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📄 waitany.c

📁 fortran并行计算包
💻 C
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/* -*- Mode: C; c-basic-offset:4 ; -*- *//* * *  (C) 2001 by Argonne National Laboratory. *      See COPYRIGHT in top-level directory. */#include "mpiimpl.h"#if !defined(MPID_REQUEST_PTR_ARRAY_SIZE)#define MPID_REQUEST_PTR_ARRAY_SIZE 16#endif/* -- Begin Profiling Symbol Block for routine MPI_Waitany */#if defined(HAVE_PRAGMA_WEAK)#pragma weak MPI_Waitany = PMPI_Waitany#elif defined(HAVE_PRAGMA_HP_SEC_DEF)#pragma _HP_SECONDARY_DEF PMPI_Waitany  MPI_Waitany#elif defined(HAVE_PRAGMA_CRI_DUP)#pragma _CRI duplicate MPI_Waitany as PMPI_Waitany#endif/* -- End Profiling Symbol Block *//* Define MPICH_MPI_FROM_PMPI if weak symbols are not supported to build   the MPI routines */#ifndef MPICH_MPI_FROM_PMPI#undef MPI_Waitany#define MPI_Waitany PMPI_Waitany#endif#undef FUNCNAME#define FUNCNAME MPI_Waitany/*@    MPI_Waitany - Waits for any specified MPI Request to completeInput Parameters:+ count - list length (integer) - array_of_requests - array of requests (array of handles) Output Parameters:+ index - index of handle for operation that completed (integer).  In therange '0' to 'count-1'.  In Fortran, the range is '1' to 'count'.- status - status object (Status).  May be 'MPI_STATUS_IGNORE'.Notes:If all of the requests are 'MPI_REQUEST_NULL', then 'index' is returned as 'MPI_UNDEFINED', and 'status' is returned as an empty status.While it is possible to list a request handle more than once in thearray_of_requests, such an action is considered erroneous and may cause theprogram to unexecpectedly terminate or produce incorrect results..N waitstatus.N ThreadSafe.N Fortran.N Errors.N MPI_SUCCESS.N MPI_ERR_REQUEST.N MPI_ERR_ARG@*/int MPI_Waitany(int count, MPI_Request array_of_requests[], int *index, 		MPI_Status *status){    static const char FCNAME[] = "MPI_Waitany";    MPID_Request * request_ptr_array[MPID_REQUEST_PTR_ARRAY_SIZE];    MPID_Request ** request_ptrs = request_ptr_array;    MPID_Progress_state progress_state;    int i;    int n_inactive;    int active_flag;    int mpi_errno = MPI_SUCCESS;    MPIU_CHKLMEM_DECL(1);    MPID_MPI_STATE_DECL(MPID_STATE_MPI_WAITANY);    MPIR_ERRTEST_INITIALIZED_ORDIE();        MPIU_THREAD_SINGLE_CS_ENTER("pt2pt");    MPID_MPI_PT2PT_FUNC_ENTER(MPID_STATE_MPI_WAITANY);    /* Check the arguments */#   ifdef HAVE_ERROR_CHECKING    {        MPID_BEGIN_ERROR_CHECKS;        {	    MPIR_ERRTEST_COUNT(count, mpi_errno);            if (mpi_errno != MPI_SUCCESS) goto fn_fail;	    if (count != 0) {		MPIR_ERRTEST_ARGNULL(array_of_requests, "array_of_requests", mpi_errno);		/* NOTE: MPI_STATUS_IGNORE != NULL */		MPIR_ERRTEST_ARGNULL(status, "status", mpi_errno);	    }	    MPIR_ERRTEST_ARGNULL(index, "index", mpi_errno);	    if (mpi_errno != MPI_SUCCESS) goto fn_fail;	    for (i = 0; i < count; i++)	    {		MPIR_ERRTEST_REQUEST_OR_NULL(array_of_requests[i], mpi_errno);	    }            if (mpi_errno != MPI_SUCCESS) goto fn_fail;	}        MPID_END_ERROR_CHECKS;    }#   endif /* HAVE_ERROR_CHECKING */        /* ... body of routine ...  */        /* Convert MPI request handles to a request object pointers */    if (count > MPID_REQUEST_PTR_ARRAY_SIZE)    {	MPIU_CHKLMEM_MALLOC_ORJUMP(request_ptrs, MPID_Request **, count * sizeof(MPID_Request *), mpi_errno, "request pointers");    }    n_inactive = 0;    for (i = 0; i < count; i++)    {	if (array_of_requests[i] != MPI_REQUEST_NULL)	{	    MPID_Request_get_ptr(array_of_requests[i], request_ptrs[i]);	    /* Validate object pointers if error checking is enabled */#           ifdef HAVE_ERROR_CHECKING	    {		MPID_BEGIN_ERROR_CHECKS;		{		    MPID_Request_valid_ptr( request_ptrs[i], mpi_errno );		    if (mpi_errno != MPI_SUCCESS)		    {			goto fn_exit;		    }		    		}		MPID_END_ERROR_CHECKS;	    }#           endif	    	}	else	{	    request_ptrs[i] = NULL;	    n_inactive += 1;	}    }    if (n_inactive == count)    {	*index = MPI_UNDEFINED;	if (status != NULL)    /* could be null if count=0 */	    MPIR_Status_set_empty(status);	goto fn_exit;    }        MPID_Progress_start(&progress_state);    for(;;)    {	for (i = 0; i < count; i++)	{	    if (request_ptrs[i] != NULL && 			    request_ptrs[i]->kind == MPID_UREQUEST &&			    request_ptrs[i]->poll_fn != NULL)	    {		mpi_errno = (request_ptrs[i]->poll_fn)(request_ptrs[i]->grequest_extra_state, status);		if (mpi_errno != MPI_SUCCESS) goto fn_fail;	    }	    if (request_ptrs[i] != NULL && *request_ptrs[i]->cc_ptr == 0)	    {		mpi_errno = MPIR_Request_complete(&array_of_requests[i], 						  request_ptrs[i], status, 						  &active_flag);		if (active_flag)		{		    *index = i;		    goto break_l1;		}		else		{		    n_inactive += 1;		    request_ptrs[i] = NULL;		    if (n_inactive == count)		    {			*index = MPI_UNDEFINED;			/* status is set to empty by MPIR_Request_complete */			goto break_l1;		    }		}	    }	}	mpi_errno = MPID_Progress_wait(&progress_state);	if (mpi_errno != MPI_SUCCESS)	{	    MPID_Progress_end(&progress_state);	    goto fn_exit;	}    }  break_l1:    MPID_Progress_end(&progress_state);    /* ... end of body of routine ... */      fn_exit:    if (count > MPID_REQUEST_PTR_ARRAY_SIZE)    {	MPIU_CHKLMEM_FREEALL();    }    MPID_MPI_PT2PT_FUNC_EXIT(MPID_STATE_MPI_WAITANY);    MPIU_THREAD_SINGLE_CS_EXIT("pt2pt");    return mpi_errno;  fn_fail:    /* --BEGIN ERROR HANDLING-- */#ifdef HAVE_ERROR_CHECKING    mpi_errno = MPIR_Err_create_code(mpi_errno, MPIR_ERR_RECOVERABLE, 				     FCNAME, __LINE__, MPI_ERR_OTHER,				     "**mpi_waitany", 				     "**mpi_waitany %d %p %p %p", 				     count, array_of_requests, index, status);#endif    mpi_errno = MPIR_Err_return_comm(NULL, FCNAME, mpi_errno);    goto fn_exit;    /* --END ERROR HANDLING-- */}

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