272 lines
11 KiB
Fortran
272 lines
11 KiB
Fortran
!--------------------------------------------------------------------------------------------------
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!> @author Franz Roters, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Philip Eisenlohr, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Christoph Kords, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Martin Diehl, Max-Planck-Institut für Eisenforschung GmbH
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!> @brief Reading in and interpretating the debugging settings for the various modules
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!--------------------------------------------------------------------------------------------------
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module debug
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use prec
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use IO
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implicit none
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private
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integer, parameter, public :: &
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debug_LEVELSELECTIVE = 2**0, &
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debug_LEVELBASIC = 2**1, &
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debug_LEVELEXTENSIVE = 2**2
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integer, parameter, private :: &
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debug_MAXGENERAL = debug_LEVELEXTENSIVE ! must be set to the last bitcode used by (potentially) all debug types
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integer, parameter, public :: &
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debug_SPECTRALRESTART = debug_MAXGENERAL*2**1, &
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debug_SPECTRALFFTW = debug_MAXGENERAL*2**2, &
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debug_SPECTRALDIVERGENCE = debug_MAXGENERAL*2**3, &
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debug_SPECTRALROTATION = debug_MAXGENERAL*2**4, &
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debug_SPECTRALPETSC = debug_MAXGENERAL*2**5
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integer, parameter, public :: &
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debug_DEBUG = 1, &
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debug_MATH = 2, &
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debug_FESOLVING = 3, &
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debug_MESH = 4, & !< stores debug level for mesh part of DAMASK bitwise coded
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debug_MATERIAL = 5, & !< stores debug level for material part of DAMASK bitwise coded
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debug_LATTICE = 6, & !< stores debug level for lattice part of DAMASK bitwise coded
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debug_CONSTITUTIVE = 7, & !< stores debug level for constitutive part of DAMASK bitwise coded
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debug_CRYSTALLITE = 8, &
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debug_HOMOGENIZATION = 9, &
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debug_CPFEM = 10, &
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debug_SPECTRAL = 11, &
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debug_MARC = 12
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integer, parameter, private :: &
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debug_MAXNTYPE = debug_MARC !< must be set to the maximum defined debug type
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integer,protected, dimension(debug_maxNtype+2), public :: & ! specific ones, and 2 for "all" and "other"
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debug_level = 0
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integer, protected, public :: &
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debug_e = 1, &
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debug_i = 1, &
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debug_g = 1
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integer, dimension(2), public :: &
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debug_stressMaxLocation = 0, &
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debug_stressMinLocation = 0, &
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debug_jacobianMaxLocation = 0, &
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debug_jacobianMinLocation = 0
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real(pReal), public :: &
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debug_stressMax = -huge(1.0_pReal), &
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debug_stressMin = huge(1.0_pReal), &
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debug_jacobianMax = -huge(1.0_pReal), &
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debug_jacobianMin = huge(1.0_pReal)
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#ifdef PETSc
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character(len=1024), parameter, public :: &
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PETSCDEBUG = ' -snes_view -snes_monitor '
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#endif
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public :: debug_init, &
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debug_reset, &
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debug_info
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contains
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!--------------------------------------------------------------------------------------------------
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!> @brief reads in parameters from debug.config and allocates arrays
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!--------------------------------------------------------------------------------------------------
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subroutine debug_init
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character(len=pStringLen), dimension(:), allocatable :: fileContent
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integer :: i, what, j
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integer, allocatable, dimension(:) :: chunkPos
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character(len=pStringLen) :: tag, line
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logical :: fexist
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write(6,'(/,a)') ' <<<+- debug init -+>>>'
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#ifdef DEBUG
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write(6,'(a)') achar(27)//'[31m <<<+- DEBUG version -+>>>'//achar(27)//'[0m'
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#endif
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inquire(file='debug.config', exist=fexist)
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fileExists: if (fexist) then
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fileContent = IO_read_ASCII('debug.config')
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do j=1, size(fileContent)
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line = fileContent(j)
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if (IO_isBlank(line)) cycle ! skip empty lines
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chunkPos = IO_stringPos(line)
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tag = IO_lc(IO_stringValue(line,chunkPos,1)) ! extract key
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select case(tag)
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case ('element','e','el')
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debug_e = IO_intValue(line,chunkPos,2)
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case ('integrationpoint','i','ip')
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debug_i = IO_intValue(line,chunkPos,2)
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case ('grain','g','gr')
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debug_g = IO_intValue(line,chunkPos,2)
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end select
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what = 0
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select case(tag)
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case ('debug')
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what = debug_DEBUG
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case ('math')
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what = debug_MATH
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case ('fesolving', 'fe')
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what = debug_FESOLVING
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case ('mesh')
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what = debug_MESH
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case ('material')
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what = debug_MATERIAL
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case ('lattice')
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what = debug_LATTICE
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case ('constitutive')
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what = debug_CONSTITUTIVE
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case ('crystallite')
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what = debug_CRYSTALLITE
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case ('homogenization')
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what = debug_HOMOGENIZATION
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case ('cpfem')
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what = debug_CPFEM
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case ('spectral')
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what = debug_SPECTRAL
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case ('marc')
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what = debug_MARC
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case ('all')
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what = debug_MAXNTYPE + 1
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case ('other')
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what = debug_MAXNTYPE + 2
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end select
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if (what /= 0) then
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do i = 2, chunkPos(1)
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select case(IO_lc(IO_stringValue(line,chunkPos,i)))
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case('basic')
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debug_level(what) = ior(debug_level(what), debug_LEVELBASIC)
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case('extensive')
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debug_level(what) = ior(debug_level(what), debug_LEVELEXTENSIVE)
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case('selective')
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debug_level(what) = ior(debug_level(what), debug_LEVELSELECTIVE)
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case('restart')
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debug_level(what) = ior(debug_level(what), debug_SPECTRALRESTART)
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case('fft','fftw')
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debug_level(what) = ior(debug_level(what), debug_SPECTRALFFTW)
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case('divergence')
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debug_level(what) = ior(debug_level(what), debug_SPECTRALDIVERGENCE)
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case('rotation')
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debug_level(what) = ior(debug_level(what), debug_SPECTRALROTATION)
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case('petsc')
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debug_level(what) = ior(debug_level(what), debug_SPECTRALPETSC)
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end select
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enddo
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endif
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enddo
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do i = 1, debug_maxNtype
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if (debug_level(i) == 0) &
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debug_level(i) = ior(debug_level(i), debug_level(debug_MAXNTYPE + 2)) ! fill undefined debug types with levels specified by "other"
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debug_level(i) = ior(debug_level(i), debug_level(debug_MAXNTYPE + 1)) ! fill all debug types with levels specified by "all"
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enddo
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if (iand(debug_level(debug_debug),debug_LEVELBASIC) /= 0) &
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write(6,'(a,/)') ' using values from config file'
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else fileExists
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if (iand(debug_level(debug_debug),debug_LEVELBASIC) /= 0) &
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write(6,'(a,/)') ' using standard values'
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endif fileExists
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!--------------------------------------------------------------------------------------------------
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! output switched on (debug level for debug must be extensive)
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if (iand(debug_level(debug_debug),debug_LEVELEXTENSIVE) /= 0) then
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do i = 1, debug_MAXNTYPE
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select case(i)
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case (debug_DEBUG)
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tag = ' Debug'
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case (debug_MATH)
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tag = ' Math'
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case (debug_FESOLVING)
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tag = ' FEsolving'
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case (debug_MESH)
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tag = ' Mesh'
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case (debug_MATERIAL)
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tag = ' Material'
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case (debug_LATTICE)
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tag = ' Lattice'
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case (debug_CONSTITUTIVE)
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tag = ' Constitutive'
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case (debug_CRYSTALLITE)
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tag = ' Crystallite'
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case (debug_HOMOGENIZATION)
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tag = ' Homogenizaiton'
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case (debug_CPFEM)
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tag = ' CPFEM'
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case (debug_SPECTRAL)
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tag = ' Spectral solver'
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case (debug_MARC)
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tag = ' MSC.MARC FEM solver'
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end select
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if(debug_level(i) /= 0) then
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write(6,'(3a)') ' debug level for ', trim(tag), ':'
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if(iand(debug_level(i),debug_LEVELBASIC) /= 0) write(6,'(a)') ' basic'
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if(iand(debug_level(i),debug_LEVELEXTENSIVE) /= 0) write(6,'(a)') ' extensive'
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if(iand(debug_level(i),debug_LEVELSELECTIVE) /= 0) then
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write(6,'(a)') ' selective on:'
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write(6,'(a24,1x,i8)') ' element: ',debug_e
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write(6,'(a24,1x,i8)') ' ip: ',debug_i
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write(6,'(a24,1x,i8)') ' grain: ',debug_g
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endif
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if(iand(debug_level(i),debug_SPECTRALRESTART) /= 0) write(6,'(a)') ' restart'
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if(iand(debug_level(i),debug_SPECTRALFFTW) /= 0) write(6,'(a)') ' FFTW'
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if(iand(debug_level(i),debug_SPECTRALDIVERGENCE)/= 0) write(6,'(a)') ' divergence'
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if(iand(debug_level(i),debug_SPECTRALROTATION) /= 0) write(6,'(a)') ' rotation'
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if(iand(debug_level(i),debug_SPECTRALPETSC) /= 0) write(6,'(a)') ' PETSc'
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endif
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enddo
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endif
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end subroutine debug_init
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!--------------------------------------------------------------------------------------------------
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!> @brief resets all debug values
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!--------------------------------------------------------------------------------------------------
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subroutine debug_reset
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debug_stressMaxLocation = 0
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debug_stressMinLocation = 0
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debug_jacobianMaxLocation = 0
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debug_jacobianMinLocation = 0
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debug_stressMax = -huge(1.0_pReal)
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debug_stressMin = huge(1.0_pReal)
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debug_jacobianMax = -huge(1.0_pReal)
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debug_jacobianMin = huge(1.0_pReal)
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end subroutine debug_reset
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!--------------------------------------------------------------------------------------------------
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!> @brief writes debug statements to standard out
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!--------------------------------------------------------------------------------------------------
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subroutine debug_info
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!$OMP CRITICAL (write2out)
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debugOutputCPFEM: if (iand(debug_level(debug_CPFEM),debug_LEVELBASIC) /= 0 &
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.and. any(debug_stressMinLocation /= 0) &
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.and. any(debug_stressMaxLocation /= 0) ) then
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write(6,'(2/,a,/)') ' Extreme values of returned stress and Jacobian'
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write(6,'(a39)') ' value el ip'
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write(6,'(a14,1x,e12.3,1x,i8,1x,i4)') ' stress min :', debug_stressMin, debug_stressMinLocation
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write(6,'(a14,1x,e12.3,1x,i8,1x,i4)') ' max :', debug_stressMax, debug_stressMaxLocation
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write(6,'(a14,1x,e12.3,1x,i8,1x,i4)') ' Jacobian min :', debug_jacobianMin, debug_jacobianMinLocation
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write(6,'(a14,1x,e12.3,1x,i8,1x,i4,/)') ' max :', debug_jacobianMax, debug_jacobianMaxLocation
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endif debugOutputCPFEM
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!$OMP END CRITICAL (write2out)
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end subroutine debug_info
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end module debug
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