof_fof()/fof.c/337
   0 2978 0             Group      1.2078    7923.2271  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3495.2030   11418.4301  subfind()/subfind.c/376
   0 2980 0   sort_index_data     72.6501   11491.0802  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      6.2372   11497.3173  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      6.2372   11503.5545  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      6.2372   11509.7917  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    498.9725   12008.7641  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    498.9725   12507.7366  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    968.6682   13476.4048  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 4.458786e+00
 eagle_fetch_elements: we are using 2104634483 bytes of memory, FreeBytes= 2630793104
 eagle_fetch_elements: max_bytes= 504, max_elements= 1306066 number of bytes = 658257264
 eagle_ph_key_ort: timing parallel SphP exchange = 3.637690e+00
 eagle_fetch_elements: we are using 2104634483 bytes of memory, FreeBytes= 2630793104
 eagle_fetch_elements: max_bytes= 384, max_elements= 2616355 number of bytes = 1004680320
 eagle_ph_key_ort: timing parallel MetP exchange = 3.579471e-01
 eagle_fetch_elements: we are using 2104634483 bytes of memory, FreeBytes= 2630793104
 eagle_fetch_elements: max_bytes= 256, max_elements= 4016364 number of bytes = 1028189184
 eagle_ph_key_ort: timing parallel BHP exchange = 9.070873e-03
Sorting particle-data by peano-hilbert key took = 10.9511 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 2104634483 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1635033 number of bytes= 523210560
 eagle_ph_restore: timing parallel P exchange = 4.766214e+00
 eagle_send_elements: we are using 2104634483 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1306066 number of bytes= 658257264
 eagle_ph_restore: timing parallel SphP exchange = 3.725926e+00
 eagle_send_elements: we are using 2104634483 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 2616355 number of bytes= 1004680320
 eagle_ph_restore: timing parallel MetP exchange = 3.921540e-01
 eagle_send_elements: we are using 2104634483 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 4016364 number of bytes= 1028189184
 eagle_ph_restore: timing parallel BHP exchange = 8.795023e-03
Restoring original order after ph key sorting took = 8.92584 sec

finished writing particle file...

Finished with SUBFIND.  (total time=4057.92 sec)

Finished computing FoF groups.  (presently allocated=7727.27 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7720.27 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7839.85 MB)
Before=124537
After=139441
NTopleaves= 122011  NTopnodes=139441 (space for 173108)
gravity work-load balance=1.0119   memory-balance=1.01189   SPH work-load balance=1.01195
iter=0 exchange of 0573567383 particles (ret=0)
domain decomposition done. (took 9.99002 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.54115 MByte in top-level domain structure
Tree construction.
task 22: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
task 33: endrun called with an error level of 124


task 22: endrun called with an error level of 124


task 39: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
Finished FOF, total time doing fof/subfind = 4136.02 s
task 0: endrun called with an error level of 124


task 0: endrun called with an error level of 124


task 78: endrun called with an error level of 124


task 129: endrun called with an error level of 124


task 174: endrun called with an error level of 124


task 157: endrun called with an error level of 124


task 112: endrun called with an error level of 124


task 84: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 33: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 123:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 168: endrun called with an error level of 124


task 45: endrun called with an error level of 124


task 67: endrun called with an error level of 124


task 90: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 78:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 78
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 78:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 78
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 129:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 129
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 129:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 129
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 174:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 174
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 174:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 174
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 157:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 157
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 157:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 157
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 112:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 112
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 112:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 112
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 84:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 84
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 84:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 84
task 39: endrun called with an error level of 124


task 135: endrun called with an error level of 124


task 135: endrun called with an error level of 124


task 123: endrun called with an error level of 124


task 123: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 168:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 168
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 168:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 168
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 67:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 67
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 67:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 67
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
task 78: endrun called with an error level of 124


task 129: endrun called with an error level of 124


task 174: endrun called with an error level of 124


task 157: endrun called with an error level of 124


task 112: endrun called with an error level of 124


task 84: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 123
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 123:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 123
task 168: endrun called with an error level of 124


task 45: endrun called with an error level of 124


task 67: endrun called with an error level of 124


task 90: endrun called with an error level of 124


-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   63012.70 Mb (on task=28), Smallest =   62820.74 Mb (on task=0), Average =   62974.37 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=60), Smallest =   64531.71 Mb (on task=124), Average =   64532.00 Mb
Committed_AS:	 Largest =    1711.26 Mb (on task=0), Smallest =    1519.20 Mb (on task=124), Average =    1557.63 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=104), Smallest =   16250.93 Mb (on task=172), Average =   16303.11 Mb
AllocMem:	 Largest =    1711.26 Mb (on task=0), Smallest =    1519.20 Mb (on task=124), Average =    1557.63 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 180 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N4':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         14000
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

reading file `data//snapshot_016_z000p543/snap_016_z000p543.2.hdf5' on task=33 (contains 36049139 particles.)
distributing this file to tasks 33-38
Type 0 (gas):   16900327  (tot=     0272495362) masstab=0
Type 1 (halo):  18016864  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18131  (tot=     0000254233) masstab=0
Type 3 (bulge):   201502  (tot=     0002602064) masstab=0
Type 4 (stars):   910593  (tot=     0014133261) masstab=0
Type 5 (bndry):     1722  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.3.hdf5' on task=39 (contains 35831850 particles.)
distributing this file to tasks 39-44
Type 0 (gas):   17094380  (tot=     0272495362) masstab=0
Type 1 (halo):  17846144  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18919  (tot=     0000254233) masstab=0
Type 3 (bulge):    17935  (tot=     0002602064) masstab=0
Type 4 (stars):   852831  (tot=     0014133261) masstab=0
Type 5 (bndry):     1641  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.10.hdf5' on task=123 (contains 36007246 particles.)
distributing this file to tasks 123-128
Type 0 (gas):   16969886  (tot=     0272495362) masstab=0
Type 1 (halo):  18078658  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13324  (tot=     0000254233) masstab=0
Type 3 (bulge):      854  (tot=     0002602064) masstab=0
Type 4 (stars):   942842  (tot=     0014133261) masstab=0
Type 5 (bndry):     1682  (tot=     0000026492) masstab=0


Allocated 4066.16 MByte for particle storage.

Allocated 2910.56 MByte for storage of SPH data.

Allocated 669.41 MByte for storage of MET data.

Allocated 73.9189 MByte for storage of BH data.


reading file `data//snapshot_016_z000p543/snap_016_z000p543.0.hdf5' on task=0 (contains 36093398 particles.)
distributing this file to tasks 0-21
Type 0 (gas):   17131694  (tot=     0272495362) masstab=0
Type 1 (halo):  17766671  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18457  (tot=     0000254233) masstab=0
Type 3 (bulge):   340185  (tot=     0002602064) masstab=0
Type 4 (stars):   834733  (tot=     0014133261) masstab=0
Type 5 (bndry):     1658  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.7.hdf5' on task=84 (contains 36017303 particles.)
distributing this file to tasks 84-89
Type 0 (gas):   17017260  (tot=     0272495362) masstab=0
Type 1 (halo):  17937987  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13762  (tot=     0000254233) masstab=0
Type 3 (bulge):   242993  (tot=     0002602064) masstab=0
Type 4 (stars):   803712  (tot=     0014133261) masstab=0
Type 5 (bndry):     1589  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.14.hdf5' on task=168 (contains 35948673 particles.)
distributing this file to tasks 168-173
Type 0 (gas):   17098391  (tot=     0272495362) masstab=0
Type 1 (halo):  17667119  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21207  (tot=     0000254233) masstab=0
Type 3 (bulge):   220805  (tot=     0002602064) masstab=0
Type 4 (stars):   939517  (tot=     0014133261) masstab=0
Type 5 (bndry):     1634  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.11.hdf5' on task=129 (contains 35893510 particles.)
distributing this file to tasks 129-134
Type 0 (gas):   17156432  (tot=     0272495362) masstab=0
Type 1 (halo):  17555281  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20719  (tot=     0000254233) masstab=0
Type 3 (bulge):   284970  (tot=     0002602064) masstab=0
Type 4 (stars):   874500  (tot=     0014133261) masstab=0
Type 5 (bndry):     1608  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.6.hdf5' on task=78 (contains 36245474 particles.)
distributing this file to tasks 78-83
Type 0 (gas):   17074104  (tot=     0272495362) masstab=0
Type 1 (halo):  18216943  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13419  (tot=     0000254233) masstab=0
Type 3 (bulge):   202466  (tot=     0002602064) masstab=0
Type 4 (stars):   736810  (tot=     0014133261) masstab=0
Type 5 (bndry):     1732  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.9.hdf5' on task=112 (contains 35968584 particles.)
distributing this file to tasks 112-122
Type 0 (gas):   16964310  (tot=     0272495362) masstab=0
Type 1 (halo):  17883596  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15849  (tot=     0000254233) masstab=0
Type 3 (bulge):   128203  (tot=     0002602064) masstab=0
Type 4 (stars):   974942  (tot=     0014133261) masstab=0
Type 5 (bndry):     1684  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.15.hdf5' on task=174 (contains 36143443 particles.)
distributing this file to tasks 174-179
Type 0 (gas):   16923759  (tot=     0272495362) masstab=0
Type 1 (halo):  18156265  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13868  (tot=     0000254233) masstab=0
Type 3 (bulge):   163663  (tot=     0002602064) masstab=0
Type 4 (stars):   884231  (tot=     0014133261) masstab=0
Type 5 (bndry):     1657  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.5.hdf5' on task=67 (contains 36181260 particles.)
distributing this file to tasks 67-77
Type 0 (gas):   17103657  (tot=     0272495362) masstab=0
Type 1 (halo):  17935641  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18049  (tot=     0000254233) masstab=0
Type 3 (bulge):   138437  (tot=     0002602064) masstab=0
Type 4 (stars):   983901  (tot=     0014133261) masstab=0
Type 5 (bndry):     1575  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.1.hdf5' on task=22 (contains 35993817 particles.)
distributing this file to tasks 22-32
Type 0 (gas):   17070745  (tot=     0272495362) masstab=0
Type 1 (halo):  17849871  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12083  (tot=     0000254233) masstab=0
Type 3 (bulge):   192309  (tot=     0002602064) masstab=0
Type 4 (stars):   867124  (tot=     0014133261) masstab=0
Type 5 (bndry):     1685  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.13.hdf5' on task=157 (contains 35898521 particles.)
distributing this file to tasks 157-167
Type 0 (gas):   16963823  (tot=     0272495362) masstab=0
Type 1 (halo):  17943779  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10672  (tot=     0000254233) masstab=0
Type 3 (bulge):    17237  (tot=     0002602064) masstab=0
Type 4 (stars):   961377  (tot=     0014133261) masstab=0
Type 5 (bndry):     1633  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.12.hdf5' on task=135 (contains 36001307 particles.)
distributing this file to tasks 135-156
Type 0 (gas):   17013352  (tot=     0272495362) masstab=0
Type 1 (halo):  18025971  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15856  (tot=     0000254233) masstab=0
Type 3 (bulge):    92363  (tot=     0002602064) masstab=0
Type 4 (stars):   852107  (tot=     0014133261) masstab=0
Type 5 (bndry):     1658  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.8.hdf5' on task=90 (contains 35829819 particles.)
distributing this file to tasks 90-111
Type 0 (gas):   16963688  (tot=     0272495362) masstab=0
Type 1 (halo):  17893854  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16018  (tot=     0000254233) masstab=0
Type 3 (bulge):    52761  (tot=     0002602064) masstab=0
Type 4 (stars):   901875  (tot=     0014133261) masstab=0
Type 5 (bndry):     1623  (tot=     0000026492) masstab=0


reading file `data//snapshot_016_z000p543/snap_016_z000p543.4.hdf5' on task=45 (contains 36068798 particles.)
distributing this file to tasks 45-66
Type 0 (gas):   17049554  (tot=     0272495362) masstab=0
Type 1 (halo):  17886086  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13900  (tot=     0000254233) masstab=0
Type 3 (bulge):   305381  (tot=     0002602064) masstab=0
Type 4 (stars):   812166  (tot=     0014133261) masstab=0
Type 5 (bndry):     1711  (tot=     0000026492) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576172142


Setting next time for grid output file to Time_next= 0.652007

Setting next time for line of sight file to Time_next= 0.651922

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=3.52725 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7722.07 MB)
Allocated 5.16755 MByte for top-level domain structure
use of 105.514 MB of temporary storage for domain decomposition... (presently allocated=7832.75 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 7832.75 Mbyte (on task=1), Smallest = 7832.75 Mbyte, Average = 7832.75 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      0.1236       2.0193  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag     12.2107      14.2299  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     48.8427      63.0727  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     48.8427     111.9154  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     48.8427     160.7581  allocate_memory()/allocate.c/61
   1 2969 0                 P   3907.4170    4068.1751  allocate_memory()/allocate.c/67
   1 2970 0              SphP   2910.5642    6978.7393  allocate_memory()/allocate.c/85
   1 2971 0              MetP    669.4098    7648.1491  allocate_memory()/allocate.c/105
   1 2972 0               BHP     73.9189    7722.0680  allocate_memory()/allocate.c/126
   1 2975 0          TopNodes      5.0797    7727.2356  domain_allocate()/domain.c/570
   1 2976 0        domain_key     97.6854    7824.9210  domain_Decomposition()/domain.c/231
   1 2987 0        domainWork      0.3907    7825.3200  domain_Decomposition()/domain.c/254
   1 2988 0     domainWorkSph      0.3907    7825.7108  domain_Decomposition()/domain.c/256
   1 2989 0       domainCount      0.3907    7826.1015  domain_Decomposition()/domain.c/258
   1 2990 0    domainCountSph      0.3907    7826.4923  domain_Decomposition()/domain.c/260
   1 2995 0  domainCountStars      0.3907    7826.8857  domain_Decomposition()/domain.c/272
   1 3000 0    domainCountBHs      0.3907    7827.2792  domain_Decomposition()/domain.c/285
   1 3001 0          topNodes      5.4704    7832.7496  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 6.69144 MByte for top-level domain structure
use of 107.858 MB of temporary storage for domain decomposition... (presently allocated=7836.62 MB)
Before=121281
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7841.65 MB)
Before=121281
After=133929
NTopleaves= 117188  NTopnodes=133929 (space for 173108)
gravity work-load balance=1.01946   memory-balance=1.01945   SPH work-load balance=1.01939
iter=0 exchange of 0572657281 particles (ret=0)
domain decomposition done. (took 20.8325 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.79347 MByte in top-level domain structure

Allocated 1625.03 MByte for BH-tree, and 0.447037 Mbyte for top-leaves.  (presently allocted 9354.28 MB)

Begin Ngb-tree construction.
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 9863.69 Mbyte (on task=39), Smallest = 9770.4 Mbyte, Average = 9815.33 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
  39 2964 0  Sendcount_matrix      0.1236       2.0193  allocate_memory()/allocate.c/41
  39 2965 0     ProcessedFlag     12.2107      14.2299  allocate_memory()/allocate.c/52
  39 2966 0  NextActiveParticle     48.8427      63.0727  allocate_memory()/allocate.c/55
  39 2967 0     NextInTimeBin     48.8427     111.9154  allocate_memory()/allocate.c/58
  39 2968 0     PrevInTimeBin     48.8427     160.7581  allocate_memory()/allocate.c/61
  39 2969 0                 P   3907.4170    4068.1751  allocate_memory()/allocate.c/67
  39 2970 0              SphP   2910.5642    6978.7393  allocate_memory()/allocate.c/85
  39 2971 0              MetP    669.4098    7648.1491  allocate_memory()/allocate.c/105
  39 2972 0               BHP     73.9189    7722.0680  allocate_memory()/allocate.c/126
  39 2975 0          TopNodes      6.6417    7728.7976  domain_allocate()/domain.c/570
  39 2976 0   DomainNodeIndex      0.4470    7729.2447  force_treeallocate()/forcetree.c/4800
  39 2977 0        Nodes_base    832.8192    8562.0638  force_treeallocate()/forcetree.c/4803
  39 2978 0     Extnodes_base    694.0160    9256.0798  force_treeallocate()/forcetree.c/4811
  39 2979 0          Nextnode     49.3536    9305.4334  force_treeallocate()/forcetree.c/4820
  39 2980 0            Father     48.8427    9354.2761  force_treeallocate()/forcetree.c/4827
  39 2981 0           Ngblist     12.1936    9366.4697  density()/density.c/690
  39 2982 0              Left     24.3871    9390.8567  density()/density.c/692
  39 2983 0             Right     24.3871    9415.2438  density()/density.c/693
  39 2984 0    DataIndexTable      7.0175    9422.2614  density()/density.c/738
  39 2985 0      DataNodeList     18.7134    9440.9748  density()/density.c/740
  39 2986 0       DensDataGet    123.8228    9564.7977  density()/density.c/893
  39 2987 0    DensDataResult    163.2210    9728.0187  density()/density.c/931
  39 2988 0       DensDataOut    135.6724    9863.6911  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0003489104 particles.
ngb iteration 2: need to repeat for 0000002623 particles.
ngb iteration 3: need to repeat for 0000000912 particles.
ngb iteration 4: need to repeat for 0000000812 particles.
ngb iteration 5: need to repeat for 0000000382 particles.
ngb iteration 6: need to repeat for 0000000286 particles.
ngb iteration 7: need to repeat for 0000000130 particles.
ngb iteration 8: need to repeat for 0000000008 particles.
ngb iteration 9: need to repeat for 0000000003 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.540.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_0.615.hdf5

Begin to compute FoF group catalogues...  (presently allocated=9354.28 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7722.07 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7841.65 MB)
Before=124801
After=139113
NTopleaves= 121724  NTopnodes=139113 (space for 173108)
gravity work-load balance=1.02143   memory-balance=1.02143   SPH work-load balance=1.02009
iter=0 exchange of 0572945435 particles (ret=0)
domain decomposition done. (took 9.99692 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.55617 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=7729.05 MB)
Tree construction.

Start linking particles (presently allocated=9500.75 MB)
links on local processor done (took 9.41659 sec).
Marked=0042506121 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=9632.43 MB) 
have done 0000801267 cross links (processed 0042506121, took 3.08033 sec)
have done 0000329382 cross links (processed 0030247504, took 2.64021 sec)
have done 0000226990 cross links (processed 0024560688, took 2.81618 sec)
have done 0000142336 cross links (processed 0015095668, took 2.40608 sec)
have done 0000077967 cross links (processed 0007379811, took 1.7767 sec)
have done 0000041531 cross links (processed 0002874279, took 1.05594 sec)
have done 0000021631 cross links (processed 0001042534, took 0.425805 sec)
have done 0000010282 cross links (processed 0000638225, took 0.805881 sec)
have done 0000004442 cross links (processed 0000145372, took 0.113493 sec)
have done 0000002907 cross links (processed 0000294637, took 0.7786 sec)
have done 0000001413 cross links (processed 0000043097, took 0.0801311 sec)
have done 0000000526 cross links (processed 0000008172, took 0.0448358 sec)
have done 0000000156 cross links (processed 0000002453, took 0.0445139 sec)
have done 0000000062 cross links (processed 0000000674, took 0.0442281 sec)
have done 0000000020 cross links (processed 0000000230, took 0.0441451 sec)
have done 0000000010 cross links (processed 0000000085, took 0.0439022 sec)
have done 0000000004 cross links (processed 0000000041, took 0.0441921 sec)
have done 0000000001 cross links (processed 0000000016, took 0.0441899 sec)
have done 0000000000 cross links (processed 0000000002, took 0.0448539 sec)
Local groups found.

group finding took = 25.8834 sec
Start finding nearest dm-particle (presently allocated=9500.75 MB)
still finding nearest... (presently allocated=9617.14 MB)
fof-nearest iteration 1: need to repeat for 258825413 particles.
still finding nearest... (presently allocated=9618.99 MB)
fof-nearest iteration 2: need to repeat for 245141358 particles.
still finding nearest... (presently allocated=9622.8 MB)
fof-nearest iteration 3: need to repeat for 226444672 particles.
still finding nearest... (presently allocated=9628.45 MB)
fof-nearest iteration 4: need to repeat for 190340249 particles.
still finding nearest... (presently allocated=9635.5 MB)
fof-nearest iteration 5: need to repeat for 133177702 particles.
still finding nearest... (presently allocated=9640.49 MB)
fof-nearest iteration 6: need to repeat for 63492569 particles.
still finding nearest... (presently allocated=9634.75 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 12.0131 sec
compiling local group data and catalogue took = 1.36217 sec

Total number of groups with at least 32 particles: 180844
Largest group has 27992540 particles.
Total number of particles in groups: 0182612649

group properties are now allocated.. (presently allocated=7924.08 MB)
computation of group properties took = 0.182051 sec
start global sorting of group catalogues number 16
LargestGroup = 11801.677032; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.0623229 sec
Group catalogues globally sorted. took = 1.0287 sec
starting saving of group catalogue number 16
data//groups_016_z000p543
Group catalogues number 16 saved. took = 3.11321 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (272495362).
tree build for species 0 took 0.86679 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0185634987 particles. (took 22.5996 sec)
ngb iteration 2: need to repeat for 0139138656 particles. (took 13.7113 sec)
ngb iteration 3: need to repeat for 0123793883 particles. (took 9.19591 sec)
ngb iteration 4: need to repeat for 0114017242 particles. (took 7.7073 sec)
ngb iteration 5: need to repeat for 0102101501 particles. (took 6.93915 sec)
ngb iteration 6: need to repeat for 0084201213 particles. (took 6.19428 sec)
ngb iteration 7: need to repeat for 0061706596 particles. (took 5.17684 sec)
ngb iteration 8: need to repeat for 0040325684 particles. (took 3.92214 sec)
ngb iteration 9: need to repeat for 0024112320 particles. (took 2.71823 sec)
ngb iteration 10: need to repeat for 0013564865 particles. (took 1.76625 sec)
ngb iteration 11: need to repeat for 0007343092 particles. (took 1.1249 sec)
ngb iteration 12: need to repeat for 0003888646 particles. (took 0.688107 sec)
ngb iteration 13: need to repeat for 0002036332 particles. (took 0.408532 sec)
ngb iteration 14: need to repeat for 0000964615 particles. (took 0.25488 sec)
ngb iteration 15: need to repeat for 0000304146 particles. (took 0.167061 sec)
ngb iteration 16: need to repeat for 0000103204 particles. (took 0.101299 sec)
ngb iteration 17: need to repeat for 0000043773 particles. (took 0.0825691 sec)
ngb iteration 18: need to repeat for 0000023661 particles. (took 0.072463 sec)
ngb iteration 19: need to repeat for 0000014816 particles. (took 0.0659051 sec)
ngb iteration 20: need to repeat for 0000010018 particles. (took 0.0646141 sec)
ngb iteration 21: need to repeat for 0000007030 particles. (took 0.0638609 sec)
ngb iteration 22: need to repeat for 0000004964 particles. (took 0.06269 sec)
ngb iteration 23: need to repeat for 0000003604 particles. (took 0.063709 sec)
ngb iteration 24: need to repeat for 0000002583 particles. (took 0.0627091 sec)
ngb iteration 25: need to repeat for 0000001827 particles. (took 0.062726 sec)
ngb iteration 26: need to repeat for 0000001300 particles. (took 0.062156 sec)
ngb iteration 27: need to repeat for 0000000835 particles. (took 0.062053 sec)
ngb iteration 28: need to repeat for 0000000520 particles. (took 0.0618212 sec)
ngb iteration 29: need to repeat for 0000000306 particles. (took 0.0619411 sec)
ngb iteration 30: need to repeat for 0000000175 particles. (took 0.0617578 sec)
ngb iteration 31: need to repeat for 0000000086 particles. (took 0.0614309 sec)
ngb iteration 32: need to repeat for 0000000047 particles. (took 0.0618711 sec)
ngb iteration 33: need to repeat for 0000000024 particles. (took 0.0617149 sec)
ngb iteration 34: need to repeat for 0000000007 particles. (took 0.061348 sec)
ngb iteration 35: need to repeat for 0000000003 particles. (took 0.061729 sec)
ngb iteration 36: need to repeat for 0000000001 particles. (took 0.0619431 sec)
ngb iteration 37: need to repeat for 0000000001 particles. (took 0.0618029 sec)
final operations ... 
density and smoothing length for species 0 took 84.5174 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.972502 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0188478387 particles. (took 31.5841 sec)
ngb iteration 2: need to repeat for 0139351418 particles. (took 14.6233 sec)
ngb iteration 3: need to repeat for 0117631758 particles. (took 9.69001 sec)
ngb iteration 4: need to repeat for 0105558414 particles. (took 7.58802 sec)
ngb iteration 5: need to repeat for 0094227183 particles. (took 6.5518 sec)
ngb iteration 6: need to repeat for 0079031952 particles. (took 5.7726 sec)
ngb iteration 7: need to repeat for 0060250778 particles. (took 4.88143 sec)
ngb iteration 8: need to repeat for 0041734482 particles. (took 3.78533 sec)
ngb iteration 9: need to repeat for 0026762247 particles. (took 2.73305 sec)
ngb iteration 10: need to repeat for 0016243154 particles. (took 1.88438 sec)
ngb iteration 11: need to repeat for 0009511731 particles. (took 1.26184 sec)
ngb iteration 12: need to repeat for 0005462052 particles. (took 0.822571 sec)
ngb iteration 13: need to repeat for 0003105200 particles. (took 0.518543 sec)
ngb iteration 14: need to repeat for 0001682965 particles. (took 0.329916 sec)
ngb iteration 15: need to repeat for 0000793696 particles. (took 0.213941 sec)
ngb iteration 16: need to repeat for 0000392459 particles. (took 0.137596 sec)
ngb iteration 17: need to repeat for 0000202379 particles. (took 0.0994649 sec)
ngb iteration 18: need to repeat for 0000106706 particles. (took 0.0832839 sec)
ngb iteration 19: need to repeat for 0000056744 particles. (took 0.074621 sec)
ngb iteration 20: need to repeat for 0000029553 particles. (took 0.070504 sec)
ngb iteration 21: need to repeat for 0000015035 particles. (took 0.0688119 sec)
ngb iteration 22: need to repeat for 0000007336 particles. (took 0.06675 sec)
ngb iteration 23: need to repeat for 0000003428 particles. (took 0.0648801 sec)
ngb iteration 24: need to repeat for 0000001540 particles. (took 0.0641711 sec)
ngb iteration 25: need to repeat for 0000000671 particles. (took 0.063894 sec)
ngb iteration 26: need to repeat for 0000000266 particles. (took 0.066334 sec)
ngb iteration 27: need to repeat for 0000000086 particles. (took 0.063097 sec)
ngb iteration 28: need to repeat for 0000000027 particles. (took 0.0634809 sec)
ngb iteration 29: need to repeat for 0000000010 particles. (took 0.0631809 sec)
ngb iteration 30: need to repeat for 0000000002 particles. (took 0.0645351 sec)
final operations ... 
density and smoothing length for species 1 took 93.864 sec
Tree construction for species 4 (14133261).
tree build for species 4 took 0.166929 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0008955652 particles. (took 7.14216 sec)
ngb iteration 2: need to repeat for 0006982503 particles. (took 2.78956 sec)
ngb iteration 3: need to repeat for 0005684086 particles. (took 2.10299 sec)
ngb iteration 4: need to repeat for 0004884623 particles. (took 1.63151 sec)
ngb iteration 5: need to repeat for 0004294721 particles. (took 1.18462 sec)
ngb iteration 6: need to repeat for 0003731449 particles. (took 0.837399 sec)
ngb iteration 7: need to repeat for 0003120639 particles. (took 0.702007 sec)
ngb iteration 8: need to repeat for 0002482312 particles. (took 0.580581 sec)
ngb iteration 9: need to repeat for 0001905634 particles. (took 0.492532 sec)
ngb iteration 10: need to repeat for 0001421736 particles. (took 0.361704 sec)
ngb iteration 11: need to repeat for 0001038893 particles. (took 0.297559 sec)
ngb iteration 12: need to repeat for 0000753438 particles. (took 0.260454 sec)
ngb iteration 13: need to repeat for 0000540472 particles. (took 0.236993 sec)
ngb iteration 14: need to repeat for 0000386724 particles. (took 0.198561 sec)
ngb iteration 15: need to repeat for 0000273421 particles. (took 0.173258 sec)
ngb iteration 16: need to repeat for 0000194871 particles. (took 0.152387 sec)
ngb iteration 17: need to repeat for 0000140325 particles. (took 0.126769 sec)
ngb iteration 18: need to repeat for 0000102464 particles. (took 0.11461 sec)
ngb iteration 19: need to repeat for 0000075614 particles. (took 0.111063 sec)
ngb iteration 20: need to repeat for 0000056278 particles. (took 0.108285 sec)
ngb iteration 21: need to repeat for 0000042366 particles. (took 0.103218 sec)
ngb iteration 22: need to repeat for 0000032383 particles. (took 0.094759 sec)
ngb iteration 23: need to repeat for 0000024758 particles. (took 0.0905631 sec)
ngb iteration 24: need to repeat for 0000018623 particles. (took 0.0869961 sec)
ngb iteration 25: need to repeat for 0000014066 particles. (took 0.0854712 sec)
ngb iteration 26: need to repeat for 0000010581 particles. (took 0.084549 sec)
ngb iteration 27: need to repeat for 0000007920 particles. (took 0.0839479 sec)
ngb iteration 28: need to repeat for 0000005803 particles. (took 0.0839071 sec)
ngb iteration 29: need to repeat for 0000004083 particles. (took 0.0835829 sec)
ngb iteration 30: need to repeat for 0000002805 particles. (took 0.0835421 sec)
ngb iteration 31: need to repeat for 0000001802 particles. (took 0.0833759 sec)
ngb iteration 32: need to repeat for 0000001076 particles. (took 0.082557 sec)
ngb iteration 33: need to repeat for 0000000631 particles. (took 0.0830779 sec)
ngb iteration 34: need to repeat for 0000000354 particles. (took 0.0829711 sec)
ngb iteration 35: need to repeat for 0000000199 particles. (took 0.082577 sec)
ngb iteration 36: need to repeat for 0000000096 particles. (took 0.0827169 sec)
ngb iteration 37: need to repeat for 0000000035 particles. (took 0.0829551 sec)
ngb iteration 38: need to repeat for 0000000019 particles. (took 0.0825531 sec)
ngb iteration 39: need to repeat for 0000000008 particles. (took 0.082881 sec)
ngb iteration 40: need to repeat for 0000000004 particles. (took 0.0828378 sec)
ngb iteration 41: need to repeat for 0000000003 particles. (took 0.0823259 sec)
ngb iteration 42: need to repeat for 0000000001 particles. (took 0.0828569 sec)
final operations ... 
density and smoothing length for species 4 took 21.9072 sec
Tree construction.
tree build took 1.93505 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000018725 particles. (took 0.138784 sec)
ngb iteration 2: need to repeat for 0000016556 particles. (took 0.0956559 sec)
ngb iteration 3: need to repeat for 0000011371 particles. (took 0.095577 sec)
ngb iteration 4: need to repeat for 0000007879 particles. (took 0.094739 sec)
ngb iteration 5: need to repeat for 0000006683 particles. (took 0.0930419 sec)
ngb iteration 6: need to repeat for 0000005777 particles. (took 0.0922608 sec)
ngb iteration 7: need to repeat for 0000004722 particles. (took 0.0925009 sec)
ngb iteration 8: need to repeat for 0000003627 particles. (took 0.090611 sec)
ngb iteration 9: need to repeat for 0000002549 particles. (took 0.0934041 sec)
ngb iteration 10: need to repeat for 0000001695 particles. (took 0.0876451 sec)
ngb iteration 11: need to repeat for 0000001121 particles. (took 0.0890689 sec)
ngb iteration 12: need to repeat for 0000000675 particles. (took 0.086045 sec)
ngb iteration 13: need to repeat for 0000000419 particles. (took 0.084923 sec)
ngb iteration 14: need to repeat for 0000000291 particles. (took 0.084466 sec)
ngb iteration 15: need to repeat for 0000000155 particles. (took 0.0840251 sec)
ngb iteration 16: need to repeat for 0000000093 particles. (took 0.0833831 sec)
ngb iteration 17: need to repeat for 0000000050 particles. (took 0.0834661 sec)
ngb iteration 18: need to repeat for 0000000036 particles. (took 0.083235 sec)
ngb iteration 19: need to repeat for 0000000026 particles. (took 0.082695 sec)
ngb iteration 20: need to repeat for 0000000021 particles. (took 0.082866 sec)
ngb iteration 21: need to repeat for 0000000012 particles. (took 0.0818522 sec)
ngb iteration 22: need to repeat for 0000000007 particles. (took 0.082921 sec)
ngb iteration 23: need to repeat for 0000000004 particles. (took 0.082787 sec)
ngb iteration 24: need to repeat for 0000000003 particles. (took 0.0828719 sec)
ngb iteration 25: need to repeat for 0000000002 particles. (took 0.0827401 sec)
ngb iteration 26: need to repeat for 0000000001 particles. (took 0.082974 sec)
ngb iteration 27: need to repeat for 0000000001 particles. (took 0.0827119 sec)
ngb iteration 28: need to repeat for 0000000001 particles. (took 0.0830419 sec)
final operations ... 
density and smoothing length for species 5 took 2.89939 sec
Tree construction for species 0 (272495362).
tree build for species 0 took 0.87317 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 45.3314 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.964608 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 22.0704 sec
Tree construction for species 4 (14133261).
tree build for species 4 took 0.164405 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 7.97022 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.0903502 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 5.87295 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 1.76474 sec
saving densities took 3.8912 sec

Number of FOF halos treated with collective SubFind code = 1
(the adopted size-limit for the collective algorithm was 8962676 particles.)
the other 180843 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 31754 - 108499711 

subfind_exchange()() took 2.68549 sec

collectively doing halo 1, num=16
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=11017.5 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=11137.1 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 11137.1 Mbyte (on task=0), Smallest = 8092.39 Mbyte, Average = 8155.63 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7570  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4170    4068.1740  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2910.5642    6978.7383  allocate_memory()/allocate.c/85
   0 2971 0              MetP    669.4098    7648.1481  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.9189    7722.0670  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8988    7729.0537  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     72.6534    7801.7070  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.0890    7922.7960  fof_fof()/fof.c/337
   0 2978 0             Group      1.2887    7924.0847  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3093.4107   11017.4954  subfind()/subfind.c/376
   0 2982 0          TopNodes      8.5846   11026.1679  domain_allocate()/domain.c/570
   0 2983 0        domain_key     97.6854   11123.8533  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      0.6604   11124.5219  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      0.6604   11125.1823  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      0.6604   11125.8426  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      0.6604   11126.5030  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      0.6604   11127.1661  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      0.6604   11127.8292  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes      9.2450   11137.0742  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=93841
After=119121
NTopleaves= 104231  NTopnodes=119121 (space for 173108)
gravity work-load balance=1.01399   memory-balance=1.01399   SPH work-load balance=1.0156
iter=0 exchange of 0027863161 particles (ret=0)
domain decomposition done. (took 1.88792 sec)
Freed 2.47133 MByte in top-level domain structure

At 'SUBFIND', subfind_process_group_collectively()/subfind_collective.c/274: Largest Allocation = 12646.4 Mbyte (on task=0), Smallest = 9601.7 Mbyte, Average = 9664.93 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7570  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4170    4068.1740  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2910.5642    6978.7383  allocate_memory()/allocate.c/85
   0 2971 0              MetP    669.4098    7648.1481  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.9189    7722.0670  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8988    7729.0537  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     72.6534    7801.7070  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.0890    7922.7960  fof_fof()/fof.c/337
   0 2978 0             Group      1.2887    7924.0847  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3093.4107   11017.4954  subfind()/subfind.c/376
   0 2982 0          TopNodes      5.9073   11023.4906  domain_allocate()/domain.c/570
   0 2983 0   DomainNodeIndex      0.3976   11023.8883  force_treeallocate()/forcetree.c/4800
   0 2984 0        Nodes_base    831.4634   11855.3517  force_treeallocate()/forcetree.c/4803
   0 2985 0     Extnodes_base    692.8862   12548.2379  force_treeallocate()/forcetree.c/4811
   0 2986 0          Nextnode     49.2971   12597.5350  force_treeallocate()/forcetree.c/4820
   0 2987 0            Father     48.8427   12646.3777  force_treeallocate()/forcetree.c/4827
----------------------------------------------------------------------------------------
coldomain_Decomposition() took 2.4493 sec  (presently allocated=12646.4 MB)
force_treebuild() took 3.51689 sec (presently allocated=12646.4 MB)
Start find_linkngb (153899 particles on task=0)
find linkngb iteration 1: need to repeat for 0024752931 particles. (took 4.36067 sec)
find linkngb iteration 2: need to repeat for 0022132020 particles. (took 2.73983 sec)
find linkngb iteration 3: need to repeat for 0019012664 particles. (took 1.77644 sec)
find linkngb iteration 4: need to repeat for 0017646198 particles. (took 1.24699 sec)
find linkngb iteration 5: need to repeat for 0015604569 particles. (took 1.16632 sec)
find linkngb iteration 6: need to repeat for 0012741786 particles. (took 1.0239 sec)
find linkngb iteration 7: need to repeat for 0009235052 particles. (took 0.852618 sec)
find linkngb iteration 8: need to repeat for 0005956743 particles. (took 0.637979 sec)
find linkngb iteration 9: need to repeat for 0003526194 particles. (took 0.417922 sec)
find linkngb iteration 10: need to repeat for 0001980742 particles. (took 0.241562 sec)
find linkngb iteration 11: need to repeat for 0001082329 particles. (took 0.135169 sec)
find linkngb iteration 12: need to repeat for 0000565635 particles. (took 0.0780079 sec)
find linkngb iteration 13: need to repeat for 0000189869 particles. (took 0.0442102 sec)
find linkngb iteration 14: need to repeat for 0000056468 particles. (took 0.018657 sec)
find linkngb iteration 15: need to repeat for 0000025719 particles. (took 0.00844097 sec)
find linkngb iteration 16: need to repeat for 0000012949 particles. (took 0.00513601 sec)
find linkngb iteration 17: need to repeat for 0000006510 particles. (took 0.00371599 sec)
find linkngb iteration 18: need to repeat for 0000003296 particles. (took 0.00268006 sec)
find linkngb iteration 19: need to repeat for 0000001736 particles. (took 0.001858 sec)
find linkngb iteration 20: need to repeat for 0000000955 particles. (took 0.00123501 sec)
find linkngb iteration 21: need to repeat for 0000000594 particles. (took 0.000984907 sec)
find linkngb iteration 22: need to repeat for 0000000369 particles. (took 0.000860214 sec)
find linkngb iteration 23: need to repeat for 0000000235 particles. (took 0.000785828 sec)
find linkngb iteration 24: need to repeat for 0000000127 particles. (took 0.000779867 sec)
find linkngb iteration 25: need to repeat for 0000000072 particles. (took 0.000748158 sec)
find linkngb iteration 26: need to repeat for 0000000037 particles. (took 0.000755072 sec)
find linkngb iteration 27: need to repeat for 0000000022 particles. (took 0.000742912 sec)
find linkngb iteration 28: need to repeat for 0000000011 particles. (took 0.000736952 sec)
find linkngb iteration 29: need to repeat for 0000000005 particles. (took 0.000743151 sec)
find linkngb iteration 30: need to repeat for 0000000002 particles. (took 0.000747919 sec)
find linkngb iteration 31: need to repeat for 0000000001 particles. (took 0.000729084 sec)
find_linkngb() took 14.7742 sec
Start finding nearest two (153899 particles on task=0)
find_nearesttwo() took 1.75513 sec (presently allocated=12658.1 MB)
parallel sort of densities done. took 0.216954 sec
building distributed linked list. (presently allocated 12656.6 MB)
identification of primary candidates took 544.978 sec
adding background as candidate took 0.0867958 sec
establishing of rank order took 172.818 sec  (p=27992540, grouplen=27992540) presently allocated 12656.6 MB

total number of subhalo candidates=100666

number of subhalo candidates that can be done independently=87462.
(Largest size is 6130, finding them took 0.0556071 sec)
particles are marked (took 88.1905)
independent subhalos are assembled on individual CPUs for unbinding (0.209964 sec, (presently allocated=12656.6 MB)
unbinding of independent ones took 0.179924 sec
particles have returned to their original processor (0.265158 sec, presently allocated 12656.6 MB)

number of subhalo candidates that can be done independently=11935.
(Largest size is 20921, finding them took 1.90662 sec)
particles are marked (took 62.2666)
independent subhalos are assembled on individual CPUs for unbinding (0.18689 sec, (presently allocated=12656.6 MB)
unbinding of independent ones took 0.643482 sec
particles have returned to their original processor (0.243467 sec, presently allocated 12656.6 MB)

number of subhalo candidates that can be done independently=1170.
(Largest size is 138137, finding them took 1.84857 sec)
particles are marked (took 52.4957)
independent subhalos are assembled on individual CPUs for unbinding (0.182345 sec, (presently allocated=12656.6 MB)
unbinding of independent ones took 8.77373 sec
particles have returned to their original processor (0.232762 sec, presently allocated 12656.6 MB)

number of subhalo candidates that can be done independently=91.
(Largest size is 247884, finding them took 0.492129 sec)
particles are marked (took 53.4157)
independent subhalos are assembled on individual CPUs for unbinding (0.175798 sec, (presently allocated=12656.6 MB)
unbinding of independent ones took 12.8515 sec
particles have returned to their original processor (0.231436 sec, presently allocated 12656.6 MB)

number of subhalo candidates that can be done independently=5.
(Largest size is 993173, finding them took 0.499622 sec)
particles are marked (took 38.7806)
independent subhalos are assembled on individual CPUs for unbinding (0.163579 sec, (presently allocated=12656.6 MB)
unbinding of independent ones took 5.9733 sec
particles have returned to their original processor (0.219492 sec, presently allocated 12656.6 MB)

number of subhalo candidates that can be done independently=0.
(Largest size is 993173, finding them took 0.797628 sec)
too few, I do the rest of 3 collectively

collective unbinding of nr=0 (3) of length=993173 ... maximum alloacted 12657.2 MB
took 15.066 sec
collective unbinding of nr=1 (3) of length=3003305 ... maximum alloacted 12657.2 MB
took 40.3523 sec
collective unbinding of nr=2 (3) of length=27992540 ... maximum alloacted 12657.2 MB
took 348.389 sec

the collective unbinding of remaining halos took 440.309 sec

found 5814 bound substructures in FoF group of length 27992540
determination of parent subhalo took 0.0614522 sec (presently allocated 12657.2 MB)
determining substructure properties took 393.821 sec (presently allocated 12657.2 MB)
processing of collective halos took 1924.6 sec
sort of local particles()() took 1.5189 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 1141.85 sec

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unsorting of local particles()() took 1.33385 sec
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subfind_exchange() (for return to original CPU)  took 5.77126 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=11017.5 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=11137.1 MB)
Before=127553
After=140857
NTopleaves= 123250  NTopnodes=140857 (space for 173108)
gravity work-load balance=1.01458   memory-balance=1.01458   SPH work-load balance=1.01242
iter=0 exchange of 0572936267 particles (ret=0)
domain decomposition done. (took 10.2153 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.47633 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000148041 particles. (took 0.0312769 sec)
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SO iteration 3: need to repeat for 0000148041 particles. (took 0.025893 sec)
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SO iteration 14: need to repeat for 0000148041 particles. (took 0.0269639 sec)
SO iteration 15: need to repeat for 0000145880 particles. (took 0.027035 sec)
SO iteration 16: need to repeat for 0000000719 particles. (took 0.0258131 sec)
SO iteration 17: need to repeat for 0000000044 particles. (took 0.00122404 sec)
SO iteration 1: need to repeat for 0000148041 particles. (took 0.026922 sec)
SO iteration 2: need to repeat for 0000148041 particles. (took 0.0212469 sec)
SO iteration 3: need to repeat for 0000148041 particles. (took 0.023401 sec)
SO iteration 4: need to repeat for 0000148041 particles. (took 0.0227518 sec)
SO iteration 5: need to repeat for 0000148041 particles. (took 0.022975 sec)
SO iteration 6: need to repeat for 0000148041 particles. (took 0.0229521 sec)
SO iteration 7: need to repeat for 0000148041 particles. (took 0.023035 sec)
SO iteration 8: need to repeat for 0000148041 particles. (took 0.022948 sec)
SO iteration 9: need to repeat for 0000148041 particles. (took 0.0228081 sec)
SO iteration 10: need to repeat for 0000148041 particles. (took 0.022892 sec)
SO iteration 11: need to repeat for 0000148041 particles. (took 0.0229189 sec)
SO iteration 12: need to repeat for 0000148041 particles. (took 0.0228381 sec)
SO iteration 13: need to repeat for 0000148041 particles. (took 0.0232239 sec)
SO iteration 14: need to repeat for 0000148041 particles. (took 0.022923 sec)
SO iteration 15: need to repeat for 0000147214 particles. (took 0.0226939 sec)
SO iteration 16: need to repeat for 0000026967 particles. (took 0.0226178 sec)
SO iteration 17: need to repeat for 0000000379 particles. (took 0.00674486 sec)
SO iteration 18: need to repeat for 0000000032 particles. (took 0.000849962 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.000460148 sec)
SO iteration 1: need to repeat for 0000148041 particles. (took 0.026942 sec)
SO iteration 2: need to repeat for 0000148041 particles. (took 0.020936 sec)
SO iteration 3: need to repeat for 0000148041 particles. (took 0.0167561 sec)
SO iteration 4: need to repeat for 0000148041 particles. (took 0.0189941 sec)
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SO iteration 6: need to repeat for 0000148041 particles. (took 0.0177472 sec)
SO iteration 7: need to repeat for 0000148041 particles. (took 0.0176721 sec)
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SO iteration 15: need to repeat for 0000148016 particles. (took 0.0177209 sec)
SO iteration 16: need to repeat for 0000146672 particles. (took 0.017803 sec)
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SO iteration 18: need to repeat for 0000000779 particles. (took 0.00798297 sec)
SO iteration 19: need to repeat for 0000000063 particles. (took 0.000907183 sec)
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SO iteration 17: need to repeat for 0000000065 particles. (took 0.00151205 sec)
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SO iteration 8: need to repeat for 0000148041 particles. (took 0.021301 sec)
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SO iteration 11: need to repeat for 0000148041 particles. (took 0.0215681 sec)
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SO iteration 13: need to repeat for 0000148041 particles. (took 0.0213721 sec)
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SO iteration 15: need to repeat for 0000147755 particles. (took 0.0213909 sec)
SO iteration 16: need to repeat for 0000145309 particles. (took 0.0211818 sec)
SO iteration 17: need to repeat for 0000001267 particles. (took 0.020664 sec)
SO iteration 18: need to repeat for 0000000103 particles. (took 0.00135803 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.000509977 sec)
SO iteration 1: need to repeat for 0000148041 particles. (took 0.0268788 sec)
SO iteration 2: need to repeat for 0000148041 particles. (took 0.0209599 sec)
SO iteration 3: need to repeat for 0000148041 particles. (took 0.016566 sec)
SO iteration 4: need to repeat for 0000148041 particles. (took 0.0166631 sec)
SO iteration 5: need to repeat for 0000148041 particles. (took 0.016547 sec)
SO iteration 6: need to repeat for 0000148041 particles. (took 0.01651 sec)
SO iteration 7: need to repeat for 0000148041 particles. (took 0.0164499 sec)
SO iteration 8: need to repeat for 0000148041 particles. (took 0.0164511 sec)
SO iteration 9: need to repeat for 0000148041 particles. (took 0.016398 sec)
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SO iteration 11: need to repeat for 0000148041 particles. (took 0.0163641 sec)
SO iteration 12: need to repeat for 0000148041 particles. (took 0.0163989 sec)
SO iteration 13: need to repeat for 0000148041 particles. (took 0.0164428 sec)
SO iteration 14: need to repeat for 0000148041 particles. (took 0.016597 sec)
SO iteration 15: need to repeat for 0000148032 particles. (took 0.016737 sec)
SO iteration 16: need to repeat for 0000147528 particles. (took 0.016608 sec)
SO iteration 17: need to repeat for 0000132880 particles. (took 0.0164649 sec)
SO iteration 18: need to repeat for 0000003147 particles. (took 0.0156291 sec)
SO iteration 19: need to repeat for 0000000136 particles. (took 0.00186801 sec)
SO iteration 20: need to repeat for 0000000005 particles. (took 0.00057292 sec)
determining spherical overdensity masses took 2.63946 sec
finding spherical overdensity particles took 0.337287 sec
determining contamination of halos took 0.232617 sec
Global sort of Groups took 0.0418642 sec
Global sort of SubGroups took 0.114106 sec
Global sort of IDs took 0.610326 sec
Writing block 0 (GLEN), n=1005, ptype=0, dtype=0, ndim=1, bpb=4 bytes=4020d
Writing block 1 (GOFF), n=1005, ptype=0, dtype=0, ndim=1, bpb=4 bytes=4020d
Writing block 2 (MTOT), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 3 (GPOS), n=1005, ptype=0, dtype=1, ndim=3, bpb=4 bytes=12060d
Writing block 4 (MMEA), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 5 (RMEA), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 6 (MCRI), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 7 (RCRI), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 8 (MTOP), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 9 (RTOP), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 17 (NCON), n=1005, ptype=0, dtype=0, ndim=1, bpb=4 bytes=4020d
Writing block 18 (MCON), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 22 (NSUB), n=1005, ptype=0, dtype=0, ndim=1, bpb=4 bytes=4020d
Writing block 23 (FSUB), n=1005, ptype=0, dtype=0, ndim=1, bpb=4 bytes=4020d
Writing block 24 (SLEN), n=6834, ptype=1, dtype=0, ndim=1, bpb=4 bytes=27336d
Writing block 25 (SOFF), n=6834, ptype=1, dtype=0, ndim=1, bpb=4 bytes=27336d
Writing block 26 (SSUB), n=6834, ptype=1, dtype=0, ndim=1, bpb=4 bytes=27336d
Writing block 27 (MSUB), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 28 (SPOS), n=6834, ptype=1, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 29 (SVEL), n=6834, ptype=1, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 30 (SCM ), n=6834, ptype=1, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 33 (VMAX), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 34 (RMAX), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 35 (RHMS), n=6834, ptype=1, dtype=1, ndim=6, bpb=4 bytes=164016d
Writing block 36 (MTRH), n=6834, ptype=1, dtype=1, ndim=6, bpb=4 bytes=164016d
Writing block 37 (MBID), n=6834, ptype=1, dtype=2, ndim=1, bpb=8 bytes=54672d
Writing block 38 (GRNR), n=6834, ptype=1, dtype=0, ndim=1, bpb=4 bytes=27336d
Writing block 39 (SUBN), n=6834, ptype=1, dtype=0, ndim=1, bpb=4 bytes=27336d
Writing block 40 (SMST), n=6834, ptype=1, dtype=1, ndim=6, bpb=4 bytes=164016d
Writing block 53 (PID ), n=1037012, ptype=2, dtype=2, ndim=1, bpb=8 bytes=8296096d
Writing block 54 (SLEN), n=6834, ptype=1, dtype=0, ndim=6, bpb=4 bytes=164016d
Writing block 55 (STEN), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 56 (SKEN), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 57 (SUEN), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 58 (SUIT), n=6834, ptype=1, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 59 (BHMA), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 60 (BHMD), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 61 (SVD ), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 62 (SVDH), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 63 (HMPR), n=6834, ptype=1, dtype=1, ndim=6, bpb=4 bytes=164016d
Writing block 64 (SSFR), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 65 (SSA ), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 66 (SSBZ), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 67 (SSIM), n=6834, ptype=1, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 68 (SSPI), n=6834, ptype=4, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 69 (GSPI), n=6834, ptype=1, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 70 (FSPI), n=6834, ptype=5, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 71 (SFM ), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 72 (SFMT), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 73 (SFME), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 74 (SFAE), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 75 (SFKE), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 76 (SFTE), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 77 (SMWP), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 78 (SMM ), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 79 (SMMS), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 80 (SFZ ), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 81 (SFZS), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 82 (SSIA), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 83 (SIAS), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 84 (SMET), n=6834, ptype=5, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 85 (SMTS), n=6834, ptype=5, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 86 (MF1 ), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 87 (MeF1), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 88 (MF  ), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 89 (MeF2), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 90 (MFA ), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 91 (MeFA), n=6834, ptype=5, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 92 (NSPI), n=6834, ptype=6, dtype=1, ndim=3, bpb=4 bytes=82008d
Writing block 93 (NFM ), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 94 (NFMT), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 95 (NFME), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 96 (NFAE), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 97 (NFKE), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 98 (NFTE), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 99 (SMWP), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 100 (SMM ), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 101 (SMMS), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 102 (SSIA), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 103 (SIAS), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 104 (SMET), n=6834, ptype=6, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 105 (SMTS), n=6834, ptype=6, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 106 (MF1 ), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 107 (MeF1), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 108 (MF2 ), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 109 (MeF2), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 110 (MFA ), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 111 (MeFA), n=6834, ptype=6, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 112 (SM  ), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 113 (SFKE), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 114 (SFAE), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 115 (SMWP), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 116 (SMM ), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 117 (SMMS), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 118 (SSIA), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 119 (SIAS), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 120 (SMET), n=6834, ptype=4, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 121 (SMTS), n=6834, ptype=4, dtype=1, ndim=9, bpb=4 bytes=246024d
Writing block 122 (MF1 ), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 123 (MeF1), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 124 (MF2 ), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 125 (MeF2), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 126 (MFA ), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 127 (MeFA), n=6834, ptype=4, dtype=1, ndim=1, bpb=4 bytes=27336d
Writing block 128 (MMe5), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 129 (RMe5), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 130 (MCr5), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 131 (RCr5), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 132 (MMe2), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 133 (RMe2), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 134 (MCr2), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 135 (RCr2), n=1005, ptype=0, dtype=1, ndim=1, bpb=4 bytes=4020d
Writing block 136 (MAPT), n=6834, ptype=7, dtype=1, ndim=60, bpb=4 bytes=1640160d
Writing block 137 (SAPT), n=6834, ptype=8, dtype=1, ndim=10, bpb=4 bytes=273360d
Writing block 138 (VAPT), n=6834, ptype=9, dtype=1, ndim=10, bpb=4 bytes=273360d
Writing block 139 (BEGY), n=1037012, ptype=2, dtype=1, ndim=1, bpb=4 bytes=4148048d
Subgroup catalogues saved. took = 9.99471 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 7.025981e-01
 eagle_ph_key_ort: type= 1 timed by volker 7.996089e-01
 eagle_ph_key_ort: type= 2 timed by volker 7.380199e-02
 eagle_ph_key_ort: type= 3 timed by volker 4.278398e-02
 eagle_ph_key_ort: type= 4 timed by volker 8.079600e-02
 eagle_ph_key_ort: type= 5 timed by volker 2.811408e-02
 eagle_ph_key_ort: timing parallel sort = 1.836934e+00
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 3050482368

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 11090.8 Mbyte (on task=0), Smallest = 8045.79 Mbyte, Average = 8109.31 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7570  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4170    4068.1740  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2910.5642    6978.7383  allocate_memory()/allocate.c/85
   0 2971 0              MetP    669.4098    7648.1481  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.9189    7722.0670  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8988    7729.0537  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     72.6534    7801.7070  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.0890    7922.7960  fof_fof()/fof.c/337
   0 2978 0             Group      1.2887    7924.0847  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3093.4107   11017.4954  subfind()/subfind.c/376
   0 2980 0   sort_index_data     73.3379   11090.8333  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1699754 number of bytes = 543921280

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 13125.6 Mbyte (on task=0), Smallest = 10074.2 Mbyte, Average = 10143.1 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      0.1236       2.0182  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag     12.2107      14.2289  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     48.8427      63.0716  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     48.8427     111.9143  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     48.8427     160.7570  allocate_memory()/allocate.c/61
   0 2969 0                 P   3907.4170    4068.1740  allocate_memory()/allocate.c/67
   0 2970 0              SphP   2910.5642    6978.7383  allocate_memory()/allocate.c/85
   0 2971 0              MetP    669.4098    7648.1481  allocate_memory()/allocate.c/105
   0 2972 0               BHP     73.9189    7722.0670  allocate_memory()/allocate.c/126
   0 2975 0          TopNodes      6.8988    7729.0537  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     72.6534    7801.7070  fof_fof()/fof.c/249
   0 2977 0         FOF_GList    121.0890    7922.7960  fof_fof()/fof.c/337
   0 2978 0             Group      1.2887    7924.0847  fof_fof()/fof.c/380
   0 2979 0          SubGroup   3093.4107   11017.4954  subfind()/subfind.c/376
   0 2980 0   sort_index_data     73.3379   11090.8333  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      6.4840   11097.3174  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      6.4840   11103.8014  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      6.4840   11110.2855  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    518.7238   11629.0092  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    518.7238   12147.7330  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    977.8387   13125.5717  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 4.487263e+00
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 3050482368
 eagle_fetch_elements: max_bytes= 504, max_elements= 1348058 number of bytes = 679421232
 eagle_ph_key_ort: timing parallel SphP exchange = 3.528304e+00
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 3050482368
 eagle_fetch_elements: max_bytes= 384, max_elements= 2670058 number of bytes = 1025302272
 eagle_ph_key_ort: timing parallel MetP exchange = 3.435621e-01
 eagle_fetch_elements: we are using 2147483647 bytes of memory, FreeBytes= 3050482368
 eagle_fetch_elements: max_bytes= 256, max_elements= 4098156 number of bytes = 1049127936
 eagle_ph_key_ort: timing parallel BHP exchange = 1.126885e-02
Sorting particle-data by peano-hilbert key took = 10.8421 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1699754 number of bytes= 543921280
 eagle_ph_restore: timing parallel P exchange = 4.691697e+00
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1348058 number of bytes= 679421232
 eagle_ph_restore: timing parallel SphP exchange = 3.694129e+00
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 2670058 number of bytes= 1025302272
 eagle_ph_restore: timing parallel MetP exchange = 3.730421e-01
 eagle_send_elements: we are using 2147483647 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 4098156 number of bytes= 1049127936
 eagle_ph_restore: timing parallel BHP exchange = 9.820938e-03
Restoring original order after ph key sorting took = 8.80185 sec

finished writing particle file...

Finished with SUBFIND.  (total time=3654.32 sec)

Finished computing FoF groups.  (presently allocated=7729.05 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=7722.07 MB)
Allocated 8.6725 MByte for top-level domain structure
use of 110.906 MB of temporary storage for domain decomposition... (presently allocated=7841.65 MB)
Before=124745
After=139233
NTopleaves= 121829  NTopnodes=139233 (space for 173108)
gravity work-load balance=1.01791   memory-balance=1.0179   SPH work-load balance=1.01838
iter=0 exchange of 0572417714 particles (ret=0)
domain decomposition done. (took 9.98927 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 1.55067 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 22: endrun called with an error level of 124


task 22: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 22:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 22
task 33: endrun called with an error level of 124


task 33: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 33:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 33
Finished FOF, total time doing fof/subfind = 3723.69 s
task 67: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 78:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 174: endrun called with an error level of 124


task 135: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 168:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 84: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 123:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 129: endrun called with an error level of 124


task 39: endrun called with an error level of 124


task 45: endrun called with an error level of 124


task 112: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 157:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 67:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 67
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 67:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 67
task 78: endrun called with an error level of 124


task 78: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 174:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 174
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 174:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 174
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
task 168: endrun called with an error level of 124


task 168: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 84:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 84
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 84:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 84
task 123: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 129:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 129
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 129:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 129
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 39:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 39
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 112:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 112
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 112:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 112
task 157: endrun called with an error level of 124


task 157: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
task 0: endrun called with an error level of 124


task 67: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 78
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 78:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 78
task 174: endrun called with an error level of 124


task 135: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 168
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 168:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 168
task 84: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 123
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) task 129: endrun called with an error level of 124


task 39: endrun called with an error level of 124


task 45: endrun called with an error level of 124


task 112: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 157
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 157:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 157
task 90: endrun called with an error level of 124


    minor: Can't get value
task 123: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
MPI-process 123:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 123
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
task 0: endrun called with an error level of 124


  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   62703.35 Mb (on task=112), Smallest =   62510.13 Mb (on task=0), Average =   62660.38 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=240), Smallest =   64531.71 Mb (on task=496), Average =   64532.00 Mb
Committed_AS:	 Largest =    2021.87 Mb (on task=0), Smallest =    1828.64 Mb (on task=112), Average =    1871.63 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=416), Smallest =   16250.93 Mb (on task=688), Average =   16303.27 Mb
AllocMem:	 Largest =    2021.87 Mb (on task=0), Smallest =    1828.64 Mb (on task=112), Average =    1871.63 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 720 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N16':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         3950
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

Allocated 1016.55 MByte for particle storage.

Allocated 753.395 MByte for storage of SPH data.

Allocated 152.668 MByte for storage of MET data.

Allocated 19.1338 MByte for storage of BH data.


reading file `data//snapshot_005_z002p348/snap_005_z002p348.0.hdf5' on task=0 (contains 36070023 particles.)
distributing this file to tasks 0-44
Type 0 (gas):   17683670  (tot=     0282140476) masstab=0
Type 1 (halo):  17968202  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13430  (tot=     0000254233) masstab=0
Type 3 (bulge):   154636  (tot=     0002602064) masstab=0
Type 4 (stars):   249230  (tot=     0004504656) masstab=0
Type 5 (bndry):      855  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.15.hdf5' on task=675 (contains 36191078 particles.)
distributing this file to tasks 675-719
Type 0 (gas):   17669043  (tot=     0282140476) masstab=0
Type 1 (halo):  18028336  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14419  (tot=     0000254233) masstab=0
Type 3 (bulge):   165531  (tot=     0002602064) masstab=0
Type 4 (stars):   312898  (tot=     0004504656) masstab=0
Type 5 (bndry):      851  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.10.hdf5' on task=450 (contains 36228502 particles.)
distributing this file to tasks 450-494
Type 0 (gas):   17735768  (tot=     0282140476) masstab=0
Type 1 (halo):  18010892  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21000  (tot=     0000254233) masstab=0
Type 3 (bulge):   186854  (tot=     0002602064) masstab=0
Type 4 (stars):   273136  (tot=     0004504656) masstab=0
Type 5 (bndry):      852  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.14.hdf5' on task=630 (contains 36025519 particles.)
distributing this file to tasks 630-674
Type 0 (gas):   17577891  (tot=     0282140476) masstab=0
Type 1 (halo):  17902980  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16706  (tot=     0000254233) masstab=0
Type 3 (bulge):   231889  (tot=     0002602064) masstab=0
Type 4 (stars):   295176  (tot=     0004504656) masstab=0
Type 5 (bndry):      877  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.8.hdf5' on task=360 (contains 35816279 particles.)
distributing this file to tasks 360-404
Type 0 (gas):   17483172  (tot=     0282140476) masstab=0
Type 1 (halo):  17915876  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10274  (tot=     0000254233) masstab=0
Type 3 (bulge):   102562  (tot=     0002602064) masstab=0
Type 4 (stars):   303506  (tot=     0004504656) masstab=0
Type 5 (bndry):      889  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.13.hdf5' on task=585 (contains 35933890 particles.)
distributing this file to tasks 585-629
Type 0 (gas):   17633214  (tot=     0282140476) masstab=0
Type 1 (halo):  17920493  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14033  (tot=     0000254233) masstab=0
Type 3 (bulge):   110451  (tot=     0002602064) masstab=0
Type 4 (stars):   254892  (tot=     0004504656) masstab=0
Type 5 (bndry):      807  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.5.hdf5' on task=225 (contains 36041643 particles.)
distributing this file to tasks 225-269
Type 0 (gas):   17648658  (tot=     0282140476) masstab=0
Type 1 (halo):  17916869  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20160  (tot=     0000254233) masstab=0
Type 3 (bulge):   162295  (tot=     0002602064) masstab=0
Type 4 (stars):   292848  (tot=     0004504656) masstab=0
Type 5 (bndry):      813  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.9.hdf5' on task=405 (contains 35995784 particles.)
distributing this file to tasks 405-449
Type 0 (gas):   17637921  (tot=     0282140476) masstab=0
Type 1 (halo):  17875069  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      5379  (tot=     0000254233) masstab=0
Type 3 (bulge):   148228  (tot=     0002602064) masstab=0
Type 4 (stars):   328295  (tot=     0004504656) masstab=0
Type 5 (bndry):      892  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.1.hdf5' on task=45 (contains 35767360 particles.)
distributing this file to tasks 45-89
Type 0 (gas):   17652790  (tot=     0282140476) masstab=0
Type 1 (halo):  17734666  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12885  (tot=     0000254233) masstab=0
Type 3 (bulge):   113611  (tot=     0002602064) masstab=0
Type 4 (stars):   252592  (tot=     0004504656) masstab=0
Type 5 (bndry):      816  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.3.hdf5' on task=135 (contains 36176532 particles.)
distributing this file to tasks 135-179
Type 0 (gas):   17686748  (tot=     0282140476) masstab=0
Type 1 (halo):  17980711  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21183  (tot=     0000254233) masstab=0
Type 3 (bulge):   238458  (tot=     0002602064) masstab=0
Type 4 (stars):   248572  (tot=     0004504656) masstab=0
Type 5 (bndry):      860  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.2.hdf5' on task=90 (contains 36097723 particles.)
distributing this file to tasks 90-134
Type 0 (gas):   17670282  (tot=     0282140476) masstab=0
Type 1 (halo):  17959398  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     22907  (tot=     0000254233) masstab=0
Type 3 (bulge):   196226  (tot=     0002602064) masstab=0
Type 4 (stars):   248037  (tot=     0004504656) masstab=0
Type 5 (bndry):      873  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.11.hdf5' on task=495 (contains 36046030 particles.)
distributing this file to tasks 495-539
Type 0 (gas):   17606609  (tot=     0282140476) masstab=0
Type 1 (halo):  17998334  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16964  (tot=     0000254233) masstab=0
Type 3 (bulge):   135818  (tot=     0002602064) masstab=0
Type 4 (stars):   287439  (tot=     0004504656) masstab=0
Type 5 (bndry):      866  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.6.hdf5' on task=270 (contains 35874376 particles.)
distributing this file to tasks 270-314
Type 0 (gas):   17587325  (tot=     0282140476) masstab=0
Type 1 (halo):  17827232  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      8839  (tot=     0000254233) masstab=0
Type 3 (bulge):   170120  (tot=     0002602064) masstab=0
Type 4 (stars):   280006  (tot=     0004504656) masstab=0
Type 5 (bndry):      854  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.7.hdf5' on task=315 (contains 36088805 particles.)
distributing this file to tasks 315-359
Type 0 (gas):   17686517  (tot=     0282140476) masstab=0
Type 1 (halo):  17977377  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     26992  (tot=     0000254233) masstab=0
Type 3 (bulge):   156779  (tot=     0002602064) masstab=0
Type 4 (stars):   240248  (tot=     0004504656) masstab=0
Type 5 (bndry):      892  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.12.hdf5' on task=540 (contains 35720058 particles.)
distributing this file to tasks 540-584
Type 0 (gas):   17458977  (tot=     0282140476) masstab=0
Type 1 (halo):  17850323  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10101  (tot=     0000254233) masstab=0
Type 3 (bulge):    40017  (tot=     0002602064) masstab=0
Type 4 (stars):   359766  (tot=     0004504656) masstab=0
Type 5 (bndry):      874  (tot=     0000013681) masstab=0


reading file `data//snapshot_005_z002p348/snap_005_z002p348.4.hdf5' on task=180 (contains 36102238 particles.)
distributing this file to tasks 180-224
Type 0 (gas):   17721891  (tot=     0282140476) masstab=0
Type 1 (halo):  17793972  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18961  (tot=     0000254233) masstab=0
Type 3 (bulge):   288589  (tot=     0002602064) masstab=0
Type 4 (stars):   278015  (tot=     0004504656) masstab=0
Type 5 (bndry):      810  (tot=     0000013681) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576175840


Setting next time for grid output file to Time_next= 0.303258

Setting next time for line of sight file to Time_next= 0.300005

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=4.92769 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1945.63 MB)
Allocated 1.62149 MByte for top-level domain structure
use of 26.4302 MB of temporary storage for domain decomposition... (presently allocated=1973.68 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 1973.69 Mbyte (on task=1), Smallest = 1973.69 Mbyte, Average = 1973.69 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     12.2108      31.3618  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     12.2108      43.5726  allocate_memory()/allocate.c/61
   1 2969 0                 P    976.8604    1020.4329  allocate_memory()/allocate.c/67
   1 2970 0              SphP    753.3949    1773.8278  allocate_memory()/allocate.c/85
   1 2971 0              MetP    152.6678    1926.4956  allocate_memory()/allocate.c/105
   1 2972 0               BHP     19.1338    1945.6294  allocate_memory()/allocate.c/126
   1 2973 0   DomainStartList      0.1758    1945.8052  domain_allocate()/domain.c/562
   1 2974 0     DomainEndList      0.1758    1945.9810  domain_allocate()/domain.c/565
   1 2975 0          TopNodes      1.2699    1947.2509  domain_allocate()/domain.c/570
   1 2976 0        domain_key     24.4215    1971.6724  domain_Decomposition()/domain.c/231
   1 3001 0          topNodes      1.3676    1973.6811  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 2.0025 MByte for top-level domain structure
use of 27.0163 MB of temporary storage for domain decomposition... (presently allocated=1974.65 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 2.49776 MByte for top-level domain structure
use of 27.7783 MB of temporary storage for domain decomposition... (presently allocated=1975.9 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.01352  new value=0.017576
Allocated 3.14161 MByte for top-level domain structure
use of 28.7688 MB of temporary storage for domain decomposition... (presently allocated=1977.54 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.017576  new value=0.0228488
Allocated 3.9786 MByte for top-level domain structure
use of 30.0565 MB of temporary storage for domain decomposition... (presently allocated=1979.66 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0228488  new value=0.0297034
Allocated 5.06668 MByte for top-level domain structure
use of 31.7305 MB of temporary storage for domain decomposition... (presently allocated=1982.43 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0297034  new value=0.0386145
Allocated 6.48122 MByte for top-level domain structure
use of 33.9067 MB of temporary storage for domain decomposition... (presently allocated=1986.02 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0386145  new value=0.0501988
Allocated 8.32015 MByte for top-level domain structure
use of 36.7358 MB of temporary storage for domain decomposition... (presently allocated=1990.68 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0501988  new value=0.0652585
Allocated 10.7107 MByte for top-level domain structure
use of 40.4136 MB of temporary storage for domain decomposition... (presently allocated=1996.75 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0652585  new value=0.084836
Allocated 13.8184 MByte for top-level domain structure
use of 45.1947 MB of temporary storage for domain decomposition... (presently allocated=2004.64 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.084836  new value=0.110287
Allocated 17.8585 MByte for top-level domain structure
use of 51.4102 MB of temporary storage for domain decomposition... (presently allocated=2014.9 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.110287  new value=0.143373
Allocated 23.1105 MByte for top-level domain structure
use of 59.4902 MB of temporary storage for domain decomposition... (presently allocated=2028.23 MB)
Before=393897
Increasing TopNodeAllocFactor=0.143373  new value=0.186385
Allocated 29.9382 MByte for top-level domain structure
use of 69.9944 MB of temporary storage for domain decomposition... (presently allocated=2045.56 MB)
Before=393897
After=510873
NTopleaves= 447014  NTopnodes=510873 (space for 596613)
gravity work-load balance=1.01658   memory-balance=1.01658   SPH work-load balance=1.01737
iter=0 exchange of 0575596664 particles (ret=0)
domain decomposition done. (took 26.54 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 3.92487 MByte in top-level domain structure

Allocated 488.21 MByte for BH-tree, and 1.70522 Mbyte for top-leaves.  (presently allocted 2461.23 MB)

Begin Ngb-tree construction.
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 2752.87 Mbyte (on task=165), Smallest = 2719.18 Mbyte, Average = 2736.84 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
 165 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
 165 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
 165 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
 165 2967 0     NextInTimeBin     12.2108      31.3618  allocate_memory()/allocate.c/58
 165 2968 0     PrevInTimeBin     12.2108      43.5726  allocate_memory()/allocate.c/61
 165 2969 0                 P    976.8604    1020.4329  allocate_memory()/allocate.c/67
 165 2970 0              SphP    753.3949    1773.8278  allocate_memory()/allocate.c/85
 165 2971 0              MetP    152.6678    1926.4956  allocate_memory()/allocate.c/105
 165 2972 0               BHP     19.1338    1945.6294  allocate_memory()/allocate.c/126
 165 2973 0   DomainStartList      0.1758    1945.8052  domain_allocate()/domain.c/562
 165 2974 0     DomainEndList      0.1758    1945.9810  domain_allocate()/domain.c/565
 165 2975 0          TopNodes     25.3347    1971.3157  domain_allocate()/domain.c/570
 165 2976 0   DomainNodeIndex      1.7052    1973.0210  force_treeallocate()/forcetree.c/4800
 165 2977 0        Nodes_base    251.9126    2224.9335  force_treeallocate()/forcetree.c/4803
 165 2978 0     Extnodes_base    209.9271    2434.8607  force_treeallocate()/forcetree.c/4811
 165 2979 0          Nextnode     14.1596    2449.0202  force_treeallocate()/forcetree.c/4820
 165 2980 0            Father     12.2108    2461.2310  force_treeallocate()/forcetree.c/4827
 165 2981 0           Ngblist      3.0303    2464.2613  density()/density.c/690
 165 2982 0              Left      6.0605    2470.3218  density()/density.c/692
 165 2983 0             Right      6.0605    2476.3823  density()/density.c/693
 165 2984 0    DataIndexTable      7.0175    2483.3998  density()/density.c/738
 165 2985 0      DataNodeList     18.7134    2502.1133  density()/density.c/740
 165 2986 0       DensDataGet     68.6805    2570.7938  density()/density.c/893
 165 2987 0    DensDataResult     90.5334    2661.3272  density()/density.c/931
 165 2988 0       DensDataOut     91.5383    2752.8655  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0000358446 particles.
ngb iteration 2: need to repeat for 0000000171 particles.
ngb iteration 3: need to repeat for 0000000058 particles.
ngb iteration 4: need to repeat for 0000000055 particles.
ngb iteration 5: need to repeat for 0000000015 particles.
ngb iteration 6: need to repeat for 0000000011 particles.
ngb iteration 7: need to repeat for 0000000003 particles.
ngb iteration 8: need to repeat for 0000000001 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_2.316.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_2.479.hdf5

Begin to compute FoF group catalogues...  (presently allocated=2461.23 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1945.63 MB)
Allocated 29.9382 MByte for top-level domain structure
use of 69.9944 MB of temporary storage for domain decomposition... (presently allocated=2045.56 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.186385  new value=0.2423
Allocated 38.8142 MByte for top-level domain structure
use of 83.6498 MB of temporary storage for domain decomposition... (presently allocated=2068.09 MB)
Before=479569
After=533217
NTopleaves= 466565  NTopnodes=533217 (space for 775597)
gravity work-load balance=1.02102   memory-balance=1.02102   SPH work-load balance=1.02184
iter=0 exchange of 0575191569 particles (ret=0)
domain decomposition done. (took 11.7163 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 11.0953 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=1972.42 MB)
Tree construction.

Start linking particles (presently allocated=2503.27 MB)
links on local processor done (took 1.59816 sec).
Marked=0040410777 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=2601.12 MB) 
have done 0001126340 cross links (processed 0040410777, took 1.35472 sec)
have done 0000382688 cross links (processed 0020748953, took 0.564423 sec)
have done 0000216625 cross links (processed 0014547922, took 0.525454 sec)
have done 0000111591 cross links (processed 0007466500, took 0.4327 sec)
have done 0000058553 cross links (processed 0003756734, took 0.334544 sec)
have done 0000030055 cross links (processed 0001823787, took 0.269465 sec)
have done 0000015429 cross links (processed 0001172945, took 0.222387 sec)
have done 0000007653 cross links (processed 0000543892, took 0.171756 sec)
have done 0000003388 cross links (processed 0000138781, took 0.0792241 sec)
have done 0000001448 cross links (processed 0000032673, took 0.0436182 sec)
have done 0000000801 cross links (processed 0000023500, took 0.044126 sec)
have done 0000000484 cross links (processed 0000021021, took 0.0475008 sec)
have done 0000000280 cross links (processed 0000010659, took 0.0468969 sec)
have done 0000000144 cross links (processed 0000002887, took 0.0335739 sec)
have done 0000000055 cross links (processed 0000001256, took 0.0338562 sec)
have done 0000000014 cross links (processed 0000000277, took 0.032722 sec)
have done 0000000005 cross links (processed 0000000054, took 0.0324991 sec)
have done 0000000002 cross links (processed 0000000008, took 0.0325539 sec)
have done 0000000000 cross links (processed 0000000004, took 0.0326009 sec)
Local groups found.

group finding took = 6.01692 sec
Start finding nearest dm-particle (presently allocated=2503.27 MB)
still finding nearest... (presently allocated=2591.41 MB)
fof-nearest iteration 1: need to repeat for 270284287 particles.
still finding nearest... (presently allocated=2591.1 MB)
fof-nearest iteration 2: need to repeat for 246426862 particles.
still finding nearest... (presently allocated=2592.12 MB)
fof-nearest iteration 3: need to repeat for 216316285 particles.
still finding nearest... (presently allocated=2593.62 MB)
fof-nearest iteration 4: need to repeat for 187409659 particles.
still finding nearest... (presently allocated=2595.98 MB)
fof-nearest iteration 5: need to repeat for 137181480 particles.
still finding nearest... (presently allocated=2598.57 MB)
fof-nearest iteration 6: need to repeat for 63228060 particles.
still finding nearest... (presently allocated=2597.65 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 4.30038 sec
compiling local group data and catalogue took = 0.499767 sec

Total number of groups with at least 32 particles: 219621
Largest group has 2399409 particles.
Total number of particles in groups: 0113788628

group properties are now allocated.. (presently allocated=2022.23 MB)
computation of group properties took = 0.0462811 sec
start global sorting of group catalogues number 5
LargestGroup = 1135.127740; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.045856 sec
Group catalogues globally sorted. took = 1.34897 sec
starting saving of group catalogue number 5
data//groups_005_z002p348
Group catalogues number 5 saved. took = 3.08977 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (282140476).
tree build for species 0 took 0.580642 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0221160547 particles. (took 6.7443 sec)
ngb iteration 2: need to repeat for 0192769544 particles. (took 4.50554 sec)
ngb iteration 3: need to repeat for 0178270509 particles. (took 3.8923 sec)
ngb iteration 4: need to repeat for 0165981609 particles. (took 3.58122 sec)
ngb iteration 5: need to repeat for 0149873846 particles. (took 3.39906 sec)
ngb iteration 6: need to repeat for 0125486404 particles. (took 3.17061 sec)
ngb iteration 7: need to repeat for 0094212833 particles. (took 2.77897 sec)
ngb iteration 8: need to repeat for 0063361157 particles. (took 2.26778 sec)
ngb iteration 9: need to repeat for 0039009960 particles. (took 1.5536 sec)
ngb iteration 10: need to repeat for 0022603818 particles. (took 0.955653 sec)
ngb iteration 11: need to repeat for 0012627924 particles. (took 0.550633 sec)
ngb iteration 12: need to repeat for 0006929140 particles. (took 0.342954 sec)
ngb iteration 13: need to repeat for 0003780280 particles. (took 0.233159 sec)
ngb iteration 14: need to repeat for 0001950280 particles. (took 0.167382 sec)
ngb iteration 15: need to repeat for 0000819044 particles. (took 0.124942 sec)
ngb iteration 16: need to repeat for 0000366511 particles. (took 0.0920401 sec)
ngb iteration 17: need to repeat for 0000199038 particles. (took 0.0703781 sec)
ngb iteration 18: need to repeat for 0000124079 particles. (took 0.0587292 sec)
ngb iteration 19: need to repeat for 0000081888 particles. (took 0.0528309 sec)
ngb iteration 20: need to repeat for 0000054976 particles. (took 0.0499659 sec)
ngb iteration 21: need to repeat for 0000036051 particles. (took 0.0487959 sec)
ngb iteration 22: need to repeat for 0000022720 particles. (took 0.048018 sec)
ngb iteration 23: need to repeat for 0000013521 particles. (took 0.0476899 sec)
ngb iteration 24: need to repeat for 0000007756 particles. (took 0.0472331 sec)
ngb iteration 25: need to repeat for 0000004206 particles. (took 0.0472291 sec)
ngb iteration 26: need to repeat for 0000002187 particles. (took 0.0474391 sec)
ngb iteration 27: need to repeat for 0000001089 particles. (took 0.046773 sec)
ngb iteration 28: need to repeat for 0000000513 particles. (took 0.0482428 sec)
ngb iteration 29: need to repeat for 0000000225 particles. (took 0.0487399 sec)
ngb iteration 30: need to repeat for 0000000083 particles. (took 0.049731 sec)
ngb iteration 31: need to repeat for 0000000020 particles. (took 0.0484049 sec)
ngb iteration 32: need to repeat for 0000000009 particles. (took 0.048768 sec)
ngb iteration 33: need to repeat for 0000000001 particles. (took 0.0481341 sec)
final operations ... 
density and smoothing length for species 0 took 35.4544 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.580036 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0215924897 particles. (took 9.11152 sec)
ngb iteration 2: need to repeat for 0185222388 particles. (took 5.04589 sec)
ngb iteration 3: need to repeat for 0167874666 particles. (took 4.19578 sec)
ngb iteration 4: need to repeat for 0154886066 particles. (took 3.63305 sec)
ngb iteration 5: need to repeat for 0139928507 particles. (took 3.3116 sec)
ngb iteration 6: need to repeat for 0118870185 particles. (took 3.05991 sec)
ngb iteration 7: need to repeat for 0092221185 particles. (took 2.70488 sec)
ngb iteration 8: need to repeat for 0065117240 particles. (took 2.17973 sec)
ngb iteration 9: need to repeat for 0042469279 particles. (took 1.57761 sec)
ngb iteration 10: need to repeat for 0026111385 particles. (took 1.03807 sec)
ngb iteration 11: need to repeat for 0015420923 particles. (took 0.659641 sec)
ngb iteration 12: need to repeat for 0008864187 particles. (took 0.407953 sec)
ngb iteration 13: need to repeat for 0004999760 particles. (took 0.272675 sec)
ngb iteration 14: need to repeat for 0002677321 particles. (took 0.194867 sec)
ngb iteration 15: need to repeat for 0001252739 particles. (took 0.143668 sec)
ngb iteration 16: need to repeat for 0000567856 particles. (took 0.105688 sec)
ngb iteration 17: need to repeat for 0000260401 particles. (took 0.0819759 sec)
ngb iteration 18: need to repeat for 0000120011 particles. (took 0.0668349 sec)
ngb iteration 19: need to repeat for 0000055312 particles. (took 0.05779 sec)
ngb iteration 20: need to repeat for 0000024857 particles. (took 0.0518439 sec)
ngb iteration 21: need to repeat for 0000010720 particles. (took 0.048914 sec)
ngb iteration 22: need to repeat for 0000004306 particles. (took 0.0474629 sec)
ngb iteration 23: need to repeat for 0000001608 particles. (took 0.0467751 sec)
ngb iteration 24: need to repeat for 0000000559 particles. (took 0.046788 sec)
ngb iteration 25: need to repeat for 0000000157 particles. (took 0.046412 sec)
ngb iteration 26: need to repeat for 0000000044 particles. (took 0.0462291 sec)
ngb iteration 27: need to repeat for 0000000012 particles. (took 0.0466309 sec)
ngb iteration 28: need to repeat for 0000000001 particles. (took 0.0485802 sec)
final operations ... 
density and smoothing length for species 1 took 38.5201 sec
Tree construction for species 4 (4504656).
tree build for species 4 took 0.3767 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0003682101 particles. (took 1.47451 sec)
ngb iteration 2: need to repeat for 0003366430 particles. (took 0.920346 sec)
ngb iteration 3: need to repeat for 0003144732 particles. (took 0.708836 sec)
ngb iteration 4: need to repeat for 0002964221 particles. (took 0.571496 sec)
ngb iteration 5: need to repeat for 0002775232 particles. (took 0.449067 sec)
ngb iteration 6: need to repeat for 0002546045 particles. (took 0.406814 sec)
ngb iteration 7: need to repeat for 0002267882 particles. (took 0.283738 sec)
ngb iteration 8: need to repeat for 0001951373 particles. (took 0.246385 sec)
ngb iteration 9: need to repeat for 0001635938 particles. (took 0.212712 sec)
ngb iteration 10: need to repeat for 0001337718 particles. (took 0.190865 sec)
ngb iteration 11: need to repeat for 0001075009 particles. (took 0.171373 sec)
ngb iteration 12: need to repeat for 0000855514 particles. (took 0.15422 sec)
ngb iteration 13: need to repeat for 0000673863 particles. (took 0.145327 sec)
ngb iteration 14: need to repeat for 0000525087 particles. (took 0.137606 sec)
ngb iteration 15: need to repeat for 0000405420 particles. (took 0.123003 sec)
ngb iteration 16: need to repeat for 0000313757 particles. (took 0.111027 sec)
ngb iteration 17: need to repeat for 0000243668 particles. (took 0.0941851 sec)
ngb iteration 18: need to repeat for 0000190690 particles. (took 0.0877161 sec)
ngb iteration 19: need to repeat for 0000149635 particles. (took 0.082181 sec)
ngb iteration 20: need to repeat for 0000117232 particles. (took 0.0734811 sec)
ngb iteration 21: need to repeat for 0000091998 particles. (took 0.068927 sec)
ngb iteration 22: need to repeat for 0000071529 particles. (took 0.0664392 sec)
ngb iteration 23: need to repeat for 0000055032 particles. (took 0.0649211 sec)
ngb iteration 24: need to repeat for 0000041253 particles. (took 0.063921 sec)
ngb iteration 25: need to repeat for 0000029799 particles. (took 0.0631111 sec)
ngb iteration 26: need to repeat for 0000020611 particles. (took 0.062758 sec)
ngb iteration 27: need to repeat for 0000013601 particles. (took 0.062479 sec)
ngb iteration 28: need to repeat for 0000008553 particles. (took 0.0622389 sec)
ngb iteration 29: need to repeat for 0000005215 particles. (took 0.06267 sec)
ngb iteration 30: need to repeat for 0000003013 particles. (took 0.0623178 sec)
ngb iteration 31: need to repeat for 0000001748 particles. (took 0.0627251 sec)
ngb iteration 32: need to repeat for 0000001016 particles. (took 0.062252 sec)
ngb iteration 33: need to repeat for 0000000607 particles. (took 0.065402 sec)
ngb iteration 34: need to repeat for 0000000359 particles. (took 0.0622468 sec)
ngb iteration 35: need to repeat for 0000000217 particles. (took 0.0622699 sec)
ngb iteration 36: need to repeat for 0000000128 particles. (took 0.062253 sec)
ngb iteration 37: need to repeat for 0000000061 particles. (took 0.062021 sec)
ngb iteration 38: need to repeat for 0000000037 particles. (took 0.0631239 sec)
ngb iteration 39: need to repeat for 0000000021 particles. (took 0.0620389 sec)
ngb iteration 40: need to repeat for 0000000014 particles. (took 0.062099 sec)
ngb iteration 41: need to repeat for 0000000007 particles. (took 0.062196 sec)
ngb iteration 42: need to repeat for 0000000006 particles. (took 0.061969 sec)
ngb iteration 43: need to repeat for 0000000002 particles. (took 0.0623741 sec)
ngb iteration 44: need to repeat for 0000000001 particles. (took 0.06266 sec)
ngb iteration 45: need to repeat for 0000000001 particles. (took 0.0632529 sec)
final operations ... 
density and smoothing length for species 4 took 8.42621 sec
Tree construction.
tree build took 0.867149 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000007879 particles. (took 0.059464 sec)
ngb iteration 2: need to repeat for 0000005902 particles. (took 0.0652602 sec)
ngb iteration 3: need to repeat for 0000004373 particles. (took 0.0665281 sec)
ngb iteration 4: need to repeat for 0000003374 particles. (took 0.0666168 sec)
ngb iteration 5: need to repeat for 0000002912 particles. (took 0.066443 sec)
ngb iteration 6: need to repeat for 0000002501 particles. (took 0.0652101 sec)
ngb iteration 7: need to repeat for 0000002002 particles. (took 0.065094 sec)
ngb iteration 8: need to repeat for 0000001497 particles. (took 0.065408 sec)
ngb iteration 9: need to repeat for 0000001004 particles. (took 0.0654562 sec)
ngb iteration 10: need to repeat for 0000000655 particles. (took 0.064697 sec)
ngb iteration 11: need to repeat for 0000000401 particles. (took 0.0646708 sec)
ngb iteration 12: need to repeat for 0000000264 particles. (took 0.0643129 sec)
ngb iteration 13: need to repeat for 0000000166 particles. (took 0.0644171 sec)
ngb iteration 14: need to repeat for 0000000096 particles. (took 0.0645618 sec)
ngb iteration 15: need to repeat for 0000000055 particles. (took 0.064451 sec)
ngb iteration 16: need to repeat for 0000000038 particles. (took 0.0640121 sec)
ngb iteration 17: need to repeat for 0000000030 particles. (took 0.063827 sec)
ngb iteration 18: need to repeat for 0000000017 particles. (took 0.063566 sec)
ngb iteration 19: need to repeat for 0000000013 particles. (took 0.0633109 sec)
ngb iteration 20: need to repeat for 0000000009 particles. (took 0.0627861 sec)
ngb iteration 21: need to repeat for 0000000006 particles. (took 0.0631258 sec)
ngb iteration 22: need to repeat for 0000000005 particles. (took 0.0632842 sec)
ngb iteration 23: need to repeat for 0000000004 particles. (took 0.0627911 sec)
ngb iteration 24: need to repeat for 0000000004 particles. (took 0.0623701 sec)
ngb iteration 25: need to repeat for 0000000004 particles. (took 0.0624769 sec)
ngb iteration 26: need to repeat for 0000000001 particles. (took 0.0622468 sec)
ngb iteration 27: need to repeat for 0000000001 particles. (took 0.0622549 sec)
ngb iteration 28: need to repeat for 0000000001 particles. (took 0.0622358 sec)
final operations ... 
density and smoothing length for species 5 took 1.99241 sec
Tree construction for species 0 (282140476).
tree build for species 0 took 0.576979 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 11.35 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.617585 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 6.57807 sec
Tree construction for species 4 (4504656).
tree build for species 4 took 0.35548 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 4.22202 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.351 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 4.16955 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 0.858159 sec
saving densities took 3.00576 sec

Number of FOF halos treated with collective SubFind code = 1
(the adopted size-limit for the collective algorithm was 2240683 particles.)
the other 219620 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 8756 - 37149546 

subfind_exchange()() took 2.03799 sec

collectively doing halo 1, num=5
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=2293.82 MB)
Allocated 38.8142 MByte for top-level domain structure
use of 83.6498 MB of temporary storage for domain decomposition... (presently allocated=2416.29 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 2416.29 Mbyte (on task=0), Smallest = 2154.28 Mbyte, Average = 2161.37 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    753.3949    1773.8268  allocate_memory()/allocate.c/85
   0 2971 0              MetP    152.6678    1926.4946  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.1338    1945.6284  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1945.8042  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1945.9799  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     26.4428    1972.4228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.5120    1990.9347  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.8533    2021.7880  fof_fof()/fof.c/337
   0 2978 0             Group      0.4379    2022.2259  fof_fof()/fof.c/380
   0 2979 0          SubGroup    271.5971    2293.8231  subfind()/subfind.c/376
   0 2980 0   DomainStartList      0.1758    2293.9988  domain_allocate()/domain.c/562
   0 2981 0     DomainEndList      0.1758    2294.1746  domain_allocate()/domain.c/565
   0 2982 0          TopNodes     38.4627    2332.6373  domain_allocate()/domain.c/570
   0 2983 0        domain_key     24.4215    2357.0588  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      2.9587    2360.0504  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      2.9587    2363.0091  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      2.9587    2365.9678  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      2.9587    2368.9265  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      2.9587    2371.8961  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      2.9587    2374.8658  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes     41.4213    2416.2871  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=446761
After=495185
NTopleaves= 433287  NTopnodes=495185 (space for 775597)
gravity work-load balance=1.02115   memory-balance=1.02115   SPH work-load balance=1.02163
iter=0 exchange of 0002396034 particles (ret=0)
domain decomposition done. (took 3.09818 sec)
Freed 12.8362 MByte in top-level domain structure

At 'SUBFIND', subfind_process_group_collectively()/subfind_collective.c/274: Largest Allocation = 2805.91 Mbyte (on task=0), Smallest = 2543.9 Mbyte, Average = 2550.98 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    753.3949    1773.8268  allocate_memory()/allocate.c/85
   0 2971 0              MetP    152.6678    1926.4946  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.1338    1945.6284  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1945.8042  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1945.9799  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     26.4428    1972.4228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.5120    1990.9347  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.8533    2021.7880  fof_fof()/fof.c/337
   0 2978 0             Group      0.4379    2022.2259  fof_fof()/fof.c/380
   0 2979 0          SubGroup    271.5971    2293.8231  subfind()/subfind.c/376
   0 2980 0   DomainStartList      0.1758    2293.9988  domain_allocate()/domain.c/562
   0 2981 0     DomainEndList      0.1758    2294.1746  domain_allocate()/domain.c/565
   0 2982 0          TopNodes     24.5568    2318.7314  domain_allocate()/domain.c/570
   0 2983 0   DomainNodeIndex      1.6529    2320.3842  force_treeallocate()/forcetree.c/4800
   0 2984 0        Nodes_base    250.4763    2570.8605  force_treeallocate()/forcetree.c/4803
   0 2985 0     Extnodes_base    208.7302    2779.5908  force_treeallocate()/forcetree.c/4811
   0 2986 0          Nextnode     14.0997    2793.6905  force_treeallocate()/forcetree.c/4820
   0 2987 0            Father     12.2108    2805.9013  force_treeallocate()/forcetree.c/4827
----------------------------------------------------------------------------------------
coldomain_Decomposition() took 3.46236 sec  (presently allocated=2805.9 MB)
force_treebuild() took 1.4827 sec (presently allocated=2805.9 MB)
Start find_linkngb (3387 particles on task=0)
find linkngb iteration 1: need to repeat for 0002399261 particles. (took 0.160629 sec)
find linkngb iteration 2: need to repeat for 0002396341 particles. (took 0.106063 sec)
find linkngb iteration 3: need to repeat for 0002256932 particles. (took 0.082303 sec)
find linkngb iteration 4: need to repeat for 0002177724 particles. (took 0.0720251 sec)
find linkngb iteration 5: need to repeat for 0001965490 particles. (took 0.067503 sec)
find linkngb iteration 6: need to repeat for 0001607101 particles. (took 0.063585 sec)
find linkngb iteration 7: need to repeat for 0001168279 particles. (took 0.0569122 sec)
find linkngb iteration 8: need to repeat for 0000765590 particles. (took 0.0500519 sec)
find linkngb iteration 9: need to repeat for 0000466042 particles. (took 0.043174 sec)
find linkngb iteration 10: need to repeat for 0000269337 particles. (took 0.0383132 sec)
find linkngb iteration 11: need to repeat for 0000150467 particles. (took 0.034621 sec)
find linkngb iteration 12: need to repeat for 0000077905 particles. (took 0.0311041 sec)
find linkngb iteration 13: need to repeat for 0000029434 particles. (took 0.0265291 sec)
find linkngb iteration 14: need to repeat for 0000012652 particles. (took 0.0176959 sec)
find linkngb iteration 15: need to repeat for 0000006051 particles. (took 0.00966811 sec)
find linkngb iteration 16: need to repeat for 0000003186 particles. (took 0.0047791 sec)
find linkngb iteration 17: need to repeat for 0000001760 particles. (took 0.00245309 sec)
find linkngb iteration 18: need to repeat for 0000001083 particles. (took 0.00149298 sec)
find linkngb iteration 19: need to repeat for 0000000669 particles. (took 0.00104713 sec)
find linkngb iteration 20: need to repeat for 0000000419 particles. (took 0.000815868 sec)
find linkngb iteration 21: need to repeat for 0000000261 particles. (took 0.00075388 sec)
find linkngb iteration 22: need to repeat for 0000000167 particles. (took 0.000739098 sec)
find linkngb iteration 23: need to repeat for 0000000097 particles. (took 0.00073719 sec)
find linkngb iteration 24: need to repeat for 0000000049 particles. (took 0.000633955 sec)
find linkngb iteration 25: need to repeat for 0000000026 particles. (took 0.000618935 sec)
find linkngb iteration 26: need to repeat for 0000000010 particles. (took 0.000609159 sec)
find linkngb iteration 27: need to repeat for 0000000006 particles. (took 0.000613928 sec)
find linkngb iteration 28: need to repeat for 0000000002 particles. (took 0.000577927 sec)
find linkngb iteration 29: need to repeat for 0000000001 particles. (took 0.000575066 sec)
find_linkngb() took 0.877651 sec
Start finding nearest two (3387 particles on task=0)
find_nearesttwo() took 0.0768161 sec (presently allocated=2806.16 MB)
parallel sort of densities done. took 0.0935879 sec
building distributed linked list. (presently allocated 2806.13 MB)
identification of primary candidates took 143.064 sec
adding background as candidate took 1.46353 sec
establishing of rank order took 46.8048 sec  (p=2399409, grouplen=2399409) presently allocated 2806.13 MB

total number of subhalo candidates=8417

number of subhalo candidates that can be done independently=7417.
(Largest size is 1472, finding them took 0.004426 sec)
particles are marked (took 31.4456)
independent subhalos are assembled on individual CPUs for unbinding (0.130291 sec, (presently allocated=2806.13 MB)
unbinding of independent ones took 0.0260201 sec
particles have returned to their original processor (0.18003 sec, presently allocated 2806.13 MB)

number of subhalo candidates that can be done independently=886.
(Largest size is 14790, finding them took 0.693856 sec)
particles are marked (took 20.581)
independent subhalos are assembled on individual CPUs for unbinding (0.137765 sec, (presently allocated=2806.13 MB)
unbinding of independent ones took 0.333123 sec
particles have returned to their original processor (0.189638 sec, presently allocated 2806.13 MB)

number of subhalo candidates that can be done independently=104.
(Largest size is 142558, finding them took 0.579739 sec)
particles are marked (took 17.7175)
independent subhalos are assembled on individual CPUs for unbinding (0.1383 sec, (presently allocated=2806.13 MB)
unbinding of independent ones took 0.641648 sec
particles have returned to their original processor (0.19243 sec, presently allocated 2806.13 MB)

number of subhalo candidates that can be done independently=7.
(Largest size is 142558, finding them took 0.232307 sec)
particles are marked (took 16.1542)
independent subhalos are assembled on individual CPUs for unbinding (0.175166 sec, (presently allocated=2806.13 MB)
unbinding of independent ones took 4.11263 sec
particles have returned to their original processor (0.29735 sec, presently allocated 2806.13 MB)

number of subhalo candidates that can be done independently=1.
(Largest size is 142558, finding them took 0.386723 sec)
particles are marked (took 12.3646)
independent subhalos are assembled on individual CPUs for unbinding (0.128196 sec, (presently allocated=2806.13 MB)
unbinding of independent ones took 0.04914 sec
particles have returned to their original processor (0.177964 sec, presently allocated 2806.13 MB)

number of subhalo candidates that can be done independently=0.
(Largest size is 142558, finding them took 0.342991 sec)
too few, I do the rest of 2 collectively

collective unbinding of nr=0 (2) of length=142558 ... maximum alloacted 2806.14 MB
took 15.3417 sec
collective unbinding of nr=1 (2) of length=2399409 ... maximum alloacted 2806.14 MB
took 141.317 sec

the collective unbinding of remaining halos took 168.513 sec

found 787 bound substructures in FoF group of length 2399409
determination of parent subhalo took 0.084655 sec (presently allocated 2806.14 MB)
determining substructure properties took 112.667 sec (presently allocated 2806.14 MB)
processing of collective halos took 593.074 sec
sort of local particles()() took 0.496494 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 401.91 sec

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unsorting of local particles()() took 0.396954 sec
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subfind_exchange() (for return to original CPU)  took 3.27286 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=2293.82 MB)
Allocated 38.8142 MByte for top-level domain structure
use of 83.6498 MB of temporary storage for domain decomposition... (presently allocated=2416.29 MB)
Before=484833
After=538297
NTopleaves= 471010  NTopnodes=538297 (space for 775597)
gravity work-load balance=1.01725   memory-balance=1.01725   SPH work-load balance=1.01818
iter=0 exchange of 0575229306 particles (ret=0)
domain decomposition done. (took 8.62855 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 10.8627 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000192851 particles. (took 0.063694 sec)
SO iteration 2: need to repeat for 0000192851 particles. (took 0.0335131 sec)
SO iteration 3: need to repeat for 0000192851 particles. (took 0.0354409 sec)
SO iteration 4: need to repeat for 0000192851 particles. (took 0.043371 sec)
SO iteration 5: need to repeat for 0000192851 particles. (took 0.039233 sec)
SO iteration 6: need to repeat for 0000192851 particles. (took 0.036365 sec)
SO iteration 7: need to repeat for 0000192851 particles. (took 0.0363882 sec)
SO iteration 8: need to repeat for 0000192851 particles. (took 0.0362241 sec)
SO iteration 9: need to repeat for 0000192851 particles. (took 0.0365241 sec)
SO iteration 10: need to repeat for 0000192851 particles. (took 0.0361829 sec)
SO iteration 11: need to repeat for 0000192851 particles. (took 0.0363002 sec)
SO iteration 12: need to repeat for 0000192851 particles. (took 0.036329 sec)
SO iteration 13: need to repeat for 0000192851 particles. (took 0.0364871 sec)
SO iteration 14: need to repeat for 0000192851 particles. (took 0.0435598 sec)
SO iteration 15: need to repeat for 0000190863 particles. (took 0.062881 sec)
SO iteration 16: need to repeat for 0000002882 particles. (took 0.0432029 sec)
SO iteration 17: need to repeat for 0000000038 particles. (took 0.0048151 sec)
SO iteration 1: need to repeat for 0000192851 particles. (took 0.038878 sec)
SO iteration 2: need to repeat for 0000192851 particles. (took 0.0350702 sec)
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SO iteration 6: need to repeat for 0000192851 particles. (took 0.0336308 sec)
SO iteration 7: need to repeat for 0000192851 particles. (took 0.0367599 sec)
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SO iteration 14: need to repeat for 0000192851 particles. (took 0.0428631 sec)
SO iteration 15: need to repeat for 0000191934 particles. (took 0.03369 sec)
SO iteration 16: need to repeat for 0000106509 particles. (took 0.0338299 sec)
SO iteration 17: need to repeat for 0000001267 particles. (took 0.023654 sec)
SO iteration 18: need to repeat for 0000000024 particles. (took 0.00247693 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.00212979 sec)
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SO iteration 13: need to repeat for 0000192851 particles. (took 0.030673 sec)
SO iteration 14: need to repeat for 0000192851 particles. (took 0.030479 sec)
SO iteration 15: need to repeat for 0000192839 particles. (took 0.030519 sec)
SO iteration 16: need to repeat for 0000191609 particles. (took 0.030529 sec)
SO iteration 17: need to repeat for 0000157754 particles. (took 0.0306191 sec)
SO iteration 18: need to repeat for 0000010901 particles. (took 0.027688 sec)
SO iteration 19: need to repeat for 0000000502 particles. (took 0.00468302 sec)
SO iteration 20: need to repeat for 0000000008 particles. (took 0.00222206 sec)
SO iteration 21: need to repeat for 0000000001 particles. (took 0.00186682 sec)
SO iteration 1: need to repeat for 0000192851 particles. (took 0.037106 sec)
SO iteration 2: need to repeat for 0000192851 particles. (took 0.0354741 sec)
SO iteration 3: need to repeat for 0000192851 particles. (took 0.0360899 sec)
SO iteration 4: need to repeat for 0000192851 particles. (took 0.0363801 sec)
SO iteration 5: need to repeat for 0000192851 particles. (took 0.0366259 sec)
SO iteration 6: need to repeat for 0000192851 particles. (took 0.0365942 sec)
SO iteration 7: need to repeat for 0000192851 particles. (took 0.0365548 sec)
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SO iteration 14: need to repeat for 0000192851 particles. (took 0.036689 sec)
SO iteration 15: need to repeat for 0000190805 particles. (took 0.036658 sec)
SO iteration 16: need to repeat for 0000001896 particles. (took 0.0364501 sec)
SO iteration 17: need to repeat for 0000000027 particles. (took 0.00283408 sec)
SO iteration 1: need to repeat for 0000192851 particles. (took 0.037138 sec)
SO iteration 2: need to repeat for 0000192851 particles. (took 0.0329261 sec)
SO iteration 3: need to repeat for 0000192851 particles. (took 0.0352919 sec)
SO iteration 4: need to repeat for 0000192851 particles. (took 0.0359039 sec)
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SO iteration 13: need to repeat for 0000192851 particles. (took 0.036113 sec)
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SO iteration 15: need to repeat for 0000190905 particles. (took 0.0362899 sec)
SO iteration 16: need to repeat for 0000003841 particles. (took 0.035897 sec)
SO iteration 17: need to repeat for 0000000046 particles. (took 0.00322795 sec)
SO iteration 1: need to repeat for 0000192851 particles. (took 0.0370409 sec)
SO iteration 2: need to repeat for 0000192851 particles. (took 0.032927 sec)
SO iteration 3: need to repeat for 0000192851 particles. (took 0.0342629 sec)
SO iteration 4: need to repeat for 0000192851 particles. (took 0.03368 sec)
SO iteration 5: need to repeat for 0000192851 particles. (took 0.0334191 sec)
SO iteration 6: need to repeat for 0000192851 particles. (took 0.033499 sec)
SO iteration 7: need to repeat for 0000192851 particles. (took 0.033473 sec)
SO iteration 8: need to repeat for 0000192851 particles. (took 0.033534 sec)
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SO iteration 11: need to repeat for 0000192851 particles. (took 0.0335319 sec)
SO iteration 12: need to repeat for 0000192851 particles. (took 0.033577 sec)
SO iteration 13: need to repeat for 0000192851 particles. (took 0.0333672 sec)
SO iteration 14: need to repeat for 0000192851 particles. (took 0.0335331 sec)
SO iteration 15: need to repeat for 0000192030 particles. (took 0.033494 sec)
SO iteration 16: need to repeat for 0000127102 particles. (took 0.0334821 sec)
SO iteration 17: need to repeat for 0000001596 particles. (took 0.0263011 sec)
SO iteration 18: need to repeat for 0000000029 particles. (took 0.00261807 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.00209212 sec)
SO iteration 1: need to repeat for 0000192851 particles. (took 0.0370262 sec)
SO iteration 2: need to repeat for 0000192851 particles. (took 0.032913 sec)
SO iteration 3: need to repeat for 0000192851 particles. (took 0.030458 sec)
SO iteration 4: need to repeat for 0000192851 particles. (took 0.0304079 sec)
SO iteration 5: need to repeat for 0000192851 particles. (took 0.030704 sec)
SO iteration 6: need to repeat for 0000192851 particles. (took 0.0304289 sec)
SO iteration 7: need to repeat for 0000192851 particles. (took 0.030457 sec)
SO iteration 8: need to repeat for 0000192851 particles. (took 0.0304189 sec)
SO iteration 9: need to repeat for 0000192851 particles. (took 0.0303671 sec)
SO iteration 10: need to repeat for 0000192851 particles. (took 0.030386 sec)
SO iteration 11: need to repeat for 0000192851 particles. (took 0.030472 sec)
SO iteration 12: need to repeat for 0000192851 particles. (took 0.030401 sec)
SO iteration 13: need to repeat for 0000192851 particles. (took 0.030586 sec)
SO iteration 14: need to repeat for 0000192851 particles. (took 0.030411 sec)
SO iteration 15: need to repeat for 0000192840 particles. (took 0.0305531 sec)
SO iteration 16: need to repeat for 0000191681 particles. (took 0.030447 sec)
SO iteration 17: need to repeat for 0000166660 particles. (took 0.0302141 sec)
SO iteration 18: need to repeat for 0000013401 particles. (took 0.028559 sec)
SO iteration 19: need to repeat for 0000000630 particles. (took 0.00535011 sec)
SO iteration 20: need to repeat for 0000000011 particles. (took 0.00218987 sec)
SO iteration 21: need to repeat for 0000000001 particles. (took 0.00188279 sec)
determining spherical overdensity masses took 4.15857 sec
finding spherical overdensity particles took 0.6009 sec
determining contamination of halos took 0.5046 sec
Global sort of Groups took 0.521011 sec
Global sort of SubGroups took 0.71816 sec
Global sort of IDs took 0.295964 sec
Writing block 0 (GLEN), n=306, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1224d
Writing block 1 (GOFF), n=306, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1224d
Writing block 2 (MTOT), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 3 (GPOS), n=306, ptype=0, dtype=1, ndim=3, bpb=4 bytes=3672d
Writing block 4 (MMEA), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 5 (RMEA), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 6 (MCRI), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 7 (RCRI), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 8 (MTOP), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 9 (RTOP), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 17 (NCON), n=306, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1224d
Writing block 18 (MCON), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 22 (NSUB), n=306, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1224d
Writing block 23 (FSUB), n=306, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1224d
Writing block 24 (SLEN), n=1101, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4404d
Writing block 25 (SOFF), n=1101, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4404d
Writing block 26 (SSUB), n=1101, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4404d
Writing block 27 (MSUB), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 28 (SPOS), n=1101, ptype=1, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 29 (SVEL), n=1101, ptype=1, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 30 (SCM ), n=1101, ptype=1, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 33 (VMAX), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 34 (RMAX), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 35 (RHMS), n=1101, ptype=1, dtype=1, ndim=6, bpb=4 bytes=26424d
Writing block 36 (MTRH), n=1101, ptype=1, dtype=1, ndim=6, bpb=4 bytes=26424d
Writing block 37 (MBID), n=1101, ptype=1, dtype=2, ndim=1, bpb=8 bytes=8808d
Writing block 38 (GRNR), n=1101, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4404d
Writing block 39 (SUBN), n=1101, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4404d
Writing block 40 (SMST), n=1101, ptype=1, dtype=1, ndim=6, bpb=4 bytes=26424d
Writing block 53 (PID ), n=226762, ptype=2, dtype=2, ndim=1, bpb=8 bytes=1814096d
Writing block 54 (SLEN), n=1101, ptype=1, dtype=0, ndim=6, bpb=4 bytes=26424d
Writing block 55 (STEN), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 56 (SKEN), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 57 (SUEN), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 58 (SUIT), n=1101, ptype=1, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 59 (BHMA), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 60 (BHMD), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 61 (SVD ), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 62 (SVDH), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 63 (HMPR), n=1101, ptype=1, dtype=1, ndim=6, bpb=4 bytes=26424d
Writing block 64 (SSFR), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 65 (SSA ), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 66 (SSBZ), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 67 (SSIM), n=1101, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 68 (SSPI), n=1101, ptype=4, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 69 (GSPI), n=1101, ptype=1, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 70 (FSPI), n=1101, ptype=5, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 71 (SFM ), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 72 (SFMT), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 73 (SFME), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 74 (SFAE), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 75 (SFKE), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 76 (SFTE), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 77 (SMWP), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 78 (SMM ), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 79 (SMMS), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 80 (SFZ ), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 81 (SFZS), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 82 (SSIA), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 83 (SIAS), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 84 (SMET), n=1101, ptype=5, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 85 (SMTS), n=1101, ptype=5, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 86 (MF1 ), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 87 (MeF1), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 88 (MF  ), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 89 (MeF2), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 90 (MFA ), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 91 (MeFA), n=1101, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 92 (NSPI), n=1101, ptype=6, dtype=1, ndim=3, bpb=4 bytes=13212d
Writing block 93 (NFM ), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 94 (NFMT), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 95 (NFME), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 96 (NFAE), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 97 (NFKE), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 98 (NFTE), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 99 (SMWP), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 100 (SMM ), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 101 (SMMS), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 102 (SSIA), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 103 (SIAS), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 104 (SMET), n=1101, ptype=6, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 105 (SMTS), n=1101, ptype=6, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 106 (MF1 ), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 107 (MeF1), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 108 (MF2 ), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 109 (MeF2), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 110 (MFA ), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 111 (MeFA), n=1101, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 112 (SM  ), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 113 (SFKE), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 114 (SFAE), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 115 (SMWP), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 116 (SMM ), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 117 (SMMS), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 118 (SSIA), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 119 (SIAS), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 120 (SMET), n=1101, ptype=4, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 121 (SMTS), n=1101, ptype=4, dtype=1, ndim=9, bpb=4 bytes=39636d
Writing block 122 (MF1 ), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 123 (MeF1), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 124 (MF2 ), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 125 (MeF2), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 126 (MFA ), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 127 (MeFA), n=1101, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4404d
Writing block 128 (MMe5), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 129 (RMe5), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 130 (MCr5), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 131 (RCr5), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 132 (MMe2), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 133 (RMe2), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 134 (MCr2), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 135 (RCr2), n=306, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1224d
Writing block 136 (MAPT), n=1101, ptype=7, dtype=1, ndim=60, bpb=4 bytes=264240d
Writing block 137 (SAPT), n=1101, ptype=8, dtype=1, ndim=10, bpb=4 bytes=44040d
Writing block 138 (VAPT), n=1101, ptype=9, dtype=1, ndim=10, bpb=4 bytes=44040d
Writing block 139 (BEGY), n=226762, ptype=2, dtype=1, ndim=1, bpb=4 bytes=907048d
Subgroup catalogues saved. took = 9.93177 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 4.286070e-01
 eagle_ph_key_ort: type= 1 timed by volker 4.267828e-01
 eagle_ph_key_ort: type= 2 timed by volker 1.071281e-01
 eagle_ph_key_ort: type= 3 timed by volker 6.443024e-03
 eagle_ph_key_ort: type= 4 timed by volker 1.727469e-01
 eagle_ph_key_ort: type= 5 timed by volker 6.220508e-02
 eagle_ph_key_ort: timing parallel sort = 1.217327e+00
 eagle_fetch_elements: we are using 1373760441 bytes of memory, FreeBytes= 1717200552

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 2312.36 Mbyte (on task=0), Smallest = 2050.07 Mbyte, Average = 2057.22 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    753.3949    1773.8268  allocate_memory()/allocate.c/85
   0 2971 0              MetP    152.6678    1926.4946  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.1338    1945.6284  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1945.8042  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1945.9799  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     26.4428    1972.4228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.5120    1990.9347  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.8533    2021.7880  fof_fof()/fof.c/337
   0 2978 0             Group      0.4379    2022.2259  fof_fof()/fof.c/380
   0 2979 0          SubGroup    271.5971    2293.8231  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.5269    2312.3499  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1707460 number of bytes = 546387200

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 3621.07 Mbyte (on task=0), Smallest = 3352.67 Mbyte, Average = 3363.12 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    753.3949    1773.8268  allocate_memory()/allocate.c/85
   0 2971 0              MetP    152.6678    1926.4946  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.1338    1945.6284  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1945.8042  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1945.9799  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     26.4428    1972.4228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.5120    1990.9347  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.8533    2021.7880  fof_fof()/fof.c/337
   0 2978 0             Group      0.4379    2022.2259  fof_fof()/fof.c/380
   0 2979 0          SubGroup    271.5971    2293.8231  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.5269    2312.3499  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      6.5134    2318.8634  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      6.5134    2325.3768  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      6.5134    2331.8903  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    521.0754    2852.9657  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    521.0754    3374.0411  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    247.0251    3621.0663  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 2.893689e+00
 eagle_fetch_elements: we are using 1373760441 bytes of memory, FreeBytes= 1717200552
 eagle_fetch_elements: max_bytes= 504, max_elements= 1149678 number of bytes = 579437712
 eagle_ph_key_ort: timing parallel SphP exchange = 2.073479e+00
 eagle_fetch_elements: we are using 1373760441 bytes of memory, FreeBytes= 1717200552
 eagle_fetch_elements: max_bytes= 384, max_elements= 1748996 number of bytes = 671614464
 eagle_ph_key_ort: timing parallel MetP exchange = 1.051760e-01
 eagle_fetch_elements: we are using 1373760441 bytes of memory, FreeBytes= 1717200552
 eagle_fetch_elements: max_bytes= 256, max_elements= 2621662 number of bytes = 671145472
 eagle_ph_key_ort: timing parallel BHP exchange = 5.511999e-03
Sorting particle-data by peano-hilbert key took = 6.57747 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 1373760441 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1707460 number of bytes= 546387200
 eagle_ph_restore: timing parallel P exchange = 2.862258e+00
 eagle_send_elements: we are using 1373760441 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1149678 number of bytes= 579437712
 eagle_ph_restore: timing parallel SphP exchange = 2.124910e+00
 eagle_send_elements: we are using 1373760441 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 1748996 number of bytes= 671614464
 eagle_ph_restore: timing parallel MetP exchange = 1.180201e-01
 eagle_send_elements: we are using 1373760441 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 2621662 number of bytes= 671145472
 eagle_ph_restore: timing parallel BHP exchange = 4.471064e-03
Restoring original order after ph key sorting took = 5.12348 sec

finished writing particle file...

Finished with SUBFIND.  (total time=1269.11 sec)

Finished computing FoF groups.  (presently allocated=1972.42 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1945.63 MB)
Allocated 38.8142 MByte for top-level domain structure
use of 83.6498 MB of temporary storage for domain decomposition... (presently allocated=2068.09 MB)
Before=476473
After=533457
NTopleaves= 466775  NTopnodes=533457 (space for 775597)
gravity work-load balance=1.01565   memory-balance=1.01565   SPH work-load balance=1.01541
iter=0 exchange of 0575327827 particles (ret=0)
domain decomposition done. (took 8.63864 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 11.0843 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 45: endrun called with an error level of 124


task 45: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


task 90: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
task 135: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
task 135: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 180: endrun called with an error level of 124


task 180: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
task 225: endrun called with an error level of 124


task 225: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 270: endrun called with an error level of 124


task 270: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 315: endrun called with an error level of 124


task 315: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 360: endrun called with an error level of 124


task 360: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 405: endrun called with an error level of 124


task 405: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
task 450: endrun called with an error level of 124


task 450: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 495: endrun called with an error level of 124


task 495: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 540: endrun called with an error level of 124


task 540: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 585: endrun called with an error level of 124


task 585: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 630: endrun called with an error level of 124


task 630: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
task 675: endrun called with an error level of 124


task 675: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
Finished FOF, total time doing fof/subfind = 1307.6 s
task 0: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 0: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   62703.05 Mb (on task=112), Smallest =   62509.59 Mb (on task=0), Average =   62660.24 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=240), Smallest =   64531.71 Mb (on task=496), Average =   64532.00 Mb
Committed_AS:	 Largest =    2022.41 Mb (on task=0), Smallest =    1828.94 Mb (on task=112), Average =    1871.76 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=416), Smallest =   16250.93 Mb (on task=688), Average =   16303.40 Mb
AllocMem:	 Largest =    2022.41 Mb (on task=0), Smallest =    1828.94 Mb (on task=112), Average =    1871.76 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 720 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N16':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         3950
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

Allocated 1016.55 MByte for particle storage.

Allocated 756.796 MByte for storage of SPH data.

Allocated 150.73 MByte for storage of MET data.

Allocated 19.2202 MByte for storage of BH data.


reading file `data//snapshot_004_z002p825/snap_004_z002p825.0.hdf5' on task=0 (contains 36477552 particles.)
distributing this file to tasks 0-44
Type 0 (gas):   17699739  (tot=     0283414208) masstab=0
Type 1 (halo):  18033406  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     25812  (tot=     0000254233) masstab=0
Type 3 (bulge):   371726  (tot=     0002602064) masstab=0
Type 4 (stars):   346179  (tot=     0003233533) masstab=0
Type 5 (bndry):      690  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.10.hdf5' on task=450 (contains 35935551 particles.)
distributing this file to tasks 450-494
Type 0 (gas):   17670341  (tot=     0283414208) masstab=0
Type 1 (halo):  17802009  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16224  (tot=     0000254233) masstab=0
Type 3 (bulge):   257159  (tot=     0002602064) masstab=0
Type 4 (stars):   189069  (tot=     0003233533) masstab=0
Type 5 (bndry):      749  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.5.hdf5' on task=225 (contains 36204226 particles.)
distributing this file to tasks 225-269
Type 0 (gas):   17797512  (tot=     0283414208) masstab=0
Type 1 (halo):  17967251  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12790  (tot=     0000254233) masstab=0
Type 3 (bulge):   231838  (tot=     0002602064) masstab=0
Type 4 (stars):   194127  (tot=     0003233533) masstab=0
Type 5 (bndry):      708  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.9.hdf5' on task=405 (contains 36074883 particles.)
distributing this file to tasks 405-449
Type 0 (gas):   17788749  (tot=     0283414208) masstab=0
Type 1 (halo):  18007799  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15427  (tot=     0000254233) masstab=0
Type 3 (bulge):    71558  (tot=     0002602064) masstab=0
Type 4 (stars):   190648  (tot=     0003233533) masstab=0
Type 5 (bndry):      702  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.14.hdf5' on task=630 (contains 35929818 particles.)
distributing this file to tasks 630-674
Type 0 (gas):   17683027  (tot=     0283414208) masstab=0
Type 1 (halo):  17956942  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      8551  (tot=     0000254233) masstab=0
Type 3 (bulge):   127680  (tot=     0002602064) masstab=0
Type 4 (stars):   152893  (tot=     0003233533) masstab=0
Type 5 (bndry):      725  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.2.hdf5' on task=90 (contains 36009697 particles.)
distributing this file to tasks 90-134
Type 0 (gas):   17611853  (tot=     0283414208) masstab=0
Type 1 (halo):  18025042  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     28480  (tot=     0000254233) masstab=0
Type 3 (bulge):   132357  (tot=     0002602064) masstab=0
Type 4 (stars):   211186  (tot=     0003233533) masstab=0
Type 5 (bndry):      779  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.15.hdf5' on task=675 (contains 35872510 particles.)
distributing this file to tasks 675-719
Type 0 (gas):   17797295  (tot=     0283414208) masstab=0
Type 1 (halo):  17848422  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9687  (tot=     0000254233) masstab=0
Type 3 (bulge):    41317  (tot=     0002602064) masstab=0
Type 4 (stars):   175060  (tot=     0003233533) masstab=0
Type 5 (bndry):      729  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.12.hdf5' on task=540 (contains 35607474 particles.)
distributing this file to tasks 540-584
Type 0 (gas):   17592581  (tot=     0283414208) masstab=0
Type 1 (halo):  17700643  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21229  (tot=     0000254233) masstab=0
Type 3 (bulge):    84011  (tot=     0002602064) masstab=0
Type 4 (stars):   208266  (tot=     0003233533) masstab=0
Type 5 (bndry):      744  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.8.hdf5' on task=360 (contains 36070298 particles.)
distributing this file to tasks 360-404
Type 0 (gas):   17772241  (tot=     0283414208) masstab=0
Type 1 (halo):  17982069  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16559  (tot=     0000254233) masstab=0
Type 3 (bulge):   127623  (tot=     0002602064) masstab=0
Type 4 (stars):   171052  (tot=     0003233533) masstab=0
Type 5 (bndry):      754  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.11.hdf5' on task=495 (contains 35762351 particles.)
distributing this file to tasks 495-539
Type 0 (gas):   17587804  (tot=     0283414208) masstab=0
Type 1 (halo):  17890968  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17910  (tot=     0000254233) masstab=0
Type 3 (bulge):   101127  (tot=     0002602064) masstab=0
Type 4 (stars):   163819  (tot=     0003233533) masstab=0
Type 5 (bndry):      723  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.13.hdf5' on task=585 (contains 35891466 particles.)
distributing this file to tasks 585-629
Type 0 (gas):   17788693  (tot=     0283414208) masstab=0
Type 1 (halo):  17829342  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     24993  (tot=     0000254233) masstab=0
Type 3 (bulge):    85597  (tot=     0002602064) masstab=0
Type 4 (stars):   162135  (tot=     0003233533) masstab=0
Type 5 (bndry):      706  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.4.hdf5' on task=180 (contains 36102122 particles.)
distributing this file to tasks 180-224
Type 0 (gas):   17769963  (tot=     0283414208) masstab=0
Type 1 (halo):  17973332  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13356  (tot=     0000254233) masstab=0
Type 3 (bulge):   119162  (tot=     0002602064) masstab=0
Type 4 (stars):   225575  (tot=     0003233533) masstab=0
Type 5 (bndry):      734  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.3.hdf5' on task=135 (contains 36185836 particles.)
distributing this file to tasks 135-179
Type 0 (gas):   17667430  (tot=     0283414208) masstab=0
Type 1 (halo):  17980643  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10404  (tot=     0000254233) masstab=0
Type 3 (bulge):   311631  (tot=     0002602064) masstab=0
Type 4 (stars):   214990  (tot=     0003233533) masstab=0
Type 5 (bndry):      738  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.7.hdf5' on task=315 (contains 36012507 particles.)
distributing this file to tasks 315-359
Type 0 (gas):   17715672  (tot=     0283414208) masstab=0
Type 1 (halo):  17819762  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      7660  (tot=     0000254233) masstab=0
Type 3 (bulge):   307732  (tot=     0002602064) masstab=0
Type 4 (stars):   160982  (tot=     0003233533) masstab=0
Type 5 (bndry):      699  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.6.hdf5' on task=270 (contains 35928184 particles.)
distributing this file to tasks 270-314
Type 0 (gas):   17743397  (tot=     0283414208) masstab=0
Type 1 (halo):  17845929  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13611  (tot=     0000254233) masstab=0
Type 3 (bulge):   136979  (tot=     0002602064) masstab=0
Type 4 (stars):   187583  (tot=     0003233533) masstab=0
Type 5 (bndry):      685  (tot=     0000011555) masstab=0


reading file `data//snapshot_004_z002p825/snap_004_z002p825.1.hdf5' on task=45 (contains 36111848 particles.)
distributing this file to tasks 45-89
Type 0 (gas):   17727911  (tot=     0283414208) masstab=0
Type 1 (halo):  17997171  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11540  (tot=     0000254233) masstab=0
Type 3 (bulge):    94567  (tot=     0002602064) masstab=0
Type 4 (stars):   279969  (tot=     0003233533) masstab=0
Type 5 (bndry):      690  (tot=     0000011555) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576176323


Setting next time for grid output file to Time_next= 0.261498

Setting next time for line of sight file to Time_next= 0.263603

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=4.95594 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1947.18 MB)
Allocated 1.62149 MByte for top-level domain structure
use of 26.4302 MB of temporary storage for domain decomposition... (presently allocated=1975.23 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 1975.24 Mbyte (on task=1), Smallest = 1975.24 Mbyte, Average = 1975.24 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     12.2108      31.3618  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     12.2108      43.5726  allocate_memory()/allocate.c/61
   1 2969 0                 P    976.8604    1020.4329  allocate_memory()/allocate.c/67
   1 2970 0              SphP    756.7960    1777.2289  allocate_memory()/allocate.c/85
   1 2971 0              MetP    150.7302    1927.9591  allocate_memory()/allocate.c/105
   1 2972 0               BHP     19.2202    1947.1793  allocate_memory()/allocate.c/126
   1 2973 0   DomainStartList      0.1758    1947.3551  domain_allocate()/domain.c/562
   1 2974 0     DomainEndList      0.1758    1947.5309  domain_allocate()/domain.c/565
   1 2975 0          TopNodes      1.2699    1948.8008  domain_allocate()/domain.c/570
   1 2976 0        domain_key     24.4215    1973.2223  domain_Decomposition()/domain.c/231
   1 3001 0          topNodes      1.3676    1975.2310  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 2.0025 MByte for top-level domain structure
use of 27.0163 MB of temporary storage for domain decomposition... (presently allocated=1976.2 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 2.49776 MByte for top-level domain structure
use of 27.7783 MB of temporary storage for domain decomposition... (presently allocated=1977.45 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.01352  new value=0.017576
Allocated 3.14161 MByte for top-level domain structure
use of 28.7688 MB of temporary storage for domain decomposition... (presently allocated=1979.09 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.017576  new value=0.0228488
Allocated 3.9786 MByte for top-level domain structure
use of 30.0565 MB of temporary storage for domain decomposition... (presently allocated=1981.21 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0228488  new value=0.0297034
Allocated 5.06668 MByte for top-level domain structure
use of 31.7305 MB of temporary storage for domain decomposition... (presently allocated=1983.98 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0297034  new value=0.0386145
Allocated 6.48122 MByte for top-level domain structure
use of 33.9067 MB of temporary storage for domain decomposition... (presently allocated=1987.57 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0386145  new value=0.0501988
Allocated 8.32015 MByte for top-level domain structure
use of 36.7358 MB of temporary storage for domain decomposition... (presently allocated=1992.23 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0501988  new value=0.0652585
Allocated 10.7107 MByte for top-level domain structure
use of 40.4136 MB of temporary storage for domain decomposition... (presently allocated=1998.3 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0652585  new value=0.084836
Allocated 13.8184 MByte for top-level domain structure
use of 45.1947 MB of temporary storage for domain decomposition... (presently allocated=2006.19 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.084836  new value=0.110287
Allocated 17.8585 MByte for top-level domain structure
use of 51.4102 MB of temporary storage for domain decomposition... (presently allocated=2016.45 MB)
Before=303569
Increasing TopNodeAllocFactor=0.110287  new value=0.143373
Allocated 23.1105 MByte for top-level domain structure
use of 59.4902 MB of temporary storage for domain decomposition... (presently allocated=2029.78 MB)
Before=303569
Increasing TopNodeAllocFactor=0.143373  new value=0.186385
Allocated 29.9382 MByte for top-level domain structure
use of 69.9944 MB of temporary storage for domain decomposition... (presently allocated=2047.11 MB)
Before=303569
After=493369
NTopleaves= 431698  NTopnodes=493369 (space for 596613)
gravity work-load balance=1.02317   memory-balance=1.02317   SPH work-load balance=1.02324
iter=0 exchange of 0575531884 particles (ret=0)
domain decomposition done. (took 25.8772 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 4.72614 MByte in top-level domain structure

Allocated 485.205 MByte for BH-tree, and 1.6468 Mbyte for top-leaves.  (presently allocted 2458.85 MB)

Begin Ngb-tree construction.
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 2751.44 Mbyte (on task=381), Smallest = 2714.86 Mbyte, Average = 2733.29 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
 381 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
 381 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
 381 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
 381 2967 0     NextInTimeBin     12.2108      31.3618  allocate_memory()/allocate.c/58
 381 2968 0     PrevInTimeBin     12.2108      43.5726  allocate_memory()/allocate.c/61
 381 2969 0                 P    976.8604    1020.4329  allocate_memory()/allocate.c/67
 381 2970 0              SphP    756.7960    1777.2289  allocate_memory()/allocate.c/85
 381 2971 0              MetP    150.7302    1927.9591  allocate_memory()/allocate.c/105
 381 2972 0               BHP     19.2202    1947.1793  allocate_memory()/allocate.c/126
 381 2973 0   DomainStartList      0.1758    1947.3551  domain_allocate()/domain.c/562
 381 2974 0     DomainEndList      0.1758    1947.5309  domain_allocate()/domain.c/565
 381 2975 0          TopNodes     24.4667    1971.9976  domain_allocate()/domain.c/570
 381 2976 0   DomainNodeIndex      1.6468    1973.6444  force_treeallocate()/forcetree.c/4800
 381 2977 0        Nodes_base    250.3100    2223.9544  force_treeallocate()/forcetree.c/4803
 381 2978 0     Extnodes_base    208.5917    2432.5461  force_treeallocate()/forcetree.c/4811
 381 2979 0          Nextnode     14.0928    2446.6389  force_treeallocate()/forcetree.c/4820
 381 2980 0            Father     12.2108    2458.8497  force_treeallocate()/forcetree.c/4827
 381 2981 0           Ngblist      3.0385    2461.8882  density()/density.c/690
 381 2982 0              Left      6.0771    2467.9653  density()/density.c/692
 381 2983 0             Right      6.0771    2474.0423  density()/density.c/693
 381 2984 0    DataIndexTable      7.0175    2481.0599  density()/density.c/738
 381 2985 0      DataNodeList     18.7134    2499.7733  density()/density.c/740
 381 2986 0       DensDataGet     68.8284    2568.6017  density()/density.c/893
 381 2987 0    DensDataResult     90.7283    2659.3300  density()/density.c/931
 381 2988 0       DensDataOut     92.1019    2751.4319  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0009245125 particles.
ngb iteration 2: need to repeat for 0000010602 particles.
ngb iteration 3: need to repeat for 0000006379 particles.
ngb iteration 4: need to repeat for 0000006298 particles.
ngb iteration 5: need to repeat for 0000000903 particles.
ngb iteration 6: need to repeat for 0000000568 particles.
ngb iteration 7: need to repeat for 0000000196 particles.
ngb iteration 8: need to repeat for 0000000003 particles.
ngb iteration 9: need to repeat for 0000000002 particles.
ngb iteration 10: need to repeat for 0000000001 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_2.649.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_2.829.hdf5

Begin to compute FoF group catalogues...  (presently allocated=2458.85 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1947.18 MB)
Allocated 29.9382 MByte for top-level domain structure
use of 69.9944 MB of temporary storage for domain decomposition... (presently allocated=2047.11 MB)
Before=471521
After=521713
NTopleaves= 456499  NTopnodes=521713 (space for 596613)
gravity work-load balance=1.0214   memory-balance=1.0214   SPH work-load balance=1.02476
iter=0 exchange of 0575313016 particles (ret=0)
domain decomposition done. (took 8.60285 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 3.42865 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=1973.4 MB)
Tree construction.

Start linking particles (presently allocated=2501.53 MB)
links on local processor done (took 1.09061 sec).
Marked=0036077045 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=2599.15 MB) 
have done 0001055111 cross links (processed 0036077045, took 1.10352 sec)
have done 0000334350 cross links (processed 0016450932, took 0.381047 sec)
have done 0000179490 cross links (processed 0010907149, took 0.357656 sec)
have done 0000090453 cross links (processed 0005382333, took 0.351795 sec)
have done 0000047575 cross links (processed 0002832244, took 0.329695 sec)
have done 0000024307 cross links (processed 0001335966, took 0.236184 sec)
have done 0000012985 cross links (processed 0000701989, took 0.124308 sec)
have done 0000006854 cross links (processed 0000312226, took 0.095464 sec)
have done 0000003966 cross links (processed 0000218759, took 0.0908239 sec)
have done 0000003241 cross links (processed 0000226901, took 0.10626 sec)
have done 0000002406 cross links (processed 0000121319, took 0.087086 sec)
have done 0000001966 cross links (processed 0000165753, took 0.12702 sec)
have done 0000001473 cross links (processed 0000109121, took 0.105135 sec)
have done 0000000739 cross links (processed 0000024825, took 0.048126 sec)
have done 0000000245 cross links (processed 0000004037, took 0.033304 sec)
have done 0000000067 cross links (processed 0000001053, took 0.0325539 sec)
have done 0000000014 cross links (processed 0000000244, took 0.0324111 sec)
have done 0000000001 cross links (processed 0000000042, took 0.0323761 sec)
have done 0000000000 cross links (processed 0000000005, took 0.0323119 sec)
Local groups found.

group finding took = 4.88606 sec
Start finding nearest dm-particle (presently allocated=2501.53 MB)
still finding nearest... (presently allocated=2588.48 MB)
fof-nearest iteration 1: need to repeat for 272924353 particles.
still finding nearest... (presently allocated=2589.12 MB)
fof-nearest iteration 2: need to repeat for 249195606 particles.
still finding nearest... (presently allocated=2590.26 MB)
fof-nearest iteration 3: need to repeat for 212169823 particles.
still finding nearest... (presently allocated=2592.03 MB)
fof-nearest iteration 4: need to repeat for 180106857 particles.
still finding nearest... (presently allocated=2594.79 MB)
fof-nearest iteration 5: need to repeat for 131154051 particles.
still finding nearest... (presently allocated=2597.62 MB)
fof-nearest iteration 6: need to repeat for 57952617 particles.
still finding nearest... (presently allocated=2596 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 4.18551 sec
compiling local group data and catalogue took = 0.500108 sec

Total number of groups with at least 32 particles: 222926
Largest group has 1903148 particles.
Total number of particles in groups: 0100402574

group properties are now allocated.. (presently allocated=2022.29 MB)
computation of group properties took = 0.045444 sec
start global sorting of group catalogues number 4
LargestGroup = 882.207380; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.045125 sec
Group catalogues globally sorted. took = 1.22693 sec
starting saving of group catalogue number 4
data//groups_004_z002p825
Group catalogues number 4 saved. took = 3.11538 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (283414208).
tree build for species 0 took 0.589864 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0221148542 particles. (took 6.99829 sec)
ngb iteration 2: need to repeat for 0192752441 particles. (took 4.57703 sec)
ngb iteration 3: need to repeat for 0178177877 particles. (took 3.84634 sec)
ngb iteration 4: need to repeat for 0165803649 particles. (took 3.54822 sec)
ngb iteration 5: need to repeat for 0149688852 particles. (took 3.37888 sec)
ngb iteration 6: need to repeat for 0125366439 particles. (took 3.10913 sec)
ngb iteration 7: need to repeat for 0094220857 particles. (took 2.74174 sec)
ngb iteration 8: need to repeat for 0063492095 particles. (took 2.22999 sec)
ngb iteration 9: need to repeat for 0039194232 particles. (took 1.5442 sec)
ngb iteration 10: need to repeat for 0022780588 particles. (took 0.932335 sec)
ngb iteration 11: need to repeat for 0012762812 particles. (took 0.547509 sec)
ngb iteration 12: need to repeat for 0007022262 particles. (took 0.338988 sec)
ngb iteration 13: need to repeat for 0003843533 particles. (took 0.228667 sec)
ngb iteration 14: need to repeat for 0001994169 particles. (took 0.168466 sec)
ngb iteration 15: need to repeat for 0000851171 particles. (took 0.1257 sec)
ngb iteration 16: need to repeat for 0000387907 particles. (took 0.0918112 sec)
ngb iteration 17: need to repeat for 0000212002 particles. (took 0.0710931 sec)
ngb iteration 18: need to repeat for 0000131069 particles. (took 0.058738 sec)
ngb iteration 19: need to repeat for 0000084513 particles. (took 0.0528779 sec)
ngb iteration 20: need to repeat for 0000054563 particles. (took 0.0506701 sec)
ngb iteration 21: need to repeat for 0000034180 particles. (took 0.0496669 sec)
ngb iteration 22: need to repeat for 0000020452 particles. (took 0.049397 sec)
ngb iteration 23: need to repeat for 0000011770 particles. (took 0.0475721 sec)
ngb iteration 24: need to repeat for 0000006414 particles. (took 0.047226 sec)
ngb iteration 25: need to repeat for 0000003380 particles. (took 0.0473731 sec)
ngb iteration 26: need to repeat for 0000001710 particles. (took 0.046802 sec)
ngb iteration 27: need to repeat for 0000000852 particles. (took 0.0467439 sec)
ngb iteration 28: need to repeat for 0000000392 particles. (took 0.047395 sec)
ngb iteration 29: need to repeat for 0000000159 particles. (took 0.047596 sec)
ngb iteration 30: need to repeat for 0000000058 particles. (took 0.048609 sec)
ngb iteration 31: need to repeat for 0000000016 particles. (took 0.0467961 sec)
ngb iteration 32: need to repeat for 0000000003 particles. (took 0.04672 sec)
ngb iteration 33: need to repeat for 0000000002 particles. (took 0.046973 sec)
final operations ... 
density and smoothing length for species 0 took 35.4916 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.589109 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0215840719 particles. (took 8.61708 sec)
ngb iteration 2: need to repeat for 0185651826 particles. (took 5.0026 sec)
ngb iteration 3: need to repeat for 0168579106 particles. (took 4.1181 sec)
ngb iteration 4: need to repeat for 0155578222 particles. (took 3.59245 sec)
ngb iteration 5: need to repeat for 0140482487 particles. (took 3.2745 sec)
ngb iteration 6: need to repeat for 0119172383 particles. (took 3.02456 sec)
ngb iteration 7: need to repeat for 0092255133 particles. (took 2.67472 sec)
ngb iteration 8: need to repeat for 0064990828 particles. (took 2.13592 sec)
ngb iteration 9: need to repeat for 0042290898 particles. (took 1.53485 sec)
ngb iteration 10: need to repeat for 0025960160 particles. (took 1.02363 sec)
ngb iteration 11: need to repeat for 0015305070 particles. (took 0.623972 sec)
ngb iteration 12: need to repeat for 0008779970 particles. (took 0.396471 sec)
ngb iteration 13: need to repeat for 0004935444 particles. (took 0.262217 sec)
ngb iteration 14: need to repeat for 0002626553 particles. (took 0.190844 sec)
ngb iteration 15: need to repeat for 0001211835 particles. (took 0.1442 sec)
ngb iteration 16: need to repeat for 0000542039 particles. (took 0.102806 sec)
ngb iteration 17: need to repeat for 0000244718 particles. (took 0.0810649 sec)
ngb iteration 18: need to repeat for 0000111868 particles. (took 0.0723791 sec)
ngb iteration 19: need to repeat for 0000050826 particles. (took 0.0588951 sec)
ngb iteration 20: need to repeat for 0000022652 particles. (took 0.053328 sec)
ngb iteration 21: need to repeat for 0000009774 particles. (took 0.0502062 sec)
ngb iteration 22: need to repeat for 0000003944 particles. (took 0.0488811 sec)
ngb iteration 23: need to repeat for 0000001464 particles. (took 0.0471649 sec)
ngb iteration 24: need to repeat for 0000000463 particles. (took 0.049521 sec)
ngb iteration 25: need to repeat for 0000000147 particles. (took 0.046556 sec)
ngb iteration 26: need to repeat for 0000000041 particles. (took 0.0464771 sec)
ngb iteration 27: need to repeat for 0000000011 particles. (took 0.0464931 sec)
ngb iteration 28: need to repeat for 0000000007 particles. (took 0.0465131 sec)
ngb iteration 29: need to repeat for 0000000002 particles. (took 0.046525 sec)
final operations ... 
density and smoothing length for species 1 took 37.6461 sec
Tree construction for species 4 (3233533).
tree build for species 4 took 0.373449 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0002717649 particles. (took 1.26378 sec)
ngb iteration 2: need to repeat for 0002517652 particles. (took 0.716961 sec)
ngb iteration 3: need to repeat for 0002375215 particles. (took 0.541989 sec)
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ngb iteration 39: need to repeat for 0000000001 particles. (took 0.062083 sec)
final operations ... 
density and smoothing length for species 4 took 7.07208 sec
Tree construction.
tree build took 0.87094 sec
finding densities, mode 5 
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final operations ... 
density and smoothing length for species 5 took 2.36033 sec
Tree construction for species 0 (283414208).
tree build for species 0 took 0.580397 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 11.375 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.580302 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 6.42256 sec
Tree construction for species 4 (3233533).
tree build for species 4 took 0.363237 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 4.10502 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.353038 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 4.1685 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 0.848624 sec
saving densities took 2.8527 sec

Number of FOF halos treated with collective SubFind code = 0
(the adopted size-limit for the collective algorithm was 2240683 particles.)
the other 222926 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 9252 - 29716403 

subfind_exchange()() took 1.9947 sec
processing of collective halos took 3.09944e-06 sec
sort of local particles()() took 1.74097 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 407.09 sec

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Task 25: testing particles ...
Task 6: testing particles ...
Task 11: testing particles ...
Task 16: testing particles ...
Task 12: testing particles ...
Task 7: testing particles ...
Task 9: testing particles ...
Task 10: testing particles ...
Task 8: testing particles ...
Task 5: testing particles ...
Task 4: testing particles ...
Task 3: testing particles ...
Task 1: testing particles ...
Task 2: testing particles ...
unsorting of local particles()() took 1.55382 sec
Task 0: testing particles ...
subfind_exchange() (for return to original CPU)  took 2.30124 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=2239.56 MB)
Allocated 29.9382 MByte for top-level domain structure
use of 69.9944 MB of temporary storage for domain decomposition... (presently allocated=2339.49 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 2339.5 Mbyte (on task=0), Smallest = 2132.48 Mbyte, Average = 2137.8 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    756.7960    1777.2278  allocate_memory()/allocate.c/85
   0 2971 0              MetP    150.7302    1927.9581  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.2202    1947.1783  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1947.3541  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1947.5298  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     25.8723    1973.4022  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.1577    1991.5598  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.2628    2021.8226  fof_fof()/fof.c/337
   0 2978 0             Group      0.4669    2022.2895  fof_fof()/fof.c/380
   0 2979 0          SubGroup    217.2725    2239.5620  subfind()/subfind.c/376
   0 2980 0   DomainStartList      0.1758    2239.7378  domain_allocate()/domain.c/562
   0 2981 0     DomainEndList      0.1758    2239.9135  domain_allocate()/domain.c/565
   0 2982 0          TopNodes     29.5867    2269.5002  domain_allocate()/domain.c/570
   0 2983 0        domain_key     24.4215    2293.9217  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      2.2759    2296.2306  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      2.2759    2298.5065  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      2.2759    2300.7824  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      2.2759    2303.0583  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      2.2759    2305.3452  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      2.2759    2307.6321  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes     31.8626    2339.4946  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=472849
After=524121
NTopleaves= 458606  NTopnodes=524121 (space for 596613)
gravity work-load balance=1.0202   memory-balance=1.0202   SPH work-load balance=1.01881
iter=0 exchange of 0575433185 particles (ret=0)
domain decomposition done. (took 8.48601 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 3.31842 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000197764 particles. (took 0.045963 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.0332038 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.0348661 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.0354269 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.0356719 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.0357542 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.0360332 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.0358982 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.035717 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.0359011 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.036006 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.0357749 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.035851 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.0360372 sec)
SO iteration 15: need to repeat for 0000195898 particles. (took 0.035841 sec)
SO iteration 16: need to repeat for 0000003453 particles. (took 0.037271 sec)
SO iteration 17: need to repeat for 0000000042 particles. (took 0.00314188 sec)
SO iteration 1: need to repeat for 0000197764 particles. (took 0.0369589 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.032536 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.034198 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.0332549 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.03369 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.033113 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.0333569 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.0333681 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.033026 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.0333619 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.0332921 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.03339 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.0336831 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.0331879 sec)
SO iteration 15: need to repeat for 0000196822 particles. (took 0.0333471 sec)
SO iteration 16: need to repeat for 0000120898 particles. (took 0.0334649 sec)
SO iteration 17: need to repeat for 0000001605 particles. (took 0.025403 sec)
SO iteration 18: need to repeat for 0000000034 particles. (took 0.00269604 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.00200081 sec)
SO iteration 1: need to repeat for 0000197764 particles. (took 0.036777 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.032764 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.030421 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.0304439 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.030463 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.0303319 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.030458 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.03069 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.0306971 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.0305371 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.0302758 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.0302529 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.0305421 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.0302861 sec)
SO iteration 15: need to repeat for 0000197754 particles. (took 0.0302551 sec)
SO iteration 16: need to repeat for 0000196587 particles. (took 0.030535 sec)
SO iteration 17: need to repeat for 0000169550 particles. (took 0.0319309 sec)
SO iteration 18: need to repeat for 0000017268 particles. (took 0.028024 sec)
SO iteration 19: need to repeat for 0000001303 particles. (took 0.00616097 sec)
SO iteration 20: need to repeat for 0000000016 particles. (took 0.00240397 sec)
SO iteration 1: need to repeat for 0000197764 particles. (took 0.036792 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.0350289 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.0358748 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.0361099 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.036325 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.0361209 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.0367019 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.0362041 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.0363379 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.036006 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.0361102 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.0363998 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.0362401 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.036221 sec)
SO iteration 15: need to repeat for 0000195839 particles. (took 0.0363462 sec)
SO iteration 16: need to repeat for 0000002119 particles. (took 0.036145 sec)
SO iteration 17: need to repeat for 0000000027 particles. (took 0.00274682 sec)
SO iteration 1: need to repeat for 0000197764 particles. (took 0.0365529 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.0329199 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.0349109 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.0357349 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.0359762 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.0355339 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.03614 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.0357502 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.0355542 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.0359049 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.035996 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.0355661 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.0373349 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.0359459 sec)
SO iteration 15: need to repeat for 0000195921 particles. (took 0.0357442 sec)
SO iteration 16: need to repeat for 0000004213 particles. (took 0.035821 sec)
SO iteration 17: need to repeat for 0000000046 particles. (took 0.00337791 sec)
SO iteration 18: need to repeat for 0000000001 particles. (took 0.00220013 sec)
SO iteration 1: need to repeat for 0000197764 particles. (took 0.03649 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.0328071 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.037719 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.042825 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.0332451 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.0332029 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.0336339 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.0332379 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.0332129 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.0330842 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.033186 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.0331519 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.0331221 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.0427821 sec)
SO iteration 15: need to repeat for 0000196889 particles. (took 0.0572481 sec)
SO iteration 16: need to repeat for 0000134598 particles. (took 0.0393219 sec)
SO iteration 17: need to repeat for 0000001914 particles. (took 0.0310938 sec)
SO iteration 18: need to repeat for 0000000042 particles. (took 0.00328112 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.00387287 sec)
SO iteration 1: need to repeat for 0000197764 particles. (took 0.0396249 sec)
SO iteration 2: need to repeat for 0000197764 particles. (took 0.0328908 sec)
SO iteration 3: need to repeat for 0000197764 particles. (took 0.030879 sec)
SO iteration 4: need to repeat for 0000197764 particles. (took 0.0332911 sec)
SO iteration 5: need to repeat for 0000197764 particles. (took 0.03146 sec)
SO iteration 6: need to repeat for 0000197764 particles. (took 0.0348969 sec)
SO iteration 7: need to repeat for 0000197764 particles. (took 0.033962 sec)
SO iteration 8: need to repeat for 0000197764 particles. (took 0.031302 sec)
SO iteration 9: need to repeat for 0000197764 particles. (took 0.0309989 sec)
SO iteration 10: need to repeat for 0000197764 particles. (took 0.0338809 sec)
SO iteration 11: need to repeat for 0000197764 particles. (took 0.0310199 sec)
SO iteration 12: need to repeat for 0000197764 particles. (took 0.0313609 sec)
SO iteration 13: need to repeat for 0000197764 particles. (took 0.0386138 sec)
SO iteration 14: need to repeat for 0000197764 particles. (took 0.039485 sec)
SO iteration 15: need to repeat for 0000197754 particles. (took 0.032263 sec)
SO iteration 16: need to repeat for 0000196619 particles. (took 0.0314188 sec)
SO iteration 17: need to repeat for 0000174444 particles. (took 0.03146 sec)
SO iteration 18: need to repeat for 0000019662 particles. (took 0.0287409 sec)
SO iteration 19: need to repeat for 0000001490 particles. (took 0.00685 sec)
SO iteration 20: need to repeat for 0000000021 particles. (took 0.00259209 sec)
determining spherical overdensity masses took 4.12578 sec
finding spherical overdensity particles took 0.592813 sec
determining contamination of halos took 0.508569 sec
Global sort of Groups took 0.510192 sec
Global sort of SubGroups took 0.760807 sec
Global sort of IDs took 0.258277 sec
Writing block 0 (GLEN), n=310, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1240d
Writing block 1 (GOFF), n=310, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1240d
Writing block 2 (MTOT), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 3 (GPOS), n=310, ptype=0, dtype=1, ndim=3, bpb=4 bytes=3720d
Writing block 4 (MMEA), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 5 (RMEA), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 6 (MCRI), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 7 (RCRI), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 8 (MTOP), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 9 (RTOP), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 17 (NCON), n=310, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1240d
Writing block 18 (MCON), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 22 (NSUB), n=310, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1240d
Writing block 23 (FSUB), n=310, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1240d
Writing block 24 (SLEN), n=1027, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4108d
Writing block 25 (SOFF), n=1027, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4108d
Writing block 26 (SSUB), n=1027, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4108d
Writing block 27 (MSUB), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 28 (SPOS), n=1027, ptype=1, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 29 (SVEL), n=1027, ptype=1, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 30 (SCM ), n=1027, ptype=1, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 33 (VMAX), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 34 (RMAX), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 35 (RHMS), n=1027, ptype=1, dtype=1, ndim=6, bpb=4 bytes=24648d
Writing block 36 (MTRH), n=1027, ptype=1, dtype=1, ndim=6, bpb=4 bytes=24648d
Writing block 37 (MBID), n=1027, ptype=1, dtype=2, ndim=1, bpb=8 bytes=8216d
Writing block 38 (GRNR), n=1027, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4108d
Writing block 39 (SUBN), n=1027, ptype=1, dtype=0, ndim=1, bpb=4 bytes=4108d
Writing block 40 (SMST), n=1027, ptype=1, dtype=1, ndim=6, bpb=4 bytes=24648d
Writing block 53 (PID ), n=118735, ptype=2, dtype=2, ndim=1, bpb=8 bytes=949880d
Writing block 54 (SLEN), n=1027, ptype=1, dtype=0, ndim=6, bpb=4 bytes=24648d
Writing block 55 (STEN), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 56 (SKEN), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 57 (SUEN), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 58 (SUIT), n=1027, ptype=1, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 59 (BHMA), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 60 (BHMD), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 61 (SVD ), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 62 (SVDH), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 63 (HMPR), n=1027, ptype=1, dtype=1, ndim=6, bpb=4 bytes=24648d
Writing block 64 (SSFR), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 65 (SSA ), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 66 (SSBZ), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 67 (SSIM), n=1027, ptype=1, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 68 (SSPI), n=1027, ptype=4, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 69 (GSPI), n=1027, ptype=1, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 70 (FSPI), n=1027, ptype=5, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 71 (SFM ), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 72 (SFMT), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 73 (SFME), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 74 (SFAE), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 75 (SFKE), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 76 (SFTE), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 77 (SMWP), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 78 (SMM ), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 79 (SMMS), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 80 (SFZ ), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 81 (SFZS), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 82 (SSIA), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 83 (SIAS), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 84 (SMET), n=1027, ptype=5, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 85 (SMTS), n=1027, ptype=5, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 86 (MF1 ), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 87 (MeF1), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 88 (MF  ), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 89 (MeF2), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 90 (MFA ), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 91 (MeFA), n=1027, ptype=5, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 92 (NSPI), n=1027, ptype=6, dtype=1, ndim=3, bpb=4 bytes=12324d
Writing block 93 (NFM ), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 94 (NFMT), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 95 (NFME), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 96 (NFAE), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 97 (NFKE), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 98 (NFTE), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 99 (SMWP), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 100 (SMM ), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 101 (SMMS), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 102 (SSIA), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 103 (SIAS), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 104 (SMET), n=1027, ptype=6, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 105 (SMTS), n=1027, ptype=6, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 106 (MF1 ), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 107 (MeF1), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 108 (MF2 ), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 109 (MeF2), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 110 (MFA ), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 111 (MeFA), n=1027, ptype=6, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 112 (SM  ), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 113 (SFKE), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 114 (SFAE), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 115 (SMWP), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 116 (SMM ), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 117 (SMMS), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 118 (SSIA), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 119 (SIAS), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 120 (SMET), n=1027, ptype=4, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 121 (SMTS), n=1027, ptype=4, dtype=1, ndim=9, bpb=4 bytes=36972d
Writing block 122 (MF1 ), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 123 (MeF1), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 124 (MF2 ), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 125 (MeF2), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 126 (MFA ), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 127 (MeFA), n=1027, ptype=4, dtype=1, ndim=1, bpb=4 bytes=4108d
Writing block 128 (MMe5), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 129 (RMe5), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 130 (MCr5), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 131 (RCr5), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 132 (MMe2), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 133 (RMe2), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 134 (MCr2), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 135 (RCr2), n=310, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1240d
Writing block 136 (MAPT), n=1027, ptype=7, dtype=1, ndim=60, bpb=4 bytes=246480d
Writing block 137 (SAPT), n=1027, ptype=8, dtype=1, ndim=10, bpb=4 bytes=41080d
Writing block 138 (VAPT), n=1027, ptype=9, dtype=1, ndim=10, bpb=4 bytes=41080d
Writing block 139 (BEGY), n=118735, ptype=2, dtype=1, ndim=1, bpb=4 bytes=474940d
Subgroup catalogues saved. took = 9.66046 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 4.312742e-01
 eagle_ph_key_ort: type= 1 timed by volker 4.313118e-01
 eagle_ph_key_ort: type= 2 timed by volker 8.769298e-02
 eagle_ph_key_ort: type= 3 timed by volker 7.551908e-03
 eagle_ph_key_ort: type= 4 timed by volker 1.550250e-01
 eagle_ph_key_ort: type= 5 timed by volker 6.362700e-02
 eagle_ph_key_ort: timing parallel sort = 1.190871e+00
 eagle_fetch_elements: we are using 1419585555 bytes of memory, FreeBytes= 1774481944

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 2257.73 Mbyte (on task=0), Smallest = 2050.71 Mbyte, Average = 2056.18 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    756.7960    1777.2278  allocate_memory()/allocate.c/85
   0 2971 0              MetP    150.7302    1927.9581  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.2202    1947.1783  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1947.3541  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1947.5298  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     25.8723    1973.4022  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.1577    1991.5598  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.2628    2021.8226  fof_fof()/fof.c/337
   0 2978 0             Group      0.4669    2022.2895  fof_fof()/fof.c/380
   0 2979 0          SubGroup    217.2725    2239.5620  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.1602    2257.7221  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1776587 number of bytes = 568507840

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 3604.54 Mbyte (on task=0), Smallest = 3396.92 Mbyte, Average = 3405.07 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1500  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5715  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8604    1020.4319  allocate_memory()/allocate.c/67
   0 2970 0              SphP    756.7960    1777.2278  allocate_memory()/allocate.c/85
   0 2971 0              MetP    150.7302    1927.9581  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.2202    1947.1783  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1947.3541  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1947.5298  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     25.8723    1973.4022  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.1577    1991.5598  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.2628    2021.8226  fof_fof()/fof.c/337
   0 2978 0             Group      0.4669    2022.2895  fof_fof()/fof.c/380
   0 2979 0          SubGroup    217.2725    2239.5620  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.1602    2257.7221  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      6.7771    2264.4993  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      6.7771    2271.2764  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      6.7771    2278.0536  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    542.1713    2820.2249  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    542.1713    3362.3962  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    242.1356    3604.5319  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 2.834365e+00
 eagle_fetch_elements: we are using 1419585555 bytes of memory, FreeBytes= 1774481944
 eagle_fetch_elements: max_bytes= 504, max_elements= 1193591 number of bytes = 601569864
 eagle_ph_key_ort: timing parallel SphP exchange = 2.059480e+00
 eagle_fetch_elements: we are using 1419585555 bytes of memory, FreeBytes= 1774481944
 eagle_fetch_elements: max_bytes= 384, max_elements= 1804135 number of bytes = 692787840
 eagle_ph_key_ort: timing parallel MetP exchange = 9.404516e-02
 eagle_fetch_elements: we are using 1419585555 bytes of memory, FreeBytes= 1774481944
 eagle_fetch_elements: max_bytes= 256, max_elements= 2709117 number of bytes = 693533952
 eagle_ph_key_ort: timing parallel BHP exchange = 7.329941e-03
Sorting particle-data by peano-hilbert key took = 6.46538 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 1419585555 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1776587 number of bytes= 568507840
 eagle_ph_restore: timing parallel P exchange = 2.861555e+00
 eagle_send_elements: we are using 1419585555 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1193591 number of bytes= 601569864
 eagle_ph_restore: timing parallel SphP exchange = 2.129070e+00
 eagle_send_elements: we are using 1419585555 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 1804135 number of bytes= 692787840
 eagle_ph_restore: timing parallel MetP exchange = 1.061680e-01
 eagle_send_elements: we are using 1419585555 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 2709117 number of bytes= 693533952
 eagle_ph_restore: timing parallel BHP exchange = 6.062031e-03
Restoring original order after ph key sorting took = 5.11517 sec

finished writing particle file...

Finished with SUBFIND.  (total time=653.107 sec)

Finished computing FoF groups.  (presently allocated=1973.4 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1947.18 MB)
Allocated 29.9382 MByte for top-level domain structure
use of 69.9944 MB of temporary storage for domain decomposition... (presently allocated=2047.11 MB)
Before=466969
After=521737
NTopleaves= 456520  NTopnodes=521737 (space for 596613)
gravity work-load balance=1.01932   memory-balance=1.01932   SPH work-load balance=1.01918
iter=0 exchange of 0575345258 particles (ret=0)
domain decomposition done. (took 8.46795 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 3.42755 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 45: endrun called with an error level of 124


task 45: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


task 90: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 135: endrun called with an error level of 124


task 135: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 180: endrun called with an error level of 124


task 180: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
task 225: endrun called with an error level of 124


task 225: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
Finished FOF, total time doing fof/subfind = 686.97 s
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
task 0: endrun called with an error level of 124


task 675: endrun called with an error level of 124


task 675: endrun called with an error level of 124


task 630: endrun called with an error level of 124


task 630: endrun called with an error level of 124


task 360: endrun called with an error level of 124


task 360: endrun called with an error level of 124


task 585: endrun called with an error level of 124


task 585: endrun called with an error level of 124


task 405: endrun called with an error level of 124


task 405: endrun called with an error level of 124


task 540: endrun called with an error level of 124


task 540: endrun called with an error level of 124


task 270: endrun called with an error level of 124


task 270: endrun called with an error level of 124


task 495: endrun called with an error level of 124


task 495: endrun called with an error level of 124


task 315: endrun called with an error level of 124


task 315: endrun called with an error level of 124


task 450: endrun called with an error level of 124


task 450: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
task 0: endrun called with an error level of 124


  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   62703.18 Mb (on task=112), Smallest =   62509.73 Mb (on task=0), Average =   62660.25 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=240), Smallest =   64531.71 Mb (on task=496), Average =   64532.00 Mb
Committed_AS:	 Largest =    2022.27 Mb (on task=0), Smallest =    1828.82 Mb (on task=112), Average =    1871.75 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=416), Smallest =   16250.93 Mb (on task=688), Average =   16303.47 Mb
AllocMem:	 Largest =    2022.27 Mb (on task=0), Smallest =    1828.82 Mb (on task=112), Average =    1871.75 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 720 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N16':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         3950
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

Allocated 1016.55 MByte for particle storage.

Allocated 759.82 MByte for storage of SPH data.

Allocated 149.008 MByte for storage of MET data.

Allocated 19.2969 MByte for storage of BH data.


reading file `data//snapshot_003_z003p512/snap_003_z003p512.0.hdf5' on task=0 (contains 36193830 particles.)
distributing this file to tasks 0-44
Type 0 (gas):   17815880  (tot=     0284546826) masstab=0
Type 1 (halo):  18001383  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9651  (tot=     0000254233) masstab=0
Type 3 (bulge):    85838  (tot=     0002602064) masstab=0
Type 4 (stars):   280560  (tot=     0002104487) masstab=0
Type 5 (bndry):      518  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.10.hdf5' on task=450 (contains 35961404 particles.)
distributing this file to tasks 450-494
Type 0 (gas):   17736421  (tot=     0284546826) masstab=0
Type 1 (halo):  17904444  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17968  (tot=     0000254233) masstab=0
Type 3 (bulge):   195678  (tot=     0002602064) masstab=0
Type 4 (stars):   106326  (tot=     0002104487) masstab=0
Type 5 (bndry):      567  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.8.hdf5' on task=360 (contains 35965775 particles.)
distributing this file to tasks 360-404
Type 0 (gas):   17721377  (tot=     0284546826) masstab=0
Type 1 (halo):  17853252  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     29992  (tot=     0000254233) masstab=0
Type 3 (bulge):   248447  (tot=     0002602064) masstab=0
Type 4 (stars):   112137  (tot=     0002104487) masstab=0
Type 5 (bndry):      570  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.9.hdf5' on task=405 (contains 35881183 particles.)
distributing this file to tasks 405-449
Type 0 (gas):   17746441  (tot=     0284546826) masstab=0
Type 1 (halo):  17901541  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12501  (tot=     0000254233) masstab=0
Type 3 (bulge):   116057  (tot=     0002602064) masstab=0
Type 4 (stars):   104092  (tot=     0002104487) masstab=0
Type 5 (bndry):      551  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.15.hdf5' on task=675 (contains 35968163 particles.)
distributing this file to tasks 675-719
Type 0 (gas):   17814197  (tot=     0284546826) masstab=0
Type 1 (halo):  17882853  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17857  (tot=     0000254233) masstab=0
Type 3 (bulge):   133194  (tot=     0002602064) masstab=0
Type 4 (stars):   119519  (tot=     0002104487) masstab=0
Type 5 (bndry):      543  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.5.hdf5' on task=225 (contains 35906299 particles.)
distributing this file to tasks 225-269
Type 0 (gas):   17772501  (tot=     0284546826) masstab=0
Type 1 (halo):  17864291  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12838  (tot=     0000254233) masstab=0
Type 3 (bulge):   136253  (tot=     0002602064) masstab=0
Type 4 (stars):   119853  (tot=     0002104487) masstab=0
Type 5 (bndry):      563  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.11.hdf5' on task=495 (contains 35812613 particles.)
distributing this file to tasks 495-539
Type 0 (gas):   17764305  (tot=     0284546826) masstab=0
Type 1 (halo):  17836635  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15564  (tot=     0000254233) masstab=0
Type 3 (bulge):    90901  (tot=     0002602064) masstab=0
Type 4 (stars):   104657  (tot=     0002104487) masstab=0
Type 5 (bndry):      551  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.14.hdf5' on task=630 (contains 35952933 particles.)
distributing this file to tasks 630-674
Type 0 (gas):   17787890  (tot=     0284546826) masstab=0
Type 1 (halo):  17900434  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13770  (tot=     0000254233) masstab=0
Type 3 (bulge):   148743  (tot=     0002602064) masstab=0
Type 4 (stars):   101578  (tot=     0002104487) masstab=0
Type 5 (bndry):      518  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.3.hdf5' on task=135 (contains 36195786 particles.)
distributing this file to tasks 135-179
Type 0 (gas):   17829580  (tot=     0284546826) masstab=0
Type 1 (halo):  17977363  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9427  (tot=     0000254233) masstab=0
Type 3 (bulge):   233637  (tot=     0002602064) masstab=0
Type 4 (stars):   145199  (tot=     0002104487) masstab=0
Type 5 (bndry):      580  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.13.hdf5' on task=585 (contains 35986434 particles.)
distributing this file to tasks 585-629
Type 0 (gas):   17777565  (tot=     0284546826) masstab=0
Type 1 (halo):  17864708  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21198  (tot=     0000254233) masstab=0
Type 3 (bulge):   205430  (tot=     0002602064) masstab=0
Type 4 (stars):   116975  (tot=     0002104487) masstab=0
Type 5 (bndry):      558  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.1.hdf5' on task=45 (contains 36024926 particles.)
distributing this file to tasks 45-89
Type 0 (gas):   17722595  (tot=     0284546826) masstab=0
Type 1 (halo):  17965185  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14906  (tot=     0000254233) masstab=0
Type 3 (bulge):   144997  (tot=     0002602064) masstab=0
Type 4 (stars):   176653  (tot=     0002104487) masstab=0
Type 5 (bndry):      590  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.6.hdf5' on task=270 (contains 36036663 particles.)
distributing this file to tasks 270-314
Type 0 (gas):   17829806  (tot=     0284546826) masstab=0
Type 1 (halo):  17982303  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     10923  (tot=     0000254233) masstab=0
Type 3 (bulge):    77123  (tot=     0002602064) masstab=0
Type 4 (stars):   135990  (tot=     0002104487) masstab=0
Type 5 (bndry):      518  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.4.hdf5' on task=180 (contains 36055665 particles.)
distributing this file to tasks 180-224
Type 0 (gas):   17719231  (tot=     0284546826) masstab=0
Type 1 (halo):  17833676  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     22477  (tot=     0000254233) masstab=0
Type 3 (bulge):   366213  (tot=     0002602064) masstab=0
Type 4 (stars):   113530  (tot=     0002104487) masstab=0
Type 5 (bndry):      538  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.7.hdf5' on task=315 (contains 35979689 particles.)
distributing this file to tasks 315-359
Type 0 (gas):   17732655  (tot=     0284546826) masstab=0
Type 1 (halo):  17979292  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      8973  (tot=     0000254233) masstab=0
Type 3 (bulge):   129639  (tot=     0002602064) masstab=0
Type 4 (stars):   128556  (tot=     0002104487) masstab=0
Type 5 (bndry):      574  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.2.hdf5' on task=90 (contains 36103460 particles.)
distributing this file to tasks 90-134
Type 0 (gas):   17836743  (tot=     0284546826) masstab=0
Type 1 (halo):  17907751  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     23449  (tot=     0000254233) masstab=0
Type 3 (bulge):   197908  (tot=     0002602064) masstab=0
Type 4 (stars):   137054  (tot=     0002104487) masstab=0
Type 5 (bndry):      555  (tot=     0000008826) masstab=0


reading file `data//snapshot_003_z003p512/snap_003_z003p512.12.hdf5' on task=540 (contains 36152343 particles.)
distributing this file to tasks 540-584
Type 0 (gas):   17939639  (tot=     0284546826) masstab=0
Type 1 (halo):  18005619  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12739  (tot=     0000254233) masstab=0
Type 3 (bulge):    92006  (tot=     0002602064) masstab=0
Type 4 (stars):   101808  (tot=     0002104487) masstab=0
Type 5 (bndry):      532  (tot=     0000008826) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576177166


Setting next time for grid output file to Time_next= 0.225489

Setting next time for line of sight file to Time_next= 0.222581

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=4.521 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1948.56 MB)
Allocated 1.62149 MByte for top-level domain structure
use of 26.4302 MB of temporary storage for domain decomposition... (presently allocated=1976.61 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 1976.62 Mbyte (on task=1), Smallest = 1976.62 Mbyte, Average = 1976.62 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     12.2108      31.3619  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     12.2108      43.5727  allocate_memory()/allocate.c/61
   1 2969 0                 P    976.8628    1020.4355  allocate_memory()/allocate.c/67
   1 2970 0              SphP    759.8202    1780.2557  allocate_memory()/allocate.c/85
   1 2971 0              MetP    149.0079    1929.2636  allocate_memory()/allocate.c/105
   1 2972 0               BHP     19.2969    1948.5605  allocate_memory()/allocate.c/126
   1 2973 0   DomainStartList      0.1758    1948.7363  domain_allocate()/domain.c/562
   1 2974 0     DomainEndList      0.1758    1948.9121  domain_allocate()/domain.c/565
   1 2975 0          TopNodes      1.2699    1950.1820  domain_allocate()/domain.c/570
   1 2976 0        domain_key     24.4216    1974.6036  domain_Decomposition()/domain.c/231
   1 3001 0          topNodes      1.3676    1976.6122  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 2.0025 MByte for top-level domain structure
use of 27.0164 MB of temporary storage for domain decomposition... (presently allocated=1977.58 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 2.49776 MByte for top-level domain structure
use of 27.7784 MB of temporary storage for domain decomposition... (presently allocated=1978.84 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.01352  new value=0.017576
Allocated 3.14161 MByte for top-level domain structure
use of 28.7689 MB of temporary storage for domain decomposition... (presently allocated=1980.47 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.017576  new value=0.0228488
Allocated 3.9786 MByte for top-level domain structure
use of 30.0566 MB of temporary storage for domain decomposition... (presently allocated=1982.59 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0228488  new value=0.0297034
Allocated 5.06673 MByte for top-level domain structure
use of 31.7306 MB of temporary storage for domain decomposition... (presently allocated=1985.36 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0297034  new value=0.0386145
Allocated 6.48127 MByte for top-level domain structure
use of 33.9068 MB of temporary storage for domain decomposition... (presently allocated=1988.95 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0386145  new value=0.0501988
Allocated 8.32015 MByte for top-level domain structure
use of 36.7359 MB of temporary storage for domain decomposition... (presently allocated=1993.62 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0501988  new value=0.0652585
Allocated 10.7107 MByte for top-level domain structure
use of 40.4137 MB of temporary storage for domain decomposition... (presently allocated=1999.68 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0652585  new value=0.084836
Allocated 13.8185 MByte for top-level domain structure
use of 45.1948 MB of temporary storage for domain decomposition... (presently allocated=2007.57 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.084836  new value=0.110287
Allocated 17.8585 MByte for top-level domain structure
use of 51.4103 MB of temporary storage for domain decomposition... (presently allocated=2017.83 MB)
Before=325521
Increasing TopNodeAllocFactor=0.110287  new value=0.143373
Allocated 23.1106 MByte for top-level domain structure
use of 59.4905 MB of temporary storage for domain decomposition... (presently allocated=2031.16 MB)
Before=325521
Increasing TopNodeAllocFactor=0.143373  new value=0.186385
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2048.49 MB)
Before=325521
After=479329
NTopleaves= 419413  NTopnodes=479329 (space for 596615)
gravity work-load balance=1.02124   memory-balance=1.02124   SPH work-load balance=1.02246
iter=0 exchange of 0575239069 particles (ret=0)
domain decomposition done. (took 25.7008 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 5.36893 MByte in top-level domain structure

Allocated 482.796 MByte for BH-tree, and 1.59993 Mbyte for top-leaves.  (presently allocted 2457.08 MB)

Begin Ngb-tree construction.
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 2748.35 Mbyte (on task=490), Smallest = 2712 Mbyte, Average = 2730.29 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
 490 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
 490 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
 490 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
 490 2967 0     NextInTimeBin     12.2108      31.3619  allocate_memory()/allocate.c/58
 490 2968 0     PrevInTimeBin     12.2108      43.5727  allocate_memory()/allocate.c/61
 490 2969 0                 P    976.8628    1020.4355  allocate_memory()/allocate.c/67
 490 2970 0              SphP    759.8202    1780.2557  allocate_memory()/allocate.c/85
 490 2971 0              MetP    149.0079    1929.2636  allocate_memory()/allocate.c/105
 490 2972 0               BHP     19.2969    1948.5605  allocate_memory()/allocate.c/126
 490 2973 0   DomainStartList      0.1758    1948.7363  domain_allocate()/domain.c/562
 490 2974 0     DomainEndList      0.1758    1948.9121  domain_allocate()/domain.c/565
 490 2975 0          TopNodes     23.7704    1972.6825  domain_allocate()/domain.c/570
 490 2976 0   DomainNodeIndex      1.5999    1974.2824  force_treeallocate()/forcetree.c/4800
 490 2977 0        Nodes_base    249.0251    2223.3075  force_treeallocate()/forcetree.c/4803
 490 2978 0     Extnodes_base    207.5209    2430.8284  force_treeallocate()/forcetree.c/4811
 490 2979 0          Nextnode     14.0393    2444.8677  force_treeallocate()/forcetree.c/4820
 490 2980 0            Father     12.2108    2457.0785  force_treeallocate()/forcetree.c/4827
 490 2981 0           Ngblist      3.0299    2460.1084  density()/density.c/690
 490 2982 0              Left      6.0597    2466.1681  density()/density.c/692
 490 2983 0             Right      6.0597    2472.2278  density()/density.c/693
 490 2984 0    DataIndexTable      7.0175    2479.2453  density()/density.c/738
 490 2985 0      DataNodeList     18.7134    2497.9588  density()/density.c/740
 490 2986 0       DensDataGet     68.6236    2566.5824  density()/density.c/893
 490 2987 0    DensDataResult     90.4584    2657.0408  density()/density.c/931
 490 2988 0       DensDataOut     91.3042    2748.3450  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0012653434 particles.
ngb iteration 2: need to repeat for 0000012919 particles.
ngb iteration 3: need to repeat for 0000007079 particles.
ngb iteration 4: need to repeat for 0000007044 particles.
ngb iteration 5: need to repeat for 0000001011 particles.
ngb iteration 6: need to repeat for 0000000688 particles.
ngb iteration 7: need to repeat for 0000000205 particles.
ngb iteration 8: need to repeat for 0000000003 particles.
ngb iteration 9: need to repeat for 0000000002 particles.
ngb iteration 10: need to repeat for 0000000001 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_3.421.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_3.638.hdf5

Begin to compute FoF group catalogues...  (presently allocated=2457.08 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1948.56 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2048.49 MB)
Before=451993
After=502345
NTopleaves= 439552  NTopnodes=502345 (space for 596615)
gravity work-load balance=1.01229   memory-balance=1.01229   SPH work-load balance=1.01167
iter=0 exchange of 0575481122 particles (ret=0)
domain decomposition done. (took 8.46029 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 4.31534 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=1973.82 MB)
Tree construction.

Start linking particles (presently allocated=2498.83 MB)
links on local processor done (took 0.924627 sec).
Marked=0031234026 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=2596.54 MB) 
have done 0000930990 cross links (processed 0031234026, took 1.09533 sec)
have done 0000261778 cross links (processed 0011609789, took 0.255234 sec)
have done 0000125225 cross links (processed 0006849296, took 0.220271 sec)
have done 0000054588 cross links (processed 0002799230, took 0.184976 sec)
have done 0000022695 cross links (processed 0000974690, took 0.099036 sec)
have done 0000008812 cross links (processed 0000325362, took 0.071384 sec)
have done 0000003282 cross links (processed 0000091392, took 0.05305 sec)
have done 0000001273 cross links (processed 0000040021, took 0.0540659 sec)
have done 0000000593 cross links (processed 0000018178, took 0.035013 sec)
have done 0000000264 cross links (processed 0000005640, took 0.0339329 sec)
have done 0000000108 cross links (processed 0000001975, took 0.0328541 sec)
have done 0000000079 cross links (processed 0000001950, took 0.034224 sec)
have done 0000000064 cross links (processed 0000001552, took 0.0339699 sec)
have done 0000000008 cross links (processed 0000000387, took 0.032562 sec)
have done 0000000004 cross links (processed 0000000036, took 0.032269 sec)
have done 0000000000 cross links (processed 0000000010, took 0.0324261 sec)
Local groups found.

group finding took = 3.30006 sec
Start finding nearest dm-particle (presently allocated=2498.83 MB)
still finding nearest... (presently allocated=2585.85 MB)
fof-nearest iteration 1: need to repeat for 272398347 particles.
still finding nearest... (presently allocated=2586.47 MB)
fof-nearest iteration 2: need to repeat for 245359884 particles.
still finding nearest... (presently allocated=2587.55 MB)
fof-nearest iteration 3: need to repeat for 201047940 particles.
still finding nearest... (presently allocated=2589.17 MB)
fof-nearest iteration 4: need to repeat for 167247517 particles.
still finding nearest... (presently allocated=2591.59 MB)
fof-nearest iteration 5: need to repeat for 120160064 particles.
still finding nearest... (presently allocated=2593.98 MB)
fof-nearest iteration 6: need to repeat for 49154691 particles.
still finding nearest... (presently allocated=2591.91 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 4.06106 sec
compiling local group data and catalogue took = 0.646057 sec

Total number of groups with at least 32 particles: 220465
Largest group has 798455 particles.
Total number of particles in groups: 0083191900

group properties are now allocated.. (presently allocated=2023.07 MB)
computation of group properties took = 0.037678 sec
start global sorting of group catalogues number 3
LargestGroup = 372.905638; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.0471792 sec
Group catalogues globally sorted. took = 1.24814 sec
starting saving of group catalogue number 3
data//groups_003_z003p512
Group catalogues number 3 saved. took = 2.89181 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (284546826).
tree build for species 0 took 0.57571 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0220791004 particles. (took 6.97082 sec)
ngb iteration 2: need to repeat for 0192181420 particles. (took 4.48459 sec)
ngb iteration 3: need to repeat for 0177608099 particles. (took 3.80202 sec)
ngb iteration 4: need to repeat for 0165193822 particles. (took 3.51362 sec)
ngb iteration 5: need to repeat for 0148987062 particles. (took 3.34106 sec)
ngb iteration 6: need to repeat for 0124602576 particles. (took 3.06926 sec)
ngb iteration 7: need to repeat for 0093484152 particles. (took 2.74776 sec)
ngb iteration 8: need to repeat for 0062931855 particles. (took 2.20987 sec)
ngb iteration 9: need to repeat for 0038870249 particles. (took 1.52659 sec)
ngb iteration 10: need to repeat for 0022629021 particles. (took 0.920508 sec)
ngb iteration 11: need to repeat for 0012715246 particles. (took 0.537648 sec)
ngb iteration 12: need to repeat for 0007018480 particles. (took 0.340533 sec)
ngb iteration 13: need to repeat for 0003852415 particles. (took 0.229529 sec)
ngb iteration 14: need to repeat for 0002003568 particles. (took 0.166843 sec)
ngb iteration 15: need to repeat for 0000860637 particles. (took 0.125245 sec)
ngb iteration 16: need to repeat for 0000397182 particles. (took 0.0977452 sec)
ngb iteration 17: need to repeat for 0000218187 particles. (took 0.0700629 sec)
ngb iteration 18: need to repeat for 0000133728 particles. (took 0.0587912 sec)
ngb iteration 19: need to repeat for 0000084719 particles. (took 0.0543799 sec)
ngb iteration 20: need to repeat for 0000052866 particles. (took 0.0590341 sec)
ngb iteration 21: need to repeat for 0000032012 particles. (took 0.0522358 sec)
ngb iteration 22: need to repeat for 0000018544 particles. (took 0.050704 sec)
ngb iteration 23: need to repeat for 0000010225 particles. (took 0.0497689 sec)
ngb iteration 24: need to repeat for 0000005438 particles. (took 0.0494721 sec)
ngb iteration 25: need to repeat for 0000002689 particles. (took 0.0486798 sec)
ngb iteration 26: need to repeat for 0000001302 particles. (took 0.049587 sec)
ngb iteration 27: need to repeat for 0000000635 particles. (took 0.048836 sec)
ngb iteration 28: need to repeat for 0000000256 particles. (took 0.0494909 sec)
ngb iteration 29: need to repeat for 0000000102 particles. (took 0.049674 sec)
ngb iteration 30: need to repeat for 0000000039 particles. (took 0.0491269 sec)
ngb iteration 31: need to repeat for 0000000009 particles. (took 0.049351 sec)
final operations ... 
density and smoothing length for species 0 took 35.1087 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.598261 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0215825561 particles. (took 8.68343 sec)
ngb iteration 2: need to repeat for 0186005135 particles. (took 4.91744 sec)
ngb iteration 3: need to repeat for 0169372639 particles. (took 4.06211 sec)
ngb iteration 4: need to repeat for 0156414542 particles. (took 3.56899 sec)
ngb iteration 5: need to repeat for 0141029937 particles. (took 3.3102 sec)
ngb iteration 6: need to repeat for 0119157497 particles. (took 3.04356 sec)
ngb iteration 7: need to repeat for 0091624445 particles. (took 2.6654 sec)
ngb iteration 8: need to repeat for 0063999902 particles. (took 2.10815 sec)
ngb iteration 9: need to repeat for 0041299040 particles. (took 1.48711 sec)
ngb iteration 10: need to repeat for 0025149296 particles. (took 0.956862 sec)
ngb iteration 11: need to repeat for 0014725403 particles. (took 0.589664 sec)
ngb iteration 12: need to repeat for 0008390793 particles. (took 0.371709 sec)
ngb iteration 13: need to repeat for 0004684562 particles. (took 0.250429 sec)
ngb iteration 14: need to repeat for 0002461721 particles. (took 0.178068 sec)
ngb iteration 15: need to repeat for 0001104059 particles. (took 0.132437 sec)
ngb iteration 16: need to repeat for 0000481539 particles. (took 0.098243 sec)
ngb iteration 17: need to repeat for 0000213818 particles. (took 0.077795 sec)
ngb iteration 18: need to repeat for 0000095594 particles. (took 0.064476 sec)
ngb iteration 19: need to repeat for 0000042312 particles. (took 0.056098 sec)
ngb iteration 20: need to repeat for 0000018133 particles. (took 0.0517111 sec)
ngb iteration 21: need to repeat for 0000007439 particles. (took 0.0486588 sec)
ngb iteration 22: need to repeat for 0000002856 particles. (took 0.047637 sec)
ngb iteration 23: need to repeat for 0000000982 particles. (took 0.0504549 sec)
ngb iteration 24: need to repeat for 0000000300 particles. (took 0.0467951 sec)
ngb iteration 25: need to repeat for 0000000084 particles. (took 0.0465059 sec)
ngb iteration 26: need to repeat for 0000000025 particles. (took 0.0463541 sec)
ngb iteration 27: need to repeat for 0000000007 particles. (took 0.0463879 sec)
final operations ... 
density and smoothing length for species 1 took 37.2377 sec
Tree construction for species 4 (2104487).
tree build for species 4 took 0.374619 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0001833965 particles. (took 1.76635 sec)
ngb iteration 2: need to repeat for 0001729999 particles. (took 1.07281 sec)
ngb iteration 3: need to repeat for 0001657679 particles. (took 0.842417 sec)
ngb iteration 4: need to repeat for 0001595456 particles. (took 0.677052 sec)
ngb iteration 5: need to repeat for 0001521315 particles. (took 0.546272 sec)
ngb iteration 6: need to repeat for 0001425293 particles. (took 0.439431 sec)
ngb iteration 7: need to repeat for 0001307344 particles. (took 0.335347 sec)
ngb iteration 8: need to repeat for 0001167294 particles. (took 0.275546 sec)
ngb iteration 9: need to repeat for 0001016272 particles. (took 0.224651 sec)
ngb iteration 10: need to repeat for 0000860801 particles. (took 0.188121 sec)
ngb iteration 11: need to repeat for 0000715615 particles. (took 0.163199 sec)
ngb iteration 12: need to repeat for 0000583451 particles. (took 0.146658 sec)
ngb iteration 13: need to repeat for 0000468919 particles. (took 0.142213 sec)
ngb iteration 14: need to repeat for 0000370117 particles. (took 0.118525 sec)
ngb iteration 15: need to repeat for 0000288180 particles. (took 0.108501 sec)
ngb iteration 16: need to repeat for 0000225809 particles. (took 0.0975561 sec)
ngb iteration 17: need to repeat for 0000177534 particles. (took 0.089231 sec)
ngb iteration 18: need to repeat for 0000139545 particles. (took 0.081867 sec)
ngb iteration 19: need to repeat for 0000110371 particles. (took 0.076036 sec)
ngb iteration 20: need to repeat for 0000087405 particles. (took 0.0705838 sec)
ngb iteration 21: need to repeat for 0000068312 particles. (took 0.06739 sec)
ngb iteration 22: need to repeat for 0000052795 particles. (took 0.0651391 sec)
ngb iteration 23: need to repeat for 0000040103 particles. (took 0.063627 sec)
ngb iteration 24: need to repeat for 0000029518 particles. (took 0.063519 sec)
ngb iteration 25: need to repeat for 0000020937 particles. (took 0.0627048 sec)
ngb iteration 26: need to repeat for 0000014045 particles. (took 0.0628259 sec)
ngb iteration 27: need to repeat for 0000008989 particles. (took 0.0624299 sec)
ngb iteration 28: need to repeat for 0000005526 particles. (took 0.062412 sec)
ngb iteration 29: need to repeat for 0000003257 particles. (took 0.062557 sec)
ngb iteration 30: need to repeat for 0000001843 particles. (took 0.0621369 sec)
ngb iteration 31: need to repeat for 0000000990 particles. (took 0.0623479 sec)
ngb iteration 32: need to repeat for 0000000513 particles. (took 0.0624781 sec)
ngb iteration 33: need to repeat for 0000000229 particles. (took 0.062041 sec)
ngb iteration 34: need to repeat for 0000000117 particles. (took 0.0621352 sec)
ngb iteration 35: need to repeat for 0000000046 particles. (took 0.061841 sec)
ngb iteration 36: need to repeat for 0000000014 particles. (took 0.062149 sec)
ngb iteration 37: need to repeat for 0000000006 particles. (took 0.0620239 sec)
ngb iteration 38: need to repeat for 0000000003 particles. (took 0.062551 sec)
final operations ... 
density and smoothing length for species 4 took 8.79792 sec
Tree construction.
tree build took 0.872628 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000004924 particles. (took 0.0646231 sec)
ngb iteration 2: need to repeat for 0000003363 particles. (took 0.0644839 sec)
ngb iteration 3: need to repeat for 0000002302 particles. (took 0.064759 sec)
ngb iteration 4: need to repeat for 0000001772 particles. (took 0.064481 sec)
ngb iteration 5: need to repeat for 0000001487 particles. (took 0.064332 sec)
ngb iteration 6: need to repeat for 0000001267 particles. (took 0.0643721 sec)
ngb iteration 7: need to repeat for 0000000999 particles. (took 0.0640831 sec)
ngb iteration 8: need to repeat for 0000000739 particles. (took 0.064151 sec)
ngb iteration 9: need to repeat for 0000000489 particles. (took 0.0643921 sec)
ngb iteration 10: need to repeat for 0000000319 particles. (took 0.0639741 sec)
ngb iteration 11: need to repeat for 0000000180 particles. (took 0.0635281 sec)
ngb iteration 12: need to repeat for 0000000113 particles. (took 0.0633922 sec)
ngb iteration 13: need to repeat for 0000000061 particles. (took 0.0630381 sec)
ngb iteration 14: need to repeat for 0000000036 particles. (took 0.0630369 sec)
ngb iteration 15: need to repeat for 0000000025 particles. (took 0.062393 sec)
ngb iteration 16: need to repeat for 0000000014 particles. (took 0.0625329 sec)
ngb iteration 17: need to repeat for 0000000007 particles. (took 0.063622 sec)
ngb iteration 18: need to repeat for 0000000005 particles. (took 0.062382 sec)
ngb iteration 19: need to repeat for 0000000002 particles. (took 0.062995 sec)
ngb iteration 20: need to repeat for 0000000001 particles. (took 0.062494 sec)
ngb iteration 21: need to repeat for 0000000001 particles. (took 0.0628181 sec)
ngb iteration 22: need to repeat for 0000000001 particles. (took 0.0641701 sec)
final operations ... 
density and smoothing length for species 5 took 1.60239 sec
Tree construction for species 0 (284546826).
tree build for species 0 took 0.574904 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 10.8914 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.573495 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 6.46122 sec
Tree construction for species 4 (2104487).
tree build for species 4 took 0.353373 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 4.11991 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.350362 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 4.13302 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 0.8206 sec
saving densities took 3.09611 sec

Number of FOF halos treated with collective SubFind code = 0
(the adopted size-limit for the collective algorithm was 2240688 particles.)
the other 220465 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 9203 - 19160844 

subfind_exchange()() took 1.42576 sec
processing of collective halos took 1.90735e-06 sec
sort of local particles()() took 1.03759 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 115.251 sec

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unsorting of local particles()() took 0.932803 sec
Task 0: testing particles ...
subfind_exchange() (for return to original CPU)  took 1.51565 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=2119.32 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2219.26 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 2219.26 Mbyte (on task=0), Smallest = 2132.12 Mbyte, Average = 2135.61 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    759.8202    1780.2546  allocate_memory()/allocate.c/85
   0 2971 0              MetP    149.0079    1929.2626  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.2969    1948.5595  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1948.7352  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1948.9110  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     24.9118    1973.8228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.2936    1992.1165  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.4893    2022.6058  fof_fof()/fof.c/337
   0 2978 0             Group      0.4628    2023.0686  fof_fof()/fof.c/380
   0 2979 0          SubGroup     96.2553    2119.3239  subfind()/subfind.c/376
   0 2980 0   DomainStartList      0.1758    2119.4997  domain_allocate()/domain.c/562
   0 2981 0     DomainEndList      0.1758    2119.6755  domain_allocate()/domain.c/565
   0 2982 0          TopNodes     29.5868    2149.2623  domain_allocate()/domain.c/570
   0 2983 0        domain_key     24.4216    2173.6838  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      2.2759    2175.9927  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      2.2759    2178.2686  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      2.2759    2180.5445  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      2.2759    2182.8204  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      2.2759    2185.1073  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      2.2759    2187.3942  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes     31.8627    2219.2569  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=455617
After=505641
NTopleaves= 442436  NTopnodes=505641 (space for 596615)
gravity work-load balance=1.01555   memory-balance=1.01555   SPH work-load balance=1.01451
iter=0 exchange of 0575273079 particles (ret=0)
domain decomposition done. (took 8.47718 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 4.16446 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000198878 particles. (took 0.0426142 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.032584 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.0342531 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.0348449 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.035403 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.03546 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.0350599 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.0349689 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.035464 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.035346 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.0349669 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.0353701 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0349891 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.0351889 sec)
SO iteration 15: need to repeat for 0000196936 particles. (took 0.03497 sec)
SO iteration 16: need to repeat for 0000004072 particles. (took 0.034786 sec)
SO iteration 17: need to repeat for 0000000037 particles. (took 0.00334287 sec)
SO iteration 1: need to repeat for 0000198878 particles. (took 0.035943 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.0324099 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.033309 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.0328178 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.0325639 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.0328479 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.0329509 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.0326259 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.0330391 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.0326841 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.0328109 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.0327291 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0330682 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.0327668 sec)
SO iteration 15: need to repeat for 0000197746 particles. (took 0.032692 sec)
SO iteration 16: need to repeat for 0000131235 particles. (took 0.03268 sec)
SO iteration 17: need to repeat for 0000001905 particles. (took 0.025661 sec)
SO iteration 18: need to repeat for 0000000034 particles. (took 0.00270581 sec)
SO iteration 19: need to repeat for 0000000001 particles. (took 0.00202513 sec)
SO iteration 1: need to repeat for 0000198878 particles. (took 0.0357828 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.0321071 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.030509 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.0299649 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.02983 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.030019 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.03003 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.030093 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.030051 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.0303118 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.0300398 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.0300932 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0301669 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.0301678 sec)
SO iteration 15: need to repeat for 0000198867 particles. (took 0.030618 sec)
SO iteration 16: need to repeat for 0000197528 particles. (took 0.030045 sec)
SO iteration 17: need to repeat for 0000174597 particles. (took 0.0321949 sec)
SO iteration 18: need to repeat for 0000021613 particles. (took 0.0282152 sec)
SO iteration 19: need to repeat for 0000003309 particles. (took 0.00694108 sec)
SO iteration 20: need to repeat for 0000000024 particles. (took 0.00277781 sec)
SO iteration 1: need to repeat for 0000198878 particles. (took 0.0359509 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.0347161 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.0351138 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.035357 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.0352731 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.0389011 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.0371919 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.0350399 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.0353389 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.0350771 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.0354819 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.035146 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0351601 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.035342 sec)
SO iteration 15: need to repeat for 0000196892 particles. (took 0.035434 sec)
SO iteration 16: need to repeat for 0000002351 particles. (took 0.035315 sec)
SO iteration 17: need to repeat for 0000000028 particles. (took 0.00288415 sec)
SO iteration 1: need to repeat for 0000198878 particles. (took 0.0549319 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.0431559 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.037529 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.038265 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.0362761 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.0350251 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.0386 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.037075 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.03865 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.041121 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.0351171 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.034857 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0402529 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.0349801 sec)
SO iteration 15: need to repeat for 0000196948 particles. (took 0.0411689 sec)
SO iteration 16: need to repeat for 0000004589 particles. (took 0.042918 sec)
SO iteration 17: need to repeat for 0000000044 particles. (took 0.00359511 sec)
SO iteration 1: need to repeat for 0000198878 particles. (took 0.0358491 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.0324681 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.033339 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.033287 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.0326231 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.0330451 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.0326331 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.0329249 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.03297 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.032907 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.0326748 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.0329051 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0329521 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.033185 sec)
SO iteration 15: need to repeat for 0000197788 particles. (took 0.0330801 sec)
SO iteration 16: need to repeat for 0000139214 particles. (took 0.0327411 sec)
SO iteration 17: need to repeat for 0000002136 particles. (took 0.026675 sec)
SO iteration 18: need to repeat for 0000000038 particles. (took 0.00273919 sec)
SO iteration 19: need to repeat for 0000000002 particles. (took 0.00226212 sec)
SO iteration 1: need to repeat for 0000198878 particles. (took 0.0368609 sec)
SO iteration 2: need to repeat for 0000198878 particles. (took 0.032892 sec)
SO iteration 3: need to repeat for 0000198878 particles. (took 0.030118 sec)
SO iteration 4: need to repeat for 0000198878 particles. (took 0.030093 sec)
SO iteration 5: need to repeat for 0000198878 particles. (took 0.0299561 sec)
SO iteration 6: need to repeat for 0000198878 particles. (took 0.0301518 sec)
SO iteration 7: need to repeat for 0000198878 particles. (took 0.030133 sec)
SO iteration 8: need to repeat for 0000198878 particles. (took 0.0303261 sec)
SO iteration 9: need to repeat for 0000198878 particles. (took 0.0302639 sec)
SO iteration 10: need to repeat for 0000198878 particles. (took 0.032043 sec)
SO iteration 11: need to repeat for 0000198878 particles. (took 0.030256 sec)
SO iteration 12: need to repeat for 0000198878 particles. (took 0.0301979 sec)
SO iteration 13: need to repeat for 0000198878 particles. (took 0.0299971 sec)
SO iteration 14: need to repeat for 0000198878 particles. (took 0.030098 sec)
SO iteration 15: need to repeat for 0000198867 particles. (took 0.0300632 sec)
SO iteration 16: need to repeat for 0000197547 particles. (took 0.0303719 sec)
SO iteration 17: need to repeat for 0000177154 particles. (took 0.0298979 sec)
SO iteration 18: need to repeat for 0000023307 particles. (took 0.0297379 sec)
SO iteration 19: need to repeat for 0000003525 particles. (took 0.00780392 sec)
SO iteration 20: need to repeat for 0000000028 particles. (took 0.00280499 sec)
determining spherical overdensity masses took 4.03665 sec
finding spherical overdensity particles took 0.584655 sec
determining contamination of halos took 0.503739 sec
Global sort of Groups took 0.540433 sec
Global sort of SubGroups took 0.758125 sec
Global sort of IDs took 0.237663 sec
Writing block 0 (GLEN), n=307, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1228d
Writing block 1 (GOFF), n=307, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1228d
Writing block 2 (MTOT), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 3 (GPOS), n=307, ptype=0, dtype=1, ndim=3, bpb=4 bytes=3684d
Writing block 4 (MMEA), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 5 (RMEA), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 6 (MCRI), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 7 (RCRI), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 8 (MTOP), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 9 (RTOP), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 17 (NCON), n=307, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1228d
Writing block 18 (MCON), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 22 (NSUB), n=307, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1228d
Writing block 23 (FSUB), n=307, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1228d
Writing block 24 (SLEN), n=589, ptype=1, dtype=0, ndim=1, bpb=4 bytes=2356d
Writing block 25 (SOFF), n=589, ptype=1, dtype=0, ndim=1, bpb=4 bytes=2356d
Writing block 26 (SSUB), n=589, ptype=1, dtype=0, ndim=1, bpb=4 bytes=2356d
Writing block 27 (MSUB), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 28 (SPOS), n=589, ptype=1, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 29 (SVEL), n=589, ptype=1, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 30 (SCM ), n=589, ptype=1, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 33 (VMAX), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 34 (RMAX), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 35 (RHMS), n=589, ptype=1, dtype=1, ndim=6, bpb=4 bytes=14136d
Writing block 36 (MTRH), n=589, ptype=1, dtype=1, ndim=6, bpb=4 bytes=14136d
Writing block 37 (MBID), n=589, ptype=1, dtype=2, ndim=1, bpb=8 bytes=4712d
Writing block 38 (GRNR), n=589, ptype=1, dtype=0, ndim=1, bpb=4 bytes=2356d
Writing block 39 (SUBN), n=589, ptype=1, dtype=0, ndim=1, bpb=4 bytes=2356d
Writing block 40 (SMST), n=589, ptype=1, dtype=1, ndim=6, bpb=4 bytes=14136d
Writing block 53 (PID ), n=112801, ptype=2, dtype=2, ndim=1, bpb=8 bytes=902408d
Writing block 54 (SLEN), n=589, ptype=1, dtype=0, ndim=6, bpb=4 bytes=14136d
Writing block 55 (STEN), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 56 (SKEN), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 57 (SUEN), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 58 (SUIT), n=589, ptype=1, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 59 (BHMA), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 60 (BHMD), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 61 (SVD ), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 62 (SVDH), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 63 (HMPR), n=589, ptype=1, dtype=1, ndim=6, bpb=4 bytes=14136d
Writing block 64 (SSFR), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 65 (SSA ), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 66 (SSBZ), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 67 (SSIM), n=589, ptype=1, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 68 (SSPI), n=589, ptype=4, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 69 (GSPI), n=589, ptype=1, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 70 (FSPI), n=589, ptype=5, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 71 (SFM ), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 72 (SFMT), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 73 (SFME), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 74 (SFAE), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 75 (SFKE), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 76 (SFTE), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 77 (SMWP), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 78 (SMM ), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 79 (SMMS), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 80 (SFZ ), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 81 (SFZS), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 82 (SSIA), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 83 (SIAS), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 84 (SMET), n=589, ptype=5, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 85 (SMTS), n=589, ptype=5, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 86 (MF1 ), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 87 (MeF1), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 88 (MF  ), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 89 (MeF2), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 90 (MFA ), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 91 (MeFA), n=589, ptype=5, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 92 (NSPI), n=589, ptype=6, dtype=1, ndim=3, bpb=4 bytes=7068d
Writing block 93 (NFM ), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 94 (NFMT), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 95 (NFME), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 96 (NFAE), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 97 (NFKE), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 98 (NFTE), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 99 (SMWP), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 100 (SMM ), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 101 (SMMS), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 102 (SSIA), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 103 (SIAS), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 104 (SMET), n=589, ptype=6, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 105 (SMTS), n=589, ptype=6, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 106 (MF1 ), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 107 (MeF1), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 108 (MF2 ), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 109 (MeF2), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 110 (MFA ), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 111 (MeFA), n=589, ptype=6, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 112 (SM  ), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 113 (SFKE), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 114 (SFAE), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 115 (SMWP), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 116 (SMM ), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 117 (SMMS), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 118 (SSIA), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 119 (SIAS), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 120 (SMET), n=589, ptype=4, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 121 (SMTS), n=589, ptype=4, dtype=1, ndim=9, bpb=4 bytes=21204d
Writing block 122 (MF1 ), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 123 (MeF1), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 124 (MF2 ), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 125 (MeF2), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 126 (MFA ), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 127 (MeFA), n=589, ptype=4, dtype=1, ndim=1, bpb=4 bytes=2356d
Writing block 128 (MMe5), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 129 (RMe5), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 130 (MCr5), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 131 (RCr5), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 132 (MMe2), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 133 (RMe2), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 134 (MCr2), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 135 (RCr2), n=307, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1228d
Writing block 136 (MAPT), n=589, ptype=7, dtype=1, ndim=60, bpb=4 bytes=141360d
Writing block 137 (SAPT), n=589, ptype=8, dtype=1, ndim=10, bpb=4 bytes=23560d
Writing block 138 (VAPT), n=589, ptype=9, dtype=1, ndim=10, bpb=4 bytes=23560d
Writing block 139 (BEGY), n=112801, ptype=2, dtype=1, ndim=1, bpb=4 bytes=451204d
Subgroup catalogues saved. took = 8.96977 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 4.531391e-01
 eagle_ph_key_ort: type= 1 timed by volker 4.318111e-01
 eagle_ph_key_ort: type= 2 timed by volker 8.808899e-02
 eagle_ph_key_ort: type= 3 timed by volker 5.801892e-02
 eagle_ph_key_ort: type= 4 timed by volker 1.060381e-01
 eagle_ph_key_ort: type= 5 timed by volker 5.981398e-02
 eagle_ph_key_ort: timing parallel sort = 1.209148e+00
 eagle_fetch_elements: we are using 1520269356 bytes of memory, FreeBytes= 1900336696

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 2137.7 Mbyte (on task=0), Smallest = 2050.48 Mbyte, Average = 2053.99 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    759.8202    1780.2546  allocate_memory()/allocate.c/85
   0 2971 0              MetP    149.0079    1929.2626  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.2969    1948.5595  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1948.7352  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1948.9110  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     24.9118    1973.8228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.2936    1992.1165  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.4893    2022.6058  fof_fof()/fof.c/337
   0 2978 0             Group      0.4628    2023.0686  fof_fof()/fof.c/380
   0 2979 0          SubGroup     96.2553    2119.3239  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.3738    2137.6977  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1932836 number of bytes = 618507520

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 3584.52 Mbyte (on task=0), Smallest = 3493.93 Mbyte, Average = 3500.03 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    759.8202    1780.2546  allocate_memory()/allocate.c/85
   0 2971 0              MetP    149.0079    1929.2626  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.2969    1948.5595  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1948.7352  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1948.9110  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     24.9118    1973.8228  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.2936    1992.1165  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.4893    2022.6058  fof_fof()/fof.c/337
   0 2978 0             Group      0.4628    2023.0686  fof_fof()/fof.c/380
   0 2979 0          SubGroup     96.2553    2119.3239  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.3738    2137.6977  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      7.3732    2145.0709  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      7.3732    2152.4441  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      7.3732    2159.8173  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    589.8547    2749.6720  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    589.8547    3339.5267  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    244.9838    3584.5106  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 2.785232e+00
 eagle_fetch_elements: we are using 1520269356 bytes of memory, FreeBytes= 1900336696
 eagle_fetch_elements: max_bytes= 504, max_elements= 1292349 number of bytes = 651343896
 eagle_ph_key_ort: timing parallel SphP exchange = 2.065378e+00
 eagle_fetch_elements: we are using 1520269356 bytes of memory, FreeBytes= 1900336696
 eagle_fetch_elements: max_bytes= 384, max_elements= 1938163 number of bytes = 744254592
 eagle_ph_key_ort: timing parallel MetP exchange = 7.332397e-02
 eagle_fetch_elements: we are using 1520269356 bytes of memory, FreeBytes= 1900336696
 eagle_fetch_elements: max_bytes= 256, max_elements= 2901259 number of bytes = 742722304
 eagle_ph_key_ort: timing parallel BHP exchange = 6.254911e-03
Sorting particle-data by peano-hilbert key took = 6.42127 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 1520269356 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1932836 number of bytes= 618507520
 eagle_ph_restore: timing parallel P exchange = 2.802456e+00
 eagle_send_elements: we are using 1520269356 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1292349 number of bytes= 651343896
 eagle_ph_restore: timing parallel SphP exchange = 2.119761e+00
 eagle_send_elements: we are using 1520269356 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 1938163 number of bytes= 744254592
 eagle_ph_restore: timing parallel MetP exchange = 8.022189e-02
 eagle_send_elements: we are using 1520269356 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 2901259 number of bytes= 742722304
 eagle_ph_restore: timing parallel BHP exchange = 4.470110e-03
Restoring original order after ph key sorting took = 5.02079 sec

finished writing particle file...

Finished with SUBFIND.  (total time=342.725 sec)

Finished computing FoF groups.  (presently allocated=1973.82 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1948.56 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2048.49 MB)
Before=448585
After=502425
NTopleaves= 439622  NTopnodes=502425 (space for 596615)
gravity work-load balance=1.0127   memory-balance=1.0127   SPH work-load balance=1.01133
iter=0 exchange of 0575277407 particles (ret=0)
domain decomposition done. (took 8.43752 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 4.31168 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 45: endrun called with an error level of 124


task 45: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


task 90: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 135: endrun called with an error level of 124


task 135: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
task 180: endrun called with an error level of 124


task 180: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 225: endrun called with an error level of 124


task 225: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 270: endrun called with an error level of 124


task 270: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 315: endrun called with an error level of 124


task 315: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 360: endrun called with an error level of 124


task 360: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
task 405: endrun called with an error level of 124


task 405: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 450: endrun called with an error level of 124


task 450: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 495: endrun called with an error level of 124


task 495: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 540: endrun called with an error level of 124


task 540: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 585: endrun called with an error level of 124


task 585: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
task 630: endrun called with an error level of 124


task 630: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
task 675: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
task 675: endrun called with an error level of 124


Finished FOF, total time doing fof/subfind = 374.62 s
task 0: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
task 0: endrun called with an error level of 124


    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   62703.30 Mb (on task=112), Smallest =   62510.50 Mb (on task=0), Average =   62660.30 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=240), Smallest =   64531.71 Mb (on task=496), Average =   64532.00 Mb
Committed_AS:	 Largest =    2021.50 Mb (on task=0), Smallest =    1828.70 Mb (on task=112), Average =    1871.71 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=416), Smallest =   16250.93 Mb (on task=688), Average =   16303.50 Mb
AllocMem:	 Largest =    2021.50 Mb (on task=0), Smallest =    1828.70 Mb (on task=112), Average =    1871.71 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 720 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N16':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         3950
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

reading file `data//snapshot_002_z004p614/snap_002_z004p614.5.hdf5' on task=225 (contains 36071845 particles.)
distributing this file to tasks 225-269
Type 0 (gas):   17864853  (tot=     0285492336) masstab=0
Type 1 (halo):  17918243  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     18764  (tot=     0000254233) masstab=0
Type 3 (bulge):   201593  (tot=     0002602064) masstab=0
Type 4 (stars):    68059  (tot=     0001162888) masstab=0
Type 5 (bndry):      333  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.14.hdf5' on task=630 (contains 36049904 particles.)
distributing this file to tasks 630-674
Type 0 (gas):   17842212  (tot=     0285492336) masstab=0
Type 1 (halo):  17903850  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     26169  (tot=     0000254233) masstab=0
Type 3 (bulge):   215694  (tot=     0002602064) masstab=0
Type 4 (stars):    61647  (tot=     0001162888) masstab=0
Type 5 (bndry):      332  (tot=     0000005331) masstab=0


Allocated 1016.55 MByte for particle storage.

Allocated 762.347 MByte for storage of SPH data.

Allocated 147.575 MByte for storage of MET data.

Allocated 19.3611 MByte for storage of BH data.


reading file `data//snapshot_002_z004p614/snap_002_z004p614.0.hdf5' on task=0 (contains 36547188 particles.)
distributing this file to tasks 0-44
Type 0 (gas):   17808721  (tot=     0285492336) masstab=0
Type 1 (halo):  18116001  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15628  (tot=     0000254233) masstab=0
Type 3 (bulge):   467941  (tot=     0002602064) masstab=0
Type 4 (stars):   138500  (tot=     0001162888) masstab=0
Type 5 (bndry):      397  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.8.hdf5' on task=360 (contains 35887938 particles.)
distributing this file to tasks 360-404
Type 0 (gas):   17782866  (tot=     0285492336) masstab=0
Type 1 (halo):  17864751  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13550  (tot=     0000254233) masstab=0
Type 3 (bulge):   163977  (tot=     0002602064) masstab=0
Type 4 (stars):    62446  (tot=     0001162888) masstab=0
Type 5 (bndry):      348  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.10.hdf5' on task=450 (contains 35942603 particles.)
distributing this file to tasks 450-494
Type 0 (gas):   17846648  (tot=     0285492336) masstab=0
Type 1 (halo):  17873912  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     21082  (tot=     0000254233) masstab=0
Type 3 (bulge):   145040  (tot=     0002602064) masstab=0
Type 4 (stars):    55613  (tot=     0001162888) masstab=0
Type 5 (bndry):      308  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.3.hdf5' on task=135 (contains 36058999 particles.)
distributing this file to tasks 135-179
Type 0 (gas):   17837403  (tot=     0285492336) masstab=0
Type 1 (halo):  17934507  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      9969  (tot=     0000254233) masstab=0
Type 3 (bulge):   191252  (tot=     0002602064) masstab=0
Type 4 (stars):    85549  (tot=     0001162888) masstab=0
Type 5 (bndry):      319  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.1.hdf5' on task=45 (contains 36063712 particles.)
distributing this file to tasks 45-89
Type 0 (gas):   17890394  (tot=     0285492336) masstab=0
Type 1 (halo):  18011417  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12434  (tot=     0000254233) masstab=0
Type 3 (bulge):    42630  (tot=     0002602064) masstab=0
Type 4 (stars):   106496  (tot=     0001162888) masstab=0
Type 5 (bndry):      341  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.13.hdf5' on task=585 (contains 35852504 particles.)
distributing this file to tasks 585-629
Type 0 (gas):   17882342  (tot=     0285492336) masstab=0
Type 1 (halo):  17867195  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12183  (tot=     0000254233) masstab=0
Type 3 (bulge):    38465  (tot=     0002602064) masstab=0
Type 4 (stars):    52006  (tot=     0001162888) masstab=0
Type 5 (bndry):      313  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.7.hdf5' on task=315 (contains 35836274 particles.)
distributing this file to tasks 315-359
Type 0 (gas):   17831544  (tot=     0285492336) masstab=0
Type 1 (halo):  17843790  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      8194  (tot=     0000254233) masstab=0
Type 3 (bulge):    91732  (tot=     0002602064) masstab=0
Type 4 (stars):    60682  (tot=     0001162888) masstab=0
Type 5 (bndry):      332  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.2.hdf5' on task=90 (contains 36101385 particles.)
distributing this file to tasks 90-134
Type 0 (gas):   17789714  (tot=     0285492336) masstab=0
Type 1 (halo):  17944178  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12801  (tot=     0000254233) masstab=0
Type 3 (bulge):   256024  (tot=     0002602064) masstab=0
Type 4 (stars):    98313  (tot=     0001162888) masstab=0
Type 5 (bndry):      355  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.15.hdf5' on task=675 (contains 36092692 particles.)
distributing this file to tasks 675-719
Type 0 (gas):   17889122  (tot=     0285492336) masstab=0
Type 1 (halo):  17897035  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17966  (tot=     0000254233) masstab=0
Type 3 (bulge):   240688  (tot=     0002602064) masstab=0
Type 4 (stars):    47597  (tot=     0001162888) masstab=0
Type 5 (bndry):      284  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.4.hdf5' on task=180 (contains 35994318 particles.)
distributing this file to tasks 180-224
Type 0 (gas):   17846215  (tot=     0285492336) masstab=0
Type 1 (halo):  17916086  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16441  (tot=     0000254233) masstab=0
Type 3 (bulge):   150495  (tot=     0002602064) masstab=0
Type 4 (stars):    64712  (tot=     0001162888) masstab=0
Type 5 (bndry):      369  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.11.hdf5' on task=495 (contains 35849878 particles.)
distributing this file to tasks 495-539
Type 0 (gas):   17859977  (tot=     0285492336) masstab=0
Type 1 (halo):  17865544  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17113  (tot=     0000254233) masstab=0
Type 3 (bulge):    35225  (tot=     0002602064) masstab=0
Type 4 (stars):    71694  (tot=     0001162888) masstab=0
Type 5 (bndry):      325  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.12.hdf5' on task=540 (contains 35936698 particles.)
distributing this file to tasks 540-584
Type 0 (gas):   17826411  (tot=     0285492336) masstab=0
Type 1 (halo):  17953280  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15203  (tot=     0000254233) masstab=0
Type 3 (bulge):    82470  (tot=     0002602064) masstab=0
Type 4 (stars):    58988  (tot=     0001162888) masstab=0
Type 5 (bndry):      346  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.9.hdf5' on task=405 (contains 35993715 particles.)
distributing this file to tasks 405-449
Type 0 (gas):   17886875  (tot=     0285492336) masstab=0
Type 1 (halo):  17883013  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15844  (tot=     0000254233) masstab=0
Type 3 (bulge):   151038  (tot=     0002602064) masstab=0
Type 4 (stars):    56643  (tot=     0001162888) masstab=0
Type 5 (bndry):      302  (tot=     0000005331) masstab=0


reading file `data//snapshot_002_z004p614/snap_002_z004p614.6.hdf5' on task=270 (contains 35897929 particles.)
distributing this file to tasks 270-314
Type 0 (gas):   17807039  (tot=     0285492336) masstab=0
Type 1 (halo):  17867928  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20892  (tot=     0000254233) masstab=0
Type 3 (bulge):   127800  (tot=     0002602064) masstab=0
Type 4 (stars):    73943  (tot=     0001162888) masstab=0
Type 5 (bndry):      327  (tot=     0000005331) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576177582


Setting next time for grid output file to Time_next= 0.180556

Setting next time for line of sight file to Time_next= 0.17882

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=4.31811 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1949.72 MB)
Allocated 1.62149 MByte for top-level domain structure
use of 26.4302 MB of temporary storage for domain decomposition... (presently allocated=1977.77 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 1977.77 Mbyte (on task=1), Smallest = 1977.77 Mbyte, Average = 1977.77 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     12.2108      31.3619  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     12.2108      43.5727  allocate_memory()/allocate.c/61
   1 2969 0                 P    976.8628    1020.4355  allocate_memory()/allocate.c/67
   1 2970 0              SphP    762.3465    1782.7820  allocate_memory()/allocate.c/85
   1 2971 0              MetP    147.5746    1930.3566  allocate_memory()/allocate.c/105
   1 2972 0               BHP     19.3611    1949.7177  allocate_memory()/allocate.c/126
   1 2973 0   DomainStartList      0.1758    1949.8934  domain_allocate()/domain.c/562
   1 2974 0     DomainEndList      0.1758    1950.0692  domain_allocate()/domain.c/565
   1 2975 0          TopNodes      1.2699    1951.3392  domain_allocate()/domain.c/570
   1 2976 0        domain_key     24.4216    1975.7607  domain_Decomposition()/domain.c/231
   1 3001 0          topNodes      1.3676    1977.7694  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 2.0025 MByte for top-level domain structure
use of 27.0164 MB of temporary storage for domain decomposition... (presently allocated=1978.74 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 2.49776 MByte for top-level domain structure
use of 27.7784 MB of temporary storage for domain decomposition... (presently allocated=1979.99 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.01352  new value=0.017576
Allocated 3.14161 MByte for top-level domain structure
use of 28.7689 MB of temporary storage for domain decomposition... (presently allocated=1981.63 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.017576  new value=0.0228488
Allocated 3.9786 MByte for top-level domain structure
use of 30.0566 MB of temporary storage for domain decomposition... (presently allocated=1983.75 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0228488  new value=0.0297034
Allocated 5.06673 MByte for top-level domain structure
use of 31.7306 MB of temporary storage for domain decomposition... (presently allocated=1986.51 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0297034  new value=0.0386145
Allocated 6.48127 MByte for top-level domain structure
use of 33.9068 MB of temporary storage for domain decomposition... (presently allocated=1990.1 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0386145  new value=0.0501988
Allocated 8.32015 MByte for top-level domain structure
use of 36.7359 MB of temporary storage for domain decomposition... (presently allocated=1994.77 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0501988  new value=0.0652585
Allocated 10.7107 MByte for top-level domain structure
use of 40.4137 MB of temporary storage for domain decomposition... (presently allocated=2000.84 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0652585  new value=0.084836
Allocated 13.8185 MByte for top-level domain structure
use of 45.1948 MB of temporary storage for domain decomposition... (presently allocated=2008.73 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.084836  new value=0.110287
Allocated 17.8585 MByte for top-level domain structure
use of 51.4103 MB of temporary storage for domain decomposition... (presently allocated=2018.99 MB)
Before=298593
Increasing TopNodeAllocFactor=0.110287  new value=0.143373
Allocated 23.1106 MByte for top-level domain structure
use of 59.4905 MB of temporary storage for domain decomposition... (presently allocated=2032.32 MB)
Before=298593
After=453209
NTopleaves= 396558  NTopnodes=453209 (space for 458935)
gravity work-load balance=1.01366   memory-balance=1.01366   SPH work-load balance=1.01401
iter=0 exchange of 0575492945 particles (ret=0)
domain decomposition done. (took 23.5283 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 0.262115 MByte in top-level domain structure

Allocated 478.312 MByte for BH-tree, and 1.51275 Mbyte for top-leaves.  (presently allocted 2452.37 MB)

Begin Ngb-tree construction.
Ngb-Tree contruction finished 
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 2747.68 Mbyte (on task=271), Smallest = 2708.48 Mbyte, Average = 2726.69 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
 271 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
 271 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
 271 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
 271 2967 0     NextInTimeBin     12.2108      31.3619  allocate_memory()/allocate.c/58
 271 2968 0     PrevInTimeBin     12.2108      43.5727  allocate_memory()/allocate.c/61
 271 2969 0                 P    976.8628    1020.4355  allocate_memory()/allocate.c/67
 271 2970 0              SphP    762.3465    1782.7820  allocate_memory()/allocate.c/85
 271 2971 0              MetP    147.5746    1930.3566  allocate_memory()/allocate.c/105
 271 2972 0               BHP     19.3611    1949.7177  allocate_memory()/allocate.c/126
 271 2973 0   DomainStartList      0.1758    1949.8934  domain_allocate()/domain.c/562
 271 2974 0     DomainEndList      0.1758    1950.0692  domain_allocate()/domain.c/565
 271 2975 0          TopNodes     22.4751    1972.5443  domain_allocate()/domain.c/570
 271 2976 0   DomainNodeIndex      1.5127    1974.0571  force_treeallocate()/forcetree.c/4800
 271 2977 0        Nodes_base    246.6337    2220.6908  force_treeallocate()/forcetree.c/4803
 271 2978 0     Extnodes_base    205.5281    2426.2189  force_treeallocate()/forcetree.c/4811
 271 2979 0          Nextnode     13.9396    2440.1586  force_treeallocate()/forcetree.c/4820
 271 2980 0            Father     12.2108    2452.3694  force_treeallocate()/forcetree.c/4827
 271 2981 0           Ngblist      3.0364    2455.4058  density()/density.c/690
 271 2982 0              Left      6.0729    2461.4787  density()/density.c/692
 271 2983 0             Right      6.0729    2467.5516  density()/density.c/693
 271 2984 0    DataIndexTable      7.0175    2474.5691  density()/density.c/738
 271 2985 0      DataNodeList     18.7134    2493.2826  density()/density.c/740
 271 2986 0       DensDataGet     71.3711    2564.6537  density()/density.c/893
 271 2987 0    DensDataResult     94.0801    2658.7337  density()/density.c/931
 271 2988 0       DensDataOut     88.9368    2747.6706  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0011112615 particles.
ngb iteration 2: need to repeat for 0000000954 particles.
ngb iteration 3: need to repeat for 0000000232 particles.
ngb iteration 4: need to repeat for 0000000221 particles.
ngb iteration 5: need to repeat for 0000000042 particles.
ngb iteration 6: need to repeat for 0000000021 particles.
ngb iteration 7: need to repeat for 0000000004 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_4.356.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_4.619.hdf5

Begin to compute FoF group catalogues...  (presently allocated=2452.37 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1949.72 MB)
Allocated 23.1106 MByte for top-level domain structure
use of 59.4905 MB of temporary storage for domain decomposition... (presently allocated=2032.32 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.143373  new value=0.186385
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2049.65 MB)
Before=423329
After=472857
NTopleaves= 413750  NTopnodes=472857 (space for 596615)
gravity work-load balance=1.01314   memory-balance=1.01314   SPH work-load balance=1.00815
iter=0 exchange of 0575239680 particles (ret=0)
domain decomposition done. (took 11.2037 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 5.66519 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=1973.52 MB)
Tree construction.

Start linking particles (presently allocated=2493.46 MB)
links on local processor done (took 0.749642 sec).
Marked=0026813108 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=2591.2 MB) 
have done 0000756204 cross links (processed 0026813108, took 0.951815 sec)
have done 0000173763 cross links (processed 0006962339, took 0.180896 sec)
have done 0000069426 cross links (processed 0003400468, took 0.167998 sec)
have done 0000026613 cross links (processed 0001208534, took 0.132671 sec)
have done 0000009957 cross links (processed 0000460757, took 0.105319 sec)
have done 0000003877 cross links (processed 0000141445, took 0.088182 sec)
have done 0000001613 cross links (processed 0000081344, took 0.068028 sec)
have done 0000000612 cross links (processed 0000019279, took 0.049021 sec)
have done 0000000308 cross links (processed 0000017850, took 0.0541298 sec)
have done 0000000130 cross links (processed 0000005944, took 0.0349212 sec)
have done 0000000018 cross links (processed 0000000471, took 0.032074 sec)
have done 0000000007 cross links (processed 0000000073, took 0.0321009 sec)
have done 0000000003 cross links (processed 0000000030, took 0.0318279 sec)
have done 0000000000 cross links (processed 0000000008, took 0.0321991 sec)
Local groups found.

group finding took = 2.77899 sec
Start finding nearest dm-particle (presently allocated=2493.46 MB)
still finding nearest... (presently allocated=2580.39 MB)
fof-nearest iteration 1: need to repeat for 271248245 particles.
still finding nearest... (presently allocated=2580.91 MB)
fof-nearest iteration 2: need to repeat for 239876218 particles.
still finding nearest... (presently allocated=2581.81 MB)
fof-nearest iteration 3: need to repeat for 183733844 particles.
still finding nearest... (presently allocated=2583.07 MB)
fof-nearest iteration 4: need to repeat for 144097398 particles.
still finding nearest... (presently allocated=2584.76 MB)
fof-nearest iteration 5: need to repeat for 99953744 particles.
still finding nearest... (presently allocated=2586.17 MB)
fof-nearest iteration 6: need to repeat for 35929229 particles.
still finding nearest... (presently allocated=2584.29 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 3.69172 sec
compiling local group data and catalogue took = 0.650065 sec

Total number of groups with at least 32 particles: 202289
Largest group has 477691 particles.
Total number of particles in groups: 0060436069

group properties are now allocated.. (presently allocated=2022.79 MB)
computation of group properties took = 0.0286019 sec
start global sorting of group catalogues number 2
LargestGroup = 208.487103; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.046746 sec
Group catalogues globally sorted. took = 1.21048 sec
starting saving of group catalogue number 2
data//groups_002_z004p614
Group catalogues number 2 saved. took = 2.68657 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (285492336).
tree build for species 0 took 0.536911 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0221508452 particles. (took 6.69923 sec)
ngb iteration 2: need to repeat for 0192487638 particles. (took 4.51923 sec)
ngb iteration 3: need to repeat for 0178074355 particles. (took 3.77217 sec)
ngb iteration 4: need to repeat for 0165540301 particles. (took 3.51037 sec)
ngb iteration 5: need to repeat for 0148948733 particles. (took 3.33011 sec)
ngb iteration 6: need to repeat for 0123943880 particles. (took 3.07579 sec)
ngb iteration 7: need to repeat for 0092321273 particles. (took 2.72815 sec)
ngb iteration 8: need to repeat for 0061685003 particles. (took 2.1744 sec)
ngb iteration 9: need to repeat for 0037863524 particles. (took 1.48693 sec)
ngb iteration 10: need to repeat for 0021950412 particles. (took 0.885626 sec)
ngb iteration 11: need to repeat for 0012295872 particles. (took 0.523573 sec)
ngb iteration 12: need to repeat for 0006773030 particles. (took 0.325787 sec)
ngb iteration 13: need to repeat for 0003709327 particles. (took 0.221881 sec)
ngb iteration 14: need to repeat for 0001911051 particles. (took 0.16309 sec)
ngb iteration 15: need to repeat for 0000796159 particles. (took 0.123762 sec)
ngb iteration 16: need to repeat for 0000367231 particles. (took 0.088469 sec)
ngb iteration 17: need to repeat for 0000199954 particles. (took 0.069263 sec)
ngb iteration 18: need to repeat for 0000118260 particles. (took 0.0598791 sec)
ngb iteration 19: need to repeat for 0000071555 particles. (took 0.0545049 sec)
ngb iteration 20: need to repeat for 0000042601 particles. (took 0.050528 sec)
ngb iteration 21: need to repeat for 0000024600 particles. (took 0.0486891 sec)
ngb iteration 22: need to repeat for 0000013827 particles. (took 0.050967 sec)
ngb iteration 23: need to repeat for 0000007449 particles. (took 0.0475481 sec)
ngb iteration 24: need to repeat for 0000003911 particles. (took 0.047395 sec)
ngb iteration 25: need to repeat for 0000001941 particles. (took 0.0469298 sec)
ngb iteration 26: need to repeat for 0000000927 particles. (took 0.046629 sec)
ngb iteration 27: need to repeat for 0000000445 particles. (took 0.0468252 sec)
ngb iteration 28: need to repeat for 0000000183 particles. (took 0.0473161 sec)
ngb iteration 29: need to repeat for 0000000065 particles. (took 0.047833 sec)
ngb iteration 30: need to repeat for 0000000022 particles. (took 0.046695 sec)
ngb iteration 31: need to repeat for 0000000006 particles. (took 0.0469279 sec)
ngb iteration 32: need to repeat for 0000000003 particles. (took 0.046756 sec)
ngb iteration 33: need to repeat for 0000000001 particles. (took 0.0469599 sec)
final operations ... 
density and smoothing length for species 0 took 34.7194 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.531824 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0217777911 particles. (took 7.6575 sec)
ngb iteration 2: need to repeat for 0188192757 particles. (took 4.92614 sec)
ngb iteration 3: need to repeat for 0172390132 particles. (took 4.05872 sec)
ngb iteration 4: need to repeat for 0159433933 particles. (took 3.57044 sec)
ngb iteration 5: need to repeat for 0143358495 particles. (took 3.31843 sec)
ngb iteration 6: need to repeat for 0120061419 particles. (took 3.0588 sec)
ngb iteration 7: need to repeat for 0090916299 particles. (took 2.66585 sec)
ngb iteration 8: need to repeat for 0062300645 particles. (took 2.10837 sec)
ngb iteration 9: need to repeat for 0039424820 particles. (took 1.44412 sec)
ngb iteration 10: need to repeat for 0023587406 particles. (took 0.90476 sec)
ngb iteration 11: need to repeat for 0013602581 particles. (took 0.554384 sec)
ngb iteration 12: need to repeat for 0007645597 particles. (took 0.357141 sec)
ngb iteration 13: need to repeat for 0004213411 particles. (took 0.23455 sec)
ngb iteration 14: need to repeat for 0002160606 particles. (took 0.170739 sec)
ngb iteration 15: need to repeat for 0000906831 particles. (took 0.127536 sec)
ngb iteration 16: need to repeat for 0000379435 particles. (took 0.094099 sec)
ngb iteration 17: need to repeat for 0000164718 particles. (took 0.0730879 sec)
ngb iteration 18: need to repeat for 0000072445 particles. (took 0.0620329 sec)
ngb iteration 19: need to repeat for 0000031226 particles. (took 0.055202 sec)
ngb iteration 20: need to repeat for 0000013054 particles. (took 0.051414 sec)
ngb iteration 21: need to repeat for 0000005085 particles. (took 0.049504 sec)
ngb iteration 22: need to repeat for 0000001876 particles. (took 0.0487232 sec)
ngb iteration 23: need to repeat for 0000000605 particles. (took 0.047034 sec)
ngb iteration 24: need to repeat for 0000000153 particles. (took 0.0475099 sec)
ngb iteration 25: need to repeat for 0000000029 particles. (took 0.0464699 sec)
ngb iteration 26: need to repeat for 0000000007 particles. (took 0.046298 sec)
ngb iteration 27: need to repeat for 0000000003 particles. (took 0.0462391 sec)
final operations ... 
density and smoothing length for species 1 took 36.0665 sec
Tree construction for species 4 (1162888).
tree build for species 4 took 0.31045 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0001051538 particles. (took 1.12082 sec)
ngb iteration 2: need to repeat for 0001015603 particles. (took 0.539032 sec)
ngb iteration 3: need to repeat for 0000987871 particles. (took 0.432576 sec)
ngb iteration 4: need to repeat for 0000961268 particles. (took 0.388957 sec)
ngb iteration 5: need to repeat for 0000928314 particles. (took 0.338576 sec)
ngb iteration 6: need to repeat for 0000881760 particles. (took 0.311947 sec)
ngb iteration 7: need to repeat for 0000822588 particles. (took 0.277863 sec)
ngb iteration 8: need to repeat for 0000748572 particles. (took 0.237851 sec)
ngb iteration 9: need to repeat for 0000665115 particles. (took 0.204766 sec)
ngb iteration 10: need to repeat for 0000577054 particles. (took 0.178118 sec)
ngb iteration 11: need to repeat for 0000486287 particles. (took 0.165769 sec)
ngb iteration 12: need to repeat for 0000398717 particles. (took 0.140986 sec)
ngb iteration 13: need to repeat for 0000321251 particles. (took 0.121752 sec)
ngb iteration 14: need to repeat for 0000251531 particles. (took 0.10984 sec)
ngb iteration 15: need to repeat for 0000193291 particles. (took 0.100144 sec)
ngb iteration 16: need to repeat for 0000149430 particles. (took 0.0926909 sec)
ngb iteration 17: need to repeat for 0000117170 particles. (took 0.084182 sec)
ngb iteration 18: need to repeat for 0000091667 particles. (took 0.0765128 sec)
ngb iteration 19: need to repeat for 0000072322 particles. (took 0.0715971 sec)
ngb iteration 20: need to repeat for 0000057087 particles. (took 0.0698361 sec)
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ngb iteration 22: need to repeat for 0000035110 particles. (took 0.0650961 sec)
ngb iteration 23: need to repeat for 0000027024 particles. (took 0.0653291 sec)
ngb iteration 24: need to repeat for 0000020289 particles. (took 0.0628059 sec)
ngb iteration 25: need to repeat for 0000014643 particles. (took 0.062799 sec)
ngb iteration 26: need to repeat for 0000010158 particles. (took 0.062525 sec)
ngb iteration 27: need to repeat for 0000006639 particles. (took 0.0638421 sec)
ngb iteration 28: need to repeat for 0000004089 particles. (took 0.0621419 sec)
ngb iteration 29: need to repeat for 0000002400 particles. (took 0.0620451 sec)
ngb iteration 30: need to repeat for 0000001392 particles. (took 0.0629601 sec)
ngb iteration 31: need to repeat for 0000000800 particles. (took 0.0647731 sec)
ngb iteration 32: need to repeat for 0000000455 particles. (took 0.062335 sec)
ngb iteration 33: need to repeat for 0000000255 particles. (took 0.0619409 sec)
ngb iteration 34: need to repeat for 0000000133 particles. (took 0.0625169 sec)
ngb iteration 35: need to repeat for 0000000073 particles. (took 0.0622211 sec)
ngb iteration 36: need to repeat for 0000000035 particles. (took 0.062232 sec)
ngb iteration 37: need to repeat for 0000000015 particles. (took 0.0620992 sec)
ngb iteration 38: need to repeat for 0000000007 particles. (took 0.062444 sec)
ngb iteration 39: need to repeat for 0000000001 particles. (took 0.062196 sec)
ngb iteration 40: need to repeat for 0000000001 particles. (took 0.0623949 sec)
ngb iteration 41: need to repeat for 0000000001 particles. (took 0.0621779 sec)
ngb iteration 42: need to repeat for 0000000001 particles. (took 0.0621369 sec)
final operations ... 
density and smoothing length for species 4 took 6.6568 sec
Tree construction.
tree build took 0.834621 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000002825 particles. (took 0.0906601 sec)
ngb iteration 2: need to repeat for 0000001843 particles. (took 0.063936 sec)
ngb iteration 3: need to repeat for 0000001189 particles. (took 0.063266 sec)
ngb iteration 4: need to repeat for 0000000925 particles. (took 0.0631149 sec)
ngb iteration 5: need to repeat for 0000000788 particles. (took 0.0632172 sec)
ngb iteration 6: need to repeat for 0000000648 particles. (took 0.0629611 sec)
ngb iteration 7: need to repeat for 0000000529 particles. (took 0.0630748 sec)
ngb iteration 8: need to repeat for 0000000384 particles. (took 0.0630829 sec)
ngb iteration 9: need to repeat for 0000000260 particles. (took 0.0625808 sec)
ngb iteration 10: need to repeat for 0000000176 particles. (took 0.062361 sec)
ngb iteration 11: need to repeat for 0000000121 particles. (took 0.062618 sec)
ngb iteration 12: need to repeat for 0000000079 particles. (took 0.0621891 sec)
ngb iteration 13: need to repeat for 0000000049 particles. (took 0.0623081 sec)
ngb iteration 14: need to repeat for 0000000029 particles. (took 0.063741 sec)
ngb iteration 15: need to repeat for 0000000019 particles. (took 0.062602 sec)
ngb iteration 16: need to repeat for 0000000014 particles. (took 0.0625019 sec)
ngb iteration 17: need to repeat for 0000000005 particles. (took 0.0622492 sec)
ngb iteration 18: need to repeat for 0000000002 particles. (took 0.0622721 sec)
ngb iteration 19: need to repeat for 0000000001 particles. (took 0.0623209 sec)
ngb iteration 20: need to repeat for 0000000001 particles. (took 0.062706 sec)
ngb iteration 21: need to repeat for 0000000001 particles. (took 0.062675 sec)
ngb iteration 22: need to repeat for 0000000001 particles. (took 0.0624731 sec)
final operations ... 
density and smoothing length for species 5 took 1.61596 sec
Tree construction for species 0 (285492336).
tree build for species 0 took 0.552458 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 10.5903 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.52971 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 6.55559 sec
Tree construction for species 4 (1162888).
tree build for species 4 took 0.311119 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 3.97863 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.312188 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 4.15522 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 0.83116 sec
saving densities took 2.92522 sec

Number of FOF halos treated with collective SubFind code = 0
(the adopted size-limit for the collective algorithm was 2240688 particles.)
the other 202289 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 8759 - 8900607 

subfind_exchange()() took 1.13223 sec
processing of collective halos took 3.8147e-06 sec
sort of local particles()() took 0.832983 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 87.5003 sec

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unsorting of local particles()() took 0.762544 sec
Task 0: testing particles ...
subfind_exchange() (for return to original CPU)  took 1.13308 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=2082.23 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2182.16 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 2182.17 Mbyte (on task=0), Smallest = 2129.93 Mbyte, Average = 2131.82 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    762.3465    1782.7810  allocate_memory()/allocate.c/85
   0 2971 0              MetP    147.5746    1930.3555  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.3611    1949.7166  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1949.8924  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1950.0682  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     23.4495    1973.5177  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.3409    1991.8585  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.5681    2022.4266  fof_fof()/fof.c/337
   0 2978 0             Group      0.3652    2022.7918  fof_fof()/fof.c/380
   0 2979 0          SubGroup     59.4388    2082.2306  subfind()/subfind.c/376
   0 2980 0   DomainStartList      0.1758    2082.4064  domain_allocate()/domain.c/562
   0 2981 0     DomainEndList      0.1758    2082.5822  domain_allocate()/domain.c/565
   0 2982 0          TopNodes     29.5868    2112.1690  domain_allocate()/domain.c/570
   0 2983 0        domain_key     24.4216    2136.5905  domain_Decomposition()/domain.c/231
   0 2994 0        domainWork      2.2759    2138.8994  domain_Decomposition()/domain.c/254
   0 2995 0     domainWorkSph      2.2759    2141.1753  domain_Decomposition()/domain.c/256
   0 2996 0       domainCount      2.2759    2143.4512  domain_Decomposition()/domain.c/258
   0 2997 0    domainCountSph      2.2759    2145.7271  domain_Decomposition()/domain.c/260
   0 3002 0  domainCountStars      2.2759    2148.0140  domain_Decomposition()/domain.c/272
   0 3007 0    domainCountBHs      2.2759    2150.3009  domain_Decomposition()/domain.c/285
   0 3008 0          topNodes     31.8627    2182.1636  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
Before=425529
After=475681
NTopleaves= 416221  NTopnodes=475681 (space for 596615)
gravity work-load balance=1.01392   memory-balance=1.01392   SPH work-load balance=1.00741
iter=0 exchange of 0575494249 particles (ret=0)
domain decomposition done. (took 8.3444 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 5.53592 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000185588 particles. (took 0.0495732 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.0314379 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.032922 sec)
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SO iteration 10: need to repeat for 0000185588 particles. (took 0.0331991 sec)
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SO iteration 15: need to repeat for 0000184014 particles. (took 0.033463 sec)
SO iteration 16: need to repeat for 0000004902 particles. (took 0.0339019 sec)
SO iteration 17: need to repeat for 0000000029 particles. (took 0.00344396 sec)
SO iteration 1: need to repeat for 0000185588 particles. (took 0.0374141 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.031096 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.0317118 sec)
SO iteration 4: need to repeat for 0000185588 particles. (took 0.0313802 sec)
SO iteration 5: need to repeat for 0000185588 particles. (took 0.0315239 sec)
SO iteration 6: need to repeat for 0000185588 particles. (took 0.0319278 sec)
SO iteration 7: need to repeat for 0000185588 particles. (took 0.0317559 sec)
SO iteration 8: need to repeat for 0000185588 particles. (took 0.039274 sec)
SO iteration 9: need to repeat for 0000185588 particles. (took 0.032794 sec)
SO iteration 10: need to repeat for 0000185588 particles. (took 0.0315318 sec)
SO iteration 11: need to repeat for 0000185588 particles. (took 0.0314031 sec)
SO iteration 12: need to repeat for 0000185588 particles. (took 0.0314739 sec)
SO iteration 13: need to repeat for 0000185588 particles. (took 0.0312731 sec)
SO iteration 14: need to repeat for 0000185588 particles. (took 0.031348 sec)
SO iteration 15: need to repeat for 0000184546 particles. (took 0.0312901 sec)
SO iteration 16: need to repeat for 0000128133 particles. (took 0.0311282 sec)
SO iteration 17: need to repeat for 0000002357 particles. (took 0.0255609 sec)
SO iteration 18: need to repeat for 0000000130 particles. (took 0.00265217 sec)
SO iteration 1: need to repeat for 0000185588 particles. (took 0.034265 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.0313568 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.041111 sec)
SO iteration 4: need to repeat for 0000185588 particles. (took 0.0462992 sec)
SO iteration 5: need to repeat for 0000185588 particles. (took 0.0346971 sec)
SO iteration 6: need to repeat for 0000185588 particles. (took 0.031148 sec)
SO iteration 7: need to repeat for 0000185588 particles. (took 0.030766 sec)
SO iteration 8: need to repeat for 0000185588 particles. (took 0.0295348 sec)
SO iteration 9: need to repeat for 0000185588 particles. (took 0.0286701 sec)
SO iteration 10: need to repeat for 0000185588 particles. (took 0.0321469 sec)
SO iteration 11: need to repeat for 0000185588 particles. (took 0.030539 sec)
SO iteration 12: need to repeat for 0000185588 particles. (took 0.0287189 sec)
SO iteration 13: need to repeat for 0000185588 particles. (took 0.03562 sec)
SO iteration 14: need to repeat for 0000185588 particles. (took 0.0307751 sec)
SO iteration 15: need to repeat for 0000185580 particles. (took 0.028944 sec)
SO iteration 16: need to repeat for 0000184417 particles. (took 0.0287271 sec)
SO iteration 17: need to repeat for 0000165730 particles. (took 0.0321319 sec)
SO iteration 18: need to repeat for 0000025859 particles. (took 0.0271819 sec)
SO iteration 19: need to repeat for 0000007456 particles. (took 0.0081389 sec)
SO iteration 20: need to repeat for 0000000046 particles. (took 0.00351715 sec)
SO iteration 21: need to repeat for 0000000001 particles. (took 0.00221801 sec)
SO iteration 1: need to repeat for 0000185588 particles. (took 0.0420399 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.041292 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.0337691 sec)
SO iteration 4: need to repeat for 0000185588 particles. (took 0.0339758 sec)
SO iteration 5: need to repeat for 0000185588 particles. (took 0.033782 sec)
SO iteration 6: need to repeat for 0000185588 particles. (took 0.0336189 sec)
SO iteration 7: need to repeat for 0000185588 particles. (took 0.0335629 sec)
SO iteration 8: need to repeat for 0000185588 particles. (took 0.033366 sec)
SO iteration 9: need to repeat for 0000185588 particles. (took 0.0336609 sec)
SO iteration 10: need to repeat for 0000185588 particles. (took 0.033617 sec)
SO iteration 11: need to repeat for 0000185588 particles. (took 0.033488 sec)
SO iteration 12: need to repeat for 0000185588 particles. (took 0.033412 sec)
SO iteration 13: need to repeat for 0000185588 particles. (took 0.0336339 sec)
SO iteration 14: need to repeat for 0000185588 particles. (took 0.0335929 sec)
SO iteration 15: need to repeat for 0000183982 particles. (took 0.0334349 sec)
SO iteration 16: need to repeat for 0000002711 particles. (took 0.0335319 sec)
SO iteration 17: need to repeat for 0000000018 particles. (took 0.00306892 sec)
SO iteration 1: need to repeat for 0000185588 particles. (took 0.0345001 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.0315409 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.032649 sec)
SO iteration 4: need to repeat for 0000185588 particles. (took 0.0329041 sec)
SO iteration 5: need to repeat for 0000185588 particles. (took 0.0330629 sec)
SO iteration 6: need to repeat for 0000185588 particles. (took 0.0334189 sec)
SO iteration 7: need to repeat for 0000185588 particles. (took 0.0331671 sec)
SO iteration 8: need to repeat for 0000185588 particles. (took 0.0332842 sec)
SO iteration 9: need to repeat for 0000185588 particles. (took 0.0332818 sec)
SO iteration 10: need to repeat for 0000185588 particles. (took 0.0331678 sec)
SO iteration 11: need to repeat for 0000185588 particles. (took 0.0331101 sec)
SO iteration 12: need to repeat for 0000185588 particles. (took 0.033766 sec)
SO iteration 13: need to repeat for 0000185588 particles. (took 0.033505 sec)
SO iteration 14: need to repeat for 0000185588 particles. (took 0.0335238 sec)
SO iteration 15: need to repeat for 0000184019 particles. (took 0.0336192 sec)
SO iteration 16: need to repeat for 0000005250 particles. (took 0.0328932 sec)
SO iteration 17: need to repeat for 0000000034 particles. (took 0.00360513 sec)
SO iteration 1: need to repeat for 0000185588 particles. (took 0.034066 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.032059 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.0322599 sec)
SO iteration 4: need to repeat for 0000185588 particles. (took 0.0312769 sec)
SO iteration 5: need to repeat for 0000185588 particles. (took 0.0311198 sec)
SO iteration 6: need to repeat for 0000185588 particles. (took 0.0315111 sec)
SO iteration 7: need to repeat for 0000185588 particles. (took 0.0313799 sec)
SO iteration 8: need to repeat for 0000185588 particles. (took 0.031549 sec)
SO iteration 9: need to repeat for 0000185588 particles. (took 0.031359 sec)
SO iteration 10: need to repeat for 0000185588 particles. (took 0.0313299 sec)
SO iteration 11: need to repeat for 0000185588 particles. (took 0.0310972 sec)
SO iteration 12: need to repeat for 0000185588 particles. (took 0.0323839 sec)
SO iteration 13: need to repeat for 0000185588 particles. (took 0.0313671 sec)
SO iteration 14: need to repeat for 0000185588 particles. (took 0.0316739 sec)
SO iteration 15: need to repeat for 0000184558 particles. (took 0.0312989 sec)
SO iteration 16: need to repeat for 0000131597 particles. (took 0.0311871 sec)
SO iteration 17: need to repeat for 0000002477 particles. (took 0.025888 sec)
SO iteration 18: need to repeat for 0000000131 particles. (took 0.00278997 sec)
SO iteration 1: need to repeat for 0000185588 particles. (took 0.0342059 sec)
SO iteration 2: need to repeat for 0000185588 particles. (took 0.0309072 sec)
SO iteration 3: need to repeat for 0000185588 particles. (took 0.028887 sec)
SO iteration 4: need to repeat for 0000185588 particles. (took 0.0286381 sec)
SO iteration 5: need to repeat for 0000185588 particles. (took 0.0287981 sec)
SO iteration 6: need to repeat for 0000185588 particles. (took 0.0288811 sec)
SO iteration 7: need to repeat for 0000185588 particles. (took 0.0289841 sec)
SO iteration 8: need to repeat for 0000185588 particles. (took 0.028614 sec)
SO iteration 9: need to repeat for 0000185588 particles. (took 0.0287912 sec)
SO iteration 10: need to repeat for 0000185588 particles. (took 0.0287211 sec)
SO iteration 11: need to repeat for 0000185588 particles. (took 0.029103 sec)
SO iteration 12: need to repeat for 0000185588 particles. (took 0.0292001 sec)
SO iteration 13: need to repeat for 0000185588 particles. (took 0.02931 sec)
SO iteration 14: need to repeat for 0000185588 particles. (took 0.02899 sec)
SO iteration 15: need to repeat for 0000185580 particles. (took 0.0292149 sec)
SO iteration 16: need to repeat for 0000184423 particles. (took 0.02898 sec)
SO iteration 17: need to repeat for 0000166906 particles. (took 0.028981 sec)
SO iteration 18: need to repeat for 0000026700 particles. (took 0.0272131 sec)
SO iteration 19: need to repeat for 0000007671 particles. (took 0.00836992 sec)
SO iteration 20: need to repeat for 0000000051 particles. (took 0.00384879 sec)
SO iteration 21: need to repeat for 0000000001 particles. (took 0.00210714 sec)
determining spherical overdensity masses took 3.88004 sec
finding spherical overdensity particles took 0.580438 sec
determining contamination of halos took 0.448016 sec
Global sort of Groups took 0.510327 sec
Global sort of SubGroups took 0.682925 sec
Global sort of IDs took 0.196498 sec
Writing block 0 (GLEN), n=281, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1124d
Writing block 1 (GOFF), n=281, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1124d
Writing block 2 (MTOT), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 3 (GPOS), n=281, ptype=0, dtype=1, ndim=3, bpb=4 bytes=3372d
Writing block 4 (MMEA), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 5 (RMEA), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 6 (MCRI), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 7 (RCRI), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 8 (MTOP), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 9 (RTOP), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 17 (NCON), n=281, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1124d
Writing block 18 (MCON), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 22 (NSUB), n=281, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1124d
Writing block 23 (FSUB), n=281, ptype=0, dtype=0, ndim=1, bpb=4 bytes=1124d
Writing block 24 (SLEN), n=458, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1832d
Writing block 25 (SOFF), n=458, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1832d
Writing block 26 (SSUB), n=458, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1832d
Writing block 27 (MSUB), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 28 (SPOS), n=458, ptype=1, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 29 (SVEL), n=458, ptype=1, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 30 (SCM ), n=458, ptype=1, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 33 (VMAX), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 34 (RMAX), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 35 (RHMS), n=458, ptype=1, dtype=1, ndim=6, bpb=4 bytes=10992d
Writing block 36 (MTRH), n=458, ptype=1, dtype=1, ndim=6, bpb=4 bytes=10992d
Writing block 37 (MBID), n=458, ptype=1, dtype=2, ndim=1, bpb=8 bytes=3664d
Writing block 38 (GRNR), n=458, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1832d
Writing block 39 (SUBN), n=458, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1832d
Writing block 40 (SMST), n=458, ptype=1, dtype=1, ndim=6, bpb=4 bytes=10992d
Writing block 53 (PID ), n=99974, ptype=2, dtype=2, ndim=1, bpb=8 bytes=799792d
Writing block 54 (SLEN), n=458, ptype=1, dtype=0, ndim=6, bpb=4 bytes=10992d
Writing block 55 (STEN), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 56 (SKEN), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 57 (SUEN), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 58 (SUIT), n=458, ptype=1, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 59 (BHMA), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 60 (BHMD), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 61 (SVD ), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 62 (SVDH), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 63 (HMPR), n=458, ptype=1, dtype=1, ndim=6, bpb=4 bytes=10992d
Writing block 64 (SSFR), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 65 (SSA ), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 66 (SSBZ), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 67 (SSIM), n=458, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 68 (SSPI), n=458, ptype=4, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 69 (GSPI), n=458, ptype=1, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 70 (FSPI), n=458, ptype=5, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 71 (SFM ), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 72 (SFMT), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 73 (SFME), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 74 (SFAE), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 75 (SFKE), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 76 (SFTE), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 77 (SMWP), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 78 (SMM ), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 79 (SMMS), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 80 (SFZ ), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 81 (SFZS), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 82 (SSIA), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 83 (SIAS), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 84 (SMET), n=458, ptype=5, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 85 (SMTS), n=458, ptype=5, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 86 (MF1 ), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 87 (MeF1), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 88 (MF  ), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 89 (MeF2), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 90 (MFA ), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 91 (MeFA), n=458, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 92 (NSPI), n=458, ptype=6, dtype=1, ndim=3, bpb=4 bytes=5496d
Writing block 93 (NFM ), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 94 (NFMT), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 95 (NFME), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 96 (NFAE), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 97 (NFKE), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 98 (NFTE), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 99 (SMWP), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 100 (SMM ), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 101 (SMMS), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 102 (SSIA), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 103 (SIAS), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 104 (SMET), n=458, ptype=6, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 105 (SMTS), n=458, ptype=6, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 106 (MF1 ), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 107 (MeF1), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 108 (MF2 ), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 109 (MeF2), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 110 (MFA ), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 111 (MeFA), n=458, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 112 (SM  ), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 113 (SFKE), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 114 (SFAE), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 115 (SMWP), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 116 (SMM ), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 117 (SMMS), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 118 (SSIA), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 119 (SIAS), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 120 (SMET), n=458, ptype=4, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 121 (SMTS), n=458, ptype=4, dtype=1, ndim=9, bpb=4 bytes=16488d
Writing block 122 (MF1 ), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 123 (MeF1), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 124 (MF2 ), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 125 (MeF2), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 126 (MFA ), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 127 (MeFA), n=458, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1832d
Writing block 128 (MMe5), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 129 (RMe5), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 130 (MCr5), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 131 (RCr5), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 132 (MMe2), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 133 (RMe2), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 134 (MCr2), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 135 (RCr2), n=281, ptype=0, dtype=1, ndim=1, bpb=4 bytes=1124d
Writing block 136 (MAPT), n=458, ptype=7, dtype=1, ndim=60, bpb=4 bytes=109920d
Writing block 137 (SAPT), n=458, ptype=8, dtype=1, ndim=10, bpb=4 bytes=18320d
Writing block 138 (VAPT), n=458, ptype=9, dtype=1, ndim=10, bpb=4 bytes=18320d
Writing block 139 (BEGY), n=99974, ptype=2, dtype=1, ndim=1, bpb=4 bytes=399896d
Subgroup catalogues saved. took = 7.53693 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 4.475749e-01
 eagle_ph_key_ort: type= 1 timed by volker 4.451940e-01
 eagle_ph_key_ort: type= 2 timed by volker 8.881688e-02
 eagle_ph_key_ort: type= 3 timed by volker 3.766060e-03
 eagle_ph_key_ort: type= 4 timed by volker 1.303341e-01
 eagle_ph_key_ort: type= 5 timed by volker 5.215716e-02
 eagle_ph_key_ort: timing parallel sort = 1.180652e+00
 eagle_fetch_elements: we are using 1551397120 bytes of memory, FreeBytes= 1939246400

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 2100.6 Mbyte (on task=0), Smallest = 2048.32 Mbyte, Average = 2050.21 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    762.3465    1782.7810  allocate_memory()/allocate.c/85
   0 2971 0              MetP    147.5746    1930.3555  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.3611    1949.7166  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1949.8924  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1950.0682  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     23.4495    1973.5177  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.3409    1991.8585  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.5681    2022.4266  fof_fof()/fof.c/337
   0 2978 0             Group      0.3652    2022.7918  fof_fof()/fof.c/380
   0 2979 0          SubGroup     59.4388    2082.2306  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.3599    2100.5905  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 1981218 number of bytes = 633989760

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 3577.31 Mbyte (on task=0), Smallest = 3522.81 Mbyte, Average = 3526.33 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    762.3465    1782.7810  allocate_memory()/allocate.c/85
   0 2971 0              MetP    147.5746    1930.3555  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.3611    1949.7166  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1949.8924  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1950.0682  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     23.4495    1973.5177  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.3409    1991.8585  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.5681    2022.4266  fof_fof()/fof.c/337
   0 2978 0             Group      0.3652    2022.7918  fof_fof()/fof.c/380
   0 2979 0          SubGroup     59.4388    2082.2306  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.3599    2100.5905  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      7.5577    2108.1483  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      7.5577    2115.7060  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      7.5577    2123.2638  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    604.6198    2727.8835  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    604.6198    3332.5033  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    244.7986    3577.3018  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 2.873761e+00
 eagle_fetch_elements: we are using 1551397120 bytes of memory, FreeBytes= 1939246400
 eagle_fetch_elements: max_bytes= 504, max_elements= 1323598 number of bytes = 667093392
 eagle_ph_key_ort: timing parallel SphP exchange = 2.124309e+00
 eagle_fetch_elements: we are using 1551397120 bytes of memory, FreeBytes= 1939246400
 eagle_fetch_elements: max_bytes= 384, max_elements= 1982059 number of bytes = 761110656
 eagle_ph_key_ort: timing parallel MetP exchange = 7.627416e-02
 eagle_fetch_elements: we are using 1551397120 bytes of memory, FreeBytes= 1939246400
 eagle_fetch_elements: max_bytes= 256, max_elements= 2960672 number of bytes = 757932032
 eagle_ph_key_ort: timing parallel BHP exchange = 6.361008e-03
Sorting particle-data by peano-hilbert key took = 6.54473 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 1551397120 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 1981218 number of bytes= 633989760
 eagle_ph_restore: timing parallel P exchange = 2.835107e+00
 eagle_send_elements: we are using 1551397120 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1323598 number of bytes= 667093392
 eagle_ph_restore: timing parallel SphP exchange = 2.113077e+00
 eagle_send_elements: we are using 1551397120 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 1982059 number of bytes= 761110656
 eagle_ph_restore: timing parallel MetP exchange = 6.286597e-02
 eagle_send_elements: we are using 1551397120 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 2960672 number of bytes= 757932032
 eagle_ph_restore: timing parallel BHP exchange = 3.127098e-03
Restoring original order after ph key sorting took = 5.03049 sec

finished writing particle file...

Finished with SUBFIND.  (total time=289.912 sec)

Finished computing FoF groups.  (presently allocated=1973.52 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1949.72 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2049.65 MB)
Before=419969
After=473401
NTopleaves= 414226  NTopnodes=473401 (space for 596615)
gravity work-load balance=1.01339   memory-balance=1.01339   SPH work-load balance=1.00767
iter=0 exchange of 0575494948 particles (ret=0)
domain decomposition done. (took 8.38894 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 5.64029 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 45: endrun called with an error level of 124


task 45: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


task 90: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 135: endrun called with an error level of 124


task 135: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
task 180: endrun called with an error level of 124


task 180: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
task 225: endrun called with an error level of 124


task 225: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 270: endrun called with an error level of 124


task 270: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 315: endrun called with an error level of 124


task 315: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 360: endrun called with an error level of 124


task 360: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 405: endrun called with an error level of 124


task 405: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
task 450: endrun called with an error level of 124


task 450: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 495: endrun called with an error level of 124


task 495: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 540: endrun called with an error level of 124


task 540: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 585: endrun called with an error level of 124


task 585: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
task 630: endrun called with an error level of 124


task 630: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
task 675: endrun called with an error level of 124


task 675: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
Finished FOF, total time doing fof/subfind = 323.289 s
task 0: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 0: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
-------------------------------------------------------------------------------------------
AvailMem:	 Largest =   62703.28 Mb (on task=112), Smallest =   62511.31 Mb (on task=0), Average =   62660.46 Mb
Total Mem:	 Largest =   64532.39 Mb (on task=240), Smallest =   64531.71 Mb (on task=496), Average =   64532.00 Mb
Committed_AS:	 Largest =    2020.69 Mb (on task=0), Smallest =    1828.71 Mb (on task=112), Average =    1871.55 Mb
SwapTotal:	 Largest =   16384.00 Mb (on task=0), Smallest =   16384.00 Mb (on task=0), Average =   16384.00 Mb
SwapFree:	 Largest =   16384.00 Mb (on task=416), Smallest =   16250.93 Mb (on task=688), Average =   16303.54 Mb
AllocMem:	 Largest =    2020.69 Mb (on task=0), Smallest =    1828.71 Mb (on task=112), Average =    1871.55 Mb
-------------------------------------------------------------------------------------------
Task with the maximum commited memoryodin101

This is P-Gadget, version 3.0.

Running on 720 MPI tasks.

Code was compiled with settings:

        PERIODIC
        UNEQUALSOFTENINGS
        PMGRID=1024
        ASMTH=1.25
        RCUT=4.5
        PLACEHIGHRESREGION=1+2+16
        ENLARGEREGION=1.2
        MULTIPLEDOMAINS=64
        PEANOHILBERT
        WALLCLOCK
        MYSORT
        DOUBLEPRECISION
        SUBFIND
        DENSITY_SPLIT_BY_TYPE=1+2+16+32
        NO_ISEND_IRECV_IN_DOMAIN
        FIX_PATHSCALE_MPI_STATUS_IGNORE_BUG
        NOSTOP_WHEN_BELOW_MINTIMESTEP
        OVERRIDE_STOP_FOR_SUBOPTIMUM_DOMAINS
        LONGIDS
        GENERATE_GAS_IN_ICS
        HAVE_HDF5
        EAGLE
        EAGLE_COOLING
        EAGLE_SFR
        EAGLE_STELLAR_FEEDBACK
        EAGLE_STELLAR_FEEDBACK_METALS
        EAGLE_TIMESTEP
        EAGLE_TIMESTEP_LIMITER
        EAGLE_BH_TIMESTEP
        EAGLE_SFR_METALLICITY_DEPENDENT_SF_THRESHOLD
        EAGLE_METALSMOOTHING
        EAGLE_SNIA_IRON
        EAGLE_TRACK_SNIA_MASS
        EAGLE_TRACK_SNII_MASS
        EAGLE_TRACK_AGB_MASS
        EAGLE_SAMPLE_STELLAREVOLUTION
        EAGLE_BH
        BLACK_HOLES
        DETACH_BLACK_HOLES
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        EAGLE_BH_ACCRETION
        ENFORCE_EDDINGTON_LIMIT
        BONDI
        SWALLOWGAS
        EVALPOTENTIAL
        REPOSITION_ON_POTMIN
        BH_USE_GASVEL_IN_BONDI
        EAGLE_BH_THERMALFEEDBACK
        EAGLE_BH_OWLS_MERGERS
        EAGLE_BH_MAX_MERGING_DISTANCE
        EAGLE_BH_MAX_REPOSITION_DISTANCE
        BH_ANG_MOM_ACCRETION
        RGB_EAGLE_FEEDBACK
        EAGLE_Z_DEP_FEEDBACK
        EAGLE_DETACH_BH_DENSITY
        EAGLE_PE_AGN_FIX_MS
        FOF
        FOF_PRIMARY_LINK_TYPES=2
        FOF_SECONDARY_LINK_TYPES=1+16+32
        EAGLE_ASSIGN_HOSTHALO_MASS
        EAGLE_IO
        EAGLE_OWLS_SNAPSHOT
        EAGLE_HDF5_COMPRESSED_SNAPSHOT
        EAGLE_EXTRA_ARRAYS
        EAGLE_SNIPSHOTS
        EAGLE_SORT_OUTPUT
        EAGLE_SUPPRESS_MEMORY_TABLE_DUMP
        EAGLE_OUTPUT_GRID
        EAGLE_OUTPUT_LOS
        MyMaxLosBuffer=4096
        OUTPUTLINEOFSIGHT_PARTICLES
        ANARCHY_SPH
        ANARCHY_SPH_PRESSURE_ENTROPY
        SPH_KERNEL_C2
        HYDRANGEA_REDUCED_SNIPSHOT_CONTENT
        HYDRANGEA_SUPPRESS_HASH_IN_SNIPSHOTS
        YB_FIX_RR_IN_SUBFIND
        YB_FREE_FILENUM
svn version:exported

Size of particle structure       320  [bytes]

Size of sph particle structure   504  [bytes]

Size of star particle structure 384  [bytes]


Size of BH particle structure    256  [bytes]

Obtaining parameters from file 'eagle.param.subfind.N16':
RunLabel                           "HaloF6_N256_ODIN_ID207"
InitCondFile                       ../ICs/snap_000
OutputDir                          data
EnergyFile                         energy.txt
InfoFile                           info.txt
TimingsFile                        timings.txt
CpuFile                            cpu.txt
TimebinFile                        timebins.txt
SnapshotFileBase                   snap
SmallSnapshotFileBase              snip
RestartFile                        restart
CoolTablePath                      /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/
YieldTablePath                     /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/YieldTables/
TimeLimitCPU                       96000
ResubmitOn                         1
ResubmitCommand                    ./autoresubmit.sh
MaxMemSize                         3950
SnapFormat                         3
FoFFormat                          3
ICFormat                           3
NumFilesPerSnapshot                16
NumFilesWrittenInParallel          16
SmallOutputTar                     1
ComovingIntegrationOn              1
CoolingOn                          1
MetDepCoolingOn                    1
StarformationOn                    1
StellarEnergyFeedbackOn            1
StellarMetalFeedbackOn             1
SNII_MassTransferOn                1
SNII_EnergyTransferOn              1
SNII_WindIsotropicOn               1
SNIa_MassTransferOn                1
SNIa_EnergyTransferOn              1
SNIa_EnergyTransferStochastic      1
AGB_MassTransferOn                 1
AGB_EnergyTransferOn               1
StellarEvol_FeedbackOn             1
PartAllocFactor                    4
MetAllocFactor                     0.25
BHAllocFactor                      0.05
BufferSize                         400
TimeBegin                          0.0078125
TimeMax                            1
UnitLength_in_cm                   3.08568e+24
UnitMass_in_g                      1.989e+43
UnitVelocity_in_cm_per_s           100000
GravityConstantInternal            0
PeriodicBoundariesOn               1
BoxSize                            2168.64
Omega0                             0.307
OmegaLambda                        0.693
OmegaBaryon                        0.0482519
HubbleParam                        0.6777
MinGasHsmlFractional               0.1
SofteningGas                       0.00180239
SofteningHalo                      0.00180239
SofteningDisk                      0.01
SofteningBulge                     0.05
SofteningStars                     0.00180239
SofteningBndry                     0.00180239
SofteningGasMaxPhys                0.00047439
SofteningHaloMaxPhys               0.00047439
SofteningDiskMaxPhys               0.0025
SofteningBulgeMaxPhys              0.0125
SofteningStarsMaxPhys              0.00047439
SofteningBndryMaxPhys              0.00047439
OutputListOn                       1
OutputListFilename                 /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snapshots_plus.dat
TimeBetSnapshot                    0
TimeOfFirstSnapshot                0
SmallOutputListOn                  1
ExtraOutputListFilename            /ptmp/mpa/ybahe/HYDRANGEA/OutputLists/hydrangea_snipshots_minimal.dat
TimeBetSmallSnapshot               0
TimeOfFirstSmallSnapshot           0
FoFOutputListOn                    1
TimeBetOnTheFlyFoF                 1.005
TimeOfFirstGridOutput              0.05
TimeBetGridOutput                  1.025
TimeBetLineOfSight                 1.01
TimeOfFirstLineOfSight             0.09
CpuTimeBetRestartFile              22000
TimeBetStatistics                  0.02
MaxRMSDisplacementFac              0.25
ErrTolThetaSubfind                 0.6
DesLinkNgb                         20
TypeOfTimestepCriterion            0
ErrTolIntAccuracy                  0.025
MaxSizeTimestep                    0.01
MinSizeTimestep                    6e-08
ErrTolTheta                        0.6
TypeOfOpeningCriterion             1
ErrTolForceAcc                     0.005
TreeDomainUpdateFrequency          0.005
DesNumNgb                          58
DesNumNgbStar                      48
DesNumNgbYoungStar                 48
MaxNumNgbDeviation                 1
CourantFac                         0.15
MaxSmoothingLengthChange           1.26
ArtBulkViscConst                   2
ArtBulkViscConstMin                0.05
ArtDiffConst                       1
ArtDiffConstMin                    0
MinGasTemp                         100
InitGasTemp                        268.7
InitMetallicity                    0
InitAbundance_Hydrogen             0.752
InitAbundance_Helium               0.248
InitAbundance_Carbon               0
InitAbundance_Nitrogen             0
InitAbundance_Oxygen               0
InitAbundance_Neon                 0
InitAbundance_Magnesium            0
InitAbundance_Silicon              0
InitAbundance_Iron                 0
CalciumOverSilicon                 0.0941736
SulphurOverSilicon                 0.605416
REION_H_ZCenter                    11.5
REION_H_Heating_EVpH               2
REION_He_ZCenter                   3.5
REION_He_ZSigma                    0.5
REION_He_Heating_EVpH              2
Generations                        1
SF_SchmidtLawCoeff_MSUNpYRpKPC2    0.0001515
SF_SchmidtLawExponent              1.4
SF_SchmidtLawHighDensExponent      2
SF_SchmidtLawHighDensThresh_HpCM3  1000
SF_THRESH_MaxPhysDensOn            0
SF_THRESH_MaxPhysDens_HpCM3        100000
SF_THRESH_MinOverDens              57.7
SF_THRESH_MinPhysDens_HpCM3        0.1
SF_THRESH_TempMargin_DEX           0.5
SF_THRESH_MetDepSFThreshNorm_HpCM3 0.1
SF_THRESH_MetDepSFThreshSlope      -0.64
SF_THRESH_MetDepSFThreshMaxThresh_HpCM310
EOS_NormPhysDens_HpCM3             0.1
EOS_Jeans_MinPhysDens_HpCM3        0.1
EOS_Jeans_MinOverDens              10
EOS_Jeans_GammaEffective           1.33333
EOS_Jeans_TempNorm_K               8000
EOS_Cool_MinOverDens               10
EOS_Cool_MinPhysDens_HpCM3         1e-05
EOS_Cool_GammaEffective            1
EOS_Cool_TempNorm_K                8000
IMF_Model                          Chabrier
IMF_Exponent                       0
IMF_LifetimeModel                  P98
IMF_MinMass_MSUN                   0.1
IMF_MaxMass_MSUN                   100
StellarEvolutionCut_Gyr            0.1
StellarEvolutionTimestepInterval   10
StellarEvolutionCut_Gyr_2          1
StellarEvolutionTimestepInterval_2 100
SNIa_Model                         Efolding
SNIa_Energy_ERG                    1e+51
SNIa_EnergyFraction                1
SNIa_Efficiency                    0.002
SNIa_TimeScale                     2
SNIa_EjectaVelocity_KMpS           10
SNII_MinMass_MSUN                  6
SNII_MaxMass_MSUN                  100
SNII_Factor_Hydrogen               1
SNII_Factor_Helium                 1
SNII_Factor_Carbon                 0.5
SNII_Factor_Nitrogen               1
SNII_Factor_Oxygen                 1
SNII_Factor_Neon                   1
SNII_Factor_Magnesium              2
SNII_Factor_Silicon                1
SNII_Factor_Iron                   0.5
SNII_MinEnergyFraction             0.3
SNII_MaxEnergyFraction             3
SNII_Tvir0_K                       0.00126637
SNII_Width_logTvir_dex             1
SNII_Energy_ERG                    1e+51
SNII_WindDelay_YR                  3e+07
stellar_feedback_mode              thermal
stellar_feedback_DeltaT            constant
stellar_feedback_tvir              vel_disp
SNII_Delta_T_K                     3.16228e+07
SNII_Delta_T_Divided_By_T_Vir      0
SNII_Min_Delta_T_K                 0
SNII_Max_Delta_T_K                 0
SNII_normalisation_Delta_T_K       0
SNII_exponent_Delta_T              0
massDMpart                         -1
BlackHoleNgbFactor                 1
BlackHoleNumberOfNeighboursToHeat  1
BlackHoleAccretionFactor           1
BlackHoleEddingtonFactor           1
BlackHoleAccretionSlope            0
BlackHoleRadiativeEfficiency       0.1
BlackHoleFeedbackFactor            0.15
SeedBlackHoleMass_Msun             100000
MinFoFMassForNewSeed_Msun          1e+10
BlackHoleMaxAccretionRadius        1e+10
BH_MaxRepositionDistanceFactor     3
BH_MaxMergingDistanceFactor        3
BH_maxHeatingProbability           0.3
BH_feedback_mode                   constant
BH_ConstantHeatTemp                1e+09
BH_MinHeatTemp                     0
BH_MaxHeatTemp                     0
BH_MinHeatLimit                    0
BH_MaxHeatLimit                    0
BlackHoleViscousAlpha              10000
SNII_zdep_power                    0
SNII_rhogas_power                  1
SNII_rhogas_physdensnormfac        6.7


found 30 times in output-list.

found 1 times in small output-list.

found 1 times in fof output-list.

Hubble (internal units) = 100
G (internal units) = 43.0071
UnitMass_in_g = 1.989e+43 
UnitTime_in_s = 3.08568e+19 
UnitVelocity_in_cm_per_s = 100000 
UnitDensity_in_cgs = 6.76991e-31 
UnitEnergy_in_cgs = 1.989e+53 

initialize Ewald correction...

reading Ewald tables from file `ewald_spc_table_64_dbl.dat'
initialization of periodic boundaries finished.
EOS normalisation temperature is  8.000000e+03 K, converted to internal energy 8.063068e+11
Cooling EOS normalisation temp is  8.000000e+03 K, converted to internal energy 8.063068e+11
The Jeans mass (assuming a neutral, primordial gas) at the EOS threshold is 9.156013e+06 Msun
Chemistry initialized.
 Stellar Feedback mode is THERMAL
 Stellar Feedback virial temperature calculation is from local dm velocity dispersion. 
 Stellar Feedback heating temperature is constant, and equal to 3.162280e+07 [K]
SNIa model: Efolding, set model to 2
Setting lifetime model to P98
IMF normalization norm=9.999885e-01
IMF initialized.
Computing yield for Hydrogen	 index=0
Computing yield for Helium	 index=1
Computing yield for Carbon	 index=2
Computing yield for Nitrogen	 index=3
Computing yield for Oxygen	 index=4
Computing yield for Neon	 index=5
Computing yield for Magnesium	 index=6
Computing yield for Silicon	 index=7
Computing yield for Iron	 index=8
Computing ejecta
Yields initialized.
 feedback parameters: for your IMF, the number of SNe if type II per solar mass formed = 0.017362, the energy of a single SNe = 1.000000e+51 [erg]
 Using 100 percent of SNII energy, DeltaT = 1.000000e+06 corresponds to a wind speed of 204.574409 km/s and mass loading of 41.715274
 Using 100 percent of SNII energy, DeltaT = 1.000000e+07 corresponds to a wind speed of 646.921083 km/s and mass loading of 4.171527
 using 100 percent of SNII energy, DeltaT = 1.000000e+08 corresponds to a wind speed of 2045.744088 km/s and mass loading of 0.417153
 Using 100 percent of SNII energy, DeltaT = 3.162280e+07 corresponds to a wind speed of 1150.406867 km/s and mass loading of 1.319152
 Black hole feedback temperature will be CONSTANT
Done with cooling table header.


Solar abundances:

Solar abundance of Hydrogen = 0.706498
Solar abundance of Helium = 0.280555
Solar abundance of Carbon = 0.00206654
Solar abundance of Nitrogen = 0.000835626
Solar abundance of Oxygen = 0.00549262
Solar abundance of Neon = 0.00141446
Solar abundance of Magnesium = 0.000590706
Solar abundance of Silicon = 0.000682587
Solar abundance of Sulphur = 0.000408985
Solar abundance of Calcium = 6.4355e-05
Solar abundance of Iron = 0.00110322

SolarMetallicity = 0.0129468
Hydrogen reionisation heating = 1.915792e+12 erg/g
  Helium reionisation heating = 1.915792e+12 erg/g

Allocated 1016.55 MByte for particle storage.

Allocated 764.331 MByte for storage of SPH data.

Allocated 146.448 MByte for storage of MET data.

Allocated 19.4114 MByte for storage of BH data.


reading file `data//snapshot_001_z006p772/snap_001_z006p772.0.hdf5' on task=0 (contains 36392117 particles.)
distributing this file to tasks 0-44
Type 0 (gas):   17900897  (tot=     0286235439) masstab=0
Type 1 (halo):  17984640  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):      4568  (tot=     0000254233) masstab=0
Type 3 (bulge):   460276  (tot=     0002602064) masstab=0
Type 4 (stars):    41612  (tot=     0000423836) masstab=0
Type 5 (bndry):      124  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.8.hdf5' on task=360 (contains 35909322 particles.)
distributing this file to tasks 360-404
Type 0 (gas):   17802769  (tot=     0286235439) masstab=0
Type 1 (halo):  17811215  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     25755  (tot=     0000254233) masstab=0
Type 3 (bulge):   243339  (tot=     0002602064) masstab=0
Type 4 (stars):    26152  (tot=     0000423836) masstab=0
Type 5 (bndry):       92  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.5.hdf5' on task=225 (contains 35876352 particles.)
distributing this file to tasks 225-269
Type 0 (gas):   17807666  (tot=     0286235439) masstab=0
Type 1 (halo):  17823495  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14765  (tot=     0000254233) masstab=0
Type 3 (bulge):   200058  (tot=     0002602064) masstab=0
Type 4 (stars):    30281  (tot=     0000423836) masstab=0
Type 5 (bndry):       87  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.14.hdf5' on task=630 (contains 36015372 particles.)
distributing this file to tasks 630-674
Type 0 (gas):   17907966  (tot=     0286235439) masstab=0
Type 1 (halo):  17934670  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13974  (tot=     0000254233) masstab=0
Type 3 (bulge):   133538  (tot=     0002602064) masstab=0
Type 4 (stars):    25142  (tot=     0000423836) masstab=0
Type 5 (bndry):       82  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.13.hdf5' on task=585 (contains 35958034 particles.)
distributing this file to tasks 585-629
Type 0 (gas):   17828892  (tot=     0286235439) masstab=0
Type 1 (halo):  17862184  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     24253  (tot=     0000254233) masstab=0
Type 3 (bulge):   219930  (tot=     0002602064) masstab=0
Type 4 (stars):    22695  (tot=     0000423836) masstab=0
Type 5 (bndry):       80  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.10.hdf5' on task=450 (contains 36119165 particles.)
distributing this file to tasks 450-494
Type 0 (gas):   17975716  (tot=     0286235439) masstab=0
Type 1 (halo):  18004169  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     12886  (tot=     0000254233) masstab=0
Type 3 (bulge):   101881  (tot=     0002602064) masstab=0
Type 4 (stars):    24419  (tot=     0000423836) masstab=0
Type 5 (bndry):       94  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.3.hdf5' on task=135 (contains 36108969 particles.)
distributing this file to tasks 135-179
Type 0 (gas):   17921012  (tot=     0286235439) masstab=0
Type 1 (halo):  17935636  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13211  (tot=     0000254233) masstab=0
Type 3 (bulge):   212114  (tot=     0002602064) masstab=0
Type 4 (stars):    26900  (tot=     0000423836) masstab=0
Type 5 (bndry):       96  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.15.hdf5' on task=675 (contains 35841563 particles.)
distributing this file to tasks 675-719
Type 0 (gas):   17828946  (tot=     0286235439) masstab=0
Type 1 (halo):  17840635  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     20250  (tot=     0000254233) masstab=0
Type 3 (bulge):   126378  (tot=     0002602064) masstab=0
Type 4 (stars):    25259  (tot=     0000423836) masstab=0
Type 5 (bndry):       95  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.1.hdf5' on task=45 (contains 36087678 particles.)
distributing this file to tasks 45-89
Type 0 (gas):   17923552  (tot=     0286235439) masstab=0
Type 1 (halo):  17927560  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     15473  (tot=     0000254233) masstab=0
Type 3 (bulge):   195988  (tot=     0002602064) masstab=0
Type 4 (stars):    25024  (tot=     0000423836) masstab=0
Type 5 (bndry):       81  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.4.hdf5' on task=180 (contains 36007563 particles.)
distributing this file to tasks 180-224
Type 0 (gas):   17896920  (tot=     0286235439) masstab=0
Type 1 (halo):  17937563  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     19243  (tot=     0000254233) masstab=0
Type 3 (bulge):   128261  (tot=     0002602064) masstab=0
Type 4 (stars):    25478  (tot=     0000423836) masstab=0
Type 5 (bndry):       98  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.6.hdf5' on task=270 (contains 36127066 particles.)
distributing this file to tasks 270-314
Type 0 (gas):   17916675  (tot=     0286235439) masstab=0
Type 1 (halo):  17941556  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17146  (tot=     0000254233) masstab=0
Type 3 (bulge):   230285  (tot=     0002602064) masstab=0
Type 4 (stars):    21317  (tot=     0000423836) masstab=0
Type 5 (bndry):       87  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.12.hdf5' on task=540 (contains 35890189 particles.)
distributing this file to tasks 540-584
Type 0 (gas):   17889801  (tot=     0286235439) masstab=0
Type 1 (halo):  17888725  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     16659  (tot=     0000254233) masstab=0
Type 3 (bulge):    69352  (tot=     0002602064) masstab=0
Type 4 (stars):    25574  (tot=     0000423836) masstab=0
Type 5 (bndry):       78  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.9.hdf5' on task=405 (contains 35996419 particles.)
distributing this file to tasks 405-449
Type 0 (gas):   17921819  (tot=     0286235439) masstab=0
Type 1 (halo):  17927200  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     17072  (tot=     0000254233) masstab=0
Type 3 (bulge):   103469  (tot=     0002602064) masstab=0
Type 4 (stars):    26775  (tot=     0000423836) masstab=0
Type 5 (bndry):       84  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.11.hdf5' on task=495 (contains 35935217 particles.)
distributing this file to tasks 495-539
Type 0 (gas):   17905068  (tot=     0286235439) masstab=0
Type 1 (halo):  17936976  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     14353  (tot=     0000254233) masstab=0
Type 3 (bulge):    53523  (tot=     0002602064) masstab=0
Type 4 (stars):    25209  (tot=     0000423836) masstab=0
Type 5 (bndry):       88  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.7.hdf5' on task=315 (contains 36035209 particles.)
distributing this file to tasks 315-359
Type 0 (gas):   17968390  (tot=     0286235439) masstab=0
Type 1 (halo):  18011634  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     11222  (tot=     0000254233) masstab=0
Type 3 (bulge):    21410  (tot=     0002602064) masstab=0
Type 4 (stars):    22460  (tot=     0000423836) masstab=0
Type 5 (bndry):       93  (tot=     0000001453) masstab=0


reading file `data//snapshot_001_z006p772/snap_001_z006p772.2.hdf5' on task=90 (contains 35877520 particles.)
distributing this file to tasks 90-134
Type 0 (gas):   17839350  (tot=     0286235439) masstab=0
Type 1 (halo):  17892872  (tot=     0286660730) masstab=0.000658237
Type 2 (disk):     13403  (tot=     0000254233) masstab=0
Type 3 (bulge):   102262  (tot=     0002602064) masstab=0
Type 4 (stars):    29539  (tot=     0000423836) masstab=0
Type 5 (bndry):       94  (tot=     0000001453) masstab=0

 Converting element abundances to metal masses ... 
reading done.
Total number of particles :  0576177755


Setting next time for grid output file to Time_next= 0.130979

Setting next time for line of sight file to Time_next= 0.128769

Setting next time for snipshot file to Time_next= 1

Setting next time for fof output to Time_next= 1
 init.c: need to read some more variables from snapshot -- currently zeroed
Testing ID uniqueness...
success.  took=3.60999 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1950.62 MB)
Allocated 1.62149 MByte for top-level domain structure
use of 26.4302 MB of temporary storage for domain decomposition... (presently allocated=1978.68 MB)

At 'DOMAIN', domain_Decomposition()/domain.c/310: Largest Allocation = 1978.68 Mbyte (on task=1), Smallest = 1978.68 Mbyte, Average = 1978.68 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   1 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
   1 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
   1 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
   1 2967 0     NextInTimeBin     12.2108      31.3619  allocate_memory()/allocate.c/58
   1 2968 0     PrevInTimeBin     12.2108      43.5727  allocate_memory()/allocate.c/61
   1 2969 0                 P    976.8628    1020.4355  allocate_memory()/allocate.c/67
   1 2970 0              SphP    764.3307    1784.7661  allocate_memory()/allocate.c/85
   1 2971 0              MetP    146.4481    1931.2142  allocate_memory()/allocate.c/105
   1 2972 0               BHP     19.4114    1950.6256  allocate_memory()/allocate.c/126
   1 2973 0   DomainStartList      0.1758    1950.8014  domain_allocate()/domain.c/562
   1 2974 0     DomainEndList      0.1758    1950.9772  domain_allocate()/domain.c/565
   1 2975 0          TopNodes      1.2699    1952.2471  domain_allocate()/domain.c/570
   1 2976 0        domain_key     24.4216    1976.6687  domain_Decomposition()/domain.c/231
   1 3001 0          topNodes      1.3676    1978.6774  domain_Decomposition()/domain.c/290
----------------------------------------------------------------------------------------
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.008  new value=0.0104
Allocated 2.0025 MByte for top-level domain structure
use of 27.0164 MB of temporary storage for domain decomposition... (presently allocated=1979.64 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0104  new value=0.01352
Allocated 2.49776 MByte for top-level domain structure
use of 27.7784 MB of temporary storage for domain decomposition... (presently allocated=1980.9 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.01352  new value=0.017576
Allocated 3.14161 MByte for top-level domain structure
use of 28.7689 MB of temporary storage for domain decomposition... (presently allocated=1982.54 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.017576  new value=0.0228488
Allocated 3.9786 MByte for top-level domain structure
use of 30.0566 MB of temporary storage for domain decomposition... (presently allocated=1984.66 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0228488  new value=0.0297034
Allocated 5.06673 MByte for top-level domain structure
use of 31.7306 MB of temporary storage for domain decomposition... (presently allocated=1987.42 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0297034  new value=0.0386145
Allocated 6.48127 MByte for top-level domain structure
use of 33.9068 MB of temporary storage for domain decomposition... (presently allocated=1991.01 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0386145  new value=0.0501988
Allocated 8.32015 MByte for top-level domain structure
use of 36.7359 MB of temporary storage for domain decomposition... (presently allocated=1995.68 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0501988  new value=0.0652585
Allocated 10.7107 MByte for top-level domain structure
use of 40.4137 MB of temporary storage for domain decomposition... (presently allocated=2001.75 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.0652585  new value=0.084836
Allocated 13.8185 MByte for top-level domain structure
use of 45.1948 MB of temporary storage for domain decomposition... (presently allocated=2009.64 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.084836  new value=0.110287
Allocated 17.8585 MByte for top-level domain structure
use of 51.4103 MB of temporary storage for domain decomposition... (presently allocated=2019.89 MB)
Before=307801
Increasing TopNodeAllocFactor=0.110287  new value=0.143373
Allocated 23.1106 MByte for top-level domain structure
use of 59.4905 MB of temporary storage for domain decomposition... (presently allocated=2033.23 MB)
Before=307801
After=410385
NTopleaves= 359087  NTopnodes=410385 (space for 458935)
gravity work-load balance=1.01604   memory-balance=1.01604   SPH work-load balance=1.01103
iter=0 exchange of 0575537998 particles (ret=0)
domain decomposition done. (took 23.109 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 2.22244 MByte in top-level domain structure

Allocated 470.961 MByte for BH-tree, and 1.36981 Mbyte for top-leaves.  (presently allocted 2443.66 MB)

Begin Ngb-tree construction.
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Ngb-Tree contruction finished Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...

Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the predicted entropy from the internal energies read in the file...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...
Computing the weighted densities to get the temperatures...

At 'SPH_DENSITY', density()/density.c/935: Largest Allocation = 2736.27 Mbyte (on task=197), Smallest = 2709.79 Mbyte, Average = 2723.81 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
 197 2964 0  Sendcount_matrix      1.9775       3.8876  allocate_memory()/allocate.c/41
 197 2965 0     ProcessedFlag      3.0527       6.9403  allocate_memory()/allocate.c/52
 197 2966 0  NextActiveParticle     12.2108      19.1511  allocate_memory()/allocate.c/55
 197 2967 0     NextInTimeBin     12.2108      31.3619  allocate_memory()/allocate.c/58
 197 2968 0     PrevInTimeBin     12.2108      43.5727  allocate_memory()/allocate.c/61
 197 2969 0                 P    976.8628    1020.4355  allocate_memory()/allocate.c/67
 197 2970 0              SphP    764.3307    1784.7661  allocate_memory()/allocate.c/85
 197 2971 0              MetP    146.4481    1931.2142  allocate_memory()/allocate.c/105
 197 2972 0               BHP     19.4114    1950.6256  allocate_memory()/allocate.c/126
 197 2973 0   DomainStartList      0.1758    1950.8014  domain_allocate()/domain.c/562
 197 2974 0     DomainEndList      0.1758    1950.9772  domain_allocate()/domain.c/565
 197 2975 0          TopNodes     20.3514    1971.3286  domain_allocate()/domain.c/570
 197 2976 0   DomainNodeIndex      1.3698    1972.6984  force_treeallocate()/forcetree.c/4800
 197 2977 0        Nodes_base    242.7131    2215.4115  force_treeallocate()/forcetree.c/4803
 197 2978 0     Extnodes_base    202.2609    2417.6724  force_treeallocate()/forcetree.c/4811
 197 2979 0          Nextnode     13.7763    2431.4487  force_treeallocate()/forcetree.c/4820
 197 2980 0            Father     12.2108    2443.6595  force_treeallocate()/forcetree.c/4827
 197 2981 0           Ngblist      3.0480    2446.7074  density()/density.c/690
 197 2982 0              Left      6.0959    2452.8034  density()/density.c/692
 197 2983 0             Right      6.0959    2458.8993  density()/density.c/693
 197 2984 0    DataIndexTable      7.0175    2465.9169  density()/density.c/738
 197 2985 0      DataNodeList     18.7134    2484.6303  density()/density.c/740
 197 2986 0       DensDataGet     69.2470    2553.8773  density()/density.c/893
 197 2987 0    DensDataResult     91.2801    2645.1574  density()/density.c/931
 197 2988 0       DensDataOut     91.1104    2736.2679  density()/density.c/933
----------------------------------------------------------------------------------------
ngb iteration 1: need to repeat for 0003490984 particles.
ngb iteration 2: need to repeat for 0000000123 particles.
ngb iteration 3: need to repeat for 0000000059 particles.
ngb iteration 4: need to repeat for 0000000052 particles.
GetCoolingTables: Redshift 1 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_6.492.hdf5
GetCoolingTables: Redshift 2 /ptmp/mpa/ybahe/HYDRANGEA/BG_Tables/CoolingTables/z_6.859.hdf5

Begin to compute FoF group catalogues...  (presently allocated=2443.66 MB)
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1950.62 MB)
Allocated 23.1106 MByte for top-level domain structure
use of 59.4905 MB of temporary storage for domain decomposition... (presently allocated=2033.23 MB)
can't combine trees due to lack of storage. Will try again.
Increasing TopNodeAllocFactor=0.143373  new value=0.186385
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2050.56 MB)
Before=373889
After=426561
NTopleaves= 373241  NTopnodes=426561 (space for 596615)
gravity work-load balance=1.00969   memory-balance=1.00969   SPH work-load balance=1.00594
iter=0 exchange of 0575316480 particles (ret=0)
domain decomposition done. (took 10.7146 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 7.78445 MByte in top-level domain structure

Comoving linking length: 0.00901747    (presently allocated=1972.13 MB)
Tree construction.

Start linking particles (presently allocated=2483.95 MB)
links on local processor done (took 0.636867 sec).
Marked=0023043594 out of the 0286660730 primaries which are linked

linking across processors (presently allocated=2581.69 MB) 
have done 0000474860 cross links (processed 0023043594, took 1.03281 sec)
have done 0000072053 cross links (processed 0002683981, took 0.0811231 sec)
have done 0000020100 cross links (processed 0000809951, took 0.0635891 sec)
have done 0000005921 cross links (processed 0000215331, took 0.055836 sec)
have done 0000002021 cross links (processed 0000076849, took 0.0531149 sec)
have done 0000000822 cross links (processed 0000033886, took 0.052109 sec)
have done 0000000460 cross links (processed 0000023848, took 0.051517 sec)
have done 0000000191 cross links (processed 0000009004, took 0.045969 sec)
have done 0000000059 cross links (processed 0000001395, took 0.0323699 sec)
have done 0000000026 cross links (processed 0000000788, took 0.032763 sec)
have done 0000000003 cross links (processed 0000000241, took 0.0325851 sec)
have done 0000000000 cross links (processed 0000000010, took 0.0324001 sec)
Local groups found.

group finding took = 2.26201 sec
Start finding nearest dm-particle (presently allocated=2483.95 MB)
still finding nearest... (presently allocated=2570.81 MB)
fof-nearest iteration 1: need to repeat for 267441777 particles.
still finding nearest... (presently allocated=2571.25 MB)
fof-nearest iteration 2: need to repeat for 229439323 particles.
still finding nearest... (presently allocated=2571.94 MB)
fof-nearest iteration 3: need to repeat for 155019387 particles.
still finding nearest... (presently allocated=2572.58 MB)
fof-nearest iteration 4: need to repeat for 106885064 particles.
still finding nearest... (presently allocated=2573.53 MB)
fof-nearest iteration 5: need to repeat for 67377951 particles.
still finding nearest... (presently allocated=2574.42 MB)
fof-nearest iteration 6: need to repeat for 20589459 particles.
still finding nearest... (presently allocated=2572.74 MB)
done finding nearest dm-particle
attaching gas and star particles to nearest dm particles took = 3.46781 sec
compiling local group data and catalogue took = 0.666043 sec

Total number of groups with at least 32 particles: 129646
Largest group has 164024 particles.
Total number of particles in groups: 0028268346

group properties are now allocated.. (presently allocated=2021.26 MB)
computation of group properties took = 0.0187469 sec
start global sorting of group catalogues number 1
LargestGroup = 70.285567; SmallestGroup = 0.021064
tagging gas particles with halo masses took = 0.040386 sec
Group catalogues globally sorted. took = 1.19752 sec
starting saving of group catalogue number 1
data//groups_001_z006p772
Group catalogues number 1 saved. took = 2.08922 sec

We now execute a parallel version of SUBFIND.
Tree construction for species 0 (286235439).
tree build for species 0 took 0.541829 sec
finding densities, mode 0 
ngb iteration 1: need to repeat for 0223747316 particles. (took 6.38866 sec)
ngb iteration 2: need to repeat for 0193948770 particles. (took 4.53051 sec)
ngb iteration 3: need to repeat for 0180281279 particles. (took 3.77949 sec)
ngb iteration 4: need to repeat for 0167573761 particles. (took 3.59878 sec)
ngb iteration 5: need to repeat for 0149981876 particles. (took 3.39649 sec)
ngb iteration 6: need to repeat for 0123074054 particles. (took 3.11929 sec)
ngb iteration 7: need to repeat for 0089567845 particles. (took 2.75782 sec)
ngb iteration 8: need to repeat for 0058166425 particles. (took 2.11761 sec)
ngb iteration 9: need to repeat for 0034697301 particles. (took 1.38604 sec)
ngb iteration 10: need to repeat for 0019601550 particles. (took 0.803894 sec)
ngb iteration 11: need to repeat for 0010723810 particles. (took 0.466737 sec)
ngb iteration 12: need to repeat for 0005775090 particles. (took 0.295033 sec)
ngb iteration 13: need to repeat for 0003090301 particles. (took 0.205183 sec)
ngb iteration 14: need to repeat for 0001509641 particles. (took 0.151921 sec)
ngb iteration 15: need to repeat for 0000519633 particles. (took 0.115053 sec)
ngb iteration 16: need to repeat for 0000219283 particles. (took 0.081315 sec)
ngb iteration 17: need to repeat for 0000113568 particles. (took 0.062741 sec)
ngb iteration 18: need to repeat for 0000063112 particles. (took 0.0549021 sec)
ngb iteration 19: need to repeat for 0000035662 particles. (took 0.0511739 sec)
ngb iteration 20: need to repeat for 0000019890 particles. (took 0.0489149 sec)
ngb iteration 21: need to repeat for 0000010723 particles. (took 0.0479631 sec)
ngb iteration 22: need to repeat for 0000005649 particles. (took 0.0472779 sec)
ngb iteration 23: need to repeat for 0000002908 particles. (took 0.046912 sec)
ngb iteration 24: need to repeat for 0000001473 particles. (took 0.046694 sec)
ngb iteration 25: need to repeat for 0000000697 particles. (took 0.0467699 sec)
ngb iteration 26: need to repeat for 0000000313 particles. (took 0.0466752 sec)
ngb iteration 27: need to repeat for 0000000142 particles. (took 0.0468242 sec)
ngb iteration 28: need to repeat for 0000000054 particles. (took 0.046808 sec)
ngb iteration 29: need to repeat for 0000000022 particles. (took 0.0467181 sec)
ngb iteration 30: need to repeat for 0000000006 particles. (took 0.046701 sec)
ngb iteration 31: need to repeat for 0000000002 particles. (took 0.0464652 sec)
final operations ... 
density and smoothing length for species 0 took 34.16 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.56311 sec
finding densities, mode 1 
ngb iteration 1: need to repeat for 0222241228 particles. (took 6.84641 sec)
ngb iteration 2: need to repeat for 0192255140 particles. (took 4.9013 sec)
ngb iteration 3: need to repeat for 0178003544 particles. (took 4.0753 sec)
ngb iteration 4: need to repeat for 0165106446 particles. (took 3.68542 sec)
ngb iteration 5: need to repeat for 0147694168 particles. (took 3.48843 sec)
ngb iteration 6: need to repeat for 0121458334 particles. (took 3.20574 sec)
ngb iteration 7: need to repeat for 0088938997 particles. (took 2.76062 sec)
ngb iteration 8: need to repeat for 0058308289 particles. (took 2.08942 sec)
ngb iteration 9: need to repeat for 0035174758 particles. (took 1.37632 sec)
ngb iteration 10: need to repeat for 0020083199 particles. (took 0.811856 sec)
ngb iteration 11: need to repeat for 0011081845 particles. (took 0.479327 sec)
ngb iteration 12: need to repeat for 0005984853 particles. (took 0.3092 sec)
ngb iteration 13: need to repeat for 0003178635 particles. (took 0.212634 sec)
ngb iteration 14: need to repeat for 0001525421 particles. (took 0.157632 sec)
ngb iteration 15: need to repeat for 0000504726 particles. (took 0.118576 sec)
ngb iteration 16: need to repeat for 0000182951 particles. (took 0.0840261 sec)
ngb iteration 17: need to repeat for 0000075028 particles. (took 0.0645239 sec)
ngb iteration 18: need to repeat for 0000031735 particles. (took 0.0551269 sec)
ngb iteration 19: need to repeat for 0000013262 particles. (took 0.0503821 sec)
ngb iteration 20: need to repeat for 0000005309 particles. (took 0.0482008 sec)
ngb iteration 21: need to repeat for 0000002038 particles. (took 0.0475361 sec)
ngb iteration 22: need to repeat for 0000000646 particles. (took 0.0466042 sec)
ngb iteration 23: need to repeat for 0000000187 particles. (took 0.0465441 sec)
ngb iteration 24: need to repeat for 0000000055 particles. (took 0.0465679 sec)
ngb iteration 25: need to repeat for 0000000014 particles. (took 0.046464 sec)
ngb iteration 26: need to repeat for 0000000005 particles. (took 0.0468731 sec)
ngb iteration 27: need to repeat for 0000000001 particles. (took 0.0463271 sec)
final operations ... 
density and smoothing length for species 1 took 35.375 sec
Tree construction for species 4 (423836).
tree build for species 4 took 0.323801 sec
finding densities, mode 4 
ngb iteration 1: need to repeat for 0000410904 particles. (took 0.334295 sec)
ngb iteration 2: need to repeat for 0000406431 particles. (took 0.234688 sec)
ngb iteration 3: need to repeat for 0000401348 particles. (took 0.207394 sec)
ngb iteration 4: need to repeat for 0000395898 particles. (took 0.168143 sec)
ngb iteration 5: need to repeat for 0000389397 particles. (took 0.146382 sec)
ngb iteration 6: need to repeat for 0000379418 particles. (took 0.131198 sec)
ngb iteration 7: need to repeat for 0000365331 particles. (took 0.120656 sec)
ngb iteration 8: need to repeat for 0000342350 particles. (took 0.117135 sec)
ngb iteration 9: need to repeat for 0000313454 particles. (took 0.114136 sec)
ngb iteration 10: need to repeat for 0000277264 particles. (took 0.113576 sec)
ngb iteration 11: need to repeat for 0000234681 particles. (took 0.108686 sec)
ngb iteration 12: need to repeat for 0000189439 particles. (took 0.105095 sec)
ngb iteration 13: need to repeat for 0000147139 particles. (took 0.099792 sec)
ngb iteration 14: need to repeat for 0000109157 particles. (took 0.099973 sec)
ngb iteration 15: need to repeat for 0000077483 particles. (took 0.0931461 sec)
ngb iteration 16: need to repeat for 0000054152 particles. (took 0.0830948 sec)
ngb iteration 17: need to repeat for 0000038796 particles. (took 0.0766258 sec)
ngb iteration 18: need to repeat for 0000029139 particles. (took 0.0714481 sec)
ngb iteration 19: need to repeat for 0000022559 particles. (took 0.0679169 sec)
ngb iteration 20: need to repeat for 0000017351 particles. (took 0.066184 sec)
ngb iteration 21: need to repeat for 0000013222 particles. (took 0.0661199 sec)
ngb iteration 22: need to repeat for 0000010160 particles. (took 0.0665541 sec)
ngb iteration 23: need to repeat for 0000008036 particles. (took 0.066962 sec)
ngb iteration 24: need to repeat for 0000006331 particles. (took 0.0669842 sec)
ngb iteration 25: need to repeat for 0000004805 particles. (took 0.065582 sec)
ngb iteration 26: need to repeat for 0000003492 particles. (took 0.0652518 sec)
ngb iteration 27: need to repeat for 0000002370 particles. (took 0.0647831 sec)
ngb iteration 28: need to repeat for 0000001580 particles. (took 0.065434 sec)
ngb iteration 29: need to repeat for 0000001039 particles. (took 0.0658932 sec)
ngb iteration 30: need to repeat for 0000000628 particles. (took 0.065619 sec)
ngb iteration 31: need to repeat for 0000000370 particles. (took 0.065064 sec)
ngb iteration 32: need to repeat for 0000000219 particles. (took 0.0664668 sec)
ngb iteration 33: need to repeat for 0000000107 particles. (took 0.0638309 sec)
ngb iteration 34: need to repeat for 0000000056 particles. (took 0.0651581 sec)
ngb iteration 35: need to repeat for 0000000022 particles. (took 0.06374 sec)
ngb iteration 36: need to repeat for 0000000013 particles. (took 0.0622921 sec)
ngb iteration 37: need to repeat for 0000000004 particles. (took 0.0620809 sec)
ngb iteration 38: need to repeat for 0000000003 particles. (took 0.0623219 sec)
ngb iteration 39: need to repeat for 0000000002 particles. (took 0.062186 sec)
ngb iteration 40: need to repeat for 0000000001 particles. (took 0.062278 sec)
ngb iteration 41: need to repeat for 0000000001 particles. (took 0.0621209 sec)
final operations ... 
density and smoothing length for species 4 took 4.11495 sec
Tree construction.
tree build took 0.871425 sec
finding densities, mode 5 
ngb iteration 1: need to repeat for 0000000627 particles. (took 0.052474 sec)
ngb iteration 2: need to repeat for 0000000387 particles. (took 0.0623639 sec)
ngb iteration 3: need to repeat for 0000000234 particles. (took 0.0625811 sec)
ngb iteration 4: need to repeat for 0000000178 particles. (took 0.062227 sec)
ngb iteration 5: need to repeat for 0000000154 particles. (took 0.0623491 sec)
ngb iteration 6: need to repeat for 0000000132 particles. (took 0.0624161 sec)
ngb iteration 7: need to repeat for 0000000105 particles. (took 0.0628591 sec)
ngb iteration 8: need to repeat for 0000000080 particles. (took 0.0624921 sec)
ngb iteration 9: need to repeat for 0000000053 particles. (took 0.0623019 sec)
ngb iteration 10: need to repeat for 0000000038 particles. (took 0.0624158 sec)
ngb iteration 11: need to repeat for 0000000022 particles. (took 0.0627019 sec)
ngb iteration 12: need to repeat for 0000000013 particles. (took 0.062871 sec)
ngb iteration 13: need to repeat for 0000000010 particles. (took 0.0624449 sec)
ngb iteration 14: need to repeat for 0000000007 particles. (took 0.0623701 sec)
ngb iteration 15: need to repeat for 0000000003 particles. (took 0.0622342 sec)
ngb iteration 16: need to repeat for 0000000001 particles. (took 0.0623131 sec)
ngb iteration 17: need to repeat for 0000000001 particles. (took 0.0625012 sec)
ngb iteration 18: need to repeat for 0000000001 particles. (took 0.0622089 sec)
final operations ... 
density and smoothing length for species 5 took 1.31249 sec
Tree construction for species 0 (286235439).
tree build for species 0 took 0.541201 sec
calculating density contribution of species 0 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 0 to species 4
finding densities, mode -5 
final operations ... 
density() of species 0 took 9.70974 sec
Tree construction for species 1 (286660730).
tree build for species 1 took 0.527311 sec
calculating density contribution of species 1 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 1 to species 4
finding densities, mode -5 
final operations ... 
density() of species 1 took 6.58668 sec
Tree construction for species 4 (423836).
tree build for species 4 took 0.309337 sec
calculating density contribution of species 4 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 4 to species 1
finding densities, mode -2 
final operations ... 
density() of species 4 took 4.02737 sec
Tree construction for species 5 (0).
tree build for species 5 took 0.312466 sec
calculating density contribution of species 5 to species 0
finding densities, mode -1 
final operations ... 
calculating density contribution of species 5 to species 1
finding densities, mode -2 
final operations ... 
calculating density contribution of species 5 to species 4
finding densities, mode -5 
final operations ... 
density() of species 5 took 4.20315 sec
start saving smoothing lengths and densities
Sorting of densities in ID sequence took = 0.815617 sec
saving densities took 2.73605 sec

Number of FOF halos treated with collective SubFind code = 0
(the adopted size-limit for the collective algorithm was 2240688 particles.)
the other 129646 FOF halos are treated in parallel with serial code

Unbalance in total number of particles in FOF halos is 5991 - 2380338 

subfind_exchange()() took 0.740278 sec
processing of collective halos took 3.09944e-06 sec
sort of local particles()() took 0.651352 sec
contructing tree for serial subfind of local groups
Start to do local groups with serial subfind algorithm

processing of local groups took took 15.3164 sec

Task 195: testing particles ...
Task 406: testing particles ...
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unsorting of local particles()() took 0.610792 sec
Task 0: testing particles ...
subfind_exchange() (for return to original CPU)  took 0.688282 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=2042.86 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2142.79 MB)
Before=378001
After=429137
NTopleaves= 375495  NTopnodes=429137 (space for 596615)
gravity work-load balance=1.01113   memory-balance=1.01113   SPH work-load balance=1.00589
iter=0 exchange of 0575307437 particles (ret=0)
domain decomposition done. (took 8.12335 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 7.66653 MByte in top-level domain structure
SO iteration 1: need to repeat for 0000122551 particles. (took 0.0295591 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.0246201 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.0259199 sec)
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SO iteration 14: need to repeat for 0000122551 particles. (took 0.028311 sec)
SO iteration 15: need to repeat for 0000121981 particles. (took 0.026634 sec)
SO iteration 16: need to repeat for 0000004059 particles. (took 0.02595 sec)
SO iteration 17: need to repeat for 0000000009 particles. (took 0.00324297 sec)
SO iteration 1: need to repeat for 0000122551 particles. (took 0.0269489 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.030118 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.0249672 sec)
SO iteration 4: need to repeat for 0000122551 particles. (took 0.0277212 sec)
SO iteration 5: need to repeat for 0000122551 particles. (took 0.029659 sec)
SO iteration 6: need to repeat for 0000122551 particles. (took 0.025553 sec)
SO iteration 7: need to repeat for 0000122551 particles. (took 0.026485 sec)
SO iteration 8: need to repeat for 0000122551 particles. (took 0.0247078 sec)
SO iteration 9: need to repeat for 0000122551 particles. (took 0.027086 sec)
SO iteration 10: need to repeat for 0000122551 particles. (took 0.024673 sec)
SO iteration 11: need to repeat for 0000122551 particles. (took 0.0248151 sec)
SO iteration 12: need to repeat for 0000122551 particles. (took 0.031173 sec)
SO iteration 13: need to repeat for 0000122551 particles. (took 0.0325589 sec)
SO iteration 14: need to repeat for 0000122551 particles. (took 0.0284209 sec)
SO iteration 15: need to repeat for 0000122109 particles. (took 0.024879 sec)
SO iteration 16: need to repeat for 0000085430 particles. (took 0.0244482 sec)
SO iteration 17: need to repeat for 0000002030 particles. (took 0.019944 sec)
SO iteration 18: need to repeat for 0000000163 particles. (took 0.00285602 sec)
SO iteration 1: need to repeat for 0000122551 particles. (took 0.0269449 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.0243659 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.0230041 sec)
SO iteration 4: need to repeat for 0000122551 particles. (took 0.0227761 sec)
SO iteration 5: need to repeat for 0000122551 particles. (took 0.022938 sec)
SO iteration 6: need to repeat for 0000122551 particles. (took 0.022763 sec)
SO iteration 7: need to repeat for 0000122551 particles. (took 0.0228069 sec)
SO iteration 8: need to repeat for 0000122551 particles. (took 0.0229409 sec)
SO iteration 9: need to repeat for 0000122551 particles. (took 0.022728 sec)
SO iteration 10: need to repeat for 0000122551 particles. (took 0.023026 sec)
SO iteration 11: need to repeat for 0000122551 particles. (took 0.0229468 sec)
SO iteration 12: need to repeat for 0000122551 particles. (took 0.0230229 sec)
SO iteration 13: need to repeat for 0000122551 particles. (took 0.0230241 sec)
SO iteration 14: need to repeat for 0000122551 particles. (took 0.0230341 sec)
SO iteration 15: need to repeat for 0000122541 particles. (took 0.0229301 sec)
SO iteration 16: need to repeat for 0000122082 particles. (took 0.022934 sec)
SO iteration 17: need to repeat for 0000110591 particles. (took 0.0228338 sec)
SO iteration 18: need to repeat for 0000020211 particles. (took 0.021451 sec)
SO iteration 19: need to repeat for 0000007339 particles. (took 0.00655198 sec)
SO iteration 20: need to repeat for 0000000028 particles. (took 0.00349116 sec)
SO iteration 1: need to repeat for 0000122551 particles. (took 0.02755 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.025897 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.026453 sec)
SO iteration 4: need to repeat for 0000122551 particles. (took 0.0265241 sec)
SO iteration 5: need to repeat for 0000122551 particles. (took 0.0266199 sec)
SO iteration 6: need to repeat for 0000122551 particles. (took 0.026623 sec)
SO iteration 7: need to repeat for 0000122551 particles. (took 0.02648 sec)
SO iteration 8: need to repeat for 0000122551 particles. (took 0.026665 sec)
SO iteration 9: need to repeat for 0000122551 particles. (took 0.026684 sec)
SO iteration 10: need to repeat for 0000122551 particles. (took 0.0265071 sec)
SO iteration 11: need to repeat for 0000122551 particles. (took 0.027194 sec)
SO iteration 12: need to repeat for 0000122551 particles. (took 0.0266371 sec)
SO iteration 13: need to repeat for 0000122551 particles. (took 0.0273411 sec)
SO iteration 14: need to repeat for 0000122551 particles. (took 0.027808 sec)
SO iteration 15: need to repeat for 0000121971 particles. (took 0.0267599 sec)
SO iteration 16: need to repeat for 0000002050 particles. (took 0.026288 sec)
SO iteration 17: need to repeat for 0000000002 particles. (took 0.00304604 sec)
SO iteration 1: need to repeat for 0000122551 particles. (took 0.02722 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.0247769 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.025912 sec)
SO iteration 4: need to repeat for 0000122551 particles. (took 0.026017 sec)
SO iteration 5: need to repeat for 0000122551 particles. (took 0.0262198 sec)
SO iteration 6: need to repeat for 0000122551 particles. (took 0.026185 sec)
SO iteration 7: need to repeat for 0000122551 particles. (took 0.0261619 sec)
SO iteration 8: need to repeat for 0000122551 particles. (took 0.026222 sec)
SO iteration 9: need to repeat for 0000122551 particles. (took 0.026293 sec)
SO iteration 10: need to repeat for 0000122551 particles. (took 0.026391 sec)
SO iteration 11: need to repeat for 0000122551 particles. (took 0.0261972 sec)
SO iteration 12: need to repeat for 0000122551 particles. (took 0.0262122 sec)
SO iteration 13: need to repeat for 0000122551 particles. (took 0.026345 sec)
SO iteration 14: need to repeat for 0000122551 particles. (took 0.026603 sec)
SO iteration 15: need to repeat for 0000121981 particles. (took 0.0280039 sec)
SO iteration 16: need to repeat for 0000004165 particles. (took 0.0262392 sec)
SO iteration 17: need to repeat for 0000000009 particles. (took 0.00327301 sec)
SO iteration 1: need to repeat for 0000122551 particles. (took 0.026875 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.024456 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.02473 sec)
SO iteration 4: need to repeat for 0000122551 particles. (took 0.0247202 sec)
SO iteration 5: need to repeat for 0000122551 particles. (took 0.02457 sec)
SO iteration 6: need to repeat for 0000122551 particles. (took 0.024565 sec)
SO iteration 7: need to repeat for 0000122551 particles. (took 0.024682 sec)
SO iteration 8: need to repeat for 0000122551 particles. (took 0.0261989 sec)
SO iteration 9: need to repeat for 0000122551 particles. (took 0.0245872 sec)
SO iteration 10: need to repeat for 0000122551 particles. (took 0.0245571 sec)
SO iteration 11: need to repeat for 0000122551 particles. (took 0.0246351 sec)
SO iteration 12: need to repeat for 0000122551 particles. (took 0.0246558 sec)
SO iteration 13: need to repeat for 0000122551 particles. (took 0.024652 sec)
SO iteration 14: need to repeat for 0000122551 particles. (took 0.0244899 sec)
SO iteration 15: need to repeat for 0000122110 particles. (took 0.0246799 sec)
SO iteration 16: need to repeat for 0000086241 particles. (took 0.024405 sec)
SO iteration 17: need to repeat for 0000002061 particles. (took 0.0199509 sec)
SO iteration 18: need to repeat for 0000000166 particles. (took 0.00277305 sec)
SO iteration 1: need to repeat for 0000122551 particles. (took 0.0268939 sec)
SO iteration 2: need to repeat for 0000122551 particles. (took 0.0243142 sec)
SO iteration 3: need to repeat for 0000122551 particles. (took 0.0230169 sec)
SO iteration 4: need to repeat for 0000122551 particles. (took 0.0234439 sec)
SO iteration 5: need to repeat for 0000122551 particles. (took 0.023319 sec)
SO iteration 6: need to repeat for 0000122551 particles. (took 0.0230811 sec)
SO iteration 7: need to repeat for 0000122551 particles. (took 0.0227952 sec)
SO iteration 8: need to repeat for 0000122551 particles. (took 0.0230699 sec)
SO iteration 9: need to repeat for 0000122551 particles. (took 0.0229471 sec)
SO iteration 10: need to repeat for 0000122551 particles. (took 0.0230119 sec)
SO iteration 11: need to repeat for 0000122551 particles. (took 0.0227668 sec)
SO iteration 12: need to repeat for 0000122551 particles. (took 0.0228751 sec)
SO iteration 13: need to repeat for 0000122551 particles. (took 0.0244172 sec)
SO iteration 14: need to repeat for 0000122551 particles. (took 0.0230241 sec)
SO iteration 15: need to repeat for 0000122541 particles. (took 0.022665 sec)
SO iteration 16: need to repeat for 0000122082 particles. (took 0.0228879 sec)
SO iteration 17: need to repeat for 0000110926 particles. (took 0.022799 sec)
SO iteration 18: need to repeat for 0000020434 particles. (took 0.0214369 sec)
SO iteration 19: need to repeat for 0000007416 particles. (took 0.00672507 sec)
SO iteration 20: need to repeat for 0000000028 particles. (took 0.00347781 sec)
determining spherical overdensity masses took 3.07861 sec
finding spherical overdensity particles took 0.344849 sec
determining contamination of halos took 0.41714 sec
Global sort of Groups took 0.51272 sec
Global sort of SubGroups took 0.687524 sec
Global sort of IDs took 0.150819 sec
Writing block 0 (GLEN), n=181, ptype=0, dtype=0, ndim=1, bpb=4 bytes=724d
Writing block 1 (GOFF), n=181, ptype=0, dtype=0, ndim=1, bpb=4 bytes=724d
Writing block 2 (MTOT), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 3 (GPOS), n=181, ptype=0, dtype=1, ndim=3, bpb=4 bytes=2172d
Writing block 4 (MMEA), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 5 (RMEA), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 6 (MCRI), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 7 (RCRI), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 8 (MTOP), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 9 (RTOP), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 17 (NCON), n=181, ptype=0, dtype=0, ndim=1, bpb=4 bytes=724d
Writing block 18 (MCON), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 22 (NSUB), n=181, ptype=0, dtype=0, ndim=1, bpb=4 bytes=724d
Writing block 23 (FSUB), n=181, ptype=0, dtype=0, ndim=1, bpb=4 bytes=724d
Writing block 24 (SLEN), n=301, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1204d
Writing block 25 (SOFF), n=301, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1204d
Writing block 26 (SSUB), n=301, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1204d
Writing block 27 (MSUB), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 28 (SPOS), n=301, ptype=1, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 29 (SVEL), n=301, ptype=1, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 30 (SCM ), n=301, ptype=1, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 33 (VMAX), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 34 (RMAX), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 35 (RHMS), n=301, ptype=1, dtype=1, ndim=6, bpb=4 bytes=7224d
Writing block 36 (MTRH), n=301, ptype=1, dtype=1, ndim=6, bpb=4 bytes=7224d
Writing block 37 (MBID), n=301, ptype=1, dtype=2, ndim=1, bpb=8 bytes=2408d
Writing block 38 (GRNR), n=301, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1204d
Writing block 39 (SUBN), n=301, ptype=1, dtype=0, ndim=1, bpb=4 bytes=1204d
Writing block 40 (SMST), n=301, ptype=1, dtype=1, ndim=6, bpb=4 bytes=7224d
Writing block 53 (PID ), n=26315, ptype=2, dtype=2, ndim=1, bpb=8 bytes=210520d
Writing block 54 (SLEN), n=301, ptype=1, dtype=0, ndim=6, bpb=4 bytes=7224d
Writing block 55 (STEN), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 56 (SKEN), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 57 (SUEN), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 58 (SUIT), n=301, ptype=1, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 59 (BHMA), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 60 (BHMD), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 61 (SVD ), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 62 (SVDH), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 63 (HMPR), n=301, ptype=1, dtype=1, ndim=6, bpb=4 bytes=7224d
Writing block 64 (SSFR), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 65 (SSA ), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 66 (SSBZ), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 67 (SSIM), n=301, ptype=1, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 68 (SSPI), n=301, ptype=4, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 69 (GSPI), n=301, ptype=1, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 70 (FSPI), n=301, ptype=5, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 71 (SFM ), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 72 (SFMT), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 73 (SFME), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 74 (SFAE), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 75 (SFKE), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 76 (SFTE), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 77 (SMWP), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 78 (SMM ), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 79 (SMMS), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 80 (SFZ ), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 81 (SFZS), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 82 (SSIA), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 83 (SIAS), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 84 (SMET), n=301, ptype=5, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 85 (SMTS), n=301, ptype=5, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 86 (MF1 ), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 87 (MeF1), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 88 (MF  ), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 89 (MeF2), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 90 (MFA ), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 91 (MeFA), n=301, ptype=5, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 92 (NSPI), n=301, ptype=6, dtype=1, ndim=3, bpb=4 bytes=3612d
Writing block 93 (NFM ), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 94 (NFMT), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 95 (NFME), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 96 (NFAE), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 97 (NFKE), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 98 (NFTE), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 99 (SMWP), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 100 (SMM ), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 101 (SMMS), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 102 (SSIA), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 103 (SIAS), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 104 (SMET), n=301, ptype=6, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 105 (SMTS), n=301, ptype=6, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 106 (MF1 ), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 107 (MeF1), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 108 (MF2 ), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 109 (MeF2), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 110 (MFA ), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 111 (MeFA), n=301, ptype=6, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 112 (SM  ), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 113 (SFKE), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 114 (SFAE), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 115 (SMWP), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 116 (SMM ), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 117 (SMMS), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 118 (SSIA), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 119 (SIAS), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 120 (SMET), n=301, ptype=4, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 121 (SMTS), n=301, ptype=4, dtype=1, ndim=9, bpb=4 bytes=10836d
Writing block 122 (MF1 ), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 123 (MeF1), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 124 (MF2 ), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 125 (MeF2), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 126 (MFA ), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 127 (MeFA), n=301, ptype=4, dtype=1, ndim=1, bpb=4 bytes=1204d
Writing block 128 (MMe5), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 129 (RMe5), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 130 (MCr5), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 131 (RCr5), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 132 (MMe2), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 133 (RMe2), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 134 (MCr2), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 135 (RCr2), n=181, ptype=0, dtype=1, ndim=1, bpb=4 bytes=724d
Writing block 136 (MAPT), n=301, ptype=7, dtype=1, ndim=60, bpb=4 bytes=72240d
Writing block 137 (SAPT), n=301, ptype=8, dtype=1, ndim=10, bpb=4 bytes=12040d
Writing block 138 (VAPT), n=301, ptype=9, dtype=1, ndim=10, bpb=4 bytes=12040d
Writing block 139 (BEGY), n=26315, ptype=2, dtype=1, ndim=1, bpb=4 bytes=105260d
Subgroup catalogues saved. took = 4.40757 sec
Blackholes: Eliminated 0 gas particles and merged away 0 black holes.

writing particle file...
 eagle_ph_key_ort: type= 0 timed by volker 4.202600e-01
 eagle_ph_key_ort: type= 1 timed by volker 4.363151e-01
 eagle_ph_key_ort: type= 2 timed by volker 9.678197e-02
 eagle_ph_key_ort: type= 3 timed by volker 4.696131e-03
 eagle_ph_key_ort: type= 4 timed by volker 1.228151e-01
 eagle_ph_key_ort: type= 5 timed by volker 9.980202e-04
 eagle_ph_key_ort: timing parallel sort = 1.129917e+00
 eagle_fetch_elements: we are using 1584479852 bytes of memory, FreeBytes= 1980599816

At 'EAGLE_FETCH_ELEMENTS_START', eagle_fetch_elements()/eagle/eagle_sort_particles.c/158: Largest Allocation = 2061.16 Mbyte (on task=0), Smallest = 2043.08 Mbyte, Average = 2043.81 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    764.3307    1784.7651  allocate_memory()/allocate.c/85
   0 2971 0              MetP    146.4481    1931.2132  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.4114    1950.6246  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1950.8004  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1950.9761  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     21.1536    1972.1298  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.3317    1990.4614  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.5528    2021.0142  fof_fof()/fof.c/337
   0 2978 0             Group      0.2469    2021.2612  fof_fof()/fof.c/380
   0 2979 0          SubGroup     21.5981    2042.8593  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.2936    2061.1528  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
----------------------------------------------------------------------------------------
 eagle_fetch_elements: max_bytes= 320, max_elements= 2033053 number of bytes = 650576960

At 'EAGLE_FETCH_ELEMENTS', eagle_fetch_elements()/eagle/eagle_sort_particles.c/191: Largest Allocation = 3569.22 Mbyte (on task=0), Smallest = 3550.55 Mbyte, Average = 3552.17 Mbyte

------------------------ Allocated Memory Blocks----------------------------------------
Task   Nr F          Variable      MBytes   Cumulative         Function/File/Linenumber
----------------------------------------------------------------------------------------
   0 2964 0  Sendcount_matrix      1.9775       3.8866  allocate_memory()/allocate.c/41
   0 2965 0     ProcessedFlag      3.0527       6.9393  allocate_memory()/allocate.c/52
   0 2966 0  NextActiveParticle     12.2108      19.1501  allocate_memory()/allocate.c/55
   0 2967 0     NextInTimeBin     12.2108      31.3608  allocate_memory()/allocate.c/58
   0 2968 0     PrevInTimeBin     12.2108      43.5716  allocate_memory()/allocate.c/61
   0 2969 0                 P    976.8628    1020.4344  allocate_memory()/allocate.c/67
   0 2970 0              SphP    764.3307    1784.7651  allocate_memory()/allocate.c/85
   0 2971 0              MetP    146.4481    1931.2132  allocate_memory()/allocate.c/105
   0 2972 0               BHP     19.4114    1950.6246  allocate_memory()/allocate.c/126
   0 2973 0   DomainStartList      0.1758    1950.8004  domain_allocate()/domain.c/562
   0 2974 0     DomainEndList      0.1758    1950.9761  domain_allocate()/domain.c/565
   0 2975 0          TopNodes     21.1536    1972.1298  domain_allocate()/domain.c/570
   0 2976 0         FOF_PList     18.3317    1990.4614  fof_fof()/fof.c/249
   0 2977 0         FOF_GList     30.5528    2021.0142  fof_fof()/fof.c/337
   0 2978 0             Group      0.2469    2021.2612  fof_fof()/fof.c/380
   0 2979 0          SubGroup     21.5981    2042.8593  subfind()/subfind.c/376
   0 2980 0   sort_index_data     18.2936    2061.1528  eagle_ph_key_sort()/eagle/eagle_sort_particles.c/602
   0 2981 0          sort_idx      7.7555    2068.9083  eagle_fetch_elements()/eagle/eagle_sort_particles.c/184
   0 2982 0       idx_to_recv      7.7555    2076.6638  eagle_fetch_elements()/eagle/eagle_sort_particles.c/185
   0 2983 0       idx_to_send      7.7555    2084.4193  eagle_fetch_elements()/eagle/eagle_sort_particles.c/186
   0 2984 0           sendbuf    620.4385    2704.8578  eagle_fetch_elements()/eagle/eagle_sort_particles.c/187
   0 2985 0           recvbuf    620.4385    3325.2964  eagle_fetch_elements()/eagle/eagle_sort_particles.c/188
   0 2986 0            result    243.9142    3569.2105  eagle_fetch_elements()/eagle/eagle_sort_particles.c/189
----------------------------------------------------------------------------------------
 eagle_ph_key_ort: timing parallel P exchange = 2.845014e+00
 eagle_fetch_elements: we are using 1584479852 bytes of memory, FreeBytes= 1980599816
 eagle_fetch_elements: max_bytes= 504, max_elements= 1355818 number of bytes = 683332272
 eagle_ph_key_ort: timing parallel SphP exchange = 2.125047e+00
 eagle_fetch_elements: we are using 1584479852 bytes of memory, FreeBytes= 1980599816
 eagle_fetch_elements: max_bytes= 384, max_elements= 2029474 number of bytes = 779318016
 eagle_ph_key_ort: timing parallel MetP exchange = 3.306103e-02
 eagle_fetch_elements: we are using 1584479852 bytes of memory, FreeBytes= 1980599816
 eagle_fetch_elements: max_bytes= 256, max_elements= 3023812 number of bytes = 774095872
 eagle_ph_key_ort: timing parallel BHP exchange = 5.025148e-03
Sorting particle-data by peano-hilbert key took = 6.42073 sec
Calculating hash table
Writing hash table
 eagle_send_elements: we are using 1584479852 bytes of memory
 eagle_send_elements: max_bytes= 320, max_elements= 2033053 number of bytes= 650576960
 eagle_ph_restore: timing parallel P exchange = 2.733320e+00
 eagle_send_elements: we are using 1584479852 bytes of memory
 eagle_send_elements: max_bytes= 504, max_elements= 1355818 number of bytes= 683332272
 eagle_ph_restore: timing parallel SphP exchange = 2.112846e+00
 eagle_send_elements: we are using 1584479852 bytes of memory
 eagle_send_elements: max_bytes= 384, max_elements= 2029474 number of bytes= 779318016
 eagle_ph_restore: timing parallel MetP exchange = 2.770305e-02
 eagle_send_elements: we are using 1584479852 bytes of memory
 eagle_send_elements: max_bytes= 256, max_elements= 3023812 number of bytes= 774095872
 eagle_ph_restore: timing parallel BHP exchange = 1.855135e-03
Restoring original order after ph key sorting took = 4.88715 sec

finished writing particle file...

Finished with SUBFIND.  (total time=181.245 sec)

Finished computing FoF groups.  (presently allocated=1972.13 MB)

Blackholes: Eliminated 0 gas particles and merged away 0 black holes.
domain decomposition... LevelToTimeBin[TakeLevel=0]=0  (presently allocated=1950.62 MB)
Allocated 29.9383 MByte for top-level domain structure
use of 69.9946 MB of temporary storage for domain decomposition... (presently allocated=2050.56 MB)
Before=371457
After=426745
NTopleaves= 373402  NTopnodes=426745 (space for 596615)
gravity work-load balance=1.01001   memory-balance=1.01001   SPH work-load balance=1.00615
iter=0 exchange of 0575345600 particles (ret=0)
domain decomposition done. (took 8.23883 sec)
begin Peano-Hilbert order...
Peano-Hilbert done.
Freed 7.77603 MByte in top-level domain structure
Tree construction.
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 45: endrun called with an error level of 124


task 45: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 45:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 45
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 90: endrun called with an error level of 124


task 90: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 90:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 90
task 135: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 135:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 135
task 135: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 180: endrun called with an error level of 124


task 180: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 180:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 180
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
task 225: endrun called with an error level of 124


task 225: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 225:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 225
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 270: endrun called with an error level of 124


task 270: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 270:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 270
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 315: endrun called with an error level of 124


task 315: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 315:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 315
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 360: endrun called with an error level of 124


task 360: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 360:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 360
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
task 405: endrun called with an error level of 124


task 405: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 405:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 405
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
task 450: endrun called with an error level of 124


task 450: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 450:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 450
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 495: endrun called with an error level of 124


task 495: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 495:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 495
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 540: endrun called with an error level of 124


task 540: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 540:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 540
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 585: endrun called with an error level of 124


task 585: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 585:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 585
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 630: endrun called with an error level of 124


task 630: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 630:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 630
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 675: endrun called with an error level of 124


task 675: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 675:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 675
Finished FOF, total time doing fof/subfind = 212.595 s
task 0: endrun called with an error level of 124


 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
 An HDF5 error was detected, we'd better stop.
HDF5-DIAG: Error detected in HDF5 (1.8.12) MPI-process 0:
  #000: ../../hdf5-1.8.12/src/H5E.c line 1615 in H5Eget_auto2(): wrong API function, H5Eset_auto1 has been called
    major: Error API
    minor: Can't get value
task 0: endrun called with an error level of 124


application called MPI_Abort(MPI_COMM_WORLD, 124) - process 0
