Mercurial > hg
annotate mercurial/dagutil.py @ 25894:54f9561088c7 stable
histedit: backout ebb5bb9bc32e
The faulty changeset use obsolescence marker to roll the repository back on
--abort. This is a problematic approach because --abort should be as close as an
actually transaction rollback as possible stripping all created data from the
repository (cf `hg rebase --abort` stripping all created changesets). Instead
ebb5bb9bc32e made all content created during the aborted histedit still
available in the repository adding obsolescence marker to make them hidden. This
will cause trouble to evolution user as a re-run of the same histedit (with
success) will likely result in the very same node to be "recreated" while
obsolescence marker would be in place for them. And canceling an obsoletion is
still a fairly complicated process.
This also rollback using obsmarkers instead of strip to clean up temporary node
on successful histedit run because the two change were not split in separated
changeset. Rolling that part back does not have significant consequence a will
have to be resubmitted independently
author | Pierre-Yves David <pierre-yves.david@fb.com> |
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date | Fri, 31 Jul 2015 15:11:07 -0700 |
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1 # dagutil.py - dag utilities 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 from node import nullrev |
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10 from i18n import _ |
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11 |
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12 |
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13 class basedag(object): |
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14 '''generic interface for DAGs |
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15 |
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16 terms: |
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17 "ix" (short for index) identifies a nodes internally, |
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18 "id" identifies one externally. |
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19 |
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20 All params are ixs unless explicitly suffixed otherwise. |
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21 Pluralized params are lists or sets. |
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22 ''' |
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23 |
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24 def __init__(self): |
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25 self._inverse = None |
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26 |
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27 def nodeset(self): |
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28 '''set of all node ixs''' |
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29 raise NotImplementedError |
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30 |
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31 def heads(self): |
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32 '''list of head ixs''' |
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33 raise NotImplementedError |
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34 |
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35 def parents(self, ix): |
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36 '''list of parents ixs of ix''' |
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37 raise NotImplementedError |
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38 |
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39 def inverse(self): |
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40 '''inverse DAG, where parents becomes children, etc.''' |
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41 raise NotImplementedError |
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42 |
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43 def ancestorset(self, starts, stops=None): |
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44 ''' |
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45 set of all ancestors of starts (incl), but stop walk at stops (excl) |
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46 ''' |
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47 raise NotImplementedError |
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48 |
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49 def descendantset(self, starts, stops=None): |
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50 ''' |
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51 set of all descendants of starts (incl), but stop walk at stops (excl) |
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52 ''' |
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53 return self.inverse().ancestorset(starts, stops) |
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54 |
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55 def headsetofconnecteds(self, ixs): |
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56 ''' |
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57 subset of connected list of ixs so that no node has a descendant in it |
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58 |
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59 By "connected list" we mean that if an ancestor and a descendant are in |
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60 the list, then so is at least one path connecting them. |
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61 ''' |
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62 raise NotImplementedError |
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63 |
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64 def externalize(self, ix): |
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65 '''return a node id''' |
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66 return self._externalize(ix) |
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67 |
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68 def externalizeall(self, ixs): |
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69 '''return a list of (or set if given a set) of node ids''' |
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70 ids = self._externalizeall(ixs) |
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71 if isinstance(ixs, set): |
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72 return set(ids) |
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73 return list(ids) |
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74 |
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75 def internalize(self, id): |
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76 '''return a node ix''' |
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77 return self._internalize(id) |
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78 |
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79 def internalizeall(self, ids, filterunknown=False): |
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80 '''return a list of (or set if given a set) of node ixs''' |
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81 ixs = self._internalizeall(ids, filterunknown) |
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82 if isinstance(ids, set): |
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83 return set(ixs) |
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84 return list(ixs) |
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85 |
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86 |
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87 class genericdag(basedag): |
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88 '''generic implementations for DAGs''' |
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89 |
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90 def ancestorset(self, starts, stops=None): |
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91 if stops: |
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92 stops = set(stops) |
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93 else: |
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94 stops = set() |
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95 seen = set() |
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96 pending = list(starts) |
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97 while pending: |
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98 n = pending.pop() |
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99 if n not in seen and n not in stops: |
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100 seen.add(n) |
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101 pending.extend(self.parents(n)) |
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102 return seen |
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103 |
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104 def headsetofconnecteds(self, ixs): |
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105 hds = set(ixs) |
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106 if not hds: |
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107 return hds |
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108 for n in ixs: |
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109 for p in self.parents(n): |
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110 hds.discard(p) |
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111 assert hds |
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112 return hds |
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113 |
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114 |
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115 class revlogbaseddag(basedag): |
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116 '''generic dag interface to a revlog''' |
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117 |
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118 def __init__(self, revlog, nodeset): |
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119 basedag.__init__(self) |
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120 self._revlog = revlog |
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121 self._heads = None |
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122 self._nodeset = nodeset |
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123 |
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124 def nodeset(self): |
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125 return self._nodeset |
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126 |
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127 def heads(self): |
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128 if self._heads is None: |
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129 self._heads = self._getheads() |
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130 return self._heads |
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131 |
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132 def _externalize(self, ix): |
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133 return self._revlog.index[ix][7] |
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134 def _externalizeall(self, ixs): |
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135 idx = self._revlog.index |
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136 return [idx[i][7] for i in ixs] |
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137 |
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138 def _internalize(self, id): |
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139 ix = self._revlog.rev(id) |
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140 if ix == nullrev: |
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141 raise LookupError(id, self._revlog.indexfile, _('nullid')) |
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142 return ix |
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143 def _internalizeall(self, ids, filterunknown): |
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144 rl = self._revlog |
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145 if filterunknown: |
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146 return [r for r in map(rl.nodemap.get, ids) |
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147 if (r is not None |
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148 and r != nullrev |
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149 and r not in rl.filteredrevs)] |
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150 return map(self._internalize, ids) |
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151 |
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152 |
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153 class revlogdag(revlogbaseddag): |
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154 '''dag interface to a revlog''' |
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155 |
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156 def __init__(self, revlog): |
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157 revlogbaseddag.__init__(self, revlog, set(revlog)) |
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158 |
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159 def _getheads(self): |
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160 return [r for r in self._revlog.headrevs() if r != nullrev] |
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161 |
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162 def parents(self, ix): |
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163 rlog = self._revlog |
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164 idx = rlog.index |
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165 revdata = idx[ix] |
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166 prev = revdata[5] |
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167 if prev != nullrev: |
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168 prev2 = revdata[6] |
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169 if prev2 == nullrev: |
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170 return [prev] |
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171 return [prev, prev2] |
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172 prev2 = revdata[6] |
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173 if prev2 != nullrev: |
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174 return [prev2] |
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175 return [] |
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176 |
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177 def inverse(self): |
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178 if self._inverse is None: |
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179 self._inverse = inverserevlogdag(self) |
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180 return self._inverse |
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181 |
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182 def ancestorset(self, starts, stops=None): |
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183 rlog = self._revlog |
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184 idx = rlog.index |
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185 if stops: |
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186 stops = set(stops) |
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187 else: |
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188 stops = set() |
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189 seen = set() |
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190 pending = list(starts) |
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191 while pending: |
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192 rev = pending.pop() |
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193 if rev not in seen and rev not in stops: |
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194 seen.add(rev) |
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195 revdata = idx[rev] |
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196 for i in [5, 6]: |
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197 prev = revdata[i] |
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198 if prev != nullrev: |
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199 pending.append(prev) |
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200 return seen |
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201 |
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202 def headsetofconnecteds(self, ixs): |
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203 if not ixs: |
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204 return set() |
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205 rlog = self._revlog |
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206 idx = rlog.index |
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207 headrevs = set(ixs) |
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208 for rev in ixs: |
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209 revdata = idx[rev] |
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210 for i in [5, 6]: |
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211 prev = revdata[i] |
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212 if prev != nullrev: |
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213 headrevs.discard(prev) |
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214 assert headrevs |
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215 return headrevs |
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216 |
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217 def linearize(self, ixs): |
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218 '''linearize and topologically sort a list of revisions |
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219 |
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220 The linearization process tries to create long runs of revs where |
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221 a child rev comes immediately after its first parent. This is done by |
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222 visiting the heads of the given revs in inverse topological order, |
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223 and for each visited rev, visiting its second parent, then its first |
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224 parent, then adding the rev itself to the output list. |
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225 ''' |
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226 sorted = [] |
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227 visit = list(self.headsetofconnecteds(ixs)) |
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228 visit.sort(reverse=True) |
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229 finished = set() |
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230 |
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231 while visit: |
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232 cur = visit.pop() |
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233 if cur < 0: |
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234 cur = -cur - 1 |
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235 if cur not in finished: |
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236 sorted.append(cur) |
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237 finished.add(cur) |
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238 else: |
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239 visit.append(-cur - 1) |
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240 visit += [p for p in self.parents(cur) |
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241 if p in ixs and p not in finished] |
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242 assert len(sorted) == len(ixs) |
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243 return sorted |
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244 |
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245 |
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246 class inverserevlogdag(revlogbaseddag, genericdag): |
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247 '''inverse of an existing revlog dag; see revlogdag.inverse()''' |
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248 |
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249 def __init__(self, orig): |
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250 revlogbaseddag.__init__(self, orig._revlog, orig._nodeset) |
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251 self._orig = orig |
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252 self._children = {} |
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253 self._roots = [] |
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254 self._walkfrom = len(self._revlog) - 1 |
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255 |
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256 def _walkto(self, walkto): |
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257 rev = self._walkfrom |
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258 cs = self._children |
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259 roots = self._roots |
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260 idx = self._revlog.index |
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261 while rev >= walkto: |
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262 data = idx[rev] |
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263 isroot = True |
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264 for prev in [data[5], data[6]]: # parent revs |
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265 if prev != nullrev: |
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266 cs.setdefault(prev, []).append(rev) |
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267 isroot = False |
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268 if isroot: |
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269 roots.append(rev) |
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270 rev -= 1 |
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271 self._walkfrom = rev |
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272 |
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273 def _getheads(self): |
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274 self._walkto(nullrev) |
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275 return self._roots |
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276 |
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277 def parents(self, ix): |
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278 if ix is None: |
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279 return [] |
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280 if ix <= self._walkfrom: |
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281 self._walkto(ix) |
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282 return self._children.get(ix, []) |
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283 |
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284 def inverse(self): |
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285 return self._orig |