607 lines
28 KiB
XML
607 lines
28 KiB
XML
<!DOCTYPE appendix PUBLIC "-//OASIS//DTD DocBook XML V4.2//EN"
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"http://www.oasis-open.org/docbook/xml/4.2/docbookx.dtd">
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<appendix id='ref-classes'>
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<title>Reference: Classes</title>
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<para>
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Class files are used to abstract common functionality and share it amongst multiple
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<filename>.bb</filename> files.
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Any metadata usually found in a <filename>.bb</filename> file can also be placed in a class
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file.
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Class files are identified by the extension <filename>.bbclass</filename> and are usually placed
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in a <filename>classes/</filename> directory beneath the
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<filename>meta*/</filename> directory found in the Yocto Project file's area
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Class files can also be pointed to by BUILDDIR (e.g. <filename>build/</filename>)in the same way as
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<filename>.conf</filename> files in the <filename>conf</filename> directory.
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Class files are searched for in <filename>BBPATH</filename>
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using the same method by which <filename>.conf</filename> files are searched.
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</para>
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<para>
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In most cases inheriting the class is enough to enable its features, although
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for some classes you might need to set variables or override some of the
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default behaviour.
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</para>
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<section id='ref-classes-base'>
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<title>The base class - <filename>base.bbclass</filename></title>
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<para>
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The base class is special in that every <filename>.bb</filename>
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file inherits it automatically.
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This class contains definitions for standard basic
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tasks such as fetching, unpacking, configuring (empty by default), compiling
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(runs any <filename>Makefile</filename> present), installing (empty by default) and packaging
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(empty by default).
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These classes are often overridden or extended by other classes
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such as <filename>autotools.bbclass</filename> or <filename>package.bbclass</filename>.
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The class also contains some commonly used functions such as <filename>oe_runmake</filename>.
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</para>
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</section>
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<section id='ref-classes-autotools'>
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<title>Autotooled Packages - <filename>autotools.bbclass</filename></title>
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<para>
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Autotools (<filename>autoconf</filename>, <filename>automake</filename>,
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and <filename>libtool</filename>) bring standardization.
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This class defines a set of tasks (configure, compile etc.) that
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work for all Autotooled packages.
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It should usually be enough to define a few standard variables as documented in the
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<link linkend='usingpoky-extend-addpkg-autotools'>Autotooled Package</link> section
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and then simply <filename>inherit autotools</filename>.
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This class can also work with software that emulates Autotools.
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</para>
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<para>
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It's useful to have some idea of how the tasks defined by this class work
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and what they do behind the scenes.
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<itemizedlist>
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<listitem><para><filename>do_configure</filename> ‐ regenerates the
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configure script (using <filename>autoreconf</filename>) and then launches it
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with a standard set of arguments used during cross-compilation.
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You can pass additional parameters to <filename>configure</filename> through the
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<filename><link linkend='var-EXTRA_OECONF'>EXTRA_OECONF</link></filename> variable.
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</para></listitem>
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<listitem><para><filename>do_compile</filename> ‐ runs <filename>make</filename> with
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arguments that specify the compiler and linker.
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You can pass additional arguments through
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the <filename><link linkend='var-EXTRA_OEMAKE'>EXTRA_OEMAKE</link></filename> variable.
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</para></listitem>
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<listitem><para><filename>do_install</filename> ‐ runs <filename>make install</filename>
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and passes a DESTDIR option, which takes its value from the standard
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<filename><link linkend='var-DESTDIR'>DESTDIR</link></filename> variable.
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</para></listitem>
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</itemizedlist>
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</para>
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</section>
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<section id='ref-classes-update-alternatives'>
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<title>Alternatives - <filename>update-alternatives.bbclass</filename></title>
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<para>
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Several programs can fulfill the same or similar function and be installed with the same name.
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For example, the <filename>ar</filename> command is available from the
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<filename>busybox</filename>, <filename>binutils</filename> and
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<filename>elfutils</filename> packages.
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The <filename>update-alternatives.bbclass</filename> class handles renaming the
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binaries so that multiple packages can be installed without conflicts.
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The <filename>ar</filename> command still works regardless of which packages are installed
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or subsequently removed.
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The class renames the conflicting binary in each package and symlinks the highest
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priority binary during installation or removal of packages.
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</para>
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<para>
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Four variables control this class:
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<itemizedlist>
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<listitem><para><filename>ALTERNATIVE_NAME</filename> ‐ The name of the
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binary that is replaced (<filename>ar</filename> in this example).</para></listitem>
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<listitem><para><filename>ALTERNATIVE_LINK</filename> ‐ The path to
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the resulting binary (<filename>/bin/ar</filename> in this example).</para></listitem>
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<listitem><para><filename>ALTERNATIVE_PATH</filename> ‐ The path to the
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real binary (<filename>/usr/bin/ar.binutils</filename> in this example).</para></listitem>
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<listitem><para><filename>ALTERNATIVE_PRIORITY</filename> ‐ The priority of
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the binary.
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The version with the most features should have the highest priority.</para></listitem>
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</itemizedlist>
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</para>
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<para>
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Currently, the Yocto Project supports only one binary per package.
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</para>
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</section>
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<section id='ref-classes-update-rc.d'>
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<title>Initscripts - <filename>update-rc.d.bbclass</filename></title>
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<para>
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This class uses <filename>update-rc.d</filename> to safely install an
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initialization script on behalf of the package.
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The Yocto Project takes care of details such as making sure the script is stopped before
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a package is removed and started when the package is installed.
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Three variables control this class:
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<filename><link linkend='var-INITSCRIPT_PACKAGES'>INITSCRIPT_PACKAGES</link></filename>,
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<filename><link linkend='var-INITSCRIPT_NAME'>INITSCRIPT_NAME</link></filename> and
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<filename><link linkend='var-INITSCRIPT_PARAMS'>INITSCRIPT_PARAMS</link></filename>.
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See the variable links for details.
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</para>
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</section>
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<section id='ref-classes-binconfig'>
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<title>Binary config scripts - <filename>binconfig.bbclass</filename></title>
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<para>
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Before <filename>pkg-config</filename> had become widespread, libraries shipped shell
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scripts to give information about the libraries and include paths needed
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to build software (usually named <filename>LIBNAME-config</filename>).
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This class assists any recipe using such scripts.
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</para>
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<para>
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During staging, BitBake installs such scripts into the
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<filename>sysroots/</filename> directory.
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BitBake also changes all paths to point into the <filename>sysroots/</filename>
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directory so all builds that use the script will use the correct
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directories for the cross compiling layout.
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</para>
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</section>
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<section id='ref-classes-debian'>
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<title>Debian renaming - <filename>debian.bbclass</filename></title>
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<para>
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This class renames packages so that they follow the Debian naming
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policy (i.e. <filename>eglibc</filename> becomes <filename>libc6</filename>
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and <filename>eglibc-devel</filename> becomes <filename>libc6-dev</filename>.
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</para>
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</section>
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<section id='ref-classes-pkgconfig'>
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<title>Pkg-config - <filename>pkgconfig.bbclass</filename></title>
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<para>
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<filename>pkg-config</filename> brought standardization and this class aims to make its
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integration smooth for all libraries that make use of it.
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</para>
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<para>
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During staging, BitBake installs <filename>pkg-config</filename> data into the
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<filename>sysroots/</filename> directory.
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By making use of sysroot functionality within <filename>pkg-config</filename>,
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this class no longer has to manipulate the files.
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</para>
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</section>
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<section id='ref-classes-src-distribute'>
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<title>Distribution of sources - <filename>src_distribute_local.bbclass</filename></title>
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<para>
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Many software licenses require that source files be provided along with the binaries.
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To simplify this process, two classes were created:
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<filename>src_distribute.bbclass</filename> and
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<filename>src_distribute_local.bbclass</filename>.
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</para>
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<para>
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The results of these classes are <filename>tmp/deploy/source/</filename>
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subdirs with sources sorted by
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<filename><link linkend='var-LICENSE'>LICENSE</link></filename> field.
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If recipes list few licenses (or have entries like "Bitstream Vera"),
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the source archive is placed in each license directory.
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</para>
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<para>
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This class operates using three modes:
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<itemizedlist>
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<listitem><para><emphasis>copy:</emphasis> Copies the files to the
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distribute directory.</para></listitem>
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<listitem><para><emphasis>symlink:</emphasis> Symlinks the files to the
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distribute directory.</para></listitem>
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<listitem><para><emphasis>move+symlink:</emphasis> Moves the files into
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the distribute directory and then symlinks them back.</para></listitem>
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</itemizedlist>
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</para>
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</section>
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<section id='ref-classes-perl'>
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<title>Perl modules - <filename>cpan.bbclass</filename></title>
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<para>
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Recipes for Perl modules are simple.
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These recipes usually only need to point to the source's archive and then inherit the
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proper <filename>.bbclass</filename> file.
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Building is split into two methods depending on which method the module authors used.
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</para>
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<para>
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Modules that use old <filename>Makefile.PL</filename>-based build system require
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<filename>cpan.bbclass</filename> in their recipes.
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</para>
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<para>
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Modules that use <filename>Build.PL</filename>-based build system require
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using <filename>cpan_build.bbclass</filename> in their recipes.
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</para>
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</section>
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<section id='ref-classes-distutils'>
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<title>Python extensions - <filename>distutils.bbclass</filename></title>
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<para>
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Recipes for Python extensions are simple.
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These recipes usually only need to point to the source's archive and then inherit
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the proper <filename>.bbclass</filename> file.
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Building is split into two methods dependling on which method the module authors used.
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</para>
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<para>
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Extensions that use an Autotools-based build system require Autotools and
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<filename>distutils</filename>-based <filename>.bbclasse</filename> files in their recipes.
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</para>
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<para>
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Extensions that use <filename>distutils</filename>-based build systems require
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<filename>distutils.bbclass</filename> in their recipes.
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</para>
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</section>
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<section id='ref-classes-devshell'>
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<title>Developer Shell - <filename>devshell.bbclass</filename></title>
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<para>
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This class adds the <filename>devshell</filename> task.
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Distribution policy dictates whether to include this class as the Yocto Project does.
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See the <link
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linkend='platdev-appdev-devshell'>Development Within a Development Shell</link> section
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for more information about using devshell.
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</para>
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</section>
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<section id='ref-classes-package'>
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<title>Packaging - <filename>package*.bbclass</filename></title>
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<para>
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The packaging classes add support for generating packages from a build's
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output.
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The core generic functionality is in <filename>package.bbclass</filename>.
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The code specific to particular package types is contained in various sub-classes such as
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<filename>package_deb.bbclass</filename>, <filename>package_ipk.bbclass</filename>,
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and <filename>package_rpm.bbclass</filename>.
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Most users will want one or more of these classes.
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</para>
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<para>
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You can control the list of resulting package formats by using the
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<filename><link linkend='var-PACKAGE_CLASSES'>PACKAGE_CLASSES</link></filename>
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variable defined in the <filename>local.conf</filename> configuration file
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found in the Yocto Project file's <filename>conf</filename> directory.
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When defining the variable, you can specify one or more package types.
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Since images are generated from packages, a packaging class is
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needed to enable image generation.
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The first class listed in this variable is used for image generation.
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</para>
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<para>
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The package class you choose can affect build-time performance and has space
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ramifications.
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In general, building a package with RPM takes about thirty percent more time as
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compared to using IPK to build the same or similar package.
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This comparison takes into account a complete build of the package with all
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dependencies previously built.
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The reason for this discrepancy is because the RPM package manager creates and
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processes more metadata than the IPK package manager.
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Consequently, you might consider setting <filename>PACKAGE_CLASSES</filename>
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to "package_ipk" if you are building smaller systems.
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</para>
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<para>
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Keep in mind, however, that RPM starts to provide more abilities than IPK due to
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the fact that it processes more metadata.
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For example, this information includes individual file types, file checksum generation
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and evaluation on install, sparse file support, conflict detection and resolution
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for multilib systems, ACID style upgrade, and repackaging abilities for rollbacks.
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</para>
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<para>
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Another consideration for packages built using the RPM package manager is space.
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For smaller systems, the extra space used for the Berkley Database and the amount
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of metadata can affect your ability to do on-device upgrades.
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</para>
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<para>
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You can find additional information on the effects of the package class at these
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two Yocto Project mailing list links:
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<itemizedlist>
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<listitem><para><ulink url='https://lists.yoctoproject.org/pipermail/poky/2011-May/006362.html'>
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https://lists.yoctoproject.org/pipermail/poky/2011-May/006362.html</ulink></para></listitem>
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<listitem><para><ulink url='https://lists.yoctoproject.org/pipermail/poky/2011-May/006363.html'>
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https://lists.yoctoproject.org/pipermail/poky/2011-May/006363.html</ulink></para></listitem>
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</itemizedlist>
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</para>
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</section>
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<section id='ref-classes-kernel'>
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<title>Building kernels - <filename>kernel.bbclass</filename></title>
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<para>
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This class handles building Linux kernels.
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The class contains code to build all kernel trees.
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All needed headers are staged into the
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<filename><link linkend='var-STAGING_KERNEL_DIR'>STAGING_KERNEL_DIR</link></filename>
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directory to allow out-of-tree module builds using <filename>module.bbclass</filename>.
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</para>
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<para>
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This means that each built kernel module is packaged separately and inter-module
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dependencies are created by parsing the <filename>modinfo</filename> output.
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If all modules are required, then installing the <filename>kernel-modules</filename>
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package installs all packages with modules and various other kernel packages
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such as <filename>kernel-vmlinux</filename>.
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</para>
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<para>
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Various other classes are used by the kernel and module classes internally including
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<filename>kernel-arch.bbclass</filename>, <filename>module_strip.bbclass</filename>,
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<filename>module-base.bbclass</filename>, and <filename>linux-kernel-base.bbclass</filename>.
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</para>
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</section>
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<section id='ref-classes-image'>
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<title>Creating images - <filename>image.bbclass</filename> and <filename>rootfs*.bbclass</filename></title>
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<para>
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These classes add support for creating images in several formats.
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First, the root filesystem is created from packages using
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one of the <filename>rootfs_*.bbclass</filename>
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files (depending on the package format used) and then the image is created.
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</para>
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<para>
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The <filename><link linkend='var-IMAGE_FSTYPES'>IMAGE_FSTYPES</link></filename>
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variable controls the types of images to generate.
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</para>
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<para>
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The <filename><link linkend='var-IMAGE_INSTALL'>IMAGE_INSTALL</link></filename>
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variable controls the list of packages to install into the image.
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</para>
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</section>
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<section id='ref-classes-sanity'>
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<title>Host System sanity checks - <filename>sanity.bbclass</filename></title>
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<para>
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This class checks to see if prerequisite software is present so that
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users can be notified of potential problems that might affect their build.
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The class also performs basic user configuration checks from
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the <filename>local.conf</filename> configuration file to
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prevent common mistakes that cause build failures.
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Distribution policy usually whether to include this class as the Yocto Project does.
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</para>
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</section>
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<section id='ref-classes-insane'>
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<title>Generated output quality assurance checks - <filename>insane.bbclass</filename></title>
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<para>
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This class adds a step to the package generation process that sanity checks the
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packages generated by the Yocto Project.
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A range of checks are performed that check the build's output
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for common problems that show up during runtime.
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Distribution policy usually dictates whether to include this class as the Yocto Project does.
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</para>
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<para>
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You can configure the sanity checks so that specific test failures either raise a warning or
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an error message.
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Typically, failures for new tests generate a warning.
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Subsequent failures for the same test would then generate an error message
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once the metadata is in a known and good condition.
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You use the <filename>WARN_QA</filename> variable to specify tests for which you
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want to generate a warning message on failure.
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You use the <filename>ERROR_QA</filename> variable to specify tests for which you
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want to generate an error message on failure.
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</para>
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<para>
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The following list shows the tests you can list with the <filename>WARN_QA</filename>
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and <filename>ERROR_QA</filename> variables:
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<itemizedlist>
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<listitem><para><emphasis><filename>ldflags:</filename></emphasis>
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Ensures that the binaries were linked with the
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<filename>LDFLAGS</filename> options provided by the build system.
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If this test fails, check that the <filename>LDFLAGS</filename> variable
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is being passed to the linker command.</para></listitem>
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<listitem><para><emphasis><filename>useless-rpaths:</filename></emphasis>
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Checks for dynamic library load paths (rpaths) in the binaries that
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by default on a standard system are searched by the linker (e.g.
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<filename>/lib</filename> and <filename>/usr/lib</filename>).
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While these paths will not cause any breakage, they do waste space and
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are unnecessary.</para></listitem>
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<listitem><para><emphasis><filename>rpaths:</filename></emphasis>
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Checks for rpaths in the binaries that contain build system paths such
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as <filename>TMPDIR</filename>.
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If this test fails, bad <filename>-rpath</filename> options are being
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passed to the linker commands and your binaries have potential security
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issues.</para></listitem>
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<listitem><para><emphasis><filename>dev-so:</filename></emphasis>
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Checks that the <filename>.so</filename> symbolic links are in the
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<filename>-dev</filename> package and not in any of the other packages.
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In general, these symlinks are only useful for development purposes.
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Thus, the <filename>-dev</filename> package is the correct location for
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them.
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Some very rare cases do exist for dynamically loaded modules where
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these symlinks are needed instead in the main package.
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</para></listitem>
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<listitem><para><emphasis><filename>debug-files:</filename></emphasis>
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Checks for <filename>.debug</filename> directories in anything but the
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<filename>-dbg</filename> package.
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The debug files should all be in the <filename>-dbg</filename> package.
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Thus, anything packaged elsewhere is incorrect packaging.</para></listitem>
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<listitem><para><emphasis><filename>arch:</filename></emphasis>
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Checks the Executable and Linkable Format (ELF) type, bit size and endianness
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of any binaries to ensure it matches the target architecture.
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This test fails if any binaries don't match the type since there would be an
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incompatibility.
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Sometimes software, like bootloaders, might need to bypass this check.
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</para></listitem>
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<listitem><para><emphasis><filename>debug-deps:</filename></emphasis>
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Checks that <filename>-dbg</filename> packages only depend on other
|
|
<filename>-dbg</filename> packages and not on any other types of packages,
|
|
which would cause a packaging bug.</para></listitem>
|
|
<listitem><para><emphasis><filename>dev-deps:</filename></emphasis>
|
|
Checks that <filename>-dev</filename> packages only depend on other
|
|
<filename>-dev</filename> packages and not on any other types of packages,
|
|
which would be a packaging bug.</para></listitem>
|
|
<listitem><para><emphasis><filename>pkgconfig:</filename></emphasis>
|
|
Checks <filename>.pc</filename> files for any
|
|
<filename>TMPDIR/WORKDIR</filename> paths.
|
|
Any <filename>.pc</filename> file containing these paths is incorrect
|
|
since <filename>pkg-config</filename> itself adds the correct sysroot prefix
|
|
when the files are accessed.</para></listitem>
|
|
<listitem><para><emphasis><filename>la:</filename></emphasis>
|
|
Checks <filename>.la</filename> files for any <filename>TMPDIR</filename>
|
|
paths.
|
|
Any <filename>.la</filename> file continaing these paths is incorrect since
|
|
<filename>libtool</filename> adds the correct sysroot prefix when using the
|
|
files automatically itself.</para></listitem>
|
|
<listitem><para><emphasis><filename>desktop:</filename></emphasis>
|
|
Runs the <filename>desktop-file-validate</filename> program against any
|
|
<filename>.desktop</filename> files to validate their contents against
|
|
the specification for <filename>.desktop</filename> files.</para></listitem>
|
|
</itemizedlist>
|
|
</para>
|
|
</section>
|
|
|
|
<section id='ref-classes-siteinfo'>
|
|
<title>Autotools configuration data cache - <filename>siteinfo.bbclass</filename></title>
|
|
|
|
<para>
|
|
Autotools can require tests that must execute on the target hardware.
|
|
Since this is not possible in general when cross compiling, site information is
|
|
used to provide cached test results so these tests can be skipped over but
|
|
still make the correct values available.
|
|
The <filename><link linkend='structure-meta-site'>meta/site directory</link></filename>
|
|
contains test results sorted into different categories such as architecture, endianness, and
|
|
the <filename>libc</filename> used.
|
|
Site information provides a list of files containing data relevant to
|
|
the current build in the
|
|
<filename><link linkend='var-CONFIG_SITE'>CONFIG_SITE</link></filename> variable
|
|
that Autotools automatically picks up.
|
|
</para>
|
|
|
|
<para>
|
|
The class also provides variables like
|
|
<filename><link linkend='var-SITEINFO_ENDIANNESS'>SITEINFO_ENDIANNESS</link></filename>
|
|
and <filename><link linkend='var-SITEINFO_BITS'>SITEINFO_BITS</link></filename>
|
|
that can be used elsewhere in the metadata.
|
|
</para>
|
|
|
|
<para>
|
|
Because this class is included from <filename>base.bbclass</filename>, it is always active.
|
|
</para>
|
|
</section>
|
|
|
|
<section id='ref-classes-useradd'>
|
|
<title>Adding Users - <filename>useradd.bbclass</filename></title>
|
|
|
|
<para>
|
|
If you have packages that install files that are owned by custom users or groups,
|
|
you can use this class to specify those packages and associate the users and groups
|
|
with those packages.
|
|
The <filename>meta-skeleton/recipes-skeleton/useradd/useradd-example.bb</filename>
|
|
recipe in the Yocto Project Files provides a simple exmample that shows how to add three
|
|
users and groups to two packages.
|
|
See the <filename>useradd-example.bb</filename> for more information on how to
|
|
use this class.
|
|
</para>
|
|
</section>
|
|
|
|
<section id='ref-classes-others'>
|
|
<title>Other Classes</title>
|
|
|
|
<para>
|
|
Thus far, this appendix has discussed only the most useful and important
|
|
classes.
|
|
However, other classes exist within the <filename>meta/classes</filename> directory
|
|
in the Yocto Project file's directory structure.
|
|
You can examine the <filename>.bbclass</filename> files directly for more
|
|
information.
|
|
</para>
|
|
</section>
|
|
|
|
<!-- Undocumented classes are:
|
|
allarch.bbclass
|
|
binconfig.bbclass
|
|
bootimg.bbclass
|
|
buildstats.bbclass
|
|
ccache.inc
|
|
cmake.bbclass
|
|
cml1.bbclass
|
|
cross.bbclass
|
|
cross-canadian.bbclass
|
|
deploy.bbclass
|
|
distrodata.bbclass
|
|
gconf.bbclass
|
|
gettext.bbclass
|
|
gnome.bbclass
|
|
gtk-doc.bbclass
|
|
gtk-icon-cache.bbclass
|
|
icecc.bbclass
|
|
image-mklibs.bbclass
|
|
image-prelink.bbclass
|
|
image-swab.bbclass
|
|
imagetest-dummy.bbclass
|
|
imagetest-qemu.bbclass
|
|
insserv.bbclass
|
|
lib_package.bbclass
|
|
license.bbclass
|
|
logging.bbclass
|
|
meta.bbclass
|
|
metadata_scm.bbclass
|
|
mirrors.bbclass
|
|
multilib*.bbclass
|
|
native.bbclass
|
|
nativesdk.bbclass
|
|
oelint.bbclass
|
|
own-mirrors.bbclass
|
|
packagedata.bbclass
|
|
packagehistory.bbclass
|
|
patch.bbclass
|
|
perlnative.bbclass
|
|
pkg_distribute.bbclass
|
|
pkg_metainfo.bbclass
|
|
populate_sdk*.bbclass
|
|
prserv.bbclass
|
|
python-dir.bbclass
|
|
qemu.bbclass
|
|
qmake*.bbclass
|
|
qt4*.bbclass
|
|
recipe_sanity.bbclass
|
|
relocatable.bbclass
|
|
rm_work.bbclass
|
|
scons.bbclass
|
|
sdl.bbclass
|
|
setuptools.bbclass
|
|
sip.bbclass
|
|
siteconfig.bbclass
|
|
sourcepkg.bbclass
|
|
sstate.bbclass
|
|
staging.bbclass
|
|
syslinux.bbclass
|
|
task.bbclass
|
|
terminal.bbclass
|
|
tinderclient.bbclass
|
|
toolchain-scripts.bbclass
|
|
typecheck.bbclass
|
|
utility-tasks.bbclass
|
|
utils.bbclass
|
|
-->
|
|
|
|
|
|
</appendix>
|
|
<!--
|
|
vim: expandtab tw=80 ts=4
|
|
-->
|