e02114dcf3
* Create a new request type: NOOP (described below) * For all MPI_*_INIT functions, OBJ_NEW an ompi_request_t and set its type to NOOP * Ensure that the NOOP requests are OBJ_RELEASE'd when they are done * MPI_START looks at the request type; if NOOP, just return success. If not, call the PML start() function * MPI_STARTALL always pass the entire array of requests back to the PML (see next point) * Make the PMLs only process PML requests (i.e., ignore/skip anything that isn't of type PML -- such as the NOOP requests) * Add a little more param error checking in STARTALL This commit was SVN r12338. The following Trac tickets were found above: Ticket 529 --> https://svn.open-mpi.org/trac/ompi/ticket/529
425 строки
13 KiB
C
425 строки
13 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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* @file
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*
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* Top-level description of requests
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*/
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#ifndef OMPI_REQUEST_H
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#define OMPI_REQUEST_H
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#include "mpi.h"
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#include "ompi/class/ompi_free_list.h"
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#include "ompi/class/ompi_pointer_array.h"
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#include "opal/threads/condition.h"
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#if defined(c_plusplus) || defined(__cplusplus)
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extern "C" {
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#endif
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/**
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* Request class
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*/
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OMPI_DECLSPEC OBJ_CLASS_DECLARATION(ompi_request_t);
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/**
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* Enum inidicating the type of the request
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*/
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typedef enum {
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OMPI_REQUEST_PML, /**< MPI point-to-point request */
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OMPI_REQUEST_IO, /**< MPI-2 IO request */
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OMPI_REQUEST_GEN, /**< MPI-2 generalized request */
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OMPI_REQUEST_WIN, /**< MPI-2 one-sided request */
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OMPI_REQUEST_NULL, /**< NULL request */
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OMPI_REQUEST_NOOP, /**< A request that does nothing (e.g., to PROC_NULL) */
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OMPI_REQUEST_MAX /**< Maximum request type */
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} ompi_request_type_t;
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/**
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* Enum indicating the state of the request
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*/
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typedef enum {
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/** Indicates that the request should not be progressed */
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OMPI_REQUEST_INVALID,
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/** A defined, but inactive request (i.e., it's valid, but should
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not be progressed) */
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OMPI_REQUEST_INACTIVE,
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/** A valid and progressing request */
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OMPI_REQUEST_ACTIVE,
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/** The request has been cancelled */
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OMPI_REQUEST_CANCELLED
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} ompi_request_state_t;
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struct ompi_request_t;
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/*
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* Required function to free the request and any associated resources.
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*/
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typedef int (*ompi_request_free_fn_t)(struct ompi_request_t** rptr);
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/*
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* Optional function to cancel a pending request.
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*/
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typedef int (*ompi_request_cancel_fn_t)(struct ompi_request_t* request, int flag);
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/**
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* Forward declaration
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*/
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struct ompi_communicator_t;
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/**
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* Forward declaration
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*/
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struct ompi_win_t;
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/**
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* Forward declaration
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*/
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struct ompi_file_t;
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/**
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* Union for holding several different MPI pointer types on the request
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*/
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typedef union ompi_mpi_object_t {
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struct ompi_communicator_t *comm;
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struct ompi_file_t *file;
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struct ompi_win_t *win;
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} ompi_mpi_object_t;
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/**
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* Main top-level request struct definition
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*/
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struct ompi_request_t {
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ompi_free_list_item_t super; /**< Base type */
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ompi_request_type_t req_type; /**< Enum indicating the type of the request */
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ompi_status_public_t req_status; /**< Completion status */
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volatile bool req_complete; /**< Flag indicating wether request has completed */
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volatile ompi_request_state_t req_state; /**< enum indicate state of the request */
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bool req_persistent; /**< flag indicating if the this is a persistent request */
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int req_f_to_c_index; /**< Index in Fortran <-> C translation array */
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ompi_request_free_fn_t req_free; /**< Called by free */
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ompi_request_cancel_fn_t req_cancel; /**< Optional function to cancel the request */
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ompi_mpi_object_t req_mpi_object; /**< Pointer to MPI object that created this request */
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};
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/**
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* Convenience typedef
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*/
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typedef struct ompi_request_t ompi_request_t;
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/**
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* Initialize a request. This is a macro to avoid function call
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* overhead, since this is typically invoked in the critical
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* performance path (since requests may be re-used, it is possible
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* that we will have to initialize a request multiple times).
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*/
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#define OMPI_REQUEST_INIT(request, persistent) \
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do { \
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(request)->req_complete = false; \
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(request)->req_state = OMPI_REQUEST_INACTIVE; \
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(request)->req_persistent = (persistent); \
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} while (0);
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/**
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* Finalize a request. This is a macro to avoid function call
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* overhead, since this is typically invoked in the critical
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* performance path (since requests may be re-used, it is possible
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* that we will have to finalize a request multiple times).
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*
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* When finalizing a request, if MPI_Request_f2c() was previously
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* invoked on that request, then this request was added to the f2c
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* table, and we need to remove it
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*
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* This function should be called only from the MPI layer. It should
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* never be called from the PML. It take care of the upper level clean-up.
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* When the user call MPI_Request_free we should release all MPI level
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* ressources, so we have to call this function too.
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*/
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#define OMPI_REQUEST_FINI(request) \
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do { \
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(request)->req_state = OMPI_REQUEST_INVALID; \
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if (MPI_UNDEFINED != (request)->req_f_to_c_index) { \
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ompi_pointer_array_set_item(&ompi_request_f_to_c_table, \
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(request)->req_f_to_c_index, NULL); \
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(request)->req_f_to_c_index = MPI_UNDEFINED; \
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} \
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} while (0);
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/**
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* Globals used for tracking requests and request completion.
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*/
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OMPI_DECLSPEC extern ompi_pointer_array_t ompi_request_f_to_c_table;
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OMPI_DECLSPEC extern size_t ompi_request_waiting;
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OMPI_DECLSPEC extern size_t ompi_request_completed;
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OMPI_DECLSPEC extern int32_t ompi_request_poll;
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OMPI_DECLSPEC extern opal_mutex_t ompi_request_lock;
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OMPI_DECLSPEC extern opal_condition_t ompi_request_cond;
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OMPI_DECLSPEC extern ompi_request_t ompi_request_null;
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OMPI_DECLSPEC extern ompi_request_t ompi_request_empty;
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OMPI_DECLSPEC extern ompi_status_public_t ompi_status_empty;
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/**
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* Initialize the MPI_Request subsystem; invoked during MPI_INIT.
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*/
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OMPI_DECLSPEC int ompi_request_init(void);
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/**
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* Shut down the MPI_Request subsystem; invoked during MPI_FINALIZE.
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*/
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OMPI_DECLSPEC int ompi_request_finalize(void);
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/**
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* Cancel a pending request.
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*/
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static inline int ompi_request_cancel(ompi_request_t* request)
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{
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if (request->req_cancel != NULL) {
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return request->req_cancel(request, true);
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}
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return OMPI_SUCCESS;
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}
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/**
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* Signal a request as complete. Note this will
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* wake any thread pending on the request.
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*/
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OMPI_DECLSPEC int ompi_request_complete(ompi_request_t* request);
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/**
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* Free a request.
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*
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* @param request (INOUT) Pointer to request.
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*/
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static inline int ompi_request_free(ompi_request_t** request)
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{
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return (*request)->req_free(request);
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}
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/**
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* Non-blocking test for request completion.
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*
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* @param request (IN) Array of requests
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* @param complete (OUT) Flag indicating if index is valid (a request completed).
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* @param status (OUT) Status of completed request.
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* @return OMPI_SUCCESS or failure status.
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*
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* Note that upon completion, the request is freed, and the
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* request handle at index set to NULL.
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*/
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static inline int ompi_request_test( ompi_request_t ** rptr,
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int *completed,
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ompi_status_public_t * status )
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{
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int rc;
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ompi_request_t *request = *rptr;
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#if OMPI_ENABLE_PROGRESS_THREADS == 0
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int do_it_once = 0;
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recheck_request_status:
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#endif
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opal_atomic_mb();
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if( request->req_state == OMPI_REQUEST_INACTIVE ) {
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*completed = true;
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if (MPI_STATUS_IGNORE != status) {
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*status = ompi_status_empty;
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}
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return OMPI_SUCCESS;
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}
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if (request->req_complete) {
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*completed = true;
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if (MPI_STATUS_IGNORE != status) {
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/* See MPI-1.2, sec 3.2.5, p.22 */
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int old_error = status->MPI_ERROR;
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*status = request->req_status;
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status->MPI_ERROR = old_error;
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}
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if( request->req_persistent ) {
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request->req_state = OMPI_REQUEST_INACTIVE;
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return request->req_status.MPI_ERROR;
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}
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rc = request->req_status.MPI_ERROR;
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if (OMPI_SUCCESS != ompi_request_free(rptr)) {
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return OMPI_ERROR;
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} else {
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return rc;
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}
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}
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#if OMPI_ENABLE_PROGRESS_THREADS == 0
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if( 0 == do_it_once ) {
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/**
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* If we run the opal_progress then check the status of the request before
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* leaving. We will call the opal_progress only once per call.
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*/
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opal_progress();
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do_it_once++;
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goto recheck_request_status;
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}
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#endif
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*completed = false;
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return OMPI_SUCCESS;
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}
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/**
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* Non-blocking test for request completion.
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*
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* @param count (IN) Number of requests
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* @param request (IN) Array of requests
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* @param index (OUT) Index of first completed request.
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* @param complete (OUT) Flag indicating if index is valid (a request completed).
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* @param status (OUT) Status of completed request.
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* @return OMPI_SUCCESS or failure status.
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*
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* Note that upon completion, the request is freed, and the
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* request handle at index set to NULL.
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*/
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OMPI_DECLSPEC int ompi_request_test_any(
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size_t count,
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ompi_request_t ** requests,
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int *index,
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int *completed,
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ompi_status_public_t * status);
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/**
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* Non-blocking test for request completion.
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*
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* @param count (IN) Number of requests
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* @param requests (IN) Array of requests
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* @param completed (OUT) Flag indicating wether all requests completed.
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* @param statuses (OUT) Array of completion statuses.
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* @return OMPI_SUCCESS or failure status.
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*
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* This routine returns completed==true if all requests have completed.
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* The statuses parameter is only updated if all requests completed. Likewise,
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* the requests array is not modified (no requests freed), unless all requests
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* have completed.
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*/
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OMPI_DECLSPEC int ompi_request_test_all(
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size_t count,
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ompi_request_t ** requests,
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int *completed,
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ompi_status_public_t * statuses);
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/**
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* Non-blocking test for some of N requests to complete.
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*
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* @param count (IN) Number of requests
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* @param requests (INOUT) Array of requests
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* @param outcount (OUT) Number of finished requests
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* @param indices (OUT) Indices of the finished requests
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* @param statuses (OUT) Array of completion statuses.
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* @return OMPI_SUCCESS, OMPI_ERR_IN_STATUS or failure status.
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*
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*/
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OMPI_DECLSPEC int ompi_request_test_some(
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size_t count,
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ompi_request_t ** requests,
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int * outcount,
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int * indices,
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ompi_status_public_t * statuses);
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/**
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* Wait (blocking-mode) for one requests to complete.
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*
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* @param request (IN) Pointer to request.
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* @param status (OUT) Status of completed request.
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* @return OMPI_SUCCESS or failure status.
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*
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*/
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int ompi_request_wait(
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ompi_request_t ** req_ptr,
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ompi_status_public_t * status);
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/**
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* Wait (blocking-mode) for one of N requests to complete.
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*
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* @param count (IN) Number of requests
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* @param requests (IN) Array of requests
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* @param index (OUT) Index into request array of completed request.
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* @param status (OUT) Status of completed request.
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* @return OMPI_SUCCESS or failure status.
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*
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*/
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OMPI_DECLSPEC int ompi_request_wait_any(
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size_t count,
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ompi_request_t ** requests,
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int *index,
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ompi_status_public_t * status);
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/**
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* Wait (blocking-mode) for all of N requests to complete.
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*
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* @param count (IN) Number of requests
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* @param requests (IN) Array of requests
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* @param statuses (OUT) Array of completion statuses.
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* @return OMPI_SUCCESS or failure status.
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*
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*/
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OMPI_DECLSPEC int ompi_request_wait_all(
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size_t count,
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ompi_request_t ** requests,
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ompi_status_public_t * statuses);
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/**
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* Wait (blocking-mode) for some of N requests to complete.
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*
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* @param count (IN) Number of requests
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* @param requests (INOUT) Array of requests
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* @param outcount (OUT) Number of finished requests
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* @param indices (OUT) Indices of the finished requests
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* @param statuses (OUT) Array of completion statuses.
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* @return OMPI_SUCCESS, OMPI_ERR_IN_STATUS or failure status.
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*
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*/
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OMPI_DECLSPEC int ompi_request_wait_some(
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size_t count,
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ompi_request_t ** requests,
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int * outcount,
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int * indices,
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ompi_status_public_t * statuses);
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#if defined(c_plusplus) || defined(__cplusplus)
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}
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#endif
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#endif
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