Mercurial > hg
annotate mercurial/graphmod.py @ 27039:d7517deedf86
filemerge._picktool: only pick from nomerge tools for change/delete conflicts
For --tool or HGMERGE, we could have either:
(a) proceeded with the particular tool, then failed the merge.
(b) chosen to prompt regardless.
We're explicitly choosing (b) here, because it's effectively what we've been
doing so far and helps maintain an easier-to-use interface.
However, in future patches we're going to change the default selection from
'pick changed version' to 'leave unresolved'. That fixes most of the brokenness
involved with choice (b).
author | Siddharth Agarwal <sid0@fb.com> |
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date | Sun, 15 Nov 2015 21:40:15 -0800 |
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 |