mirror of https://gitlab.com/QEF/q-e.git
177 lines
6.1 KiB
Fortran
177 lines
6.1 KiB
Fortran
!
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! Copyright (C) 2013 Quantum ESPRESSO group
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! This file is distributed under the terms of the
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! GNU General Public License. See the file `License'
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! in the root directory of the present distribution,
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! or http://www.gnu.org/copyleft/gpl.txt .
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!
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!----------------------------------------------------------------------------
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MODULE mp_pools
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!----------------------------------------------------------------------------
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!
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USE mp, ONLY : mp_barrier, mp_size, mp_rank, mp_comm_split
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USE parallel_include
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!
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IMPLICIT NONE
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SAVE
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!
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! ... Pool groups (processors within a pool of k-points)
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! ... Subdivision of image group, used for k-point parallelization
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!
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INTEGER :: npool = 1 ! number of "k-points"-pools
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INTEGER :: nproc_pool = 1 ! number of processors within a pool
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INTEGER :: me_pool = 0 ! index of the processor within a pool
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INTEGER :: root_pool = 0 ! index of the root processor within a pool
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INTEGER :: my_pool_id = 0 ! index of my pool
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INTEGER :: inter_pool_comm = 0 ! inter pool communicator
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INTEGER :: intra_pool_comm = 0 ! intra pool communicator
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!
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INTEGER :: kunit = 1 ! granularity of k-point distribution
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! kunit=1 standard case. In phonon k and k+q must
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! be on the same pool, so kunit=2.
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!
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CONTAINS
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!
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!----------------------------------------------------------------------------
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SUBROUTINE mp_start_pools( npool_, parent_comm )
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!---------------------------------------------------------------------------
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!
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! ... Divide processors (of the "parent_comm" group) into "pools"
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! ... Requires: npool_, read from command line
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! ... parent_comm, typically world_comm = group of all processors
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!
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IMPLICIT NONE
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!
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INTEGER, INTENT(IN) :: npool_, parent_comm
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!
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INTEGER :: parent_nproc = 1, parent_mype = 0
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!
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#if defined (__MPI)
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!
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parent_nproc = mp_size( parent_comm )
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parent_mype = mp_rank( parent_comm )
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!
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! ... npool_ must have been previously read from command line argument
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! ... by a call to routine get_command_line
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!
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npool = npool_
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IF ( npool < 1 .OR. npool > parent_nproc ) CALL errore( 'mp_start_pools',&
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'invalid number of pools, out of range', 1 )
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IF ( MOD( parent_nproc, npool ) /= 0 ) CALL errore( 'mp_start_pools', &
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'invalid number of pools, parent_nproc /= nproc_pool * npool', 1 )
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!
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! ... number of cpus per pool of k-points (created inside each parent group)
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!
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nproc_pool = parent_nproc / npool
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!
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!
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! ... my_pool_id = pool index for this processor ( 0 : npool - 1 )
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! ... me_pool = processor index within the pool ( 0 : nproc_pool - 1 )
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!
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my_pool_id = parent_mype / nproc_pool
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me_pool = MOD( parent_mype, nproc_pool )
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!
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CALL mp_barrier( parent_comm )
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!
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! ... the intra_pool_comm communicator is created
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!
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CALL mp_comm_split ( parent_comm, my_pool_id, parent_mype, intra_pool_comm )
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!
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CALL mp_barrier( parent_comm )
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!
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! ... the inter_pool_comm communicator is created
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!
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CALL mp_comm_split ( parent_comm, me_pool, parent_mype, inter_pool_comm )
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!
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#endif
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!
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RETURN
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END SUBROUTINE mp_start_pools
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!
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END MODULE mp_pools
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!----------------------------------------------------------------------------
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MODULE mp_orthopools
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!----------------------------------------------------------------------------
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!
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USE mp, ONLY : mp_barrier, mp_size, mp_rank, mp_comm_split
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USE mp_pools
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USE parallel_include
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!
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IMPLICIT NONE
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SAVE
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!
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! ... Ortho-pool groups each orthopool group collect the (n+1)th CPU of each pool
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! i.e. orthopool 0 -> first CPU of each pool
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! orthopool 1 -> second CPU of each pool
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!
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INTEGER :: northopool = 1 ! number of "k-points"-orthopools, must be equal to nproc_pool
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INTEGER :: nproc_orthopool = 1 ! number of processors within a orthopool, must be equal to npool
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INTEGER :: me_orthopool = 0 ! index of the processor within a orthopool,
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! must be equal to the pool id of that cpu
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INTEGER :: root_orthopool = 0 ! index of the root processor within a orthopool
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INTEGER :: my_orthopool_id = 0 ! index of my orthopool
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INTEGER :: inter_orthopool_comm = 0 ! inter orthopool communicator
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INTEGER :: intra_orthopool_comm = 0 ! intra orthopool communicator
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!
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LOGICAL :: init_orthopools = .false.
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!
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CONTAINS
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!
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!----------------------------------------------------------------------------
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SUBROUTINE mp_start_orthopools( parent_comm )
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!---------------------------------------------------------------------------
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!
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! ... Divide processors (of the "parent_comm" group) into "orthopools"
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! ... Requires: pools being already initialized
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! ... parent_comm, typically world_comm = group of all processors
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!
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IMPLICIT NONE
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!
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INTEGER, INTENT(IN) :: parent_comm
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!
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INTEGER :: parent_nproc = 1, parent_mype = 0
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!
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! Only init this once (I put this check because initialisation
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! of orthopools is done later, during EXX bootstrap, not at the beginning
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IF(init_orthopools) RETURN
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init_orthopools = .true.
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!
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#if defined (__MPI)
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!
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parent_nproc = mp_size( parent_comm )
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parent_mype = mp_rank( parent_comm )
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!
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northopool = nproc_pool
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!
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! ... number of cpus per orthopool
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nproc_orthopool = npool
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!
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!
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! ... my_orthopool_id = orthopool index for this processor ( 0 : northopool - 1 )
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! ... me_orthopool = processor index within the orthopool ( 0 : nproc_orthopool - 1 )
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my_orthopool_id = MOD(parent_mype, northopool)
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me_orthopool = my_pool_id
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!
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CALL mp_barrier( parent_comm )
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!
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! ... the intra_orthopool_comm communicator is created
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!
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CALL mp_comm_split ( parent_comm, my_orthopool_id, parent_mype, intra_orthopool_comm )
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!
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CALL mp_barrier( parent_comm )
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!
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! ... the inter_orthopool_comm communicator is created
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!
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CALL mp_comm_split ( parent_comm, me_orthopool, parent_mype, inter_orthopool_comm )
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!
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#endif
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!
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RETURN
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END SUBROUTINE mp_start_orthopools
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!
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END MODULE mp_orthopools
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