zoukankan      html  css  js  c++  java
  • POJ1135_Domino Effect(最短)

    Domino Effect
    Time Limit: 1000MS   Memory Limit: 65536K
    Total Submissions: 8224   Accepted: 2068

    Description

    Did you know that you can use domino bones for other things besides playing Dominoes? Take a number of dominoes and build a row by standing them on end with only a small distance in between. If you do it right, you can tip the first domino and cause all others to fall down in succession (this is where the phrase ``domino effect'' comes from). 

    While this is somewhat pointless with only a few dominoes, some people went to the opposite extreme in the early Eighties. Using millions of dominoes of different colors and materials to fill whole halls with elaborate patterns of falling dominoes, they created (short-lived) pieces of art. In these constructions, usually not only one but several rows of dominoes were falling at the same time. As you can imagine, timing is an essential factor here. 

    It is now your task to write a program that, given such a system of rows formed by dominoes, computes when and where the last domino falls. The system consists of several ``key dominoes'' connected by rows of simple dominoes. When a key domino falls, all rows connected to the domino will also start falling (except for the ones that have already fallen). When the falling rows reach other key dominoes that have not fallen yet, these other key dominoes will fall as well and set off the rows connected to them. Domino rows may start collapsing at either end. It is even possible that a row is collapsing on both ends, in which case the last domino falling in that row is somewhere between its key dominoes. You can assume that rows fall at a uniform rate.

    Input

    The input file contains descriptions of several domino systems. The first line of each description contains two integers: the number n of key dominoes (1 <= n < 500) and the number m of rows between them. The key dominoes are numbered from 1 to n. There is at most one row between any pair of key dominoes and the domino graph is connected, i.e. there is at least one way to get from a domino to any other domino by following a series of domino rows. 

    The following m lines each contain three integers a, b, and l, stating that there is a row between key dominoes a and b that takes l seconds to fall down from end to end. 

    Each system is started by tipping over key domino number 1. 

    The file ends with an empty system (with n = m = 0), which should not be processed.

    Output

    For each case output a line stating the number of the case ('System #1', 'System #2', etc.). Then output a line containing the time when the last domino falls, exact to one digit to the right of the decimal point, and the location of the last domino falling, which is either at a key domino or between two key dominoes(in this case, output the two numbers in ascending order). Adhere to the format shown in the output sample. The test data will ensure there is only one solution. Output a blank line after each system.

    Sample Input

    2 1
    1 2 27
    3 3
    1 2 5
    1 3 5
    2 3 5
    0 0

    Sample Output

    System #1
    The last domino falls after 27.0 seconds, at key domino 2.
    
    System #2
    The last domino falls after 7.5 seconds, between key dominoes 2 and 3.

    Source

    解题报告
    最后倒下的牌有两情况,1是关键牌。而是两关键之间。
    这题的特殊数据是1 0
    #include <iostream>
    #include <cstdio>
    #include <cstring>
    #define inf 99999999
    using namespace std;
    int n,m,mmap[510][510],dis[510],vis[510];
    void dij()
    {
        int i,j,u,minn;
        for(i=1; i<=n; i++)
        {
            dis[i]=mmap[1][i];
            vis[i]=0;
        }
        dis[1]=0;
        vis[1]=1;
        for(i=0; i<n-1; i++)
        {
            minn=inf;
            u=0;
            for(j=1; j<=n; j++)
            {
                if(!vis[j]&&dis[j]<minn)
                {
                    minn=dis[j];
                    u=j;
                }
            }
            vis[u]=1;
            for(j=1; j<=n; j++)
            {
                if(!vis[j]&&dis[j]>dis[u]+mmap[u][j])
                {
                    dis[j]=dis[u]+mmap[u][j];
                }
            }
        }
    }
    int main()
    {
        int i,j,u,v,w,k=1;
        while(cin>>n>>m)
        {
            if(!n&&!m)break;
    
            printf("System #%d
    ",k++);
            if(n==1)
                {printf("The last domino falls after 0.0 seconds, at key domino 1.
    
    ");
                continue;}
            for(i=1; i<=n; i++)
            {
                for(j=1; j<=n; j++)
                    mmap[i][j]=inf;
                mmap[i][j]=0;
            }
            for(i=0; i<m; i++)
            {
                cin>>u>>v>>w;
                if(mmap[u][v]>w)
                    mmap[u][v]=mmap[v][u]=w;
            }
            dij();
            double maxx1=0;
            int u=0;
            for(i=1; i<=n; i++)
            {
                if(dis[i]>maxx1)
                {
                    maxx1=dis[i];
                    u=i;
                }
            }
            int a1,a2;
            double maxx2=0;
            for(i=1; i<=n; i++)
            {
                for(j=1; j<=n; j++)
                {
                    double t=(dis[i]+dis[j]+mmap[i][j])/2.0;
                    if(mmap[i][j]<inf&&maxx2<t)
                    {
                        maxx2=t;
                        a1=i;
                        a2=j;
                    }
                }
            }
            if(maxx1>=maxx2)
            {
                printf("The last domino falls after %.1lf seconds, at key domino %d.
    ",maxx1,u);
            }
            else printf("The last domino falls after %.1lf seconds, between key dominoes %d and %d.
    ",maxx2,a1,a2);
            printf("
    ");
        }
        return 0;
    }
    


    版权声明:本文博客原创文章,博客,未经同意,不得转载。

  • 相关阅读:
    linux系统用户登陆时脚本执行顺序
    stm32 win7 64位虚拟串口驱动安装失败解决办法
    python全栈day6
    python全栈day5
    江湖救急(处理域名未备案网站问题)
    python全栈day4
    python全栈day3
    python全栈day2
    python全栈day1
    PHP 跨域之header
  • 原文地址:https://www.cnblogs.com/zfyouxi/p/4681820.html
Copyright © 2011-2022 走看看