external-sourcery-toolchain: remove

As per discussion on the mailing list [1], remove this largely
unmaintained external toolchain support in favour of the maintained
version in meta-sourcery [2].

Also correct the example and documentation.conf entries for TCMODE to
match up with this change.

[1] http://lists.openembedded.org/pipermail/openembedded-core/2013-December/087133.html
[2] https://github.com/MentorEmbedded/meta-sourcery/

(From OE-Core rev: 7603b15415301679bccbcb89af688c211704a43a)

Signed-off-by: Paul Eggleton <paul.eggleton@linux.intel.com>
Signed-off-by: Richard Purdie <richard.purdie@linuxfoundation.org>
This commit is contained in:
Paul Eggleton
2013-12-12 16:07:05 +00:00
committed by Richard Purdie
parent b1b0c31515
commit 07ce0296bb
6 changed files with 1 additions and 644 deletions

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@@ -1,107 +0,0 @@
def csl_run(d, cmd, *args):
import bb.process
import subprocess
topdir = d.getVar('TOPDIR', True)
toolchain_path = d.getVar('EXTERNAL_TOOLCHAIN', True)
if not toolchain_path:
return 'UNKNOWN', 'UNKNOWN'
target_prefix = d.getVar('TARGET_PREFIX', True)
path = os.path.join(toolchain_path, 'bin', target_prefix + cmd)
args = [path] + list(args)
return bb.process.run(args, cwd=topdir, stderr=subprocess.PIPE)
def csl_get_version(d):
try:
stdout, stderr = csl_run(d, 'gcc', '-v')
except bb.process.CmdError as exc:
bb.error('Failed to obtain CodeSourcery toolchain version: %s' % exc)
bb.error('Make sure that MACHINE is set correctly in your local.conf and the toolchain supports %s.' % d.getVar("TARGET_ARCH", True))
return 'UNKNOWN'
else:
last_line = stderr.splitlines()[-1]
return last_line
def csl_get_main_version(d):
version = csl_get_version(d)
if version != 'UNKNOWN':
return version.split()[-1].rstrip(')')
else:
return version
def csl_get_gcc_version(d):
version = csl_get_version(d)
if version != 'UNKNOWN':
return version.split()[2]
else:
return version
def csl_get_libc_version(d):
syspath = d.expand('${EXTERNAL_TOOLCHAIN}/${CSL_TARGET_SYS}')
if not syspath:
return 'UNKNOWN'
libpath = syspath + '/libc/lib/'
if not os.path.exists(libpath):
libpath = syspath + '/libc/sgxx-glibc/lib/'
if os.path.exists(libpath):
for file in os.listdir(libpath):
if file.find('libc-') == 0:
return file[5:-3]
return 'UNKNOWN'
def csl_get_kernel_version(d):
syspath = d.expand('${EXTERNAL_TOOLCHAIN}/${CSL_TARGET_SYS}')
if not syspath:
return 'UNKNOWN'
vf = syspath + '/libc/usr/include/linux/version.h'
if not os.path.exists(vf):
vf = syspath + '/libc/sgxx-glibc/usr/include/linux/version.h'
try:
f = open(vf, 'r')
except (OSError, IOError):
return 'UNKNOWN'
l = f.readlines();
f.close();
for s in l:
if s.find('LINUX_VERSION_CODE') > 0:
ver = int(s.split()[2])
maj = ver / 65536
ver = ver % 65536
min = ver / 256
ver = ver % 256
return str(maj)+'.'+str(min)+'.'+str(ver)
return 'UNKNOWN'
def csl_get_gdb_version(d):
try:
stdout, stderr = csl_run(d, 'gdb', '-v')
except bb.process.CmdError:
return 'UNKNOWN'
else:
first_line = stdout.splitlines()[0]
return first_line.split()[-1]
python csl_version_handler () {
d = e.data
ld = d.createCopy()
ld.finalize()
d.setVar('CSL_VER_MAIN', csl_get_main_version(ld))
d.setVar('CSL_VER_GCC', csl_get_gcc_version(ld))
d.setVar('CSL_VER_LIBC', csl_get_libc_version(ld))
d.setVar('CSL_VER_KERNEL', csl_get_kernel_version(ld))
d.setVar('CSL_VER_GDB', csl_get_gdb_version(ld))
}
addhandler csl_version_handler
csl_version_handler[eventmask] = "bb.event.ConfigParsed"
# Ensure that any variable which includes the --sysroot (CC, CXX, etc) also
# depends on the toolchain version
TOOLCHAIN_OPTIONS[vardeps] += "CSL_VER_MAIN CSL_VER_GCC"

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@@ -1,2 +0,0 @@
TCMODE = "external-sourcery"
require conf/distro/include/tcmode-${TCMODE}.inc

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@@ -1,128 +0,0 @@
#
# Configuration to use external Sourcery G++ toolchain
#
EXTERNAL_TOOLCHAIN ?= "/usr/local/csl/${TARGET_ARCH}"
TOOLCHAIN_PATH_ADD = "${EXTERNAL_TOOLCHAIN}/bin:"
PATH =. "${TOOLCHAIN_PATH_ADD}"
CSL_TARGET_SYS_powerpc ?= "powerpc-linux-gnu"
CSL_TARGET_SYS_powerpc64 ?= "powerpc-linux-gnu"
CSL_TARGET_SYS_arm ?= "arm-none-linux-gnueabi"
CSL_TARGET_SYS_mips ?= "mips-linux-gnu"
CSL_TARGET_SYS_mipsel ?= "mips-linux-gnu"
CSL_TARGET_SYS_mips64 ?= "mips-linux-gnu"
CSL_TARGET_SYS_i686 ?= "i686-pc-linux-gnu"
CSL_TARGET_SYS_i586 ?= "i686-pc-linux-gnu"
CSL_TARGET_SYS = "${TARGET_SYS}"
TARGET_PREFIX = "${CSL_TARGET_SYS}-"
PREFERRED_PROVIDER_linux-libc-headers = "external-sourcery-toolchain"
PREFERRED_PROVIDER_linux-libc-headers-dev = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/${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/${TARGET_PREFIX}compilerlibs = "external-sourcery-toolchain"
PREFERRED_PROVIDER_libgcc = "external-sourcery-toolchain"
PREFERRED_PROVIDER_eglibc = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/libc = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/libintl = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/libiconv = "external-sourcery-toolchain"
PREFERRED_PROVIDER_glibc-thread-db = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/linux-libc-headers = "external-sourcery-toolchain"
PREFERRED_PROVIDER_virtual/linux-libc-headers-dev = "external-sourcery-toolchain"
PREFERRED_PROVIDER_gdbserver ??= "external-sourcery-toolchain"
# No need to re-compile the locale files
GLIBC_INTERNAL_USE_BINARY_LOCALE = "precompiled"
ENABLE_BINARY_LOCALE_GENERATION = ""
TOOLCHAIN_OPTIONS = " --sysroot=${STAGING_DIR_HOST}"
# Point to the appropriate multilib sysroot from the external toolchain, whose
# files will be extracted into the OE sysroot
def exttc_run(d, cmd):
try:
return bb.process.run(cmd, shell=True, env={'PATH': d.getVar('PATH', True)})[0].rstrip()
except (OSError, bb.process.CmdError):
return ''
EXTERNAL_TOOLCHAIN_SYSROOT_CMD = "${TARGET_PREFIX}gcc ${TARGET_CC_ARCH} -print-sysroot"
EXTERNAL_TOOLCHAIN_SYSROOT ??= "${@exttc_run(d, EXTERNAL_TOOLCHAIN_SYSROOT_CMD)}"
# These bits are here temporarily to sidestep the need to use a separate set
# of tune files to pass the appropriate multilib selection arguments to the
# sourcery toolchain, as is needed to extract the sysroot content.
TUNE_CCARGS_append_x86 = " -msgxx-glibc"
CSL_MULTILIB_ARGS[ppce500] ?= "-te500v1"
CSL_MULTILIB_ARGS[ppce500mc] ?= "-te500mc"
CSL_MULTILIB_ARGS[ppce500v2] ?= "-te500v2"
CSL_MULTILIB_ARGS[ppce600] ?= "-te600"
def csl_multilib_arg(d):
argument = d.getVarFlag('CSL_MULTILIB_ARGS', d.getVar('DEFAULTTUNE', True) or '')
if argument:
return argument
else:
return ''
EXTERNAL_TOOLCHAIN_SYSROOT_CMD += "${@csl_multilib_arg(d)}"
# Unfortunately, the CSL ia32 toolchain has non-prefixed binaries in its
# bindir (e.g. gcc, ld). To avoid this messing up our build, we avoid adding
# this bindir to our PATH, and instead add symlinks to the prefixed binaries
# to our staging toolchain bindir.
python toolchain_metadata_setup () {
d = e.data
l = d.createCopy()
l.finalize()
if os.path.exists(bb.data.expand('${EXTERNAL_TOOLCHAIN}/bin/gcc', l)):
d.setVar('TOOLCHAIN_PATH_ADD', '')
}
addhandler toolchain_metadata_setup
toolchain_metadata_setup[eventmask] = "bb.event.ConfigParsed"
python toolchain_setup () {
d = e.data
if not d.getVar('TOOLCHAIN_PATH_ADD', True):
populate_toolchain_links(d)
}
addhandler toolchain_setup
toolchain_setup[eventmask] = "bb.event.BuildStarted"
def populate_toolchain_links(d):
import errno
from glob import glob
d = d.createCopy()
d.finalize()
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))
require conf/distro/include/csl-versions.inc