Files
meta-external-toolchain/conf/distro/include/tcmode-external-sourcery.inc
Christopher Larson 6be35fcbd6 tcmode-external-sourcery: s/mkdirhier/utils.mkdirhier/
Signed-off-by: Christopher Larson <kergoth@gmail.com>
2013-10-17 03:17:48 +00:00

192 lines
7.8 KiB
PHP

#
# Configuration to use external Sourcery G++ toolchain
#
EXTERNAL_TOOLCHAIN ?= "UNDEFINED"
# Ensure that pseudo builds both 32 bit and 64 bit binaries, as we need the
# 32 bit pseudo to execute the 32 bit external toolchain binaries without
# errors or warnings.
NO32LIBS ?= "0"
# Don't ship any toolchain binaries in the sdk for the time being
# FIXME: find a way to do this just for the recipes which include those
# binaries. Potentially we could replace the packagegroup with an alternative
# version which includes nothing, or provide a bbclass which filters it out at
# RecipeParsed time.
#TOOLCHAIN_HOST_TASK ?= "nativesdk-packagegroup-sdk-host meta-environment-${TRANSLATED_TARGET_ARCH}"
# Add the external toolchain to the sdk setup script PATH
INHERIT += "toolchain-scripts-external"
localedir = "${exec_prefix}/lib/locale"
CSL_TARGET_SYS_powerpc ?= "powerpc-linux-gnu powerpc-mentor-linux-gnu"
CSL_TARGET_SYS_powerpc64 ?= "powerpc-linux-gnu powerpc-mentor-linux-gnu"
CSL_TARGET_SYS_arm ?= "arm-none-linux-gnueabi arm-mentor-linux-gnueabi"
CSL_TARGET_SYS_mips ?= "mips-linux-gnu mips-mentor-linux-gnu"
CSL_TARGET_SYS_mipsel ?= "mips-linux-gnu mips-mentor-linux-gnu"
CSL_TARGET_SYS_mips64 ?= "mips64-nlm-linux-gnu mips-linux-gnu mips-mentor-linux-gnu"
CSL_TARGET_SYS_x86-64 ?= "i686-pc-linux-gnu i686-mentor-linux-gnu"
CSL_TARGET_SYS_i686 ?= "i686-pc-linux-gnu i686-mentor-linux-gnu"
CSL_TARGET_SYS_i586 ?= "i686-pc-linux-gnu i686-mentor-linux-gnu"
CSL_TARGET_SYS = "${TARGET_SYS}"
def csl_target_sys(d):
toolchain_path = d.getVar('EXTERNAL_TOOLCHAIN', True)
for triplet in d.getVar('CSL_TARGET_SYS', True).split():
gcc = os.path.join(toolchain_path, 'bin', triplet + '-gcc')
if os.path.exists(gcc):
return triplet + '-'
return '${TARGET_SYS}-'
TARGET_PREFIX = "${@csl_target_sys(d)}"
PREFERRED_PROVIDER_linux-libc-headers = "external-sourcery-toolchain"
PREFERRED_PROVIDER_linux-libc-headers-dev = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}gcc = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}gcc-initial = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}gcc-intermediate = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}g++ = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}binutils = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}libc-for-gcc ?= "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}libc-initial ?= "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${TARGET_PREFIX}compilerlibs = "external-sourcery-toolchain"
PREFERRED_PROVIDER_libgcc = "external-sourcery-toolchain"
PREFERRED_PROVIDER_eglibc ?= "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/libc ?= "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/libintl ?= "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/libiconv ?= "external-sourcery-toolchain"
PREFERRED_PROVIDER_gdbserver = "external-sourcery-toolchain"
# No need to re-compile the locale files
GLIBC_INTERNAL_USE_BINARY_LOCALE = "precompiled"
ENABLE_BINARY_LOCALE_GENERATION = ""
TOOLCHAIN_OPTIONS = " --sysroot=${STAGING_DIR_HOST}"
def sourcery_get_sysroot(d):
import subprocess
sysroot_cmd = "${TARGET_PREFIX}gcc ${TARGET_CC_ARCH} -print-sysroot"
try:
toolchain_sysroot = bb.process.run(bb.data.expand(sysroot_cmd, d),
stderr=subprocess.PIPE,
env={"PATH": d.getVar('PATH', True)})[0].rstrip()
except bb.process.CmdError as exc:
bb.fatal(str(exc))
else:
return toolchain_sysroot
EXTERNAL_TOOLCHAIN_SYSROOT = "${@sourcery_get_sysroot(d)}"
CSL_IS_PRO = "${@'1' if os.path.exists('${EXTERNAL_TOOLCHAIN}/license') else '0'}"
TUNE_CCARGS_append_x86 = " ${@'-msgxx-glibc' if CSL_IS_PRO == '1' else ''}"
TUNE_CCARGS_append_x86-64 = " ${@'-msgxx-glibc' if CSL_IS_PRO == '1' else ''}"
LDEMULATION = ""
LDEMULATION_ENDIAN = "${@'bt' if 'bigendian' in TUNE_FEATURES.split() else 'lt'}"
LDEMULATION_BITS = "${@'64' if 'n64' in TUNE_FEATURES.split() else '32'}"
LDEMULATION_mips64 = "elf${LDEMULATION_BITS}${LDEMULATION_ENDIAN}smip${@bb.utils.contains('TUNE_FEATURES', 'n32', 'n32', '', d)}"
TUNE_LDARGS += "${@'-m ${LDEMULATION}' if LDEMULATION else ''}"
# Unfortunately, the CSL ia32 toolchain has non-prefixed binaries in its
# bindir (e.g. gcc, ld). To avoid this messing up our build, we avoid adding
# this bindir to our PATH, and instead add symlinks to the prefixed binaries
# to our staging toolchain bindir.
ERROR_QA[type] ?= "list"
python toolchain_metadata_setup () {
if not isinstance(e, bb.event.ConfigParsed):
return
import subprocess
d = e.data
l = d.createCopy()
l.finalize()
oe_import(l)
# Remove already-added toolchain install paths from the PATH, as they can
# break the build (in particular, the ia32 toolchain, as it provdes
# non-prefixed binaries).
install_prefix_default = bb.data.expand('${HOME}/CodeSourcery/', l)
path = d.getVar('PATH', False).split(':')
path = filter(lambda p: not p.startswith(install_prefix_default), path)
d.setVar('PATH', ':'.join(path))
external_toolchain = l.getVar('EXTERNAL_TOOLCHAIN', True)
if not external_toolchain or external_toolchain == 'UNDEFINED':
bb.fatal("Error: EXTERNAL_TOOLCHAIN must be set to the path to your sourcery toolchain")
if not os.path.exists(external_toolchain):
bb.fatal("Error: EXTERNAL_TOOLCHAIN path '%s' does not exist" % external_toolchain)
populate_toolchain_links(l)
# The external toolchain may not have been built with the yocto preferred
# gnu hash setting, so ensure that the corresponding sanity check is a
# warning, not an error.
error_qa = oe.data.typed_value('ERROR_QA', l)
if 'ldflags' in error_qa:
error_qa.remove('ldflags')
d.setVar('ERROR_QA', ' '.join(error_qa))
d.appendVar('WARN_QA', ' ldflags')
}
addhandler toolchain_metadata_setup
def populate_toolchain_links(d):
import errno
import os
from glob import glob
pattern = d.expand('${EXTERNAL_TOOLCHAIN}/bin/${TARGET_PREFIX}*')
files = glob(pattern)
if not files:
bb.fatal("Unable to populate toolchain binary symlinks in %s" % pattern)
bindir = d.getVar('STAGING_BINDIR_TOOLCHAIN', True)
bb.utils.mkdirhier(bindir)
for f in files:
base = os.path.basename(f)
newpath = os.path.join(bindir, base)
try:
os.symlink(f, newpath)
except OSError as exc:
if exc.errno == errno.EEXIST:
break
bb.fatal("Unable to populate toolchain binary symlink for %s: %s" % (newpath, exc))
# Ensure that we have a ld.bfd available, now that KERNEL_LD uses it
ld = d.expand('${TARGET_PREFIX}ld')
ld_bfd = os.path.join(bindir, ld + '.bfd')
if not os.path.exists(ld_bfd):
try:
os.symlink(ld, ld_bfd)
except OSError as exc:
if exc.errno != errno.EEXIST:
bb.fatal("Unable to populate toolchain binary symlink for %s: %s" % (ld_bfd, exc))
require conf/distro/include/csl-versions.inc
def get_gcc_version_prefix(d):
ver = d.getVar('CSL_VER_GCC', True)
if ver:
components = ver.split('.')
if len(components) > 1:
return '.'.join(components[:2])
else:
return '4.7%'
# Prefer a matching gcc version
GCCVERSION ?= "${@get_gcc_version_prefix(d)}%"
BUILDCFG_VARS += "CSL_VER_MAIN EXTERNAL_TOOLCHAIN"
SDKGCCVERSION ?= "${GCCVERSION}"
PREFERRED_VERSION_gcc-crosssdk ?= "${SDKGCCVERSION}"
PREFERRED_VERSION_gcc-crosssdk-initial ?= "${SDKGCCVERSION}"
PREFERRED_VERSION_gcc-crosssdk-intermediate ?= "${SDKGCCVERSION}"
PREFERRED_VERSION_nativesdk-gcc-runtime ?= "${SDKGCCVERSION}"
PREFERRED_VERSION_nativesdk-libgcc ?= "${SDKGCCVERSION}"