demo/circulation_demo.cc
author Alpar Juttner <alpar@cs.elte.hu>
Fri, 21 Nov 2008 14:42:47 +0000
changeset 414 5a7dbeaed70e
permissions -rw-r--r--
Port Circulation from svn -r3516 (#175)
Namely,
- port the files
- apply the migrate script
- apply the unify script
- fix the compilation
- strip the demo input file
- break long lines
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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 *
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 * This file is a part of LEMON, a generic C++ optimization library.
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 *
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 * Copyright (C) 2003-2008
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 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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 *
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 * Permission to use, modify and distribute this software is granted
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 * provided that this copyright notice appears in all copies. For
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 * precise terms see the accompanying LICENSE file.
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 *
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 * This software is provided "AS IS" with no warranty of any kind,
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 * express or implied, and with no claim as to its suitability for any
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 * purpose.
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 *
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 */
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///\ingroup demos
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///\file
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///\brief Demonstrating the usage of LEMON's General Flow algorithm
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///
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/// This demo program reads a general network circulation problem from the
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/// file 'circulation-input.lgf', runs the preflow based algorithm for
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/// finding a feasible solution and writes the output
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/// to 'circulation-input.lgf'
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///
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/// \include circulation_demo.cc
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#include <iostream>
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#include <lemon/list_graph.h>
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#include <lemon/circulation.h>
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#include <lemon/lgf_reader.h>
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#include <lemon/lgf_writer.h>
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using namespace lemon;
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int main (int, char*[])
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{
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    typedef ListDigraph Digraph;
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    typedef Digraph::Node Node;
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    typedef Digraph::NodeIt NodeIt;
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    typedef Digraph::Arc Arc;
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    typedef Digraph::ArcIt ArcIt;
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    typedef Digraph::ArcMap<int> ArcMap;
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    typedef Digraph::NodeMap<int> NodeMap;
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    typedef Digraph::NodeMap<double> DNodeMap;
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    Digraph g;
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    ArcMap lo(g);
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    ArcMap up(g);
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    NodeMap delta(g);
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    NodeMap nid(g);
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    ArcMap eid(g);
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    DNodeMap cx(g);
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    DNodeMap cy(g);
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    DigraphReader<Digraph>(g,"circulation-input.lgf").
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      arcMap("lo_cap", lo).
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      arcMap("up_cap", up).
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      nodeMap("delta", delta).
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      arcMap("label", eid).
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      nodeMap("label", nid).
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      nodeMap("coordinates_x", cx).
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      nodeMap("coordinates_y", cy).
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      run();
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    Circulation<Digraph> gen(g,lo,up,delta);
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    bool ret=gen.run();
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    if(ret)
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      {
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        std::cout << "\nA feasible flow has been found.\n";
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        if(!gen.checkFlow()) std::cerr << "Oops!!!\n";
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        DigraphWriter<Digraph>(g, "circulation-output.lgf").
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          arcMap("lo_cap", lo).
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          arcMap("up_cap", up).
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          arcMap("flow", gen.flowMap()).
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          nodeMap("delta", delta).
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          arcMap("label", eid).
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          nodeMap("label", nid).
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          nodeMap("coordinates_x", cx).
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          nodeMap("coordinates_y", cy).
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          run();
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      }
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    else {
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      std::cout << "\nThere is no such a flow\n";
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      Digraph::NodeMap<int> bar(g);
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      gen.barrierMap(bar);
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      if(!gen.checkBarrier()) std::cerr << "Dual Oops!!!\n";
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      DigraphWriter<Digraph>(g, "circulation-output.lgf").
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        arcMap("lo_cap", lo).
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        arcMap("up_cap", up).
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        nodeMap("barrier", bar).
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        nodeMap("delta", delta).
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        arcMap("label", eid).
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        nodeMap("label", nid).
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        nodeMap("coordinates_x", cx).
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        nodeMap("coordinates_y", cy).
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        run();
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    }
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  std::cout << "The output is written to file 'circulation-output.lgf'\n\n";
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}