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Add a dev-tools/container.rst documentation page for the scripts/container tool. This covers the basic usage with additional information about environment variables and user IDs. It also includes a number of practical examples with a reference to the experimental kernel.org toolchain images. Update MAINTAINERS accordingly with a reference to the added file. Signed-off-by: Guillaume Tucker <gtucker@gtucker.io> Reviewed-by: Onur Özkan <work@onurozkan.dev> Tested-by: Nicolas Schier <nsc@kernel.org> Acked-by: Nicolas Schier <nsc@kernel.org> Link: https://patch.msgid.link/af886533cc5cbdd6ef1d909793b79a1ad42c74ca.1769090419.git.gtucker@gtucker.io Signed-off-by: Nathan Chancellor <nathan@kernel.org>
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228 lines
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.. SPDX-License-Identifier: GPL-2.0-only
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.. Copyright (C) 2025 Guillaume Tucker
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====================
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Containerized Builds
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====================
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The ``container`` tool can be used to run any command in the kernel source tree
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from within a container. Doing so facilitates reproducing builds across
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various platforms, for example when a test bot has reported an issue which
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requires a specific version of a compiler or an external test suite. While
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this can already be done by users who are familiar with containers, having a
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dedicated tool in the kernel tree lowers the barrier to entry by solving common
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problems once and for all (e.g. user id management). It also makes it easier
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to share an exact command line leading to a particular result. The main use
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case is likely to be kernel builds but virtually anything can be run: KUnit,
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checkpatch etc. provided a suitable image is available.
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Options
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=======
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Command line syntax::
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scripts/container -i IMAGE [OPTION]... CMD...
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Available options:
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``-e, --env-file ENV_FILE``
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Path to an environment file to load in the container.
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``-g, --gid GID``
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Group id to use inside the container.
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``-i, --image IMAGE``
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Container image name (required).
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``-r, --runtime RUNTIME``
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Container runtime name. Supported runtimes: ``docker``, ``podman``.
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If not specified, the first one found on the system will be used
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i.e. Podman if present, otherwise Docker.
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``-s, --shell``
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Run the container in an interactive shell.
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``-u, --uid UID``
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User id to use inside the container.
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If the ``-g`` option is not specified, the user id will also be used for
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the group id.
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``-v, --verbose``
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Enable verbose output.
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``-h, --help``
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Show the help message and exit.
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Usage
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=====
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It's entirely up to the user to choose which image to use and the ``CMD``
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arguments are passed directly as an arbitrary command line to run in the
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container. The tool will take care of mounting the source tree as the current
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working directory and adjust the user and group id as needed.
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The container image which would typically include a compiler toolchain is
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provided by the user and selected via the ``-i`` option. The container runtime
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can be selected with the ``-r`` option, which can be either ``docker`` or
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``podman``. If none is specified, the first one found on the system will be
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used while giving priority to Podman. Support for other runtimes may be added
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later depending on their popularity among users.
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By default, commands are run non-interactively. The user can abort a running
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container with SIGINT (Ctrl-C). To run commands interactively with a TTY, the
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``--shell`` or ``-s`` option can be used. Signals will then be received by the
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shell directly rather than the parent ``container`` process. To exit an
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interactive shell, use Ctrl-D or ``exit``.
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.. note::
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The only host requirement aside from a container runtime is Python 3.10 or
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later.
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.. note::
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Out-of-tree builds are not fully supported yet. The ``O=`` option can
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however already be used with a relative path inside the source tree to keep
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separate build outputs. A workaround to build outside the tree is to use
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``mount --bind``, see the examples section further down.
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Environment Variables
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=====================
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Environment variables are not propagated to the container so they have to be
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either defined in the image itself or via the ``-e`` option using an
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environment file. In some cases it makes more sense to have them defined in
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the Containerfile used to create the image. For example, a Clang-only compiler
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toolchain image may have ``LLVM=1`` defined.
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The local environment file is more useful for user-specific variables added
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during development. It is passed as-is to the container runtime so its format
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may vary. Typically, it will look like the output of ``env``. For example::
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INSTALL_MOD_STRIP=1
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SOME_RANDOM_TEXT=One upon a time
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Please also note that ``make`` options can still be passed on the command line,
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so while this can't be done since the first argument needs to be the
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executable::
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scripts/container -i docker.io/tuxmake/korg-clang LLVM=1 make # won't work
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this will work::
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scripts/container -i docker.io/tuxmake/korg-clang make LLVM=1
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User IDs
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========
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This is an area where the behaviour will vary slightly depending on the
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container runtime. The goal is to run commands as the user invoking the tool.
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With Podman, a namespace is created to map the current user id to a different
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one in the container (1000 by default). With Docker, while this is also
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possible with recent versions it requires a special feature to be enabled in
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the daemon so it's not used here for simplicity. Instead, the container is run
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with the current user id directly. In both cases, this will provide the same
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file permissions for the kernel source tree mounted as a volume. The only
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difference is that when using Docker without a namespace, the user id may not
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be the same as the default one set in the image.
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Say, we're using an image which sets up a default user with id 1000 and the
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current user calling the ``container`` tool has id 1234. The kernel source
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tree was checked out by this same user so the files belong to user 1234. With
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Podman, the container will be running as user id 1000 with a mapping to id 1234
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so that the files from the mounted volume appear to belong to id 1000 inside
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the container. With Docker and no namespace, the container will be running
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with user id 1234 which can access the files in the volume but not in the user
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1000 home directory. This shouldn't be an issue when running commands only in
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the kernel tree but it is worth highlighting here as it might matter for
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special corner cases.
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.. note::
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Podman's `Docker compatibility
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<https://podman-desktop.io/docs/migrating-from-docker/managing-docker-compatibility>`__
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mode to run ``docker`` commands on top of a Podman backend is more complex
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and not fully supported yet. As such, Podman will take priority if both
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runtimes are available on the system.
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Examples
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========
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The TuxMake project provides a variety of prebuilt container images available
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on `Docker Hub <https://hub.docker.com/u/tuxmake>`__. Here's the shortest
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example to build a kernel using a TuxMake Clang image::
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scripts/container -i docker.io/tuxmake/korg-clang -- make LLVM=1 defconfig
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scripts/container -i docker.io/tuxmake/korg-clang -- make LLVM=1 -j$(nproc)
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.. note::
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When running a command with options within the container, it should be
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separated with a double dash ``--`` to not confuse them with the
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``container`` tool options. Plain commands with no options don't strictly
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require the double dashes e.g.::
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scripts/container -i docker.io/tuxmake/korg-clang make mrproper
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To run ``checkpatch.pl`` in a ``patches`` directory with a generic Perl image::
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scripts/container -i perl:slim-trixie scripts/checkpatch.pl patches/*
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As an alternative to the TuxMake images, the examples below refer to
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``kernel.org`` images which are based on the `kernel.org compiler toolchains
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<https://mirrors.edge.kernel.org/pub/tools/>`__. These aren't (yet) officially
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available in any public registry but users can build their own locally instead
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using this `experimental repository
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<https://gitlab.com/gtucker/korg-containers>`__ by running ``make
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PREFIX=kernel.org/``.
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To build just ``bzImage`` using Clang::
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scripts/container -i kernel.org/clang -- make bzImage -j$(nproc)
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Same with GCC 15 as a particular version tag::
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scripts/container -i kernel.org/gcc:15 -- make bzImage -j$(nproc)
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For an out-of-tree build, a trick is to bind-mount the destination directory to
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a relative path inside the source tree::
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mkdir -p $HOME/tmp/my-kernel-build
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mkdir -p build
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sudo mount --bind $HOME/tmp/my-kernel-build build
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scripts/container -i kernel.org/gcc -- make mrproper
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scripts/container -i kernel.org/gcc -- make O=build defconfig
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scripts/container -i kernel.org/gcc -- make O=build -j$(nproc)
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To run KUnit in an interactive shell and get the full output::
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scripts/container -s -i kernel.org/gcc:kunit -- \
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tools/testing/kunit/kunit.py \
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run \
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--arch=x86_64 \
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--cross_compile=x86_64-linux-
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To just start an interactive shell::
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scripts/container -si kernel.org/gcc bash
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To build the HTML documentation, which requires the ``kdocs`` image built with
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``make PREFIX=kernel.org/ extra`` as it's not a compiler toolchain::
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scripts/container -i kernel.org/kdocs make htmldocs
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