155 строки
6.0 KiB
C
155 строки
6.0 KiB
C
/*
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* Copyright (c) 2006 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) 2006 The Technical University of Chemnitz. All
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* rights reserved.
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* Copyright (c) 2013 Los Alamos National Security, LLC. All rights
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* reserved.
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* Copyright (c) 2014 Research Organization for Information Science
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* and Technology (RIST). All rights reserved.
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*
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* Author(s): Torsten Hoefler <htor@cs.indiana.edu>
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*
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*/
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#include "nbc_internal.h"
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/* Dissemination implementation of MPI_Ibarrier */
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int ompi_coll_libnbc_ibarrier(struct ompi_communicator_t *comm, ompi_request_t ** request,
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struct mca_coll_base_module_2_1_0_t *module)
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{
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int round, rank, p, maxround, res, recvpeer, sendpeer;
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NBC_Schedule *schedule;
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NBC_Handle *handle;
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ompi_coll_libnbc_request_t **coll_req = (ompi_coll_libnbc_request_t**) request;
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ompi_coll_libnbc_module_t *libnbc_module = (ompi_coll_libnbc_module_t*) module;
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res = NBC_Init_handle(comm, coll_req, libnbc_module);
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if(res != NBC_OK) { printf("Error in NBC_Init_handle(%i)\n", res); return res; }
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handle = (*coll_req);
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res = MPI_Comm_rank(comm, &rank);
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if (MPI_SUCCESS != res) { printf("MPI Error in MPI_Comm_rank() (%i)\n", res); return res; }
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res = MPI_Comm_size(comm, &p);
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if (MPI_SUCCESS != res) { printf("MPI Error in MPI_Comm_size() (%i)\n", res); return res; }
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handle->tmpbuf=(void*)malloc(2*sizeof(char));
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#ifdef NBC_CACHE_SCHEDULE
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/* there only one argument set per communicator -> hang it directly at
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* the tree-position, NBC_Dict_size[...] is 0 for not initialized and
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* 1 for initialized. NBC_Dict[...] is a pointer to the schedule in
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* this case */
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if(handle->comminfo->NBC_Dict_size[NBC_BARRIER] == 0) {
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/* we did not init it yet */
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#endif
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schedule = (NBC_Schedule*)malloc(sizeof(NBC_Schedule));
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if (NULL == schedule) { printf("Error in malloc()\n"); return res; }
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round = -1;
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res = NBC_Sched_create(schedule);
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if(res != NBC_OK) { printf("Error in NBC_Sched_create (%i)\n", res); return res; }
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maxround = (int)ceil((log((double)p)/LOG2)-1);
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do {
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round++;
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sendpeer = (rank + (1<<round)) % p;
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/* add p because modulo does not work with negative values */
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recvpeer = ((rank - (1<<round))+p) % p;
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/* send msg to sendpeer */
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res = NBC_Sched_send((void*)0, true, 1, MPI_BYTE, sendpeer, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_send() (%i)\n", res); return res; }
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/* recv msg from recvpeer */
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res = NBC_Sched_recv((void*)1, true, 1, MPI_BYTE, recvpeer, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_recv() (%i)\n", res); return res; }
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/* end communication round */
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if(round < maxround){
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res = NBC_Sched_barrier(schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_barrier() (%i)\n", res); return res; }
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}
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} while (round < maxround);
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res = NBC_Sched_commit(schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_commit() (%i)\n", res); return res; }
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#ifdef NBC_CACHE_SCHEDULE
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/* add it */
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handle->comminfo->NBC_Dict[NBC_BARRIER] = (hb_tree*)schedule;
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handle->comminfo->NBC_Dict_size[NBC_BARRIER] = 1;
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} else {
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/* we found it */
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schedule = (NBC_Schedule*)handle->comminfo->NBC_Dict[NBC_BARRIER];
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}
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#endif
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res = NBC_Start(handle, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Start() (%i)\n", res); return res; }
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return NBC_OK;
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}
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int ompi_coll_libnbc_ibarrier_inter(struct ompi_communicator_t *comm, ompi_request_t ** request,
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struct mca_coll_base_module_2_1_0_t *module)
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{
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int rank, res, rsize, peer;
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NBC_Schedule *schedule;
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NBC_Handle *handle;
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ompi_coll_libnbc_request_t **coll_req = (ompi_coll_libnbc_request_t**) request;
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ompi_coll_libnbc_module_t *libnbc_module = (ompi_coll_libnbc_module_t*) module;
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res = NBC_Init_handle(comm, coll_req, libnbc_module);
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if(res != NBC_OK) { printf("Error in NBC_Init_handle(%i)\n", res); return res; }
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handle = (*coll_req);
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res = MPI_Comm_rank(comm, &rank);
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if (MPI_SUCCESS != res) { printf("MPI Error in MPI_Comm_rank() (%i)\n", res); return res; }
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res = MPI_Comm_remote_size(comm, &rsize);
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if (MPI_SUCCESS != res) { printf("MPI Error in MPI_Comm_remote_size() (%i)\n", res); return res; }
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handle->tmpbuf=(void*)malloc(2*sizeof(char));
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schedule = (NBC_Schedule*)malloc(sizeof(NBC_Schedule));
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if (NULL == schedule) { printf("Error in malloc()\n"); return res; }
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res = NBC_Sched_create(schedule);
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if(res != NBC_OK) { printf("Error in NBC_Sched_create (%i)\n", res); return res; }
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if (0 == rank) {
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for (peer = 1 ; peer < rsize ; ++peer) {
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res = NBC_Sched_recv (0, true, 1, MPI_BYTE, peer, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_recv() (%i)\n", res); return res; }
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}
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}
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/* synchronize with the remote root */
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res = NBC_Sched_recv (0, true, 1, MPI_BYTE, 0, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_recv() (%i)\n", res); return res; }
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res = NBC_Sched_send (0, true, 1, MPI_BYTE, 0, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_send() (%i)\n", res); return res; }
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if (0 == rank) {
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/* wait for the remote root */
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res = NBC_Sched_barrier(schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_barrier() (%i)\n", res); return res; }
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/* inform remote peers that all local peers have entered the barrier */
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for (peer = 0 ; peer < rsize ; ++peer) {
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res = NBC_Sched_send (0, true, 1, MPI_BYTE, peer, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_send() (%i)\n", res); return res; }
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}
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}
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res = NBC_Sched_commit(schedule);
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if (NBC_OK != res) { printf("Error in NBC_Sched_commit() (%i)\n", res); return res; }
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res = NBC_Start(handle, schedule);
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if (NBC_OK != res) { printf("Error in NBC_Start() (%i)\n", res); return res; }
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return NBC_OK;
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}
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