Mercurial > hg
annotate mercurial/hbisect.py @ 52073:569e074894fa
manifest: drop the CamelCase name for `manifest.memtreemanifestctx`
See 61557734c0ae for the reasoning.
author | Matt Harbison <matt_harbison@yahoo.com> |
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date | Wed, 23 Oct 2024 16:45:12 -0400 |
parents | f4733654f144 |
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1 # changelog bisection for mercurial |
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2 # |
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3 # Copyright 2007 Olivia 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 |
10263 | 9 # GNU General Public License version 2 or any later version. |
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10 |
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11 from __future__ import annotations |
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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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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"(%ln::%d) - (::%ln)", good, badrev, good): |
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44 ancestors[rev] = [] |
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45 if ancestors[badrev] is 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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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 unvisited = [] |
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120 for c in children.get(rev, []): |
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121 if ancestors[c]: |
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122 ancestors[c] = list(set(ancestors[c] + a)) |
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123 else: |
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124 unvisited.append(c) |
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125 |
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126 # Reuse existing ancestor list for the first unvisited child to avoid |
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127 # excessive copying for linear portions of history. |
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128 if unvisited: |
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129 first = unvisited.pop(0) |
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130 for c in unvisited: |
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131 ancestors[c] = a + [c] |
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132 a.append(first) |
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133 ancestors[first] = a |
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134 |
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136 best_node = changelog.node(best_rev) | |
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137 |
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138 return ([best_node], tot, good) |
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139 |
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140 |
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141 def extendrange(repo, state, nodes, good): |
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142 # bisect is incomplete when it ends on a merge node and |
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143 # one of the parent was not checked. |
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144 parents = repo[nodes[0]].parents() |
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145 if len(parents) > 1: |
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146 if good: |
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147 side = state[b'bad'] |
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148 else: |
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149 side = state[b'good'] |
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150 num = len({i.node() for i in parents} & set(side)) |
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151 if num == 1: |
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152 return parents[0].ancestor(parents[1]) |
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153 return None |
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154 |
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155 |
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156 def load_state(repo): |
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157 state = {b'current': [], b'good': [], b'bad': [], b'skip': []} |
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158 for l in repo.vfs.tryreadlines(b"bisect.state"): |
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159 kind, node = l[:-1].split() |
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160 node = repo.unfiltered().lookup(node) |
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161 if kind not in state: |
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162 raise error.Abort(_(b"unknown bisect kind %s") % kind) |
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163 state[kind].append(node) |
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164 return state |
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165 |
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166 |
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167 def save_state(repo, state): |
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168 f = repo.vfs(b"bisect.state", b"w", atomictemp=True) |
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169 with repo.wlock(): |
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170 for kind in sorted(state): |
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171 for node in state[kind]: |
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172 f.write(b"%s %s\n" % (kind, hex(node))) |
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173 f.close() |
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174 |
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175 |
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176 def resetstate(repo): |
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177 """remove any bisect state from the repository""" |
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178 if repo.vfs.exists(b"bisect.state"): |
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179 repo.vfs.unlink(b"bisect.state") |
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180 |
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181 |
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182 def checkstate(state): |
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183 """check we have both 'good' and 'bad' to define a range |
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184 |
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185 Raise StateError exception otherwise.""" |
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186 if state[b'good'] and state[b'bad']: |
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187 return True |
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188 if not state[b'good']: |
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189 raise error.StateError(_(b'cannot bisect (no known good revisions)')) |
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190 else: |
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191 raise error.StateError(_(b'cannot bisect (no known bad revisions)')) |
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192 |
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193 |
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194 @contextlib.contextmanager |
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195 def restore_state(repo, state, node): |
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196 try: |
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197 yield |
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198 finally: |
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199 state[b'current'] = [node] |
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200 save_state(repo, state) |
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201 |
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202 |
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203 def get(repo, status): |
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204 """ |
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205 Return a list of revision(s) that match the given status: |
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206 |
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207 - ``good``, ``bad``, ``skip``: csets explicitly marked as good/bad/skip |
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208 - ``goods``, ``bads`` : csets topologically good/bad |
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209 - ``range`` : csets taking part in the bisection |
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210 - ``pruned`` : csets that are goods, bads or skipped |
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211 - ``untested`` : csets whose fate is yet unknown |
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212 - ``ignored`` : csets ignored due to DAG topology |
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213 - ``current`` : the cset currently being bisected |
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214 """ |
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215 state = load_state(repo) |
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216 if status in (b'good', b'bad', b'skip', b'current'): |
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217 return map(repo.unfiltered().changelog.rev, state[status]) |
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218 else: |
17493 | 219 # In the following sets, we do *not* call 'bisect()' with more |
17509 | 220 # than one level of recursion, because that can be very, very |
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221 # time consuming. Instead, we always develop the expression as |
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222 # much as possible. |
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223 |
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224 # 'range' is all csets that make the bisection: |
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225 # - have a good ancestor and a bad descendant, or conversely |
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226 # that's because the bisection can go either way |
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227 range = b'( bisect(bad)::bisect(good) | bisect(good)::bisect(bad) )' |
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228 |
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229 _t = repo.revs(b'bisect(good)::bisect(bad)') |
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230 # The sets of topologically good or bad csets |
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231 if len(_t) == 0: |
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232 # Goods are topologically after bads |
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233 goods = b'bisect(good)::' # Pruned good csets |
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234 bads = b'::bisect(bad)' # Pruned bad csets |
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235 else: |
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236 # Goods are topologically before bads |
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237 goods = b'::bisect(good)' # Pruned good csets |
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238 bads = b'bisect(bad)::' # Pruned bad csets |
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239 |
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240 # 'pruned' is all csets whose fate is already known: good, bad, skip |
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241 skips = b'bisect(skip)' # Pruned skipped csets |
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242 pruned = b'( (%s) | (%s) | (%s) )' % (goods, bads, skips) |
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243 |
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244 # 'untested' is all cset that are- in 'range', but not in 'pruned' |
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245 untested = b'( (%s) - (%s) )' % (range, pruned) |
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246 |
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247 # 'ignored' is all csets that were not used during the bisection |
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248 # due to DAG topology, but may however have had an impact. |
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249 # E.g., a branch merged between bads and goods, but whose branch- |
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250 # point is out-side of the range. |
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251 iba = b'::bisect(bad) - ::bisect(good)' # Ignored bads' ancestors |
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252 iga = b'::bisect(good) - ::bisect(bad)' # Ignored goods' ancestors |
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253 ignored = b'( ( (%s) | (%s) ) - (%s) )' % (iba, iga, range) |
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254 |
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255 if status == b'range': |
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256 return repo.revs(range) |
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257 elif status == b'pruned': |
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258 return repo.revs(pruned) |
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259 elif status == b'untested': |
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260 return repo.revs(untested) |
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261 elif status == b'ignored': |
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262 return repo.revs(ignored) |
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263 elif status == b"goods": |
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264 return repo.revs(goods) |
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265 elif status == b"bads": |
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266 return repo.revs(bads) |
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267 else: |
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268 raise error.ParseError(_(b'invalid bisect state')) |
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269 |
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270 |
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271 def label(repo, node): |
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272 rev = repo.changelog.rev(node) |
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273 |
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274 # Try explicit sets |
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275 if rev in get(repo, b'good'): |
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276 # i18n: bisect changeset status |
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277 return _(b'good') |
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278 if rev in get(repo, b'bad'): |
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279 # i18n: bisect changeset status |
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280 return _(b'bad') |
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281 if rev in get(repo, b'skip'): |
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282 # i18n: bisect changeset status |
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283 return _(b'skipped') |
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284 if rev in get(repo, b'untested') or rev in get(repo, b'current'): |
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285 # i18n: bisect changeset status |
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286 return _(b'untested') |
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287 if rev in get(repo, b'ignored'): |
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288 # i18n: bisect changeset status |
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289 return _(b'ignored') |
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290 |
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291 # Try implicit sets |
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292 if rev in get(repo, b'goods'): |
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293 # i18n: bisect changeset status |
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294 return _(b'good (implicit)') |
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295 if rev in get(repo, b'bads'): |
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296 # i18n: bisect changeset status |
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297 return _(b'bad (implicit)') |
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298 |
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299 return None |
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300 |
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301 |
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302 def printresult(ui, repo, state, displayer, nodes, good): |
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303 repo = repo.unfiltered() |
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304 if len(nodes) == 1: |
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305 # narrowed it down to a single revision |
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306 if good: |
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307 ui.write(_(b"The first good revision is:\n")) |
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308 else: |
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309 ui.write(_(b"The first bad revision is:\n")) |
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310 displayer.show(repo[nodes[0]]) |
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311 extendnode = extendrange(repo, state, nodes, good) |
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312 if extendnode is not None: |
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313 ui.write( |
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314 _( |
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315 b'Not all ancestors of this changeset have been' |
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316 b' checked.\nUse bisect --extend to continue the ' |
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317 b'bisection from\nthe common ancestor, %s.\n' |
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318 ) |
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319 % extendnode |
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320 ) |
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321 else: |
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322 # multiple possible revisions |
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323 if good: |
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324 ui.write( |
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325 _( |
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326 b"Due to skipped revisions, the first " |
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327 b"good revision could be any of:\n" |
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328 ) |
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329 ) |
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330 else: |
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331 ui.write( |
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332 _( |
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333 b"Due to skipped revisions, the first " |
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334 b"bad revision could be any of:\n" |
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335 ) |
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336 ) |
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337 for n in nodes: |
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338 displayer.show(repo[n]) |
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339 displayer.close() |