mirror of
https://github.com/dart-lang/sdk
synced 2024-11-05 18:22:09 +00:00
22ff72161f
Review URL: https://codereview.chromium.org/2507463002 .
605 lines
19 KiB
Python
Executable file
605 lines
19 KiB
Python
Executable file
#!/usr/bin/env python
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#
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# Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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# for details. All rights reserved. Use of this source code is governed by a
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# BSD-style license that can be found in the LICENSE file.
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#
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import optparse
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import os
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import re
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import shutil
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import subprocess
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import sys
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import time
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import utils
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HOST_OS = utils.GuessOS()
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HOST_ARCH = utils.GuessArchitecture()
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HOST_CPUS = utils.GuessCpus()
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SCRIPT_DIR = os.path.dirname(sys.argv[0])
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DART_ROOT = os.path.realpath(os.path.join(SCRIPT_DIR, '..'))
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THIRD_PARTY_ROOT = os.path.join(DART_ROOT, 'third_party')
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arm_cc_error = """
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Couldn't find the arm cross compiler.
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To make sure that you have the arm cross compilation tools installed, run:
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$ wget http://src.chromium.org/chrome/trunk/src/build/install-build-deps.sh
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OR
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$ svn co http://src.chromium.org/chrome/trunk/src/build; cd build
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Then,
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$ chmod u+x install-build-deps.sh
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$ ./install-build-deps.sh --arm --no-chromeos-fonts
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"""
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DEFAULT_ARM_CROSS_COMPILER_PATH = '/usr/bin'
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usage = """\
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usage: %%prog [options] [targets]
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This script runs 'make' in the *current* directory. So, run it from
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the Dart repo root,
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%s ,
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unless you really intend to use a non-default Makefile.""" % DART_ROOT
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DART_USE_GN = "DART_USE_GN"
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def use_gn():
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return DART_USE_GN in os.environ
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def BuildOptions():
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result = optparse.OptionParser(usage=usage)
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result.add_option("-m", "--mode",
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help='Build variants (comma-separated).',
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metavar='[all,debug,release,product]',
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default='debug')
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result.add_option("-v", "--verbose",
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help='Verbose output.',
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default=False, action="store_true")
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result.add_option("-a", "--arch",
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help='Target architectures (comma-separated).',
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metavar='[all,ia32,x64,simarm,arm,simarmv6,armv6,simarmv5te,armv5te,'
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'simmips,mips,simarm64,arm64,simdbc,armsimdbc]',
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default=utils.GuessArchitecture())
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result.add_option("--os",
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help='Target OSs (comma-separated).',
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metavar='[all,host,android]',
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default='host')
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result.add_option("-t", "--toolchain",
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help='Cross-compiler toolchain path',
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default=None)
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result.add_option("-j",
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help='The number of parallel jobs to run.',
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metavar=HOST_CPUS,
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default=str(HOST_CPUS))
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(vs_directory, vs_executable) = utils.GuessVisualStudioPath()
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result.add_option("--devenv",
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help='Path containing devenv.com on Windows',
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default=vs_directory)
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result.add_option("--executable",
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help='Name of the devenv.com/msbuild executable on Windows (varies for '
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'different versions of Visual Studio)',
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default=vs_executable)
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result.add_option("--gn",
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help='Build with GN/Ninja',
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default=use_gn(),
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action='store_true')
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return result
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def ProcessOsOption(os_name):
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if os_name == 'host':
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return HOST_OS
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return os_name
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def ProcessOptions(options, args):
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if options.arch == 'all':
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options.arch = 'ia32,x64,simarm,simarm64,simmips,simdbc64'
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if options.mode == 'all':
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options.mode = 'debug,release,product'
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if options.os == 'all':
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options.os = 'host,android'
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options.mode = options.mode.split(',')
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options.arch = options.arch.split(',')
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options.os = options.os.split(',')
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for mode in options.mode:
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if not mode in ['debug', 'release', 'product']:
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print "Unknown mode %s" % mode
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return False
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for arch in options.arch:
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archs = ['ia32', 'x64', 'simarm', 'arm', 'simarmv6', 'armv6',
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'simarmv5te', 'armv5te', 'simmips', 'mips', 'simarm64', 'arm64',
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'simdbc', 'simdbc64', 'armsimdbc']
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if not arch in archs:
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print "Unknown arch %s" % arch
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return False
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options.os = [ProcessOsOption(os_name) for os_name in options.os]
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for os_name in options.os:
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if not os_name in ['android', 'freebsd', 'linux', 'macos', 'win32']:
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print "Unknown os %s" % os_name
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return False
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if os_name != HOST_OS:
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if os_name != 'android':
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print "Unsupported target os %s" % os_name
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return False
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if not HOST_OS in ['linux']:
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print ("Cross-compilation to %s is not supported on host os %s."
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% (os_name, HOST_OS))
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return False
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if not arch in ['ia32', 'x64', 'arm', 'armv6', 'armv5te', 'arm64', 'mips',
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'simdbc', 'simdbc64']:
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print ("Cross-compilation to %s is not supported for architecture %s."
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% (os_name, arch))
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return False
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# We have not yet tweaked the v8 dart build to work with the Android
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# NDK/SDK, so don't try to build it.
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if not args:
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print "For android builds you must specify a target, such as 'runtime'."
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return False
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return True
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def GetToolchainPrefix(target_os, arch, options):
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if options.toolchain != None:
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return options.toolchain
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if target_os == 'android':
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android_toolchain = GetAndroidToolchainDir(HOST_OS, arch)
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if arch == 'arm' or arch == 'simdbc':
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return os.path.join(android_toolchain, 'arm-linux-androideabi')
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if arch == 'arm64' or arch == 'simdbc64':
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return os.path.join(android_toolchain, 'aarch64-linux-android')
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if arch == 'ia32':
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return os.path.join(android_toolchain, 'i686-linux-android')
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if arch == 'x64':
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return os.path.join(android_toolchain, 'x86_64-linux-android')
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# If no cross compiler is specified, only try to figure one out on Linux.
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if not HOST_OS in ['linux']:
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raise Exception('Unless --toolchain is used cross-building is only '
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'supported on Linux.')
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# For ARM Linux, by default use the Linux distribution's cross-compiler.
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if arch == 'arm' or arch == 'armsimdbc':
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# To use a non-hf compiler, specify on the command line with --toolchain.
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return (DEFAULT_ARM_CROSS_COMPILER_PATH + "/arm-linux-gnueabihf")
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if arch == 'arm64':
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return (DEFAULT_ARM_CROSS_COMPILER_PATH + "/aarch64-linux-gnu")
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# TODO(zra): Find default MIPS Linux cross-compiler.
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return None
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def SetTools(arch, target_os, options):
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toolsOverride = None
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toolchainprefix = GetToolchainPrefix(target_os, arch, options)
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# Override the Android toolchain's linker to handle some complexity in the
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# linker arguments that gyp has trouble with.
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linker = ""
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if target_os == 'android':
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linker = os.path.join(DART_ROOT, 'tools', 'android_link.py')
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elif toolchainprefix:
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linker = toolchainprefix + "-g++"
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if toolchainprefix:
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toolsOverride = {
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"CC.target" : toolchainprefix + "-gcc",
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"CXX.target" : toolchainprefix + "-g++",
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"AR.target" : toolchainprefix + "-ar",
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"LINK.target": linker,
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"NM.target" : toolchainprefix + "-nm",
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}
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return toolsOverride
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def CheckDirExists(path, docstring):
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if not os.path.isdir(path):
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raise Exception('Could not find %s directory %s'
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% (docstring, path))
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def GetAndroidToolchainDir(host_os, target_arch):
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global THIRD_PARTY_ROOT
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if host_os not in ['linux']:
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raise Exception('Unsupported host os %s' % host_os)
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if target_arch not in ['ia32', 'x64', 'arm', 'arm64', 'simdbc', 'simdbc64']:
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raise Exception('Unsupported target architecture %s' % target_arch)
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# Set up path to the Android NDK.
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CheckDirExists(THIRD_PARTY_ROOT, 'third party tools')
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android_tools = os.path.join(THIRD_PARTY_ROOT, 'android_tools')
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CheckDirExists(android_tools, 'Android tools')
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android_ndk_root = os.path.join(android_tools, 'ndk')
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CheckDirExists(android_ndk_root, 'Android NDK')
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# Set up the directory of the Android NDK cross-compiler toolchain.
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toolchain_arch = 'arm-linux-androideabi-4.9'
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if target_arch == 'arm64' or target_arch == 'simdbc64':
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toolchain_arch = 'aarch64-linux-android-4.9'
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if target_arch == 'ia32':
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toolchain_arch = 'x86-4.9'
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if target_arch == 'x64':
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toolchain_arch = 'x86_64-4.9'
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toolchain_dir = 'linux-x86_64'
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android_toolchain = os.path.join(android_ndk_root,
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'toolchains', toolchain_arch,
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'prebuilt', toolchain_dir, 'bin')
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CheckDirExists(android_toolchain, 'Android toolchain')
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return android_toolchain
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def Execute(args):
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process = subprocess.Popen(args)
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process.wait()
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if process.returncode != 0:
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raise Exception(args[0] + " failed")
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def CurrentDirectoryBaseName():
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"""Returns the name of the current directory"""
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return os.path.relpath(os.curdir, start=os.pardir)
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def FilterEmptyXcodebuildSections(process):
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"""
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Filter output from xcodebuild so empty sections are less verbose.
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The output from xcodebuild looks like this:
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Build settings from command line:
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SYMROOT = .../xcodebuild
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=== BUILD TARGET samples OF PROJECT dart WITH CONFIGURATION ...
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Check dependencies
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=== BUILD AGGREGATE TARGET upload_sdk OF PROJECT dart WITH CONFIGURATION ...
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Check dependencies
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PhaseScriptExecution "Action \"upload_sdk_py\"" xcodebuild/dart.build/...
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cd ...
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/bin/sh -c .../xcodebuild/dart.build/ReleaseIA32/upload_sdk.build/...
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** BUILD SUCCEEDED **
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"""
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def is_empty_chunk(input):
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empty_chunk = ['', 'Check dependencies', '']
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return not input or (len(input) == 4 and input[1:] == empty_chunk)
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def unbuffered(callable):
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# Use iter to disable buffering in for-in.
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return iter(callable, '')
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section = None
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chunk = []
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# Is stdout a terminal which supports colors?
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is_fancy_tty = False
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clr_eol = None
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if sys.stdout.isatty():
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term = os.getenv('TERM', 'dumb')
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# The capability "clr_eol" means clear the line from cursor to end
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# of line. See man pages for tput and terminfo.
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try:
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with open('/dev/null', 'a') as dev_null:
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clr_eol = subprocess.check_output(['tput', '-T' + term, 'el'],
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stderr=dev_null)
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if clr_eol:
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is_fancy_tty = True
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except subprocess.CalledProcessError:
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is_fancy_tty = False
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except AttributeError:
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is_fancy_tty = False
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pattern = re.compile(r'=== BUILD.* TARGET (.*) OF PROJECT (.*) WITH ' +
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r'CONFIGURATION (.*) ===')
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has_interesting_info = False
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for line in unbuffered(process.stdout.readline):
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line = line.rstrip()
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if line.startswith('=== BUILD ') or line.startswith('** BUILD '):
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has_interesting_info = False
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section = line
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if is_fancy_tty:
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match = re.match(pattern, section)
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if match:
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section = '%s/%s/%s' % (
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match.group(3), match.group(2), match.group(1))
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# Truncate to avoid extending beyond 80 columns.
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section = section[:80]
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# If stdout is a terminal, emit "progress" information. The
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# progress information is the first line of the current chunk.
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# After printing the line, move the cursor back to the
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# beginning of the line. This has two effects: First, if the
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# chunk isn't empty, the first line will be overwritten
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# (avoiding duplication). Second, the next segment line will
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# overwrite it too avoid long scrollback. clr_eol ensures
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# that there is no trailing garbage when a shorter line
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# overwrites a longer line.
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print '%s%s\r' % (clr_eol, section),
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chunk = []
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if not section or has_interesting_info:
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print line
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else:
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length = len(chunk)
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if length == 2 and line != 'Check dependencies':
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has_interesting_info = True
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elif (length == 1 or length == 3) and line:
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has_interesting_info = True
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elif length > 3:
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has_interesting_info = True
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if has_interesting_info:
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print '\n'.join(chunk)
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chunk = []
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else:
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chunk.append(line)
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if not is_empty_chunk(chunk):
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print '\n'.join(chunk)
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def NotifyBuildDone(build_config, success, start):
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if not success:
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print "BUILD FAILED"
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sys.stdout.flush()
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# Display a notification if build time exceeded DART_BUILD_NOTIFICATION_DELAY.
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notification_delay = float(
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os.getenv('DART_BUILD_NOTIFICATION_DELAY', sys.float_info.max))
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if (time.time() - start) < notification_delay:
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return
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if success:
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message = 'Build succeeded.'
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else:
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message = 'Build failed.'
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title = build_config
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command = None
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if HOST_OS == 'macos':
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# Use AppleScript to display a UI non-modal notification.
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script = 'display notification "%s" with title "%s" sound name "Glass"' % (
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message, title)
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command = "osascript -e '%s' &" % script
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elif HOST_OS == 'linux':
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if success:
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icon = 'dialog-information'
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else:
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icon = 'dialog-error'
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command = "notify-send -i '%s' '%s' '%s' &" % (icon, message, title)
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elif HOST_OS == 'win32':
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if success:
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icon = 'info'
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else:
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icon = 'error'
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command = ("powershell -command \""
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"[reflection.assembly]::loadwithpartialname('System.Windows.Forms')"
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"| Out-Null;"
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"[reflection.assembly]::loadwithpartialname('System.Drawing')"
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"| Out-Null;"
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"$n = new-object system.windows.forms.notifyicon;"
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"$n.icon = [system.drawing.systemicons]::information;"
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"$n.visible = $true;"
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"$n.showballoontip(%d, '%s', '%s', "
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"[system.windows.forms.tooltipicon]::%s);\"") % (
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5000, # Notification stays on for this many milliseconds
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message, title, icon)
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if command:
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# Ignore return code, if this command fails, it doesn't matter.
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os.system(command)
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def RunGN(target_os, mode, arch):
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gn_os = 'host' if target_os == HOST_OS else target_os
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gn_command = [
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'python',
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os.path.join(DART_ROOT, 'tools', 'gn.py'),
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'-m', mode,
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'-a', arch,
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'--os', gn_os,
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'-v',
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]
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process = subprocess.Popen(gn_command)
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process.wait()
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if process.returncode != 0:
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print ("Tried to run GN, but it failed. Try running it manually: \n\t$ " +
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' '.join(gn_command))
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def BuildNinjaCommand(options, target, target_os, mode, arch):
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out_dir = utils.GetBuildRoot(HOST_OS, mode, arch, target_os)
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if not os.path.exists(out_dir):
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RunGN(target_os, mode, arch)
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command = ['ninja', '-C', out_dir]
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if options.verbose:
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command += ['-v']
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command += [target]
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return command
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filter_xcodebuild_output = False
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def BuildOneConfig(options, target, target_os, mode, arch, override_tools):
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global filter_xcodebuild_output
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start_time = time.time()
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args = []
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build_config = utils.GetBuildConf(mode, arch, target_os)
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if options.gn:
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args = BuildNinjaCommand(options, target, target_os, mode, arch)
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else:
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os.environ['DART_BUILD_MODE'] = mode
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if HOST_OS == 'macos':
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filter_xcodebuild_output = True
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project_file = 'dart.xcodeproj'
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if os.path.exists('dart-%s.gyp' % CurrentDirectoryBaseName()):
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project_file = 'dart-%s.xcodeproj' % CurrentDirectoryBaseName()
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args = ['xcodebuild',
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'-project',
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project_file,
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'-target',
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target,
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'-configuration',
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build_config,
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'SYMROOT=%s' % os.path.abspath('xcodebuild')
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]
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elif HOST_OS == 'win32':
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project_file = 'dart.sln'
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if os.path.exists('dart-%s.gyp' % CurrentDirectoryBaseName()):
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project_file = 'dart-%s.sln' % CurrentDirectoryBaseName()
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# Select a platform suffix to pass to devenv.
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if arch == 'ia32':
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platform_suffix = 'Win32'
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elif arch == 'x64':
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platform_suffix = 'x64'
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else:
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print 'Unsupported arch for MSVC build: %s' % arch
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return 1
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config_name = '%s|%s' % (build_config, platform_suffix)
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if target == 'all':
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args = [options.devenv + os.sep + options.executable,
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'/build',
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config_name,
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project_file
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]
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else:
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args = [options.devenv + os.sep + options.executable,
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'/build',
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config_name,
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'/project',
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target,
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project_file
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]
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else:
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make = 'make'
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if HOST_OS == 'freebsd':
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make = 'gmake'
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# work around lack of flock
|
|
os.environ['LINK'] = '$(CXX)'
|
|
args = [make,
|
|
'-j',
|
|
options.j,
|
|
'BUILDTYPE=' + build_config,
|
|
]
|
|
if target_os != HOST_OS:
|
|
args += ['builddir_name=' + utils.GetBuildDir(HOST_OS)]
|
|
if options.verbose:
|
|
args += ['V=1']
|
|
|
|
args += [target]
|
|
|
|
toolsOverride = None
|
|
if override_tools:
|
|
toolsOverride = SetTools(arch, target_os, options)
|
|
if toolsOverride:
|
|
for k, v in toolsOverride.iteritems():
|
|
args.append( k + "=" + v)
|
|
if options.verbose:
|
|
print k + " = " + v
|
|
if not os.path.isfile(toolsOverride['CC.target']):
|
|
if arch == 'arm':
|
|
print arm_cc_error
|
|
else:
|
|
print "Couldn't find compiler: %s" % toolsOverride['CC.target']
|
|
return 1
|
|
|
|
print ' '.join(args)
|
|
process = None
|
|
if filter_xcodebuild_output:
|
|
process = subprocess.Popen(args,
|
|
stdin=None,
|
|
bufsize=1, # Line buffered.
|
|
stdout=subprocess.PIPE,
|
|
stderr=subprocess.STDOUT)
|
|
FilterEmptyXcodebuildSections(process)
|
|
else:
|
|
process = subprocess.Popen(args, stdin=None)
|
|
process.wait()
|
|
if process.returncode != 0:
|
|
NotifyBuildDone(build_config, success=False, start=start_time)
|
|
return 1
|
|
else:
|
|
NotifyBuildDone(build_config, success=True, start=start_time)
|
|
|
|
return 0
|
|
|
|
|
|
def BuildCrossSdk(options, target_os, mode, arch):
|
|
# First build 'create_sdk' for the host. Do not override the host toolchain.
|
|
if BuildOneConfig(options, 'create_sdk', HOST_OS,
|
|
mode, HOST_ARCH, False) != 0:
|
|
return 1
|
|
|
|
# Then, build the runtime for the target arch.
|
|
if BuildOneConfig(options, 'runtime', target_os, mode, arch, True) != 0:
|
|
return 1
|
|
|
|
# Copy dart-sdk from the host build products dir to the target build
|
|
# products dir, and copy the dart binary for target to the sdk bin/ dir.
|
|
src = os.path.join(
|
|
utils.GetBuildRoot(HOST_OS, mode, HOST_ARCH, HOST_OS), 'dart-sdk')
|
|
dst = os.path.join(
|
|
utils.GetBuildRoot(HOST_OS, mode, arch, target_os), 'dart-sdk')
|
|
shutil.rmtree(dst, ignore_errors=True)
|
|
shutil.copytree(src, dst)
|
|
|
|
dart = os.path.join(
|
|
utils.GetBuildRoot(HOST_OS, mode, arch, target_os), 'dart')
|
|
bin = os.path.join(dst, 'bin')
|
|
shutil.copy(dart, bin)
|
|
|
|
# Strip the dart binary
|
|
toolchainprefix = GetToolchainPrefix(target_os, arch, options)
|
|
if toolchainprefix == None:
|
|
print "Couldn't figure out the cross-toolchain"
|
|
return 1
|
|
strip = toolchainprefix + '-strip'
|
|
subprocess.call([strip, os.path.join(bin, 'dart')])
|
|
|
|
return 0
|
|
|
|
|
|
def Main():
|
|
utils.ConfigureJava()
|
|
# Parse the options.
|
|
parser = BuildOptions()
|
|
(options, args) = parser.parse_args()
|
|
if not ProcessOptions(options, args):
|
|
parser.print_help()
|
|
return 1
|
|
# Determine which targets to build. By default we build the "all" target.
|
|
if len(args) == 0:
|
|
if HOST_OS == 'macos':
|
|
targets = ['All']
|
|
else:
|
|
targets = ['all']
|
|
else:
|
|
targets = args
|
|
|
|
# Build all targets for each requested configuration.
|
|
for target in targets:
|
|
for target_os in options.os:
|
|
for mode in options.mode:
|
|
for arch in options.arch:
|
|
cross_build = utils.IsCrossBuild(target_os, arch)
|
|
if target in ['create_sdk'] and cross_build:
|
|
if BuildCrossSdk(options, target_os, mode, arch) != 0:
|
|
return 1
|
|
else:
|
|
if BuildOneConfig(options, target, target_os,
|
|
mode, arch, cross_build) != 0:
|
|
return 1
|
|
|
|
return 0
|
|
|
|
|
|
if __name__ == '__main__':
|
|
sys.exit(Main())
|