state jump in same loop
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@ -1111,34 +1111,20 @@ subroutine integrateStateFPI
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sourceState(p)%p(s)%state(1:sizeDotState,c), &
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sourceState(p)%p(s)%atol(1:sizeDotState))
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enddo
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if(crystallite_converged(g,i,e)) then
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crystallite_todo(g,i,e) = stateJump(g,i,e)
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if(.not. (crystallite_todo(g,i,e) .or. crystallite_localPlasticity(g,i,e))) &
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nonlocalBroken = .true.
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cycle
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endif
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endif
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enddo; enddo; enddo
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!$OMP END PARALLEL DO
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if(nonlocalBroken) where(.not. crystallite_localPlasticity) crystallite_todo = .false.
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!$OMP PARALLEL DO
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do e = FEsolving_execElem(1),FEsolving_execElem(2)
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do i = FEsolving_execIP(1),FEsolving_execIP(2)
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do g = 1,homogenization_Ngrains(material_homogenizationAt(e))
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!$OMP FLUSH(crystallite_todo)
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if (crystallite_todo(g,i,e) .and. crystallite_converged(g,i,e)) then ! converged and still alive...
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crystallite_todo(g,i,e) = stateJump(g,i,e)
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!$OMP FLUSH(crystallite_todo)
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if (.not. crystallite_todo(g,i,e)) then ! if state jump fails, then convergence is broken
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crystallite_converged(g,i,e) = .false.
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if (.not. crystallite_localPlasticity(g,i,e)) then ! if broken non-local...
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!$OMP CRITICAL (checkTodo)
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crystallite_todo = crystallite_todo .and. crystallite_localPlasticity ! ...all non-locals skipped
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!$OMP END CRITICAL (checkTodo)
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endif
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endif
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endif
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enddo; enddo; enddo
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!$OMP END PARALLEL DO
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if (any(plasticState(:)%nonlocal)) call nonlocalConvergenceCheck
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@ -1782,62 +1768,49 @@ end subroutine update_deltaState
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!--------------------------------------------------------------------------------------------------
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logical function stateJump(ipc,ip,el)
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integer, intent(in):: &
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el, & ! element index
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ip, & ! integration point index
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ipc ! grain index
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integer :: &
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c, &
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p, &
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mySource, &
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myOffset, &
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mySize
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c = material_phaseMemberAt(ipc,ip,el)
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p = material_phaseAt(ipc,el)
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call constitutive_collectDeltaState(crystallite_S(1:3,1:3,ipc,ip,el), &
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crystallite_Fe(1:3,1:3,ipc,ip,el), &
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crystallite_Fi(1:3,1:3,ipc,ip,el), &
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ipc,ip,el)
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myOffset = plasticState(p)%offsetDeltaState
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mySize = plasticState(p)%sizeDeltaState
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if( any(IEEE_is_NaN(plasticState(p)%deltaState(1:mySize,c)))) then ! NaN occured in deltaState
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stateJump = .false.
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return
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endif
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plasticState(p)%state(myOffset + 1:myOffset + mySize,c) = &
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plasticState(p)%state(myOffset + 1:myOffset + mySize,c) + plasticState(p)%deltaState(1:mySize,c)
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do mySource = 1, phase_Nsources(p)
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myOffset = sourceState(p)%p(mySource)%offsetDeltaState
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mySize = sourceState(p)%p(mySource)%sizeDeltaState
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if (any(IEEE_is_NaN(sourceState(p)%p(mySource)%deltaState(1:mySize,c)))) then ! NaN occured in deltaState
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stateJump = .false.
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return
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endif
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sourceState(p)%p(mySource)%state(myOffset + 1: myOffset + mySize,c) = &
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sourceState(p)%p(mySource)%state(myOffset + 1: myOffset + mySize,c) + sourceState(p)%p(mySource)%deltaState(1:mySize,c)
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enddo
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#ifdef DEBUG
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if (any(dNeq0(plasticState(p)%deltaState(1:mySize,c))) &
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.and. iand(debug_level(debug_crystallite), debug_levelExtensive) /= 0 &
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.and. ((el == debug_e .and. ip == debug_i .and. ipc == debug_g) &
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.or. .not. iand(debug_level(debug_crystallite), debug_levelSelective) /= 0)) then
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write(6,'(a,i8,1x,i2,1x,i3, /)') '<< CRYST >> update state at el ip ipc ',el,ip,ipc
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write(6,'(a,/,(12x,12(e12.5,1x)),/)') '<< CRYST >> deltaState', plasticState(p)%deltaState(1:mySize,c)
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write(6,'(a,/,(12x,12(e12.5,1x)),/)') '<< CRYST >> new state', &
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plasticState(p)%state(myOffset + 1 : &
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myOffset + mySize,c)
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endif
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#endif
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stateJump = .true.
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integer, intent(in):: &
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el, & ! element index
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ip, & ! integration point index
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ipc ! grain index
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integer :: &
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c, &
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p, &
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mySource, &
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myOffset, &
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mySize
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c = material_phaseMemberAt(ipc,ip,el)
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p = material_phaseAt(ipc,el)
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call constitutive_collectDeltaState(crystallite_S(1:3,1:3,ipc,ip,el), &
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crystallite_Fe(1:3,1:3,ipc,ip,el), &
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crystallite_Fi(1:3,1:3,ipc,ip,el), &
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ipc,ip,el)
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myOffset = plasticState(p)%offsetDeltaState
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mySize = plasticState(p)%sizeDeltaState
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if( any(IEEE_is_NaN(plasticState(p)%deltaState(1:mySize,c)))) then
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stateJump = .false.
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return
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endif
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plasticState(p)%state(myOffset + 1:myOffset + mySize,c) = &
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plasticState(p)%state(myOffset + 1:myOffset + mySize,c) + plasticState(p)%deltaState(1:mySize,c)
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do mySource = 1, phase_Nsources(p)
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myOffset = sourceState(p)%p(mySource)%offsetDeltaState
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mySize = sourceState(p)%p(mySource)%sizeDeltaState
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if (any(IEEE_is_NaN(sourceState(p)%p(mySource)%deltaState(1:mySize,c)))) then
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stateJump = .false.
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return
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endif
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sourceState(p)%p(mySource)%state(myOffset + 1: myOffset + mySize,c) = &
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sourceState(p)%p(mySource)%state(myOffset + 1: myOffset + mySize,c) + sourceState(p)%p(mySource)%deltaState(1:mySize,c)
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enddo
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stateJump = .true.
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end function stateJump
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