annotate mercurial/ancestor.py @ 19809:50d721553198

httpconnection: properly inject ssl_wrap_socket into httpclient (issue4038) This causes httpclient to use the same SSL settings as the rest of Mercurial, and adds an easy extension point for later modifications to our ssl handling.
author Augie Fackler <raf@durin42.com>
date Fri, 20 Sep 2013 09:16:07 -0400
parents 3605d4e7e618
children 1e5b38a919dd
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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
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6 # GNU General Public License version 2 or any later version.
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7
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8 import heapq, util
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9 from node import nullrev
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10
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11 def ancestors(pfunc, *orignodes):
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12 """
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13 Returns the common ancestors of a and b that are furthest from a
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14 root (as measured by longest path).
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15
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16 pfunc must return a list of parent vertices for a given vertex.
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17 """
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18 if not isinstance(orignodes, set):
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19 orignodes = set(orignodes)
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20 if nullrev in orignodes:
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21 return set()
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22 if len(orignodes) <= 1:
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23 return orignodes
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24
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25 def candidates(nodes):
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26 allseen = (1 << len(nodes)) - 1
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27 seen = [0] * (max(nodes) + 1)
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28 for i, n in enumerate(nodes):
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29 seen[n] = 1 << i
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30 poison = 1 << (i + 1)
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31
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32 gca = set()
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33 interesting = left = len(nodes)
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34 nv = len(seen) - 1
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35 while nv >= 0 and interesting:
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36 v = nv
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37 nv -= 1
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38 if not seen[v]:
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39 continue
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40 sv = seen[v]
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41 if sv < poison:
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42 interesting -= 1
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43 if sv == allseen:
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44 gca.add(v)
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45 sv |= poison
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46 if v in nodes:
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47 left -= 1
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48 if left <= 1:
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49 # history is linear
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50 return set([v])
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51 if sv < poison:
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52 for p in pfunc(v):
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53 sp = seen[p]
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54 if p == nullrev:
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55 continue
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56 if sp == 0:
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57 seen[p] = sv
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58 interesting += 1
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59 elif sp != sv:
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60 seen[p] |= sv
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61 else:
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62 for p in pfunc(v):
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63 if p == nullrev:
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64 continue
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65 sp = seen[p]
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66 if sp and sp < poison:
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67 interesting -= 1
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68 seen[p] = sv
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69 return gca
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70
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71 def deepest(nodes):
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72 interesting = {}
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73 count = max(nodes) + 1
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74 depth = [0] * count
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75 seen = [0] * count
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76 mapping = []
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77 for (i, n) in enumerate(sorted(nodes)):
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78 depth[n] = 1
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79 b = 1 << i
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80 seen[n] = b
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81 interesting[b] = 1
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82 mapping.append((b, n))
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83 nv = count - 1
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84 while nv >= 0 and len(interesting) > 1:
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85 v = nv
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86 nv -= 1
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87 dv = depth[v]
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88 if dv == 0:
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89 continue
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90 sv = seen[v]
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91 for p in pfunc(v):
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92 if p == nullrev:
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93 continue
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94 dp = depth[p]
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95 nsp = sp = seen[p]
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96 if dp <= dv:
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97 depth[p] = dv + 1
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98 if sp != sv:
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99 interesting[sv] += 1
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100 nsp = seen[p] = sv
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101 if sp:
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102 interesting[sp] -= 1
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103 if interesting[sp] == 0:
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104 del interesting[sp]
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105 elif dv == dp - 1:
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106 nsp = sp | sv
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107 if nsp == sp:
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108 continue
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109 seen[p] = nsp
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110 interesting.setdefault(nsp, 0)
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111 interesting[nsp] += 1
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112 interesting[sp] -= 1
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113 if interesting[sp] == 0:
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114 del interesting[sp]
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115 interesting[sv] -= 1
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116 if interesting[sv] == 0:
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117 del interesting[sv]
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118
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119 if len(interesting) != 1:
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120 return []
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121
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122 k = 0
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123 for i in interesting:
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124 k |= i
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125 return set(n for (i, n) in mapping if k & i)
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126
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127 gca = candidates(orignodes)
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128
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129 if len(gca) <= 1:
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130 return gca
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131 return deepest(gca)
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132
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133 def genericancestor(a, b, pfunc):
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134 """
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135 Returns the common ancestor of a and b that is furthest from a
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136 root (as measured by longest path) or None if no ancestor is
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137 found. If there are multiple common ancestors at the same
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138 distance, the first one found is returned.
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139
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140 pfunc must return a list of parent vertices for a given vertex
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141 """
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142
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143 if a == b:
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144 return a
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145
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146 a, b = sorted([a, b])
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147
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148 # find depth from root of all ancestors
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149 # depth is stored as a negative for heapq
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150 parentcache = {}
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151 visit = [a, b]
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152 depth = {}
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153 while visit:
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154 vertex = visit[-1]
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155 pl = [p for p in pfunc(vertex) if p != nullrev]
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156 parentcache[vertex] = pl
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157 if not pl:
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158 depth[vertex] = 0
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159 visit.pop()
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160 else:
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161 for p in pl:
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162 if p == a or p == b: # did we find a or b as a parent?
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163 return p # we're done
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164 if p not in depth:
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165 visit.append(p)
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166 if visit[-1] == vertex:
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167 # -(maximum distance of parents + 1)
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168 depth[vertex] = min([depth[p] for p in pl]) - 1
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169 visit.pop()
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170
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171 # traverse ancestors in order of decreasing distance from root
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172 def ancestors(vertex):
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173 h = [(depth[vertex], vertex)]
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174 seen = set()
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175 while h:
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176 d, n = heapq.heappop(h)
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177 if n not in seen:
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178 seen.add(n)
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179 yield (d, n)
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180 for p in parentcache[n]:
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181 heapq.heappush(h, (depth[p], p))
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182
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183 def generations(vertex):
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184 sg, s = None, set()
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185 for g, v in ancestors(vertex):
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186 if g != sg:
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187 if sg:
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188 yield sg, s
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189 sg, s = g, set((v,))
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190 else:
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191 s.add(v)
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192 yield sg, s
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193
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194 x = generations(a)
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195 y = generations(b)
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196 gx = x.next()
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197 gy = y.next()
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198
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199 # increment each ancestor list until it is closer to root than
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200 # the other, or they match
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201 try:
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202 while True:
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203 if gx[0] == gy[0]:
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204 for v in gx[1]:
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205 if v in gy[1]:
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206 return v
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207 gy = y.next()
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208 gx = x.next()
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209 elif gx[0] > gy[0]:
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210 gy = y.next()
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211 else:
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212 gx = x.next()
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213 except StopIteration:
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214 return None
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215
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216 def missingancestors(revs, bases, pfunc):
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217 """Return all the ancestors of revs that are not ancestors of bases.
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218
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219 This may include elements from revs.
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220
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221 Equivalent to the revset (::revs - ::bases). Revs are returned in
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222 revision number order, which is a topological order.
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223
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224 revs and bases should both be iterables. pfunc must return a list of
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225 parent revs for a given revs.
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226 """
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227
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228 revsvisit = set(revs)
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229 basesvisit = set(bases)
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230 if not revsvisit:
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231 return []
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232 if not basesvisit:
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233 basesvisit.add(nullrev)
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234 start = max(max(revsvisit), max(basesvisit))
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235 bothvisit = revsvisit.intersection(basesvisit)
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236 revsvisit.difference_update(bothvisit)
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237 basesvisit.difference_update(bothvisit)
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238 # At this point, we hold the invariants that:
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239 # - revsvisit is the set of nodes we know are an ancestor of at least one
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240 # of the nodes in revs
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241 # - basesvisit is the same for bases
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242 # - bothvisit is the set of nodes we know are ancestors of at least one of
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243 # the nodes in revs and one of the nodes in bases
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244 # - a node may be in none or one, but not more, of revsvisit, basesvisit
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245 # and bothvisit at any given time
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246 # Now we walk down in reverse topo order, adding parents of nodes already
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247 # visited to the sets while maintaining the invariants. When a node is
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248 # found in both revsvisit and basesvisit, it is removed from them and
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249 # added to bothvisit instead. When revsvisit becomes empty, there are no
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250 # more ancestors of revs that aren't also ancestors of bases, so exit.
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251
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252 missing = []
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253 for curr in xrange(start, nullrev, -1):
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254 if not revsvisit:
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255 break
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256
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257 if curr in bothvisit:
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258 bothvisit.remove(curr)
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259 # curr's parents might have made it into revsvisit or basesvisit
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260 # through another path
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261 for p in pfunc(curr):
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262 revsvisit.discard(p)
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263 basesvisit.discard(p)
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264 bothvisit.add(p)
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265 continue
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266
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267 # curr will never be in both revsvisit and basesvisit, since if it
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268 # were it'd have been pushed to bothvisit
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269 if curr in revsvisit:
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270 missing.append(curr)
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271 thisvisit = revsvisit
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272 othervisit = basesvisit
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273 elif curr in basesvisit:
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274 thisvisit = basesvisit
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275 othervisit = revsvisit
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276 else:
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277 # not an ancestor of revs or bases: ignore
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278 continue
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279
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280 thisvisit.remove(curr)
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281 for p in pfunc(curr):
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282 if p == nullrev:
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283 pass
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284 elif p in othervisit or p in bothvisit:
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285 # p is implicitly in thisvisit. This means p is or should be
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286 # in bothvisit
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287 revsvisit.discard(p)
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288 basesvisit.discard(p)
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289 bothvisit.add(p)
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290 else:
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291 # visit later
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292 thisvisit.add(p)
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293
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294 missing.reverse()
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295 return missing
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296
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297 class lazyancestors(object):
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298 def __init__(self, cl, revs, stoprev=0, inclusive=False):
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299 """Create a new object generating ancestors for the given revs. Does
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300 not generate revs lower than stoprev.
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301
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302 This is computed lazily starting from revs. The object supports
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303 iteration and membership.
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304
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305 cl should be a changelog and revs should be an iterable. inclusive is
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306 a boolean that indicates whether revs should be included. Revs lower
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307 than stoprev will not be generated.
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308
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309 Result does not include the null revision."""
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310 self._parentrevs = cl.parentrevs
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311 self._initrevs = revs
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312 self._stoprev = stoprev
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313 self._inclusive = inclusive
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314
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315 # Initialize data structures for __contains__.
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316 # For __contains__, we use a heap rather than a deque because
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317 # (a) it minimizes the number of parentrevs calls made
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318 # (b) it makes the loop termination condition obvious
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319 # Python's heap is a min-heap. Multiply all values by -1 to convert it
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320 # into a max-heap.
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321 self._containsvisit = [-rev for rev in revs]
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322 heapq.heapify(self._containsvisit)
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323 if inclusive:
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324 self._containsseen = set(revs)
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325 else:
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326 self._containsseen = set()
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327
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328 def __iter__(self):
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329 """Generate the ancestors of _initrevs in reverse topological order.
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330
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331 If inclusive is False, yield a sequence of revision numbers starting
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332 with the parents of each revision in revs, i.e., each revision is *not*
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333 considered an ancestor of itself. Results are in breadth-first order:
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334 parents of each rev in revs, then parents of those, etc.
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335
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336 If inclusive is True, yield all the revs first (ignoring stoprev),
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337 then yield all the ancestors of revs as when inclusive is False.
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338 If an element in revs is an ancestor of a different rev it is not
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339 yielded again."""
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340 seen = set()
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341 revs = self._initrevs
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342 if self._inclusive:
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343 for rev in revs:
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344 yield rev
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345 seen.update(revs)
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346
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347 parentrevs = self._parentrevs
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348 stoprev = self._stoprev
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349 visit = util.deque(revs)
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350
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351 while visit:
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352 for parent in parentrevs(visit.popleft()):
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353 if parent >= stoprev and parent not in seen:
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354 visit.append(parent)
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355 seen.add(parent)
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356 yield parent
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357
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358 def __contains__(self, target):
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359 """Test whether target is an ancestor of self._initrevs."""
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360 # Trying to do both __iter__ and __contains__ using the same visit
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361 # heap and seen set is complex enough that it slows down both. Keep
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362 # them separate.
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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
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367 parentrevs = self._parentrevs
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368 visit = self._containsvisit
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369 stoprev = self._stoprev
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370 heappop = heapq.heappop
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371 heappush = heapq.heappush
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372
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373 targetseen = False
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374
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375 while visit and -visit[0] > target and not targetseen:
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376 for parent in parentrevs(-heappop(visit)):
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377 if parent < stoprev or parent in seen:
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378 continue
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379 # We need to make sure we push all parents into the heap so
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380 # that we leave it in a consistent state for future calls.
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381 heappush(visit, -parent)
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382 seen.add(parent)
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383 if parent == target:
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384 targetseen = True
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385
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386 return targetseen