470 lines
20 KiB
Fortran
470 lines
20 KiB
Fortran
!--------------------------------------------------------------------------------------------------
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!> @author Jaeyong Jung, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Pratheek Shanthraj, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Martin Diehl, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Philip Eisenlohr, Max-Planck-Institut für Eisenforschung GmbH
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!> @brief Interfacing between the PETSc-based solvers and the material subroutines provided
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!! by DAMASK
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!> @details Interfacing between the PETSc-based solvers and the material subroutines provided
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!> by DAMASK. Interpreting the command line arguments to get load case, geometry file,
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!> and working directory.
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!--------------------------------------------------------------------------------------------------
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#define PETSC_MAJOR 3
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#define PETSC_MINOR_MIN 12
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#define PETSC_MINOR_MAX 14
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module DAMASK_interface
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use, intrinsic :: ISO_fortran_env
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use PETScSys
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use prec
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use parallelization
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use system_routines
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implicit none
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private
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logical, volatile, public, protected :: &
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interface_SIGTERM, & !< termination signal
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interface_SIGUSR1, & !< 1. user-defined signal
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interface_SIGUSR2 !< 2. user-defined signal
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integer, public, protected :: &
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interface_restartInc = 0 !< Increment at which calculation starts
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character(len=:), allocatable, public, protected :: &
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interface_geomFile, & !< parameter given for geometry file
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interface_loadFile !< parameter given for load case file
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public :: &
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getSolverJobName, &
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DAMASK_interface_init, &
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interface_setSIGTERM, &
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interface_setSIGUSR1, &
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interface_setSIGUSR2
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contains
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!--------------------------------------------------------------------------------------------------
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!> @brief initializes the solver by interpreting the command line arguments. Also writes
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!! information on computation to screen
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!--------------------------------------------------------------------------------------------------
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subroutine DAMASK_interface_init
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#include <petsc/finclude/petscsys.h>
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#if PETSC_VERSION_MAJOR!=3 || PETSC_VERSION_MINOR<PETSC_MINOR_MIN || PETSC_VERSION_MINOR>PETSC_MINOR_MAX
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===================================================================================================
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-- WRONG PETSc VERSION --- WRONG PETSc VERSION --- WRONG PETSc VERSION --- WRONG PETSc VERSION --
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===================================================================================================
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#endif
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character(len=pPathLen*3+pStringLen) :: &
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commandLine !< command line call as string
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character(len=pPathLen) :: &
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arg, & !< individual argument
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loadCaseArg = '', & !< -l argument given to the executable
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geometryArg = '', & !< -g argument given to the executable
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workingDirArg = '' !< -w argument given to the executable
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integer :: &
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stat, &
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i
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integer, dimension(8) :: &
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dateAndTime
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integer :: err
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external :: &
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quit
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print'(/,a)', ' <<<+- DAMASK_interface init -+>>>'
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if(worldrank == 0) open(OUTPUT_UNIT, encoding='UTF-8') ! for special characters in output
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! http://patorjk.com/software/taag/#p=display&f=Lean&t=DAMASK%203
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#ifdef DEBUG
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print*, achar(27)//'[31m'
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print'(a,/)', ' debug version - debug version - debug version - debug version - debug version'
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#else
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print*, achar(27)//'[94m'
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#endif
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print*, ' _/_/_/ _/_/ _/ _/ _/_/ _/_/_/ _/ _/ _/_/_/'
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print*, ' _/ _/ _/ _/ _/_/ _/_/ _/ _/ _/ _/ _/ _/'
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print*, ' _/ _/ _/_/_/_/ _/ _/ _/ _/_/_/_/ _/_/ _/_/ _/_/'
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print*, ' _/ _/ _/ _/ _/ _/ _/ _/ _/ _/ _/ _/'
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print*, ' _/_/_/ _/ _/ _/ _/ _/ _/ _/_/_/ _/ _/ _/_/_/'
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#ifdef DEBUG
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print'(/,a)', ' debug version - debug version - debug version - debug version - debug version'
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#endif
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print*, achar(27)//'[0m'
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print*, 'Roters et al., Computational Materials Science 158:420–478, 2019'
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print*, 'https://doi.org/10.1016/j.commatsci.2018.04.030'
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print'(/,a)', ' Version: '//DAMASKVERSION
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! https://github.com/jeffhammond/HPCInfo/blob/master/docs/Preprocessor-Macros.md
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#if defined(__PGI)
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print'(/,a,i4.4,a,i8.8)', ' Compiled with PGI fortran version :', __PGIC__,&
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'.', __PGIC_MINOR__
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#else
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print'(/,a)', ' Compiled with: '//compiler_version()
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print'(a)', ' Compiler options: '//compiler_options()
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#endif
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print'(/,a)', ' Compiled on: '//__DATE__//' at '//__TIME__
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print'(/,a,i0,a,i0,a,i0)', &
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' PETSc version: ',PETSC_VERSION_MAJOR,'.',PETSC_VERSION_MINOR,'.',PETSC_VERSION_SUBMINOR
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call date_and_time(values = dateAndTime)
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print'(/,a,2(i2.2,a),i4.4)', ' Date: ',dateAndTime(3),'/',dateAndTime(2),'/', dateAndTime(1)
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print'(a,2(i2.2,a),i2.2)', ' Time: ',dateAndTime(5),':', dateAndTime(6),':', dateAndTime(7)
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do i = 1, command_argument_count()
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call get_command_argument(i,arg,status=err)
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if (err /= 0) call quit(1)
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select case(trim(arg)) ! extract key
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case ('-h','--help')
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print'(/,a)',' #######################################################################'
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print'(a)', ' DAMASK Command Line Interface:'
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print'(a)', ' Düsseldorf Advanced Material Simulation Kit with PETSc-based solvers'
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print'(a,/)',' #######################################################################'
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print'(a,/)',' Valid command line switches:'
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print'(a)', ' --geom (-g, --geometry)'
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print'(a)', ' --load (-l, --loadcase)'
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print'(a)', ' --workingdir (-w, --wd, --workingdirectory)'
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print'(a)', ' --restart (-r, --rs)'
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print'(a)', ' --help (-h)'
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print'(/,a)',' -----------------------------------------------------------------------'
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print'(a)', ' Mandatory arguments:'
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print'(/,a)',' --geom PathToGeomFile/NameOfGeom'
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print'(a)', ' Specifies the location of the geometry definition file.'
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print'(/,a)',' --load PathToLoadFile/NameOfLoadFile'
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print'(a)', ' Specifies the location of the load case definition file.'
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print'(/,a)',' -----------------------------------------------------------------------'
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print'(a)', ' Optional arguments:'
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print'(/,a)',' --workingdirectory PathToWorkingDirectory'
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print'(a)', ' Specifies the working directory and overwrites the default ./'
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print'(a)', ' Make sure the file "material.config" exists in the working'
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print'(a)', ' directory.'
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print'(a)', ' For further configuration place "numerics.config"'
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print'(a)',' and "debug.config" in that directory.'
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print'(/,a)',' --restart N'
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print'(a)', ' Reads in increment N and continues with calculating'
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print'(a)', ' increment N+1 based on this.'
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print'(a)', ' Appends to existing results file'
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print'(a)', ' "NameOfGeom_NameOfLoadFile.hdf5".'
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print'(a)', ' Works only if the restart information for increment N'
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print'(a)', ' is available in the working directory.'
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print'(/,a)',' -----------------------------------------------------------------------'
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print'(a)', ' Help:'
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print'(/,a)',' --help'
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print'(a,/)',' Prints this message and exits'
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call quit(0) ! normal Termination
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case ('-l', '--load', '--loadcase')
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call get_command_argument(i+1,loadCaseArg,status=err)
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case ('-g', '--geom', '--geometry')
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call get_command_argument(i+1,geometryArg,status=err)
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case ('-w', '--wd', '--workingdir', '--workingdirectory')
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call get_command_argument(i+1,workingDirArg,status=err)
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case ('-r', '--rs', '--restart')
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call get_command_argument(i+1,arg,status=err)
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read(arg,*,iostat=stat) interface_restartInc
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if (interface_restartInc < 0 .or. stat /=0) then
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print'(/,a)', ' ERROR: Could not parse restart increment: '//trim(arg)
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call quit(1)
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endif
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end select
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if (err /= 0) call quit(1)
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enddo
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if (len_trim(loadcaseArg) == 0 .or. len_trim(geometryArg) == 0) then
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print'(/,a)', ' ERROR: Please specify geometry AND load case (-h for help)'
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call quit(1)
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endif
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if (len_trim(workingDirArg) > 0) call setWorkingDirectory(trim(workingDirArg))
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interface_geomFile = getGeometryFile(geometryArg)
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interface_loadFile = getLoadCaseFile(loadCaseArg)
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call get_command(commandLine)
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print'(/,a)', ' Host name: '//getHostName()
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print'(a)', ' User name: '//getUserName()
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print'(/a)', ' Command line call: '//trim(commandLine)
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if (len_trim(workingDirArg) > 0) &
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print'(a)', ' Working dir argument: '//trim(workingDirArg)
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print'(a)', ' Geometry argument: '//trim(geometryArg)
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print'(a)', ' Loadcase argument: '//trim(loadcaseArg)
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print'(/,a)', ' Working directory: '//getCWD()
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print'(a)', ' Geometry file: '//interface_geomFile
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print'(a)', ' Loadcase file: '//interface_loadFile
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print'(a)', ' Solver job name: '//getSolverJobName()
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if (interface_restartInc > 0) &
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print'(a,i6.6)', ' Restart from increment: ', interface_restartInc
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call signalterm_c(c_funloc(catchSIGTERM))
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call signalusr1_c(c_funloc(catchSIGUSR1))
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call signalusr2_c(c_funloc(catchSIGUSR2))
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call interface_setSIGTERM(.false.)
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call interface_setSIGUSR1(.false.)
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call interface_setSIGUSR2(.false.)
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end subroutine DAMASK_interface_init
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!--------------------------------------------------------------------------------------------------
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!> @brief extract working directory from given argument or from location of geometry file,
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!! possibly converting relative arguments to absolut path
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!--------------------------------------------------------------------------------------------------
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subroutine setWorkingDirectory(workingDirectoryArg)
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character(len=*), intent(in) :: workingDirectoryArg !< working directory argument
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character(len=:), allocatable :: workingDirectory
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logical :: error
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external :: quit
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absolutePath: if (workingDirectoryArg(1:1) == '/') then
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workingDirectory = workingDirectoryArg
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else absolutePath
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workingDirectory = getCWD()
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workingDirectory = trim(workingDirectory)//'/'//workingDirectoryArg
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endif absolutePath
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workingDirectory = trim(rectifyPath(workingDirectory))
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error = setCWD(trim(workingDirectory))
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if(error) then
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print*, 'ERROR: Invalid Working directory: '//trim(workingDirectory)
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call quit(1)
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endif
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end subroutine setWorkingDirectory
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!--------------------------------------------------------------------------------------------------
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!> @brief solver job name (no extension) as combination of geometry and load case name
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!--------------------------------------------------------------------------------------------------
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function getSolverJobName()
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character(len=:), allocatable :: getSolverJobName
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integer :: posExt,posSep
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posExt = scan(interface_geomFile,'.',back=.true.)
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posSep = scan(interface_geomFile,'/',back=.true.)
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getSolverJobName = interface_geomFile(posSep+1:posExt-1)
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posExt = scan(interface_loadFile,'.',back=.true.)
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posSep = scan(interface_loadFile,'/',back=.true.)
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getSolverJobName = getSolverJobName//'_'//interface_loadFile(posSep+1:posExt-1)
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end function getSolverJobName
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!--------------------------------------------------------------------------------------------------
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!> @brief basename of geometry file with extension from command line arguments
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!--------------------------------------------------------------------------------------------------
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function getGeometryFile(geometryParameter)
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character(len=:), allocatable :: getGeometryFile
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character(len=*), intent(in) :: geometryParameter
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logical :: file_exists
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external :: quit
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getGeometryFile = trim(geometryParameter)
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if (scan(getGeometryFile,'/') /= 1) getGeometryFile = getCWD()//'/'//trim(getGeometryFile)
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getGeometryFile = trim(makeRelativePath(getCWD(), getGeometryFile))
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inquire(file=getGeometryFile, exist=file_exists)
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if (.not. file_exists) then
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print*, 'ERROR: Geometry file does not exists: '//trim(getGeometryFile)
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call quit(1)
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endif
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end function getGeometryFile
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!--------------------------------------------------------------------------------------------------
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!> @brief relative path of load case from command line arguments
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!--------------------------------------------------------------------------------------------------
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function getLoadCaseFile(loadCaseParameter)
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character(len=:), allocatable :: getLoadCaseFile
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character(len=*), intent(in) :: loadCaseParameter
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logical :: file_exists
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external :: quit
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getLoadCaseFile = trim(loadCaseParameter)
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if (scan(getLoadCaseFile,'/') /= 1) getLoadCaseFile = getCWD()//'/'//trim(getLoadCaseFile)
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getLoadCaseFile = trim(makeRelativePath(getCWD(), getLoadCaseFile))
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inquire(file=getLoadCaseFile, exist=file_exists)
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if (.not. file_exists) then
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print*, 'ERROR: Load case file does not exists: '//trim(getLoadCaseFile)
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call quit(1)
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endif
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end function getLoadCaseFile
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!--------------------------------------------------------------------------------------------------
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!> @brief remove ../, /./, and // from path.
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!> @details works only if absolute path is given
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!--------------------------------------------------------------------------------------------------
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function rectifyPath(path)
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character(len=*), intent(in) :: path
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character(len=:), allocatable :: rectifyPath
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integer :: i,j,k,l
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!--------------------------------------------------------------------------------------------------
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! remove /./ from path
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rectifyPath = trim(path)
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l = len_trim(rectifyPath)
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do i = l,3,-1
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if (rectifyPath(i-2:i) == '/./') rectifyPath(i-1:l) = rectifyPath(i+1:l)//' '
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enddo
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!--------------------------------------------------------------------------------------------------
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! remove // from path
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l = len_trim(rectifyPath)
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do i = l,2,-1
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if (rectifyPath(i-1:i) == '//') rectifyPath(i-1:l) = rectifyPath(i:l)//' '
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enddo
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!--------------------------------------------------------------------------------------------------
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! remove ../ and corresponding directory from rectifyPath
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l = len_trim(rectifyPath)
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i = index(rectifyPath(i:l),'../')
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j = 0
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do while (i > j)
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j = scan(rectifyPath(1:i-2),'/',back=.true.)
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rectifyPath(j+1:l) = rectifyPath(i+3:l)//repeat(' ',2+i-j)
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if (rectifyPath(j+1:j+1) == '/') then !search for '//' that appear in case of XXX/../../XXX
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k = len_trim(rectifyPath)
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rectifyPath(j+1:k-1) = rectifyPath(j+2:k)
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rectifyPath(k:k) = ' '
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endif
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i = j+index(rectifyPath(j+1:l),'../')
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enddo
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if(len_trim(rectifyPath) == 0) rectifyPath = '/'
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rectifyPath = trim(rectifyPath)
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end function rectifyPath
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!--------------------------------------------------------------------------------------------------
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!> @brief Determine relative path from absolute a to absolute b
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!--------------------------------------------------------------------------------------------------
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function makeRelativePath(a,b)
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character(len=*), intent(in) :: a,b
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character(len=pPathLen) :: a_cleaned,b_cleaned
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character(len=:), allocatable :: makeRelativePath
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integer :: i,posLastCommonSlash,remainingSlashes
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posLastCommonSlash = 0
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remainingSlashes = 0
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a_cleaned = rectifyPath(trim(a)//'/')
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b_cleaned = rectifyPath(b)
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do i = 1, min(len_trim(a_cleaned),len_trim(rectifyPath(b_cleaned)))
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if (a_cleaned(i:i) /= b_cleaned(i:i)) exit
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if (a_cleaned(i:i) == '/') posLastCommonSlash = i
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enddo
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do i = posLastCommonSlash+1,len_trim(a_cleaned)
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if (a_cleaned(i:i) == '/') remainingSlashes = remainingSlashes + 1
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enddo
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makeRelativePath = repeat('..'//'/',remainingSlashes)//b_cleaned(posLastCommonSlash+1:len_trim(b_cleaned))
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end function makeRelativePath
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!--------------------------------------------------------------------------------------------------
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!> @brief Set global variable interface_SIGTERM to .true.
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!> @details This function can be registered to catch signals send to the executable.
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!--------------------------------------------------------------------------------------------------
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subroutine catchSIGTERM(signal) bind(C)
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integer(C_INT), value :: signal
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print'(a,i0)', ' received signal ',signal
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call interface_setSIGTERM(.true.)
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end subroutine catchSIGTERM
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!--------------------------------------------------------------------------------------------------
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!> @brief Set global variable interface_SIGUSR1 to .true.
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!> @details This function can be registered to catch signals send to the executable.
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!--------------------------------------------------------------------------------------------------
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subroutine catchSIGUSR1(signal) bind(C)
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integer(C_INT), value :: signal
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print'(a,i0)', ' received signal ',signal
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call interface_setSIGUSR1(.true.)
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end subroutine catchSIGUSR1
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!--------------------------------------------------------------------------------------------------
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!> @brief Set global variable interface_SIGUSR2 to .true.
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!> @details This function can be registered to catch signals send to the executable.
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!--------------------------------------------------------------------------------------------------
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subroutine catchSIGUSR2(signal) bind(C)
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integer(C_INT), value :: signal
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print'(a,i0,a)', ' received signal ',signal
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call interface_setSIGUSR2(.true.)
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end subroutine catchSIGUSR2
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!--------------------------------------------------------------------------------------------------
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!> @brief Set global variable interface_SIGTERM.
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!--------------------------------------------------------------------------------------------------
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subroutine interface_setSIGTERM(state)
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logical, intent(in) :: state
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interface_SIGTERM = state
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print*, 'set SIGTERM to',state
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end subroutine interface_setSIGTERM
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!--------------------------------------------------------------------------------------------------
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!> @brief Set global variable interface_SIGUSR.
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!--------------------------------------------------------------------------------------------------
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subroutine interface_setSIGUSR1(state)
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logical, intent(in) :: state
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interface_SIGUSR1 = state
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print*, 'set SIGUSR1 to',state
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end subroutine interface_setSIGUSR1
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!--------------------------------------------------------------------------------------------------
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!> @brief Set global variable interface_SIGUSR2.
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!--------------------------------------------------------------------------------------------------
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subroutine interface_setSIGUSR2(state)
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logical, intent(in) :: state
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interface_SIGUSR2 = state
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print*, 'set SIGUSR2 to',state
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end subroutine interface_setSIGUSR2
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end module
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