File: MPI_Win_shared_query.3

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.\" Man page generated from reStructuredText.
.
.TH "MPI_WIN_SHARED_QUERY" "3" "May 30, 2025" "" "Open MPI"
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.sp
\fI\%MPI_Win_shared_query\fP — Query a shared memory window
.SH SYNTAX
.SS C Syntax
.INDENT 0.0
.INDENT 3.5
.sp
.nf
.ft C
#include <mpi.h>

int MPI_Win_shared_query (MPI_Win win, int rank, MPI_Aint *size,
                          int *disp_unit, void *baseptr)
.ft P
.fi
.UNINDENT
.UNINDENT
.SS Fortran Syntax
.INDENT 0.0
.INDENT 3.5
.sp
.nf
.ft C
USE MPI
! or the older form: INCLUDE \(aqmpif.h\(aq
MPI_WIN_SHARED_QUERY(WIN, RANK, SIZE, DISP_UNIT, BASEPTR, IERROR)
        INTEGER WIN, RANK, DISP_UNIT, IERROR
        INTEGER(KIND=MPI_ADDRESS_KIND) SIZE, BASEPTR
.ft P
.fi
.UNINDENT
.UNINDENT
.SS Fortran 2008 Syntax
.INDENT 0.0
.INDENT 3.5
.sp
.nf
.ft C
USE mpi_f08
MPI_Win_shared_query(win, rank, size, disp_unit, baseptr, ierror)
     USE, INTRINSIC :: ISO_C_BINDING, ONLY : C_PTR
     TYPE(MPI_Win), INTENT(IN) :: win
     INTEGER, INTENT(IN) :: rank
     INTEGER(KIND=MPI_ADDRESS_KIND), INTENT(OUT) :: size
     INTEGER, INTENT(OUT) :: disp_unit
     TYPE(C_PTR), INTENT(OUT) :: baseptr
     INTEGER, OPTIONAL, INTENT(OUT) :: ierror
.ft P
.fi
.UNINDENT
.UNINDENT
.SH INPUT PARAMETERS
.INDENT 0.0
.IP \(bu 2
\fBwin\fP: Shared memory window object (handle).
.IP \(bu 2
\fBrank\fP: Rank in the group of window \fIwin\fP (non\-negative integer) or \fBMPI_PROC_NULL\fP\&.
.UNINDENT
.SH OUTPUT PARAMETERS
.INDENT 0.0
.IP \(bu 2
\fBsize\fP: Size of the window segment (non\-negative integer).
.IP \(bu 2
\fBdisp_unit\fP: Local unit size for displacements, in bytes (positive integer).
.IP \(bu 2
\fBbaseptr\fP: Address for load/store access to window segment (choice).
.IP \(bu 2
\fBierror\fP: Fortran only: Error status (integer).
.UNINDENT
.SH DESCRIPTION
.sp
\fI\%MPI_Win_shared_query\fP queries the process\-local address for
remote memory segments created with
\fI\%MPI_Win_allocate_shared\fP\&. This function can return different
process\-local addresses for the same physical memory on different
processes. The returned memory can be used for load/store accesses
subject to the constraints defined in MPI\-3.1 section 11.7. This
function can only be called with windows of flavor
MPI_WIN_FLAVOR_SHARED. If the passed window is not of flavor
MPI_WIN_FLAVOR_SHARED, the error MPI_ERR_RMA_FLAVOR is raised. When
rank is \fBMPI_PROC_NULL\fP, the \fIpointer\fP, \fIdisp_unit\fP, and \fIsize\fP returned
are the pointer, disp_unit, and size of the memory segment belonging
the lowest rank that specified \fIsize\fP > 0. If all processes in the
group attached to the window specified \fIsize\fP = 0, then the call
returns \fIsize\fP = 0 and a \fIbaseptr\fP as if \fI\%MPI_Alloc_mem\fP was
called with \fIsize\fP = 0.
.SH C NOTES
.sp
The parameter \fIbaseptr\fP is of type \fBvoid *\fP to allow passing any
pointer object for this parameter. The provided argument should be a
pointer to a pointer of arbitrary type (e.g. \fBvoid **\fP).
.SH ERRORS
.sp
Almost all MPI routines return an error value; C routines as the return result
of the function and Fortran routines in the last argument.
.sp
Before the error value is returned, the current MPI error handler associated
with the communication object (e.g., communicator, window, file) is called.
If no communication object is associated with the MPI call, then the call is
considered attached to MPI_COMM_SELF and will call the associated MPI error
handler. When MPI_COMM_SELF is not initialized (i.e., before
\fI\%MPI_Init\fP/\fI\%MPI_Init_thread\fP, after \fI\%MPI_Finalize\fP, or when using the Sessions
Model exclusively) the error raises the initial error handler. The initial
error handler can be changed by calling \fI\%MPI_Comm_set_errhandler\fP on
MPI_COMM_SELF when using the World model, or the mpi_initial_errhandler CLI
argument to mpiexec or info key to \fI\%MPI_Comm_spawn\fP/\fI\%MPI_Comm_spawn_multiple\fP\&.
If no other appropriate error handler has been set, then the MPI_ERRORS_RETURN
error handler is called for MPI I/O functions and the MPI_ERRORS_ABORT error
handler is called for all other MPI functions.
.sp
Open MPI includes three predefined error handlers that can be used:
.INDENT 0.0
.IP \(bu 2
\fBMPI_ERRORS_ARE_FATAL\fP
Causes the program to abort all connected MPI processes.
.IP \(bu 2
\fBMPI_ERRORS_ABORT\fP
An error handler that can be invoked on a communicator,
window, file, or session. When called on a communicator, it
acts as if \fI\%MPI_Abort\fP was called on that communicator. If
called on a window or file, acts as if \fI\%MPI_Abort\fP was called
on a communicator containing the group of processes in the
corresponding window or file. If called on a session,
aborts only the local process.
.IP \(bu 2
\fBMPI_ERRORS_RETURN\fP
Returns an error code to the application.
.UNINDENT
.sp
MPI applications can also implement their own error handlers by calling:
.INDENT 0.0
.IP \(bu 2
\fI\%MPI_Comm_create_errhandler\fP then \fI\%MPI_Comm_set_errhandler\fP
.IP \(bu 2
\fI\%MPI_File_create_errhandler\fP then \fI\%MPI_File_set_errhandler\fP
.IP \(bu 2
\fI\%MPI_Session_create_errhandler\fP then \fI\%MPI_Session_set_errhandler\fP or at \fI\%MPI_Session_init\fP
.IP \(bu 2
\fI\%MPI_Win_create_errhandler\fP then \fI\%MPI_Win_set_errhandler\fP
.UNINDENT
.sp
Note that MPI does not guarantee that an MPI program can continue past
an error.
.sp
See the \fI\%MPI man page\fP for a full list of \fI\%MPI error codes\fP\&.
.sp
See the Error Handling section of the MPI\-3.1 standard for
more information.
.sp
\fBSEE ALSO:\fP
.INDENT 0.0
.INDENT 3.5
.INDENT 0.0
.IP \(bu 2
\fI\%MPI_Alloc_mem\fP
.IP \(bu 2
\fI\%MPI_Win_allocate_shared\fP
.UNINDENT
.UNINDENT
.UNINDENT
.SH COPYRIGHT
2003-2025, The Open MPI Community
.\" Generated by docutils manpage writer.
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