alpar@1956
|
1 |
/* -*- C++ -*-
|
alpar@1956
|
2 |
*
|
alpar@1956
|
3 |
* This file is a part of LEMON, a generic C++ optimization library
|
alpar@1956
|
4 |
*
|
alpar@1956
|
5 |
* Copyright (C) 2003-2006
|
alpar@1956
|
6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
|
alpar@1956
|
7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES).
|
alpar@1956
|
8 |
*
|
alpar@1956
|
9 |
* Permission to use, modify and distribute this software is granted
|
alpar@1956
|
10 |
* provided that this copyright notice appears in all copies. For
|
alpar@1956
|
11 |
* precise terms see the accompanying LICENSE file.
|
alpar@1956
|
12 |
*
|
alpar@1956
|
13 |
* This software is provided "AS IS" with no warranty of any kind,
|
alpar@1956
|
14 |
* express or implied, and with no claim as to its suitability for any
|
alpar@1956
|
15 |
* purpose.
|
alpar@1956
|
16 |
*
|
alpar@1956
|
17 |
*/
|
alpar@1956
|
18 |
|
deba@1711
|
19 |
#include <iostream>
|
deba@1711
|
20 |
#include <vector>
|
deba@1711
|
21 |
|
deba@1711
|
22 |
#include <cmath>
|
deba@1711
|
23 |
#include <cstdlib>
|
deba@1711
|
24 |
|
deba@1711
|
25 |
#include <lemon/smart_graph.h>
|
deba@1711
|
26 |
#include <lemon/dijkstra.h>
|
deba@1711
|
27 |
#include <lemon/floyd_warshall.h>
|
deba@1711
|
28 |
#include <lemon/johnson.h>
|
deba@1711
|
29 |
|
deba@1745
|
30 |
#include <lemon/fib_heap.h>
|
deba@1745
|
31 |
|
deba@1711
|
32 |
#include <lemon/time_measure.h>
|
deba@1732
|
33 |
#include "test_tools.h"
|
deba@1711
|
34 |
|
deba@1711
|
35 |
using namespace lemon;
|
deba@1711
|
36 |
using namespace std;
|
deba@1711
|
37 |
|
deba@1711
|
38 |
int main(int argc, const char *argv[]) {
|
deba@1711
|
39 |
srand(time(0));
|
deba@1711
|
40 |
typedef SmartGraph Graph;
|
deba@1711
|
41 |
typedef Graph::Node Node;
|
deba@1711
|
42 |
typedef Graph::Edge Edge;
|
deba@1711
|
43 |
typedef Graph::NodeIt NodeIt;
|
deba@1711
|
44 |
typedef Graph::EdgeIt EdgeIt;
|
deba@1711
|
45 |
|
deba@1711
|
46 |
typedef Graph::EdgeMap<double> LengthMap;
|
deba@1711
|
47 |
typedef Graph::NodeMap<double> DistMap;
|
deba@1711
|
48 |
|
deba@1711
|
49 |
const int n = argc > 1 ? atoi(argv[1]) : 20;
|
deba@1732
|
50 |
const int e = argc > 2 ? atoi(argv[2]) : (int)(n * log((double)n));
|
deba@1711
|
51 |
const double m = argc > 3 ? (double)atoi(argv[3]) : 100.0;
|
deba@1711
|
52 |
|
deba@1711
|
53 |
Graph graph;
|
deba@1711
|
54 |
LengthMap length(graph);
|
deba@1711
|
55 |
vector<Node> nodes;
|
deba@1711
|
56 |
|
deba@1711
|
57 |
DistMap shift(graph);
|
deba@1711
|
58 |
for (int i = 0; i < n; ++i) {
|
deba@1711
|
59 |
Node node = graph.addNode();
|
deba@1711
|
60 |
nodes.push_back(node);
|
deba@1711
|
61 |
shift[node] = m * (double)rand() / (RAND_MAX + 1.0);
|
deba@1711
|
62 |
}
|
deba@1711
|
63 |
|
deba@1711
|
64 |
for (int i = 0; i < e; ++i) {
|
deba@1711
|
65 |
int s = (int)(n * (double)rand() / (RAND_MAX + 1.0));
|
deba@1711
|
66 |
int t = (int)(n * (double)rand() / (RAND_MAX + 1.0));
|
deba@1711
|
67 |
double c = m * (double)rand() / (RAND_MAX + 1.0);
|
deba@1711
|
68 |
Edge edge = graph.addEdge(nodes[s], nodes[t]);
|
deba@1711
|
69 |
length[edge] = c - shift[nodes[s]] + shift[nodes[t]];
|
deba@1711
|
70 |
}
|
deba@1711
|
71 |
|
deba@1711
|
72 |
Johnson<Graph, LengthMap> johnson(graph, length);
|
deba@1711
|
73 |
{
|
deba@1711
|
74 |
Timer timer;
|
deba@1711
|
75 |
johnson.run();
|
deba@1711
|
76 |
cout << "Johnson: " << timer << endl;
|
deba@1711
|
77 |
}
|
deba@1711
|
78 |
|
deba@1745
|
79 |
typedef FibHeap<Node, double, Graph::NodeMap<int> > DoubleFibHeap;
|
deba@1745
|
80 |
Johnson<Graph, LengthMap>::DefStandardHeap<DoubleFibHeap>
|
deba@1745
|
81 |
::Create fibJohnson(graph, length);
|
deba@1745
|
82 |
{
|
deba@1745
|
83 |
Timer timer;
|
deba@1745
|
84 |
fibJohnson.run();
|
deba@1745
|
85 |
cout << "Johnson with fibonacci heap: " << timer << endl;
|
deba@1745
|
86 |
}
|
deba@1745
|
87 |
|
deba@1711
|
88 |
FloydWarshall<Graph, LengthMap> floyd(graph, length);
|
deba@1711
|
89 |
{
|
deba@1711
|
90 |
Timer timer;
|
deba@1711
|
91 |
floyd.run();
|
deba@1711
|
92 |
cout << "FloydWarshall: " << timer << endl;
|
deba@1711
|
93 |
}
|
deba@1711
|
94 |
|
deba@1711
|
95 |
for (NodeIt it(graph); it != INVALID; ++it) {
|
deba@1711
|
96 |
for (NodeIt jt(graph); jt != INVALID; ++jt) {
|
deba@1732
|
97 |
check(johnson.connected(it, jt) == floyd.connected(it, jt),
|
deba@1732
|
98 |
"Wrong connection in all pairs shortest path");
|
deba@1745
|
99 |
check(johnson.connected(it, jt) == fibJohnson.connected(it, jt),
|
deba@1745
|
100 |
"Wrong connection in all pairs shortest path");
|
deba@1711
|
101 |
if (johnson.connected(it, jt)) {
|
deba@1732
|
102 |
check(johnson.dist(it, jt) == floyd.dist(it, jt),
|
deba@1732
|
103 |
"Wrong distance in all pairs shortest path");
|
deba@1745
|
104 |
check(johnson.dist(it, jt) == fibJohnson.dist(it, jt),
|
deba@1745
|
105 |
"Wrong distance in all pairs shortest path");
|
deba@1711
|
106 |
if (it != jt) {
|
deba@1732
|
107 |
check(johnson.dist(it, jt) ==
|
deba@1732
|
108 |
johnson.dist(it, johnson.predNode(it, jt)) +
|
deba@1763
|
109 |
length[johnson.predEdge(it, jt)],
|
deba@1732
|
110 |
"Wrong edge in all pairs shortest path");
|
deba@1745
|
111 |
check(fibJohnson.dist(it, jt) ==
|
deba@1745
|
112 |
fibJohnson.dist(it, fibJohnson.predNode(it, jt)) +
|
deba@1763
|
113 |
length[fibJohnson.predEdge(it, jt)],
|
deba@1745
|
114 |
"Wrong edge in all pairs shortest path");
|
deba@1732
|
115 |
check(floyd.dist(it, jt) ==
|
deba@1732
|
116 |
floyd.dist(it, floyd.predNode(it, jt)) +
|
deba@1763
|
117 |
length[floyd.predEdge(it, jt)],
|
deba@1732
|
118 |
"Wrong edge in all pairs shortest path");
|
deba@1711
|
119 |
}
|
deba@1711
|
120 |
}
|
deba@1711
|
121 |
}
|
deba@1711
|
122 |
}
|
deba@1711
|
123 |
|
deba@1711
|
124 |
return 0;
|
deba@1711
|
125 |
}
|