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phabricator: fix processing of tags/desc in getoldnodedrevmap()...
phabricator: fix processing of tags/desc in getoldnodedrevmap() It seems that the previous logic was wrong (it essentially comes from changeset 3ab0d5767b54 where the result got accumulated instead of early returned). First of all, the "continue" in first "if m:" is useless because we're at the end of the loop. Then, the algorithm seems weird because we will process all predecessors of a node and possibly override `toconfirm[node]` for each of these having a tag (maybe this doesn't happen, but still). Finally, we would also override `toconfirm[node]` when the "Differential Revision: " is found in changeset description. Maybe this is not a big deal when there is no mix of local tag and changeset description update? The logic is changed so that the loop on predecessors stops upon first match of a tag and so that the changeset description is only checked if no tag was found. Therefore, `toconfirm[node]` is only set once. Differential Revision: https://phab.mercurial-scm.org/D7513

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compat.py
101 lines | 2.5 KiB | text/x-python | PythonLexer
from math import ldexp
import struct
import sys
if sys.version_info.major < 3:
from datetime import tzinfo, timedelta
class timezone(tzinfo):
def __init__(self, offset):
self.offset = offset
def utcoffset(self, dt):
return self.offset
def dst(self, dt):
return timedelta(0)
def tzname(self, dt):
return 'UTC+00:00'
def as_unicode(string):
return string.decode('utf-8')
def iteritems(self):
return self.iteritems()
def bytes_from_list(values):
return bytes(bytearray(values))
byte_as_integer = ord
timezone.utc = timezone(timedelta(0))
xrange = xrange # noqa: F821
long = long # noqa: F821
unicode = unicode # noqa: F821
else:
from datetime import timezone
def byte_as_integer(bytestr):
return bytestr[0]
def as_unicode(string):
return string
def iteritems(self):
return self.items()
xrange = range
long = int
unicode = str
bytes_from_list = bytes
if sys.version_info.major >= 3 and sys.version_info.minor >= 6:
# Python 3.6 added 16 bit floating point to struct
def pack_float16(value):
try:
return struct.pack('>Be', 0xf9, value)
except OverflowError:
return False
def unpack_float16(payload):
return struct.unpack('>e', payload)[0]
else:
def pack_float16(value):
# Based on node-cbor by hildjj
# which was based in turn on Carsten Borman's cn-cbor
u32 = struct.pack('>f', value)
u = struct.unpack('>I', u32)[0]
if u & 0x1FFF != 0:
return False
s16 = (u >> 16) & 0x8000
exponent = (u >> 23) & 0xff
mantissa = u & 0x7fffff
if 113 <= exponent <= 142:
s16 += ((exponent - 112) << 10) + (mantissa >> 13)
elif 103 <= exponent < 113:
if mantissa & ((1 << (126 - exponent)) - 1):
return False
s16 += ((mantissa + 0x800000) >> (126 - exponent))
else:
return False
return struct.pack('>BH', 0xf9, s16)
def unpack_float16(payload):
# Code adapted from RFC 7049, appendix D
def decode_single(single):
return struct.unpack("!f", struct.pack("!I", single))[0]
payload = struct.unpack('>H', payload)[0]
value = (payload & 0x7fff) << 13 | (payload & 0x8000) << 16
if payload & 0x7c00 != 0x7c00:
return ldexp(decode_single(value), 112)
return decode_single(value | 0x7f800000)