Mercurial > hg
annotate mercurial/ancestor.py @ 41728:36b62a522814
templatekw: make negrev return empty for wdir() and nullrev
I considered just returning the same output that {rev} returns here,
but {rev} also returns essentially gibberish: either an INT_MAX-kind
of variable for wdir() or -1 for null. Since these are numbers that
are intended to be used for calculations, and since the numbers for
wdir() and -1 are not really very helpful for calculation (and worse,
when used as a revision number -1 is equal to unhidden tip), I figured
the most reasonable thing to do here is to just return nothing for
negrev.
This could potentially break scripts that are expecting to parse a
nonempty integer out of a {negrev}, but that seems like a very remote
concern at this juncture.
author | Jordi Gutiérrez Hermoso <jordigh@octave.org> |
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date | Mon, 18 Feb 2019 23:43:40 -0500 |
parents | 4856c9b8cbaf |
children | 2372284d9457 |
rev | line source |
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Abstract ancestor algorithm into generic function
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1 # ancestor.py - generic DAG ancestor algorithm for mercurial |
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2 # |
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3 # Copyright 2006 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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10 import heapq |
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11 |
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12 from .node import nullrev |
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13 from . import ( |
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14 dagop, |
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15 policy, |
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16 pycompat, |
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17 ) |
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18 |
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19 parsers = policy.importmod(r'parsers') |
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20 |
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21 def commonancestorsheads(pfunc, *nodes): |
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22 """Returns a set with the heads of all common ancestors of all nodes, |
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23 heads(::nodes[0] and ::nodes[1] and ...) . |
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24 |
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25 pfunc must return a list of parent vertices for a given vertex. |
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26 """ |
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27 if not isinstance(nodes, set): |
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28 nodes = set(nodes) |
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29 if nullrev in nodes: |
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30 return set() |
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31 if len(nodes) <= 1: |
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32 return nodes |
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33 |
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34 allseen = (1 << len(nodes)) - 1 |
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35 seen = [0] * (max(nodes) + 1) |
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36 for i, n in enumerate(nodes): |
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37 seen[n] = 1 << i |
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38 poison = 1 << (i + 1) |
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39 |
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40 gca = set() |
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41 interesting = len(nodes) |
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42 nv = len(seen) - 1 |
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43 while nv >= 0 and interesting: |
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44 v = nv |
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45 nv -= 1 |
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46 if not seen[v]: |
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47 continue |
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48 sv = seen[v] |
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49 if sv < poison: |
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50 interesting -= 1 |
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51 if sv == allseen: |
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52 gca.add(v) |
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53 sv |= poison |
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54 if v in nodes: |
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55 # history is linear |
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56 return {v} |
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57 if sv < poison: |
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58 for p in pfunc(v): |
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59 sp = seen[p] |
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60 if p == nullrev: |
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61 continue |
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62 if sp == 0: |
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63 seen[p] = sv |
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64 interesting += 1 |
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65 elif sp != sv: |
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66 seen[p] |= sv |
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67 else: |
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68 for p in pfunc(v): |
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69 if p == nullrev: |
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70 continue |
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71 sp = seen[p] |
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72 if sp and sp < poison: |
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73 interesting -= 1 |
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74 seen[p] = sv |
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75 return gca |
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76 |
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77 def ancestors(pfunc, *orignodes): |
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78 """ |
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79 Returns the common ancestors of a and b that are furthest from a |
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80 root (as measured by longest path). |
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81 |
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82 pfunc must return a list of parent vertices for a given vertex. |
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83 """ |
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84 def deepest(nodes): |
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85 interesting = {} |
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86 count = max(nodes) + 1 |
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87 depth = [0] * count |
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88 seen = [0] * count |
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89 mapping = [] |
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90 for (i, n) in enumerate(sorted(nodes)): |
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91 depth[n] = 1 |
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92 b = 1 << i |
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93 seen[n] = b |
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94 interesting[b] = 1 |
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95 mapping.append((b, n)) |
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96 nv = count - 1 |
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97 while nv >= 0 and len(interesting) > 1: |
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98 v = nv |
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99 nv -= 1 |
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100 dv = depth[v] |
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101 if dv == 0: |
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102 continue |
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103 sv = seen[v] |
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104 for p in pfunc(v): |
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105 if p == nullrev: |
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106 continue |
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107 dp = depth[p] |
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108 nsp = sp = seen[p] |
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109 if dp <= dv: |
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110 depth[p] = dv + 1 |
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111 if sp != sv: |
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112 interesting[sv] += 1 |
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113 nsp = seen[p] = sv |
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114 if sp: |
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115 interesting[sp] -= 1 |
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116 if interesting[sp] == 0: |
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117 del interesting[sp] |
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118 elif dv == dp - 1: |
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119 nsp = sp | sv |
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120 if nsp == sp: |
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121 continue |
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122 seen[p] = nsp |
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123 interesting.setdefault(nsp, 0) |
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124 interesting[nsp] += 1 |
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125 interesting[sp] -= 1 |
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126 if interesting[sp] == 0: |
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127 del interesting[sp] |
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128 interesting[sv] -= 1 |
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129 if interesting[sv] == 0: |
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130 del interesting[sv] |
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131 |
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132 if len(interesting) != 1: |
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133 return [] |
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134 |
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135 k = 0 |
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136 for i in interesting: |
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137 k |= i |
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138 return set(n for (i, n) in mapping if k & i) |
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139 |
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140 gca = commonancestorsheads(pfunc, *orignodes) |
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141 |
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142 if len(gca) <= 1: |
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143 return gca |
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144 return deepest(gca) |
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145 |
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146 class incrementalmissingancestors(object): |
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147 '''persistent state used to calculate missing ancestors incrementally |
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148 |
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149 Although similar in spirit to lazyancestors below, this is a separate class |
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150 because trying to support contains and missingancestors operations with the |
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151 same internal data structures adds needless complexity.''' |
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152 def __init__(self, pfunc, bases): |
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153 self.bases = set(bases) |
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154 if not self.bases: |
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155 self.bases.add(nullrev) |
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156 self.pfunc = pfunc |
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157 |
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158 def hasbases(self): |
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159 '''whether the common set has any non-trivial bases''' |
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160 return self.bases and self.bases != {nullrev} |
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161 |
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162 def addbases(self, newbases): |
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163 '''grow the ancestor set by adding new bases''' |
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164 self.bases.update(newbases) |
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165 |
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166 def basesheads(self): |
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167 return dagop.headrevs(self.bases, self.pfunc) |
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168 |
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169 def removeancestorsfrom(self, revs): |
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170 '''remove all ancestors of bases from the set revs (in place)''' |
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171 bases = self.bases |
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172 pfunc = self.pfunc |
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173 revs.difference_update(bases) |
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174 # nullrev is always an ancestor |
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175 revs.discard(nullrev) |
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176 if not revs: |
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177 return |
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178 # anything in revs > start is definitely not an ancestor of bases |
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179 # revs <= start needs to be investigated |
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180 start = max(bases) |
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181 keepcount = sum(1 for r in revs if r > start) |
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182 if len(revs) == keepcount: |
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183 # no revs to consider |
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184 return |
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185 |
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186 for curr in pycompat.xrange(start, min(revs) - 1, -1): |
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187 if curr not in bases: |
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188 continue |
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189 revs.discard(curr) |
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190 bases.update(pfunc(curr)) |
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191 if len(revs) == keepcount: |
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192 # no more potential revs to discard |
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193 break |
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194 |
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195 def missingancestors(self, revs): |
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196 '''return all the ancestors of revs that are not ancestors of self.bases |
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197 |
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198 This may include elements from revs. |
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199 |
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200 Equivalent to the revset (::revs - ::self.bases). Revs are returned in |
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201 revision number order, which is a topological order.''' |
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202 revsvisit = set(revs) |
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203 basesvisit = self.bases |
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204 pfunc = self.pfunc |
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205 bothvisit = revsvisit.intersection(basesvisit) |
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206 revsvisit.difference_update(bothvisit) |
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207 if not revsvisit: |
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208 return [] |
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209 |
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210 start = max(max(revsvisit), max(basesvisit)) |
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211 # At this point, we hold the invariants that: |
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212 # - revsvisit is the set of nodes we know are an ancestor of at least |
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213 # one of the nodes in revs |
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214 # - basesvisit is the same for bases |
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215 # - bothvisit is the set of nodes we know are ancestors of at least one |
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216 # of the nodes in revs and one of the nodes in bases. bothvisit and |
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217 # revsvisit are mutually exclusive, but bothvisit is a subset of |
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218 # basesvisit. |
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219 # Now we walk down in reverse topo order, adding parents of nodes |
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220 # already visited to the sets while maintaining the invariants. When a |
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221 # node is found in both revsvisit and basesvisit, it is removed from |
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222 # revsvisit and added to bothvisit. When revsvisit becomes empty, there |
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223 # are no more ancestors of revs that aren't also ancestors of bases, so |
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224 # exit. |
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225 |
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226 missing = [] |
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227 for curr in pycompat.xrange(start, nullrev, -1): |
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228 if not revsvisit: |
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229 break |
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230 |
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231 if curr in bothvisit: |
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232 bothvisit.remove(curr) |
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233 # curr's parents might have made it into revsvisit through |
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234 # another path |
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235 for p in pfunc(curr): |
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236 revsvisit.discard(p) |
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237 basesvisit.add(p) |
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238 bothvisit.add(p) |
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239 continue |
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240 |
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241 if curr in revsvisit: |
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242 missing.append(curr) |
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243 revsvisit.remove(curr) |
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244 thisvisit = revsvisit |
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245 othervisit = basesvisit |
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246 elif curr in basesvisit: |
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247 thisvisit = basesvisit |
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248 othervisit = revsvisit |
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249 else: |
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250 # not an ancestor of revs or bases: ignore |
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251 continue |
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252 |
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253 for p in pfunc(curr): |
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254 if p == nullrev: |
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255 pass |
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256 elif p in othervisit or p in bothvisit: |
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257 # p is implicitly in thisvisit. This means p is or should be |
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258 # in bothvisit |
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259 revsvisit.discard(p) |
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260 basesvisit.add(p) |
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261 bothvisit.add(p) |
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262 else: |
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263 # visit later |
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264 thisvisit.add(p) |
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265 |
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266 missing.reverse() |
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267 return missing |
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268 |
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269 # Extracted from lazyancestors.__iter__ to avoid a reference cycle |
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270 def _lazyancestorsiter(parentrevs, initrevs, stoprev, inclusive): |
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271 seen = {nullrev} |
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272 heappush = heapq.heappush |
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273 heappop = heapq.heappop |
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274 heapreplace = heapq.heapreplace |
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275 see = seen.add |
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276 |
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277 if inclusive: |
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278 visit = [-r for r in initrevs] |
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279 seen.update(initrevs) |
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280 heapq.heapify(visit) |
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281 else: |
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282 visit = [] |
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283 heapq.heapify(visit) |
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284 for r in initrevs: |
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285 p1, p2 = parentrevs(r) |
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286 if p1 not in seen: |
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287 heappush(visit, -p1) |
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288 see(p1) |
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289 if p2 not in seen: |
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290 heappush(visit, -p2) |
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291 see(p2) |
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292 |
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293 while visit: |
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294 current = -visit[0] |
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295 if current < stoprev: |
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296 break |
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297 yield current |
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298 # optimize out heapq operation if p1 is known to be the next highest |
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299 # revision, which is quite common in linear history. |
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300 p1, p2 = parentrevs(current) |
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301 if p1 not in seen: |
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302 if current - p1 == 1: |
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303 visit[0] = -p1 |
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304 else: |
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305 heapreplace(visit, -p1) |
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306 see(p1) |
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307 else: |
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308 heappop(visit) |
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309 if p2 not in seen: |
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310 heappush(visit, -p2) |
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311 see(p2) |
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312 |
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313 class lazyancestors(object): |
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314 def __init__(self, pfunc, revs, stoprev=0, inclusive=False): |
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315 """Create a new object generating ancestors for the given revs. Does |
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316 not generate revs lower than stoprev. |
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317 |
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318 This is computed lazily starting from revs. The object supports |
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319 iteration and membership. |
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320 |
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321 cl should be a changelog and revs should be an iterable. inclusive is |
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322 a boolean that indicates whether revs should be included. Revs lower |
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323 than stoprev will not be generated. |
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324 |
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325 Result does not include the null revision.""" |
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326 self._parentrevs = pfunc |
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327 self._initrevs = revs = [r for r in revs if r >= stoprev] |
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328 self._stoprev = stoprev |
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329 self._inclusive = inclusive |
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330 |
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331 self._containsseen = set() |
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332 self._containsiter = _lazyancestorsiter(self._parentrevs, |
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333 self._initrevs, |
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334 self._stoprev, |
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335 self._inclusive) |
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336 |
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337 def __nonzero__(self): |
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338 """False if the set is empty, True otherwise.""" |
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339 try: |
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340 next(iter(self)) |
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341 return True |
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342 except StopIteration: |
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343 return False |
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344 |
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345 __bool__ = __nonzero__ |
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346 |
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347 def __iter__(self): |
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348 """Generate the ancestors of _initrevs in reverse topological order. |
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349 |
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350 If inclusive is False, yield a sequence of revision numbers starting |
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351 with the parents of each revision in revs, i.e., each revision is |
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352 *not* considered an ancestor of itself. Results are emitted in reverse |
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353 revision number order. That order is also topological: a child is |
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354 always emitted before its parent. |
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355 |
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356 If inclusive is True, the source revisions are also yielded. The |
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357 reverse revision number order is still enforced.""" |
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358 return _lazyancestorsiter(self._parentrevs, self._initrevs, |
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359 self._stoprev, self._inclusive) |
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360 |
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361 def __contains__(self, target): |
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362 """Test whether target is an ancestor of self._initrevs.""" |
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363 seen = self._containsseen |
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364 if target in seen: |
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365 return True |
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366 iter = self._containsiter |
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367 if iter is None: |
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368 # Iterator exhausted |
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369 return False |
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370 # Only integer target is valid, but some callers expect 'None in self' |
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371 # to be False. So we explicitly allow it. |
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372 if target is None: |
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373 return False |
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374 |
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375 see = seen.add |
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376 try: |
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377 while True: |
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378 rev = next(iter) |
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379 see(rev) |
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380 if rev == target: |
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381 return True |
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382 if rev < target: |
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383 return False |
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384 except StopIteration: |
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385 # Set to None to indicate fast-path can be used next time, and to |
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386 # free up memory. |
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387 self._containsiter = None |
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388 return False |
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389 |
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390 class rustlazyancestors(object): |
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391 |
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392 def __init__(self, index, revs, stoprev=0, inclusive=False): |
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393 self._index = index |
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394 self._stoprev = stoprev |
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395 self._inclusive = inclusive |
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396 # no need to prefilter out init revs that are smaller than stoprev, |
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397 # it's done by rustlazyancestors constructor. |
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398 # we need to convert to a list, because our ruslazyancestors |
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399 # constructor (from C code) doesn't understand anything else yet |
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400 self._initrevs = initrevs = list(revs) |
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401 |
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402 self._containsiter = parsers.rustlazyancestors( |
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403 index, initrevs, stoprev, inclusive) |
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404 |
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405 def __nonzero__(self): |
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406 """False if the set is empty, True otherwise. |
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407 |
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408 It's better to duplicate this essentially trivial method than |
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409 to subclass lazyancestors |
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410 """ |
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411 try: |
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412 next(iter(self)) |
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413 return True |
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414 except StopIteration: |
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415 return False |
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416 |
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417 def __iter__(self): |
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418 return parsers.rustlazyancestors(self._index, |
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419 self._initrevs, |
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420 self._stoprev, |
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421 self._inclusive) |
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422 |
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423 def __contains__(self, target): |
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424 return target in self._containsiter |