New package gcc-toolset-16 for c10s

Resolves: RHEL-160026
This commit is contained in:
Marek Polacek 2026-06-05 12:08:10 -04:00
parent 159eeb4668
commit cae8247dbb
10 changed files with 702 additions and 0 deletions

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.fmf/version Normal file
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1

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README Normal file
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Package %{scl_name} is the main package for Red Hat GCC
Toolset 16. By installing the %{scl_name} package, you will get
the working set of packages that are included in Red Hat GCC
Toolset 16, which includes development and debugging tools.
Usage: scl enable %{scl} <command>
Red Hat GCC Toolset allows you to build and execute applications
which are not located in the filesystem root hierarchy, but are
stored in an alternative location, which is %{_scl_root} in case
of the %{scl_name} collection.
Examples:
scl enable %{scl_name} 'command --arg'
Run a specific command with the argument --arg within the %{scl_name}
Red Hat GCC Toolset environment.
scl enable %{scl_name} 'gcc'
Run GCC from the %{scl_name} Red Hat GCC Toolset.
scl enable %{scl_name} 'bash'
Run an interactive shell wherein the %{scl_name} software collection
is enabled.
scl enable %{scl_name} 'man gcc'
Show man pages for the gcc command, which is a part of the
%{scl_name} Red Hat GCC Toolset.
Report bugs to <https://issues.redhat.com>.

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enable.in Normal file
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# General environment variables
export PATH=%{_bindir}${PATH:+:${PATH}}
export MANPATH=%{_mandir}${MANPATH:+:${MANPATH}}
export INFOPATH=%{_infodir}${INFOPATH:+:${INFOPATH}}
# bz847911 workaround:
# we need to evaluate rpm's installed run-time % { _libdir }, not rpmbuild time
# or else /etc/ld.so.conf.d files?
rpmlibdir=$(rpm --eval "%%{_libdir}")
# bz1017604: On 64-bit hosts, we should include also the 32-bit library path.
# bz1873882: On 32-bit hosts, we should include also the 64-bit library path.
# bz2027377: Avoid unbound variables
if [ "$rpmlibdir" != "${rpmlibdir/lib64/}" ]; then
rpmlibdir32=":%{_scl_root}${rpmlibdir/lib64/lib}"
rpmlibdir64=
else
rpmlibdir64=":%{_scl_root}${rpmlibdir/lib/lib64}"
rpmlibdir32=
fi
# Prepend the usual /opt/.../usr/lib{64,}.
export LD_LIBRARY_PATH=%{_scl_root}$rpmlibdir$rpmlibdir64$rpmlibdir32${LD_LIBRARY_PATH:+:${LD_LIBRARY_PATH}}
export PKG_CONFIG_PATH=%{_libdir}/pkgconfig${PKG_CONFIG_PATH:+:${PKG_CONFIG_PATH}}

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--- !Policy
product_versions:
- rhel-10
decision_context: osci_compose_gate
rules:
- !PassingTestCaseRule {test_case_name: baseos-ci.brew-build.gate-build-fast-lane.functional}
- !PassingTestCaseRule {test_case_name: baseos-ci.brew-build.gate-build-slow-lane.functional}

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%global __python /usr/bin/python3
%global gts_ver 16
%global scl gcc-toolset-%{gts_ver}
%global scl_prefix gcc-toolset-%{gts_ver}-
%global scl_name %scl
# We moved away from scl-utils in RHEL10. Instead, we have bundled in the
# minimal macro hackery necessary to build GTS into the same root to give us
# the necessary isolation and allow an equivalent of `scl enable` since that's
# a common way to use GTS.
#
# Some day we will move away from the 'scl' names, but today is not that day.
%if 0%{?rhel} >= 10
%global have_scl_utils 0
%else
%global have_scl_utils 1
%endif
# GTS only has gcc and binutils in RHEL9 and later.
%if 0%{?rhel} >= 9
%global gts_only_gcc_binutils 1
%else
%global gts_only_gcc_binutils 0
%endif
%if %have_scl_utils
%global long_name %scl Software Collection
%global version_string GCC-Toolset %{gts_ver} Software Collection
BuildRequires: scl-utils-build
%else
%global long_name GCC Toolset %gts_ver
%global version_string GCC-Toolset %{gts_ver}
%include %{_sourcedir}/macros.gts
%endif
%{?scl_package:%scl_package %scl}
Summary: Package that installs %scl
Name: %scl_name
Version: %{gts_ver}.0
Release: 0%{?dist}
License: GPLv2+
Group: Applications/File
BuildRoot: %{_tmppath}/%{name}-%{version}-%{release}-root-%(%{__id_u} -n)
Source0: README
Source2: gts-annobin-plugin-select.sh
Source3: macros.gts
Source4: enable.in
Source5: gcc-toolset-env.in
Requires: %{scl_prefix}runtime == %{version}-%{release}
Requires: %{scl_prefix}gcc %{scl_prefix}gcc-c++ %{scl_prefix}gcc-gfortran
Requires: %{scl_prefix}binutils
# None of these are in GTS in RHEL9 and later.
%if %gts_only_gcc_binutils == 0
Requires: %{scl_prefix}gdb
Requires: %{scl_prefix}dwz
Requires: %{scl_prefix}annobin-plugin-gcc
%endif
Obsoletes: %{name} < %{version}-%{release}
Obsoletes: %{scl_prefix}dockerfiles < %{version}-%{release}
BuildRequires: iso-codes
BuildRequires: help2man
%if 0%{?rhel} >= 8
BuildRequires: python3-devel
%endif
%if %gts_only_gcc_binutils == 0
%global rrcdir %{_scl_root}/usr/lib/rpm/redhat
%endif
%description
This is the main package for %long_name.
%package runtime
Summary: Package that handles %long_name.
Group: Applications/File
Obsoletes: %{name}-runtime < %{version}-%{release}
%if %have_scl_utils
Requires: scl-utils >= 20120927-11
%if 0%{?rhel} >= 7
%{?scl_package:Requires(post): %{_root_sbindir}/semanage %{_root_sbindir}/restorecon}
%{?scl_package:Requires(postun): %{_root_sbindir}/semanage %{_root_sbindir}/restorecon}
%else
Requires(post): libselinux policycoreutils-python
Requires(postun): libselinux policycoreutils-python
%endif
%endif
%description runtime
Package shipping essential scripts to work with %long_name.
%if %have_scl_utils == 0
%package devel
Summary: Scripts needed to build %long_name.
Group: Applications/File
Conflicts: scl-utils-build
%description devel
Package shipping scripts to build %long_name.
%endif
%prep
%setup -c -T
# This section generates README file from a template and creates man page
# from that file, expanding RPM macros in the template file.
cat <<'EOF' | tee README
%{expand:%(cat %{SOURCE0})}
EOF
%build
# Temporary helper script used by help2man.
cat <<\EOF | tee h2m_helper
#!/bin/sh
if [ "$1" = "--version" ]; then
printf '%%s' "%{version_string}"
else
cat README
fi
EOF
chmod a+x h2m_helper
# Generate the man page.
help2man -n "GNU project C, C++ and Fortran compiler and linker" -N --section 7 ./h2m_helper -o %{?scl_name}.7
gzip %{?scl_name}.7
# Enable collection script
# ========================
cat <<'EOF' | tee enable
%{expand:%(cat %{SOURCE4})}
EOF
%if %have_scl_utils == 0
cat <<'EOF' | tee gcc-toolset-%{gts_ver}-env
%{expand:%(cat %{SOURCE5})}
EOF
%endif
%install
%if %have_scl_utils
(%{scl_install})
# We no longer need this, and it would result in an "unpackaged but
# installed" error.
rm -rf %{buildroot}%{_root_sysconfdir}/rpm/macros.%{scl}-config
%else
mkdir -p %{buildroot}%{_root_sysconfdir}/rpm
# RPM macro weirdness: when it's explicitly included like in this spec file, it
# expects the %%define but when it is installed as a macro file, it cannot
# handle the %%define and instead expects %%<macro name> directly.
sed 's/^%%define scl_/%%scl_/' %{SOURCE3} > %{buildroot}%{_root_sysconfdir}/rpm/macros.%{scl}-build
%endif
%if %have_scl_utils
%define source_cmd source scl_source enable %{scl}
%else
%define source_cmd source %{_root_prefix}/lib/gcc-toolset/%{gts_ver}-env.source
%endif
# This allows users to build packages using DTS/GTS.
cat >> %{buildroot}%{_root_sysconfdir}/rpm/macros.%{scl}-enable << EOF
%%enable_gcctoolset%{gts_ver} %%global ___build_pre %%{___build_pre}; %source_cmd || :
EOF
%if %have_scl_utils
# Without SCL we just let gcc-toolset-*-binutils own this and use the
# --altdir/--admindir mechanism.
mkdir -p %{buildroot}%{_scl_root}/etc/alternatives %{buildroot}%{_scl_root}/var/lib/alternatives
install -d -m 755 %{buildroot}%{_scl_scripts}
install -p -m 755 enable %{buildroot}%{_scl_scripts}/
%if %gts_only_gcc_binutils == 0
# Other directories that should be owned by the runtime
install -d -m 755 %{buildroot}%{_datadir}/appdata
# Otherwise unowned perl directories
install -d -m 755 %{buildroot}%{_libdir}/perl5
install -d -m 755 %{buildroot}%{_libdir}/perl5/vendor_perl
install -d -m 755 %{buildroot}%{_libdir}/perl5/vendor_perl/auto
# Install the plugin selector trigger script.
mkdir -p %{buildroot}%{rrcdir}
install -p -m 755 %{SOURCE2} %{buildroot}%{rrcdir}/
%endif
%else
install -d -m 755 %{buildroot}%{_root_bindir}
install -p -m 755 gcc-toolset-%{gts_ver}-env %{buildroot}%{_root_bindir}/
install -d -m 755 %{buildroot}%{_root_prefix}/lib/gcc-toolset
install -p -m 755 enable %{buildroot}%{_root_prefix}/lib/gcc-toolset/%{gts_ver}-env.source
%endif
# Install generated man page.
install -d -m 755 %{buildroot}%{_root_mandir}/man7
install -p -m 644 %{?scl_name}.7.gz %{buildroot}%{_root_mandir}/man7/
%if %have_scl_utils == 0
pushd %{buildroot}%{_root_mandir}/man7/
ln -s ./%{?scl_name}.7.gz gcc-toolset-%{gts_ver}-env.7.gz
popd
%endif
# This trigger is used to decide which version of the annobin plugin for gcc
# should be used. See comments in the script for full details.
%if %gts_only_gcc_binutils == 0
%triggerin runtime -- %{scl_prefix}annobin-plugin-gcc %{scl_prefix}gcc-plugin-annobin
%{rrcdir}/gts-annobin-plugin-select.sh %{_scl_root}
%end
# We also trigger when annobin is uninstalled. This allows us to switch
# over to the gcc generated version of the plugin. It does not matter if
# gcc is uninstalled, since if that happens the plugin cannot be used.
%triggerpostun runtime -- %{scl_prefix}annobin-plugin-gcc
%{rrcdir}/gts-annobin-plugin-select.sh %{_scl_root}
%end
%endif
%files
%doc README
%if %have_scl_utils
%{_root_mandir}/man7/%{?scl_name}.*
%endif
%files runtime
%{_root_sysconfdir}/rpm/macros.%{scl}-enable
%if %have_scl_utils
%if %gts_only_gcc_binutils == 0
%attr(0755,-,-) %{rrcdir}/gts-annobin-plugin-select.sh
%dir %{_datadir}/appdata
%endif
%scl_files
%attr(0644,root,root) %verify(not md5 size mtime) %ghost %config(missingok,noreplace) %{_sysconfdir}/selinux-equiv.created
%dir %{_scl_root}/etc/alternatives
%else
%{_root_mandir}/man7/%{?scl_name}.*
%{_root_mandir}/man7/gcc-toolset-%{gts_ver}-env.*
%{_root_bindir}/gcc-toolset-%{gts_ver}-env
%{_root_prefix}/lib/gcc-toolset/%{gts_ver}-env.source
%endif
%if %have_scl_utils
%post runtime
if [ ! -f %{_sysconfdir}/selinux-equiv.created ]; then
/usr/sbin/semanage fcontext -a -e / %{_scl_root}
restorecon -R %{_scl_root}
touch %{_sysconfdir}/selinux-equiv.created
fi
%preun runtime
[ $1 = 0 ] && rm -f %{_sysconfdir}/selinux-equiv.created || :
%postun runtime
if [ $1 = 0 ]; then
/usr/sbin/semanage fcontext -d %{_scl_root}
[ -d %{_scl_root} ] && restorecon -R %{_scl_root} || :
fi
%endif
%if %have_scl_utils == 0
%files devel
%{_root_sysconfdir}/rpm/macros.%{scl}-build
%endif
%changelog
* Tue May 26 2026 Marek Polacek <polacek@redhat.com> - 16.0-0
- new package (RHEL-160026)

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# Environment wrapper for GCC Toolset %{gts_ver}
source %{_root_prefix}/lib/gcc-toolset/%{gts_ver}-env.source
if [ -z $1 ]; then
cmd="/bin/sh"
else
cmd=$*
fi
exec $cmd

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#!/usr/bin/sh
# This is a script to switch the symlinks in a GTS gcc's plugin
# directory so that they select either the GTS-annobin provided
# plugin or the GTS-gcc provided plugin.
# Author: Nick Clifton <nickc@redhat.com>
# Copyright (c) 2021-2022 Red Hat.
#
# This is free software; you can redistribute it and/or modify it
# under the terms of the GNU General Public License as published
# by the Free Software Foundation; either version 2, or (at your
# option) any later version.
# It is distributed in the hope that it will be useful, but
# WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# Usage:
# gts-annobin-plugin-select scl_root
#
# Set this variable to non-zero to enable the generation of debugging
# messages.
debug=0
if test "x$1" = "x" ;
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Must provide a root directory"
fi
exit 1
else
scl_root=$1
fi
# This script is similar to the redhat-annobin-plugin-select.sh script which
# is part of the redhat-rpm-config package. That scripts decides between two
# versions of the annobin plugin for the system compiler and stores it choice
# in a symlink in the /usr/lib/rpm/redhat directory. The choice eventually
# resolves into the system gcc attempting to load either a plugin called
# annobin.so or a plugin called gcc-annobin.so.
# In a GTS environment the choice made by redhat-annobin-plugin-select.sh
# might not be appropriate (or even possible). The choice cannot be changed
# because the system compilation environment must remain instact. So instead
# the GTS versions of gcc and annobin install plugins called gts-annobin.so
# and gts-gcc-annobin.so (into the GTS gcc's plugin directory) and this script
# creates a pair of symlinks called annobin.so and gcc-annobin.so. In this
# way the decision made by redhat-annobin-plugin-select.sh is overridden
# without affecting any system files.
# We cannot be sure that this script will run inside a GTS enabled shell,
# so we have to use absolute paths.
gts_gcc=$scl_root/usr/bin/gcc
if [ ! -x $gts_gcc ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Could not find gcc. Expected: $gts_gcc"
fi
exit 0
fi
# This is where the annobin package stores the information on the version
# of gcc that built the annobin plugin.
aver=`$gts_gcc --print-file-name=plugin`/annobin-plugin-version-info
# This is where the gcc package stores its version information.
gver=`$gts_gcc --print-file-name=rpmver`
aplugin=`$gts_gcc --print-file-name=plugin`/gts-annobin.so.0.0.0
gplugin=`$gts_gcc --print-file-name=plugin`/gts-gcc-annobin.so.0.0.0
install_annobin_version=0
install_gcc_version=0
if [ -f $aplugin ]
then
if [ -f $gplugin ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Both plugins exist, checking version information"
fi
if [ -f $gver ]
then
if [ -f $aver ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Both plugin version files exist - comparing..."
fi
# Get the first line from the version info files. This is just in
# case there are extra lines in the files.
avers=`head --lines=1 $aver`
gvers=`head --lines=1 $gver`
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Annobin plugin built by gcc $avers"
echo " gts-annobin-plugin-select: GCC plugin built by gcc $gvers"
fi
# If both plugins were built by the same version of gcc then select
# the one from the annobin package (in case it is built from newer
# sources). If the plugin builder versions differ, select the gcc
# built version instead. This assumes that the gcc built version
# always matches the installed gcc, which should be true.
if [ $avers = $gvers ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Both plugins built by the same compiler - using annobin-built plugin"
fi
install_annobin_version=1
else
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Versions differ - using gcc-built plugin"
fi
install_gcc_version=1
fi
else
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Annobin version file does not exist, using gcc-built plugin"
fi
install_gcc_version=1
fi
else
if [ -f $aver ]
then
# FIXME: This is suspicious. If the installed GCC does not supports plugins
# then enabling the annobin plugin will not work.
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: GCC plugin version file does not exist, using annobin-built plugin"
fi
install_annobin_version=1
else
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Neither version file exists - playing safe and using gcc-built plugin"
echo " gts-annobin-plugin-select: Note: expected to find $aver and/or $gver"
fi
install_gcc_version=1
fi
fi
else
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Only the annobin plugin exists - using that"
fi
install_annobin_version=1
fi
else
if [ -f $gplugin ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Only the gcc plugin exists - using that"
fi
install_gcc_version=1
else
aplugin=`$gts_gcc --print-file-name=plugin`/annobin.so.0.0.0
if [ -f $aplugin ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Original annobin plugin exists - renaming"
echo " gts-annobin-plugin-select: Using renamed original annobin plugin"
fi
pushd `$gts_gcc --print-file-name=plugin` > /dev/null
mv annobin.so.0.0.0 gts-annobin.so.0.0.0
popd > /dev/null
install_annobin_version=1
else
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Neither plugin exists - playing safe and not changing anything"
echo " gts-annobin-plugin-select: Note: expected to find $aplugin and/or $gplugin"
fi
fi
fi
fi
if [ $install_annobin_version -eq 1 ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Setting symlinks for the annobin version of the plugin"
fi
pushd `$gts_gcc --print-file-name=plugin` > /dev/null
rm -f gcc-annobin.so.0.0.0 annobin.so.0.0.0 gcc-annobin.so annobin.so
ln -s gts-annobin.so.0.0.0 annobin.so
ln -s gts-annobin.so.0.0.0 gcc-annobin.so
ln -s gts-annobin.so.0.0.0 annobin.so.0.0.0
ln -s gts-annobin.so.0.0.0 gcc-annobin.so.0.0.0
popd > /dev/null
else if [ $install_gcc_version -eq 1 ]
then
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: Setting symlinks for the gcc version of the plugin"
fi
pushd `$gts_gcc --print-file-name=plugin` > /dev/null
rm -f gcc-annobin.so.0.0.0 annobin.so.0.0.0 gcc-annobin.so annobin.so
ln -s gts-gcc-annobin.so.0.0.0 annobin.so
ln -s gts-gcc-annobin.so.0.0.0 gcc-annobin.so
ln -s gts-gcc-annobin.so.0.0.0 annobin.so.0.0.0
ln -s gts-gcc-annobin.so.0.0.0 gcc-annobin.so.0.0.0
popd > /dev/null
else
if [ $debug -eq 1 ]
then
echo " gts-annobin-plugin-select: NOT CHANGING SYMLINKS"
fi
fi
fi

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# scl-utils RPM macros
#
# Copyright (C) 2012 Red Hat, Inc.
# Written by Jindrich Novy <jnovy@redhat.com>.
%define scl_debug() %{expand:
%define old_debug %{lua:print(rpm.expand("%{debug_package}"):len())}
%undefine _debugsource_packages
%global debug_package %{expand:
%if "%{?old_debug}" == "0"
%{expand: %{nil}}
%else
%if "%{?scl}%{!?scl:0}" == "%{pkg_name}"
%{expand: %{nil}}
%else
%ifnarch noarch
%package debuginfo
Summary: Debug information for package %{name}
Group: Development/Debug
AutoReqProv: 0
%{lua:
debuginfo=tonumber(rpm.expand("%{old_debug}"))
if debuginfo > 0 then
rpm.define("__debug_package 1")
end
}
%description debuginfo
This package provides debug information for package %{name}.
Debug information is useful when developing applications that use this
package or when debugging this package.
%files debuginfo -f debugfiles.list
%defattr(-,root,root)
%endif
%endif
%endif
%{nil}}}
%define scl_prefix() %{?scl:%(if [ "%1" = "%%1" ]; then echo "%{scl}-"; else echo "%1-"; fi)}%{!?scl:%{nil}}
%define scl_package() %{expand:%{!?_root_prefix:
%global pkg_name %1
%global scl_name %{scl}
%global scl_runtime %{scl}-runtime
%global scl_basedir /opt
%{!?scl_vendor: %global scl_vendor rh}
%{!?_scl_prefix: %global _scl_prefix %{scl_basedir}/%{scl_vendor}}
%global _scl_scripts %{_scl_prefix}/%{scl}
%global _scl_root %{_scl_prefix}/%{scl}/root
%global _root_prefix %{_prefix}
%global _root_exec_prefix %{_root_prefix}
%global _root_bindir %{_exec_prefix}/bin
%global _root_sbindir %{_exec_prefix}/sbin
%global _root_libexecdir %{_exec_prefix}/libexec
%global _root_datadir %{_prefix}/share
%global _root_sysconfdir %{_sysconfdir}
%global _root_sharedstatedir %{_sharedstatedir}
%global _root_localstatedir %{_localstatedir}
%global _root_libdir %{_exec_prefix}/%{_lib}
%global _root_includedir %{_prefix}/include
%global _root_infodir %{_datadir}/info
%global _root_mandir %{_datadir}/man
%global _root_initddir %{_sysconfdir}/rc.d/init.d
%global _prefix %{_scl_root}/usr
%global _exec_prefix %{_prefix}
%global _bindir %{_exec_prefix}/bin
%global _sbindir %{_exec_prefix}/sbin
%global _libexecdir %{_exec_prefix}/libexec
%global _datadir %{_prefix}/share
%global _sysconfdir %{_scl_root}/etc
%{?nfsmountable: %global _sysconfdir %{_root_sysconfdir}%{_scl_prefix}/scls/%{scl}}
%{?rh_layout: %global _sysconfdir %{_root_sysconfdir}%{_scl_prefix}/%{scl}}
%global _sharedstatedir %{_scl_root}/var/lib
%{?nfsmountable: %global _sharedstatedir %{_root_localstatedir}%{_scl_prefix}/scls/%{scl}/lib}
%{?rh_layout: %global _sharedstatedir %{_root_localstatedir}%{_scl_prefix}/%{scl}/lib}
%global _localstatedir %{_scl_root}/var
%{?nfsmountable: %global _localstatedir %{_root_localstatedir}%{_scl_prefix}/scls/%{scl}}
%{?rh_layout: %global _localstatedir %{_root_localstatedir}%{_scl_prefix}/%{scl}}
%global _libdir %{_exec_prefix}/%{_lib}
%global _includedir %{_prefix}/include
%global _infodir %{_datadir}/info
%global _mandir %{_datadir}/man
%global _docdir %{_datadir}/doc
%global _defaultdocdir %{_docdir}
}
%{?scl_dependency_generators:%scl_dependency_generators}
%global scl_pkg_name %{scl}-%{pkg_name}
%scl_debug
%global __os_install_post %{expand:
/usr/lib/rpm/brp-compress %{_scl_root}/usr
%{!?__debug_package:/usr/lib/rpm/brp-strip %{__strip}
/usr/lib/rpm/brp-strip-comment-note %{__strip} %{__objdump}
}
/usr/lib/rpm/brp-strip-static-archive %{__strip}
[ -f /usr/lib/rpm/redhat/brp-python-hardlink ] && /usr/lib/rpm/redhat/brp-python-hardlink || /usr/lib/rpm/brp-python-hardlink
%{nil}}
%if "%{?scl}%{!?scl:0}" == "%{pkg_name}"
%endif
%{?scl_package_override:%scl_package_override}
}
%define scl_require() %{_scl_prefix}/%1/enable, %1
%define scl_require_package() %1-%2
%define scl_enable_script() %{expand:
cat >> %{buildroot}%{_scl_scripts}/enable << 'EOF'
eval `/usr/bin/modulecmd bash load %{scl}`
EOF
}

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plans/tier0.fmf Normal file
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@ -0,0 +1,29 @@
# Tier 0 test plan. It's actually Tier 1
# - limited to its public part
# - executed on the architecture at hand
# When run by osci.tier0 on CentOS Stream or RHEL, it receives the following
# context:
# arch=x86_64 (the architecture at hand, currently OSCI uses just x86_64)
# distro=rhel<M>.<m> (even for CentOS Stream builds)
# trigger=build
summary: Tier 0 test plan
context:
component: gcc-toolset-16
discover:
- name: collect_info
how: shell
tests:
- name: /info/rpms
test: rpm -qa --last
- name: public_tests
how: fmf
url: https://gitlab.com/redhat/centos-stream/tests/gcc-toolset-metapackage.git
filter: tier:1
execute:
how: tmt
prepare+:
how: shell
environment+:
COLLECTIONS: gcc-toolset-16
WITH_SCL: "scl enable gcc-toolset-16"

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