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317 lines
10 KiB
Fortran
317 lines
10 KiB
Fortran
!
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! Parallel Sparse BLAS version 3.5
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! (C) Copyright 2006-2018
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! Salvatore Filippone
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! Alfredo Buttari
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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 PSBLAS 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 PSBLAS 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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program psb_zf_sample
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use psb_base_mod
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use psb_prec_mod
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use psb_krylov_mod
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use psb_util_mod
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use getp
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implicit none
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! input parameters
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character(len=40) :: kmethd, ptype, mtrx_file, rhs_file
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! sparse matrices
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type(psb_zspmat_type) :: a
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type(psb_lzspmat_type) :: aux_a
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! preconditioner data
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type(psb_zprec_type) :: prec
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! dense matrices
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complex(psb_dpk_), allocatable, target :: aux_b(:,:), d(:)
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complex(psb_dpk_), allocatable , save :: x_col_glob(:), r_col_glob(:)
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complex(psb_dpk_), pointer :: b_col_glob(:)
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type(psb_z_vect_type) :: b_col, x_col, r_col
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! communications data structure
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type(psb_desc_type):: desc_a
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type(psb_ctxt_type) :: ctxt
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integer(psb_ipk_) :: iam, np
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integer(psb_lpk_) :: lnp
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! solver paramters
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integer(psb_ipk_) :: iter, itmax, ierr, itrace, ircode,&
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& methd, istopc, irst
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integer(psb_epk_) :: amatsize, precsize, descsize
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real(psb_dpk_) :: err, eps, cond
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character(len=5) :: afmt
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character(len=20) :: name, part
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character(len=2) :: filefmt
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integer(psb_ipk_), parameter :: iunit=12
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integer(psb_ipk_) :: iparm(20)
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! other variables
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integer(psb_ipk_) :: i,info,j,m_problem, err_act
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integer(psb_ipk_) :: internal, m,ii,nnzero
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real(psb_dpk_) :: t1, t2, tprec
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real(psb_dpk_) :: r_amax, b_amax, scale,resmx,resmxp
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integer(psb_ipk_) :: nrhs, nrow, n_row, dim, ne, nv
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integer(psb_ipk_), allocatable :: ivg(:)
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integer(psb_ipk_), allocatable :: ipv(:)
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character(len=40) :: fname, fnout
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call psb_init(ctxt)
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call psb_info(ctxt,iam,np)
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if (iam < 0) then
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! This should not happen, but just in case
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call psb_exit(ctxt)
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stop
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endif
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name='psb_zf_sample'
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if(psb_errstatus_fatal()) goto 9999
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info=psb_success_
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call psb_set_errverbosity(itwo)
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!
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! Hello world
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!
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if (iam == psb_root_) then
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write(*,*) 'Welcome to PSBLAS version: ',psb_version_string_
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write(*,*) 'This is the ',trim(name),' sample program'
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end if
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!
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! get parameters
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!
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call get_parms(ctxt,mtrx_file,rhs_file,filefmt,kmethd,ptype,&
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& part,afmt,istopc,itmax,itrace,irst,eps)
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call psb_barrier(ctxt)
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t1 = psb_wtime()
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! read the input matrix to be processed and (possibly) the rhs
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nrhs = 1
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if (iam == psb_root_) then
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select case(psb_toupper(filefmt))
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case('MM')
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! For Matrix Market we have an input file for the matrix
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! and an (optional) second file for the RHS.
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call mm_mat_read(aux_a,info,iunit=iunit,filename=mtrx_file)
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if (info == psb_success_) then
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if (rhs_file /= 'NONE') then
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call mm_array_read(aux_b,info,iunit=iunit,filename=rhs_file)
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end if
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end if
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case ('HB')
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! For Harwell-Boeing we have a single file which may or may not
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! contain an RHS.
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call hb_read(aux_a,info,iunit=iunit,b=aux_b,filename=mtrx_file)
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case default
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info = -1
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write(psb_err_unit,*) 'Wrong choice for fileformat ', filefmt
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end select
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if (info /= psb_success_) then
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write(psb_err_unit,*) 'Error while reading input matrix '
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call psb_abort(ctxt)
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end if
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m_problem = aux_a%get_nrows()
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call psb_bcast(ctxt,m_problem)
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! At this point aux_b may still be unallocated
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if (size(aux_b,dim=1) == m_problem) then
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! if any rhs were present, broadcast the first one
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write(psb_err_unit,'("Ok, got an rhs ")')
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b_col_glob =>aux_b(:,1)
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else
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write(psb_out_unit,'("Generating an rhs...")')
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write(psb_out_unit,'(" ")')
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call psb_realloc(m_problem,1,aux_b,ircode)
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if (ircode /= 0) then
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call psb_errpush(psb_err_alloc_dealloc_,name)
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goto 9999
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endif
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b_col_glob => aux_b(:,1)
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do i=1, m_problem
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b_col_glob(i) = zone
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enddo
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endif
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else
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call psb_bcast(ctxt,m_problem)
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end if
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! switch over different partition types
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select case(psb_toupper(part))
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case('BLOCK')
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if (iam == psb_root_) write(psb_out_unit,'("Partition type: block")')
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call psb_matdist(aux_a, a, ctxt,desc_a,info,fmt=afmt,parts=part_block)
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case('GRAPH')
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if (iam == psb_root_) then
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write(psb_out_unit,'("Partition type: graph vector")')
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write(psb_out_unit,'(" ")')
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! write(psb_err_unit,'("Build type: graph")')
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call aux_a%cscnv(info,type='csr')
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lnp = np
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call build_mtpart(aux_a,lnp)
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endif
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call psb_barrier(ctxt)
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call distr_mtpart(psb_root_,ctxt)
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call getv_mtpart(ivg)
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call psb_matdist(aux_a, a, ctxt,desc_a,info,fmt=afmt,vg=ivg)
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case default
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if (iam == psb_root_) write(psb_out_unit,'("Partition type: block")')
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call psb_matdist(aux_a, a, ctxt,desc_a,info,fmt=afmt,parts=part_block)
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end select
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call psb_scatter(b_col_glob,b_col,desc_a,info,root=psb_root_)
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call psb_geall(x_col,desc_a,info)
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call x_col%zero()
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call psb_geasb(x_col,desc_a,info)
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call psb_geall(r_col,desc_a,info)
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call r_col%zero()
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call psb_geasb(r_col,desc_a,info)
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t2 = psb_wtime() - t1
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call psb_amx(ctxt, t2)
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if (iam == psb_root_) then
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write(psb_out_unit,'(" ")')
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write(psb_out_unit,'("Time to read and partition matrix : ",es12.5)')t2
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write(psb_out_unit,'(" ")')
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end if
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!
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call prec%init(ctxt,ptype,info)
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! building the preconditioner
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t1 = psb_wtime()
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call prec%build(a,desc_a,info)
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tprec = psb_wtime()-t1
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if (info /= psb_success_) then
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call psb_errpush(psb_err_from_subroutine_,name,a_err='psb_precbld')
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goto 9999
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end if
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call psb_amx(ctxt,tprec)
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if(iam == psb_root_) then
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write(psb_out_unit,'("Preconditioner time: ",es12.5)')tprec
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write(psb_out_unit,'(" ")')
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end if
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iparm = 0
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call psb_barrier(ctxt)
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t1 = psb_wtime()
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call psb_krylov(kmethd,a,prec,b_col,x_col,eps,desc_a,info,&
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& itmax=itmax,iter=iter,err=err,itrace=itrace,&
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& istop=istopc,irst=irst)
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call psb_barrier(ctxt)
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t2 = psb_wtime() - t1
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call psb_amx(ctxt,t2)
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call psb_geaxpby(zone,b_col,zzero,r_col,desc_a,info)
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call psb_spmm(-zone,a,x_col,zone,r_col,desc_a,info)
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resmx = psb_genrm2(r_col,desc_a,info)
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resmxp = psb_geamax(r_col,desc_a,info)
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amatsize = a%sizeof()
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descsize = desc_a%sizeof()
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precsize = prec%sizeof()
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call psb_sum(ctxt,amatsize)
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call psb_sum(ctxt,descsize)
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call psb_sum(ctxt,precsize)
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if (iam == psb_root_) then
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call prec%descr(info)
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write(psb_out_unit,'("Matrix: ",a)')mtrx_file
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write(psb_out_unit,'("Computed solution on ",i8," processors")')np
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write(psb_out_unit,'("Iterations to convergence: ",i6)')iter
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write(psb_out_unit,'("Error estimate on exit : ",es12.5)') err
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write(psb_out_unit,'("Time to buil prec. : ",es12.5)')tprec
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write(psb_out_unit,'("Time to solve system : ",es12.5)')t2
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write(psb_out_unit,'("Time per iteration : ",es12.5)')t2/(iter)
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write(psb_out_unit,'("Total time : ",es12.5)')t2+tprec
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write(psb_out_unit,'("Residual norm 2 : ",es12.5)')resmx
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write(psb_out_unit,'("Residual norm inf : ",es12.5)')resmxp
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write(psb_out_unit,'("Total memory occupation for A: ",i12)')amatsize
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write(psb_out_unit,'("Total memory occupation for PREC: ",i12)')precsize
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write(psb_out_unit,'("Total memory occupation for DESC_A: ",i12)')descsize
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write(psb_out_unit,'("Storage format for A : ",a)')&
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& a%get_fmt()
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write(psb_out_unit,'("Storage format for DESC_A : ",a)')&
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& desc_a%get_fmt()
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end if
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call psb_gather(x_col_glob,x_col,desc_a,info,root=psb_root_)
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if (info == psb_success_) &
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& call psb_gather(r_col_glob,r_col,desc_a,info,root=psb_root_)
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if (info /= psb_success_) goto 9999
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if (iam == psb_root_) then
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write(psb_err_unit,'(" ")')
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write(psb_err_unit,'("Saving x on file")')
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write(20,*) 'matrix: ',mtrx_file
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write(20,*) 'computed solution on ',np,' processors.'
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write(20,*) 'iterations to convergence: ',iter
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write(20,*) 'error estimate (infinity norm) on exit:', &
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& ' ||r||/(||a||||x||+||b||) = ',err
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write(20,'("Residual norm 2 : ",es12.5)')resmx
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write(20,'("Residual norm inf : ",es12.5)')resmxp
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write(20,'(a8,4(2x,a20))') 'I','X(I)','R(I)','B(I)'
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do i=1,m_problem
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write(20,998) i,x_col_glob(i),r_col_glob(i),b_col_glob(i)
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enddo
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end if
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998 format(i8,6(1x,g11.5))
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993 format(i6,4(1x,e12.6))
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call psb_gefree(b_col, desc_a,info)
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call psb_gefree(x_col, desc_a,info)
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call psb_spfree(a, desc_a,info)
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call prec%free(info)
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call psb_cdfree(desc_a,info)
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call psb_exit(ctxt)
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stop
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9999 call psb_error(ctxt)
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stop
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end program psb_zf_sample
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