COIN-OR::LEMON - Graph Library

source: lemon-0.x/demo/descriptor_map_demo.cc @ 2216:1e45cdeea3cc

Last change on this file since 2216:1e45cdeea3cc was 2207:75a29ac69c19, checked in by Alpar Juttner, 18 years ago

xy -> dim2::Point

File size: 3.7 KB
RevLine 
[1554]1/* -*- C++ -*-
2 *
[1956]3 * This file is a part of LEMON, a generic C++ optimization library
4 *
5 * Copyright (C) 2003-2006
6 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
[1554]7 * (Egervary Research Group on Combinatorial Optimization, EGRES).
8 *
9 * Permission to use, modify and distribute this software is granted
10 * provided that this copyright notice appears in all copies. For
11 * precise terms see the accompanying LICENSE file.
12 *
13 * This software is provided "AS IS" with no warranty of any kind,
14 * express or implied, and with no claim as to its suitability for any
15 * purpose.
16 *
17 */
18
[2081]19/// \ingroup demos
20/// \file
21/// \brief Using descriptor map and own special map types.
22///
23/// This demo shows how can be used the DescriptorMap class
24/// which helps to use unique label for each node or edge.
25/// And it gives an example how easy is creating own map types.
26///
27/// \include descriptor_map_demo.cc
28
[1553]29#include <lemon/list_graph.h>
30#include <lemon/graph_utils.h>
[1554]31#include <lemon/graph_writer.h>
[2207]32#include <lemon/dim2.h>
[1554]33#include <lemon/graph_to_eps.h>
[1553]34
[1554]35#include <iostream>
[1553]36
37#include <cstdlib>
38#include <cmath>
39#include <ctime>
40
41using namespace lemon;
42
[2207]43// Special dim2::Point<double> map type
[2081]44//
45// It gives back a position for each node. The position of the nodes
[1553]46// are on the circle with the given center and radius.
47//
[2081]48// Because we use the descriptor map it will hold the proprty
49// described above even if a node added or deleted.
[1553]50template <typename Graph>
51class CircleMap {
52public:
53
[2207]54  typedef dim2::Point<double> Value;
[1553]55  typedef typename Graph::Node Key;
56
57  CircleMap(const Graph& _graph,
58            const Value& _center = Value(0.0, 0.0),
59            double _radius = 1.0)
60    : descriptor(_graph), center(_center), radius(_radius) {}
61
62  Value operator[](const Key& key) const {
63    double angle = descriptor[key] * 2 * M_PI
64      / (double)descriptor.inverse().size();
65    double x = std::cos(angle) * radius + center.x;
66    double y = std::sin(angle) * radius + center.y;
67    return Value(x, y);
68  }
69
70private:
71 
72  DescriptorMap<Graph, typename Graph::Node> descriptor;
73  Value center;
74  double radius;
75};
76
77int main() {
78  std::srand(std::time(0));
79  typedef ListGraph Graph;
80  typedef Graph::Node Node;
81  typedef Graph::Edge Edge;
82 
83  // Generating a graph
[1554]84
85  std::cout << "Generating graph: " << std::endl;
86
[1553]87  Graph graph;
88 
89  const int NODE = 16;
90  for (int i = 0; i < NODE; ++i) {
91    graph.addNode();
92  }
93
94  // Creating descriptor map and inverse
95  DescriptorMap<Graph, Node> nodeDesc(graph);
96  DescriptorMap<Graph, Node>::InverseMap nodeInv(nodeDesc);
97
98  // Adding edges
99  // The descriptor map always maps an integer value for each node.
100  // The range of the values is always [0..n - 1] where n is the
101  // number of the nodes of the graph. The inverse map gives back the
102  // the node by its descriptor value.
103  //
104  // The inversemap cannot works without its DescriptorMap because
105  // it holds reference to it.
[1556]106  const int EDGE = (int)(NODE * std::log(double(NODE)));
[1553]107  for (int i = 0; i < EDGE; ++i) {
108    int si = (int)(std::rand() / (RAND_MAX + 1.0) * NODE);
109    int ti = (int)(std::rand() / (RAND_MAX + 1.0) * NODE);
110     
111    graph.addEdge(nodeInv[si], nodeInv[ti]);
112  }
113
[1554]114  GraphWriter<Graph>(std::cout, graph).run();
115
116  std::cout << std::endl;
117  std::cout << "Postscript file: descriptor_map_demo.eps" << std::endl;
118
[1553]119  // Make postscript from the graph.
120   
[2207]121  CircleMap<Graph> coords(graph, dim2::Point<double>(0.0, 0.0), 10.0);
[1553]122   
123  graphToEps(graph,"descriptor_map_demo.eps").scaleToA4().
124    title("Generated graph").
[1875]125    copyright("(C) 2006 LEMON Project").
[1553]126    coords(coords).
127    nodeScale(1.0).
128    enableParallel().parEdgeDist(1).
129    drawArrows().arrowWidth(1).arrowLength(1).
130    run();
131 
132  return 0;
133}
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