[subset] Change compute_distances() to use a priority queue.
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@ -29,6 +29,7 @@
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#include "hb-open-type.hh"
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#include "hb-map.hh"
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#include "hb-priority-queue.hh"
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#include "hb-serialize.hh"
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#include "hb-vector.hh"
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@ -267,25 +268,39 @@ struct graph_t
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{
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// Uses Dijkstra's algorithm to find all of the shortest distances.
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// https://en.wikipedia.org/wiki/Dijkstra%27s_algorithm
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//
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// Implementation Note:
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// Since our priority queue doesn't support fast priority decreases
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// we instead just add new entries into the queue when a priority changes.
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// Redundant ones are filtered out later on by the visited set.
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// According to https://www3.cs.stonybrook.edu/~rezaul/papers/TR-07-54.pdf
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// for practical performance this is faster then using a more advanced queue
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// (such as a fibonaacci queue) with a fast decrease priority.
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hb_priority_queue_t queue;
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distance_to->resize (0);
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distance_to->resize (objects_.length);
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for (unsigned i = 0; i < objects_.length; i++)
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(*distance_to)[i] = hb_int_max (int64_t);
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(*distance_to)[objects_.length - 1] = 0;
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hb_set_t unvisited;
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unvisited.add_range (0, objects_.length - 1);
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while (!unvisited.is_empty ())
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{
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unsigned next_idx = closest_object (unvisited, *distance_to);
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if (i == objects_.length - 1)
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(*distance_to)[i] = 0;
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else
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(*distance_to)[i] = hb_int_max (int64_t);
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queue.insert (i, (*distance_to)[i]);
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}
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hb_set_t visited;
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while (!queue.is_empty ())
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{
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unsigned next_idx = queue.extract_minimum ().first;
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if (visited.has (next_idx)) continue;
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const auto& next = objects_[next_idx];
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int next_distance = (*distance_to)[next_idx];
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unvisited.del (next_idx);
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int64_t next_distance = (*distance_to)[next_idx];
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visited.add (next_idx);
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for (const auto& link : next.links)
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{
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if (!unvisited.has (link.objidx)) continue;
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if (visited.has (link.objidx)) continue;
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const auto& child = objects_[link.objidx];
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int64_t child_weight = child.tail - child.head +
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@ -293,11 +308,14 @@ struct graph_t
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int64_t child_distance = next_distance + child_weight;
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if (child_distance < (*distance_to)[link.objidx])
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{
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(*distance_to)[link.objidx] = child_distance;
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queue.insert (link.objidx, child_distance);
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}
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}
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}
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// TODO(garretrieger): Handle this. If anything is left, part of the graph is disconnected.
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assert (unvisited.is_empty ());
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assert (queue.is_empty ());
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}
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int64_t compute_offset (
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@ -477,6 +477,7 @@ if get_option('tests').enabled()
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compiled_tests = {
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'test-algs': ['test-algs.cc', 'hb-static.cc'],
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'test-array': ['test-array.cc'],
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'test-repacker': ['test-repacker.cc', 'hb-static.cc'],
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'test-iter': ['test-iter.cc', 'hb-static.cc'],
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'test-meta': ['test-meta.cc', 'hb-static.cc'],
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'test-number': ['test-number.cc', 'hb-number.cc'],
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