white space and style adjustments
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@ -406,7 +406,6 @@ subroutine phase_init
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phases => config_material%get_dict('phase')
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allocate(phase_lattice(phases%length))
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allocate(phase_cOverA(phases%length),source=-1.0_pReal)
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allocate(phase_rho(phases%length))
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@ -549,8 +548,7 @@ subroutine crystallite_init()
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type(tDict), pointer :: &
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num_crystallite, &
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phases
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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num_crystallite => config_numerics%get_dict('crystallite',defaultVal=emptyDict)
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@ -84,10 +84,11 @@ module subroutine damage_init()
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source
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logical:: damage_active
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print'(/,1x,a)', '<<<+- phase:damage init -+>>>'
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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(current(phases%length))
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allocate(damageState(phases%length))
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allocate(param(phases%length))
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@ -215,6 +215,7 @@ module subroutine mechanical_init(phases)
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phase, &
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mech
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print'(/,1x,a)', '<<<+- phase:mechanical init -+>>>'
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!-------------------------------------------------------------------------------------------------
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@ -45,8 +45,10 @@ module subroutine eigen_init(phases)
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type(tList), pointer :: &
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kinematics
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print'(/,1x,a)', '<<<+- phase:mechanical:eigen init -+>>>'
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!--------------------------------------------------------------------------------------------------
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! explicit eigen mechanisms
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allocate(Nmodels(phases%length),source = 0)
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@ -36,13 +36,14 @@ module function thermalexpansion_init(kinematics_length) result(myKinematics)
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mech
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print'(/,1x,a)', '<<<+- phase:mechanical:eigen:thermalexpansion init -+>>>'
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myKinematics = kinematics_active('thermalexpansion',kinematics_length)
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Ninstances = count(myKinematics)
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print'(/,a,i2)', ' # phases: ',Ninstances; flush(IO_STDOUT)
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if (Ninstances == 0) return
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print'(/,1x,a)', '<<<+- phase:mechanical:eigen:thermalexpansion init -+>>>'
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phases => config_material%get_dict('phase')
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allocate(param(Ninstances))
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allocate(kinematics_thermal_expansion_instance(phases%length), source=0)
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@ -35,6 +35,7 @@ module subroutine elastic_init(phases)
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print'(/,a,i0)', ' # phases: ',phases%length; flush(IO_STDOUT)
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allocate(param(phases%length))
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do ph = 1, phases%length
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@ -93,8 +93,7 @@ module function plastic_dislotungsten_init() result(myPlasticity)
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rho_mob_0, & !< initial dislocation density
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rho_dip_0, & !< initial dipole density
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a !< non-Schmid coefficients
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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type(tDict), pointer :: &
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phases, &
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phase, &
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@ -111,6 +110,7 @@ module function plastic_dislotungsten_init() result(myPlasticity)
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print'(/,1x,a)', 'D. Cereceda et al., International Journal of Plasticity 78:242–256, 2016'
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print'( 1x,a)', 'https://doi.org/10.1016/j.ijplas.2015.09.002'
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phases => config_material%get_dict('phase')
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allocate(param(phases%length))
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allocate(indexDotState(phases%length))
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@ -140,8 +140,7 @@ module function plastic_dislotwin_init() result(myPlasticity)
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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_dip_0 !< initial dipole dislocation density per slip system
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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type(tDict), pointer :: &
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phases, &
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phase, &
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@ -54,8 +54,7 @@ module function plastic_isotropic_init() result(myPlasticity)
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sizeState, sizeDotState
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real(pReal) :: &
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xi_0 !< initial critical stress
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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type(tDict), pointer :: &
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phases, &
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phase, &
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@ -72,6 +71,7 @@ module function plastic_isotropic_init() result(myPlasticity)
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print'(/,1x,a)', 'T. Maiti and P. Eisenlohr, Scripta Materialia 145:37–40, 2018'
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print'( 1x,a)', 'https://doi.org/10.1016/j.scriptamat.2017.09.047'
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phases => config_material%get_dict('phase')
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allocate(param(phases%length))
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allocate(state(phases%length))
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@ -77,8 +77,7 @@ module function plastic_kinehardening_init() result(myPlasticity)
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real(pReal), dimension(:), allocatable :: &
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xi_0, & !< initial resistance against plastic flow
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a !< non-Schmid coefficients
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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type(tDict), pointer :: &
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phases, &
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phase, &
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@ -94,6 +93,7 @@ module function plastic_kinehardening_init() result(myPlasticity)
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print'(/,1x,a)', 'J.A. Wollmershauser et al., International Journal of Fatigue 36:181–193, 2012'
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print'( 1x,a)', 'https://doi.org/10.1016/j.ijfatigue.2011.07.008'
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phases => config_material%get_dict('phase')
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allocate(param(phases%length))
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allocate(indexDotState(phases%length))
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@ -27,6 +27,7 @@ module function plastic_none_init() result(myPlasticity)
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print'(/,1x,a)', '<<<+- phase:mechanical:plastic:none init -+>>>'
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print'(/,a,i0)', ' # phases: ',count(myPlasticity); flush(IO_STDOUT)
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phases => config_material%get_dict('phase')
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do ph = 1, phases%length
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if (.not. myPlasticity(ph)) cycle
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@ -188,8 +188,7 @@ module function plastic_nonlocal_init() result(myPlasticity)
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s, t, l
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real(pReal), dimension(:), allocatable :: &
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a
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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type(tInitialParameters) :: &
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ini
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type(tDict), pointer :: &
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@ -216,9 +215,7 @@ module function plastic_nonlocal_init() result(myPlasticity)
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phases => config_material%get_dict('phase')
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allocate(geom(phases%length))
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allocate(param(phases%length))
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allocate(state(phases%length))
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allocate(state0(phases%length))
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@ -90,8 +90,7 @@ 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_tw, & !< initial critical shear stress for twin
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a !< non-Schmid coefficients
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character(len=:), allocatable :: &
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extmsg
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character(len=:), allocatable :: extmsg
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type(tDict), pointer :: &
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phases, &
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phase, &
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@ -92,8 +92,8 @@ module subroutine thermal_init(phases)
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print'(/,1x,a)', '<<<+- phase:thermal init -+>>>'
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allocate(current(phases%length))
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allocate(current(phases%length))
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allocate(thermalState(phases%length))
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allocate(thermal_Nsources(phases%length),source = 0)
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allocate(param(phases%length))
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@ -38,6 +38,7 @@ module function dissipation_init(source_length) result(mySources)
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mySources = thermal_active('dissipation',source_length)
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if (count(mySources) == 0) return
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print'(/,1x,a)', '<<<+- phase:thermal:dissipation init -+>>>'
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print'(/,a,i2)', ' # phases: ',count(mySources); flush(IO_STDOUT)
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@ -41,6 +41,7 @@ module function externalheat_init(source_length) result(mySources)
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mySources = thermal_active('externalheat',source_length)
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if (count(mySources) == 0) return
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print'(/,1x,a)', '<<<+- phase:thermal:externalheat init -+>>>'
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print'(/,a,i2)', ' # phases: ',count(mySources); flush(IO_STDOUT)
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