Mercurial > hg-stable
annotate tests/test-ancestor.py @ 25867:a74e9806d17d stable
highlight: produce correct markup when there's a blank line just before EOF
Due to how the colorized output from pygments was stripped of <pre> elements,
when there was an empty line at the end of a file, highlight extension produced
an incorrect markup (no closing tags from the fileline/annotateline template).
It wasn't usually noticeable, because browsers were smart enough to see where
the missing tags should've been, but in monoblue style it resulted in the last
line having twice the normal height.
Instead of awkwardly trying to strip outer <pre></pre> tags, let's make the
formatter with nowrap=True, which should do what we need in pygments since at
least 0.5 (2006-10-30).
Example from monoblue style:
Before:
<div class="source">
<div style="font-family:monospace" class="parity0">
<pre><a class="linenr" href="#l1" id="l1"> 1</a> </pre>
</div>
<div style="font-family:monospace" class="parity1">
<pre><a class="linenr" href="#l2" id="l2"> 2</a>
</div>
Now:
<div class="source">
<div style="font-family:monospace" class="parity0">
<pre><a class="linenr" href="#l1" id="l1"> 1</a> </pre>
</div>
<div style="font-family:monospace" class="parity1">
<pre><a class="linenr" href="#l2" id="l2"> 2</a> </pre>
</div>
</div>
(Notice the missing </pre></div> now in place)
author | Anton Shestakov <av6@dwimlabs.net> |
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date | Wed, 22 Jul 2015 10:19:17 +0800 |
parents | f710644e1ce9 |
children | 4056fdf71aff |
rev | line source |
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1 from mercurial import ancestor, commands, hg, ui, util |
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2 from mercurial.node import nullrev |
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3 import binascii, getopt, math, os, random, sys, time |
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4 |
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5 def buildgraph(rng, nodes=100, rootprob=0.05, mergeprob=0.2, prevprob=0.7): |
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6 '''nodes: total number of nodes in the graph |
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7 rootprob: probability that a new node (not 0) will be a root |
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8 mergeprob: probability that, excluding a root a node will be a merge |
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9 prevprob: probability that p1 will be the previous node |
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10 |
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11 return value is a graph represented as an adjacency list. |
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12 ''' |
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13 graph = [None] * nodes |
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14 for i in xrange(nodes): |
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15 if i == 0 or rng.random() < rootprob: |
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16 graph[i] = [nullrev] |
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17 elif i == 1: |
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18 graph[i] = [0] |
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19 elif rng.random() < mergeprob: |
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20 if i == 2 or rng.random() < prevprob: |
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21 # p1 is prev |
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22 p1 = i - 1 |
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23 else: |
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24 p1 = rng.randrange(i - 1) |
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25 p2 = rng.choice(range(0, p1) + range(p1 + 1, i)) |
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26 graph[i] = [p1, p2] |
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27 elif rng.random() < prevprob: |
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28 graph[i] = [i - 1] |
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29 else: |
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30 graph[i] = [rng.randrange(i - 1)] |
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31 |
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32 return graph |
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33 |
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34 def buildancestorsets(graph): |
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35 ancs = [None] * len(graph) |
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36 for i in xrange(len(graph)): |
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37 ancs[i] = set([i]) |
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38 if graph[i] == [nullrev]: |
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39 continue |
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40 for p in graph[i]: |
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41 ancs[i].update(ancs[p]) |
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42 return ancs |
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43 |
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44 class naiveincrementalmissingancestors(object): |
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45 def __init__(self, ancs, bases): |
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46 self.ancs = ancs |
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47 self.bases = set(bases) |
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48 def addbases(self, newbases): |
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49 self.bases.update(newbases) |
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50 def removeancestorsfrom(self, revs): |
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51 for base in self.bases: |
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52 if base != nullrev: |
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53 revs.difference_update(self.ancs[base]) |
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54 revs.discard(nullrev) |
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55 def missingancestors(self, revs): |
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56 res = set() |
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57 for rev in revs: |
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58 if rev != nullrev: |
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59 res.update(self.ancs[rev]) |
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60 for base in self.bases: |
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61 if base != nullrev: |
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62 res.difference_update(self.ancs[base]) |
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63 return sorted(res) |
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64 |
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65 def test_missingancestors(seed, rng): |
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66 # empirically observed to take around 1 second |
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67 graphcount = 100 |
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68 testcount = 10 |
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69 inccount = 10 |
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70 nerrs = [0] |
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71 # the default mu and sigma give us a nice distribution of mostly |
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72 # single-digit counts (including 0) with some higher ones |
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73 def lognormrandom(mu, sigma): |
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74 return int(math.floor(rng.lognormvariate(mu, sigma))) |
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75 |
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76 def samplerevs(nodes, mu=1.1, sigma=0.8): |
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77 count = min(lognormrandom(mu, sigma), len(nodes)) |
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78 return rng.sample(nodes, count) |
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79 |
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80 def err(seed, graph, bases, seq, output, expected): |
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81 if nerrs[0] == 0: |
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82 print >> sys.stderr, 'seed:', hex(seed)[:-1] |
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83 if gerrs[0] == 0: |
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84 print >> sys.stderr, 'graph:', graph |
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85 print >> sys.stderr, '* bases:', bases |
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86 print >> sys.stderr, '* seq: ', seq |
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87 print >> sys.stderr, '* output: ', output |
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88 print >> sys.stderr, '* expected:', expected |
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89 nerrs[0] += 1 |
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90 gerrs[0] += 1 |
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91 |
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92 for g in xrange(graphcount): |
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93 graph = buildgraph(rng) |
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94 ancs = buildancestorsets(graph) |
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95 gerrs = [0] |
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96 for _ in xrange(testcount): |
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97 # start from nullrev to include it as a possibility |
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98 graphnodes = range(nullrev, len(graph)) |
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99 bases = samplerevs(graphnodes) |
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100 |
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101 # fast algorithm |
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102 inc = ancestor.incrementalmissingancestors(graph.__getitem__, bases) |
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103 # reference slow algorithm |
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104 naiveinc = naiveincrementalmissingancestors(ancs, bases) |
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105 seq = [] |
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106 revs = [] |
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107 for _ in xrange(inccount): |
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108 if rng.random() < 0.2: |
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109 newbases = samplerevs(graphnodes) |
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110 seq.append(('addbases', newbases)) |
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111 inc.addbases(newbases) |
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112 naiveinc.addbases(newbases) |
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113 if rng.random() < 0.4: |
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114 # larger set so that there are more revs to remove from |
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115 revs = samplerevs(graphnodes, mu=1.5) |
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116 seq.append(('removeancestorsfrom', revs)) |
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117 hrevs = set(revs) |
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118 rrevs = set(revs) |
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119 inc.removeancestorsfrom(hrevs) |
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120 naiveinc.removeancestorsfrom(rrevs) |
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121 if hrevs != rrevs: |
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122 err(seed, graph, bases, seq, sorted(hrevs), |
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123 sorted(rrevs)) |
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124 else: |
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125 revs = samplerevs(graphnodes) |
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126 seq.append(('missingancestors', revs)) |
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127 h = inc.missingancestors(revs) |
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128 r = naiveinc.missingancestors(revs) |
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129 if h != r: |
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130 err(seed, graph, bases, seq, h, r) |
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131 |
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132 # graph is a dict of child->parent adjacency lists for this graph: |
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133 # o 13 |
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134 # | |
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135 # | o 12 |
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136 # | | |
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137 # | | o 11 |
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138 # | | |\ |
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139 # | | | | o 10 |
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140 # | | | | | |
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141 # | o---+ | 9 |
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142 # | | | | | |
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143 # o | | | | 8 |
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144 # / / / / |
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145 # | | o | 7 |
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146 # | | | | |
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147 # o---+ | 6 |
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148 # / / / |
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149 # | | o 5 |
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150 # | |/ |
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151 # | o 4 |
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152 # | | |
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153 # o | 3 |
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154 # | | |
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155 # | o 2 |
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156 # |/ |
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157 # o 1 |
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158 # | |
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159 # o 0 |
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160 |
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161 graph = {0: [-1], 1: [0], 2: [1], 3: [1], 4: [2], 5: [4], 6: [4], |
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162 7: [4], 8: [-1], 9: [6, 7], 10: [5], 11: [3, 7], 12: [9], |
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163 13: [8]} |
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164 |
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165 def genlazyancestors(revs, stoprev=0, inclusive=False): |
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166 print ("%% lazy ancestor set for %s, stoprev = %s, inclusive = %s" % |
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167 (revs, stoprev, inclusive)) |
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168 return ancestor.lazyancestors(graph.get, revs, stoprev=stoprev, |
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169 inclusive=inclusive) |
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170 |
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171 def printlazyancestors(s, l): |
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172 print 'membership: %r' % [n for n in l if n in s] |
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173 print 'iteration: %r' % list(s) |
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174 |
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175 def test_lazyancestors(): |
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176 # Empty revs |
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177 s = genlazyancestors([]) |
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178 printlazyancestors(s, [3, 0, -1]) |
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179 |
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180 # Standard example |
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181 s = genlazyancestors([11, 13]) |
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182 printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
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183 |
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184 # Standard with ancestry in the initial set (1 is ancestor of 3) |
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185 s = genlazyancestors([1, 3]) |
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186 printlazyancestors(s, [1, -1, 0]) |
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187 |
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188 # Including revs |
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189 s = genlazyancestors([11, 13], inclusive=True) |
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190 printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
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191 |
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192 # Test with stoprev |
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193 s = genlazyancestors([11, 13], stoprev=6) |
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194 printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
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195 s = genlazyancestors([11, 13], stoprev=6, inclusive=True) |
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196 printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
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197 |
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198 |
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199 # The C gca algorithm requires a real repo. These are textual descriptions of |
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200 # DAGs that have been known to be problematic. |
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201 dagtests = [ |
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202 '+2*2*2/*3/2', |
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203 '+3*3/*2*2/*4*4/*4/2*4/2*2', |
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204 ] |
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205 def test_gca(): |
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206 u = ui.ui() |
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207 for i, dag in enumerate(dagtests): |
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208 repo = hg.repository(u, 'gca%d' % i, create=1) |
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209 cl = repo.changelog |
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210 if not util.safehasattr(cl.index, 'ancestors'): |
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211 # C version not available |
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212 return |
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213 |
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214 commands.debugbuilddag(u, repo, dag) |
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215 # Compare the results of the Python and C versions. This does not |
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216 # include choosing a winner when more than one gca exists -- we make |
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217 # sure both return exactly the same set of gcas. |
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218 for a in cl: |
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219 for b in cl: |
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220 cgcas = sorted(cl.index.ancestors(a, b)) |
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221 pygcas = sorted(ancestor.ancestors(cl.parentrevs, a, b)) |
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222 if cgcas != pygcas: |
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223 print "test_gca: for dag %s, gcas for %d, %d:" % (dag, a, b) |
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224 print " C returned: %s" % cgcas |
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225 print " Python returned: %s" % pygcas |
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226 |
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227 def main(): |
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228 seed = None |
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229 opts, args = getopt.getopt(sys.argv[1:], 's:', ['seed=']) |
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230 for o, a in opts: |
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231 if o in ('-s', '--seed'): |
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232 seed = long(a, base=0) # accepts base 10 or 16 strings |
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233 |
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234 if seed is None: |
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235 try: |
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236 seed = long(binascii.hexlify(os.urandom(16)), 16) |
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237 except AttributeError: |
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238 seed = long(time.time() * 1000) |
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239 |
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240 rng = random.Random(seed) |
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241 test_missingancestors(seed, rng) |
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242 test_lazyancestors() |
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243 test_gca() |
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244 |
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245 if __name__ == '__main__': |
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246 main() |