4ab17f019b
This commit was SVN r6269.
403 строки
14 KiB
C
403 строки
14 KiB
C
/*
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* Copyright (c) 2004-2005 The Trustees of Indiana University.
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* All rights reserved.
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* Copyright (c) 2004-2005 The Trustees of the University of Tennessee.
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* All rights reserved.
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* Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
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* University of Stuttgart. All rights reserved.
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* Copyright (c) 2004-2005 The Regents of the University of California.
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* All rights reserved.
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* $COPYRIGHT$
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*
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* Additional copyrights may follow
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*
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* $HEADER$
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*/
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#include "ompi_config.h"
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#include <stdio.h>
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#include "mpi.h"
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#include "util/bit_ops.h"
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#include "include/constants.h"
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#include "mca/pml/pml.h"
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#include "mca/coll/base/base.h"
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#include "mca/topo/base/base.h"
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#include "mca/ns/base/base.h"
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#include "mpi/runtime/params.h"
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#include "communicator/communicator.h"
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#include "group/group.h"
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#include "attribute/attribute.h"
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/*
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** Table for Fortran <-> C communicator handle conversion
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** Also used by P2P code to lookup communicator based
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** on cid.
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**
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*/
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ompi_pointer_array_t ompi_mpi_communicators;
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ompi_communicator_t ompi_mpi_comm_world;
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ompi_communicator_t ompi_mpi_comm_self;
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ompi_communicator_t ompi_mpi_comm_null;
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ompi_communicator_t *ompi_mpi_comm_parent;
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static void ompi_comm_construct(ompi_communicator_t* comm);
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static void ompi_comm_destruct(ompi_communicator_t* comm);
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OBJ_CLASS_INSTANCE(ompi_communicator_t,ompi_object_t,ompi_comm_construct,ompi_comm_destruct);
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/* This is the counter for the number of communicators, which contain
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process with more than one jobid. This counter is a usefull
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shortcut for finalize and abort. */
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int ompi_comm_num_dyncomm=0;
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/*
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* Initialize comm world/self/null/parent.
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*/
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int ompi_comm_init(void)
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{
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ompi_group_t *group;
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size_t size;
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/* Setup communicator array */
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OBJ_CONSTRUCT(&ompi_mpi_communicators, ompi_pointer_array_t);
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/* Setup MPI_COMM_WORLD */
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OBJ_CONSTRUCT(&ompi_mpi_comm_world, ompi_communicator_t);
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group = OBJ_NEW(ompi_group_t);
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group->grp_proc_pointers = ompi_proc_world(&size);
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group->grp_proc_count = size;
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group->grp_flags |= OMPI_GROUP_INTRINSIC;
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ompi_set_group_rank(group, ompi_proc_local());
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ompi_group_increment_proc_count (group);
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ompi_mpi_comm_world.c_contextid = 0;
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ompi_mpi_comm_world.c_f_to_c_index = 0;
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ompi_mpi_comm_world.c_my_rank = group->grp_my_rank;
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ompi_mpi_comm_world.c_local_group = group;
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ompi_mpi_comm_world.c_remote_group = group;
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ompi_mpi_comm_world.c_cube_dim = ompi_cube_dim(size);
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ompi_mpi_comm_world.error_handler = &ompi_mpi_errors_are_fatal;
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OBJ_RETAIN( &ompi_mpi_errors_are_fatal );
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OMPI_COMM_SET_PML_ADDED(&ompi_mpi_comm_world);
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ompi_pointer_array_set_item (&ompi_mpi_communicators, 0, &ompi_mpi_comm_world);
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strncpy (ompi_mpi_comm_world.c_name, "MPI_COMM_WORLD",
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strlen("MPI_COMM_WORLD")+1 );
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ompi_mpi_comm_world.c_flags |= OMPI_COMM_NAMEISSET;
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ompi_mpi_comm_world.c_flags |= OMPI_COMM_INTRINSIC;
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/* We have to create a hash (although it is legal to leave this
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filed NULL -- the attribute accessor functions will intepret
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this as "there are no attributes cached on this object")
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because MPI_COMM_WORLD has some predefined attributes. */
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ompi_attr_hash_init(&ompi_mpi_comm_world.c_keyhash);
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/* Setup MPI_COMM_SELF */
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OBJ_CONSTRUCT(&ompi_mpi_comm_self, ompi_communicator_t);
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group = OBJ_NEW(ompi_group_t);
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group->grp_proc_pointers = ompi_proc_self(&size);
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group->grp_my_rank = 0;
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group->grp_proc_count = size;
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group->grp_flags |= OMPI_GROUP_INTRINSIC;
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ompi_mpi_comm_self.c_contextid = 1;
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ompi_mpi_comm_self.c_f_to_c_index = 1;
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ompi_mpi_comm_self.c_my_rank = group->grp_my_rank;
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ompi_mpi_comm_self.c_local_group = group;
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ompi_mpi_comm_self.c_remote_group = group;
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ompi_mpi_comm_self.error_handler = &ompi_mpi_errors_are_fatal;
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OBJ_RETAIN( &ompi_mpi_errors_are_fatal );
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OMPI_COMM_SET_PML_ADDED(&ompi_mpi_comm_self);
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ompi_pointer_array_set_item (&ompi_mpi_communicators, 1, &ompi_mpi_comm_self);
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strncpy(ompi_mpi_comm_self.c_name,"MPI_COMM_SELF",strlen("MPI_COMM_SELF")+1);
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ompi_mpi_comm_self.c_flags |= OMPI_COMM_NAMEISSET;
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ompi_mpi_comm_self.c_flags |= OMPI_COMM_INTRINSIC;
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/* We can set MPI_COMM_SELF's keyhash to NULL because it has no
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predefined attributes. If a user defines an attribute on
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MPI_COMM_SELF, the keyhash will automatically be created. */
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ompi_mpi_comm_self.c_keyhash = NULL;
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/* Setup MPI_COMM_NULL */
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OBJ_CONSTRUCT(&ompi_mpi_comm_null, ompi_communicator_t);
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ompi_mpi_comm_null.c_local_group = &ompi_mpi_group_null;
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ompi_mpi_comm_null.c_remote_group = &ompi_mpi_group_null;
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OBJ_RETAIN(&ompi_mpi_group_null);
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ompi_mpi_comm_null.c_contextid = 2;
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ompi_mpi_comm_null.c_f_to_c_index = 2;
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ompi_mpi_comm_null.c_my_rank = MPI_PROC_NULL;
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ompi_mpi_comm_null.error_handler = &ompi_mpi_errors_are_fatal;
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OBJ_RETAIN( &ompi_mpi_errors_are_fatal );
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ompi_pointer_array_set_item (&ompi_mpi_communicators, 2, &ompi_mpi_comm_null);
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strncpy(ompi_mpi_comm_null.c_name,"MPI_COMM_NULL",strlen("MPI_COMM_NULL")+1);
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ompi_mpi_comm_null.c_flags |= OMPI_COMM_NAMEISSET;
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ompi_mpi_comm_null.c_flags |= OMPI_COMM_INTRINSIC;
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/* Initialize the parent communicator to MPI_COMM_NULL */
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ompi_mpi_comm_parent = &ompi_mpi_comm_null;
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OBJ_RETAIN(&ompi_mpi_comm_null);
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OBJ_RETAIN(&ompi_mpi_group_null);
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OBJ_RETAIN(&ompi_mpi_errors_are_fatal);
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/* initialize the comm_reg stuff for multi-threaded comm_cid
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allocation */
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ompi_comm_reg_init();
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return OMPI_SUCCESS;
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}
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ompi_communicator_t *ompi_comm_allocate ( int local_size, int remote_size )
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{
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ompi_communicator_t *new_comm=NULL;
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/* create new communicator element */
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new_comm = OBJ_NEW(ompi_communicator_t);
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new_comm->c_local_group = ompi_group_allocate ( local_size );
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if ( 0 < remote_size ) {
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new_comm->c_remote_group = ompi_group_allocate (remote_size);
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new_comm->c_flags |= OMPI_COMM_INTER;
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}
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else {
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/*
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* simplifies some operations (e.g. p2p), if
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* we can always use the remote group
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*/
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new_comm->c_remote_group = new_comm->c_local_group;
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OBJ_RETAIN(new_comm->c_remote_group);
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}
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/* fill in the inscribing hyper-cube dimensions */
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new_comm->c_cube_dim = ompi_cube_dim(local_size);
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if ( OMPI_ERROR == new_comm->c_cube_dim ) {
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OBJ_RELEASE(new_comm);
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new_comm = NULL;
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}
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return new_comm;
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}
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int ompi_comm_finalize(void)
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{
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int max, i;
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ompi_communicator_t *comm;
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/* MPI-2 section 4.8: call the attribute
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delete functions attached to MPI_COMM_SELF
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and destroy comm_self before any other communicator */
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comm = &ompi_mpi_comm_self;
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if (NULL != comm->c_keyhash) {
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ompi_attr_delete_all(COMM_ATTR, comm, comm->c_keyhash);
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/* ignoring that the attribute delete functions might
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return an errorcode != MPI_SUCCESS.
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Hey, we are in finalize, can finalize fail ??? */
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OBJ_RELEASE(comm->c_keyhash);
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}
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OBJ_DESTRUCT( &ompi_mpi_comm_self );
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/* disconnect all dynamic communicators */
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ompi_comm_dyn_finalize();
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/* Destroy all predefined communicators */
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OBJ_DESTRUCT( &ompi_mpi_comm_world );
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if( ompi_mpi_comm_parent != &ompi_mpi_comm_null ) {
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/* Note that we pass ompi_mpi_comm_parent here
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(vs. &ompi_mpi_comm_parent) because it is of type
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(ompi_communicator_t*), *NOT* (ompi_communicator_t). This
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is because a parent communicator is created dynamically
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during init, and we just set this pointer to it. Hence, we
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just pass in the pointer here. */
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OBJ_DESTRUCT (ompi_mpi_comm_parent);
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}
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OBJ_DESTRUCT( &ompi_mpi_comm_null );
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/* Check whether we have some communicators left */
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max = ompi_pointer_array_get_size(&ompi_mpi_communicators);
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for ( i=3; i<max; i++ ) {
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comm = (ompi_communicator_t *)ompi_pointer_array_get_item(&ompi_mpi_communicators, i);
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if ( NULL != comm ) {
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/* Communicator has not been freed before finalize */
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OBJ_RELEASE(comm);
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comm=(ompi_communicator_t *)ompi_pointer_array_get_item(&ompi_mpi_communicators, i);
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if ( NULL != comm ) {
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/* Still here ? */
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if ( ompi_debug_show_handle_leaks && !(OMPI_COMM_IS_FREED(comm)) ){
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ompi_output(0,"WARNING: MPI_Comm still allocated in MPI_Finalize\n");
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ompi_comm_dump ( comm);
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OBJ_RELEASE(comm);
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}
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}
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}
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}
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OBJ_DESTRUCT (&ompi_mpi_communicators);
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/* finalize the comm_reg stuff */
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ompi_comm_reg_finalize();
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return OMPI_SUCCESS;
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}
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/*
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* For linking only. To be checked.
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*/
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int ompi_comm_link_function(void)
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{
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return OMPI_SUCCESS;
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}
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/********************************************************************************/
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/********************************************************************************/
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/********************************************************************************/
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/* static functions */
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static void ompi_comm_construct(ompi_communicator_t* comm)
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{
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comm->c_f_to_c_index = MPI_UNDEFINED;
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comm->c_name[0] = '\0';
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comm->c_contextid = MPI_UNDEFINED;
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comm->c_flags = 0;
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comm->c_my_rank = 0;
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comm->c_cube_dim = 0;
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comm->c_local_group = NULL;
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comm->c_remote_group = NULL;
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comm->error_handler = NULL;
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comm->c_pml_comm = NULL;
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comm->c_pml_procs = NULL;
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comm->c_topo = NULL;
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comm->c_topo_component = NULL;
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comm->c_topo_comm = NULL;
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comm->c_topo_module = NULL;
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/* A keyhash will be created if/when an attribute is cached on
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this communiucator */
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comm->c_keyhash = NULL;
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#if OMPI_ENABLE_DEBUG
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memset (&(comm->c_coll), 0, sizeof(mca_coll_base_module_1_0_0_t));
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#endif
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comm->c_coll_selected_component = NULL;
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comm->c_coll_selected_module = NULL;
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comm->c_coll_selected_data = NULL;
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comm->c_coll_basic_module = NULL;
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comm->c_coll_basic_data = NULL;
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comm->errhandler_type = OMPI_ERRHANDLER_TYPE_COMM;
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return;
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}
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static void ompi_comm_destruct(ompi_communicator_t* comm)
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{
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/* Note that the attributes were already released on this
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communicator in ompi_comm_free() (i.e., from MPI_COMM_FREE /
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MPI_COMM_DISCONNECT). See the lengthy comment in
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communicator/comm.c in ompi_comm_free() for the reasons why. */
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/* Release the collective module */
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if ( MPI_COMM_NULL != comm ) {
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mca_coll_base_comm_unselect(comm);
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}
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/* Check if the communicator is a topology */
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if ( MPI_COMM_NULL != comm &&
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(OMPI_COMM_IS_CART(comm) || OMPI_COMM_IS_GRAPH(comm))) {
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/* check and free individual things */
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if (NULL != comm->c_topo_comm) {
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/* check for all pointers and free them */
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if (NULL != comm->c_topo_comm->mtc_dims_or_index) {
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free(comm->c_topo_comm->mtc_dims_or_index);
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comm->c_topo_comm->mtc_dims_or_index = NULL;
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}
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if (NULL != comm->c_topo_comm->mtc_periods_or_edges) {
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free(comm->c_topo_comm->mtc_periods_or_edges);
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comm->c_topo_comm->mtc_periods_or_edges = NULL;
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}
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if (NULL != comm->c_topo_comm->mtc_coords) {
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free(comm->c_topo_comm->mtc_coords);
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comm->c_topo_comm->mtc_coords = NULL;
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}
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free(comm->c_topo_comm);
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comm->c_topo_comm = NULL;
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}
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}
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comm->c_topo_component = NULL;
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/* Tell the PML that this communicator is done.
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MCA_PML_CALL(add_comm()) was called explicitly in
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ompi_comm_init() when setting up COMM_WORLD and COMM_SELF; it's
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called in ompi_comm_set() for all others. This means that all
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communicators must be destroyed before the PML shuts down.
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Also -- do not invoke the pml_del_comm if the corresponding
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pml_add_comm was never invoked. This can happen in an error
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situation where, for example, attributes do not copy properly
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from one communicator to another and we end up destroying the
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new communication while propagating the error up the stack. We
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want to make it all the way up the stack to invoke the MPI
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exception, not cause a seg fault in pml_del_comm because it was
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never pml_add_com'ed. */
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if ( MPI_COMM_NULL != comm && OMPI_COMM_IS_PML_ADDED(comm) ) {
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MCA_PML_CALL(del_comm (comm));
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}
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/* Release topology information */
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mca_topo_base_comm_unselect(comm);
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if (NULL != comm->c_local_group) {
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ompi_group_decrement_proc_count (comm->c_local_group);
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OBJ_RELEASE ( comm->c_local_group );
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comm->c_local_group = NULL;
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if ( OMPI_COMM_IS_INTRA(comm) ) {
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comm->c_remote_group = NULL;
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}
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}
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if (NULL != comm->c_remote_group) {
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ompi_group_decrement_proc_count (comm->c_remote_group);
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OBJ_RELEASE ( comm->c_remote_group );
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comm->c_remote_group = NULL;
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}
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if (NULL != comm->error_handler) {
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OBJ_RELEASE ( comm->error_handler );
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comm->error_handler = NULL;
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}
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/* reset the ompi_comm_f_to_c_table entry */
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if ( MPI_UNDEFINED != comm->c_f_to_c_index &&
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NULL != ompi_pointer_array_get_item(&ompi_mpi_communicators,
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comm->c_f_to_c_index )) {
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ompi_pointer_array_set_item ( &ompi_mpi_communicators,
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comm->c_f_to_c_index, NULL);
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}
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return;
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}
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