| [906] | 1 | /* -*- C++ -*- | 
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 | 2 |  * | 
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| [1956] | 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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| [1359] | 7 |  * (Egervary Research Group on Combinatorial Optimization, EGRES). | 
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| [906] | 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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 | 18 |  | 
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| [810] | 19 | #include <iostream> | 
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 | 20 | #include <vector> | 
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 | 21 |  | 
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 | 22 | #include "test_tools.h" | 
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| [921] | 23 | #include <lemon/maps.h> | 
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 | 24 | #include <lemon/kruskal.h> | 
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 | 25 | #include <lemon/list_graph.h> | 
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| [959] | 26 | #include <lemon/concept/maps.h> | 
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 | 27 | #include <lemon/concept/graph.h> | 
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| [810] | 28 |  | 
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 | 29 |  | 
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 | 30 | using namespace std; | 
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| [921] | 31 | using namespace lemon; | 
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| [810] | 32 |  | 
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 | 33 | void checkCompileKruskal() | 
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 | 34 | { | 
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| [959] | 35 |   concept::WriteMap<concept::StaticGraph::Edge,bool> w; | 
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| [810] | 36 |  | 
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| [1557] | 37 |   kruskal(concept::StaticGraph(), | 
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 | 38 |           concept::ReadMap<concept::StaticGraph::Edge,int>(), | 
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 | 39 |           w); | 
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| [810] | 40 | } | 
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 | 41 |  | 
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 | 42 | int main() { | 
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 | 43 |  | 
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 | 44 |   typedef ListGraph::Node Node; | 
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 | 45 |   typedef ListGraph::Edge Edge; | 
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 | 46 |   typedef ListGraph::NodeIt NodeIt; | 
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 | 47 |   typedef ListGraph::EdgeIt EdgeIt; | 
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 | 48 |  | 
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 | 49 |   ListGraph G; | 
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 | 50 |  | 
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 | 51 |   Node s=G.addNode(); | 
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 | 52 |   Node v1=G.addNode(); | 
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 | 53 |   Node v2=G.addNode(); | 
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 | 54 |   Node v3=G.addNode(); | 
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 | 55 |   Node v4=G.addNode(); | 
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 | 56 |   Node t=G.addNode(); | 
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 | 57 |    | 
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 | 58 |   Edge e1 = G.addEdge(s, v1); | 
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 | 59 |   Edge e2 = G.addEdge(s, v2); | 
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 | 60 |   Edge e3 = G.addEdge(v1, v2); | 
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 | 61 |   Edge e4 = G.addEdge(v2, v1); | 
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 | 62 |   Edge e5 = G.addEdge(v1, v3); | 
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 | 63 |   Edge e6 = G.addEdge(v3, v2); | 
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 | 64 |   Edge e7 = G.addEdge(v2, v4); | 
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 | 65 |   Edge e8 = G.addEdge(v4, v3); | 
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 | 66 |   Edge e9 = G.addEdge(v3, t); | 
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 | 67 |   Edge e10 = G.addEdge(v4, t); | 
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 | 68 |  | 
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 | 69 |   typedef ListGraph::EdgeMap<int> ECostMap; | 
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 | 70 |   typedef ListGraph::EdgeMap<bool> EBoolMap; | 
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 | 71 |  | 
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 | 72 |   ECostMap edge_cost_map(G, 2); | 
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 | 73 |   EBoolMap tree_map(G); | 
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 | 74 |    | 
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 | 75 |  | 
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 | 76 |   //Test with const map. | 
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| [1557] | 77 |   check(kruskal(G, ConstMap<ListGraph::Edge,int>(2), tree_map)==10, | 
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| [810] | 78 |         "Total cost should be 10"); | 
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 | 79 |   //Test with a edge map (filled with uniform costs). | 
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| [1557] | 80 |   check(kruskal(G, edge_cost_map, tree_map)==10, | 
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| [810] | 81 |         "Total cost should be 10"); | 
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 | 82 |  | 
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 | 83 |   edge_cost_map.set(e1, -10); | 
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 | 84 |   edge_cost_map.set(e2, -9); | 
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 | 85 |   edge_cost_map.set(e3, -8); | 
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 | 86 |   edge_cost_map.set(e4, -7); | 
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 | 87 |   edge_cost_map.set(e5, -6); | 
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 | 88 |   edge_cost_map.set(e6, -5); | 
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 | 89 |   edge_cost_map.set(e7, -4); | 
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 | 90 |   edge_cost_map.set(e8, -3); | 
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 | 91 |   edge_cost_map.set(e9, -2); | 
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 | 92 |   edge_cost_map.set(e10, -1); | 
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 | 93 |  | 
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| [1557] | 94 |   vector<Edge> tree_edge_vec(5); | 
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| [810] | 95 |  | 
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 | 96 |   //Test with a edge map and inserter. | 
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| [1557] | 97 |   check(kruskal(G, edge_cost_map, | 
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 | 98 |                  tree_edge_vec.begin()) | 
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| [810] | 99 |         ==-31, | 
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 | 100 |         "Total cost should be -31."); | 
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| [1557] | 101 |    | 
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| [885] | 102 |   tree_edge_vec.clear(); | 
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 | 103 |  | 
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| [1557] | 104 |   check(kruskal(G, edge_cost_map, | 
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 | 105 |                 back_inserter(tree_edge_vec)) | 
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 | 106 |         ==-31, | 
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 | 107 |         "Total cost should be -31."); | 
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 | 108 |    | 
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 | 109 |   tree_edge_vec.clear(); | 
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 | 110 |    | 
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| [885] | 111 |   //The above test could also be coded like this: | 
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 | 112 |   check(kruskal(G, | 
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 | 113 |                 makeKruskalMapInput(G, edge_cost_map), | 
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 | 114 |                 makeKruskalSequenceOutput(back_inserter(tree_edge_vec))) | 
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 | 115 |         ==-31, | 
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 | 116 |         "Total cost should be -31."); | 
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 | 117 |  | 
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| [810] | 118 |   check(tree_edge_vec.size()==5,"The tree should have 5 edges."); | 
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 | 119 |  | 
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 | 120 |   check(tree_edge_vec[0]==e1 && | 
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 | 121 |         tree_edge_vec[1]==e2 && | 
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 | 122 |         tree_edge_vec[2]==e5 && | 
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 | 123 |         tree_edge_vec[3]==e7 && | 
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 | 124 |         tree_edge_vec[4]==e9, | 
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 | 125 |         "Wrong tree."); | 
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 | 126 |  | 
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 | 127 |   return 0; | 
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 | 128 | } | 
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