POJ 2492 A Bug's Life(关系并查集)
2014-02-28 16:45
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题意就是找出虫子之间是否有同性恋。。。。这个虫子真的很赶潮流啊,竟然也搞基、、、
跟1703一样的关系并查集。
A Bug's Life
Description
Background
Professor Hopper is researching the sexual behavior of a rare species of bugs. He assumes that they feature two different genders and that they only interact with bugs of the opposite gender. In his experiment, individual bugs and their interactions were easy
to identify, because numbers were printed on their backs.
Problem
Given a list of bug interactions, decide whether the experiment supports his assumption of two genders with no homosexual bugs or if it contains some bug interactions that falsify it.
Input
The first line of the input contains the number of scenarios. Each scenario starts with one line giving the number of bugs (at least one, and up to 2000) and the number of interactions (up to 1000000) separated by a single space. In the following lines, each
interaction is given in the form of two distinct bug numbers separated by a single space. Bugs are numbered consecutively starting from one.
Output
The output for every scenario is a line containing "Scenario #i:", where i is the number of the scenario starting at 1, followed by one line saying either "No suspicious bugs found!" if the experiment is consistent with his assumption about the bugs' sexual
behavior, or "Suspicious bugs found!" if Professor Hopper's assumption is definitely wrong.
Sample Input
Sample Output
跟1703一样的关系并查集。
A Bug's Life
Time Limit: 10000MS | Memory Limit: 65536K | |
Total Submissions: 26105 | Accepted: 8513 |
Background
Professor Hopper is researching the sexual behavior of a rare species of bugs. He assumes that they feature two different genders and that they only interact with bugs of the opposite gender. In his experiment, individual bugs and their interactions were easy
to identify, because numbers were printed on their backs.
Problem
Given a list of bug interactions, decide whether the experiment supports his assumption of two genders with no homosexual bugs or if it contains some bug interactions that falsify it.
Input
The first line of the input contains the number of scenarios. Each scenario starts with one line giving the number of bugs (at least one, and up to 2000) and the number of interactions (up to 1000000) separated by a single space. In the following lines, each
interaction is given in the form of two distinct bug numbers separated by a single space. Bugs are numbered consecutively starting from one.
Output
The output for every scenario is a line containing "Scenario #i:", where i is the number of the scenario starting at 1, followed by one line saying either "No suspicious bugs found!" if the experiment is consistent with his assumption about the bugs' sexual
behavior, or "Suspicious bugs found!" if Professor Hopper's assumption is definitely wrong.
Sample Input
2 3 3 1 2 2 3 1 3 4 2 1 2 3 4
Sample Output
Scenario #1: Suspicious bugs found! Scenario #2: No suspicious bugs found!
#include <algorithm> #include <iostream> #include <stdlib.h> #include <string.h> #include <iomanip> #include <stdio.h> #include <string> #include <queue> #include <cmath> #include <stack> #include <map> #include <set> #define eps 1e-7 #define M 10001000 #define LL __int64 //#define LL long long #define INF 0x3f3f3f3f #define PI 3.1415926535898 const int maxn = 101000; using namespace std; int f[maxn]; int w[maxn]; int r; int _find(int x) { int t = x; r = 0; while(x != f[x]) { if(w[x]) { if(r == 1) r = 0; else r = 1; } x = f[x]; } f[t] = x; w[t] = r; return x; } int main() { int t; cin >>t; int n, m; for(int k = 1; k <= t; k++) { scanf("%d %d",&n,&m); for(int i = 0; i <= n; i++) { f[i] = i; w[i] = 0; } int flat = 0; while(m--) { int x, y; scanf("%d %d",&x, &y); int xx = _find(x); int r1 = r; int yy = _find(y); int r2 = r; if(xx == yy) { if(r1 == r2) { flat = 1; continue; } } else { f[xx] = yy; if(r1 == r2) w[xx] = 1; else w[xx] = 0; } } printf("Scenario #%d:\n", k); if(flat) printf("Suspicious bugs found!\n"); else printf("No suspicious bugs found!\n"); puts(""); } return 0; }
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