int MPI_Waitany(int count, MPI_Request *array_of_requests, int *index, MPI_Status *status) { int err; ALLOCATE_STATUS(newstatus,1) err=PMPI_Waitany(count,array_of_requests,index,newstatus); COPY_STATUS(status,newstatus,1) return err; }
int MPI_Waitany(int count, MPI_Request *array_of_requests, int *index, MPI_Status *status) { int returnVal; /* NEEDS WORK */ returnVal = PMPI_Waitany( count, array_of_requests, index, status ); ProcessWaitTest_1( array_of_requests[*index] /* WRONG */, status, "MPI_Waitany" ); return returnVal; }
void ompi_waitany_f(MPI_Fint *count, MPI_Fint *array_of_requests, MPI_Fint *indx, MPI_Fint *status, MPI_Fint *ierr) { MPI_Request *c_req; MPI_Status c_status; int i, c_ierr; OMPI_SINGLE_NAME_DECL(indx); /* Shortcut to avoid malloc(0) if *count==0. We're intentionally skipping other parameter error checks. */ if (OPAL_UNLIKELY(0 == OMPI_FINT_2_INT(*count))) { *indx = OMPI_INT_2_FINT(MPI_UNDEFINED); PMPI_Status_c2f(&ompi_status_empty, status); *ierr = OMPI_INT_2_FINT(MPI_SUCCESS); return; } c_req = (MPI_Request *) malloc(OMPI_FINT_2_INT(*count) * sizeof(MPI_Request)); if (NULL == c_req) { c_ierr = OMPI_ERRHANDLER_INVOKE(MPI_COMM_WORLD, MPI_ERR_NO_MEM, FUNC_NAME); if (NULL != ierr) *ierr = OMPI_INT_2_FINT(c_ierr); return; } for (i = 0; i < OMPI_FINT_2_INT(*count); ++i) { c_req[i] = PMPI_Request_f2c(array_of_requests[i]); } c_ierr = PMPI_Waitany(OMPI_FINT_2_INT(*count), c_req, OMPI_SINGLE_NAME_CONVERT(indx), &c_status); if (NULL != ierr) *ierr = OMPI_INT_2_FINT(c_ierr); if (MPI_SUCCESS == c_ierr) { /* Increment index by one for fortran conventions */ OMPI_SINGLE_INT_2_FINT(indx); if (MPI_UNDEFINED != *(OMPI_SINGLE_NAME_CONVERT(indx))) { array_of_requests[OMPI_INT_2_FINT(*indx)] = c_req[OMPI_INT_2_FINT(*indx)]->req_f_to_c_index; ++(*indx); } if (!OMPI_IS_FORTRAN_STATUS_IGNORE(status)) { PMPI_Status_c2f(&c_status, status); } } free(c_req); }
int MPI_Waitany(int count, MPI_Request requests[], int *index, MPI_Status * status) { return PMPI_Waitany(count, requests, index, status); }