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scmutil: consistently return subrepos relative to ctx1 from itersubrepos()...
scmutil: consistently return subrepos relative to ctx1 from itersubrepos() Previously, if a subrepo was added in ctx2 and then compared to another without it (ctx1), the subrepo for ctx2 was returned amongst all of the ctx1 based subrepos, since no subrepo exists in ctx1 to replace it in the 'subpaths' dict. The two callers of this, basectx.status() and cmdutil.diffordiffstat(), both compare the yielded subrepo against ctx2, and thus saw no changes when ctx2's subrepo was returned. The tests here previously didn't mention 's/a' for the 'p1()' case. This appears to have been a known issue, because some diffordiffstat() comments mention that the subpath disappeared, and "the best we can do is ignore it". I originally ran into the issue with some custom convert code to flatten a tree of subrepos causing hg.putcommit() to abort, but this new behavior seems like the correct status and diff behavior regardless. (The abort in convert isn't something users will see, because convert doesn't currently support subrepos in the official repo.)

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py3kcompat.py
65 lines | 2.1 KiB | text/x-python | PythonLexer
Renato Cunha
py3kcompat: added a "compatibility layer" for py3k...
r11748 # py3kcompat.py - compatibility definitions for running hg in py3k
#
# Copyright 2010 Renato Cunha <renatoc@gmail.com>
#
# This software may be used and distributed according to the terms of the
# GNU General Public License version 2 or any later version.
Matt Mackall
py3kcompat: drop unused export
r21292 import builtins
Renato Cunha
py3kcompat: added a "compatibility layer" for py3k...
r11748
from numbers import Number
def bytesformatter(format, args):
'''Custom implementation of a formatter for bytestrings.
Mads Kiilerich
fix trivial spelling errors
r17424 This function currently relies on the string formatter to do the
Renato Cunha
py3kcompat: added a "compatibility layer" for py3k...
r11748 formatting and always returns bytes objects.
>>> bytesformatter(20, 10)
0
>>> bytesformatter('unicode %s, %s!', ('string', 'foo'))
b'unicode string, foo!'
>>> bytesformatter(b'test %s', 'me')
b'test me'
>>> bytesformatter('test %s', 'me')
b'test me'
>>> bytesformatter(b'test %s', b'me')
b'test me'
>>> bytesformatter('test %s', b'me')
b'test me'
>>> bytesformatter('test %d: %s', (1, b'result'))
b'test 1: result'
'''
# The current implementation just converts from bytes to unicode, do
# what's needed and then convert the results back to bytes.
# Another alternative is to use the Python C API implementation.
if isinstance(format, Number):
# If the fixer erroneously passes a number remainder operation to
# bytesformatter, we just return the correct operation
return format % args
if isinstance(format, bytes):
format = format.decode('utf-8', 'surrogateescape')
if isinstance(args, bytes):
args = args.decode('utf-8', 'surrogateescape')
if isinstance(args, tuple):
newargs = []
for arg in args:
if isinstance(arg, bytes):
arg = arg.decode('utf-8', 'surrogateescape')
newargs.append(arg)
args = tuple(newargs)
ret = format % args
return ret.encode('utf-8', 'surrogateescape')
builtins.bytesformatter = bytesformatter
Renato Cunha
py3kcompat: added fake ord implementation for py3k...
r11878 origord = builtins.ord
def fakeord(char):
if isinstance(char, int):
return char
return origord(char)
builtins.ord = fakeord
Renato Cunha
py3kcompat: added a "compatibility layer" for py3k...
r11748 if __name__ == '__main__':
import doctest
doctest.testmod()