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openmpi/ompi/config/fortran_find_ext_symbol_convention.m4
Jeff Squyres 253444c6d0 == Highlights ==
1. New mpifort wrapper compiler: you can utilize mpif.h, use mpi, and use mpi_f08 through this one wrapper compiler
 1. mpif77 and mpif90 still exist, but are sym links to mpifort and may be removed in a future release
 1. The mpi module has been re-implemented and is significantly "mo' bettah"
 1. The mpi_f08 module offers many, many improvements over mpif.h and the mpi module

This stuff is coming from a VERY long-lived mercurial branch (3 years!); it'll almost certainly take a few SVN commits and a bunch of testing before I get it correctly committed to the SVN trunk.

== More details ==

Craig Rasmussen and I have been working with the MPI-3 Fortran WG and Fortran J3 committees for a long, long time to make a prototype MPI-3 Fortran bindings implementation.  We think we're at a stable enough state to bring this stuff back to the trunk, with the goal of including it in OMPI v1.7.  

Special thanks go out to everyone who has been incredibly patient and helpful to us in this journey:

 * Rolf Rabenseifner/HLRS (mastermind/genius behind the entire MPI-3 Fortran effort)
 * The Fortran J3 committee
 * Tobias Burnus/gfortran
 * Tony !Goetz/Absoft
 * Terry !Donte/Oracle
 * ...and probably others whom I'm forgetting :-(

There's still opportunities for optimization in the mpi_f08 implementation, but by and large, it is as far along as it can be until Fortran compilers start implementing the new F08 dimension(..) syntax.

Note that gfortran is currently unsupported for the mpi_f08 module and the new mpi module.  gfortran users will a) fall back to the same mpi module implementation that is in OMPI v1.5.x, and b) not get the new mpi_f08 module.  The gfortran maintainers are actively working hard to add the necessary features to support both the new mpi_f08 module and the new mpi module implementations.  This will take some time.

As mentioned above, ompi/mpi/f77 and ompi/mpi/f90 no longer exist.  All the fortran bindings implementations have been collated under ompi/mpi/fortran; each implementation has its own subdirectory:

{{{
ompi/mpi/fortran/
  base/               - glue code
  mpif-h/             - what used to be ompi/mpi/f77
  use-mpi-tkr/        - what used to be ompi/mpi/f90
  use-mpi-ignore-tkr/ - new mpi module implementation
  use-mpi-f08/        - new mpi_f08 module implementation
}}}

There's also a prototype 6-function-MPI implementation under use-mpi-f08-desc that emulates the new F08 dimension(..) syntax that isn't fully available in Fortran compilers yet.  We did that to prove it to ourselves that it could be done once the compilers fully support it.  This directory/implementation will likely eventually replace the use-mpi-f08 version.

Other things that were done:

 * ompi_info grew a few new output fields to describe what level of Fortran support is included
 * Existing Fortran examples in examples/ were renamed; new mpi_f08 examples were added
 * The old Fortran MPI libraries were renamed:
   * libmpi_f77 -> libmpi_mpifh
   * libmpi_f90 -> libmpi_usempi
 * The configury for Fortran was consolidated and significantly slimmed down.  Note that the F77 env variable is now IGNORED for configure; you should only use FC. Example:
{{{
shell$ ./configure CC=icc CXX=icpc FC=ifort ...
}}}

All of this work was done in a Mercurial branch off the SVN trunk, and hosted at Bitbucket.  This branch has got to be one of OMPI's longest-running branches.  Its first commit was Tue Apr 07 23:01:46 2009 -0400 -- it's over 3 years old!  :-)  We think we've pulled in all relevant changes from the OMPI trunk (e.g., Fortran implementations of the new MPI-3 MPROBE stuff for mpif.h, use mpi, and use mpi_f08, and the recent Fujitsu Fortran patches).

I anticipate some instability when we bring this stuff into the trunk, simply because it touches a LOT of code in the MPI layer in the OMPI code base.  We'll try our best to make it as pain-free as possible, but please bear with us when it is committed.

This commit was SVN r26283.
2012-04-18 15:57:29 +00:00

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dnl -*- shell-script -*-
dnl
dnl Copyright (c) 2004-2005 The Trustees of Indiana University and Indiana
dnl University Research and Technology
dnl Corporation. All rights reserved.
dnl Copyright (c) 2004-2005 The University of Tennessee and The University
dnl of Tennessee Research Foundation. All rights
dnl reserved.
dnl Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
dnl University of Stuttgart. All rights reserved.
dnl Copyright (c) 2004-2005 The Regents of the University of California.
dnl All rights reserved.
dnl Copyright (c) 2009 Oak Ridge National Labs. All rights reserved.
dnl Copyright (c) 2009-2012 Cisco Systems, Inc. All rights reserved.
dnl $COPYRIGHT$
dnl
dnl Additional copyrights may follow
dnl
dnl $HEADER$
dnl
AC_DEFUN([OMPI_FORTRAN_FIND_EXT_SYMBOL_CONVENTION], [
AC_REQUIRE([AC_PROG_NM])
AC_REQUIRE([AC_PROG_GREP])
OPAL_VAR_SCOPE_PUSH([FCFLAGS_NEW LDFLAGS_NEW FLAG])
# invalidate cache if result came from a run where FORTRAN was disabled
if test "$ompi_cv_fortran_external_symbol" = "skipped" ; then
unset ompi_cv_fortran_external_symbol
fi
AC_CACHE_CHECK([$FORTRAN external symbol convention],
[ompi_cv_fortran_external_symbol],
[if test "$FC" = "none" -o "$OMPI_WANT_FORTRAN_BINDINGS" = "0"; then
ompi_cv_fortran_external_symbol="skipped"
else
cat >conftest.f <<EOF
subroutine FOO_bar(a)
integer a
a = 1
return
end
EOF
# Try without certain optimization flags, which produce object
# files without the required external symbols;
# e.g. option -fast turns on -ipo on Intel Compilers 11.0
FCFLAGS_NEW=""
LDFLAGS_NEW=""
case $FC in
ifort)
for FLAG in $FCFLAGS ; do
case $FLAG in
-fast) ;;
-ipo*) ;;
*) FCFLAGS_NEW="$FCFLAGS_NEW $FLAG" ;;
esac
done
for FLAG in $LDFLAGS ; do
case $FLAG in
-fast) ;;
-ipo*) ;;
*) LDFLAGS_NEW="$LDFLAGS_NEW $FLAG" ;;
esac
done
OPAL_LOG_MSG([Try with new FCFLAGS: $FCFLAGS_NEW and new LDFLAGS:$LDFLAGS_NEW])
;;
*)
FCFLAGS_NEW="$FCFLAGS"
LDFLAGS_NEW="$LDFLAGS"
;;
esac
happy=1
OPAL_LOG_COMMAND([$FC $FCFLAGS_NEW -c conftest.f $LDFLAGS_NEW $LIBS],
[if $NM conftest.o | $GREP foo_bar__ >/dev/null 2>&1 ; then
ompi_cv_fortran_external_symbol="double underscore"
elif $NM conftest.o | $GREP foo_bar_ >/dev/null 2>&1 ; then
ompi_cv_fortran_external_symbol="single underscore"
elif $NM conftest.o | $GREP FOO_bar >/dev/null 2>&1 ; then
ompi_cv_fortran_external_symbol="mixed case"
elif $NM conftest.o | $GREP foo_bar >/dev/null 2>&1 ; then
ompi_cv_fortran_external_symbol="no underscore"
elif $NM conftest.o | $GREP FOO_BAR >/dev/null 2>&1 ; then
ompi_cv_fortran_external_symbol="upper case"
else
$NM conftest.o >conftest.out 2>&1
OPAL_LOG_MSG([Could not determine Fortran naming convention. Output from $NM:])
OPAL_LOG_FILE([conftest.out])
happy=0
fi],
[AC_MSG_ERROR([Fortran compiler did not produce object file])])
fi])
# These values were all already set to 0 back up in
# ompi_setup_mpi_fortran.m4, because this whole macro is
# conditionally executed (i.e., it is not executed in the
# --disable-mpi-fortran case).
if test "$ompi_cv_fortran_external_symbol" = "double underscore" ; then
ompi_fortran_double_underscore=1
elif test "$ompi_cv_fortran_external_symbol" = "single underscore" ; then
ompi_fortran_single_underscore=1
elif test "$ompi_cv_fortran_external_symbol" = "mixed case" ; then
ompi_fortran_caps=1
elif test "$ompi_cv_fortran_external_symbol" = "no underscore" ; then
ompi_fortran_plain=1
elif test "$ompi_cv_fortran_external_symbol" = "upper case" ; then
ompi_fortran_caps=1
elif test "$ompi_cv_fortran_external_symbol" != "skipped" ; then
AC_MSG_ERROR([unknown naming convention: $ompi_cv_fortran_external_symbol])
fi
OPAL_VAR_SCOPE_POP
rm -rf conftest.*
])dnl
AC_DEFUN([OMPI_FORTRAN_MAKE_C_FUNCTION], [
if test "$ompi_cv_fortran_external_symbol" = "double underscore" ; then
# so the general rule is that if there is an _ in the function
# name, then there are two trailing underscores. Otherwise,
# there is only one trailing underscore. Any idea how to do
# that with m4_translit?
if echo $2 | $GREP _ >/dev/null 2>&1 ; then
$1[=]m4_translit([$2], [A-Z], [a-z])[__]
else
$1[=]m4_translit([$2], [A-Z], [a-z])[_]
fi
elif test "$ompi_cv_fortran_external_symbol" = "single underscore" ; then
$1[=]m4_translit([$2], [A-Z], [a-z])[_]
elif test "$ompi_cv_fortran_external_symbol" = "mixed case" ; then
$1[=]$2
elif test "$ompi_cv_fortran_external_symbol" = "no underscore" ; then
$1[=]m4_translit([$2], [A-Z], [a-z])
elif test "$ompi_cv_fortran_external_symbol" = "upper case" ; then
$1[=]m4_translit([$2], [a-z], [A-Z])
else
AC_MSG_ERROR([unknown naming convention: $ompi_cv_fortran_external_symbol])
fi
])