mercurial/ancestor.py
author Durham Goode <durham@fb.com>
Fri, 03 Apr 2015 15:18:34 -0700
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parent 23342 f710644e1ce9
child 25113 0ca8410ea345
permissions -rw-r--r--
copies: pass changectx instead of manifest to _computenonoverlap The _computenonoverlap function takes two manifests to allow extensions to hook in and read the manifest nodes produced by the function. The remotefilelog extension actually needs the entire changectx instead (which includes the manifest) so it can prefetch the subset of files necessary for a sparse checkout (and the sparse checkout depends on which commit is being accessed, hence the need for the changectx). I have tests in the remotefilelog extension that cover this.
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# ancestor.py - generic DAG ancestor algorithm for mercurial
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#
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# Copyright 2006 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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import heapq
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import util
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from node import nullrev
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def commonancestorsheads(pfunc, *nodes):
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    """Returns a set with the heads of all common ancestors of all nodes,
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    heads(::nodes[0] and ::nodes[1] and ...) .
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    pfunc must return a list of parent vertices for a given vertex.
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    """
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    if not isinstance(nodes, set):
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        nodes = set(nodes)
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    if nullrev in nodes:
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        return set()
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    if len(nodes) <= 1:
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        return nodes
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    allseen = (1 << len(nodes)) - 1
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    seen = [0] * (max(nodes) + 1)
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    for i, n in enumerate(nodes):
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        seen[n] = 1 << i
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    poison = 1 << (i + 1)
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    gca = set()
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    interesting = len(nodes)
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    nv = len(seen) - 1
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    while nv >= 0 and interesting:
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        v = nv
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        nv -= 1
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        if not seen[v]:
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            continue
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        sv = seen[v]
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        if sv < poison:
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            interesting -= 1
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            if sv == allseen:
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                gca.add(v)
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                sv |= poison
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                if v in nodes:
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                    # history is linear
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                    return set([v])
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        if sv < poison:
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            for p in pfunc(v):
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                sp = seen[p]
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                if p == nullrev:
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                    continue
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                if sp == 0:
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                    seen[p] = sv
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                    interesting += 1
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                elif sp != sv:
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                    seen[p] |= sv
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        else:
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            for p in pfunc(v):
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                if p == nullrev:
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                    continue
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                sp = seen[p]
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                if sp and sp < poison:
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                    interesting -= 1
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                seen[p] = sv
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    return gca
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def ancestors(pfunc, *orignodes):
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    """
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    Returns the common ancestors of a and b that are furthest from a
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    root (as measured by longest path).
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    pfunc must return a list of parent vertices for a given vertex.
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    """
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    def deepest(nodes):
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        interesting = {}
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        count = max(nodes) + 1
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        depth = [0] * count
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        seen = [0] * count
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        mapping = []
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        for (i, n) in enumerate(sorted(nodes)):
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            depth[n] = 1
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            b = 1 << i
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            seen[n] = b
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            interesting[b] = 1
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            mapping.append((b, n))
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        nv = count - 1
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        while nv >= 0 and len(interesting) > 1:
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            v = nv
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            nv -= 1
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            dv = depth[v]
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            if dv == 0:
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                continue
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            sv = seen[v]
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            for p in pfunc(v):
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                if p == nullrev:
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                    continue
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                dp = depth[p]
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                nsp = sp = seen[p]
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                if dp <= dv:
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                    depth[p] = dv + 1
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                    if sp != sv:
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                        interesting[sv] += 1
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                        nsp = seen[p] = sv
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                        if sp:
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                            interesting[sp] -= 1
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                            if interesting[sp] == 0:
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                                del interesting[sp]
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                elif dv == dp - 1:
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                    nsp = sp | sv
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                    if nsp == sp:
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                        continue
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                    seen[p] = nsp
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                    interesting.setdefault(nsp, 0)
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                    interesting[nsp] += 1
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                    interesting[sp] -= 1
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                    if interesting[sp] == 0:
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                        del interesting[sp]
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            interesting[sv] -= 1
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            if interesting[sv] == 0:
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                del interesting[sv]
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        if len(interesting) != 1:
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            return []
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        k = 0
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        for i in interesting:
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            k |= i
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        return set(n for (i, n) in mapping if k & i)
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    gca = commonancestorsheads(pfunc, *orignodes)
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    if len(gca) <= 1:
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        return gca
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    return deepest(gca)
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class incrementalmissingancestors(object):
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    '''persistent state used to calculate missing ancestors incrementally
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    Although similar in spirit to lazyancestors below, this is a separate class
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    because trying to support contains and missingancestors operations with the
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    same internal data structures adds needless complexity.'''
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    def __init__(self, pfunc, bases):
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        self.bases = set(bases)
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        if not self.bases:
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            self.bases.add(nullrev)
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        self.pfunc = pfunc
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    def hasbases(self):
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        '''whether the common set has any non-trivial bases'''
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        return self.bases and self.bases != set([nullrev])
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    def addbases(self, newbases):
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        '''grow the ancestor set by adding new bases'''
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        self.bases.update(newbases)
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    def removeancestorsfrom(self, revs):
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        '''remove all ancestors of bases from the set revs (in place)'''
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        bases = self.bases
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        pfunc = self.pfunc
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        revs.difference_update(bases)
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        # nullrev is always an ancestor
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        revs.discard(nullrev)
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        if not revs:
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            return
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        # anything in revs > start is definitely not an ancestor of bases
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        # revs <= start needs to be investigated
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        start = max(bases)
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        keepcount = sum(1 for r in revs if r > start)
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        if len(revs) == keepcount:
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            # no revs to consider
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            return
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   173
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        for curr in xrange(start, min(revs) - 1, -1):
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            if curr not in bases:
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   176
                continue
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            revs.discard(curr)
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            bases.update(pfunc(curr))
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            if len(revs) == keepcount:
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                # no more potential revs to discard
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   181
                break
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   182
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    def missingancestors(self, revs):
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        '''return all the ancestors of revs that are not ancestors of self.bases
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   185
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        This may include elements from revs.
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        Equivalent to the revset (::revs - ::self.bases). Revs are returned in
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   189
        revision number order, which is a topological order.'''
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   190
        revsvisit = set(revs)
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   191
        basesvisit = self.bases
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   192
        pfunc = self.pfunc
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   193
        bothvisit = revsvisit.intersection(basesvisit)
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   194
        revsvisit.difference_update(bothvisit)
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   195
        if not revsvisit:
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   196
            return []
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   197
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   198
        start = max(max(revsvisit), max(basesvisit))
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   199
        # At this point, we hold the invariants that:
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   200
        # - revsvisit is the set of nodes we know are an ancestor of at least
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   201
        #   one of the nodes in revs
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   202
        # - basesvisit is the same for bases
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   203
        # - bothvisit is the set of nodes we know are ancestors of at least one
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   204
        #   of the nodes in revs and one of the nodes in bases. bothvisit and
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   205
        #   revsvisit are mutually exclusive, but bothvisit is a subset of
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   206
        #   basesvisit.
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diff changeset
   207
        # Now we walk down in reverse topo order, adding parents of nodes
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   208
        # already visited to the sets while maintaining the invariants. When a
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   209
        # node is found in both revsvisit and basesvisit, it is removed from
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   210
        # revsvisit and added to bothvisit. When revsvisit becomes empty, there
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diff changeset
   211
        # are no more ancestors of revs that aren't also ancestors of bases, so
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   212
        # exit.
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   213
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   214
        missing = []
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   215
        for curr in xrange(start, nullrev, -1):
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diff changeset
   216
            if not revsvisit:
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   217
                break
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   218
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   219
            if curr in bothvisit:
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   220
                bothvisit.remove(curr)
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   221
                # curr's parents might have made it into revsvisit through
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   222
                # another path
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   223
                for p in pfunc(curr):
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   224
                    revsvisit.discard(p)
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   225
                    basesvisit.add(p)
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   226
                    bothvisit.add(p)
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   227
                continue
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   228
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   229
            if curr in revsvisit:
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   230
                missing.append(curr)
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   231
                revsvisit.remove(curr)
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   232
                thisvisit = revsvisit
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   233
                othervisit = basesvisit
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   234
            elif curr in basesvisit:
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   235
                thisvisit = basesvisit
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   236
                othervisit = revsvisit
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   237
            else:
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   238
                # not an ancestor of revs or bases: ignore
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   239
                continue
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   240
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   241
            for p in pfunc(curr):
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   242
                if p == nullrev:
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   243
                    pass
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   244
                elif p in othervisit or p in bothvisit:
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   245
                    # p is implicitly in thisvisit. This means p is or should be
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   246
                    # in bothvisit
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   247
                    revsvisit.discard(p)
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   248
                    basesvisit.add(p)
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   249
                    bothvisit.add(p)
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   250
                else:
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   251
                    # visit later
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   252
                    thisvisit.add(p)
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   253
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   254
        missing.reverse()
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        return missing
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class lazyancestors(object):
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    def __init__(self, pfunc, revs, stoprev=0, inclusive=False):
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        """Create a new object generating ancestors for the given revs. Does
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        not generate revs lower than stoprev.
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        This is computed lazily starting from revs. The object supports
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        iteration and membership.
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        cl should be a changelog and revs should be an iterable. inclusive is
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        a boolean that indicates whether revs should be included. Revs lower
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        than stoprev will not be generated.
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        Result does not include the null revision."""
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        self._parentrevs = pfunc
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        self._initrevs = revs
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        self._stoprev = stoprev
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        self._inclusive = inclusive
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        # Initialize data structures for __contains__.
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        # For __contains__, we use a heap rather than a deque because
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        # (a) it minimizes the number of parentrevs calls made
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        # (b) it makes the loop termination condition obvious
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        # Python's heap is a min-heap. Multiply all values by -1 to convert it
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        # into a max-heap.
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        self._containsvisit = [-rev for rev in revs]
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        heapq.heapify(self._containsvisit)
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        if inclusive:
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            self._containsseen = set(revs)
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        else:
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            self._containsseen = set()
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    def __nonzero__(self):
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        """False if the set is empty, True otherwise."""
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        try:
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            iter(self).next()
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            return True
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        except StopIteration:
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            return False
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    def __iter__(self):
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        """Generate the ancestors of _initrevs in reverse topological order.
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        If inclusive is False, yield a sequence of revision numbers starting
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        with the parents of each revision in revs, i.e., each revision is *not*
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        considered an ancestor of itself.  Results are in breadth-first order:
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        parents of each rev in revs, then parents of those, etc.
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        If inclusive is True, yield all the revs first (ignoring stoprev),
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        then yield all the ancestors of revs as when inclusive is False.
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        If an element in revs is an ancestor of a different rev it is not
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        yielded again."""
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        seen = set()
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        revs = self._initrevs
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        if self._inclusive:
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            for rev in revs:
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                yield rev
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            seen.update(revs)
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        parentrevs = self._parentrevs
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        stoprev = self._stoprev
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        visit = util.deque(revs)
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        while visit:
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            for parent in parentrevs(visit.popleft()):
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                if parent >= stoprev and parent not in seen:
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                    visit.append(parent)
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                    seen.add(parent)
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                    yield parent
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    def __contains__(self, target):
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        """Test whether target is an ancestor of self._initrevs."""
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        # Trying to do both __iter__ and __contains__ using the same visit
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        # heap and seen set is complex enough that it slows down both. Keep
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        # them separate.
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        seen = self._containsseen
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        if target in seen:
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            return True
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        parentrevs = self._parentrevs
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        visit = self._containsvisit
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        stoprev = self._stoprev
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        heappop = heapq.heappop
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        heappush = heapq.heappush
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        targetseen = False
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        while visit and -visit[0] > target and not targetseen:
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            for parent in parentrevs(-heappop(visit)):
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                if parent < stoprev or parent in seen:
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                    continue
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                # We need to make sure we push all parents into the heap so
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                # that we leave it in a consistent state for future calls.
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                heappush(visit, -parent)
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                seen.add(parent)
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                if parent == target:
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                    targetseen = True
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        return targetseen