HDU 1052

来源:互联网 发布:线阵音响和矩阵的区别 编辑:程序博客网 时间:2024/05/26 05:53

Tian Ji -- The Horse Racing

Time Limit: 2000/1000 MS (Java/Others)    Memory Limit: 65536/32768 K (Java/Others)
Total Submission(s): 30180    Accepted Submission(s): 9089


Problem Description
Here is a famous story in Chinese history.

"That was about 2300 years ago. General Tian Ji was a high official in the country Qi. He likes to play horse racing with the king and others."

"Both of Tian and the king have three horses in different classes, namely, regular, plus, and super. The rule is to have three rounds in a match; each of the horses must be used in one round. The winner of a single round takes two hundred silver dollars from the loser."

"Being the most powerful man in the country, the king has so nice horses that in each class his horse is better than Tian's. As a result, each time the king takes six hundred silver dollars from Tian."

"Tian Ji was not happy about that, until he met Sun Bin, one of the most famous generals in Chinese history. Using a little trick due to Sun, Tian Ji brought home two hundred silver dollars and such a grace in the next match."

"It was a rather simple trick. Using his regular class horse race against the super class from the king, they will certainly lose that round. But then his plus beat the king's regular, and his super beat the king's plus. What a simple trick. And how do you think of Tian Ji, the high ranked official in China?"



Were Tian Ji lives in nowadays, he will certainly laugh at himself. Even more, were he sitting in the ACM contest right now, he may discover that the horse racing problem can be simply viewed as finding the maximum matching in a bipartite graph. Draw Tian's horses on one side, and the king's horses on the other. Whenever one of Tian's horses can beat one from the king, we draw an edge between them, meaning we wish to establish this pair. Then, the problem of winning as many rounds as possible is just to find the maximum matching in this graph. If there are ties, the problem becomes more complicated, he needs to assign weights 0, 1, or -1 to all the possible edges, and find a maximum weighted perfect matching...

However, the horse racing problem is a very special case of bipartite matching. The graph is decided by the speed of the horses --- a vertex of higher speed always beat a vertex of lower speed. In this case, the weighted bipartite matching algorithm is a too advanced tool to deal with the problem.

In this problem, you are asked to write a program to solve this special case of matching problem.
 

Input
The input consists of up to 50 test cases. Each case starts with a positive integer n (n <= 1000) on the first line, which is the number of horses on each side. The next n integers on the second line are the speeds of Tian’s horses. Then the next n integers on the third line are the speeds of the king’s horses. The input ends with a line that has a single 0 after the last test case.
 

Output
For each input case, output a line containing a single number, which is the maximum money Tian Ji will get, in silver dollars.
 

Sample Input
392 83 7195 87 74220 2020 20220 1922 180
 

Sample Output
20000


解题思路:这个题目遵循一个原则,无论是当前最快马还是最慢马,能赢的就比赛,不能赢的就拿最慢的马把国王的最快马黑掉,难点就在于当实力相当是该怎么判断,才能最优。因为只要黑掉国王的最快马,剩下的整体实力都会下降,对我方有益;


代码实现:

#include<iostream>#include<cstdio>#include<algorithm>using namespace std;int win,lose;int n;int tian[1005];int king[1005];void f(){int tf,kf,tl,kl;tf=kf=n-1;tl=kl=0;while(tl<=tf)//排序之后一一进行比较 {//这里是以慢马起手,当慢马相等时再判断快马,反过来也行 if(tian[tl]>king[kl]){//慢马能赢,就比赛 win++;tl++;kl++;}else if(tian[tl]<king[kl]){//不能赢,直接黑掉快马 lose++;tl++;kf--;}else{//慢马速度相等 if(tian[tf]>king[kf]){//快马能赢,就比赛 win++;tf--;kf--;}else{//不能赢,黑掉快马 if(tian[tl]<king[kf])//排除慢马速度不小于快马的情况 lose++;tl++;kf--;}}}}int main(){while(scanf("%d",&n),n){win=lose=0;for(int i=0;i<n;i++)scanf("%d",&tian[i]);for(int i=0;i<n;i++)scanf("%d",&king[i]);sort(tian,tian+n);sort(king,king+n);f();printf("%d\n",(win-lose)*200);}return 0;}


原创粉丝点击