41a15a9af9
The buildsystem does not install locale files anymore, when TARGET_VENDOR is empty. This regression was introduced by ff01518c6667e1b6e87df4e5a435a701d0f38fa7 (From OE-Core rev: 7d64232f370817c0536412589bd4ed612f214e18) Signed-off-by: Enrico Scholz <enrico.scholz@informatik.tu-chemnitz.de> Signed-off-by: Richard Purdie <richard.purdie@linuxfoundation.org>
476 lines
16 KiB
Text
476 lines
16 KiB
Text
inherit rootfs_${IMAGE_PKGTYPE}
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inherit populate_sdk_base
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TOOLCHAIN_TARGET_TASK += "${PACKAGE_INSTALL}"
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TOOLCHAIN_TARGET_TASK_ATTEMPTONLY += "${PACKAGE_INSTALL_ATTEMPTONLY}"
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POPULATE_SDK_POST_TARGET_COMMAND += "rootfs_install_complementary populate_sdk; "
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inherit gzipnative
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LICENSE = "MIT"
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PACKAGES = ""
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RDEPENDS += "${IMAGE_INSTALL} ${LINGUAS_INSTALL} ${NORMAL_FEATURE_INSTALL} ${ROOTFS_BOOTSTRAP_INSTALL}"
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RRECOMMENDS += "${NORMAL_FEATURE_INSTALL_OPTIONAL}"
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INHIBIT_DEFAULT_DEPS = "1"
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# IMAGE_FEATURES may contain any available package group
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IMAGE_FEATURES ?= ""
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IMAGE_FEATURES[type] = "list"
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# rootfs bootstrap install
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ROOTFS_BOOTSTRAP_INSTALL = "${@base_contains("IMAGE_FEATURES", "package-management", "", "${ROOTFS_PKGMANAGE_BOOTSTRAP}",d)}"
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# packages to install from features
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FEATURE_INSTALL = "${@' '.join(oe.packagegroup.required_packages(oe.data.typed_value('IMAGE_FEATURES', d), d))}"
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FEATURE_INSTALL_OPTIONAL = "${@' '.join(oe.packagegroup.optional_packages(oe.data.typed_value('IMAGE_FEATURES', d), d))}"
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# packages to install from features, excluding dev/dbg/doc/ptest
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NORMAL_FEATURE_INSTALL = "${@' '.join(oe.packagegroup.required_packages(normal_groups(d), d))}"
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NORMAL_FEATURE_INSTALL_OPTIONAL = "${@' '.join(oe.packagegroup.optional_packages(normal_groups(d), d))}"
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def normal_groups(d):
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"""Return all the IMAGE_FEATURES, with the exception of our special package groups"""
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extras = set(['dev-pkgs', 'staticdev-pkgs', 'doc-pkgs', 'dbg-pkgs', 'ptest-pkgs'])
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features = set(oe.data.typed_value('IMAGE_FEATURES', d))
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return features.difference(extras)
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# Define some very basic feature package groups
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SPLASH ?= "psplash"
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PACKAGE_GROUP_splash = "${SPLASH}"
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# Wildcards specifying complementary packages to install for every package that has been explicitly
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# installed into the rootfs
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def complementary_globs(featurevar, d):
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globs = []
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features = set((d.getVar(featurevar, True) or '').split())
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for feature in features:
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if feature == 'dev-pkgs':
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globs.append('*-dev')
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elif feature == 'staticdev-pkgs':
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globs.append('*-staticdev')
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elif feature == 'doc-pkgs':
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globs.append('*-doc')
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elif feature == 'dbg-pkgs':
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globs.append('*-dbg')
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elif feature == 'ptest-pkgs':
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globs.append('*-ptest')
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return ' '.join(globs)
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IMAGE_INSTALL_COMPLEMENTARY = '${@complementary_globs("IMAGE_FEATURES", d)}'
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SDKIMAGE_FEATURES ??= "dev-pkgs dbg-pkgs"
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SDKIMAGE_INSTALL_COMPLEMENTARY = '${@complementary_globs("SDKIMAGE_FEATURES", d)}'
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# "export IMAGE_BASENAME" not supported at this time
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IMAGE_INSTALL ?= ""
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IMAGE_INSTALL[type] = "list"
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IMAGE_BASENAME[export] = "1"
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export PACKAGE_INSTALL ?= "${IMAGE_INSTALL} ${ROOTFS_BOOTSTRAP_INSTALL} ${FEATURE_INSTALL}"
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PACKAGE_INSTALL_ATTEMPTONLY ?= "${FEATURE_INSTALL_OPTIONAL}"
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# Images are generally built explicitly, do not need to be part of world.
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EXCLUDE_FROM_WORLD = "1"
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USE_DEVFS ?= "0"
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PID = "${@os.getpid()}"
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PACKAGE_ARCH = "${MACHINE_ARCH}"
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LDCONFIGDEPEND ?= "ldconfig-native:do_populate_sysroot"
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LDCONFIGDEPEND_libc-uclibc = ""
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do_rootfs[depends] += "makedevs-native:do_populate_sysroot virtual/fakeroot-native:do_populate_sysroot ${LDCONFIGDEPEND}"
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do_rootfs[depends] += "virtual/update-alternatives-native:do_populate_sysroot update-rc.d-native:do_populate_sysroot"
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do_rootfs[recrdeptask] += "do_package"
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IMAGE_TYPE_live = '${@base_contains("IMAGE_FSTYPES", "live", "live", "empty", d)}'
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inherit image-${IMAGE_TYPE_live}
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IMAGE_TYPE_vmdk = '${@base_contains("IMAGE_FSTYPES", "vmdk", "vmdk", "empty", d)}'
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inherit image-${IMAGE_TYPE_vmdk}
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python () {
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deps = " " + imagetypes_getdepends(d)
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d.appendVarFlag('do_rootfs', 'depends', deps)
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deps = ""
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for dep in (d.getVar('EXTRA_IMAGEDEPENDS', True) or "").split():
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deps += " %s:do_populate_sysroot" % dep
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d.appendVarFlag('do_build', 'depends', deps)
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#process IMAGE_FEATURES, we must do this before runtime_mapping_rename
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#Check for replaces image features
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features = set(oe.data.typed_value('IMAGE_FEATURES', d))
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remain_features = features.copy()
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for feature in features:
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replaces = set((d.getVar("IMAGE_FEATURES_REPLACES_%s" % feature, True) or "").split())
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remain_features -= replaces
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#Check for conflict image features
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for feature in remain_features:
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conflicts = set((d.getVar("IMAGE_FEATURES_CONFLICTS_%s" % feature, True) or "").split())
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temp = conflicts & remain_features
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if temp:
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bb.fatal("%s contains conflicting IMAGE_FEATURES %s %s" % (d.getVar('PN', True), feature, ' '.join(list(temp))))
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d.setVar('IMAGE_FEATURES', ' '.join(list(remain_features)))
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# Ensure we have the vendor list for complementary package handling
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ml_vendor_list = ""
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multilibs = d.getVar('MULTILIBS', True) or ""
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for ext in multilibs.split():
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eext = ext.split(':')
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if len(eext) > 1 and eext[0] == 'multilib':
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localdata = bb.data.createCopy(d)
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vendor = localdata.getVar("TARGET_VENDOR_virtclass-multilib-" + eext[1], False)
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ml_vendor_list += " " + vendor
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d.setVar('MULTILIB_VENDORS', ml_vendor_list)
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}
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python image_handler () {
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if not isinstance(e, bb.event.RecipeParsed):
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return
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# If we don't do this we try and run the mapping hooks while parsing which is slow
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# bitbake should really provide something to let us know this...
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if e.data.getVar('BB_WORKERCONTEXT', True) is not None:
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runtime_mapping_rename("PACKAGE_INSTALL", e.data)
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runtime_mapping_rename("PACKAGE_INSTALL_ATTEMPTONLY", e.data)
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}
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addhandler image_handler
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#
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# Get a list of files containing device tables to create.
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# * IMAGE_DEVICE_TABLE is the old name to an absolute path to a device table file
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# * IMAGE_DEVICE_TABLES is a new name for a file, or list of files, seached
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# for in the BBPATH
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# If neither are specified then the default name of files/device_table-minimal.txt
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# is searched for in the BBPATH (same as the old version.)
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#
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def get_devtable_list(d):
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devtable = d.getVar('IMAGE_DEVICE_TABLE', True)
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if devtable != None:
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return devtable
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str = ""
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devtables = d.getVar('IMAGE_DEVICE_TABLES', True)
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if devtables == None:
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devtables = 'files/device_table-minimal.txt'
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for devtable in devtables.split():
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str += " %s" % bb.which(d.getVar('BBPATH', True), devtable)
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return str
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IMAGE_CLASSES ?= "image_types"
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inherit ${IMAGE_CLASSES}
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IMAGE_POSTPROCESS_COMMAND ?= ""
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MACHINE_POSTPROCESS_COMMAND ?= ""
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ROOTFS_POSTPROCESS_COMMAND_prepend = "run_intercept_scriptlets; "
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# some default locales
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IMAGE_LINGUAS ?= "de-de fr-fr en-gb"
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LINGUAS_INSTALL ?= "${@" ".join(map(lambda s: "locale-base-%s" % s, d.getVar('IMAGE_LINGUAS', True).split()))}"
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PSEUDO_PASSWD = "${IMAGE_ROOTFS}"
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do_rootfs[nostamp] = "1"
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do_rootfs[dirs] = "${TOPDIR} ${WORKDIR}/intercept_scripts"
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do_rootfs[lockfiles] += "${IMAGE_ROOTFS}.lock"
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do_rootfs[cleandirs] += "${S} ${WORKDIR}/intercept_scripts"
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do_build[nostamp] = "1"
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# Must call real_do_rootfs() from inside here, rather than as a separate
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# task, so that we have a single fakeroot context for the whole process.
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do_rootfs[umask] = "022"
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run_intercept_scriptlets () {
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if [ -d ${WORKDIR}/intercept_scripts ]; then
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cd ${WORKDIR}/intercept_scripts
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echo "Running intercept scripts:"
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for script in *; do
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if [ "$script" = "*" ]; then break; fi
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echo "> Executing $script"
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chmod +x $script
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./$script
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done
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fi
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}
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fakeroot do_rootfs () {
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#set -x
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# When use the rpm incremental image generation, don't remove the rootfs
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if [ "${INC_RPM_IMAGE_GEN}" != "1" -o "${IMAGE_PKGTYPE}" != "rpm" ]; then
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rm -rf ${IMAGE_ROOTFS}
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elif [ -d ${T}/saved_rpmlib/var/lib/rpm ]; then
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# Move the rpmlib back
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if [ ! -d ${IMAGE_ROOTFS}/var/lib/rpm ]; then
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mkdir -p ${IMAGE_ROOTFS}/var/lib/
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mv ${T}/saved_rpmlib/var/lib/rpm ${IMAGE_ROOTFS}/var/lib/
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fi
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fi
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rm -rf ${MULTILIB_TEMP_ROOTFS}
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mkdir -p ${IMAGE_ROOTFS}
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mkdir -p ${DEPLOY_DIR_IMAGE}
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cp ${COREBASE}/meta/files/deploydir_readme.txt ${DEPLOY_DIR_IMAGE}/README_-_DO_NOT_DELETE_FILES_IN_THIS_DIRECTORY.txt || true
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# If "${IMAGE_ROOTFS}/dev" exists, then the device had been made by
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# the previous build
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if [ "${USE_DEVFS}" != "1" -a ! -r "${IMAGE_ROOTFS}/dev" ]; then
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for devtable in ${@get_devtable_list(d)}; do
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# Always return ture since there maybe already one when use the
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# incremental image generation
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makedevs -r ${IMAGE_ROOTFS} -D $devtable
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done
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fi
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rootfs_${IMAGE_PKGTYPE}_do_rootfs
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insert_feed_uris
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if [ "x${LDCONFIGDEPEND}" != "x" ]; then
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# Run ldconfig on the image to create a valid cache
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# (new format for cross arch compatibility)
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echo executing: ldconfig -r ${IMAGE_ROOTFS} -c new -v
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ldconfig -r ${IMAGE_ROOTFS} -c new -v
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fi
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# (re)create kernel modules dependencies
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# This part is done by kernel-module-* postinstall scripts but if image do
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# not contains modules at all there are few moments in boot sequence with
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# "unable to open modules.dep" message.
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if [ -e ${STAGING_KERNEL_DIR}/kernel-abiversion ]; then
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KERNEL_VERSION=`cat ${STAGING_KERNEL_DIR}/kernel-abiversion`
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mkdir -p ${IMAGE_ROOTFS}/lib/modules/$KERNEL_VERSION
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depmod -a -b ${IMAGE_ROOTFS} -F ${STAGING_KERNEL_DIR}/System.map-$KERNEL_VERSION $KERNEL_VERSION
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fi
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${IMAGE_PREPROCESS_COMMAND}
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${@get_imagecmds(d)}
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${IMAGE_POSTPROCESS_COMMAND}
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${MACHINE_POSTPROCESS_COMMAND}
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}
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insert_feed_uris () {
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echo "Building feeds for [${DISTRO}].."
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for line in ${FEED_URIS}
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do
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# strip leading and trailing spaces/tabs, then split into name and uri
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line_clean="`echo "$line"|sed 's/^[ \t]*//;s/[ \t]*$//'`"
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feed_name="`echo "$line_clean" | sed -n 's/\(.*\)##\(.*\)/\1/p'`"
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feed_uri="`echo "$line_clean" | sed -n 's/\(.*\)##\(.*\)/\2/p'`"
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echo "Added $feed_name feed with URL $feed_uri"
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# insert new feed-sources
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echo "src/gz $feed_name $feed_uri" >> ${IMAGE_ROOTFS}/etc/opkg/${feed_name}-feed.conf
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done
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}
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log_check() {
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for target in $*
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do
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lf_path="`dirname ${BB_LOGFILE}`/log.do_$target.${PID}"
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echo "log_check: Using $lf_path as logfile"
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if test -e "$lf_path"
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then
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${IMAGE_PKGTYPE}_log_check $target $lf_path
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else
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echo "Cannot find logfile [$lf_path]"
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fi
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echo "Logfile is clean"
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done
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}
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MULTILIBRE_ALLOW_REP =. "${base_bindir}|${base_sbindir}|${bindir}|${sbindir}|${libexecdir}|"
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MULTILIB_CHECK_FILE = "${WORKDIR}/multilib_check.py"
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MULTILIB_TEMP_ROOTFS = "${WORKDIR}/multilib"
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multilib_generate_python_file() {
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cat >${MULTILIB_CHECK_FILE} <<EOF
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import sys, os, os.path
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import re,filecmp
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allow_rep=re.compile(re.sub("\|$","","${MULTILIBRE_ALLOW_REP}"))
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error_prompt="Multilib check error:"
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files={}
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dirs=raw_input()
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for dir in dirs.split():
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for root, subfolders, subfiles in os.walk(dir):
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for file in subfiles:
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item=os.path.join(root,file)
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key=str(os.path.join("/",os.path.relpath(item,dir)))
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valid=True;
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if files.has_key(key):
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#check whether the file is allow to replace
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if allow_rep.match(key):
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valid=True
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else:
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if not filecmp.cmp(files[key],item):
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valid=False
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print("%s duplicate files %s %s is not the same\n" % (error_prompt, item, files[key]))
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sys.exit(1)
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#pass the check, add to list
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if valid:
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files[key]=item
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EOF
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}
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multilib_sanity_check() {
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multilib_generate_python_file
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echo $@ | python ${MULTILIB_CHECK_FILE}
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}
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get_split_linguas() {
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for translation in ${IMAGE_LINGUAS}; do
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translation_split=$(echo ${translation} | awk -F '-' '{print $1}')
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echo ${translation}
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echo ${translation_split}
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done | sort | uniq
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}
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rootfs_install_complementary() {
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# Install complementary packages based upon the list of currently installed packages
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# e.g. locales, *-dev, *-dbg, etc. This will only attempt to install these packages,
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# if they don't exist then no error will occur.
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# Note: every backend needs to call this function explicitly after the normal
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# package installation
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# Get list of installed packages
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list_installed_packages arch > ${WORKDIR}/installed_pkgs.txt
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# Apply the globs to all the packages currently installed
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if [ -n "$1" -a "$1" = "populate_sdk" ] ; then
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GLOBS="${SDKIMAGE_INSTALL_COMPLEMENTARY}"
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elif [ -n "$1" ]; then
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GLOBS="$@"
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else
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GLOBS="${IMAGE_INSTALL_COMPLEMENTARY}"
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# Add locales
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SPLIT_LINGUAS=`get_split_linguas`
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PACKAGES_TO_INSTALL=""
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for lang in $SPLIT_LINGUAS ; do
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GLOBS="$GLOBS *-locale-$lang"
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done
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fi
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if [ "$GLOBS" != "" ] ; then
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# Use the magic script to do all the work for us :)
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: > ${WORKDIR}/complementary_pkgs.txt
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for vendor in '${TARGET_VENDOR}' ${MULTILIB_VENDORS} ; do
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oe-pkgdata-util glob ${TMPDIR}/pkgdata $vendor-${TARGET_OS} ${WORKDIR}/installed_pkgs.txt "$GLOBS" >> ${WORKDIR}/complementary_pkgs.txt
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done
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# Install the packages, if any
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sed -i '/^$/d' ${WORKDIR}/complementary_pkgs.txt
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if [ -s ${WORKDIR}/complementary_pkgs.txt ]; then
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echo "Installing complementary packages"
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rootfs_install_packages ${WORKDIR}/complementary_pkgs.txt
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fi
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fi
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# Workaround for broken shell function dependencies
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if false ; then
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get_split_linguas
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fi
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}
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# set '*' as the root password so the images
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# can decide if they want it or not
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zap_root_password () {
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sed 's%^root:[^:]*:%root:*:%' < ${IMAGE_ROOTFS}/etc/passwd >${IMAGE_ROOTFS}/etc/passwd.new
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mv ${IMAGE_ROOTFS}/etc/passwd.new ${IMAGE_ROOTFS}/etc/passwd
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}
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# allow openssh accept login with empty password string
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openssh_allow_empty_password () {
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if [ -e ${IMAGE_ROOTFS}${sysconfdir}/ssh/sshd_config ]; then
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sed -i 's#.*PermitRootLogin.*#PermitRootLogin yes#' ${IMAGE_ROOTFS}${sysconfdir}/ssh/sshd_config
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sed -i 's#.*PermitEmptyPasswords.*#PermitEmptyPasswords yes#' ${IMAGE_ROOTFS}${sysconfdir}/ssh/sshd_config
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fi
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}
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# Turn any symbolic /sbin/init link into a file
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remove_init_link () {
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if [ -h ${IMAGE_ROOTFS}/sbin/init ]; then
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LINKFILE=${IMAGE_ROOTFS}`readlink ${IMAGE_ROOTFS}/sbin/init`
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rm ${IMAGE_ROOTFS}/sbin/init
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cp $LINKFILE ${IMAGE_ROOTFS}/sbin/init
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fi
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}
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make_zimage_symlink_relative () {
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if [ -L ${IMAGE_ROOTFS}/boot/zImage ]; then
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(cd ${IMAGE_ROOTFS}/boot/ && for i in `ls zImage-* | sort`; do ln -sf $i zImage; done)
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fi
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}
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write_image_manifest () {
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rootfs_${IMAGE_PKGTYPE}_write_manifest
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if [ -n "${IMAGE_LINK_NAME}" ]; then
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rm -f ${DEPLOY_DIR_IMAGE}/${IMAGE_LINK_NAME}.manifest
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ln -s ${IMAGE_NAME}.rootfs.manifest ${DEPLOY_DIR_IMAGE}/${IMAGE_LINK_NAME}.manifest
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fi
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}
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# Make login manager(s) enable automatic login.
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# Useful for devices where we do not want to log in at all (e.g. phones)
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set_image_autologin () {
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sed -i 's%^AUTOLOGIN=\"false"%AUTOLOGIN="true"%g' ${IMAGE_ROOTFS}/etc/sysconfig/gpelogin
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}
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# Can be use to create /etc/timestamp during image construction to give a reasonably
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# sane default time setting
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rootfs_update_timestamp () {
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date -u +%4Y%2m%2d%2H%2M >${IMAGE_ROOTFS}/etc/timestamp
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}
|
|
|
|
# Prevent X from being started
|
|
rootfs_no_x_startup () {
|
|
if [ -f ${IMAGE_ROOTFS}/etc/init.d/xserver-nodm ]; then
|
|
chmod a-x ${IMAGE_ROOTFS}/etc/init.d/xserver-nodm
|
|
fi
|
|
}
|
|
|
|
rootfs_trim_schemas () {
|
|
for schema in ${IMAGE_ROOTFS}/etc/gconf/schemas/*.schemas
|
|
do
|
|
# Need this in case no files exist
|
|
if [ -e $schema ]; then
|
|
oe-trim-schemas $schema > $schema.new
|
|
mv $schema.new $schema
|
|
fi
|
|
done
|
|
}
|
|
|
|
EXPORT_FUNCTIONS zap_root_password remove_init_link do_rootfs make_zimage_symlink_relative set_image_autologin rootfs_update_timestamp rootfs_no_x_startup
|
|
|
|
do_fetch[noexec] = "1"
|
|
do_unpack[noexec] = "1"
|
|
do_patch[noexec] = "1"
|
|
do_configure[noexec] = "1"
|
|
do_compile[noexec] = "1"
|
|
do_install[noexec] = "1"
|
|
do_populate_sysroot[noexec] = "1"
|
|
do_package[noexec] = "1"
|
|
do_package_write_ipk[noexec] = "1"
|
|
do_package_write_deb[noexec] = "1"
|
|
do_package_write_rpm[noexec] = "1"
|
|
|
|
addtask rootfs before do_build
|