upstream u-boot with additional patches for our devices/boards:
https://lists.denx.de/pipermail/u-boot/2017-March/282789.html (AXP crashes) ;
Gbit ethernet patch for some LIME2 revisions ;
with SPI flash support
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185 lines
6.3 KiB
185 lines
6.3 KiB
# Copyright (c) 2012 The Chromium OS Authors.
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#
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# See file CREDITS for list of people who contributed to this
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# project.
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#
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# This program is free software; you can redistribute it and/or
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# modify it under the terms of the GNU General Public License as
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# published by the Free Software Foundation; either version 2 of
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# the License, or (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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# MA 02111-1307 USA
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#
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import glob
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import os
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import bsettings
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import command
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class Toolchain:
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"""A single toolchain
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Public members:
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gcc: Full path to C compiler
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path: Directory path containing C compiler
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cross: Cross compile string, e.g. 'arm-linux-'
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arch: Architecture of toolchain as determined from the first
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component of the filename. E.g. arm-linux-gcc becomes arm
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"""
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def __init__(self, fname, test, verbose=False):
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"""Create a new toolchain object.
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Args:
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fname: Filename of the gcc component
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test: True to run the toolchain to test it
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"""
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self.gcc = fname
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self.path = os.path.dirname(fname)
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self.cross = os.path.basename(fname)[:-3]
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pos = self.cross.find('-')
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self.arch = self.cross[:pos] if pos != -1 else 'sandbox'
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env = self.MakeEnvironment()
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# As a basic sanity check, run the C compiler with --version
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cmd = [fname, '--version']
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if test:
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result = command.RunPipe([cmd], capture=True, env=env)
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self.ok = result.return_code == 0
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if verbose:
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print 'Tool chain test: ',
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if self.ok:
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print 'OK'
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else:
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print 'BAD'
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print 'Command: ', cmd
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print result.stdout
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print result.stderr
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else:
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self.ok = True
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self.priority = self.GetPriority(fname)
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def GetPriority(self, fname):
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"""Return the priority of the toolchain.
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Toolchains are ranked according to their suitability by their
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filename prefix.
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Args:
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fname: Filename of toolchain
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Returns:
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Priority of toolchain, 0=highest, 20=lowest.
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"""
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priority_list = ['-elf', '-unknown-linux-gnu', '-linux', '-elf',
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'-none-linux-gnueabi', '-uclinux', '-none-eabi',
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'-gentoo-linux-gnu', '-linux-gnueabi', '-le-linux', '-uclinux']
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for prio in range(len(priority_list)):
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if priority_list[prio] in fname:
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return prio
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return prio
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def MakeEnvironment(self):
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"""Returns an environment for using the toolchain.
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Thie takes the current environment, adds CROSS_COMPILE and
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augments PATH so that the toolchain will operate correctly.
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"""
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env = dict(os.environ)
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env['CROSS_COMPILE'] = self.cross
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env['PATH'] += (':' + self.path)
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return env
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class Toolchains:
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"""Manage a list of toolchains for building U-Boot
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We select one toolchain for each architecture type
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Public members:
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toolchains: Dict of Toolchain objects, keyed by architecture name
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paths: List of paths to check for toolchains (may contain wildcards)
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"""
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def __init__(self):
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self.toolchains = {}
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self.paths = []
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for name, value in bsettings.GetItems('toolchain'):
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if '*' in value:
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self.paths += glob.glob(value)
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else:
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self.paths.append(value)
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def Add(self, fname, test=True, verbose=False):
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"""Add a toolchain to our list
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We select the given toolchain as our preferred one for its
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architecture if it is a higher priority than the others.
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Args:
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fname: Filename of toolchain's gcc driver
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test: True to run the toolchain to test it
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"""
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toolchain = Toolchain(fname, test, verbose)
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add_it = toolchain.ok
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if toolchain.arch in self.toolchains:
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add_it = (toolchain.priority <
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self.toolchains[toolchain.arch].priority)
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if add_it:
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self.toolchains[toolchain.arch] = toolchain
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def Scan(self, verbose):
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"""Scan for available toolchains and select the best for each arch.
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We look for all the toolchains we can file, figure out the
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architecture for each, and whether it works. Then we select the
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highest priority toolchain for each arch.
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Args:
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verbose: True to print out progress information
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"""
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if verbose: print 'Scanning for tool chains'
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for path in self.paths:
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if verbose: print " - scanning path '%s'" % path
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for subdir in ['.', 'bin', 'usr/bin']:
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dirname = os.path.join(path, subdir)
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if verbose: print " - looking in '%s'" % dirname
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for fname in glob.glob(dirname + '/*gcc'):
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if verbose: print " - found '%s'" % fname
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self.Add(fname, True, verbose)
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def List(self):
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"""List out the selected toolchains for each architecture"""
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print 'List of available toolchains (%d):' % len(self.toolchains)
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if len(self.toolchains):
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for key, value in sorted(self.toolchains.iteritems()):
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print '%-10s: %s' % (key, value.gcc)
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else:
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print 'None'
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def Select(self, arch):
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"""Returns the toolchain for a given architecture
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Args:
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args: Name of architecture (e.g. 'arm', 'ppc_8xx')
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returns:
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toolchain object, or None if none found
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"""
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for name, value in bsettings.GetItems('toolchain-alias'):
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if arch == name:
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arch = value
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if not arch in self.toolchains:
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raise ValueError, ("No tool chain found for arch '%s'" % arch)
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return self.toolchains[arch]
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