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330 lines
11 KiB
Python
Executable File
330 lines
11 KiB
Python
Executable File
# This Source Code Form is subject to the terms of the Mozilla Public
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# License, v. 2.0. If a copy of the MPL was not distributed with this
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# file, You can obtain one at http://mozilla.org/MPL/2.0/.
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# This file contains code for populating the virtualenv environment for
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# Mozilla's build system. It is typically called as part of configure.
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from __future__ import print_function, unicode_literals, with_statement
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import distutils.sysconfig
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import os
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import shutil
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import subprocess
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import sys
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# Minimum version of Python required to build.
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MINIMUM_PYTHON_MAJOR = 2
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MINIMUM_PYTHON_MINOR = 7
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class VirtualenvManager(object):
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"""Contains logic for managing virtualenvs for building the tree."""
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def __init__(self, topsrcdir, virtualenv_path, log_handle):
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"""Create a new manager.
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Each manager is associated with a source directory, a path where you
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want the virtualenv to be created, and a handle to write output to.
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"""
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self.topsrcdir = topsrcdir
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self.virtualenv_root = virtualenv_path
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self.log_handle = log_handle
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@property
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def virtualenv_script_path(self):
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"""Path to virtualenv's own populator script."""
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return os.path.join(self.topsrcdir, 'python', 'virtualenv',
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'virtualenv.py')
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@property
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def manifest_path(self):
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return os.path.join(self.topsrcdir, 'build', 'virtualenv',
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'packages.txt')
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@property
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def python_path(self):
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if sys.platform in ('win32', 'cygwin'):
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return os.path.join(self.virtualenv_root, 'Scripts', 'python.exe')
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return os.path.join(self.virtualenv_root, 'bin', 'python')
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@property
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def activate_path(self):
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if sys.platform in ('win32', 'cygwin'):
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return os.path.join(self.virtualenv_root, 'Scripts',
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'activate_this.py')
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return os.path.join(self.virtualenv_root, 'bin', 'activate_this.py')
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def ensure(self):
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"""Ensure the virtualenv is present and up to date.
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If the virtualenv is up to date, this does nothing. Otherwise, it
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creates and populates the virtualenv as necessary.
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This should be the main API used from this class as it is the
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highest-level.
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"""
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deps = [self.manifest_path, __file__]
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if not os.path.exists(self.virtualenv_root) or \
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not os.path.exists(self.activate_path):
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return self.build()
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activate_mtime = os.path.getmtime(self.activate_path)
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dep_mtime = max(os.path.getmtime(p) for p in deps)
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if dep_mtime > activate_mtime:
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return self.build()
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return self.virtualenv_root
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def create(self):
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"""Create a new, empty virtualenv.
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Receives the path to virtualenv's virtualenv.py script (which will be
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called out to), the path to create the virtualenv in, and a handle to
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write output to.
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"""
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env = dict(os.environ)
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try:
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del env['PYTHONDONTWRITEBYTECODE']
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except KeyError:
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pass
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args = [sys.executable, self.virtualenv_script_path,
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'--system-site-packages', self.virtualenv_root]
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result = subprocess.call(args, stdout=self.log_handle,
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stderr=subprocess.STDOUT, env=env)
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if result != 0:
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raise Exception('Error creating virtualenv.')
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return self.virtualenv_root
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def populate(self):
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"""Populate the virtualenv.
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The manifest file consists of colon-delimited fields. The first field
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specifies the action. The remaining fields are arguments to that
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action. The following actions are supported:
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setup.py -- Invoke setup.py for a package. Expects the arguments:
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1. relative path directory containing setup.py.
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2. argument(s) to setup.py. e.g. "develop". Each program argument
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is delimited by a colon. Arguments with colons are not yet
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supported.
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filename.pth -- Adds the path given as argument to filename.pth under
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the virtualenv site packages directory.
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optional -- This denotes the action as optional. The requested action
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is attempted. If it fails, we issue a warning and go on. The
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initial "optional" field is stripped then the remaining line is
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processed like normal. e.g.
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"optional:setup.py:python/foo:built_ext:-i"
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copy -- Copies the given file in the virtualenv site packages
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directory.
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Note that the Python interpreter running this function should be the
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one from the virtualenv. If it is the system Python or if the
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environment is not configured properly, packages could be installed
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into the wrong place. This is how virtualenv's work.
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"""
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packages = []
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fh = open(self.manifest_path, 'rU')
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for line in fh:
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packages.append(line.rstrip().split(':'))
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fh.close()
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def handle_package(package):
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python_lib = distutils.sysconfig.get_python_lib()
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if package[0] == 'setup.py':
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assert len(package) >= 2
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self.call_setup(os.path.join(self.topsrcdir, package[1]),
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package[2:])
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return True
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if package[0] == 'copy':
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assert len(package) == 2
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src = os.path.join(self.topsrcdir, package[1])
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dst = os.path.join(python_lib, os.path.basename(package[1]))
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shutil.copy(src, dst)
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return True
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if package[0].endswith('.pth'):
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assert len(package) == 2
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path = os.path.join(self.topsrcdir, package[1])
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with open(os.path.join(python_lib, package[0]), 'a') as f:
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f.write("%s\n" % path)
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return True
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if package[0] == 'optional':
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try:
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handle_package(package[1:])
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return True
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except:
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print('Error processing command. Ignoring', \
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'because optional. (%s)' % ':'.join(package),
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file=self.log_handle)
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return False
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raise Exception('Unknown action: %s' % package[0])
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# We always target the OS X deployment target that Python itself was
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# built with, regardless of what's in the current environment. If we
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# don't do # this, we may run into a Python bug. See
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# http://bugs.python.org/issue9516 and bug 659881.
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#
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# Note that this assumes that nothing compiled in the virtualenv is
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# shipped as part of a distribution. If we do ship anything, the
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# deployment target here may be different from what's targeted by the
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# shipping binaries and # virtualenv-produced binaries may fail to
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# work.
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#
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# We also ignore environment variables that may have been altered by
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# configure or a mozconfig activated in the current shell. We trust
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# Python is smart enough to find a proper compiler and to use the
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# proper compiler flags. If it isn't your Python is likely broken.
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IGNORE_ENV_VARIABLES = ('CC', 'CXX', 'CFLAGS', 'CXXFLAGS', 'LDFLAGS',
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'PYTHONDONTWRITEBYTECODE')
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try:
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old_target = os.environ.get('MACOSX_DEPLOYMENT_TARGET', None)
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sysconfig_target = \
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distutils.sysconfig.get_config_var('MACOSX_DEPLOYMENT_TARGET')
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if sysconfig_target is not None:
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os.environ['MACOSX_DEPLOYMENT_TARGET'] = sysconfig_target
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old_env_variables = {}
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for k in IGNORE_ENV_VARIABLES:
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if k not in os.environ:
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continue
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old_env_variables[k] = os.environ[k]
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del os.environ[k]
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for package in packages:
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handle_package(package)
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finally:
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try:
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del os.environ['MACOSX_DEPLOYMENT_TARGET']
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except KeyError:
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pass
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if old_target is not None:
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os.environ['MACOSX_DEPLOYMENT_TARGET'] = old_target
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for k in old_env_variables:
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os.environ[k] = old_env_variables[k]
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def call_setup(self, directory, arguments):
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"""Calls setup.py in a directory."""
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setup = os.path.join(directory, 'setup.py')
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program = [sys.executable, setup]
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program.extend(arguments)
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# We probably could call the contents of this file inside the context
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# of this interpreter using execfile() or similar. However, if global
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# variables like sys.path are adjusted, this could cause all kinds of
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# havoc. While this may work, invoking a new process is safer.
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try:
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output = subprocess.check_output(program, cwd=directory, stderr=subprocess.STDOUT)
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print(output)
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except subprocess.CalledProcessError as e:
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if 'Python.h: No such file or directory' in e.output:
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print('WARNING: Python.h not found. Install Python development headers.')
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else:
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print(e.output)
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raise Exception('Error installing package: %s' % directory)
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def build(self):
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"""Build a virtualenv per tree conventions.
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This returns the path of the created virtualenv.
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"""
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self.create()
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# We need to populate the virtualenv using the Python executable in
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# the virtualenv for paths to be proper.
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args = [self.python_path, __file__, 'populate', self.topsrcdir,
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self.virtualenv_root]
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result = subprocess.call(args, stdout=self.log_handle,
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stderr=subprocess.STDOUT, cwd=self.topsrcdir)
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if result != 0:
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raise Exception('Error populating virtualenv.')
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os.utime(self.activate_path, None)
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return self.virtualenv_root
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def activate(self):
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"""Activate the virtualenv in this Python context.
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If you run a random Python script and wish to "activate" the
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virtualenv, you can simply instantiate an instance of this class
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and call .ensure() and .activate() to make the virtualenv active.
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"""
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execfile(self.activate_path, dict(__file__=self.activate_path))
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def verify_python_version(log_handle):
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"""Ensure the current version of Python is sufficient."""
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major, minor = sys.version_info[:2]
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if major != MINIMUM_PYTHON_MAJOR or minor < MINIMUM_PYTHON_MINOR:
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log_handle.write('Python %d.%d or greater (but not Python 3) is '
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'required to build. ' %
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(MINIMUM_PYTHON_MAJOR, MINIMUM_PYTHON_MINOR))
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log_handle.write('You are running Python %d.%d.\n' % (major, minor))
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sys.exit(1)
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if __name__ == '__main__':
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if len(sys.argv) < 3:
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print('Usage: populate_virtualenv.py /path/to/topsrcdir /path/to/virtualenv')
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sys.exit(1)
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verify_python_version(sys.stdout)
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topsrcdir = sys.argv[1]
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virtualenv_path = sys.argv[2]
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populate = False
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# This should only be called internally.
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if sys.argv[1] == 'populate':
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populate = True
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topsrcdir = sys.argv[2]
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virtualenv_path = sys.argv[3]
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manager = VirtualenvManager(topsrcdir, virtualenv_path, sys.stdout)
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if populate:
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manager.populate()
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else:
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manager.ensure()
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