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1695 lines
50 KiB
Fortran
1695 lines
50 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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module psi_e_collective_mod
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use psi_penv_mod
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use psb_desc_const_mod
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interface psb_max
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module procedure psb_emaxs, psb_emaxv, psb_emaxm
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end interface
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interface psb_min
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module procedure psb_emins, psb_eminv, psb_eminm
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end interface psb_min
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interface psb_sum
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module procedure psb_esums, psb_esumv, psb_esumm
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end interface
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interface psb_amx
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module procedure psb_eamxs, psb_eamxv, psb_eamxm
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end interface
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interface psb_amn
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module procedure psb_eamns, psb_eamnv, psb_eamnm
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end interface
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interface psb_bcast
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module procedure psb_ebcasts, psb_ebcastv, psb_ebcastm
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end interface psb_bcast
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interface psb_scan_sum
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module procedure psb_escan_sums, psb_escan_sumv
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end interface psb_scan_sum
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interface psb_exscan_sum
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module procedure psb_eexscan_sums, psb_eexscan_sumv
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end interface psb_exscan_sum
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interface psb_simple_a2av
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module procedure psb_e_simple_a2av
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end interface psb_simple_a2av
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interface psb_simple_triad_a2av
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module procedure psb_e_e_simple_triad_a2av, psb_e_m_simple_triad_a2av
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end interface psb_simple_triad_a2av
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contains
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! !!!!!!!!!!!!!!!!!!!!!!
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!
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! Reduction operations
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!
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! !!!!!!!!!!!!!!!!!!!!!!
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! !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
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!
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! MAX
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!
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! !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
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subroutine psb_emaxs(ctxt,dat,root,mode,request)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_epk_), intent(inout) :: dat
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integer(psb_mpk_), intent(in), optional :: root
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integer(psb_ipk_), intent(in), optional :: mode
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integer(psb_mpk_), intent(inout), optional :: request
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integer(psb_mpk_) :: root_
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integer(psb_mpk_) :: iam, np, info
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integer(psb_mpk_) :: icomm
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integer(psb_mpk_) :: status(mpi_status_size)
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logical :: collective_start, collective_end, collective_sync
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#if !defined(SERIAL_MPI)
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call psb_info(ctxt,iam,np)
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if (present(root)) then
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root_ = root
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else
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root_ = -1
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endif
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icomm = psb_get_mpi_comm(ctxt)
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if (present(mode)) then
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collective_sync = .false.
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collective_start = iand(mode,psb_collective_start_) /= 0
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collective_end = iand(mode,psb_collective_end_) /= 0
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if (.not.present(request)) then
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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else
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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if (collective_sync) then
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if (root_ == -1) then
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call mpi_allreduce(MPI_IN_PLACE,dat,1,psb_mpi_epk_,mpi_max,icomm,info)
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else
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call mpi_reduce(MPI_IN_PLACE,dat,1,psb_mpi_epk_,mpi_max,root_,icomm,info)
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endif
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else
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if (collective_start) then
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if (root_ == -1) then
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call mpi_iallreduce(MPI_IN_PLACE,dat,1,&
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& psb_mpi_epk_,mpi_max,icomm,request,info)
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else
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call mpi_ireduce(MPI_IN_PLACE,dat,1,&
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& psb_mpi_epk_,mpi_max,root_,icomm,request,info)
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end if
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else if (collective_end) then
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call mpi_wait(request,status,info)
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end if
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end if
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#endif
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end subroutine psb_emaxs
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subroutine psb_emaxv(ctxt,dat,root,mode,request)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_epk_), intent(inout) :: dat(:)
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integer(psb_mpk_), intent(in), optional :: root
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integer(psb_ipk_), intent(in), optional :: mode
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integer(psb_mpk_), intent(inout), optional :: request
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integer(psb_mpk_) :: root_
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integer(psb_mpk_) :: iam, np, info
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integer(psb_mpk_) :: icomm
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integer(psb_mpk_) :: status(mpi_status_size)
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logical :: collective_start, collective_end, collective_sync
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#if !defined(SERIAL_MPI)
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call psb_info(ctxt,iam,np)
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if (present(root)) then
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root_ = root
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else
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root_ = -1
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endif
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icomm = psb_get_mpi_comm(ctxt)
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if (present(mode)) then
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collective_sync = .false.
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collective_start = iand(mode,psb_collective_start_) /= 0
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collective_end = iand(mode,psb_collective_end_) /= 0
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if (.not.present(request)) then
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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else
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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if (collective_sync) then
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if (root_ == -1) then
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call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,icomm,info)
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else
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call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,root_,icomm,info)
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endif
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else
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if (collective_start) then
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if (root_ == -1) then
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call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,icomm,request,info)
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else
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call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,root_,icomm,request,info)
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end if
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else if (collective_end) then
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call mpi_wait(request,status,info)
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end if
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end if
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#endif
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end subroutine psb_emaxv
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subroutine psb_emaxm(ctxt,dat,root,mode,request)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_epk_), intent(inout) :: dat(:,:)
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integer(psb_mpk_), intent(in), optional :: root
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integer(psb_ipk_), intent(in), optional :: mode
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integer(psb_mpk_), intent(inout), optional :: request
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integer(psb_mpk_) :: root_
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integer(psb_mpk_) :: iam, np, info
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integer(psb_mpk_) :: icomm
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integer(psb_mpk_) :: status(mpi_status_size)
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logical :: collective_start, collective_end, collective_sync
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#if !defined(SERIAL_MPI)
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call psb_info(ctxt,iam,np)
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if (present(root)) then
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root_ = root
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else
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root_ = -1
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endif
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icomm = psb_get_mpi_comm(ctxt)
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if (present(mode)) then
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collective_sync = .false.
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collective_start = iand(mode,psb_collective_start_) /= 0
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collective_end = iand(mode,psb_collective_end_) /= 0
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if (.not.present(request)) then
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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else
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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if (collective_sync) then
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if (root_ == -1) then
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call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,icomm,info)
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else
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call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,root_,icomm,info)
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endif
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else
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if (collective_start) then
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if (root_ == -1) then
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call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,icomm,request,info)
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else
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call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_max,root_,icomm,request,info)
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end if
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else if (collective_end) then
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call mpi_wait(request,status,info)
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end if
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end if
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#endif
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end subroutine psb_emaxm
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|
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!
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! MIN: Minimum Value
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!
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subroutine psb_emins(ctxt,dat,root,mode,request)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
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|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
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logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
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call psb_info(ctxt,iam,np)
|
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|
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if (present(root)) then
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root_ = root
|
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else
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root_ = -1
|
|
endif
|
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icomm = psb_get_mpi_comm(ctxt)
|
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if (present(mode)) then
|
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collective_sync = .false.
|
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collective_start = iand(mode,psb_collective_start_) /= 0
|
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collective_end = iand(mode,psb_collective_end_) /= 0
|
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if (.not.present(request)) then
|
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collective_sync = .true.
|
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collective_start = .false.
|
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collective_end = .false.
|
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end if
|
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else
|
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collective_sync = .true.
|
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collective_start = .false.
|
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collective_end = .false.
|
|
end if
|
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if (collective_sync) then
|
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if (root_ == -1) then
|
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call mpi_allreduce(MPI_IN_PLACE,dat,1,psb_mpi_epk_,mpi_min,icomm,info)
|
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else
|
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call mpi_reduce(MPI_IN_PLACE,dat,1,psb_mpi_epk_,mpi_min,root_,icomm,info)
|
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endif
|
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else
|
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if (collective_start) then
|
|
if (root_ == -1) then
|
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call mpi_iallreduce(MPI_IN_PLACE,dat,1,&
|
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& psb_mpi_epk_,mpi_min,icomm,request,info)
|
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else
|
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call mpi_ireduce(MPI_IN_PLACE,dat,1,&
|
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& psb_mpi_epk_,mpi_min,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
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call mpi_wait(request,status,info)
|
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end if
|
|
end if
|
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|
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#endif
|
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end subroutine psb_emins
|
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|
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subroutine psb_eminv(ctxt,dat,root,mode,request)
|
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#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_eminv
|
|
|
|
subroutine psb_eminm(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:,:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,root_,icomm,info)
|
|
end if
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_min,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_eminm
|
|
|
|
|
|
|
|
!
|
|
! SUM
|
|
!
|
|
|
|
subroutine psb_esums(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_esums
|
|
|
|
subroutine psb_esumv(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,root_,icomm,info)
|
|
end if
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
endif
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_esumv
|
|
|
|
subroutine psb_esumm(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:,:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,root_,icomm,info)
|
|
end if
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,root_, icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
endif
|
|
end if
|
|
#endif
|
|
end subroutine psb_esumm
|
|
|
|
!
|
|
! AMX: Maximum Absolute Value
|
|
!
|
|
|
|
subroutine psb_eamxs(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamx_op,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamx_op,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamx_op,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamx_op,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_eamxs
|
|
|
|
subroutine psb_eamxv(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
psb_mpi_epk_,mpi_eamx_op,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_eamxv
|
|
|
|
subroutine psb_eamxm(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:,:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamx_op,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_eamxm
|
|
|
|
!
|
|
! AMN: Minimum Absolute Value
|
|
!
|
|
subroutine psb_eamns(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamn_op,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamn_op,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamn_op,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_eamn_op,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_eamns
|
|
|
|
subroutine psb_eamnv(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_eamnv
|
|
|
|
subroutine psb_eamnm(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:,:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = -1
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
if (root_ == -1) then
|
|
call mpi_allreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,icomm,info)
|
|
else
|
|
call mpi_reduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,root_,icomm,info)
|
|
endif
|
|
else
|
|
if (collective_start) then
|
|
if (root_ == -1) then
|
|
call mpi_iallreduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,icomm,request,info)
|
|
else
|
|
call mpi_ireduce(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_eamn_op,root_,icomm,request,info)
|
|
end if
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_eamnm
|
|
|
|
|
|
!
|
|
! BCAST Broadcast
|
|
!
|
|
subroutine psb_ebcasts(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = psb_root_
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
call mpi_bcast(dat,1,psb_mpi_epk_,root_,icomm,info)
|
|
else
|
|
if (collective_start) then
|
|
call mpi_ibcast(dat,1,psb_mpi_epk_,root_,icomm,request,info)
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_ebcasts
|
|
|
|
subroutine psb_ebcastv(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = psb_root_
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
call mpi_bcast(dat,size(dat),psb_mpi_epk_,root_,icomm,info)
|
|
else
|
|
if (collective_start) then
|
|
call mpi_ibcast(dat,size(dat),psb_mpi_epk_,root_,icomm,request,info)
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_ebcastv
|
|
|
|
subroutine psb_ebcastm(ctxt,dat,root,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:,:)
|
|
integer(psb_mpk_), intent(in), optional :: root
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_mpk_) :: root_
|
|
integer(psb_mpk_) :: iam, np, info
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
|
|
call psb_info(ctxt,iam,np)
|
|
|
|
if (present(root)) then
|
|
root_ = root
|
|
else
|
|
root_ = psb_root_
|
|
endif
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
call mpi_bcast(dat,size(dat),psb_mpi_epk_,root_,icomm,info)
|
|
else
|
|
if (collective_start) then
|
|
call mpi_ibcast(dat,size(dat),psb_mpi_epk_,root_,icomm,request,info)
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
|
|
#endif
|
|
end subroutine psb_ebcastm
|
|
|
|
! !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
|
|
!
|
|
! SCAN
|
|
!
|
|
! !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
|
|
|
|
subroutine psb_escan_sums(ctxt,dat,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_epk_) :: dat_
|
|
integer(psb_ipk_) :: iam, np, info
|
|
integer(psb_mpk_) :: minfo
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
call mpi_scan(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,icomm,minfo)
|
|
else
|
|
if (collective_start) then
|
|
call mpi_iscan(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,icomm,request,minfo)
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,minfo)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_escan_sums
|
|
|
|
subroutine psb_eexscan_sums(ctxt,dat,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_epk_) :: dat_
|
|
integer(psb_ipk_) :: iam, np, info
|
|
integer(psb_mpk_) :: minfo
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
call mpi_exscan(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,icomm,minfo)
|
|
else
|
|
if (collective_start) then
|
|
call mpi_iexscan(MPI_IN_PLACE,dat,1,&
|
|
& psb_mpi_epk_,mpi_sum,icomm,request,minfo)
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,minfo)
|
|
end if
|
|
end if
|
|
#else
|
|
dat = ezero
|
|
#endif
|
|
end subroutine psb_eexscan_sums
|
|
|
|
subroutine psb_escan_sumv(ctxt,dat,mode,request)
|
|
#ifdef MPI_MOD
|
|
use mpi
|
|
#endif
|
|
implicit none
|
|
#ifdef MPI_H
|
|
include 'mpif.h'
|
|
#endif
|
|
type(psb_ctxt_type), intent(in) :: ctxt
|
|
integer(psb_epk_), intent(inout) :: dat(:)
|
|
integer(psb_ipk_), intent(in), optional :: mode
|
|
integer(psb_mpk_), intent(inout), optional :: request
|
|
integer(psb_ipk_) :: iam, np, info
|
|
integer(psb_mpk_) :: minfo
|
|
integer(psb_mpk_) :: icomm
|
|
integer(psb_mpk_) :: status(mpi_status_size)
|
|
logical :: collective_start, collective_end, collective_sync
|
|
|
|
#if !defined(SERIAL_MPI)
|
|
call psb_info(ctxt,iam,np)
|
|
icomm = psb_get_mpi_comm(ctxt)
|
|
if (present(mode)) then
|
|
collective_sync = .false.
|
|
collective_start = iand(mode,psb_collective_start_) /= 0
|
|
collective_end = iand(mode,psb_collective_end_) /= 0
|
|
if (.not.present(request)) then
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
else
|
|
collective_sync = .true.
|
|
collective_start = .false.
|
|
collective_end = .false.
|
|
end if
|
|
if (collective_sync) then
|
|
call mpi_scan(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,icomm,minfo)
|
|
else
|
|
if (collective_start) then
|
|
call mpi_iscan(MPI_IN_PLACE,dat,size(dat),&
|
|
& psb_mpi_epk_,mpi_sum,icomm,request,info)
|
|
else if (collective_end) then
|
|
call mpi_wait(request,status,info)
|
|
end if
|
|
end if
|
|
#endif
|
|
end subroutine psb_escan_sumv
|
|
|
|
subroutine psb_eexscan_sumv(ctxt,dat,mode,request)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_epk_), intent(inout) :: dat(:)
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integer(psb_ipk_), intent(in), optional :: mode
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integer(psb_mpk_), intent(inout), optional :: request
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integer(psb_epk_), allocatable :: dat_(:)
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integer(psb_ipk_) :: iam, np, info
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integer(psb_mpk_) :: minfo
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integer(psb_mpk_) :: icomm
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integer(psb_mpk_) :: status(mpi_status_size)
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logical :: collective_start, collective_end, collective_sync
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#if !defined(SERIAL_MPI)
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call psb_info(ctxt,iam,np)
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icomm = psb_get_mpi_comm(ctxt)
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if (present(mode)) then
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collective_sync = .false.
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collective_start = iand(mode,psb_collective_start_) /= 0
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collective_end = iand(mode,psb_collective_end_) /= 0
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if (.not.present(request)) then
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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else
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collective_sync = .true.
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collective_start = .false.
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collective_end = .false.
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end if
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if (collective_sync) then
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call mpi_exscan(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_sum,icomm,minfo)
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else
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if (collective_start) then
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call mpi_iexscan(MPI_IN_PLACE,dat,size(dat),&
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& psb_mpi_epk_,mpi_sum,icomm,request,info)
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else if (collective_end) then
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call mpi_wait(request,status,info)
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end if
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end if
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#else
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dat = ezero
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#endif
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end subroutine psb_eexscan_sumv
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subroutine psb_e_simple_a2av(valsnd,sdsz,bsdindx,&
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& valrcv,rvsz,brvindx,ctxt,info)
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use psi_e_p2p_mod
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implicit none
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integer(psb_epk_), intent(in) :: valsnd(:)
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integer(psb_epk_), intent(out) :: valrcv(:)
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integer(psb_mpk_), intent(in) :: bsdindx(:), brvindx(:), sdsz(:), rvsz(:)
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_ipk_), intent(out) :: info
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integer(psb_ipk_) :: iam, np, i,j,k, ip, ipx, idx, sz
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call psb_info(ctxt,iam,np)
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if (min(size(bsdindx),size(brvindx),size(sdsz),size(rvsz))<np) then
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info = psb_err_internal_error_
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return
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end if
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do ip = 0, np-1
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sz = sdsz(ip+1)
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if (sz > 0) then
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idx = bsdindx(ip+1)
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call psb_snd(ctxt,valsnd(idx+1:idx+sz),ip)
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end if
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end do
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do ip = 0, np-1
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sz = rvsz(ip+1)
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if (sz > 0) then
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idx = brvindx(ip+1)
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call psb_rcv(ctxt,valrcv(idx+1:idx+sz),ip)
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end if
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end do
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end subroutine psb_e_simple_a2av
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subroutine psb_e_m_simple_triad_a2av(valsnd,iasnd,jasnd,sdsz,bsdindx,&
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& valrcv,iarcv,jarcv,rvsz,brvindx,ctxt,info)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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integer(psb_epk_), intent(in) :: valsnd(:)
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integer(psb_mpk_), intent(in) :: iasnd(:), jasnd(:)
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integer(psb_epk_), intent(out) :: valrcv(:)
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integer(psb_mpk_), intent(out) :: iarcv(:), jarcv(:)
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integer(psb_mpk_), intent(in) :: bsdindx(:), brvindx(:), sdsz(:), rvsz(:)
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_ipk_), intent(out) :: info
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!Local variables
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integer(psb_ipk_) :: iam, np, i,j,k, ip, ipx, idx, sz, counter
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integer(psb_mpk_) :: proc_to_comm, p2ptag, p2pstat(mpi_status_size), iret, icomm
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integer(psb_mpk_), allocatable :: prcid(:), rvhd(:,:)
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call psb_info(ctxt,iam,np)
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icomm = psb_get_mpi_comm(ctxt)
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if (min(size(bsdindx),size(brvindx),size(sdsz),size(rvsz))<np) then
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info = psb_err_internal_error_
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return
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end if
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allocate(prcid(np),rvhd(np,3))
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prcid = -1
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do ip = 0, np-1
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sz = rvsz(ip+1)
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if (sz > 0) then
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prcid(ip+1) = psb_get_mpi_rank(ctxt,ip)
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idx = brvindx(ip+1)
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p2ptag = psb_int8_tag
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call mpi_irecv(valrcv(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
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& p2ptag, icomm,rvhd(ip+1,1),iret)
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p2ptag = psb_int_swap_tag
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call mpi_irecv(iarcv(idx+1:idx+sz),sz,&
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& psb_mpi_mpk_,prcid(ip+1),&
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& p2ptag, icomm,rvhd(ip+1,2),iret)
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call mpi_irecv(jarcv(idx+1:idx+sz),sz,&
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& psb_mpi_mpk_,prcid(ip+1),&
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& p2ptag, icomm,rvhd(ip+1,3),iret)
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end if
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Enddo
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do ip = 0, np-1
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sz = sdsz(ip+1)
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if (sz > 0) then
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if (prcid(ip+1)<0) prcid(ip+1) = psb_get_mpi_rank(ctxt,ip)
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idx = bsdindx(ip+1)
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p2ptag = psb_int8_tag
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call mpi_send(valsnd(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
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& p2ptag, icomm,iret)
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p2ptag = psb_int_swap_tag
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call mpi_send(iasnd(idx+1:idx+sz),sz,&
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& psb_mpi_mpk_,prcid(ip+1),&
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& p2ptag, icomm,iret)
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call mpi_send(jasnd(idx+1:idx+sz),sz,&
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& psb_mpi_mpk_,prcid(ip+1),&
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& p2ptag, icomm,iret)
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end if
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Enddo
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do ip = 0, np-1
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sz = rvsz(ip+1)
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if (sz > 0) then
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call mpi_wait(rvhd(ip+1,1),p2pstat,iret)
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call mpi_wait(rvhd(ip+1,2),p2pstat,iret)
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call mpi_wait(rvhd(ip+1,3),p2pstat,iret)
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end if
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Enddo
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end subroutine psb_e_m_simple_triad_a2av
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subroutine psb_e_e_simple_triad_a2av(valsnd,iasnd,jasnd,sdsz,bsdindx,&
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& valrcv,iarcv,jarcv,rvsz,brvindx,ctxt,info)
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#ifdef MPI_MOD
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use mpi
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#endif
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implicit none
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#ifdef MPI_H
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include 'mpif.h'
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#endif
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integer(psb_epk_), intent(in) :: valsnd(:)
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integer(psb_epk_), intent(in) :: iasnd(:), jasnd(:)
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integer(psb_epk_), intent(out) :: valrcv(:)
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integer(psb_epk_), intent(out) :: iarcv(:), jarcv(:)
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integer(psb_mpk_), intent(in) :: bsdindx(:), brvindx(:), sdsz(:), rvsz(:)
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type(psb_ctxt_type), intent(in) :: ctxt
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integer(psb_ipk_), intent(out) :: info
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!Local variables
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integer(psb_ipk_) :: iam, np, i,j,k, ip, ipx, idx, sz, counter
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integer(psb_mpk_) :: proc_to_comm, p2ptag, p2pstat(mpi_status_size), iret, icomm
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integer(psb_mpk_), allocatable :: prcid(:), rvhd(:,:)
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call psb_info(ctxt,iam,np)
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icomm = psb_get_mpi_comm(ctxt)
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if (min(size(bsdindx),size(brvindx),size(sdsz),size(rvsz))<np) then
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info = psb_err_internal_error_
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return
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end if
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allocate(prcid(np),rvhd(np,3))
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prcid = -1
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do ip = 0, np-1
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sz = rvsz(ip+1)
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if (sz > 0) then
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prcid(ip+1) = psb_get_mpi_rank(ctxt,ip)
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idx = brvindx(ip+1)
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p2ptag = psb_int8_tag
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call mpi_irecv(valrcv(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
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& p2ptag, icomm,rvhd(ip+1,1),iret)
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p2ptag = psb_int_swap_tag
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call mpi_irecv(iarcv(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
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& p2ptag, icomm,rvhd(ip+1,2),iret)
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call mpi_irecv(jarcv(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
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& p2ptag, icomm,rvhd(ip+1,3),iret)
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end if
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Enddo
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do ip = 0, np-1
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sz = sdsz(ip+1)
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if (sz > 0) then
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if (prcid(ip+1)<0) prcid(ip+1) = psb_get_mpi_rank(ctxt,ip)
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idx = bsdindx(ip+1)
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p2ptag = psb_int8_tag
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call mpi_send(valsnd(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
|
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& p2ptag, icomm,iret)
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p2ptag = psb_int_swap_tag
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call mpi_send(iasnd(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
|
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& p2ptag, icomm,iret)
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call mpi_send(jasnd(idx+1:idx+sz),sz,&
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& psb_mpi_epk_,prcid(ip+1),&
|
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& p2ptag, icomm,iret)
|
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end if
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Enddo
|
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do ip = 0, np-1
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sz = rvsz(ip+1)
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if (sz > 0) then
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call mpi_wait(rvhd(ip+1,1),p2pstat,iret)
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call mpi_wait(rvhd(ip+1,2),p2pstat,iret)
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call mpi_wait(rvhd(ip+1,3),p2pstat,iret)
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end if
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Enddo
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end subroutine psb_e_e_simple_triad_a2av
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end module psi_e_collective_mod
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