Mercurial > hg
annotate mercurial/copies.py @ 31906:ae734bd02630
obsolescence: add test case A-1 for obsolescence markers exchange
About 3 years ago, in August 2014, the logic to select what markers to select on
push was ported from the evolve extension to Mercurial core. However, for some
unclear reasons, the tests for that logic were not ported alongside.
I realised it a couple of weeks ago while working on another push related issue.
I've made a clean up pass on the tests and they are now ready to integrate the
core test suite. This series of changesets do not change any logic. I just adds
test for logic that has been around for about 10 versions of Mercurial.
They are a patch for each test case. It makes it easier to review and postpone
one with documentation issues without rejecting the wholes series.
This patch introduce case A-1: pushing a single head
Each test case comes it in own test file. It help parallelism and does not
introduce a significant overhead from having a single unified giant test file.
Here are timing to support this claim.
# Multiple test files version:
# run-tests.py --local -j 1 test-exchange-*.t
53.40s user 6.82s system 85% cpu 1:10.76 total
52.79s user 6.97s system 85% cpu 1:09.97 total
52.94s user 6.82s system 85% cpu 1:09.69 total
# Single test file version:
# run-tests.py --local -j 1 test-exchange-obsmarkers.t
52.97s user 6.85s system 85% cpu 1:10.10 total
52.64s user 6.79s system 85% cpu 1:09.63 total
53.70s user 7.00s system 85% cpu 1:11.17 total
author | Pierre-Yves David <pierre-yves.david@ens-lyon.org> |
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date | Mon, 10 Apr 2017 16:41:21 +0200 |
parents | 5a909a8098a1 |
children | bd872f64a8ba |
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1 # copies.py - copy detection for Mercurial |
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2 # |
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3 # Copyright 2008 Matt Mackall <mpm@selenic.com> |
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4 # |
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5 # This software may be used and distributed according to the terms of the |
10263 | 6 # GNU General Public License version 2 or any later version. |
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7 |
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8 from __future__ import absolute_import |
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9 |
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separate import lines from mercurial and general python modules
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10 import heapq |
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11 |
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12 from . import ( |
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13 node, |
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14 pathutil, |
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15 scmutil, |
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16 util, |
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17 ) |
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18 |
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19 def _findlimit(repo, a, b): |
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20 """ |
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21 Find the last revision that needs to be checked to ensure that a full |
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22 transitive closure for file copies can be properly calculated. |
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23 Generally, this means finding the earliest revision number that's an |
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24 ancestor of a or b but not both, except when a or b is a direct descendent |
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25 of the other, in which case we can return the minimum revnum of a and b. |
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26 None if no such revision exists. |
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27 """ |
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28 |
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29 # basic idea: |
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30 # - mark a and b with different sides |
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31 # - if a parent's children are all on the same side, the parent is |
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32 # on that side, otherwise it is on no side |
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33 # - walk the graph in topological order with the help of a heap; |
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34 # - add unseen parents to side map |
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35 # - clear side of any parent that has children on different sides |
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36 # - track number of interesting revs that might still be on a side |
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37 # - track the lowest interesting rev seen |
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38 # - quit when interesting revs is zero |
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39 |
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40 cl = repo.changelog |
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41 working = len(cl) # pseudo rev for the working directory |
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42 if a is None: |
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43 a = working |
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44 if b is None: |
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45 b = working |
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46 |
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47 side = {a: -1, b: 1} |
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48 visit = [-a, -b] |
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49 heapq.heapify(visit) |
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50 interesting = len(visit) |
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51 hascommonancestor = False |
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52 limit = working |
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53 |
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54 while interesting: |
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55 r = -heapq.heappop(visit) |
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56 if r == working: |
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57 parents = [cl.rev(p) for p in repo.dirstate.parents()] |
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58 else: |
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59 parents = cl.parentrevs(r) |
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60 for p in parents: |
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61 if p < 0: |
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62 continue |
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63 if p not in side: |
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64 # first time we see p; add it to visit |
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65 side[p] = side[r] |
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66 if side[p]: |
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67 interesting += 1 |
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68 heapq.heappush(visit, -p) |
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69 elif side[p] and side[p] != side[r]: |
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70 # p was interesting but now we know better |
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71 side[p] = 0 |
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72 interesting -= 1 |
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73 hascommonancestor = True |
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74 if side[r]: |
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75 limit = r # lowest rev visited |
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76 interesting -= 1 |
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77 |
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78 if not hascommonancestor: |
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79 return None |
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80 |
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81 # Consider the following flow (see test-commit-amend.t under issue4405): |
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82 # 1/ File 'a0' committed |
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83 # 2/ File renamed from 'a0' to 'a1' in a new commit (call it 'a1') |
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84 # 3/ Move back to first commit |
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85 # 4/ Create a new commit via revert to contents of 'a1' (call it 'a1-amend') |
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86 # 5/ Rename file from 'a1' to 'a2' and commit --amend 'a1-msg' |
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87 # |
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88 # During the amend in step five, we will be in this state: |
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89 # |
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90 # @ 3 temporary amend commit for a1-amend |
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91 # | |
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92 # o 2 a1-amend |
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93 # | |
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94 # | o 1 a1 |
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95 # |/ |
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96 # o 0 a0 |
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97 # |
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98 # When _findlimit is called, a and b are revs 3 and 0, so limit will be 2, |
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99 # yet the filelog has the copy information in rev 1 and we will not look |
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100 # back far enough unless we also look at the a and b as candidates. |
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101 # This only occurs when a is a descendent of b or visa-versa. |
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102 return min(limit, a, b) |
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103 |
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104 def _chain(src, dst, a, b): |
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105 '''chain two sets of copies a->b''' |
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106 t = a.copy() |
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107 for k, v in b.iteritems(): |
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108 if v in t: |
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109 # found a chain |
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110 if t[v] != k: |
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111 # file wasn't renamed back to itself |
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112 t[k] = t[v] |
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113 if v not in dst: |
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114 # chain was a rename, not a copy |
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115 del t[v] |
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116 if v in src: |
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117 # file is a copy of an existing file |
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118 t[k] = v |
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119 |
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120 # remove criss-crossed copies |
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121 for k, v in t.items(): |
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122 if k in src and v in dst: |
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123 del t[k] |
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124 |
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125 return t |
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126 |
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127 def _tracefile(fctx, am, limit=-1): |
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128 '''return file context that is the ancestor of fctx present in ancestor |
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129 manifest am, stopping after the first ancestor lower than limit''' |
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130 |
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131 for f in fctx.ancestors(): |
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132 if am.get(f.path(), None) == f.filenode(): |
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133 return f |
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134 if limit >= 0 and f.linkrev() < limit and f.rev() < limit: |
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135 return None |
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136 |
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137 def _dirstatecopies(d): |
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138 ds = d._repo.dirstate |
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139 c = ds.copies().copy() |
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140 for k in c.keys(): |
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141 if ds[k] not in 'anm': |
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142 del c[k] |
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143 return c |
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144 |
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145 def _computeforwardmissing(a, b, match=None): |
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146 """Computes which files are in b but not a. |
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147 This is its own function so extensions can easily wrap this call to see what |
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148 files _forwardcopies is about to process. |
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149 """ |
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150 ma = a.manifest() |
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151 mb = b.manifest() |
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152 return mb.filesnotin(ma, match=match) |
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153 |
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154 def _forwardcopies(a, b, match=None): |
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155 '''find {dst@b: src@a} copy mapping where a is an ancestor of b''' |
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156 |
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157 # check for working copy |
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158 w = None |
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159 if b.rev() is None: |
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160 w = b |
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161 b = w.p1() |
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162 if a == b: |
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163 # short-circuit to avoid issues with merge states |
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164 return _dirstatecopies(w) |
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165 |
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166 # files might have to be traced back to the fctx parent of the last |
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167 # one-side-only changeset, but not further back than that |
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168 limit = _findlimit(a._repo, a.rev(), b.rev()) |
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169 if limit is None: |
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170 limit = -1 |
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171 am = a.manifest() |
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172 |
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173 # find where new files came from |
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174 # we currently don't try to find where old files went, too expensive |
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175 # this means we can miss a case like 'hg rm b; hg cp a b' |
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176 cm = {} |
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177 |
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178 # Computing the forward missing is quite expensive on large manifests, since |
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179 # it compares the entire manifests. We can optimize it in the common use |
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180 # case of computing what copies are in a commit versus its parent (like |
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181 # during a rebase or histedit). Note, we exclude merge commits from this |
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182 # optimization, since the ctx.files() for a merge commit is not correct for |
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183 # this comparison. |
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184 forwardmissingmatch = match |
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185 if not match and b.p1() == a and b.p2().node() == node.nullid: |
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186 forwardmissingmatch = scmutil.matchfiles(a._repo, b.files()) |
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187 missing = _computeforwardmissing(a, b, match=forwardmissingmatch) |
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188 |
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189 ancestrycontext = a._repo.changelog.ancestors([b.rev()], inclusive=True) |
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190 for f in missing: |
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191 fctx = b[f] |
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192 fctx._ancestrycontext = ancestrycontext |
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193 ofctx = _tracefile(fctx, am, limit) |
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194 if ofctx: |
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195 cm[f] = ofctx.path() |
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196 |
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197 # combine copies from dirstate if necessary |
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198 if w is not None: |
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199 cm = _chain(a, w, cm, _dirstatecopies(w)) |
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200 |
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201 return cm |
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202 |
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203 def _backwardrenames(a, b): |
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204 if a._repo.ui.configbool('experimental', 'disablecopytrace'): |
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205 return {} |
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206 |
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207 # Even though we're not taking copies into account, 1:n rename situations |
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208 # can still exist (e.g. hg cp a b; hg mv a c). In those cases we |
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209 # arbitrarily pick one of the renames. |
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210 f = _forwardcopies(b, a) |
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211 r = {} |
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212 for k, v in sorted(f.iteritems()): |
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213 # remove copies |
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214 if v in a: |
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215 continue |
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216 r[v] = k |
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217 return r |
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218 |
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219 def pathcopies(x, y, match=None): |
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220 '''find {dst@y: src@x} copy mapping for directed compare''' |
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221 if x == y or not x or not y: |
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222 return {} |
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223 a = y.ancestor(x) |
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224 if a == x: |
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225 return _forwardcopies(x, y, match=match) |
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226 if a == y: |
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227 return _backwardrenames(x, y) |
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228 return _chain(x, y, _backwardrenames(x, a), |
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229 _forwardcopies(a, y, match=match)) |
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230 |
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231 def _computenonoverlap(repo, c1, c2, addedinm1, addedinm2, baselabel=''): |
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232 """Computes, based on addedinm1 and addedinm2, the files exclusive to c1 |
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233 and c2. This is its own function so extensions can easily wrap this call |
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234 to see what files mergecopies is about to process. |
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235 |
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236 Even though c1 and c2 are not used in this function, they are useful in |
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237 other extensions for being able to read the file nodes of the changed files. |
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238 |
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239 "baselabel" can be passed to help distinguish the multiple computations |
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240 done in the graft case. |
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241 """ |
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242 u1 = sorted(addedinm1 - addedinm2) |
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243 u2 = sorted(addedinm2 - addedinm1) |
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244 |
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245 header = " unmatched files in %s" |
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246 if baselabel: |
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247 header += ' (from %s)' % baselabel |
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248 if u1: |
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249 repo.ui.debug("%s:\n %s\n" % (header % 'local', "\n ".join(u1))) |
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250 if u2: |
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251 repo.ui.debug("%s:\n %s\n" % (header % 'other', "\n ".join(u2))) |
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252 return u1, u2 |
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253 |
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254 def _makegetfctx(ctx): |
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255 """return a 'getfctx' function suitable for _checkcopies usage |
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256 |
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257 We have to re-setup the function building 'filectx' for each |
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258 '_checkcopies' to ensure the linkrev adjustment is properly setup for |
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259 each. Linkrev adjustment is important to avoid bug in rename |
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260 detection. Moreover, having a proper '_ancestrycontext' setup ensures |
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261 the performance impact of this adjustment is kept limited. Without it, |
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262 each file could do a full dag traversal making the time complexity of |
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263 the operation explode (see issue4537). |
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264 |
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265 This function exists here mostly to limit the impact on stable. Feel |
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266 free to refactor on default. |
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267 """ |
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268 rev = ctx.rev() |
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269 repo = ctx._repo |
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270 ac = getattr(ctx, '_ancestrycontext', None) |
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271 if ac is None: |
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272 revs = [rev] |
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273 if rev is None: |
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274 revs = [p.rev() for p in ctx.parents()] |
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275 ac = repo.changelog.ancestors(revs, inclusive=True) |
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276 ctx._ancestrycontext = ac |
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277 def makectx(f, n): |
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278 if n in node.wdirnodes: # in a working context? |
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279 if ctx.rev() is None: |
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280 return ctx.filectx(f) |
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281 return repo[None][f] |
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282 fctx = repo.filectx(f, fileid=n) |
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283 # setup only needed for filectx not create from a changectx |
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284 fctx._ancestrycontext = ac |
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285 fctx._descendantrev = rev |
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286 return fctx |
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287 return util.lrucachefunc(makectx) |
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288 |
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289 def _combinecopies(copyfrom, copyto, finalcopy, diverge, incompletediverge): |
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290 """combine partial copy paths""" |
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291 remainder = {} |
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292 for f in copyfrom: |
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293 if f in copyto: |
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294 finalcopy[copyto[f]] = copyfrom[f] |
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295 del copyto[f] |
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296 for f in incompletediverge: |
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297 assert f not in diverge |
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298 ic = incompletediverge[f] |
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299 if ic[0] in copyto: |
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300 diverge[f] = [copyto[ic[0]], ic[1]] |
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301 else: |
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302 remainder[f] = ic |
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303 return remainder |
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304 |
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305 def mergecopies(repo, c1, c2, base): |
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306 """ |
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307 Find moves and copies between context c1 and c2 that are relevant |
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308 for merging. 'base' will be used as the merge base. |
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309 |
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310 Returns five dicts: "copy", "movewithdir", "diverge", "renamedelete" and |
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311 "dirmove". |
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312 |
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313 "copy" is a mapping from destination name -> source name, |
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314 where source is in c1 and destination is in c2 or vice-versa. |
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315 |
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316 "movewithdir" is a mapping from source name -> destination name, |
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317 where the file at source present in one context but not the other |
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318 needs to be moved to destination by the merge process, because the |
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319 other context moved the directory it is in. |
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320 |
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321 "diverge" is a mapping of source name -> list of destination names |
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322 for divergent renames. |
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323 |
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324 "renamedelete" is a mapping of source name -> list of destination |
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325 names for files deleted in c1 that were renamed in c2 or vice-versa. |
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326 |
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327 "dirmove" is a mapping of detected source dir -> destination dir renames. |
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328 This is needed for handling changes to new files previously grafted into |
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329 renamed directories. |
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330 """ |
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331 # avoid silly behavior for update from empty dir |
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332 if not c1 or not c2 or c1 == c2: |
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333 return {}, {}, {}, {}, {} |
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334 |
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335 # avoid silly behavior for parent -> working dir |
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336 if c2.node() is None and c1.node() == repo.dirstate.p1(): |
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337 return repo.dirstate.copies(), {}, {}, {}, {} |
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338 |
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339 # Copy trace disabling is explicitly below the node == p1 logic above |
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340 # because the logic above is required for a simple copy to be kept across a |
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341 # rebase. |
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342 if repo.ui.configbool('experimental', 'disablecopytrace'): |
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343 return {}, {}, {}, {}, {} |
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344 |
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345 # In certain scenarios (e.g. graft, update or rebase), base can be |
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346 # overridden We still need to know a real common ancestor in this case We |
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347 # can't just compute _c1.ancestor(_c2) and compare it to ca, because there |
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348 # can be multiple common ancestors, e.g. in case of bidmerge. Because our |
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349 # caller may not know if the revision passed in lieu of the CA is a genuine |
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350 # common ancestor or not without explicitly checking it, it's better to |
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351 # determine that here. |
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352 # |
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353 # base.descendant(wc) and base.descendant(base) are False, work around that |
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354 _c1 = c1.p1() if c1.rev() is None else c1 |
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355 _c2 = c2.p1() if c2.rev() is None else c2 |
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356 # an endpoint is "dirty" if it isn't a descendant of the merge base |
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357 # if we have a dirty endpoint, we need to trigger graft logic, and also |
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358 # keep track of which endpoint is dirty |
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359 dirtyc1 = not (base == _c1 or base.descendant(_c1)) |
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360 dirtyc2 = not (base== _c2 or base.descendant(_c2)) |
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361 graft = dirtyc1 or dirtyc2 |
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362 tca = base |
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363 if graft: |
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364 tca = _c1.ancestor(_c2) |
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365 |
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366 limit = _findlimit(repo, c1.rev(), c2.rev()) |
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367 if limit is None: |
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368 # no common ancestor, no copies |
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369 return {}, {}, {}, {}, {} |
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370 repo.ui.debug(" searching for copies back to rev %d\n" % limit) |
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371 |
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372 m1 = c1.manifest() |
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373 m2 = c2.manifest() |
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374 mb = base.manifest() |
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375 |
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376 # gather data from _checkcopies: |
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377 # - diverge = record all diverges in this dict |
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378 # - copy = record all non-divergent copies in this dict |
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379 # - fullcopy = record all copies in this dict |
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380 # - incomplete = record non-divergent partial copies here |
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381 # - incompletediverge = record divergent partial copies here |
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382 diverge = {} # divergence data is shared |
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383 incompletediverge = {} |
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384 data1 = {'copy': {}, |
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385 'fullcopy': {}, |
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386 'incomplete': {}, |
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387 'diverge': diverge, |
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388 'incompletediverge': incompletediverge, |
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389 } |
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390 data2 = {'copy': {}, |
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391 'fullcopy': {}, |
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392 'incomplete': {}, |
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393 'diverge': diverge, |
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394 'incompletediverge': incompletediverge, |
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395 } |
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396 |
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397 # find interesting file sets from manifests |
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398 addedinm1 = m1.filesnotin(mb) |
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399 addedinm2 = m2.filesnotin(mb) |
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400 bothnew = sorted(addedinm1 & addedinm2) |
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401 if tca == base: |
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402 # unmatched file from base |
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403 u1r, u2r = _computenonoverlap(repo, c1, c2, addedinm1, addedinm2) |
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404 u1u, u2u = u1r, u2r |
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405 else: |
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406 # unmatched file from base (DAG rotation in the graft case) |
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407 u1r, u2r = _computenonoverlap(repo, c1, c2, addedinm1, addedinm2, |
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408 baselabel='base') |
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409 # unmatched file from topological common ancestors (no DAG rotation) |
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410 # need to recompute this for directory move handling when grafting |
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411 mta = tca.manifest() |
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412 u1u, u2u = _computenonoverlap(repo, c1, c2, m1.filesnotin(mta), |
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413 m2.filesnotin(mta), |
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414 baselabel='topological common ancestor') |
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415 |
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416 for f in u1u: |
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417 _checkcopies(c1, f, m1, m2, base, tca, dirtyc1, limit, data1) |
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418 |
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419 for f in u2u: |
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420 _checkcopies(c2, f, m2, m1, base, tca, dirtyc2, limit, data2) |
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421 |
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422 copy = dict(data1['copy'].items() + data2['copy'].items()) |
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423 fullcopy = dict(data1['fullcopy'].items() + data2['fullcopy'].items()) |
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424 |
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425 if dirtyc1: |
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426 _combinecopies(data2['incomplete'], data1['incomplete'], copy, diverge, |
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427 incompletediverge) |
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428 else: |
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429 _combinecopies(data1['incomplete'], data2['incomplete'], copy, diverge, |
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430 incompletediverge) |
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431 |
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432 renamedelete = {} |
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433 renamedeleteset = set() |
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434 divergeset = set() |
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435 for of, fl in diverge.items(): |
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436 if len(fl) == 1 or of in c1 or of in c2: |
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437 del diverge[of] # not actually divergent, or not a rename |
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438 if of not in c1 and of not in c2: |
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439 # renamed on one side, deleted on the other side, but filter |
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440 # out files that have been renamed and then deleted |
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441 renamedelete[of] = [f for f in fl if f in c1 or f in c2] |
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442 renamedeleteset.update(fl) # reverse map for below |
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443 else: |
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444 divergeset.update(fl) # reverse map for below |
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445 |
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446 if bothnew: |
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447 repo.ui.debug(" unmatched files new in both:\n %s\n" |
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448 % "\n ".join(bothnew)) |
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449 bothdiverge = {} |
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450 bothincompletediverge = {} |
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451 remainder = {} |
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452 both1 = {'copy': {}, |
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453 'fullcopy': {}, |
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454 'incomplete': {}, |
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455 'diverge': bothdiverge, |
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456 'incompletediverge': bothincompletediverge |
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457 } |
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458 both2 = {'copy': {}, |
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459 'fullcopy': {}, |
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460 'incomplete': {}, |
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461 'diverge': bothdiverge, |
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462 'incompletediverge': bothincompletediverge |
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463 } |
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464 for f in bothnew: |
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465 _checkcopies(c1, f, m1, m2, base, tca, dirtyc1, limit, both1) |
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466 _checkcopies(c2, f, m2, m1, base, tca, dirtyc2, limit, both2) |
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467 if dirtyc1: |
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468 # incomplete copies may only be found on the "dirty" side for bothnew |
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469 assert not both2['incomplete'] |
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470 remainder = _combinecopies({}, both1['incomplete'], copy, bothdiverge, |
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471 bothincompletediverge) |
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472 elif dirtyc2: |
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473 assert not both1['incomplete'] |
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474 remainder = _combinecopies({}, both2['incomplete'], copy, bothdiverge, |
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475 bothincompletediverge) |
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476 else: |
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477 # incomplete copies and divergences can't happen outside grafts |
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478 assert not both1['incomplete'] |
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479 assert not both2['incomplete'] |
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480 assert not bothincompletediverge |
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481 for f in remainder: |
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482 assert f not in bothdiverge |
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483 ic = remainder[f] |
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484 if ic[0] in (m1 if dirtyc1 else m2): |
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485 # backed-out rename on one side, but watch out for deleted files |
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486 bothdiverge[f] = ic |
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487 for of, fl in bothdiverge.items(): |
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488 if len(fl) == 2 and fl[0] == fl[1]: |
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489 copy[fl[0]] = of # not actually divergent, just matching renames |
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490 |
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491 if fullcopy and repo.ui.debugflag: |
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492 repo.ui.debug(" all copies found (* = to merge, ! = divergent, " |
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493 "% = renamed and deleted):\n") |
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494 for f in sorted(fullcopy): |
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495 note = "" |
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496 if f in copy: |
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497 note += "*" |
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498 if f in divergeset: |
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499 note += "!" |
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500 if f in renamedeleteset: |
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501 note += "%" |
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502 repo.ui.debug(" src: '%s' -> dst: '%s' %s\n" % (fullcopy[f], f, |
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503 note)) |
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504 del divergeset |
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|
505 |
16169
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|
506 if not fullcopy: |
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507 return copy, {}, diverge, renamedelete, {} |
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|
508 |
9467
4c041f1ee1b4
do not attempt to translate ui.debug output
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509 repo.ui.debug(" checking for directory renames\n") |
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510 |
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|
511 # generate a directory move map |
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|
512 d1, d2 = c1.dirs(), c2.dirs() |
25288
947771ad5174
copies: document hack for adding '' to set of dirs
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parents:
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|
513 # Hack for adding '', which is not otherwise added, to d1 and d2 |
18899
d8ff607ef721
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|
514 d1.addpath('/') |
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changeset
|
515 d2.addpath('/') |
17055
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copies: re-include root directory in directory rename detection (issue3511)
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516 invalid = set() |
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517 dirmove = {} |
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518 |
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|
519 # examine each file copy for a potential directory move, which is |
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520 # when all the files in a directory are moved to a new directory |
7622
4dd7b28003d2
use dict.iteritems() rather than dict.items()
Dirkjan Ochtman <dirkjan@ochtman.nl>
parents:
6762
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|
521 for dst, src in fullcopy.iteritems(): |
25282
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copies: switch to using pathutil.dirname
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parents:
24782
diff
changeset
|
522 dsrc, ddst = pathutil.dirname(src), pathutil.dirname(dst) |
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523 if dsrc in invalid: |
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|
524 # already seen to be uninteresting |
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|
525 continue |
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|
526 elif dsrc in d1 and ddst in d1: |
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527 # directory wasn't entirely moved locally |
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|
528 invalid.add(dsrc + "/") |
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529 elif dsrc in d2 and ddst in d2: |
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|
530 # directory wasn't entirely moved remotely |
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|
531 invalid.add(dsrc + "/") |
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532 elif dsrc + "/" in dirmove and dirmove[dsrc + "/"] != ddst + "/": |
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533 # files from the same directory moved to two different places |
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|
534 invalid.add(dsrc + "/") |
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535 else: |
f3f383efbeae
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|
536 # looks good so far |
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|
537 dirmove[dsrc + "/"] = ddst + "/" |
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|
538 |
f3f383efbeae
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changeset
|
539 for i in invalid: |
f3f383efbeae
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diff
changeset
|
540 if i in dirmove: |
f3f383efbeae
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diff
changeset
|
541 del dirmove[i] |
f3f383efbeae
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|
542 del d1, d2, invalid |
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|
543 |
f3f383efbeae
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diff
changeset
|
544 if not dirmove: |
30581
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|
545 return copy, {}, diverge, renamedelete, {} |
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changeset
|
546 |
f3f383efbeae
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changeset
|
547 for d in dirmove: |
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changeset
|
548 repo.ui.debug(" discovered dir src: '%s' -> dst: '%s'\n" % |
a6fe1b9cc68f
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changeset
|
549 (d, dirmove[d])) |
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changeset
|
550 |
30183
0106f93ca1d5
checkcopies: move 'movewithdir' initialisation right before its usage
Pierre-Yves David <pierre-yves.david@ens-lyon.org>
parents:
30138
diff
changeset
|
551 movewithdir = {} |
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diff
changeset
|
552 # check unaccounted nonoverlapping files against directory moves |
30047
d13a7c8bf0a5
copies: split u1/u2 to u1u/u2u and u1r/u2r
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parents:
30046
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changeset
|
553 for f in u1r + u2r: |
6274
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diff
changeset
|
554 if f not in fullcopy: |
f3f383efbeae
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parents:
diff
changeset
|
555 for d in dirmove: |
f3f383efbeae
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Matt Mackall <mpm@selenic.com>
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diff
changeset
|
556 if f.startswith(d): |
f3f383efbeae
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parents:
diff
changeset
|
557 # new file added in a directory that was moved, move it |
6425
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558 df = dirmove[d] + f[len(d):] |
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559 if df not in copy: |
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560 movewithdir[f] = df |
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561 repo.ui.debug((" pending file src: '%s' -> " |
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562 "dst: '%s'\n") % (f, df)) |
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563 break |
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564 |
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565 return copy, movewithdir, diverge, renamedelete, dirmove |
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566 |
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567 def _related(f1, f2, limit): |
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568 """return True if f1 and f2 filectx have a common ancestor |
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569 |
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570 Walk back to common ancestor to see if the two files originate |
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571 from the same file. Since workingfilectx's rev() is None it messes |
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572 up the integer comparison logic, hence the pre-step check for |
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573 None (f1 and f2 can only be workingfilectx's initially). |
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574 """ |
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575 |
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576 if f1 == f2: |
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577 return f1 # a match |
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578 |
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579 g1, g2 = f1.ancestors(), f2.ancestors() |
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580 try: |
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581 f1r, f2r = f1.linkrev(), f2.linkrev() |
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582 |
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583 if f1r is None: |
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584 f1 = next(g1) |
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585 if f2r is None: |
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586 f2 = next(g2) |
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587 |
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588 while True: |
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589 f1r, f2r = f1.linkrev(), f2.linkrev() |
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590 if f1r > f2r: |
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591 f1 = next(g1) |
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592 elif f2r > f1r: |
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593 f2 = next(g2) |
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594 elif f1 == f2: |
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595 return f1 # a match |
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596 elif f1r == f2r or f1r < limit or f2r < limit: |
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597 return False # copy no longer relevant |
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598 except StopIteration: |
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599 return False |
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600 |
30203
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601 def _checkcopies(ctx, f, m1, m2, base, tca, remotebase, limit, data): |
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602 """ |
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603 check possible copies of f from m1 to m2 |
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604 |
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605 ctx = starting context for f in m1 |
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606 f = the filename to check (as in m1) |
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607 m1 = the source manifest |
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608 m2 = the destination manifest |
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609 base = the changectx used as a merge base |
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610 tca = topological common ancestor for graft-like scenarios |
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611 remotebase = True if base is outside tca::ctx, False otherwise |
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612 limit = the rev number to not search beyond |
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613 data = dictionary of dictionary to store copy data. (see mergecopies) |
30045
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614 |
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615 note: limit is only an optimization, and there is no guarantee that |
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616 irrelevant revisions will not be limited |
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617 there is no easy way to make this algorithm stop in a guaranteed way |
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618 once it "goes behind a certain revision". |
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619 """ |
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620 |
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621 mb = base.manifest() |
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622 mta = tca.manifest() |
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623 # Might be true if this call is about finding backward renames, |
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624 # This happens in the case of grafts because the DAG is then rotated. |
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625 # If the file exists in both the base and the source, we are not looking |
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626 # for a rename on the source side, but on the part of the DAG that is |
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627 # traversed backwards. |
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628 # |
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629 # In the case there is both backward and forward renames (before and after |
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630 # the base) this is more complicated as we must detect a divergence. |
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631 # We use 'backwards = False' in that case. |
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632 backwards = not remotebase and base != tca and f in mb |
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633 getfctx = _makegetfctx(ctx) |
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634 |
30229
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635 if m1[f] == mb.get(f) and not remotebase: |
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636 # Nothing to merge |
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637 return |
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638 |
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639 of = None |
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640 seen = set([f]) |
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641 for oc in getfctx(f, m1[f]).ancestors(): |
25279
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642 ocr = oc.linkrev() |
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643 of = oc.path() |
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644 if of in seen: |
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645 # check limit late - grab last rename before |
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646 if ocr < limit: |
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647 break |
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648 continue |
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649 seen.add(of) |
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650 |
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651 # remember for dir rename detection |
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652 if backwards: |
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653 data['fullcopy'][of] = f # grafting backwards through renames |
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654 else: |
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655 data['fullcopy'][f] = of |
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656 if of not in m2: |
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657 continue # no match, keep looking |
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658 if m2[of] == mb.get(of): |
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659 return # no merge needed, quit early |
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660 c2 = getfctx(of, m2[of]) |
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661 # c2 might be a plain new file on added on destination side that is |
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662 # unrelated to the droids we are looking for. |
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663 cr = _related(oc, c2, tca.rev()) |
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664 if cr and (of == f or of == c2.path()): # non-divergent |
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665 if backwards: |
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666 data['copy'][of] = f |
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667 elif of in mb: |
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668 data['copy'][f] = of |
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669 elif remotebase: # special case: a <- b <- a -> b "ping-pong" rename |
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670 data['copy'][of] = f |
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671 del data['fullcopy'][f] |
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672 data['fullcopy'][of] = f |
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673 else: # divergence w.r.t. graft CA on one side of topological CA |
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674 for sf in seen: |
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675 if sf in mb: |
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676 assert sf not in data['diverge'] |
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677 data['diverge'][sf] = [f, of] |
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678 break |
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679 return |
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680 |
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681 if of in mta: |
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682 if backwards or remotebase: |
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683 data['incomplete'][of] = f |
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684 else: |
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685 for sf in seen: |
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686 if sf in mb: |
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687 if tca == base: |
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688 data['diverge'].setdefault(sf, []).append(f) |
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689 else: |
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690 data['incompletediverge'][sf] = [of, f] |
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691 return |
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692 |
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693 def duplicatecopies(repo, rev, fromrev, skiprev=None): |
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694 '''reproduce copies from fromrev to rev in the dirstate |
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695 |
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696 If skiprev is specified, it's a revision that should be used to |
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697 filter copy records. Any copies that occur between fromrev and |
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698 skiprev will not be duplicated, even if they appear in the set of |
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699 copies between fromrev and rev. |
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700 ''' |
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701 exclude = {} |
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702 if (skiprev is not None and |
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703 not repo.ui.configbool('experimental', 'disablecopytrace')): |
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704 # disablecopytrace skips this line, but not the entire function because |
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705 # the line below is O(size of the repo) during a rebase, while the rest |
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706 # of the function is much faster (and is required for carrying copy |
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707 # metadata across the rebase anyway). |
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708 exclude = pathcopies(repo[fromrev], repo[skiprev]) |
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709 for dst, src in pathcopies(repo[fromrev], repo[rev]).iteritems(): |
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710 # copies.pathcopies returns backward renames, so dst might not |
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711 # actually be in the dirstate |
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712 if dst in exclude: |
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713 continue |
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714 if repo.dirstate[dst] in "nma": |
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715 repo.dirstate.copy(src, dst) |