// author : sentheta aka vanwij
#ifdef VANWIJ
#include"/home/user/code/bits/stdc++.h"
#else
#include"bits/stdc++.h"
#endif
using namespace std;
#define Int long long
#define V vector
#define pii pair<int,int>
#define ff first
#define ss second
static mt19937_64 rng(chrono::steady_clock::now().time_since_epoch().count());
#define pow2(x) (1LL<<(x))
#define msb(x) (63-__builtin_clzll(x))
#define bitcnt(x) (__builtin_popcountll(x))
#define nl '\n'
#define _ << ' ' <<
#define all(x) (x).begin(), (x).end()
#define rep(i,a,b) for(int i = (int)(a); i < (int)(b); i++)
#define dbg(x) if(1) cout << "?" << #x << " : " << (x) << endl << flush;
// #define int long long
// const Int MOD = 1e9+7;
const Int MOD = 998244353;
Int bpow(Int a,Int b){
Int ret = 1;
for(;b; a=a*a%MOD,b/=2) if(b&1) ret = ret*a%MOD;
return ret;
}
Int inv(Int a){return bpow(a,MOD-2);}
void solve(); int TC, ALLTC;
signed main(){
ios::sync_with_stdio(0); cin.tie(0); cout.tie(0); cout << fixed << setprecision(7);
// cin >> ALLTC; for(TC=1; TC<=ALLTC; TC++) solve(); return 0;
solve();
}
const int INF = 1e9;
const int N = 2e5+5;
int n;
int a[N], b[N];
int to1[N], ton[N];
int ans[N];
bool vis[N];
// {-dist, node}
priority_queue<pii> pq;
// segtree
#define lc (v+1)
#define rc (v+2*(mid-tl+1))
#define mid (tl+tr)/2
V<int> segs[2*N];
bool stvis[2*N];
void insert(int i,int v=0,int tl=1,int tr=n){
if(b[i]<tl || tr<a[i]) return;
if(a[i]<=tl && tr<=b[i]){
// cout << tl _ tr << nl;
segs[v].push_back(i); return;
}
insert(i, lc,tl,mid);
insert(i, rc,mid+1,tr);
}
void dijk(int *d){
rep(v,0,2*N) stvis[v] = 0;
rep(i,1,n+1){
vis[i] = 0;
if(d[i] <= n){
pq.push({-d[i], i});
}
}
while(!pq.empty()){
auto[dist,x] = pq.top(); pq.pop();
if(vis[x]) continue;
vis[x] = 1;
dist *= -1;
// if(d==ans){dbg(x); dbg(dist);}
int v=0,tl=1,tr=n;
while(1){
assert(tl<=x && x<=tr);
if(!stvis[v]){
stvis[v] = 1;
for(int y : segs[v]) if(d[y] > d[x]+1){
d[y] = d[x]+1;
pq.push({-d[y], y});
}
}
if(tl==tr) break;
if(x<=mid){
v=lc; tr=mid;
}
else{
v=rc; tl=mid+1;
}
}
}
}
void solve(){
cin >> n;
rep(i,1,n+1){
cin >> a[i] >> b[i];
to1[i] = ton[i] = ans[i] = INF;
// dbg(i);
insert(i);
}
// cout << nl;
// find distance to 1
to1[1] = 0;
dijk(to1);
// rep(i,1,n+1) cout << to1[i] << " ";
// cout << nl;
// find distance to n
ton[n] = 0;
dijk(ton);
// rep(i,1,n+1) cout << ton[i] << " ";
// cout << nl;
// find optimal path
rep(i,1,n+1){
ans[i] = to1[i] + ton[i];
// double counted your inital passport
if(1<i && i<n) ans[i]--;
if(a[i]==1 && b[i]==n) ans[i] = 1;
}
dijk(ans);
int q; cin >> q;
while(q--){
int i; cin >> i;
int out = ans[i];
// if(1<i && i<n && out>1) out--;
if(out>n) out = -1;
cout << out << nl;
}
}
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
5 ms |
10080 KB |
Output is correct |
2 |
Correct |
5 ms |
10112 KB |
Output is correct |
3 |
Correct |
5 ms |
10068 KB |
Output is correct |
4 |
Correct |
402 ms |
38956 KB |
Output is correct |
5 |
Correct |
202 ms |
29272 KB |
Output is correct |
6 |
Correct |
135 ms |
29256 KB |
Output is correct |
7 |
Correct |
119 ms |
18724 KB |
Output is correct |
8 |
Correct |
76 ms |
21596 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
5 ms |
10068 KB |
Output is correct |
2 |
Correct |
6 ms |
10116 KB |
Output is correct |
3 |
Correct |
5 ms |
10068 KB |
Output is correct |
4 |
Correct |
5 ms |
10068 KB |
Output is correct |
5 |
Correct |
5 ms |
10068 KB |
Output is correct |
6 |
Correct |
5 ms |
10068 KB |
Output is correct |
7 |
Correct |
6 ms |
10068 KB |
Output is correct |
8 |
Correct |
6 ms |
10068 KB |
Output is correct |
9 |
Correct |
6 ms |
10108 KB |
Output is correct |
10 |
Correct |
5 ms |
10068 KB |
Output is correct |
11 |
Correct |
5 ms |
10108 KB |
Output is correct |
12 |
Correct |
5 ms |
10120 KB |
Output is correct |
13 |
Correct |
6 ms |
10068 KB |
Output is correct |
14 |
Correct |
5 ms |
10196 KB |
Output is correct |
15 |
Correct |
5 ms |
10112 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
5 ms |
10068 KB |
Output is correct |
2 |
Correct |
6 ms |
10116 KB |
Output is correct |
3 |
Correct |
5 ms |
10068 KB |
Output is correct |
4 |
Correct |
5 ms |
10068 KB |
Output is correct |
5 |
Correct |
5 ms |
10068 KB |
Output is correct |
6 |
Correct |
5 ms |
10068 KB |
Output is correct |
7 |
Correct |
6 ms |
10068 KB |
Output is correct |
8 |
Correct |
6 ms |
10068 KB |
Output is correct |
9 |
Correct |
6 ms |
10108 KB |
Output is correct |
10 |
Correct |
5 ms |
10068 KB |
Output is correct |
11 |
Correct |
5 ms |
10108 KB |
Output is correct |
12 |
Correct |
5 ms |
10120 KB |
Output is correct |
13 |
Correct |
6 ms |
10068 KB |
Output is correct |
14 |
Correct |
5 ms |
10196 KB |
Output is correct |
15 |
Correct |
5 ms |
10112 KB |
Output is correct |
16 |
Correct |
7 ms |
10324 KB |
Output is correct |
17 |
Correct |
7 ms |
10400 KB |
Output is correct |
18 |
Correct |
8 ms |
10400 KB |
Output is correct |
19 |
Correct |
7 ms |
10376 KB |
Output is correct |
20 |
Correct |
7 ms |
10324 KB |
Output is correct |
21 |
Correct |
8 ms |
10252 KB |
Output is correct |
22 |
Correct |
6 ms |
10196 KB |
Output is correct |
23 |
Correct |
8 ms |
10392 KB |
Output is correct |
24 |
Correct |
7 ms |
10324 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
5 ms |
10068 KB |
Output is correct |
2 |
Correct |
6 ms |
10116 KB |
Output is correct |
3 |
Correct |
5 ms |
10068 KB |
Output is correct |
4 |
Correct |
5 ms |
10068 KB |
Output is correct |
5 |
Correct |
5 ms |
10068 KB |
Output is correct |
6 |
Correct |
5 ms |
10068 KB |
Output is correct |
7 |
Correct |
6 ms |
10068 KB |
Output is correct |
8 |
Correct |
6 ms |
10068 KB |
Output is correct |
9 |
Correct |
6 ms |
10108 KB |
Output is correct |
10 |
Correct |
5 ms |
10068 KB |
Output is correct |
11 |
Correct |
5 ms |
10108 KB |
Output is correct |
12 |
Correct |
5 ms |
10120 KB |
Output is correct |
13 |
Correct |
6 ms |
10068 KB |
Output is correct |
14 |
Correct |
5 ms |
10196 KB |
Output is correct |
15 |
Correct |
5 ms |
10112 KB |
Output is correct |
16 |
Correct |
7 ms |
10324 KB |
Output is correct |
17 |
Correct |
7 ms |
10400 KB |
Output is correct |
18 |
Correct |
8 ms |
10400 KB |
Output is correct |
19 |
Correct |
7 ms |
10376 KB |
Output is correct |
20 |
Correct |
7 ms |
10324 KB |
Output is correct |
21 |
Correct |
8 ms |
10252 KB |
Output is correct |
22 |
Correct |
6 ms |
10196 KB |
Output is correct |
23 |
Correct |
8 ms |
10392 KB |
Output is correct |
24 |
Correct |
7 ms |
10324 KB |
Output is correct |
25 |
Correct |
6 ms |
10068 KB |
Output is correct |
26 |
Correct |
5 ms |
10068 KB |
Output is correct |
27 |
Correct |
8 ms |
10388 KB |
Output is correct |
28 |
Correct |
7 ms |
10324 KB |
Output is correct |
29 |
Correct |
7 ms |
10384 KB |
Output is correct |
30 |
Correct |
7 ms |
10324 KB |
Output is correct |
31 |
Correct |
10 ms |
10384 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
5 ms |
10080 KB |
Output is correct |
2 |
Correct |
5 ms |
10112 KB |
Output is correct |
3 |
Correct |
5 ms |
10068 KB |
Output is correct |
4 |
Correct |
402 ms |
38956 KB |
Output is correct |
5 |
Correct |
202 ms |
29272 KB |
Output is correct |
6 |
Correct |
135 ms |
29256 KB |
Output is correct |
7 |
Correct |
119 ms |
18724 KB |
Output is correct |
8 |
Correct |
76 ms |
21596 KB |
Output is correct |
9 |
Correct |
5 ms |
10068 KB |
Output is correct |
10 |
Correct |
6 ms |
10116 KB |
Output is correct |
11 |
Correct |
5 ms |
10068 KB |
Output is correct |
12 |
Correct |
5 ms |
10068 KB |
Output is correct |
13 |
Correct |
5 ms |
10068 KB |
Output is correct |
14 |
Correct |
5 ms |
10068 KB |
Output is correct |
15 |
Correct |
6 ms |
10068 KB |
Output is correct |
16 |
Correct |
6 ms |
10068 KB |
Output is correct |
17 |
Correct |
6 ms |
10108 KB |
Output is correct |
18 |
Correct |
5 ms |
10068 KB |
Output is correct |
19 |
Correct |
5 ms |
10108 KB |
Output is correct |
20 |
Correct |
5 ms |
10120 KB |
Output is correct |
21 |
Correct |
6 ms |
10068 KB |
Output is correct |
22 |
Correct |
5 ms |
10196 KB |
Output is correct |
23 |
Correct |
5 ms |
10112 KB |
Output is correct |
24 |
Correct |
7 ms |
10324 KB |
Output is correct |
25 |
Correct |
7 ms |
10400 KB |
Output is correct |
26 |
Correct |
8 ms |
10400 KB |
Output is correct |
27 |
Correct |
7 ms |
10376 KB |
Output is correct |
28 |
Correct |
7 ms |
10324 KB |
Output is correct |
29 |
Correct |
8 ms |
10252 KB |
Output is correct |
30 |
Correct |
6 ms |
10196 KB |
Output is correct |
31 |
Correct |
8 ms |
10392 KB |
Output is correct |
32 |
Correct |
7 ms |
10324 KB |
Output is correct |
33 |
Correct |
6 ms |
10068 KB |
Output is correct |
34 |
Correct |
5 ms |
10068 KB |
Output is correct |
35 |
Correct |
8 ms |
10388 KB |
Output is correct |
36 |
Correct |
7 ms |
10324 KB |
Output is correct |
37 |
Correct |
7 ms |
10384 KB |
Output is correct |
38 |
Correct |
7 ms |
10324 KB |
Output is correct |
39 |
Correct |
10 ms |
10384 KB |
Output is correct |
40 |
Correct |
435 ms |
40496 KB |
Output is correct |
41 |
Correct |
235 ms |
31372 KB |
Output is correct |
42 |
Correct |
295 ms |
40780 KB |
Output is correct |
43 |
Correct |
302 ms |
40424 KB |
Output is correct |
44 |
Correct |
173 ms |
31420 KB |
Output is correct |
45 |
Correct |
164 ms |
30984 KB |
Output is correct |
46 |
Correct |
83 ms |
17628 KB |
Output is correct |
47 |
Correct |
298 ms |
32296 KB |
Output is correct |
48 |
Correct |
190 ms |
31436 KB |
Output is correct |