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FloydWarshalls.java
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66 lines (57 loc) · 1.63 KB
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package ShortestPath;
public class FloydWarshalls {
public static int N = 4;
public static int INF = 10000;
public static int[][] dist = new int[N][N];
public static void floydWarshall(int graph[][]) {
/** Copy the graph value **/
for(int i=0; i<N; i++)
for(int j=0; j<N; j++)
dist[i][j] = graph[i][j];
/** k for: via node **/
for(int k=0; k<N; k++) {
/** i for: source node **/
for(int i=0; i<N; i++) {
/** j for: destination node **/
for(int j=0; j<N; j++) {
/**
if
(source, via) + (via, destination) < (source, destination)
then update,
(source, destination) = (source, via) + (via, destination)
**/
if (dist[i][k]+dist[k][j] < dist[i][j]) {
dist[i][j] = dist[i][k] + dist[k][j];
}
}
}
}
System.out.println("The shortest distances between every pair of vertices is:");
for(int i=0; i<N; i++) {
for(int j=0; j<N; j++) {
if (dist[i][j] == INF) System.out.print("INF ");
else System.out.print(dist[i][j]+" ");
}
System.out.println();
}
}
public static void main(String[] args) {
/**
Consider the following weighted graph:
10
(0)------->(3)
| /|\
5 | |
| | 1
'\|/ |
(1)------->(2)
3
**/
int[][] graph = { {0, 5, INF, 10},
{INF, 0, 3, INF},
{INF, INF, 0, 1},
{INF, INF, INF, 0}
};
floydWarshall(graph);
}
}