mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
synced 2024-09-13 09:24:08 -07:00
00650d4203
--HG-- rename : toolkit/mozapps/installer/l10n-repack.py => python/mozbuild/mozpack/packager/l10n.py
506 lines
17 KiB
Python
506 lines
17 KiB
Python
# 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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import os
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import re
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import shutil
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from mozpack.executables import (
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is_executable,
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may_strip,
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strip,
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may_elfhack,
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elfhack,
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)
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from mozpack.chrome.manifest import ManifestEntry
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from io import BytesIO
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from mozpack.errors import ErrorMessage
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from mozpack.mozjar import JarReader
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import mozpack.path
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from collections import OrderedDict
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class Dest(object):
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'''
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Helper interface for BaseFile.copy. The interface works as follows:
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- read() and write() can be used to sequentially read/write from the
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underlying file.
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- a call to read() after a write() will re-open the underlying file and
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read from it.
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- a call to write() after a read() will re-open the underlying file,
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emptying it, and write to it.
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'''
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def __init__(self, path):
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self.path = path
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self.mode = None
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def read(self, length=-1):
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if self.mode != 'r':
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self.file = open(self.path, 'rb')
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self.mode = 'r'
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return self.file.read(length)
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def write(self, data):
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if self.mode != 'w':
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self.file = open(self.path, 'wb')
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self.mode = 'w'
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return self.file.write(data)
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def exists(self):
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return os.path.exists(self.path)
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def close(self):
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if self.mode:
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self.mode = None
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self.file.close()
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class BaseFile(object):
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'''
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Base interface and helper for file copying. Derived class may implement
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their own copy function, or rely on BaseFile.copy using the open() member
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function and/or the path property.
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'''
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def copy(self, dest, skip_if_older=True):
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'''
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Copy the BaseFile content to the destination given as a string or a
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Dest instance. Avoids replacing existing files if the BaseFile content
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matches that of the destination, or in case of plain files, if the
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destination is newer than the original file. This latter behaviour is
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disabled when skip_if_older is False.
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Returns whether a copy was actually performed (True) or not (False).
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'''
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if isinstance(dest, basestring):
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dest = Dest(dest)
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else:
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assert isinstance(dest, Dest)
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can_skip_content_check = False
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if not dest.exists():
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can_skip_content_check = True
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elif getattr(self, 'path', None) and getattr(dest, 'path', None):
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# os.path.getmtime returns a result in seconds with precision up to
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# the microsecond. But microsecond is too precise because
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# shutil.copystat only copies milliseconds, and seconds is not
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# enough precision.
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if skip_if_older and int(os.path.getmtime(self.path) * 1000) \
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<= int(os.path.getmtime(dest.path) * 1000):
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return False
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elif os.path.getsize(self.path) != os.path.getsize(dest.path):
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can_skip_content_check = True
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if can_skip_content_check:
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if getattr(self, 'path', None) and getattr(dest, 'path', None):
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shutil.copy2(self.path, dest.path)
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else:
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# Ensure the file is always created
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if not dest.exists():
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dest.write('')
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shutil.copyfileobj(self.open(), dest)
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return True
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src = self.open()
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copy_content = ''
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while True:
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dest_content = dest.read(32768)
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src_content = src.read(32768)
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copy_content += src_content
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if len(dest_content) == len(src_content) == 0:
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break
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# If the read content differs between origin and destination,
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# write what was read up to now, and copy the remainder.
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if dest_content != src_content:
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dest.write(copy_content)
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shutil.copyfileobj(src, dest)
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break
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if hasattr(self, 'path') and hasattr(dest, 'path'):
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shutil.copystat(self.path, dest.path)
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return True
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def open(self):
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'''
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Return a file-like object allowing to read() the content of the
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associated file. This is meant to be overloaded in subclasses to return
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a custom file-like object.
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'''
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assert self.path is not None
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return open(self.path, 'rb')
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class File(BaseFile):
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'''
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File class for plain files.
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'''
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def __init__(self, path):
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self.path = path
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class ExecutableFile(File):
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'''
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File class for executable and library files on OS/2, OS/X and ELF systems.
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(see mozpack.executables.is_executable documentation).
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'''
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def copy(self, dest, skip_if_older=True):
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assert isinstance(dest, basestring)
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# If File.copy didn't actually copy because dest is newer, check the
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# file sizes. If dest is smaller, it means it is already stripped and
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# elfhacked, so we can skip.
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if not File.copy(self, dest, skip_if_older) and \
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os.path.getsize(self.path) > os.path.getsize(dest):
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return False
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try:
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if may_strip(dest):
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strip(dest)
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if may_elfhack(dest):
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elfhack(dest)
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except ErrorMessage:
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os.remove(dest)
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raise
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return True
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class GeneratedFile(BaseFile):
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'''
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File class for content with no previous existence on the filesystem.
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'''
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def __init__(self, content):
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self.content = content
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def open(self):
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return BytesIO(self.content)
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class DeflatedFile(BaseFile):
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'''
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File class for members of a jar archive. DeflatedFile.copy() effectively
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extracts the file from the jar archive.
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'''
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def __init__(self, file):
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from mozpack.mozjar import JarFileReader
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assert isinstance(file, JarFileReader)
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self.file = file
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def open(self):
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self.file.seek(0)
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return self.file
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class XPTFile(GeneratedFile):
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'''
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File class for a linked XPT file. It takes several XPT files as input
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(using the add() and remove() member functions), and links them at copy()
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time.
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'''
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def __init__(self):
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self._files = set()
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def add(self, xpt):
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'''
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Add the given XPT file (as a BaseFile instance) to the list of XPTs
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to link.
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'''
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assert isinstance(xpt, BaseFile)
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self._files.add(xpt)
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def remove(self, xpt):
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'''
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Remove the given XPT file (as a BaseFile instance) from the list of
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XPTs to link.
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'''
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assert isinstance(xpt, BaseFile)
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self._files.remove(xpt)
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def copy(self, dest, skip_if_older=True):
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'''
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Link the registered XPTs and place the resulting linked XPT at the
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destination given as a string or a Dest instance. Avoids an expensive
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XPT linking if the interfaces in an existing destination match those of
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the individual XPTs to link.
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skip_if_older is ignored.
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'''
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if isinstance(dest, basestring):
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dest = Dest(dest)
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assert isinstance(dest, Dest)
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from xpt import xpt_link, Typelib, Interface
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all_typelibs = [Typelib.read(f.open()) for f in self._files]
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if dest.exists():
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# Typelib.read() needs to seek(), so use a BytesIO for dest
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# content.
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dest_interfaces = \
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dict((i.name, i)
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for i in Typelib.read(BytesIO(dest.read())).interfaces
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if i.iid != Interface.UNRESOLVED_IID)
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identical = True
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for f in self._files:
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typelib = Typelib.read(f.open())
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for i in typelib.interfaces:
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if i.iid != Interface.UNRESOLVED_IID and \
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not (i.name in dest_interfaces and
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i == dest_interfaces[i.name]):
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identical = False
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break
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if identical:
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return False
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s = BytesIO()
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xpt_link(all_typelibs).write(s)
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dest.write(s.getvalue())
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return True
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def open(self):
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raise RuntimeError("Unsupported")
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def isempty(self):
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'''
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Return whether there are XPT files to link.
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'''
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return len(self._files) == 0
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class ManifestFile(BaseFile):
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'''
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File class for a manifest file. It takes individual manifest entries (using
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the add() and remove() member functions), and adjusts them to be relative
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to the base path for the manifest, given at creation.
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Example:
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There is a manifest entry "content webapprt webapprt/content/" relative
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to "webapprt/chrome". When packaging, the entry will be stored in
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jar:webapprt/omni.ja!/chrome/chrome.manifest, which means the entry
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will have to be relative to "chrome" instead of "webapprt/chrome". This
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doesn't really matter when serializing the entry, since this base path
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is not written out, but it matters when moving the entry at the same
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time, e.g. to jar:webapprt/omni.ja!/chrome.manifest, which we don't do
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currently but could in the future.
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'''
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def __init__(self, base, entries=None):
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self._entries = entries if entries else []
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self._base = base
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def add(self, entry):
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'''
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Add the given entry to the manifest. Entries are rebased at open() time
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instead of add() time so that they can be more easily remove()d.
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'''
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assert isinstance(entry, ManifestEntry)
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self._entries.append(entry)
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def remove(self, entry):
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'''
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Remove the given entry from the manifest.
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'''
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assert isinstance(entry, ManifestEntry)
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self._entries.remove(entry)
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def open(self):
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'''
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Return a file-like object allowing to read() the serialized content of
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the manifest.
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'''
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return BytesIO(''.join('%s\n' % e.rebase(self._base)
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for e in self._entries))
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def __iter__(self):
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'''
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Iterate over entries in the manifest file.
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'''
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return iter(self._entries)
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def isempty(self):
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'''
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Return whether there are manifest entries to write
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'''
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return len(self._entries) == 0
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class MinifiedProperties(BaseFile):
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'''
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File class for minified properties. This wraps around a BaseFile instance,
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and removes lines starting with a # from its content.
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'''
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def __init__(self, file):
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assert isinstance(file, BaseFile)
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self._file = file
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def open(self):
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'''
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Return a file-like object allowing to read() the minified content of
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the properties file.
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'''
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return BytesIO(''.join(l for l in self._file.open().readlines()
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if not l.startswith('#')))
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class BaseFinder(object):
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def __init__(self, base, minify=False):
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'''
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Initializes the instance with a reference base directory. The
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optional minify argument specifies whether file types supporting
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minification (currently only "*.properties") should be minified.
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'''
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self.base = base
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self._minify = minify
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def find(self, pattern):
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'''
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Yield path, BaseFile_instance pairs for all files under the base
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directory and its subdirectories that match the given pattern. See the
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mozpack.path.match documentation for a description of the handled
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patterns.
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'''
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while pattern.startswith('/'):
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pattern = pattern[1:]
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for p, f in self._find(pattern):
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yield p, self._minify_file(p, f)
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def __iter__(self):
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'''
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Iterates over all files under the base directory (excluding files
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starting with a '.' and files at any level under a directory starting
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with a '.').
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for path, file in finder:
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...
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'''
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return self.find('')
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def __contains__(self, pattern):
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raise RuntimeError("'in' operator forbidden for %s. Use contains()." %
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self.__class__.__name__)
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def contains(self, pattern):
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'''
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Return whether some files under the base directory match the given
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pattern. See the mozpack.path.match documentation for a description of
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the handled patterns.
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'''
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return any(self.find(pattern))
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def _minify_file(self, path, file):
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'''
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Return an appropriate MinifiedSomething wrapper for the given BaseFile
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instance (file), according to the file type (determined by the given
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path), if the FileFinder was created with minification enabled.
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Otherwise, just return the given BaseFile instance.
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Currently, only "*.properties" files are handled.
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'''
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if self._minify and not isinstance(file, ExecutableFile):
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if path.endswith('.properties'):
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return MinifiedProperties(file)
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return file
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class FileFinder(BaseFinder):
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'''
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Helper to get appropriate BaseFile instances from the file system.
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'''
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def __init__(self, base, **kargs):
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'''
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Create a FileFinder for files under the given base directory.
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'''
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BaseFinder.__init__(self, base, **kargs)
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def _find(self, pattern):
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'''
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Actual implementation of FileFinder.find(), dispatching to specialized
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member functions depending on what kind of pattern was given.
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Note all files with a name starting with a '.' are ignored when
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scanning directories, but are not ignored when explicitely requested.
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'''
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if '*' in pattern:
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return self._find_glob('', mozpack.path.split(pattern))
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elif os.path.isdir(os.path.join(self.base, pattern)):
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return self._find_dir(pattern)
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else:
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return self._find_file(pattern)
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def _find_dir(self, path):
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'''
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Actual implementation of FileFinder.find() when the given pattern
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corresponds to an existing directory under the base directory.
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Ignores file names starting with a '.' under the given path. If the
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path itself has leafs starting with a '.', they are not ignored.
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'''
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for p in os.listdir(os.path.join(self.base, path)):
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if p.startswith('.'):
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continue
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for p_, f in self._find(mozpack.path.join(path, p)):
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yield p_, f
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def _find_file(self, path):
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'''
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Actual implementation of FileFinder.find() when the given pattern
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corresponds to an existing file under the base directory.
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'''
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srcpath = os.path.join(self.base, path)
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if not os.path.exists(srcpath):
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return
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if is_executable(srcpath):
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yield path, ExecutableFile(srcpath)
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else:
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yield path, File(srcpath)
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def _find_glob(self, base, pattern):
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'''
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Actual implementation of FileFinder.find() when the given pattern
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contains globbing patterns ('*' or '**'). This is meant to be an
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equivalent of:
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for p, f in self:
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if mozpack.path.match(p, pattern):
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yield p, f
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but avoids scanning the entire tree.
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'''
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if not pattern:
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for p, f in self._find(base):
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yield p, f
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elif pattern[0] == '**':
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for p, f in self._find(base):
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if mozpack.path.match(p, mozpack.path.join(*pattern)):
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yield p, f
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elif '*' in pattern[0]:
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if not os.path.exists(os.path.join(self.base, base)):
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return
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for p in os.listdir(os.path.join(self.base, base)):
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if p.startswith('.') and not pattern[0].startswith('.'):
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continue
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if re.match(mozpack.path.translate(pattern[0]), p):
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for p_, f in self._find_glob(mozpack.path.join(base, p),
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pattern[1:]):
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yield p_, f
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else:
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for p, f in self._find_glob(mozpack.path.join(base, pattern[0]),
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pattern[1:]):
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yield p, f
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class JarFinder(BaseFinder):
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'''
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Helper to get appropriate DeflatedFile instances from a JarReader.
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'''
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def __init__(self, base, reader, **kargs):
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'''
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Create a JarFinder for files in the given JarReader. The base argument
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is used as an indication of the Jar file location.
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'''
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assert isinstance(reader, JarReader)
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BaseFinder.__init__(self, base, **kargs)
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self._files = OrderedDict((f.filename, f) for f in reader)
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def _find(self, pattern):
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'''
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Actual implementation of JarFinder.find(), dispatching to specialized
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member functions depending on what kind of pattern was given.
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'''
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if '*' in pattern:
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for p in self._files:
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if mozpack.path.match(p, pattern):
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yield p, DeflatedFile(self._files[p])
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elif pattern == '':
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for p in self._files:
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yield p, DeflatedFile(self._files[p])
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elif pattern in self._files:
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yield pattern, DeflatedFile(self._files[pattern])
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else:
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for p in self._files:
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if mozpack.path.basedir(p, [pattern]) == pattern:
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yield p, DeflatedFile(self._files[p])
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