b3ba1becba
Fbdev backend was deprecated in the Weston 10.0.0 release with
6338dbd581
. Before that, I suggested
already in 2019 to remove it, but it was too soon then. Now it seems the
final voices asking for fbdev to be kept have been satisfied, see the
linked issue.
Fbdev-backend uses a kernel graphics UAPI (fbdev) which is sub-par for a
Wayland compositor: you cannot do GPU accelerated graphics in any
reasonable way, no hotplug support, multi-output support is tedious, and
so on. Most importantly, Linux has deprecated fbdev a long time ago due
to the UAPI fitting modern systems and use cases very poorly, but cannot
get rid of it if any users remain. Let's do here what we can to reduce
fbdev usage.
I am doing color management related additions to libweston which require
adding checks to every backend. One backend less is less churn to write
and review.
Libweston major version has already been bumped to 11, so the next
release will be Weston 11, without fbdev. enum weston_compositor_backend
entries change their numerical values.
Fixes: https://gitlab.freedesktop.org/wayland/weston/-/issues/581
Signed-off-by: Pekka Paalanen <pekka.paalanen@collabora.com>
350 lines
13 KiB
Markdown
350 lines
13 KiB
Markdown
Weston
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======
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![screenshot of skeletal Weston desktop](doc/wayland-screenshot.jpg)
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Weston is the reference implementation of a Wayland compositor, as well as a
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useful environment in and of itself.
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Out of the box, Weston provides a very basic desktop, or a full-featured
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environment for non-desktop uses such as automotive, embedded, in-flight,
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industrial, kiosks, set-top boxes and TVs. It also provides a library allowing
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other projects to build their own full-featured environments on top of Weston's
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core.
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The core focus of Weston is correctness and reliability. Weston aims to be lean
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and fast, but more importantly, to be predictable. Whilst Weston does have known
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bugs and shortcomings, we avoid unknown or variable behaviour as much as
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possible, including variable performance such as occasional spikes in frame
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display time.
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A small suite of example or demo clients are also provided: though they can be
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useful in themselves, their main purpose is to be an example or test case for
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others building compositors or clients.
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If you are after a more mainline desktop experience, the
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[GNOME](https://www.gnome.org) and [KDE](https://www.kde.org) projects provide
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full-featured desktop environments built on the Wayland protocol. Many other
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projects also exist providing Wayland clients and desktop environments: you are
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not limited to just what you can find in Weston.
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Reporting issues and contributing
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=================================
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Weston's development is
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[hosted on freedesktop.org GitLab](https://gitlab.freedesktop.org/wayland/weston/).
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Please also see [the contributing document](CONTRIBUTING.md), which details how
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to make code or non-technical contributions to Weston.
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Building Weston
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===============
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Weston is built using [Meson](https://mesonbuild.com/). Weston often depends
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on the current release versions of
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[Wayland](https://gitlab.freedesktop.org/wayland/wayland) and
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[wayland-protocols](https://cgit.freedesktop.org/wayland/wayland-protocols).
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If necessary, the latest Meson can be installed as a user with:
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$ pip3 install --user meson
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Weston's Meson build does not do autodetection and it defaults to all
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features enabled, which means you likely hit missing dependencies on the first
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try. If a dependency is avoidable through a build option, the error message
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should tell you what option can be used to avoid it. You may need to disable
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several features if you want to avoid certain dependencies.
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$ git clone https://gitlab.freedesktop.org/wayland/weston.git
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$ cd weston
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$ meson build/ --prefix=...
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$ ninja -C build/ install
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$ cd ..
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The `meson` command populates the build directory. This step can
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fail due to missing dependencies. Any build options you want can be added on
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that line, e.g. `meson build/ --prefix=... -Ddemo-clients=false`. All the build
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options can be found in the file [meson_options.txt](meson_options.txt).
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Once the build directory has been successfully populated, you can inspect the
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configuration with `meson configure build/`. If you need to change an
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option, you can do e.g. `meson configure build/ -Ddemo-clients=false`.
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Every push to the Weston master repository and its forks is built using GitLab
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CI. [Reading the configuration](.gitlab-ci.yml) may provide a useful example of
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how to build and install Weston.
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More [detailed documentation on building Weston](https://wayland.freedesktop.org/building.html)
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is available on the Wayland site. There are also more details on
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[how to run and write tests](https://wayland.freedesktop.org/testing.html).
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For building the documentation see [documentation](#documentation).
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Running Weston
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==============
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Once Weston is installed, most users can simply run it by typing `weston`. This
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will launch Weston inside whatever environment you launch it from: when launched
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from a text console, it will take over that console. When launched from inside
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an existing Wayland or X11 session, it will start a 'nested' instance of Weston
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inside a window in that session.
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Help is available by running `weston --help`, or `man weston`, which will list
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the available configuration options and display backends. It can also be
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configured through a file on disk; more information on this can be found through
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`man weston.ini`.
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Documentation
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=============
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To read the Weston documentation online, head over to
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[the Weston website](https://wayland.pages.freedesktop.org/weston/).
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For documenting weston we use [sphinx](http://www.sphinx-doc.org/en/master/)
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together with [breathe](https://breathe.readthedocs.io/en/latest/) that
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understands XMLs databases generated by doxygen. So far, this is a compromise
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until better tools are available in order to remove the doxygen
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dependency. You should be able to install both sphinx and breathe extension
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using pip3 command, or your package manager.
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Doxygen should be available using your distribution package manager.
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Once those are set-up, run `meson` with `-Ddoc=true` option in order to enable
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building the documentation. Installation will place the documentation in the
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prefix's path under datadir (i.e., `share/doc`).
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Adding and improving documentation
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----------------------------------
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For re-generating the documentation a special `docs` target has been added.
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Although first time you build (and subsequently install) weston, you'll see the
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documentation being built, updates to the spinx documentation files or to the
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source files will only be updated when using `docs` target!
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Example:
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~~~~
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$ ninja install # generates and installs the documentation
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# time passes, hack hack, add doc in sources or rST files
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$ ninja install # not sufficient, docs will not be updated
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$ ninja docs && ninja install # run 'docs' then install
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~~~~
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Improving/adding documentation can be done by modifying rST files under
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`doc/sphinx/` directory or by modifying the source code using doxygen
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directives.
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Libweston
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=========
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Libweston is an effort to separate the re-usable parts of Weston into
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a library. Libweston provides most of the boring and tedious bits of
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correctly implementing core Wayland protocols and interfacing with
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input and output systems, so that people who just want to write a new
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"Wayland window manager" (WM) or a small desktop environment (DE) can
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focus on the WM part.
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Libweston was first introduced in Weston 1.12, and is expected to
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continue evolving through many Weston releases before it achieves a
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stable API and feature completeness.
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Libweston's primary purpose is exporting an API for creating Wayland
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compositors. Libweston's secondary purpose is to export the weston_config API
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so that third party plugins and helper programs can read `weston.ini` if they
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want to. However, these two scopes are orthogonal and independent. At no point
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will the compositor functionality use or depend on the weston_config
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functionality.
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API/ABI (in)stability and parallel installability
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-------------------------------------------------
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As libweston's API surface is huge, it is impossible to get it right
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in one go. Therefore developers reserve the right to break the API/ABI and bump
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the major version to signify that. For git snapshots of the master branch, the
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API/ABI can break any time without warning.
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Libweston major can be bumped only once during a development cycle. This should
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happen on the first patch that breaks the API or ABI. Further breaks before the
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next Weston major.0.0 release do not cause a bump. This means that libweston
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API and ABI are allowed to break also after an alpha release, up to the final
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release. However, breaks after alpha should be judged by the usual practices
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for allowing minor features, fixes only, or critical fixes only.
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To make things tolerable for libweston users despite API/ABI breakages,
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different libweston major versions are designed to be perfectly
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parallel-installable. This way external projects can easily depend on a
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particular API/ABI-version. Thus they do not have to fight over which
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ABI-version is installed in a user's system. This allows a user to install many
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different compositors each requiring a different libweston ABI-version without
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tricks or conflicts.
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Note, that versions of Weston itself will not be parallel-installable,
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only libweston is.
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For more information about parallel installability, see
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http://ometer.com/parallel.html
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Versioning scheme
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-----------------
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In order to provide consistent, easy to use versioning, libweston
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follows the rules in the Apache Portable Runtime Project
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http://apr.apache.org/versioning.html.
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The document provides the full details, with the gist summed below:
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- Major - backward incompatible changes.
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- Minor - new backward compatible features.
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- Patch - internal (implementation specific) fixes.
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Weston and libweston have separate version numbers in meson.build. All
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releases are made by the Weston version number. Libweston version number
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matches the Weston version number in all releases except maybe pre-releases.
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Pre-releases have the Weston micro version 91 or greater.
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A pre-release is allowed to install a libweston version greater than the Weston
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version in case libweston major was bumped. In that case, the libweston version
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must be Weston major + 1.
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Pkg-config files are named after libweston major, but carry the Weston version
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number. This means that Weston pre-release 2.1.91 may install libweston-3.pc
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for the future libweston 3.0.0, but the .pc file says the version is still
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2.1.91. When a libweston user wants to depend on the fully stable API and ABI
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of a libweston major, he should use (e.g. for major 3):
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PKG_CHECK_MODULES(LIBWESTON, [libweston-3 >= 3.0.0])
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Depending only on libweston-3 without a specific version number still allows
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pre-releases which might have different API or ABI.
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Forward compatibility
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---------------------
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Inspired by ATK, Qt and KDE programs/libraries, libjpeg-turbo, GDK,
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NetworkManager, js17, lz4 and many others, libweston uses a macro to restrict
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the API visible to the developer - REQUIRE_LIBWESTON_API_VERSION.
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Note that different projects focus on different aspects - upper and/or lower
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version check, default to visible/hidden old/new symbols and so on.
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libweston aims to guard all newly introduced API, in order to prevent subtle
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breaks that a simple recompile (against a newer version) might cause.
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The macro is of the format 0x$MAJOR$MINOR and does not include PATCH version.
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As mentioned in the Versioning scheme section, the latter does not reflect any
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user visible API changes, thus should be not considered part of the API version.
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All new symbols should be guarded by the macro like the example given below:
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~~~~
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#if REQUIRE_LIBWESTON_API_VERSION >= 0x0101
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bool
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weston_ham_sandwich(void);
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#endif
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~~~~
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In order to use the said symbol, the one will have a similar code in their
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configure.ac:
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~~~~
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PKG_CHECK_MODULES(LIBWESTON, [libweston-1 >= 1.1])
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AC_DEFINE(REQUIRE_LIBWESTON_API_VERSION, [0x0101])
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~~~~
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If the user is _not_ interested in forward compatibility, they can use 0xffff
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or similar high value. Yet doing so is not recommended.
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Libweston design goals
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----------------------
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The high-level goal of libweston is to decouple the compositor from
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the shell implementation (what used to be shell plugins).
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Thus, instead of launching 'weston' with various arguments to choose the
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shell, one would launch the shell itself, e.g. 'weston-desktop',
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'weston-ivi', 'orbital', etc. The main executable (the hosting program)
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will implement the shell, while libweston will be used for a fundamental
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compositor implementation.
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Libweston is also intended for use by other project developers who want
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to create new "Wayland WMs".
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Details:
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- All configuration and user interfaces will be outside of libweston.
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This includes command line parsing, configuration files, and runtime
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(graphical) UI.
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- The hosting program (main executable) will be in full control of all
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libweston options. Libweston should not have user settable options
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that would work behind the hosting program's back, except perhaps
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debugging features and such.
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- Signal handling will be outside of libweston.
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- Child process execution and management will be outside of libweston.
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- The different backends (drm, x11, etc) will be an internal
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detail of libweston. Libweston will not support third party
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backends. However, hosting programs need to handle
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backend-specific configuration due to differences in behaviour and
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available features.
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- Renderers will be libweston internal details too, though again the
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hosting program may affect the choice of renderer if the backend
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allows, and maybe set renderer-specific options.
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- plugin design ???
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- xwayland ???
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There are still many more details to be decided.
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For packagers
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-------------
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Always build Weston with --with-cairo=image.
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The Weston project is (will be) intended to be split into several
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binary packages, each with its own dependencies. The maximal split
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would be roughly like this:
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- libweston (minimal dependencies):
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+ headless backend
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+ wayland backend
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- gl-renderer (depends on GL libs etc.)
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- drm-backend (depends on libdrm, libgbm, libudev, libinput, ...)
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- x11-backend (depends of X11/xcb libs)
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- xwayland (depends on X11/xcb libs)
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- rdp-backend (depends on freerdp)
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- weston (the executable, not parallel-installable):
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+ desktop shell
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+ ivi-shell
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+ fullscreen shell
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+ weston-terminal, etc. we install by default
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+ screen-share
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- weston demos (not parallel-installable)
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+ weston-simple-* programs
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+ possibly all the programs we build but do not install by
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default
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- and possibly more...
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Everything should be parallel-installable across libweston major
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ABI-versions (libweston-1.so, libweston-2.so, etc.), except those
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explicitly mentioned.
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Weston's build may not sanely allow this yet, but this is the
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intention.
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