最新国产好看的视频,伊人天堂AV在线,国产Aaaaaa视频,蜜臀视频在线观看一区,人妻av色图,密臀久久久精品影片,青青视频免费观看毛片,久草在线观看视,国产三级精品色情在线

C#實(shí)現(xiàn)的最短路徑分析

 更新時(shí)間:2013年03月19日 16:39:16   作者:  
C#實(shí)現(xiàn)的最短路徑分析,需要的朋友可以參考一下
復(fù)制代碼 代碼如下:

using System;
 using System.Collections.Generic;
 using System.Linq;
 using System.Text;

 namespace ConsoleApplication1
 {
     class Program
     {
         static int length = 6;
         static string[] shortedPath = new string[length];
         static int noPath = 2000;
         static int MaxSize = 1000;
         static int[,] G =
         {
             { noPath, noPath, 10, noPath, 30, 100 },
             { noPath, noPath, 5, noPath, noPath, noPath },
             { noPath, noPath, noPath, 50, noPath, noPath },
             { noPath, noPath, noPath, noPath, noPath, 10 },
             { noPath, noPath, noPath, 20, noPath, 60 },
             { noPath, noPath, noPath, noPath, noPath, noPath }
         };
         static string[] PathResult = new string[length];

         static int[] path1 = new int[length];
         static int[,] path2 = new int[length, length];
         static int[] distance2 = new int[length];

         static void Main(string[] args)
         {
             int dist1 = getShortedPath(G, 0, 1, path1);
             Console.WriteLine("點(diǎn)0到點(diǎn)5路徑:");
             for (int i = 0; i < path1.Length; i++)
                 Console.Write(path1[i].ToString() + " "); 
             Console.WriteLine("長度:" + dist1);

 
             Console.WriteLine("\r\n-----------------------------------------\r\n");

             int[] pathdist = getShortedPath(G, 0, path2);
             Console.WriteLine("點(diǎn)0到任意點(diǎn)的路徑:");
             for (int j = 0; j < pathdist.Length; j++)
             {
                 Console.WriteLine("點(diǎn)0到" + j + "的路徑:");
                 for (int i = 0; i < length; i++)
                     Console.Write(path2[j, i].ToString() + " ");
                 Console.WriteLine("長度:" + pathdist[j]);
             }
             Console.ReadKey();

         }

 
         //從某一源點(diǎn)出發(fā),找到到某一結(jié)點(diǎn)的最短路徑
         static int getShortedPath(int[,]G, int start, int end,int [] path)
         {
             bool[] s = new bool[length]; //表示找到起始結(jié)點(diǎn)與當(dāng)前結(jié)點(diǎn)間的最短路徑
             int min;  //最小距離臨時(shí)變量
             int curNode=0; //臨時(shí)結(jié)點(diǎn),記錄當(dāng)前正計(jì)算結(jié)點(diǎn)
             int[] dist = new int[length];
             int[] prev = new int[length];

             //初始結(jié)點(diǎn)信息
             for (int v = 0; v < length; v++)
             {
                 s[v] = false;
                 dist[v] = G[start, v];
                 if (dist[v] > MaxSize)
                     prev[v] = 0;
                 else
                     prev[v] = start;
             }
             path[0] = end;
             dist[start] = 0;
             s[start] = true;
             //主循環(huán)
             for (int i = 1; i < length; i++)
             {
                 min = MaxSize;
                 for (int w = 0; w < length; w++)
                 {
                     if (!s[w] && dist[w] < min)
                     {
                         curNode = w;
                         min = dist[w];
                     }
                 }

                 s[curNode] = true;
                 for (int j = 0; j < length; j++)
                     if (!s[j] && min + G[curNode, j] < dist[j])
                     {
                         dist[j] = min + G[curNode, j];
                         prev[j] = curNode;
                     }

             }
             //輸出路徑結(jié)點(diǎn)
             int e = end, step = 0;
             while (e != start)
             {
                 step++;
                 path[step] = prev[e];
                 e = prev[e];
             }
             for (int i = step; i > step/2; i--)
             {
                 int temp = path[step - i];
                 path[step - i] = path[i];
                 path[i] = temp;
             }
             return dist[end];
         }

 

 

 
         //從某一源點(diǎn)出發(fā),找到到所有結(jié)點(diǎn)的最短路徑
         static int[] getShortedPath(int[,] G, int start, int[,] path)
         {
             int[] PathID = new int[length];//路徑(用編號(hào)表示)
             bool[] s = new bool[length]; //表示找到起始結(jié)點(diǎn)與當(dāng)前結(jié)點(diǎn)間的最短路徑
             int min;  //最小距離臨時(shí)變量
             int curNode = 0; //臨時(shí)結(jié)點(diǎn),記錄當(dāng)前正計(jì)算結(jié)點(diǎn)
             int[] dist = new int[length];
             int[] prev = new int[length];
             //初始結(jié)點(diǎn)信息
             for (int v = 0; v < length; v++)
             {
                 s[v] = false;
                 dist[v] = G[start, v];
                 if (dist[v] > MaxSize)
                     prev[v] = 0;
                 else
                     prev[v] = start;
                 path[v,0] = v;
             }

             dist[start] = 0;
             s[start] = true;
             //主循環(huán)
             for (int i = 1; i < length; i++)
             {
                 min = MaxSize;
                 for (int w = 0; w < length; w++)
                 {
                     if (!s[w] && dist[w] < min)
                     {
                         curNode = w;
                         min = dist[w];
                     }
                 }

                 s[curNode] = true;

                 for (int j = 0; j < length; j++)
                     if (!s[j] && min + G[curNode, j] < dist[j])
                     {
                         dist[j] = min + G[curNode, j];
                         prev[j] = curNode;
                     }

 
             }
             //輸出路徑結(jié)點(diǎn)
             for (int k = 0; k < length; k++)
             {
                 int e = k, step = 0;
                 while (e != start)
                 {
                     step++;
                     path[k, step] = prev[e];
                     e = prev[e];
                 }
                 for (int i = step; i > step / 2; i--)
                 {
                     int temp = path[k, step - i];
                     path[k, step - i] = path[k, i];
                     path[k, i] = temp;
                 }
             }
             return dist;

         }

 
     }
 }

相關(guān)文章

最新評(píng)論

镇江市| 江安县| 万州区| 伽师县| 吉水县| 南木林县| 广宁县| 宜君县| 秭归县| 秭归县| 英山县| 渑池县| 黑山县| 咸丰县| 科技| 辽宁省| 锦屏县| 区。| 佳木斯市| 仁寿县| 多伦县| 大余县| 运城市| 兖州市| 宜川县| 灯塔市| 晴隆县| 新乡县| 修武县| 林甸县| 滨海县| 涟源市| 郓城县| 万安县| 延安市| 县级市| 十堰市| 洛隆县| 巫溪县| 上高县| 西畴县|