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217 lines
6.9 KiB
Fortran
217 lines
6.9 KiB
Fortran
!
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!
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! AMG4PSBLAS version 1.0
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! Algebraic Multigrid Package
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! based on PSBLAS (Parallel Sparse BLAS version 3.5)
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!
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! (C) Copyright 2020
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!
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! Salvatore Filippone
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! Pasqua D'Ambra
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! Fabio Durastante
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!
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! Redistribution and use in source and binary forms, with or without
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! modification, are permitted provided that the following conditions
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! are met:
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! 1. Redistributions of source code must retain the above copyright
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! notice, this list of conditions and the following disclaimer.
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! 2. Redistributions in binary form must reproduce the above copyright
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! notice, this list of conditions, and the following disclaimer in the
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! documentation and/or other materials provided with the distribution.
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! 3. The name of the AMG4PSBLAS group or the names of its contributors may
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! not be used to endorse or promote products derived from this
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! software without specific written permission.
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!
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! THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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! ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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! TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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! PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE AMG4PSBLAS GROUP OR ITS CONTRIBUTORS
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! BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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! CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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! SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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! INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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! CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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! ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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! POSSIBILITY OF SUCH DAMAGE.
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!
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!
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subroutine amg_z_bwgs_solver_apply(alpha,sv,x,beta,y,desc_data,&
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&trans,work,info,init,initu)
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use psb_base_mod
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use amg_z_gs_solver, amg_protect_name => amg_z_bwgs_solver_apply
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implicit none
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type(psb_desc_type), intent(in) :: desc_data
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class(amg_z_bwgs_solver_type), intent(inout) :: sv
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complex(psb_dpk_),intent(inout) :: x(:)
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complex(psb_dpk_),intent(inout) :: y(:)
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complex(psb_dpk_),intent(in) :: alpha,beta
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character(len=1),intent(in) :: trans
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complex(psb_dpk_),target, intent(inout) :: work(:)
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integer(psb_ipk_), intent(out) :: info
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character, intent(in), optional :: init
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complex(psb_dpk_),intent(inout), optional :: initu(:)
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integer(psb_ipk_) :: n_row,n_col, itx, itxst
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complex(psb_dpk_), pointer :: ww(:), aux(:), tx(:),ty(:)
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complex(psb_dpk_), allocatable :: temp(:),wv(:),xit(:)
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integer(psb_ipk_) :: ictxt,np,me,i, err_act
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character :: trans_, init_
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character(len=20) :: name='z_bwgs_solver_apply'
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call psb_erractionsave(err_act)
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ictxt = desc_data%get_ctxt()
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call psb_info(ictxt,me,np)
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info = psb_success_
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trans_ = psb_toupper(trans)
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select case(trans_)
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case('N')
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!!$ case('T')
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!!$ case('C')
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case default
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call psb_errpush(psb_err_iarg_invalid_i_,name)
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goto 9999
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end select
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if (present(init)) then
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init_ = psb_toupper(init)
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else
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init_='Z'
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end if
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n_row = desc_data%get_local_rows()
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n_col = desc_data%get_local_cols()
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if (n_col <= size(work)) then
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ww => work(1:n_col)
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if ((4*n_col+n_col) <= size(work)) then
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aux => work(n_col+1:)
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else
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allocate(aux(4*n_col),stat=info)
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if (info /= psb_success_) then
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info=psb_err_alloc_request_
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call psb_errpush(info,name,&
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& i_err=(/4*n_col,izero,izero,izero,izero/),&
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& a_err='complex(psb_dpk_)')
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goto 9999
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end if
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endif
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else
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allocate(ww(n_col),aux(4*n_col),stat=info)
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if (info /= psb_success_) then
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info=psb_err_alloc_request_
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call psb_errpush(info,name,&
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& i_err=(/5*n_col,izero,izero,izero,izero/),&
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& a_err='complex(psb_dpk_)')
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goto 9999
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end if
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endif
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if (info /= psb_success_) then
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info=psb_err_alloc_request_
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call psb_errpush(info,name,&
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& i_err=(/5*n_col,izero,izero,izero,izero/),&
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& a_err='complex(psb_dpk_)')
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goto 9999
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end if
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call psb_geasb(wv,desc_data,info)
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call psb_geasb(xit,desc_data,info)
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itxst = 1
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select case (init_)
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case('Z')
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call psb_geaxpby(zone,x,zzero,wv,desc_data,info)
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call psb_spsm(zone,sv%u,wv,zzero,xit,desc_data,info)
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itxst = 2
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case('Y')
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call psb_geaxpby(zone,y,zzero,xit,desc_data,info)
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case('U')
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if (.not.present(initu)) then
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call psb_errpush(psb_err_internal_error_,name,&
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& a_err='missing initu to smoother_apply')
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goto 9999
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end if
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call psb_geaxpby(zone,initu,zzero,xit,desc_data,info)
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case default
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call psb_errpush(psb_err_internal_error_,name,&
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& a_err='wrong init to smoother_apply')
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goto 9999
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end select
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select case(trans_)
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case('N')
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if (sv%eps <=dzero) then
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!
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! Fixed number of iterations
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!
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!
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do itx=itxst, sv%sweeps
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call psb_geaxpby(zone,x,zzero,wv,desc_data,info)
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! Update with L. The off-diagonal block is taken care
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! from the Jacobi smoother, hence this is purely local.
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call psb_spmm(-zone,sv%l,xit,zone,wv,desc_data,info,doswap=.false.)
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call psb_spsm(zone,sv%u,wv,zzero,xit,desc_data,info)
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end do
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call psb_geaxpby(alpha,xit,beta,y,desc_data,info)
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else
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!
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! Iterations to convergence, not implemented right now.
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!
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info = psb_err_internal_error_
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call psb_errpush(info,name,a_err='EPS>0 not implemented in GS subsolve')
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goto 9999
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end if
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!!$ case('T')
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!!$ call psb_spsm(zone,sv%u,x,zzero,wv,desc_data,info,&
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!!$ & trans=trans_,scale='L',diag=sv%dv,choice=psb_none_,work=aux)
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!!$ if (info == psb_success_) call psb_spsm(alpha,sv%l,wv,beta,y,desc_data,info,&
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!!$ & trans=trans_,scale='U',choice=psb_none_,work=aux)
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!!$
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!!$ case('C')
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!!$
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!!$ call psb_spsm(zone,sv%u,x,zzero,wv,desc_data,info,&
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!!$ & trans=trans_,scale='U',choice=psb_none_,work=aux)
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!!$
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!!$ call wv1%mlt(zone,sv%dv,wv,zzero,info,conjgx=trans_)
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!!$
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!!$ if (info == psb_success_) call psb_spsm(alpha,sv%l,wv1,beta,y,desc_data,info,&
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!!$ & trans=trans_,scale='U',choice=psb_none_,work=aux)
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case default
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info = psb_err_internal_error_
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call psb_errpush(info,name,&
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& a_err='Invalid TRANS in GS subsolve')
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goto 9999
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end select
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if (info /= psb_success_) then
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call psb_errpush(psb_err_internal_error_,name,&
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& a_err='Error in subsolve')
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goto 9999
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endif
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if (n_col <= size(work)) then
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if ((4*n_col+n_col) <= size(work)) then
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else
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deallocate(aux)
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endif
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else
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deallocate(ww,aux)
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endif
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call psb_erractionrestore(err_act)
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return
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9999 call psb_error_handler(err_act)
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return
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end subroutine amg_z_bwgs_solver_apply
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