📄 mpi_scatter.3
字号:
.\"Copyright 2006, Sun Microsystems, Inc..\" Copyright (c) 1996 Thinking Machines Corporation.TH MPI_Scatter 3OpenMPI "September 2006" "Open MPI 1.2" " ".SH NAME\fBMPI_Scatter\fP \- Sends data from one task to all tasks in a group..SH SYNTAX.ft R.SH C Syntax.nf#include <mpi.h>int MPI_Scatter(void *\fIsendbuf\fP, int\fI sendcount\fP, MPI_Datatype\fI sendtype\fP, void\fI *recvbuf\fP, int\fI recvcount\fP, MPI_Datatype\fI recvtype\fP, int\fI root\fP, MPI_Comm\fI comm\fP).SH Fortran Syntax.nfINCLUDE 'mpif.h'MPI_SCATTER(\fISENDBUF, SENDCOUNT, SENDTYPE, RECVBUF, RECVCOUNT, RECVTYPE, ROOT, COMM, IERROR\fP) <type> \fISENDBUF(*), RECVBUF(*)\fP INTEGER \fISENDCOUNT, SENDTYPE, RECVCOUNT, RECVTYPE, ROOT\fP INTEGER \fICOMM, IERROR\fP .SH C++ Syntax.nf#include <mpi.h>void MPI::Comm::Scatter(const void* \fIsendbuf\fP, int \fIsendcount\fP, const MPI::Datatype& \fIsendtype\fP, void* \fIrecvbuf\fP, int \fIrecvcount\fP, const MPI::Datatype& \fIrecvtype\fP, int \fIroot\fP) const .SH INPUT PARAMETERS.ft R.TP 1isendbufAddress of send buffer (choice, significant only at root)..TP 1isendcountNumber of elements sent to each process (integer, significant only atroot)..TP 1isendtypeDatatype of send buffer elements (handle, significant only at root). .TP 1irecvcountNumber of elements in receive buffer (integer)..TP 1irecvtypeDatatype of receive buffer elements (handle)..TP 1irootRank of sending process (integer)..TP 1icommCommunicator (handle)..SH OUTPUT PARAMETERS.ftR.TP 1irecvbufAddress of receive buffer (choice)..ft R.TP 1iIERRORFortran only: Error status (integer). .SH DESCRIPTION.ft RMPI_Scatter is the inverse operation to MPI_Gather. .spThe outcome is as if the root executed n send operations, .sp.nf MPI_Send(sendbuf + i * sendcount * extent(sendtype), sendcount, sendtype, i, \&...).fi.spand each process executed a receive, .sp.nf MPI_Recv(recvbuf, recvcount, recvtype, i, \&...)..fi.spAn alternative description is that the root sends a message withMPI_Send(\fIsendbuf\fP, \fIsendcount\fP * \fIn\fP,\ \fIsendtype\fP, \&...). This message is splitinto \fIn\fP equal segments, the ith segment is sent to the ith process in thegroup, and each process receives this message as above..spThe send buffer is ignored for all nonroot processes. .spThe type signature associated with \fIsendcount\fP, \fIsendtype\fP at the root must beequal to the type signature associated with \fIrecvcount\fP, \fIrecvtype\fP at allprocesses (however, the type maps may be different). This implies that theamount of data sent must be equal to the amount of data received, pairwisebetween each process and the root. Distinct type maps between sender andreceiver are still allowed..spAll arguments to the function are significant on process \fIroot\fP, while onother processes, only arguments \fIrecvbuf\fP, \fIrecvcount\fP, \fIrecvtype\fP, \fIroot\fP, \fIcomm\fPare significant. The arguments \fIroot\fP and \fIcomm\fP must have identical values onall processes..spThe specification of counts and types should not cause any location on theroot to be read more than once..sp\fBRationale:\fR Though not needed, the last restriction is imposed so asto achieve symmetry with MPI_Gather, where the corresponding restriction (amultiple-write restriction) is necessary..sp\fBExample:\fR The reverse of Example 1 in the MPI_Gather manpage. Scattersets of 100 ints from the root to each process in the group. .sp.nf MPI_Comm comm; int gsize,*sendbuf; int root, rbuf[100]; \&... MPI_Comm_size(comm, &gsize); sendbuf = (int *)malloc(gsize*100*sizeof(int)); \&... MPI_Scatter(sendbuf, 100, MPI_INT, rbuf, 100, MPI_INT, root, comm);.fi.SH USE OF IN-PLACE OPTIONWhen the communicator is an intracommunicator, you can perform a gather operation in-place (the output buffer is used as the input buffer). Use the variable MPI_IN_PLACE as the value of the root process \fIrecvbuf\fR. In this case, \fIrecvcount\fR and \fIrecvtype\fR are ignored, and the root process sends no data to itself. .spNote that MPI_IN_PLACE is a special kind of value; it has the same restrictions on its use as MPI_BOTTOM..spBecause the in-place option converts the receive buffer into a send-and-receive buffer, a Fortran binding that includes INTENT must mark these as INOUT, not OUT. .sp.SH WHEN COMMUNICATOR IS AN INTER-COMMUNICATOR.spWhen the communicator is an inter-communicator, the root process in the first group sends data to all processes in the second group. The first group defines the root process. That process uses MPI_ROOT as the value of its \fIroot\fR argument. The remaining processes use MPI_PROC_NULL as the value of their \fIroot\fR argument. All processes in the second group use the rank of that root process in the first group as the value of their \fIroot\fR argument. The receive buffer argument of the root process in the first group must be consistent with the receive buffer argument of the processes in the second group. .sp .SH ERRORSAlmost all MPI routines return an error value; C routines as the value of the function and Fortran routines in the last argument. C++ functions do not return errors. If the default error handler is set to MPI::ERRORS_THROW_EXCEPTIONS, then on error the C++ exception mechanism will be used to throw an MPI:Exception object..spBefore the error value is returned, the current MPI error handler iscalled. By default, this error handler aborts the MPI job, except for I/O function errors. The error handler may be changed with MPI_Comm_set_errhandler; the predefined error handler MPI_ERRORS_RETURN may be used to cause error values to be returned. Note that MPI does not guarantee that an MPI program can continue past an error. .SH SEE ALSO.ft R.sp.nfMPI_ScattervMPI_GatherMPI_Gatherv' @(#)MPI_Scatter.3 1.22 06/03/09
⌨️ 快捷键说明
复制代码
Ctrl + C
搜索代码
Ctrl + F
全屏模式
F11
切换主题
Ctrl + Shift + D
显示快捷键
?
增大字号
Ctrl + =
减小字号
Ctrl + -