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# manifest.py - manifest revision class for mercurial
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#
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# Copyright 2005-2007 Matt Mackall <mpm@selenic.com>
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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 i18n import _
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import mdiff, parsers, error, revlog
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import array, struct
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class manifestdict(dict):
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def __init__(self, mapping=None, flags=None):
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if mapping is None:
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mapping = {}
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if flags is None:
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flags = {}
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dict.__init__(self, mapping)
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self._flags = flags
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def flags(self, f):
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return self._flags.get(f, "")
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def set(self, f, flags):
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self._flags[f] = flags
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def copy(self):
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return manifestdict(self, dict.copy(self._flags))
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class manifest(revlog.revlog):
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def __init__(self, opener):
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self._mancache = None
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revlog.revlog.__init__(self, opener, "00manifest.i")
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def parse(self, lines):
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mfdict = manifestdict()
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parsers.parse_manifest(mfdict, mfdict._flags, lines)
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return mfdict
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def readdelta(self, node):
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r = self.rev(node)
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return self.parse(mdiff.patchtext(self.revdiff(r - 1, r)))
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def read(self, node):
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if node == revlog.nullid:
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return manifestdict() # don't upset local cache
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if self._mancache and self._mancache[0] == node:
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return self._mancache[1]
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text = self.revision(node)
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arraytext = array.array('c', text)
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mapping = self.parse(text)
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self._mancache = (node, mapping, arraytext)
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return mapping
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def _search(self, m, s, lo=0, hi=None):
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'''return a tuple (start, end) that says where to find s within m.
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If the string is found m[start:end] are the line containing
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that string. If start == end the string was not found and
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they indicate the proper sorted insertion point. This was
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taken from bisect_left, and modified to find line start/end as
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it goes along.
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m should be a buffer or a string
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s is a string'''
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def advance(i, c):
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while i < lenm and m[i] != c:
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i += 1
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return i
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if not s:
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return (lo, lo)
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lenm = len(m)
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if not hi:
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hi = lenm
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while lo < hi:
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mid = (lo + hi) // 2
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start = mid
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while start > 0 and m[start - 1] != '\n':
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start -= 1
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end = advance(start, '\0')
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if m[start:end] < s:
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# we know that after the null there are 40 bytes of sha1
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# this translates to the bisect lo = mid + 1
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lo = advance(end + 40, '\n') + 1
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else:
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# this translates to the bisect hi = mid
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hi = start
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end = advance(lo, '\0')
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found = m[lo:end]
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if cmp(s, found) == 0:
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# we know that after the null there are 40 bytes of sha1
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end = advance(end + 40, '\n')
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return (lo, end + 1)
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else:
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return (lo, lo)
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def find(self, node, f):
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'''look up entry for a single file efficiently.
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return (node, flags) pair if found, (None, None) if not.'''
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if self._mancache and self._mancache[0] == node:
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return self._mancache[1].get(f), self._mancache[1].flags(f)
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text = self.revision(node)
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start, end = self._search(text, f)
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if start == end:
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return None, None
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l = text[start:end]
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f, n = l.split('\0')
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return revlog.bin(n[:40]), n[40:-1]
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def add(self, map, transaction, link, p1=None, p2=None,
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changed=None):
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# apply the changes collected during the bisect loop to our addlist
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# return a delta suitable for addrevision
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def addlistdelta(addlist, x):
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# start from the bottom up
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# so changes to the offsets don't mess things up.
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for start, end, content in reversed(x):
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if content:
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addlist[start:end] = array.array('c', content)
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else:
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del addlist[start:end]
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return "".join(struct.pack(">lll", start, end, len(content)) + content
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for start, end, content in x)
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def checkforbidden(l):
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for f in l:
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if '\n' in f or '\r' in f:
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raise error.RevlogError(
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_("'\\n' and '\\r' disallowed in filenames: %r") % f)
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# if we're using the cache, make sure it is valid and
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# parented by the same node we're diffing against
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if not (changed and self._mancache and p1 and self._mancache[0] == p1):
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files = sorted(map)
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checkforbidden(files)
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# if this is changed to support newlines in filenames,
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# be sure to check the templates/ dir again (especially *-raw.tmpl)
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hex, flags = revlog.hex, map.flags
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text = ''.join("%s\000%s%s\n" % (f, hex(map[f]), flags(f))
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for f in files)
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arraytext = array.array('c', text)
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cachedelta = None
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else:
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added, removed = changed
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addlist = self._mancache[2]
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checkforbidden(added)
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# combine the changed lists into one list for sorting
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work = [(x, False) for x in added]
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work.extend((x, True) for x in removed)
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# this could use heapq.merge() (from python2.6+) or equivalent
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# since the lists are already sorted
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work.sort()
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delta = []
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dstart = None
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dend = None
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dline = [""]
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start = 0
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# zero copy representation of addlist as a buffer
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addbuf = buffer(addlist)
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# start with a readonly loop that finds the offset of
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# each line and creates the deltas
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for f, todelete in work:
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# bs will either be the index of the item or the insert point
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start, end = self._search(addbuf, f, start)
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if not todelete:
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l = "%s\000%s%s\n" % (f, revlog.hex(map[f]), map.flags(f))
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else:
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if start == end:
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# item we want to delete was not found, error out
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raise AssertionError(
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_("failed to remove %s from manifest") % f)
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l = ""
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if dstart != None and dstart <= start and dend >= start:
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if dend < end:
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dend = end
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if l:
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dline.append(l)
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else:
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if dstart != None:
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delta.append([dstart, dend, "".join(dline)])
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dstart = start
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dend = end
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dline = [l]
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if dstart != None:
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delta.append([dstart, dend, "".join(dline)])
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# apply the delta to the addlist, and get a delta for addrevision
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cachedelta = addlistdelta(addlist, delta)
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# the delta is only valid if we've been processing the tip revision
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if p1 != self.tip():
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cachedelta = None
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arraytext = addlist
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text = buffer(arraytext)
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n = self.addrevision(text, transaction, link, p1, p2, cachedelta)
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self._mancache = (n, map, arraytext)
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return n
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