generic-poky/meta/classes/base.bbclass

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BB_DEFAULT_TASK ?= "build"
CLASSOVERRIDE ?= "class-target"
inherit patch
inherit staging
inherit mirrors
inherit utils
inherit utility-tasks
inherit metadata_scm
logging: add bb* logging mechanisms for bash recipe functions The following logging mechanisms are to be used in bash functions of recipes. They are intended to map one to one in intention and output format with the python recipe logging functions of a similar naming convention: bb.plain(), bb.note(), etc. For the time being, all of these print only to the task logs. Future enhancements may integrate these calls with the bitbake logging infrastructure, allowing for printing to the console as appropriate. The interface and intention statements reflect that future goal. Once it is in place, no changes will be necessary to recipes using these logging mechanisms. I opted to write new functions instead of modifying the oe* logging functions from base.bbclass (and utils.bbclass in oe) for a couple reasons. First, one of my goals was to generate a uniform logging API between bash and python in recipes. Second, there are no users of oe* logging in meta (oe-core) or meta-yocto, while several oe recipes do use them. I wanted to make a clean start with the freedom to change behavior without forcing the oe recipes to change or experience unexpected logging changes. Eventually, the oe recipes can be migrated to the new bb* logging routines and the existing oe* routines can be retired (deleted). (From OE-Core rev: 7cb3f0206619b725e404282fa7a3ac50b4609f1e) Signed-off-by: Darren Hart <dvhart@linux.intel.com> Cc: Chris Larson <clarson@kergoth.com> Signed-off-by: Richard Purdie <richard.purdie@linuxfoundation.org>
2011-04-22 16:25:23 +00:00
inherit logging
OE_IMPORTS += "os sys time oe.path oe.utils oe.data oe.package oe.packagegroup oe.sstatesig oe.lsb oe.cachedpath"
OE_IMPORTS[type] = "list"
def oe_import(d):
import sys
bbpath = d.getVar("BBPATH", True).split(":")
sys.path[0:0] = [os.path.join(dir, "lib") for dir in bbpath]
def inject(name, value):
"""Make a python object accessible from the metadata"""
if hasattr(bb.utils, "_context"):
bb.utils._context[name] = value
else:
__builtins__[name] = value
import oe.data
for toimport in oe.data.typed_value("OE_IMPORTS", d):
imported = __import__(toimport)
inject(toimport.split(".", 1)[0], imported)
python oe_import_eh () {
oe_import(e.data)
e.data.setVar("NATIVELSBSTRING", lsb_distro_identifier(e.data))
}
addhandler oe_import_eh
oe_import_eh[eventmask] = "bb.event.ConfigParsed"
def lsb_distro_identifier(d):
adjust = d.getVar('LSB_DISTRO_ADJUST', True)
adjust_func = None
if adjust:
try:
adjust_func = globals()[adjust]
except KeyError:
pass
return oe.lsb.distro_identifier(adjust_func)
die() {
bbfatal "$*"
}
oe_runmake() {
bbnote ${MAKE} ${EXTRA_OEMAKE} "$@"
${MAKE} ${EXTRA_OEMAKE} "$@" || die "oe_runmake failed"
}
def base_dep_prepend(d):
#
# Ideally this will check a flag so we will operate properly in
# the case where host == build == target, for now we don't work in
# that case though.
#
deps = ""
# INHIBIT_DEFAULT_DEPS doesn't apply to the patch command. Whether or not
# we need that built is the responsibility of the patch function / class, not
# the application.
if not d.getVar('INHIBIT_DEFAULT_DEPS'):
if (d.getVar('HOST_SYS', True) != d.getVar('BUILD_SYS', True)):
deps += " virtual/${TARGET_PREFIX}gcc virtual/${TARGET_PREFIX}compilerlibs virtual/libc "
return deps
BASEDEPENDS = "${@base_dep_prepend(d)}"
DEPENDS_prepend="${BASEDEPENDS} "
FILESPATH = "${@base_set_filespath(["${FILE_DIRNAME}/${BP}", "${FILE_DIRNAME}/${BPN}", "${FILE_DIRNAME}/files"], d)}"
# THISDIR only works properly with imediate expansion as it has to run
# in the context of the location its used (:=)
THISDIR = "${@os.path.dirname(d.getVar('FILE', True))}"
def extra_path_elements(d):
path = ""
elements = (d.getVar('EXTRANATIVEPATH', True) or "").split()
for e in elements:
path = path + "${STAGING_BINDIR_NATIVE}/" + e + ":"
return path
PATH_prepend = "${@extra_path_elements(d)}"
addtask fetch
do_fetch[dirs] = "${DL_DIR}"
do_fetch[file-checksums] = "${@bb.fetch.get_checksum_file_list(d)}"
python base_do_fetch() {
src_uri = (d.getVar('SRC_URI', True) or "").split()
if len(src_uri) == 0:
return
localdata = bb.data.createCopy(d)
bb.data.update_data(localdata)
try:
fetcher = bb.fetch2.Fetch(src_uri, localdata)
fetcher.download()
except bb.fetch2.BBFetchException as e:
raise bb.build.FuncFailed(e)
}
addtask unpack after do_fetch
do_unpack[dirs] = "${WORKDIR}"
do_unpack[cleandirs] = "${S}/patches"
python base_do_unpack() {
src_uri = (d.getVar('SRC_URI', True) or "").split()
if len(src_uri) == 0:
return
localdata = bb.data.createCopy(d)
bb.data.update_data(localdata)
rootdir = localdata.getVar('WORKDIR', True)
try:
fetcher = bb.fetch2.Fetch(src_uri, localdata)
fetcher.unpack(rootdir)
except bb.fetch2.BBFetchException as e:
raise bb.build.FuncFailed(e)
}
def pkgarch_mapping(d):
# Compatibility mappings of TUNE_PKGARCH (opt in)
if d.getVar("PKGARCHCOMPAT_ARMV7A", True):
if d.getVar("TUNE_PKGARCH", True) == "armv7a-vfp-neon":
d.setVar("TUNE_PKGARCH", "armv7a")
def preferred_ml_updates(d):
# If any PREFERRED_PROVIDER or PREFERRED_VERSION are set,
# we need to mirror these variables in the multilib case;
multilibs = d.getVar('MULTILIBS', True) or ""
if not multilibs:
return
prefixes = []
for ext in multilibs.split():
eext = ext.split(':')
if len(eext) > 1 and eext[0] == 'multilib':
prefixes.append(eext[1])
versions = []
providers = []
for v in d.keys():
if v.startswith("PREFERRED_VERSION_"):
versions.append(v)
if v.startswith("PREFERRED_PROVIDER_"):
providers.append(v)
for v in versions:
val = d.getVar(v, False)
pkg = v.replace("PREFERRED_VERSION_", "")
if pkg.endswith(("-native", "-crosssdk")) or pkg.startswith(("nativesdk-", "virtual/nativesdk-")):
continue
if 'cross-canadian' in pkg:
for p in prefixes:
localdata = bb.data.createCopy(d)
override = ":virtclass-multilib-" + p
localdata.setVar("OVERRIDES", localdata.getVar("OVERRIDES", False) + override)
bb.data.update_data(localdata)
newname = localdata.expand(v)
if newname != v:
newval = localdata.expand(val)
d.setVar(newname, newval)
# Avoid future variable key expansion
vexp = d.expand(v)
if v != vexp and d.getVar(v, False):
d.renameVar(v, vexp)
continue
for p in prefixes:
newname = "PREFERRED_VERSION_" + p + "-" + pkg
if not d.getVar(newname, False):
d.setVar(newname, val)
for prov in providers:
val = d.getVar(prov, False)
pkg = prov.replace("PREFERRED_PROVIDER_", "")
if pkg.endswith(("-native", "-crosssdk")) or pkg.startswith(("nativesdk-", "virtual/nativesdk-")):
continue
if 'cross-canadian' in pkg:
for p in prefixes:
localdata = bb.data.createCopy(d)
override = ":virtclass-multilib-" + p
localdata.setVar("OVERRIDES", localdata.getVar("OVERRIDES", False) + override)
bb.data.update_data(localdata)
newname = localdata.expand(prov)
if newname != prov:
newval = localdata.expand(val)
d.setVar(newname, newval)
# Avoid future variable key expansion
provexp = d.expand(prov)
if prov != provexp and d.getVar(prov, False):
d.renameVar(prov, provexp)
continue
virt = ""
if pkg.startswith("virtual/"):
pkg = pkg.replace("virtual/", "")
virt = "virtual/"
for p in prefixes:
if pkg != "kernel":
val = p + "-" + val
# implement variable keys
localdata = bb.data.createCopy(d)
override = ":virtclass-multilib-" + p
localdata.setVar("OVERRIDES", localdata.getVar("OVERRIDES", False) + override)
bb.data.update_data(localdata)
newname = localdata.expand(prov)
if newname != prov and not d.getVar(newname, False):
d.setVar(newname, localdata.expand(val))
# implement alternative multilib name
newname = localdata.expand("PREFERRED_PROVIDER_" + virt + p + "-" + pkg)
if not d.getVar(newname, False):
d.setVar(newname, val)
# Avoid future variable key expansion
provexp = d.expand(prov)
if prov != provexp and d.getVar(prov, False):
d.renameVar(prov, provexp)
mp = (d.getVar("MULTI_PROVIDER_WHITELIST", True) or "").split()
extramp = []
for p in mp:
if p.endswith(("-native", "-crosssdk")) or p.startswith(("nativesdk-", "virtual/nativesdk-")) or 'cross-canadian' in p:
continue
virt = ""
if p.startswith("virtual/"):
p = p.replace("virtual/", "")
virt = "virtual/"
for pref in prefixes:
extramp.append(virt + pref + "-" + p)
d.setVar("MULTI_PROVIDER_WHITELIST", " ".join(mp + extramp))
def get_layers_branch_rev(d):
layers = (d.getVar("BBLAYERS", True) or "").split()
layers_branch_rev = ["%-17s = \"%s:%s\"" % (os.path.basename(i), \
base_get_metadata_git_branch(i, None).strip(), \
base_get_metadata_git_revision(i, None)) \
for i in layers]
i = len(layers_branch_rev)-1
p1 = layers_branch_rev[i].find("=")
s1 = layers_branch_rev[i][p1:]
while i > 0:
p2 = layers_branch_rev[i-1].find("=")
s2= layers_branch_rev[i-1][p2:]
if s1 == s2:
layers_branch_rev[i-1] = layers_branch_rev[i-1][0:p2]
i -= 1
else:
i -= 1
p1 = layers_branch_rev[i].find("=")
s1= layers_branch_rev[i][p1:]
return layers_branch_rev
BUILDCFG_FUNCS ??= "buildcfg_vars get_layers_branch_rev buildcfg_neededvars"
BUILDCFG_FUNCS[type] = "list"
def buildcfg_vars(d):
statusvars = oe.data.typed_value('BUILDCFG_VARS', d)
for var in statusvars:
value = d.getVar(var, True)
if value is not None:
yield '%-17s = "%s"' % (var, value)
def buildcfg_neededvars(d):
needed_vars = oe.data.typed_value("BUILDCFG_NEEDEDVARS", d)
pesteruser = []
for v in needed_vars:
val = d.getVar(v, True)
if not val or val == 'INVALID':
pesteruser.append(v)
if pesteruser:
bb.fatal('The following variable(s) were not set: %s\nPlease set them directly, or choose a MACHINE or DISTRO that sets them.' % ', '.join(pesteruser))
addhandler base_eventhandler
base_eventhandler[eventmask] = "bb.event.ConfigParsed bb.event.BuildStarted"
python base_eventhandler() {
if isinstance(e, bb.event.ConfigParsed):
e.data.setVar('BB_VERSION', bb.__version__)
pkgarch_mapping(e.data)
preferred_ml_updates(e.data)
oe.utils.features_backfill("DISTRO_FEATURES", e.data)
oe.utils.features_backfill("MACHINE_FEATURES", e.data)
if isinstance(e, bb.event.BuildStarted):
localdata = bb.data.createCopy(e.data)
bb.data.update_data(localdata)
statuslines = []
for func in oe.data.typed_value('BUILDCFG_FUNCS', localdata):
g = globals()
if func not in g:
bb.warn("Build configuration function '%s' does not exist" % func)
else:
flines = g[func](localdata)
if flines:
statuslines.extend(flines)
statusheader = e.data.getVar('BUILDCFG_HEADER', True)
bb.plain('\n%s\n%s\n' % (statusheader, '\n'.join(statuslines)))
}
addtask configure after do_patch
do_configure[dirs] = "${S} ${B}"
do_configure[deptask] = "do_populate_sysroot"
base_do_configure() {
:
}
addtask compile after do_configure
do_compile[dirs] = "${S} ${B}"
base_do_compile() {
if [ -e Makefile -o -e makefile -o -e GNUmakefile ]; then
oe_runmake || die "make failed"
else
bbnote "nothing to compile"
fi
}
addtask install after do_compile
do_install[dirs] = "${D} ${S} ${B}"
# Remove and re-create ${D} so that is it guaranteed to be empty
do_install[cleandirs] = "${D}"
base_do_install() {
:
}
base_do_package() {
:
}
addtask build after do_populate_sysroot
do_build = ""
do_build[func] = "1"
do_build[noexec] = "1"
do_build[recrdeptask] += "do_deploy"
do_build () {
:
}
def set_packagetriplet(d):
archs = []
tos = []
tvs = []
archs.append(d.getVar("PACKAGE_ARCHS", True).split())
tos.append(d.getVar("TARGET_OS", True))
tvs.append(d.getVar("TARGET_VENDOR", True))
def settriplet(d, varname, archs, tos, tvs):
triplets = []
for i in range(len(archs)):
for arch in archs[i]:
triplets.append(arch + tvs[i] + "-" + tos[i])
triplets.reverse()
d.setVar(varname, " ".join(triplets))
settriplet(d, "PKGTRIPLETS", archs, tos, tvs)
variants = d.getVar("MULTILIB_VARIANTS", True) or ""
for item in variants.split():
localdata = bb.data.createCopy(d)
overrides = localdata.getVar("OVERRIDES", False) + ":virtclass-multilib-" + item
localdata.setVar("OVERRIDES", overrides)
bb.data.update_data(localdata)
archs.append(localdata.getVar("PACKAGE_ARCHS", True).split())
tos.append(localdata.getVar("TARGET_OS", True))
tvs.append(localdata.getVar("TARGET_VENDOR", True))
settriplet(d, "PKGMLTRIPLETS", archs, tos, tvs)
python () {
import string, re
# Handle PACKAGECONFIG
#
# These take the form:
#
# PACKAGECONFIG ??= "<default options>"
# PACKAGECONFIG[foo] = "--enable-foo,--disable-foo,foo_depends,foo_runtime_depends"
pkgconfigflags = d.getVarFlags("PACKAGECONFIG") or {}
if pkgconfigflags:
pkgconfig = (d.getVar('PACKAGECONFIG', True) or "").split()
pn = d.getVar("PN", True)
mlprefix = d.getVar("MLPREFIX", True)
def expandFilter(appends, extension, prefix):
appends = bb.utils.explode_deps(d.expand(" ".join(appends)))
newappends = []
for a in appends:
if a.endswith("-native") or a.endswith("-cross"):
newappends.append(a)
elif a.startswith("virtual/"):
subs = a.split("/", 1)[1]
newappends.append("virtual/" + prefix + subs + extension)
else:
if a.startswith(prefix):
newappends.append(a + extension)
else:
newappends.append(prefix + a + extension)
return newappends
def appendVar(varname, appends):
if not appends:
return
if varname.find("DEPENDS") != -1:
if pn.startswith("nativesdk-"):
appends = expandFilter(appends, "", "nativesdk-")
if pn.endswith("-native"):
appends = expandFilter(appends, "-native", "")
if mlprefix:
appends = expandFilter(appends, "", mlprefix)
varname = d.expand(varname)
d.appendVar(varname, " " + " ".join(appends))
extradeps = []
extrardeps = []
extraconf = []
for flag, flagval in pkgconfigflags.items():
if flag == "defaultval":
continue
items = flagval.split(",")
num = len(items)
if num > 4:
bb.error("Only enable,disable,depend,rdepend can be specified!")
if flag in pkgconfig:
if num >= 3 and items[2]:
extradeps.append(items[2])
if num >= 4 and items[3]:
extrardeps.append(items[3])
if num >= 1 and items[0]:
extraconf.append(items[0])
elif num >= 2 and items[1]:
extraconf.append(items[1])
appendVar('DEPENDS', extradeps)
appendVar('RDEPENDS_${PN}', extrardeps)
if bb.data.inherits_class('cmake', d):
appendVar('EXTRA_OECMAKE', extraconf)
else:
appendVar('EXTRA_OECONF', extraconf)
# If PRINC is set, try and increase the PR value by the amount specified
princ = d.getVar('PRINC', True)
if princ and princ != "0":
pr = d.getVar('PR', True)
pr_prefix = re.search("\D+",pr)
prval = re.search("\d+",pr)
if pr_prefix is None or prval is None:
bb.error("Unable to analyse format of PR variable: %s" % pr)
nval = int(prval.group(0)) + int(princ)
pr = pr_prefix.group(0) + str(nval) + pr[prval.end():]
d.setVar('PR', pr)
pn = d.getVar('PN', True)
license = d.getVar('LICENSE', True)
if license == "INVALID":
bb.fatal('This recipe does not have the LICENSE field set (%s)' % pn)
if bb.data.inherits_class('license', d):
unmatched_license_flag = check_license_flags(d)
if unmatched_license_flag:
bb.debug(1, "Skipping %s because it has a restricted license not"
" whitelisted in LICENSE_FLAGS_WHITELIST" % pn)
raise bb.parse.SkipPackage("because it has a restricted license not"
" whitelisted in LICENSE_FLAGS_WHITELIST")
# If we're building a target package we need to use fakeroot (pseudo)
# in order to capture permissions, owners, groups and special files
if not bb.data.inherits_class('native', d) and not bb.data.inherits_class('cross', d):
d.setVarFlag('do_configure', 'umask', 022)
d.setVarFlag('do_compile', 'umask', 022)
d.appendVarFlag('do_install', 'depends', ' virtual/fakeroot-native:do_populate_sysroot')
d.setVarFlag('do_install', 'fakeroot', 1)
d.setVarFlag('do_install', 'umask', 022)
d.appendVarFlag('do_package', 'depends', ' virtual/fakeroot-native:do_populate_sysroot')
d.setVarFlag('do_package', 'fakeroot', 1)
d.setVarFlag('do_package', 'umask', 022)
d.setVarFlag('do_package_setscene', 'fakeroot', 1)
d.appendVarFlag('do_package_setscene', 'depends', ' virtual/fakeroot-native:do_populate_sysroot')
d.setVarFlag('do_devshell', 'fakeroot', 1)
d.appendVarFlag('do_devshell', 'depends', ' virtual/fakeroot-native:do_populate_sysroot')
source_mirror_fetch = d.getVar('SOURCE_MIRROR_FETCH', 0)
if not source_mirror_fetch:
need_host = d.getVar('COMPATIBLE_HOST', True)
if need_host:
import re
this_host = d.getVar('HOST_SYS', True)
if not re.match(need_host, this_host):
raise bb.parse.SkipPackage("incompatible with host %s (not in COMPATIBLE_HOST)" % this_host)
need_machine = d.getVar('COMPATIBLE_MACHINE', True)
if need_machine:
import re
compat_machines = (d.getVar('MACHINEOVERRIDES', True) or "").split(":")
for m in compat_machines:
if re.match(need_machine, m):
break
else:
raise bb.parse.SkipPackage("incompatible with machine %s (not in COMPATIBLE_MACHINE)" % d.getVar('MACHINE', True))
bad_licenses = (d.getVar('INCOMPATIBLE_LICENSE', True) or "").split()
check_license = False if pn.startswith("nativesdk-") else True
for t in ["-native", "-cross", "-cross-initial", "-cross-intermediate",
"-crosssdk-intermediate", "-crosssdk", "-crosssdk-initial",
"-cross-canadian-" + d.getVar('TRANSLATED_TARGET_ARCH', True)]:
if pn.endswith(t):
check_license = False
if check_license and bad_licenses:
whitelist = []
for lic in bad_licenses:
for w in ["HOSTTOOLS_WHITELIST_", "LGPLv2_WHITELIST_", "WHITELIST_"]:
whitelist.extend((d.getVar(w + lic, True) or "").split())
spdx_license = return_spdx(d, lic)
if spdx_license:
whitelist.extend((d.getVar('HOSTTOOLS_WHITELIST_%s' % spdx_license, True) or "").split())
if not pn in whitelist:
recipe_license = d.getVar('LICENSE', True)
pkgs = d.getVar('PACKAGES', True).split()
skipped_pkgs = []
unskipped_pkgs = []
for pkg in pkgs:
if incompatible_license(d, bad_licenses, pkg):
skipped_pkgs.append(pkg)
else:
unskipped_pkgs.append(pkg)
all_skipped = skipped_pkgs and not unskipped_pkgs
if unskipped_pkgs:
for pkg in skipped_pkgs:
bb.debug(1, "SKIPPING the package " + pkg + " at do_rootfs because it's " + recipe_license)
d.setVar('LICENSE_EXCLUSION-' + pkg, 1)
for pkg in unskipped_pkgs:
bb.debug(1, "INCLUDING the package " + pkg)
elif all_skipped or incompatible_license(d, bad_licenses):
bb.debug(1, "SKIPPING recipe %s because it's %s" % (pn, recipe_license))
raise bb.parse.SkipPackage("incompatible with license %s" % recipe_license)
srcuri = d.getVar('SRC_URI', True)
# Svn packages should DEPEND on subversion-native
if "svn://" in srcuri:
d.appendVarFlag('do_fetch', 'depends', ' subversion-native:do_populate_sysroot')
# Git packages should DEPEND on git-native
if "git://" in srcuri:
d.appendVarFlag('do_fetch', 'depends', ' git-native:do_populate_sysroot')
# Mercurial packages should DEPEND on mercurial-native
elif "hg://" in srcuri:
d.appendVarFlag('do_fetch', 'depends', ' mercurial-native:do_populate_sysroot')
# OSC packages should DEPEND on osc-native
elif "osc://" in srcuri:
d.appendVarFlag('do_fetch', 'depends', ' osc-native:do_populate_sysroot')
# *.xz should depends on xz-native for unpacking
# Not endswith because of "*.patch.xz;patch=1". Need bb.fetch.decodeurl in future
if '.xz' in srcuri:
d.appendVarFlag('do_unpack', 'depends', ' xz-native:do_populate_sysroot')
# unzip-native should already be staged before unpacking ZIP recipes
if ".zip" in srcuri:
d.appendVarFlag('do_unpack', 'depends', ' unzip-native:do_populate_sysroot')
set_packagetriplet(d)
# 'multimachine' handling
mach_arch = d.getVar('MACHINE_ARCH', True)
pkg_arch = d.getVar('PACKAGE_ARCH', True)
if (pkg_arch == mach_arch):
# Already machine specific - nothing further to do
return
#
# We always try to scan SRC_URI for urls with machine overrides
# unless the package sets SRC_URI_OVERRIDES_PACKAGE_ARCH=0
#
override = d.getVar('SRC_URI_OVERRIDES_PACKAGE_ARCH', True)
if override != '0':
paths = []
fpaths = (d.getVar('FILESPATH', True) or '').split(':')
machine = d.getVar('MACHINE', True)
for p in fpaths:
if os.path.basename(p) == machine and os.path.isdir(p):
paths.append(p)
if len(paths) != 0:
for s in srcuri.split():
if not s.startswith("file://"):
continue
fetcher = bb.fetch2.Fetch([s], d)
local = fetcher.localpath(s)
for mp in paths:
if local.startswith(mp):
#bb.note("overriding PACKAGE_ARCH from %s to %s for %s" % (pkg_arch, mach_arch, pn))
d.setVar('PACKAGE_ARCH', "${MACHINE_ARCH}")
return
packages = d.getVar('PACKAGES', True).split()
for pkg in packages:
pkgarch = d.getVar("PACKAGE_ARCH_%s" % pkg, True)
# We could look for != PACKAGE_ARCH here but how to choose
# if multiple differences are present?
# Look through PACKAGE_ARCHS for the priority order?
if pkgarch and pkgarch == mach_arch:
d.setVar('PACKAGE_ARCH', "${MACHINE_ARCH}")
bb.warn("Recipe %s is marked as only being architecture specific but seems to have machine specific packages?! The recipe may as well mark itself as machine specific directly." % d.getVar("PN", True))
}
addtask cleansstate after do_clean
python do_cleansstate() {
sstate_clean_cachefiles(d)
}
addtask cleanall after do_cleansstate
python do_cleanall() {
src_uri = (d.getVar('SRC_URI', True) or "").split()
if len(src_uri) == 0:
return
localdata = bb.data.createCopy(d)
bb.data.update_data(localdata)
try:
fetcher = bb.fetch2.Fetch(src_uri, localdata)
fetcher.clean()
except bb.fetch2.BBFetchException, e:
raise bb.build.FuncFailed(e)
}
do_cleanall[nostamp] = "1"
EXPORT_FUNCTIONS do_fetch do_unpack do_configure do_compile do_install do_package