136 строки
5.9 KiB
C
136 строки
5.9 KiB
C
/* -*- Mode: C; c-basic-offset:4 ; indent-tabs-mode:nil -*- */
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/*
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* Copyright (c) 2004-2015 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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* $COPYRIGHT$
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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 "mpi.h"
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#include "opal/util/bit_ops.h"
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#include "ompi/constants.h"
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#include "ompi/communicator/communicator.h"
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#include "ompi/mca/coll/coll.h"
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#include "ompi/mca/coll/base/coll_tags.h"
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#include "ompi/mca/pml/pml.h"
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#include "coll_tuned.h"
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#include "ompi/mca/coll/base/coll_base_topo.h"
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#include "ompi/mca/coll/base/coll_base_util.h"
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/* barrier algorithm variables */
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static int coll_tuned_barrier_forced_algorithm = 0;
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/* valid values for coll_tuned_barrier_forced_algorithm */
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static mca_base_var_enum_value_t barrier_algorithms[] = {
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{0, "ignore"},
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{1, "linear"},
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{2, "double_ring"},
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{3, "recursive_doubling"},
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{4, "bruck"},
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{5, "two_proc"},
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{6, "tree"},
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{0, NULL}
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};
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/* The following are used by dynamic and forced rules */
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/* publish details of each algorithm and if its forced/fixed/locked in */
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/* as you add methods/algorithms you must update this and the query/map */
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/* routines */
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/* this routine is called by the component only */
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/* this makes sure that the mca parameters are set to their initial values */
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/* and perms */
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/* module does not call this they call the forced_getvalues routine instead */
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int ompi_coll_tuned_barrier_intra_check_forced_init (coll_tuned_force_algorithm_mca_param_indices_t *mca_param_indices)
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{
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mca_base_var_enum_t *new_enum;
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int cnt;
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for( cnt = 0; NULL != barrier_algorithms[cnt].string; cnt++ );
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ompi_coll_tuned_forced_max_algorithms[BARRIER] = cnt;
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(void) mca_base_component_var_register(&mca_coll_tuned_component.super.collm_version,
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"barrier_algorithm_count",
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"Number of barrier algorithms available",
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MCA_BASE_VAR_TYPE_INT, NULL, 0,
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MCA_BASE_VAR_FLAG_DEFAULT_ONLY,
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OPAL_INFO_LVL_5,
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MCA_BASE_VAR_SCOPE_CONSTANT,
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&cnt);
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/* MPI_T: This variable should eventually be bound to a communicator */
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coll_tuned_barrier_forced_algorithm = 0;
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(void) mca_base_var_enum_create("coll_tuned_barrier_algorithms", barrier_algorithms, &new_enum);
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mca_param_indices->algorithm_param_index =
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mca_base_component_var_register(&mca_coll_tuned_component.super.collm_version,
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"barrier_algorithm",
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"Which barrier algorithm is used. Can be locked down to choice of: 0 ignore, 1 linear, 2 double ring, 3: recursive doubling 4: bruck, 5: two proc only, 6: tree",
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MCA_BASE_VAR_TYPE_INT, new_enum, 0, 0,
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OPAL_INFO_LVL_5,
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MCA_BASE_VAR_SCOPE_READONLY,
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&coll_tuned_barrier_forced_algorithm);
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OBJ_RELEASE(new_enum);
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if (mca_param_indices->algorithm_param_index < 0) {
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return mca_param_indices->algorithm_param_index;
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}
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return (MPI_SUCCESS);
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}
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int ompi_coll_tuned_barrier_intra_do_forced(struct ompi_communicator_t *comm,
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mca_coll_base_module_t *module)
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{
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mca_coll_tuned_module_t *tuned_module = (mca_coll_tuned_module_t*) module;
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OPAL_OUTPUT((ompi_coll_tuned_stream,
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"coll:tuned:barrier_intra_do_forced selected algorithm %d",
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tuned_module->user_forced[BARRIER].algorithm));
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switch (tuned_module->user_forced[BARRIER].algorithm) {
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case (0): return ompi_coll_tuned_barrier_intra_dec_fixed(comm, module);
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case (1): return ompi_coll_base_barrier_intra_basic_linear(comm, module);
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case (2): return ompi_coll_base_barrier_intra_doublering(comm, module);
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case (3): return ompi_coll_base_barrier_intra_recursivedoubling(comm, module);
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case (4): return ompi_coll_base_barrier_intra_bruck(comm, module);
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case (5): return ompi_coll_base_barrier_intra_two_procs(comm, module);
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case (6): return ompi_coll_base_barrier_intra_tree(comm, module);
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} /* switch */
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OPAL_OUTPUT((ompi_coll_tuned_stream,"coll:tuned:barrier_intra_do_forced attempt to select algorithm %d when only 0-%d is valid?",
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tuned_module->user_forced[BARRIER].algorithm,
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ompi_coll_tuned_forced_max_algorithms[BARRIER]));
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return (MPI_ERR_ARG);
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}
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int ompi_coll_tuned_barrier_intra_do_this (struct ompi_communicator_t *comm,
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mca_coll_base_module_t *module,
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int algorithm, int faninout, int segsize)
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{
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OPAL_OUTPUT((ompi_coll_tuned_stream,
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"coll:tuned:barrier_intra_do_this selected algorithm %d topo fanin/out%d",
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algorithm, faninout));
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switch (algorithm) {
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case (0): return ompi_coll_tuned_barrier_intra_dec_fixed(comm, module);
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case (1): return ompi_coll_base_barrier_intra_basic_linear(comm, module);
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case (2): return ompi_coll_base_barrier_intra_doublering(comm, module);
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case (3): return ompi_coll_base_barrier_intra_recursivedoubling(comm, module);
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case (4): return ompi_coll_base_barrier_intra_bruck(comm, module);
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case (5): return ompi_coll_base_barrier_intra_two_procs(comm, module);
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case (6): return ompi_coll_base_barrier_intra_tree(comm, module);
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} /* switch */
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OPAL_OUTPUT((ompi_coll_tuned_stream,"coll:tuned:barrier_intra_do_this attempt to select algorithm %d when only 0-%d is valid?",
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algorithm, ompi_coll_tuned_forced_max_algorithms[BARRIER]));
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return (MPI_ERR_ARG);
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}
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