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📄 cart_coords.c

📁 刚才是说明 现在是安装程序在 LINUX环境下进行编程的MPICH安装文件
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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"#include "topo.h"/* -- Begin Profiling Symbol Block for routine MPI_Cart_coords */#if defined(HAVE_PRAGMA_WEAK)#pragma weak MPI_Cart_coords = PMPI_Cart_coords#elif defined(HAVE_PRAGMA_HP_SEC_DEF)#pragma _HP_SECONDARY_DEF PMPI_Cart_coords  MPI_Cart_coords#elif defined(HAVE_PRAGMA_CRI_DUP)#pragma _CRI duplicate MPI_Cart_coords as PMPI_Cart_coords#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#define MPI_Cart_coords PMPI_Cart_coords#endif#undef FUNCNAME#define FUNCNAME MPI_Cart_coords/*@MPI_Cart_coords - Determines process coords in cartesian topology given                  rank in groupInput Parameters:+ comm - communicator with cartesian structure (handle) . rank - rank of a process within group of 'comm' (integer) - maxdims - length of vector 'coords' in the calling program (integer) Output Parameter:. coords - integer array (of size 'ndims') containing the Cartesian   coordinates of specified process (integer) .N fortran.N Errors.N MPI_SUCCESS.N MPI_ERR_TOPOLOGY.N MPI_ERR_RANK.N MPI_ERR_DIMS.N MPI_ERR_ARG@*/int MPI_Cart_coords(MPI_Comm comm, int rank, int maxdims, int *coords){    static const char FCNAME[] = "MPI_Cart_coords";    int mpi_errno = MPI_SUCCESS;    MPID_Comm *comm_ptr = NULL;    MPIR_Topology *cart_ptr;    int i, nnodes;    MPID_MPI_STATE_DECL(MPID_STATE_MPI_CART_COORDS);    MPID_MPI_FUNC_ENTER(MPID_STATE_MPI_CART_COORDS);    /* Get handles to MPI objects. */    MPID_Comm_get_ptr( comm, comm_ptr );#   ifdef HAVE_ERROR_CHECKING    {        MPID_BEGIN_ERROR_CHECKS;        {	    MPIR_ERRTEST_INITIALIZED(mpi_errno);            /* Validate comm_ptr */            MPID_Comm_valid_ptr( comm_ptr, mpi_errno );	    /* If comm_ptr is not valid, it will be reset to null */	    MPIR_ERRTEST_ARGNULL(coords,"coords",mpi_errno);            if (mpi_errno) {                MPID_MPI_FUNC_EXIT(MPID_STATE_MPI_CART_COORDS);                return MPIR_Err_return_comm( comm_ptr, FCNAME, mpi_errno );            }        }        MPID_END_ERROR_CHECKS;    }#   endif /* HAVE_ERROR_CHECKING */    /* ... body of routine ...  */    cart_ptr = MPIR_Topology_get( comm_ptr );#   ifdef HAVE_ERROR_CHECKING    {        MPID_BEGIN_ERROR_CHECKS;        {	    if (!cart_ptr || cart_ptr->kind != MPI_CART) {		mpi_errno = MPIR_Err_create_code( MPI_ERR_TOPOLOGY, 						  "**notcarttopo", 0 );	    }	    else if (cart_ptr->topo.cart.ndims > maxdims) {		mpi_errno = MPIR_Err_create_code( MPI_ERR_ARG, 					  "**dimsmany", "**dimsmany %d %d",						  cart_ptr->topo.cart.ndims,						  maxdims );	    }	    if (mpi_errno) {		MPID_MPI_FUNC_EXIT(MPID_STATE_MPI_CART_COORDS);		return MPIR_Err_return_comm( comm_ptr, FCNAME, mpi_errno );	    }	}        MPID_END_ERROR_CHECKS;    }#   endif /* HAVE_ERROR_CHECKING */    /* Calculate coords */    nnodes = cart_ptr->topo.cart.nnodes;    for ( i=0; i < cart_ptr->topo.cart.ndims; i++ ) {	nnodes    = nnodes / cart_ptr->topo.cart.dims[i];	coords[i] = rank / nnodes;	rank      = rank % nnodes;    }    /* ... end of body of routine ... */    MPID_MPI_FUNC_EXIT(MPID_STATE_MPI_CART_COORDS);    return MPI_SUCCESS;}

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