Simulation name: tnisan12
Running simulation tnisan12
Preparing:
Checking:
/home2/bka/simulations/tnisan12/output-0000-active
newton.ege.edu.tr
Mon 13 Apr 2020 10:02:04 PM +03
Environment:
Starting:
INFO (Cactus): Increasing logging level from 0 to 3
INFO (Cactus): Increasing logging level from 0 to 3
INFO (Cactus): Increasing logging level from 0 to 3
--------------------------------------------------------------------------------

       10                                  
  1   0101       ************************  
  01  1010 10      The Cactus Code V4.2.3    
 1010 1101 011      www.cactuscode.org     
  1001 100101    ************************  
    00010101                               
     100011     (c) Copyright The Authors  
      0100      GNU Licensed. No Warranty  
      0101                                 
--------------------------------------------------------------------------------

Cactus version:    4.2.3
Compile date:      Apr 12 2020 (18:53:33)
INFO (Cactus): Increasing logging level from 0 to 3
INFO (Cactus): Increasing logging level from 0 to 3
INFO (Cactus): Increasing logging level from 0 to 3
Run date:          Apr 13 2020 (22:02:05+0300)
Run host:          newton.ege.edu.tr (pid=229921)
Working directory: /home2/bka/simulations/tnisan12/output-0000
Executable:        /home2/bka/simulations/tnisan12/SIMFACTORY/exe/cactus_sim
Parameter file:    /home2/bka/simulations/tnisan12/output-0000/tnisan12.par
--------------------------------------------------------------------------------

Activating thorn Cactus...Success -> active implementation Cactus
Activation requested for 
--->Boundary CartGrid3D CoordBase Fortran InitBase IOUtil LocalReduce SymBase Time AEILocalInterp MoL Slab SpaceMask Carpet CarpetInterp CarpetInterp2 CarpetIOASCII CarpetIOHDF5 CarpetIOScalar CarpetLib CarpetIOBasic CarpetReduce CarpetSlab CarpetMask LoopControl CarpetEvolutionMask NaNChecker TerminationTrigger TimerReport ADMbase ADMcoupling ADMmacros CoordGauge StaticConformal ReflectionSymmetry Constants TmunuBase HydroBase  EOS_Omni GRHydro SummationByParts GenericFD NewRad ML_BSSN ML_BSSN_Helper ML_ADMConstraints Dissipation GRHydro_Analysis TempPool SystemStatistics GRHydro_InitData WeylScal4 Multipole SphericalSurface CoordBase CarpetRegrid2 RotatingSymmetry180 ReflectionSymmetry Meudon_Bin_NS QuasiLocalMeasures AHFinderDirect SetMask_SphericalSurface <---
Warning: thorn CoordBase already scheduled for activation
Warning: thorn ReflectionSymmetry already scheduled for activation
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 Vectors
Thorn CarpetLib requests automatic activation of CycleClock
Thorn GRHydro requests automatic activation of EOS_Polytrope
Thorn LoopControl requests automatic activation of hwloc
Thorn Meudon_Bin_NS requests automatic activation of LORENE
Thorn QuasiLocalMeasures requests automatic activation of LAPACK
Thorn QuasiLocalMeasures requests automatic activation of TGRtensor
Thorn EOS_Polytrope requests automatic activation of EOS_Base
Thorn HDF5 requests automatic activation of zlib
Thorn LAPACK requests automatic activation of BLAS
Thorn LORENE requests automatic activation of GSL
Activating thorn ADMbase...Success -> active implementation ADMBase
Activating thorn ADMcoupling...Success -> active implementation ADMCoupling
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 CarpetEvolutionMask...Success -> active implementation CarpetEvolutionMask
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 CarpetMask...Success -> active implementation CarpetMask
Activating thorn CarpetReduce...Success -> active implementation reduce
Activating thorn CarpetRegrid2...Success -> active implementation CarpetRegrid2
Activating thorn CarpetSlab...Success -> active implementation Hyperslab
Activating thorn CartGrid3D...Success -> active implementation grid
Activating thorn Constants...Success -> active implementation Constants
Activating thorn CoordBase...Success -> active implementation CoordBase
Activating thorn CoordGauge...Success -> active implementation CoordGauge
Activating thorn CycleClock...Success -> active implementation CycleClock
Activating thorn Dissipation...Success -> active implementation Dissipation
Activating thorn EOS_Base...Success -> active implementation EOS_Base
Activating thorn EOS_Omni...Success -> active implementation EOS_Omni
Activating thorn EOS_Polytrope...Success -> active implementation EOS_2d_Polytrope
Activating thorn Fortran...Success -> active implementation Fortran
Activating thorn GenericFD...Success -> active implementation GenericFD
Activating thorn GRHydro...Success -> active implementation GRHydro
Activating thorn GRHydro_Analysis...Success -> active implementation GRHydro_Analysis
Activating thorn GRHydro_InitData...Success -> active implementation GRHydro_init_data
Activating thorn GSL...Success -> active implementation GSL
Activating thorn HDF5...Success -> active implementation HDF5
Activating thorn hwloc...Success -> active implementation hwloc
Activating thorn HydroBase...Success -> active implementation HydroBase
Activating thorn InitBase...Success -> active implementation InitBase
Activating thorn IOUtil...Success -> active implementation IO
Activating thorn LAPACK...Success -> active implementation LAPACK
Activating thorn LocalReduce...Success -> active implementation LocalReduce
Activating thorn LoopControl...Success -> active implementation LoopControl
Activating thorn LORENE...Success -> active implementation LORENE
Activating thorn Meudon_Bin_NS...Success -> active implementation Meudon_Bin_NS
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 QuasiLocalMeasures...Success -> active implementation QuasiLocalMeasures
Activating thorn ReflectionSymmetry...Success -> active implementation ReflectionSymmetry
Activating thorn RotatingSymmetry180...Success -> active implementation RotatingSymmetry180
Activating thorn SetMask_SphericalSurface...Success -> active implementation SetMask_SphericalSurface
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 TempPool...Success -> active implementation TempPool
Activating thorn TerminationTrigger...Success -> active implementation TerminationTrigger
Activating thorn TGRtensor...Success -> active implementation TGRtensor
Activating thorn Time...Success -> active implementation time
Activating thorn TimerReport...Success -> active implementation timerreport
Activating thorn Timers...Success -> active implementation Timers
Activating thorn TmunuBase...Success -> active implementation TmunuBase
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
      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
      Timers::Timer_Startup: Prepare hierarchical timers
      Carpet::Driver_Startup: Startup routine
      IOUtil::IOUtil_Startup: Startup routine
      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
      AEILocalInterp::AEILocalInterp_U_Startup: register CCTK_InterpLocalUniform() interpolation operators
      EOS_Polytrope::EOS_Polytrope_Startup: Setup the polytropic EOS
      GRHydro::GRHydro_RegisterMask: Register the hydro masks
      HydroBase::HydroBase_StartUp: Startup banner
      CarpetIOASCII::CarpetIOASCIIStartup: [global] Startup routine
      LocalReduce::LocalReduce_Startup: Startup routine
      CarpetIOBasic::CarpetIOBasicStartup: [global] 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
      CarpetIOHDF5::CarpetIOHDF5_Startup: 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
      TerminationTrigger::TerminationTrigger_StartSignalHandler: Start signal handler
      CarpetIOScalar::CarpetIOScalarStartup: [global] Startup routine
      Vectors::Vectors_Startup: Print startup message
      WeylScal4::WeylScal4_Startup: [meta] create banner

  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
      EOS_Omni::EOS_Omni_Startup: [global] Set up conversion factors and other fun stuff
      GRHydro::GRHydro_Startup: Startup banner
      GRHydro::GRHydro_ClearLastMoLPostStep: [global] Initialize InLastMoLPostStep to zero
      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
        GRHydro::GRHydro_Register: Register variables for 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
      SpaceMask::MaskSym: [global] Set grid symmetries for mask
      SpaceMask::MaskSym_emask: [global] Set grid symmetries for emask (compatibility mode)
      GROUP SymBase_Wrapper: Wrapper group for SymBase
        GROUP SymmetryRegister: Register your symmetries here
          CartGrid3D::RegisterSymmetryBoundaries: [meta] Register symmetry boundaries
          ML_ADMConstraints::ML_ADMConstraints_RegisterSymmetries: [meta] register symmetries
          ML_BSSN::ML_BSSN_RegisterSymmetries: [meta] register symmetries
          ReflectionSymmetry::ReflectionSymmetry_Register: Register reflection symmetry boundaries
          RotatingSymmetry180::Rot180_RegisterSymmetry: Register symmetry boundaries
          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
      CarpetMask::CarpetSurfaceParamCheck: [global] Check parameters
      CarpetRegrid2::CarpetRegrid2_ParamCheck: Check parameters
      CartGrid3D::ParamCheck_CartGrid3D: Check coordinates for CartGrid3D
      Dissipation::dissipation_paramcheck: Check dissipation parameters for consistency
      Fortran::CheckFortranParameters: Test whether Fortran parameters work correctly
      GRHydro::GRHydro_ParamCheck: Check parameters
      GRHydro_InitData::GRHydro_InitData_CheckParameters: 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
      RotatingSymmetry180::Rot180_CheckTensorTypes: Check tensor type definitions for consistency
      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]
        SpaceMask::MaskZero: Initialise mask to zero
        GROUP EvolutionMaskBase_SetupEvolutionMask: Set up the mask function
          CarpetEvolutionMask::EvolutionMaskBase_InitEvolutionMask: [global] [loop-local] Initialise the mask function
          GROUP SetupEvolutionMask: Set up the weight function (schedule other routines in here)
            CarpetEvolutionMask::CarpetEvolutionMaskSetup: [global] [loop-singlemap] Set up the mask function for the restriction regions
        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)
              CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
              CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
            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
        Dissipation::setup_epsdis: Setup spatially varying dissipation
        SpaceMask::MaskOne: Set mask to one
        GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
        GROUP GRHydro_PrimitiveBoundaries: Apply boundary conditions to all primitives
          GRHydro::GRHydro_SelectPrimitiveBoundaries: [level] Select primitive variables for boundary conditions
          GROUP GRHydro_ApplyPrimitiveBCs: Apply boundary conditions to all primitive variables
            GROUP BoundaryConditions: Execute all boundary conditions
              Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
              CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        GROUP HydroBase_ExcisionMaskSetup: Set up hydro excision mask
          HydroBase::HydroBase_InitExcisionMask: Initialize hydro excision mask to 'no excision everywhere'
          SetMask_SphericalSurface::SetMask_SphericalSurface: Set hydro_excision_mask according to spherical surface information
        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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
            WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
            GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s)
        GRHydro::GRHydro_SetupMask: Initialize the atmosphere mask
      [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: Set up ranges for spatial 3D Cartesian coordinates (on all grids)
        GROUP EvolutionMaskBase_SetupEvolutionMask: Set up the mask function
          CarpetEvolutionMask::EvolutionMaskBase_InitEvolutionMask: [global] [loop-local] Initialise the mask function
          GROUP SetupEvolutionMask: Set up the weight function (schedule other routines in here)
            CarpetEvolutionMask::CarpetEvolutionMaskSetup: [global] [loop-singlemap] Set up the mask function for the restriction regions
        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
        Dissipation::dissipation_basegrid: Ensure that there are enough ghost zones
        GRHydro::GRHydro_Reset_Execution_Flags: [global] Initially set execution flags to 'YEAH, Execute'!
        GRHydro::GRHydro_InitSymBound: Schedule symmetries and check shift state
        GRHydro::GRHydro_WENOSetup: [global] Coefficients for WENO reconstruction
        GRHydro::reset_GRHydro_C2P_failed: Initialise the mask function that contains the points where C2P has failed (at BASEGRID)
        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
        SpaceMask::MaskZero: Initialise mask to zero
        SpaceMask::MaskOne: Set old style mask to one
        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)
              CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
              CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
            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 timestep based on Courant condition (courant_static)
        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
        GRHydro::GRHydro_EOSHandle: [global] Set the EOS number
        CarpetIOASCII::CarpetIOASCIIInit: [global] Initialisation routine
        CarpetIOBasic::CarpetIOBasicInit: [global] Initialisation routine
        CarpetIOHDF5::CarpetIOHDF5_Init: [global] Initialisation routine
        CarpetIOScalar::CarpetIOScalarInit: [global] Initialisation routine
        GRHydro::GRHydro_Rho_Minima_Setup: Set up minimum for the rest-mass density in the atmosphere (before intial data)
        GRHydro::GRHydro_SetupMask: Initialize the atmosphere mask
        GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
        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
        GROUP HydroBase_Initial: HydroBase initial data group
          GROUP GRHydro_Initial: GRHydro initial data group
          HydroBase::HydroBase_Bvec_zero: Set magnetic field to 0
          GROUP HydroBase_ExcisionMaskSetup: Set up hydro excision mask
            HydroBase::HydroBase_InitExcisionMask: Initialize hydro excision mask to 'no excision everywhere'
            SetMask_SphericalSurface::SetMask_SphericalSurface: Set hydro_excision_mask according to spherical surface information
          Meudon_Bin_NS::Meudon_Bin_NS_initialise: Set up binary neutron star initial data
        GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
        GRHydro_Analysis::GRHydroAnalysis_Init: [global] Initialize symmetries in GRHydro_Analysis
        GROUP ADMBase_PostInitial: Schedule group for modifying the ADM initial data, such as e.g. adding noise
        GRHydro::GRHydro_InitialAtmosphereReset: Use mask to enforce atmosphere at initial time
        ML_BSSN::ML_BSSN_InitialADMBase1Everywhere: ML_BSSN_InitialADMBase1Everywhere
        ML_BSSN::ML_BSSN_InitialADMBase2Interior: ML_BSSN_InitialADMBase2Interior
        ML_BSSN::ML_BSSN_InitialADMBase2BoundaryScalar: ML_BSSN_InitialADMBase2BoundaryScalar
        ML_BSSN_Helper::ML_BSSN_ExtrapolateGammas: Extrapolate Gammas and time derivatives of lapse and shift
        MoL::MoL_StartLoop: [level] Initialise the step size control
        QuasiLocalMeasures::qlm_init: [global] Initialise quasi-local calculations
        GROUP HydroBase_Prim2ConInitial: Recover the conservative variables from the primitive variables
          GRHydro::Primitive2ConservativeCellsM: Convert initial data given in primive variables to conserved variables - MHD version
        GROUP SetTmunu: Calculate the stress-energy tensor
          TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
          GROUP AddToTmunu: Add to the stress-energy tensor here
            GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
      [CCTK_POSTINITIAL]
        CarpetIOHDF5::CarpetIOHDF5_CloseFiles: [global] Close all filereader input files
        GRHydro::GRHydro_Scalar_Setup: Set up and check scalars for efficiency
        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
          GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
          GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
          GROUP HydroBase_PostStep: Post step tasks for hydro thorns
            GROUP GRHydro_PostStep: Post step tasks for GRHydro
            GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
              GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
              GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
            if (GRHydro::InLastMoLPostStep)
              GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
            if (GRHydro::InLastMoLPostStep)
              GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
                GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
                GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                  GROUP BoundaryConditions: Execute all boundary conditions
                    Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                    CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
              GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
              GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
                if (GRHydro::execute_MoL_PostStep)
                  GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
              GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
              if (GRHydro::execute_MoL_Step)
                GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
              if (GRHydro::execute_MoL_PostStep)
                GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
          GROUP SetTmunu: Group for calculating the stress-energy tensor
            TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
            GROUP AddToTmunu: Add to the stress-energy tensor here
              GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                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
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                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
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP WeylScal4_psi4_calc_4th_group: WeylScal4_psi4_calc_4th
            WeylScal4::WeylScal4_psi4_calc_4th: WeylScal4_psi4_calc_4th
            GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
              WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
              GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        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
          GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
          GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
          GROUP HydroBase_PostStep: Post step tasks for hydro thorns
            GROUP GRHydro_PostStep: Post step tasks for GRHydro
            GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
              GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
              GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
            if (GRHydro::InLastMoLPostStep)
              GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
            if (GRHydro::InLastMoLPostStep)
              GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
                GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
                GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                  GROUP BoundaryConditions: Execute all boundary conditions
                    Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                    CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
              GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
              GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
                if (GRHydro::execute_MoL_PostStep)
                  GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
              GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
              if (GRHydro::execute_MoL_Step)
                GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
              if (GRHydro::execute_MoL_PostStep)
                GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
          GROUP SetTmunu: Group for calculating the stress-energy tensor
            TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
            GROUP AddToTmunu: Add to the stress-energy tensor here
              GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
            WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
            GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
      [CCTK_POSTPOSTINITIAL]
        GRHydro::GRHydro_Rho_Minima_Setup_Final: Set the value of the rest-mass density of the atmosphere which will be used during the evolution
        GRHydro::GRHydro_InitialAtmosphereResetM: Use mask to enforce atmosphere at initial time
        GROUP Con2Prim: Convert from conservative to primitive variables (might be redundant)
          if (GRHydro::execute_MoL_Step)
            GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
          if (GRHydro::execute_MoL_PostStep)
            GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
        GROUP SetTmunu: Calculate the stress-energy tensor
          TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
          GROUP AddToTmunu: Add to the stress-energy tensor here
            GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
        GROUP ADMConstraintsGroup: Evaluate ADM constraints, and perform symmetry boundary conditions
      [CCTK_POSTSTEP]
        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)
        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
        GRHydro::GRHydro_RefinementLevel: Calculate current refinement level (for the check of the C2P mask)
        GRHydro::check_GRHydro_C2P_failed: Check the mask function that contains the points where C2P has failed and report an error in case a failure is found
        SetMask_SphericalSurface::SetMask_SphericalSurface: [global] [loop-local] Set hydro_excision_mask according to spherical surface information
        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
        GROUP HydroBase_ExcisionHasBeenSet: Group to schedule thorns changing the mask before and thorns using the mask after
        SpaceMask::CheckMask: Ensure that all mask values are legal
        Dissipation::setup_epsdis: Setup spatially varying dissipation
        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)
              CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
              CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
            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
    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: Set up ranges for spatial 3D Cartesian coordinates (on all grids)
        GROUP EvolutionMaskBase_SetupEvolutionMask: Set up the mask function
          CarpetEvolutionMask::EvolutionMaskBase_InitEvolutionMask: [global] [loop-local] Initialise the mask function
          GROUP SetupEvolutionMask: Set up the weight function (schedule other routines in here)
            CarpetEvolutionMask::CarpetEvolutionMaskSetup: [global] [loop-singlemap] Set up the mask function for the restriction regions
        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
        Dissipation::dissipation_basegrid: Ensure that there are enough ghost zones
        GRHydro::GRHydro_Reset_Execution_Flags: [global] Initially set execution flags to 'YEAH, Execute'!
        GRHydro::GRHydro_InitSymBound: Schedule symmetries and check shift state
        GRHydro::GRHydro_WENOSetup: [global] Coefficients for WENO reconstruction
        GRHydro::reset_GRHydro_C2P_failed: Initialise the mask function that contains the points where C2P has failed (at BASEGRID)
        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
        SpaceMask::MaskZero: Initialise mask to zero
        SpaceMask::MaskOne: Set old style mask to one
        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)
              CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
              CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
            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 timestep based on Courant condition (courant_static)
        WeylScal4::WeylScal4_CheckBoundaries: [meta] check boundaries treatment
      [CCTK_RECOVER_VARIABLES]
        IOUtil::IOUtil_RecoverGH: [level] Checkpoint recovery routine
      [CCTK_POST_RECOVER_VARIABLES]
        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)
              CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
              CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
            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
        GRHydro::GRHydro_EOSHandle: [global] Set the EOS number
        GRHydro::GRHydroCopyIntegerMask: Initialize the real valued atmosphere mask after checkpoint recovery
        GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
        GRHydro_Analysis::GRHydroAnalysis_Init: [global] Initialize symmetries in GRHydro_Analysis
        GROUP HydroBase_ExcisionMaskSetup: Set up hydro excision mask
          HydroBase::HydroBase_InitExcisionMask: Initialize hydro excision mask to 'no excision everywhere'
          SetMask_SphericalSurface::SetMask_SphericalSurface: Set hydro_excision_mask according to spherical surface information
        GROUP MoL_PostStep: Ensure that everything is correct after recovery
          ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions
          GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
          GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
          GROUP HydroBase_PostStep: Post step tasks for hydro thorns
            GROUP GRHydro_PostStep: Post step tasks for GRHydro
            GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
              GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
              GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
            if (GRHydro::InLastMoLPostStep)
              GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
            if (GRHydro::InLastMoLPostStep)
              GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
                GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
                GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                  GROUP BoundaryConditions: Execute all boundary conditions
                    Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                    CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
              GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
              GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
                if (GRHydro::execute_MoL_PostStep)
                  GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
              GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
            GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
              if (GRHydro::execute_MoL_Step)
                GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
              if (GRHydro::execute_MoL_PostStep)
                GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
          GROUP SetTmunu: Group for calculating the stress-energy tensor
            TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
            GROUP AddToTmunu: Add to the stress-energy tensor here
              GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
        GROUP GRHydroAnalysisComputeQuadrupole: HydroComputeQuadrupole group
          GRHydro_Analysis::GRHydroAnalysisComputeQuadrupole_local: [global] [loop-local] GRHydroAnalysisComputeQuadrupole local
          GRHydro_Analysis::GRHydroAnalysisComputeQuadrupole_global: [global] GRHydroAnalysisComputeQuadrupole global
        GROUP GRHydroAnalysisComputeDerivativeQuadrupole: HydroComputeDerivativeQuadrupole group
          GRHydro_Analysis::GRHydroAnalysisComputeDerivativeQuadrupole_local: [global] [loop-local] GRHydroAnalysisComputeDerivativeQuadrupole local
          GRHydro_Analysis::GRHydroAnalysisComputeDerivativeQuadrupole_global: [global] GRHydroAnalysisComputeDerivativeQuadrupole global
        GROUP GRHydroAnalysisComputeCylDiagnostic: GRHydroAnalysisComputeCylDiagnostic group
          GRHydro_Analysis::GRHydroAnalysisComputeCylDiagnostic_local: [global] [loop-local] GRHydroAnalysisComputeCylDiagnostic local
          GRHydro_Analysis::GRHydroAnalysisComputeCylDiagnostic_global: [global] GRHydroAnalysisComputeCylDiagnostic global
        GROUP GRHydroAnalysisComputeMagneticDiagnostic: GRHydroAnalysisComputeMagneticDiagnostic group
          GRHydro_Analysis::GRHydroAnalysisComputeMagneticDiagnostic_local: [global] [loop-local] GRHydroAnalysisComputeMagneticDiagnostic local
          GRHydro_Analysis::GRHydroAnalysisComputeMagneticDiagnostic_global: [global] GRHydroAnalysisComputeMagneticDiagnostic global
        GROUP GRHydroAnalysisComputeMassDiagnostic: GRHydroAnalysisComputeMassDiagnostic group
          GRHydro_Analysis::GRHydroAnalysisComputeMassDiagnostic_local: [global] [loop-local] GRHydroAnalysisComputeMassDiagnostic local
          GRHydro_Analysis::GRHydroAnalysisComputeMassDiagnostic_global: [global] GRHydroAnalysisComputeMassDiagnostic global
        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
          ML_BSSN_Helper::ML_BSSN_NewRad: Apply NewRad boundary conditions to RHS
        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
        TimerReport::zzz_TimerReport_Output: [global] Print the timer report
  endif
  Output grid variables

  do loop over timesteps
    [CCTK_PREREGRID]
    Change grid hierarchy
    [CCTK_POSTREGRID]
      SpaceMask::MaskZero: Initialise mask to zero
      GROUP EvolutionMaskBase_SetupEvolutionMask: Set up the mask function
        CarpetEvolutionMask::EvolutionMaskBase_InitEvolutionMask: [global] [loop-local] Initialise the mask function
        GROUP SetupEvolutionMask: Set up the weight function (schedule other routines in here)
          CarpetEvolutionMask::CarpetEvolutionMaskSetup: [global] [loop-singlemap] Set up the mask function for the restriction regions
      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)
            CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
            CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
          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
      Dissipation::setup_epsdis: Setup spatially varying dissipation
      SpaceMask::MaskOne: Set mask to one
      GROUP GRHydro_PrimitiveBoundaries: Apply boundary conditions to all primitives
        GRHydro::GRHydro_SelectPrimitiveBoundaries: [level] Select primitive variables for boundary conditions
        GROUP GRHydro_ApplyPrimitiveBCs: Apply boundary conditions to all primitive variables
          GROUP BoundaryConditions: Execute all boundary conditions
            Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
            CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
      GROUP HydroBase_ExcisionMaskSetup: Set up hydro excision mask
        HydroBase::HydroBase_InitExcisionMask: Initialize hydro excision mask to 'no excision everywhere'
        SetMask_SphericalSurface::SetMask_SphericalSurface: Set hydro_excision_mask according to spherical surface information
      GRHydro::GRHydro_SetupMask: Initialize the atmosphere mask
      GROUP MoL_PostStep: Ensure that everything is correct after regridding
        ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions
        GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
        GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
        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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
        GROUP HydroBase_PostStep: Post step tasks for hydro thorns
          GROUP GRHydro_PostStep: Post step tasks for GRHydro
          GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
            GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
            GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
          if (GRHydro::InLastMoLPostStep)
            GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
          if (GRHydro::InLastMoLPostStep)
            GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
              GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
              GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
            GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
            GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
              if (GRHydro::execute_MoL_PostStep)
                GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
            GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
            if (GRHydro::execute_MoL_Step)
              GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
            if (GRHydro::execute_MoL_PostStep)
              GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
        GROUP SetTmunu: Group for calculating the stress-energy tensor
          TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
          GROUP AddToTmunu: Add to the stress-energy tensor here
            GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
        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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
      AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s)
      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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
          WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
          GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
            GROUP BoundaryConditions: Execute all boundary conditions
              Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
              CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
      GRHydro::reset_GRHydro_C2P_failed: Reset the mask function that contains the points where C2P has failed (at PRESTEP)
      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
            GRHydro::GRHydro_Scalar_Setup: Set up and check scalars for efficiency
          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
                GROUP HydroBase_RHS: Groups for scheduling tasks for calculating RHS of hydro variables
                  if (GRHydro::execute_MoL_Step)
                    GROUP GRHydroRHS: Calculate the update terms
                      GRHydro::SourceTerms: Source term calculation
                      GRHydro::GRHydroStartLoop: [level] Set the flux_direction variable
                      while (GRHydro::flux_direction)
                        GROUP FluxTerms: Calculation of intercell fluxes
                          GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
                          GRHydro::Reconstruct: Reconstruct the functions at the cell boundaries
                          GRHydro::Riemann: Solve the local Riemann problems - MHD version
                          GRHydro::UpdateCalcul: Calculate the update term from the fluxes
                          GRHydro::GRHydroAdvanceLoop: [level] Decrement the flux_direction variable
                      end while
                      GRHydro::GRHydroUpdateAtmosphereMask: Alter the update terms if inside the atmosphere region
                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
                ML_BSSN_Helper::ML_BSSN_NewRad: Apply NewRad boundary conditions to RHS
              GROUP MoL_PostRHS: Modify RHS functions
                Dissipation::dissipation_add: Add Kreiss-Oliger dissipation to the right hand sides
              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
                GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
                GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
                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
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  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
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  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
                GROUP HydroBase_PostStep: Post step tasks for hydro thorns
                  GROUP GRHydro_PostStep: Post step tasks for GRHydro
                  GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
                    GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
                    GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
                      GROUP BoundaryConditions: Execute all boundary conditions
                        Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                        CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                        ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                        RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                        RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                      Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
                  GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
                  if (GRHydro::InLastMoLPostStep)
                    GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
                  if (GRHydro::InLastMoLPostStep)
                    GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
                      GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
                      GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                        GROUP BoundaryConditions: Execute all boundary conditions
                          Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                          CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                          ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                          RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                          RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                        Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
                  GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
                    GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
                    GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
                      if (GRHydro::execute_MoL_PostStep)
                        GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
                    GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
                      GROUP BoundaryConditions: Execute all boundary conditions
                        Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                        CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                        ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                        RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                        RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                      Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
                  GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
                    if (GRHydro::execute_MoL_Step)
                      GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
                    if (GRHydro::execute_MoL_PostStep)
                      GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
                GROUP SetTmunu: Group for calculating the stress-energy tensor
                  TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
                  GROUP AddToTmunu: Add to the stress-energy tensor here
                    GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
                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
                    ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                    RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                    RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                  Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
              GRHydro::GRHydro_ClearLastMoLPostStep: [level] Reset InLastMoLPostStep to zero
              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
      GRHydro::sync_GRHydro_C2P_failed: Syncronise the mask function that contains the points where C2P has failed
      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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              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
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        GROUP WeylScal4_psi4_calc_4th_group: WeylScal4_psi4_calc_4th
          WeylScal4::WeylScal4_psi4_calc_4th: WeylScal4_psi4_calc_4th
          GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
            WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
            GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
    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
        GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
        GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
        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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
        GROUP HydroBase_PostStep: Post step tasks for hydro thorns
          GROUP GRHydro_PostStep: Post step tasks for GRHydro
          GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
            GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
            GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
          if (GRHydro::InLastMoLPostStep)
            GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
          if (GRHydro::InLastMoLPostStep)
            GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
              GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
              GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
            GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
            GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
              if (GRHydro::execute_MoL_PostStep)
                GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
            GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
            if (GRHydro::execute_MoL_Step)
              GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
            if (GRHydro::execute_MoL_PostStep)
              GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
        GROUP SetTmunu: Group for calculating the stress-energy tensor
          TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
          GROUP AddToTmunu: Add to the stress-energy tensor here
            GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
        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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
          WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
          GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
            GROUP BoundaryConditions: Execute all boundary conditions
              Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
              CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
    [CCTK_POSTSTEP]
      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)
      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
      GRHydro::GRHydro_RefinementLevel: Calculate current refinement level (for the check of the C2P mask)
      GRHydro::check_GRHydro_C2P_failed: Check the mask function that contains the points where C2P has failed and report an error in case a failure is found
      SetMask_SphericalSurface::SetMask_SphericalSurface: [global] [loop-local] Set hydro_excision_mask according to spherical surface information
      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
      GROUP HydroBase_ExcisionHasBeenSet: Group to schedule thorns changing the mask before and thorns using the mask after
      SpaceMask::CheckMask: Ensure that all mask values are legal
      Dissipation::setup_epsdis: Setup spatially varying dissipation
      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)
            CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
            CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
          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
    if (checkpoint)
      [CCTK_CHECKPOINT]
      CarpetIOHDF5::CarpetIOHDF5_EvolutionCheckpoint: [meta] Evolution checkpoint routine
      TimerReport::zzz_TimerReport_Checkpoint: [global] Print the timer report
    endif
    if (analysis)
      [CCTK_ANALYSIS]
      CarpetLib::CarpetLib_printtimestats: [global] Print timing statistics if desired
      CarpetLib::CarpetLib_printmemstats: [global] Print memory statistics if desired
      GROUP GRHydroAnalysisComputeQuadrupole: HydroComputeQuadrupole group
        GRHydro_Analysis::GRHydroAnalysisComputeQuadrupole_local: [global] [loop-local] GRHydroAnalysisComputeQuadrupole local
        GRHydro_Analysis::GRHydroAnalysisComputeQuadrupole_global: [global] GRHydroAnalysisComputeQuadrupole global
      GROUP GRHydroAnalysisComputeDerivativeQuadrupole: HydroComputeDerivativeQuadrupole group
        GRHydro_Analysis::GRHydroAnalysisComputeDerivativeQuadrupole_local: [global] [loop-local] GRHydroAnalysisComputeDerivativeQuadrupole local
        GRHydro_Analysis::GRHydroAnalysisComputeDerivativeQuadrupole_global: [global] GRHydroAnalysisComputeDerivativeQuadrupole global
      GROUP GRHydroAnalysisComputeCylDiagnostic: GRHydroAnalysisComputeCylDiagnostic group
        GRHydro_Analysis::GRHydroAnalysisComputeCylDiagnostic_local: [global] [loop-local] GRHydroAnalysisComputeCylDiagnostic local
        GRHydro_Analysis::GRHydroAnalysisComputeCylDiagnostic_global: [global] GRHydroAnalysisComputeCylDiagnostic global
      GROUP GRHydroAnalysisComputeMagneticDiagnostic: GRHydroAnalysisComputeMagneticDiagnostic group
        GRHydro_Analysis::GRHydroAnalysisComputeMagneticDiagnostic_local: [global] [loop-local] GRHydroAnalysisComputeMagneticDiagnostic local
        GRHydro_Analysis::GRHydroAnalysisComputeMagneticDiagnostic_global: [global] GRHydroAnalysisComputeMagneticDiagnostic global
      GROUP GRHydroAnalysisComputeMassDiagnostic: GRHydroAnalysisComputeMassDiagnostic group
        GRHydro_Analysis::GRHydroAnalysisComputeMassDiagnostic_local: [global] [loop-local] GRHydroAnalysisComputeMassDiagnostic local
        GRHydro_Analysis::GRHydroAnalysisComputeMassDiagnostic_global: [global] GRHydroAnalysisComputeMassDiagnostic global
      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
        ML_BSSN_Helper::ML_BSSN_NewRad: Apply NewRad boundary conditions to RHS
      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
      TimerReport::zzz_TimerReport_Output: [global] Print the timer report
    endif
    Output grid variables
    enddo

  Termination routines
    [CCTK_TERMINATE]
      CarpetIOHDF5::CarpetIOHDF5_TerminationCheckpoint: [meta] Termination checkpoint routine
      GRHydro::GRHydro_WENOShutdown: [global] Deallocate WENO coefficients
      LoopControl::lc_statistics_terminate: [meta] Output LoopControl statistics
      MoL::MoL_FreeIndexArrays: Free the MoL bookkeeping index arrays
      TimerReport::zzz_TimerReport_Output: [global] Print the timer report

  Shutdown routines
    [CCTK_SHUTDOWN]
      Timers::Timer_Shutdown: Prepare hierarchical timers

  Routines run after changing the grid hierarchy:
    [CCTK_POSTREGRID]
      SpaceMask::MaskZero: Initialise mask to zero
      GROUP EvolutionMaskBase_SetupEvolutionMask: Set up the mask function
        CarpetEvolutionMask::EvolutionMaskBase_InitEvolutionMask: [global] [loop-local] Initialise the mask function
        GROUP SetupEvolutionMask: Set up the weight function (schedule other routines in here)
          CarpetEvolutionMask::CarpetEvolutionMaskSetup: [global] [loop-singlemap] Set up the mask function for the restriction regions
      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)
            CarpetMask::CarpetExcludedSetup: [global] [loop-local] Set up the weight function for the excluded regions
            CarpetMask::CarpetSurfaceSetup: [global] [loop-local] Set up the weight function for the excluded spherical surfaces
          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
      Dissipation::setup_epsdis: Setup spatially varying dissipation
      SpaceMask::MaskOne: Set mask to one
      GROUP GRHydro_PrimitiveBoundaries: Apply boundary conditions to all primitives
        GRHydro::GRHydro_SelectPrimitiveBoundaries: [level] Select primitive variables for boundary conditions
        GROUP GRHydro_ApplyPrimitiveBCs: Apply boundary conditions to all primitive variables
          GROUP BoundaryConditions: Execute all boundary conditions
            Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
            CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
      GROUP HydroBase_ExcisionMaskSetup: Set up hydro excision mask
        HydroBase::HydroBase_InitExcisionMask: Initialize hydro excision mask to 'no excision everywhere'
        SetMask_SphericalSurface::SetMask_SphericalSurface: Set hydro_excision_mask according to spherical surface information
      GRHydro::GRHydro_SetupMask: Initialize the atmosphere mask
      GROUP MoL_PostStep: Ensure that everything is correct after regridding
        ML_BSSN::ML_BSSN_SelectBoundConds: [level] select boundary conditions
        GRHydro::GRHydro_RefinementLevel: Calculate current refinement level
        GRHydro::GRHydro_SetLastMoLPostStep: [level] Set grid scalar InLastMoLPostStep if this is the last MoL PostStep call
        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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for 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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          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
        GROUP HydroBase_PostStep: Post step tasks for hydro thorns
          GROUP GRHydro_PostStep: Post step tasks for GRHydro
          GROUP GRHydro_AtmosphereMaskBoundaries: Apply boundary conditions to primitives
            GRHydro::GRHydro_SelectAtmosphereMaskBoundaries: [level] Select atmosphere mask for boundary conditions
            GROUP GRHydro_ApplyAtmosphereMaskBCs: Apply boundary conditions to real-valued atmosphere mask
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GRHydro::GRHydroPostSyncAtmosphereMask: Set integer atmosphere mask from synchronized real atmosphere mask
          if (GRHydro::InLastMoLPostStep)
            GRHydro::GRHydro_AtmosphereResetM: Reset the atmosphere - MHD version
          if (GRHydro::InLastMoLPostStep)
            GROUP GRHydro_PrimitiveInitialGuessesBoundaries: Apply boundary conditions to those primitives used as initial guesses
              GRHydro::GRHydro_SelectPrimitiveInitialGuessesBoundaries: [level] Select initial guess primitive variables for boudary conditions
              GROUP GRHydro_ApplyPrimitiveInitialGuessBCs: Apply boundary conditions to initial guess primitive variables
                GROUP BoundaryConditions: Execute all boundary conditions
                  Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                  CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                  ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                  RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                  RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
                Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP HydroBase_Boundaries: HydroBase-internal Boundary conditions group
            GROUP Do_GRHydro_Boundaries: GRHydro Boundary conditions group
            GROUP HydroBase_Select_Boundaries: Group to schedule the boundary condition functions
              if (GRHydro::execute_MoL_PostStep)
                GRHydro::GRHydro_Bound: [level] Select GRHydro boundary conditions
            GROUP HydroBase_ApplyBCs: Apply the boundary conditions of HydroBase
              GROUP BoundaryConditions: Execute all boundary conditions
                Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
                CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
                ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
                RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
                RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
              Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
          GROUP HydroBase_Con2Prim: Convert from conservative to primitive variables
            if (GRHydro::execute_MoL_Step)
              GRHydro::GRHydro_SqrtSpatialDeterminant: Calculate sdetg
            if (GRHydro::execute_MoL_PostStep)
              GRHydro::Con2Prim: Convert back to primitive variables (general) - MHD version
        GROUP SetTmunu: Group for calculating the stress-energy tensor
          TmunuBase::TmunuBase_ZeroTmunu: Initialise the stress-energy tensor to zero
          GROUP AddToTmunu: Add to the stress-energy tensor here
            GRHydro::GRHydro_TmunuM: Compute the energy-momentum tensor - MHD version
        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
            ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
            RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
            RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
          Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
      AHFinderDirect::AHFinderDirect_maybe_do_masks: set mask(s) based on apparent horizon position(s)
      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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            Boundary::Boundary_ClearSelection: [level] Unselect all grid variables for boundary conditions
        GROUP WeylScal4_psi4_calc_4th_bc_group: WeylScal4_psi4_calc_4th
          WeylScal4::WeylScal4_psi4_calc_4th_SelectBCs: [level] WeylScal4_psi4_calc_4th_SelectBCs
          GROUP WeylScal4_psi4_calc_4th_ApplyBCs: Apply BCs for groups set in WeylScal4_psi4_calc_4th
            GROUP BoundaryConditions: Execute all boundary conditions
              Boundary::Boundary_ApplyPhysicalBCs: Apply all requested local physical boundary conditions
              CartGrid3D::CartGrid3D_ApplyBC: Apply symmetry boundary conditions
              ReflectionSymmetry::ReflectionSymmetry_Apply: Apply reflection symmetries
              RotatingSymmetry180::Rot180_ComputeLevelExtent: [level] Compute extent of level
              RotatingSymmetry180::Rot180_ApplyBC: Apply 180 degree rotational symmetry boundary condition
            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:
   processes 0-5: model 0 "world"
INFO (Carpet): Multi-Model: This is process 0, model 0 "world"
INFO (CarpetLib): Process startup time was 1.87 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: 0.417698 ns per clock tick (2.39408 GHz)
INFO (Vectors): Using vector size 2 for architecture SSE2 (64-bit precision)
--------------------------------------------------------------------------------
AMR driver provided by Carpet
--------------------------------------------------------------------------------
HydroBase: Let it flow.
--------------------------------------------------------------------------------
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
--------------------------------------------------------------------------------
AMR info I/O provided by CarpetIOBasic
--------------------------------------------------------------------------------
ML_ADMConstraints
--------------------------------------------------------------------------------
ML_BSSN
--------------------------------------------------------------------------------
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
--------------------------------------------------------------------------------
MoL: Generalized time integration.
--------------------------------------------------------------------------------
AMR scalar I/O provided by CarpetIOScalar
--------------------------------------------------------------------------------
WeylScal4
--------------------------------------------------------------------------------

INFO (Carpet): MPI is enabled
INFO (Carpet): Carpet is running on 6 processes
INFO (Carpet): This is process 0
INFO (Carpet): OpenMP is enabled
INFO (Carpet): This process contains 2 threads, this is thread 0
INFO (Carpet): There are 12 threads in total
INFO (Carpet): There are 2 threads per process
INFO (Carpet): This process runs on host newton.ege.edu.tr, pid=229921
INFO (Carpet): This process runs on 24 cores: 0-23
INFO (Carpet): Thread 0 runs on 24 cores: 0-23
INFO (Carpet): Thread 1 runs on 24 cores: 0-23
INFO (Carpet): This simulation is running in 3 dimensions
INFO (Carpet): Boundary specification for map 0:
   nboundaryzones: [[3,3,3],[3,3,3]]
   is_internal   : [[0,0,0],[0,0,0]]
   is_staggered  : [[0,0,0],[0,0,0]]
   shiftout      : [[1,0,1],[0,0,0]]
INFO (Carpet): CoordBase domain specification for map 0:
   physical extent: [0,-720,0] : [720,720,720]   ([720,1440,720])
   interior extent: [0,-672,0] : [672,672,672]   ([672,1344,672])
   exterior extent: [-144,-816,-144] : [816,816,816]   ([960,1632,960])
   base_spacing   : [48,48,48]
INFO (Carpet): Adapted domain specification for map 0:
   convergence factor: 2
   convergence level : 0
   physical extent   : [0,-720,0] : [720,720,720]   ([720,1440,720])
   interior extent   : [0,-672,0] : [672,672,672]   ([672,1344,672])
   exterior extent   : [-144,-816,-144] : [816,816,816]   ([960,1632,960])
   spacing           : [48,48,48]
INFO (Carpet): Base grid specification for map 0:
   number of grid points             : [21,35,21]
   number of coarse grid ghost points: [[3,3,3],[3,3,3]]
INFO (Carpet): Buffer zone counts (excluding ghosts):
   [0]: [[0,0,0],[0,0,0]]
   [1]: [[9,9,9],[9,9,9]]
   [2]: [[9,9,9],[9,9,9]]
   [3]: [[9,9,9],[9,9,9]]
   [4]: [[9,9,9],[9,9,9]]
   [5]: [[9,9,9],[9,9,9]]
   [6]: [[9,9,9],[9,9,9]]
   [7]: [[9,9,9],[9,9,9]]
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]]
INFO (Carpet): Group and variable statistics:
INFO (Carpet):    There are 1180 grid functions in 166 groups
INFO (Carpet):    There are 683 grid scalars in 93 groups
INFO (Carpet):    There are 130 1-dimensional grid arrays in 13 groups
INFO (Carpet):    There are 208 2-dimensional grid arrays in 17 groups
INFO (Carpet):    There are 1 3-dimensional grid arrays in 1 groups
INFO (Carpet):    (The number of variables counts all time levels)
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
   QUASILOCALMEASURES::qlm_chi[0]
   QUASILOCALMEASURES::qlm_chi[1]
   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]
   SPHERICALSURFACE::sf_active[0]
   SPHERICALSURFACE::sf_active[1]
   SPHERICALSURFACE::sf_active[2]
   SPHERICALSURFACE::sf_valid[0]
   SPHERICALSURFACE::sf_valid[1]
   SPHERICALSURFACE::sf_valid[2]
   SPHERICALSURFACE::sf_area[0]
   SPHERICALSURFACE::sf_area[1]
   SPHERICALSURFACE::sf_area[2]
   SPHERICALSURFACE::sf_mean_radius[0]
   SPHERICALSURFACE::sf_mean_radius[1]
   SPHERICALSURFACE::sf_mean_radius[2]
   SPHERICALSURFACE::sf_centroid_x[0]
   SPHERICALSURFACE::sf_centroid_x[1]
   SPHERICALSURFACE::sf_centroid_x[2]
   SPHERICALSURFACE::sf_centroid_y[0]
   SPHERICALSURFACE::sf_centroid_y[1]
   SPHERICALSURFACE::sf_centroid_y[2]
   SPHERICALSURFACE::sf_centroid_z[0]
   SPHERICALSURFACE::sf_centroid_z[1]
   SPHERICALSURFACE::sf_centroid_z[2]
   SPHERICALSURFACE::sf_quadrupole_xx[0]
   SPHERICALSURFACE::sf_quadrupole_xx[1]
   SPHERICALSURFACE::sf_quadrupole_xx[2]
   SPHERICALSURFACE::sf_quadrupole_xy[0]
   SPHERICALSURFACE::sf_quadrupole_xy[1]
   SPHERICALSURFACE::sf_quadrupole_xy[2]
   SPHERICALSURFACE::sf_quadrupole_xz[0]
   SPHERICALSURFACE::sf_quadrupole_xz[1]
   SPHERICALSURFACE::sf_quadrupole_xz[2]
   SPHERICALSURFACE::sf_quadrupole_yy[0]
   SPHERICALSURFACE::sf_quadrupole_yy[1]
   SPHERICALSURFACE::sf_quadrupole_yy[2]
   SPHERICALSURFACE::sf_quadrupole_yz[0]
   SPHERICALSURFACE::sf_quadrupole_yz[1]
   SPHERICALSURFACE::sf_quadrupole_yz[2]
   SPHERICALSURFACE::sf_quadrupole_zz[0]
   SPHERICALSURFACE::sf_quadrupole_zz[1]
   SPHERICALSURFACE::sf_quadrupole_zz[2]
   SPHERICALSURFACE::sf_min_radius[0]
   SPHERICALSURFACE::sf_min_radius[1]
   SPHERICALSURFACE::sf_min_radius[2]
   SPHERICALSURFACE::sf_max_radius[0]
   SPHERICALSURFACE::sf_max_radius[1]
   SPHERICALSURFACE::sf_max_radius[2]
   SPHERICALSURFACE::sf_min_x[0]
   SPHERICALSURFACE::sf_min_x[1]
   SPHERICALSURFACE::sf_min_x[2]
   SPHERICALSURFACE::sf_min_y[0]
   SPHERICALSURFACE::sf_min_y[1]
   SPHERICALSURFACE::sf_min_y[2]
   SPHERICALSURFACE::sf_min_z[0]
   SPHERICALSURFACE::sf_min_z[1]
   SPHERICALSURFACE::sf_min_z[2]
   SPHERICALSURFACE::sf_max_x[0]
   SPHERICALSURFACE::sf_max_x[1]
   SPHERICALSURFACE::sf_max_x[2]
   SPHERICALSURFACE::sf_max_y[0]
   SPHERICALSURFACE::sf_max_y[1]
   SPHERICALSURFACE::sf_max_y[2]
   SPHERICALSURFACE::sf_max_z[0]
   SPHERICALSURFACE::sf_max_z[1]
   SPHERICALSURFACE::sf_max_z[2]
   SPHERICALSURFACE::sf_radius[0]
   SPHERICALSURFACE::sf_radius[1]
   SPHERICALSURFACE::sf_radius[2]
   SPHERICALSURFACE::sf_origin_x[0]
   SPHERICALSURFACE::sf_origin_x[1]
   SPHERICALSURFACE::sf_origin_x[2]
   SPHERICALSURFACE::sf_origin_y[0]
   SPHERICALSURFACE::sf_origin_y[1]
   SPHERICALSURFACE::sf_origin_y[2]
   SPHERICALSURFACE::sf_origin_z[0]
   SPHERICALSURFACE::sf_origin_z[1]
   SPHERICALSURFACE::sf_origin_z[2]
   SPHERICALSURFACE::sf_origin_theta[0]
   SPHERICALSURFACE::sf_origin_theta[1]
   SPHERICALSURFACE::sf_origin_theta[2]
   SPHERICALSURFACE::sf_origin_phi[0]
   SPHERICALSURFACE::sf_origin_phi[1]
   SPHERICALSURFACE::sf_origin_phi[2]
   SPHERICALSURFACE::sf_delta_theta[0]
   SPHERICALSURFACE::sf_delta_theta[1]
   SPHERICALSURFACE::sf_delta_theta[2]
   SPHERICALSURFACE::sf_delta_phi[0]
   SPHERICALSURFACE::sf_delta_phi[1]
   SPHERICALSURFACE::sf_delta_phi[2]
INFO (CarpetIOASCII): I/O Method 'IOASCII_1D' registered: 1D AMR output of grid variables to ASCII files
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 (CarpetIOHDF5): I/O Method 'IOHDF5' registered: AMR output of grid variables to HDF5 files
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:
   ADMBASE::gxx
   ADMBASE::gxy
   ADMBASE::gxz
   ADMBASE::gyy
   ADMBASE::gyz
   ADMBASE::gzz
   ADMBASE::kxx
   ADMBASE::kxy
   ADMBASE::kxz
   ADMBASE::kyy
   ADMBASE::kyz
   ADMBASE::kzz
   ADMBASE::alp
   ADMBASE::betax
   ADMBASE::betay
   ADMBASE::betaz
   HYDROBASE::rho
   HYDROBASE::press
   HYDROBASE::eps
   HYDROBASE::vel[0]
   HYDROBASE::vel[1]
   HYDROBASE::vel[2]
   ML_BSSN::H
INFO (CarpetIOHDF5): I/O Method 'IOHDF5_3D' registered: 3D AMR output of grid variables to HDF5 files
INFO (CarpetIOHDF5): Periodic 3D AMR output requested for:
   ADMBASE::gxx
   ADMBASE::gxy
   ADMBASE::gxz
   ADMBASE::gyy
   ADMBASE::gyz
   ADMBASE::gzz
   ADMBASE::alp
   ADMBASE::betax
   ADMBASE::betay
   ADMBASE::betaz
   HYDROBASE::rho
   HYDROBASE::press
   HYDROBASE::eps
   HYDROBASE::vel[0]
   HYDROBASE::vel[1]
   HYDROBASE::vel[2]
   ML_BSSN::H
INFO (CarpetIOScalar): Periodic scalar output requested for:
   ADMBASE::gxx
   ADMBASE::gxy
   ADMBASE::gxz
   ADMBASE::gyy
   ADMBASE::gyz
   ADMBASE::gzz
   ADMBASE::alp
   ADMBASE::betax
   ADMBASE::betay
   ADMBASE::betaz
   GRHYDRO::dens
   HYDROBASE::rho
   HYDROBASE::press
   HYDROBASE::eps
   HYDROBASE::vel[0]
   HYDROBASE::vel[1]
   HYDROBASE::vel[2]
   HYDROBASE::w_lorentz
   ML_BSSN::H
   ML_BSSN::M1
   ML_BSSN::M2
   ML_BSSN::M3
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_WRAGH, routine ML_BSSN_Helper::ML_BSSN_ParamCompat
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:11:
  ->[0m Forcing ML_BSSN::initial_boundary_condition="extrapolate-gammas" because ML_BSSN::my_initial_boundary_condition="extrapolate-gammas"
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_WRAGH, routine ML_BSSN_Helper::ML_BSSN_ParamCompat
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:26:
  ->[0m Forcing ML_BSSN::rhs_boundary_condition="NewRad" because ML_BSSN::my_rhs_boundary_condition="NewRad"
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_WRAGH, routine ML_BSSN_Helper::ML_BSSN_ParamCompat
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:46:
  ->[0m Forcing ML_BSSN::epsDiss=0.0 because ML_BSSN::apply_dissipation="never"
INFO (MoL): Using Runge-Kutta 4 as the time integrator.
INFO (SymBase): Symmetry on lower x-face: rotating_symmetry_180
INFO (SymBase): Symmetry on lower z-face: reflection_symmetry
INFO (MoL): The maximum number of evolved variables is 1423. 33 are registered.
INFO (MoL): The maximum number of slow evolved variables is 1423. 0 are registered.
INFO (MoL): The maximum number of constrained variables is 1423. 40 are registered.
INFO (MoL): The maximum number of SandR variables is 1423. 0 are registered.
INFO (MoL): The maximum number of evolved array variables is 1423. 0 are registered.
INFO (MoL): The maximum number of constrained array variables is 1423. 0 are registered.
INFO (MoL): The maximum number of SandR array variables is 1423. 0 are registered.
INFO (MoL): The maximum size of any array variables is 0.
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_PARAMCHECK, routine ML_BSSN_Helper::ML_BSSN_ParamCheck
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:147:
  ->[0m Parameter ML_BSSN::my_initial_data is outdated; please update the parameter file. Do not use this parameter, and set up initial conditions via ADMBase as usual.
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_PARAMCHECK, routine ML_BSSN_Helper::ML_BSSN_ParamCheck
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:154:
  ->[0m Parameter ML_BSSN::my_initial_boundary_condition is outdated; please update the parameter file. Do not use this parameter, and set up initial boundary conditions as usual.
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_PARAMCHECK, routine ML_BSSN_Helper::ML_BSSN_ParamCheck
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:161:
  ->[0m Parameter ML_BSSN::my_rhs_boundary_condition is outdated; please update the parameter file. Do not use this parameter, and set up RHS boundary conditions as usual.
[1mWARNING level 1 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_PARAMCHECK, routine ML_BSSN_Helper::ML_BSSN_ParamCheck
  in thorn ML_BSSN_Helper, file /home2/bka/NewCactus/Cactus/configs/sim/build/ML_BSSN_Helper/Parameters.c:168:
  ->[0m Parameter ML_BSSN::my_boundary_condition is outdated; please update the parameter file. Do not use this parameter, and set up RHS boundary conditions as usual.
INFO (Vectors): Testing vectorisation... [errors may result in segfaults]
INFO (Vectors): 373/373 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] : [20,34,20]   ([21,35,21] + PADDING) 15435
   [1][0][0]   exterior: [3,2,3] : [38,66,38]   ([36,65,36] + PADDING) 84240
   [2][0][0]   exterior: [9,34,9] : [48,102,46]   ([40,69,38] + PADDING) 104880
   [3][0][0]   exterior: [21,101,21] : [62,171,59]   ([42,71,39] + PADDING) 116298
   [4][0][0]   exterior: [45,235,45] : [90,309,85]   ([46,75,41] + PADDING) 141450
   [5][0][0]   exterior: [93,503,93] : [146,585,137]   ([54,83,45] + PADDING) 201690
   [6][0][0]   exterior: [189,1039,189] : [259,1137,241]   ([71,99,53] + PADDING) 372537
INFO (Carpet): Grid structure (superregions, coordinates):
   [0][0][0]   exterior: [-144,-816,-144] : [816,816,816] : [48,48,48]
   [1][0][0]   exterior: [-72,-768,-72] : [768,768,768] : [24,24,24]
   [2][0][0]   exterior: [-36,-408,-36] : [432,408,408] : [12,12,12]
   [3][0][0]   exterior: [-18,-210,-18] : [228,210,210] : [6,6,6]
   [4][0][0]   exterior: [-9,-111,-9] : [126,111,111] : [3,3,3]
   [5][0][0]   exterior: [-4.5,-61.5,-4.5] : [75,61.5,61.5] : [1.5,1.5,1.5]
   [6][0][0]   exterior: [-2.25,-36.75,-2.25] : [50.25,36.75,36.75] : [0.75,0.75,0.75]
INFO (Carpet): Global grid structure statistics:
INFO (Carpet): GF: rhs: 133k active, 240k owned (+80%), 389k total (+62%), 127 steps/time
INFO (Carpet): GF: vars: 385, pts: 186M active, 341M owned (+84%), 602M total (+77%), 1.0 comp/proc
INFO (Carpet): GA: vars: 964, pts: 4M active, 4M total (+0%)
INFO (Carpet): Total required memory: 4.830 GByte (for GAs and currently active GFs)
INFO (Carpet): Load balance:  min     avg     max     sdv     max/avg-1
INFO (Carpet): Level  0:       0M      0M      1M      0M owned     32%
INFO (Carpet): Level  1:       3M      3M      4M      0M owned     12%
INFO (Carpet): Level  2:       5M      6M      6M      0M owned      8%
INFO (Carpet): Level  3:       6M      6M      7M      1M owned      9%
INFO (Carpet): Level  4:       7M      8M      8M      1M owned      7%
INFO (Carpet): Level  5:      10M     11M     12M      1M owned      7%
INFO (Carpet): Level  6:      21M     22M     22M      1M owned      3%
INFO (CartGrid3D): Grid Spacings:
INFO (CartGrid3D): dx=>4.8000000e+01  dy=>4.8000000e+01  dz=>4.8000000e+01
INFO (CartGrid3D): Computational Coordinates:
INFO (CartGrid3D): x=>[-144.000,816.000]  y=>[-816.000,816.000]  z=>[-144.000,816.000]
INFO (CartGrid3D): Indices of Physical Coordinates:
INFO (CartGrid3D): x=>[0,20]  y=>[0,34]  z=>[0,20]
INFO (AHFinderDirect): setting up AHFinderDirect data structures
INFO (AHFinderDirect):            to search for 1 horizon on 6 processors
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
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 12 (courant_static)
INFO (GRHydro): Trying to get EOS handles
INFO (GRHydro): Trying to get EOS handles
INFO (GRHydro): GRHydro will use the Hybrid equation of state.
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
INFO (GRHydro_Analysis): RotatingSymmetry180 is active
INFO (GRHydro_Analysis): ReflectionSymmetry::reflection_z==yes is active
INFO (GRHydro_Analysis): Computation will not be masked for atmosphere
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 6 (courant_static)
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 3 (courant_static)
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 1.5 (courant_static)
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 0.75 (courant_static)
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 0.375 (courant_static)
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
INFO (TerminationTrigger): Reminding you every 60 minutes about remaining walltime
INFO (Time): Timestep set to 0.1875 (courant_static)
INFO (GRHydro): Setting up the atmosphere mask: all points are not_atmosphere
INFO (Meudon_Bin_NS): Setting up LORENE Bin_NS initial data
INFO (Meudon_Bin_NS): Setting up coordinates
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the Hybrid equation of state.
INFO (Meudon_Bin_NS): Meudon_Bin_NS will use the 3 eos handle
INFO (Meudon_Bin_NS): Reading from file "/home2/bka/NewCactus/Cactus/sly17_1740km.d"

Binary system read in file : 
---------------------------- 

Binary system
=============

Orbital angular velocity : 2174.963748668 rad/s

Coordinate separation between the two stellar centers : 40 km
Absolute coordinate X of the rotation axis : 0 km

Star 1 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: -20 km
Absolute abscidia of the barycenter of the baryon density : -19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 0 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : 4.079533173346e-17  -0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         1.472832167127e-16  -0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : -2.448342901938e-17  -9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.6660137354997  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.219252633397  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : 0.03977154389422  -0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : -2.928846009084e-17  -0.1148500062012  0
  ... shift_auto part of it [c] :            -2.928846009084e-17  -0.1481577930012  0
  ... shift_comp part of it [c] :            0  0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : -5.288875007668e-17  0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : -0.0002903012420709  -1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : -0.001455159918294  1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : -0.0001787605371047  1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : -0.0002027239662923  -1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08

Star 2 : 
======   

Relativistic star
-----------------
Number of domains occupied by the star : 1
Equation of state : 
1 Enforce thermo consistency
EOS of class Eos_CompOSE.
Built from file ../../Eos_tables/eos_sly4_pp.d
Authors : # 
Number of points in file : 2000


Central enthalpy : 0.2760718612463 c^2
Central proper baryon density : 5.844907527355 x 0.1 fm^-3
Central proper energy density : 6.535821686178 rho_nuc c^2
Central pressure : 1.167430759615 rho_nuc c^2

Regularization index of the gravitational potential : k_div = 0
Central lapse N :      0.5537748585168
Central value of A^2 : 2.728133661432

Coordinate equatorial radius (phi=0) a1 =    8.831162892781 km
Coordinate equatorial radius (phi=pi/2) a2 = 8.567123624868 km
Coordinate equatorial radius (phi=pi):       8.879658609282 km
Coordinate polar radius a3 =                 8.617675187336 km
Axis ratio a2/a1 = 0.9701014157344  a3/a1 = 0.9758256406277

Baryon mass :        1.69947366017 M_sol
Gravitational mass : 1.442326954541 M_sol

Star in a binary system
-----------------------
irrotational configuration
Absolute abscidia of the stellar center: 20 km
Absolute abscidia of the barycenter of the baryon density : 19.99343191461 km
d_tilde : 4.522488774655
Orientation with respect to the absolute frame : 3.14159265359 rad
Central value of gam_euler : 1.004108563801
Central u_euler (U^X, U^Y, U^Z) [c] : -4.079533173346e-17  0.05471320467336  0
Central d_psi (X, Y, Z) [c] :         -1.472832167127e-16  0.1975308555793  0
Central vel. / co-orb. (W^X, W^Y, W^Z) [c] : 2.448342901938e-17  9.29406911598e-05  0
Max vel. / co-orb. (W^X, W^Y, W^Z) [c] : 0.4494739936272  0.219252633397  0.003840802148448
Min vel. / co-orb. (W^X, W^Y, W^Z) [c] : -0.4494739936272  -0.6660137354997  -0.003840802148448
Velocity at (r_surf,pi/4,pi/4) / co-orb. [c] : -0.03977154389422  0.03799222582471  5.082393517153e-05
Central value of loggam : 1.157559486004e-08
Central value of log(N) auto, comp :         -0.5354828458922  -0.05551422151147
Central value of beta=log(AN) auto, comp :   -0.0876898215896  -0.001498378360514
Central value of shift (N^X, N^Y, N^Z) [c] : 2.928846009084e-17  0.1148500062012  0
  ... shift_auto part of it [c] :            2.928846009084e-17  0.1481577930012  0
  ... shift_comp part of it [c] :            0  -0.0333077868  0
  ... w_shift (NB: components in the star Cartesian frame) [c] :  
-2.941392640921e-18  -0.1603635012215  0
Central value of khi_shift [km c] : 1.765482820109e-17

Central value of (B^X, B^Y, B^Z)/N [c] : 5.288875007668e-17  -0.05462139769652  0

Central (d/dX,d/dY,d/dZ)(logn_auto) [km^{-1}] : 0.0002903012420709  1.540921036602e-14  0
Central (d/dX,d/dY,d/dZ)(logn_comp) [km^{-1}] : 0.001455159918294  -1.237898672457e-16  0

Central (d/dX,d/dY,d/dZ)(beta_auto) [km^{-1}] : 0.0001787605371047  -1.825770437613e-15  0
Central (d/dX,d/dY,d/dZ)(beta_comp) [km^{-1}] : 0.0002027239662923  1.724315135121e-17  0

Central A^2 K^{ij} [c/km] : 
  A^2 K^{xx} auto, comp : 5.598074611503e-15  -5.941389613788e-18
  A^2 K^{xy} auto, comp : -2.090351362397e-05  -0.0001737519336836
  A^2 K^{xz} auto, comp : 0  0
  A^2 K^{yy} auto, comp : -1.120070331462e-14  1.113096894253e-17
  A^2 K^{yz} auto, comp : 0  0
  A^2 K^{zz} auto, comp : 5.602628703091e-15  -5.18957932874e-18

Central A^2 K_{ij} K^{ij} [c^2/km^2] : 
   A^2 K_{ij} K^{ij}  auto, comp : 3.715995890404e-09  1.981510448827e-08



Summary : 
-------
  Separation d   : 40 km
  Separation d_G : 39.98686382922 km
  Omega          : 2174.963748668 rad/s
  Baryon mass of star 1  : 1.69947366017 M_sol
  Baryon mass of star 2  : 1.69947366017 M_sol
  ADM mass of the system : 3.008114373826 M_sol
  Total angular momentum : 8.567605758835 G M_sol^2 / c
  Radius of star 1 (x_comp) : 8.831162892781 km
  Radius of star 1 (y)      : 8.567123624868 km
  Radius of star 1 (z)      : 8.617675187336 km
  Radius of star 1 (x_opp)  : 8.879658609282 km
  Radius of star 2 (x_comp) : 8.831162892781 km
  Radius of star 2 (y)      : 8.567123624868 km
  Radius of star 2 (z)      : 8.617675187336 km
  Radius of star 2 (x_opp)  : 8.879658609282 km
INFO (Meudon_Bin_NS): omega [rad/s]:       2174.96
INFO (Meudon_Bin_NS): dist [km]:           40
INFO (Meudon_Bin_NS): dist_mass [km]:      39.9869
INFO (Meudon_Bin_NS): mass1_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass2_b [M_sun]:     1.69947
INFO (Meudon_Bin_NS): mass_ADM [M_sun]:    3.00811
INFO (Meudon_Bin_NS): L_tot [G M_sun^2/c]: 8.56761
INFO (Meudon_Bin_NS): rad1_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad1_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad1_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad1_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): rad2_x_comp [km]:    8.83116
INFO (Meudon_Bin_NS): rad2_y [km]:         8.56712
INFO (Meudon_Bin_NS): rad2_z [km]:         8.61768
INFO (Meudon_Bin_NS): rad2_x_opp [km]:     8.87966
INFO (Meudon_Bin_NS): K [ET unit]:         0
INFO (Meudon_Bin_NS): Filling in Cactus grid points
INFO (Meudon_Bin_NS): Done.
      GRHydro_InitialAtmosphereReset
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      GRHydro_InitialAtmosphereReset
      GRHydro_InitialAtmosphereReset
      GRHydro_InitialAtmosphereReset
      GRHydro_InitialAtmosphereReset
      GRHydro_InitialAtmosphereReset
      GRHydro_InitialAtmosphereReset
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping initial checkpoint at iteration 0, simulation time 0
INFO (CarpetIOHDF5): ---------------------------------------------------------
Memory statistics from CarpetLib:
   Current number of objects: 2766
   Current allocated memory:  774 MB
   Maximum number of objects: 2780
   Maximum allocated memory:  777 MB
   Current administrative memory: 2.38 MB
   Total allocated used system memory: 244 MB
   Total allocated free system memory: 191 MB
   gh::allmemory:    137720
   dh::allmemory:    1581028
   th::allmemory:    26912
   ggf::allmemory:   430984
   gdata::allmemory: 204952
[1mWARNING level 2 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_ANALYSIS, routine QuasiLocalMeasures::qlm_calculate
  in thorn QuasiLocalMeasures, file qlm_calculate.F90:130:
  ->[0m There were not enough past time levels available for accurate calculations
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
        0     0.000 |    0.0000000 |    0.0015707 |    0.0003138 |    8.5680670 |    8.5679496 |  151.5077955 |  301.5056007
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
[1mWARNING level 2 from host newton.ege.edu.tr process 0
  while executing schedule bin CCTK_ANALYSIS, routine QuasiLocalMeasures::qlm_calculate
  in thorn QuasiLocalMeasures, file qlm_calculate.F90:130:
  ->[0m There were not enough past time levels available for accurate calculations
       64     6.000 |  149.8441581 |    0.0015721 |    0.0003147 |    8.5639441 |    8.5679501 |  151.5077955 |  301.5056007
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      128    12.000 |  149.9940399 |    0.0015853 |    0.0003227 |    8.5644515 |    8.5679514 |  151.5077955 |  301.5056006
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      192    18.000 |  149.2538431 |    0.0015886 |    0.0003249 |    8.5650702 |    8.5679536 |  151.5077954 |  301.5056005
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      256    24.000 |  148.1702192 |    0.0015533 |    0.0003036 |    8.5652684 |    8.5679575 |  151.5077954 |  301.5056004
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      320    30.000 |  148.4654724 |    0.0015157 |    0.0002821 |    8.5650034 |    8.5679637 |  151.5077953 |  301.5056002
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      384    36.000 |  147.8409700 |    0.0015508 |    0.0003021 |    8.5645636 |    8.5679724 |  151.5077953 |  301.5055999
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      448    42.000 |  147.0517930 |    0.0015903 |    0.0003257 |    8.5642007 |    8.5679822 |  151.5077952 |  301.5055997
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      512    48.000 |  146.8556975 |    0.0015826 |    0.0003210 |    8.5639816 |    8.5679910 |  151.5077951 |  301.5055993
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      576    54.000 |  146.6220444 |    0.0015620 |    0.0003088 |    8.5637107 |    8.5679966 |  151.5077950 |  301.5055990
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      640    60.000 |  145.3384884 |    0.0015544 |    0.0003048 |    8.5629594 |    8.5679964 |  151.5077949 |  301.5055986
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      704    66.000 |  145.0112610 |    0.0015503 |    0.0003018 |    8.5614750 |    8.5679861 |  151.5077947 |  301.5055981
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      768    72.000 |  144.3241742 |    0.0015573 |    0.0003059 |    8.5595741 |    8.5679588 |  151.5077946 |  301.5055976
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 770, simulation time 72.1875
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      832    78.000 |  143.5103022 |    0.0015482 |    0.0003018 |    8.5579498 |    8.5679098 |  151.5077945 |  301.5055971
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      896    84.000 |  142.9183172 |    0.0015341 |    0.0002944 |    8.5570900 |    8.5678458 |  151.5077943 |  301.5055965
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
      960    90.000 |  142.1516847 |    0.0015325 |    0.0002917 |    8.5569083 |    8.5677943 |  151.5077941 |  301.5055959
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1024    96.000 |  141.8244511 |    0.0015403 |    0.0002982 |    8.5568843 |    8.5678077 |  151.5077939 |  301.5055953
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1088   102.000 |  141.5347517 |    0.0015373 |    0.0002990 |    8.5565817 |    8.5679578 |  151.5077937 |  301.5055946
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1152   108.000 |  141.0628142 |    0.0015376 |    0.0002955 |    8.5560311 |    8.5683224 |  151.5077935 |  301.5055938
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1216   114.000 |  140.5917616 |    0.0015456 |    0.0003023 |    8.5555505 |    8.5689705 |  151.5077933 |  301.5055930
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
     1280   120.000 |  139.8245572 |    0.0015408 |    0.0002998 |    8.5553206 |    8.5699516 |  151.5077930 |  301.5055922
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1344   126.000 |  139.3156886 |    0.0015485 |    0.0003053 |    8.5553771 |    8.5712913 |  151.5077928 |  301.5055913
INFO (TerminationTrigger): ***********************************************************
INFO (TerminationTrigger): Remaining wallclock time for your job is 525540 minutes
INFO (TerminationTrigger): ***********************************************************
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1408   132.000 |  138.9935126 |    0.0015458 |    0.0003021 |    8.5560132 |    8.5729925 |  151.5077925 |  301.5055903
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1472   138.000 |  138.7273406 |    0.0015421 |    0.0003035 |    8.5578831 |    8.5750387 |  151.5077922 |  301.5055893
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 1482, simulation time 138.938
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1536   144.000 |  138.1123400 |    0.0015412 |    0.0003019 |    8.5614239 |    8.5773978 |  151.5077920 |  301.5055882
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1600   150.000 |  137.6842128 |    0.0015351 |    0.0002973 |    8.5661775 |    8.5800254 |  151.5077917 |  301.5055871
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1664   156.000 |  137.3823026 |    0.0015287 |    0.0002926 |    8.5707040 |    8.5828720 |  151.5077913 |  301.5055859
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1728   162.000 |  136.9204898 |    0.0015209 |    0.0002900 |    8.5732512 |    8.5858920 |  151.5077910 |  301.5055846
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1792   168.000 |  136.6578186 |    0.0015158 |    0.0002879 |    8.5726097 |    8.5890542 |  151.5077906 |  301.5055833
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1856   174.000 |  136.4942359 |    0.0015132 |    0.0002856 |    8.5669176 |    8.5923486 |  151.5077903 |  301.5055818
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1920   180.000 |  136.3043777 |    0.0015137 |    0.0002847 |    8.5534684 |    8.5957841 |  151.5077899 |  301.5055804
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     1984   186.000 |  136.1443450 |    0.0015160 |    0.0002881 |    8.5441550 |    8.5993779 |  151.5077895 |  301.5055788
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2048   192.000 |  135.9565581 |    0.0015176 |    0.0002905 |    8.5794503 |    8.6031391 |  151.5077891 |  301.5055772
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2112   198.000 |  135.5512283 |    0.0015163 |    0.0002908 |    8.6447637 |    8.6070555 |  151.5077879 |  301.5055755
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 2174, simulation time 203.812
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2176   204.000 |  135.2980926 |    0.0015158 |    0.0002886 |    8.5242626 |    8.6110882 |  151.5077871 |  301.5055737
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2240   210.000 |  135.1308032 |    0.0015218 |    0.0002922 |    8.1909829 |    8.6151779 |  151.5077903 |  301.5055718
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2304   216.000 |  134.8088536 |    0.0015159 |    0.0002875 |    8.4476288 |    8.6192578 |  151.5077932 |  301.5055699
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2368   222.000 |  134.5900597 |    0.0015236 |    0.0002912 |    9.3294324 |    8.6232671 |  151.5077977 |  301.5055679
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2432   228.000 |  134.4671357 |    0.0015203 |    0.0002883 |    8.9105123 |    8.6271608 |  151.5078005 |  301.5055658
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2496   234.000 |  134.2806560 |    0.0015183 |    0.0002900 |    7.5436636 |    8.6309120 |  151.5077734 |  301.5055637
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
     2560   240.000 |  134.0846939 |    0.0015156 |    0.0002885 |    8.1072100 |    8.6345099 |  151.5077390 |  301.5055615
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2624   246.000 |  134.0033454 |    0.0015082 |    0.0002827 |    9.6450583 |    8.6379553 |  151.5077294 |  301.5055592
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2688   252.000 |  133.8954819 |    0.0015075 |    0.0002814 |    9.0830951 |    8.6412573 |  151.5077298 |  301.5055568
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2752   258.000 |  133.8054016 |    0.0015040 |    0.0002816 |    7.6236755 |    8.6444325 |  151.5077463 |  301.5055544
INFO (TerminationTrigger): ***********************************************************
INFO (TerminationTrigger): Remaining wallclock time for your job is 525480 minutes
INFO (TerminationTrigger): ***********************************************************
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2816   264.000 |  133.7038306 |    0.0015075 |    0.0002806 |    7.8935901 |    8.6475049 |  151.5077877 |  301.5055519
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 2858, simulation time 267.938
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2880   270.000 |  133.5888816 |    0.0015088 |    0.0002835 |    8.9998435 |    8.6505064 |  151.5078454 |  301.5055493
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     2944   276.000 |  133.5015859 |    0.0015121 |    0.0002830 |    9.1668795 |    8.6534750 |  151.5079175 |  301.5055467
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3008   282.000 |  133.4436698 |    0.0015090 |    0.0002823 |    8.7533628 |    8.6564503 |  151.5079980 |  301.5055440
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3072   288.000 |  133.3637699 |    0.0015158 |    0.0002860 |    8.7189679 |    8.6594659 |  151.5080794 |  301.5055412
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3136   294.000 |  133.3076666 |    0.0015182 |    0.0002862 |    9.0932633 |    8.6625388 |  151.5081535 |  301.5055384
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3200   300.000 |  133.2333722 |    0.0015196 |    0.0002860 |    9.4661567 |    8.6656594 |  151.5081993 |  301.5055354
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3264   306.000 |  133.1397782 |    0.0015196 |    0.0002854 |    9.5621118 |    8.6687819 |  151.5082039 |  301.5055325
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3328   312.000 |  133.0689963 |    0.0015176 |    0.0002840 |    9.0716747 |    8.6718144 |  151.5081770 |  301.5055294
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3392   318.000 |  132.9521785 |    0.0015146 |    0.0002823 |    7.9683126 |    8.6746049 |  151.5081403 |  301.5055263
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3456   324.000 |  132.8376287 |    0.0015075 |    0.0002783 |    7.0799947 |    8.6769204 |  151.5081291 |  301.5055232
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3520   330.000 |  132.8028334 |    0.0015054 |    0.0002764 |    7.4252205 |    8.6784392 |  151.5081653 |  301.5055199
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 3548, simulation time 332.625
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3584   336.000 |  132.6803977 |    0.0015039 |    0.0002756 |    8.9188658 |    8.6788029 |  151.5082247 |  301.5055166
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3648   342.000 |  132.6417750 |    0.0014985 |    0.0002727 |   10.4524585 |    8.6777785 |  151.5082731 |  301.5055133
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3712   348.000 |  132.5420612 |    0.0014997 |    0.0002733 |   11.1408123 |    8.6754976 |  151.5082995 |  301.5055099
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3776   354.000 |  132.3866734 |    0.0015010 |    0.0002740 |   10.9101102 |    8.6726179 |  151.5083016 |  301.5055064
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
     3840   360.000 |  132.2198611 |    0.0014998 |    0.0002734 |   10.3054909 |    8.6701457 |  151.5082681 |  301.5055029
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3904   366.000 |  132.1957185 |    0.0014964 |    0.0002716 |    9.8282222 |    8.6686273 |  151.5081911 |  301.5054994
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     3968   372.000 |  132.1550893 |    0.0014911 |    0.0002686 |    9.4545004 |    8.6667944 |  151.5080861 |  301.5054958
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4032   378.000 |  132.0695579 |    0.0014968 |    0.0002718 |    9.0952686 |    8.6611434 |  151.5079759 |  301.5054920
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4096   384.000 |  131.9825512 |    0.0014975 |    0.0002721 |    8.6872020 |    8.6489054 |  151.5078648 |  301.5054879
INFO (TerminationTrigger): ***********************************************************
INFO (TerminationTrigger): Remaining wallclock time for your job is 525420 minutes
INFO (TerminationTrigger): ***********************************************************
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4160   390.000 |  131.9508576 |    0.0015029 |    0.0002751 |    8.0910474 |    8.6334660 |  151.5077457 |  301.5054837
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4224   396.000 |  131.9032202 |    0.0015005 |    0.0002738 |    7.5627816 |    8.6245321 |  151.5076131 |  301.5054796
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 4226, simulation time 396.188
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4288   402.000 |  131.7899336 |    0.0014935 |    0.0002699 |    7.4163923 |    8.6268173 |  151.5074668 |  301.5054760
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4352   408.000 |  131.6700460 |    0.0014918 |    0.0002690 |    7.5296780 |    8.6275388 |  151.5073224 |  301.5054732
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4416   414.000 |  131.5779348 |    0.0014949 |    0.0002707 |    7.6956790 |    8.6052861 |  151.5071967 |  301.5054708
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4480   420.000 |  131.4329644 |    0.0014942 |    0.0002704 |    7.7164190 |    8.5630022 |  151.5070872 |  301.5054683
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4544   426.000 |  131.3230288 |    0.0014794 |    0.0002624 |    7.4973812 |    8.5477799 |  151.5069856 |  301.5054648
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4608   432.000 |  131.2676510 |    0.0014813 |    0.0002634 |    7.1857950 |    8.6152192 |  151.5068869 |  301.5054599
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4672   438.000 |  131.1655921 |    0.0014774 |    0.0002614 |    6.7775237 |    8.7548041 |  151.5067857 |  301.5054533
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4736   444.000 |  131.0871520 |    0.0014705 |    0.0002577 |    6.3068715 |    8.8585837 |  151.5066840 |  301.5054444
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4800   450.000 |  131.0658113 |    0.0014600 |    0.0002522 |    5.9760432 |    8.7962884 |  151.5065853 |  301.5054328
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4864   456.000 |  130.4375536 |    0.0014584 |    0.0002514 |    5.5859743 |    8.5490914 |  151.5064848 |  301.5054193
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 4874, simulation time 456.938
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4928   462.000 |  129.6984127 |    0.0014577 |    0.0002511 |    5.0082647 |    8.2678853 |  151.5063773 |  301.5054072
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     4992   468.000 |  129.4715539 |    0.0014509 |    0.0002476 |    4.5594618 |    8.1746294 |  151.5062615 |  301.5054018
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5056   474.000 |  129.4619088 |    0.0014643 |    0.0002545 |    4.3062279 |    8.3789168 |  151.5061341 |  301.5054084
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
     5120   480.000 |  129.3991376 |    0.0015005 |    0.0002828 |    4.2004837 |    8.7737650 |  151.5059938 |  301.5054294
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5184   486.000 |  129.3682962 |    0.0016084 |    0.0003524 |    4.3005449 |    9.1052447 |  151.5058444 |  301.5054630
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5248   492.000 |  129.3632941 |    0.0017211 |    0.0004587 |    4.3992246 |    9.1546461 |  151.5056921 |  301.5055042
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5312   498.000 |  129.3685042 |    0.0018845 |    0.0006716 |    4.4126049 |    8.8845234 |  151.5055399 |  301.5055471
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5376   504.000 |  129.3617610 |    0.0021506 |    0.0009289 |    4.6913202 |    8.4488798 |  151.5053866 |  301.5055866
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5440   510.000 |  129.3463282 |    0.0023579 |    0.0011726 |    5.2811007 |    8.0833940 |  151.5052333 |  301.5056198
INFO (TerminationTrigger): ***********************************************************
INFO (TerminationTrigger): Remaining wallclock time for your job is 525360 minutes
INFO (TerminationTrigger): ***********************************************************
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5504   516.000 |  129.3176071 |    0.0025490 |    0.0014441 |    5.7470070 |    7.9644271 |  151.5050841 |  301.5056459
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 5530, simulation time 518.438
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5568   522.000 |  129.2831998 |    0.0028059 |    0.0018769 |    6.0020565 |    8.1191374 |  151.5049383 |  301.5056664
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5632   528.000 |  129.2642317 |    0.0030936 |    0.0024561 |    6.3679899 |    8.4244420 |  151.5047896 |  301.5056850
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5696   534.000 |  129.2688128 |    0.0033526 |    0.0030917 |    6.9930858 |    8.6897284 |  151.5046325 |  301.5057070
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5760   540.000 |  129.2545920 |    0.0035459 |    0.0036950 |    7.8041388 |    8.7783906 |  151.5044667 |  301.5057378
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5824   546.000 |  129.2428315 |    0.0035692 |    0.0039492 |    8.5335625 |    8.6913185 |  151.5042948 |  301.5057811
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     5888   552.000 |  129.2270416 |    0.0034086 |    0.0037684 |    8.8595102 |    8.5495556 |  151.5041173 |  301.5058377
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
INFO (AHFinderDirect): AH 1/1: r=2.18345 at (-0.000000,0.000000,0.000000)
INFO (AHFinderDirect): AH 1/1: area=376.8755139 m_irreducible=2.738192857
     5952   558.000 |  129.2759814 |    0.0003459 |    0.0000439 |    8.9127188 |    8.4903683 |  151.5039356 |  301.5059049
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6016   564.000 |  129.2542003 |    0.0002022 |    0.0000262 |    8.9847365 |    8.5685342 |  151.5037544 |  301.5059777
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6080   570.000 |  129.2391647 |    0.0001078 |    0.0000107 |    9.0275809 |    8.7454838 |  151.5035757 |  301.5060506
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6144   576.000 |  129.2388730 |    0.0000637 |    0.0000042 |    8.9550768 |    8.9560535 |  151.5033953 |  301.5061190
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6208   582.000 |  129.2077435 |    0.0000402 |    0.0000024 |    8.6317880 |    9.1686731 |  151.5032107 |  301.5061797
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 6214, simulation time 582.562
INFO (CarpetIOHDF5): ---------------------------------------------------------
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6272   588.000 |  129.1753983 |    0.0000273 |    0.0000018 |    7.9058732 |    9.3791464 |  151.5030273 |  301.5062307
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6336   594.000 |  129.1266390 |    0.0000192 |    0.0000014 |    6.9895029 |    9.5633815 |  151.5028529 |  301.5062700
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
     6400   600.000 |  129.0618615 |    0.0000146 |    0.0000011 |    6.3041128 |    9.6587023 |  151.5026903 |  301.5062962
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6464   606.000 |  129.0024357 |    0.0000101 |    0.0000008 |    5.8901965 |    9.6031770 |  151.5025365 |  301.5063085
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6528   612.000 |  128.9273954 |    0.0000071 |    0.0000005 |    5.4131323 |    9.3944587 |  151.5023872 |  301.5063073
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6592   618.000 |  128.8597785 |    0.0000050 |    0.0000004 |    4.9023907 |    9.1127951 |  151.5022436 |  301.5062946
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6656   624.000 |  128.8315535 |    0.0000037 |    0.0000003 |    4.7373989 |    8.8953438 |  151.5021114 |  301.5062729
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6720   630.000 |  128.8254634 |    0.0000027 |    0.0000002 |    5.0160435 |    8.8913590 |  151.5019906 |  301.5062439
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6784   636.000 |  128.8203398 |    0.0000020 |    0.0000002 |    5.5852666 |    9.2241205 |  151.5018766 |  301.5062078
INFO (TerminationTrigger): ***********************************************************
INFO (TerminationTrigger): Remaining wallclock time for your job is 525300 minutes
INFO (TerminationTrigger): ***********************************************************
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6848   642.000 |  128.8232659 |    0.0000016 |    0.0000001 |    6.3619578 |    9.9547254 |  151.5017691 |  301.5061633
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 6882, simulation time 645.188
INFO (CarpetIOHDF5): ---------------------------------------------------------
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6912   648.000 |  128.7955409 |    0.0000013 |    0.0000001 |    7.2536880 |   11.0353501 |  151.5016682 |  301.5061077
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     6976   654.000 |  128.7219589 |    0.0000011 |    0.0000001 |    8.0621455 |   12.2695692 |  151.5015671 |  301.5060372
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7040   660.000 |  128.6709232 |    0.0000009 |    0.0000001 |    8.7545162 |   13.3258377 |  151.5014612 |  301.5059477
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7104   666.000 |  128.6450432 |    0.0000008 |    0.0000001 |    9.4659409 |   13.8329622 |  151.5013508 |  301.5058354
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7168   672.000 |  128.6087611 |    0.0000006 |    0.0000001 |   10.1214268 |   13.5270290 |  151.5012323 |  301.5056987
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7232   678.000 |  128.6153990 |    0.0000005 |    0.0000000 |   10.4150243 |   12.3694618 |  151.5011049 |  301.5055394
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7296   684.000 |  128.5859901 |    0.0000004 |    0.0000000 |   10.2040643 |   10.5638978 |  151.5009747 |  301.5053626
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7360   690.000 |  128.5699058 |    0.0000003 |    0.0000000 |    9.6534910 |    8.4632372 |  151.5008423 |  301.5051761
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7424   696.000 |  128.5261136 |    0.0000003 |    0.0000000 |    8.9937454 |    6.4277278 |  151.5007078 |  301.5049885
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7488   702.000 |  128.4907348 |    0.0000002 |    0.0000000 |    8.3964584 |    4.7165869 |  151.5005743 |  301.5048071
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (CarpetIOHDF5): Dumping periodic checkpoint at iteration 7550, simulation time 707.812
INFO (CarpetIOHDF5): ---------------------------------------------------------
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7552   708.000 |  128.4313681 |    0.0000002 |    0.0000000 |    7.8635145 |    3.4557698 |  151.5004411 |  301.5046374
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7616   714.000 |  128.4374675 |    0.0000001 |    0.0000000 |    7.2337660 |    2.6607990 |  151.5003015 |  301.5044832
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
----------------------------------------------------------------------------------------------------------------------------
Iteration      Time | *me_per_hour | *ROBASE::rho | *BASE::press | *qlm_spin[0] | *qlm_spin[1] | *qlm_mass[0] | *qlm_mass[1]
                    |              |      maximum |      maximum |              |              |              |             
----------------------------------------------------------------------------------------------------------------------------
     7680   720.000 |  128.4318829 |    0.0000001 |    0.0000000 |    6.4772314 |    2.2634694 |  151.5001449 |  301.5043460
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7744   726.000 |  128.4394432 |    0.0000001 |    0.0000000 |    5.8582155 |    2.1180054 |  151.4999638 |  301.5042262
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7808   732.000 |  128.4369772 |    0.0000001 |    0.0000000 |    5.6299887 |    2.0104385 |  151.4997521 |  301.5041222
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7872   738.000 |  128.4424360 |    0.0000001 |    0.0000000 |    5.6218219 |    1.7073980 |  151.4994896 |  301.5040316
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     7936   744.000 |  128.4251991 |    0.0000001 |    0.0000000 |    5.5416599 |    1.0409064 |  151.4991199 |  301.5039508
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     8000   750.000 |  128.4194932 |    0.0000001 |    0.0000000 |    5.5002970 |   -0.0220611 |  151.4985489 |  301.5038766
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
INFO (AHFinderDirect): proc 0: searching for horizon 1/1
     8064   756.000 |  128.4150992 |    0.0000001 | 9.770710e-09 |    5.7162822 |   -1.3764861 |  151.4976862 |  301.5038064
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
 *retval      =     2.0100000000000000e+02 
Tue 14 Apr 2020 04:00:52 AM +03
Simfactory Done at date: 0
