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| package com.yukinoshita.algorithm.kruskal;
import java.util.Arrays;
public class KruskalDemo { private static final int INF =Integer.MAX_VALUE; public static void main(String[] args){ char[] vertexs = {'A','B','C','D','E','F','G'}; int[][] matrix = { {0, 11, INF, INF, INF, 13, 12}, {11, 0, 10, INF, INF, 7, INF}, {INF, 10, 0, 3, 5, 6, INF}, {INF, INF, 3, 0, 4, INF, INF}, {INF, INF, 5, 4, 0, 2, 8}, {13, 7, 6, INF, 2, 0, 9}, {12, INF, INF, INF, 8, 9, 0} }; Kruskal kruskal = new Kruskal(vertexs, matrix);
kruskal.createMinTree(); } }
class Kruskal{ private int edgeNum; private char[] vertexs; private int[][] matrix;
Edge[] edges;
private static final int INF =Integer.MAX_VALUE; public Kruskal(char[] vertexs, int[][] matrix){ int vlen = vertexs.length; this.vertexs = new char[vlen];
for(int i = 0; i < vlen; i++){ this.vertexs[i] = vertexs[i]; }
this.matrix = new int[vlen][vlen]; for(int i = 0; i < matrix.length; i++){ for(int j = 0; j < matrix[i].length; j++){ this.matrix[i][j] = matrix[i][j]; } }
for(int i = 0; i < matrix.length; i++){ for(int j = i+1; j < matrix[i].length; j++){ if(matrix[i][j] != INF){ this.edgeNum++; } } } edges = getEdges(); }
private Edge[] getEdges(){ Edge[] edges1 = new Edge[this.edgeNum]; int k = 0; for(int i=0;i<matrix.length;i++){ for(int j=i+1;j<matrix[i].length;j++){ if(matrix[i][j] != INF){ edges1[k++] = new Edge(vertexs[i],vertexs[j],matrix[i][j]); } } } Arrays.sort(edges1); return edges1; }
public void print(){ for(int i=0;i<matrix.length;i++){ System.out.println(Arrays.toString(matrix[i])); } System.out.println("打印边,"+"总共"+edges.length+"条边:"); for(int i=0;i<edges.length;i++){ System.out.println(edges[i]); } }
private int getPosition(char ch){ for(int i=0;i<vertexs.length;i++){ if(vertexs[i] == ch){ return i; } } return -1; }
private int getEnd(int[] ends,int i){ if(i != ends[i]){ return ends[i] = getEnd(ends,ends[i]); } return i; }
public void createMinTree(){ int index = 0; int[] ends = new int[edgeNum]; for(int i=0;i<ends.length;i++){ ends[i] = i; }
Edge[] result = new Edge[vertexs.length-1];
for(int i=0;i<edgeNum;i++){
int p1 = getPosition(edges[i].start); int p2 = getPosition(edges[i].end);
int m = getEnd(ends,p1); int n = getEnd(ends,p2);
if(m != n){
ends[m] = n; result[index++] = edges[i]; } }
System.out.println("最小生成树为:"); for(int i=0;i<index;i++){ System.out.println(result[i]); }
} }
class Edge implements Comparable<Edge>{ char start; char end; int weight; public Edge(char start, char end, int weight){ this.start = start; this.end = end; this.weight = weight; }
@Override public int compareTo(Edge o) { return weight - o.weight; }
@Override public String toString() { return "Edge{" + "start=" + start + ", end=" + end + ", weight=" + weight + '}'; } }
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