Submission #872256

# Submission time Handle Problem Language Result Execution time Memory
872256 2023-11-12T15:51:02 Z green_gold_dog Sequence (APIO23_sequence) C++17
50 / 100
2000 ms 68652 KB
#include "sequence.h"

#include <bits/stdc++.h>

using namespace std;

typedef int ll;

const ll INF = 1'000'000'000;

struct segment_tree_min {
        vector<ll> tree, m;
        ll size;
        segment_tree_min(ll n) {
                size = 1;
                while (size < n) {
                        size *= 2;
                }
                tree.resize(size * 2, 0);
                m.resize(size * 2, 0);
        }
        void add(ll v, ll x) {
                tree[v] += x;
                m[v] += x;
        }
        void push(ll v) {
                add(v * 2, m[v]);
                add(v * 2 + 1, m[v]);
                m[v] = 0;
        }
        ll get(ll l, ll r) {
                return get(1, 0, size, l, r);
        }
        ll get(ll v, ll l, ll r, ll ql, ll qr) {
                if (ql <= l && r <= qr) {
                        return tree[v];
                }
                if (qr <= l || r <= ql) {
                        return INF;
                }
                push(v);
                ll mid = (l + r) / 2;
                return min(get(v * 2, l, mid, ql, qr), get(v * 2 + 1, mid, r, ql, qr));
        }
        void add(ll l, ll r, ll x) {
                add(1, 0, size, l, r, x);
        }
        void add(ll v, ll l, ll r, ll ql, ll qr, ll x) {
                if (ql <= l && r <= qr) {
                        add(v, x);
                        return;
                }
                if (qr <= l || r <= ql) {
                        return;
                }
                push(v);
                ll mid = (l + r) / 2;
                add(v * 2, l, mid, ql, qr, x);
                add(v * 2 + 1, mid, r, ql, qr, x);
                tree[v] = min(tree[v * 2], tree[v * 2 + 1]);
        }
};

struct segment_tree_max {
        vector<ll> tree, m;
        ll size;
        segment_tree_max(ll n) {
                size = 1;
                while (size < n) {
                        size *= 2;
                }
                tree.resize(size * 2, 0);
                m.resize(size * 2, 0);
        }
        void add(ll v, ll x) {
                tree[v] += x;
                m[v] += x;
        }
        void push(ll v) {
                add(v * 2, m[v]);
                add(v * 2 + 1, m[v]);
                m[v] = 0;
        }
        ll get(ll l, ll r) {
                return get(1, 0, size, l, r);
        }
        ll get(ll v, ll l, ll r, ll ql, ll qr) {
                if (ql <= l && r <= qr) {
                        return tree[v];
                }
                if (qr <= l || r <= ql) {
                        return -INF;
                }
                push(v);
                ll mid = (l + r) / 2;
                return max(get(v * 2, l, mid, ql, qr), get(v * 2 + 1, mid, r, ql, qr));
        }
        void add(ll l, ll r, ll x) {
                add(1, 0, size, l, r, x);
        }
        void add(ll v, ll l, ll r, ll ql, ll qr, ll x) {
                if (ql <= l && r <= qr) {
                        add(v, x);
                        return;
                }
                if (qr <= l || r <= ql) {
                        return;
                }
                push(v);
                ll mid = (l + r) / 2;
                add(v * 2, l, mid, ql, qr, x);
                add(v * 2 + 1, mid, r, ql, qr, x);
                tree[v] = max(tree[v * 2], tree[v * 2 + 1]);
        }
};

struct segment_tree_sum {
        vector<ll> tree;
        ll size;
        segment_tree_sum(ll n) {
                size = 1;
                while (size < n) {
                        size *= 2;
                }
                tree.resize(size * 2, 0);
        }
        ll get(ll l, ll r) {
                return get(1, 0, size, l, r);
        }
        ll get(ll v, ll l, ll r, ll ql, ll qr) {
                if (ql <= l && r <= qr) {
                        return tree[v];
                }
                if (qr <= l || r <= ql) {
                        return 0;
                }
                ll mid = (l + r) / 2;
                return get(v * 2, l, mid, ql, qr) + get(v * 2 + 1, mid, r, ql, qr);
        }
        void add(ll x, ll y) {
                add(1, 0, size, x, y);
        }
        void add(ll v, ll l, ll r, ll x, ll y) {
                if (x < l || r <= x) {
                        return;
                }
                if (r - l == 1) {
                        tree[v] += y;
                        return;
                }
                ll mid = (l + r) / 2;
                add(v * 2, l, mid, x, y);
                add(v * 2 + 1, mid, r, x, y);
                tree[v] = tree[v * 2] + tree[v * 2 + 1];
        }
};

ll sequence(ll n, vector<ll> a) {
        segment_tree_min sti(n), stir(n);
        segment_tree_max sta(n), star(n);
        segment_tree_sum st(n);
        vector<vector<ll>> all(n);
        for (ll i = 0; i < n; i++) {
                sti.add(i, n, 1);
                sta.add(i, n, 1);
                stir.add(0, i + 1, 1);
                star.add(0, i + 1, 1);
                st.add(i, 1);
                all[a[i] - 1].push_back(i);
        }
        ll ans = 0;
        for (ll i = 0; i < n; i++) {
                for (auto j : all[i]) {
                        sti.add(j, n, -1);
                        sti.add(j, n, -1);
                        stir.add(0, j + 1, -1);
                        star.add(0, j + 1, -1);
                        st.add(j, -1);
                }
                ll lst = 0;
                for (ll j = 0; j < all[i].size(); j++) {
                        ll x = all[i][j];
                        sti.add(x, n, 1);
                        sta.add(x, n, -1);
                        ll m = st.get(0, all[i][j]), m2 = st.get(all[i][j], n);
                        ll mmi = stir.get(lst, all[i][j] + 1) - m2 - m, mma = star.get(lst, all[i][j] + 1) - m2 - m;
                        ll l = j, r = all[i].size();
                        while (r - l > 1) {
                                ll mid = (l + r) / 2;
                                ll mi = sti.get(all[i][mid], n) + mmi, ma = sta.get(all[i][mid], n) + mma;
                                if ((mi <= -1 && ma >= -1) || (mi <= 0 && ma >= 0) || (mi <= 1 && ma >= 1)) {
                                        l = mid;
                                } else {
                                        r = mid;
                                }
                        }
                        lst = all[i][j] + 1;
                        ans = max(ans, r - j);
                }
                for (auto j : all[i]) {
                        sti.add(j, n, -1);
                        sta.add(j, n, -1);
                        stir.add(0, j + 1, -1);
                        star.add(0, j + 1, -1);
                        st.add(j, -1);
                }
        }
        return ans;
}

Compilation message

sequence.cpp: In function 'll sequence(ll, std::vector<int>)':
sequence.cpp:181:34: warning: comparison of integer expressions of different signedness: 'll' {aka 'int'} and 'std::vector<int>::size_type' {aka 'long unsigned int'} [-Wsign-compare]
  181 |                 for (ll j = 0; j < all[i].size(); j++) {
      |                                ~~^~~~~~~~~~~~~~~
# Verdict Execution time Memory Grader output
1 Correct 0 ms 344 KB Output is correct
2 Correct 0 ms 348 KB Output is correct
3 Correct 0 ms 348 KB Output is correct
4 Correct 0 ms 348 KB Output is correct
5 Correct 0 ms 348 KB Output is correct
6 Correct 1 ms 348 KB Output is correct
7 Correct 0 ms 432 KB Output is correct
8 Correct 0 ms 348 KB Output is correct
9 Correct 1 ms 348 KB Output is correct
10 Correct 1 ms 348 KB Output is correct
11 Correct 1 ms 348 KB Output is correct
12 Correct 1 ms 436 KB Output is correct
# Verdict Execution time Memory Grader output
1 Correct 0 ms 344 KB Output is correct
2 Correct 0 ms 348 KB Output is correct
3 Correct 0 ms 348 KB Output is correct
4 Correct 0 ms 348 KB Output is correct
5 Correct 0 ms 348 KB Output is correct
6 Correct 1 ms 348 KB Output is correct
7 Correct 0 ms 432 KB Output is correct
8 Correct 0 ms 348 KB Output is correct
9 Correct 1 ms 348 KB Output is correct
10 Correct 1 ms 348 KB Output is correct
11 Correct 1 ms 348 KB Output is correct
12 Correct 1 ms 436 KB Output is correct
13 Correct 8 ms 604 KB Output is correct
14 Correct 7 ms 696 KB Output is correct
15 Correct 12 ms 872 KB Output is correct
16 Correct 10 ms 668 KB Output is correct
17 Correct 10 ms 604 KB Output is correct
18 Correct 6 ms 600 KB Output is correct
19 Correct 8 ms 688 KB Output is correct
20 Correct 8 ms 604 KB Output is correct
21 Correct 8 ms 692 KB Output is correct
22 Correct 8 ms 604 KB Output is correct
# Verdict Execution time Memory Grader output
1 Correct 0 ms 344 KB Output is correct
2 Execution timed out 2051 ms 62968 KB Time limit exceeded
3 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 0 ms 348 KB Output is correct
2 Execution timed out 2051 ms 56296 KB Time limit exceeded
3 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Execution timed out 2013 ms 68652 KB Time limit exceeded
2 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 0 ms 344 KB Output is correct
2 Correct 0 ms 348 KB Output is correct
3 Correct 0 ms 348 KB Output is correct
4 Correct 0 ms 348 KB Output is correct
5 Correct 0 ms 348 KB Output is correct
6 Correct 1 ms 348 KB Output is correct
7 Correct 0 ms 432 KB Output is correct
8 Correct 0 ms 348 KB Output is correct
9 Correct 1 ms 348 KB Output is correct
10 Correct 1 ms 348 KB Output is correct
11 Correct 1 ms 348 KB Output is correct
12 Correct 1 ms 436 KB Output is correct
13 Correct 8 ms 604 KB Output is correct
14 Correct 7 ms 696 KB Output is correct
15 Correct 12 ms 872 KB Output is correct
16 Correct 10 ms 668 KB Output is correct
17 Correct 10 ms 604 KB Output is correct
18 Correct 6 ms 600 KB Output is correct
19 Correct 8 ms 688 KB Output is correct
20 Correct 8 ms 604 KB Output is correct
21 Correct 8 ms 692 KB Output is correct
22 Correct 8 ms 604 KB Output is correct
23 Correct 507 ms 14252 KB Output is correct
24 Correct 519 ms 14420 KB Output is correct
25 Correct 517 ms 14420 KB Output is correct
26 Correct 697 ms 13140 KB Output is correct
27 Correct 678 ms 13144 KB Output is correct
28 Correct 599 ms 13140 KB Output is correct
29 Correct 822 ms 12756 KB Output is correct
30 Correct 832 ms 12820 KB Output is correct
31 Correct 743 ms 13200 KB Output is correct
32 Correct 437 ms 15152 KB Output is correct
33 Correct 552 ms 13952 KB Output is correct
34 Correct 546 ms 13892 KB Output is correct
35 Correct 561 ms 14020 KB Output is correct
36 Correct 564 ms 14036 KB Output is correct
37 Correct 558 ms 14168 KB Output is correct
38 Correct 532 ms 14076 KB Output is correct
# Verdict Execution time Memory Grader output
1 Correct 0 ms 344 KB Output is correct
2 Correct 0 ms 348 KB Output is correct
3 Correct 0 ms 348 KB Output is correct
4 Correct 0 ms 348 KB Output is correct
5 Correct 0 ms 348 KB Output is correct
6 Correct 1 ms 348 KB Output is correct
7 Correct 0 ms 432 KB Output is correct
8 Correct 0 ms 348 KB Output is correct
9 Correct 1 ms 348 KB Output is correct
10 Correct 1 ms 348 KB Output is correct
11 Correct 1 ms 348 KB Output is correct
12 Correct 1 ms 436 KB Output is correct
13 Correct 8 ms 604 KB Output is correct
14 Correct 7 ms 696 KB Output is correct
15 Correct 12 ms 872 KB Output is correct
16 Correct 10 ms 668 KB Output is correct
17 Correct 10 ms 604 KB Output is correct
18 Correct 6 ms 600 KB Output is correct
19 Correct 8 ms 688 KB Output is correct
20 Correct 8 ms 604 KB Output is correct
21 Correct 8 ms 692 KB Output is correct
22 Correct 8 ms 604 KB Output is correct
23 Execution timed out 2051 ms 62968 KB Time limit exceeded
24 Halted 0 ms 0 KB -