annotate mercurial/hbisect.py @ 44644:dbe9182c90f5

phabricator: combine commit messages into the review when folding commits No visible changes here, until an option to enable it is added to `phabsend`. This combines the Differential fields like Arcanist does, rather than simply concatenating the text blocks. Aside from populating everything properly in the web interface, Phabricator fails the review create/update if repeated fields are seen as would happen with simple concatenation. On the flip side, now that the Summary and Test Plan fields can contain data from multiple commits, we can't just join these fields together to determine if an amend is needed. If that were to happen, every single commit in the folded range would get amended with the combined commit message, which seems clearly wrong. Aside from making a minor assumption about the content of the Differential Revision field (it seems they allow some minor variances with spacing), this means that for folded reviews, you can't post it, go to the web page add a missing Test Plan, and then get it added to the commit message by re-posting it. I don't think that's a big deal. Differential Revision: https://phab.mercurial-scm.org/D8309
author Matt Harbison <matt_harbison@yahoo.com>
date Fri, 06 Mar 2020 17:03:04 -0500
parents 9d2b2df2c2ba
children e641bb2a6159
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1 # changelog bisection for mercurial
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2 #
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3 # Copyright 2007 Matt Mackall
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4 # Copyright 2005, 2006 Benoit Boissinot <benoit.boissinot@ens-lyon.org>
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5 #
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6 # Inspired by git bisect, extension skeleton taken from mq.py.
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7 #
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8 # This software may be used and distributed according to the terms of the
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9 # GNU General Public License version 2 or any later version.
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10
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11 from __future__ import absolute_import
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12
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13 import collections
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14 import contextlib
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15
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16 from .i18n import _
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17 from .node import (
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18 hex,
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19 short,
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20 )
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21 from . import error
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22
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23
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24 def bisect(repo, state):
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25 """find the next node (if any) for testing during a bisect search.
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26 returns a (nodes, number, good) tuple.
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27
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28 'nodes' is the final result of the bisect if 'number' is 0.
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29 Otherwise 'number' indicates the remaining possible candidates for
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30 the search and 'nodes' contains the next bisect target.
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31 'good' is True if bisect is searching for a first good changeset, False
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32 if searching for a first bad one.
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33 """
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34
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35 repo = repo.unfiltered()
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36 changelog = repo.changelog
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37 clparents = changelog.parentrevs
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38 skip = {changelog.rev(n) for n in state[b'skip']}
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39
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40 def buildancestors(bad, good):
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41 badrev = min([changelog.rev(n) for n in bad])
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42 ancestors = collections.defaultdict(lambda: None)
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43 for rev in repo.revs(b"descendants(%ln) - ancestors(%ln)", good, good):
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44 ancestors[rev] = []
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45 if ancestors[badrev] is None:
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46 return badrev, None
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47 return badrev, ancestors
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48
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49 good = False
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50 badrev, ancestors = buildancestors(state[b'bad'], state[b'good'])
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51 if not ancestors: # looking for bad to good transition?
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52 good = True
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53 badrev, ancestors = buildancestors(state[b'good'], state[b'bad'])
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54 bad = changelog.node(badrev)
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55 if not ancestors: # now we're confused
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56 if (
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57 len(state[b'bad']) == 1
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58 and len(state[b'good']) == 1
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59 and state[b'bad'] != state[b'good']
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60 ):
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61 raise error.Abort(_(b"starting revisions are not directly related"))
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62 raise error.Abort(
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63 _(b"inconsistent state, %d:%s is good and bad")
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64 % (badrev, short(bad))
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65 )
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66
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67 # build children dict
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68 children = {}
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69 visit = collections.deque([badrev])
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70 candidates = []
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71 while visit:
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72 rev = visit.popleft()
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73 if ancestors[rev] == []:
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74 candidates.append(rev)
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75 for prev in clparents(rev):
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76 if prev != -1:
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77 if prev in children:
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78 children[prev].append(rev)
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79 else:
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80 children[prev] = [rev]
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81 visit.append(prev)
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82
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83 candidates.sort()
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84 # have we narrowed it down to one entry?
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85 # or have all other possible candidates besides 'bad' have been skipped?
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86 tot = len(candidates)
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87 unskipped = [c for c in candidates if (c not in skip) and (c != badrev)]
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88 if tot == 1 or not unskipped:
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89 return ([changelog.node(c) for c in candidates], 0, good)
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90 perfect = tot // 2
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91
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92 # find the best node to test
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93 best_rev = None
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94 best_len = -1
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95 poison = set()
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96 for rev in candidates:
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97 if rev in poison:
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98 # poison children
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99 poison.update(children.get(rev, []))
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100 continue
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101
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102 a = ancestors[rev] or [rev]
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103 ancestors[rev] = None
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104
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105 x = len(a) # number of ancestors
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106 y = tot - x # number of non-ancestors
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107 value = min(x, y) # how good is this test?
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108 if value > best_len and rev not in skip:
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109 best_len = value
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110 best_rev = rev
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111 if value == perfect: # found a perfect candidate? quit early
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112 break
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113
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114 if y < perfect and rev not in skip: # all downhill from here?
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115 # poison children
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116 poison.update(children.get(rev, []))
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117 continue
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118
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119 for c in children.get(rev, []):
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120 if ancestors[c]:
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121 ancestors[c] = list(set(ancestors[c] + a))
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122 else:
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123 ancestors[c] = a + [c]
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124
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125 assert best_rev is not None
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126 best_node = changelog.node(best_rev)
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127
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128 return ([best_node], tot, good)
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129
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130
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131 def extendrange(repo, state, nodes, good):
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132 # bisect is incomplete when it ends on a merge node and
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133 # one of the parent was not checked.
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134 parents = repo[nodes[0]].parents()
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135 if len(parents) > 1:
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136 if good:
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137 side = state[b'bad']
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138 else:
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139 side = state[b'good']
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140 num = len({i.node() for i in parents} & set(side))
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141 if num == 1:
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142 return parents[0].ancestor(parents[1])
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143 return None
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144
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145
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146 def load_state(repo):
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147 state = {b'current': [], b'good': [], b'bad': [], b'skip': []}
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148 for l in repo.vfs.tryreadlines(b"bisect.state"):
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149 kind, node = l[:-1].split()
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150 node = repo.unfiltered().lookup(node)
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151 if kind not in state:
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152 raise error.Abort(_(b"unknown bisect kind %s") % kind)
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153 state[kind].append(node)
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154 return state
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155
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156
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157 def save_state(repo, state):
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158 f = repo.vfs(b"bisect.state", b"w", atomictemp=True)
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159 with repo.wlock():
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160 for kind in sorted(state):
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161 for node in state[kind]:
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162 f.write(b"%s %s\n" % (kind, hex(node)))
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163 f.close()
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164
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165
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166 def resetstate(repo):
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167 """remove any bisect state from the repository"""
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168 if repo.vfs.exists(b"bisect.state"):
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169 repo.vfs.unlink(b"bisect.state")
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170
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171
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172 def checkstate(state):
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173 """check we have both 'good' and 'bad' to define a range
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174
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175 Raise Abort exception otherwise."""
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176 if state[b'good'] and state[b'bad']:
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177 return True
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178 if not state[b'good']:
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179 raise error.Abort(_(b'cannot bisect (no known good revisions)'))
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180 else:
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181 raise error.Abort(_(b'cannot bisect (no known bad revisions)'))
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182
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183
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184 @contextlib.contextmanager
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185 def restore_state(repo, state, node):
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186 try:
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187 yield
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188 finally:
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189 state[b'current'] = [node]
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190 save_state(repo, state)
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191
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192
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193 def get(repo, status):
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194 """
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195 Return a list of revision(s) that match the given status:
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196
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197 - ``good``, ``bad``, ``skip``: csets explicitly marked as good/bad/skip
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198 - ``goods``, ``bads`` : csets topologically good/bad
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199 - ``range`` : csets taking part in the bisection
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200 - ``pruned`` : csets that are goods, bads or skipped
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201 - ``untested`` : csets whose fate is yet unknown
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202 - ``ignored`` : csets ignored due to DAG topology
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203 - ``current`` : the cset currently being bisected
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204 """
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205 state = load_state(repo)
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206 if status in (b'good', b'bad', b'skip', b'current'):
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207 return map(repo.unfiltered().changelog.rev, state[status])
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208 else:
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209 # In the following sets, we do *not* call 'bisect()' with more
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210 # than one level of recursion, because that can be very, very
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211 # time consuming. Instead, we always develop the expression as
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212 # much as possible.
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213
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214 # 'range' is all csets that make the bisection:
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215 # - have a good ancestor and a bad descendant, or conversely
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216 # that's because the bisection can go either way
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217 range = b'( bisect(bad)::bisect(good) | bisect(good)::bisect(bad) )'
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218
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219 _t = repo.revs(b'bisect(good)::bisect(bad)')
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220 # The sets of topologically good or bad csets
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221 if len(_t) == 0:
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222 # Goods are topologically after bads
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223 goods = b'bisect(good)::' # Pruned good csets
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224 bads = b'::bisect(bad)' # Pruned bad csets
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225 else:
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226 # Goods are topologically before bads
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227 goods = b'::bisect(good)' # Pruned good csets
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228 bads = b'bisect(bad)::' # Pruned bad csets
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229
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230 # 'pruned' is all csets whose fate is already known: good, bad, skip
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231 skips = b'bisect(skip)' # Pruned skipped csets
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232 pruned = b'( (%s) | (%s) | (%s) )' % (goods, bads, skips)
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233
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234 # 'untested' is all cset that are- in 'range', but not in 'pruned'
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235 untested = b'( (%s) - (%s) )' % (range, pruned)
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236
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237 # 'ignored' is all csets that were not used during the bisection
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238 # due to DAG topology, but may however have had an impact.
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239 # E.g., a branch merged between bads and goods, but whose branch-
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240 # point is out-side of the range.
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241 iba = b'::bisect(bad) - ::bisect(good)' # Ignored bads' ancestors
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242 iga = b'::bisect(good) - ::bisect(bad)' # Ignored goods' ancestors
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243 ignored = b'( ( (%s) | (%s) ) - (%s) )' % (iba, iga, range)
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244
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245 if status == b'range':
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246 return repo.revs(range)
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247 elif status == b'pruned':
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248 return repo.revs(pruned)
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249 elif status == b'untested':
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250 return repo.revs(untested)
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251 elif status == b'ignored':
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252 return repo.revs(ignored)
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253 elif status == b"goods":
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254 return repo.revs(goods)
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255 elif status == b"bads":
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256 return repo.revs(bads)
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257 else:
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258 raise error.ParseError(_(b'invalid bisect state'))
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259
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260
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261 def label(repo, node):
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262 rev = repo.changelog.rev(node)
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263
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264 # Try explicit sets
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265 if rev in get(repo, b'good'):
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266 # i18n: bisect changeset status
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267 return _(b'good')
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268 if rev in get(repo, b'bad'):
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269 # i18n: bisect changeset status
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270 return _(b'bad')
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271 if rev in get(repo, b'skip'):
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272 # i18n: bisect changeset status
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273 return _(b'skipped')
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274 if rev in get(repo, b'untested') or rev in get(repo, b'current'):
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275 # i18n: bisect changeset status
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276 return _(b'untested')
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277 if rev in get(repo, b'ignored'):
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278 # i18n: bisect changeset status
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279 return _(b'ignored')
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280
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281 # Try implicit sets
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282 if rev in get(repo, b'goods'):
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283 # i18n: bisect changeset status
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284 return _(b'good (implicit)')
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285 if rev in get(repo, b'bads'):
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286 # i18n: bisect changeset status
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287 return _(b'bad (implicit)')
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288
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289 return None
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290
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291
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292 def printresult(ui, repo, state, displayer, nodes, good):
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293 repo = repo.unfiltered()
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294 if len(nodes) == 1:
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295 # narrowed it down to a single revision
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296 if good:
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297 ui.write(_(b"The first good revision is:\n"))
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298 else:
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299 ui.write(_(b"The first bad revision is:\n"))
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300 displayer.show(repo[nodes[0]])
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301 extendnode = extendrange(repo, state, nodes, good)
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302 if extendnode is not None:
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303 ui.write(
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304 _(
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305 b'Not all ancestors of this changeset have been'
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diff changeset
306 b' checked.\nUse bisect --extend to continue the '
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307 b'bisection from\nthe common ancestor, %s.\n'
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diff changeset
308 )
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diff changeset
309 % extendnode
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310 )
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diff changeset
311 else:
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312 # multiple possible revisions
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diff changeset
313 if good:
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314 ui.write(
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315 _(
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316 b"Due to skipped revisions, the first "
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317 b"good revision could be any of:\n"
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diff changeset
318 )
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319 )
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diff changeset
320 else:
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321 ui.write(
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322 _(
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323 b"Due to skipped revisions, the first "
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324 b"bad revision could be any of:\n"
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diff changeset
325 )
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326 )
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diff changeset
327 for n in nodes:
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diff changeset
328 displayer.show(repo[n])
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diff changeset
329 displayer.close()