systematic names
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@ -637,7 +637,7 @@ end subroutine constitutive_LiAndItsTangents
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!--------------------------------------------------------------------------------------------------
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!> @brief contains the constitutive equation for calculating the rate of change of microstructure
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!--------------------------------------------------------------------------------------------------
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function constitutive_collectDotState_source(S, ipc, ip, el,phase,of) result(broken)
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function constitutive_source_collectDotState(S, ipc, ip, el,phase,of) result(broken)
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integer, intent(in) :: &
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ipc, & !< component-ID of integration point
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@ -676,7 +676,7 @@ function constitutive_collectDotState_source(S, ipc, ip, el,phase,of) result(bro
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enddo SourceLoop
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end function constitutive_collectDotState_source
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end function constitutive_source_collectDotState
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!--------------------------------------------------------------------------------------------------
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@ -1453,7 +1453,7 @@ subroutine integrateSourceState(g,i,e)
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p = material_phaseAt(g,e)
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c = material_phaseMemberAt(g,i,e)
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broken = constitutive_collectDotState_source(crystallite_S(1:3,1:3,g,i,e), g,i,e,p,c)
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broken = constitutive_source_collectDotState(crystallite_S(1:3,1:3,g,i,e), g,i,e,p,c)
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if(broken) return
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do s = 1, phase_Nsources(p)
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@ -1471,7 +1471,7 @@ subroutine integrateSourceState(g,i,e)
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source_dotState(1:size_so(s),1,s) = sourceState(p)%p(s)%dotState(:,c)
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enddo
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broken = constitutive_collectDotState_source(crystallite_S(1:3,1:3,g,i,e), g,i,e,p,c)
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broken = constitutive_source_collectDotState(crystallite_S(1:3,1:3,g,i,e), g,i,e,p,c)
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if(broken) exit iteration
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do s = 1, phase_Nsources(p)
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@ -546,7 +546,7 @@ end subroutine constitutive_plastic_LpAndItsTangents
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!--------------------------------------------------------------------------------------------------
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!> @brief contains the constitutive equation for calculating the rate of change of microstructure
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!--------------------------------------------------------------------------------------------------
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function constitutive_collectDotState(FpArray, subdt, ipc, ip, el,phase,of) result(broken)
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function mech_collectDotState(FpArray, subdt, ipc, ip, el,phase,of) result(broken)
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integer, intent(in) :: &
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ipc, & !< component-ID of integration point
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@ -597,7 +597,7 @@ function constitutive_collectDotState(FpArray, subdt, ipc, ip, el,phase,of) resu
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broken = any(IEEE_is_NaN(plasticState(phase)%dotState(:,of)))
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end function constitutive_collectDotState
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end function mech_collectDotState
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!--------------------------------------------------------------------------------------------------
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@ -952,7 +952,7 @@ module subroutine integrateStateFPI(g,i,e)
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p = material_phaseAt(g,e)
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c = material_phaseMemberAt(g,i,e)
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e), g,i,e,p,c)
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if(broken) return
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@ -970,7 +970,7 @@ module subroutine integrateStateFPI(g,i,e)
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broken = integrateStress(g,i,e)
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if(broken) exit iteration
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e), g,i,e,p,c)
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if(broken) exit iteration
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@ -1040,7 +1040,7 @@ module subroutine integrateStateEuler(g,i,e)
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p = material_phaseAt(g,e)
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c = material_phaseMemberAt(g,i,e)
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e), g,i,e,p,c)
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if(broken) return
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@ -1081,7 +1081,7 @@ module subroutine integrateStateAdaptiveEuler(g,i,e)
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p = material_phaseAt(g,e)
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c = material_phaseMemberAt(g,i,e)
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e), g,i,e,p,c)
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if(broken) return
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@ -1098,7 +1098,7 @@ module subroutine integrateStateAdaptiveEuler(g,i,e)
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broken = integrateStress(g,i,e)
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if(broken) return
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e), g,i,e,p,c)
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if(broken) return
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@ -1193,7 +1193,7 @@ subroutine integrateStateRK(g,i,e,A,B,CC,DB)
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p = material_phaseAt(g,e)
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c = material_phaseMemberAt(g,i,e)
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e), g,i,e,p,c)
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if(broken) return
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@ -1216,7 +1216,7 @@ subroutine integrateStateRK(g,i,e,A,B,CC,DB)
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broken = integrateStress(g,i,e,CC(stage))
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if(broken) exit
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broken = constitutive_collectDotState(crystallite_partitionedFp0, &
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broken = mech_collectDotState(crystallite_partitionedFp0, &
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crystallite_subdt(g,i,e)*CC(stage), g,i,e,p,c)
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if(broken) exit
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