#include <bits/stdc++.h>
#include <ext/pb_ds/tree_policy.hpp>
#include <ext/pb_ds/assoc_container.hpp>
using namespace std;
using namespace __gnu_pbds;
typedef long long ll;
typedef long double ld;
typedef complex<ld> cd;
typedef pair<int, int> pi;
typedef pair<ll,ll> pl;
typedef pair<ld,ld> pd;
typedef vector<int> vi;
typedef vector<ld> vd;
typedef vector<ll> vl;
typedef vector<pi> vpi;
typedef vector<pl> vpl;
typedef vector<cd> vcd;
template <class T> using Tree = tree<T, null_type, less<T>, rb_tree_tag,tree_order_statistics_node_update>;
#define FOR(i, a, b) for (int i=a; i<(b); i++)
#define F0R(i, a) for (int i=0; i<(a); i++)
#define FORd(i,a,b) for (int i = (b)-1; i >= a; i--)
#define F0Rd(i,a) for (int i = (a)-1; i >= 0; i--)
#define sz(x) (int)(x).size()
#define mp make_pair
#define pb push_back
#define f first
#define s second
#define lb lower_bound
#define ub upper_bound
#define all(x) x.begin(), x.end()
const int MOD = 1000000007;
const ll INF = 1e18;
const int MX = 1000001;
int N, ans;
vi tmp[MX];
void solve(int x) {
int ind = 0;
F0R(i,sz(tmp[x+1])) {
while (ind < sz(tmp[x]) && tmp[x][ind] < tmp[x+1][i]) ind ++;
if (ind == sz(tmp[x])) break;
ans --; ind ++;
}
}
int main() {
ios_base::sync_with_stdio(0); cin.tie(0);
cin >> N;
FOR(i,1,N+1) {
int a; cin >> a;
tmp[a].pb(i);
}
ans = N;
FORd(i,1,1000000) solve(i);
cout << ans;
}
/* Look for:
* the exact constraints (multiple sets are too slow for n=10^6 :( )
* special cases (n=1?)
* overflow (ll vs int?)
* array bounds
*/
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
31 ms |
23800 KB |
Output is correct |
2 |
Correct |
32 ms |
24040 KB |
Output is correct |
3 |
Correct |
32 ms |
24156 KB |
Output is correct |
4 |
Correct |
32 ms |
24156 KB |
Output is correct |
5 |
Correct |
185 ms |
28632 KB |
Output is correct |
6 |
Correct |
174 ms |
28752 KB |
Output is correct |
7 |
Correct |
159 ms |
29300 KB |
Output is correct |
8 |
Correct |
133 ms |
29300 KB |
Output is correct |
9 |
Correct |
146 ms |
29300 KB |
Output is correct |
10 |
Correct |
155 ms |
29300 KB |
Output is correct |