one implicit none is enough
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@ -64,7 +64,6 @@ subroutine grid_damage_spectral_init
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worldsize, &
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petsc_options
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implicit none
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PetscInt, dimension(worldsize) :: localK
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integer :: i, j, k, cell
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DM :: damage_grid
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@ -164,7 +163,6 @@ function grid_damage_spectral_solution(timeinc,timeinc_old,loadCaseTime) result(
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use damage_nonlocal, only: &
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damage_nonlocal_putNonLocalDamage
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implicit none
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real(pReal), intent(in) :: &
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timeinc, & !< increment in time for current solution
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timeinc_old, & !< increment in time of last increment
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@ -236,7 +234,6 @@ subroutine grid_damage_spectral_forward
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damage_nonlocal_getDiffusion33, &
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damage_nonlocal_getMobility
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implicit none
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integer :: i, j, k, cell
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DM :: dm_local
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PetscScalar, dimension(:,:,:), pointer :: x_scal
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@ -301,7 +298,6 @@ subroutine formResidual(in,x_scal,f_scal,dummy,ierr)
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damage_nonlocal_getDiffusion33, &
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damage_nonlocal_getMobility
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implicit none
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DMDALocalInfo, dimension(DMDA_LOCAL_INFO_SIZE) :: &
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in
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PetscScalar, dimension( &
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@ -99,7 +99,6 @@ subroutine grid_mech_FEM_init
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use math, only: &
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math_invSym3333
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implicit none
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real(pReal) :: HGCoeff = 0e-2_pReal
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PetscInt, dimension(:), allocatable :: localK
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real(pReal), dimension(3,3) :: &
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@ -133,9 +132,9 @@ subroutine grid_mech_FEM_init
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!--------------------------------------------------------------------------------------------------
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! allocate global fields
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allocate (F (3,3,grid(1),grid(2),grid3),source = 0.0_pReal)
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allocate (P_current (3,3,grid(1),grid(2),grid3),source = 0.0_pReal)
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allocate (F_lastInc (3,3,grid(1),grid(2),grid3),source = 0.0_pReal)
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allocate(F (3,3,grid(1),grid(2),grid3),source = 0.0_pReal)
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allocate(P_current (3,3,grid(1),grid(2),grid3),source = 0.0_pReal)
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allocate(F_lastInc (3,3,grid(1),grid(2),grid3),source = 0.0_pReal)
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!--------------------------------------------------------------------------------------------------
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! initialize solver specific parts of PETSc
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@ -166,8 +165,8 @@ subroutine grid_mech_FEM_init
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CHKERRQ(ierr)
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call DMSNESSetJacobianLocal(mech_grid,formJacobian,PETSC_NULL_SNES,ierr)
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CHKERRQ(ierr)
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call SNESSetConvergenceTest(mech_snes,converged,PETSC_NULL_SNES,PETSC_NULL_FUNCTION,ierr)
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CHKERRQ(ierr) ! specify custom convergence check function "_converged"
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call SNESSetConvergenceTest(mech_snes,converged,PETSC_NULL_SNES,PETSC_NULL_FUNCTION,ierr) ! specify custom convergence check function "_converged"
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CHKERRQ(ierr)
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call SNESSetMaxLinearSolveFailures(mech_snes, huge(1), ierr); CHKERRQ(ierr) ! ignore linear solve failures
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call SNESSetFromOptions(mech_snes,ierr); CHKERRQ(ierr) ! pull it all together with additional cli arguments
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@ -253,7 +252,6 @@ function grid_mech_FEM_solution(incInfoIn,timeinc,timeinc_old,stress_BC,rotation
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restartWrite, &
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terminallyIll
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implicit none
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!--------------------------------------------------------------------------------------------------
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! input data for solution
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character(len=*), intent(in) :: &
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@ -326,7 +324,6 @@ subroutine grid_mech_FEM_forward(guess,timeinc,timeinc_old,loadCaseTime,deformat
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use FEsolving, only: &
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restartWrite
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implicit none
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logical, intent(in) :: &
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guess
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real(pReal), intent(in) :: &
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@ -352,7 +349,7 @@ subroutine grid_mech_FEM_forward(guess,timeinc,timeinc_old,loadCaseTime,deformat
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else
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!--------------------------------------------------------------------------------------------------
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! restart information for spectral solver
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if (restartWrite) then ! QUESTION: where is this logical properly set?
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if (restartWrite) then
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write(6,'(/,a)') ' writing converged results for restart';flush(6)
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write(rankStr,'(a1,i0)')'_',worldrank
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@ -424,7 +421,7 @@ end subroutine grid_mech_FEM_forward
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!--------------------------------------------------------------------------------------------------
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!> @brief convergence check
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!--------------------------------------------------------------------------------------------------
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subroutine converged(snes_local,PETScIter,devNull1,devNull2,devNull3,reason,dummy,ierr)
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subroutine converged(snes_local,PETScIter,devNull1,devNull2,fnorm,reason,dummy,ierr)
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use mesh
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use spectral_utilities
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use numerics, only: &
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@ -437,13 +434,12 @@ subroutine converged(snes_local,PETScIter,devNull1,devNull2,devNull3,reason,dumm
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use FEsolving, only: &
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terminallyIll
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implicit none
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SNES :: snes_local
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PetscInt, intent(in) :: PETScIter
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PetscReal, intent(in) :: &
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devNull1, &
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devNull2, &
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devNull3
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fnorm
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SNESConvergedReason :: reason
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PetscObject :: dummy
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PetscErrorCode :: ierr
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@ -508,7 +504,6 @@ subroutine formResidual(da_local,x_local, &
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use homogenization, only: &
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materialpoint_dPdF
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implicit none
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DM :: da_local
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Vec :: x_local, f_local
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PetscScalar, pointer,dimension(:,:,:,:) :: x_scal, f_scal
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@ -627,7 +622,6 @@ subroutine formJacobian(da_local,x_local,Jac_pre,Jac,dummy,ierr)
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use homogenization, only: &
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materialpoint_dPdF
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implicit none
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DM :: da_local
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Vec :: x_local, coordinates
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@ -107,7 +107,6 @@ subroutine grid_mech_spectral_basic_init
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use math, only: &
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math_invSym3333
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implicit none
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real(pReal), dimension(3,3,grid(1),grid(2),grid3) :: P
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real(pReal), dimension(3,3) :: &
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temp33_Real = 0.0_pReal
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@ -221,7 +220,6 @@ function grid_mech_spectral_basic_solution(incInfoIn,timeinc,timeinc_old,stress_
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restartWrite, &
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terminallyIll
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implicit none
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!--------------------------------------------------------------------------------------------------
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! input data for solution
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character(len=*), intent(in) :: &
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@ -298,7 +296,6 @@ subroutine grid_mech_spectral_basic_forward(guess,timeinc,timeinc_old,loadCaseTi
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use FEsolving, only: &
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restartWrite
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implicit none
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logical, intent(in) :: &
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guess
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real(pReal), intent(in) :: &
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@ -397,7 +394,6 @@ subroutine converged(snes_local,PETScIter,devNull1,devNull2,devNull3,reason,dumm
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use FEsolving, only: &
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terminallyIll
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implicit none
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SNES :: snes_local
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PetscInt, intent(in) :: PETScIter
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PetscReal, intent(in) :: &
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@ -468,7 +464,6 @@ subroutine formResidual(in, F, &
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use FEsolving, only: &
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terminallyIll
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implicit none
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DMDALocalInfo, dimension(DMDA_LOCAL_INFO_SIZE) :: in !< DMDA info (needs to be named "in" for macros like XRANGE to work)
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PetscScalar, dimension(3,3,XG_RANGE,YG_RANGE,ZG_RANGE), &
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intent(in) :: F !< deformation gradient field
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@ -113,7 +113,6 @@ subroutine grid_mech_spectral_polarisation_init
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use math, only: &
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math_invSym3333
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implicit none
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real(pReal), dimension(3,3,grid(1),grid(2),grid3) :: P
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real(pReal), dimension(3,3) :: &
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temp33_Real = 0.0_pReal
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@ -238,7 +237,6 @@ function grid_mech_spectral_polarisation_solution(incInfoIn,timeinc,timeinc_old,
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restartWrite, &
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terminallyIll
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implicit none
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!--------------------------------------------------------------------------------------------------
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! input data for solution
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character(len=*), intent(in) :: &
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@ -445,7 +443,6 @@ subroutine converged(snes_local,PETScIter,devNull1,devNull2,devNull3,reason,dumm
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use FEsolving, only: &
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terminallyIll
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implicit none
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SNES :: snes_local
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PetscInt, intent(in) :: PETScIter
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PetscReal, intent(in) :: &
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@ -529,7 +526,6 @@ subroutine formResidual(in, FandF_tau, &
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use FEsolving, only: &
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terminallyIll
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implicit none
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DMDALocalInfo, dimension(DMDA_LOCAL_INFO_SIZE) :: in !< DMDA info (needs to be named "in" for macros like XRANGE to work)
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PetscScalar, dimension(3,3,2,XG_RANGE,YG_RANGE,ZG_RANGE), &
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target, intent(in) :: FandF_tau
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@ -69,7 +69,6 @@ subroutine grid_thermal_spectral_init
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worldsize, &
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petsc_options
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implicit none
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PetscInt, dimension(worldsize) :: localK
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integer :: i, j, k, cell
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DM :: thermal_grid
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@ -167,7 +166,6 @@ function grid_thermal_spectral_solution(timeinc,timeinc_old,loadCaseTime) result
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use thermal_conduction, only: &
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thermal_conduction_putTemperatureAndItsRate
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implicit none
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real(pReal), intent(in) :: &
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timeinc, & !< increment in time for current solution
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timeinc_old, & !< increment in time of last increment
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@ -242,7 +240,6 @@ subroutine grid_thermal_spectral_forward
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thermal_conduction_getMassDensity, &
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thermal_conduction_getSpecificHeat
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implicit none
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integer :: i, j, k, cell
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DM :: dm_local
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PetscScalar, dimension(:,:,:), pointer :: x_scal
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@ -311,7 +308,6 @@ subroutine formResidual(in,x_scal,f_scal,dummy,ierr)
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thermal_conduction_getMassDensity, &
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thermal_conduction_getSpecificHeat
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implicit none
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DMDALocalInfo, dimension(DMDA_LOCAL_INFO_SIZE) :: &
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in
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PetscScalar, dimension( &
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