210 lines
8.0 KiB
Fortran
Executable File
210 lines
8.0 KiB
Fortran
Executable File
! AGRIF (Adaptive Grid Refinement In Fortran)
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!
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! Copyright (C) 2003 Laurent Debreu (Laurent.Debreu@imag.fr)
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! Christophe Vouland (Christophe.Vouland@imag.fr)
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!
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! This program is free software; you can redistribute it and/or modify
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! it under the terms of the GNU General Public License as published by
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! the Free Software Foundation; either version 2 of the License, or
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! (at your option) any later version.
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!
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! This program is distributed in the hope that it will be useful,
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! but WITHOUT ANY WARRANTY; without even the implied warranty of
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! MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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! GNU General Public License for more details.
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!
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! You should have received a copy of the GNU General Public License
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! along with this program; if not, write to the Free Software
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! Foundation, Inc., 59 Temple Place- Suite 330, Boston, MA 02111-1307, USA.
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!
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!
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!> Module Agrif_Init.
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!>
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!> Several operations on the variables of the current grid (creation, instanciation, ...)
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!! used during the creation of the grid hierarchy and during the time integration.
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!
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module Agrif_Init
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!
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use Agrif_Grids
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use Agrif_Link
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use Agrif_Mpp
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!
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implicit none
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!
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contains
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!
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!===================================================================================================
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! subroutine Agrif_Allocation
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!
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!> Allocates the arrays containing the values of the variables of the current grd.
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!---------------------------------------------------------------------------------------------------
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subroutine Agrif_Allocation ( Agrif_Gr, procname )
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!---------------------------------------------------------------------------------------------------
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type(Agrif_Grid), pointer :: Agrif_Gr !< Pointer on the current grid
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procedure(alloc_proc), optional :: procname !< Allocation procedure (Default: Agrif_Allocationcalls)
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!
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if ( present(procname) ) then
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call procname(Agrif_Gr)
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else
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call Agrif_Allocationcalls(Agrif_Gr)
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endif
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Agrif_Gr % allocation_is_done = .true.
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!
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if ( Agrif_USE_ONLY_FIXED_GRIDS == 0 ) then
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!
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if ( Agrif_Probdim == 1 ) allocate( Agrif_Gr%tabpoint1D(Agrif_Gr%nb(1)+1) )
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if ( Agrif_Probdim == 2 ) allocate( Agrif_Gr%tabpoint2D(Agrif_Gr%nb(1)+1, &
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Agrif_Gr%nb(2)+1) )
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if ( Agrif_Probdim == 3 ) allocate( Agrif_Gr%tabpoint3D(Agrif_Gr%nb(1)+1, &
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Agrif_Gr%nb(2)+1, &
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Agrif_Gr%nb(3)+1) )
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endif
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!---------------------------------------------------------------------------------------------------
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end subroutine Agrif_Allocation
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!===================================================================================================
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!
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!===================================================================================================
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! subroutine Agrif_Instance
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!
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!> Make the pointer Agrif_Types::Agrif_Curgrid point to Agrif_Gr
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!---------------------------------------------------------------------------------------------------
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subroutine Agrif_Instance ( Agrif_Gr )
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!---------------------------------------------------------------------------------------------------
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type(Agrif_Grid), pointer :: Agrif_Gr !< Pointer on the current grid
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!
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Agrif_Curgrid => Agrif_Gr
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Agrif_tabvars => Agrif_Curgrid % tabvars
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Agrif_tabvars_c => Agrif_Curgrid % tabvars_c
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Agrif_tabvars_r => Agrif_Curgrid % tabvars_r
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Agrif_tabvars_l => Agrif_Curgrid % tabvars_l
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Agrif_tabvars_i => Agrif_Curgrid % tabvars_i
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!
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#if defined AGRIF_MPI
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if ( Agrif_Gr % communicator /= -1 ) then
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call Agrif_MPI_switch_comm( Agrif_Gr % communicator )
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endif
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#endif
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!
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call Agrif_Get_numberofcells(Agrif_Gr)
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call Agrif_InitWorkSpace()
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!---------------------------------------------------------------------------------------------------
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end subroutine Agrif_Instance
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!===================================================================================================
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!
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!===================================================================================================
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! subroutine Agrif_initialisations
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!---------------------------------------------------------------------------------------------------
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subroutine Agrif_initialisations ( Agrif_Gr )
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!---------------------------------------------------------------------------------------------------
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type(Agrif_Grid), pointer :: Agrif_Gr !< Pointer on the current grid
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!
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integer :: i
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type(Agrif_Variable), pointer :: var => NULL()
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type(Agrif_Variable_c), pointer :: var_c => NULL()
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type(Agrif_Variable_r), pointer :: var_r => NULL()
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type(Agrif_Variable_l), pointer :: var_l => NULL()
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type(Agrif_Variable_i), pointer :: var_i => NULL()
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!
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do i = 1,Agrif_NbVariables(0)
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!
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var => Agrif_Gr % tabvars(i)
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var % nbdim = 0
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!
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if (allocated(var%array1)) then
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var % nbdim = 1
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var % lb(1:1) = lbound(var%array1)
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var % ub(1:1) = ubound(var%array1)
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endif
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if (allocated(var%array2)) then
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var % nbdim = 2
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var % lb(1:2) = lbound(var%array2)
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var % ub(1:2) = ubound(var%array2)
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endif
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if (allocated(var%array3)) then
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var % nbdim = 3
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var % lb(1:3) = lbound(var%array3)
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var % ub(1:3) = ubound(var%array3)
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endif
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if (allocated(var%array4)) then
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var % nbdim = 4
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var % lb(1:4) = lbound(var%array4)
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var % ub(1:4) = ubound(var%array4)
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endif
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if (allocated(var%array5)) then
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var % nbdim = 5
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var % lb(1:5) = lbound(var%array5)
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var % ub(1:5) = ubound(var%array5)
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endif
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if (allocated(var%array6)) then
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var % nbdim = 6
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var % lb(1:6) = lbound(var%array6)
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var % ub(1:6) = ubound(var%array6)
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endif
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!
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if (allocated(var%darray1)) var % nbdim = 1
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if (allocated(var%darray2)) var % nbdim = 2
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if (allocated(var%darray3)) var % nbdim = 3
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if (allocated(var%darray4)) var % nbdim = 4
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if (allocated(var%darray5)) var % nbdim = 5
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if (allocated(var%darray6)) var % nbdim = 6
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!
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if (allocated(var%sarray1)) var % nbdim = 1
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if (allocated(var%sarray2)) var % nbdim = 2
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if (allocated(var%sarray3)) var % nbdim = 3
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if (allocated(var%sarray4)) var % nbdim = 4
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if (allocated(var%sarray5)) var % nbdim = 5
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if (allocated(var%sarray6)) var % nbdim = 6
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!
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enddo
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do i = 1,Agrif_NbVariables(1)
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!
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var_c => Agrif_Gr % tabvars_c(i)
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var_c % nbdim = 0
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!
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if (allocated(var_c%carray1)) var_c % nbdim = 1
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if (allocated(var_c%carray2)) var_c % nbdim = 2
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!
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enddo
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do i = 1,Agrif_NbVariables(2)
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!
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var_r => Agrif_Gr % tabvars_r(i)
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var_r % nbdim = 0
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!
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enddo
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do i = 1,Agrif_NbVariables(3)
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!
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var_l => Agrif_Gr % tabvars_l(i)
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var_l % nbdim = 0
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!
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if (allocated(var_l%larray1)) var_l % nbdim = 1
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if (allocated(var_l%larray2)) var_l % nbdim = 2
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if (allocated(var_l%larray3)) var_l % nbdim = 3
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if (allocated(var_l%larray4)) var_l % nbdim = 4
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if (allocated(var_l%larray5)) var_l % nbdim = 5
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if (allocated(var_l%larray6)) var_l % nbdim = 6
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!
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enddo
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do i = 1,Agrif_NbVariables(4)
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!
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var_i => Agrif_Gr % tabvars_i(i)
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var_i % nbdim = 0
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!
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if (allocated(var_i%iarray1)) var_i % nbdim = 1
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if (allocated(var_i%iarray2)) var_i % nbdim = 2
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if (allocated(var_i%iarray3)) var_i % nbdim = 3
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if (allocated(var_i%iarray4)) var_i % nbdim = 4
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if (allocated(var_i%iarray5)) var_i % nbdim = 5
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if (allocated(var_i%iarray6)) var_i % nbdim = 6
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!
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enddo
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!---------------------------------------------------------------------------------------------------
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end subroutine Agrif_initialisations
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!===================================================================================================
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!
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end module Agrif_Init
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