bc018dec4a
Signed-off-by: William Bailey <wbailey2@nd.edu>
(cherry picked from commit caf1d9292c
)
250 строки
9.9 KiB
Plaintext
250 строки
9.9 KiB
Plaintext
Copyright (c) 2004-2005 The Trustees of Indiana University and Indiana
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University Research and Technology
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Corporation. All rights reserved.
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Copyright (c) 2004-2005 The University of Tennessee and The University
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of Tennessee Research Foundation. All rights
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reserved.
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Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
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University of Stuttgart. All rights reserved.
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Copyright (c) 2004-2005 The Regents of the University of California.
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All rights reserved.
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Copyright (c) 2008-2016 Cisco Systems, Inc. All rights reserved.
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Copyright (c) 2013 Intel, Inc. All rights reserved.
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$COPYRIGHT$
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Additional copyrights may follow
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$HEADER$
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Overview
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========
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This file is here for those who are building/exploring OMPI in its
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source code form, most likely through a developer's tree (i.e., a
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Git clone).
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Developer Builds: Compiler Pickyness by Default
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===============================================
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If you are building Open MPI from a Git clone (i.e., there is a ".git"
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directory in your build tree), the default build includes extra
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compiler pickyness, which will result in more compiler warnings than
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in non-developer builds. Getting these extra compiler warnings is
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helpful to Open MPI developers in making the code base as clean as
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possible.
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Developers can disable this picky-by-default behavior by using the
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--disable-picky configure option. Also note that extra-picky compiles
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do *not* happen automatically when you do a VPATH build (e.g., if
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".git" is in your source tree, but not in your build tree).
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Prior versions of Open MPI would automatically activate a lot of
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(performance-reducing) debugging code by default if ".git" was found
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in your build tree. This is no longer true. You can manually enable
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these (performance-reducing) debugging features in the Open MPI code
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base with these configure options:
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--enable-debug
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--enable-mem-debug
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--enable-mem-profile
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NOTE: These options are really only relevant to those who are
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developing Open MPI itself. They are not generally helpful for
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debugging general MPI applications.
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Use of GNU Autoconf, Automake, and Libtool (and m4)
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===================================================
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You need to read/care about this section *ONLY* if you are building
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from a developer's tree (i.e., a Git clone of the Open MPI source
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tree). If you have an Open MPI distribution tarball, the contents of
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this section are optional -- you can (and probably should) skip
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reading this section.
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If you are building Open MPI from a developer's tree, you must first
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install fairly recent versions of the GNU tools Autoconf, Automake,
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and Libtool (and possibly GNU m4, because recent versions of Autoconf
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have specific GNU m4 version requirements). The specific versions
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required depend on if you are using the Git master branch or a release
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branch (and which release branch you are using). The specific
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versions can be found here:
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http://www.open-mpi.org/source/building.php
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You can check what versions of the autotools you have installed with
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the following:
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shell$ m4 --version
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shell$ autoconf --version
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shell$ automake --version
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shell$ libtoolize --version
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Required version levels for all the OMPI releases can be found here:
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http://www.open-mpi.org/source/building.php
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To strengthen the above point: the core Open MPI developers typically
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use very, very recent versions of the GNU tools. There are known bugs
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in older versions of the GNU tools that Open MPI no longer compensates
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for (it seemed senseless to indefinitely support patches for ancient
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versions of Autoconf, for example). You *WILL* have problems if you
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do not use recent versions of the GNU tools.
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If you need newer versions, you are *strongly* encouraged to heed the
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following advice:
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NOTE: On MacOS/X, the default "libtool" program is different than the
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GNU libtool. You must download and install the GNU version
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(e.g., via MacPorts, Homebrew, or some other mechanism).
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1. Unless your OS distribution has easy-to-use binary installations,
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the sources can be can be downloaded from:
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ftp://ftp.gnu.org/gnu/autoconf/
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ftp://ftp.gnu.org/gnu/automake/
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ftp://ftp.gnu.org/gnu/libtool/
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and if you need it:
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ftp://ftp.gnu.org/gnu/m4/
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NOTE: It is certainly easiest to download/build/install all four of
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these tools together. But note that Open MPI has no specific m4
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requirements; it is only listed here because Autoconf requires
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minimum versions of GNU m4. Hence, you may or may not *need* to
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actually install a new version of GNU m4. That being said, if you
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are confused or don't know, just install the latest GNU m4 with the
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rest of the GNU Autotools and everything will work out fine.
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2. Build and install the tools in the following order:
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2a. m4
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2b. Autoconf
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2c. Automake
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2d. Libtool
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3. You MUST install the last three tools (Autoconf, Automake, Libtool)
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into the same prefix directory. These three tools are somewhat
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inter-related, and if they're going to be used together, they MUST
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share a common installation prefix.
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You can install m4 anywhere as long as it can be found in the path;
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it may be convenient to install it in the same prefix as the other
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three. Or you can use any recent-enough m4 that is in your path.
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3a. It is *strongly* encouraged that you do not install your new
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versions over the OS-installed versions. This could cause
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other things on your system to break. Instead, install into
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$HOME/local, or /usr/local, or wherever else you tend to
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install "local" kinds of software.
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3b. In doing so, be sure to prefix your $path with the directory
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where they are installed. For example, if you install into
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$HOME/local, you may want to edit your shell startup file
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(.bashrc, .cshrc, .tcshrc, etc.) to have something like:
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# For bash/sh:
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export PATH=$HOME/local/bin:$PATH
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# For csh/tcsh:
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set path = ($HOME/local/bin $path)
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3c. Ensure to set your $path *BEFORE* you configure/build/install
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the four packages.
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4. All four packages require two simple commands to build and
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install (where PREFIX is the prefix discussed in 3, above).
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shell$ cd <m4 directory>
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shell$ ./configure --prefix=PREFIX
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shell$ make; make install
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--> If you are using the csh or tcsh shells, be sure to run the
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"rehash" command after you install each package.
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shell$ cd <autoconf directory>
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shell$ ./configure --prefix=PREFIX
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shell$ make; make install
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--> If you are using the csh or tcsh shells, be sure to run the
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"rehash" command after you install each package.
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shell$ cd <automake directory>
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shell$ ./configure --prefix=PREFIX
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shell$ make; make install
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--> If you are using the csh or tcsh shells, be sure to run the
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"rehash" command after you install each package.
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shell$ cd <libtool directory>
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shell$ ./configure --prefix=PREFIX
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shell$ make; make install
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--> If you are using the csh or tcsh shells, be sure to run the
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"rehash" command after you install each package.
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m4, Autoconf and Automake build and install very quickly; Libtool will
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take a minute or two.
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5. You can now run OMPI's top-level "autogen.pl" script. This script
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will invoke the GNU Autoconf, Automake, and Libtool commands in the
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proper order and setup to run OMPI's top-level "configure" script.
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Running autogen.pl may take a few minutes, depending on your
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system. It's not very exciting to watch. :-)
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If you have a multi-processor system, enabling the multi-threaded
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behavior in Automake 1.11 (or newer) can result in autogen.pl
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running faster. Do this by setting the AUTOMAKE_JOBS environment
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variable to the number of processors (threads) that you want it to
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use before invoking autogen.pl. For example (you can again put
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this in your shell startup files):
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# For bash/sh:
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export AUTOMAKE_JOBS=4
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# For csh/tcsh:
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set AUTOMAKE_JOBS 4
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5a. You generally need to run autogen.pl whenever the top-level
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file "configure.ac" changes, or any files in the config/ or
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<project>/config/ directories change (these directories are
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where a lot of "include" files for OMPI's configure script
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live).
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5b. You do *NOT* need to re-run autogen.pl if you modify a
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Makefile.am.
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Use of Flex
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===========
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Flex is used during the compilation of a developer's checkout (it is
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not used to build official distribution tarballs). Other flavors of
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lex are *not* supported: given the choice of making parsing code
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portable between all flavors of lex and doing more interesting work on
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Open MPI, we greatly prefer the latter.
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Note that no testing has been performed to see what the minimum
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version of Flex is required by Open MPI. We suggest that you use
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v2.5.35 at the earliest.
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*** NOTE: Windows developer builds of Open MPI *require* Flex version
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2.5.35. Specifically, we know that v2.5.35 works and 2.5.4a does not.
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We have not tested to figure out exactly what the minimum required
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flex version is on Windows; we suggest that you use 2.5.35 at the
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earliest. It is for this reason that the
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contrib/dist/make_dist_tarball script checks for a Windows-friendly
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version of flex before continuing.
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For now, Open MPI will allow developer builds with Flex 2.5.4. This
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is primarily motivated by the fact that RedHat/Centos 5 ships with
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Flex 2.5.4. It is likely that someday Open MPI developer builds will
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require Flex version >=2.5.35.
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Note that the flex-generated code generates some compiler warnings on
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some platforms, but the warnings do not seem to be consistent or
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uniform on all platforms, compilers, and flex versions. As such, we
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have done little to try to remove those warnings.
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If you do not have Flex installed, it can be downloaded from the
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following URL:
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https://github.com/westes/flex
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