#include <bits/stdc++.h>
#define rep(i, n) for(ll i = 0; i < ll(n); ++i)
#define rep2(i, s, n) for(ll i = ll(s); i < ll(n); ++i)
#define rrep(i, n) for(ll i = ll(n) - 1; i >= 0; --i)
#define rrep2(i, n, t) for(ll i = ll(n) - 1; i >= ll(t); --i)
#define pb push_back
#define eb emplace_back
#define all(a) a.begin(), a.end()
#define SZ(a) int(a.size())
using namespace std;
using ll = long long;
using P = pair<int, int>;
using vi = vector<int>;
using vvi = vector<vi>;
using vl = vector<ll>;
using vvl = vector<vl>;
using vp = vector<P>;
using vvp = vector<vp>;
using vb = vector<bool>;
using vvb = vector<vb>;
using vs = vector<string>;
const int inf = 1001001001;
const ll linf = 1001001001001001001;
template<class T>
bool chmin(T &a, T b) {
if (a > b) {
a = b;
return true;
}
return false;
}
template<class T>
bool chmax(T &a, T b) {
if (a < b) {
a = b;
return true;
}
return false;
}
int main() {
ios::sync_with_stdio(false);
cin.tie(nullptr), cout.tie(nullptr);
int n, m;
cin >> n >> m;
vvi G(n);
rep(i, m) {
int u, v;
cin >> u >> v;
--u, --v;
G[u].pb(v);
G[v].pb(u);
}
if (m > n - 1) {
cout << "NO" << endl;
return 0;
}
rep(i, n) rep2(j, i + 1, n) {
if (SZ(G[i]) >= 3 and SZ(G[j]) >= 3) {
cout << "NO" << endl;
return 0;
}
}
cout << "YES" << endl;
cout << "1\n1\n";
}
# |
Verdict |
Execution time |
Memory |
Grader output |
1 |
Correct |
0 ms |
212 KB |
Output is correct |
2 |
Partially correct |
1 ms |
212 KB |
Failed to provide a successful strategy. |
3 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
4 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
5 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
6 |
Incorrect |
0 ms |
324 KB |
Output isn't correct |
7 |
Halted |
0 ms |
0 KB |
- |
# |
Verdict |
Execution time |
Memory |
Grader output |
1 |
Correct |
0 ms |
212 KB |
Output is correct |
2 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
3 |
Partially correct |
0 ms |
328 KB |
Failed to provide a successful strategy. |
4 |
Partially correct |
0 ms |
328 KB |
Failed to provide a successful strategy. |
5 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
6 |
Partially correct |
1 ms |
212 KB |
Failed to provide a successful strategy. |
7 |
Partially correct |
1 ms |
324 KB |
Failed to provide a successful strategy. |
8 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
9 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
10 |
Partially correct |
1 ms |
232 KB |
Failed to provide a successful strategy. |
11 |
Partially correct |
1 ms |
340 KB |
Failed to provide a successful strategy. |
12 |
Partially correct |
1 ms |
340 KB |
Failed to provide a successful strategy. |
13 |
Partially correct |
1 ms |
340 KB |
Failed to provide a successful strategy. |
14 |
Partially correct |
1 ms |
340 KB |
Failed to provide a successful strategy. |
15 |
Partially correct |
1 ms |
320 KB |
Failed to provide a successful strategy. |
16 |
Partially correct |
1 ms |
340 KB |
Failed to provide a successful strategy. |
17 |
Partially correct |
2 ms |
320 KB |
Failed to provide a successful strategy. |
18 |
Partially correct |
1 ms |
320 KB |
Failed to provide a successful strategy. |
19 |
Partially correct |
1 ms |
340 KB |
Failed to provide a successful strategy. |
20 |
Partially correct |
2 ms |
340 KB |
Failed to provide a successful strategy. |
# |
Verdict |
Execution time |
Memory |
Grader output |
1 |
Correct |
0 ms |
212 KB |
Output is correct |
2 |
Partially correct |
1 ms |
212 KB |
Failed to provide a successful strategy. |
3 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
4 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
5 |
Partially correct |
0 ms |
212 KB |
Failed to provide a successful strategy. |
6 |
Incorrect |
0 ms |
324 KB |
Output isn't correct |
7 |
Halted |
0 ms |
0 KB |
- |