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<div class="title">find_graph_symmetries.cc</div> </div>
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<a href="find__graph__symmetries_8cc.html">Go to the documentation of this file.</a><div class="fragment"><div class="line"><a name="l00001"></a><span class="lineno"> 1</span>&#160;<span class="comment">// Copyright 2010-2021 Google LLC</span></div>
<div class="line"><a name="l00002"></a><span class="lineno"> 2</span>&#160;<span class="comment">// Licensed under the Apache License, Version 2.0 (the &quot;License&quot;);</span></div>
<div class="line"><a name="l00003"></a><span class="lineno"> 3</span>&#160;<span class="comment">// you may not use this file except in compliance with the License.</span></div>
<div class="line"><a name="l00004"></a><span class="lineno"> 4</span>&#160;<span class="comment">// You may obtain a copy of the License at</span></div>
<div class="line"><a name="l00005"></a><span class="lineno"> 5</span>&#160;<span class="comment">//</span></div>
<div class="line"><a name="l00006"></a><span class="lineno"> 6</span>&#160;<span class="comment">// http://www.apache.org/licenses/LICENSE-2.0</span></div>
<div class="line"><a name="l00007"></a><span class="lineno"> 7</span>&#160;<span class="comment">//</span></div>
<div class="line"><a name="l00008"></a><span class="lineno"> 8</span>&#160;<span class="comment">// Unless required by applicable law or agreed to in writing, software</span></div>
<div class="line"><a name="l00009"></a><span class="lineno"> 9</span>&#160;<span class="comment">// distributed under the License is distributed on an &quot;AS IS&quot; BASIS,</span></div>
<div class="line"><a name="l00010"></a><span class="lineno"> 10</span>&#160;<span class="comment">// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.</span></div>
<div class="line"><a name="l00011"></a><span class="lineno"> 11</span>&#160;<span class="comment">// See the License for the specific language governing permissions and</span></div>
<div class="line"><a name="l00012"></a><span class="lineno"> 12</span>&#160;<span class="comment">// limitations under the License.</span></div>
<div class="line"><a name="l00013"></a><span class="lineno"> 13</span>&#160; </div>
<div class="line"><a name="l00014"></a><span class="lineno"> 14</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="find__graph__symmetries_8h.html">ortools/algorithms/find_graph_symmetries.h</a>&quot;</span></div>
<div class="line"><a name="l00015"></a><span class="lineno"> 15</span>&#160; </div>
<div class="line"><a name="l00016"></a><span class="lineno"> 16</span>&#160;<span class="preprocessor">#include &lt;algorithm&gt;</span></div>
<div class="line"><a name="l00017"></a><span class="lineno"> 17</span>&#160;<span class="preprocessor">#include &lt;cstdint&gt;</span></div>
<div class="line"><a name="l00018"></a><span class="lineno"> 18</span>&#160;<span class="preprocessor">#include &lt;limits&gt;</span></div>
<div class="line"><a name="l00019"></a><span class="lineno"> 19</span>&#160;<span class="preprocessor">#include &lt;numeric&gt;</span></div>
<div class="line"><a name="l00020"></a><span class="lineno"> 20</span>&#160; </div>
<div class="line"><a name="l00021"></a><span class="lineno"> 21</span>&#160;<span class="preprocessor">#include &quot;absl/memory/memory.h&quot;</span></div>
<div class="line"><a name="l00022"></a><span class="lineno"> 22</span>&#160;<span class="preprocessor">#include &quot;absl/status/status.h&quot;</span></div>
<div class="line"><a name="l00023"></a><span class="lineno"> 23</span>&#160;<span class="preprocessor">#include &quot;absl/strings/str_format.h&quot;</span></div>
<div class="line"><a name="l00024"></a><span class="lineno"> 24</span>&#160;<span class="preprocessor">#include &quot;absl/strings/str_join.h&quot;</span></div>
<div class="line"><a name="l00025"></a><span class="lineno"> 25</span>&#160;<span class="preprocessor">#include &quot;absl/time/clock.h&quot;</span></div>
<div class="line"><a name="l00026"></a><span class="lineno"> 26</span>&#160;<span class="preprocessor">#include &quot;absl/time/time.h&quot;</span></div>
<div class="line"><a name="l00027"></a><span class="lineno"> 27</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="dense__doubly__linked__list_8h.html">ortools/algorithms/dense_doubly_linked_list.h</a>&quot;</span></div>
<div class="line"><a name="l00028"></a><span class="lineno"> 28</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="dynamic__partition_8h.html">ortools/algorithms/dynamic_partition.h</a>&quot;</span></div>
<div class="line"><a name="l00029"></a><span class="lineno"> 29</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="dynamic__permutation_8h.html">ortools/algorithms/dynamic_permutation.h</a>&quot;</span></div>
<div class="line"><a name="l00030"></a><span class="lineno"> 30</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="sparse__permutation_8h.html">ortools/algorithms/sparse_permutation.h</a>&quot;</span></div>
<div class="line"><a name="l00031"></a><span class="lineno"> 31</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="commandlineflags_8h.html">ortools/base/commandlineflags.h</a>&quot;</span></div>
<div class="line"><a name="l00032"></a><span class="lineno"> 32</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="iterators_8h.html">ortools/graph/iterators.h</a>&quot;</span></div>
<div class="line"><a name="l00033"></a><span class="lineno"> 33</span>&#160;<span class="preprocessor">#include &quot;<a class="code" href="graph_2util_8h.html">ortools/graph/util.h</a>&quot;</span></div>
<div class="line"><a name="l00034"></a><span class="lineno"> 34</span>&#160; </div>
<div class="line"><a name="l00035"></a><span class="lineno"><a class="line" href="find__graph__symmetries_8cc.html#a319b3c460e91c76ad49c4589748e4f0c"> 35</a></span>&#160;<a class="code" href="find__graph__symmetries_8cc.html#a319b3c460e91c76ad49c4589748e4f0c">ABSL_FLAG</a>(<span class="keywordtype">bool</span>, minimize_permutation_support_size, <span class="keyword">false</span>,</div>
<div class="line"><a name="l00036"></a><span class="lineno"> 36</span>&#160; <span class="stringliteral">&quot;Tweak the algorithm to try and minimize the support size&quot;</span></div>
<div class="line"><a name="l00037"></a><span class="lineno"> 37</span>&#160; <span class="stringliteral">&quot; of the generators produced. This may negatively impact the&quot;</span></div>
<div class="line"><a name="l00038"></a><span class="lineno"> 38</span>&#160; <span class="stringliteral">&quot; performance, but works great on the sat_holeXXX benchmarks&quot;</span></div>
<div class="line"><a name="l00039"></a><span class="lineno"> 39</span>&#160; <span class="stringliteral">&quot; to reduce the support size.&quot;</span>);</div>
<div class="line"><a name="l00040"></a><span class="lineno"> 40</span>&#160; </div>
<div class="line"><a name="l00041"></a><span class="lineno"> 41</span>&#160;<span class="keyword">namespace </span><a class="code" href="namespaceoperations__research.html">operations_research</a> {</div>
<div class="line"><a name="l00042"></a><span class="lineno"> 42</span>&#160; </div>
<div class="line"><a name="l00043"></a><span class="lineno"> 43</span>&#160;<span class="keyword">using</span> <a class="code" href="namespaceutil.html#aa94a02ae5c14feb50676668f2de166dc">util::GraphIsSymmetric</a>;</div>
<div class="line"><a name="l00044"></a><span class="lineno"> 44</span>&#160; </div>
<div class="line"><a name="l00045"></a><span class="lineno"> 45</span>&#160;<span class="keyword">namespace </span>{</div>
<div class="line"><a name="l00046"></a><span class="lineno"> 46</span>&#160;<span class="comment">// Some routines used below.</span></div>
<div class="line"><a name="l00047"></a><span class="lineno"> 47</span>&#160;<span class="keywordtype">void</span> SwapFrontAndBack(std::vector&lt;int&gt;* v) {</div>
<div class="line"><a name="l00048"></a><span class="lineno"> 48</span>&#160; <a class="code" href="base_2logging_8h.html#ae17f8119c108cf3070bad3449c7e0006">DCHECK</a>(!v-&gt;empty());</div>
<div class="line"><a name="l00049"></a><span class="lineno"> 49</span>&#160; <a class="code" href="namespaceoperations__research_1_1math__opt.html#a5de89a1f6e3f80a49a0d76136d8044e2">std::swap</a>((*v)[0], v-&gt;back());</div>
<div class="line"><a name="l00050"></a><span class="lineno"> 50</span>&#160;}</div>
<div class="line"><a name="l00051"></a><span class="lineno"> 51</span>&#160; </div>
<div class="line"><a name="l00052"></a><span class="lineno"> 52</span>&#160;<span class="keywordtype">bool</span> PartitionsAreCompatibleAfterPartIndex(<span class="keyword">const</span> DynamicPartition&amp; p1,</div>
<div class="line"><a name="l00053"></a><span class="lineno"> 53</span>&#160; <span class="keyword">const</span> DynamicPartition&amp; p2,</div>
<div class="line"><a name="l00054"></a><span class="lineno"> 54</span>&#160; <span class="keywordtype">int</span> part_index) {</div>
<div class="line"><a name="l00055"></a><span class="lineno"> 55</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> num_parts = p1.NumParts();</div>
<div class="line"><a name="l00056"></a><span class="lineno"> 56</span>&#160; <span class="keywordflow">if</span> (p2.NumParts() != num_parts) <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l00057"></a><span class="lineno"> 57</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> p = part_index; p &lt; num_parts; ++p) {</div>
<div class="line"><a name="l00058"></a><span class="lineno"> 58</span>&#160; <span class="keywordflow">if</span> (p1.SizeOfPart(p) != p2.SizeOfPart(p) ||</div>
<div class="line"><a name="l00059"></a><span class="lineno"> 59</span>&#160; p1.ParentOfPart(p) != p2.ParentOfPart(p)) {</div>
<div class="line"><a name="l00060"></a><span class="lineno"> 60</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l00061"></a><span class="lineno"> 61</span>&#160; }</div>
<div class="line"><a name="l00062"></a><span class="lineno"> 62</span>&#160; }</div>
<div class="line"><a name="l00063"></a><span class="lineno"> 63</span>&#160; <span class="keywordflow">return</span> <span class="keyword">true</span>;</div>
<div class="line"><a name="l00064"></a><span class="lineno"> 64</span>&#160;}</div>
<div class="line"><a name="l00065"></a><span class="lineno"> 65</span>&#160; </div>
<div class="line"><a name="l00066"></a><span class="lineno"> 66</span>&#160;<span class="comment">// Whether the &quot;l1&quot; list maps to &quot;l2&quot; under the permutation &quot;permutation&quot;.</span></div>
<div class="line"><a name="l00067"></a><span class="lineno"> 67</span>&#160;<span class="comment">// This method uses a transient bitmask on all the elements, which</span></div>
<div class="line"><a name="l00068"></a><span class="lineno"> 68</span>&#160;<span class="comment">// should be entirely false before the call (and will be restored as such</span></div>
<div class="line"><a name="l00069"></a><span class="lineno"> 69</span>&#160;<span class="comment">// after it).</span></div>
<div class="line"><a name="l00070"></a><span class="lineno"> 70</span>&#160;<span class="comment">//</span></div>
<div class="line"><a name="l00071"></a><span class="lineno"> 71</span>&#160;<span class="comment">// TODO(user): Make this method support multi-elements (i.e. an element may</span></div>
<div class="line"><a name="l00072"></a><span class="lineno"> 72</span>&#160;<span class="comment">// be repeated in the list), and see if that&#39;s sufficient to make the whole</span></div>
<div class="line"><a name="l00073"></a><span class="lineno"> 73</span>&#160;<span class="comment">// graph symmetry finder support multi-arcs.</span></div>
<div class="line"><a name="l00074"></a><span class="lineno"> 74</span>&#160;<span class="keyword">template</span> &lt;<span class="keyword">class</span> List&gt;</div>
<div class="line"><a name="l00075"></a><span class="lineno"> 75</span>&#160;<span class="keywordtype">bool</span> ListMapsToList(<span class="keyword">const</span> List&amp; l1, <span class="keyword">const</span> List&amp; l2,</div>
<div class="line"><a name="l00076"></a><span class="lineno"> 76</span>&#160; <span class="keyword">const</span> DynamicPermutation&amp; permutation,</div>
<div class="line"><a name="l00077"></a><span class="lineno"> 77</span>&#160; std::vector&lt;bool&gt;* tmp_node_mask) {</div>
<div class="line"><a name="l00078"></a><span class="lineno"> 78</span>&#160; <span class="keywordtype">int</span> num_elements_delta = 0;</div>
<div class="line"><a name="l00079"></a><span class="lineno"> 79</span>&#160; <span class="keywordtype">bool</span> match = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00080"></a><span class="lineno"> 80</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> mapped_x : l2) {</div>
<div class="line"><a name="l00081"></a><span class="lineno"> 81</span>&#160; ++num_elements_delta;</div>
<div class="line"><a name="l00082"></a><span class="lineno"> 82</span>&#160; (*tmp_node_mask)[mapped_x] = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00083"></a><span class="lineno"> 83</span>&#160; }</div>
<div class="line"><a name="l00084"></a><span class="lineno"> 84</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> x : l1) {</div>
<div class="line"><a name="l00085"></a><span class="lineno"> 85</span>&#160; --num_elements_delta;</div>
<div class="line"><a name="l00086"></a><span class="lineno"> 86</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> mapped_x = permutation.ImageOf(x);</div>
<div class="line"><a name="l00087"></a><span class="lineno"> 87</span>&#160; <span class="keywordflow">if</span> (!(*tmp_node_mask)[mapped_x]) {</div>
<div class="line"><a name="l00088"></a><span class="lineno"> 88</span>&#160; match = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00089"></a><span class="lineno"> 89</span>&#160; <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00090"></a><span class="lineno"> 90</span>&#160; }</div>
<div class="line"><a name="l00091"></a><span class="lineno"> 91</span>&#160; (*tmp_node_mask)[mapped_x] = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00092"></a><span class="lineno"> 92</span>&#160; }</div>
<div class="line"><a name="l00093"></a><span class="lineno"> 93</span>&#160; <span class="keywordflow">if</span> (num_elements_delta != 0) match = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00094"></a><span class="lineno"> 94</span>&#160; <span class="keywordflow">if</span> (!match) {</div>
<div class="line"><a name="l00095"></a><span class="lineno"> 95</span>&#160; <span class="comment">// We need to clean up tmp_node_mask.</span></div>
<div class="line"><a name="l00096"></a><span class="lineno"> 96</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> x : l2) (*tmp_node_mask)[x] = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00097"></a><span class="lineno"> 97</span>&#160; }</div>
<div class="line"><a name="l00098"></a><span class="lineno"> 98</span>&#160; <span class="keywordflow">return</span> match;</div>
<div class="line"><a name="l00099"></a><span class="lineno"> 99</span>&#160;}</div>
<div class="line"><a name="l00100"></a><span class="lineno"> 100</span>&#160;} <span class="comment">// namespace</span></div>
<div class="line"><a name="l00101"></a><span class="lineno"> 101</span>&#160; </div>
<div class="line"><a name="l00102"></a><span class="lineno"><a class="line" href="classoperations__research_1_1_graph_symmetry_finder.html#af0ae1a4d86cfcf11128fe60ea0f8d20b"> 102</a></span>&#160;<a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#af0ae1a4d86cfcf11128fe60ea0f8d20b">GraphSymmetryFinder::GraphSymmetryFinder</a>(<span class="keyword">const</span> <a class="code" href="classutil_1_1_static_graph.html">Graph</a>&amp; graph, <span class="keywordtype">bool</span> is_undirected)</div>
<div class="line"><a name="l00103"></a><span class="lineno"> 103</span>&#160; : graph_(graph),</div>
<div class="line"><a name="l00104"></a><span class="lineno"> 104</span>&#160; tmp_dynamic_permutation_(NumNodes()),</div>
<div class="line"><a name="l00105"></a><span class="lineno"> 105</span>&#160; tmp_node_mask_(NumNodes(), false),</div>
<div class="line"><a name="l00106"></a><span class="lineno"> 106</span>&#160; tmp_degree_(NumNodes(), 0),</div>
<div class="line"><a name="l00107"></a><span class="lineno"> 107</span>&#160; tmp_nodes_with_degree_(NumNodes() + 1) {</div>
<div class="line"><a name="l00108"></a><span class="lineno"> 108</span>&#160; <span class="comment">// Set up an &quot;unlimited&quot; time limit by default.</span></div>
<div class="line"><a name="l00109"></a><span class="lineno"> 109</span>&#160; time_limit_ = &amp;dummy_time_limit_;</div>
<div class="line"><a name="l00110"></a><span class="lineno"> 110</span>&#160; tmp_partition_.<a class="code" href="classoperations__research_1_1_merging_partition.html#a50eca19efa71a0b70de25f9ad4a2a6f8">Reset</a>(NumNodes());</div>
<div class="line"><a name="l00111"></a><span class="lineno"> 111</span>&#160; <span class="keywordflow">if</span> (is_undirected) {</div>
<div class="line"><a name="l00112"></a><span class="lineno"> 112</span>&#160; <a class="code" href="base_2logging_8h.html#ae17f8119c108cf3070bad3449c7e0006">DCHECK</a>(<a class="code" href="namespaceutil.html#aa94a02ae5c14feb50676668f2de166dc">GraphIsSymmetric</a>(graph));</div>
<div class="line"><a name="l00113"></a><span class="lineno"> 113</span>&#160; } <span class="keywordflow">else</span> {</div>
<div class="line"><a name="l00114"></a><span class="lineno"> 114</span>&#160; <span class="comment">// Compute the reverse adjacency lists.</span></div>
<div class="line"><a name="l00115"></a><span class="lineno"> 115</span>&#160; <span class="comment">// First pass: compute the total in-degree of all nodes and put it in</span></div>
<div class="line"><a name="l00116"></a><span class="lineno"> 116</span>&#160; <span class="comment">// reverse_adj_list_index (shifted by two; see below why).</span></div>
<div class="line"><a name="l00117"></a><span class="lineno"> 117</span>&#160; reverse_adj_list_index_.assign(graph.<a class="code" href="classutil_1_1_base_graph.html#a6a2df5042167b234f6dc3aed4acfa6c9">num_nodes</a>() + <span class="comment">/*shift*/</span> 2, 0);</div>
<div class="line"><a name="l00118"></a><span class="lineno"> 118</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : graph.<a class="code" href="classutil_1_1_base_graph.html#a8a40f2c75615a26ba71e94dd7d42f481">AllNodes</a>()) {</div>
<div class="line"><a name="l00119"></a><span class="lineno"> 119</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> arc : graph.<a class="code" href="classutil_1_1_static_graph.html#ad7db584fc1fe14ce9296131fda625994">OutgoingArcs</a>(node)) {</div>
<div class="line"><a name="l00120"></a><span class="lineno"> 120</span>&#160; ++reverse_adj_list_index_[graph.<a class="code" href="classutil_1_1_static_graph.html#aceb0938bcb2e8e5f37986d4cf8e3a955">Head</a>(arc) + <span class="comment">/*shift*/</span> 2];</div>
<div class="line"><a name="l00121"></a><span class="lineno"> 121</span>&#160; }</div>
<div class="line"><a name="l00122"></a><span class="lineno"> 122</span>&#160; }</div>
<div class="line"><a name="l00123"></a><span class="lineno"> 123</span>&#160; <span class="comment">// Second pass: apply a cumulative sum over reverse_adj_list_index.</span></div>
<div class="line"><a name="l00124"></a><span class="lineno"> 124</span>&#160; <span class="comment">// After that, reverse_adj_list contains:</span></div>
<div class="line"><a name="l00125"></a><span class="lineno"> 125</span>&#160; <span class="comment">// [0, 0, in_degree(node0), in_degree(node0) + in_degree(node1), ...]</span></div>
<div class="line"><a name="l00126"></a><span class="lineno"> 126</span>&#160; std::partial_sum(reverse_adj_list_index_.begin() + <span class="comment">/*shift*/</span> 2,</div>
<div class="line"><a name="l00127"></a><span class="lineno"> 127</span>&#160; reverse_adj_list_index_.end(),</div>
<div class="line"><a name="l00128"></a><span class="lineno"> 128</span>&#160; reverse_adj_list_index_.begin() + <span class="comment">/*shift*/</span> 2);</div>
<div class="line"><a name="l00129"></a><span class="lineno"> 129</span>&#160; <span class="comment">// Third pass: populate &quot;flattened_reverse_adj_lists&quot;, using</span></div>
<div class="line"><a name="l00130"></a><span class="lineno"> 130</span>&#160; <span class="comment">// reverse_adj_list_index[i] as a dynamic pointer to the yet-unpopulated</span></div>
<div class="line"><a name="l00131"></a><span class="lineno"> 131</span>&#160; <span class="comment">// area of the reverse adjacency list of node #i.</span></div>
<div class="line"><a name="l00132"></a><span class="lineno"> 132</span>&#160; flattened_reverse_adj_lists_.assign(graph.<a class="code" href="classutil_1_1_base_graph.html#a4d3fc55a2fe209a908470199437cec9a">num_arcs</a>(), -1);</div>
<div class="line"><a name="l00133"></a><span class="lineno"> 133</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : graph.<a class="code" href="classutil_1_1_base_graph.html#a8a40f2c75615a26ba71e94dd7d42f481">AllNodes</a>()) {</div>
<div class="line"><a name="l00134"></a><span class="lineno"> 134</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> arc : graph.<a class="code" href="classutil_1_1_static_graph.html#ad7db584fc1fe14ce9296131fda625994">OutgoingArcs</a>(node)) {</div>
<div class="line"><a name="l00135"></a><span class="lineno"> 135</span>&#160; flattened_reverse_adj_lists_[reverse_adj_list_index_[graph.<a class="code" href="classutil_1_1_static_graph.html#aceb0938bcb2e8e5f37986d4cf8e3a955">Head</a>(arc) +</div>
<div class="line"><a name="l00136"></a><span class="lineno"> 136</span>&#160; <span class="comment">/*shift*/</span> 1]++] =</div>
<div class="line"><a name="l00137"></a><span class="lineno"> 137</span>&#160; node;</div>
<div class="line"><a name="l00138"></a><span class="lineno"> 138</span>&#160; }</div>
<div class="line"><a name="l00139"></a><span class="lineno"> 139</span>&#160; }</div>
<div class="line"><a name="l00140"></a><span class="lineno"> 140</span>&#160; <span class="comment">// The last pass shifted reverse_adj_list_index, so it&#39;s now as we want it:</span></div>
<div class="line"><a name="l00141"></a><span class="lineno"> 141</span>&#160; <span class="comment">// [0, in_degree(node0), in_degree(node0) + in_degree(node1), ...]</span></div>
<div class="line"><a name="l00142"></a><span class="lineno"> 142</span>&#160; <span class="keywordflow">if</span> (<a class="code" href="macros_8h.html#a7f536a3b33f9bed8f75734e035d30725">DEBUG_MODE</a>) {</div>
<div class="line"><a name="l00143"></a><span class="lineno"> 143</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(graph.<a class="code" href="classutil_1_1_base_graph.html#a4d3fc55a2fe209a908470199437cec9a">num_arcs</a>(), reverse_adj_list_index_[graph.<a class="code" href="classutil_1_1_base_graph.html#a6a2df5042167b234f6dc3aed4acfa6c9">num_nodes</a>()]);</div>
<div class="line"><a name="l00144"></a><span class="lineno"> 144</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> i : flattened_reverse_adj_lists_) <a class="code" href="base_2logging_8h.html#a46e69120fbd3b36e6960e096d23b66f0">DCHECK_NE</a>(i, -1);</div>
<div class="line"><a name="l00145"></a><span class="lineno"> 145</span>&#160; }</div>
<div class="line"><a name="l00146"></a><span class="lineno"> 146</span>&#160; }</div>
<div class="line"><a name="l00147"></a><span class="lineno"> 147</span>&#160;}</div>
<div class="line"><a name="l00148"></a><span class="lineno"> 148</span>&#160; </div>
<div class="line"><a name="l00149"></a><span class="lineno"><a class="line" href="classoperations__research_1_1_graph_symmetry_finder.html#a998043f7ad1e35dc5f6cb23e18f6e7dd"> 149</a></span>&#160;<span class="keywordtype">bool</span> <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#a998043f7ad1e35dc5f6cb23e18f6e7dd">GraphSymmetryFinder::IsGraphAutomorphism</a>(</div>
<div class="line"><a name="l00150"></a><span class="lineno"> 150</span>&#160; <span class="keyword">const</span> <a class="code" href="classoperations__research_1_1_dynamic_permutation.html">DynamicPermutation</a>&amp; permutation)<span class="keyword"> const </span>{</div>
<div class="line"><a name="l00151"></a><span class="lineno"> 151</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> base : permutation.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#ac2e0aa1143397953759c0726ec2a865f">AllMappingsSrc</a>()) {</div>
<div class="line"><a name="l00152"></a><span class="lineno"> 152</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> image = permutation.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#a1976819faa164a8d10a66200dc2c3a96">ImageOf</a>(base);</div>
<div class="line"><a name="l00153"></a><span class="lineno"> 153</span>&#160; <span class="keywordflow">if</span> (image == base) <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00154"></a><span class="lineno"> 154</span>&#160; <span class="keywordflow">if</span> (!ListMapsToList(graph_[base], graph_[image], permutation,</div>
<div class="line"><a name="l00155"></a><span class="lineno"> 155</span>&#160; &amp;tmp_node_mask_)) {</div>
<div class="line"><a name="l00156"></a><span class="lineno"> 156</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l00157"></a><span class="lineno"> 157</span>&#160; }</div>
<div class="line"><a name="l00158"></a><span class="lineno"> 158</span>&#160; }</div>
<div class="line"><a name="l00159"></a><span class="lineno"> 159</span>&#160; <span class="keywordflow">if</span> (!reverse_adj_list_index_.empty()) {</div>
<div class="line"><a name="l00160"></a><span class="lineno"> 160</span>&#160; <span class="comment">// The graph was not symmetric: we must also check the incoming arcs</span></div>
<div class="line"><a name="l00161"></a><span class="lineno"> 161</span>&#160; <span class="comment">// to displaced nodes.</span></div>
<div class="line"><a name="l00162"></a><span class="lineno"> 162</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> base : permutation.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#ac2e0aa1143397953759c0726ec2a865f">AllMappingsSrc</a>()) {</div>
<div class="line"><a name="l00163"></a><span class="lineno"> 163</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> image = permutation.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#a1976819faa164a8d10a66200dc2c3a96">ImageOf</a>(base);</div>
<div class="line"><a name="l00164"></a><span class="lineno"> 164</span>&#160; <span class="keywordflow">if</span> (image == base) <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00165"></a><span class="lineno"> 165</span>&#160; <span class="keywordflow">if</span> (!ListMapsToList(TailsOfIncomingArcsTo(base),</div>
<div class="line"><a name="l00166"></a><span class="lineno"> 166</span>&#160; TailsOfIncomingArcsTo(image), permutation,</div>
<div class="line"><a name="l00167"></a><span class="lineno"> 167</span>&#160; &amp;tmp_node_mask_)) {</div>
<div class="line"><a name="l00168"></a><span class="lineno"> 168</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l00169"></a><span class="lineno"> 169</span>&#160; }</div>
<div class="line"><a name="l00170"></a><span class="lineno"> 170</span>&#160; }</div>
<div class="line"><a name="l00171"></a><span class="lineno"> 171</span>&#160; }</div>
<div class="line"><a name="l00172"></a><span class="lineno"> 172</span>&#160; <span class="keywordflow">return</span> <span class="keyword">true</span>;</div>
<div class="line"><a name="l00173"></a><span class="lineno"> 173</span>&#160;}</div>
<div class="line"><a name="l00174"></a><span class="lineno"> 174</span>&#160; </div>
<div class="line"><a name="l00175"></a><span class="lineno"> 175</span>&#160;<span class="keyword">namespace </span>{</div>
<div class="line"><a name="l00176"></a><span class="lineno"> 176</span>&#160;<span class="comment">// Specialized subroutine, to avoid code duplication: see its call site</span></div>
<div class="line"><a name="l00177"></a><span class="lineno"> 177</span>&#160;<span class="comment">// and its self-explanatory code.</span></div>
<div class="line"><a name="l00178"></a><span class="lineno"> 178</span>&#160;<span class="keyword">template</span> &lt;<span class="keyword">class</span> T&gt;</div>
<div class="line"><a name="l00179"></a><span class="lineno"> 179</span>&#160;<span class="keyword">inline</span> <span class="keywordtype">void</span> IncrementCounterForNonSingletons(<span class="keyword">const</span> T&amp; <a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>,</div>
<div class="line"><a name="l00180"></a><span class="lineno"> 180</span>&#160; <span class="keyword">const</span> <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a>&amp; partition,</div>
<div class="line"><a name="l00181"></a><span class="lineno"> 181</span>&#160; std::vector&lt;int&gt;* node_count,</div>
<div class="line"><a name="l00182"></a><span class="lineno"> 182</span>&#160; std::vector&lt;int&gt;* nodes_seen,</div>
<div class="line"><a name="l00183"></a><span class="lineno"> 183</span>&#160; int64_t* num_operations) {</div>
<div class="line"><a name="l00184"></a><span class="lineno"> 184</span>&#160; *num_operations += <a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>.end() - <a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>.begin();</div>
<div class="line"><a name="l00185"></a><span class="lineno"> 185</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : <a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>) {</div>
<div class="line"><a name="l00186"></a><span class="lineno"> 186</span>&#160; <span class="keywordflow">if</span> (partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a897ee69dceefdd60a6a4e90ab8b18a25">ElementsInSamePartAs</a>(node).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#af9593d4a5ff4274efaf429cb4f9e57cc">size</a>() == 1) <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00187"></a><span class="lineno"> 187</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> count = ++(*node_count)[node];</div>
<div class="line"><a name="l00188"></a><span class="lineno"> 188</span>&#160; <span class="keywordflow">if</span> (count == 1) nodes_seen-&gt;push_back(node);</div>
<div class="line"><a name="l00189"></a><span class="lineno"> 189</span>&#160; }</div>
<div class="line"><a name="l00190"></a><span class="lineno"> 190</span>&#160;}</div>
<div class="line"><a name="l00191"></a><span class="lineno"> 191</span>&#160;} <span class="comment">// namespace</span></div>
<div class="line"><a name="l00192"></a><span class="lineno"> 192</span>&#160; </div>
<div class="line"><a name="l00193"></a><span class="lineno"><a class="line" href="classoperations__research_1_1_graph_symmetry_finder.html#a651a63b1943d8b8fa2346df1d1a2f55c"> 193</a></span>&#160;<span class="keywordtype">void</span> <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#a651a63b1943d8b8fa2346df1d1a2f55c">GraphSymmetryFinder::RecursivelyRefinePartitionByAdjacency</a>(</div>
<div class="line"><a name="l00194"></a><span class="lineno"> 194</span>&#160; <span class="keywordtype">int</span> first_unrefined_part_index, <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a>* partition) {</div>
<div class="line"><a name="l00195"></a><span class="lineno"> 195</span>&#160; <span class="comment">// Rename, for readability of the code below.</span></div>
<div class="line"><a name="l00196"></a><span class="lineno"> 196</span>&#160; std::vector&lt;int&gt;&amp; tmp_nodes_with_nonzero_degree = tmp_stack_;</div>
<div class="line"><a name="l00197"></a><span class="lineno"> 197</span>&#160; </div>
<div class="line"><a name="l00198"></a><span class="lineno"> 198</span>&#160; <span class="comment">// This function is the main bottleneck of the whole algorithm. We count the</span></div>
<div class="line"><a name="l00199"></a><span class="lineno"> 199</span>&#160; <span class="comment">// number of blocks in the inner-most loops in num_operations. At the end we</span></div>
<div class="line"><a name="l00200"></a><span class="lineno"> 200</span>&#160; <span class="comment">// will multiply it by a factor to have some deterministic time that we will</span></div>
<div class="line"><a name="l00201"></a><span class="lineno"> 201</span>&#160; <span class="comment">// append to the deterministic time counter.</span></div>
<div class="line"><a name="l00202"></a><span class="lineno"> 202</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00203"></a><span class="lineno"> 203</span>&#160; <span class="comment">// TODO(user): We are really imprecise in our counting, but it is fine. We</span></div>
<div class="line"><a name="l00204"></a><span class="lineno"> 204</span>&#160; <span class="comment">// just need a way to enforce a deterministic limit on the computation effort.</span></div>
<div class="line"><a name="l00205"></a><span class="lineno"> 205</span>&#160; int64_t num_operations = 0;</div>
<div class="line"><a name="l00206"></a><span class="lineno"> 206</span>&#160; </div>
<div class="line"><a name="l00207"></a><span class="lineno"> 207</span>&#160; <span class="comment">// Assuming that the partition was refined based on the adjacency on</span></div>
<div class="line"><a name="l00208"></a><span class="lineno"> 208</span>&#160; <span class="comment">// parts [0 .. first_unrefined_part_index) already, we simply need to</span></div>
<div class="line"><a name="l00209"></a><span class="lineno"> 209</span>&#160; <span class="comment">// refine parts first_unrefined_part_index ... NumParts()-1, the latter bound</span></div>
<div class="line"><a name="l00210"></a><span class="lineno"> 210</span>&#160; <span class="comment">// being a moving target:</span></div>
<div class="line"><a name="l00211"></a><span class="lineno"> 211</span>&#160; <span class="comment">// When a part #p &lt; first_unrefined_part_index gets modified, it&#39;s always</span></div>
<div class="line"><a name="l00212"></a><span class="lineno"> 212</span>&#160; <span class="comment">// split in two: itself, and a new part #p&#39;. Since #p was already refined</span></div>
<div class="line"><a name="l00213"></a><span class="lineno"> 213</span>&#160; <span class="comment">// on, we only need to further refine on *one* of its two split parts.</span></div>
<div class="line"><a name="l00214"></a><span class="lineno"> 214</span>&#160; <span class="comment">// And this will be done because p&#39; &gt; first_unrefined_part_index.</span></div>
<div class="line"><a name="l00215"></a><span class="lineno"> 215</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00216"></a><span class="lineno"> 216</span>&#160; <span class="comment">// Thus, the following loop really does the full recursive refinement as</span></div>
<div class="line"><a name="l00217"></a><span class="lineno"> 217</span>&#160; <span class="comment">// advertised.</span></div>
<div class="line"><a name="l00218"></a><span class="lineno"> 218</span>&#160; std::vector&lt;bool&gt; adjacency_directions(1, <span class="comment">/*outgoing*/</span> <span class="keyword">true</span>);</div>
<div class="line"><a name="l00219"></a><span class="lineno"> 219</span>&#160; <span class="keywordflow">if</span> (!reverse_adj_list_index_.empty()) {</div>
<div class="line"><a name="l00220"></a><span class="lineno"> 220</span>&#160; adjacency_directions.push_back(<span class="keyword">false</span>); <span class="comment">// Also look at incoming arcs.</span></div>
<div class="line"><a name="l00221"></a><span class="lineno"> 221</span>&#160; }</div>
<div class="line"><a name="l00222"></a><span class="lineno"> 222</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> part_index = first_unrefined_part_index;</div>
<div class="line"><a name="l00223"></a><span class="lineno"> 223</span>&#160; part_index &lt; partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ae91b7d9b6c4f0675b9ad3f38e5761853">NumParts</a>(); <span class="comment">// Moving target!</span></div>
<div class="line"><a name="l00224"></a><span class="lineno"> 224</span>&#160; ++part_index) {</div>
<div class="line"><a name="l00225"></a><span class="lineno"> 225</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">bool</span> outgoing_adjacency : adjacency_directions) {</div>
<div class="line"><a name="l00226"></a><span class="lineno"> 226</span>&#160; <span class="comment">// Count the aggregated degree of all nodes, only looking at arcs that</span></div>
<div class="line"><a name="l00227"></a><span class="lineno"> 227</span>&#160; <span class="comment">// come from/to the current part.</span></div>
<div class="line"><a name="l00228"></a><span class="lineno"> 228</span>&#160; <span class="keywordflow">if</span> (outgoing_adjacency) {</div>
<div class="line"><a name="l00229"></a><span class="lineno"> 229</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index)) {</div>
<div class="line"><a name="l00230"></a><span class="lineno"> 230</span>&#160; IncrementCounterForNonSingletons(</div>
<div class="line"><a name="l00231"></a><span class="lineno"> 231</span>&#160; graph_[node], *partition, &amp;tmp_degree_,</div>
<div class="line"><a name="l00232"></a><span class="lineno"> 232</span>&#160; &amp;tmp_nodes_with_nonzero_degree, &amp;num_operations);</div>
<div class="line"><a name="l00233"></a><span class="lineno"> 233</span>&#160; }</div>
<div class="line"><a name="l00234"></a><span class="lineno"> 234</span>&#160; } <span class="keywordflow">else</span> {</div>
<div class="line"><a name="l00235"></a><span class="lineno"> 235</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index)) {</div>
<div class="line"><a name="l00236"></a><span class="lineno"> 236</span>&#160; IncrementCounterForNonSingletons(</div>
<div class="line"><a name="l00237"></a><span class="lineno"> 237</span>&#160; TailsOfIncomingArcsTo(node), *partition, &amp;tmp_degree_,</div>
<div class="line"><a name="l00238"></a><span class="lineno"> 238</span>&#160; &amp;tmp_nodes_with_nonzero_degree, &amp;num_operations);</div>
<div class="line"><a name="l00239"></a><span class="lineno"> 239</span>&#160; }</div>
<div class="line"><a name="l00240"></a><span class="lineno"> 240</span>&#160; }</div>
<div class="line"><a name="l00241"></a><span class="lineno"> 241</span>&#160; <span class="comment">// Group the nodes by (nonzero) degree. Remember the maximum degree.</span></div>
<div class="line"><a name="l00242"></a><span class="lineno"> 242</span>&#160; <span class="keywordtype">int</span> max_degree = 0;</div>
<div class="line"><a name="l00243"></a><span class="lineno"> 243</span>&#160; num_operations += 3 + tmp_nodes_with_nonzero_degree.size();</div>
<div class="line"><a name="l00244"></a><span class="lineno"> 244</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : tmp_nodes_with_nonzero_degree) {</div>
<div class="line"><a name="l00245"></a><span class="lineno"> 245</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> degree = tmp_degree_[node];</div>
<div class="line"><a name="l00246"></a><span class="lineno"> 246</span>&#160; tmp_degree_[node] = 0; <span class="comment">// To clean up after us.</span></div>
<div class="line"><a name="l00247"></a><span class="lineno"> 247</span>&#160; max_degree = <a class="code" href="alldiff__cst_8cc.html#a26e6db9bcc64b584051ecc28171ed11f">std::max</a>(max_degree, degree);</div>
<div class="line"><a name="l00248"></a><span class="lineno"> 248</span>&#160; tmp_nodes_with_degree_[degree].push_back(node);</div>
<div class="line"><a name="l00249"></a><span class="lineno"> 249</span>&#160; }</div>
<div class="line"><a name="l00250"></a><span class="lineno"> 250</span>&#160; tmp_nodes_with_nonzero_degree.clear(); <span class="comment">// To clean up after us.</span></div>
<div class="line"><a name="l00251"></a><span class="lineno"> 251</span>&#160; <span class="comment">// For each degree, refine the partition by the set of nodes with that</span></div>
<div class="line"><a name="l00252"></a><span class="lineno"> 252</span>&#160; <span class="comment">// degree.</span></div>
<div class="line"><a name="l00253"></a><span class="lineno"> 253</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> degree = 1; degree &lt;= max_degree; ++degree) {</div>
<div class="line"><a name="l00254"></a><span class="lineno"> 254</span>&#160; <span class="comment">// We use a manually tuned factor 3 because Refine() does quite a bit of</span></div>
<div class="line"><a name="l00255"></a><span class="lineno"> 255</span>&#160; <span class="comment">// operations for each node in its argument.</span></div>
<div class="line"><a name="l00256"></a><span class="lineno"> 256</span>&#160; num_operations += 1 + 3 * tmp_nodes_with_degree_[degree].size();</div>
<div class="line"><a name="l00257"></a><span class="lineno"> 257</span>&#160; partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a32f3aa9643111b05108d1120e48c1e13">Refine</a>(tmp_nodes_with_degree_[degree]);</div>
<div class="line"><a name="l00258"></a><span class="lineno"> 258</span>&#160; tmp_nodes_with_degree_[degree].clear(); <span class="comment">// To clean up after us.</span></div>
<div class="line"><a name="l00259"></a><span class="lineno"> 259</span>&#160; }</div>
<div class="line"><a name="l00260"></a><span class="lineno"> 260</span>&#160; }</div>
<div class="line"><a name="l00261"></a><span class="lineno"> 261</span>&#160; }</div>
<div class="line"><a name="l00262"></a><span class="lineno"> 262</span>&#160; </div>
<div class="line"><a name="l00263"></a><span class="lineno"> 263</span>&#160; <span class="comment">// The coefficient was manually tuned (only on a few instances) so that the</span></div>
<div class="line"><a name="l00264"></a><span class="lineno"> 264</span>&#160; <span class="comment">// time is roughly correlated with seconds on a fast desktop computer from</span></div>
<div class="line"><a name="l00265"></a><span class="lineno"> 265</span>&#160; <span class="comment">// 2020.</span></div>
<div class="line"><a name="l00266"></a><span class="lineno"> 266</span>&#160; time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#af90cfd1fc238433fc303ee28c5914eb9">AdvanceDeterministicTime</a>(1e-8 *</div>
<div class="line"><a name="l00267"></a><span class="lineno"> 267</span>&#160; <span class="keyword">static_cast&lt;</span><span class="keywordtype">double</span><span class="keyword">&gt;</span>(num_operations));</div>
<div class="line"><a name="l00268"></a><span class="lineno"> 268</span>&#160;}</div>
<div class="line"><a name="l00269"></a><span class="lineno"> 269</span>&#160; </div>
<div class="line"><a name="l00270"></a><span class="lineno"><a class="line" href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a"> 270</a></span>&#160;<span class="keywordtype">void</span> <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a">GraphSymmetryFinder::DistinguishNodeInPartition</a>(</div>
<div class="line"><a name="l00271"></a><span class="lineno"> 271</span>&#160; <span class="keywordtype">int</span> node, <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a>* partition, std::vector&lt;int&gt;* new_singletons) {</div>
<div class="line"><a name="l00272"></a><span class="lineno"> 272</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> original_num_parts = partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ae91b7d9b6c4f0675b9ad3f38e5761853">NumParts</a>();</div>
<div class="line"><a name="l00273"></a><span class="lineno"> 273</span>&#160; partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a32f3aa9643111b05108d1120e48c1e13">Refine</a>(std::vector&lt;int&gt;(1, node));</div>
<div class="line"><a name="l00274"></a><span class="lineno"> 274</span>&#160; <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#a651a63b1943d8b8fa2346df1d1a2f55c">RecursivelyRefinePartitionByAdjacency</a>(partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ab22d95d31ef6edfd5a6770ff6d8c4f04">PartOf</a>(node), partition);</div>
<div class="line"><a name="l00275"></a><span class="lineno"> 275</span>&#160; </div>
<div class="line"><a name="l00276"></a><span class="lineno"> 276</span>&#160; <span class="comment">// Explore the newly refined parts to gather all the new singletons.</span></div>
<div class="line"><a name="l00277"></a><span class="lineno"> 277</span>&#160; <span class="keywordflow">if</span> (new_singletons != <span class="keyword">nullptr</span>) {</div>
<div class="line"><a name="l00278"></a><span class="lineno"> 278</span>&#160; new_singletons-&gt;clear();</div>
<div class="line"><a name="l00279"></a><span class="lineno"> 279</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> p = original_num_parts; p &lt; partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ae91b7d9b6c4f0675b9ad3f38e5761853">NumParts</a>(); ++p) {</div>
<div class="line"><a name="l00280"></a><span class="lineno"> 280</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> parent = partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ab8257c32911b0b991bec1af210d993be">ParentOfPart</a>(p);</div>
<div class="line"><a name="l00281"></a><span class="lineno"> 281</span>&#160; <span class="comment">// We may see the same singleton parent several times, so we guard them</span></div>
<div class="line"><a name="l00282"></a><span class="lineno"> 282</span>&#160; <span class="comment">// with the tmp_node_mask_ boolean vector.</span></div>
<div class="line"><a name="l00283"></a><span class="lineno"> 283</span>&#160; <span class="keywordflow">if</span> (!tmp_node_mask_[parent] &amp;&amp; parent &lt; original_num_parts &amp;&amp;</div>
<div class="line"><a name="l00284"></a><span class="lineno"> 284</span>&#160; partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5634a596b0aa63843c28e8ed69e653ca">SizeOfPart</a>(parent) == 1) {</div>
<div class="line"><a name="l00285"></a><span class="lineno"> 285</span>&#160; tmp_node_mask_[parent] = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00286"></a><span class="lineno"> 286</span>&#160; new_singletons-&gt;push_back(*partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(parent).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">begin</a>());</div>
<div class="line"><a name="l00287"></a><span class="lineno"> 287</span>&#160; }</div>
<div class="line"><a name="l00288"></a><span class="lineno"> 288</span>&#160; <span class="keywordflow">if</span> (partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5634a596b0aa63843c28e8ed69e653ca">SizeOfPart</a>(p) == 1) {</div>
<div class="line"><a name="l00289"></a><span class="lineno"> 289</span>&#160; new_singletons-&gt;push_back(*partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(p).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">begin</a>());</div>
<div class="line"><a name="l00290"></a><span class="lineno"> 290</span>&#160; }</div>
<div class="line"><a name="l00291"></a><span class="lineno"> 291</span>&#160; }</div>
<div class="line"><a name="l00292"></a><span class="lineno"> 292</span>&#160; <span class="comment">// Reset tmp_node_mask_.</span></div>
<div class="line"><a name="l00293"></a><span class="lineno"> 293</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> p = original_num_parts; p &lt; partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ae91b7d9b6c4f0675b9ad3f38e5761853">NumParts</a>(); ++p) {</div>
<div class="line"><a name="l00294"></a><span class="lineno"> 294</span>&#160; tmp_node_mask_[partition-&gt;<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ab8257c32911b0b991bec1af210d993be">ParentOfPart</a>(p)] = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00295"></a><span class="lineno"> 295</span>&#160; }</div>
<div class="line"><a name="l00296"></a><span class="lineno"> 296</span>&#160; }</div>
<div class="line"><a name="l00297"></a><span class="lineno"> 297</span>&#160;}</div>
<div class="line"><a name="l00298"></a><span class="lineno"> 298</span>&#160; </div>
<div class="line"><a name="l00299"></a><span class="lineno"> 299</span>&#160;<span class="keyword">namespace </span>{</div>
<div class="line"><a name="l00300"></a><span class="lineno"> 300</span>&#160;<span class="keywordtype">void</span> MergeNodeEquivalenceClassesAccordingToPermutation(</div>
<div class="line"><a name="l00301"></a><span class="lineno"> 301</span>&#160; <span class="keyword">const</span> <a class="code" href="classoperations__research_1_1_sparse_permutation.html">SparsePermutation</a>&amp; perm, <a class="code" href="classoperations__research_1_1_merging_partition.html">MergingPartition</a>* node_equivalence_classes,</div>
<div class="line"><a name="l00302"></a><span class="lineno"> 302</span>&#160; <a class="code" href="classoperations__research_1_1_dense_doubly_linked_list.html">DenseDoublyLinkedList</a>* sorted_representatives) {</div>
<div class="line"><a name="l00303"></a><span class="lineno"> 303</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> c = 0; c &lt; perm.<a class="code" href="classoperations__research_1_1_sparse_permutation.html#a8c5fc5af6e649a82d169f61e4dab5e33">NumCycles</a>(); ++c) {</div>
<div class="line"><a name="l00304"></a><span class="lineno"> 304</span>&#160; <span class="comment">// TODO(user): use the global element-&gt;image iterator when it exists.</span></div>
<div class="line"><a name="l00305"></a><span class="lineno"> 305</span>&#160; <span class="keywordtype">int</span> prev = -1;</div>
<div class="line"><a name="l00306"></a><span class="lineno"> 306</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> e : perm.<a class="code" href="classoperations__research_1_1_sparse_permutation.html#af567b4e287e268eb9ecee908f63e5b64">Cycle</a>(c)) {</div>
<div class="line"><a name="l00307"></a><span class="lineno"> 307</span>&#160; <span class="keywordflow">if</span> (prev &gt;= 0) {</div>
<div class="line"><a name="l00308"></a><span class="lineno"> 308</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> removed_representative =</div>
<div class="line"><a name="l00309"></a><span class="lineno"> 309</span>&#160; node_equivalence_classes-&gt;<a class="code" href="classoperations__research_1_1_merging_partition.html#a612bd8d97219124a8d6fbac721bcdbc6">MergePartsOf</a>(prev, e);</div>
<div class="line"><a name="l00310"></a><span class="lineno"> 310</span>&#160; <span class="keywordflow">if</span> (sorted_representatives != <span class="keyword">nullptr</span> &amp;&amp; removed_representative != -1) {</div>
<div class="line"><a name="l00311"></a><span class="lineno"> 311</span>&#160; sorted_representatives-&gt;<a class="code" href="classoperations__research_1_1_dense_doubly_linked_list.html#a209f8799ca534e48c873a6613131d358">Remove</a>(removed_representative);</div>
<div class="line"><a name="l00312"></a><span class="lineno"> 312</span>&#160; }</div>
<div class="line"><a name="l00313"></a><span class="lineno"> 313</span>&#160; }</div>
<div class="line"><a name="l00314"></a><span class="lineno"> 314</span>&#160; prev = e;</div>
<div class="line"><a name="l00315"></a><span class="lineno"> 315</span>&#160; }</div>
<div class="line"><a name="l00316"></a><span class="lineno"> 316</span>&#160; }</div>
<div class="line"><a name="l00317"></a><span class="lineno"> 317</span>&#160;}</div>
<div class="line"><a name="l00318"></a><span class="lineno"> 318</span>&#160; </div>
<div class="line"><a name="l00319"></a><span class="lineno"> 319</span>&#160;<span class="comment">// Subroutine used by FindSymmetries(); see its call site. This finds and</span></div>
<div class="line"><a name="l00320"></a><span class="lineno"> 320</span>&#160;<span class="comment">// outputs (in &quot;pruned_other_nodes&quot;) the list of all representatives (under</span></div>
<div class="line"><a name="l00321"></a><span class="lineno"> 321</span>&#160;<span class="comment">// &quot;node_equivalence_classes&quot;) that are in the same part as</span></div>
<div class="line"><a name="l00322"></a><span class="lineno"> 322</span>&#160;<span class="comment">// &quot;representative_node&quot; in &quot;partition&quot;; other than &quot;representative_node&quot;</span></div>
<div class="line"><a name="l00323"></a><span class="lineno"> 323</span>&#160;<span class="comment">// itself.</span></div>
<div class="line"><a name="l00324"></a><span class="lineno"> 324</span>&#160;<span class="comment">// &quot;node_equivalence_classes&quot; must be compatible with &quot;partition&quot;, i.e. two</span></div>
<div class="line"><a name="l00325"></a><span class="lineno"> 325</span>&#160;<span class="comment">// nodes that are in the same equivalence class must also be in the same part.</span></div>
<div class="line"><a name="l00326"></a><span class="lineno"> 326</span>&#160;<span class="comment">//</span></div>
<div class="line"><a name="l00327"></a><span class="lineno"> 327</span>&#160;<span class="comment">// To do this in O(output size), we also need the</span></div>
<div class="line"><a name="l00328"></a><span class="lineno"> 328</span>&#160;<span class="comment">// &quot;representatives_sorted_by_index_in_partition&quot; data structure: the</span></div>
<div class="line"><a name="l00329"></a><span class="lineno"> 329</span>&#160;<span class="comment">// representatives of the nodes of the targeted part are contiguous in that</span></div>
<div class="line"><a name="l00330"></a><span class="lineno"> 330</span>&#160;<span class="comment">// linked list.</span></div>
<div class="line"><a name="l00331"></a><span class="lineno"> 331</span>&#160;<span class="keywordtype">void</span> GetAllOtherRepresentativesInSamePartAs(</div>
<div class="line"><a name="l00332"></a><span class="lineno"> 332</span>&#160; <span class="keywordtype">int</span> representative_node, <span class="keyword">const</span> DynamicPartition&amp; partition,</div>
<div class="line"><a name="l00333"></a><span class="lineno"> 333</span>&#160; <span class="keyword">const</span> DenseDoublyLinkedList&amp; representatives_sorted_by_index_in_partition,</div>
<div class="line"><a name="l00334"></a><span class="lineno"> 334</span>&#160; MergingPartition* node_equivalence_classes, <span class="comment">// Only for debugging.</span></div>
<div class="line"><a name="l00335"></a><span class="lineno"> 335</span>&#160; std::vector&lt;int&gt;* pruned_other_nodes) {</div>
<div class="line"><a name="l00336"></a><span class="lineno"> 336</span>&#160; pruned_other_nodes-&gt;clear();</div>
<div class="line"><a name="l00337"></a><span class="lineno"> 337</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> part_index = partition.PartOf(representative_node);</div>
<div class="line"><a name="l00338"></a><span class="lineno"> 338</span>&#160; <span class="comment">// Iterate on all contiguous representatives after the initial one...</span></div>
<div class="line"><a name="l00339"></a><span class="lineno"> 339</span>&#160; <span class="keywordtype">int</span> repr = representative_node;</div>
<div class="line"><a name="l00340"></a><span class="lineno"> 340</span>&#160; <span class="keywordflow">while</span> (<span class="keyword">true</span>) {</div>
<div class="line"><a name="l00341"></a><span class="lineno"> 341</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(repr, node_equivalence_classes-&gt;GetRoot(repr));</div>
<div class="line"><a name="l00342"></a><span class="lineno"> 342</span>&#160; repr = representatives_sorted_by_index_in_partition.Prev(repr);</div>
<div class="line"><a name="l00343"></a><span class="lineno"> 343</span>&#160; <span class="keywordflow">if</span> (repr &lt; 0 || partition.PartOf(repr) != part_index) <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00344"></a><span class="lineno"> 344</span>&#160; pruned_other_nodes-&gt;push_back(repr);</div>
<div class="line"><a name="l00345"></a><span class="lineno"> 345</span>&#160; }</div>
<div class="line"><a name="l00346"></a><span class="lineno"> 346</span>&#160; <span class="comment">// ... and then on all contiguous representatives *before* it.</span></div>
<div class="line"><a name="l00347"></a><span class="lineno"> 347</span>&#160; repr = representative_node;</div>
<div class="line"><a name="l00348"></a><span class="lineno"> 348</span>&#160; <span class="keywordflow">while</span> (<span class="keyword">true</span>) {</div>
<div class="line"><a name="l00349"></a><span class="lineno"> 349</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(repr, node_equivalence_classes-&gt;GetRoot(repr));</div>
<div class="line"><a name="l00350"></a><span class="lineno"> 350</span>&#160; repr = representatives_sorted_by_index_in_partition.Next(repr);</div>
<div class="line"><a name="l00351"></a><span class="lineno"> 351</span>&#160; <span class="keywordflow">if</span> (repr &lt; 0 || partition.PartOf(repr) != part_index) <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00352"></a><span class="lineno"> 352</span>&#160; pruned_other_nodes-&gt;push_back(repr);</div>
<div class="line"><a name="l00353"></a><span class="lineno"> 353</span>&#160; }</div>
<div class="line"><a name="l00354"></a><span class="lineno"> 354</span>&#160; </div>
<div class="line"><a name="l00355"></a><span class="lineno"> 355</span>&#160; <span class="comment">// This code is a bit tricky, so we check that we&#39;re doing it right, by</span></div>
<div class="line"><a name="l00356"></a><span class="lineno"> 356</span>&#160; <span class="comment">// comparing its output to the brute-force, O(Part size) version.</span></div>
<div class="line"><a name="l00357"></a><span class="lineno"> 357</span>&#160; <span class="comment">// This also (partly) verifies that</span></div>
<div class="line"><a name="l00358"></a><span class="lineno"> 358</span>&#160; <span class="comment">// &quot;representatives_sorted_by_index_in_partition&quot; is what it claims it is.</span></div>
<div class="line"><a name="l00359"></a><span class="lineno"> 359</span>&#160; <span class="keywordflow">if</span> (<a class="code" href="macros_8h.html#a7f536a3b33f9bed8f75734e035d30725">DEBUG_MODE</a>) {</div>
<div class="line"><a name="l00360"></a><span class="lineno"> 360</span>&#160; std::vector&lt;int&gt; expected_output;</div>
<div class="line"><a name="l00361"></a><span class="lineno"> 361</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> e : partition.ElementsInPart(part_index)) {</div>
<div class="line"><a name="l00362"></a><span class="lineno"> 362</span>&#160; <span class="keywordflow">if</span> (node_equivalence_classes-&gt;GetRoot(e) != representative_node) {</div>
<div class="line"><a name="l00363"></a><span class="lineno"> 363</span>&#160; expected_output.push_back(e);</div>
<div class="line"><a name="l00364"></a><span class="lineno"> 364</span>&#160; }</div>
<div class="line"><a name="l00365"></a><span class="lineno"> 365</span>&#160; }</div>
<div class="line"><a name="l00366"></a><span class="lineno"> 366</span>&#160; node_equivalence_classes-&gt;KeepOnlyOneNodePerPart(&amp;expected_output);</div>
<div class="line"><a name="l00367"></a><span class="lineno"> 367</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span>&amp; x : expected_output) x = node_equivalence_classes-&gt;GetRoot(x);</div>
<div class="line"><a name="l00368"></a><span class="lineno"> 368</span>&#160; std::sort(expected_output.begin(), expected_output.end());</div>
<div class="line"><a name="l00369"></a><span class="lineno"> 369</span>&#160; std::vector&lt;int&gt; sorted_output = *pruned_other_nodes;</div>
<div class="line"><a name="l00370"></a><span class="lineno"> 370</span>&#160; std::sort(sorted_output.begin(), sorted_output.end());</div>
<div class="line"><a name="l00371"></a><span class="lineno"> 371</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(absl::StrJoin(expected_output, <span class="stringliteral">&quot; &quot;</span>),</div>
<div class="line"><a name="l00372"></a><span class="lineno"> 372</span>&#160; absl::StrJoin(sorted_output, <span class="stringliteral">&quot; &quot;</span>));</div>
<div class="line"><a name="l00373"></a><span class="lineno"> 373</span>&#160; }</div>
<div class="line"><a name="l00374"></a><span class="lineno"> 374</span>&#160;}</div>
<div class="line"><a name="l00375"></a><span class="lineno"> 375</span>&#160;} <span class="comment">// namespace</span></div>
<div class="line"><a name="l00376"></a><span class="lineno"> 376</span>&#160; </div>
<div class="line"><a name="l00377"></a><span class="lineno"><a class="line" href="classoperations__research_1_1_graph_symmetry_finder.html#ad1f88654797ab9271206d6a4c013a94e"> 377</a></span>&#160;absl::Status <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#ad1f88654797ab9271206d6a4c013a94e">GraphSymmetryFinder::FindSymmetries</a>(</div>
<div class="line"><a name="l00378"></a><span class="lineno"> 378</span>&#160; std::vector&lt;int&gt;* node_equivalence_classes_io,</div>
<div class="line"><a name="l00379"></a><span class="lineno"> 379</span>&#160; std::vector&lt;std::unique_ptr&lt;SparsePermutation&gt;&gt;* generators,</div>
<div class="line"><a name="l00380"></a><span class="lineno"> 380</span>&#160; std::vector&lt;int&gt;* factorized_automorphism_group_size,</div>
<div class="line"><a name="l00381"></a><span class="lineno"> 381</span>&#160; <a class="code" href="classoperations__research_1_1_time_limit.html">TimeLimit</a>* <a class="code" href="cp__model__solver_8cc.html#ac3cf9db02b23ea1455b5ae6955d03e47">time_limit</a>) {</div>
<div class="line"><a name="l00382"></a><span class="lineno"> 382</span>&#160; <span class="comment">// Initialization.</span></div>
<div class="line"><a name="l00383"></a><span class="lineno"> 383</span>&#160; time_limit_ = <a class="code" href="cp__model__solver_8cc.html#ac3cf9db02b23ea1455b5ae6955d03e47">time_limit</a> == <span class="keyword">nullptr</span> ? &amp;dummy_time_limit_ : <a class="code" href="cp__model__solver_8cc.html#ac3cf9db02b23ea1455b5ae6955d03e47">time_limit</a>;</div>
<div class="line"><a name="l00384"></a><span class="lineno"> 384</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.initialization_time.StartTimer());</div>
<div class="line"><a name="l00385"></a><span class="lineno"> 385</span>&#160; generators-&gt;clear();</div>
<div class="line"><a name="l00386"></a><span class="lineno"> 386</span>&#160; factorized_automorphism_group_size-&gt;clear();</div>
<div class="line"><a name="l00387"></a><span class="lineno"> 387</span>&#160; <span class="keywordflow">if</span> (node_equivalence_classes_io-&gt;size() != NumNodes()) {</div>
<div class="line"><a name="l00388"></a><span class="lineno"> 388</span>&#160; <span class="keywordflow">return</span> absl::Status(absl::StatusCode::kInvalidArgument,</div>
<div class="line"><a name="l00389"></a><span class="lineno"> 389</span>&#160; <span class="stringliteral">&quot;Invalid &#39;node_equivalence_classes_io&#39;.&quot;</span>);</div>
<div class="line"><a name="l00390"></a><span class="lineno"> 390</span>&#160; }</div>
<div class="line"><a name="l00391"></a><span class="lineno"> 391</span>&#160; <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a> base_partition(*node_equivalence_classes_io);</div>
<div class="line"><a name="l00392"></a><span class="lineno"> 392</span>&#160; <span class="comment">// Break all inherent asymmetries in the graph.</span></div>
<div class="line"><a name="l00393"></a><span class="lineno"> 393</span>&#160; {</div>
<div class="line"><a name="l00394"></a><span class="lineno"> 394</span>&#160; <a class="code" href="classoperations__research_1_1_disabled_scoped_time_distribution_updater.html">ScopedTimeDistributionUpdater</a> u(&amp;stats_.initialization_refine_time);</div>
<div class="line"><a name="l00395"></a><span class="lineno"> 395</span>&#160; <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#a651a63b1943d8b8fa2346df1d1a2f55c">RecursivelyRefinePartitionByAdjacency</a>(<span class="comment">/*first_unrefined_part_index=*/</span>0,</div>
<div class="line"><a name="l00396"></a><span class="lineno"> 396</span>&#160; &amp;base_partition);</div>
<div class="line"><a name="l00397"></a><span class="lineno"> 397</span>&#160; }</div>
<div class="line"><a name="l00398"></a><span class="lineno"> 398</span>&#160; <span class="keywordflow">if</span> (time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">LimitReached</a>()) {</div>
<div class="line"><a name="l00399"></a><span class="lineno"> 399</span>&#160; <span class="keywordflow">return</span> absl::Status(absl::StatusCode::kDeadlineExceeded,</div>
<div class="line"><a name="l00400"></a><span class="lineno"> 400</span>&#160; <span class="stringliteral">&quot;During the initial refinement.&quot;</span>);</div>
<div class="line"><a name="l00401"></a><span class="lineno"> 401</span>&#160; }</div>
<div class="line"><a name="l00402"></a><span class="lineno"> 402</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Base partition: &quot;</span></div>
<div class="line"><a name="l00403"></a><span class="lineno"> 403</span>&#160; &lt;&lt; base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ad07c56b1579801daaf3a9a750d26e792">DebugString</a>(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>);</div>
<div class="line"><a name="l00404"></a><span class="lineno"> 404</span>&#160; </div>
<div class="line"><a name="l00405"></a><span class="lineno"> 405</span>&#160; <a class="code" href="classoperations__research_1_1_merging_partition.html">MergingPartition</a> node_equivalence_classes(NumNodes());</div>
<div class="line"><a name="l00406"></a><span class="lineno"> 406</span>&#160; std::vector&lt;std::vector&lt;int&gt;&gt; permutations_displacing_node(NumNodes());</div>
<div class="line"><a name="l00407"></a><span class="lineno"> 407</span>&#160; std::vector&lt;int&gt; potential_root_image_nodes;</div>
<div class="line"><a name="l00408"></a><span class="lineno"> 408</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.initialization_time.StopTimerAndAddElapsedTime());</div>
<div class="line"><a name="l00409"></a><span class="lineno"> 409</span>&#160; </div>
<div class="line"><a name="l00410"></a><span class="lineno"> 410</span>&#160; <span class="comment">// To find all permutations of the Graph that satisfy the current partition,</span></div>
<div class="line"><a name="l00411"></a><span class="lineno"> 411</span>&#160; <span class="comment">// we pick an element v that is not in a singleton part, and we</span></div>
<div class="line"><a name="l00412"></a><span class="lineno"> 412</span>&#160; <span class="comment">// split the search in two phases:</span></div>
<div class="line"><a name="l00413"></a><span class="lineno"> 413</span>&#160; <span class="comment">// 1) Find (the generators of) all permutations that keep v invariant.</span></div>
<div class="line"><a name="l00414"></a><span class="lineno"> 414</span>&#160; <span class="comment">// 2) For each w in PartOf(v) such that w != v:</span></div>
<div class="line"><a name="l00415"></a><span class="lineno"> 415</span>&#160; <span class="comment">// find *one* permutation that maps v to w, if it exists.</span></div>
<div class="line"><a name="l00416"></a><span class="lineno"> 416</span>&#160; <span class="comment">// if it does exists, add this to the generators.</span></div>
<div class="line"><a name="l00417"></a><span class="lineno"> 417</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00418"></a><span class="lineno"> 418</span>&#160; <span class="comment">// The part 1) is recursive.</span></div>
<div class="line"><a name="l00419"></a><span class="lineno"> 419</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00420"></a><span class="lineno"> 420</span>&#160; <span class="comment">// Since we can&#39;t really use true recursion because it will be too deep for</span></div>
<div class="line"><a name="l00421"></a><span class="lineno"> 421</span>&#160; <span class="comment">// the stack, we implement it iteratively. To do that, we unroll 1):</span></div>
<div class="line"><a name="l00422"></a><span class="lineno"> 422</span>&#160; <span class="comment">// the &quot;invariant dive&quot; is a single pass that successively refines the node</span></div>
<div class="line"><a name="l00423"></a><span class="lineno"> 423</span>&#160; <span class="comment">// base_partition with elements from non-singleton parts (the &#39;invariant</span></div>
<div class="line"><a name="l00424"></a><span class="lineno"> 424</span>&#160; <span class="comment">// node&#39;), until all parts are singletons.</span></div>
<div class="line"><a name="l00425"></a><span class="lineno"> 425</span>&#160; <span class="comment">// We remember which nodes we picked as invariants, and also the successive</span></div>
<div class="line"><a name="l00426"></a><span class="lineno"> 426</span>&#160; <span class="comment">// partition sizes as we refine it, to allow us to backtrack.</span></div>
<div class="line"><a name="l00427"></a><span class="lineno"> 427</span>&#160; <span class="comment">// Then we&#39;ll perform 2) in the reverse order, backtracking the stack from 1)</span></div>
<div class="line"><a name="l00428"></a><span class="lineno"> 428</span>&#160; <span class="comment">// as using another dedicated stack for the search (see below).</span></div>
<div class="line"><a name="l00429"></a><span class="lineno"> 429</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.invariant_dive_time.StartTimer());</div>
<div class="line"><a name="l00430"></a><span class="lineno"> 430</span>&#160; <span class="keyword">struct </span>InvariantDiveState {</div>
<div class="line"><a name="l00431"></a><span class="lineno"> 431</span>&#160; <span class="keywordtype">int</span> invariant_node;</div>
<div class="line"><a name="l00432"></a><span class="lineno"> 432</span>&#160; <span class="keywordtype">int</span> num_parts_before_refinement;</div>
<div class="line"><a name="l00433"></a><span class="lineno"> 433</span>&#160; </div>
<div class="line"><a name="l00434"></a><span class="lineno"> 434</span>&#160; InvariantDiveState(<span class="keywordtype">int</span> node, <span class="keywordtype">int</span> num_parts)</div>
<div class="line"><a name="l00435"></a><span class="lineno"> 435</span>&#160; : invariant_node(node), num_parts_before_refinement(num_parts) {}</div>
<div class="line"><a name="l00436"></a><span class="lineno"> 436</span>&#160; };</div>
<div class="line"><a name="l00437"></a><span class="lineno"> 437</span>&#160; std::vector&lt;InvariantDiveState&gt; invariant_dive_stack;</div>
<div class="line"><a name="l00438"></a><span class="lineno"> 438</span>&#160; <span class="comment">// TODO(user): experiment with, and briefly describe the results of various</span></div>
<div class="line"><a name="l00439"></a><span class="lineno"> 439</span>&#160; <span class="comment">// algorithms for picking the invariant node:</span></div>
<div class="line"><a name="l00440"></a><span class="lineno"> 440</span>&#160; <span class="comment">// - random selection</span></div>
<div class="line"><a name="l00441"></a><span class="lineno"> 441</span>&#160; <span class="comment">// - highest/lowest degree first</span></div>
<div class="line"><a name="l00442"></a><span class="lineno"> 442</span>&#160; <span class="comment">// - enumerate by part index; or by part size</span></div>
<div class="line"><a name="l00443"></a><span class="lineno"> 443</span>&#160; <span class="comment">// - etc.</span></div>
<div class="line"><a name="l00444"></a><span class="lineno"> 444</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> invariant_node = 0; invariant_node &lt; NumNodes(); ++invariant_node) {</div>
<div class="line"><a name="l00445"></a><span class="lineno"> 445</span>&#160; <span class="keywordflow">if</span> (base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a897ee69dceefdd60a6a4e90ab8b18a25">ElementsInSamePartAs</a>(invariant_node).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#af9593d4a5ff4274efaf429cb4f9e57cc">size</a>() == 1) {</div>
<div class="line"><a name="l00446"></a><span class="lineno"> 446</span>&#160; <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00447"></a><span class="lineno"> 447</span>&#160; }</div>
<div class="line"><a name="l00448"></a><span class="lineno"> 448</span>&#160; invariant_dive_stack.push_back(</div>
<div class="line"><a name="l00449"></a><span class="lineno"> 449</span>&#160; InvariantDiveState(invariant_node, base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ae91b7d9b6c4f0675b9ad3f38e5761853">NumParts</a>()));</div>
<div class="line"><a name="l00450"></a><span class="lineno"> 450</span>&#160; <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a">DistinguishNodeInPartition</a>(invariant_node, &amp;base_partition, <span class="keyword">nullptr</span>);</div>
<div class="line"><a name="l00451"></a><span class="lineno"> 451</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Invariant dive: invariant node = &quot;</span> &lt;&lt; invariant_node</div>
<div class="line"><a name="l00452"></a><span class="lineno"> 452</span>&#160; &lt;&lt; <span class="stringliteral">&quot;; partition after: &quot;</span></div>
<div class="line"><a name="l00453"></a><span class="lineno"> 453</span>&#160; &lt;&lt; base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ad07c56b1579801daaf3a9a750d26e792">DebugString</a>(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>);</div>
<div class="line"><a name="l00454"></a><span class="lineno"> 454</span>&#160; <span class="keywordflow">if</span> (time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">LimitReached</a>()) {</div>
<div class="line"><a name="l00455"></a><span class="lineno"> 455</span>&#160; <span class="keywordflow">return</span> absl::Status(absl::StatusCode::kDeadlineExceeded,</div>
<div class="line"><a name="l00456"></a><span class="lineno"> 456</span>&#160; <span class="stringliteral">&quot;During the invariant dive.&quot;</span>);</div>
<div class="line"><a name="l00457"></a><span class="lineno"> 457</span>&#160; }</div>
<div class="line"><a name="l00458"></a><span class="lineno"> 458</span>&#160; }</div>
<div class="line"><a name="l00459"></a><span class="lineno"> 459</span>&#160; <a class="code" href="classoperations__research_1_1_dense_doubly_linked_list.html">DenseDoublyLinkedList</a> representatives_sorted_by_index_in_partition(</div>
<div class="line"><a name="l00460"></a><span class="lineno"> 460</span>&#160; base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a53166e5f309a55b2753a60b958406340">ElementsInHierarchicalOrder</a>());</div>
<div class="line"><a name="l00461"></a><span class="lineno"> 461</span>&#160; <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a> image_partition = base_partition;</div>
<div class="line"><a name="l00462"></a><span class="lineno"> 462</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.invariant_dive_time.StopTimerAndAddElapsedTime());</div>
<div class="line"><a name="l00463"></a><span class="lineno"> 463</span>&#160; <span class="comment">// Now we&#39;ve dived to the bottom: we&#39;re left with the identity permutation,</span></div>
<div class="line"><a name="l00464"></a><span class="lineno"> 464</span>&#160; <span class="comment">// which we don&#39;t need as a generator. We move on to phase 2).</span></div>
<div class="line"><a name="l00465"></a><span class="lineno"> 465</span>&#160; </div>
<div class="line"><a name="l00466"></a><span class="lineno"> 466</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.main_search_time.StartTimer());</div>
<div class="line"><a name="l00467"></a><span class="lineno"> 467</span>&#160; <span class="keywordflow">while</span> (!invariant_dive_stack.empty()) {</div>
<div class="line"><a name="l00468"></a><span class="lineno"> 468</span>&#160; <span class="keywordflow">if</span> (time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">LimitReached</a>()) <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00469"></a><span class="lineno"> 469</span>&#160; <span class="comment">// Backtrack the last step of 1) (the invariant dive).</span></div>
<div class="line"><a name="l00470"></a><span class="lineno"> 470</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.invariant_unroll_time.StartTimer());</div>
<div class="line"><a name="l00471"></a><span class="lineno"> 471</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> root_node = invariant_dive_stack.back().invariant_node;</div>
<div class="line"><a name="l00472"></a><span class="lineno"> 472</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> base_num_parts =</div>
<div class="line"><a name="l00473"></a><span class="lineno"> 473</span>&#160; invariant_dive_stack.back().num_parts_before_refinement;</div>
<div class="line"><a name="l00474"></a><span class="lineno"> 474</span>&#160; invariant_dive_stack.pop_back();</div>
<div class="line"><a name="l00475"></a><span class="lineno"> 475</span>&#160; base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a59a35941a5a6eb3747faddb449a49e2a">UndoRefineUntilNumPartsEqual</a>(base_num_parts);</div>
<div class="line"><a name="l00476"></a><span class="lineno"> 476</span>&#160; image_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a59a35941a5a6eb3747faddb449a49e2a">UndoRefineUntilNumPartsEqual</a>(base_num_parts);</div>
<div class="line"><a name="l00477"></a><span class="lineno"> 477</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Backtracking invariant dive: root node = &quot;</span> &lt;&lt; root_node</div>
<div class="line"><a name="l00478"></a><span class="lineno"> 478</span>&#160; &lt;&lt; <span class="stringliteral">&quot;; partition: &quot;</span></div>
<div class="line"><a name="l00479"></a><span class="lineno"> 479</span>&#160; &lt;&lt; base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ad07c56b1579801daaf3a9a750d26e792">DebugString</a>(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>);</div>
<div class="line"><a name="l00480"></a><span class="lineno"> 480</span>&#160; </div>
<div class="line"><a name="l00481"></a><span class="lineno"> 481</span>&#160; <span class="comment">// Now we&#39;ll try to map &quot;root_node&quot; to all image nodes that seem compatible</span></div>
<div class="line"><a name="l00482"></a><span class="lineno"> 482</span>&#160; <span class="comment">// and that aren&#39;t &quot;root_node&quot; itself.</span></div>
<div class="line"><a name="l00483"></a><span class="lineno"> 483</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00484"></a><span class="lineno"> 484</span>&#160; <span class="comment">// Doing so, we&#39;re able to detect potential bad (or good) matches by</span></div>
<div class="line"><a name="l00485"></a><span class="lineno"> 485</span>&#160; <span class="comment">// refining the &#39;base&#39; partition with &quot;root_node&quot;; and refining the</span></div>
<div class="line"><a name="l00486"></a><span class="lineno"> 486</span>&#160; <span class="comment">// &#39;image&#39; partition (which represents the partition of images nodes,</span></div>
<div class="line"><a name="l00487"></a><span class="lineno"> 487</span>&#160; <span class="comment">// i.e. the nodes after applying the currently implicit permutation)</span></div>
<div class="line"><a name="l00488"></a><span class="lineno"> 488</span>&#160; <span class="comment">// with that candidate image node: if the two partitions don&#39;t match, then</span></div>
<div class="line"><a name="l00489"></a><span class="lineno"> 489</span>&#160; <span class="comment">// the candidate image isn&#39;t compatible.</span></div>
<div class="line"><a name="l00490"></a><span class="lineno"> 490</span>&#160; <span class="comment">// If the partitions do match, we might either find the underlying</span></div>
<div class="line"><a name="l00491"></a><span class="lineno"> 491</span>&#160; <span class="comment">// permutation directly, or we might need to further try and map other</span></div>
<div class="line"><a name="l00492"></a><span class="lineno"> 492</span>&#160; <span class="comment">// nodes to their image: this is a recursive search with backtracking.</span></div>
<div class="line"><a name="l00493"></a><span class="lineno"> 493</span>&#160; </div>
<div class="line"><a name="l00494"></a><span class="lineno"> 494</span>&#160; <span class="comment">// The potential images of root_node are the nodes in its part. They can be</span></div>
<div class="line"><a name="l00495"></a><span class="lineno"> 495</span>&#160; <span class="comment">// pruned by the already computed equivalence classes.</span></div>
<div class="line"><a name="l00496"></a><span class="lineno"> 496</span>&#160; <span class="comment">// TODO(user): better elect the representative of each equivalence class</span></div>
<div class="line"><a name="l00497"></a><span class="lineno"> 497</span>&#160; <span class="comment">// in order to reduce the permutation support down the line</span></div>
<div class="line"><a name="l00498"></a><span class="lineno"> 498</span>&#160; <span class="comment">// TODO(user): Don&#39;t build a list; but instead use direct, inline iteration</span></div>
<div class="line"><a name="l00499"></a><span class="lineno"> 499</span>&#160; <span class="comment">// on the representatives in the while() loop below, to benefit from the</span></div>
<div class="line"><a name="l00500"></a><span class="lineno"> 500</span>&#160; <span class="comment">// incremental merging of the equivalence classes.</span></div>
<div class="line"><a name="l00501"></a><span class="lineno"> 501</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(1, node_equivalence_classes.<a class="code" href="classoperations__research_1_1_merging_partition.html#a3d5f7b1e62f42b574085e671ae6dfb73">NumNodesInSamePartAs</a>(root_node));</div>
<div class="line"><a name="l00502"></a><span class="lineno"> 502</span>&#160; GetAllOtherRepresentativesInSamePartAs(</div>
<div class="line"><a name="l00503"></a><span class="lineno"> 503</span>&#160; root_node, base_partition, representatives_sorted_by_index_in_partition,</div>
<div class="line"><a name="l00504"></a><span class="lineno"> 504</span>&#160; &amp;node_equivalence_classes, &amp;potential_root_image_nodes);</div>
<div class="line"><a name="l00505"></a><span class="lineno"> 505</span>&#160; <a class="code" href="base_2logging_8h.html#ae17f8119c108cf3070bad3449c7e0006">DCHECK</a>(!potential_root_image_nodes.empty());</div>
<div class="line"><a name="l00506"></a><span class="lineno"> 506</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.invariant_unroll_time.StopTimerAndAddElapsedTime());</div>
<div class="line"><a name="l00507"></a><span class="lineno"> 507</span>&#160; </div>
<div class="line"><a name="l00508"></a><span class="lineno"> 508</span>&#160; <span class="comment">// Try to map &quot;root_node&quot; to all of its potential images. For each image,</span></div>
<div class="line"><a name="l00509"></a><span class="lineno"> 509</span>&#160; <span class="comment">// we only care about finding a single compatible permutation, if it exists.</span></div>
<div class="line"><a name="l00510"></a><span class="lineno"> 510</span>&#160; <span class="keywordflow">while</span> (!potential_root_image_nodes.empty()) {</div>
<div class="line"><a name="l00511"></a><span class="lineno"> 511</span>&#160; <span class="keywordflow">if</span> (time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">LimitReached</a>()) <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00512"></a><span class="lineno"> 512</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Potential (pruned) images of root node &quot;</span> &lt;&lt; root_node</div>
<div class="line"><a name="l00513"></a><span class="lineno"> 513</span>&#160; &lt;&lt; <span class="stringliteral">&quot; left: [&quot;</span> &lt;&lt; absl::StrJoin(potential_root_image_nodes, <span class="stringliteral">&quot; &quot;</span>)</div>
<div class="line"><a name="l00514"></a><span class="lineno"> 514</span>&#160; &lt;&lt; <span class="stringliteral">&quot;].&quot;</span>;</div>
<div class="line"><a name="l00515"></a><span class="lineno"> 515</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> root_image_node = potential_root_image_nodes.back();</div>
<div class="line"><a name="l00516"></a><span class="lineno"> 516</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Trying image of root node: &quot;</span> &lt;&lt; root_image_node;</div>
<div class="line"><a name="l00517"></a><span class="lineno"> 517</span>&#160; </div>
<div class="line"><a name="l00518"></a><span class="lineno"> 518</span>&#160; std::unique_ptr&lt;SparsePermutation&gt; permutation =</div>
<div class="line"><a name="l00519"></a><span class="lineno"> 519</span>&#160; FindOneSuitablePermutation(root_node, root_image_node,</div>
<div class="line"><a name="l00520"></a><span class="lineno"> 520</span>&#160; &amp;base_partition, &amp;image_partition,</div>
<div class="line"><a name="l00521"></a><span class="lineno"> 521</span>&#160; *generators, permutations_displacing_node);</div>
<div class="line"><a name="l00522"></a><span class="lineno"> 522</span>&#160; </div>
<div class="line"><a name="l00523"></a><span class="lineno"> 523</span>&#160; <span class="keywordflow">if</span> (permutation != <span class="keyword">nullptr</span>) {</div>
<div class="line"><a name="l00524"></a><span class="lineno"> 524</span>&#160; <a class="code" href="classoperations__research_1_1_disabled_scoped_time_distribution_updater.html">ScopedTimeDistributionUpdater</a> u(&amp;stats_.permutation_output_time);</div>
<div class="line"><a name="l00525"></a><span class="lineno"> 525</span>&#160; <span class="comment">// We found a permutation. We store it in the list of generators, and</span></div>
<div class="line"><a name="l00526"></a><span class="lineno"> 526</span>&#160; <span class="comment">// further prune out the remaining &#39;root&#39; image candidates, taking into</span></div>
<div class="line"><a name="l00527"></a><span class="lineno"> 527</span>&#160; <span class="comment">// account the permutation we just found.</span></div>
<div class="line"><a name="l00528"></a><span class="lineno"> 528</span>&#160; MergeNodeEquivalenceClassesAccordingToPermutation(</div>
<div class="line"><a name="l00529"></a><span class="lineno"> 529</span>&#160; *permutation, &amp;node_equivalence_classes,</div>
<div class="line"><a name="l00530"></a><span class="lineno"> 530</span>&#160; &amp;representatives_sorted_by_index_in_partition);</div>
<div class="line"><a name="l00531"></a><span class="lineno"> 531</span>&#160; <span class="comment">// HACK(user): to make sure that we keep root_image_node as the</span></div>
<div class="line"><a name="l00532"></a><span class="lineno"> 532</span>&#160; <span class="comment">// representant of its part, we temporarily move it to the front</span></div>
<div class="line"><a name="l00533"></a><span class="lineno"> 533</span>&#160; <span class="comment">// of the vector, then move it again to the back so that it gets</span></div>
<div class="line"><a name="l00534"></a><span class="lineno"> 534</span>&#160; <span class="comment">// deleted by the pop_back() below.</span></div>
<div class="line"><a name="l00535"></a><span class="lineno"> 535</span>&#160; SwapFrontAndBack(&amp;potential_root_image_nodes);</div>
<div class="line"><a name="l00536"></a><span class="lineno"> 536</span>&#160; node_equivalence_classes.<a class="code" href="classoperations__research_1_1_merging_partition.html#a80761f181b521aa284b7e687776b9fde">KeepOnlyOneNodePerPart</a>(</div>
<div class="line"><a name="l00537"></a><span class="lineno"> 537</span>&#160; &amp;potential_root_image_nodes);</div>
<div class="line"><a name="l00538"></a><span class="lineno"> 538</span>&#160; SwapFrontAndBack(&amp;potential_root_image_nodes);</div>
<div class="line"><a name="l00539"></a><span class="lineno"> 539</span>&#160; </div>
<div class="line"><a name="l00540"></a><span class="lineno"> 540</span>&#160; <span class="comment">// Register it onto the permutations_displacing_node vector.</span></div>
<div class="line"><a name="l00541"></a><span class="lineno"> 541</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> permutation_index = <span class="keyword">static_cast&lt;</span><span class="keywordtype">int</span><span class="keyword">&gt;</span>(generators-&gt;size());</div>
<div class="line"><a name="l00542"></a><span class="lineno"> 542</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : permutation-&gt;Support()) {</div>
<div class="line"><a name="l00543"></a><span class="lineno"> 543</span>&#160; permutations_displacing_node[node].push_back(permutation_index);</div>
<div class="line"><a name="l00544"></a><span class="lineno"> 544</span>&#160; }</div>
<div class="line"><a name="l00545"></a><span class="lineno"> 545</span>&#160; </div>
<div class="line"><a name="l00546"></a><span class="lineno"> 546</span>&#160; <span class="comment">// Move the permutation to the generator list (this also transfers</span></div>
<div class="line"><a name="l00547"></a><span class="lineno"> 547</span>&#160; <span class="comment">// ownership).</span></div>
<div class="line"><a name="l00548"></a><span class="lineno"> 548</span>&#160; generators-&gt;push_back(std::move(permutation));</div>
<div class="line"><a name="l00549"></a><span class="lineno"> 549</span>&#160; }</div>
<div class="line"><a name="l00550"></a><span class="lineno"> 550</span>&#160; </div>
<div class="line"><a name="l00551"></a><span class="lineno"> 551</span>&#160; potential_root_image_nodes.pop_back();</div>
<div class="line"><a name="l00552"></a><span class="lineno"> 552</span>&#160; }</div>
<div class="line"><a name="l00553"></a><span class="lineno"> 553</span>&#160; </div>
<div class="line"><a name="l00554"></a><span class="lineno"> 554</span>&#160; <span class="comment">// We keep track of the size of the orbit of &#39;root_node&#39; under the</span></div>
<div class="line"><a name="l00555"></a><span class="lineno"> 555</span>&#160; <span class="comment">// current subgroup: this is one of the factors of the total group size.</span></div>
<div class="line"><a name="l00556"></a><span class="lineno"> 556</span>&#160; <span class="comment">// TODO(user): better, more complete explanation.</span></div>
<div class="line"><a name="l00557"></a><span class="lineno"> 557</span>&#160; factorized_automorphism_group_size-&gt;push_back(</div>
<div class="line"><a name="l00558"></a><span class="lineno"> 558</span>&#160; node_equivalence_classes.<a class="code" href="classoperations__research_1_1_merging_partition.html#a3d5f7b1e62f42b574085e671ae6dfb73">NumNodesInSamePartAs</a>(root_node));</div>
<div class="line"><a name="l00559"></a><span class="lineno"> 559</span>&#160; }</div>
<div class="line"><a name="l00560"></a><span class="lineno"> 560</span>&#160; node_equivalence_classes.<a class="code" href="classoperations__research_1_1_merging_partition.html#a62cb833403d7861c5badb4de3389e06e">FillEquivalenceClasses</a>(node_equivalence_classes_io);</div>
<div class="line"><a name="l00561"></a><span class="lineno"> 561</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.main_search_time.StopTimerAndAddElapsedTime());</div>
<div class="line"><a name="l00562"></a><span class="lineno"> 562</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.SetPrintOrder(<a class="code" href="classoperations__research_1_1_stats_group.html#aa8fc83a27372d89cee2a2e5dd024b515a0a1aa84c65d99c7f8c2a52a0cb4b02b8">StatsGroup::SORT_BY_NAME</a>));</div>
<div class="line"><a name="l00563"></a><span class="lineno"> 563</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(<a class="code" href="base_2logging_8h.html#accad43a85d781d53381cd53a9894b6ae">LOG</a>(<a class="code" href="log__severity_8h.html#ab4a2cbab234914b320b7fae11b6e8cb9">INFO</a>) &lt;&lt; <span class="stringliteral">&quot;Statistics: &quot;</span> &lt;&lt; stats_.StatString());</div>
<div class="line"><a name="l00564"></a><span class="lineno"> 564</span>&#160; <span class="keywordflow">if</span> (time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">LimitReached</a>()) {</div>
<div class="line"><a name="l00565"></a><span class="lineno"> 565</span>&#160; <span class="keywordflow">return</span> absl::Status(absl::StatusCode::kDeadlineExceeded,</div>
<div class="line"><a name="l00566"></a><span class="lineno"> 566</span>&#160; <span class="stringliteral">&quot;Some automorphisms were found, but probably not all.&quot;</span>);</div>
<div class="line"><a name="l00567"></a><span class="lineno"> 567</span>&#160; }</div>
<div class="line"><a name="l00568"></a><span class="lineno"> 568</span>&#160; return ::absl::OkStatus();</div>
<div class="line"><a name="l00569"></a><span class="lineno"> 569</span>&#160;}</div>
<div class="line"><a name="l00570"></a><span class="lineno"> 570</span>&#160; </div>
<div class="line"><a name="l00571"></a><span class="lineno"> 571</span>&#160;<span class="keyword">namespace </span>{</div>
<div class="line"><a name="l00572"></a><span class="lineno"> 572</span>&#160;<span class="comment">// This method can be easily understood in the context of</span></div>
<div class="line"><a name="l00573"></a><span class="lineno"> 573</span>&#160;<span class="comment">// ConfirmFullMatchOrFindNextMappingDecision(): see its call sites.</span></div>
<div class="line"><a name="l00574"></a><span class="lineno"> 574</span>&#160;<span class="comment">// Knowing that we want to map some element of part #part_index of</span></div>
<div class="line"><a name="l00575"></a><span class="lineno"> 575</span>&#160;<span class="comment">// &quot;base_partition&quot; to part #part_index of &quot;image_partition&quot;, pick the &quot;best&quot;</span></div>
<div class="line"><a name="l00576"></a><span class="lineno"> 576</span>&#160;<span class="comment">// such mapping, for the global search algorithm.</span></div>
<div class="line"><a name="l00577"></a><span class="lineno"> 577</span>&#160;<span class="keyword">inline</span> <span class="keywordtype">void</span> GetBestMapping(<span class="keyword">const</span> <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a>&amp; base_partition,</div>
<div class="line"><a name="l00578"></a><span class="lineno"> 578</span>&#160; <span class="keyword">const</span> <a class="code" href="classoperations__research_1_1_dynamic_partition.html">DynamicPartition</a>&amp; image_partition,</div>
<div class="line"><a name="l00579"></a><span class="lineno"> 579</span>&#160; <span class="keywordtype">int</span> part_index, <span class="keywordtype">int</span>* base_node, <span class="keywordtype">int</span>* image_node) {</div>
<div class="line"><a name="l00580"></a><span class="lineno"> 580</span>&#160; <span class="comment">// As of pending CL 66620435, we&#39;ve loosely tried three variants of</span></div>
<div class="line"><a name="l00581"></a><span class="lineno"> 581</span>&#160; <span class="comment">// GetBestMapping():</span></div>
<div class="line"><a name="l00582"></a><span class="lineno"> 582</span>&#160; <span class="comment">// 1) Just take the first element of the base part, map it to the first</span></div>
<div class="line"><a name="l00583"></a><span class="lineno"> 583</span>&#160; <span class="comment">// element of the image part.</span></div>
<div class="line"><a name="l00584"></a><span class="lineno"> 584</span>&#160; <span class="comment">// 2) Just take the first element of the base part, and map it to itself if</span></div>
<div class="line"><a name="l00585"></a><span class="lineno"> 585</span>&#160; <span class="comment">// possible, else map it to the first element of the image part</span></div>
<div class="line"><a name="l00586"></a><span class="lineno"> 586</span>&#160; <span class="comment">// 3) Scan all elements of the base parts until we find one that can map to</span></div>
<div class="line"><a name="l00587"></a><span class="lineno"> 587</span>&#160; <span class="comment">// itself. If there isn&#39;t one; we just fall back to the strategy 1).</span></div>
<div class="line"><a name="l00588"></a><span class="lineno"> 588</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00589"></a><span class="lineno"> 589</span>&#160; <span class="comment">// Variant 2) gives the best results on most benchmarks, in terms of speed,</span></div>
<div class="line"><a name="l00590"></a><span class="lineno"> 590</span>&#160; <span class="comment">// but 3) yields much smaller supports for the sat_holeXXX benchmarks, as</span></div>
<div class="line"><a name="l00591"></a><span class="lineno"> 591</span>&#160; <span class="comment">// long as it&#39;s combined with the other tweak enabled by</span></div>
<div class="line"><a name="l00592"></a><span class="lineno"> 592</span>&#160; <span class="comment">// FLAGS_minimize_permutation_support_size.</span></div>
<div class="line"><a name="l00593"></a><span class="lineno"> 593</span>&#160; <span class="keywordflow">if</span> (absl::GetFlag(FLAGS_minimize_permutation_support_size)) {</div>
<div class="line"><a name="l00594"></a><span class="lineno"> 594</span>&#160; <span class="comment">// Variant 3).</span></div>
<div class="line"><a name="l00595"></a><span class="lineno"> 595</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index)) {</div>
<div class="line"><a name="l00596"></a><span class="lineno"> 596</span>&#160; <span class="keywordflow">if</span> (image_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ab22d95d31ef6edfd5a6770ff6d8c4f04">PartOf</a>(node) == part_index) {</div>
<div class="line"><a name="l00597"></a><span class="lineno"> 597</span>&#160; *image_node = *base_node = node;</div>
<div class="line"><a name="l00598"></a><span class="lineno"> 598</span>&#160; <span class="keywordflow">return</span>;</div>
<div class="line"><a name="l00599"></a><span class="lineno"> 599</span>&#160; }</div>
<div class="line"><a name="l00600"></a><span class="lineno"> 600</span>&#160; }</div>
<div class="line"><a name="l00601"></a><span class="lineno"> 601</span>&#160; *base_node = *base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">begin</a>();</div>
<div class="line"><a name="l00602"></a><span class="lineno"> 602</span>&#160; *image_node = *image_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">begin</a>();</div>
<div class="line"><a name="l00603"></a><span class="lineno"> 603</span>&#160; <span class="keywordflow">return</span>;</div>
<div class="line"><a name="l00604"></a><span class="lineno"> 604</span>&#160; }</div>
<div class="line"><a name="l00605"></a><span class="lineno"> 605</span>&#160; </div>
<div class="line"><a name="l00606"></a><span class="lineno"> 606</span>&#160; <span class="comment">// Variant 2).</span></div>
<div class="line"><a name="l00607"></a><span class="lineno"> 607</span>&#160; *base_node = *base_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">begin</a>();</div>
<div class="line"><a name="l00608"></a><span class="lineno"> 608</span>&#160; <span class="keywordflow">if</span> (image_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#ab22d95d31ef6edfd5a6770ff6d8c4f04">PartOf</a>(*base_node) == part_index) {</div>
<div class="line"><a name="l00609"></a><span class="lineno"> 609</span>&#160; *image_node = *base_node;</div>
<div class="line"><a name="l00610"></a><span class="lineno"> 610</span>&#160; } <span class="keywordflow">else</span> {</div>
<div class="line"><a name="l00611"></a><span class="lineno"> 611</span>&#160; *image_node = *image_partition.<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">ElementsInPart</a>(part_index).<a class="code" href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">begin</a>();</div>
<div class="line"><a name="l00612"></a><span class="lineno"> 612</span>&#160; }</div>
<div class="line"><a name="l00613"></a><span class="lineno"> 613</span>&#160;}</div>
<div class="line"><a name="l00614"></a><span class="lineno"> 614</span>&#160;} <span class="comment">// namespace</span></div>
<div class="line"><a name="l00615"></a><span class="lineno"> 615</span>&#160; </div>
<div class="line"><a name="l00616"></a><span class="lineno"> 616</span>&#160;<span class="comment">// TODO(user): refactor this method and its submethods into a dedicated class</span></div>
<div class="line"><a name="l00617"></a><span class="lineno"> 617</span>&#160;<span class="comment">// whose members will be ominously accessed by all the class methods; most</span></div>
<div class="line"><a name="l00618"></a><span class="lineno"> 618</span>&#160;<span class="comment">// notably the search state stack. This may improve readability.</span></div>
<div class="line"><a name="l00619"></a><span class="lineno"> 619</span>&#160;std::unique_ptr&lt;SparsePermutation&gt;</div>
<div class="line"><a name="l00620"></a><span class="lineno"> 620</span>&#160;GraphSymmetryFinder::FindOneSuitablePermutation(</div>
<div class="line"><a name="l00621"></a><span class="lineno"> 621</span>&#160; <span class="keywordtype">int</span> root_node, <span class="keywordtype">int</span> root_image_node, DynamicPartition* base_partition,</div>
<div class="line"><a name="l00622"></a><span class="lineno"> 622</span>&#160; DynamicPartition* image_partition,</div>
<div class="line"><a name="l00623"></a><span class="lineno"> 623</span>&#160; <span class="keyword">const</span> std::vector&lt;std::unique_ptr&lt;SparsePermutation&gt;&gt;&amp;</div>
<div class="line"><a name="l00624"></a><span class="lineno"> 624</span>&#160; generators_found_so_far,</div>
<div class="line"><a name="l00625"></a><span class="lineno"> 625</span>&#160; <span class="keyword">const</span> std::vector&lt;std::vector&lt;int&gt;&gt;&amp; permutations_displacing_node) {</div>
<div class="line"><a name="l00626"></a><span class="lineno"> 626</span>&#160; <span class="comment">// DCHECKs() and statistics.</span></div>
<div class="line"><a name="l00627"></a><span class="lineno"> 627</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> search_time_updater(&amp;stats_.search_time);</div>
<div class="line"><a name="l00628"></a><span class="lineno"> 628</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(<span class="stringliteral">&quot;&quot;</span>, tmp_dynamic_permutation_.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#a764be64f3029f8b8e23511061d8de355">DebugString</a>());</div>
<div class="line"><a name="l00629"></a><span class="lineno"> 629</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(base_partition-&gt;DebugString(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>),</div>
<div class="line"><a name="l00630"></a><span class="lineno"> 630</span>&#160; image_partition-&gt;DebugString(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>));</div>
<div class="line"><a name="l00631"></a><span class="lineno"> 631</span>&#160; <a class="code" href="base_2logging_8h.html#ae17f8119c108cf3070bad3449c7e0006">DCHECK</a>(search_states_.empty());</div>
<div class="line"><a name="l00632"></a><span class="lineno"> 632</span>&#160; </div>
<div class="line"><a name="l00633"></a><span class="lineno"> 633</span>&#160; <span class="comment">// These will be used during the search. See their usage.</span></div>
<div class="line"><a name="l00634"></a><span class="lineno"> 634</span>&#160; std::vector&lt;int&gt; base_singletons;</div>
<div class="line"><a name="l00635"></a><span class="lineno"> 635</span>&#160; std::vector&lt;int&gt; image_singletons;</div>
<div class="line"><a name="l00636"></a><span class="lineno"> 636</span>&#160; <span class="keywordtype">int</span> next_base_node;</div>
<div class="line"><a name="l00637"></a><span class="lineno"> 637</span>&#160; <span class="keywordtype">int</span> next_image_node;</div>
<div class="line"><a name="l00638"></a><span class="lineno"> 638</span>&#160; <span class="keywordtype">int</span> min_potential_mismatching_part_index;</div>
<div class="line"><a name="l00639"></a><span class="lineno"> 639</span>&#160; std::vector&lt;int&gt; next_potential_image_nodes;</div>
<div class="line"><a name="l00640"></a><span class="lineno"> 640</span>&#160; </div>
<div class="line"><a name="l00641"></a><span class="lineno"> 641</span>&#160; <span class="comment">// Initialize the search: we can already distinguish &quot;root_node&quot; in the base</span></div>
<div class="line"><a name="l00642"></a><span class="lineno"> 642</span>&#160; <span class="comment">// partition. See the comment below.</span></div>
<div class="line"><a name="l00643"></a><span class="lineno"> 643</span>&#160; search_states_.emplace_back(</div>
<div class="line"><a name="l00644"></a><span class="lineno"> 644</span>&#160; <span class="comment">/*base_node=*/</span>root_node, <span class="comment">/*first_image_node=*/</span>-1,</div>
<div class="line"><a name="l00645"></a><span class="lineno"> 645</span>&#160; <span class="comment">/*num_parts_before_trying_to_map_base_node=*/</span>base_partition-&gt;NumParts(),</div>
<div class="line"><a name="l00646"></a><span class="lineno"> 646</span>&#160; <span class="comment">/*min_potential_mismatching_part_index=*/</span>base_partition-&gt;NumParts());</div>
<div class="line"><a name="l00647"></a><span class="lineno"> 647</span>&#160; <span class="comment">// We inject the image node directly as the &quot;remaining_pruned_image_nodes&quot;.</span></div>
<div class="line"><a name="l00648"></a><span class="lineno"> 648</span>&#160; search_states_.back().remaining_pruned_image_nodes.assign(1, root_image_node);</div>
<div class="line"><a name="l00649"></a><span class="lineno"> 649</span>&#160; {</div>
<div class="line"><a name="l00650"></a><span class="lineno"> 650</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.initial_search_refine_time);</div>
<div class="line"><a name="l00651"></a><span class="lineno"> 651</span>&#160; <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a">DistinguishNodeInPartition</a>(root_node, base_partition, &amp;base_singletons);</div>
<div class="line"><a name="l00652"></a><span class="lineno"> 652</span>&#160; }</div>
<div class="line"><a name="l00653"></a><span class="lineno"> 653</span>&#160; <span class="keywordflow">while</span> (!search_states_.empty()) {</div>
<div class="line"><a name="l00654"></a><span class="lineno"> 654</span>&#160; <span class="keywordflow">if</span> (time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">LimitReached</a>()) <span class="keywordflow">return</span> <span class="keyword">nullptr</span>;</div>
<div class="line"><a name="l00655"></a><span class="lineno"> 655</span>&#160; <span class="comment">// When exploring a SearchState &quot;ss&quot;, we&#39;re supposed to have:</span></div>
<div class="line"><a name="l00656"></a><span class="lineno"> 656</span>&#160; <span class="comment">// - A base_partition that has already been refined on ss-&gt;base_node.</span></div>
<div class="line"><a name="l00657"></a><span class="lineno"> 657</span>&#160; <span class="comment">// (base_singleton is the list of singletons created on the base</span></div>
<div class="line"><a name="l00658"></a><span class="lineno"> 658</span>&#160; <span class="comment">// partition during that refinement).</span></div>
<div class="line"><a name="l00659"></a><span class="lineno"> 659</span>&#160; <span class="comment">// - A non-empty list of potential image nodes (we&#39;ll try them in reverse</span></div>
<div class="line"><a name="l00660"></a><span class="lineno"> 660</span>&#160; <span class="comment">// order).</span></div>
<div class="line"><a name="l00661"></a><span class="lineno"> 661</span>&#160; <span class="comment">// - An image partition that hasn&#39;t been refined yet.</span></div>
<div class="line"><a name="l00662"></a><span class="lineno"> 662</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00663"></a><span class="lineno"> 663</span>&#160; <span class="comment">// Also, one should note that the base partition (before its refinement on</span></div>
<div class="line"><a name="l00664"></a><span class="lineno"> 664</span>&#160; <span class="comment">// base_node) was deemed compatible with the image partition as it is now.</span></div>
<div class="line"><a name="l00665"></a><span class="lineno"> 665</span>&#160; <span class="keyword">const</span> SearchState&amp; ss = search_states_.back();</div>
<div class="line"><a name="l00666"></a><span class="lineno"> 666</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> image_node = ss.first_image_node &gt;= 0</div>
<div class="line"><a name="l00667"></a><span class="lineno"> 667</span>&#160; ? ss.first_image_node</div>
<div class="line"><a name="l00668"></a><span class="lineno"> 668</span>&#160; : ss.remaining_pruned_image_nodes.back();</div>
<div class="line"><a name="l00669"></a><span class="lineno"> 669</span>&#160; </div>
<div class="line"><a name="l00670"></a><span class="lineno"> 670</span>&#160; <span class="comment">// Statistics, DCHECKs.</span></div>
<div class="line"><a name="l00671"></a><span class="lineno"> 671</span>&#160; <a class="code" href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a>(stats_.search_depth.Add(search_states_.size()));</div>
<div class="line"><a name="l00672"></a><span class="lineno"> 672</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(ss.num_parts_before_trying_to_map_base_node,</div>
<div class="line"><a name="l00673"></a><span class="lineno"> 673</span>&#160; image_partition-&gt;NumParts());</div>
<div class="line"><a name="l00674"></a><span class="lineno"> 674</span>&#160; </div>
<div class="line"><a name="l00675"></a><span class="lineno"> 675</span>&#160; <span class="comment">// Apply the decision: map base_node to image_node. Since base_partition</span></div>
<div class="line"><a name="l00676"></a><span class="lineno"> 676</span>&#160; <span class="comment">// was already refined on base_node, we just need to refine image_partition.</span></div>
<div class="line"><a name="l00677"></a><span class="lineno"> 677</span>&#160; {</div>
<div class="line"><a name="l00678"></a><span class="lineno"> 678</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.search_refine_time);</div>
<div class="line"><a name="l00679"></a><span class="lineno"> 679</span>&#160; <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a">DistinguishNodeInPartition</a>(image_node, image_partition,</div>
<div class="line"><a name="l00680"></a><span class="lineno"> 680</span>&#160; &amp;image_singletons);</div>
<div class="line"><a name="l00681"></a><span class="lineno"> 681</span>&#160; }</div>
<div class="line"><a name="l00682"></a><span class="lineno"> 682</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; ss.DebugString();</div>
<div class="line"><a name="l00683"></a><span class="lineno"> 683</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; base_partition-&gt;DebugString(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>);</div>
<div class="line"><a name="l00684"></a><span class="lineno"> 684</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; image_partition-&gt;DebugString(<a class="code" href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">DynamicPartition::SORT_BY_PART</a>);</div>
<div class="line"><a name="l00685"></a><span class="lineno"> 685</span>&#160; </div>
<div class="line"><a name="l00686"></a><span class="lineno"> 686</span>&#160; <span class="comment">// Run some diagnoses on the two partitions. There are many outcomes, so</span></div>
<div class="line"><a name="l00687"></a><span class="lineno"> 687</span>&#160; <span class="comment">// it&#39;s a bit complicated:</span></div>
<div class="line"><a name="l00688"></a><span class="lineno"> 688</span>&#160; <span class="comment">// 1) The partitions are incompatible</span></div>
<div class="line"><a name="l00689"></a><span class="lineno"> 689</span>&#160; <span class="comment">// - Because of a straightfoward criterion (size mismatch).</span></div>
<div class="line"><a name="l00690"></a><span class="lineno"> 690</span>&#160; <span class="comment">// - Because they are both fully refined (i.e. singletons only), yet the</span></div>
<div class="line"><a name="l00691"></a><span class="lineno"> 691</span>&#160; <span class="comment">// permutation induced by them is not a graph automorpshim.</span></div>
<div class="line"><a name="l00692"></a><span class="lineno"> 692</span>&#160; <span class="comment">// 2) The partitions induce a permutation (all their non-singleton parts are</span></div>
<div class="line"><a name="l00693"></a><span class="lineno"> 693</span>&#160; <span class="comment">// identical), and this permutation is a graph automorphism.</span></div>
<div class="line"><a name="l00694"></a><span class="lineno"> 694</span>&#160; <span class="comment">// 3) The partitions need further refinement:</span></div>
<div class="line"><a name="l00695"></a><span class="lineno"> 695</span>&#160; <span class="comment">// - Because some non-singleton parts aren&#39;t equal in the base and image</span></div>
<div class="line"><a name="l00696"></a><span class="lineno"> 696</span>&#160; <span class="comment">// partition</span></div>
<div class="line"><a name="l00697"></a><span class="lineno"> 697</span>&#160; <span class="comment">// - Or because they are a full match (i.e. may induce a permutation,</span></div>
<div class="line"><a name="l00698"></a><span class="lineno"> 698</span>&#160; <span class="comment">// like in 2)), but the induced permutation isn&#39;t a graph automorphism.</span></div>
<div class="line"><a name="l00699"></a><span class="lineno"> 699</span>&#160; <span class="keywordtype">bool</span> compatible = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00700"></a><span class="lineno"> 700</span>&#160; {</div>
<div class="line"><a name="l00701"></a><span class="lineno"> 701</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.quick_compatibility_time);</div>
<div class="line"><a name="l00702"></a><span class="lineno"> 702</span>&#160; compatible = PartitionsAreCompatibleAfterPartIndex(</div>
<div class="line"><a name="l00703"></a><span class="lineno"> 703</span>&#160; *base_partition, *image_partition,</div>
<div class="line"><a name="l00704"></a><span class="lineno"> 704</span>&#160; ss.num_parts_before_trying_to_map_base_node);</div>
<div class="line"><a name="l00705"></a><span class="lineno"> 705</span>&#160; u.AlsoUpdate(compatible ? &amp;stats_.quick_compatibility_success_time</div>
<div class="line"><a name="l00706"></a><span class="lineno"> 706</span>&#160; : &amp;stats_.quick_compatibility_fail_time);</div>
<div class="line"><a name="l00707"></a><span class="lineno"> 707</span>&#160; }</div>
<div class="line"><a name="l00708"></a><span class="lineno"> 708</span>&#160; <span class="keywordtype">bool</span> partitions_are_full_match = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00709"></a><span class="lineno"> 709</span>&#160; <span class="keywordflow">if</span> (compatible) {</div>
<div class="line"><a name="l00710"></a><span class="lineno"> 710</span>&#160; {</div>
<div class="line"><a name="l00711"></a><span class="lineno"> 711</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(</div>
<div class="line"><a name="l00712"></a><span class="lineno"> 712</span>&#160; &amp;stats_.dynamic_permutation_refinement_time);</div>
<div class="line"><a name="l00713"></a><span class="lineno"> 713</span>&#160; tmp_dynamic_permutation_.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#aeb46445d022e7bc495f212704791824a">AddMappings</a>(base_singletons, image_singletons);</div>
<div class="line"><a name="l00714"></a><span class="lineno"> 714</span>&#160; }</div>
<div class="line"><a name="l00715"></a><span class="lineno"> 715</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.map_election_std_time);</div>
<div class="line"><a name="l00716"></a><span class="lineno"> 716</span>&#160; min_potential_mismatching_part_index =</div>
<div class="line"><a name="l00717"></a><span class="lineno"> 717</span>&#160; ss.min_potential_mismatching_part_index;</div>
<div class="line"><a name="l00718"></a><span class="lineno"> 718</span>&#160; partitions_are_full_match = ConfirmFullMatchOrFindNextMappingDecision(</div>
<div class="line"><a name="l00719"></a><span class="lineno"> 719</span>&#160; *base_partition, *image_partition, tmp_dynamic_permutation_,</div>
<div class="line"><a name="l00720"></a><span class="lineno"> 720</span>&#160; &amp;min_potential_mismatching_part_index, &amp;next_base_node,</div>
<div class="line"><a name="l00721"></a><span class="lineno"> 721</span>&#160; &amp;next_image_node);</div>
<div class="line"><a name="l00722"></a><span class="lineno"> 722</span>&#160; u.AlsoUpdate(partitions_are_full_match</div>
<div class="line"><a name="l00723"></a><span class="lineno"> 723</span>&#160; ? &amp;stats_.map_election_std_full_match_time</div>
<div class="line"><a name="l00724"></a><span class="lineno"> 724</span>&#160; : &amp;stats_.map_election_std_mapping_time);</div>
<div class="line"><a name="l00725"></a><span class="lineno"> 725</span>&#160; }</div>
<div class="line"><a name="l00726"></a><span class="lineno"> 726</span>&#160; <span class="keywordflow">if</span> (compatible &amp;&amp; partitions_are_full_match) {</div>
<div class="line"><a name="l00727"></a><span class="lineno"> 727</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(min_potential_mismatching_part_index,</div>
<div class="line"><a name="l00728"></a><span class="lineno"> 728</span>&#160; base_partition-&gt;NumParts());</div>
<div class="line"><a name="l00729"></a><span class="lineno"> 729</span>&#160; <span class="comment">// We have a permutation candidate!</span></div>
<div class="line"><a name="l00730"></a><span class="lineno"> 730</span>&#160; <span class="comment">// Note(user): we also deal with (extremely rare) false positives for</span></div>
<div class="line"><a name="l00731"></a><span class="lineno"> 731</span>&#160; <span class="comment">// &quot;partitions_are_full_match&quot; here: in case they aren&#39;t a full match,</span></div>
<div class="line"><a name="l00732"></a><span class="lineno"> 732</span>&#160; <span class="comment">// IsGraphAutomorphism() will catch that; and we&#39;ll simply deepen the</span></div>
<div class="line"><a name="l00733"></a><span class="lineno"> 733</span>&#160; <span class="comment">// search.</span></div>
<div class="line"><a name="l00734"></a><span class="lineno"> 734</span>&#160; <span class="keywordtype">bool</span> is_automorphism = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00735"></a><span class="lineno"> 735</span>&#160; {</div>
<div class="line"><a name="l00736"></a><span class="lineno"> 736</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.automorphism_test_time);</div>
<div class="line"><a name="l00737"></a><span class="lineno"> 737</span>&#160; is_automorphism = <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#a998043f7ad1e35dc5f6cb23e18f6e7dd">IsGraphAutomorphism</a>(tmp_dynamic_permutation_);</div>
<div class="line"><a name="l00738"></a><span class="lineno"> 738</span>&#160; u.AlsoUpdate(is_automorphism ? &amp;stats_.automorphism_test_success_time</div>
<div class="line"><a name="l00739"></a><span class="lineno"> 739</span>&#160; : &amp;stats_.automorphism_test_fail_time);</div>
<div class="line"><a name="l00740"></a><span class="lineno"> 740</span>&#160; }</div>
<div class="line"><a name="l00741"></a><span class="lineno"> 741</span>&#160; <span class="keywordflow">if</span> (is_automorphism) {</div>
<div class="line"><a name="l00742"></a><span class="lineno"> 742</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.search_finalize_time);</div>
<div class="line"><a name="l00743"></a><span class="lineno"> 743</span>&#160; <span class="comment">// We found a valid permutation. We can return it, but first we</span></div>
<div class="line"><a name="l00744"></a><span class="lineno"> 744</span>&#160; <span class="comment">// must restore the partitions to their original state.</span></div>
<div class="line"><a name="l00745"></a><span class="lineno"> 745</span>&#160; std::unique_ptr&lt;SparsePermutation&gt; sparse_permutation(</div>
<div class="line"><a name="l00746"></a><span class="lineno"> 746</span>&#160; tmp_dynamic_permutation_.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#a4829347e4722a1281369b9a251280fcc">CreateSparsePermutation</a>());</div>
<div class="line"><a name="l00747"></a><span class="lineno"> 747</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Automorphism found: &quot;</span> &lt;&lt; sparse_permutation-&gt;DebugString();</div>
<div class="line"><a name="l00748"></a><span class="lineno"> 748</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> base_num_parts =</div>
<div class="line"><a name="l00749"></a><span class="lineno"> 749</span>&#160; search_states_[0].num_parts_before_trying_to_map_base_node;</div>
<div class="line"><a name="l00750"></a><span class="lineno"> 750</span>&#160; base_partition-&gt;UndoRefineUntilNumPartsEqual(base_num_parts);</div>
<div class="line"><a name="l00751"></a><span class="lineno"> 751</span>&#160; image_partition-&gt;UndoRefineUntilNumPartsEqual(base_num_parts);</div>
<div class="line"><a name="l00752"></a><span class="lineno"> 752</span>&#160; tmp_dynamic_permutation_.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#a372de693ad40b3f42839c8ec6ac845f4">Reset</a>();</div>
<div class="line"><a name="l00753"></a><span class="lineno"> 753</span>&#160; search_states_.clear();</div>
<div class="line"><a name="l00754"></a><span class="lineno"> 754</span>&#160; </div>
<div class="line"><a name="l00755"></a><span class="lineno"> 755</span>&#160; search_time_updater.AlsoUpdate(&amp;stats_.search_time_success);</div>
<div class="line"><a name="l00756"></a><span class="lineno"> 756</span>&#160; <span class="keywordflow">return</span> sparse_permutation;</div>
<div class="line"><a name="l00757"></a><span class="lineno"> 757</span>&#160; }</div>
<div class="line"><a name="l00758"></a><span class="lineno"> 758</span>&#160; </div>
<div class="line"><a name="l00759"></a><span class="lineno"> 759</span>&#160; <span class="comment">// The permutation isn&#39;t a valid automorphism. Either the partitions were</span></div>
<div class="line"><a name="l00760"></a><span class="lineno"> 760</span>&#160; <span class="comment">// fully refined, and we deem them incompatible, or they weren&#39;t, and we</span></div>
<div class="line"><a name="l00761"></a><span class="lineno"> 761</span>&#160; <span class="comment">// consider them as &#39;not a full match&#39;.</span></div>
<div class="line"><a name="l00762"></a><span class="lineno"> 762</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Permutation candidate isn&#39;t a valid automorphism.&quot;</span>;</div>
<div class="line"><a name="l00763"></a><span class="lineno"> 763</span>&#160; <span class="keywordflow">if</span> (base_partition-&gt;NumParts() == NumNodes()) {</div>
<div class="line"><a name="l00764"></a><span class="lineno"> 764</span>&#160; <span class="comment">// Fully refined: the partitions are incompatible.</span></div>
<div class="line"><a name="l00765"></a><span class="lineno"> 765</span>&#160; compatible = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00766"></a><span class="lineno"> 766</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.dynamic_permutation_undo_time);</div>
<div class="line"><a name="l00767"></a><span class="lineno"> 767</span>&#160; tmp_dynamic_permutation_.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#ae8f61c84a06024a7d6343902f44e7e59">UndoLastMappings</a>(&amp;base_singletons);</div>
<div class="line"><a name="l00768"></a><span class="lineno"> 768</span>&#160; } <span class="keywordflow">else</span> {</div>
<div class="line"><a name="l00769"></a><span class="lineno"> 769</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.map_reelection_time);</div>
<div class="line"><a name="l00770"></a><span class="lineno"> 770</span>&#160; <span class="comment">// TODO(user, viger): try to get the non-singleton part from</span></div>
<div class="line"><a name="l00771"></a><span class="lineno"> 771</span>&#160; <span class="comment">// DynamicPermutation in O(1). On some graphs like the symmetry of the</span></div>
<div class="line"><a name="l00772"></a><span class="lineno"> 772</span>&#160; <span class="comment">// mip problem lectsched-4-obj.mps.gz, this take the majority of the</span></div>
<div class="line"><a name="l00773"></a><span class="lineno"> 773</span>&#160; <span class="comment">// time!</span></div>
<div class="line"><a name="l00774"></a><span class="lineno"> 774</span>&#160; <span class="keywordtype">int</span> non_singleton_part = 0;</div>
<div class="line"><a name="l00775"></a><span class="lineno"> 775</span>&#160; {</div>
<div class="line"><a name="l00776"></a><span class="lineno"> 776</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.non_singleton_search_time);</div>
<div class="line"><a name="l00777"></a><span class="lineno"> 777</span>&#160; <span class="keywordflow">while</span> (base_partition-&gt;SizeOfPart(non_singleton_part) == 1) {</div>
<div class="line"><a name="l00778"></a><span class="lineno"> 778</span>&#160; ++non_singleton_part;</div>
<div class="line"><a name="l00779"></a><span class="lineno"> 779</span>&#160; <a class="code" href="base_2logging_8h.html#ab62f5ed8f2d48e29802be0cbbcd1359a">DCHECK_LT</a>(non_singleton_part, base_partition-&gt;NumParts());</div>
<div class="line"><a name="l00780"></a><span class="lineno"> 780</span>&#160; }</div>
<div class="line"><a name="l00781"></a><span class="lineno"> 781</span>&#160; }</div>
<div class="line"><a name="l00782"></a><span class="lineno"> 782</span>&#160; time_limit_-&gt;<a class="code" href="classoperations__research_1_1_time_limit.html#af90cfd1fc238433fc303ee28c5914eb9">AdvanceDeterministicTime</a>(</div>
<div class="line"><a name="l00783"></a><span class="lineno"> 783</span>&#160; 1e-9 * <span class="keyword">static_cast&lt;</span><span class="keywordtype">double</span><span class="keyword">&gt;</span>(non_singleton_part));</div>
<div class="line"><a name="l00784"></a><span class="lineno"> 784</span>&#160; </div>
<div class="line"><a name="l00785"></a><span class="lineno"> 785</span>&#160; <span class="comment">// The partitions are compatible, but we&#39;ll deepen the search on some</span></div>
<div class="line"><a name="l00786"></a><span class="lineno"> 786</span>&#160; <span class="comment">// non-singleton part. We can pick any base and image node in this case.</span></div>
<div class="line"><a name="l00787"></a><span class="lineno"> 787</span>&#160; GetBestMapping(*base_partition, *image_partition, non_singleton_part,</div>
<div class="line"><a name="l00788"></a><span class="lineno"> 788</span>&#160; &amp;next_base_node, &amp;next_image_node);</div>
<div class="line"><a name="l00789"></a><span class="lineno"> 789</span>&#160; }</div>
<div class="line"><a name="l00790"></a><span class="lineno"> 790</span>&#160; }</div>
<div class="line"><a name="l00791"></a><span class="lineno"> 791</span>&#160; </div>
<div class="line"><a name="l00792"></a><span class="lineno"> 792</span>&#160; <span class="comment">// Now we&#39;ve fully diagnosed our partitions, and have already dealt with</span></div>
<div class="line"><a name="l00793"></a><span class="lineno"> 793</span>&#160; <span class="comment">// case 2). We&#39;re left to deal with 1) and 3).</span></div>
<div class="line"><a name="l00794"></a><span class="lineno"> 794</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00795"></a><span class="lineno"> 795</span>&#160; <span class="comment">// Case 1): partitions are incompatible.</span></div>
<div class="line"><a name="l00796"></a><span class="lineno"> 796</span>&#160; <span class="keywordflow">if</span> (!compatible) {</div>
<div class="line"><a name="l00797"></a><span class="lineno"> 797</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.backtracking_time);</div>
<div class="line"><a name="l00798"></a><span class="lineno"> 798</span>&#160; <span class="comment">// We invalidate the current image node, and prune the remaining image</span></div>
<div class="line"><a name="l00799"></a><span class="lineno"> 799</span>&#160; <span class="comment">// nodes. We might be left with no other image nodes, which means that</span></div>
<div class="line"><a name="l00800"></a><span class="lineno"> 800</span>&#160; <span class="comment">// we&#39;ll backtrack, i.e. pop our current SearchState and invalidate the</span></div>
<div class="line"><a name="l00801"></a><span class="lineno"> 801</span>&#160; <span class="comment">// &#39;current&#39; image node of the upper SearchState (which might lead to us</span></div>
<div class="line"><a name="l00802"></a><span class="lineno"> 802</span>&#160; <span class="comment">// backtracking it, and so on).</span></div>
<div class="line"><a name="l00803"></a><span class="lineno"> 803</span>&#160; <span class="keywordflow">while</span> (!search_states_.empty()) {</div>
<div class="line"><a name="l00804"></a><span class="lineno"> 804</span>&#160; SearchState* <span class="keyword">const</span> last_ss = &amp;search_states_.back();</div>
<div class="line"><a name="l00805"></a><span class="lineno"> 805</span>&#160; image_partition-&gt;UndoRefineUntilNumPartsEqual(</div>
<div class="line"><a name="l00806"></a><span class="lineno"> 806</span>&#160; last_ss-&gt;num_parts_before_trying_to_map_base_node);</div>
<div class="line"><a name="l00807"></a><span class="lineno"> 807</span>&#160; <span class="keywordflow">if</span> (last_ss-&gt;first_image_node &gt;= 0) {</div>
<div class="line"><a name="l00808"></a><span class="lineno"> 808</span>&#160; <span class="comment">// Find out and prune the remaining potential image nodes: there is</span></div>
<div class="line"><a name="l00809"></a><span class="lineno"> 809</span>&#160; <span class="comment">// no permutation that maps base_node -&gt; image_node that is</span></div>
<div class="line"><a name="l00810"></a><span class="lineno"> 810</span>&#160; <span class="comment">// compatible with the current partition, so there can&#39;t be a</span></div>
<div class="line"><a name="l00811"></a><span class="lineno"> 811</span>&#160; <span class="comment">// permutation that maps base_node -&gt; X either, for all X in the orbit</span></div>
<div class="line"><a name="l00812"></a><span class="lineno"> 812</span>&#160; <span class="comment">// of &#39;image_node&#39; under valid permutations compatible with the</span></div>
<div class="line"><a name="l00813"></a><span class="lineno"> 813</span>&#160; <span class="comment">// current partition. Ditto for other potential image nodes.</span></div>
<div class="line"><a name="l00814"></a><span class="lineno"> 814</span>&#160; <span class="comment">//</span></div>
<div class="line"><a name="l00815"></a><span class="lineno"> 815</span>&#160; <span class="comment">// TODO(user): fix this: we should really be collecting all</span></div>
<div class="line"><a name="l00816"></a><span class="lineno"> 816</span>&#160; <span class="comment">// permutations displacing any node in &quot;image_part&quot;, for the pruning</span></div>
<div class="line"><a name="l00817"></a><span class="lineno"> 817</span>&#160; <span class="comment">// to be really exhaustive. We could also consider alternative ways,</span></div>
<div class="line"><a name="l00818"></a><span class="lineno"> 818</span>&#160; <span class="comment">// like incrementally maintaining the list of permutations compatible</span></div>
<div class="line"><a name="l00819"></a><span class="lineno"> 819</span>&#160; <span class="comment">// with the partition so far.</span></div>
<div class="line"><a name="l00820"></a><span class="lineno"> 820</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> part = image_partition-&gt;PartOf(last_ss-&gt;first_image_node);</div>
<div class="line"><a name="l00821"></a><span class="lineno"> 821</span>&#160; last_ss-&gt;remaining_pruned_image_nodes.reserve(</div>
<div class="line"><a name="l00822"></a><span class="lineno"> 822</span>&#160; image_partition-&gt;SizeOfPart(part));</div>
<div class="line"><a name="l00823"></a><span class="lineno"> 823</span>&#160; last_ss-&gt;remaining_pruned_image_nodes.push_back(</div>
<div class="line"><a name="l00824"></a><span class="lineno"> 824</span>&#160; last_ss-&gt;first_image_node);</div>
<div class="line"><a name="l00825"></a><span class="lineno"> 825</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> e : image_partition-&gt;ElementsInPart(part)) {</div>
<div class="line"><a name="l00826"></a><span class="lineno"> 826</span>&#160; <span class="keywordflow">if</span> (e != last_ss-&gt;first_image_node) {</div>
<div class="line"><a name="l00827"></a><span class="lineno"> 827</span>&#160; last_ss-&gt;remaining_pruned_image_nodes.push_back(e);</div>
<div class="line"><a name="l00828"></a><span class="lineno"> 828</span>&#160; }</div>
<div class="line"><a name="l00829"></a><span class="lineno"> 829</span>&#160; }</div>
<div class="line"><a name="l00830"></a><span class="lineno"> 830</span>&#160; {</div>
<div class="line"><a name="l00831"></a><span class="lineno"> 831</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.pruning_time);</div>
<div class="line"><a name="l00832"></a><span class="lineno"> 832</span>&#160; PruneOrbitsUnderPermutationsCompatibleWithPartition(</div>
<div class="line"><a name="l00833"></a><span class="lineno"> 833</span>&#160; *image_partition, generators_found_so_far,</div>
<div class="line"><a name="l00834"></a><span class="lineno"> 834</span>&#160; permutations_displacing_node[last_ss-&gt;first_image_node],</div>
<div class="line"><a name="l00835"></a><span class="lineno"> 835</span>&#160; &amp;last_ss-&gt;remaining_pruned_image_nodes);</div>
<div class="line"><a name="l00836"></a><span class="lineno"> 836</span>&#160; }</div>
<div class="line"><a name="l00837"></a><span class="lineno"> 837</span>&#160; SwapFrontAndBack(&amp;last_ss-&gt;remaining_pruned_image_nodes);</div>
<div class="line"><a name="l00838"></a><span class="lineno"> 838</span>&#160; <a class="code" href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a>(last_ss-&gt;remaining_pruned_image_nodes.back(),</div>
<div class="line"><a name="l00839"></a><span class="lineno"> 839</span>&#160; last_ss-&gt;first_image_node);</div>
<div class="line"><a name="l00840"></a><span class="lineno"> 840</span>&#160; last_ss-&gt;first_image_node = -1;</div>
<div class="line"><a name="l00841"></a><span class="lineno"> 841</span>&#160; }</div>
<div class="line"><a name="l00842"></a><span class="lineno"> 842</span>&#160; last_ss-&gt;remaining_pruned_image_nodes.pop_back();</div>
<div class="line"><a name="l00843"></a><span class="lineno"> 843</span>&#160; <span class="keywordflow">if</span> (!last_ss-&gt;remaining_pruned_image_nodes.empty()) <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00844"></a><span class="lineno"> 844</span>&#160; </div>
<div class="line"><a name="l00845"></a><span class="lineno"> 845</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot;Backtracking one level up.&quot;</span>;</div>
<div class="line"><a name="l00846"></a><span class="lineno"> 846</span>&#160; base_partition-&gt;UndoRefineUntilNumPartsEqual(</div>
<div class="line"><a name="l00847"></a><span class="lineno"> 847</span>&#160; last_ss-&gt;num_parts_before_trying_to_map_base_node);</div>
<div class="line"><a name="l00848"></a><span class="lineno"> 848</span>&#160; <span class="comment">// If this was the root search state (i.e. we fully backtracked and</span></div>
<div class="line"><a name="l00849"></a><span class="lineno"> 849</span>&#160; <span class="comment">// will exit the search after that), we don&#39;t have mappings to undo.</span></div>
<div class="line"><a name="l00850"></a><span class="lineno"> 850</span>&#160; <span class="comment">// We run UndoLastMappings() anyway, because it&#39;s a no-op in that case.</span></div>
<div class="line"><a name="l00851"></a><span class="lineno"> 851</span>&#160; tmp_dynamic_permutation_.<a class="code" href="classoperations__research_1_1_dynamic_permutation.html#ae8f61c84a06024a7d6343902f44e7e59">UndoLastMappings</a>(&amp;base_singletons);</div>
<div class="line"><a name="l00852"></a><span class="lineno"> 852</span>&#160; search_states_.pop_back();</div>
<div class="line"><a name="l00853"></a><span class="lineno"> 853</span>&#160; }</div>
<div class="line"><a name="l00854"></a><span class="lineno"> 854</span>&#160; <span class="comment">// Continue the search.</span></div>
<div class="line"><a name="l00855"></a><span class="lineno"> 855</span>&#160; <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00856"></a><span class="lineno"> 856</span>&#160; }</div>
<div class="line"><a name="l00857"></a><span class="lineno"> 857</span>&#160; </div>
<div class="line"><a name="l00858"></a><span class="lineno"> 858</span>&#160; <span class="comment">// Case 3): we deepen the search.</span></div>
<div class="line"><a name="l00859"></a><span class="lineno"> 859</span>&#160; <span class="comment">// Since the search loop starts from an already-refined base_partition,</span></div>
<div class="line"><a name="l00860"></a><span class="lineno"> 860</span>&#160; <span class="comment">// we must do it here.</span></div>
<div class="line"><a name="l00861"></a><span class="lineno"> 861</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot; Deepening the search.&quot;</span>;</div>
<div class="line"><a name="l00862"></a><span class="lineno"> 862</span>&#160; search_states_.emplace_back(</div>
<div class="line"><a name="l00863"></a><span class="lineno"> 863</span>&#160; next_base_node, next_image_node,</div>
<div class="line"><a name="l00864"></a><span class="lineno"> 864</span>&#160; <span class="comment">/*num_parts_before_trying_to_map_base_node*/</span> base_partition-&gt;NumParts(),</div>
<div class="line"><a name="l00865"></a><span class="lineno"> 865</span>&#160; min_potential_mismatching_part_index);</div>
<div class="line"><a name="l00866"></a><span class="lineno"> 866</span>&#160; {</div>
<div class="line"><a name="l00867"></a><span class="lineno"> 867</span>&#160; <a class="code" href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">ScopedTimeDistributionUpdater</a> u(&amp;stats_.search_refine_time);</div>
<div class="line"><a name="l00868"></a><span class="lineno"> 868</span>&#160; <a class="code" href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a">DistinguishNodeInPartition</a>(next_base_node, base_partition,</div>
<div class="line"><a name="l00869"></a><span class="lineno"> 869</span>&#160; &amp;base_singletons);</div>
<div class="line"><a name="l00870"></a><span class="lineno"> 870</span>&#160; }</div>
<div class="line"><a name="l00871"></a><span class="lineno"> 871</span>&#160; }</div>
<div class="line"><a name="l00872"></a><span class="lineno"> 872</span>&#160; <span class="comment">// We exhausted the search; we didn&#39;t find any permutation.</span></div>
<div class="line"><a name="l00873"></a><span class="lineno"> 873</span>&#160; search_time_updater.AlsoUpdate(&amp;stats_.search_time_fail);</div>
<div class="line"><a name="l00874"></a><span class="lineno"> 874</span>&#160; <span class="keywordflow">return</span> <span class="keyword">nullptr</span>;</div>
<div class="line"><a name="l00875"></a><span class="lineno"> 875</span>&#160;}</div>
<div class="line"><a name="l00876"></a><span class="lineno"> 876</span>&#160; </div>
<div class="line"><a name="l00877"></a><span class="lineno"> 877</span>&#160;<a class="code" href="classutil_1_1_begin_end_wrapper.html">util::BeginEndWrapper&lt;std::vector&lt;int&gt;::const_iterator</a>&gt;</div>
<div class="line"><a name="l00878"></a><span class="lineno"> 878</span>&#160;GraphSymmetryFinder::TailsOfIncomingArcsTo(<span class="keywordtype">int</span> node)<span class="keyword"> const </span>{</div>
<div class="line"><a name="l00879"></a><span class="lineno"> 879</span>&#160; <span class="keywordflow">return</span> <a class="code" href="classutil_1_1_begin_end_wrapper.html">util::BeginEndWrapper&lt;std::vector&lt;int&gt;::const_iterator</a>&gt;(</div>
<div class="line"><a name="l00880"></a><span class="lineno"> 880</span>&#160; flattened_reverse_adj_lists_.begin() + reverse_adj_list_index_[node],</div>
<div class="line"><a name="l00881"></a><span class="lineno"> 881</span>&#160; flattened_reverse_adj_lists_.begin() + reverse_adj_list_index_[node + 1]);</div>
<div class="line"><a name="l00882"></a><span class="lineno"> 882</span>&#160;}</div>
<div class="line"><a name="l00883"></a><span class="lineno"> 883</span>&#160; </div>
<div class="line"><a name="l00884"></a><span class="lineno"> 884</span>&#160;<span class="keywordtype">void</span> GraphSymmetryFinder::PruneOrbitsUnderPermutationsCompatibleWithPartition(</div>
<div class="line"><a name="l00885"></a><span class="lineno"> 885</span>&#160; <span class="keyword">const</span> DynamicPartition&amp; partition,</div>
<div class="line"><a name="l00886"></a><span class="lineno"> 886</span>&#160; <span class="keyword">const</span> std::vector&lt;std::unique_ptr&lt;SparsePermutation&gt;&gt;&amp; permutations,</div>
<div class="line"><a name="l00887"></a><span class="lineno"> 887</span>&#160; <span class="keyword">const</span> std::vector&lt;int&gt;&amp; permutation_indices, std::vector&lt;int&gt;* <a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>) {</div>
<div class="line"><a name="l00888"></a><span class="lineno"> 888</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot; Pruning [&quot;</span> &lt;&lt; absl::StrJoin(*<a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>, <span class="stringliteral">&quot;, &quot;</span>) &lt;&lt; <span class="stringliteral">&quot;]&quot;</span>;</div>
<div class="line"><a name="l00889"></a><span class="lineno"> 889</span>&#160; <span class="comment">// TODO(user): apply a smarter test to decide whether to do the pruning</span></div>
<div class="line"><a name="l00890"></a><span class="lineno"> 890</span>&#160; <span class="comment">// or not: we can accurately estimate the cost of pruning (iterate through</span></div>
<div class="line"><a name="l00891"></a><span class="lineno"> 891</span>&#160; <span class="comment">// all generators found so far) and its estimated benefit (the cost of</span></div>
<div class="line"><a name="l00892"></a><span class="lineno"> 892</span>&#160; <span class="comment">// the search below the state that we&#39;re currently in, times the expected</span></div>
<div class="line"><a name="l00893"></a><span class="lineno"> 893</span>&#160; <span class="comment">// number of pruned nodes). Sometimes it may be better to skip the</span></div>
<div class="line"><a name="l00894"></a><span class="lineno"> 894</span>&#160; <span class="comment">// pruning.</span></div>
<div class="line"><a name="l00895"></a><span class="lineno"> 895</span>&#160; <span class="keywordflow">if</span> (<a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>-&gt;size() &lt;= 1) <span class="keywordflow">return</span>;</div>
<div class="line"><a name="l00896"></a><span class="lineno"> 896</span>&#160; </div>
<div class="line"><a name="l00897"></a><span class="lineno"> 897</span>&#160; <span class="comment">// Iterate on all targeted permutations. If they are compatible, apply</span></div>
<div class="line"><a name="l00898"></a><span class="lineno"> 898</span>&#160; <span class="comment">// them to tmp_partition_ which will contain the incrementally merged</span></div>
<div class="line"><a name="l00899"></a><span class="lineno"> 899</span>&#160; <span class="comment">// equivalence classes.</span></div>
<div class="line"><a name="l00900"></a><span class="lineno"> 900</span>&#160; std::vector&lt;int&gt;&amp; tmp_nodes_on_support =</div>
<div class="line"><a name="l00901"></a><span class="lineno"> 901</span>&#160; tmp_stack_; <span class="comment">// Rename, for readability.</span></div>
<div class="line"><a name="l00902"></a><span class="lineno"> 902</span>&#160; <a class="code" href="base_2logging_8h.html#ae17f8119c108cf3070bad3449c7e0006">DCHECK</a>(tmp_nodes_on_support.empty());</div>
<div class="line"><a name="l00903"></a><span class="lineno"> 903</span>&#160; <span class="comment">// TODO(user): investigate further optimizations: maybe it&#39;s possible</span></div>
<div class="line"><a name="l00904"></a><span class="lineno"> 904</span>&#160; <span class="comment">// to incrementally maintain the set of permutations that is compatible</span></div>
<div class="line"><a name="l00905"></a><span class="lineno"> 905</span>&#160; <span class="comment">// with the current partition, instead of recomputing it here?</span></div>
<div class="line"><a name="l00906"></a><span class="lineno"> 906</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> p : permutation_indices) {</div>
<div class="line"><a name="l00907"></a><span class="lineno"> 907</span>&#160; <span class="keyword">const</span> SparsePermutation&amp; permutation = *permutations[p];</div>
<div class="line"><a name="l00908"></a><span class="lineno"> 908</span>&#160; <span class="comment">// First, a quick compatibility check: the permutation&#39;s cycles must be</span></div>
<div class="line"><a name="l00909"></a><span class="lineno"> 909</span>&#160; <span class="comment">// smaller or equal to the size of the part that they are included in.</span></div>
<div class="line"><a name="l00910"></a><span class="lineno"> 910</span>&#160; <span class="keywordtype">bool</span> compatible = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00911"></a><span class="lineno"> 911</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> c = 0; c &lt; permutation.NumCycles(); ++c) {</div>
<div class="line"><a name="l00912"></a><span class="lineno"> 912</span>&#160; <span class="keyword">const</span> SparsePermutation::Iterator cycle = permutation.Cycle(c);</div>
<div class="line"><a name="l00913"></a><span class="lineno"> 913</span>&#160; <span class="keywordflow">if</span> (cycle.size() &gt;</div>
<div class="line"><a name="l00914"></a><span class="lineno"> 914</span>&#160; partition.SizeOfPart(partition.PartOf(*cycle.begin()))) {</div>
<div class="line"><a name="l00915"></a><span class="lineno"> 915</span>&#160; compatible = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00916"></a><span class="lineno"> 916</span>&#160; <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00917"></a><span class="lineno"> 917</span>&#160; }</div>
<div class="line"><a name="l00918"></a><span class="lineno"> 918</span>&#160; }</div>
<div class="line"><a name="l00919"></a><span class="lineno"> 919</span>&#160; <span class="keywordflow">if</span> (!compatible) <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00920"></a><span class="lineno"> 920</span>&#160; <span class="comment">// Now the full compatibility check: each cycle of the permutation must</span></div>
<div class="line"><a name="l00921"></a><span class="lineno"> 921</span>&#160; <span class="comment">// be fully included in an image part.</span></div>
<div class="line"><a name="l00922"></a><span class="lineno"> 922</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> c = 0; c &lt; permutation.NumCycles(); ++c) {</div>
<div class="line"><a name="l00923"></a><span class="lineno"> 923</span>&#160; <span class="keywordtype">int</span> part = -1;</div>
<div class="line"><a name="l00924"></a><span class="lineno"> 924</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : permutation.Cycle(c)) {</div>
<div class="line"><a name="l00925"></a><span class="lineno"> 925</span>&#160; <span class="keywordflow">if</span> (partition.PartOf(node) != part) {</div>
<div class="line"><a name="l00926"></a><span class="lineno"> 926</span>&#160; <span class="keywordflow">if</span> (part &gt;= 0) {</div>
<div class="line"><a name="l00927"></a><span class="lineno"> 927</span>&#160; compatible = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00928"></a><span class="lineno"> 928</span>&#160; <span class="keywordflow">break</span>;</div>
<div class="line"><a name="l00929"></a><span class="lineno"> 929</span>&#160; }</div>
<div class="line"><a name="l00930"></a><span class="lineno"> 930</span>&#160; part = partition.PartOf(node); <span class="comment">// Initilization of &#39;part&#39;.</span></div>
<div class="line"><a name="l00931"></a><span class="lineno"> 931</span>&#160; }</div>
<div class="line"><a name="l00932"></a><span class="lineno"> 932</span>&#160; }</div>
<div class="line"><a name="l00933"></a><span class="lineno"> 933</span>&#160; }</div>
<div class="line"><a name="l00934"></a><span class="lineno"> 934</span>&#160; <span class="keywordflow">if</span> (!compatible) <span class="keywordflow">continue</span>;</div>
<div class="line"><a name="l00935"></a><span class="lineno"> 935</span>&#160; <span class="comment">// The permutation is fully compatible!</span></div>
<div class="line"><a name="l00936"></a><span class="lineno"> 936</span>&#160; <span class="comment">// TODO(user): ignore cycles that are outside of image_part.</span></div>
<div class="line"><a name="l00937"></a><span class="lineno"> 937</span>&#160; MergeNodeEquivalenceClassesAccordingToPermutation(permutation,</div>
<div class="line"><a name="l00938"></a><span class="lineno"> 938</span>&#160; &amp;tmp_partition_, <span class="keyword">nullptr</span>);</div>
<div class="line"><a name="l00939"></a><span class="lineno"> 939</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : permutation.Support()) {</div>
<div class="line"><a name="l00940"></a><span class="lineno"> 940</span>&#160; <span class="keywordflow">if</span> (!tmp_node_mask_[node]) {</div>
<div class="line"><a name="l00941"></a><span class="lineno"> 941</span>&#160; tmp_node_mask_[node] = <span class="keyword">true</span>;</div>
<div class="line"><a name="l00942"></a><span class="lineno"> 942</span>&#160; tmp_nodes_on_support.push_back(node);</div>
<div class="line"><a name="l00943"></a><span class="lineno"> 943</span>&#160; }</div>
<div class="line"><a name="l00944"></a><span class="lineno"> 944</span>&#160; }</div>
<div class="line"><a name="l00945"></a><span class="lineno"> 945</span>&#160; }</div>
<div class="line"><a name="l00946"></a><span class="lineno"> 946</span>&#160; </div>
<div class="line"><a name="l00947"></a><span class="lineno"> 947</span>&#160; <span class="comment">// Apply the pruning.</span></div>
<div class="line"><a name="l00948"></a><span class="lineno"> 948</span>&#160; tmp_partition_.<a class="code" href="classoperations__research_1_1_merging_partition.html#a80761f181b521aa284b7e687776b9fde">KeepOnlyOneNodePerPart</a>(<a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>);</div>
<div class="line"><a name="l00949"></a><span class="lineno"> 949</span>&#160; </div>
<div class="line"><a name="l00950"></a><span class="lineno"> 950</span>&#160; <span class="comment">// Reset the &quot;tmp_&quot; structures sparsely.</span></div>
<div class="line"><a name="l00951"></a><span class="lineno"> 951</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> node : tmp_nodes_on_support) {</div>
<div class="line"><a name="l00952"></a><span class="lineno"> 952</span>&#160; tmp_node_mask_[node] = <span class="keyword">false</span>;</div>
<div class="line"><a name="l00953"></a><span class="lineno"> 953</span>&#160; tmp_partition_.<a class="code" href="classoperations__research_1_1_merging_partition.html#a4368033ed0d5b2fc75727265e0c8f2d7">ResetNode</a>(node);</div>
<div class="line"><a name="l00954"></a><span class="lineno"> 954</span>&#160; }</div>
<div class="line"><a name="l00955"></a><span class="lineno"> 955</span>&#160; tmp_nodes_on_support.clear();</div>
<div class="line"><a name="l00956"></a><span class="lineno"> 956</span>&#160; <a class="code" href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a>(4) &lt;&lt; <span class="stringliteral">&quot; Pruned: [&quot;</span> &lt;&lt; absl::StrJoin(*<a class="code" href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a>, <span class="stringliteral">&quot;, &quot;</span>) &lt;&lt; <span class="stringliteral">&quot;]&quot;</span>;</div>
<div class="line"><a name="l00957"></a><span class="lineno"> 957</span>&#160;}</div>
<div class="line"><a name="l00958"></a><span class="lineno"> 958</span>&#160; </div>
<div class="line"><a name="l00959"></a><span class="lineno"> 959</span>&#160;<span class="keywordtype">bool</span> GraphSymmetryFinder::ConfirmFullMatchOrFindNextMappingDecision(</div>
<div class="line"><a name="l00960"></a><span class="lineno"> 960</span>&#160; <span class="keyword">const</span> DynamicPartition&amp; base_partition,</div>
<div class="line"><a name="l00961"></a><span class="lineno"> 961</span>&#160; <span class="keyword">const</span> DynamicPartition&amp; image_partition,</div>
<div class="line"><a name="l00962"></a><span class="lineno"> 962</span>&#160; <span class="keyword">const</span> DynamicPermutation&amp; current_permutation_candidate,</div>
<div class="line"><a name="l00963"></a><span class="lineno"> 963</span>&#160; <span class="keywordtype">int</span>* min_potential_mismatching_part_index_io, <span class="keywordtype">int</span>* next_base_node,</div>
<div class="line"><a name="l00964"></a><span class="lineno"> 964</span>&#160; <span class="keywordtype">int</span>* next_image_node)<span class="keyword"> const </span>{</div>
<div class="line"><a name="l00965"></a><span class="lineno"> 965</span>&#160; *next_base_node = -1;</div>
<div class="line"><a name="l00966"></a><span class="lineno"> 966</span>&#160; *next_image_node = -1;</div>
<div class="line"><a name="l00967"></a><span class="lineno"> 967</span>&#160; </div>
<div class="line"><a name="l00968"></a><span class="lineno"> 968</span>&#160; <span class="comment">// The following clause should be true most of the times, except in some</span></div>
<div class="line"><a name="l00969"></a><span class="lineno"> 969</span>&#160; <span class="comment">// specific use cases.</span></div>
<div class="line"><a name="l00970"></a><span class="lineno"> 970</span>&#160; <span class="keywordflow">if</span> (!absl::GetFlag(FLAGS_minimize_permutation_support_size)) {</div>
<div class="line"><a name="l00971"></a><span class="lineno"> 971</span>&#160; <span class="comment">// First, we try to map the loose ends of the current permutations: these</span></div>
<div class="line"><a name="l00972"></a><span class="lineno"> 972</span>&#160; <span class="comment">// loose ends can&#39;t be mapped to themselves, so we&#39;ll have to map them to</span></div>
<div class="line"><a name="l00973"></a><span class="lineno"> 973</span>&#160; <span class="comment">// something anyway.</span></div>
<div class="line"><a name="l00974"></a><span class="lineno"> 974</span>&#160; <span class="keywordflow">for</span> (<span class="keyword">const</span> <span class="keywordtype">int</span> loose_node : current_permutation_candidate.LooseEnds()) {</div>
<div class="line"><a name="l00975"></a><span class="lineno"> 975</span>&#160; <a class="code" href="base_2logging_8h.html#ab4f56aa24c4c9cddc47a6abd2d747f9a">DCHECK_GT</a>(base_partition.ElementsInSamePartAs(loose_node).size(), 1);</div>
<div class="line"><a name="l00976"></a><span class="lineno"> 976</span>&#160; *next_base_node = loose_node;</div>
<div class="line"><a name="l00977"></a><span class="lineno"> 977</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> root = current_permutation_candidate.RootOf(loose_node);</div>
<div class="line"><a name="l00978"></a><span class="lineno"> 978</span>&#160; <a class="code" href="base_2logging_8h.html#a46e69120fbd3b36e6960e096d23b66f0">DCHECK_NE</a>(root, loose_node);</div>
<div class="line"><a name="l00979"></a><span class="lineno"> 979</span>&#160; <span class="keywordflow">if</span> (image_partition.PartOf(root) == base_partition.PartOf(loose_node)) {</div>
<div class="line"><a name="l00980"></a><span class="lineno"> 980</span>&#160; <span class="comment">// We prioritize mapping a loose end to its own root (i.e. close a</span></div>
<div class="line"><a name="l00981"></a><span class="lineno"> 981</span>&#160; <span class="comment">// cycle), if possible, like here: we exit immediately.</span></div>
<div class="line"><a name="l00982"></a><span class="lineno"> 982</span>&#160; *next_image_node = root;</div>
<div class="line"><a name="l00983"></a><span class="lineno"> 983</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l00984"></a><span class="lineno"> 984</span>&#160; }</div>
<div class="line"><a name="l00985"></a><span class="lineno"> 985</span>&#160; }</div>
<div class="line"><a name="l00986"></a><span class="lineno"> 986</span>&#160; <span class="keywordflow">if</span> (*next_base_node != -1) {</div>
<div class="line"><a name="l00987"></a><span class="lineno"> 987</span>&#160; <span class="comment">// We found loose ends, but none that mapped to its own root. Just pick</span></div>
<div class="line"><a name="l00988"></a><span class="lineno"> 988</span>&#160; <span class="comment">// any valid image.</span></div>
<div class="line"><a name="l00989"></a><span class="lineno"> 989</span>&#160; *next_image_node =</div>
<div class="line"><a name="l00990"></a><span class="lineno"> 990</span>&#160; *image_partition</div>
<div class="line"><a name="l00991"></a><span class="lineno"> 991</span>&#160; .ElementsInPart(base_partition.PartOf(*next_base_node))</div>
<div class="line"><a name="l00992"></a><span class="lineno"> 992</span>&#160; .begin();</div>
<div class="line"><a name="l00993"></a><span class="lineno"> 993</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l00994"></a><span class="lineno"> 994</span>&#160; }</div>
<div class="line"><a name="l00995"></a><span class="lineno"> 995</span>&#160; }</div>
<div class="line"><a name="l00996"></a><span class="lineno"> 996</span>&#160; </div>
<div class="line"><a name="l00997"></a><span class="lineno"> 997</span>&#160; <span class="comment">// If there is no loose node (i.e. the current permutation only has closed</span></div>
<div class="line"><a name="l00998"></a><span class="lineno"> 998</span>&#160; <span class="comment">// cycles), we fall back to picking any part that is different in the base and</span></div>
<div class="line"><a name="l00999"></a><span class="lineno"> 999</span>&#160; <span class="comment">// image partitions; because we know that some mapping decision will have to</span></div>
<div class="line"><a name="l01000"></a><span class="lineno"> 1000</span>&#160; <span class="comment">// be made there.</span></div>
<div class="line"><a name="l01001"></a><span class="lineno"> 1001</span>&#160; <span class="comment">// SUBTLE: we use &quot;min_potential_mismatching_part_index_io&quot; to incrementally</span></div>
<div class="line"><a name="l01002"></a><span class="lineno"> 1002</span>&#160; <span class="comment">// keep running this search (for a mismatching part) from where we left off.</span></div>
<div class="line"><a name="l01003"></a><span class="lineno"> 1003</span>&#160; <span class="comment">// TODO(user): implement a simpler search for a mismatching part: it&#39;s</span></div>
<div class="line"><a name="l01004"></a><span class="lineno"> 1004</span>&#160; <span class="comment">// trivially possible if the base partition maintains a hash set of all</span></div>
<div class="line"><a name="l01005"></a><span class="lineno"> 1005</span>&#160; <span class="comment">// Fprints of its parts, and if the image partition uses that to maintain the</span></div>
<div class="line"><a name="l01006"></a><span class="lineno"> 1006</span>&#160; <span class="comment">// list of &#39;different&#39; non-singleton parts.</span></div>
<div class="line"><a name="l01007"></a><span class="lineno"> 1007</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> initial_min_potential_mismatching_part_index =</div>
<div class="line"><a name="l01008"></a><span class="lineno"> 1008</span>&#160; *min_potential_mismatching_part_index_io;</div>
<div class="line"><a name="l01009"></a><span class="lineno"> 1009</span>&#160; <span class="keywordflow">for</span> (; *min_potential_mismatching_part_index_io &lt; base_partition.NumParts();</div>
<div class="line"><a name="l01010"></a><span class="lineno"> 1010</span>&#160; ++*min_potential_mismatching_part_index_io) {</div>
<div class="line"><a name="l01011"></a><span class="lineno"> 1011</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> p = *min_potential_mismatching_part_index_io;</div>
<div class="line"><a name="l01012"></a><span class="lineno"> 1012</span>&#160; <span class="keywordflow">if</span> (base_partition.SizeOfPart(p) != 1 &amp;&amp;</div>
<div class="line"><a name="l01013"></a><span class="lineno"> 1013</span>&#160; base_partition.FprintOfPart(p) != image_partition.FprintOfPart(p)) {</div>
<div class="line"><a name="l01014"></a><span class="lineno"> 1014</span>&#160; GetBestMapping(base_partition, image_partition, p, next_base_node,</div>
<div class="line"><a name="l01015"></a><span class="lineno"> 1015</span>&#160; next_image_node);</div>
<div class="line"><a name="l01016"></a><span class="lineno"> 1016</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l01017"></a><span class="lineno"> 1017</span>&#160; }</div>
<div class="line"><a name="l01018"></a><span class="lineno"> 1018</span>&#160; </div>
<div class="line"><a name="l01019"></a><span class="lineno"> 1019</span>&#160; <span class="keyword">const</span> <span class="keywordtype">int</span> parent = base_partition.ParentOfPart(p);</div>
<div class="line"><a name="l01020"></a><span class="lineno"> 1020</span>&#160; <span class="keywordflow">if</span> (parent &lt; initial_min_potential_mismatching_part_index &amp;&amp;</div>
<div class="line"><a name="l01021"></a><span class="lineno"> 1021</span>&#160; base_partition.SizeOfPart(parent) != 1 &amp;&amp;</div>
<div class="line"><a name="l01022"></a><span class="lineno"> 1022</span>&#160; base_partition.FprintOfPart(parent) !=</div>
<div class="line"><a name="l01023"></a><span class="lineno"> 1023</span>&#160; image_partition.FprintOfPart(parent)) {</div>
<div class="line"><a name="l01024"></a><span class="lineno"> 1024</span>&#160; GetBestMapping(base_partition, image_partition, parent, next_base_node,</div>
<div class="line"><a name="l01025"></a><span class="lineno"> 1025</span>&#160; next_image_node);</div>
<div class="line"><a name="l01026"></a><span class="lineno"> 1026</span>&#160; <span class="keywordflow">return</span> <span class="keyword">false</span>;</div>
<div class="line"><a name="l01027"></a><span class="lineno"> 1027</span>&#160; }</div>
<div class="line"><a name="l01028"></a><span class="lineno"> 1028</span>&#160; }</div>
<div class="line"><a name="l01029"></a><span class="lineno"> 1029</span>&#160; </div>
<div class="line"><a name="l01030"></a><span class="lineno"> 1030</span>&#160; <span class="comment">// We didn&#39;t find an unequal part. DCHECK that our &quot;incremental&quot; check was</span></div>
<div class="line"><a name="l01031"></a><span class="lineno"> 1031</span>&#160; <span class="comment">// actually correct and that all non-singleton parts are indeed equal.</span></div>
<div class="line"><a name="l01032"></a><span class="lineno"> 1032</span>&#160; <span class="keywordflow">if</span> (<a class="code" href="macros_8h.html#a7f536a3b33f9bed8f75734e035d30725">DEBUG_MODE</a>) {</div>
<div class="line"><a name="l01033"></a><span class="lineno"> 1033</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">int</span> p = 0; p &lt; base_partition.NumParts(); ++p) {</div>
<div class="line"><a name="l01034"></a><span class="lineno"> 1034</span>&#160; <span class="keywordflow">if</span> (base_partition.SizeOfPart(p) != 1) {</div>
<div class="line"><a name="l01035"></a><span class="lineno"> 1035</span>&#160; <a class="code" href="base_2logging_8h.html#a7c0ce053b28d53aa4eaf3eb7fb71663b">CHECK_EQ</a>(base_partition.FprintOfPart(p),</div>
<div class="line"><a name="l01036"></a><span class="lineno"> 1036</span>&#160; image_partition.FprintOfPart(p));</div>
<div class="line"><a name="l01037"></a><span class="lineno"> 1037</span>&#160; }</div>
<div class="line"><a name="l01038"></a><span class="lineno"> 1038</span>&#160; }</div>
<div class="line"><a name="l01039"></a><span class="lineno"> 1039</span>&#160; }</div>
<div class="line"><a name="l01040"></a><span class="lineno"> 1040</span>&#160; <span class="keywordflow">return</span> <span class="keyword">true</span>;</div>
<div class="line"><a name="l01041"></a><span class="lineno"> 1041</span>&#160;}</div>
<div class="line"><a name="l01042"></a><span class="lineno"> 1042</span>&#160; </div>
<div class="line"><a name="l01043"></a><span class="lineno"> 1043</span>&#160;std::string GraphSymmetryFinder::SearchState::DebugString()<span class="keyword"> const </span>{</div>
<div class="line"><a name="l01044"></a><span class="lineno"> 1044</span>&#160; <span class="keywordflow">return</span> absl::StrFormat(</div>
<div class="line"><a name="l01045"></a><span class="lineno"> 1045</span>&#160; <span class="stringliteral">&quot;SearchState{ base_node=%d, first_image_node=%d,&quot;</span></div>
<div class="line"><a name="l01046"></a><span class="lineno"> 1046</span>&#160; <span class="stringliteral">&quot; remaining_pruned_image_nodes=[%s],&quot;</span></div>
<div class="line"><a name="l01047"></a><span class="lineno"> 1047</span>&#160; <span class="stringliteral">&quot; num_parts_before_trying_to_map_base_node=%d }&quot;</span>,</div>
<div class="line"><a name="l01048"></a><span class="lineno"> 1048</span>&#160; base_node, first_image_node,</div>
<div class="line"><a name="l01049"></a><span class="lineno"> 1049</span>&#160; absl::StrJoin(remaining_pruned_image_nodes, <span class="stringliteral">&quot; &quot;</span>),</div>
<div class="line"><a name="l01050"></a><span class="lineno"> 1050</span>&#160; num_parts_before_trying_to_map_base_node);</div>
<div class="line"><a name="l01051"></a><span class="lineno"> 1051</span>&#160;}</div>
<div class="line"><a name="l01052"></a><span class="lineno"> 1052</span>&#160; </div>
<div class="line"><a name="l01053"></a><span class="lineno"> 1053</span>&#160;} <span class="comment">// namespace operations_research</span></div>
<div class="ttc" id="aalldiff__cst_8cc_html_a26e6db9bcc64b584051ecc28171ed11f"><div class="ttname"><a href="alldiff__cst_8cc.html#a26e6db9bcc64b584051ecc28171ed11f">max</a></div><div class="ttdeci">int64_t max</div><div class="ttdef"><b>Definition:</b> <a href="alldiff__cst_8cc_source.html#l00140">alldiff_cst.cc:140</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_a46e69120fbd3b36e6960e096d23b66f0"><div class="ttname"><a href="base_2logging_8h.html#a46e69120fbd3b36e6960e096d23b66f0">DCHECK_NE</a></div><div class="ttdeci">#define DCHECK_NE(val1, val2)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00894">base/logging.h:894</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_a7c0ce053b28d53aa4eaf3eb7fb71663b"><div class="ttname"><a href="base_2logging_8h.html#a7c0ce053b28d53aa4eaf3eb7fb71663b">CHECK_EQ</a></div><div class="ttdeci">#define CHECK_EQ(val1, val2)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00705">base/logging.h:705</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_ab4f56aa24c4c9cddc47a6abd2d747f9a"><div class="ttname"><a href="base_2logging_8h.html#ab4f56aa24c4c9cddc47a6abd2d747f9a">DCHECK_GT</a></div><div class="ttdeci">#define DCHECK_GT(val1, val2)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00898">base/logging.h:898</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_ab62f5ed8f2d48e29802be0cbbcd1359a"><div class="ttname"><a href="base_2logging_8h.html#ab62f5ed8f2d48e29802be0cbbcd1359a">DCHECK_LT</a></div><div class="ttdeci">#define DCHECK_LT(val1, val2)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00896">base/logging.h:896</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_accad43a85d781d53381cd53a9894b6ae"><div class="ttname"><a href="base_2logging_8h.html#accad43a85d781d53381cd53a9894b6ae">LOG</a></div><div class="ttdeci">#define LOG(severity)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00423">base/logging.h:423</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_ae17f8119c108cf3070bad3449c7e0006"><div class="ttname"><a href="base_2logging_8h.html#ae17f8119c108cf3070bad3449c7e0006">DCHECK</a></div><div class="ttdeci">#define DCHECK(condition)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00892">base/logging.h:892</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_ae89df3243bbb8341130c7b3f44145ea0"><div class="ttname"><a href="base_2logging_8h.html#ae89df3243bbb8341130c7b3f44145ea0">DCHECK_EQ</a></div><div class="ttdeci">#define DCHECK_EQ(val1, val2)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00893">base/logging.h:893</a></div></div>
<div class="ttc" id="abase_2logging_8h_html_afcaa7cadd41741bb855c2ada1d2ef927"><div class="ttname"><a href="base_2logging_8h.html#afcaa7cadd41741bb855c2ada1d2ef927">VLOG</a></div><div class="ttdeci">#define VLOG(verboselevel)</div><div class="ttdef"><b>Definition:</b> <a href="base_2logging_8h_source.html#l00986">base/logging.h:986</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dense_doubly_linked_list_html"><div class="ttname"><a href="classoperations__research_1_1_dense_doubly_linked_list.html">operations_research::DenseDoublyLinkedList</a></div><div class="ttdef"><b>Definition:</b> <a href="dense__doubly__linked__list_8h_source.html#l00029">dense_doubly_linked_list.h:29</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dense_doubly_linked_list_html_a209f8799ca534e48c873a6613131d358"><div class="ttname"><a href="classoperations__research_1_1_dense_doubly_linked_list.html#a209f8799ca534e48c873a6613131d358">operations_research::DenseDoublyLinkedList::Remove</a></div><div class="ttdeci">void Remove(int i)</div><div class="ttdef"><b>Definition:</b> <a href="dense__doubly__linked__list_8h_source.html#l00068">dense_doubly_linked_list.h:68</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_disabled_scoped_time_distribution_updater_html"><div class="ttname"><a href="classoperations__research_1_1_disabled_scoped_time_distribution_updater.html">operations_research::DisabledScopedTimeDistributionUpdater</a></div><div class="ttdef"><b>Definition:</b> <a href="stats_8h_source.html#l00343">stats.h:343</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html">operations_research::DynamicPartition</a></div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00050">dynamic_partition.h:50</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a11ea4d0620bbdca30b7d9b8a23f8cdd8"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a11ea4d0620bbdca30b7d9b8a23f8cdd8">operations_research::DynamicPartition::ElementsInPart</a></div><div class="ttdeci">IterablePart ElementsInPart(int i) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00277">dynamic_partition.h:277</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a32f3aa9643111b05108d1120e48c1e13"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a32f3aa9643111b05108d1120e48c1e13">operations_research::DynamicPartition::Refine</a></div><div class="ttdeci">void Refine(const std::vector&lt; int &gt; &amp;distinguished_subset)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00097">dynamic_partition.cc:97</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a53166e5f309a55b2753a60b958406340"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a53166e5f309a55b2753a60b958406340">operations_research::DynamicPartition::ElementsInHierarchicalOrder</a></div><div class="ttdeci">const std::vector&lt; int &gt; &amp; ElementsInHierarchicalOrder() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00137">dynamic_partition.h:137</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a5634a596b0aa63843c28e8ed69e653ca"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a5634a596b0aa63843c28e8ed69e653ca">operations_research::DynamicPartition::SizeOfPart</a></div><div class="ttdeci">int SizeOfPart(int part) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00291">dynamic_partition.h:291</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a59a35941a5a6eb3747faddb449a49e2a"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a59a35941a5a6eb3747faddb449a49e2a">operations_research::DynamicPartition::UndoRefineUntilNumPartsEqual</a></div><div class="ttdeci">void UndoRefineUntilNumPartsEqual(int original_num_parts)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00162">dynamic_partition.cc:162</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a5d89f8571b04ded41d29edffdb479199a6f2cdeb376ad23fd9f0d1164c25a0306">operations_research::DynamicPartition::SORT_BY_PART</a></div><div class="ttdeci">@ SORT_BY_PART</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00123">dynamic_partition.h:123</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_a897ee69dceefdd60a6a4e90ab8b18a25"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#a897ee69dceefdd60a6a4e90ab8b18a25">operations_research::DynamicPartition::ElementsInSamePartAs</a></div><div class="ttdeci">IterablePart ElementsInSamePartAs(int i) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00304">dynamic_partition.h:304</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_ab22d95d31ef6edfd5a6770ff6d8c4f04"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#ab22d95d31ef6edfd5a6770ff6d8c4f04">operations_research::DynamicPartition::PartOf</a></div><div class="ttdeci">int PartOf(int element) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00285">dynamic_partition.h:285</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_ab8257c32911b0b991bec1af210d993be"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#ab8257c32911b0b991bec1af210d993be">operations_research::DynamicPartition::ParentOfPart</a></div><div class="ttdeci">int ParentOfPart(int part) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00298">dynamic_partition.h:298</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_ad07c56b1579801daaf3a9a750d26e792"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#ad07c56b1579801daaf3a9a750d26e792">operations_research::DynamicPartition::DebugString</a></div><div class="ttdeci">std::string DebugString(DebugStringSorting sorting) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00185">dynamic_partition.cc:185</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_partition_html_ae91b7d9b6c4f0675b9ad3f38e5761853"><div class="ttname"><a href="classoperations__research_1_1_dynamic_partition.html#ae91b7d9b6c4f0675b9ad3f38e5761853">operations_research::DynamicPartition::NumParts</a></div><div class="ttdeci">const int NumParts() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00062">dynamic_partition.h:62</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html">operations_research::DynamicPermutation</a></div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8h_source.html#l00033">dynamic_permutation.h:33</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_a1976819faa164a8d10a66200dc2c3a96"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#a1976819faa164a8d10a66200dc2c3a96">operations_research::DynamicPermutation::ImageOf</a></div><div class="ttdeci">int ImageOf(int i) const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8h_source.html#l00114">dynamic_permutation.h:114</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_a372de693ad40b3f42839c8ec6ac845f4"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#a372de693ad40b3f42839c8ec6ac845f4">operations_research::DynamicPermutation::Reset</a></div><div class="ttdeci">void Reset()</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8cc_source.html#l00078">dynamic_permutation.cc:78</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_a4829347e4722a1281369b9a251280fcc"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#a4829347e4722a1281369b9a251280fcc">operations_research::DynamicPermutation::CreateSparsePermutation</a></div><div class="ttdeci">std::unique_ptr&lt; SparsePermutation &gt; CreateSparsePermutation() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8cc_source.html#l00089">dynamic_permutation.cc:89</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_a764be64f3029f8b8e23511061d8de355"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#a764be64f3029f8b8e23511061d8de355">operations_research::DynamicPermutation::DebugString</a></div><div class="ttdeci">std::string DebugString() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8cc_source.html#l00119">dynamic_permutation.cc:119</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_ac2e0aa1143397953759c0726ec2a865f"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#ac2e0aa1143397953759c0726ec2a865f">operations_research::DynamicPermutation::AllMappingsSrc</a></div><div class="ttdeci">const std::vector&lt; int &gt; &amp; AllMappingsSrc() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8h_source.html#l00067">dynamic_permutation.h:67</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_ae8f61c84a06024a7d6343902f44e7e59"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#ae8f61c84a06024a7d6343902f44e7e59">operations_research::DynamicPermutation::UndoLastMappings</a></div><div class="ttdeci">void UndoLastMappings(std::vector&lt; int &gt; *undone_mapping_src)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8cc_source.html#l00049">dynamic_permutation.cc:49</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_dynamic_permutation_html_aeb46445d022e7bc495f212704791824a"><div class="ttname"><a href="classoperations__research_1_1_dynamic_permutation.html#aeb46445d022e7bc495f212704791824a">operations_research::DynamicPermutation::AddMappings</a></div><div class="ttdeci">void AddMappings(const std::vector&lt; int &gt; &amp;src, const std::vector&lt; int &gt; &amp;dst)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__permutation_8cc_source.html#l00027">dynamic_permutation.cc:27</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_graph_symmetry_finder_html_a651a63b1943d8b8fa2346df1d1a2f55c"><div class="ttname"><a href="classoperations__research_1_1_graph_symmetry_finder.html#a651a63b1943d8b8fa2346df1d1a2f55c">operations_research::GraphSymmetryFinder::RecursivelyRefinePartitionByAdjacency</a></div><div class="ttdeci">void RecursivelyRefinePartitionByAdjacency(int first_unrefined_part_index, DynamicPartition *partition)</div><div class="ttdef"><b>Definition:</b> <a href="find__graph__symmetries_8cc_source.html#l00193">find_graph_symmetries.cc:193</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_graph_symmetry_finder_html_a998043f7ad1e35dc5f6cb23e18f6e7dd"><div class="ttname"><a href="classoperations__research_1_1_graph_symmetry_finder.html#a998043f7ad1e35dc5f6cb23e18f6e7dd">operations_research::GraphSymmetryFinder::IsGraphAutomorphism</a></div><div class="ttdeci">bool IsGraphAutomorphism(const DynamicPermutation &amp;permutation) const</div><div class="ttdef"><b>Definition:</b> <a href="find__graph__symmetries_8cc_source.html#l00149">find_graph_symmetries.cc:149</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_graph_symmetry_finder_html_acb28211fa0581e72d3dcb6b43ebe857a"><div class="ttname"><a href="classoperations__research_1_1_graph_symmetry_finder.html#acb28211fa0581e72d3dcb6b43ebe857a">operations_research::GraphSymmetryFinder::DistinguishNodeInPartition</a></div><div class="ttdeci">void DistinguishNodeInPartition(int node, DynamicPartition *partition, std::vector&lt; int &gt; *new_singletons_or_null)</div><div class="ttdef"><b>Definition:</b> <a href="find__graph__symmetries_8cc_source.html#l00270">find_graph_symmetries.cc:270</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_graph_symmetry_finder_html_ad1f88654797ab9271206d6a4c013a94e"><div class="ttname"><a href="classoperations__research_1_1_graph_symmetry_finder.html#ad1f88654797ab9271206d6a4c013a94e">operations_research::GraphSymmetryFinder::FindSymmetries</a></div><div class="ttdeci">absl::Status FindSymmetries(std::vector&lt; int &gt; *node_equivalence_classes_io, std::vector&lt; std::unique_ptr&lt; SparsePermutation &gt; &gt; *generators, std::vector&lt; int &gt; *factorized_automorphism_group_size, TimeLimit *time_limit=nullptr)</div><div class="ttdef"><b>Definition:</b> <a href="find__graph__symmetries_8cc_source.html#l00377">find_graph_symmetries.cc:377</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_graph_symmetry_finder_html_af0ae1a4d86cfcf11128fe60ea0f8d20b"><div class="ttname"><a href="classoperations__research_1_1_graph_symmetry_finder.html#af0ae1a4d86cfcf11128fe60ea0f8d20b">operations_research::GraphSymmetryFinder::GraphSymmetryFinder</a></div><div class="ttdeci">GraphSymmetryFinder(const Graph &amp;graph, bool is_undirected)</div><div class="ttdef"><b>Definition:</b> <a href="find__graph__symmetries_8cc_source.html#l00102">find_graph_symmetries.cc:102</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html">operations_research::MergingPartition</a></div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00204">dynamic_partition.h:204</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html_a3d5f7b1e62f42b574085e671ae6dfb73"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html#a3d5f7b1e62f42b574085e671ae6dfb73">operations_research::MergingPartition::NumNodesInSamePartAs</a></div><div class="ttdeci">int NumNodesInSamePartAs(int node)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00252">dynamic_partition.h:252</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html_a4368033ed0d5b2fc75727265e0c8f2d7"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html#a4368033ed0d5b2fc75727265e0c8f2d7">operations_research::MergingPartition::ResetNode</a></div><div class="ttdeci">void ResetNode(int node)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00340">dynamic_partition.h:340</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html_a50eca19efa71a0b70de25f9ad4a2a6f8"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html#a50eca19efa71a0b70de25f9ad4a2a6f8">operations_research::MergingPartition::Reset</a></div><div class="ttdeci">void Reset(int num_nodes)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00206">dynamic_partition.cc:206</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html_a612bd8d97219124a8d6fbac721bcdbc6"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html#a612bd8d97219124a8d6fbac721bcdbc6">operations_research::MergingPartition::MergePartsOf</a></div><div class="ttdeci">int MergePartsOf(int node1, int node2)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00214">dynamic_partition.cc:214</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html_a62cb833403d7861c5badb4de3389e06e"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html#a62cb833403d7861c5badb4de3389e06e">operations_research::MergingPartition::FillEquivalenceClasses</a></div><div class="ttdeci">int FillEquivalenceClasses(std::vector&lt; int &gt; *node_equivalence_classes)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00262">dynamic_partition.cc:262</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_merging_partition_html_a80761f181b521aa284b7e687776b9fde"><div class="ttname"><a href="classoperations__research_1_1_merging_partition.html#a80761f181b521aa284b7e687776b9fde">operations_research::MergingPartition::KeepOnlyOneNodePerPart</a></div><div class="ttdeci">void KeepOnlyOneNodePerPart(std::vector&lt; int &gt; *nodes)</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8cc_source.html#l00246">dynamic_partition.cc:246</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_sparse_permutation_html"><div class="ttname"><a href="classoperations__research_1_1_sparse_permutation.html">operations_research::SparsePermutation</a></div><div class="ttdef"><b>Definition:</b> <a href="sparse__permutation_8h_source.html#l00027">sparse_permutation.h:27</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_sparse_permutation_html_a8c5fc5af6e649a82d169f61e4dab5e33"><div class="ttname"><a href="classoperations__research_1_1_sparse_permutation.html#a8c5fc5af6e649a82d169f61e4dab5e33">operations_research::SparsePermutation::NumCycles</a></div><div class="ttdeci">int NumCycles() const</div><div class="ttdef"><b>Definition:</b> <a href="sparse__permutation_8h_source.html#l00033">sparse_permutation.h:33</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_sparse_permutation_html_af567b4e287e268eb9ecee908f63e5b64"><div class="ttname"><a href="classoperations__research_1_1_sparse_permutation.html#af567b4e287e268eb9ecee908f63e5b64">operations_research::SparsePermutation::Cycle</a></div><div class="ttdeci">Iterator Cycle(int i) const</div><div class="ttdef"><b>Definition:</b> <a href="sparse__permutation_8h_source.html#l00117">sparse_permutation.h:117</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_stats_group_html_aa8fc83a27372d89cee2a2e5dd024b515a0a1aa84c65d99c7f8c2a52a0cb4b02b8"><div class="ttname"><a href="classoperations__research_1_1_stats_group.html#aa8fc83a27372d89cee2a2e5dd024b515a0a1aa84c65d99c7f8c2a52a0cb4b02b8">operations_research::StatsGroup::SORT_BY_NAME</a></div><div class="ttdeci">@ SORT_BY_NAME</div><div class="ttdef"><b>Definition:</b> <a href="stats_8h_source.html#l00135">stats.h:135</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_time_limit_html"><div class="ttname"><a href="classoperations__research_1_1_time_limit.html">operations_research::TimeLimit</a></div><div class="ttdoc">A simple class to enforce both an elapsed time limit and a deterministic time limit in the same threa...</div><div class="ttdef"><b>Definition:</b> <a href="time__limit_8h_source.html#l00105">time_limit.h:105</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_time_limit_html_a810d5f7aaf80cc09cf5a094e20c1aaca"><div class="ttname"><a href="classoperations__research_1_1_time_limit.html#a810d5f7aaf80cc09cf5a094e20c1aaca">operations_research::TimeLimit::LimitReached</a></div><div class="ttdeci">bool LimitReached()</div><div class="ttdoc">Returns true when the external limit is true, or the deterministic time is over the deterministic lim...</div><div class="ttdef"><b>Definition:</b> <a href="time__limit_8h_source.html#l00532">time_limit.h:532</a></div></div>
<div class="ttc" id="aclassoperations__research_1_1_time_limit_html_af90cfd1fc238433fc303ee28c5914eb9"><div class="ttname"><a href="classoperations__research_1_1_time_limit.html#af90cfd1fc238433fc303ee28c5914eb9">operations_research::TimeLimit::AdvanceDeterministicTime</a></div><div class="ttdeci">void AdvanceDeterministicTime(double deterministic_duration)</div><div class="ttdoc">Advances the deterministic time.</div><div class="ttdef"><b>Definition:</b> <a href="time__limit_8h_source.html#l00226">time_limit.h:226</a></div></div>
<div class="ttc" id="aclassutil_1_1_base_graph_html_a4d3fc55a2fe209a908470199437cec9a"><div class="ttname"><a href="classutil_1_1_base_graph.html#a4d3fc55a2fe209a908470199437cec9a">util::BaseGraph::num_arcs</a></div><div class="ttdeci">ArcIndexType num_arcs() const</div><div class="ttdef"><b>Definition:</b> <a href="graph_8h_source.html#l00206">graph.h:206</a></div></div>
<div class="ttc" id="aclassutil_1_1_base_graph_html_a6a2df5042167b234f6dc3aed4acfa6c9"><div class="ttname"><a href="classutil_1_1_base_graph.html#a6a2df5042167b234f6dc3aed4acfa6c9">util::BaseGraph::num_nodes</a></div><div class="ttdeci">NodeIndexType num_nodes() const</div><div class="ttdef"><b>Definition:</b> <a href="graph_8h_source.html#l00203">graph.h:203</a></div></div>
<div class="ttc" id="aclassutil_1_1_base_graph_html_a8a40f2c75615a26ba71e94dd7d42f481"><div class="ttname"><a href="classutil_1_1_base_graph.html#a8a40f2c75615a26ba71e94dd7d42f481">util::BaseGraph::AllNodes</a></div><div class="ttdeci">IntegerRange&lt; NodeIndex &gt; AllNodes() const</div><div class="ttdef"><b>Definition:</b> <a href="graph_8h_source.html#l00936">graph.h:936</a></div></div>
<div class="ttc" id="aclassutil_1_1_begin_end_wrapper_html"><div class="ttname"><a href="classutil_1_1_begin_end_wrapper.html">util::BeginEndWrapper</a></div><div class="ttdef"><b>Definition:</b> <a href="iterators_8h_source.html#l00038">iterators.h:38</a></div></div>
<div class="ttc" id="aclassutil_1_1_static_graph_html"><div class="ttname"><a href="classutil_1_1_static_graph.html">util::StaticGraph</a></div><div class="ttdef"><b>Definition:</b> <a href="graph_8h_source.html#l00398">graph.h:398</a></div></div>
<div class="ttc" id="aclassutil_1_1_static_graph_html_aceb0938bcb2e8e5f37986d4cf8e3a955"><div class="ttname"><a href="classutil_1_1_static_graph.html#aceb0938bcb2e8e5f37986d4cf8e3a955">util::StaticGraph::Head</a></div><div class="ttdeci">NodeIndexType Head(ArcIndexType arc) const</div><div class="ttdef"><b>Definition:</b> <a href="graph_8h_source.html#l01314">graph.h:1314</a></div></div>
<div class="ttc" id="aclassutil_1_1_static_graph_html_ad7db584fc1fe14ce9296131fda625994"><div class="ttname"><a href="classutil_1_1_static_graph.html#ad7db584fc1fe14ce9296131fda625994">util::StaticGraph::OutgoingArcs</a></div><div class="ttdeci">BeginEndWrapper&lt; OutgoingArcIterator &gt; OutgoingArcs(NodeIndexType node) const</div></div>
<div class="ttc" id="acommandlineflags_8h_html"><div class="ttname"><a href="commandlineflags_8h.html">commandlineflags.h</a></div></div>
<div class="ttc" id="acp__model__solver_8cc_html_ac3cf9db02b23ea1455b5ae6955d03e47"><div class="ttname"><a href="cp__model__solver_8cc.html#ac3cf9db02b23ea1455b5ae6955d03e47">time_limit</a></div><div class="ttdeci">SharedTimeLimit * time_limit</div><div class="ttdef"><b>Definition:</b> <a href="cp__model__solver_8cc_source.html#l02152">cp_model_solver.cc:2152</a></div></div>
<div class="ttc" id="adense__doubly__linked__list_8h_html"><div class="ttname"><a href="dense__doubly__linked__list_8h.html">dense_doubly_linked_list.h</a></div></div>
<div class="ttc" id="adynamic__partition_8h_html"><div class="ttname"><a href="dynamic__partition_8h.html">dynamic_partition.h</a></div></div>
<div class="ttc" id="adynamic__permutation_8h_html"><div class="ttname"><a href="dynamic__permutation_8h.html">dynamic_permutation.h</a></div></div>
<div class="ttc" id="afind__graph__symmetries_8cc_html_a319b3c460e91c76ad49c4589748e4f0c"><div class="ttname"><a href="find__graph__symmetries_8cc.html#a319b3c460e91c76ad49c4589748e4f0c">ABSL_FLAG</a></div><div class="ttdeci">ABSL_FLAG(bool, minimize_permutation_support_size, false, &quot;Tweak the algorithm to try and minimize the support size&quot; &quot; of the generators produced. This may negatively impact the&quot; &quot; performance, but works great on the sat_holeXXX benchmarks&quot; &quot; to reduce the support size.&quot;)</div></div>
<div class="ttc" id="afind__graph__symmetries_8h_html"><div class="ttname"><a href="find__graph__symmetries_8h.html">find_graph_symmetries.h</a></div></div>
<div class="ttc" id="agraph_2util_8h_html"><div class="ttname"><a href="graph_2util_8h.html">util.h</a></div></div>
<div class="ttc" id="aiterators_8h_html"><div class="ttname"><a href="iterators_8h.html">iterators.h</a></div></div>
<div class="ttc" id="alog__severity_8h_html_ab4a2cbab234914b320b7fae11b6e8cb9"><div class="ttname"><a href="log__severity_8h.html#ab4a2cbab234914b320b7fae11b6e8cb9">INFO</a></div><div class="ttdeci">const int INFO</div><div class="ttdef"><b>Definition:</b> <a href="log__severity_8h_source.html#l00031">log_severity.h:31</a></div></div>
<div class="ttc" id="amacros_8h_html_a7f536a3b33f9bed8f75734e035d30725"><div class="ttname"><a href="macros_8h.html#a7f536a3b33f9bed8f75734e035d30725">DEBUG_MODE</a></div><div class="ttdeci">const bool DEBUG_MODE</div><div class="ttdef"><b>Definition:</b> <a href="macros_8h_source.html#l00024">macros.h:24</a></div></div>
<div class="ttc" id="anamespaceoperations__research_1_1math__opt_html_a5de89a1f6e3f80a49a0d76136d8044e2"><div class="ttname"><a href="namespaceoperations__research_1_1math__opt.html#a5de89a1f6e3f80a49a0d76136d8044e2">operations_research::math_opt::swap</a></div><div class="ttdeci">void swap(IdMap&lt; K, V &gt; &amp;a, IdMap&lt; K, V &gt; &amp;b)</div><div class="ttdef"><b>Definition:</b> <a href="id__map_8h_source.html#l00263">id_map.h:263</a></div></div>
<div class="ttc" id="anamespaceoperations__research_html"><div class="ttname"><a href="namespaceoperations__research.html">operations_research</a></div><div class="ttdoc">Collection of objects used to extend the Constraint Solver library.</div><div class="ttdef"><b>Definition:</b> <a href="dense__doubly__linked__list_8h_source.html#l00021">dense_doubly_linked_list.h:21</a></div></div>
<div class="ttc" id="anamespaceoperations__research_html_ac3308533dde4fc559cab6f4f171d54c9"><div class="ttname"><a href="namespaceoperations__research.html#ac3308533dde4fc559cab6f4f171d54c9">operations_research::ScopedTimeDistributionUpdater</a></div><div class="ttdeci">DisabledScopedTimeDistributionUpdater ScopedTimeDistributionUpdater</div><div class="ttdef"><b>Definition:</b> <a href="stats_8h_source.html#l00434">stats.h:434</a></div></div>
<div class="ttc" id="anamespaceutil_html_aa94a02ae5c14feb50676668f2de166dc"><div class="ttname"><a href="namespaceutil.html#aa94a02ae5c14feb50676668f2de166dc">util::GraphIsSymmetric</a></div><div class="ttdeci">bool GraphIsSymmetric(const Graph &amp;graph)</div><div class="ttdef"><b>Definition:</b> <a href="graph_2util_8h_source.html#l00218">graph/util.h:218</a></div></div>
<div class="ttc" id="arouting__search_8cc_html_a6b7983ccd32c86cbbc3d4d9cda4cac17"><div class="ttname"><a href="routing__search_8cc.html#a6b7983ccd32c86cbbc3d4d9cda4cac17">nodes</a></div><div class="ttdeci">int nodes</div><div class="ttdef"><b>Definition:</b> <a href="routing__search_8cc_source.html#l03686">routing_search.cc:3686</a></div></div>
<div class="ttc" id="asparse__permutation_8h_html"><div class="ttname"><a href="sparse__permutation_8h.html">sparse_permutation.h</a></div></div>
<div class="ttc" id="astats_8h_html_a3c3e6b102f0d91c523099325c98e1887"><div class="ttname"><a href="stats_8h.html#a3c3e6b102f0d91c523099325c98e1887">IF_STATS_ENABLED</a></div><div class="ttdeci">#define IF_STATS_ENABLED(instructions)</div><div class="ttdef"><b>Definition:</b> <a href="stats_8h_source.html#l00437">stats.h:437</a></div></div>
<div class="ttc" id="astructoperations__research_1_1_dynamic_partition_1_1_iterable_part_html_a8497b34029ee966694083aa34c9022b5"><div class="ttname"><a href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#a8497b34029ee966694083aa34c9022b5">operations_research::DynamicPartition::IterablePart::begin</a></div><div class="ttdeci">std::vector&lt; int &gt;::const_iterator begin() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00185">dynamic_partition.h:185</a></div></div>
<div class="ttc" id="astructoperations__research_1_1_dynamic_partition_1_1_iterable_part_html_af9593d4a5ff4274efaf429cb4f9e57cc"><div class="ttname"><a href="structoperations__research_1_1_dynamic_partition_1_1_iterable_part.html#af9593d4a5ff4274efaf429cb4f9e57cc">operations_research::DynamicPartition::IterablePart::size</a></div><div class="ttdeci">int size() const</div><div class="ttdef"><b>Definition:</b> <a href="dynamic__partition_8h_source.html#l00190">dynamic_partition.h:190</a></div></div>
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