string length is not know, avoid overflow
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@ -549,8 +549,9 @@ subroutine crystallite_init()
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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num_crystallite, &
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num_crystallite, &
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phases
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phases
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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num_crystallite => config_numerics%get_dict('crystallite',defaultVal=emptyDict)
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num_crystallite => config_numerics%get_dict('crystallite',defaultVal=emptyDict)
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@ -566,6 +567,7 @@ subroutine crystallite_init()
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num%nState = num_crystallite%get_asInt ('nState', defaultVal=20)
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num%nState = num_crystallite%get_asInt ('nState', defaultVal=20)
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num%nStress = num_crystallite%get_asInt ('nStress', defaultVal=40)
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num%nStress = num_crystallite%get_asInt ('nStress', defaultVal=40)
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extmsg = ''
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if (num%subStepMinCryst <= 0.0_pReal) extmsg = trim(extmsg)//' subStepMinCryst'
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if (num%subStepMinCryst <= 0.0_pReal) extmsg = trim(extmsg)//' subStepMinCryst'
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if (num%subStepSizeCryst <= 0.0_pReal) extmsg = trim(extmsg)//' subStepSizeCryst'
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if (num%subStepSizeCryst <= 0.0_pReal) extmsg = trim(extmsg)//' subStepSizeCryst'
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if (num%stepIncreaseCryst <= 0.0_pReal) extmsg = trim(extmsg)//' stepIncreaseCryst'
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if (num%stepIncreaseCryst <= 0.0_pReal) extmsg = trim(extmsg)//' stepIncreaseCryst'
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@ -41,7 +41,7 @@ module function anisobrittle_init() result(mySources)
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src
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src
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integer :: Nmembers,ph
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integer :: Nmembers,ph
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integer, dimension(:), allocatable :: N_cl
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integer, dimension(:), allocatable :: N_cl
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character(len=pStringLen) :: extmsg = ''
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character(len=:), allocatable :: extmsg
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mySources = source_active('anisobrittle')
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mySources = source_active('anisobrittle')
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@ -53,7 +53,7 @@ module function anisobrittle_init() result(mySources)
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phases => config_material%get_dict('phase')
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phases => config_material%get_dict('phase')
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allocate(param(phases%length))
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allocate(param(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (mySources(ph)) then
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if (mySources(ph)) then
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@ -39,7 +39,7 @@ module function isobrittle_init() result(mySources)
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phase, &
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phase, &
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src
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src
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integer :: Nmembers,ph
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integer :: Nmembers,ph
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character(len=pStringLen) :: extmsg = ''
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character(len=:), allocatable :: extmsg
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mySources = source_active('isobrittle')
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mySources = source_active('isobrittle')
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@ -53,6 +53,7 @@ module function isobrittle_init() result(mySources)
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allocate(param(phases%length))
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allocate(param(phases%length))
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allocate(state(phases%length))
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allocate(state(phases%length))
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allocate(deltaState(phases%length))
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allocate(deltaState(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (mySources(ph)) then
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if (mySources(ph)) then
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@ -93,8 +93,8 @@ module function plastic_dislotungsten_init() result(myPlasticity)
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rho_mob_0, & !< initial dislocation density
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rho_mob_0, & !< initial dislocation density
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rho_dip_0, & !< initial dipole density
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rho_dip_0, & !< initial dipole density
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a !< non-Schmid coefficients
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a !< non-Schmid coefficients
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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phases, &
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phases, &
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phase, &
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phase, &
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@ -116,6 +116,7 @@ module function plastic_dislotungsten_init() result(myPlasticity)
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allocate(indexDotState(phases%length))
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allocate(indexDotState(phases%length))
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allocate(state(phases%length))
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allocate(state(phases%length))
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allocate(dependentState(phases%length))
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allocate(dependentState(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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if (.not. myPlasticity(ph)) cycle
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@ -140,8 +140,8 @@ module function plastic_dislotwin_init() result(myPlasticity)
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real(pReal), allocatable, dimension(:) :: &
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real(pReal), allocatable, dimension(:) :: &
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rho_mob_0, & !< initial unipolar dislocation density per slip system
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rho_mob_0, & !< initial unipolar dislocation density per slip system
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rho_dip_0 !< initial dipole dislocation density per slip system
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rho_dip_0 !< initial dipole dislocation density per slip system
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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phases, &
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phases, &
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phase, &
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phase, &
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@ -170,6 +170,7 @@ module function plastic_dislotwin_init() result(myPlasticity)
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allocate(indexDotState(phases%length))
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allocate(indexDotState(phases%length))
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allocate(state(phases%length))
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allocate(state(phases%length))
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allocate(dependentState(phases%length))
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allocate(dependentState(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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if (.not. myPlasticity(ph)) cycle
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@ -54,8 +54,8 @@ module function plastic_isotropic_init() result(myPlasticity)
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sizeState, sizeDotState
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sizeState, sizeDotState
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real(pReal) :: &
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real(pReal) :: &
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xi_0 !< initial critical stress
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xi_0 !< initial critical stress
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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phases, &
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phases, &
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phase, &
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phase, &
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@ -75,6 +75,7 @@ module function plastic_isotropic_init() result(myPlasticity)
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phases => config_material%get_dict('phase')
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phases => config_material%get_dict('phase')
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allocate(param(phases%length))
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allocate(param(phases%length))
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allocate(state(phases%length))
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allocate(state(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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if (.not. myPlasticity(ph)) cycle
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@ -77,8 +77,8 @@ module function plastic_kinehardening_init() result(myPlasticity)
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real(pReal), dimension(:), allocatable :: &
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real(pReal), dimension(:), allocatable :: &
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xi_0, & !< initial resistance against plastic flow
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xi_0, & !< initial resistance against plastic flow
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a !< non-Schmid coefficients
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a !< non-Schmid coefficients
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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phases, &
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phases, &
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phase, &
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phase, &
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@ -99,7 +99,7 @@ module function plastic_kinehardening_init() result(myPlasticity)
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allocate(indexDotState(phases%length))
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allocate(indexDotState(phases%length))
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allocate(state(phases%length))
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allocate(state(phases%length))
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allocate(deltaState(phases%length))
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allocate(deltaState(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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if (.not. myPlasticity(ph)) cycle
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@ -188,8 +188,8 @@ module function plastic_nonlocal_init() result(myPlasticity)
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s, t, l
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s, t, l
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real(pReal), dimension(:), allocatable :: &
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real(pReal), dimension(:), allocatable :: &
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a
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a
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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type(tInitialParameters) :: &
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type(tInitialParameters) :: &
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ini
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ini
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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@ -225,6 +225,7 @@ module function plastic_nonlocal_init() result(myPlasticity)
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allocate(dotState(phases%length))
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allocate(dotState(phases%length))
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allocate(deltaState(phases%length))
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allocate(deltaState(phases%length))
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allocate(dependentState(phases%length))
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allocate(dependentState(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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if (.not. myPlasticity(ph)) cycle
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@ -90,8 +90,8 @@ module function plastic_phenopowerlaw_init() result(myPlasticity)
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xi_0_sl, & !< initial critical shear stress for slip
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xi_0_sl, & !< initial critical shear stress for slip
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xi_0_tw, & !< initial critical shear stress for twin
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xi_0_tw, & !< initial critical shear stress for twin
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a !< non-Schmid coefficients
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a !< non-Schmid coefficients
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character(len=pStringLen) :: &
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character(len=:), allocatable :: &
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extmsg = ''
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extmsg
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type(tDict), pointer :: &
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type(tDict), pointer :: &
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phases, &
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phases, &
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phase, &
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phase, &
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@ -110,6 +110,7 @@ module function plastic_phenopowerlaw_init() result(myPlasticity)
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allocate(param(phases%length))
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allocate(param(phases%length))
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allocate(indexDotState(phases%length))
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allocate(indexDotState(phases%length))
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allocate(state(phases%length))
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allocate(state(phases%length))
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extmsg = ''
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do ph = 1, phases%length
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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if (.not. myPlasticity(ph)) cycle
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