9613b3176c
After much work by Jeff and myself, and quite a lot of discussion, it has become clear that we simply cannot resolve the infinite loops caused by RML-involved subsystems calling orte_output. The original rationale for the change to orte_output has also been reduced by shifting the output of XML-formatted vs human readable messages to an alternative approach. I have globally replaced the orte_output/ORTE_OUTPUT calls in the code base, as well as the corresponding .h file name. I have test compiled and run this on the various environments within my reach, so hopefully this will prove minimally disruptive. This commit was SVN r18619.
401 строка
12 KiB
C
401 строка
12 KiB
C
/* -*- Mode: C; c-basic-offset:4 ; -*- */
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/*
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* Copyright (c) 2004-2008 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) 2004-2007 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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/** @file
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*
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* OMPI Layer Checkpoint/Restart Runtime functions
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*
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*/
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#include "ompi_config.h"
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#include <errno.h>
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif /* HAVE_UNISTD_H */
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#ifdef HAVE_FCNTL_H
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#include <fcntl.h>
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#endif /* HAVE_FCNTL_H */
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#ifdef HAVE_SYS_TYPES_H
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#include <sys/types.h>
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#endif /* HAVE_SYS_TYPES_H */
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#ifdef HAVE_SYS_STAT_H
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#include <sys/stat.h> /* for mkfifo */
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#endif /* HAVE_SYS_STAT_H */
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#include "orte/util/show_help.h"
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#include "opal/event/event.h"
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#include "opal/mca/crs/crs.h"
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#include "opal/mca/crs/base/base.h"
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#include "opal/runtime/opal_cr.h"
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#include "orte/util/proc_info.h"
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#include "orte/mca/snapc/snapc.h"
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#include "orte/mca/snapc/base/base.h"
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#include "orte/runtime/runtime.h"
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#include "orte/util/show_help.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/pml/base/base.h"
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#include "ompi/mca/btl/btl.h"
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#include "ompi/mca/btl/base/base.h"
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#include "ompi/mca/crcp/crcp.h"
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#include "ompi/mca/crcp/base/base.h"
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#include "ompi/communicator/communicator.h"
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#include "ompi/runtime/ompi_cr.h"
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/*************
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* Local functions
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*************/
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static int ompi_cr_coord_pre_ckpt(void);
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static int ompi_cr_coord_pre_restart(void);
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static int ompi_cr_coord_pre_continue(void);
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static int ompi_cr_coord_post_ckpt(void);
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static int ompi_cr_coord_post_restart(void);
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static int ompi_cr_coord_post_continue(void);
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/*************
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* Local vars
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*************/
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static opal_cr_coord_callback_fn_t prev_coord_callback = NULL;
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int ompi_cr_output = -1;
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#define NUM_COLLECTIVES 16
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#define SIGNAL(comm, modules, highest_module, msg, ret, func) \
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do { \
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bool found = false; \
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int k; \
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mca_coll_base_module_1_1_0_t *my_module = \
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comm->c_coll.coll_ ## func ## _module; \
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if (NULL != my_module) { \
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for (k = 0 ; k < highest_module ; ++k) { \
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if (my_module == modules[k]) found = true; \
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} \
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if (!found) { \
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modules[highest_module++] = my_module; \
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if (NULL != my_module->ft_event) { \
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ret = my_module->ft_event(msg); \
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} \
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} \
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} \
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} while (0)
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static int
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notify_collectives(int msg)
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{
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mca_coll_base_module_1_1_0_t *modules[NUM_COLLECTIVES];
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int i, max, ret, highest_module = 0;
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memset(&modules, 0, sizeof(mca_coll_base_module_1_1_0_t*) * NUM_COLLECTIVES);
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max = opal_pointer_array_get_size(&ompi_mpi_communicators);
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for (i = 0 ; i < max ; ++i) {
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ompi_communicator_t *comm =
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(ompi_communicator_t *)opal_pointer_array_get_item(&ompi_mpi_communicators, i);
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if (NULL == comm) continue;
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SIGNAL(comm, modules, highest_module, msg, ret, allgather);
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SIGNAL(comm, modules, highest_module, msg, ret, allgatherv);
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SIGNAL(comm, modules, highest_module, msg, ret, allreduce);
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SIGNAL(comm, modules, highest_module, msg, ret, alltoall);
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SIGNAL(comm, modules, highest_module, msg, ret, alltoallv);
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SIGNAL(comm, modules, highest_module, msg, ret, alltoallw);
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SIGNAL(comm, modules, highest_module, msg, ret, barrier);
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SIGNAL(comm, modules, highest_module, msg, ret, bcast);
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SIGNAL(comm, modules, highest_module, msg, ret, exscan);
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SIGNAL(comm, modules, highest_module, msg, ret, gather);
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SIGNAL(comm, modules, highest_module, msg, ret, gatherv);
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SIGNAL(comm, modules, highest_module, msg, ret, reduce);
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SIGNAL(comm, modules, highest_module, msg, ret, reduce_scatter);
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SIGNAL(comm, modules, highest_module, msg, ret, scan);
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SIGNAL(comm, modules, highest_module, msg, ret, scatter);
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SIGNAL(comm, modules, highest_module, msg, ret, scatterv);
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}
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return OMPI_SUCCESS;
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}
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/*
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* CR Init
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*/
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int ompi_cr_init(void)
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{
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int val;
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/*
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* Register some MCA parameters
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*/
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mca_base_param_reg_int_name("ompi_cr", "verbose",
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"Verbose output for the OMPI Checkpoint/Restart functionality",
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false, false,
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0,
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&val);
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if(0 != val) {
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ompi_cr_output = opal_output_open(NULL);
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opal_output_set_verbosity(ompi_cr_output, val);
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} else {
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ompi_cr_output = opal_cr_output;
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}
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: init: ompi_cr_init()");
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/* Register the OMPI interlevel coordination callback */
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opal_cr_reg_coord_callback(ompi_cr_coord, &prev_coord_callback);
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return OMPI_SUCCESS;
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}
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/*
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* Finalize
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*/
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int ompi_cr_finalize(void)
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{
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: finalize: ompi_cr_finalize()");
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return OMPI_SUCCESS;
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}
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/*
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* Interlayer coordination callback
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*/
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int ompi_cr_coord(int state)
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{
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int ret, exit_status = OMPI_SUCCESS;
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord: ompi_cr_coord(%s)\n",
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opal_crs_base_state_str((opal_crs_state_type_t)state));
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/*
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* Before calling the previous callback, we have the opportunity to
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* take action given the state.
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*/
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if(OPAL_CRS_CHECKPOINT == state) {
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/* Do Checkpoint Phase work */
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ret = ompi_cr_coord_pre_ckpt();
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if( ret == OMPI_EXISTS) {
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return ret;
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}
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else if( ret != OMPI_SUCCESS) {
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return ret;
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}
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}
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else if (OPAL_CRS_CONTINUE == state ) {
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/* Do Continue Phase work */
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ompi_cr_coord_pre_continue();
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}
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else if (OPAL_CRS_RESTART == state ) {
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/* Do Restart Phase work */
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ompi_cr_coord_pre_restart();
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}
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else if (OPAL_CRS_TERM == state ) {
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/* Do Continue Phase work in prep to terminate the application */
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}
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else {
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/* We must have been in an error state from the checkpoint
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* recreate everything, as in the Continue Phase
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*/
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}
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/*
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* Call the previous callback, which should be ORTE [which will handle OPAL]
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*/
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if(OMPI_SUCCESS != (ret = prev_coord_callback(state)) ) {
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exit_status = ret;
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goto cleanup;
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}
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/*
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* After calling the previous callback, we have the opportunity to
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* take action given the state to tidy up.
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*/
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if(OPAL_CRS_CHECKPOINT == state) {
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/* Do Checkpoint Phase work */
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ompi_cr_coord_post_ckpt();
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}
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else if (OPAL_CRS_CONTINUE == state ) {
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/* Do Continue Phase work */
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ompi_cr_coord_post_continue();
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}
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else if (OPAL_CRS_RESTART == state ) {
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/* Do Restart Phase work */
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ompi_cr_coord_post_restart();
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}
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else if (OPAL_CRS_TERM == state ) {
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/* Do Continue Phase work in prep to terminate the application */
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}
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else {
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/* We must have been in an error state from the checkpoint
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* recreate everything, as in the Continue Phase
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*/
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}
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cleanup:
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return exit_status;
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}
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/*************
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* Pre Lower Layer
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*************/
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static int ompi_cr_coord_pre_ckpt(void) {
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int ret, exit_status = OMPI_SUCCESS;
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/*
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* All the checkpoint heavey lifting in here...
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*/
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord_pre_ckpt: ompi_cr_coord_pre_ckpt()\n");
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/*
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* Notify Collectives
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* - Need to do this on a per communicator basis
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* Traverse all communicators...
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*/
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if (OMPI_SUCCESS != (ret = notify_collectives(OPAL_CR_CHECKPOINT))) {
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goto cleanup;
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}
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/*
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* Notify PML
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* - Will notify BML and BTL's
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*/
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if( ORTE_SUCCESS != (ret = mca_pml.pml_ft_event(OPAL_CRS_CHECKPOINT))) {
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exit_status = ret;
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goto cleanup;
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}
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cleanup:
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return exit_status;
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}
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static int ompi_cr_coord_pre_restart(void) {
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int ret, exit_status = OMPI_SUCCESS;
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord_pre_restart: ompi_cr_coord_pre_restart()");
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/*
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* Notify PML
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* - Will notify BML and BTL's
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* - The intention here is to have the PML shutdown all the old components
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* and handles. On the second pass (once ORTE is restarted) we can
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* reconnect processes.
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*/
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if( ORTE_SUCCESS != (ret = mca_pml.pml_ft_event(OPAL_CRS_RESTART_PRE))) {
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exit_status = ret;
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goto cleanup;
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}
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cleanup:
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return exit_status;
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}
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static int ompi_cr_coord_pre_continue(void) {
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/*
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* Can not really do much until ORTE is up and running,
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* so defer action until the post_continue function.
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*/
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord_pre_continue: ompi_cr_coord_pre_continue()");
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return OMPI_SUCCESS;
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}
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/*************
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* Post Lower Layer
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*************/
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static int ompi_cr_coord_post_ckpt(void) {
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/*
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* Now that ORTE/OPAL are shutdown, we really can't do much
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* so assume pre_ckpt took care of everything.
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*/
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord_post_ckpt: ompi_cr_coord_post_ckpt()");
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return OMPI_SUCCESS;
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}
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static int ompi_cr_coord_post_restart(void) {
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int ret, exit_status = OMPI_SUCCESS;
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord_post_restart: ompi_cr_coord_post_restart()");
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/*
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* Notify PML
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* - Will notify BML and BTL's
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*/
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if( ORTE_SUCCESS != (ret = mca_pml.pml_ft_event(OPAL_CRS_RESTART))) {
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exit_status = ret;
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goto cleanup;
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}
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/*
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* Notify Collectives
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* - Need to do this on a per communicator basis
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* Traverse all communicators...
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*/
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if (OMPI_SUCCESS != (ret = notify_collectives(OPAL_CRS_RESTART))) {
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goto cleanup;
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}
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cleanup:
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return exit_status;
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}
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static int ompi_cr_coord_post_continue(void) {
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int ret, exit_status = OMPI_SUCCESS;
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opal_output_verbose(10, ompi_cr_output,
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"ompi_cr: coord_post_continue: ompi_cr_coord_post_continue()");
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/*
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* Notify PML
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* - Will notify BML and BTL's
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*/
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if( ORTE_SUCCESS != (ret = mca_pml.pml_ft_event(OPAL_CRS_CONTINUE))) {
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exit_status = ret;
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goto cleanup;
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}
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/*
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* Notify Collectives
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* - Need to do this on a per communicator basis
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* Traverse all communicators...
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*/
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if (OMPI_SUCCESS != (ret = notify_collectives(OPAL_CRS_CONTINUE))) {
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goto cleanup;
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}
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cleanup:
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return exit_status;
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}
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