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ng_undirected: modernize code
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@ -277,10 +277,8 @@ void splitIntoComponents(unique_ptr<NGHolder> g,
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DEBUG_PRINTF("%zu vertices in head, %zu in tail, %zu shell edges\n",
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head_shell.size(), tail_shell.size(), shell_edges.size());
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NFAUndirectedGraph ug;
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ue2::unordered_map<NFAVertex, NFAUndirectedVertex> old2new;
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createUnGraph(*g, true, true, ug, old2new);
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auto ug = createUnGraph(*g, true, true, old2new);
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// Construct reverse mapping.
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ue2::unordered_map<NFAUndirectedVertex, NFAVertex> new2old;
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@ -1,5 +1,5 @@
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/*
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* Copyright (c) 2015-2016, Intel Corporation
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* Copyright (c) 2015-2017, Intel Corporation
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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@ -296,9 +296,8 @@ void splitSubgraph(const NGHolder &g, const deque<NFAVertex> &verts,
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ue2::unordered_map<NFAVertex, NFAVertex> verts_map; // in g -> in verts_g
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fillHolder(&verts_g, g, verts, &verts_map);
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NFAUndirectedGraph ug;
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ue2::unordered_map<NFAVertex, NFAUndirectedVertex> old2new;
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createUnGraph(verts_g, true, true, ug, old2new);
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auto ug = createUnGraph(verts_g, true, true, old2new);
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ue2::unordered_map<NFAUndirectedVertex, u32> repeatMap;
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@ -1020,9 +1019,8 @@ void buildReachSubgraphs(const NGHolder &g, vector<ReachSubgraph> &rs,
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return;
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}
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NFAUndirectedGraph ug;
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unordered_map<RepeatGraph::vertex_descriptor, NFAUndirectedVertex> old2new;
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createUnGraph(rg, true, true, ug, old2new);
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auto ug = createUnGraph(rg, true, true, old2new);
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unordered_map<NFAUndirectedVertex, u32> repeatMap;
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@ -1,5 +1,5 @@
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/*
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* Copyright (c) 2015-2016, Intel Corporation
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* Copyright (c) 2015-2017, Intel Corporation
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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@ -30,8 +30,8 @@
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* \brief Create an undirected graph from an NFAGraph.
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*/
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#ifndef NG_UNDIRECTED_H_CB42C71CF38E3D
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#define NG_UNDIRECTED_H_CB42C71CF38E3D
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#ifndef NG_UNDIRECTED_H
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#define NG_UNDIRECTED_H
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#include "ng_holder.h"
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#include "ng_util.h"
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@ -52,13 +52,13 @@ namespace ue2 {
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* of parallel edges. The only vertex property constructed is \a
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* vertex_index_t.
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*/
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typedef boost::adjacency_list<boost::setS, // out edges
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boost::listS, // vertices
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boost::undirectedS, // graph is undirected
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boost::property<boost::vertex_index_t, size_t> >
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NFAUndirectedGraph;
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using NFAUndirectedGraph =
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boost::adjacency_list<boost::setS, // out edges
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boost::listS, // vertices
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boost::undirectedS, // graph is undirected
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boost::property<boost::vertex_index_t, size_t>>;
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typedef NFAUndirectedGraph::vertex_descriptor NFAUndirectedVertex;
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using NFAUndirectedVertex = NFAUndirectedGraph::vertex_descriptor;
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/**
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* Make a copy of an NFAGraph with undirected edges, optionally without start
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@ -67,15 +67,17 @@ typedef NFAUndirectedGraph::vertex_descriptor NFAUndirectedVertex;
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* Note that new vertex indices are assigned contiguously in \a vertices(g)
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* order.
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*/
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template <typename GraphT>
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void createUnGraph(const GraphT &g,
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template <typename Graph>
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NFAUndirectedGraph createUnGraph(const Graph &g,
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bool excludeStarts,
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bool excludeAccepts,
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NFAUndirectedGraph &ug,
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ue2::unordered_map<typename GraphT::vertex_descriptor,
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NFAUndirectedVertex> &old2new) {
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unordered_map<typename Graph::vertex_descriptor,
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NFAUndirectedVertex> &old2new) {
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NFAUndirectedGraph ug;
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size_t idx = 0;
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typedef typename GraphT::vertex_descriptor VertexT;
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assert(old2new.empty());
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old2new.reserve(num_vertices(g));
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for (auto v : ue2::vertices_range(g)) {
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// skip all accept nodes
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@ -88,32 +90,35 @@ void createUnGraph(const GraphT &g,
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continue;
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}
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NFAUndirectedVertex nuv = boost::add_vertex(ug);
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old2new[v] = nuv;
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auto nuv = boost::add_vertex(ug);
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old2new.emplace(v, nuv);
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boost::put(boost::vertex_index, ug, nuv, idx++);
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}
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for (const auto &e : ue2::edges_range(g)) {
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VertexT src = source(e, g);
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VertexT targ = target(e, g);
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auto u = source(e, g);
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auto v = target(e, g);
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if ((excludeAccepts && is_any_accept(src, g))
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|| (excludeStarts && is_any_start(src, g))) {
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if ((excludeAccepts && is_any_accept(u, g))
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|| (excludeStarts && is_any_start(u, g))) {
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continue;
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}
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if ((excludeAccepts && is_any_accept(targ, g))
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|| (excludeStarts && is_any_start(targ, g))) {
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if ((excludeAccepts && is_any_accept(v, g))
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|| (excludeStarts && is_any_start(v, g))) {
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continue;
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}
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NFAUndirectedVertex new_src = old2new[src];
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NFAUndirectedVertex new_targ = old2new[targ];
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NFAUndirectedVertex new_u = old2new.at(u);
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NFAUndirectedVertex new_v = old2new.at(v);
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boost::add_edge(new_src, new_targ, ug);
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boost::add_edge(new_u, new_v, ug);
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}
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assert(!has_parallel_edge(ug));
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return ug;
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}
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} // namespace ue2
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#endif /* NG_UNDIRECTED_H_CB42C71CF38E3D */
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#endif /* NG_UNDIRECTED_H */
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