带你找到五一最省的旅游路线【dijkstra算法代码实现】

算法推导过程参见【dijkstra算法推导详解】

此文为【dijkstra算法代码实现】

https://www.cnblogs.com/Halburt/p/10767389.html

package a;

import java.util.Arrays;

/**
 *         ┏┓   ┏┓+ +
 *        ┏┛┻━━━┛┻┓ + +
 *        ┃       ┃
 *        ┃   ━   ┃ ++ + + +
 *        ████━████ ┃+
 *        ┃       ┃ +
 *        ┃   ┻   ┃
 *        ┃       ┃ + +
 *        ┗━┓   ┏━┛
 *          ┃   ┃
 *          ┃   ┃ + + + +
 *          ┃   ┃    Code is far away from bug with the animal protecting
 *          ┃   ┃ +     神兽保佑,代码无bug
 *          ┃   ┃
 *          ┃   ┃  +
 *          ┃    ┗━━━┓ + +
 *          ┃        ┣┓
 *          ┃        ┏┛
 *          ┗┓┓┏━┳┓┏┛ + + + +
 *           ┃┫┫ ┃┫┫
 *           ┗┻┛ ┗┻┛+ + + +
 *
 * @Author:Halburt
 * @Date:2019-04-24 下午 5:47
 * @Description:
 */
public class DijkstraDemo {

    //    表示无穷大 即不可达
    public static int NO_AIRPLANE = Integer.MAX_VALUE;
//    初始直飞价格表
    public int[][]  prices ;
    //    最优转机价格表
    public int[]   minPrice ;
    public boolean[] flag ;
    private int citySize;
    /**
     * @param citySize 城市数量
     */
    public DijkstraDemo(int citySize){
        this.citySize = citySize;
//      prices = new int [citySize][citySize];
        flag  =  new boolean [citySize - 1];
        minPrice = new int[citySize - 1 ];
    }
    public static int[][] getPrices(){
        int ZH = 0,SH = 1, BJ = 2, GZ = 3,CQ = 4,NJ = 5, HZ = 6,LS  = 7;
        int[][] prices =  new int[8][8];
        //from Zhuhai
        prices[ZH][CQ] = 1100;
        prices[ZH][SH] = 600;
        prices[ZH][BJ] = 900;
        prices[ZH][GZ] = 200;
        //others
        prices[CQ][NJ] = 400;
        prices[SH][CQ] = 400;
        prices[SH][BJ] = 500;
        prices[SH][NJ] = 200;
        prices[BJ][SH] = 400;
        prices[BJ][HZ] = 500 ;
        prices[BJ][LS] = 1400;
        prices[GZ][BJ] = 600 ;
        prices[GZ][LS] = 1500 ;
        prices[NJ][HZ] = 300 ;
        prices[HZ][SH] = 200 ;
        for(int i = 0 ; i < 8 ; i++){
            for(int j = 0 ; j < 8 ; j++){
                if(prices[i][j] == 0){
                    prices[i][j] =  NO_AIRPLANE;
                }
            }
        }
        return prices;
    }
    public static void main(String[] args) {
        DijkstraDemo demo = new DijkstraDemo(8);
        demo.dijkstra(getPrices());
    }

    public void dijkstra(int[][]  prices ){
        this.prices = prices;
//        初始化
//            初始化始发站价格表
        for(int i = 1; i < citySize;i++){
            minPrice[i-1] = prices[0][i];
        }
        System.out.println("初始化最优表:" + Arrays.toString(minPrice));
        dijkstra();
        System.out.println("最终最优价格表:" + Arrays.toString(minPrice));
    }

    private void dijkstra(){
        int min = Integer.MAX_VALUE;
        int minIdx = Integer.MAX_VALUE;
//        找到最小的价格
        for(int idx = 0 ; idx < minPrice.length ; idx ++ ) {
            if(!flag[idx] &&  minPrice[idx] < min ){
                min = minPrice[idx];
                minIdx =  idx ;
            }
        }//=已经没有最小的了
        if(minIdx == Integer.MAX_VALUE){
            return ;
        }
        //标记从该城市转机
        flag[minIdx] = true;
        minIdx += 1;
        System.out.println("转机城市序号"+minIdx +" 价格"+ minPrice[minIdx -1]);
       //获取该城市转机时飞往其他城市的价格表
        int cityPrice =  minPrice[minIdx -1];
        //获取杭州飞往该城市的价格
        int[] minCityPrices = prices[minIdx];
        for(int idx = 1 ; idx < citySize ; idx ++ ){
            int price = minCityPrices[idx];
//            如果从杭州到达该城市的价格 加上 idx城市转机的价格 低于  从杭州到达idx城市的价格 则更新
            if(!flag[idx -1 ] && price != NO_AIRPLANE  && (cityPrice+ price) < minPrice[idx - 1]){
//            可达的城市到达的
                minPrice[idx - 1] = cityPrice+ price;
                System.out.println(idx+"更新最优表:" + Arrays.toString(minPrice));
            }
        }
        dijkstra();
    }





}

  

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转载自www.cnblogs.com/Halburt/p/10767978.html
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