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# windows.py - Windows utility function implementations for Mercurial
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#
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# Copyright 2005-2009 Matt Mackall <mpm@selenic.com> and others
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#
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# This software may be used and distributed according to the terms of the
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# GNU General Public License version 2 or any later version.
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from __future__ import absolute_import
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import errno
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import msvcrt
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import os
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import re
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import stat
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import string
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import sys
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from .i18n import _
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from . import (
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encoding,
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error,
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policy,
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pycompat,
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win32,
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)
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try:
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import _winreg as winreg
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winreg.CloseKey
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except ImportError:
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import winreg
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osutil = policy.importmod(r'osutil')
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getfsmountpoint = win32.getvolumename
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getfstype = win32.getfstype
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getuser = win32.getuser
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hidewindow = win32.hidewindow
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makedir = win32.makedir
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nlinks = win32.nlinks
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oslink = win32.oslink
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samedevice = win32.samedevice
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samefile = win32.samefile
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setsignalhandler = win32.setsignalhandler
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spawndetached = win32.spawndetached
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split = os.path.split
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testpid = win32.testpid
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unlink = win32.unlink
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umask = 0o022
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class mixedfilemodewrapper(object):
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"""Wraps a file handle when it is opened in read/write mode.
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fopen() and fdopen() on Windows have a specific-to-Windows requirement
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that files opened with mode r+, w+, or a+ make a call to a file positioning
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function when switching between reads and writes. Without this extra call,
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Python will raise a not very intuitive "IOError: [Errno 0] Error."
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This class wraps posixfile instances when the file is opened in read/write
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mode and automatically adds checks or inserts appropriate file positioning
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calls when necessary.
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"""
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OPNONE = 0
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OPREAD = 1
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OPWRITE = 2
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def __init__(self, fp):
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object.__setattr__(self, r'_fp', fp)
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object.__setattr__(self, r'_lastop', 0)
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def __enter__(self):
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return self._fp.__enter__()
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def __exit__(self, exc_type, exc_val, exc_tb):
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self._fp.__exit__(exc_type, exc_val, exc_tb)
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def __getattr__(self, name):
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return getattr(self._fp, name)
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def __setattr__(self, name, value):
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return self._fp.__setattr__(name, value)
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def _noopseek(self):
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self._fp.seek(0, os.SEEK_CUR)
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def seek(self, *args, **kwargs):
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object.__setattr__(self, r'_lastop', self.OPNONE)
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return self._fp.seek(*args, **kwargs)
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def write(self, d):
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if self._lastop == self.OPREAD:
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self._noopseek()
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object.__setattr__(self, r'_lastop', self.OPWRITE)
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return self._fp.write(d)
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def writelines(self, *args, **kwargs):
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if self._lastop == self.OPREAD:
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self._noopeseek()
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object.__setattr__(self, r'_lastop', self.OPWRITE)
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return self._fp.writelines(*args, **kwargs)
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def read(self, *args, **kwargs):
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if self._lastop == self.OPWRITE:
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self._noopseek()
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object.__setattr__(self, r'_lastop', self.OPREAD)
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return self._fp.read(*args, **kwargs)
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def readline(self, *args, **kwargs):
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if self._lastop == self.OPWRITE:
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self._noopseek()
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object.__setattr__(self, r'_lastop', self.OPREAD)
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return self._fp.readline(*args, **kwargs)
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def readlines(self, *args, **kwargs):
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if self._lastop == self.OPWRITE:
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self._noopseek()
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object.__setattr__(self, r'_lastop', self.OPREAD)
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return self._fp.readlines(*args, **kwargs)
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def posixfile(name, mode='r', buffering=-1):
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'''Open a file with even more POSIX-like semantics'''
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try:
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fp = osutil.posixfile(name, mode, buffering) # may raise WindowsError
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# The position when opening in append mode is implementation defined, so
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# make it consistent with other platforms, which position at EOF.
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if 'a' in mode:
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fp.seek(0, os.SEEK_END)
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if '+' in mode:
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return mixedfilemodewrapper(fp)
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return fp
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except WindowsError as err:
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# convert to a friendlier exception
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raise IOError(err.errno, '%s: %s' % (
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name, encoding.strtolocal(err.strerror)))
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# may be wrapped by win32mbcs extension
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listdir = osutil.listdir
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class winstdout(object):
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'''stdout on windows misbehaves if sent through a pipe'''
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def __init__(self, fp):
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self.fp = fp
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def __getattr__(self, key):
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return getattr(self.fp, key)
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def close(self):
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try:
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self.fp.close()
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except IOError:
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pass
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def write(self, s):
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try:
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# This is workaround for "Not enough space" error on
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# writing large size of data to console.
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limit = 16000
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l = len(s)
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start = 0
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self.softspace = 0
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while start < l:
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end = start + limit
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self.fp.write(s[start:end])
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start = end
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except IOError as inst:
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if inst.errno != 0 and not win32.lasterrorwaspipeerror(inst):
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raise
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self.close()
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raise IOError(errno.EPIPE, 'Broken pipe')
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def flush(self):
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try:
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return self.fp.flush()
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except IOError as inst:
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if not win32.lasterrorwaspipeerror(inst):
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raise
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raise IOError(errno.EPIPE, 'Broken pipe')
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def _is_win_9x():
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'''return true if run on windows 95, 98 or me.'''
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try:
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return sys.getwindowsversion()[3] == 1
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except AttributeError:
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return 'command' in encoding.environ.get('comspec', '')
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def openhardlinks():
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return not _is_win_9x()
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def parsepatchoutput(output_line):
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"""parses the output produced by patch and returns the filename"""
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pf = output_line[14:]
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if pf[0] == '`':
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pf = pf[1:-1] # Remove the quotes
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return pf
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def sshargs(sshcmd, host, user, port):
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'''Build argument list for ssh or Plink'''
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pflag = 'plink' in sshcmd.lower() and '-P' or '-p'
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args = user and ("%s@%s" % (user, host)) or host
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if args.startswith('-') or args.startswith('/'):
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raise error.Abort(
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_('illegal ssh hostname or username starting with - or /: %s') %
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args)
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args = shellquote(args)
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if port:
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args = '%s %s %s' % (pflag, shellquote(port), args)
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return args
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def setflags(f, l, x):
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pass
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def copymode(src, dst, mode=None):
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pass
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def checkexec(path):
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return False
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def checklink(path):
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return False
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def setbinary(fd):
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# When run without console, pipes may expose invalid
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# fileno(), usually set to -1.
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fno = getattr(fd, 'fileno', None)
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if fno is not None and fno() >= 0:
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msvcrt.setmode(fno(), os.O_BINARY)
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def pconvert(path):
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return path.replace(pycompat.ossep, '/')
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def localpath(path):
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return path.replace('/', '\\')
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def normpath(path):
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return pconvert(os.path.normpath(path))
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def normcase(path):
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return encoding.upper(path) # NTFS compares via upper()
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# see posix.py for definitions
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normcasespec = encoding.normcasespecs.upper
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normcasefallback = encoding.upperfallback
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def samestat(s1, s2):
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return False
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def shelltocmdexe(path, env):
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r"""Convert shell variables in the form $var and ${var} inside ``path``
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to %var% form. Existing Windows style variables are left unchanged.
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The variables are limited to the given environment. Unknown variables are
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left unchanged.
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>>> e = {b'var1': b'v1', b'var2': b'v2', b'var3': b'v3'}
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>>> # Only valid values are expanded
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>>> shelltocmdexe(b'cmd $var1 ${var2} %var3% $missing ${missing} %missing%',
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... e)
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'cmd %var1% %var2% %var3% $missing ${missing} %missing%'
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>>> # Single quote prevents expansion, as does \$ escaping
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>>> shelltocmdexe(b"cmd '$var1 ${var2} %var3%' \$var1 \${var2} \\", e)
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'cmd "$var1 ${var2} %var3%" $var1 ${var2} \\'
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>>> # $$ is not special. %% is not special either, but can be the end and
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>>> # start of consecutive variables
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>>> shelltocmdexe(b"cmd $$ %% %var1%%var2%", e)
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'cmd $$ %% %var1%%var2%'
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>>> # No double substitution
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>>> shelltocmdexe(b"$var1 %var1%", {b'var1': b'%var2%', b'var2': b'boom'})
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'%var1% %var1%'
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>>> # Tilde expansion
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>>> shelltocmdexe(b"~/dir ~\dir2 ~tmpfile \~/", {})
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'%USERPROFILE%/dir %USERPROFILE%\\dir2 ~tmpfile ~/'
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"""
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if not any(c in path for c in b"$'~"):
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return path
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varchars = pycompat.sysbytes(string.ascii_letters + string.digits) + b'_-'
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res = b''
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index = 0
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pathlen = len(path)
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while index < pathlen:
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c = path[index]
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if c == b'\'': # no expansion within single quotes
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path = path[index + 1:]
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pathlen = len(path)
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try:
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index = path.index(b'\'')
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res += b'"' + path[:index] + b'"'
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except ValueError:
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res += c + path
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index = pathlen - 1
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elif c == b'%': # variable
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path = path[index + 1:]
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pathlen = len(path)
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try:
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index = path.index(b'%')
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except ValueError:
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res += b'%' + path
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index = pathlen - 1
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else:
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var = path[:index]
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res += b'%' + var + b'%'
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elif c == b'$': # variable
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if path[index + 1:index + 2] == b'{':
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path = path[index + 2:]
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pathlen = len(path)
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try:
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index = path.index(b'}')
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var = path[:index]
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# See below for why empty variables are handled specially
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if env.get(var, '') != '':
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res += b'%' + var + b'%'
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else:
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res += b'${' + var + b'}'
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except ValueError:
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res += b'${' + path
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index = pathlen - 1
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else:
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var = b''
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index += 1
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c = path[index:index + 1]
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while c != b'' and c in varchars:
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var += c
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index += 1
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c = path[index:index + 1]
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# Some variables (like HG_OLDNODE) may be defined, but have an
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# empty value. Those need to be skipped because when spawning
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# cmd.exe to run the hook, it doesn't replace %VAR% for an empty
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# VAR, and that really confuses things like revset expressions.
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# OTOH, if it's left in Unix format and the hook runs sh.exe, it
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# will substitute to an empty string, and everything is happy.
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if env.get(var, '') != '':
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res += b'%' + var + b'%'
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else:
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res += b'$' + var
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if c != '':
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index -= 1
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elif (c == b'~' and index + 1 < pathlen
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and path[index + 1] in (b'\\', b'/')):
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res += "%USERPROFILE%"
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elif (c == b'\\' and index + 1 < pathlen
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and path[index + 1] in (b'$', b'~')):
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# Skip '\', but only if it is escaping $ or ~
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res += path[index + 1]
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index += 1
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else:
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res += c
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index += 1
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return res
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# A sequence of backslashes is special iff it precedes a double quote:
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# - if there's an even number of backslashes, the double quote is not
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# quoted (i.e. it ends the quoted region)
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# - if there's an odd number of backslashes, the double quote is quoted
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# - in both cases, every pair of backslashes is unquoted into a single
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# backslash
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# (See http://msdn2.microsoft.com/en-us/library/a1y7w461.aspx )
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# So, to quote a string, we must surround it in double quotes, double
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# the number of backslashes that precede double quotes and add another
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# backslash before every double quote (being careful with the double
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# quote we've appended to the end)
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_quotere = None
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_needsshellquote = None
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def shellquote(s):
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r"""
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>>> shellquote(br'C:\Users\xyz')
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'"C:\\Users\\xyz"'
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>>> shellquote(br'C:\Users\xyz/mixed')
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'"C:\\Users\\xyz/mixed"'
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>>> # Would be safe not to quote too, since it is all double backslashes
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>>> shellquote(br'C:\\Users\\xyz')
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'"C:\\\\Users\\\\xyz"'
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>>> # But this must be quoted
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>>> shellquote(br'C:\\Users\\xyz/abc')
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'"C:\\\\Users\\\\xyz/abc"'
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"""
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global _quotere
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if _quotere is None:
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_quotere = re.compile(r'(\\*)("|\\$)')
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global _needsshellquote
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if _needsshellquote is None:
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# ":" is also treated as "safe character", because it is used as a part
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# of path name on Windows. "\" is also part of a path name, but isn't
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# safe because shlex.split() (kind of) treats it as an escape char and
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# drops it. It will leave the next character, even if it is another
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# "\".
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_needsshellquote = re.compile(r'[^a-zA-Z0-9._:/-]').search
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if s and not _needsshellquote(s) and not _quotere.search(s):
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# "s" shouldn't have to be quoted
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return s
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return '"%s"' % _quotere.sub(r'\1\1\\\2', s)
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def _unquote(s):
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if s.startswith(b'"') and s.endswith(b'"'):
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return s[1:-1]
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return s
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def shellsplit(s):
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"""Parse a command string in cmd.exe way (best-effort)"""
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return pycompat.maplist(_unquote, pycompat.shlexsplit(s, posix=False))
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def quotecommand(cmd):
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"""Build a command string suitable for os.popen* calls."""
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if sys.version_info < (2, 7, 1):
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# Python versions since 2.7.1 do this extra quoting themselves
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return '"' + cmd + '"'
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return cmd
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# if you change this stub into a real check, please try to implement the
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# username and groupname functions above, too.
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def isowner(st):
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return True
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def findexe(command):
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'''Find executable for command searching like cmd.exe does.
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If command is a basename then PATH is searched for command.
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PATH isn't searched if command is an absolute or relative path.
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An extension from PATHEXT is found and added if not present.
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If command isn't found None is returned.'''
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|
|
pathext = encoding.environ.get('PATHEXT', '.COM;.EXE;.BAT;.CMD')
|
|
|
pathexts = [ext for ext in pathext.lower().split(pycompat.ospathsep)]
|
|
|
if os.path.splitext(command)[1].lower() in pathexts:
|
|
|
pathexts = ['']
|
|
|
|
|
|
def findexisting(pathcommand):
|
|
|
'Will append extension (if needed) and return existing file'
|
|
|
for ext in pathexts:
|
|
|
executable = pathcommand + ext
|
|
|
if os.path.exists(executable):
|
|
|
return executable
|
|
|
return None
|
|
|
|
|
|
if pycompat.ossep in command:
|
|
|
return findexisting(command)
|
|
|
|
|
|
for path in encoding.environ.get('PATH', '').split(pycompat.ospathsep):
|
|
|
executable = findexisting(os.path.join(path, command))
|
|
|
if executable is not None:
|
|
|
return executable
|
|
|
return findexisting(os.path.expanduser(os.path.expandvars(command)))
|
|
|
|
|
|
_wantedkinds = {stat.S_IFREG, stat.S_IFLNK}
|
|
|
|
|
|
def statfiles(files):
|
|
|
'''Stat each file in files. Yield each stat, or None if a file
|
|
|
does not exist or has a type we don't care about.
|
|
|
|
|
|
Cluster and cache stat per directory to minimize number of OS stat calls.'''
|
|
|
dircache = {} # dirname -> filename -> status | None if file does not exist
|
|
|
getkind = stat.S_IFMT
|
|
|
for nf in files:
|
|
|
nf = normcase(nf)
|
|
|
dir, base = os.path.split(nf)
|
|
|
if not dir:
|
|
|
dir = '.'
|
|
|
cache = dircache.get(dir, None)
|
|
|
if cache is None:
|
|
|
try:
|
|
|
dmap = dict([(normcase(n), s)
|
|
|
for n, k, s in listdir(dir, True)
|
|
|
if getkind(s.st_mode) in _wantedkinds])
|
|
|
except OSError as err:
|
|
|
# Python >= 2.5 returns ENOENT and adds winerror field
|
|
|
# EINVAL is raised if dir is not a directory.
|
|
|
if err.errno not in (errno.ENOENT, errno.EINVAL,
|
|
|
errno.ENOTDIR):
|
|
|
raise
|
|
|
dmap = {}
|
|
|
cache = dircache.setdefault(dir, dmap)
|
|
|
yield cache.get(base, None)
|
|
|
|
|
|
def username(uid=None):
|
|
|
"""Return the name of the user with the given uid.
|
|
|
|
|
|
If uid is None, return the name of the current user."""
|
|
|
return None
|
|
|
|
|
|
def groupname(gid=None):
|
|
|
"""Return the name of the group with the given gid.
|
|
|
|
|
|
If gid is None, return the name of the current group."""
|
|
|
return None
|
|
|
|
|
|
def removedirs(name):
|
|
|
"""special version of os.removedirs that does not remove symlinked
|
|
|
directories or junction points if they actually contain files"""
|
|
|
if listdir(name):
|
|
|
return
|
|
|
os.rmdir(name)
|
|
|
head, tail = os.path.split(name)
|
|
|
if not tail:
|
|
|
head, tail = os.path.split(head)
|
|
|
while head and tail:
|
|
|
try:
|
|
|
if listdir(head):
|
|
|
return
|
|
|
os.rmdir(head)
|
|
|
except (ValueError, OSError):
|
|
|
break
|
|
|
head, tail = os.path.split(head)
|
|
|
|
|
|
def rename(src, dst):
|
|
|
'''atomically rename file src to dst, replacing dst if it exists'''
|
|
|
try:
|
|
|
os.rename(src, dst)
|
|
|
except OSError as e:
|
|
|
if e.errno != errno.EEXIST:
|
|
|
raise
|
|
|
unlink(dst)
|
|
|
os.rename(src, dst)
|
|
|
|
|
|
def gethgcmd():
|
|
|
return [sys.executable] + sys.argv[:1]
|
|
|
|
|
|
def groupmembers(name):
|
|
|
# Don't support groups on Windows for now
|
|
|
raise KeyError
|
|
|
|
|
|
def isexec(f):
|
|
|
return False
|
|
|
|
|
|
class cachestat(object):
|
|
|
def __init__(self, path):
|
|
|
pass
|
|
|
|
|
|
def cacheable(self):
|
|
|
return False
|
|
|
|
|
|
def lookupreg(key, valname=None, scope=None):
|
|
|
''' Look up a key/value name in the Windows registry.
|
|
|
|
|
|
valname: value name. If unspecified, the default value for the key
|
|
|
is used.
|
|
|
scope: optionally specify scope for registry lookup, this can be
|
|
|
a sequence of scopes to look up in order. Default (CURRENT_USER,
|
|
|
LOCAL_MACHINE).
|
|
|
'''
|
|
|
if scope is None:
|
|
|
scope = (winreg.HKEY_CURRENT_USER, winreg.HKEY_LOCAL_MACHINE)
|
|
|
elif not isinstance(scope, (list, tuple)):
|
|
|
scope = (scope,)
|
|
|
for s in scope:
|
|
|
try:
|
|
|
val = winreg.QueryValueEx(winreg.OpenKey(s, key), valname)[0]
|
|
|
# never let a Unicode string escape into the wild
|
|
|
return encoding.unitolocal(val)
|
|
|
except EnvironmentError:
|
|
|
pass
|
|
|
|
|
|
expandglobs = True
|
|
|
|
|
|
def statislink(st):
|
|
|
'''check whether a stat result is a symlink'''
|
|
|
return False
|
|
|
|
|
|
def statisexec(st):
|
|
|
'''check whether a stat result is an executable file'''
|
|
|
return False
|
|
|
|
|
|
def poll(fds):
|
|
|
# see posix.py for description
|
|
|
raise NotImplementedError()
|
|
|
|
|
|
def readpipe(pipe):
|
|
|
"""Read all available data from a pipe."""
|
|
|
chunks = []
|
|
|
while True:
|
|
|
size = win32.peekpipe(pipe)
|
|
|
if not size:
|
|
|
break
|
|
|
|
|
|
s = pipe.read(size)
|
|
|
if not s:
|
|
|
break
|
|
|
chunks.append(s)
|
|
|
|
|
|
return ''.join(chunks)
|
|
|
|
|
|
def bindunixsocket(sock, path):
|
|
|
raise NotImplementedError('unsupported platform')
|
|
|
|