| [1956] | 1 | /* -*- C++ -*- | 
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 | 2 |  * | 
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 | 3 |  * This file is a part of LEMON, a generic C++ optimization library | 
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 | 4 |  * | 
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 | 5 |  * Copyright (C) 2003-2006 | 
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 | 6 |  * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport | 
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 | 7 |  * (Egervary Research Group on Combinatorial Optimization, EGRES). | 
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 | 8 |  * | 
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 | 9 |  * Permission to use, modify and distribute this software is granted | 
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 | 10 |  * provided that this copyright notice appears in all copies. For | 
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 | 11 |  * precise terms see the accompanying LICENSE file. | 
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 | 12 |  * | 
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 | 13 |  * This software is provided "AS IS" with no warranty of any kind, | 
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 | 14 |  * express or implied, and with no claim as to its suitability for any | 
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 | 15 |  * purpose. | 
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 | 16 |  * | 
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 | 17 |  */ | 
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| [1206] | 18 |  | 
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| [1187] | 19 | #include <vector> | 
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 | 20 | #include <algorithm> | 
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 | 21 |  | 
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 | 22 | #include <lemon/dijkstra.h> | 
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 | 23 |  | 
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 | 24 | class IntIntMap : public std::vector<int> { | 
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 | 25 | public: | 
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 | 26 |   typedef std::vector<int> Parent; | 
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 | 27 |  | 
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 | 28 |   IntIntMap() : Parent() {} | 
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 | 29 |   IntIntMap(int n) : Parent(n) {} | 
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 | 30 |   IntIntMap(int n, int v) : Parent(n, v) {} | 
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 | 31 |  | 
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 | 32 |   void set(int key, int value) { | 
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 | 33 |     Parent::operator[](key) = value; | 
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 | 34 |   } | 
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 | 35 | }; | 
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 | 36 |  | 
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 | 37 |  | 
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 | 38 | template <typename _Heap> | 
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 | 39 | void heapSortTest(int n) { | 
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 | 40 |   typedef _Heap Heap; | 
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 | 41 |   IntIntMap map(n, -1); | 
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 | 42 |  | 
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 | 43 |   Heap heap(map); | 
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 | 44 |    | 
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 | 45 |   std::vector<int> v(n); | 
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 | 46 |  | 
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 | 47 |   for (int i = 0; i < n; ++i) { | 
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 | 48 |     v[i] = rand() % 1000; | 
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 | 49 |     heap.push(i, v[i]); | 
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 | 50 |   } | 
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 | 51 |   std::sort(v.begin(), v.end()); | 
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 | 52 |   for (int i = 0; i < n; ++i) { | 
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 | 53 |     check(v[i] == heap.prio() ,"Wrong order in heap sort."); | 
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 | 54 |     heap.pop(); | 
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 | 55 |   } | 
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 | 56 | } | 
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 | 57 |  | 
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| [1206] | 58 | template <typename _Heap> | 
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 | 59 | void heapIncreaseTest(int n) { | 
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 | 60 |   typedef _Heap Heap; | 
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 | 61 |   IntIntMap map(n, -1); | 
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 | 62 |  | 
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 | 63 |   Heap heap(map); | 
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 | 64 |    | 
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 | 65 |   std::vector<int> v(n); | 
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 | 66 |  | 
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 | 67 |   for (int i = 0; i < n; ++i) { | 
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 | 68 |     v[i] = rand() % 1000; | 
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 | 69 |     heap.push(i, v[i]); | 
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 | 70 |   } | 
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 | 71 |   for (int i = 0; i < n; ++i) { | 
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 | 72 |     v[i] += rand() % 1000; | 
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 | 73 |     heap.increase(i, v[i]); | 
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 | 74 |   } | 
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 | 75 |   std::sort(v.begin(), v.end()); | 
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 | 76 |   for (int i = 0; i < n; ++i) { | 
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 | 77 |     check(v[i] == heap.prio() ,"Wrong order in heap increase test."); | 
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 | 78 |     heap.pop(); | 
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 | 79 |   } | 
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 | 80 | } | 
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 | 81 |  | 
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 | 82 |  | 
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 | 83 |  | 
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| [1187] | 84 | template <typename _Graph, typename _LengthMap, typename _Heap> | 
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 | 85 | void dijkstraHeapTest(_Graph& graph, _LengthMap& length, | 
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 | 86 |                       typename _Graph::Node& start) { | 
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 | 87 |  | 
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 | 88 |   typedef _Heap Heap; | 
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 | 89 |   typedef _Graph Graph; | 
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 | 90 |   typedef _LengthMap LengthMap; | 
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 | 91 |  | 
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 | 92 |   typedef typename Graph::Node Node; | 
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 | 93 |   typedef typename Graph::Edge Edge; | 
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 | 94 |   typedef typename Graph::NodeIt NodeIt; | 
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 | 95 |   typedef typename Graph::EdgeIt EdgeIt; | 
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 | 96 |  | 
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| [1745] | 97 |   typename Dijkstra<Graph, LengthMap>::template DefStandardHeap<Heap>:: | 
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| [1728] | 98 |     Create dijkstra(graph, length); | 
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| [1187] | 99 |  | 
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 | 100 |   dijkstra.run(start); | 
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 | 101 |  | 
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 | 102 |   for(EdgeIt e(graph); e!=INVALID; ++e) { | 
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 | 103 |     Node u=graph.source(e);  | 
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 | 104 |     Node v=graph.target(e); | 
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 | 105 |     if (dijkstra.reached(u)) { | 
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 | 106 |       check( dijkstra.dist(v) - dijkstra.dist(u) <= length[e], | 
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| [1728] | 107 |              "Error in a shortest path tree edge!"); | 
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| [1187] | 108 |     } | 
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 | 109 |   } | 
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 | 110 |  | 
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 | 111 |   for(NodeIt v(graph); v!=INVALID; ++v) { | 
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| [1763] | 112 |     if ( dijkstra.reached(v) && dijkstra.predEdge(v) != INVALID ) { | 
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 | 113 |       Edge e=dijkstra.predEdge(v); | 
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| [1187] | 114 |       Node u=graph.source(e); | 
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 | 115 |       check( dijkstra.dist(v) - dijkstra .dist(u) == length[e], | 
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 | 116 |              "Error in a shortest path tree edge!"); | 
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 | 117 |     } | 
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 | 118 |   } | 
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 | 119 |  | 
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 | 120 | } | 
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