mercurial/hbisect.py
author FUJIWARA Katsunori <foozy@lares.dti.ne.jp>
Sat, 24 Dec 2011 19:05:35 +0900
branchstable
changeset 15723 1581da01d5c4
parent 15308 ab341fbb05b1
child 15404 c1eb8398fe82
permissions -rw-r--r--
windows: use normalized path as path to subrepo path to subrepo is used to identify or check location of subrepo. it should be normalized (in "/" delimiter form), because it is also used with narrowmatcher which uses only normalized path even on Windows environment. this patch applies "util.pconvert()" on path to subrepo (called "subpath") to normalize it. for this patch, referers of below were checked. - subrepo.state() - subrepo.itersubrepos() - subrepo.subrepo() - context.sub() - context.substate() typical usecase is: for subpath in ctx.substate: sub = ctx.sub(subpath) ... ctx.substate[subpath] .... in this case, normalization has no side effect, because keys given from substate are used as key itself. other cases shown below also seem to require subpath to be normalized. - path components are joined by "/", in "commands.forget()": for subpath in ctx.substate: subforget[subpath + '/' + fsub] = (fsub, sub) - normalized "file" is used to check below condition, in "commands.revert()", "localrepository.commit()", and "localrepository._checknested()" file in ctx.substate - substate.keys() is passed to dirstate.walk()/status() which use only normalized pathes
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# changelog bisection for mercurial
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#
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# Copyright 2007 Matt Mackall
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# Copyright 2005, 2006 Benoit Boissinot <benoit.boissinot@ens-lyon.org>
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#
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# Inspired by git bisect, extension skeleton taken from mq.py.
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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 os, error
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from i18n import _
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from node import short, hex
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import util
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def bisect(changelog, state):
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    """find the next node (if any) for testing during a bisect search.
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    returns a (nodes, number, good) tuple.
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    'nodes' is the final result of the bisect if 'number' is 0.
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    Otherwise 'number' indicates the remaining possible candidates for
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    the search and 'nodes' contains the next bisect target.
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    'good' is True if bisect is searching for a first good changeset, False
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    if searching for a first bad one.
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    """
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    clparents = changelog.parentrevs
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    skip = set([changelog.rev(n) for n in state['skip']])
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    def buildancestors(bad, good):
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        # only the earliest bad revision matters
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        badrev = min([changelog.rev(n) for n in bad])
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        goodrevs = [changelog.rev(n) for n in good]
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        goodrev = min(goodrevs)
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        # build visit array
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        ancestors = [None] * (len(changelog) + 1) # an extra for [-1]
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        # set nodes descended from goodrevs
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        for rev in goodrevs:
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            ancestors[rev] = []
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        for rev in xrange(goodrev + 1, len(changelog)):
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            for prev in clparents(rev):
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                if ancestors[prev] == []:
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                    ancestors[rev] = []
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        # clear good revs from array
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        for rev in goodrevs:
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            ancestors[rev] = None
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        for rev in xrange(len(changelog), goodrev, -1):
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            if ancestors[rev] is None:
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                for prev in clparents(rev):
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                    ancestors[prev] = None
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        if ancestors[badrev] is None:
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            return badrev, None
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        return badrev, ancestors
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    good = False
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    badrev, ancestors = buildancestors(state['bad'], state['good'])
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    if not ancestors: # looking for bad to good transition?
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        good = True
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        badrev, ancestors = buildancestors(state['good'], state['bad'])
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    bad = changelog.node(badrev)
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    if not ancestors: # now we're confused
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        if len(state['bad']) == 1 and len(state['good']) == 1:
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            raise util.Abort(_("starting revisions are not directly related"))
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        raise util.Abort(_("inconsistent state, %s:%s is good and bad")
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                         % (badrev, short(bad)))
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    # build children dict
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    children = {}
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    visit = [badrev]
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    candidates = []
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    while visit:
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        rev = visit.pop(0)
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        if ancestors[rev] == []:
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            candidates.append(rev)
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            for prev in clparents(rev):
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                if prev != -1:
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                    if prev in children:
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                        children[prev].append(rev)
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                    else:
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                        children[prev] = [rev]
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                        visit.append(prev)
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    candidates.sort()
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    # have we narrowed it down to one entry?
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    # or have all other possible candidates besides 'bad' have been skipped?
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    tot = len(candidates)
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    unskipped = [c for c in candidates if (c not in skip) and (c != badrev)]
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    if tot == 1 or not unskipped:
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        return ([changelog.node(rev) for rev in candidates], 0, good)
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    perfect = tot // 2
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    # find the best node to test
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    best_rev = None
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    best_len = -1
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    poison = set()
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    for rev in candidates:
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        if rev in poison:
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            # poison children
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            poison.update(children.get(rev, []))
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            continue
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        a = ancestors[rev] or [rev]
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        ancestors[rev] = None
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        x = len(a) # number of ancestors
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        y = tot - x # number of non-ancestors
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        value = min(x, y) # how good is this test?
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        if value > best_len and rev not in skip:
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            best_len = value
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            best_rev = rev
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            if value == perfect: # found a perfect candidate? quit early
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                break
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        if y < perfect and rev not in skip: # all downhill from here?
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            # poison children
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            poison.update(children.get(rev, []))
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            continue
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        for c in children.get(rev, []):
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   123
            if ancestors[c]:
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                ancestors[c] = list(set(ancestors[c] + a))
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   125
            else:
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   126
                ancestors[c] = a + [c]
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parents: 5733
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   127
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   128
    assert best_rev is not None
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   129
    best_node = changelog.node(best_rev)
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a7678cbd7c28 bisect extension for mercurial
Benoit Boissinot <benoit.boissinot@ens-lyon.org>
parents:
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   130
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8f256bf98219 Add support for multiple possible bisect results (issue1228, issue1182)
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   131
    return ([best_node], tot, good)
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   133
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def load_state(repo):
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   135
    state = {'good': [], 'bad': [], 'skip': []}
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   136
    if os.path.exists(repo.join("bisect.state")):
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   137
        for l in repo.opener("bisect.state"):
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            kind, node = l[:-1].split()
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            node = repo.lookup(node)
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   140
            if kind not in state:
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   141
                raise util.Abort(_("unknown bisect kind %s") % kind)
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   142
            state[kind].append(node)
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   143
    return state
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   145
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   146
def save_state(repo, state):
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    f = repo.opener("bisect.state", "w", atomictemp=True)
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   148
    wlock = repo.wlock()
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   149
    try:
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        for kind in state:
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   151
            for node in state[kind]:
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                f.write("%s %s\n" % (kind, hex(node)))
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        f.close()
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   154
    finally:
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Ronny Pfannschmidt <Ronny.Pfannschmidt@gmx.de>
parents: 7902
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        wlock.release()
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   156
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f19de58af225 revset.bisect: move bisect() code to hbisect.py
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def get(repo, status):
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   158
    """
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   159
    Return a list of revision(s) that match the given status:
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   160
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   161
    - ``good``, ``bad``, ``skip``: csets explicitly marked as good/bad/skip
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   162
    - ``goods``, ``bads``      : csets topologicaly good/bad
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   163
    - ``range``              : csets taking part in the bisection
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   164
    - ``pruned``             : csets that are goods, bads or skipped
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   165
    - ``untested``           : csets whose fate is yet unknown
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   166
    - ``ignored``            : csets ignored due to DAG topology
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parents: 15057
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   167
    """
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   168
    state = load_state(repo)
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parents: 15057
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   169
    if status in ('good', 'bad', 'skip'):
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   170
        return [repo.changelog.rev(n) for n in state[status]]
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   171
    else:
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   172
        # In the floowing sets, we do *not* call 'bisect()' with more
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   173
        # than one level of recusrsion, because that can be very, very
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   174
        # time consuming. Instead, we always develop the expression as
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   175
        # much as possible.
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   176
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   177
        # 'range' is all csets that make the bisection:
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   178
        #   - have a good ancestor and a bad descendant, or conversely
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   179
        # that's because the bisection can go either way
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   180
        range = '( bisect(bad)::bisect(good) | bisect(good)::bisect(bad) )'
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   181
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   182
        _t = [c.rev() for c in repo.set('bisect(good)::bisect(bad)')]
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   183
        # The sets of topologically good or bad csets
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   184
        if len(_t) == 0:
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   185
            # Goods are topologically after bads
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   186
            goods = 'bisect(good)::'    # Pruned good csets
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   187
            bads  = '::bisect(bad)'     # Pruned bad csets
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   188
        else:
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   189
            # Goods are topologically before bads
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   190
            goods = '::bisect(good)'    # Pruned good csets
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   191
            bads  = 'bisect(bad)::'     # Pruned bad csets
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   192
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   193
        # 'pruned' is all csets whose fate is already known: good, bad, skip
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   194
        skips = 'bisect(skip)'                 # Pruned skipped csets
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   195
        pruned = '( (%s) | (%s) | (%s) )' % (goods, bads, skips)
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   196
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   197
        # 'untested' is all cset that are- in 'range', but not in 'pruned'
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   198
        untested = '( (%s) - (%s) )' % (range, pruned)
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   199
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   200
        # 'ignored' is all csets that were not used during the bisection
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diff changeset
   201
        # due to DAG topology, but may however have had an impact.
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   202
        # Eg., a branch merged between bads and goods, but whose branch-
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   203
        # point is out-side of the range.
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   204
        iba = '::bisect(bad) - ::bisect(good)'  # Ignored bads' ancestors
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   205
        iga = '::bisect(good) - ::bisect(bad)'  # Ignored goods' ancestors
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   206
        ignored = '( ( (%s) | (%s) ) - (%s) )' % (iba, iga, range)
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   207
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   208
        if status == 'range':
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   209
            return [c.rev() for c in repo.set(range)]
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   210
        elif status == 'pruned':
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   211
            return [c.rev() for c in repo.set(pruned)]
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   212
        elif status == 'untested':
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   213
            return [c.rev() for c in repo.set(untested)]
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   214
        elif status == 'ignored':
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   215
            return [c.rev() for c in repo.set(ignored)]
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   216
        elif status == "goods":
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   217
            return [c.rev() for c in repo.set(goods)]
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   218
        elif status == "bads":
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   219
            return [c.rev() for c in repo.set(bads)]
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   220
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diff changeset
   221
        else:
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   222
            raise error.ParseError(_('invalid bisect state'))
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   223
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   224
def label(repo, node, short=False):
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   225
    rev = repo.changelog.rev(node)
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    # Try explicit sets
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    if rev in get(repo, 'good'):
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        # i18n: bisect changeset status
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        return _('good')
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    if rev in get(repo, 'bad'):
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        # i18n: bisect changeset status
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        return _('bad')
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    if rev in get(repo, 'skip'):
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        # i18n: bisect changeset status
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        return _('skipped')
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    if rev in get(repo, 'untested'):
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        # i18n: bisect changeset status
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        return _('untested')
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    if rev in get(repo, 'ignored'):
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        # i18n: bisect changeset status
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        return _('ignored')
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    # Try implicit sets
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    if rev in get(repo, 'goods'):
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        # i18n: bisect changeset status
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        return _('good (implicit)')
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    if rev in get(repo, 'bads'):
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        # i18n: bisect changeset status
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        return _('bad (implicit)')
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    return None
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def shortlabel(label):
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    if label:
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        return label[0].upper()
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    return None