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Metastore depends on `bsd/string.h' to work properly (atleast on GNU/Linux
systems). The first system I tried building with had that library, so I
didn't notice! With this commit, we also build `libbsd' as part of the
pipeline.
Also, I couldn't find libbsd's version in any of its installed headers, so
like Libjpeg, we can't actually check and will directly write our internal
version into the paper.
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The pipeline heavily depends on file meta data (and in particular the
modification dates), for example the configuration-Makefiles within the
pipeline are set as prerequisites to the rules of the pipeline.
However, when Git checks out a branch, it doesn't preserve the meta-data of
the files unique to that branch (for example program source files or
configuration-Makefiles). As a result, the rules that depend on them will
be re-done.
This is especially troublesome in the scenario of this reproducible paper
project because we commonly need to switch between branches (for example to
import recent work in the pipeline into the projects). After some
searching, I think the Metastore program is the best solution. Metastore is
now built as part of the pipeline and through two Git hooks, it is called
by Git to store the original meta-data of files into a binary file that is
version controlled (and managed by Metastore).
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When building in group mode, users can manage them selves to work on
independent analysis steps and thus not cause conflicts. However, until
now, there was no way to avoid conflicts in building the final paper.
To fix this problem, when we are in group mode, the pipeline will create a
separate LaTeX build director for each user and also a separate PDF file
for each user. This will ensure that their compilations don't conflict.
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With the current build system, Bash and AWK don't write RPATH into the
executables. This causes many problems in the pipeline (for example when
using the `$(shell)' function in Make which doesn't have
`LD_LIBRARY_PATH').
After consulting the Bash and Make mailing lists, so far, the best solution
was to use the Patchelf program to manually write RPATH in these
executables. With this commit, Patchelf is now installed in the pipeline
and used in Bash and AWK to fix this problem.
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The build of bash has been made a little cleaner to help in readability and
management of the code.
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The TIFF library can optionally depend on webp [1] and zstd [2]. But these
aren't commonly used in scientific datasets so to avoid a longer build and
managing of extra dependencies (atleast for now!), we are disabling
them. The problem is that they cause a dependency on the host system and if
they are updated/removed, the relevant pipeline programs will crash.
[1] https://en.wikipedia.org/wiki/WebP
[2] https://en.wikipedia.org/wiki/Zstandard
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In the previous commit, the copyright year and owner were mistakenly
modified. They are corrected now.
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While working on a pipeline based on this, I noticed many linking errors of
our installed Bash, complaining that it can't link with libreadline. This
was while readline was present in the proper directory and the Bash within
a recipe would work properly.
After some investigation, I found out that this is because Make's `foreach'
function (which was used to define the targets) was apparently calling Bash
without setting `LD_LIBRARY_PATH', causing this error.
To avoid such sitations, Bash now uses its internal build of readline and
we no longer ask it to link with the installed readline.
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The targets of the links to have the extra common `ncurses' packages were
previously just `pkgconfig/*.pc'! But this would only work when run within
the `installed/lib' directory, not any other! So the targets for these
packages now use an absolute address.
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If the `./for-group' script is not used properly, it can lead to the whole
pipeline being re-run. Therefore it is important to do a sanity check
immediately at the start of Make's processing and inform the user if there
is a problem.
With this commit, `./for-group' exports the `reproducible_paper_for_group'
variable which is used by both the initial `./configure' script, and later
in each call to Make. The `./configure' script will use it to write a value
in `reproduce/config/pipeline/LOCAL.mk' and Make will use it to compare
with the value in `reproduce/config/pipeline/LOCAL.mk'.
If there is an inconsistency, Make will not even attempt to build anything
and will just print a message and abort.
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Wget and cURL depend on many network related libraries by default and if
they are present on the host operating system, they will be linked
with. This causes problems for the pipeline when these libraries are
updated on the host system.
With this commit, I went through the configure time options of both Wget
and cURL and removed any library that didn't seem related to merely
downloading of files (possibly with SSL, because we do build OpenSSL in the
pipeline).
Also, I noticed a new version of cURL has come, so that is also updated.
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In a previous implementation, we were using a `target' variable to define
the final target of several links, but with the new `sov' solution, we just
used its base name. However, we had forgot to correct two instances of
`target'. This is corrected now.
Also, the step to clean all already built outputs of the NCURSES library
has been simplified to a platform independent wildcard.
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On Mac OS systems, the full version number is not used in the filename
given to libncurses. For example for version 6.1, it is called
`libncursesw.6.dylib'. So a more generic and easier to maintain and read
script is now used to be able to make links for both Mac and GNU/Linux
systems.
In short, instead of checking if we are in Mac every time, we just set the
suffixes at the start based on the machine once as variables and use those
to define the links.
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The call to SED in `dependencies-build-rules.mk' had the file name before
the options. On some verions of SED, this would cause problems. So the
filename is now given after the options.
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The new `--colormap' option was added to the call to Gnuastro's ConvertType
program. Since Gnuastro 0.8, ConvertType needs this option for converting a
single-channel dataset to a color-supporting format.
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Readline is a prerequisite of Bash and AWK, while NCURSES is a prerequisite
of Readline. With the recent update of GNU Bash (and thus GNU Readline) on
my host operating system, the pipeline crashed and I noticed this hole in
the pipeline. In particular, AWK (which linked with Readline 7.0) would
complain about not finding it and abort.
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Git needs cURL in its build. Until now, by chance cURL was always built
before Git, but while building this pipeline on a system, Git was built
before cURL and we found the problem.
I also noticed that we hadn't added `Your name <your@email.address>' to the
`for-group' script. This has been corrected now.
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ccache is a super annoying program in the context of the reproduction
pipeline. On systems that use it, the `gcc' and `g++' that are found in
PATH are actually calls to `ccache' (so it can manage their call)!
Two steps have been taken to ignore and disable ccache (if it isn't ignored
properly!): 1) when making symbolic links to compilers, if a directory
containing `ccache' is present in the PATH, it is first removed, then we
look for the low-level programs that we won't be building. 2) The
`CCACHE_DISABLE' environment variable is set to 1 where necessary (with the
other environment variables).
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During the last month, several core GNU programs were updated, so their
versions in the pipeline have also been updated.
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After installing Bash, we would just blindly try to build the $(ibdir)/sh'
symbolic link. But that could fail if it already existed. To make things
clean, we now remove any link first before attempting to make a new one.
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Since the current implementation of this pipeline officially started in
2018, all the files only had 2018 in their copyright years. This has now
been corrected to 2018-2019.
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By giving this option specifically at the build time of Pkg-config, we'll
ensure that any package that uses pkg-config will first look into our
locally installed build.
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Both Gzip and Gnuastro were being bootstrapped personally from their Git
repository until now. But fortunately a new release of both came out last
week and so to make things standard we are now using their standard
tarballs.
I also noticed that we weren't checking the version of Gzip or mentioning
it in the acknowledgement section. This was also corrected.
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Bzip2's verison is found differently from the other programs (because it
writes no standard error, not standard output!). So a custom function is
written for it which includes creating a temporary file. But we had forgot
to delete that file after the version is found.
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While checking the build of the previous commit, a failure happened when
linking `reproduce/build/dependencies/installed/bin/sh' with the built Bash
(because the symbolic link already existed!). So a `-f' flag was added to
`ln' to just change it without complaining.
I also noticed that the Git build was also not in verbose mode. So this has
also been corrected.
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While we were testing this pipeline on a Mac OS system, we found and
reported a problem in Gzip's build (bug #33689). However, since the Gzip
build is not verbose, it was necessary to run its `make' with
`V=1'. Generally, since almost all the programs are built in verbose mode
(where you can see the compilation commands), we have also set this flag in
any build to be clear and make it easier to spot bugs in the future.
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A minor correction was made in the checklist (since we only have one
`foreach' loop in the top-level Makefile) and also the version of Gnuastro
was incremented.
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Some problems with using the number of threads in dependency building were
fixed.
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The version of Git was updated to the most recent version (2.20.0).
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Some host Make systems may not allow automatic passing of the number of
threads to sub-Makes. So while building the basic dependencies, we'll need
to explicity add the `-j' option to the Make files that can benefit most
from it: those that are dependencies of many others (Tar & Make), or are
the last to build (Coreutils).
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Gnuastro's BuildProgram is a little special: it is actually built during
the building of Gnuastro to keep important include and lib directory
information and if someone wants to use BuildProgram, this information is
necessary. So a special configuration is added for it in
`reproduce/config/gnuastro'. This configuration file will allow users to
set their own special configuration if they like, then it will load the
installed BuildProgram configuration file.
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On Mac OS systems, CFITSIO doesn't use path to find the `curl-config'
program (used by to give the library header and linking options), but uses
an absolute path. Therefore the only way we can ask CFITSIO to look into
our build of cURL is to manually change that absolute address.
Also, since all the libraries are now linked dynamically, we don't need the
extra linking flags when building WCSLIB (so it finds CFITSIO).
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Mac OS's `install_name_tool' program's command is broken up into two lines,
but I had forgotten to add a line-break so the command would fail. I didn't
notice it myself because this error only shows up on Mac OS systems that
actually need to parse it.
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The build systems of Libgit2 and WCSLIB on Mac OS does not account for
installation in non-standard addresses: `Libgit2' keeps the absolute
address of its build directory (not the installation directory) and WCSLIB
doesn't write any absolute address at all (so the system uses the first one
it finds).
To address these issues, we are now using Mac OS's `install_name_tool'
program to fix the absolute path within the installed shared library.
Since the version of the library is actually present in its shared library
name, in `dependency-versions.mk' we have also separated these two
libraries so later when their version is changed, we are careful in
correcting the shared library name also.
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`ln' will complain about a link already existing. So to avoid having to
rely on the `-f' option (which may not be portable across systems), when we
are making symbolic links to the OS tools that we won't be building, we now
remove the file if it exists, then make a new symbolic link.
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Until now the low-level links that we put in our internal installation from
the operating system were a prerequisite of essentially all the basic
dependencies. So a change in them would mean a full re-build of all the
basic dependencies. But in building the basic dependencies, we already have
the operating system's PATH and other environment variables. So unlike the
higher-level dependencies, they don't need these links at all!
With this commit, the `low-level-links' file is placed in `installed/bin'
and is a top-level target of the basic dependencies build. In this way, if
it is necessary to update/change to use something from the host operating
system, we can simply delete it and run `./configure' again wihout having
to re-build all the basic dependencies.
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On Mac OS systems, the `sw_vers' executable prints information about the
operating system. It is used by TeX Live to determine the necessary builds
to download and install. We are thus importing it as a low-level tool in
`dependency-basics.mk'.
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Until now, we were checking the existance of the `configure' file and if it
wasn't present, we would check for `config' (for OpenSSL which also has a
lower-level "Configure" script that is called by the `config' script). But
after two tests on Mac machines by Raul Infante Sainz and Cristina MartÃnez
Lombilla, we found out that Mac Os's file names aren't case sensitive and
thus the build wouldn't use `config', but `Configure'.
Now, the exact configuration script can be specified as the 7th argument to
the `gbuild' script. If it isn't given, the standard `configure' name will
be used, but when it is, the given name will be used.
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OpenSSL can't automatically detect the architecture of Mac OS systems, so
as it suggests on its Wiki, it needs some help for doing that. With this
commit, we are checking the build on Mac OS with the presence of `otool'
(Mac OS's linker). If it's there, we'll add the OpenSSL configuration
options suggested by OpenSSL's Wiki.
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Until now, we weren't including the `rpath' linking options to the basic
dependencies. They are now added. Also, when the download of an input file
fails for any reason, an empty file won't be replaced there any more.
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In the previous commit, I forgot to actually add some changes to the
staging area before committing an pushing. So some of the changes discussed
in the previous commit and now commited.
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Make builds the dependencies of each package based on the order in the
prerequisites list. So when building in parallel, it can greatly help the
over-all build speed if larger packages are built first. Therefore the
three larger Gnuastro dependencies are now placed at earlier places of the
prerequisites.
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We were missing a `\' at the end of the `$(call' function of Coreutils to
connect the two lines. It has been fixed now.
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To enable easy downloading of HTTPS links with Wget (this pipeline's defaut
downloader), we need a set of trusted CA certificates. Until the time that
we can generate one ourselves, one generic set of trusted CA certificates
is now downloaded like a tarball and placed in the OpenSSL configuration
directory.
With these CA certificates, within the pipeline we can now safely use the
pipeline's own installed Wget.
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Some high-level programs like Wget and cURL need to be built in shared mode
because they also include dynamic loading of libraries. Therefore, if we
only build the lower-level libraries in static mode, our own build will be
ignored and they will go and find the system's shared libraries to link
with. Because of this, for now, we have manually set the `static_build'
variable in the configure script to `no'.
Also, if the downloader fails, we'll delete the output (an empty file in
the case of Wget) because it interefers with a target definition.
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The TeX Live installer needs Wget to operate smoothly, especially on recent
Mac OS systems that don't have Wget pre-installed. Also, it would be good
for the pipeline to have its own downloader. So with this commit, the
pipeline also installs Wget and OpenSSL which is a dependency.
Many other small changes/fixes were done in this process.
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Thanks to the check by Cristina MartÃnez, some corrections were made when
we attempt to download and install TeXLive. Further checks and corrections
will be in due time.
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Until now, we were downloading TeX Live's tarball within the same rule that
unpacked it. But this causes problems for situations were it cannot be
downloaded within the pipeline (and manually placed in the tarball
directory). So now, the TeX Live downloader is treated like all the other
downloaders.
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The main reason I wasn't using cURL as a downloading tool was that I wasn't
familar with how to ask it to follow a re-direct. But I just found out that
its with the `-L' configure time option. So it is now added as a downloader
tool to the pipeline.
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On the Libgit2 webpage, it has recommended to build it statically on Mac
systems. By default we are doing this on Linux systems, but the `-static'
flag failed on Mac. But apparently CMake might be able to deal with the
issue in a different way.
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