Mercurial > hg
annotate mercurial/setdiscovery.py @ 46159:929054848d6c
copies: properly match result during changeset centric copy tracing
By filtering "during" the iteration we were excluding rename information that
were not in the matched set but that file served as base information for the
matched set.
We now do all copy tracing matching at the end of the process to ensure we raise
proper result.
If we were aggregating information top down instead of bottom up we could do
filtering during processing. However, we don't.
Differential Revision: https://phab.mercurial-scm.org/D9585
author | Pierre-Yves David <pierre-yves.david@octobus.net> |
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date | Sun, 13 Dec 2020 20:16:34 +0100 |
parents | d90f439ff19f |
children | 397e39ad0174 |
rev | line source |
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1 # setdiscovery.py - improved discovery of common nodeset for mercurial |
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2 # |
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3 # Copyright 2010 Benoit Boissinot <bboissin@gmail.com> |
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4 # and Peter Arrenbrecht <peter@arrenbrecht.ch> |
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5 # |
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6 # This software may be used and distributed according to the terms of the |
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7 # GNU General Public License version 2 or any later version. |
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8 """ |
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9 Algorithm works in the following way. You have two repository: local and |
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10 remote. They both contains a DAG of changelists. |
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11 |
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12 The goal of the discovery protocol is to find one set of node *common*, |
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13 the set of nodes shared by local and remote. |
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14 |
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15 One of the issue with the original protocol was latency, it could |
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16 potentially require lots of roundtrips to discover that the local repo was a |
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17 subset of remote (which is a very common case, you usually have few changes |
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18 compared to upstream, while upstream probably had lots of development). |
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19 |
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20 The new protocol only requires one interface for the remote repo: `known()`, |
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21 which given a set of changelists tells you if they are present in the DAG. |
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22 |
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23 The algorithm then works as follow: |
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24 |
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25 - We will be using three sets, `common`, `missing`, `unknown`. Originally |
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26 all nodes are in `unknown`. |
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27 - Take a sample from `unknown`, call `remote.known(sample)` |
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28 - For each node that remote knows, move it and all its ancestors to `common` |
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29 - For each node that remote doesn't know, move it and all its descendants |
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30 to `missing` |
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31 - Iterate until `unknown` is empty |
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32 |
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33 There are a couple optimizations, first is instead of starting with a random |
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34 sample of missing, start by sending all heads, in the case where the local |
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35 repo is a subset, you computed the answer in one round trip. |
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36 |
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37 Then you can do something similar to the bisecting strategy used when |
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38 finding faulty changesets. Instead of random samples, you can try picking |
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39 nodes that will maximize the number of nodes that will be |
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40 classified with it (since all ancestors or descendants will be marked as well). |
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41 """ |
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42 |
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43 from __future__ import absolute_import |
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44 |
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45 import collections |
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46 import random |
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47 |
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48 from .i18n import _ |
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49 from .node import ( |
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50 nullid, |
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51 nullrev, |
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52 ) |
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53 from . import ( |
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54 error, |
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55 policy, |
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56 util, |
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57 ) |
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58 |
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59 |
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60 def _updatesample(revs, heads, sample, parentfn, quicksamplesize=0): |
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61 """update an existing sample to match the expected size |
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62 |
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63 The sample is updated with revs exponentially distant from each head of the |
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64 <revs> set. (H~1, H~2, H~4, H~8, etc). |
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65 |
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66 If a target size is specified, the sampling will stop once this size is |
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67 reached. Otherwise sampling will happen until roots of the <revs> set are |
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68 reached. |
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69 |
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70 :revs: set of revs we want to discover (if None, assume the whole dag) |
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71 :heads: set of DAG head revs |
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72 :sample: a sample to update |
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73 :parentfn: a callable to resolve parents for a revision |
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74 :quicksamplesize: optional target size of the sample""" |
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75 dist = {} |
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76 visit = collections.deque(heads) |
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77 seen = set() |
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78 factor = 1 |
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79 while visit: |
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80 curr = visit.popleft() |
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81 if curr in seen: |
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82 continue |
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83 d = dist.setdefault(curr, 1) |
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84 if d > factor: |
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85 factor *= 2 |
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86 if d == factor: |
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87 sample.add(curr) |
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88 if quicksamplesize and (len(sample) >= quicksamplesize): |
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89 return |
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90 seen.add(curr) |
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91 |
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92 for p in parentfn(curr): |
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93 if p != nullrev and (not revs or p in revs): |
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94 dist.setdefault(p, d + 1) |
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95 visit.append(p) |
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96 |
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97 |
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98 def _limitsample(sample, desiredlen, randomize=True): |
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99 """return a random subset of sample of at most desiredlen item. |
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100 |
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101 If randomize is False, though, a deterministic subset is returned. |
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102 This is meant for integration tests. |
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103 """ |
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104 if len(sample) <= desiredlen: |
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105 return sample |
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106 if randomize: |
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107 return set(random.sample(sample, desiredlen)) |
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108 sample = list(sample) |
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109 sample.sort() |
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110 return set(sample[:desiredlen]) |
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111 |
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112 |
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113 class partialdiscovery(object): |
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114 """an object representing ongoing discovery |
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115 |
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116 Feed with data from the remote repository, this object keep track of the |
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117 current set of changeset in various states: |
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118 |
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119 - common: revs also known remotely |
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120 - undecided: revs we don't have information on yet |
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121 - missing: revs missing remotely |
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122 (all tracked revisions are known locally) |
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123 """ |
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124 |
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125 def __init__(self, repo, targetheads, respectsize, randomize=True): |
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126 self._repo = repo |
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127 self._targetheads = targetheads |
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128 self._common = repo.changelog.incrementalmissingrevs() |
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129 self._undecided = None |
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130 self.missing = set() |
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131 self._childrenmap = None |
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132 self._respectsize = respectsize |
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133 self.randomize = randomize |
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134 |
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135 def addcommons(self, commons): |
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136 """register nodes known as common""" |
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137 self._common.addbases(commons) |
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138 if self._undecided is not None: |
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139 self._common.removeancestorsfrom(self._undecided) |
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140 |
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141 def addmissings(self, missings): |
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142 """register some nodes as missing""" |
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143 newmissing = self._repo.revs(b'%ld::%ld', missings, self.undecided) |
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144 if newmissing: |
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145 self.missing.update(newmissing) |
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146 self.undecided.difference_update(newmissing) |
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147 |
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148 def addinfo(self, sample): |
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149 """consume an iterable of (rev, known) tuples""" |
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150 common = set() |
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151 missing = set() |
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152 for rev, known in sample: |
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153 if known: |
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154 common.add(rev) |
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155 else: |
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156 missing.add(rev) |
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157 if common: |
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158 self.addcommons(common) |
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159 if missing: |
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160 self.addmissings(missing) |
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161 |
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162 def hasinfo(self): |
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163 """return True is we have any clue about the remote state""" |
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164 return self._common.hasbases() |
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165 |
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166 def iscomplete(self): |
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167 """True if all the necessary data have been gathered""" |
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168 return self._undecided is not None and not self._undecided |
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169 |
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170 @property |
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171 def undecided(self): |
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172 if self._undecided is not None: |
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173 return self._undecided |
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174 self._undecided = set(self._common.missingancestors(self._targetheads)) |
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175 return self._undecided |
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176 |
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177 def stats(self): |
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178 return { |
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179 'undecided': len(self.undecided), |
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180 } |
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181 |
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182 def commonheads(self): |
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183 """the heads of the known common set""" |
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184 # heads(common) == heads(common.bases) since common represents |
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185 # common.bases and all its ancestors |
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186 return self._common.basesheads() |
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187 |
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188 def _parentsgetter(self): |
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189 getrev = self._repo.changelog.index.__getitem__ |
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190 |
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191 def getparents(r): |
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192 return getrev(r)[5:7] |
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193 |
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194 return getparents |
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195 |
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196 def _childrengetter(self): |
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197 |
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198 if self._childrenmap is not None: |
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199 # During discovery, the `undecided` set keep shrinking. |
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200 # Therefore, the map computed for an iteration N will be |
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201 # valid for iteration N+1. Instead of computing the same |
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202 # data over and over we cached it the first time. |
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203 return self._childrenmap.__getitem__ |
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204 |
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205 # _updatesample() essentially does interaction over revisions to look |
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206 # up their children. This lookup is expensive and doing it in a loop is |
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207 # quadratic. We precompute the children for all relevant revisions and |
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208 # make the lookup in _updatesample() a simple dict lookup. |
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209 self._childrenmap = children = {} |
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210 |
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211 parentrevs = self._parentsgetter() |
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212 revs = self.undecided |
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213 |
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214 for rev in sorted(revs): |
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215 # Always ensure revision has an entry so we don't need to worry |
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216 # about missing keys. |
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217 children[rev] = [] |
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218 for prev in parentrevs(rev): |
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219 if prev == nullrev: |
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220 continue |
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221 c = children.get(prev) |
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222 if c is not None: |
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223 c.append(rev) |
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224 return children.__getitem__ |
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225 |
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226 def takequicksample(self, headrevs, size): |
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227 """takes a quick sample of size <size> |
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228 |
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229 It is meant for initial sampling and focuses on querying heads and close |
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230 ancestors of heads. |
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231 |
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232 :headrevs: set of head revisions in local DAG to consider |
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233 :size: the maximum size of the sample""" |
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234 revs = self.undecided |
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235 if len(revs) <= size: |
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236 return list(revs) |
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237 sample = set(self._repo.revs(b'heads(%ld)', revs)) |
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238 |
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239 if len(sample) >= size: |
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240 return _limitsample(sample, size, randomize=self.randomize) |
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241 |
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242 _updatesample( |
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243 None, headrevs, sample, self._parentsgetter(), quicksamplesize=size |
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244 ) |
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245 return sample |
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246 |
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247 def takefullsample(self, headrevs, size): |
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248 revs = self.undecided |
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249 if len(revs) <= size: |
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250 return list(revs) |
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251 repo = self._repo |
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252 sample = set(repo.revs(b'heads(%ld)', revs)) |
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253 parentrevs = self._parentsgetter() |
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254 |
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255 # update from heads |
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256 revsheads = sample.copy() |
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257 _updatesample(revs, revsheads, sample, parentrevs) |
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258 |
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259 # update from roots |
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260 revsroots = set(repo.revs(b'roots(%ld)', revs)) |
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261 childrenrevs = self._childrengetter() |
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262 _updatesample(revs, revsroots, sample, childrenrevs) |
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263 assert sample |
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264 |
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265 if not self._respectsize: |
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266 size = max(size, min(len(revsroots), len(revsheads))) |
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267 |
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268 sample = _limitsample(sample, size, randomize=self.randomize) |
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269 if len(sample) < size: |
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270 more = size - len(sample) |
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271 takefrom = list(revs - sample) |
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272 if self.randomize: |
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273 sample.update(random.sample(takefrom, more)) |
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274 else: |
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275 takefrom.sort() |
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276 sample.update(takefrom[:more]) |
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277 return sample |
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278 |
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279 |
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280 partialdiscovery = policy.importrust( |
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281 'discovery', member='PartialDiscovery', default=partialdiscovery |
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282 ) |
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283 |
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284 |
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285 def findcommonheads( |
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286 ui, |
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287 local, |
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288 remote, |
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289 initialsamplesize=100, |
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290 fullsamplesize=200, |
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291 abortwhenunrelated=True, |
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292 ancestorsof=None, |
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293 samplegrowth=1.05, |
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294 audit=None, |
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295 ): |
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296 """Return a tuple (common, anyincoming, remoteheads) used to identify |
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297 missing nodes from or in remote. |
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298 |
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299 The audit argument is an optional dictionnary that a caller can pass. it |
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300 will be updated with extra data about the discovery, this is useful for |
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301 debug. |
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302 """ |
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303 start = util.timer() |
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304 |
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305 roundtrips = 0 |
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306 cl = local.changelog |
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307 clnode = cl.node |
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308 clrev = cl.rev |
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309 |
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310 if ancestorsof is not None: |
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311 ownheads = [clrev(n) for n in ancestorsof] |
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312 else: |
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313 ownheads = [rev for rev in cl.headrevs() if rev != nullrev] |
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314 |
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315 # early exit if we know all the specified remote heads already |
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316 ui.debug(b"query 1; heads\n") |
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317 roundtrips += 1 |
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318 # We also ask remote about all the local heads. That set can be arbitrarily |
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319 # large, so we used to limit it size to `initialsamplesize`. We no longer |
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320 # do as it proved counter productive. The skipped heads could lead to a |
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321 # large "undecided" set, slower to be clarified than if we asked the |
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322 # question for all heads right away. |
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323 # |
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324 # We are already fetching all server heads using the `heads` commands, |
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325 # sending a equivalent number of heads the other way should not have a |
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326 # significant impact. In addition, it is very likely that we are going to |
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327 # have to issue "known" request for an equivalent amount of revisions in |
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328 # order to decide if theses heads are common or missing. |
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329 # |
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330 # find a detailled analysis below. |
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331 # |
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332 # Case A: local and server both has few heads |
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333 # |
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334 # Ownheads is below initialsamplesize, limit would not have any effect. |
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335 # |
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336 # Case B: local has few heads and server has many |
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337 # |
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338 # Ownheads is below initialsamplesize, limit would not have any effect. |
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339 # |
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340 # Case C: local and server both has many heads |
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341 # |
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342 # We now transfert some more data, but not significantly more than is |
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343 # already transfered to carry the server heads. |
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344 # |
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345 # Case D: local has many heads, server has few |
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346 # |
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347 # D.1 local heads are mostly known remotely |
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348 # |
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349 # All the known head will have be part of a `known` request at some |
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350 # point for the discovery to finish. Sending them all earlier is |
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351 # actually helping. |
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352 # |
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353 # (This case is fairly unlikely, it requires the numerous heads to all |
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354 # be merged server side in only a few heads) |
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355 # |
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356 # D.2 local heads are mostly missing remotely |
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357 # |
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358 # To determine that the heads are missing, we'll have to issue `known` |
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359 # request for them or one of their ancestors. This amount of `known` |
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360 # request will likely be in the same order of magnitude than the amount |
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361 # of local heads. |
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362 # |
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363 # The only case where we can be more efficient using `known` request on |
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364 # ancestors are case were all the "missing" local heads are based on a |
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365 # few changeset, also "missing". This means we would have a "complex" |
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366 # graph (with many heads) attached to, but very independant to a the |
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367 # "simple" graph on the server. This is a fairly usual case and have |
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368 # not been met in the wild so far. |
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369 if remote.limitedarguments: |
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370 sample = _limitsample(ownheads, initialsamplesize) |
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371 # indices between sample and externalized version must match |
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372 sample = list(sample) |
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373 else: |
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374 sample = ownheads |
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375 |
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376 with remote.commandexecutor() as e: |
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377 fheads = e.callcommand(b'heads', {}) |
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378 fknown = e.callcommand( |
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379 b'known', |
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380 { |
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381 b'nodes': [clnode(r) for r in sample], |
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382 }, |
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383 ) |
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384 |
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385 srvheadhashes, yesno = fheads.result(), fknown.result() |
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386 |
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387 if audit is not None: |
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388 audit[b'total-roundtrips'] = 1 |
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389 |
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390 if cl.tip() == nullid: |
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391 if srvheadhashes != [nullid]: |
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392 return [nullid], True, srvheadhashes |
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393 return [nullid], False, [] |
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394 |
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395 # start actual discovery (we note this before the next "if" for |
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396 # compatibility reasons) |
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397 ui.status(_(b"searching for changes\n")) |
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398 |
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399 knownsrvheads = [] # revnos of remote heads that are known locally |
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400 for node in srvheadhashes: |
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401 if node == nullid: |
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402 continue |
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403 |
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404 try: |
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405 knownsrvheads.append(clrev(node)) |
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406 # Catches unknown and filtered nodes. |
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407 except error.LookupError: |
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408 continue |
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409 |
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410 if len(knownsrvheads) == len(srvheadhashes): |
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411 ui.debug(b"all remote heads known locally\n") |
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412 return srvheadhashes, False, srvheadhashes |
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413 |
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414 if len(sample) == len(ownheads) and all(yesno): |
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415 ui.note(_(b"all local changesets known remotely\n")) |
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416 ownheadhashes = [clnode(r) for r in ownheads] |
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417 return ownheadhashes, True, srvheadhashes |
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418 |
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419 # full blown discovery |
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420 |
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421 randomize = ui.configbool(b'devel', b'discovery.randomize') |
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422 disco = partialdiscovery( |
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423 local, ownheads, remote.limitedarguments, randomize=randomize |
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424 ) |
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425 # treat remote heads (and maybe own heads) as a first implicit sample |
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426 # response |
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427 disco.addcommons(knownsrvheads) |
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428 disco.addinfo(zip(sample, yesno)) |
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430 full = False |
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431 progress = ui.makeprogress(_(b'searching'), unit=_(b'queries')) |
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432 while not disco.iscomplete(): |
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433 |
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434 if full or disco.hasinfo(): |
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435 if full: |
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436 ui.note(_(b"sampling from both directions\n")) |
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437 else: |
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438 ui.debug(b"taking initial sample\n") |
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439 samplefunc = disco.takefullsample |
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440 targetsize = fullsamplesize |
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441 if not remote.limitedarguments: |
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442 fullsamplesize = int(fullsamplesize * samplegrowth) |
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443 else: |
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444 # use even cheaper initial sample |
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445 ui.debug(b"taking quick initial sample\n") |
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446 samplefunc = disco.takequicksample |
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447 targetsize = initialsamplesize |
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448 sample = samplefunc(ownheads, targetsize) |
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449 |
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450 roundtrips += 1 |
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451 progress.update(roundtrips) |
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452 stats = disco.stats() |
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453 ui.debug( |
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454 b"query %i; still undecided: %i, sample size is: %i\n" |
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455 % (roundtrips, stats['undecided'], len(sample)) |
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456 ) |
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457 |
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458 # indices between sample and externalized version must match |
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459 sample = list(sample) |
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460 |
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461 with remote.commandexecutor() as e: |
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462 yesno = e.callcommand( |
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463 b'known', |
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464 { |
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465 b'nodes': [clnode(r) for r in sample], |
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466 }, |
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467 ).result() |
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468 |
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469 full = True |
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470 |
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471 disco.addinfo(zip(sample, yesno)) |
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472 |
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473 result = disco.commonheads() |
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474 elapsed = util.timer() - start |
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475 progress.complete() |
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476 ui.debug(b"%d total queries in %.4fs\n" % (roundtrips, elapsed)) |
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477 msg = ( |
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478 b'found %d common and %d unknown server heads,' |
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479 b' %d roundtrips in %.4fs\n' |
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480 ) |
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481 missing = set(result) - set(knownsrvheads) |
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482 ui.log(b'discovery', msg, len(result), len(missing), roundtrips, elapsed) |
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483 |
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484 if audit is not None: |
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485 audit[b'total-roundtrips'] = roundtrips |
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486 |
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487 if not result and srvheadhashes != [nullid]: |
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488 if abortwhenunrelated: |
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489 raise error.Abort(_(b"repository is unrelated")) |
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490 else: |
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491 ui.warn(_(b"warning: repository is unrelated\n")) |
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492 return ( |
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493 {nullid}, |
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494 True, |
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495 srvheadhashes, |
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496 ) |
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497 |
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498 anyincoming = srvheadhashes != [nullid] |
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499 result = {clnode(r) for r in result} |
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500 return result, anyincoming, srvheadhashes |