error checking, making readable with damask.Result
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6aa013d831
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c9356fd447
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@ -20,7 +20,7 @@ program DAMASK_mesh
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use discretization_mesh
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use FEM_Utilities
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use mesh_mech_FEM
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implicit none
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!--------------------------------------------------------------------------------------------------
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@ -56,7 +56,7 @@ program DAMASK_mesh
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totalIncsCounter = 0, & !< total # of increments
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statUnit = 0, & !< file unit for statistics output
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stagIter, &
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component
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component
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class(tNode), pointer :: &
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num_mesh
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character(len=pStringLen), dimension(:), allocatable :: fileContent
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@ -80,7 +80,7 @@ program DAMASK_mesh
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call CPFEM_initAll
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print'(/,a)', ' <<<+- DAMASK_mesh init -+>>>'; flush(IO_STDOUT)
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!---------------------------------------------------------------------
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!---------------------------------------------------------------------
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! reading field information from numerics file and do sanity checks
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num_mesh => config_numerics%get('mesh', defaultVal=emptyDict)
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stagItMax = num_mesh%get_asInt('maxStaggeredIter',defaultVal=10)
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@ -100,7 +100,7 @@ program DAMASK_mesh
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do l = 1, size(fileContent)
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line = fileContent(l)
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if (IO_isBlank(line)) cycle ! skip empty lines
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chunkPos = IO_stringPos(line)
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do i = 1, chunkPos(1) ! reading compulsory parameters for loadcase
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select case (IO_lc(IO_stringValue(line,chunkPos,i)))
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@ -109,15 +109,16 @@ program DAMASK_mesh
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end select
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enddo ! count all identifiers to allocate memory and do sanity check
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enddo
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allocate (loadCases(N_def))
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if(N_def < 1) call IO_error(error_ID = 837)
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allocate(loadCases(N_def))
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do i = 1, size(loadCases)
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allocate(loadCases(i)%fieldBC(nActiveFields))
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field = 1
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loadCases(i)%fieldBC(field)%ID = FIELD_MECH_ID
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enddo
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do i = 1, size(loadCases)
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do field = 1, nActiveFields
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select case (loadCases(i)%fieldBC(field)%ID)
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@ -133,21 +134,21 @@ program DAMASK_mesh
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case (3)
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loadCases(i)%fieldBC(field)%componentBC(component)%ID = COMPONENT_MECH_Z_ID
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end select
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enddo
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enddo
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end select
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do component = 1, loadCases(i)%fieldBC(field)%nComponents
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allocate(loadCases(i)%fieldBC(field)%componentBC(component)%Value(mesh_Nboundaries), source = 0.0_pReal)
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allocate(loadCases(i)%fieldBC(field)%componentBC(component)%Mask (mesh_Nboundaries), source = .false.)
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enddo
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enddo
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enddo
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enddo
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enddo
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!--------------------------------------------------------------------------------------------------
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! reading the load case and assign values to the allocated data structure
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do l = 1, size(fileContent)
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line = fileContent(l)
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if (IO_isBlank(line)) cycle ! skip empty lines
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chunkPos = IO_stringPos(line)
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do i = 1, chunkPos(1)
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select case (IO_lc(IO_stringValue(line,chunkPos,i)))
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@ -161,7 +162,7 @@ program DAMASK_mesh
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do faceSet = 1, mesh_Nboundaries
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if (mesh_boundaries(faceSet) == currentFace) currentFaceSet = faceSet
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enddo
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if (currentFaceSet < 0) call IO_error(error_ID = errorID, ext_msg = 'invalid BC')
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if (currentFaceSet < 0) call IO_error(error_ID = 837, ext_msg = 'invalid BC')
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case('t','time','delta') ! increment time
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loadCases(currentLoadCase)%time = IO_floatValue(line,chunkPos,i+1)
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case('n','incs','increments','steps') ! number of increments
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@ -170,7 +171,7 @@ program DAMASK_mesh
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loadCases(currentLoadCase)%incs = IO_intValue(line,chunkPos,i+1)
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loadCases(currentLoadCase)%logscale = 1
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case('freq','frequency','outputfreq') ! frequency of result writings
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loadCases(currentLoadCase)%outputfrequency = IO_intValue(line,chunkPos,i+1)
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loadCases(currentLoadCase)%outputfrequency = IO_intValue(line,chunkPos,i+1)
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case('guessreset','dropguessing')
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loadCases(currentLoadCase)%followFormerTrajectory = .false. ! do not continue to predict deformation along former trajectory
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@ -185,7 +186,7 @@ program DAMASK_mesh
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case('z')
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ID = COMPONENT_MECH_Z_ID
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end select
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do field = 1, nActiveFields
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if (loadCases(currentLoadCase)%fieldBC(field)%ID == FIELD_MECH_ID) then
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do component = 1, loadcases(currentLoadCase)%fieldBC(field)%nComponents
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@ -197,11 +198,11 @@ program DAMASK_mesh
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endif
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enddo
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endif
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enddo
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enddo
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end select
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enddo
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enddo
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!--------------------------------------------------------------------------------------------------
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! consistency checks and output of load case
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loadCases(1)%followFormerTrajectory = .false. ! cannot guess along trajectory for first inc of first currentLoadCase
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@ -215,17 +216,17 @@ program DAMASK_mesh
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select case (loadCases(currentLoadCase)%fieldBC(field)%ID)
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case(FIELD_MECH_ID)
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print'(a)', ' Field '//trim(FIELD_MECH_label)
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end select
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do faceSet = 1, mesh_Nboundaries
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do component = 1, loadCases(currentLoadCase)%fieldBC(field)%nComponents
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if (loadCases(currentLoadCase)%fieldBC(field)%componentBC(component)%Mask(faceSet)) &
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print'(a,i2,a,i2,a,f12.7)', ' Face ', mesh_boundaries(faceSet), &
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' Component ', component, &
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' Component ', component, &
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' Value ', loadCases(currentLoadCase)%fieldBC(field)% &
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componentBC(component)%Value(faceSet)
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enddo
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enddo
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enddo
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enddo
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print'(a,f12.6)', ' time: ', loadCases(currentLoadCase)%time
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if (loadCases(currentLoadCase)%incs < 1) errorID = 835 ! non-positive incs count
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@ -244,7 +245,7 @@ program DAMASK_mesh
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case(FIELD_MECH_ID)
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call FEM_mech_init(loadCases(1)%fieldBC(field))
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end select
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enddo
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enddo
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if (worldrank == 0) then
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open(newunit=statUnit,file=trim(getSolverJobName())//'.sta',form='FORMATTED',status='REPLACE')
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@ -254,9 +255,9 @@ program DAMASK_mesh
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loadCaseLooping: do currentLoadCase = 1, size(loadCases)
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time0 = time ! load case start time
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guess = loadCases(currentLoadCase)%followFormerTrajectory ! change of load case? homogeneous guess for the first inc
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incLooping: do inc = 1, loadCases(currentLoadCase)%incs
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totalIncsCounter = totalIncsCounter + 1
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totalIncsCounter = totalIncsCounter + 1
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!--------------------------------------------------------------------------------------------------
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! forwarding time
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@ -266,7 +267,7 @@ program DAMASK_mesh
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else
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if (currentLoadCase == 1) then ! 1st load case of logarithmic scale
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if (inc == 1) then ! 1st inc of 1st load case of logarithmic scale
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timeinc = loadCases(1)%time*(2.0_pReal**real( 1-loadCases(1)%incs ,pReal)) ! assume 1st inc is equal to 2nd
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timeinc = loadCases(1)%time*(2.0_pReal**real( 1-loadCases(1)%incs ,pReal)) ! assume 1st inc is equal to 2nd
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else ! not-1st inc of 1st load case of logarithmic scale
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timeinc = loadCases(1)%time*(2.0_pReal**real(inc-1-loadCases(1)%incs ,pReal))
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endif
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@ -287,7 +288,7 @@ program DAMASK_mesh
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remainingLoadCaseTime = loadCases(currentLoadCase)%time+time0 - time
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time = time + timeinc ! forward target time
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stepFraction = stepFraction + 1 ! count step
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!--------------------------------------------------------------------------------------------------
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! report begin of new step
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print'(/,a)', ' ###########################################################################'
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@ -310,8 +311,8 @@ program DAMASK_mesh
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guess,timeinc,timeIncOld,loadCases(currentLoadCase)%fieldBC(field))
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end select
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enddo
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enddo
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!--------------------------------------------------------------------------------------------------
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! solve fields
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stagIter = 0
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@ -332,10 +333,10 @@ program DAMASK_mesh
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stagIterate = stagIter < stagItMax &
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.and. all(solres(:)%converged) &
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.and. .not. all(solres(:)%stagConverged) ! stationary with respect to staggered iteration
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enddo
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! check solution
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cutBack = .False.
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enddo
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! check solution
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cutBack = .False.
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if(.not. all(solres(:)%converged .and. solres(:)%stagConverged)) then ! no solution found
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if (cutBackLevel < maxCutBack) then ! do cut back
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print'(/,a)', ' cut back detected'
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@ -344,7 +345,7 @@ program DAMASK_mesh
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cutBackLevel = cutBackLevel + 1
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time = time - timeinc ! rewind time
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timeinc = timeinc/2.0_pReal
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else ! default behavior, exit if spectral solver does not converge
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else ! default behavior, exit if spectral solver does not converge
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call IO_warning(850)
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call quit(1) ! quit
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endif
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@ -374,8 +375,8 @@ program DAMASK_mesh
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enddo incLooping
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enddo loadCaseLooping
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!--------------------------------------------------------------------------------------------------
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! report summary of whole calculation
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print'(/,a)', ' ###########################################################################'
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@ -17,6 +17,7 @@ module discretization_mesh
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use IO
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use config
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use discretization
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use results
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use FEsolving
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use FEM_quadrature
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use YAML_types
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@ -182,6 +183,10 @@ subroutine discretization_mesh_init(restart)
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reshape(mesh_ipCoordinates,[3,mesh_maxNips*mesh_NcpElems]), &
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mesh_node0)
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call results_openJobFile
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call results_closeGroup(results_addGroup('geometry'))
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call results_closeJobFile
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end subroutine discretization_mesh_init
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