Simulation name: GW150914_28 Running simulation GW150914_28 Preparing: Checking: /system/user/crangano/simulations/GW150914_28/output-0000-active panther Wed Sep 10 05:10:04 PM CEST 2025 Environment: Starting: [1757517005.372585993] panther:pid3271897.cactus_sim: Unable to alloc recv buffer MR on bnxt_re0: Cannot allocate memory [1757517005.372630518] panther:pid3271897.cactus_sim: Unable to allocate UD recv buffer pool [1757517005.376325443] panther:pid3271897.cactus_sim: Unable to alloc recv buffer MR on bnxt_re0: Cannot allocate memory [1757517005.376328448] panther:pid3271897.cactus_sim: Unable to allocate UD recv buffer pool [1757517005.378921438] panther:pid3271897.cactus_sim: Unable to alloc recv buffer MR on bnxt_re0: Cannot allocate memory [1757517005.378924854] panther:pid3271897.cactus_sim: Unable to allocate UD recv buffer pool [1757517005.439461572] panther:pid3271897.cactus_sim: Unable to alloc recv buffer MR on bnxt_re0: Cannot allocate memory [1757517005.439464628] panther:pid3271897.cactus_sim: Unable to allocate UD recv buffer pool INFO (Cactus): Increased logging level from 0 to 3 -------------------------------------------------------------------------------- 10 1 0101 ************************ 01 1010 10 The Cactus Code V4.18.0 1010 1101 011 www.cactuscode.org 1001 100101 ************************ 00010101 100011 (c) Copyright The Authors 0100 GNU Licensed. No Warranty 0101 -------------------------------------------------------------------------------- Cactus version: 4.18.0 Compile date: Sep 10 2025 (16:44:10) Run date: Sep 10 2025 (17:10:05+0200) Run host: panther (pid=3271897) Working directory: /system/user/crangano/simulations/GW150914_28/output-0000 Executable: /system/user/crangano/simulations/GW150914_28/SIMFACTORY/exe/cactus_sim Parameter file: /system/user/crangano/simulations/GW150914_28/output-0000/GW150914.par -------------------------------------------------------------------------------- Activating thorn Cactus...Success -> active implementation Cactus Activation requested for --->ADMBase ML_ADMConstraints ADMCoupling ADMMacros AEILocalInterp AHFinderDirect Boundary Carpet CarpetIOASCII CarpetIOBasic CarpetIOHDF5 CarpetIOScalar CarpetInterp CarpetInterp2 CarpetLib CarpetReduce CarpetRegrid2 CarpetTracker CartGrid3D CoordBase CoordGauge Coordinates CoordinatesSymmetry Formaline GlobalDerivative hwloc IOUtil InitBase Interpolate2 QuasiLocalMeasures LocalInterp LoopControl MoL NaNChecker PunctureTracker Slab SpaceMask SphericalSurface StaticConformal SummationByParts SymBase SystemStatistics SystemTopology TerminationTrigger TensorTypes Time TmunuBase TwoPunctures Vectors ML_BSSN ML_BSSN_Helper NewRad GenericFD WeylScal4 Multipole ADMDerivatives<--- Thorn AHFinderDirect requests automatic activation of HDF5 Thorn Carpet requests automatic activation of MPI Thorn Carpet requests automatic activation of Timers Thorn CarpetLib requests automatic activation of CycleClock Thorn Coordinates requests automatic activation of TGRtensor Thorn Formaline requests automatic activation of pthreads Thorn hwloc requests automatic activation of zlib Thorn Interpolate2 requests automatic activation of LAPACK Thorn QuasiLocalMeasures requests automatic activation of Fortran Thorn TwoPunctures requests automatic activation of GSL Thorn LAPACK requests automatic activation of BLAS Activating thorn ADMBase...Success -> active implementation ADMBase Activating thorn ADMCoupling...Success -> active implementation ADMCoupling Activating thorn ADMDerivatives...Success -> active implementation ADMDerivatives Activating thorn ADMMacros...Success -> active implementation ADMMacros Activating thorn AEILocalInterp...Success -> active implementation AEILocalInterp Activating thorn AHFinderDirect...Success -> active implementation AHFinderDirect Activating thorn BLAS...Success -> active implementation BLAS Activating thorn Boundary...Success -> active implementation boundary Activating thorn Carpet...Success -> active implementation Driver Activating thorn CarpetInterp...Success -> active implementation interp Activating thorn CarpetInterp2...Success -> active implementation interp2 Activating thorn CarpetIOASCII...Success -> active implementation IOASCII Activating thorn CarpetIOBasic...Success -> active implementation IOBasic Activating thorn CarpetIOHDF5...Success -> active implementation IOHDF5 Activating thorn CarpetIOScalar...Success -> active implementation IOScalar Activating thorn CarpetLib...Success -> active implementation CarpetLib Activating thorn CarpetReduce...Success -> active implementation reduce Activating thorn CarpetRegrid2...Success -> active implementation CarpetRegrid2 Activating thorn CarpetTracker...Success -> active implementation CarpetTracker Activating thorn CartGrid3D...Success -> active implementation grid Activating thorn CoordBase...Success -> active implementation CoordBase Activating thorn CoordGauge...Success -> active implementation CoordGauge Activating thorn Coordinates...Success -> active implementation Coordinates Activating thorn CoordinatesSymmetry...Success -> active implementation CoordinatesSymmetry Activating thorn CycleClock...Success -> active implementation CycleClock Activating thorn Formaline...Success -> active implementation Formaline Activating thorn Fortran...Success -> active implementation Fortran Activating thorn GenericFD...Success -> active implementation GenericFD Activating thorn GlobalDerivative...Success -> active implementation GlobalDerivative Activating thorn GSL...Success -> active implementation GSL Activating thorn HDF5...Success -> active implementation HDF5 Activating thorn hwloc...Success -> active implementation hwloc Activating thorn InitBase...Success -> active implementation InitBase Activating thorn Interpolate2...Success -> active implementation Interpolate Activating thorn IOUtil...Success -> active implementation IO Activating thorn LAPACK...Success -> active implementation LAPACK Activating thorn LocalInterp...Success -> active implementation LocalInterp Activating thorn LoopControl...Success -> active implementation LoopControl Activating thorn ML_ADMConstraints...Success -> active implementation ML_ADMConstraints Activating thorn ML_BSSN...Success -> active implementation ML_BSSN Activating thorn ML_BSSN_Helper...Success -> active implementation ML_BSSN_Helper Activating thorn MoL...Success -> active implementation MethodOfLines Activating thorn MPI...Success -> active implementation MPI Activating thorn Multipole...Success -> active implementation multipole Activating thorn NaNChecker...Success -> active implementation NaNChecker Activating thorn NewRad...Success -> active implementation NewRad Activating thorn pthreads...Success -> active implementation PTHREADS Activating thorn PunctureTracker...Success -> active implementation PunctureTracker Activating thorn QuasiLocalMeasures...Success -> active implementation QuasiLocalMeasures Activating thorn Slab...Success -> active implementation Slab Activating thorn SpaceMask...Success -> active implementation SpaceMask Activating thorn SphericalSurface...Success -> active implementation SphericalSurface Activating thorn StaticConformal...Success -> active implementation StaticConformal Activating thorn SummationByParts...Success -> active implementation SummationByParts Activating thorn SymBase...Success -> active implementation SymBase Activating thorn SystemStatistics...Success -> active implementation SystemStatistics Activating thorn SystemTopology...Success -> active implementation SystemTopology Activating thorn TensorTypes...Success -> active implementation TensorTypes Activating thorn TerminationTrigger...Success -> active implementation TerminationTrigger Activating thorn TGRtensor...Success -> active implementation TGRtensor Activating thorn Time...Success -> active implementation time Activating thorn Timers...Success -> active implementation Timers Activating thorn TmunuBase...Success -> active implementation TmunuBase Activating thorn TwoPunctures...Success -> active implementation TwoPunctures Activating thorn Vectors...Success -> active implementation Vectors Activating thorn WeylScal4...Success -> active implementation WeylScal4 Activating thorn zlib...Success -> active implementation zlib INFO (IOUtil): Recovery directory '../checkpoints' doesn't exist -------------------------------------------------------------------------------- if (recover initial data) Recover parameters endif Startup routines [CCTK_STARTUP] Carpet::MultiModel_Startup: Multi-model Startup routine Coordinates::Coordinates_ChoosePatchSystem: [meta] Choose patch system CycleClock::CycleClock_Setup: Set up CycleClock LoopControl::LC_setup: Set up LoopControl ML_BSSN_Helper::ML_BSSN_SetGroupTags: [meta] Set checkpointing and prolongation group tags GROUP hwloc_startup: hwloc startup group hwloc::hwloc_version: Output hwloc version Timers::Timer_Startup: Prepare hierarchical timers CarpetInterp::CarpetInterpStartup: Startup routine CarpetReduce::CarpetReduceStartup: Startup routine CartGrid3D::SymmetryStartup: Register GH Extension for GridSymmetry CoordBase::CoordBase_Startup: Register a GH extension to store the coordinate system handles SystemTopology::ST_system_topology: Output and/or modify system topology and hardware locality Carpet::Driver_Startup: Startup routine Formaline::Formaline_PrintIDs: [meta] Print the build and simulation ids IOUtil::IOUtil_Startup: Startup routine LocalInterp::LocalInterp_Startup: register LocalInterp's interpolation operators CarpetIOHDF5::CarpetIOHDF5_Startup: Startup routine ML_ADMConstraints::ML_ADMConstraints_Startup: [meta] create banner ML_BSSN::ML_BSSN_Startup: [meta] create banner ML_BSSN_Helper::ML_BSSN_RegisterSlicing: [meta] Register slicing CarpetIOScalar::CarpetIOScalarStartup: [global] Startup routine MoL::MoL_Startup: Startup banner Slab::Slab_InitMPIDatatypes: Create MPI datatypes for complex variables in C SymBase::SymBase_Startup: Register GH Extension for SymBase CarpetIOBasic::CarpetIOBasicStartup: [global] Startup routine TerminationTrigger::TerminationTrigger_StartSignalHandler: Start signal handler AEILocalInterp::AEILocalInterp_U_Startup: register CCTK_InterpLocalUniform() interpolation operators Vectors::Vectors_Startup: Print startup message WeylScal4::WeylScal4_Startup: [meta] create banner CarpetIOASCII::CarpetIOASCIIStartup: [global] Startup routine Startup routines which need an existing grid hierarchy [CCTK_WRAGH] ADMBase::Einstein_InitSymBound: [global] Set up GF symmetries Boundary::Boundary_RegisterBCs: [global] Register boundary conditions that this thorn provides CarpetRegrid2::CarpetRegrid2_Initialise: [global] Initialise locations of refined regions CartGrid3D::RegisterCartGrid3DCoords: [meta] Register coordinates for the Cartesian grid CoordGauge::Einstein_ActivateSlicing: Initialize slicing, setup priorities for mixed slicings CoordGauge::Einstein_SetNextSlicing: Identify the slicing for the next iteration Formaline::Formaline_OutputSource: [meta] Output Cactus source tree Formaline::Formaline_RegisterWarnings: [meta] Register to receive warnings and info messages from the flesh Formaline::Formaline_AnnounceInitial: [global] Put some meta information about the current run into permanent storage ML_BSSN_Helper::ML_BSSN_ParamCompat: [meta] Handle parameter backward compatibility MoL::MoL_SetupIndexArrays: Set up the MoL bookkeeping index arrays MoL::MoL_SetScheduleStatus: [global] Set the flag so it is ok to register with MoL TmunuBase::TmunuBase_SetStressEnergyState: [global] Set the stress_energy_state variable GROUP MoL_Register: The group where physics thorns register variables with MoL ML_ADMConstraints::ML_ADMConstraints_RegisterVars: [meta] Register Variables for MoL ML_BSSN::ML_BSSN_RegisterVars: [meta] Register Variables for MoL ML_BSSN_Helper::ML_BSSN_RegisterConstrained: [meta] Register ADMBase variables as constrained WeylScal4::WeylScal4_RegisterVars: [meta] Register Variables for MoL Slab::Slab_InitTimers: Initialise timers GROUP SymBase_Wrapper: Wrapper group for SymBase GROUP SymmetryRegister: Register your symmetries here CartGrid3D::CartGrid3D_RegisterSymmetryBoundaries: [meta] Register symmetry boundaries Coordinates::Coordinates_RegisterSymmetry: [meta] Register inter-patch boundaries as symmetries ML_ADMConstraints::ML_ADMConstraints_RegisterSymmetries: [meta] register symmetries ML_BSSN::ML_BSSN_RegisterSymmetries: [meta] register symmetries WeylScal4::WeylScal4_RegisterSymmetries: [meta] register symmetries SymBase::SymBase_Statistics: Print symmetry boundary face descriptions MoL::MoL_ReportNumberVariables: [meta] Report how many of each type of variable there are Parameter checking routines [CCTK_PARAMCHECK] ADMBase::ADMBase_ParamCheck: [global] Check consistency of parameters Boundary::Boundary_Check: Check dimension of grid variables Carpet::CarpetParamCheck: Parameter checking routine CarpetLib::CarpetLib_test_prolongate_3d_rf2: [global] Test prolongation operators CarpetRegrid2::CarpetRegrid2_ParamCheck: Check parameters CartGrid3D::ParamCheck_CartGrid3D: Check coordinates for CartGrid3D Coordinates::Coordinates_ParamCheck: Check thorn parameters for consistency. Fortran::CheckFortranParameters: Test whether Fortran parameters work correctly GlobalDerivative::GlobalDeriv_ParamCheck: [global] Check parameters ML_BSSN_Helper::ML_BSSN_ParamCheck: [meta] Check parameters MoL::MoL_ParamCheck: Basic parameter checking Multipole::Multipole_ParamCheck: [global] Check Multipole parameters QuasiLocalMeasures::qlm_paramcheck: [global] Check quasi-local parameter settings SphericalSurface::SphericalSurface_ParamCheck: [global] Check that all surface names are unique TerminationTrigger::TerminationTrigger_ParamCheck: Check consitency of parameters TmunuBase::TmunuBase_ParamCheck: [global] Check that no deprecated parameters are used. TwoPunctures::TwoPunctures_ParamCheck: Check parameters and thorn needs Vectors::Vectors_Test: Run correctness tests. Initialisation if (NOT (recover initial data AND recovery_mode is 'strict')) [CCTK_PREREGRIDINITIAL] Set up grid hierarchy [CCTK_POSTREGRIDINITIAL] AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s) CartGrid3D::SpatialCoordinates: Set Coordinates after regridding GROUP MaskBase_SetupMask: Set up the weight function GROUP MaskBase_SetupMaskAll: Set up the weight function CarpetReduce::MaskBase_AllocateMask: [global] Allocate the weight function CarpetReduce::MaskBase_InitMask: [global] [loop-local] Initialise the weight function GROUP SetupIMaskInternal: Set up the integer weight function (schedule other routines in here) CarpetReduce::CoordBase_SetupMask: [global] [loop-local] Set up the outer boundaries of the weight function CarpetReduce::CarpetMaskSetup: [global] [loop-singlemap] Set up the weight function for the restriction regions GROUP SetupIMask: Set up the integer weight function (schedule other routines in here) CarpetReduce::MaskBase_SetMask: [global] [loop-local] Set the weight function GROUP SetupMask: Set up the real weight function (schedule other routines in here) CarpetReduce::MaskBase_TestMask: [global] Test the weight function GROUP MultiPatch_SpatialCoordinates: Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetGlobalCoords: [local] Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetJacobian: [local] Fill in the Jacobian matrices for Thornburg04 coordinates. Coordinates::Coordinates_SetVolumeForm: [local] Set weight mask (for Carpet reduction operators) GROUP MoL_PseudoEvolutionBoundaries: Apply boundary conditions to pseudo-evolved quantities GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions [CCTK_BASEGRID] ADMBase::ADMBase_SetShiftStateOn: Set the shift_state variable to 1 ADMBase::ADMBase_SetDtLapseStateOn: Set the dtlapse_state variable to 1 ADMBase::ADMBase_SetDtShiftStateOn: Set the dtshift_state variable to 1 ADMMacros::ADMMacros_SetLocalSpatialOrder: Initialize the local_spatial_order CartGrid3D::SpatialSpacings: [singlemap] Set up ranges for spatial 3D Cartesian coordinates (on all maps) CartGrid3D::SpatialCoordinates: Set up spatial 3D Cartesian coordinates on the GH SphericalSurface::SphericalSurface_SetupRes: [global] [loop-local] Set surface resolution automatically AHFinderDirect::AHFinderDirect_setup: [global] setup data structures GROUP MultiPatch_SpatialCoordinates: Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetGlobalCoords: [local] Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetJacobian: [local] Fill in the Jacobian matrices for Thornburg04 coordinates. Coordinates::Coordinates_SetVolumeForm: [local] Set weight mask (for Carpet reduction operators) Interpolate2::Interpolate2Init: Initialise interpolating inter-patch boundaries GROUP Interpolate2Test: Test interpolating inter-patch boundaries Interpolate2::Interpolate2TestInit: Test: Initialise test grid function Interpolate2::Interpolate2TestSelectBCs: [level] Test: Interpolate test grid function GROUP Interpolate2TestApplyBCs: Test: Interpolate test grid function GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions Interpolate2::Interpolate2TestCheck: Test: Check test grid function ML_ADMConstraints::ML_ADMConstraints_CheckBoundaries: [meta] check boundaries treatment ML_BSSN::ML_BSSN_CheckBoundaries: [meta] check boundaries treatment NaNChecker::NaNChecker_ResetCounter: [global] Reset the NaNChecker::NaNsFound counter SphericalSurface::SphericalSurface_Setup: [global] Calculate surface coordinate descriptors GROUP MaskBase_SetupMask: Set up the weight function GROUP MaskBase_SetupMaskAll: Set up the weight function CarpetReduce::MaskBase_AllocateMask: [global] Allocate the weight function CarpetReduce::MaskBase_InitMask: [global] [loop-local] Initialise the weight function GROUP SetupIMaskInternal: Set up the integer weight function (schedule other routines in here) CarpetReduce::CoordBase_SetupMask: [global] [loop-local] Set up the outer boundaries of the weight function CarpetReduce::CarpetMaskSetup: [global] [loop-singlemap] Set up the weight function for the restriction regions GROUP SetupIMask: Set up the integer weight function (schedule other routines in here) CarpetReduce::MaskBase_SetMask: [global] [loop-local] Set the weight function GROUP SetupMask: Set up the real weight function (schedule other routines in here) CarpetReduce::MaskBase_TestMask: [global] Test the weight function SphericalSurface::SphericalSurface_Set: [global] Set surface radii to be used for initial setup in other thorns GROUP SphericalSurface_HasBeenSet: Set the spherical surfaces before this group, and use it afterwards SphericalSurface::SphericalSurface_CheckState: [global] Test the state of the spherical surfaces SummationByParts::SBP_SetNormMask: Setup the mask for the calculation of the norm SymBase::SymBase_Check: Check whether the driver set up the grid consistently TerminationTrigger::TerminationTrigger_ResetTrigger: Clear trigger state TerminationTrigger::TerminationTrigger_StartTimer: Start timer TerminationTrigger::TerminationTrigger_CreateFile: Create termination file Time::Time_Initialise: [global] Initialise Time variables Time::TemporalSpacings: [singlemap] Set fixed timestep WeylScal4::WeylScal4_CheckBoundaries: [meta] check boundaries treatment [CCTK_INITIAL] StaticConformal::StaticConformal_InitialiseState: Set the conformal_state variable to 0 GROUP ADMBase_InitialData: Schedule group for calculating ADM initial data GROUP TwoPunctures_Group: TwoPunctures initial data group TwoPunctures::TwoPunctures: Create puncture black hole initial data TwoPunctures::TwoPunctures_Metadata: [global] Output TwoPunctures metadata GROUP ADMBase_InitialGauge: Schedule group for the ADM initial gauge condition ADMBase::ADMBase_ShiftZero: Set the shift to 0 at all points ADMBase::ADMBase_DtLapseZero: Set the dtlapse to 0 at all points ADMBase::ADMBase_DtShiftZero: Set the dtshift to 0 at all points CarpetIOASCII::CarpetIOASCIIInit: [global] Initialisation routine CarpetIOBasic::CarpetIOBasicInit: [global] Initialisation routine CarpetIOHDF5::CarpetIOHDF5_Init: [global] Initialisation routine CarpetIOScalar::CarpetIOScalarInit: [global] Initialisation routine GROUP ADMBase_PostInitial: Schedule group for modifying the ADM initial data, such as e.g. adding noise ML_BSSN::ML_BSSN_InitialADMBase1Everywhere: ML_BSSN_InitialADMBase1Everywhere ML_BSSN::ML_BSSN_InitialADMBase2Interior: ML_BSSN_InitialADMBase2Interior MoL::MoL_StartLoop: [level] Initialise the step size control PunctureTracker::PunctureTracker_Init: [global] Calculate initial location of punctures QuasiLocalMeasures::qlm_init: [global] Initialise quasi-local calculations ML_BSSN_Helper::ML_BSSN_ExtrapolateGammas: Extrapolate Gammas and time derivatives of lapse and shift [CCTK_POSTINITIAL] CarpetIOHDF5::CarpetIOHDF5_CloseFiles: [global] Close all filereader input files GROUP MoL_PostStepModify: The group for physics thorns to schedule enforcing constraints ML_BSSN::ML_BSSN_EnforceEverywhere: ML_BSSN_EnforceEverywhere GROUP MoL_PostStep: Ensure that everything is correct after the initial data have been set up ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP MoL_PseudoEvolution: Calculate pseudo-evolved quantities GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards GROUP ML_ADMConstraints_evaluate_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate: ML_ADMConstraints_evaluate GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere: ML_BSSN_ConstraintsEverywhere GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior: ML_BSSN_ConstraintsInterior GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth: WeylScal4_psis_calc_Nth GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_invars_calc_Nth_group: WeylScal4_invars_calc_Nth WeylScal4::WeylScal4_invars_calc_Nth: WeylScal4_invars_calc_Nth SummationByParts::SBP_CheckGridSizes: Check grid sizes and ghost zones Initialise finer grids recursively Restrict from finer grids [CCTK_POSTRESTRICTINITIAL] GROUP MoL_PostStep: Ensure that everything is correct after restriction ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP MoL_PseudoEvolutionBoundaries: Apply boundary conditions to pseudo-evolved quantities GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions [CCTK_POSTPOSTINITIAL] [CCTK_POSTSTEP] GROUP ADMDerivatives_Group: Group for ADMDerivatives computations. ADMDerivatives::ADMDerivatives_CalcDerivatives: [local] Calculate requested derivatives of ADM lapse, shift, 3-metric ADMDerivatives::ADMDerivatives_radial_SelectBC: [level] Selecting BC for metric radial derivatives ADMDerivatives::ADMDerivatives_time_SelectBC: [level] Selecting BC for metric time derivatives GROUP ADMDerivatives_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions AHFinderDirect::AHFinderDirect_import_mask: [global] [loop-local] import the excision mask AHFinderDirect::AHFinderDirect_find_horizons: [global] find apparent horizon(s) after this time step AHFinderDirect::AHFinderDirect_store: [global] store apparent horizon(s) into spherical surface(s) AHFinderDirect::AHFinderDirect_save: [global] save apparent horizon(s) into Cactus variables AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s) GROUP zzz_NaNChecker_NaNCheck: Check for NaNs and count them in NaNChecker::NaNsFound NaNChecker::NaNChecker_NaNCheck_Prepare: [level] Prepare data structures to check for NaNs NaNChecker::NaNChecker_NaNCheck_Check: [local] Check for NaNs NaNChecker::NaNChecker_NaNCheck_Finish: [level] Count NaNs in NaNChecker::NaNsFound NaNChecker::NaNChecker_TakeAction: [global] [loop-level] Output NaNChecker::NaNmask and take action according to NaNChecker::action_if_found PunctureTracker::PunctureTracker_SetPositions: [global] Copy puncture positions to spherical surfaces SphericalSurface::SphericalSurface_Set: [global] Set surface radii GROUP SphericalSurface_HasBeenSet: Set the spherical surfaces before this group, and use it afterwards SphericalSurface::SphericalSurface_CheckState: [global] Test the state of the spherical surfaces endif if (recover initial data) [CCTK_BASEGRID] ADMBase::ADMBase_SetShiftStateOn: Set the shift_state variable to 1 ADMBase::ADMBase_SetDtLapseStateOn: Set the dtlapse_state variable to 1 ADMBase::ADMBase_SetDtShiftStateOn: Set the dtshift_state variable to 1 ADMMacros::ADMMacros_SetLocalSpatialOrder: Initialize the local_spatial_order CartGrid3D::SpatialSpacings: [singlemap] Set up ranges for spatial 3D Cartesian coordinates (on all maps) CartGrid3D::SpatialCoordinates: Set up spatial 3D Cartesian coordinates on the GH SphericalSurface::SphericalSurface_SetupRes: [global] [loop-local] Set surface resolution automatically AHFinderDirect::AHFinderDirect_setup: [global] setup data structures GROUP MultiPatch_SpatialCoordinates: Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetGlobalCoords: [local] Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetJacobian: [local] Fill in the Jacobian matrices for Thornburg04 coordinates. Coordinates::Coordinates_SetVolumeForm: [local] Set weight mask (for Carpet reduction operators) Interpolate2::Interpolate2Init: Initialise interpolating inter-patch boundaries GROUP Interpolate2Test: Test interpolating inter-patch boundaries Interpolate2::Interpolate2TestInit: Test: Initialise test grid function Interpolate2::Interpolate2TestSelectBCs: [level] Test: Interpolate test grid function GROUP Interpolate2TestApplyBCs: Test: Interpolate test grid function GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions Interpolate2::Interpolate2TestCheck: Test: Check test grid function ML_ADMConstraints::ML_ADMConstraints_CheckBoundaries: [meta] check boundaries treatment ML_BSSN::ML_BSSN_CheckBoundaries: [meta] check boundaries treatment NaNChecker::NaNChecker_ResetCounter: [global] Reset the NaNChecker::NaNsFound counter SphericalSurface::SphericalSurface_Setup: [global] Calculate surface coordinate descriptors GROUP MaskBase_SetupMask: Set up the weight function GROUP MaskBase_SetupMaskAll: Set up the weight function CarpetReduce::MaskBase_AllocateMask: [global] Allocate the weight function CarpetReduce::MaskBase_InitMask: [global] [loop-local] Initialise the weight function GROUP SetupIMaskInternal: Set up the integer weight function (schedule other routines in here) CarpetReduce::CoordBase_SetupMask: [global] [loop-local] Set up the outer boundaries of the weight function CarpetReduce::CarpetMaskSetup: [global] [loop-singlemap] Set up the weight function for the restriction regions GROUP SetupIMask: Set up the integer weight function (schedule other routines in here) CarpetReduce::MaskBase_SetMask: [global] [loop-local] Set the weight function GROUP SetupMask: Set up the real weight function (schedule other routines in here) CarpetReduce::MaskBase_TestMask: [global] Test the weight function SphericalSurface::SphericalSurface_Set: [global] Set surface radii to be used for initial setup in other thorns GROUP SphericalSurface_HasBeenSet: Set the spherical surfaces before this group, and use it afterwards SphericalSurface::SphericalSurface_CheckState: [global] Test the state of the spherical surfaces SummationByParts::SBP_SetNormMask: Setup the mask for the calculation of the norm SymBase::SymBase_Check: Check whether the driver set up the grid consistently TerminationTrigger::TerminationTrigger_ResetTrigger: Clear trigger state TerminationTrigger::TerminationTrigger_StartTimer: Start timer TerminationTrigger::TerminationTrigger_CreateFile: Create termination file Time::Time_Initialise: [global] Initialise Time variables Time::TemporalSpacings: [singlemap] Set fixed timestep WeylScal4::WeylScal4_CheckBoundaries: [meta] check boundaries treatment [CCTK_RECOVER_VARIABLES] IOUtil::IOUtil_RecoverGH: [level] Checkpoint recovery routine [CCTK_POST_RECOVER_VARIABLES] GROUP ADMDerivatives_Group: Group for ADMDerivatives computations. ADMDerivatives::ADMDerivatives_CalcDerivatives: [local] Calculate requested derivatives of ADM lapse, shift, 3-metric ADMDerivatives::ADMDerivatives_radial_SelectBC: [level] Selecting BC for metric radial derivatives ADMDerivatives::ADMDerivatives_time_SelectBC: [level] Selecting BC for metric time derivatives GROUP ADMDerivatives_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions AHFinderDirect::AHFinderDirect_recover: [global] import horizon data from Cactus variables CarpetIOHDF5::CarpetIOHDF5_InitCheckpointingIntervals: [global] Initialisation of checkpointing intervals after recovery CarpetIOHDF5::CarpetIOHDF5_CloseFiles: [meta] Close all initial data checkpoint files after recovery GROUP MaskBase_SetupMask: Set up the weight function GROUP MaskBase_SetupMaskAll: Set up the weight function CarpetReduce::MaskBase_AllocateMask: [global] Allocate the weight function CarpetReduce::MaskBase_InitMask: [global] [loop-local] Initialise the weight function GROUP SetupIMaskInternal: Set up the integer weight function (schedule other routines in here) CarpetReduce::CoordBase_SetupMask: [global] [loop-local] Set up the outer boundaries of the weight function CarpetReduce::CarpetMaskSetup: [global] [loop-singlemap] Set up the weight function for the restriction regions GROUP SetupIMask: Set up the integer weight function (schedule other routines in here) CarpetReduce::MaskBase_SetMask: [global] [loop-local] Set the weight function GROUP SetupMask: Set up the real weight function (schedule other routines in here) CarpetReduce::MaskBase_TestMask: [global] Test the weight function GROUP MoL_PostStep: Ensure that everything is correct after recovery ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP zzz_NaNChecker_NaNCheck: Check for NaNs and count them in NaNChecker::NaNsFound NaNChecker::NaNChecker_NaNCheck_Prepare: [level] Prepare data structures to check for NaNs NaNChecker::NaNChecker_NaNCheck_Check: [local] Check for NaNs NaNChecker::NaNChecker_NaNCheck_Finish: [level] Count NaNs in NaNChecker::NaNsFound NaNChecker::NaNChecker_TakeAction: [global] [loop-level] Output NaNChecker::NaNmask and take action according to NaNChecker::action_if_found TerminationTrigger::TerminationTrigger_ResetMinutes: [global] Reset Watchtime endif if (checkpoint initial data) [CCTK_CPINITIAL] CarpetIOHDF5::CarpetIOHDF5_InitialDataCheckpoint: [meta] Initial data checkpoint routine endif if (analysis) [CCTK_ANALYSIS] CarpetLib::CarpetLib_printtimestats: [global] Print timing statistics if desired CarpetLib::CarpetLib_printmemstats: [global] Print memory statistics if desired Formaline::Formaline_AnnounceUpdate: [global] Put some meta information about the current run into permanent storage LoopControl::LC_statistics_analysis: [meta] Output LoopControl statistics GROUP ML_BSSN_EvolutionAnalysis: Calculate RHS at analysis ML_BSSN::ML_BSSN_EvolutionAnalysisInit: ML_BSSN_EvolutionAnalysisInit ML_BSSN::ML_BSSN_EvolutionAnalysisInterior: ML_BSSN_EvolutionAnalysisInterior Multipole::Multipole_Calc: [global] Calculate Multipoles QuasiLocalMeasures::qlm_calculate: [global] Calculate quasi-local quantities SystemStatistics::SystemStatistics_Collect: [global] Collect system statistics TerminationTrigger::TerminationTrigger_CheckWalltime: Check elapsed job walltime TerminationTrigger::TerminationTrigger_CheckSignal: Check if we received a termination signal TerminationTrigger::TerminationTrigger_CheckFile: Check termination file endif Output grid variables do loop over timesteps [CCTK_PREREGRID] CarpetTracker::CarpetTracker_SetPositions: [global] Set positions of refined regions Change grid hierarchy [CCTK_POSTREGRID] AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s) CartGrid3D::SpatialCoordinates: Set Coordinates after regridding GROUP MaskBase_SetupMask: Set up the weight function GROUP MaskBase_SetupMaskAll: Set up the weight function CarpetReduce::MaskBase_AllocateMask: [global] Allocate the weight function CarpetReduce::MaskBase_InitMask: [global] [loop-local] Initialise the weight function GROUP SetupIMaskInternal: Set up the integer weight function (schedule other routines in here) CarpetReduce::CoordBase_SetupMask: [global] [loop-local] Set up the outer boundaries of the weight function CarpetReduce::CarpetMaskSetup: [global] [loop-singlemap] Set up the weight function for the restriction regions GROUP SetupIMask: Set up the integer weight function (schedule other routines in here) CarpetReduce::MaskBase_SetMask: [global] [loop-local] Set the weight function GROUP SetupMask: Set up the real weight function (schedule other routines in here) CarpetReduce::MaskBase_TestMask: [global] Test the weight function GROUP MultiPatch_SpatialCoordinates: Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetGlobalCoords: [local] Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetJacobian: [local] Fill in the Jacobian matrices for Thornburg04 coordinates. Coordinates::Coordinates_SetVolumeForm: [local] Set weight mask (for Carpet reduction operators) GROUP MoL_PostStep: Ensure that everything is correct after regridding ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP MoL_PseudoEvolutionBoundaries: Apply boundary conditions to pseudo-evolved quantities GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions Rotate timelevels iteration = iteration+1 t = t+dt [CCTK_PRESTEP] CoordGauge::Einstein_SetNextSlicing: Identify the slicing for the next iteration LoopControl::LC_steer: [meta] Update LoopControl algorithm preferences NaNChecker::NaNChecker_ResetCounter: [global] Reset the NaNChecker::NaNsFound counter [CCTK_EVOL] MoL::MoL_StartLoop: [level] Initialise the step size control while (MoL::MoL_Stepsize_Bad) GROUP MoL_Evolution: A single Cactus evolution step using MoL GROUP MoL_StartStep: MoL internal setup for the evolution step MoL::MoL_SetCounter: [level] Set the counter for the ODE method to loop over MoL::MoL_SetTime: [level] Ensure the correct time and timestep are used MoL::MoL_AllocateScratchSpace: [level] Allocate storage for scratch levels GROUP MoL_PreStep: Physics thorns can schedule preloop setup routines in here MoL::MoL_AllocateScratch: Allocate sufficient space for array scratch variables MoL::MoL_InitialCopy: Ensure the data is in the correct timelevel while (MoL::MoL_Intermediate_Step) GROUP MoL_Step: The loop over the intermediate steps for the ODE integrator MoL::MoL_InitRHS: Initialise the RHS functions GROUP MoL_CalcRHS: Physics thorns schedule the calculation of the discrete spatial operator in here ML_BSSN::ML_BSSN_EvolutionBoundaryScalar: ML_BSSN_EvolutionBoundaryScalar GROUP ML_BSSN_EvolutionInteriorSplitBy: ML_BSSN::ML_BSSN_EvolutionInteriorSplitBy1: ML_BSSN_EvolutionInteriorSplitBy1 ML_BSSN::ML_BSSN_EvolutionInteriorSplitBy2: ML_BSSN_EvolutionInteriorSplitBy2 ML_BSSN::ML_BSSN_EvolutionInteriorSplitBy3: ML_BSSN_EvolutionInteriorSplitBy3 GROUP MoL_PostRHS: Modify RHS functions GlobalDerivative::GlobalDeriv_Dissipation: [local] Apply global dissipation to registered variables GROUP MoL_RHSBoundaries: Any 'final' modifications to the RHS functions (boundaries etc.) MoL::MoL_Add: Updates calculated with the efficient Runge-Kutta 4 method MoL::MoL_DecrementCounter: [level] Alter the counter number MoL::MoL_ResetTime: [level] If necessary, change the time GROUP MoL_PostStepModify: The group for physics thorns to schedule enforcing constraints ML_BSSN::ML_BSSN_EnforceEverywhere: ML_BSSN_EnforceEverywhere GROUP MoL_PostStep: The group for physics thorns to schedule boundary calls etc. ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions MoL::MoL_ResetDeltaTime: [level] If necessary, change the timestep end while MoL::MoL_FinishLoop: [level] Control the step size MoL::MoL_RestoreSandR: Restoring the Save and Restore variables to the original state MoL::MoL_FreeScratchSpace: [level] Free storage for scratch levels end while GROUP MoL_PseudoEvolution: Calculate pseudo-evolved quantities GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards GROUP ML_ADMConstraints_evaluate_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate: ML_ADMConstraints_evaluate GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere: ML_BSSN_ConstraintsEverywhere GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior: ML_BSSN_ConstraintsInterior GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth: WeylScal4_psis_calc_Nth GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_invars_calc_Nth_group: WeylScal4_invars_calc_Nth WeylScal4::WeylScal4_invars_calc_Nth: WeylScal4_invars_calc_Nth PunctureTracker::PunctureTracker_Track: [global] Calculate new location of punctures Evolve finer grids recursively Restrict from finer grids [CCTK_POSTRESTRICT] GROUP MoL_PostStep: Ensure that everything is correct after restriction ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP MoL_PseudoEvolutionBoundaries: Apply boundary conditions to pseudo-evolved quantities GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions [CCTK_POSTSTEP] GROUP ADMDerivatives_Group: Group for ADMDerivatives computations. ADMDerivatives::ADMDerivatives_CalcDerivatives: [local] Calculate requested derivatives of ADM lapse, shift, 3-metric ADMDerivatives::ADMDerivatives_radial_SelectBC: [level] Selecting BC for metric radial derivatives ADMDerivatives::ADMDerivatives_time_SelectBC: [level] Selecting BC for metric time derivatives GROUP ADMDerivatives_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions AHFinderDirect::AHFinderDirect_import_mask: [global] [loop-local] import the excision mask AHFinderDirect::AHFinderDirect_find_horizons: [global] find apparent horizon(s) after this time step AHFinderDirect::AHFinderDirect_store: [global] store apparent horizon(s) into spherical surface(s) AHFinderDirect::AHFinderDirect_save: [global] save apparent horizon(s) into Cactus variables AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s) GROUP zzz_NaNChecker_NaNCheck: Check for NaNs and count them in NaNChecker::NaNsFound NaNChecker::NaNChecker_NaNCheck_Prepare: [level] Prepare data structures to check for NaNs NaNChecker::NaNChecker_NaNCheck_Check: [local] Check for NaNs NaNChecker::NaNChecker_NaNCheck_Finish: [level] Count NaNs in NaNChecker::NaNsFound NaNChecker::NaNChecker_TakeAction: [global] [loop-level] Output NaNChecker::NaNmask and take action according to NaNChecker::action_if_found PunctureTracker::PunctureTracker_SetPositions: [global] Copy puncture positions to spherical surfaces SphericalSurface::SphericalSurface_Set: [global] Set surface radii GROUP SphericalSurface_HasBeenSet: Set the spherical surfaces before this group, and use it afterwards SphericalSurface::SphericalSurface_CheckState: [global] Test the state of the spherical surfaces if (checkpoint) [CCTK_CHECKPOINT] CarpetIOHDF5::CarpetIOHDF5_EvolutionCheckpoint: [meta] Evolution checkpoint routine endif if (analysis) [CCTK_ANALYSIS] CarpetLib::CarpetLib_printtimestats: [global] Print timing statistics if desired CarpetLib::CarpetLib_printmemstats: [global] Print memory statistics if desired Formaline::Formaline_AnnounceUpdate: [global] Put some meta information about the current run into permanent storage LoopControl::LC_statistics_analysis: [meta] Output LoopControl statistics GROUP ML_BSSN_EvolutionAnalysis: Calculate RHS at analysis ML_BSSN::ML_BSSN_EvolutionAnalysisInit: ML_BSSN_EvolutionAnalysisInit ML_BSSN::ML_BSSN_EvolutionAnalysisInterior: ML_BSSN_EvolutionAnalysisInterior Multipole::Multipole_Calc: [global] Calculate Multipoles QuasiLocalMeasures::qlm_calculate: [global] Calculate quasi-local quantities SystemStatistics::SystemStatistics_Collect: [global] Collect system statistics TerminationTrigger::TerminationTrigger_CheckWalltime: Check elapsed job walltime TerminationTrigger::TerminationTrigger_CheckSignal: Check if we received a termination signal TerminationTrigger::TerminationTrigger_CheckFile: Check termination file endif Output grid variables enddo Termination routines [CCTK_TERMINATE] CarpetIOHDF5::CarpetIOHDF5_TerminationCheckpoint: [meta] Termination checkpoint routine Formaline::Formaline_AnnounceFinal: [global] Put some meta information about the current run into permanent storage LoopControl::LC_statistics_terminate: [meta] Output LoopControl statistics MoL::MoL_FreeIndexArrays: Free the MoL bookkeeping index arrays Shutdown routines [CCTK_SHUTDOWN] Timers::Timer_Shutdown: Prepare hierarchical timers Routines run after changing the grid hierarchy: [CCTK_POSTREGRID] AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s) CartGrid3D::SpatialCoordinates: Set Coordinates after regridding GROUP MaskBase_SetupMask: Set up the weight function GROUP MaskBase_SetupMaskAll: Set up the weight function CarpetReduce::MaskBase_AllocateMask: [global] Allocate the weight function CarpetReduce::MaskBase_InitMask: [global] [loop-local] Initialise the weight function GROUP SetupIMaskInternal: Set up the integer weight function (schedule other routines in here) CarpetReduce::CoordBase_SetupMask: [global] [loop-local] Set up the outer boundaries of the weight function CarpetReduce::CarpetMaskSetup: [global] [loop-singlemap] Set up the weight function for the restriction regions GROUP SetupIMask: Set up the integer weight function (schedule other routines in here) CarpetReduce::MaskBase_SetMask: [global] [loop-local] Set the weight function GROUP SetupMask: Set up the real weight function (schedule other routines in here) CarpetReduce::MaskBase_TestMask: [global] Test the weight function GROUP MultiPatch_SpatialCoordinates: Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetGlobalCoords: [local] Determine the global coordinates of each gridpoint. Coordinates::Coordinates_SetJacobian: [local] Fill in the Jacobian matrices for Thornburg04 coordinates. Coordinates::Coordinates_SetVolumeForm: [local] Set weight mask (for Carpet reduction operators) GROUP MoL_PostStep: Ensure that everything is correct after regridding ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions ML_ADMConstraints::ML_ADMConstraints_SelectBoundConds: [level] select boundary conditions GROUP ML_ADMConstraints_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions ML_BSSN::ML_BSSN_ADMBaseInterior: ML_BSSN_ADMBaseInterior ML_BSSN::ML_BSSN_ADMBaseBoundaryScalar: ML_BSSN_ADMBaseBoundaryScalar ML_BSSN::ML_BSSN_ADMBaseEverywhere: ML_BSSN_ADMBaseEverywhere ML_BSSN_Helper::ML_BSSN_ADMBase_SelectBCs: [level] Select boundary conditions for ADMBase variables GROUP ML_BSSN_ADMBase_ApplyBCs: Apply boundary conditions to ADMBase variables GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ADMBase_SetADMVars: Set the ADM variables before this group, and use them afterwards WeylScal4::WeylScal4_SelectBoundConds: [level] select boundary conditions GROUP WeylScal4_ApplyBCs: Apply boundary conditions controlled by thorn Boundary GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP MoL_PseudoEvolutionBoundaries: Apply boundary conditions to pseudo-evolved quantities GROUP ML_ADMConstraints_evaluate_bc_group: ML_ADMConstraints_evaluate ML_ADMConstraints::ML_ADMConstraints_evaluate_SelectBCs: [level] ML_ADMConstraints_evaluate_SelectBCs GROUP ML_ADMConstraints_evaluate_ApplyBCs: Apply BCs for groups set in ML_ADMConstraints_evaluate GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsEverywhere_bc_group: ML_BSSN_ConstraintsEverywhere ML_BSSN::ML_BSSN_ConstraintsEverywhere_SelectBCs: [level] ML_BSSN_ConstraintsEverywhere_SelectBCs GROUP ML_BSSN_ConstraintsEverywhere_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsEverywhere GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP ML_BSSN_ConstraintsInterior_bc_group: ML_BSSN_ConstraintsInterior ML_BSSN::ML_BSSN_ConstraintsInterior_SelectBCs: [level] ML_BSSN_ConstraintsInterior_SelectBCs GROUP ML_BSSN_ConstraintsInterior_ApplyBCs: Apply BCs for groups set in ML_BSSN_ConstraintsInterior GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions GROUP WeylScal4_psis_calc_Nth_bc_group: WeylScal4_psis_calc_Nth WeylScal4::WeylScal4_psis_calc_Nth_SelectBCs: [level] WeylScal4_psis_calc_Nth_SelectBCs GROUP WeylScal4_psis_calc_Nth_ApplyBCs: Apply BCs for groups set in WeylScal4_psis_calc_Nth GROUP BoundaryConditions: Execute all boundary conditions Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions CoordinatesSymmetry::CoordinatesSymmetry_Apply_FirstPass: Apply multipatch symmetries Interpolate2::Interpolate2ApplyBC: [level] Apply interpolating inter-patch boundaries CoordinatesSymmetry::CoordinatesSymmetry_Apply_SecondPass: Apply multipatch symmetries for remaining points not filled by interpatch interpolation Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions -------------------------------------------------------------------------------- INFO (Carpet): Multi-Model listing: model 0: "world" INFO (Carpet): Multi-Model process distribution: process 0: model 0 "world" INFO (Carpet): Multi-Model: This is process 0, model 0 "world" INFO (CarpetLib): Process startup time was 1.49 seconds Current core file size limit: hard=[unlimited], soft=[unlimited] Current addres space size limit: hard=[unlimited], soft=[unlimited] Current data segment size limit: hard=[unlimited], soft=[unlimited] Current resident set size limit: hard=[unlimited], soft=[unlimited] INFO (CycleClock): Measuring CycleClock tick via OpenMP... INFO (CycleClock): Calibrated CycleClock: 0.345487 ns per clock tick (2.89446 GHz) INFO (hwloc): library version 2.0.4, API version 0x20000 INFO (SystemTopology): MPI process-to-host mapping: This is MPI process 0 of 1 MPI hosts: 0: panther This MPI process runs on host 0 of 1 On this host, this is MPI process 0 of 1 INFO (SystemTopology): Topology support: Discovery support: discovery->pu : yes CPU binding support: cpubind->set_thisproc_cpubind : yes cpubind->get_thisproc_cpubind : yes cpubind->set_proc_cpubind : yes cpubind->get_proc_cpubind : yes cpubind->set_thisthread_cpubind : yes cpubind->get_thisthread_cpubind : yes cpubind->set_thread_cpubind : yes cpubind->get_thread_cpubind : yes cpubind->get_thisproc_last_cpu_location : yes cpubind->get_proc_last_cpu_location : yes cpubind->get_thisthread_last_cpu_location: yes Memory binding support: membind->set_thisproc_membind : no membind->get_thisproc_membind : no membind->set_proc_membind : no membind->get_proc_membind : no membind->set_thisthread_membind : yes membind->get_thisthread_membind : yes membind->set_area_membind : yes membind->get_area_membind : yes membind->alloc_membind : yes membind->firsttouch_membind : yes membind->bind_membind : yes membind->interleave_membind : yes membind->nexttouch_membind : no membind->migrate_membind : yes INFO (SystemTopology): Hardware objects in this node: Machine L#0: (P#0, total=1043114796KB, DMIProductName="PowerEdge R7515", DMIProductVersion=, DMIBoardVendor="Dell Inc.", DMIBoardName=04F3CJ, DMIBoardVersion=A02, DMIChassisVendor="Dell Inc.", DMIChassisType=23, DMIChassisVersion=, DMIChassisAssetTag=, DMIBIOSVendor="Dell Inc.", DMIBIOSVersion=2.18.1, DMIBIOSDate=02/03/2025, DMISysVendor="Dell Inc.", Backend=Linux, OSName=Linux, OSRelease=5.14.0-570.37.1.el9_6.x86_64, OSVersion="#1 SMP PREEMPT_DYNAMIC Thu Aug 28 10:41:06 UTC 2025", HostName=panther, Architecture=x86_64, hwlocVersion=2.0.4, ProcessName=cactus_sim) Package L#0: (P#0, total=1043114796KB, CPUVendor=AuthenticAMD, CPUFamilyNumber=23, CPUModelNumber=49, CPUModel="AMD EPYC 7542 32-Core Processor ", CPUStepping=0) L3Cache L#0: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#0: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#0: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#0: (P#0) PU L#0: (P#0) PU L#1: (P#32) L2Cache L#1: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#1: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#1: (P#1) PU L#2: (P#1) PU L#3: (P#33) L2Cache L#2: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#2: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#2: (P#2) PU L#4: (P#2) PU L#5: (P#34) L2Cache L#3: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#3: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#3: (P#3) PU L#6: (P#3) PU L#7: (P#35) L3Cache L#1: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#4: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#4: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#4: (P#4) PU L#8: (P#4) PU L#9: (P#36) L2Cache L#5: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#5: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#5: (P#5) PU L#10: (P#5) PU L#11: (P#37) L2Cache L#6: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#6: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#6: (P#6) PU L#12: (P#6) PU L#13: (P#38) L2Cache L#7: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#7: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#7: (P#7) PU L#14: (P#7) PU L#15: (P#39) L3Cache L#2: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#8: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#8: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#8: (P#8) PU L#16: (P#8) PU L#17: (P#40) L2Cache L#9: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#9: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#9: (P#9) PU L#18: (P#9) PU L#19: (P#41) L2Cache L#10: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#10: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#10: (P#10) PU L#20: (P#10) PU L#21: (P#42) L2Cache L#11: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#11: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#11: (P#11) PU L#22: (P#11) PU L#23: (P#43) L3Cache L#3: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#12: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#12: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#12: (P#12) PU L#24: (P#12) PU L#25: (P#44) L2Cache L#13: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#13: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#13: (P#13) PU L#26: (P#13) PU L#27: (P#45) L2Cache L#14: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#14: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#14: (P#14) PU L#28: (P#14) PU L#29: (P#46) L2Cache L#15: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#15: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#15: (P#15) PU L#30: (P#15) PU L#31: (P#47) L3Cache L#4: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#16: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#16: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#16: (P#16) PU L#32: (P#16) PU L#33: (P#48) L2Cache L#17: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#17: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#17: (P#17) PU L#34: (P#17) PU L#35: (P#49) L2Cache L#18: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#18: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#18: (P#18) PU L#36: (P#18) PU L#37: (P#50) L2Cache L#19: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#19: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#19: (P#19) PU L#38: (P#19) PU L#39: (P#51) L3Cache L#5: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#20: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#20: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#20: (P#20) PU L#40: (P#20) PU L#41: (P#52) L2Cache L#21: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#21: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#21: (P#21) PU L#42: (P#21) PU L#43: (P#53) L2Cache L#22: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#22: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#22: (P#22) PU L#44: (P#22) PU L#45: (P#54) L2Cache L#23: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#23: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#23: (P#23) PU L#46: (P#23) PU L#47: (P#55) L3Cache L#6: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#24: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#24: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#24: (P#24) PU L#48: (P#24) PU L#49: (P#56) L2Cache L#25: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#25: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#25: (P#25) PU L#50: (P#25) PU L#51: (P#57) L2Cache L#26: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#26: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#26: (P#26) PU L#52: (P#26) PU L#53: (P#58) L2Cache L#27: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#27: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#27: (P#27) PU L#54: (P#27) PU L#55: (P#59) L3Cache L#7: (P#-1, size=16384KB, linesize=64, ways=16, Inclusive=0) L2Cache L#28: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#28: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#28: (P#28) PU L#56: (P#28) PU L#57: (P#60) L2Cache L#29: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#29: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#29: (P#29) PU L#58: (P#29) PU L#59: (P#61) L2Cache L#30: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#30: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#30: (P#30) PU L#60: (P#30) PU L#61: (P#62) L2Cache L#31: (P#-1, size=512KB, linesize=64, ways=8, Inclusive=1) L1dCache L#31: (P#-1, size=32KB, linesize=64, ways=8, Inclusive=0) Core L#31: (P#31) PU L#62: (P#31) PU L#63: (P#63) INFO (SystemTopology): Thread CPU bindings: MPI process 0 on host 0 (process 0 of 1 on this host) OpenMP thread 0: PU set L#{0-63} P#{0-63} OpenMP thread 1: PU set L#{0-63} P#{0-63} OpenMP thread 2: PU set L#{0-63} P#{0-63} OpenMP thread 3: PU set L#{0-63} P#{0-63} OpenMP thread 4: PU set L#{0-63} P#{0-63} OpenMP thread 5: PU set L#{0-63} P#{0-63} OpenMP thread 6: PU set L#{0-63} P#{0-63} OpenMP thread 7: PU set L#{0-63} P#{0-63} OpenMP thread 8: PU set L#{0-63} P#{0-63} OpenMP thread 9: PU set L#{0-63} P#{0-63} OpenMP thread 10: PU set L#{0-63} P#{0-63} OpenMP thread 11: PU set L#{0-63} P#{0-63} OpenMP thread 12: PU set L#{0-63} P#{0-63} OpenMP thread 13: PU set L#{0-63} P#{0-63} OpenMP thread 14: PU set L#{0-63} P#{0-63} OpenMP thread 15: PU set L#{0-63} P#{0-63} OpenMP thread 16: PU set L#{0-63} P#{0-63} OpenMP thread 17: PU set L#{0-63} P#{0-63} OpenMP thread 18: PU set L#{0-63} P#{0-63} OpenMP thread 19: PU set L#{0-63} P#{0-63} OpenMP thread 20: PU set L#{0-63} P#{0-63} OpenMP thread 21: PU set L#{0-63} P#{0-63} OpenMP thread 22: PU set L#{0-63} P#{0-63} OpenMP thread 23: PU set L#{0-63} P#{0-63} OpenMP thread 24: PU set L#{0-63} P#{0-63} OpenMP thread 25: PU set L#{0-63} P#{0-63} OpenMP thread 26: PU set L#{0-63} P#{0-63} OpenMP thread 27: PU set L#{0-63} P#{0-63} OpenMP thread 28: PU set L#{0-63} P#{0-63} OpenMP thread 29: PU set L#{0-63} P#{0-63} OpenMP thread 30: PU set L#{0-63} P#{0-63} OpenMP thread 31: PU set L#{0-63} P#{0-63} INFO (SystemTopology): Setting thread CPU bindings: INFO (SystemTopology): Thread CPU bindings: MPI process 0 on host 0 (process 0 of 1 on this host) OpenMP thread 0: PU set L#{0} P#{0} OpenMP thread 1: PU set L#{2} P#{1} OpenMP thread 2: PU set L#{4} P#{2} OpenMP thread 3: PU set L#{6} P#{3} OpenMP thread 4: PU set L#{8} P#{4} OpenMP thread 5: PU set L#{10} P#{5} OpenMP thread 6: PU set L#{12} P#{6} OpenMP thread 7: PU set L#{14} P#{7} OpenMP thread 8: PU set L#{16} P#{8} OpenMP thread 9: PU set L#{18} P#{9} OpenMP thread 10: PU set L#{20} P#{10} OpenMP thread 11: PU set L#{22} P#{11} OpenMP thread 12: PU set L#{24} P#{12} OpenMP thread 13: PU set L#{26} P#{13} OpenMP thread 14: PU set L#{28} P#{14} OpenMP thread 15: PU set L#{30} P#{15} OpenMP thread 16: PU set L#{32} P#{16} OpenMP thread 17: PU set L#{34} P#{17} OpenMP thread 18: PU set L#{36} P#{18} OpenMP thread 19: PU set L#{38} P#{19} OpenMP thread 20: PU set L#{40} P#{20} OpenMP thread 21: PU set L#{42} P#{21} OpenMP thread 22: PU set L#{44} P#{22} OpenMP thread 23: PU set L#{46} P#{23} OpenMP thread 24: PU set L#{48} P#{24} OpenMP thread 25: PU set L#{50} P#{25} OpenMP thread 26: PU set L#{52} P#{26} OpenMP thread 27: PU set L#{54} P#{27} OpenMP thread 28: PU set L#{56} P#{28} OpenMP thread 29: PU set L#{58} P#{29} OpenMP thread 30: PU set L#{60} P#{30} OpenMP thread 31: PU set L#{62} P#{31} INFO (SystemTopology): Extracting CPU/cache/memory properties: There are 2 PUs per core (aka hardware SMT threads) There are 1 threads per core (aka SMT threads used) Cache (unknown name) has type "data" depth 1 size 32768 linesize 64 associativity 8 stride 4096, for 2 PUs Cache (unknown name) has type "unified" depth 2 size 524288 linesize 64 associativity 8 stride 65536, for 2 PUs Cache (unknown name) has type "unified" depth 3 size 16777216 linesize 64 associativity 16 stride 1048576, for 8 PUs INFO (Formaline): Configuration id: config-sim-panther-system-user-crangano-einstein_toolkit-Cactus INFO (Formaline): Build id: build-sim-panther-crangano-2025.09.10-14.43.00-3265191 INFO (Formaline): Simulation id: run-GW150914-panther-crangano-2025.09.10-15.10.05-3271897 INFO (Formaline): Run id: run-GW150914-panther-crangano-2025.09.10-15.10.05-3271897 INFO (Vectors): Using vector size 2 for architecture SSE2+SSE4.1 (64-bit precision) -------------------------------------------------------------------------------- AMR driver provided by Carpet -------------------------------------------------------------------------------- AMR HDF5 I/O provided by CarpetIOHDF5 -------------------------------------------------------------------------------- AMR 0D HDF5 I/O provided by CarpetIOHDF5 -------------------------------------------------------------------------------- AMR 1D HDF5 I/O provided by CarpetIOHDF5 -------------------------------------------------------------------------------- AMR 2D HDF5 I/O provided by CarpetIOHDF5 -------------------------------------------------------------------------------- AMR 3D HDF5 I/O provided by CarpetIOHDF5 -------------------------------------------------------------------------------- ML_ADMConstraints -------------------------------------------------------------------------------- ML_BSSN -------------------------------------------------------------------------------- AMR scalar I/O provided by CarpetIOScalar -------------------------------------------------------------------------------- MoL: Generalized time integration. -------------------------------------------------------------------------------- AMR info I/O provided by CarpetIOBasic -------------------------------------------------------------------------------- WeylScal4 -------------------------------------------------------------------------------- AMR 0D ASCII I/O provided by CarpetIOASCII -------------------------------------------------------------------------------- AMR 1D ASCII I/O provided by CarpetIOASCII -------------------------------------------------------------------------------- AMR 2D ASCII I/O provided by CarpetIOASCII -------------------------------------------------------------------------------- AMR 3D ASCII I/O provided by CarpetIOASCII -------------------------------------------------------------------------------- INFO (Carpet): MPI is enabled INFO (Carpet): Carpet is running on 1 processes INFO (Carpet): This is process 0 INFO (Carpet): OpenMP is enabled INFO (Carpet): This process contains 32 threads, this is thread 0 INFO (Carpet): There are 32 threads in total INFO (Carpet): There are 32 threads per process INFO (Carpet): This process runs on host panther, pid=3271897 INFO (Carpet): This process runs on 32 cores: 0-31 INFO (Carpet): Thread 0 runs on 1 core: 0 INFO (Carpet): Thread 1 runs on 1 core: 1 INFO (Carpet): Thread 2 runs on 1 core: 2 INFO (Carpet): Thread 3 runs on 1 core: 3 INFO (Carpet): Thread 4 runs on 1 core: 4 INFO (Carpet): Thread 5 runs on 1 core: 5 INFO (Carpet): Thread 6 runs on 1 core: 6 INFO (Carpet): Thread 7 runs on 1 core: 7 INFO (Carpet): Thread 8 runs on 1 core: 8 INFO (Carpet): Thread 9 runs on 1 core: 9 INFO (Carpet): Thread 10 runs on 1 core: 10 INFO (Carpet): Thread 11 runs on 1 core: 11 INFO (Carpet): Thread 12 runs on 1 core: 12 INFO (Carpet): Thread 13 runs on 1 core: 13 INFO (Carpet): Thread 14 runs on 1 core: 14 INFO (Carpet): Thread 15 runs on 1 core: 15 INFO (Carpet): Thread 16 runs on 1 core: 16 INFO (Carpet): Thread 17 runs on 1 core: 17 INFO (Carpet): Thread 18 runs on 1 core: 18 INFO (Carpet): Thread 19 runs on 1 core: 19 INFO (Carpet): Thread 20 runs on 1 core: 20 INFO (Carpet): Thread 21 runs on 1 core: 21 INFO (Carpet): Thread 22 runs on 1 core: 22 INFO (Carpet): Thread 23 runs on 1 core: 23 INFO (Carpet): Thread 24 runs on 1 core: 24 INFO (Carpet): Thread 25 runs on 1 core: 25 INFO (Carpet): Thread 26 runs on 1 core: 26 INFO (Carpet): Thread 27 runs on 1 core: 27 INFO (Carpet): Thread 28 runs on 1 core: 28 INFO (Carpet): Thread 29 runs on 1 core: 29 INFO (Carpet): Thread 30 runs on 1 core: 30 INFO (Carpet): Thread 31 runs on 1 core: 31 INFO (Carpet): This simulation is running in 3 dimensions INFO (Carpet): Boundary specification for map 0: nboundaryzones: [[5,5,5],[5,5,5]] is_internal : [[0,0,0],[0,0,0]] is_staggered : [[0,0,0],[0,0,0]] shiftout : [[4,4,1],[4,4,4]] INFO (Carpet): CoordBase domain specification for map 0: physical extent: [-51.3969,-51.3969,0] : [51.3969,51.3969,51.3969] ([102.794,102.794,51.3969]) interior extent: [-102.794,-102.794,0] : [102.794,102.794,102.794] ([205.588,205.588,102.794]) exterior extent: [-188.455,-188.455,-85.6615] : [188.455,188.455,188.455] ([376.911,376.911,274.117]) base_spacing : [17.1323,17.1323,17.1323] INFO (Carpet): Adapted domain specification for map 0: convergence factor: 2 convergence level : 0 physical extent : [-51.3969,-51.3969,0] : [51.3969,51.3969,51.3969] ([102.794,102.794,51.3969]) interior extent : [-102.794,-102.794,0] : [102.794,102.794,102.794] ([205.588,205.588,102.794]) exterior extent : [-188.455,-188.455,-85.6615] : [188.455,188.455,188.455] ([376.911,376.911,274.117]) spacing : [17.1323,17.1323,17.1323] INFO (Carpet): Base grid specification for map 0: number of grid points : [23,23,17] number of coarse grid ghost points: [[5,5,5],[5,5,5]] INFO (Carpet): Buffer zone counts (excluding ghosts): [0]: [[0,0,0],[0,0,0]] [1]: [[15,15,15],[15,15,15]] [2]: [[15,15,15],[15,15,15]] [3]: [[15,15,15],[15,15,15]] [4]: [[15,15,15],[15,15,15]] [5]: [[15,15,15],[15,15,15]] [6]: [[15,15,15],[15,15,15]] [7]: [[15,15,15],[15,15,15]] [8]: [[15,15,15],[15,15,15]] INFO (Carpet): Overlap zone counts: [0]: [[0,0,0],[0,0,0]] [1]: [[0,0,0],[0,0,0]] [2]: [[0,0,0],[0,0,0]] [3]: [[0,0,0],[0,0,0]] [4]: [[0,0,0],[0,0,0]] [5]: [[0,0,0],[0,0,0]] [6]: [[0,0,0],[0,0,0]] [7]: [[0,0,0],[0,0,0]] [8]: [[0,0,0],[0,0,0]] INFO (Carpet): Boundary specification for map 1: nboundaryzones: [[5,5,5],[5,5,5]] is_internal : [[0,0,0],[0,0,0]] is_staggered : [[0,0,0],[0,0,0]] shiftout : [[1,4,4],[4,4,0]] INFO (Carpet): CoordBase domain specification for map 1: physical extent: [0,-0.785398,51.3969] : [0.785398,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent: [0,-1.9635,0] : [1.9635,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent: [-1.9635,-3.92699,-85.6615] : [3.92699,3.92699,2278.6] ([5.89049,7.85398,2364.26]) base_spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Adapted domain specification for map 1: convergence factor: 2 convergence level : 0 physical extent : [0,-0.785398,51.3969] : [0.785398,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent : [0,-1.9635,0] : [1.9635,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent : [-1.9635,-3.92699,-85.6615] : [3.92699,3.92699,2278.6] ([5.89049,7.85398,2364.26]) spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Base grid specification for map 1: number of grid points : [16,21,139] number of coarse grid ghost points: [[5,5,5],[5,5,5]] INFO (Carpet): Buffer zone counts (excluding ghosts): [0]: [[0,0,0],[0,0,0]] [1]: [[15,15,15],[15,15,15]] [2]: [[15,15,15],[15,15,15]] [3]: [[15,15,15],[15,15,15]] [4]: [[15,15,15],[15,15,15]] [5]: [[15,15,15],[15,15,15]] [6]: [[15,15,15],[15,15,15]] [7]: [[15,15,15],[15,15,15]] [8]: [[15,15,15],[15,15,15]] INFO (Carpet): Overlap zone counts: [0]: [[0,0,0],[0,0,0]] [1]: [[0,0,0],[0,0,0]] [2]: [[0,0,0],[0,0,0]] [3]: [[0,0,0],[0,0,0]] [4]: [[0,0,0],[0,0,0]] [5]: [[0,0,0],[0,0,0]] [6]: [[0,0,0],[0,0,0]] [7]: [[0,0,0],[0,0,0]] [8]: [[0,0,0],[0,0,0]] INFO (Carpet): Boundary specification for map 2: nboundaryzones: [[5,5,5],[5,5,5]] is_internal : [[0,0,0],[0,0,0]] is_staggered : [[0,0,0],[0,0,0]] shiftout : [[4,4,4],[1,4,0]] INFO (Carpet): CoordBase domain specification for map 2: physical extent: [-0.785398,-0.785398,51.3969] : [0,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent: [-1.9635,-1.9635,0] : [0,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent: [-3.92699,-3.92699,-85.6615] : [1.9635,3.92699,2278.6] ([5.89049,7.85398,2364.26]) base_spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Adapted domain specification for map 2: convergence factor: 2 convergence level : 0 physical extent : [-0.785398,-0.785398,51.3969] : [0,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent : [-1.9635,-1.9635,0] : [0,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent : [-3.92699,-3.92699,-85.6615] : [1.9635,3.92699,2278.6] ([5.89049,7.85398,2364.26]) spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Base grid specification for map 2: number of grid points : [16,21,139] number of coarse grid ghost points: [[5,5,5],[5,5,5]] INFO (Carpet): Buffer zone counts (excluding ghosts): [0]: [[0,0,0],[0,0,0]] [1]: [[15,15,15],[15,15,15]] [2]: [[15,15,15],[15,15,15]] [3]: [[15,15,15],[15,15,15]] [4]: [[15,15,15],[15,15,15]] [5]: [[15,15,15],[15,15,15]] [6]: [[15,15,15],[15,15,15]] [7]: [[15,15,15],[15,15,15]] [8]: [[15,15,15],[15,15,15]] INFO (Carpet): Overlap zone counts: [0]: [[0,0,0],[0,0,0]] [1]: [[0,0,0],[0,0,0]] [2]: [[0,0,0],[0,0,0]] [3]: [[0,0,0],[0,0,0]] [4]: [[0,0,0],[0,0,0]] [5]: [[0,0,0],[0,0,0]] [6]: [[0,0,0],[0,0,0]] [7]: [[0,0,0],[0,0,0]] [8]: [[0,0,0],[0,0,0]] INFO (Carpet): Boundary specification for map 3: nboundaryzones: [[5,5,5],[5,5,5]] is_internal : [[0,0,0],[0,0,0]] is_staggered : [[0,0,0],[0,0,0]] shiftout : [[1,4,4],[4,4,0]] INFO (Carpet): CoordBase domain specification for map 3: physical extent: [0,-0.785398,51.3969] : [0.785398,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent: [0,-1.9635,0] : [1.9635,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent: [-1.9635,-3.92699,-85.6615] : [3.92699,3.92699,2278.6] ([5.89049,7.85398,2364.26]) base_spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Adapted domain specification for map 3: convergence factor: 2 convergence level : 0 physical extent : [0,-0.785398,51.3969] : [0.785398,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent : [0,-1.9635,0] : [1.9635,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent : [-1.9635,-3.92699,-85.6615] : [3.92699,3.92699,2278.6] ([5.89049,7.85398,2364.26]) spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Base grid specification for map 3: number of grid points : [16,21,139] number of coarse grid ghost points: [[5,5,5],[5,5,5]] INFO (Carpet): Buffer zone counts (excluding ghosts): [0]: [[0,0,0],[0,0,0]] [1]: [[15,15,15],[15,15,15]] [2]: [[15,15,15],[15,15,15]] [3]: [[15,15,15],[15,15,15]] [4]: [[15,15,15],[15,15,15]] [5]: [[15,15,15],[15,15,15]] [6]: [[15,15,15],[15,15,15]] [7]: [[15,15,15],[15,15,15]] [8]: [[15,15,15],[15,15,15]] INFO (Carpet): Overlap zone counts: [0]: [[0,0,0],[0,0,0]] [1]: [[0,0,0],[0,0,0]] [2]: [[0,0,0],[0,0,0]] [3]: [[0,0,0],[0,0,0]] [4]: [[0,0,0],[0,0,0]] [5]: [[0,0,0],[0,0,0]] [6]: [[0,0,0],[0,0,0]] [7]: [[0,0,0],[0,0,0]] [8]: [[0,0,0],[0,0,0]] INFO (Carpet): Boundary specification for map 4: nboundaryzones: [[5,5,5],[5,5,5]] is_internal : [[0,0,0],[0,0,0]] is_staggered : [[0,0,0],[0,0,0]] shiftout : [[4,4,4],[1,4,0]] INFO (Carpet): CoordBase domain specification for map 4: physical extent: [-0.785398,-0.785398,51.3969] : [0,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent: [-1.9635,-1.9635,0] : [0,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent: [-3.92699,-3.92699,-85.6615] : [1.9635,3.92699,2278.6] ([5.89049,7.85398,2364.26]) base_spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Adapted domain specification for map 4: convergence factor: 2 convergence level : 0 physical extent : [-0.785398,-0.785398,51.3969] : [0,0.785398,2210.07] ([0.785398,1.5708,2158.67]) interior extent : [-1.9635,-1.9635,0] : [0,1.9635,2192.94] ([1.9635,3.92699,2192.94]) exterior extent : [-3.92699,-3.92699,-85.6615] : [1.9635,3.92699,2278.6] ([5.89049,7.85398,2364.26]) spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Base grid specification for map 4: number of grid points : [16,21,139] number of coarse grid ghost points: [[5,5,5],[5,5,5]] INFO (Carpet): Buffer zone counts (excluding ghosts): [0]: [[0,0,0],[0,0,0]] [1]: [[15,15,15],[15,15,15]] [2]: [[15,15,15],[15,15,15]] [3]: [[15,15,15],[15,15,15]] [4]: [[15,15,15],[15,15,15]] [5]: [[15,15,15],[15,15,15]] [6]: [[15,15,15],[15,15,15]] [7]: [[15,15,15],[15,15,15]] [8]: [[15,15,15],[15,15,15]] INFO (Carpet): Overlap zone counts: [0]: [[0,0,0],[0,0,0]] [1]: [[0,0,0],[0,0,0]] [2]: [[0,0,0],[0,0,0]] [3]: [[0,0,0],[0,0,0]] [4]: [[0,0,0],[0,0,0]] [5]: [[0,0,0],[0,0,0]] [6]: [[0,0,0],[0,0,0]] [7]: [[0,0,0],[0,0,0]] [8]: [[0,0,0],[0,0,0]] INFO (Carpet): Boundary specification for map 5: nboundaryzones: [[5,5,5],[5,5,5]] is_internal : [[0,0,0],[0,0,0]] is_staggered : [[0,0,0],[0,0,0]] shiftout : [[4,4,4],[4,4,0]] INFO (Carpet): CoordBase domain specification for map 5: physical extent: [-0.785398,-0.785398,51.3969] : [0.785398,0.785398,2210.07] ([1.5708,1.5708,2158.67]) interior extent: [-1.9635,-1.9635,0] : [1.9635,1.9635,2192.94] ([3.92699,3.92699,2192.94]) exterior extent: [-3.92699,-3.92699,-85.6615] : [3.92699,3.92699,2278.6] ([7.85398,7.85398,2364.26]) base_spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Adapted domain specification for map 5: convergence factor: 2 convergence level : 0 physical extent : [-0.785398,-0.785398,51.3969] : [0.785398,0.785398,2210.07] ([1.5708,1.5708,2158.67]) interior extent : [-1.9635,-1.9635,0] : [1.9635,1.9635,2192.94] ([3.92699,3.92699,2192.94]) exterior extent : [-3.92699,-3.92699,-85.6615] : [3.92699,3.92699,2278.6] ([7.85398,7.85398,2364.26]) spacing : [0.392699,0.392699,17.1323] INFO (Carpet): Base grid specification for map 5: number of grid points : [21,21,139] number of coarse grid ghost points: [[5,5,5],[5,5,5]] INFO (Carpet): Buffer zone counts (excluding ghosts): [0]: [[0,0,0],[0,0,0]] [1]: [[15,15,15],[15,15,15]] [2]: [[15,15,15],[15,15,15]] [3]: [[15,15,15],[15,15,15]] [4]: [[15,15,15],[15,15,15]] [5]: [[15,15,15],[15,15,15]] [6]: [[15,15,15],[15,15,15]] [7]: [[15,15,15],[15,15,15]] [8]: [[15,15,15],[15,15,15]] INFO (Carpet): Overlap zone counts: [0]: [[0,0,0],[0,0,0]] [1]: [[0,0,0],[0,0,0]] [2]: [[0,0,0],[0,0,0]] [3]: [[0,0,0],[0,0,0]] [4]: [[0,0,0],[0,0,0]] [5]: [[0,0,0],[0,0,0]] [6]: [[0,0,0],[0,0,0]] [7]: [[0,0,0],[0,0,0]] [8]: [[0,0,0],[0,0,0]] INFO (Carpet): Group and variable statistics: INFO (Carpet): There are 966 grid functions in 88 groups INFO (Carpet): There are 820 grid scalars in 78 groups INFO (Carpet): There are 111 1-dimensional grid arrays in 10 groups INFO (Carpet): There are 211 2-dimensional grid arrays in 18 groups INFO (Carpet): There are 3 3-dimensional grid arrays in 1 groups INFO (Carpet): (The number of variables counts all time levels) INFO (CarpetIOHDF5): I/O Method 'IOHDF5' registered: AMR output of grid variables to HDF5 files INFO (CarpetIOHDF5): Periodic AMR output requested for: GRID::x GRID::y GRID::z GRID::r ML_BSSN::phi WEYLSCAL4::Psi4r WEYLSCAL4::Psi4i WEYLSCAL4::curvIr WEYLSCAL4::curvIi WEYLSCAL4::curvJr WEYLSCAL4::curvJi INFO (CarpetIOHDF5): I/O Method 'IOHDF5_0D' registered: 0D AMR output of grid variables to HDF5 files INFO (CarpetIOHDF5): I/O Method 'IOHDF5_1D' registered: 1D AMR output of grid variables to HDF5 files INFO (CarpetIOHDF5): I/O Method 'IOHDF5_2D' registered: 2D AMR output of grid variables to HDF5 files INFO (CarpetIOHDF5): Periodic 2D AMR output requested for: GRID::x GRID::y GRID::z GRID::r ML_BSSN::phi ML_BSSN::trK ML_BSSN::alpha WEYLSCAL4::Psi4r WEYLSCAL4::Psi4i INFO (CarpetIOHDF5): I/O Method 'IOHDF5_3D' registered: 3D AMR output of grid variables to HDF5 files INFO (CarpetIOScalar): Periodic scalar output requested for: SYSTEMSTATISTICS::maxrss_mb SYSTEMSTATISTICS::majflt_mb SYSTEMSTATISTICS::arena_mb SYSTEMSTATISTICS::ordblks_mb SYSTEMSTATISTICS::hblks_mb SYSTEMSTATISTICS::hblkhd_mb SYSTEMSTATISTICS::uordblks_mb SYSTEMSTATISTICS::fordblks_mb SYSTEMSTATISTICS::keepcost_mb SYSTEMSTATISTICS::swap_used_mb INFO (CarpetIOASCII): I/O Method 'IOASCII_0D' registered: 0D AMR output of grid variables to ASCII files INFO (CarpetIOASCII): Periodic 0D AMR output requested for: CARPET::physical_time_per_hour CARPET::current_physical_time_per_hour CARPET::time_total CARPET::time_evolution CARPET::time_computing CARPET::time_communicating CARPET::time_io CARPET::evolution_steps_count CARPET::local_grid_points_per_second CARPET::total_grid_points_per_second CARPET::local_grid_point_updates_count CARPET::total_grid_point_updates_count CARPET::local_interior_points_per_second CARPET::total_interior_points_per_second CARPET::local_interior_point_updates_count CARPET::total_interior_point_updates_count CARPET::io_per_second CARPET::io_bytes_per_second CARPET::io_bytes_ascii_per_second CARPET::io_bytes_binary_per_second CARPET::io_count CARPET::io_bytes_count CARPET::io_bytes_ascii_count CARPET::io_bytes_binary_count CARPET::comm_per_second CARPET::comm_bytes_per_second CARPET::comm_count CARPET::comm_bytes_count CARPET::time_levels CARPET::current_walltime CARPET::syncs_count PUNCTURETRACKER::pt_loc_t[0] PUNCTURETRACKER::pt_loc_t[1] PUNCTURETRACKER::pt_loc_t[2] PUNCTURETRACKER::pt_loc_t[3] PUNCTURETRACKER::pt_loc_t[4] PUNCTURETRACKER::pt_loc_t[5] PUNCTURETRACKER::pt_loc_t[6] PUNCTURETRACKER::pt_loc_t[7] PUNCTURETRACKER::pt_loc_t[8] PUNCTURETRACKER::pt_loc_t[9] PUNCTURETRACKER::pt_loc_x[0] PUNCTURETRACKER::pt_loc_x[1] PUNCTURETRACKER::pt_loc_x[2] PUNCTURETRACKER::pt_loc_x[3] PUNCTURETRACKER::pt_loc_x[4] PUNCTURETRACKER::pt_loc_x[5] PUNCTURETRACKER::pt_loc_x[6] PUNCTURETRACKER::pt_loc_x[7] PUNCTURETRACKER::pt_loc_x[8] PUNCTURETRACKER::pt_loc_x[9] PUNCTURETRACKER::pt_loc_y[0] PUNCTURETRACKER::pt_loc_y[1] PUNCTURETRACKER::pt_loc_y[2] PUNCTURETRACKER::pt_loc_y[3] PUNCTURETRACKER::pt_loc_y[4] PUNCTURETRACKER::pt_loc_y[5] PUNCTURETRACKER::pt_loc_y[6] PUNCTURETRACKER::pt_loc_y[7] PUNCTURETRACKER::pt_loc_y[8] PUNCTURETRACKER::pt_loc_y[9] PUNCTURETRACKER::pt_loc_z[0] PUNCTURETRACKER::pt_loc_z[1] PUNCTURETRACKER::pt_loc_z[2] PUNCTURETRACKER::pt_loc_z[3] PUNCTURETRACKER::pt_loc_z[4] PUNCTURETRACKER::pt_loc_z[5] PUNCTURETRACKER::pt_loc_z[6] PUNCTURETRACKER::pt_loc_z[7] PUNCTURETRACKER::pt_loc_z[8] PUNCTURETRACKER::pt_loc_z[9] QUASILOCALMEASURES::qlm_time[0] QUASILOCALMEASURES::qlm_time[1] QUASILOCALMEASURES::qlm_time[2] QUASILOCALMEASURES::qlm_equatorial_circumference[0] QUASILOCALMEASURES::qlm_equatorial_circumference[1] QUASILOCALMEASURES::qlm_equatorial_circumference[2] QUASILOCALMEASURES::qlm_polar_circumference_0[0] QUASILOCALMEASURES::qlm_polar_circumference_0[1] QUASILOCALMEASURES::qlm_polar_circumference_0[2] QUASILOCALMEASURES::qlm_polar_circumference_pi_2[0] QUASILOCALMEASURES::qlm_polar_circumference_pi_2[1] QUASILOCALMEASURES::qlm_polar_circumference_pi_2[2] QUASILOCALMEASURES::qlm_area[0] QUASILOCALMEASURES::qlm_area[1] QUASILOCALMEASURES::qlm_area[2] QUASILOCALMEASURES::qlm_irreducible_mass[0] QUASILOCALMEASURES::qlm_irreducible_mass[1] QUASILOCALMEASURES::qlm_irreducible_mass[2] QUASILOCALMEASURES::qlm_radius[0] QUASILOCALMEASURES::qlm_radius[1] QUASILOCALMEASURES::qlm_radius[2] QUASILOCALMEASURES::qlm_spin_guess[0] QUASILOCALMEASURES::qlm_spin_guess[1] QUASILOCALMEASURES::qlm_spin_guess[2] QUASILOCALMEASURES::qlm_mass_guess[0] QUASILOCALMEASURES::qlm_mass_guess[1] QUASILOCALMEASURES::qlm_mass_guess[2] QUASILOCALMEASURES::qlm_killing_eigenvalue_re[0] QUASILOCALMEASURES::qlm_killing_eigenvalue_re[1] QUASILOCALMEASURES::qlm_killing_eigenvalue_re[2] QUASILOCALMEASURES::qlm_killing_eigenvalue_im[0] QUASILOCALMEASURES::qlm_killing_eigenvalue_im[1] QUASILOCALMEASURES::qlm_killing_eigenvalue_im[2] QUASILOCALMEASURES::qlm_spin[0] QUASILOCALMEASURES::qlm_spin[1] QUASILOCALMEASURES::qlm_spin[2] QUASILOCALMEASURES::qlm_npspin[0] QUASILOCALMEASURES::qlm_npspin[1] QUASILOCALMEASURES::qlm_npspin[2] QUASILOCALMEASURES::qlm_wsspin[0] QUASILOCALMEASURES::qlm_wsspin[1] QUASILOCALMEASURES::qlm_wsspin[2] QUASILOCALMEASURES::qlm_cvspin[0] QUASILOCALMEASURES::qlm_cvspin[1] QUASILOCALMEASURES::qlm_cvspin[2] QUASILOCALMEASURES::qlm_coordspinx[0] QUASILOCALMEASURES::qlm_coordspinx[1] QUASILOCALMEASURES::qlm_coordspinx[2] QUASILOCALMEASURES::qlm_coordspiny[0] QUASILOCALMEASURES::qlm_coordspiny[1] QUASILOCALMEASURES::qlm_coordspiny[2] QUASILOCALMEASURES::qlm_coordspinz[0] QUASILOCALMEASURES::qlm_coordspinz[1] QUASILOCALMEASURES::qlm_coordspinz[2] QUASILOCALMEASURES::qlm_mass[0] QUASILOCALMEASURES::qlm_mass[1] QUASILOCALMEASURES::qlm_mass[2] QUASILOCALMEASURES::qlm_adm_energy[0] QUASILOCALMEASURES::qlm_adm_energy[1] QUASILOCALMEASURES::qlm_adm_energy[2] QUASILOCALMEASURES::qlm_adm_momentum_x[0] QUASILOCALMEASURES::qlm_adm_momentum_x[1] QUASILOCALMEASURES::qlm_adm_momentum_x[2] QUASILOCALMEASURES::qlm_adm_momentum_y[0] QUASILOCALMEASURES::qlm_adm_momentum_y[1] QUASILOCALMEASURES::qlm_adm_momentum_y[2] QUASILOCALMEASURES::qlm_adm_momentum_z[0] QUASILOCALMEASURES::qlm_adm_momentum_z[1] QUASILOCALMEASURES::qlm_adm_momentum_z[2] QUASILOCALMEASURES::qlm_adm_angular_momentum_x[0] QUASILOCALMEASURES::qlm_adm_angular_momentum_x[1] QUASILOCALMEASURES::qlm_adm_angular_momentum_x[2] QUASILOCALMEASURES::qlm_adm_angular_momentum_y[0] QUASILOCALMEASURES::qlm_adm_angular_momentum_y[1] QUASILOCALMEASURES::qlm_adm_angular_momentum_y[2] QUASILOCALMEASURES::qlm_adm_angular_momentum_z[0] QUASILOCALMEASURES::qlm_adm_angular_momentum_z[1] QUASILOCALMEASURES::qlm_adm_angular_momentum_z[2] QUASILOCALMEASURES::qlm_w_energy[0] QUASILOCALMEASURES::qlm_w_energy[1] QUASILOCALMEASURES::qlm_w_energy[2] QUASILOCALMEASURES::qlm_w_momentum_x[0] QUASILOCALMEASURES::qlm_w_momentum_x[1] QUASILOCALMEASURES::qlm_w_momentum_x[2] QUASILOCALMEASURES::qlm_w_momentum_y[0] QUASILOCALMEASURES::qlm_w_momentum_y[1] QUASILOCALMEASURES::qlm_w_momentum_y[2] QUASILOCALMEASURES::qlm_w_momentum_z[0] QUASILOCALMEASURES::qlm_w_momentum_z[1] QUASILOCALMEASURES::qlm_w_momentum_z[2] QUASILOCALMEASURES::qlm_w_angular_momentum_x[0] QUASILOCALMEASURES::qlm_w_angular_momentum_x[1] QUASILOCALMEASURES::qlm_w_angular_momentum_x[2] QUASILOCALMEASURES::qlm_w_angular_momentum_y[0] QUASILOCALMEASURES::qlm_w_angular_momentum_y[1] QUASILOCALMEASURES::qlm_w_angular_momentum_y[2] QUASILOCALMEASURES::qlm_w_angular_momentum_z[0] QUASILOCALMEASURES::qlm_w_angular_momentum_z[1] QUASILOCALMEASURES::qlm_w_angular_momentum_z[2] INFO (CarpetIOASCII): I/O Method 'IOASCII_1D' registered: 1D AMR output of grid variables to ASCII files INFO (CarpetIOASCII): Periodic 1D AMR output requested for: ML_BSSN::phi ML_BSSN::trK WEYLSCAL4::Psi4r INFO (CarpetIOASCII): I/O Method 'IOASCII_2D' registered: 2D AMR output of grid variables to ASCII files INFO (CarpetIOASCII): I/O Method 'IOASCII_3D' registered: 3D AMR output of grid variables to ASCII files -------------------------------------------------------------------------------- INFO (Formaline): Writing tarballs with the Cactus sources into the directory "GW150914_28/cactus-source" INFO (MoL): Using Runge-Kutta 4 as the time integrator. INFO (SymBase): Symmetry on lower x-face: multipatch INFO (SymBase): Symmetry on upper x-face: multipatch INFO (SymBase): Symmetry on lower y-face: multipatch INFO (SymBase): Symmetry on upper y-face: multipatch INFO (SymBase): Symmetry on lower z-face: multipatch INFO (SymBase): Symmetry on upper z-face: multipatch INFO (MoL): The maximum number of evolved variables is 1404. 25 are registered. INFO (MoL): The maximum number of slow evolved variables is 1404. 0 are registered. INFO (MoL): The maximum number of constrained variables is 1404. 20 are registered. INFO (MoL): The maximum number of SandR variables is 1404. 0 are registered. INFO (MoL): The maximum number of evolved array variables is 1404. 0 are registered. INFO (MoL): The maximum number of constrained array variables is 1404. 0 are registered. INFO (MoL): The maximum number of SandR array variables is 1404. 0 are registered. INFO (MoL): The maximum size of any array variables is 0. INFO (Vectors): Testing vectorisation... [errors may result in segfaults] INFO (Vectors): 375/375 tests passed INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 0 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 1 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 0 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 1 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 0 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 1 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 0 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 1 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 0 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 1 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 0 INFO (CarpetRegrid2): Enforcing grid structure properties, iteration 1 INFO (Carpet): Grid structure (superregions, grid points): [0][0][0] exterior: [0,0,0] : [22,22,16] ([23,23,17] + PADDING) 8993 [1][0][0] exterior: [8,8,5] : [36,36,24] ([29,29,20] + PADDING) 16820 [2][0][0] exterior: [24,24,15] : [64,64,40] ([41,41,26] + PADDING) 43706 [3][0][0] exterior: [56,56,35] : [120,120,72] ([65,65,38] + PADDING) 160550 [4][0][0] exterior: [120,136,75] : [232,216,120] ([113,81,46] + PADDING) 421038 [5][0][0] exterior: [309,320,155] : [393,384,192] ([85,65,38] + PADDING) 209950 [6][0][0] exterior: [666,687,315] : [738,721,337] ([73,35,23] + PADDING) 58765 INFO (Carpet): Grid structure (superregions, coordinates): [0][0][0] exterior: [-188.455384615385,-188.455384615385,-85.6615384615385] : [188.455384615385,188.455384615385,188.455384615385] : [17.1323076923077,17.1323076923077,17.1323076923077] [1][0][0] exterior: [-119.926153846154,-119.926153846154,-42.8307692307692] : [119.926153846154,119.926153846154,119.926153846154] : [8.56615384615385,8.56615384615385,8.56615384615385] [2][0][0] exterior: [-85.6615384615385,-85.6615384615385,-21.4153846153846] : [85.6615384615384,85.6615384615384,85.6615384615385] : [4.28307692307692,4.28307692307692,4.28307692307692] [3][0][0] exterior: [-68.5292307692308,-68.5292307692308,-10.7076923076923] : [68.5292307692308,68.5292307692308,68.5292307692308] : [2.14153846153846,2.14153846153846,2.14153846153846] [4][0][0] exterior: [-59.9630769230769,-42.8307692307692,-5.35384615384615] : [59.9630769230769,42.8307692307692,42.8307692307692] : [1.07076923076923,1.07076923076923,1.07076923076923] [5][0][0] exterior: [-23.0215384615385,-17.1323076923077,-2.67692307692307] : [21.9507692307692,17.1323076923077,17.1323076923077] : [0.535384615384615,0.535384615384615,0.535384615384615] [6][0][0] exterior: [-10.1723076923077,-4.55076923076925,-1.33846153846154] : [9.10153846153844,4.55076923076922,4.55076923076923] : [0.267692307692308,0.267692307692308,0.267692307692308] INFO (Carpet): Grid structure (superregions, grid points): [0][1][0] exterior: [0,0,0] : [15,20,138] ([16,21,139] + PADDING) 46704 INFO (Carpet): Grid structure (superregions, coordinates): [0][1][0] exterior: [-1.96349540849362,-3.92699081698724,-85.6615384615385] : [3.92699081698724,3.92699081698724,2278.59692307692] : [0.392699081698724,0.392699081698724,17.1323076923077] INFO (Carpet): Grid structure (superregions, grid points): [0][2][0] exterior: [0,0,0] : [15,20,138] ([16,21,139] + PADDING) 46704 INFO (Carpet): Grid structure (superregions, coordinates): [0][2][0] exterior: [-3.92699081698724,-3.92699081698724,-85.6615384615385] : [1.96349540849362,3.92699081698724,2278.59692307692] : [0.392699081698724,0.392699081698724,17.1323076923077] INFO (Carpet): Grid structure (superregions, grid points): [0][3][0] exterior: [0,0,0] : [15,20,138] ([16,21,139] + PADDING) 46704 INFO (Carpet): Grid structure (superregions, coordinates): [0][3][0] exterior: [-1.96349540849362,-3.92699081698724,-85.6615384615385] : [3.92699081698724,3.92699081698724,2278.59692307692] : [0.392699081698724,0.392699081698724,17.1323076923077] INFO (Carpet): Grid structure (superregions, grid points): [0][4][0] exterior: [0,0,0] : [15,20,138] ([16,21,139] + PADDING) 46704 INFO (Carpet): Grid structure (superregions, coordinates): [0][4][0] exterior: [-3.92699081698724,-3.92699081698724,-85.6615384615385] : [1.96349540849362,3.92699081698724,2278.59692307692] : [0.392699081698724,0.392699081698724,17.1323076923077] INFO (Carpet): Grid structure (superregions, grid points): [0][5][0] exterior: [0,0,0] : [20,20,138] ([21,21,139] + PADDING) 61299 INFO (Carpet): Grid structure (superregions, coordinates): [0][5][0] exterior: [-3.92699081698724,-3.92699081698724,-85.6615384615385] : [3.92699081698724,3.92699081698724,2278.59692307692] : [0.392699081698724,0.392699081698724,17.1323076923077] INFO (Carpet): Global grid structure statistics: INFO (Carpet): GF: rhs: 33k active, 118k owned (+261%), 210k total (+78%), 64 steps/time INFO (Carpet): GF: vars: 305, pts: 100M active, 221M owned (+122%), 431M total (+95%), 1.0 comp/proc INFO (Carpet): GA: vars: 1126, pts: 2M active, 2M total (+0%) INFO (Carpet): Total required memory: 3.456 GByte (for GAs and currently active GFs) INFO (Carpet): Load balance: min avg max sdv max/avg-1 INFO (Carpet): Level 0: 16M 16M 16M 0M owned 0% INFO (Carpet): Level 1: 1M 1M 1M 0M owned 0% INFO (Carpet): Level 2: 5M 5M 5M 0M owned 0% INFO (Carpet): Level 3: 26M 26M 26M 0M owned 0% INFO (Carpet): Level 4: 104M 104M 104M 0M owned 0% INFO (Carpet): Level 5: 56M 56M 56M 0M owned 0% INFO (Carpet): Level 6: 14M 14M 14M 0M owned 0% INFO (CartGrid3D): Grid Spacings: INFO (CartGrid3D): dx=>1.7132308e+01 dy=>1.7132308e+01 dz=>1.7132308e+01 INFO (CartGrid3D): Computational Coordinates: INFO (CartGrid3D): x=>[-188.455,188.455] y=>[-188.455,188.455] z=>[-85.662,188.455] INFO (CartGrid3D): Indices of Physical Coordinates: INFO (CartGrid3D): x=>[0,22] y=>[0,22] z=>[0,16] WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' INFO (CartGrid3D): Grid Spacings: INFO (CartGrid3D): dx=>3.9269908e-01 dy=>3.9269908e-01 dz=>1.7132308e+01 INFO (CartGrid3D): Computational Coordinates: INFO (CartGrid3D): x=>[-1.963, 3.927] y=>[-3.927, 3.927] z=>[-85.662,2278.597] INFO (CartGrid3D): Indices of Physical Coordinates: INFO (CartGrid3D): x=>[0,15] y=>[0,20] z=>[0,138] WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' INFO (CartGrid3D): Grid Spacings: INFO (CartGrid3D): dx=>3.9269908e-01 dy=>3.9269908e-01 dz=>1.7132308e+01 INFO (CartGrid3D): Computational Coordinates: INFO (CartGrid3D): x=>[-3.927, 1.963] y=>[-3.927, 3.927] z=>[-85.662,2278.597] INFO (CartGrid3D): Indices of Physical Coordinates: INFO (CartGrid3D): x=>[0,15] y=>[0,20] z=>[0,138] WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' INFO (CartGrid3D): Grid Spacings: INFO (CartGrid3D): dx=>3.9269908e-01 dy=>3.9269908e-01 dz=>1.7132308e+01 INFO (CartGrid3D): Computational Coordinates: INFO (CartGrid3D): x=>[-1.963, 3.927] y=>[-3.927, 3.927] z=>[-85.662,2278.597] INFO (CartGrid3D): Indices of Physical Coordinates: INFO (CartGrid3D): x=>[0,15] y=>[0,20] z=>[0,138] WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' INFO (CartGrid3D): Grid Spacings: INFO (CartGrid3D): dx=>3.9269908e-01 dy=>3.9269908e-01 dz=>1.7132308e+01 INFO (CartGrid3D): Computational Coordinates: INFO (CartGrid3D): x=>[-3.927, 1.963] y=>[-3.927, 3.927] z=>[-85.662,2278.597] INFO (CartGrid3D): Indices of Physical Coordinates: INFO (CartGrid3D): x=>[0,15] y=>[0,20] z=>[0,138] WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRange: Range already registered for system 'cart3d' WARNING[L3,P0] (Cactus): CCTK_CoordRegisterRangePhysIndex: Range already registered for system 'cart3d' INFO (CartGrid3D): Grid Spacings: INFO (CartGrid3D): dx=>3.9269908e-01 dy=>3.9269908e-01 dz=>1.7132308e+01 INFO (CartGrid3D): Computational Coordinates: INFO (CartGrid3D): x=>[-3.927, 3.927] y=>[-3.927, 3.927] z=>[-85.662,2278.597] INFO (CartGrid3D): Indices of Physical Coordinates: INFO (CartGrid3D): x=>[0,20] y=>[0,20] z=>[0,138] INFO (AHFinderDirect): setting up AHFinderDirect data structures INFO (AHFinderDirect): to search for 3 horizons on 1 processor INFO (AHFinderDirect): constructing full sphere patch system INFO (AHFinderDirect): at origin (4.46154,0,0) INFO (AHFinderDirect): with 18 angular zones per right angle INFO (AHFinderDirect): ==> 2166 nominal, 3174 ghosted angular grid points INFO (AHFinderDirect): constructing full sphere patch system INFO (AHFinderDirect): at origin (-5.53846,0,0) INFO (AHFinderDirect): with 18 angular zones per right angle INFO (AHFinderDirect): ==> 2166 nominal, 3174 ghosted angular grid points INFO (AHFinderDirect): constructing full sphere patch system INFO (AHFinderDirect): at origin (0,0,0) INFO (AHFinderDirect): with 18 angular zones per right angle INFO (AHFinderDirect): ==> 2166 nominal, 3174 ghosted angular grid points WARNING level 0 from host panther process 0 in thorn CoordinatesSymmetry, file /system/user/crangano/einstein_toolkit/Cactus/configs/sim/build/CoordinatesSymmetry/apply.c:665: -> Cannot apply symmetry boundary zones in the lower x direction, since there seem to be more symmetry zones than interior zones Simfactory Done at date: Wed 10 Sep 2025 05:10:09 PM CEST