bd870519fd
flag, new flags to be included when convertor is initialized - modified pml/btl module defs and added stub functions for diagnostic output routines to dump state of queues / endpoints - updates to data reliability pml This commit was SVN r9329.
1132 строки
39 KiB
C
1132 строки
39 KiB
C
/*
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* Copyright (c) 2004-2005 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) 2004-2006 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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* $COPYRIGHT$
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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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/*%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%*/
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#include "ompi_config.h"
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#include "ompi/constants.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 "orte/mca/errmgr/errmgr.h"
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#include "ompi/mca/mpool/mpool.h"
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#include "pml_ob1.h"
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#include "pml_ob1_hdr.h"
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#include "pml_ob1_proc.h"
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#include "pml_ob1_sendreq.h"
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#include "pml_ob1_rdmafrag.h"
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#include "pml_ob1_recvreq.h"
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#include "pml_ob1_endpoint.h"
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#include "ompi/mca/bml/base/base.h"
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#include "ompi/datatype/dt_arch.h"
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/*
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* The free call mark the final stage in a request life-cycle. Starting from this
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* point the request is completed at both PML and user level, and can be used
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* for others p2p communications. Therefore, in the case of the OB1 PML it should
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* be added to the free request list.
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*/
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static inline int mca_pml_ob1_send_request_free(struct ompi_request_t** request)
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{
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mca_pml_ob1_send_request_t* sendreq = *(mca_pml_ob1_send_request_t**)request;
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assert( false == sendreq->req_send.req_base.req_free_called );
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OPAL_THREAD_LOCK(&ompi_request_lock);
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sendreq->req_send.req_base.req_free_called = true;
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if( true == sendreq->req_send.req_base.req_pml_complete ) {
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MCA_PML_OB1_SEND_REQUEST_RETURN( sendreq );
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}
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OPAL_THREAD_UNLOCK(&ompi_request_lock);
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*request = MPI_REQUEST_NULL;
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return OMPI_SUCCESS;
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}
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static int mca_pml_ob1_send_request_cancel(struct ompi_request_t* request, int complete)
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{
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/* we dont cancel send requests by now */
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return OMPI_SUCCESS;
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}
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static void mca_pml_ob1_send_request_construct(mca_pml_ob1_send_request_t* req)
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{
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req->req_send.req_base.req_type = MCA_PML_REQUEST_SEND;
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req->req_send.req_base.req_ompi.req_free = mca_pml_ob1_send_request_free;
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req->req_send.req_base.req_ompi.req_cancel = mca_pml_ob1_send_request_cancel;
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req->req_rdma_cnt = 0;
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}
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static void mca_pml_ob1_send_request_destruct(mca_pml_ob1_send_request_t* req)
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{
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}
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OBJ_CLASS_INSTANCE(
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mca_pml_ob1_send_request_t,
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mca_pml_base_send_request_t,
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mca_pml_ob1_send_request_construct,
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mca_pml_ob1_send_request_destruct);
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/**
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* Completion of a short message - nothing left to schedule. Note that this
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* function is only called for 0 sized messages.
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*/
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void mca_pml_ob1_match_completion_cache(
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struct mca_btl_base_module_t* btl,
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struct mca_btl_base_endpoint_t* ep,
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struct mca_btl_base_descriptor_t* descriptor,
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int status)
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{
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mca_pml_ob1_send_request_t* sendreq = (mca_pml_ob1_send_request_t*)descriptor->des_cbdata;
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mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) descriptor->des_context;
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/* check completion status */
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if(OMPI_SUCCESS != status) {
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/* TSW - FIX */
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opal_output(0, "%s:%d FATAL", __FILE__, __LINE__);
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orte_errmgr.abort();
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}
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/* attempt to cache the descriptor */
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MCA_BML_BASE_BTL_DES_RETURN( bml_btl, descriptor );
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/* signal request completion */
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MCA_PML_OB1_SEND_REQUEST_PML_COMPLETE(sendreq);
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}
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/**
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* Completion of a short message - nothing left to schedule.
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*/
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void mca_pml_ob1_match_completion_free(
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struct mca_btl_base_module_t* btl,
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struct mca_btl_base_endpoint_t* ep,
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struct mca_btl_base_descriptor_t* descriptor,
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int status)
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{
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mca_pml_ob1_send_request_t* sendreq = (mca_pml_ob1_send_request_t*)descriptor->des_cbdata;
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mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) descriptor->des_context;
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/* check completion status */
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if(OMPI_SUCCESS != status) {
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/* TSW - FIX */
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opal_output(0, "%s:%d FATAL", __FILE__, __LINE__);
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orte_errmgr.abort();
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}
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/* free the descriptor */
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mca_bml_base_free( bml_btl, descriptor );
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/* signal request completion */
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MCA_PML_OB1_SEND_REQUEST_PML_COMPLETE(sendreq);
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}
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/*
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* Completion of the first fragment of a long message that
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* requires an acknowledgement
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*/
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static void mca_pml_ob1_rndv_completion(
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mca_btl_base_module_t* btl,
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struct mca_btl_base_endpoint_t* ep,
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struct mca_btl_base_descriptor_t* descriptor,
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int status)
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{
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mca_pml_ob1_send_request_t* sendreq = (mca_pml_ob1_send_request_t*)descriptor->des_cbdata;
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mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) descriptor->des_context;
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/* check completion status */
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if(OMPI_SUCCESS != status) {
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/* TSW - FIX */
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opal_output(0, "%s:%d FATAL", __FILE__, __LINE__);
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orte_errmgr.abort();
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}
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/* count bytes of user data actually delivered. As the rndv completion only
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* happens in one thread, the increase of the req_bytes_delivered does not
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* have to be atomic.
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*/
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MCA_PML_OB1_COMPUTE_SEGMENT_LENGTH( descriptor->des_src,
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descriptor->des_src_cnt,
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sizeof(mca_pml_ob1_rendezvous_hdr_t),
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sendreq->req_bytes_delivered );
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/* return the descriptor */
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mca_bml_base_free(bml_btl, descriptor);
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/* advance the request */
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MCA_PML_OB1_SEND_REQUEST_ADVANCE(sendreq);
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/* check for pending requests */
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MCA_PML_OB1_SEND_REQUEST_PROCESS_PENDING();
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}
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/**
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* Completion of a get request.
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*/
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static void mca_pml_ob1_rget_completion(
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mca_btl_base_module_t* btl,
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struct mca_btl_base_endpoint_t* ep,
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struct mca_btl_base_descriptor_t* des,
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int status)
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{
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mca_pml_ob1_send_request_t* sendreq = (mca_pml_ob1_send_request_t*)des->des_cbdata;
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size_t req_bytes_delivered = 0;
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/* count bytes of user data actually delivered and check for request completion */
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MCA_PML_OB1_COMPUTE_SEGMENT_LENGTH( des->des_src, des->des_src_cnt,
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0, req_bytes_delivered );
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if( OPAL_THREAD_ADD_SIZE_T( &sendreq->req_bytes_delivered, req_bytes_delivered )
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== sendreq->req_send.req_bytes_packed ) {
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MCA_PML_OB1_SEND_REQUEST_PML_COMPLETE(sendreq);
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}
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/* release resources */
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btl->btl_free(btl,des);
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}
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/**
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* Completion of a control message - return resources.
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*/
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static void mca_pml_ob1_ctl_completion(
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mca_btl_base_module_t* btl,
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struct mca_btl_base_endpoint_t* ep,
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struct mca_btl_base_descriptor_t* descriptor,
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int status)
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{
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/* return the descriptor */
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mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) descriptor->des_context;
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mca_bml_base_free(bml_btl, descriptor);
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}
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/**
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* Completion of additional fragments of a large message - may need
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* to schedule additional fragments.
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*/
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static void mca_pml_ob1_frag_completion(
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mca_btl_base_module_t* btl,
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struct mca_btl_base_endpoint_t* ep,
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struct mca_btl_base_descriptor_t* descriptor,
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int status)
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{
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mca_pml_ob1_send_request_t* sendreq = (mca_pml_ob1_send_request_t*)descriptor->des_cbdata;
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mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) descriptor->des_context;
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size_t req_bytes_delivered = 0;
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/* check completion status */
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if(OMPI_SUCCESS != status) {
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/* TSW - FIX */
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opal_output(0, "%s:%d FATAL", __FILE__, __LINE__);
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orte_errmgr.abort();
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}
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/* count bytes of user data actually delivered */
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MCA_PML_OB1_COMPUTE_SEGMENT_LENGTH( descriptor->des_src,
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descriptor->des_src_cnt,
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sizeof(mca_pml_ob1_frag_hdr_t),
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req_bytes_delivered );
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req_bytes_delivered = OPAL_THREAD_ADD_SIZE_T( &sendreq->req_bytes_delivered,
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req_bytes_delivered );
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if (OPAL_THREAD_ADD_SIZE_T(&sendreq->req_pipeline_depth,-1) == 0 &&
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req_bytes_delivered == sendreq->req_send.req_bytes_packed) {
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/*if( OPAL_THREAD_ADD_SIZE_T( &sendreq->req_bytes_delivered, req_bytes_delivered )
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== sendreq->req_send.req_bytes_packed) {*/
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MCA_PML_OB1_SEND_REQUEST_PML_COMPLETE(sendreq);
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} else {
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mca_pml_ob1_send_request_schedule(sendreq);
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}
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/* return the descriptor */
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mca_bml_base_free(bml_btl, descriptor);
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/* check for pending requests */
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MCA_PML_OB1_SEND_REQUEST_PROCESS_PENDING();
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}
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/**
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* Buffer the entire message and mark as complete.
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*/
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int mca_pml_ob1_send_request_start_buffered(
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mca_pml_ob1_send_request_t* sendreq,
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mca_bml_base_btl_t* bml_btl,
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size_t size)
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{
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mca_btl_base_descriptor_t* descriptor;
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mca_btl_base_segment_t* segment;
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mca_pml_ob1_hdr_t* hdr;
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struct iovec iov;
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unsigned int iov_count;
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size_t max_data;
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int32_t free_after;
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int rc;
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/* allocate descriptor */
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mca_bml_base_alloc(bml_btl, &descriptor, sizeof(mca_pml_ob1_rendezvous_hdr_t) + size);
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if(NULL == descriptor) {
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return OMPI_ERR_OUT_OF_RESOURCE;
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}
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segment = descriptor->des_src;
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/* pack the data into the BTL supplied buffer */
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iov.iov_base = (void*)((unsigned char*)segment->seg_addr.pval +
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sizeof(mca_pml_ob1_rendezvous_hdr_t));
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iov.iov_len = size;
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iov_count = 1;
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max_data = size;
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if((rc = ompi_convertor_pack(
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&sendreq->req_send.req_convertor,
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&iov,
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&iov_count,
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&max_data,
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&free_after)) < 0) {
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mca_bml_base_free(bml_btl, descriptor);
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return rc;
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}
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/* build rendezvous header */
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hdr = (mca_pml_ob1_hdr_t*)segment->seg_addr.pval;
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hdr->hdr_common.hdr_flags = 0;
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hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_RNDV;
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hdr->hdr_match.hdr_ctx = sendreq->req_send.req_base.req_comm->c_contextid;
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hdr->hdr_match.hdr_src = sendreq->req_send.req_base.req_comm->c_my_rank;
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hdr->hdr_match.hdr_tag = sendreq->req_send.req_base.req_tag;
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hdr->hdr_match.hdr_seq = sendreq->req_send.req_base.req_sequence;
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hdr->hdr_rndv.hdr_msg_length = sendreq->req_send.req_bytes_packed;
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hdr->hdr_rndv.hdr_src_req.pval = sendreq;
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#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
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#ifdef WORDS_BIGENDIAN
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hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
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#else
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/* if we are little endian and the remote side is big endian,
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we're responsible for making sure the data is in network byte
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order */
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if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
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hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
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MCA_PML_OB1_RNDV_HDR_HTON(hdr->hdr_rndv);
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}
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#endif
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#endif
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/* update lengths */
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segment->seg_len = sizeof(mca_pml_ob1_rendezvous_hdr_t) + max_data;
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sendreq->req_send_offset = max_data;
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descriptor->des_cbfunc = mca_pml_ob1_rndv_completion;
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descriptor->des_flags |= MCA_BTL_DES_FLAGS_PRIORITY;
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descriptor->des_cbdata = sendreq;
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/* buffer the remainder of the message */
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rc = mca_pml_base_bsend_request_alloc((ompi_request_t*)sendreq);
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if(OMPI_SUCCESS != rc) {
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mca_bml_base_free(bml_btl, descriptor);
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return rc;
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}
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iov.iov_base = (void*)(((unsigned char*)sendreq->req_send.req_addr) + sendreq->req_send_offset);
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iov.iov_len = max_data = sendreq->req_send.req_bytes_packed - sendreq->req_send_offset;
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if((rc = ompi_convertor_pack(
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&sendreq->req_send.req_convertor,
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&iov,
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&iov_count,
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&max_data,
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&free_after)) < 0) {
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mca_bml_base_free(bml_btl, descriptor);
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return rc;
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}
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/* re-init convertor for packed data */
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ompi_convertor_prepare_for_send(
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&sendreq->req_send.req_convertor,
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sendreq->req_send.req_datatype,
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sendreq->req_send.req_count,
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sendreq->req_send.req_addr);
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#if 0
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ompi_convertor_set_position( &sendreq->req_send.req_convertor,
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&sendreq->req_send_offset );
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#endif
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/* request is complete at mpi level */
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OPAL_THREAD_LOCK(&ompi_request_lock);
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MCA_PML_OB1_SEND_REQUEST_MPI_COMPLETE(sendreq);
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OPAL_THREAD_UNLOCK(&ompi_request_lock);
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/* send */
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rc = mca_bml_base_send(bml_btl, descriptor, MCA_BTL_TAG_PML);
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if(OMPI_SUCCESS != rc) {
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mca_bml_base_free(bml_btl, descriptor );
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}
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return rc;
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}
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/**
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* BTL requires "specially" allocated memory. Request a segment that
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* is used for initial hdr and any eager data. This is used only from
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* the _START macro.
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*/
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int mca_pml_ob1_send_request_start_copy(
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mca_pml_ob1_send_request_t* sendreq,
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mca_bml_base_btl_t* bml_btl,
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size_t size)
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{
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mca_btl_base_descriptor_t* descriptor;
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mca_btl_base_segment_t* segment;
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mca_pml_ob1_hdr_t* hdr;
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struct iovec iov;
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unsigned int iov_count;
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size_t max_data;
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int32_t free_after;
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int rc;
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/* allocate descriptor */
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mca_bml_base_alloc(bml_btl, &descriptor, sizeof(mca_pml_ob1_match_hdr_t) + size);
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if(NULL == descriptor) {
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return OMPI_ERR_OUT_OF_RESOURCE;
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}
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segment = descriptor->des_src;
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max_data = size;
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if(size > 0) {
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/* pack the data into the supplied buffer */
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iov.iov_base = (void*)((unsigned char*)segment->seg_addr.pval + sizeof(mca_pml_ob1_match_hdr_t));
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iov.iov_len = size;
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iov_count = 1;
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if((rc = ompi_convertor_pack(
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&sendreq->req_send.req_convertor,
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&iov,
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&iov_count,
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&max_data,
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&free_after)) < 0) {
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mca_bml_base_free(bml_btl, descriptor);
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return rc;
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}
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}
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/* build match header */
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hdr = (mca_pml_ob1_hdr_t*)segment->seg_addr.pval;
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hdr->hdr_common.hdr_flags = 0;
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hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_MATCH;
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hdr->hdr_match.hdr_ctx = sendreq->req_send.req_base.req_comm->c_contextid;
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hdr->hdr_match.hdr_src = sendreq->req_send.req_base.req_comm->c_my_rank;
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hdr->hdr_match.hdr_tag = sendreq->req_send.req_base.req_tag;
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hdr->hdr_match.hdr_seq = sendreq->req_send.req_base.req_sequence;
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#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
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|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
MCA_PML_OB1_MATCH_HDR_HTON(hdr->hdr_match);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
/* update lengths */
|
|
segment->seg_len = sizeof(mca_pml_ob1_match_hdr_t) + max_data;
|
|
sendreq->req_send_offset = max_data;
|
|
sendreq->req_rdma_offset = max_data;
|
|
|
|
/* short message */
|
|
descriptor->des_cbfunc = mca_pml_ob1_match_completion_free;
|
|
descriptor->des_flags |= MCA_BTL_DES_FLAGS_PRIORITY;
|
|
descriptor->des_cbdata = sendreq;
|
|
|
|
/* signal request completion */
|
|
OPAL_THREAD_LOCK(&ompi_request_lock);
|
|
MCA_PML_OB1_SEND_REQUEST_MPI_COMPLETE(sendreq);
|
|
OPAL_THREAD_UNLOCK(&ompi_request_lock);
|
|
|
|
/* send */
|
|
rc = mca_bml_base_send(bml_btl, descriptor, MCA_BTL_TAG_PML);
|
|
if(OMPI_SUCCESS != rc) {
|
|
mca_bml_base_free(bml_btl, descriptor );
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
/**
|
|
* BTL can send directly from user buffer so allow the BTL
|
|
* to prepare the segment list. Start sending a small message.
|
|
*/
|
|
|
|
int mca_pml_ob1_send_request_start_prepare(
|
|
mca_pml_ob1_send_request_t* sendreq,
|
|
mca_bml_base_btl_t* bml_btl,
|
|
size_t size)
|
|
{
|
|
mca_btl_base_descriptor_t* descriptor;
|
|
mca_btl_base_segment_t* segment;
|
|
mca_pml_ob1_hdr_t* hdr;
|
|
int rc;
|
|
|
|
/* prepare descriptor */
|
|
mca_bml_base_prepare_src(
|
|
bml_btl,
|
|
NULL,
|
|
&sendreq->req_send.req_convertor,
|
|
sizeof(mca_pml_ob1_match_hdr_t),
|
|
&size,
|
|
&descriptor);
|
|
if(NULL == descriptor) {
|
|
return OMPI_ERR_OUT_OF_RESOURCE;
|
|
}
|
|
segment = descriptor->des_src;
|
|
|
|
/* build match header */
|
|
hdr = (mca_pml_ob1_hdr_t*)segment->seg_addr.pval;
|
|
hdr->hdr_common.hdr_flags = 0;
|
|
hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_MATCH;
|
|
hdr->hdr_match.hdr_ctx = sendreq->req_send.req_base.req_comm->c_contextid;
|
|
hdr->hdr_match.hdr_src = sendreq->req_send.req_base.req_comm->c_my_rank;
|
|
hdr->hdr_match.hdr_tag = sendreq->req_send.req_base.req_tag;
|
|
hdr->hdr_match.hdr_seq = sendreq->req_send.req_base.req_sequence;
|
|
|
|
#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
|
|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
MCA_PML_OB1_MATCH_HDR_HTON(hdr->hdr_match);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
/* short message */
|
|
descriptor->des_cbfunc = mca_pml_ob1_match_completion_free;
|
|
|
|
/* update lengths */
|
|
sendreq->req_send_offset = size;
|
|
sendreq->req_rdma_offset = size;
|
|
|
|
descriptor->des_flags |= MCA_BTL_DES_FLAGS_PRIORITY;
|
|
descriptor->des_cbdata = sendreq;
|
|
|
|
/* send */
|
|
rc = mca_bml_base_send(bml_btl, descriptor, MCA_BTL_TAG_PML);
|
|
if(OMPI_SUCCESS != rc) {
|
|
mca_bml_base_free(bml_btl, descriptor );
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
|
|
/**
|
|
* We have contigous data that is registered - schedule across
|
|
* available nics.
|
|
*/
|
|
|
|
int mca_pml_ob1_send_request_start_rdma(
|
|
mca_pml_ob1_send_request_t* sendreq,
|
|
mca_bml_base_btl_t* bml_btl,
|
|
size_t size)
|
|
{
|
|
/*
|
|
* FIX - to get the basics working - schedule on the
|
|
* first BTL only
|
|
*/
|
|
|
|
mca_mpool_base_registration_t* reg = sendreq->req_rdma[0].btl_reg;
|
|
mca_btl_base_descriptor_t* src;
|
|
mca_btl_base_descriptor_t* des;
|
|
mca_btl_base_segment_t* segment;
|
|
mca_pml_ob1_hdr_t* hdr;
|
|
size_t i;
|
|
int rc;
|
|
|
|
|
|
bml_btl = sendreq->req_rdma[0].bml_btl;
|
|
if(sendreq->req_rdma_cnt == 1 &&
|
|
bml_btl->btl_flags & MCA_BTL_FLAGS_GET) {
|
|
|
|
/* prepare source descriptor/segment(s) */
|
|
mca_bml_base_prepare_src(
|
|
bml_btl,
|
|
reg,
|
|
&sendreq->req_send.req_convertor,
|
|
0,
|
|
&size,
|
|
&src);
|
|
if(NULL == src) {
|
|
return OMPI_ERR_OUT_OF_RESOURCE;
|
|
}
|
|
src->des_cbfunc = mca_pml_ob1_rget_completion;
|
|
src->des_cbdata = sendreq;
|
|
|
|
/* allocate space for get hdr + segment list */
|
|
mca_bml_base_alloc(bml_btl, &des,
|
|
sizeof(mca_pml_ob1_rget_hdr_t) + (sizeof(mca_btl_base_segment_t)*(src->des_src_cnt-1)));
|
|
if(NULL == des) {
|
|
return OMPI_ERR_OUT_OF_RESOURCE;
|
|
}
|
|
segment = des->des_src;
|
|
|
|
/* build match header */
|
|
hdr = (mca_pml_ob1_hdr_t*)segment->seg_addr.pval;
|
|
hdr->hdr_common.hdr_flags = MCA_PML_OB1_HDR_FLAGS_CONTIG|MCA_PML_OB1_HDR_FLAGS_PIN;
|
|
hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_RGET;
|
|
hdr->hdr_match.hdr_ctx = sendreq->req_send.req_base.req_comm->c_contextid;
|
|
hdr->hdr_match.hdr_src = sendreq->req_send.req_base.req_comm->c_my_rank;
|
|
hdr->hdr_match.hdr_tag = sendreq->req_send.req_base.req_tag;
|
|
hdr->hdr_match.hdr_seq = sendreq->req_send.req_base.req_sequence;
|
|
hdr->hdr_rndv.hdr_msg_length = sendreq->req_send.req_bytes_packed;
|
|
hdr->hdr_rndv.hdr_src_req.pval = sendreq;
|
|
hdr->hdr_rget.hdr_des.pval = src;
|
|
hdr->hdr_rget.hdr_seg_cnt = src->des_src_cnt;
|
|
|
|
#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
|
|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
/* RDMA is currently disabled by bml if arch doesn't
|
|
match, so this shouldn't be needed. here to make sure
|
|
we remember if we ever change the bml. */
|
|
assert(0 == (sendreq->req_send.req_base.req_proc->proc_arch &
|
|
OMPI_ARCH_ISBIGENDIAN));
|
|
#endif
|
|
#endif
|
|
|
|
for(i=0; i<src->des_src_cnt; i++)
|
|
hdr->hdr_rget.hdr_segs[i] = src->des_src[i];
|
|
des->des_cbfunc = mca_pml_ob1_ctl_completion;
|
|
|
|
} else {
|
|
|
|
/* allocate a rendezvous header - dont eager send any data
|
|
* receiver will schedule rdma put(s) of the entire message
|
|
*/
|
|
|
|
mca_bml_base_alloc(bml_btl, &des, sizeof(mca_pml_ob1_rendezvous_hdr_t));
|
|
if(NULL == des) {
|
|
return OMPI_ERR_OUT_OF_RESOURCE;
|
|
}
|
|
segment = des->des_src;
|
|
|
|
/* build hdr */
|
|
hdr = (mca_pml_ob1_hdr_t*)segment->seg_addr.pval;
|
|
hdr->hdr_common.hdr_flags = MCA_PML_OB1_HDR_FLAGS_CONTIG|MCA_PML_OB1_HDR_FLAGS_PIN;
|
|
hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_RNDV;
|
|
hdr->hdr_match.hdr_ctx = sendreq->req_send.req_base.req_comm->c_contextid;
|
|
hdr->hdr_match.hdr_src = sendreq->req_send.req_base.req_comm->c_my_rank;
|
|
hdr->hdr_match.hdr_tag = sendreq->req_send.req_base.req_tag;
|
|
hdr->hdr_match.hdr_seq = sendreq->req_send.req_base.req_sequence;
|
|
hdr->hdr_rndv.hdr_msg_length = sendreq->req_send.req_bytes_packed;
|
|
hdr->hdr_rndv.hdr_src_req.pval = sendreq;
|
|
|
|
#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
|
|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
MCA_PML_OB1_RNDV_HDR_HTON(hdr->hdr_rndv);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
/* update lengths with number of bytes actually packed */
|
|
segment->seg_len = sizeof(mca_pml_ob1_rendezvous_hdr_t);
|
|
sendreq->req_send_offset = 0;
|
|
|
|
/* first fragment of a long message */
|
|
des->des_cbfunc = mca_pml_ob1_rndv_completion;
|
|
}
|
|
|
|
des->des_flags |= MCA_BTL_DES_FLAGS_PRIORITY;
|
|
des->des_cbdata = sendreq;
|
|
|
|
/* send */
|
|
rc = mca_bml_base_send(bml_btl, des, MCA_BTL_TAG_PML);
|
|
if(OMPI_SUCCESS != rc) {
|
|
mca_bml_base_free(bml_btl, des);
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
|
|
/**
|
|
* Rendezvous is required. Not doing rdma so eager send up to
|
|
* the btls eager limit.
|
|
*/
|
|
|
|
int mca_pml_ob1_send_request_start_rndv(
|
|
mca_pml_ob1_send_request_t* sendreq,
|
|
mca_bml_base_btl_t* bml_btl,
|
|
size_t size,
|
|
int flags)
|
|
{
|
|
mca_btl_base_descriptor_t* des;
|
|
mca_btl_base_segment_t* segment;
|
|
mca_pml_ob1_hdr_t* hdr;
|
|
int rc;
|
|
|
|
/* prepare descriptor */
|
|
if(size == 0) {
|
|
mca_bml_base_alloc(
|
|
bml_btl,
|
|
&des,
|
|
sizeof(mca_pml_ob1_rendezvous_hdr_t)
|
|
);
|
|
} else {
|
|
mca_bml_base_prepare_src(
|
|
bml_btl,
|
|
NULL,
|
|
&sendreq->req_send.req_convertor,
|
|
sizeof(mca_pml_ob1_rendezvous_hdr_t),
|
|
&size,
|
|
&des);
|
|
}
|
|
|
|
if(NULL == des) {
|
|
return OMPI_ERR_OUT_OF_RESOURCE;
|
|
}
|
|
segment = des->des_src;
|
|
|
|
/* build hdr */
|
|
hdr = (mca_pml_ob1_hdr_t*)segment->seg_addr.pval;
|
|
hdr->hdr_common.hdr_flags = flags;
|
|
hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_RNDV;
|
|
hdr->hdr_match.hdr_ctx = sendreq->req_send.req_base.req_comm->c_contextid;
|
|
hdr->hdr_match.hdr_src = sendreq->req_send.req_base.req_comm->c_my_rank;
|
|
hdr->hdr_match.hdr_tag = sendreq->req_send.req_base.req_tag;
|
|
hdr->hdr_match.hdr_seq = sendreq->req_send.req_base.req_sequence;
|
|
hdr->hdr_rndv.hdr_msg_length = sendreq->req_send.req_bytes_packed;
|
|
hdr->hdr_rndv.hdr_src_req.pval = sendreq;
|
|
|
|
#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
|
|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
MCA_PML_OB1_RNDV_HDR_HTON(hdr->hdr_rndv);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
/* first fragment of a long message */
|
|
des->des_flags |= MCA_BTL_DES_FLAGS_PRIORITY;
|
|
des->des_cbdata = sendreq;
|
|
des->des_cbfunc = mca_pml_ob1_rndv_completion;
|
|
sendreq->req_send_offset = size;
|
|
|
|
/* send */
|
|
rc = mca_bml_base_send(bml_btl, des, MCA_BTL_TAG_PML);
|
|
if(OMPI_SUCCESS != rc) {
|
|
mca_bml_base_free(bml_btl, des );
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
|
|
/**
|
|
* Schedule pipeline of send descriptors for the given request.
|
|
* Up to the rdma threshold. If this is a send based protocol,
|
|
* the rdma threshold is the end of the message. Otherwise, schedule
|
|
* fragments up to the threshold to overlap initial registration/setup
|
|
* costs of the rdma.
|
|
*/
|
|
|
|
int mca_pml_ob1_send_request_schedule(mca_pml_ob1_send_request_t* sendreq)
|
|
{
|
|
/*
|
|
* Only allow one thread in this routine for a given request.
|
|
* However, we cannot block callers on a mutex, so simply keep track
|
|
* of the number of times the routine has been called and run through
|
|
* the scheduling logic once for every call.
|
|
*/
|
|
|
|
mca_bml_base_endpoint_t* bml_endpoint = sendreq->req_endpoint;
|
|
|
|
if(OPAL_THREAD_ADD32(&sendreq->req_lock,1) == 1) {
|
|
do {
|
|
/* allocate remaining bytes to BTLs */
|
|
size_t bytes_remaining = sendreq->req_rdma_offset - sendreq->req_send_offset;
|
|
while(bytes_remaining > 0 &&
|
|
(sendreq->req_pipeline_depth < mca_pml_ob1.send_pipeline_depth ||
|
|
sendreq->req_rdma_offset < sendreq->req_send.req_bytes_packed)) {
|
|
|
|
mca_pml_ob1_frag_hdr_t* hdr;
|
|
mca_btl_base_descriptor_t* des;
|
|
int rc;
|
|
size_t size;
|
|
mca_bml_base_btl_t* bml_btl = mca_bml_base_btl_array_get_next(&bml_endpoint->btl_send);
|
|
size_t num_btl_avail = bml_endpoint->btl_send.arr_size;
|
|
|
|
if(num_btl_avail == 1 || bytes_remaining < bml_btl->btl_min_send_size) {
|
|
size = bytes_remaining;
|
|
} else {
|
|
/* otherwise attempt to give the BTL a percentage of the message
|
|
* based on a weighting factor. for simplicity calculate this as
|
|
* a percentage of the overall message length (regardless of amount
|
|
* previously assigned)
|
|
*/
|
|
size = (size_t)(bml_btl->btl_weight * bytes_remaining);
|
|
}
|
|
|
|
/* makes sure that we don't exceed BTL max send size */
|
|
if (bml_btl->btl_max_send_size != 0 &&
|
|
size > bml_btl->btl_max_send_size - sizeof(mca_pml_ob1_frag_hdr_t)) {
|
|
size = bml_btl->btl_max_send_size - sizeof(mca_pml_ob1_frag_hdr_t);
|
|
#if defined(GEORGE_HAVE_TO_MAKE_SURE_THAT_WE_DONT_NEED_IT)
|
|
/* very expensive - however for buffered sends we need to send on a
|
|
* boundary that the receiver will be able to unpack completely
|
|
* using the native datatype
|
|
*/
|
|
if(sendreq->req_send.req_send_mode == MCA_PML_BASE_SEND_BUFFERED) {
|
|
ompi_convertor_t convertor;
|
|
size_t position = sendreq->req_send_offset + size;
|
|
/*
|
|
* We need this local convertor in order to correctly compute
|
|
* the correct position. Therefore we have to correctly construct and
|
|
* destruct it.
|
|
*/
|
|
OBJ_CONSTRUCT( &convertor, ompi_convertor_t );
|
|
ompi_convertor_copy_and_prepare_for_send(
|
|
&sendreq->req_send.req_convertor,
|
|
sendreq->req_send.req_base.req_datatype,
|
|
sendreq->req_send.req_base.req_count,
|
|
sendreq->req_send.req_base.req_addr,
|
|
0,
|
|
&convertor);
|
|
ompi_convertor_set_position(&convertor, &position);
|
|
OBJ_DESTRUCT( &convertor );
|
|
size = position - sendreq->req_send_offset;
|
|
}
|
|
#endif
|
|
}
|
|
|
|
/* pack into a descriptor */
|
|
ompi_convertor_set_position(&sendreq->req_send.req_convertor,
|
|
&sendreq->req_send_offset);
|
|
|
|
mca_bml_base_prepare_src(
|
|
bml_btl,
|
|
NULL,
|
|
&sendreq->req_send.req_convertor,
|
|
sizeof(mca_pml_ob1_frag_hdr_t),
|
|
&size,
|
|
&des
|
|
);
|
|
|
|
if(des == NULL) {
|
|
OPAL_THREAD_LOCK(&mca_pml_ob1.lock);
|
|
opal_list_append(&mca_pml_ob1.send_pending, (opal_list_item_t*)sendreq);
|
|
OPAL_THREAD_UNLOCK(&mca_pml_ob1.lock);
|
|
break;
|
|
}
|
|
des->des_cbfunc = mca_pml_ob1_frag_completion;
|
|
des->des_cbdata = sendreq;
|
|
|
|
/* setup header */
|
|
hdr = (mca_pml_ob1_frag_hdr_t*)des->des_src->seg_addr.pval;
|
|
hdr->hdr_common.hdr_flags = 0;
|
|
hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_FRAG;
|
|
hdr->hdr_frag_offset = sendreq->req_send_offset;
|
|
hdr->hdr_src_req.pval = sendreq;
|
|
hdr->hdr_dst_req = sendreq->req_recv;
|
|
|
|
#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
|
|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
MCA_PML_OB1_FRAG_HDR_HTON(*hdr);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
/* update state */
|
|
sendreq->req_send_offset += size;
|
|
OPAL_THREAD_ADD_SIZE_T(&sendreq->req_pipeline_depth,1);
|
|
|
|
/* initiate send - note that this may complete before the call returns */
|
|
rc = mca_bml_base_send( bml_btl, des, MCA_BTL_TAG_PML);
|
|
|
|
if(rc == OMPI_SUCCESS) {
|
|
bytes_remaining -= size;
|
|
} else {
|
|
sendreq->req_send_offset -= size;
|
|
OPAL_THREAD_ADD_SIZE_T(&sendreq->req_pipeline_depth,-1);
|
|
mca_bml_base_free(bml_btl,des);
|
|
OPAL_THREAD_LOCK(&mca_pml_ob1.lock);
|
|
opal_list_append(&mca_pml_ob1.send_pending, (opal_list_item_t*)sendreq);
|
|
OPAL_THREAD_UNLOCK(&mca_pml_ob1.lock);
|
|
break;
|
|
}
|
|
mca_pml_ob1_progress();
|
|
}
|
|
} while (OPAL_THREAD_ADD32(&sendreq->req_lock,-1) > 0);
|
|
}
|
|
return OMPI_SUCCESS;
|
|
}
|
|
|
|
|
|
/**
|
|
* Return resources used by the RDMA
|
|
*/
|
|
|
|
static void mca_pml_ob1_fin_completion(
|
|
mca_btl_base_module_t* btl,
|
|
struct mca_btl_base_endpoint_t* ep,
|
|
struct mca_btl_base_descriptor_t* des,
|
|
int status)
|
|
{
|
|
|
|
mca_pml_ob1_rdma_frag_t* frag = (mca_pml_ob1_rdma_frag_t*)des->des_cbdata;
|
|
mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) des->des_context;
|
|
|
|
MCA_PML_OB1_RDMA_FRAG_RETURN(frag);
|
|
MCA_BML_BASE_BTL_DES_RETURN(bml_btl, des);
|
|
}
|
|
|
|
/**
|
|
* An RDMA put operation has completed:
|
|
* (1) Update request status and if required set completed
|
|
* (2) Send FIN control message to the destination
|
|
*/
|
|
|
|
static void mca_pml_ob1_put_completion(
|
|
mca_btl_base_module_t* btl,
|
|
struct mca_btl_base_endpoint_t* ep,
|
|
struct mca_btl_base_descriptor_t* des,
|
|
int status)
|
|
{
|
|
mca_pml_ob1_rdma_frag_t* frag = (mca_pml_ob1_rdma_frag_t*)des->des_cbdata;
|
|
mca_pml_ob1_send_request_t* sendreq = frag->rdma_req;
|
|
mca_btl_base_descriptor_t* fin;
|
|
mca_pml_ob1_fin_hdr_t* hdr;
|
|
mca_bml_base_btl_t* bml_btl = (mca_bml_base_btl_t*) des->des_context;
|
|
int rc;
|
|
|
|
/* check completion status */
|
|
if(OMPI_SUCCESS != status) {
|
|
/* TSW - FIX */
|
|
ORTE_ERROR_LOG(status);
|
|
orte_errmgr.abort();
|
|
}
|
|
|
|
/* allocate descriptor for fin control message - note that
|
|
* the rdma descriptor cannot be reused as it points directly
|
|
* at the user buffer
|
|
*/
|
|
frag->rdma_state = MCA_PML_OB1_RDMA_FIN;
|
|
|
|
MCA_PML_OB1_DES_ALLOC(bml_btl, fin, sizeof(mca_pml_ob1_fin_hdr_t));
|
|
if(NULL == fin) {
|
|
OPAL_THREAD_LOCK(&mca_pml_ob1.lock);
|
|
opal_list_append(&mca_pml_ob1.rdma_pending, (opal_list_item_t*)frag);
|
|
OPAL_THREAD_UNLOCK(&mca_pml_ob1.lock);
|
|
goto cleanup;
|
|
}
|
|
fin->des_flags |= MCA_BTL_DES_FLAGS_PRIORITY;
|
|
fin->des_cbfunc = mca_pml_ob1_fin_completion;
|
|
fin->des_cbdata = frag;
|
|
|
|
/* fill in header */
|
|
hdr = (mca_pml_ob1_fin_hdr_t*)fin->des_src->seg_addr.pval;
|
|
hdr->hdr_common.hdr_flags = 0;
|
|
hdr->hdr_common.hdr_type = MCA_PML_OB1_HDR_TYPE_FIN;
|
|
hdr->hdr_des = frag->rdma_hdr.hdr_rdma.hdr_des;
|
|
|
|
#if OMPI_ENABLE_HETEROGENEOUS_SUPPORT
|
|
#ifdef WORDS_BIGENDIAN
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
#else
|
|
/* if we are little endian and the remote side is big endian,
|
|
we're responsible for making sure the data is in network byte
|
|
order */
|
|
if (sendreq->req_send.req_base.req_proc->proc_arch & OMPI_ARCH_ISBIGENDIAN) {
|
|
hdr->hdr_common.hdr_flags |= MCA_PML_OB1_HDR_FLAGS_NBO;
|
|
MCA_PML_OB1_FIN_HDR_HTON(*hdr);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
/* queue request */
|
|
rc = mca_bml_base_send(
|
|
bml_btl,
|
|
fin,
|
|
MCA_BTL_TAG_PML
|
|
);
|
|
if(OMPI_SUCCESS != rc) {
|
|
mca_bml_base_free(bml_btl, fin);
|
|
if(rc == OMPI_ERR_OUT_OF_RESOURCE) {
|
|
OPAL_THREAD_LOCK(&mca_pml_ob1.lock);
|
|
opal_list_append(&mca_pml_ob1.rdma_pending, (opal_list_item_t*)frag);
|
|
OPAL_THREAD_UNLOCK(&mca_pml_ob1.lock);
|
|
} else {
|
|
/* TSW - FIX */
|
|
ORTE_ERROR_LOG(rc);
|
|
orte_errmgr.abort();
|
|
}
|
|
goto cleanup;
|
|
}
|
|
|
|
/* check for request completion */
|
|
if( OPAL_THREAD_ADD_SIZE_T(&sendreq->req_bytes_delivered, frag->rdma_length)
|
|
>= sendreq->req_send.req_bytes_packed) {
|
|
MCA_PML_OB1_SEND_REQUEST_PML_COMPLETE(sendreq);
|
|
}
|
|
|
|
cleanup:
|
|
/* return rdma descriptor - do this after queuing the fin message - as
|
|
* release rdma resources (unpin memory) can take some time.
|
|
*/
|
|
des->des_dst = NULL;
|
|
des->des_dst_cnt = 0;
|
|
mca_bml_base_free(bml_btl, des);
|
|
|
|
}
|
|
|
|
|
|
/**
|
|
* Receiver has scheduled an RDMA operation:
|
|
* (1) Allocate an RDMA fragment to maintain the state of the operation
|
|
* (2) Call BTL prepare_src to pin/prepare source buffers
|
|
* (3) Queue the RDMA put
|
|
*/
|
|
|
|
void mca_pml_ob1_send_request_put(
|
|
mca_pml_ob1_send_request_t* sendreq,
|
|
mca_btl_base_module_t* btl,
|
|
mca_pml_ob1_rdma_hdr_t* hdr)
|
|
{
|
|
mca_bml_base_endpoint_t *bml_endpoint = sendreq->req_endpoint;
|
|
mca_mpool_base_registration_t* reg = NULL;
|
|
mca_bml_base_btl_t* bml_btl;
|
|
mca_btl_base_descriptor_t* des;
|
|
mca_pml_ob1_rdma_frag_t* frag;
|
|
size_t offset = hdr->hdr_rdma_offset;
|
|
size_t i, size = 0;
|
|
int rc;
|
|
bool release = false;
|
|
|
|
bml_btl = mca_bml_base_btl_array_find(&bml_endpoint->btl_rdma, btl);
|
|
MCA_PML_OB1_RDMA_FRAG_ALLOC(frag, rc);
|
|
if(NULL == frag) {
|
|
/* TSW - FIX */
|
|
ORTE_ERROR_LOG(rc);
|
|
orte_errmgr.abort();
|
|
}
|
|
|
|
/* setup fragment */
|
|
for(i=0; i<hdr->hdr_seg_cnt; i++) {
|
|
size += hdr->hdr_segs[i].seg_len;
|
|
frag->rdma_segs[i] = hdr->hdr_segs[i];
|
|
}
|
|
frag->rdma_hdr.hdr_rdma = *hdr;
|
|
frag->rdma_req = sendreq;
|
|
frag->rdma_ep = bml_endpoint;
|
|
frag->rdma_state = MCA_PML_OB1_RDMA_PREPARE;
|
|
|
|
/* lookup the corresponding registration */
|
|
for(i=0; i<sendreq->req_rdma_cnt; i++) {
|
|
if(sendreq->req_rdma[i].bml_btl == bml_btl) {
|
|
reg = sendreq->req_rdma[i].btl_reg;
|
|
break;
|
|
}
|
|
}
|
|
|
|
/* set convertor at current offset */
|
|
ompi_convertor_set_position(&sendreq->req_send.req_convertor, &offset);
|
|
|
|
/* if registration doesnt exist - create one */
|
|
if (mca_pml_ob1.leave_pinned_pipeline && reg == NULL) {
|
|
unsigned char* base;
|
|
long lb;
|
|
ompi_ddt_type_lb(sendreq->req_send.req_convertor.pDesc, &lb);
|
|
base = (unsigned char*)sendreq->req_send.req_convertor.pBaseBuf + lb + offset;
|
|
reg = mca_pml_ob1_rdma_register(bml_btl, base, size);
|
|
release = true;
|
|
}
|
|
|
|
/* setup descriptor */
|
|
mca_bml_base_prepare_src(
|
|
bml_btl,
|
|
reg,
|
|
&sendreq->req_send.req_convertor,
|
|
0,
|
|
&size,
|
|
&des
|
|
);
|
|
|
|
if(NULL == des) {
|
|
OPAL_THREAD_LOCK(&mca_pml_ob1.lock);
|
|
opal_list_append(&mca_pml_ob1.rdma_pending, (opal_list_item_t*)frag);
|
|
OPAL_THREAD_UNLOCK(&mca_pml_ob1.lock);
|
|
}
|
|
|
|
if(release == true && bml_btl->btl_mpool) {
|
|
bml_btl->btl_mpool->mpool_release(bml_btl->btl_mpool, reg);
|
|
}
|
|
|
|
frag->rdma_state = MCA_PML_OB1_RDMA_PUT;
|
|
frag->rdma_length = size;
|
|
|
|
des->des_dst = frag->rdma_segs;
|
|
des->des_dst_cnt = hdr->hdr_seg_cnt;
|
|
des->des_cbfunc = mca_pml_ob1_put_completion;
|
|
des->des_cbdata = frag;
|
|
|
|
if(OMPI_SUCCESS != (rc = mca_bml_base_put(bml_btl, des))) {
|
|
if(rc == OMPI_ERR_OUT_OF_RESOURCE) {
|
|
OPAL_THREAD_LOCK(&mca_pml_ob1.lock);
|
|
opal_list_append(&mca_pml_ob1.rdma_pending, (opal_list_item_t*)frag);
|
|
OPAL_THREAD_UNLOCK(&mca_pml_ob1.lock);
|
|
} else {
|
|
/* TSW - FIX */
|
|
ORTE_ERROR_LOG(rc);
|
|
orte_errmgr.abort();
|
|
}
|
|
}
|
|
}
|
|
|
|
|