a446af5b6b
have the SRQ interface. * Instead of setting AC_DEFINEs per MCA component, set per test. THe answers can never be difference, and this will speed sed just a teeny bit This commit was SVN r14856.
1104 строки
38 KiB
C
1104 строки
38 KiB
C
/*
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* Copyright (c) 2004-2007 The Trustees of Indiana University and Indiana
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* University Research and Technology
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* Corporation. All rights reserved.
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* Copyright (c) 2004-2005 The University of Tennessee and The University
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* of Tennessee Research Foundation. All rights
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* 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 (c) 2007 Cisco Systems, Inc. All rights reserved.
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* Copyright (c) 2006-2007 Mellanox Technologies. 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 <string.h>
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#include <inttypes.h>
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#include "opal/util/output.h"
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#include "opal/util/if.h"
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#include "opal/util/show_help.h"
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#include "ompi/mca/pml/pml.h"
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#include "ompi/mca/btl/btl.h"
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#include "ompi/mca/btl/base/btl_base_error.h"
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#include "btl_openib.h"
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#include "btl_openib_frag.h"
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#include "btl_openib_proc.h"
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#include "btl_openib_endpoint.h"
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#include "ompi/datatype/convertor.h"
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#include "ompi/datatype/datatype.h"
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#include "ompi/mca/mpool/base/base.h"
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#include "ompi/mca/mpool/mpool.h"
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#include "ompi/mca/mpool/rdma/mpool_rdma.h"
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#include "ompi/runtime/params.h"
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#include "orte/util/sys_info.h"
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#include <errno.h>
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#include <string.h>
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#include <math.h>
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#include <inttypes.h>
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#ifdef HAVE_SYS_TYPES_H
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#include <sys/types.h>
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#endif
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#ifdef HAVE_SYS_TIME_H
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#include <sys/time.h>
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#endif
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#ifdef HAVE_SYS_RESOURCE_H
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#include <sys/resource.h>
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#endif
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mca_btl_openib_module_t mca_btl_openib_module = {
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{
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&mca_btl_openib_component.super,
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0, /* max size of first fragment */
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0, /* min send fragment size */
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0, /* max send fragment size */
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0, /* btl_rdma_pipeline_offset */
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0, /* btl_rdma_pipeline_frag_size */
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0, /* btl_min_rdma_pipeline_size */
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0, /* exclusivity */
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0, /* latency */
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0, /* bandwidth */
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0, /* TODO this should be PUT btl flags */
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mca_btl_openib_add_procs,
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mca_btl_openib_del_procs,
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mca_btl_openib_register,
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mca_btl_openib_finalize,
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/* we need alloc free, pack */
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mca_btl_openib_alloc,
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mca_btl_openib_free,
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mca_btl_openib_prepare_src,
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mca_btl_openib_prepare_dst,
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mca_btl_openib_send,
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mca_btl_openib_put,
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mca_btl_openib_get,
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mca_btl_base_dump,
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NULL, /* mpool */
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mca_btl_openib_register_error_cb, /* error call back registration */
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mca_btl_openib_ft_event
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}
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};
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/*
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* Local functions
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*/
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static int mca_btl_openib_size_queues( struct mca_btl_openib_module_t* openib_btl, size_t nprocs);
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static int mca_btl_openib_create_cq_srq(mca_btl_openib_module_t* openib_btl);
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static int mca_btl_finalize_hca(struct mca_btl_openib_hca_t *hca);
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static void show_init_error(const char *file, int line,
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const char *func, const char *dev)
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{
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if (ENOMEM == errno) {
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int ret;
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struct rlimit limit;
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char *str_limit = NULL;
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ret = getrlimit(RLIMIT_MEMLOCK, &limit);
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if (0 != ret) {
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asprintf(&str_limit, "Unknown");
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} else if (limit.rlim_cur == RLIM_INFINITY) {
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asprintf(&str_limit, "unlimited");
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} else {
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asprintf(&str_limit, "%ld", (long)limit.rlim_cur);
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}
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opal_show_help("help-mpi-btl-openib.txt", "init-fail-no-mem",
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true, orte_system_info.nodename,
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file, line, func, dev, str_limit);
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if (NULL != str_limit) free(str_limit);
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} else {
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opal_show_help("help-mpi-btl-openib.txt", "init-fail-create-q",
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true, orte_system_info.nodename,
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file, line, func, strerror(errno), errno, dev);
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}
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}
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/*
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* add a proc to this btl module
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* creates an endpoint that is setup on the
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* first send to the endpoint
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*/
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int mca_btl_openib_add_procs(
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struct mca_btl_base_module_t* btl,
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size_t nprocs,
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struct ompi_proc_t **ompi_procs,
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struct mca_btl_base_endpoint_t** peers,
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ompi_bitmap_t* reachable)
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{
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mca_btl_openib_module_t* openib_btl = (mca_btl_openib_module_t*)btl;
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int i,j, rc;
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int rem_subnet_id_port_cnt;
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int lcl_subnet_id_port_cnt = 0;
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int btl_rank = 0;
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for(j=0; j < mca_btl_openib_component.ib_num_btls; j++){
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if(mca_btl_openib_component.openib_btls[j]->port_info.subnet_id
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== openib_btl->port_info.subnet_id) {
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lcl_subnet_id_port_cnt++;
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}
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if(openib_btl == mca_btl_openib_component.openib_btls[j]) {
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btl_rank = j;
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}
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}
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for(i = 0; i < (int) nprocs; i++) {
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struct ompi_proc_t* ompi_proc = ompi_procs[i];
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mca_btl_openib_proc_t* ib_proc;
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mca_btl_base_endpoint_t* endpoint;
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if(NULL == (ib_proc = mca_btl_openib_proc_create(ompi_proc))) {
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return OMPI_ERR_OUT_OF_RESOURCE;
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}
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rem_subnet_id_port_cnt = 0;
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/* check if the remote proc has a reachable subnet first */
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BTL_VERBOSE(("got %d port_infos \n", ib_proc->proc_port_count));
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for(j = 0; j < (int) ib_proc->proc_port_count; j++){
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BTL_VERBOSE(("got a subnet %016x\n",
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ib_proc->proc_ports[j].subnet_id));
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if(ib_proc->proc_ports[j].subnet_id ==
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openib_btl->port_info.subnet_id) {
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BTL_VERBOSE(("Got a matching subnet!\n"));
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rem_subnet_id_port_cnt ++;
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}
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}
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if(!rem_subnet_id_port_cnt ) {
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/* no use trying to communicate with this endpointlater */
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BTL_VERBOSE(("No matching subnet id was found, moving on.. \n"));
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continue;
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}
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#if 0
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num_endpoints = rem_subnet_id_port_cnt / lcl_subnet_id_port_cnt +
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(btl_rank < (rem_subnet_id_port_cnt / lcl_subnet_id_port_cnt)) ? 1:0;
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#endif
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if(rem_subnet_id_port_cnt < lcl_subnet_id_port_cnt &&
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btl_rank >= rem_subnet_id_port_cnt ) {
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BTL_VERBOSE(("Not enough remote ports on this subnet id, moving on.. \n"));
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continue;
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}
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OPAL_THREAD_LOCK(&ib_proc->proc_lock);
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/* The btl_proc datastructure is shared by all IB BTL
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* instances that are trying to reach this destination.
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* Cache the peer instance on the btl_proc.
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*/
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endpoint = OBJ_NEW(mca_btl_openib_endpoint_t);
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if(NULL == endpoint) {
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OPAL_THREAD_UNLOCK(&ib_proc->proc_lock);
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return OMPI_ERR_OUT_OF_RESOURCE;
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}
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endpoint->endpoint_btl = openib_btl;
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endpoint->use_eager_rdma = openib_btl->hca->use_eager_rdma &
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mca_btl_openib_component.use_eager_rdma;
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endpoint->subnet_id = openib_btl->port_info.subnet_id;
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rc = mca_btl_openib_proc_insert(ib_proc, endpoint);
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if(rc != OMPI_SUCCESS) {
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OBJ_RELEASE(endpoint);
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OPAL_THREAD_UNLOCK(&ib_proc->proc_lock);
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continue;
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}
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orte_pointer_array_add((orte_std_cntr_t*)&endpoint->index,
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openib_btl->endpoints, (void*)endpoint);
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ompi_bitmap_set_bit(reachable, i);
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OPAL_THREAD_UNLOCK(&ib_proc->proc_lock);
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peers[i] = endpoint;
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}
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return mca_btl_openib_size_queues(openib_btl, nprocs);
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}
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static int mca_btl_openib_size_queues( struct mca_btl_openib_module_t* openib_btl, size_t nprocs)
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{
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int min_cq_size;
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int first_time = (0 == openib_btl->num_peers);
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int rc;
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openib_btl->num_peers += nprocs;
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if(mca_btl_openib_component.use_srq) {
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openib_btl->rd_num = mca_btl_openib_component.rd_num + log2(nprocs) * mca_btl_openib_component.srq_rd_per_peer;
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if(openib_btl->rd_num > mca_btl_openib_component.srq_rd_max)
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openib_btl->rd_num = mca_btl_openib_component.srq_rd_max;
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openib_btl->rd_low = openib_btl->rd_num - 1;
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min_cq_size = openib_btl->rd_num * 2 * openib_btl->num_peers;
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if(!first_time) {
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struct ibv_srq_attr srq_attr;
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srq_attr.max_wr = openib_btl->rd_num;
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rc = ibv_modify_srq(openib_btl->srq[BTL_OPENIB_HP_QP],
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&srq_attr, IBV_SRQ_MAX_WR);
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if(rc) {
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BTL_ERROR(("cannot resize high priority shared receive queue, error: %d", rc));
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return OMPI_ERROR;
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}
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rc = ibv_modify_srq(openib_btl->srq[BTL_OPENIB_LP_QP],
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&srq_attr, IBV_SRQ_MAX_WR);
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if(rc) {
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BTL_ERROR(("cannot resize low priority shared receive queue, error: %d", rc));
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return OMPI_ERROR;
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}
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}
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} else
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{
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min_cq_size = ( mca_btl_openib_component.rd_num > (int32_t) mca_btl_openib_component.eager_rdma_num ?
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mca_btl_openib_component.rd_num : (int32_t) mca_btl_openib_component.eager_rdma_num ) *
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2 * openib_btl->num_peers;
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}
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if(min_cq_size > (int32_t) mca_btl_openib_component.ib_cq_size) {
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mca_btl_openib_component.ib_cq_size = min_cq_size > openib_btl->hca->ib_dev_attr.max_cq ?
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openib_btl->hca->ib_dev_attr.max_cq : min_cq_size;
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#ifdef HAVE_IBV_RESIZE_CQ
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if(!first_time) {
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rc = ibv_resize_cq(openib_btl->ib_cq[BTL_OPENIB_LP_QP], mca_btl_openib_component.ib_cq_size);
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if(rc) {
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BTL_ERROR(("cannot resize low priority completion queue, error: %d", rc));
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return OMPI_ERROR;
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}
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rc = ibv_resize_cq(openib_btl->ib_cq[BTL_OPENIB_HP_QP],
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mca_btl_openib_component.ib_cq_size);
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if(rc) {
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BTL_ERROR(("cannot resize high priority completion queue, error: %d", rc));
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return OMPI_ERROR;
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}
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}
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#endif
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}
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if(first_time) {
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/* never been here before, setup cq and srq */
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mca_btl_openib_component.ib_cq_size = (int) mca_btl_openib_component.ib_cq_size >
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openib_btl->hca->ib_dev_attr.max_cq ?
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openib_btl->hca->ib_dev_attr.max_cq :
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(int) mca_btl_openib_component.ib_cq_size;
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return mca_btl_openib_create_cq_srq(openib_btl);
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}
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return OMPI_SUCCESS;
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}
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/*
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* delete the proc as reachable from this btl module
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*/
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int mca_btl_openib_del_procs(struct mca_btl_base_module_t* btl,
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size_t nprocs,
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struct ompi_proc_t **procs,
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struct mca_btl_base_endpoint_t ** peers)
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{
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int i,ep_index;
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mca_btl_openib_module_t* openib_btl = (mca_btl_openib_module_t*) btl;
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for (i=0 ; i < (int) nprocs ; i++) {
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mca_btl_base_endpoint_t* del_endpoint = peers[i];
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for(ep_index=0;
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ep_index < orte_pointer_array_get_size(openib_btl->endpoints);
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ep_index++) {
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mca_btl_openib_endpoint_t* endpoint =
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orte_pointer_array_get_item(openib_btl->endpoints,ep_index);
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if(!endpoint) {
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continue;
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}
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if (endpoint == del_endpoint) {
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orte_pointer_array_set_item(openib_btl->endpoints,ep_index,NULL);
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OBJ_RELEASE(endpoint);
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}
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}
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}
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return OMPI_SUCCESS;
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}
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/*
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*Register callback function to support send/recv semantics
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*/
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int mca_btl_openib_register(
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struct mca_btl_base_module_t* btl,
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mca_btl_base_tag_t tag,
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mca_btl_base_module_recv_cb_fn_t cbfunc,
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void* cbdata)
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{
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mca_btl_openib_module_t* openib_btl = (mca_btl_openib_module_t*) btl;
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OPAL_THREAD_LOCK(&openib_btl->ib_lock);
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openib_btl->ib_reg[tag].cbfunc = cbfunc;
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openib_btl->ib_reg[tag].cbdata = cbdata;
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OPAL_THREAD_UNLOCK(&openib_btl->ib_lock);
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return OMPI_SUCCESS;
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}
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/*
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*Register callback function for error handling..
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*/
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int mca_btl_openib_register_error_cb(
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struct mca_btl_base_module_t* btl,
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mca_btl_base_module_error_cb_fn_t cbfunc)
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{
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mca_btl_openib_module_t* openib_btl = (mca_btl_openib_module_t*) btl;
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openib_btl->error_cb = cbfunc; /* stash for later */
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return OMPI_SUCCESS;
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}
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/**
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* Allocate a segment.
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*
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* @param btl (IN) BTL module
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* @param size (IN) Request segment size.
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* @param size (IN) Size of segment to allocate
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*
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* When allocating a segment we pull a pre-alllocated segment
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* from one of two free lists, an eager list and a max list
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*/
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mca_btl_base_descriptor_t* mca_btl_openib_alloc(
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struct mca_btl_base_module_t* btl,
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uint8_t order,
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size_t size)
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{
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mca_btl_openib_frag_t* frag = NULL;
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mca_btl_openib_module_t* openib_btl;
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int rc;
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openib_btl = (mca_btl_openib_module_t*) btl;
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if(size <= mca_btl_openib_component.eager_limit){
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MCA_BTL_IB_FRAG_ALLOC_EAGER(btl, frag, rc);
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if(order == MCA_BTL_NO_ORDER) {
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order = BTL_OPENIB_HP_QP;
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}
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} else if(size <= mca_btl_openib_component.max_send_size) {
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if(order == MCA_BTL_NO_ORDER) {
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order = BTL_OPENIB_LP_QP;
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} else if(order != BTL_OPENIB_LP_QP) {
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return NULL;
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}
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MCA_BTL_IB_FRAG_ALLOC_MAX(btl, frag, rc);
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}
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if(NULL == frag)
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return NULL;
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frag->segment.seg_len =
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size <= openib_btl->super.btl_eager_limit ? size : openib_btl->super.btl_eager_limit;
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frag->base.order = order;
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frag->base.des_flags = 0;
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return (mca_btl_base_descriptor_t*)frag;
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}
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/**
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* Return a segment
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*
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* Return the segment to the appropriate
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* preallocated segment list
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*/
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int mca_btl_openib_free(
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struct mca_btl_base_module_t* btl,
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mca_btl_base_descriptor_t* des)
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{
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mca_btl_openib_frag_t* frag = (mca_btl_openib_frag_t*)des;
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if(((MCA_BTL_OPENIB_SEND_FRAG_FRAG == frag->type) ||
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(MCA_BTL_OPENIB_RECV_FRAG_FRAG == frag->type))
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&& frag->registration != NULL) {
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btl->btl_mpool->mpool_deregister(btl->btl_mpool,
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(mca_mpool_base_registration_t*)
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frag->registration);
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frag->registration = NULL;
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}
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MCA_BTL_IB_FRAG_RETURN(((mca_btl_openib_module_t*) btl), frag);
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return OMPI_SUCCESS;
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}
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|
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/**
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* register user buffer or pack
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* data into pre-registered buffer and return a
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* descriptor that can be
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* used for send/put.
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*
|
|
* @param btl (IN) BTL module
|
|
* @param peer (IN) BTL peer addressing
|
|
*
|
|
* prepare source's behavior depends on the following:
|
|
* Has a valid memory registration been passed to prepare_src?
|
|
* if so we attempt to use the pre-registered user-buffer, if the memory registration
|
|
* is too small (only a portion of the user buffer) then we must reregister the user buffer
|
|
* Has the user requested the memory to be left pinned?
|
|
* if so we insert the memory registration into a memory tree for later lookup, we
|
|
* may also remove a previous registration if a MRU (most recently used) list of
|
|
* registrations is full, this prevents resources from being exhausted.
|
|
* Is the requested size larger than the btl's max send size?
|
|
* if so and we aren't asked to leave the registration pinned, then we register the memory if
|
|
* the users buffer is contiguous
|
|
* Otherwise we choose from two free lists of pre-registered memory in which to pack the data into.
|
|
*
|
|
*/
|
|
mca_btl_base_descriptor_t* mca_btl_openib_prepare_src(
|
|
struct mca_btl_base_module_t* btl,
|
|
struct mca_btl_base_endpoint_t* endpoint,
|
|
mca_mpool_base_registration_t* registration,
|
|
struct ompi_convertor_t* convertor,
|
|
uint8_t order,
|
|
size_t reserve,
|
|
size_t* size
|
|
)
|
|
{
|
|
mca_btl_openib_module_t *openib_btl;
|
|
mca_btl_openib_frag_t *frag = NULL;
|
|
mca_btl_openib_reg_t *openib_reg;
|
|
struct iovec iov;
|
|
uint32_t iov_count = 1;
|
|
size_t max_data = *size;
|
|
int rc;
|
|
|
|
openib_btl = (mca_btl_openib_module_t*)btl;
|
|
|
|
if(ompi_convertor_need_buffers(convertor) == false && 0 == reserve) {
|
|
if(registration != NULL || max_data > btl->btl_max_send_size) {
|
|
MCA_BTL_IB_FRAG_ALLOC_SEND_FRAG(btl, frag, rc);
|
|
if(NULL == frag) {
|
|
return NULL;
|
|
}
|
|
|
|
iov.iov_len = max_data;
|
|
iov.iov_base = NULL;
|
|
|
|
ompi_convertor_pack(convertor, &iov, &iov_count, &max_data);
|
|
|
|
*size = max_data;
|
|
|
|
if(NULL == registration) {
|
|
rc = btl->btl_mpool->mpool_register(btl->btl_mpool,
|
|
iov.iov_base, max_data, 0, ®istration);
|
|
if(OMPI_SUCCESS != rc || NULL == registration) {
|
|
MCA_BTL_IB_FRAG_RETURN(openib_btl, frag);
|
|
return NULL;
|
|
}
|
|
/* keep track of the registration we did */
|
|
frag->registration = (mca_btl_openib_reg_t*)registration;
|
|
}
|
|
openib_reg = (mca_btl_openib_reg_t*)registration;
|
|
|
|
frag->base.des_flags = 0;
|
|
frag->base.des_src = &frag->segment;
|
|
frag->base.des_src_cnt = 1;
|
|
frag->base.des_dst = NULL;
|
|
frag->base.des_dst_cnt = 0;
|
|
frag->base.des_flags = 0;
|
|
|
|
frag->sg_entry.length = max_data;
|
|
frag->sg_entry.lkey = openib_reg->mr->lkey;
|
|
frag->sg_entry.addr = (unsigned long)iov.iov_base;
|
|
|
|
frag->segment.seg_len = max_data;
|
|
frag->segment.seg_addr.pval = iov.iov_base;
|
|
frag->segment.seg_key.key32[0] = (uint32_t)frag->sg_entry.lkey;
|
|
|
|
if(MCA_BTL_NO_ORDER == order) {
|
|
frag->base.order = BTL_OPENIB_LP_QP;
|
|
} else {
|
|
frag->base.order = order;
|
|
}
|
|
|
|
BTL_VERBOSE(("frag->sg_entry.lkey = %lu .addr = %llu "
|
|
"frag->segment.seg_key.key32[0] = %lu",
|
|
frag->sg_entry.lkey, frag->sg_entry.addr,
|
|
frag->segment.seg_key.key32[0]));
|
|
|
|
return &frag->base;
|
|
}
|
|
}
|
|
|
|
if(max_data + reserve <= btl->btl_eager_limit) {
|
|
/* the data is small enough to fit in the eager frag and
|
|
* memory is not prepinned */
|
|
|
|
MCA_BTL_IB_FRAG_ALLOC_EAGER(btl, frag, rc);
|
|
if(MCA_BTL_NO_ORDER == order) {
|
|
order = BTL_OPENIB_LP_QP;
|
|
}
|
|
}
|
|
|
|
if(NULL == frag) {
|
|
/* the data doesn't fit into eager frag or eager frag is
|
|
* not available */
|
|
if(MCA_BTL_NO_ORDER == order) {
|
|
order = BTL_OPENIB_LP_QP;
|
|
} else if(BTL_OPENIB_HP_QP == order){
|
|
return NULL;
|
|
}
|
|
MCA_BTL_IB_FRAG_ALLOC_MAX(btl, frag, rc);
|
|
|
|
if(NULL == frag) {
|
|
return NULL;
|
|
}
|
|
if(max_data + reserve > btl->btl_max_send_size) {
|
|
max_data = btl->btl_max_send_size - reserve;
|
|
}
|
|
}
|
|
|
|
iov.iov_len = max_data;
|
|
iov.iov_base = (unsigned char*)frag->segment.seg_addr.pval + reserve;
|
|
rc = ompi_convertor_pack(convertor, &iov, &iov_count, &max_data);
|
|
if(rc < 0) {
|
|
MCA_BTL_IB_FRAG_RETURN(openib_btl, frag);
|
|
return NULL;
|
|
}
|
|
*size = max_data;
|
|
frag->segment.seg_len = max_data + reserve;
|
|
frag->segment.seg_key.key32[0] = (uint32_t)frag->sg_entry.lkey;
|
|
frag->base.order = order;
|
|
frag->base.des_src = &frag->segment;
|
|
frag->base.des_src_cnt = 1;
|
|
frag->base.des_dst = NULL;
|
|
frag->base.des_dst_cnt = 0;
|
|
frag->base.des_flags = 0;
|
|
|
|
|
|
|
|
return &frag->base;
|
|
}
|
|
|
|
/**
|
|
* Prepare the dst buffer
|
|
*
|
|
* @param btl (IN) BTL module
|
|
* @param peer (IN) BTL peer addressing
|
|
* prepare dest's behavior depends on the following:
|
|
* Has a valid memory registration been passed to prepare_src?
|
|
* if so we attempt to use the pre-registered user-buffer, if the memory registration
|
|
* is to small (only a portion of the user buffer) then we must reregister the user buffer
|
|
* Has the user requested the memory to be left pinned?
|
|
* if so we insert the memory registration into a memory tree for later lookup, we
|
|
* may also remove a previous registration if a MRU (most recently used) list of
|
|
* registrations is full, this prevents resources from being exhausted.
|
|
*/
|
|
mca_btl_base_descriptor_t* mca_btl_openib_prepare_dst(
|
|
struct mca_btl_base_module_t* btl,
|
|
struct mca_btl_base_endpoint_t* endpoint,
|
|
mca_mpool_base_registration_t* registration,
|
|
struct ompi_convertor_t* convertor,
|
|
uint8_t order,
|
|
size_t reserve,
|
|
size_t* size)
|
|
{
|
|
mca_btl_openib_module_t *openib_btl;
|
|
mca_btl_openib_frag_t *frag;
|
|
mca_btl_openib_reg_t *openib_reg;
|
|
int rc;
|
|
|
|
openib_btl = (mca_btl_openib_module_t*)btl;
|
|
|
|
MCA_BTL_IB_FRAG_ALLOC_RECV_FRAG(btl, frag, rc);
|
|
if(NULL == frag) {
|
|
return NULL;
|
|
}
|
|
|
|
ompi_convertor_get_current_pointer( convertor, (void**)&(frag->segment.seg_addr.pval) );
|
|
|
|
if(NULL == registration){
|
|
/* we didn't get a memory registration passed in, so we have to
|
|
* register the region ourselves
|
|
*/
|
|
rc = btl->btl_mpool->mpool_register(btl->btl_mpool,
|
|
frag->segment.seg_addr.pval, *size, 0, ®istration);
|
|
if(OMPI_SUCCESS != rc || NULL == registration) {
|
|
MCA_BTL_IB_FRAG_RETURN(openib_btl, frag);
|
|
return NULL;
|
|
}
|
|
/* keep track of the registration we did */
|
|
frag->registration = (mca_btl_openib_reg_t*)registration;
|
|
}
|
|
openib_reg = (mca_btl_openib_reg_t*)registration;
|
|
|
|
frag->sg_entry.length = *size;
|
|
frag->sg_entry.lkey = openib_reg->mr->lkey;
|
|
frag->sg_entry.addr = (unsigned long) frag->segment.seg_addr.pval;
|
|
|
|
frag->segment.seg_len = *size;
|
|
frag->segment.seg_key.key32[0] = openib_reg->mr->rkey;
|
|
|
|
frag->base.des_dst = &frag->segment;
|
|
frag->base.des_dst_cnt = 1;
|
|
frag->base.des_src = NULL;
|
|
frag->base.des_src_cnt = 0;
|
|
frag->base.des_flags = 0;
|
|
|
|
if(MCA_BTL_NO_ORDER == order) {
|
|
frag->base.order = BTL_OPENIB_LP_QP;
|
|
} else {
|
|
frag->base.order = order;
|
|
}
|
|
|
|
|
|
BTL_VERBOSE(("frag->sg_entry.lkey = %lu .addr = %llu "
|
|
"frag->segment.seg_key.key32[0] = %lu",
|
|
frag->sg_entry.lkey, frag->sg_entry.addr,
|
|
frag->segment.seg_key.key32[0]));
|
|
|
|
return &frag->base;
|
|
}
|
|
|
|
static int mca_btl_finalize_hca(struct mca_btl_openib_hca_t *hca)
|
|
{
|
|
#if OMPI_ENABLE_PROGRESS_THREADS == 1
|
|
if(hca->progress) {
|
|
hca->progress = false;
|
|
if (pthread_cancel(hca->thread.t_handle)) {
|
|
BTL_ERROR(("Failed to cancel OpenIB progress thread"));
|
|
}
|
|
opal_thread_join(&hca->thread, NULL);
|
|
}
|
|
if (ibv_destroy_comp_channel(hca->ib_channel)) {
|
|
BTL_VERBOSE(("Failed to close comp_channel"));
|
|
return OMPI_ERROR;
|
|
}
|
|
#endif
|
|
#if OMPI_HAVE_POSIX_THREADS
|
|
if (pthread_cancel(hca->async_thread)) {
|
|
BTL_ERROR(("Failed to cancel OpenIB async thread"));
|
|
}
|
|
pthread_join(hca->async_thread, NULL);
|
|
#endif
|
|
if (OMPI_SUCCESS != mca_mpool_base_module_destroy(hca->mpool)) {
|
|
BTL_VERBOSE(("Failed to release mpool"));
|
|
return OMPI_ERROR;
|
|
}
|
|
if (ibv_dealloc_pd(hca->ib_pd)) {
|
|
BTL_VERBOSE(("Failed to release PD"));
|
|
return OMPI_ERROR;
|
|
}
|
|
if (ibv_close_device(hca->ib_dev_context)) {
|
|
if (ompi_mpi_leave_pinned || ompi_mpi_leave_pinned_pipeline) {
|
|
BTL_VERBOSE(("Warrning! Failed to close HCA"));
|
|
} else {
|
|
BTL_ERROR(("Error! Failed to close HCA"));
|
|
}
|
|
return OMPI_ERROR;
|
|
}
|
|
OBJ_DESTRUCT(&hca->hca_lock);
|
|
free(hca);
|
|
return OMPI_SUCCESS;
|
|
}
|
|
|
|
int mca_btl_openib_finalize(struct mca_btl_base_module_t* btl)
|
|
{
|
|
mca_btl_openib_module_t* openib_btl;
|
|
mca_btl_openib_endpoint_t* endpoint;
|
|
int ep_index, rdma_index, i;
|
|
|
|
openib_btl = (mca_btl_openib_module_t*) btl;
|
|
|
|
/* Remove the btl from component list */
|
|
if ( mca_btl_openib_component.ib_num_btls > 1 ) {
|
|
for(i = 0; i < mca_btl_openib_component.ib_num_btls; i++){
|
|
if (mca_btl_openib_component.openib_btls[i] == openib_btl){
|
|
mca_btl_openib_component.openib_btls[i] =
|
|
mca_btl_openib_component.openib_btls[mca_btl_openib_component.ib_num_btls-1];
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
mca_btl_openib_component.ib_num_btls--;
|
|
|
|
/* Release eager RDMAs */
|
|
for(rdma_index=0;
|
|
rdma_index < orte_pointer_array_get_size(openib_btl->eager_rdma_buffers);
|
|
rdma_index++) {
|
|
endpoint=orte_pointer_array_get_item(openib_btl->eager_rdma_buffers,rdma_index);
|
|
if(!endpoint) {
|
|
continue;
|
|
}
|
|
OBJ_RELEASE(endpoint);
|
|
}
|
|
/* Release all QPs */
|
|
for(ep_index=0;
|
|
ep_index < orte_pointer_array_get_size(openib_btl->endpoints);
|
|
ep_index++) {
|
|
endpoint=orte_pointer_array_get_item(openib_btl->endpoints,ep_index);
|
|
if(!endpoint) {
|
|
continue;
|
|
}
|
|
OBJ_RELEASE(endpoint);
|
|
}
|
|
/* Release SRQ */
|
|
if(mca_btl_openib_component.use_srq) {
|
|
if (ibv_destroy_srq(openib_btl->srq[BTL_OPENIB_HP_QP])) {
|
|
BTL_VERBOSE(("Failed to close HP SRQ"));
|
|
return OMPI_ERROR;
|
|
}
|
|
if (ibv_destroy_srq(openib_btl->srq[BTL_OPENIB_LP_QP])) {
|
|
BTL_VERBOSE(("Failed to close LP SRQ"));
|
|
return OMPI_ERROR;
|
|
}
|
|
}
|
|
/* Release CQs */
|
|
if (ibv_destroy_cq(openib_btl->ib_cq[BTL_OPENIB_HP_QP])) {
|
|
BTL_VERBOSE(("Failed to close HP CQ %p",openib_btl->ib_cq[BTL_OPENIB_HP_QP]));
|
|
return OMPI_ERROR;
|
|
}
|
|
if (ibv_destroy_cq(openib_btl->ib_cq[BTL_OPENIB_LP_QP])) {
|
|
BTL_VERBOSE(("Failed to close LP CQ"));
|
|
return OMPI_ERROR;
|
|
}
|
|
/* Release pending lists */
|
|
MCA_BTL_OPENIB_CLEAN_PENDING_FRAGS(openib_btl,
|
|
&openib_btl->pending_frags[BTL_OPENIB_HP_QP]);
|
|
OBJ_DESTRUCT(&openib_btl->pending_frags[BTL_OPENIB_HP_QP]);
|
|
MCA_BTL_OPENIB_CLEAN_PENDING_FRAGS(openib_btl,
|
|
&openib_btl->pending_frags[BTL_OPENIB_LP_QP]);
|
|
OBJ_DESTRUCT(&openib_btl->pending_frags[BTL_OPENIB_LP_QP]);
|
|
/* Destroy free lists */
|
|
OBJ_DESTRUCT(&openib_btl->send_free[BTL_OPENIB_HP_QP]);
|
|
OBJ_DESTRUCT(&openib_btl->send_free[BTL_OPENIB_LP_QP]);
|
|
OBJ_DESTRUCT(&openib_btl->send_free_frag);
|
|
OBJ_DESTRUCT(&openib_btl->send_free_control);
|
|
OBJ_DESTRUCT(&openib_btl->recv_free[BTL_OPENIB_HP_QP]);
|
|
OBJ_DESTRUCT(&openib_btl->recv_free[BTL_OPENIB_LP_QP]);
|
|
if (!(--openib_btl->hca->btls)) {
|
|
/* All btls for the HCA were closed
|
|
* Now we can close the HCA
|
|
*/
|
|
if (OMPI_SUCCESS != mca_btl_finalize_hca(openib_btl->hca)) {
|
|
BTL_VERBOSE(("Failed to close HCA"));
|
|
return OMPI_ERROR;
|
|
}
|
|
}
|
|
OBJ_DESTRUCT(&openib_btl->ib_lock);
|
|
free(openib_btl);
|
|
|
|
BTL_VERBOSE(("Success to close BTL resources"));
|
|
|
|
#if 0
|
|
if(openib_btl->send_free_eager.fl_num_allocated !=
|
|
openib_btl->send_free_eager.super.opal_list_length){
|
|
opal_output(0, "btl ib send_free_eager frags: %d allocated %d returned \n",
|
|
openib_btl->send_free_eager.fl_num_allocated,
|
|
openib_btl->send_free_eager.super.opal_list_length);
|
|
}
|
|
if(openib_btl->send_free_max.fl_num_allocated !=
|
|
openib_btl->send_free_max.super.opal_list_length){
|
|
opal_output(0, "btl ib send_free_max frags: %d allocated %d returned \n",
|
|
openib_btl->send_free_max.fl_num_allocated,
|
|
openib_btl->send_free_max.super.opal_list_length);
|
|
}
|
|
if(openib_btl->send_free_frag.fl_num_allocated !=
|
|
openib_btl->send_free_frag.super.opal_list_length){
|
|
opal_output(0, "btl ib send_free_frag frags: %d allocated %d returned \n",
|
|
openib_btl->send_free_frag.fl_num_allocated,
|
|
openib_btl->send_free_frag.super.opal_list_length);
|
|
}
|
|
|
|
if(openib_btl->recv_free_eager.fl_num_allocated !=
|
|
openib_btl->recv_free_eager.super.opal_list_length){
|
|
opal_output(0, "btl ib recv_free_eager frags: %d allocated %d returned \n",
|
|
openib_btl->recv_free_eager.fl_num_allocated,
|
|
openib_btl->recv_free_eager.super.opal_list_length);
|
|
}
|
|
|
|
if(openib_btl->recv_free_max.fl_num_allocated !=
|
|
openib_btl->recv_free_max.super.opal_list_length){
|
|
opal_output(0, "btl ib recv_free_max frags: %d allocated %d returned \n",
|
|
openib_btl->recv_free_max.fl_num_allocated,
|
|
openib_btl->recv_free_max.super.opal_list_length);
|
|
}
|
|
#endif
|
|
|
|
return OMPI_SUCCESS;
|
|
}
|
|
|
|
/*
|
|
* Initiate a send.
|
|
*/
|
|
|
|
int mca_btl_openib_send(
|
|
struct mca_btl_base_module_t* btl,
|
|
struct mca_btl_base_endpoint_t* endpoint,
|
|
struct mca_btl_base_descriptor_t* descriptor,
|
|
mca_btl_base_tag_t tag)
|
|
|
|
{
|
|
|
|
mca_btl_openib_frag_t* frag = (mca_btl_openib_frag_t*)descriptor;
|
|
frag->endpoint = endpoint;
|
|
frag->hdr->tag = tag;
|
|
frag->wr_desc.sr_desc.opcode = IBV_WR_SEND;
|
|
return mca_btl_openib_endpoint_send(endpoint, frag);
|
|
}
|
|
|
|
/*
|
|
* RDMA WRITE local buffer to remote buffer address.
|
|
*/
|
|
|
|
int mca_btl_openib_put( mca_btl_base_module_t* btl,
|
|
mca_btl_base_endpoint_t* endpoint,
|
|
mca_btl_base_descriptor_t* descriptor)
|
|
{
|
|
int rc = OMPI_SUCCESS;
|
|
struct ibv_send_wr* bad_wr;
|
|
mca_btl_openib_frag_t* frag = (mca_btl_openib_frag_t*) descriptor;
|
|
mca_btl_openib_module_t* openib_btl = (mca_btl_openib_module_t*) btl;
|
|
|
|
/* setup for queued requests */
|
|
frag->endpoint = endpoint;
|
|
frag->wr_desc.sr_desc.opcode = IBV_WR_RDMA_WRITE;
|
|
|
|
/* check for a send wqe */
|
|
if (OPAL_THREAD_ADD32(&endpoint->sd_wqe[BTL_OPENIB_LP_QP],-1) < 0) {
|
|
|
|
OPAL_THREAD_ADD32(&endpoint->sd_wqe[BTL_OPENIB_LP_QP],1);
|
|
OPAL_THREAD_LOCK(&endpoint->endpoint_lock);
|
|
opal_list_append(&endpoint->pending_put_frags, (opal_list_item_t *)frag);
|
|
OPAL_THREAD_UNLOCK(&endpoint->endpoint_lock);
|
|
return rc;
|
|
|
|
/* post descriptor */
|
|
} else {
|
|
|
|
frag->wr_desc.sr_desc.send_flags = IBV_SEND_SIGNALED;
|
|
frag->wr_desc.sr_desc.wr.rdma.remote_addr = frag->base.des_dst->seg_addr.lval;
|
|
frag->wr_desc.sr_desc.wr.rdma.rkey = frag->base.des_dst->seg_key.key32[0];
|
|
frag->sg_entry.addr = (unsigned long) frag->base.des_src->seg_addr.pval;
|
|
frag->sg_entry.length = frag->base.des_src->seg_len;
|
|
|
|
if(ibv_post_send(endpoint->lcl_qp[BTL_OPENIB_LP_QP],
|
|
&frag->wr_desc.sr_desc,
|
|
&bad_wr)){
|
|
rc = OMPI_ERROR;
|
|
}
|
|
|
|
if(mca_btl_openib_component.use_srq) {
|
|
mca_btl_openib_post_srr(openib_btl, 1, BTL_OPENIB_HP_QP);
|
|
mca_btl_openib_post_srr(openib_btl, 1, BTL_OPENIB_LP_QP);
|
|
} else {
|
|
btl_openib_endpoint_post_rr(endpoint, 1, BTL_OPENIB_HP_QP);
|
|
btl_openib_endpoint_post_rr(endpoint, 1, BTL_OPENIB_LP_QP);
|
|
}
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
|
|
/*
|
|
* RDMA READ remote buffer to local buffer address.
|
|
*/
|
|
|
|
int mca_btl_openib_get( mca_btl_base_module_t* btl,
|
|
mca_btl_base_endpoint_t* endpoint,
|
|
mca_btl_base_descriptor_t* descriptor)
|
|
{
|
|
int rc;
|
|
struct ibv_send_wr* bad_wr;
|
|
mca_btl_openib_frag_t* frag = (mca_btl_openib_frag_t*) descriptor;
|
|
mca_btl_openib_module_t* openib_btl = (mca_btl_openib_module_t*) btl;
|
|
frag->endpoint = endpoint;
|
|
frag->wr_desc.sr_desc.opcode = IBV_WR_RDMA_READ;
|
|
|
|
/* check for a send wqe */
|
|
if (OPAL_THREAD_ADD32(&endpoint->sd_wqe[BTL_OPENIB_LP_QP],-1) < 0) {
|
|
|
|
OPAL_THREAD_ADD32(&endpoint->sd_wqe[BTL_OPENIB_LP_QP],1);
|
|
OPAL_THREAD_LOCK(&endpoint->endpoint_lock);
|
|
opal_list_append(&endpoint->pending_get_frags, (opal_list_item_t*)frag);
|
|
OPAL_THREAD_UNLOCK(&endpoint->endpoint_lock);
|
|
return OMPI_SUCCESS;
|
|
|
|
/* check for a get token */
|
|
} else if(OPAL_THREAD_ADD32(&endpoint->get_tokens,-1) < 0) {
|
|
|
|
OPAL_THREAD_ADD32(&endpoint->sd_wqe[BTL_OPENIB_LP_QP],1);
|
|
OPAL_THREAD_ADD32(&endpoint->get_tokens,1);
|
|
OPAL_THREAD_LOCK(&endpoint->endpoint_lock);
|
|
opal_list_append(&endpoint->pending_get_frags, (opal_list_item_t*)frag);
|
|
OPAL_THREAD_UNLOCK(&endpoint->endpoint_lock);
|
|
return OMPI_SUCCESS;
|
|
|
|
} else {
|
|
|
|
frag->wr_desc.sr_desc.send_flags = IBV_SEND_SIGNALED;
|
|
frag->wr_desc.sr_desc.wr.rdma.remote_addr = frag->base.des_src->seg_addr.lval;
|
|
frag->wr_desc.sr_desc.wr.rdma.rkey = frag->base.des_src->seg_key.key32[0];
|
|
frag->sg_entry.addr = (unsigned long) frag->base.des_dst->seg_addr.pval;
|
|
frag->sg_entry.length = frag->base.des_dst->seg_len;
|
|
|
|
if(ibv_post_send(endpoint->lcl_qp[BTL_OPENIB_LP_QP],
|
|
&frag->wr_desc.sr_desc,
|
|
&bad_wr)){
|
|
BTL_ERROR(("error posting send request errno (%d) says %s", errno, strerror(errno)));
|
|
rc = ORTE_ERROR;
|
|
} else {
|
|
rc = ORTE_SUCCESS;
|
|
}
|
|
|
|
if(mca_btl_openib_component.use_srq) {
|
|
mca_btl_openib_post_srr(openib_btl, 1, BTL_OPENIB_HP_QP);
|
|
mca_btl_openib_post_srr(openib_btl, 1, BTL_OPENIB_LP_QP);
|
|
} else {
|
|
btl_openib_endpoint_post_rr(endpoint, 1, BTL_OPENIB_HP_QP);
|
|
btl_openib_endpoint_post_rr(endpoint, 1, BTL_OPENIB_LP_QP);
|
|
}
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
/*
|
|
* create both the high and low priority completion queues
|
|
* and the shared receive queue (if requested)
|
|
*/
|
|
int mca_btl_openib_create_cq_srq(mca_btl_openib_module_t *openib_btl)
|
|
{
|
|
/* Allocate Protection Domain */
|
|
openib_btl->poll_cq = false;
|
|
|
|
if (mca_btl_openib_component.use_srq) {
|
|
|
|
struct ibv_srq_init_attr attr;
|
|
attr.attr.max_wr = mca_btl_openib_component.srq_rd_max;
|
|
attr.attr.max_sge = mca_btl_openib_component.ib_sg_list_size;
|
|
|
|
openib_btl->srd_posted[BTL_OPENIB_HP_QP] = 0;
|
|
openib_btl->srd_posted[BTL_OPENIB_LP_QP] = 0;
|
|
|
|
openib_btl->srq[BTL_OPENIB_HP_QP] =
|
|
ibv_create_srq(openib_btl->hca->ib_pd, &attr);
|
|
if (NULL == openib_btl->srq[BTL_OPENIB_HP_QP]) {
|
|
show_init_error(__FILE__, __LINE__, "ibv_create_srq",
|
|
ibv_get_device_name(openib_btl->hca->ib_dev));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
openib_btl->srq[BTL_OPENIB_LP_QP] =
|
|
ibv_create_srq(openib_btl->hca->ib_pd, &attr);
|
|
if (NULL == openib_btl->srq[BTL_OPENIB_LP_QP]) {
|
|
show_init_error(__FILE__, __LINE__, "ibv_create_srq",
|
|
ibv_get_device_name(openib_btl->hca->ib_dev));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
|
|
} else {
|
|
openib_btl->srq[BTL_OPENIB_HP_QP] = NULL;
|
|
openib_btl->srq[BTL_OPENIB_LP_QP] = NULL;
|
|
}
|
|
|
|
/* Create the low and high priority queue pairs */
|
|
#if OMPI_ENABLE_PROGRESS_THREADS == 1
|
|
#if OMPI_IBV_CREATE_CQ_ARGS == 3
|
|
openib_btl->ib_cq[BTL_OPENIB_LP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, openib_btl->hca->ib_channel);
|
|
#else
|
|
openib_btl->ib_cq[BTL_OPENIB_LP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, openib_btl, openib_btl->hca->ib_channel, 0);
|
|
#endif
|
|
#else /* OMPI_ENABLE_PROGRESS_THREADS DISABLED */
|
|
#if OMPI_IBV_CREATE_CQ_ARGS == 3
|
|
openib_btl->ib_cq[BTL_OPENIB_LP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, NULL);
|
|
#else
|
|
openib_btl->ib_cq[BTL_OPENIB_LP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, NULL, NULL, 0);
|
|
#endif
|
|
#endif /* OMPI_ENABLE_PROGRESS_THREADS */
|
|
|
|
if (NULL == openib_btl->ib_cq[BTL_OPENIB_LP_QP]) {
|
|
show_init_error(__FILE__, __LINE__, "ibv_create_cq",
|
|
ibv_get_device_name(openib_btl->hca->ib_dev));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
#if OMPI_ENABLE_PROGRESS_THREADS == 1
|
|
if(ibv_req_notify_cq(openib_btl->ib_cq[BTL_OPENIB_LP_QP], 0)) {
|
|
show_init_error(__FILE__, __LINE__, "ibv_req_notify_cq",
|
|
ibv_get_device_name(openib_btl->hca->ib_dev));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
#if OMPI_IBV_CREATE_CQ_ARGS == 3
|
|
openib_btl->ib_cq[BTL_OPENIB_HP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, openib_btl->hca->ib_channel);
|
|
#else
|
|
openib_btl->ib_cq[BTL_OPENIB_HP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, openib_btl, openib_btl->hca->ib_channel, 0);
|
|
#endif
|
|
#else /* OMPI_ENABLE_PROGRESS_THREADS DISABLED */
|
|
#if OMPI_IBV_CREATE_CQ_ARGS == 3
|
|
openib_btl->ib_cq[BTL_OPENIB_HP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, NULL);
|
|
#else
|
|
openib_btl->ib_cq[BTL_OPENIB_HP_QP] =
|
|
ibv_create_cq(openib_btl->hca->ib_dev_context,
|
|
mca_btl_openib_component.ib_cq_size, NULL, NULL, 0);
|
|
#endif
|
|
#endif /* OMPI_ENABLE_PROGRESS_THREADS */
|
|
|
|
if(NULL == openib_btl->ib_cq[BTL_OPENIB_HP_QP]) {
|
|
show_init_error(__FILE__, __LINE__, "ibv_create_cq",
|
|
ibv_get_device_name(openib_btl->hca->ib_dev));
|
|
return OMPI_ERROR;
|
|
}
|
|
|
|
#if OMPI_ENABLE_PROGRESS_THREADS == 1
|
|
if(ibv_req_notify_cq(openib_btl->ib_cq[BTL_OPENIB_HP_QP], 0)) {
|
|
show_init_error(__FILE__, __LINE__, "ibv_req_notify_cq",
|
|
ibv_get_device_name(openib_btl->hca->ib_dev));
|
|
return OMPI_ERROR;
|
|
}
|
|
OPAL_THREAD_LOCK(&openib_btl->hca->hca_lock);
|
|
if (!openib_btl->hca->progress){
|
|
int rc;
|
|
openib_btl->hca->progress = true;
|
|
if(OPAL_SUCCESS != (rc = opal_thread_start(&openib_btl->hca->thread))) {
|
|
BTL_ERROR(("Unable to create progress thread, retval=%d", rc));
|
|
return rc;
|
|
}
|
|
}
|
|
OPAL_THREAD_UNLOCK(&openib_btl->hca->hca_lock);
|
|
#endif
|
|
|
|
return OMPI_SUCCESS;
|
|
}
|
|
|
|
int mca_btl_openib_ft_event(int state) {
|
|
if(OPAL_CRS_CHECKPOINT == state) {
|
|
;
|
|
}
|
|
else if(OPAL_CRS_CONTINUE == state) {
|
|
;
|
|
}
|
|
else if(OPAL_CRS_RESTART == state) {
|
|
;
|
|
}
|
|
else if(OPAL_CRS_TERM == state ) {
|
|
;
|
|
}
|
|
else {
|
|
;
|
|
}
|
|
|
|
return OMPI_SUCCESS;
|
|
}
|