| 1 | #include <iostream> | 
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| 2 | #include <set> | 
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| 3 | #include <vector> | 
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| 4 | #include <iterator> | 
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| 5 |  | 
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| 6 | #include <cmath> | 
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| 7 | #include <cstdlib> | 
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| 8 |  | 
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| 9 | #include <lemon/smart_graph.h> | 
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| 10 | #include <lemon/min_cost_arborescence.h> | 
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| 11 |  | 
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| 12 | #include <lemon/graph_utils.h> | 
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| 13 | #include <lemon/time_measure.h> | 
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| 14 |  | 
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| 15 | #include <lemon/tolerance.h> | 
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| 16 |  | 
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| 17 | #include "test_tools.h" | 
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| 18 |  | 
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| 19 | using namespace lemon; | 
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| 20 | using namespace std; | 
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| 21 |  | 
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| 22 | const int n = 10; | 
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| 23 | const int e = 22; | 
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| 24 |  | 
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| 25 | int sourceNode = 0; | 
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| 26 |  | 
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| 27 | int sources[e] = { | 
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| 28 | 1, 0, 2, 4, 4, 3, 9, 8, 9, 8, | 
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| 29 | 4, 2, 0, 6, 4, 1, 7, 2, 8, 6, | 
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| 30 | 1, 0 | 
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| 31 | }; | 
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| 32 |  | 
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| 33 | int targets[e] = { | 
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| 34 | 8, 3, 1, 1, 4, 9, 8, 1, 8, 0, | 
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| 35 | 3, 2, 1, 3, 1, 1, 2, 6, 3, 9, | 
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| 36 | 1, 3 | 
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| 37 | }; | 
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| 38 |  | 
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| 39 | double costs[e] = { | 
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| 40 | 107.444, 70.3069, 46.0496, 28.3962, 91.4325, | 
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| 41 | 76.9443, 61.986, 39.3754, 74.9575, 39.3153, | 
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| 42 | 45.7094, 34.6184, 100.156, 95.726, 22.3429, | 
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| 43 | 31.587, 51.6972, 29.6773, 115.038, 32.4137, | 
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| 44 | 60.0038, 40.1237 | 
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| 45 | }; | 
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| 46 |  | 
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| 47 |  | 
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| 48 |  | 
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| 49 | int main() { | 
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| 50 | typedef SmartGraph Graph; | 
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| 51 | GRAPH_TYPEDEFS(Graph); | 
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| 52 |  | 
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| 53 | typedef Graph::EdgeMap<double> CostMap; | 
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| 54 |  | 
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| 55 | Graph graph; | 
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| 56 | CostMap cost(graph); | 
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| 57 | vector<Node> nodes; | 
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| 58 |  | 
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| 59 | for (int i = 0; i < n; ++i) { | 
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| 60 | nodes.push_back(graph.addNode()); | 
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| 61 | } | 
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| 62 |  | 
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| 63 | for (int i = 0; i < e; ++i) { | 
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| 64 | Edge edge = graph.addEdge(nodes[sources[i]], nodes[targets[i]]); | 
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| 65 | cost[edge] = costs[i]; | 
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| 66 | } | 
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| 67 |  | 
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| 68 | Node source = nodes[sourceNode]; | 
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| 69 |  | 
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| 70 | MinCostArborescence<Graph, CostMap> mca(graph, cost); | 
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| 71 | mca.run(source); | 
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| 72 |  | 
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| 73 | vector<pair<double, set<Node> > > dualSolution(mca.dualSize()); | 
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| 74 |  | 
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| 75 | for (int i = 0; i < mca.dualSize(); ++i) { | 
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| 76 | dualSolution[i].first = mca.dualValue(i); | 
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| 77 | for (MinCostArborescence<Graph, CostMap>::DualIt it(mca, i); | 
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| 78 | it != INVALID; ++it) { | 
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| 79 | dualSolution[i].second.insert(it); | 
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| 80 | } | 
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| 81 | } | 
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| 82 |  | 
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| 83 | Tolerance<double> tolerance; | 
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| 84 |  | 
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| 85 | for (EdgeIt it(graph); it != INVALID; ++it) { | 
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| 86 | if (mca.reached(graph.source(it))) { | 
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| 87 | double sum = 0.0; | 
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| 88 | for (int i = 0; i < (int)dualSolution.size(); ++i) { | 
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| 89 | if (dualSolution[i].second.find(graph.target(it)) | 
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| 90 | != dualSolution[i].second.end() && | 
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| 91 | dualSolution[i].second.find(graph.source(it)) | 
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| 92 | == dualSolution[i].second.end()) { | 
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| 93 | sum += dualSolution[i].first; | 
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| 94 | } | 
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| 95 | } | 
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| 96 | if (mca.arborescence(it)) { | 
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| 97 | check(!tolerance.less(sum, cost[it]), "INVALID DUAL"); | 
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| 98 | } | 
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| 99 | check(!tolerance.less(cost[it], sum), "INVALID DUAL"); | 
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| 100 | } | 
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| 101 | } | 
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| 102 |  | 
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| 103 |  | 
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| 104 | check(!tolerance.different(mca.dualValue(), mca.arborescenceValue()), | 
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| 105 | "INVALID DUAL"); | 
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| 106 |  | 
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| 107 |  | 
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| 108 | check(mca.reached(source), "INVALID ARBORESCENCE"); | 
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| 109 | for (EdgeIt it(graph); it != INVALID; ++it) { | 
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| 110 | check(!mca.reached(graph.source(it)) || | 
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| 111 | mca.reached(graph.target(it)), "INVALID ARBORESCENCE"); | 
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| 112 | } | 
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| 113 |  | 
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| 114 | for (NodeIt it(graph); it != INVALID; ++it) { | 
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| 115 | if (!mca.reached(it)) continue; | 
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| 116 | int cnt = 0; | 
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| 117 | for (InEdgeIt jt(graph, it); jt != INVALID; ++jt) { | 
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| 118 | if (mca.arborescence(jt)) { | 
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| 119 | ++cnt; | 
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| 120 | } | 
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| 121 | } | 
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| 122 | check((it == source ? cnt == 0 : cnt == 1), "INVALID ARBORESCENCE"); | 
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| 123 | } | 
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| 124 |  | 
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| 125 | return 0; | 
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| 126 | } | 
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