[389] | 1 | /* -*- mode: C++; indent-tabs-mode: nil; -*- |
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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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[1092] | 5 | * Copyright (C) 2003-2013 |
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[389] | 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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| 18 | |
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[423] | 19 | #include <iostream> |
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[389] | 20 | |
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| 21 | #include "test_tools.h" |
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| 22 | #include <lemon/smart_graph.h> |
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| 23 | #include <lemon/preflow.h> |
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[1060] | 24 | #include <lemon/edmonds_karp.h> |
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[389] | 25 | #include <lemon/concepts/digraph.h> |
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| 26 | #include <lemon/concepts/maps.h> |
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| 27 | #include <lemon/lgf_reader.h> |
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[394] | 28 | #include <lemon/elevator.h> |
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[389] | 29 | |
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| 30 | using namespace lemon; |
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| 31 | |
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[423] | 32 | char test_lgf[] = |
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| 33 | "@nodes\n" |
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| 34 | "label\n" |
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| 35 | "0\n" |
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| 36 | "1\n" |
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| 37 | "2\n" |
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| 38 | "3\n" |
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| 39 | "4\n" |
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| 40 | "5\n" |
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| 41 | "6\n" |
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| 42 | "7\n" |
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| 43 | "8\n" |
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| 44 | "9\n" |
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| 45 | "@arcs\n" |
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| 46 | " label capacity\n" |
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| 47 | "0 1 0 20\n" |
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| 48 | "0 2 1 0\n" |
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| 49 | "1 1 2 3\n" |
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| 50 | "1 2 3 8\n" |
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| 51 | "1 3 4 8\n" |
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| 52 | "2 5 5 5\n" |
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| 53 | "3 2 6 5\n" |
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| 54 | "3 5 7 5\n" |
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| 55 | "3 6 8 5\n" |
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| 56 | "4 3 9 3\n" |
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| 57 | "5 7 10 3\n" |
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| 58 | "5 6 11 10\n" |
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| 59 | "5 8 12 10\n" |
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| 60 | "6 8 13 8\n" |
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| 61 | "8 9 14 20\n" |
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| 62 | "8 1 15 5\n" |
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| 63 | "9 5 16 5\n" |
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| 64 | "@attributes\n" |
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| 65 | "source 1\n" |
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| 66 | "target 8\n"; |
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| 67 | |
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[1060] | 68 | |
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| 69 | // Checks the general interface of a max flow algorithm |
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| 70 | template <typename GR, typename CAP> |
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| 71 | struct MaxFlowClassConcept |
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| 72 | { |
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| 73 | |
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| 74 | template <typename MF> |
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| 75 | struct Constraints { |
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| 76 | |
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| 77 | typedef typename GR::Node Node; |
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| 78 | typedef typename GR::Arc Arc; |
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| 79 | typedef typename CAP::Value Value; |
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| 80 | typedef concepts::ReadWriteMap<Arc, Value> FlowMap; |
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| 81 | typedef concepts::WriteMap<Node, bool> CutMap; |
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| 82 | |
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| 83 | GR g; |
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| 84 | Node n; |
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| 85 | Arc e; |
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| 86 | CAP cap; |
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| 87 | FlowMap flow; |
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| 88 | CutMap cut; |
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| 89 | Value v; |
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| 90 | bool b; |
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| 91 | |
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| 92 | void constraints() { |
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| 93 | checkConcept<concepts::Digraph, GR>(); |
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| 94 | |
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| 95 | const Constraints& me = *this; |
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| 96 | |
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| 97 | typedef typename MF |
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| 98 | ::template SetFlowMap<FlowMap> |
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| 99 | ::Create MaxFlowType; |
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| 100 | typedef typename MF::Create MaxFlowType2; |
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| 101 | MaxFlowType max_flow(me.g, me.cap, me.n, me.n); |
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| 102 | const MaxFlowType& const_max_flow = max_flow; |
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| 103 | |
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| 104 | max_flow |
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| 105 | .capacityMap(cap) |
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| 106 | .flowMap(flow) |
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| 107 | .source(n) |
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| 108 | .target(n); |
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| 109 | |
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| 110 | typename MaxFlowType::Tolerance tol = const_max_flow.tolerance(); |
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| 111 | max_flow.tolerance(tol); |
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| 112 | |
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| 113 | max_flow.init(); |
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| 114 | max_flow.init(cap); |
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| 115 | max_flow.run(); |
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| 116 | |
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| 117 | v = const_max_flow.flowValue(); |
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| 118 | v = const_max_flow.flow(e); |
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| 119 | const FlowMap& fm = const_max_flow.flowMap(); |
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| 120 | |
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| 121 | b = const_max_flow.minCut(n); |
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| 122 | const_max_flow.minCutMap(cut); |
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| 123 | |
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[1087] | 124 | ::lemon::ignore_unused_variable_warning(fm); |
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[1060] | 125 | } |
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| 126 | |
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| 127 | }; |
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| 128 | |
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| 129 | }; |
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| 130 | |
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| 131 | // Checks the specific parts of Preflow's interface |
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[394] | 132 | void checkPreflowCompile() |
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[389] | 133 | { |
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[1060] | 134 | typedef int Value; |
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[389] | 135 | typedef concepts::Digraph Digraph; |
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[1060] | 136 | typedef concepts::ReadMap<Digraph::Arc, Value> CapMap; |
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[394] | 137 | typedef Elevator<Digraph, Digraph::Node> Elev; |
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| 138 | typedef LinkedElevator<Digraph, Digraph::Node> LinkedElev; |
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| 139 | |
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[389] | 140 | Digraph g; |
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[1060] | 141 | Digraph::Node n; |
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[389] | 142 | CapMap cap; |
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| 143 | |
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[585] | 144 | typedef Preflow<Digraph, CapMap> |
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[1060] | 145 | ::SetElevator<Elev> |
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| 146 | ::SetStandardElevator<LinkedElev> |
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| 147 | ::Create PreflowType; |
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[585] | 148 | PreflowType preflow_test(g, cap, n, n); |
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| 149 | const PreflowType& const_preflow_test = preflow_test; |
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[389] | 150 | |
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[689] | 151 | const PreflowType::Elevator& elev = const_preflow_test.elevator(); |
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| 152 | preflow_test.elevator(const_cast<PreflowType::Elevator&>(elev)); |
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[585] | 153 | |
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[1060] | 154 | bool b = preflow_test.init(cap); |
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[389] | 155 | preflow_test.startFirstPhase(); |
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| 156 | preflow_test.startSecondPhase(); |
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| 157 | preflow_test.runMinCut(); |
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| 158 | |
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[1087] | 159 | ::lemon::ignore_unused_variable_warning(b); |
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[389] | 160 | } |
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| 161 | |
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[1060] | 162 | // Checks the specific parts of EdmondsKarp's interface |
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| 163 | void checkEdmondsKarpCompile() |
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| 164 | { |
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| 165 | typedef int Value; |
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| 166 | typedef concepts::Digraph Digraph; |
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| 167 | typedef concepts::ReadMap<Digraph::Arc, Value> CapMap; |
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| 168 | typedef Elevator<Digraph, Digraph::Node> Elev; |
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| 169 | typedef LinkedElevator<Digraph, Digraph::Node> LinkedElev; |
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| 170 | |
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| 171 | Digraph g; |
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| 172 | Digraph::Node n; |
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| 173 | CapMap cap; |
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| 174 | |
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| 175 | EdmondsKarp<Digraph, CapMap> ek_test(g, cap, n, n); |
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| 176 | |
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| 177 | ek_test.init(cap); |
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| 178 | bool b = ek_test.checkedInit(cap); |
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| 179 | b = ek_test.augment(); |
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| 180 | ek_test.start(); |
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| 181 | |
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[1087] | 182 | ::lemon::ignore_unused_variable_warning(b); |
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[1060] | 183 | } |
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| 184 | |
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| 185 | |
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| 186 | template <typename T> |
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| 187 | T cutValue (const SmartDigraph& g, |
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[389] | 188 | const SmartDigraph::NodeMap<bool>& cut, |
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[1060] | 189 | const SmartDigraph::ArcMap<T>& cap) { |
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[389] | 190 | |
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[1060] | 191 | T c=0; |
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[389] | 192 | for(SmartDigraph::ArcIt e(g); e!=INVALID; ++e) { |
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| 193 | if (cut[g.source(e)] && !cut[g.target(e)]) c+=cap[e]; |
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| 194 | } |
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| 195 | return c; |
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| 196 | } |
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| 197 | |
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[1060] | 198 | template <typename T> |
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[389] | 199 | bool checkFlow(const SmartDigraph& g, |
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[1060] | 200 | const SmartDigraph::ArcMap<T>& flow, |
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| 201 | const SmartDigraph::ArcMap<T>& cap, |
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[389] | 202 | SmartDigraph::Node s, SmartDigraph::Node t) { |
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| 203 | |
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| 204 | for (SmartDigraph::ArcIt e(g); e != INVALID; ++e) { |
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| 205 | if (flow[e] < 0 || flow[e] > cap[e]) return false; |
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| 206 | } |
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| 207 | |
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| 208 | for (SmartDigraph::NodeIt n(g); n != INVALID; ++n) { |
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| 209 | if (n == s || n == t) continue; |
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[1060] | 210 | T sum = 0; |
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[389] | 211 | for (SmartDigraph::OutArcIt e(g, n); e != INVALID; ++e) { |
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| 212 | sum += flow[e]; |
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| 213 | } |
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| 214 | for (SmartDigraph::InArcIt e(g, n); e != INVALID; ++e) { |
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| 215 | sum -= flow[e]; |
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| 216 | } |
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| 217 | if (sum != 0) return false; |
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| 218 | } |
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| 219 | return true; |
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| 220 | } |
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| 221 | |
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[923] | 222 | void initFlowTest() |
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| 223 | { |
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| 224 | DIGRAPH_TYPEDEFS(SmartDigraph); |
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[1092] | 225 | |
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[923] | 226 | SmartDigraph g; |
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| 227 | SmartDigraph::ArcMap<int> cap(g),iflow(g); |
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| 228 | Node s=g.addNode(); Node t=g.addNode(); |
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| 229 | Node n1=g.addNode(); Node n2=g.addNode(); |
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| 230 | Arc a; |
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| 231 | a=g.addArc(s,n1); cap[a]=20; iflow[a]=20; |
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| 232 | a=g.addArc(n1,n2); cap[a]=10; iflow[a]=0; |
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| 233 | a=g.addArc(n2,t); cap[a]=20; iflow[a]=0; |
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| 234 | |
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| 235 | Preflow<SmartDigraph> pre(g,cap,s,t); |
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| 236 | pre.init(iflow); |
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| 237 | pre.startFirstPhase(); |
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| 238 | check(pre.flowValue() == 10, "The incorrect max flow value."); |
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| 239 | check(pre.minCut(s), "Wrong min cut (Node s)."); |
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| 240 | check(pre.minCut(n1), "Wrong min cut (Node n1)."); |
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| 241 | check(!pre.minCut(n2), "Wrong min cut (Node n2)."); |
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| 242 | check(!pre.minCut(t), "Wrong min cut (Node t)."); |
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| 243 | } |
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| 244 | |
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[1060] | 245 | template <typename MF, typename SF> |
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| 246 | void checkMaxFlowAlg() { |
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| 247 | typedef SmartDigraph Digraph; |
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| 248 | DIGRAPH_TYPEDEFS(Digraph); |
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[923] | 249 | |
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[1060] | 250 | typedef typename MF::Value Value; |
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| 251 | typedef Digraph::ArcMap<Value> CapMap; |
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| 252 | typedef CapMap FlowMap; |
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| 253 | typedef BoolNodeMap CutMap; |
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[389] | 254 | |
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| 255 | Digraph g; |
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| 256 | Node s, t; |
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| 257 | CapMap cap(g); |
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[423] | 258 | std::istringstream input(test_lgf); |
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[1060] | 259 | DigraphReader<Digraph>(g,input) |
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| 260 | .arcMap("capacity", cap) |
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| 261 | .node("source",s) |
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| 262 | .node("target",t) |
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| 263 | .run(); |
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[389] | 264 | |
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[1060] | 265 | MF max_flow(g, cap, s, t); |
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| 266 | max_flow.run(); |
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[389] | 267 | |
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[1060] | 268 | check(checkFlow(g, max_flow.flowMap(), cap, s, t), |
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[389] | 269 | "The flow is not feasible."); |
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| 270 | |
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| 271 | CutMap min_cut(g); |
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[1060] | 272 | max_flow.minCutMap(min_cut); |
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| 273 | Value min_cut_value = cutValue(g, min_cut, cap); |
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[389] | 274 | |
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[1060] | 275 | check(max_flow.flowValue() == min_cut_value, |
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| 276 | "The max flow value is not equal to the min cut value."); |
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[389] | 277 | |
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| 278 | FlowMap flow(g); |
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[1060] | 279 | for (ArcIt e(g); e != INVALID; ++e) flow[e] = max_flow.flowMap()[e]; |
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[389] | 280 | |
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[1060] | 281 | Value flow_value = max_flow.flowValue(); |
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[389] | 282 | |
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[1060] | 283 | for (ArcIt e(g); e != INVALID; ++e) cap[e] = 2 * cap[e]; |
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| 284 | max_flow.init(flow); |
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| 285 | |
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| 286 | SF::startFirstPhase(max_flow); // start first phase of the algorithm |
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[389] | 287 | |
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| 288 | CutMap min_cut1(g); |
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[1060] | 289 | max_flow.minCutMap(min_cut1); |
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| 290 | min_cut_value = cutValue(g, min_cut1, cap); |
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[389] | 291 | |
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[1060] | 292 | check(max_flow.flowValue() == min_cut_value && |
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| 293 | min_cut_value == 2 * flow_value, |
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[389] | 294 | "The max flow value or the min cut value is wrong."); |
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| 295 | |
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[1060] | 296 | SF::startSecondPhase(max_flow); // start second phase of the algorithm |
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[389] | 297 | |
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[1060] | 298 | check(checkFlow(g, max_flow.flowMap(), cap, s, t), |
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[389] | 299 | "The flow is not feasible."); |
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| 300 | |
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| 301 | CutMap min_cut2(g); |
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[1060] | 302 | max_flow.minCutMap(min_cut2); |
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| 303 | min_cut_value = cutValue(g, min_cut2, cap); |
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[389] | 304 | |
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[1060] | 305 | check(max_flow.flowValue() == min_cut_value && |
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| 306 | min_cut_value == 2 * flow_value, |
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| 307 | "The max flow value or the min cut value was not doubled"); |
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[389] | 308 | |
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| 309 | |
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[1060] | 310 | max_flow.flowMap(flow); |
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[389] | 311 | |
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[1060] | 312 | NodeIt tmp1(g, s); |
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[389] | 313 | ++tmp1; |
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[1060] | 314 | if (tmp1 != INVALID) s = tmp1; |
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[389] | 315 | |
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[1060] | 316 | NodeIt tmp2(g, t); |
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[389] | 317 | ++tmp2; |
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[1060] | 318 | if (tmp2 != INVALID) t = tmp2; |
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[389] | 319 | |
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[1060] | 320 | max_flow.source(s); |
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| 321 | max_flow.target(t); |
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[389] | 322 | |
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[1060] | 323 | max_flow.run(); |
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[389] | 324 | |
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| 325 | CutMap min_cut3(g); |
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[1060] | 326 | max_flow.minCutMap(min_cut3); |
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| 327 | min_cut_value=cutValue(g, min_cut3, cap); |
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[389] | 328 | |
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[1060] | 329 | check(max_flow.flowValue() == min_cut_value, |
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| 330 | "The max flow value or the min cut value is wrong."); |
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| 331 | } |
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[389] | 332 | |
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[1060] | 333 | // Struct for calling start functions of a general max flow algorithm |
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| 334 | template <typename MF> |
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| 335 | struct GeneralStartFunctions { |
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| 336 | |
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| 337 | static void startFirstPhase(MF& mf) { |
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| 338 | mf.start(); |
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| 339 | } |
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| 340 | |
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| 341 | static void startSecondPhase(MF& mf) { |
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[1087] | 342 | ::lemon::ignore_unused_variable_warning(mf); |
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[1060] | 343 | } |
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| 344 | |
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| 345 | }; |
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| 346 | |
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| 347 | // Struct for calling start functions of Preflow |
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| 348 | template <typename MF> |
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| 349 | struct PreflowStartFunctions { |
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| 350 | |
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| 351 | static void startFirstPhase(MF& mf) { |
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| 352 | mf.startFirstPhase(); |
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| 353 | } |
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| 354 | |
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| 355 | static void startSecondPhase(MF& mf) { |
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| 356 | mf.startSecondPhase(); |
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| 357 | } |
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| 358 | |
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| 359 | }; |
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| 360 | |
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| 361 | int main() { |
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| 362 | |
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| 363 | typedef concepts::Digraph GR; |
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| 364 | typedef concepts::ReadMap<GR::Arc, int> CM1; |
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| 365 | typedef concepts::ReadMap<GR::Arc, double> CM2; |
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| 366 | |
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| 367 | // Check the interface of Preflow |
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| 368 | checkConcept< MaxFlowClassConcept<GR, CM1>, |
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| 369 | Preflow<GR, CM1> >(); |
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| 370 | checkConcept< MaxFlowClassConcept<GR, CM2>, |
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| 371 | Preflow<GR, CM2> >(); |
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| 372 | |
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| 373 | // Check the interface of EdmondsKarp |
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| 374 | checkConcept< MaxFlowClassConcept<GR, CM1>, |
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| 375 | EdmondsKarp<GR, CM1> >(); |
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| 376 | checkConcept< MaxFlowClassConcept<GR, CM2>, |
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| 377 | EdmondsKarp<GR, CM2> >(); |
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| 378 | |
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| 379 | // Check Preflow |
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| 380 | typedef Preflow<SmartDigraph, SmartDigraph::ArcMap<int> > PType1; |
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| 381 | typedef Preflow<SmartDigraph, SmartDigraph::ArcMap<float> > PType2; |
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| 382 | checkMaxFlowAlg<PType1, PreflowStartFunctions<PType1> >(); |
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| 383 | checkMaxFlowAlg<PType2, PreflowStartFunctions<PType2> >(); |
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| 384 | initFlowTest(); |
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[1092] | 385 | |
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[1060] | 386 | // Check EdmondsKarp |
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| 387 | typedef EdmondsKarp<SmartDigraph, SmartDigraph::ArcMap<int> > EKType1; |
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| 388 | typedef EdmondsKarp<SmartDigraph, SmartDigraph::ArcMap<float> > EKType2; |
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| 389 | checkMaxFlowAlg<EKType1, GeneralStartFunctions<EKType1> >(); |
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| 390 | checkMaxFlowAlg<EKType2, GeneralStartFunctions<EKType2> >(); |
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[389] | 391 | |
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[923] | 392 | initFlowTest(); |
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[1092] | 393 | |
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[389] | 394 | return 0; |
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| 395 | } |
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