Mercurial > hg
annotate mercurial/graphmod.py @ 28183:e07daee83029
automv: use 95 as the default similarity threshold
The motivation for the change from 100 to 95 is included in a comment.
* Updated the tests to include a change to a moved file that still should be
caught as a move.
* Use ui.configint() to non-integer configuration entries more gracefully. Also
complain if a similarity outside of the acceptable range is set.
author | Martijn Pieters <mjpieters@fb.com> |
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date | Tue, 16 Feb 2016 15:58:32 +0000 |
parents | 9cf65f43b49b |
children | 97cb1aeaca78 |
rev | line source |
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6691 | 1 # Revision graph generator for Mercurial |
2 # | |
3 # Copyright 2008 Dirkjan Ochtman <dirkjan@ochtman.nl> | |
4 # Copyright 2007 Joel Rosdahl <joel@rosdahl.net> | |
5 # | |
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6 # This software may be used and distributed according to the terms of the |
10263 | 7 # GNU General Public License version 2 or any later version. |
6691 | 8 |
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9 """supports walking the history as DAGs suitable for graphical output |
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10 |
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11 The most basic format we use is that of:: |
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12 |
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13 (id, type, data, [parentids]) |
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14 |
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15 The node and parent ids are arbitrary integers which identify a node in the |
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16 context of the graph returned. Type is a constant specifying the node type. |
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17 Data depends on type. |
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18 """ |
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19 |
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20 from __future__ import absolute_import |
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21 |
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22 import heapq |
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23 |
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24 from .node import nullrev |
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25 from . import ( |
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26 revset, |
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27 util, |
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28 ) |
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29 |
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30 CHANGESET = 'C' |
6691 | 31 |
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32 def groupbranchiter(revs, parentsfunc, firstbranch=()): |
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33 """Yield revisions from heads to roots one (topo) branch at a time. |
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34 |
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35 This function aims to be used by a graph generator that wishes to minimize |
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36 the number of parallel branches and their interleaving. |
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37 |
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38 Example iteration order (numbers show the "true" order in a changelog): |
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39 |
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40 o 4 |
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41 | |
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42 o 1 |
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43 | |
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44 | o 3 |
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45 | | |
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46 | o 2 |
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47 |/ |
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48 o 0 |
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49 |
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50 Note that the ancestors of merges are understood by the current |
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51 algorithm to be on the same branch. This means no reordering will |
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52 occur behind a merge. |
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53 """ |
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54 |
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55 ### Quick summary of the algorithm |
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56 # |
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57 # This function is based around a "retention" principle. We keep revisions |
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58 # in memory until we are ready to emit a whole branch that immediately |
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59 # "merges" into an existing one. This reduces the number of parallel |
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60 # branches with interleaved revisions. |
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61 # |
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62 # During iteration revs are split into two groups: |
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63 # A) revision already emitted |
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64 # B) revision in "retention". They are stored as different subgroups. |
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65 # |
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66 # for each REV, we do the following logic: |
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67 # |
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68 # 1) if REV is a parent of (A), we will emit it. If there is a |
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69 # retention group ((B) above) that is blocked on REV being |
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70 # available, we emit all the revisions out of that retention |
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71 # group first. |
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72 # |
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73 # 2) else, we'll search for a subgroup in (B) awaiting for REV to be |
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74 # available, if such subgroup exist, we add REV to it and the subgroup is |
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75 # now awaiting for REV.parents() to be available. |
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76 # |
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77 # 3) finally if no such group existed in (B), we create a new subgroup. |
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78 # |
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79 # |
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80 # To bootstrap the algorithm, we emit the tipmost revision (which |
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81 # puts it in group (A) from above). |
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82 |
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83 revs.sort(reverse=True) |
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84 |
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85 # Set of parents of revision that have been emitted. They can be considered |
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86 # unblocked as the graph generator is already aware of them so there is no |
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87 # need to delay the revisions that reference them. |
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88 # |
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89 # If someone wants to prioritize a branch over the others, pre-filling this |
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90 # set will force all other branches to wait until this branch is ready to be |
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91 # emitted. |
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92 unblocked = set(firstbranch) |
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93 |
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94 # list of groups waiting to be displayed, each group is defined by: |
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95 # |
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96 # (revs: lists of revs waiting to be displayed, |
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97 # blocked: set of that cannot be displayed before those in 'revs') |
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98 # |
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99 # The second value ('blocked') correspond to parents of any revision in the |
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100 # group ('revs') that is not itself contained in the group. The main idea |
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101 # of this algorithm is to delay as much as possible the emission of any |
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102 # revision. This means waiting for the moment we are about to display |
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103 # these parents to display the revs in a group. |
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104 # |
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105 # This first implementation is smart until it encounters a merge: it will |
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106 # emit revs as soon as any parent is about to be emitted and can grow an |
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107 # arbitrary number of revs in 'blocked'. In practice this mean we properly |
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108 # retains new branches but gives up on any special ordering for ancestors |
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109 # of merges. The implementation can be improved to handle this better. |
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110 # |
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111 # The first subgroup is special. It corresponds to all the revision that |
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112 # were already emitted. The 'revs' lists is expected to be empty and the |
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113 # 'blocked' set contains the parents revisions of already emitted revision. |
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114 # |
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115 # You could pre-seed the <parents> set of groups[0] to a specific |
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116 # changesets to select what the first emitted branch should be. |
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117 groups = [([], unblocked)] |
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118 pendingheap = [] |
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119 pendingset = set() |
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120 |
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121 heapq.heapify(pendingheap) |
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122 heappop = heapq.heappop |
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123 heappush = heapq.heappush |
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124 for currentrev in revs: |
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125 # Heap works with smallest element, we want highest so we invert |
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126 if currentrev not in pendingset: |
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127 heappush(pendingheap, -currentrev) |
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128 pendingset.add(currentrev) |
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129 # iterates on pending rev until after the current rev have been |
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130 # processed. |
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131 rev = None |
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132 while rev != currentrev: |
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133 rev = -heappop(pendingheap) |
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134 pendingset.remove(rev) |
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135 |
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136 # Seek for a subgroup blocked, waiting for the current revision. |
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137 matching = [i for i, g in enumerate(groups) if rev in g[1]] |
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138 |
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139 if matching: |
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140 # The main idea is to gather together all sets that are blocked |
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141 # on the same revision. |
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142 # |
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143 # Groups are merged when a common blocking ancestor is |
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144 # observed. For example, given two groups: |
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145 # |
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146 # revs [5, 4] waiting for 1 |
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147 # revs [3, 2] waiting for 1 |
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148 # |
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149 # These two groups will be merged when we process |
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150 # 1. In theory, we could have merged the groups when |
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151 # we added 2 to the group it is now in (we could have |
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152 # noticed the groups were both blocked on 1 then), but |
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153 # the way it works now makes the algorithm simpler. |
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154 # |
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155 # We also always keep the oldest subgroup first. We can |
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156 # probably improve the behavior by having the longest set |
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157 # first. That way, graph algorithms could minimise the length |
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158 # of parallel lines their drawing. This is currently not done. |
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159 targetidx = matching.pop(0) |
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160 trevs, tparents = groups[targetidx] |
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161 for i in matching: |
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162 gr = groups[i] |
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163 trevs.extend(gr[0]) |
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164 tparents |= gr[1] |
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165 # delete all merged subgroups (except the one we kept) |
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166 # (starting from the last subgroup for performance and |
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167 # sanity reasons) |
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168 for i in reversed(matching): |
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169 del groups[i] |
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170 else: |
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171 # This is a new head. We create a new subgroup for it. |
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172 targetidx = len(groups) |
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173 groups.append(([], set([rev]))) |
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174 |
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175 gr = groups[targetidx] |
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176 |
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177 # We now add the current nodes to this subgroups. This is done |
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178 # after the subgroup merging because all elements from a subgroup |
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179 # that relied on this rev must precede it. |
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180 # |
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181 # we also update the <parents> set to include the parents of the |
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182 # new nodes. |
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183 if rev == currentrev: # only display stuff in rev |
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184 gr[0].append(rev) |
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185 gr[1].remove(rev) |
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186 parents = [p for p in parentsfunc(rev) if p > nullrev] |
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187 gr[1].update(parents) |
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188 for p in parents: |
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189 if p not in pendingset: |
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190 pendingset.add(p) |
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191 heappush(pendingheap, -p) |
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192 |
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193 # Look for a subgroup to display |
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194 # |
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195 # When unblocked is empty (if clause), we were not waiting for any |
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196 # revisions during the first iteration (if no priority was given) or |
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197 # if we emitted a whole disconnected set of the graph (reached a |
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198 # root). In that case we arbitrarily take the oldest known |
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199 # subgroup. The heuristic could probably be better. |
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200 # |
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201 # Otherwise (elif clause) if the subgroup is blocked on |
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202 # a revision we just emitted, we can safely emit it as |
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203 # well. |
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204 if not unblocked: |
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205 if len(groups) > 1: # display other subset |
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206 targetidx = 1 |
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207 gr = groups[1] |
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208 elif not gr[1] & unblocked: |
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209 gr = None |
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210 |
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211 if gr is not None: |
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212 # update the set of awaited revisions with the one from the |
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213 # subgroup |
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214 unblocked |= gr[1] |
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215 # output all revisions in the subgroup |
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216 for r in gr[0]: |
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217 yield r |
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218 # delete the subgroup that you just output |
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219 # unless it is groups[0] in which case you just empty it. |
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220 if targetidx: |
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221 del groups[targetidx] |
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222 else: |
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223 gr[0][:] = [] |
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224 # Check if we have some subgroup waiting for revisions we are not going to |
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225 # iterate over |
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226 for g in groups: |
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227 for r in g[0]: |
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228 yield r |
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229 |
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230 def dagwalker(repo, revs): |
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231 """cset DAG generator yielding (id, CHANGESET, ctx, [parentids]) tuples |
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232 |
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233 This generator function walks through revisions (which should be ordered |
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234 from bigger to lower). It returns a tuple for each node. The node and parent |
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235 ids are arbitrary integers which identify a node in the context of the graph |
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236 returned. |
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237 """ |
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238 if not revs: |
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239 return |
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240 |
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241 gpcache = {} |
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242 |
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243 if repo.ui.configbool('experimental', 'graph-group-branches', False): |
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244 firstbranch = () |
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245 firstbranchrevset = repo.ui.config( |
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246 'experimental', 'graph-group-branches.firstbranch', '') |
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247 if firstbranchrevset: |
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248 firstbranch = repo.revs(firstbranchrevset) |
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249 parentrevs = repo.changelog.parentrevs |
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250 revs = groupbranchiter(revs, parentrevs, firstbranch) |
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251 revs = revset.baseset(revs) |
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252 |
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253 for rev in revs: |
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254 ctx = repo[rev] |
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255 parents = sorted(set([p.rev() for p in ctx.parents() |
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256 if p.rev() in revs])) |
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257 mpars = [p.rev() for p in ctx.parents() if |
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258 p.rev() != nullrev and p.rev() not in parents] |
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259 |
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260 for mpar in mpars: |
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261 gp = gpcache.get(mpar) |
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262 if gp is None: |
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263 # precompute slow query as we know reachableroots() goes |
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264 # through all revs (issue4782) |
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265 if not isinstance(revs, revset.baseset): |
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266 revs = revset.baseset(revs) |
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267 gp = gpcache[mpar] = revset.reachableroots(repo, revs, [mpar]) |
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268 if not gp: |
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269 parents.append(mpar) |
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270 else: |
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271 parents.extend(g for g in gp if g not in parents) |
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272 |
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273 yield (ctx.rev(), CHANGESET, ctx, parents) |
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274 |
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275 def nodes(repo, nodes): |
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276 """cset DAG generator yielding (id, CHANGESET, ctx, [parentids]) tuples |
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277 |
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278 This generator function walks the given nodes. It only returns parents |
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279 that are in nodes, too. |
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280 """ |
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281 include = set(nodes) |
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282 for node in nodes: |
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283 ctx = repo[node] |
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284 parents = set([p.rev() for p in ctx.parents() if p.node() in include]) |
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285 yield (ctx.rev(), CHANGESET, ctx, sorted(parents)) |
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286 |
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287 def colored(dag, repo): |
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288 """annotates a DAG with colored edge information |
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289 |
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290 For each DAG node this function emits tuples:: |
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292 (id, type, data, (col, color), [(col, nextcol, color)]) |
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294 with the following new elements: |
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295 |
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296 - Tuple (col, color) with column and color index for the current node |
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297 - A list of tuples indicating the edges between the current node and its |
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298 parents. |
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300 seen = [] |
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302 newcolor = 1 |
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303 config = {} |
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304 |
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305 for key, val in repo.ui.configitems('graph'): |
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306 if '.' in key: |
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307 branch, setting = key.rsplit('.', 1) |
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308 # Validation |
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309 if setting == "width" and val.isdigit(): |
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310 config.setdefault(branch, {})[setting] = int(val) |
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311 elif setting == "color" and val.isalnum(): |
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312 config.setdefault(branch, {})[setting] = val |
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313 |
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314 if config: |
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315 getconf = util.lrucachefunc( |
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316 lambda rev: config.get(repo[rev].branch(), {})) |
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317 else: |
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318 getconf = lambda rev: {} |
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319 |
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320 for (cur, type, data, parents) in dag: |
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322 # Compute seen and next |
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323 if cur not in seen: |
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324 seen.append(cur) # new head |
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325 colors[cur] = newcolor |
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326 newcolor += 1 |
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328 col = seen.index(cur) |
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329 color = colors.pop(cur) |
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330 next = seen[:] |
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332 # Add parents to next |
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334 next[col:col + 1] = addparents |
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336 # Set colors for the parents | |
337 for i, p in enumerate(addparents): | |
338 if not i: | |
339 colors[p] = color | |
340 else: | |
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341 colors[p] = newcolor |
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342 newcolor += 1 |
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344 # Add edges to the graph | |
345 edges = [] | |
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346 for ecol, eid in enumerate(seen): |
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347 if eid in next: |
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348 bconf = getconf(eid) |
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349 edges.append(( |
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350 ecol, next.index(eid), colors[eid], |
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351 bconf.get('width', -1), |
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352 bconf.get('color', ''))) |
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353 elif eid == cur: |
6691 | 354 for p in parents: |
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355 bconf = getconf(p) |
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356 edges.append(( |
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357 ecol, next.index(p), color, |
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358 bconf.get('width', -1), |
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359 bconf.get('color', ''))) |
6691 | 360 |
361 # Yield and move on | |
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362 yield (cur, type, data, (col, color), edges) |
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363 seen = next |
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364 |
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365 def asciiedges(type, char, lines, seen, rev, parents): |
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366 """adds edge info to changelog DAG walk suitable for ascii()""" |
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367 if rev not in seen: |
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368 seen.append(rev) |
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369 nodeidx = seen.index(rev) |
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370 |
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371 knownparents = [] |
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372 newparents = [] |
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373 for parent in parents: |
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374 if parent in seen: |
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375 knownparents.append(parent) |
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376 else: |
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377 newparents.append(parent) |
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378 |
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379 ncols = len(seen) |
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380 nextseen = seen[:] |
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381 nextseen[nodeidx:nodeidx + 1] = newparents |
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382 edges = [(nodeidx, nextseen.index(p)) for p in knownparents if p != nullrev] |
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383 |
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384 while len(newparents) > 2: |
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385 # ascii() only knows how to add or remove a single column between two |
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386 # calls. Nodes with more than two parents break this constraint so we |
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387 # introduce intermediate expansion lines to grow the active node list |
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388 # slowly. |
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389 edges.append((nodeidx, nodeidx)) |
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390 edges.append((nodeidx, nodeidx + 1)) |
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391 nmorecols = 1 |
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392 yield (type, char, lines, (nodeidx, edges, ncols, nmorecols)) |
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393 char = '\\' |
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394 lines = [] |
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395 nodeidx += 1 |
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396 ncols += 1 |
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397 edges = [] |
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398 del newparents[0] |
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399 |
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400 if len(newparents) > 0: |
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401 edges.append((nodeidx, nodeidx)) |
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402 if len(newparents) > 1: |
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403 edges.append((nodeidx, nodeidx + 1)) |
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404 nmorecols = len(nextseen) - ncols |
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405 seen[:] = nextseen |
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406 yield (type, char, lines, (nodeidx, edges, ncols, nmorecols)) |
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407 |
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408 def _fixlongrightedges(edges): |
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409 for (i, (start, end)) in enumerate(edges): |
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410 if end > start: |
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411 edges[i] = (start, end + 1) |
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412 |
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413 def _getnodelineedgestail( |
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414 node_index, p_node_index, n_columns, n_columns_diff, p_diff, fix_tail): |
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415 if fix_tail and n_columns_diff == p_diff and n_columns_diff != 0: |
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416 # Still going in the same non-vertical direction. |
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417 if n_columns_diff == -1: |
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418 start = max(node_index + 1, p_node_index) |
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419 tail = ["|", " "] * (start - node_index - 1) |
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420 tail.extend(["/", " "] * (n_columns - start)) |
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421 return tail |
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422 else: |
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423 return ["\\", " "] * (n_columns - node_index - 1) |
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424 else: |
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425 return ["|", " "] * (n_columns - node_index - 1) |
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426 |
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427 def _drawedges(edges, nodeline, interline): |
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428 for (start, end) in edges: |
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429 if start == end + 1: |
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430 interline[2 * end + 1] = "/" |
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431 elif start == end - 1: |
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432 interline[2 * start + 1] = "\\" |
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433 elif start == end: |
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434 interline[2 * start] = "|" |
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435 else: |
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436 if 2 * end >= len(nodeline): |
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437 continue |
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438 nodeline[2 * end] = "+" |
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439 if start > end: |
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440 (start, end) = (end, start) |
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441 for i in range(2 * start + 1, 2 * end): |
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442 if nodeline[i] != "+": |
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443 nodeline[i] = "-" |
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444 |
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445 def _getpaddingline(ni, n_columns, edges): |
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446 line = [] |
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447 line.extend(["|", " "] * ni) |
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448 if (ni, ni - 1) in edges or (ni, ni) in edges: |
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449 # (ni, ni - 1) (ni, ni) |
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450 # | | | | | | | | |
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451 # +---o | | o---+ |
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452 # | | c | | c | | |
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453 # | |/ / | |/ / |
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454 # | | | | | | |
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455 c = "|" |
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456 else: |
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457 c = " " |
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458 line.extend([c, " "]) |
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459 line.extend(["|", " "] * (n_columns - ni - 1)) |
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changeset
|
460 return line |
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|
461 |
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462 def asciistate(): |
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463 """returns the initial value for the "state" argument to ascii()""" |
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464 return [0, 0] |
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465 |
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466 def ascii(ui, state, type, char, text, coldata): |
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467 """prints an ASCII graph of the DAG |
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468 |
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469 takes the following arguments (one call per node in the graph): |
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470 |
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471 - ui to write to |
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472 - Somewhere to keep the needed state in (init to asciistate()) |
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473 - Column of the current node in the set of ongoing edges. |
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474 - Type indicator of node data, usually 'C' for changesets. |
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475 - Payload: (char, lines): |
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476 - Character to use as node's symbol. |
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477 - List of lines to display as the node's text. |
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478 - Edges; a list of (col, next_col) indicating the edges between |
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479 the current node and its parents. |
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480 - Number of columns (ongoing edges) in the current revision. |
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481 - The difference between the number of columns (ongoing edges) |
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482 in the next revision and the number of columns (ongoing edges) |
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483 in the current revision. That is: -1 means one column removed; |
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484 0 means no columns added or removed; 1 means one column added. |
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485 """ |
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486 |
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487 idx, edges, ncols, coldiff = coldata |
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488 assert -2 < coldiff < 2 |
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489 if coldiff == -1: |
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490 # Transform |
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491 # |
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492 # | | | | | | |
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493 # o | | into o---+ |
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494 # |X / |/ / |
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495 # | | | | |
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496 _fixlongrightedges(edges) |
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497 |
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498 # add_padding_line says whether to rewrite |
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499 # |
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500 # | | | | | | | | |
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501 # | o---+ into | o---+ |
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502 # | / / | | | # <--- padding line |
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503 # o | | | / / |
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504 # o | | |
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505 add_padding_line = (len(text) > 2 and coldiff == -1 and |
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506 [x for (x, y) in edges if x + 1 < y]) |
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507 |
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508 # fix_nodeline_tail says whether to rewrite |
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509 # |
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510 # | | o | | | | o | | |
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511 # | | |/ / | | |/ / |
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512 # | o | | into | o / / # <--- fixed nodeline tail |
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513 # | |/ / | |/ / |
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514 # o | | o | | |
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515 fix_nodeline_tail = len(text) <= 2 and not add_padding_line |
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516 |
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517 # nodeline is the line containing the node character (typically o) |
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518 nodeline = ["|", " "] * idx |
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519 nodeline.extend([char, " "]) |
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520 |
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521 nodeline.extend( |
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522 _getnodelineedgestail(idx, state[1], ncols, coldiff, |
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523 state[0], fix_nodeline_tail)) |
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524 |
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525 # shift_interline is the line containing the non-vertical |
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526 # edges between this entry and the next |
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527 shift_interline = ["|", " "] * idx |
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528 if coldiff == -1: |
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529 n_spaces = 1 |
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530 edge_ch = "/" |
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531 elif coldiff == 0: |
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532 n_spaces = 2 |
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533 edge_ch = "|" |
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534 else: |
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535 n_spaces = 3 |
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536 edge_ch = "\\" |
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537 shift_interline.extend(n_spaces * [" "]) |
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538 shift_interline.extend([edge_ch, " "] * (ncols - idx - 1)) |
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539 |
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540 # draw edges from the current node to its parents |
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541 _drawedges(edges, nodeline, shift_interline) |
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542 |
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543 # lines is the list of all graph lines to print |
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544 lines = [nodeline] |
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545 if add_padding_line: |
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546 lines.append(_getpaddingline(idx, ncols, edges)) |
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547 lines.append(shift_interline) |
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548 |
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549 # make sure that there are as many graph lines as there are |
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550 # log strings |
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551 while len(text) < len(lines): |
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552 text.append("") |
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553 if len(lines) < len(text): |
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554 extra_interline = ["|", " "] * (ncols + coldiff) |
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555 while len(lines) < len(text): |
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556 lines.append(extra_interline) |
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557 |
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558 # print lines |
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559 indentation_level = max(ncols, ncols + coldiff) |
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560 for (line, logstr) in zip(lines, text): |
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561 ln = "%-*s %s" % (2 * indentation_level, "".join(line), logstr) |
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562 ui.write(ln.rstrip() + '\n') |
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563 |
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564 # ... and start over |
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565 state[0] = coldiff |
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566 state[1] = idx |