#define _USE_MATH_DEFINES
#include <bits/stdc++.h>
#define ff first
#define ss second
#define pb push_back
#define all(a) (a).begin(), (a).end()
#define replr(i, a, b) for (int i = int(a); i <= int(b); ++i)
#define reprl(i, a, b) for (int i = int(a); i >= int(b); --i)
#define rep(i, n) for (int i = 0; i < int(n); ++i)
#define mkp(a, b) make_pair(a, b)
using namespace std;
typedef long long ll;
typedef long double ld;
typedef pair<int, int> PII;
typedef vector<int> VI;
typedef vector<PII> VPI;
typedef vector<VI> VVI;
typedef vector<VVI> VVVI;
typedef vector<VPI> VVPI;
typedef pair<ll, ll> PLL;
typedef vector<ll> VL;
typedef vector<PLL> VPL;
typedef vector<VL> VVL;
typedef vector<VVL> VVVL;
typedef vector<VPL> VVPL;
template<class T> T setmax(T& a, T b) {if (a < b) return a = b; return a;}
template<class T> T setmin(T& a, T b) {if (a < b) return a; return a = b;}
#include <ext/pb_ds/assoc_container.hpp>
using namespace __gnu_pbds;
template<class T>
using indset = tree<T, null_type, less<T>, rb_tree_tag, tree_order_statistics_node_update>;
#include "plants.h"
struct MINARGSEGTREE {
int n;
VPI tree;
VI lazy;
MINARGSEGTREE(){}
MINARGSEGTREE(int sz) {
n = 1;
while (n < sz) n *= 2;
tree = VPI(2*n, {+1e9, -1});
lazy = VI(2*n);
}
void push(int N) {
tree[N].ff += lazy[N];
if (2*N+2 < 2*n) {
lazy[2*N+1] += lazy[N];
lazy[2*N+2] += lazy[N];
}
lazy[N] = 0;
}
void set(int N, int L, int R, int i, PII s) {
push(N);
if (i < L || i > R) return;
if (L == R) {
tree[N] = s;
return;
}
int M = (L + R) / 2;
set(2*N+1, L, M, i, s);
set(2*N+2, M+1, R, i, s);
tree[N] = min(tree[2*N+1], tree[2*N+2]);
}
void add(int N, int L, int R, int l, int r, int s) {
push(N);
if (R < l || L > r) return;
if (l <= L && R <= r) {
lazy[N] = s;
push(N);
return;
}
int M = (L + R) / 2;
add(2*N+1, L, M, l, r, s);
add(2*N+2, M+1, R, l, r, s);
tree[N] = min(tree[2*N+1], tree[2*N+2]);
}
PII get(int N, int L, int R, int l, int r) {
push(N);
if (l <= L && R <= r) return tree[N];
if (R < l || L > r) return {+1e9, -1};
int M = (L + R) / 2;
return min(get(2*N+1, L, M, l, r), get(2*N+2, M+1, R, l, r));
}
void set(int i, int s) {
set(0, 0, n-1, i, {s, i});
}
void add(int l, int r, int s) {
add(0, 0, n-1, l, r, s);
}
PII get(int l, int r) {
return get(0, 0, n-1, l, r);
}
};
struct FIRSTZERODS {
int n;
MINARGSEGTREE seg;
FIRSTZERODS(){}
FIRSTZERODS(VI a) {
n = a.size();
seg = MINARGSEGTREE(n);
rep(i, n) seg.set(i, a[i]);
}
void remove(int i) {
seg.set(i, +1e9);
}
void decrement(int l, int r) {
l = (l+100*n)%n;
r = (r+100*n)%n;
if (l <= r) seg.add(l, r, -1);
else {
seg.add(l, n-1, -1);
seg.add(0, r, -1);
}
}
int get(int l, int r) {
l = (l+100*n)%n;
r = (r+100*n)%n;
PII ret;
if (l <= r) ret = seg.get(l, r);
else {
ret = seg.get(l, n-1);
if (ret.ff) ret = seg.get(0, r);
}
if (ret.ff == 0) return ret.ss;
return -1;
}
void print() {
rep(i, n) cout << seg.get(i, i).ff << " "; cout << endl;
}
};
int n, k;
FIRSTZERODS seg;
VI a;
int mx;
void extract(int i) {
while (true) {
int prev = seg.get(i-k+1, i-1);
if (prev == -1) break;
extract(prev);
}
a[i] = mx--;
seg.remove(i);
seg.decrement(i-k+1, i-1);
}
VI b;
VI pr, pl;
VVI parr, parl;
void init(int K_ARG, VI r) {
k = K_ARG;
n = r.size();
seg = FIRSTZERODS(r);
a = VI(n, -1);
mx = n-1;
while (mx >= 0) extract(seg.get(0, n-1));
rep(_, 3) for (int x : a) b.pb(x);
pr = pl = VI(3*n);
rep(i, 3*n) pr[i] = pl[i] = i;
set<PII> st;
replr(i, 0, k-1) st.insert({b[i], i});
replr(i, 0, 3*n-1) {
auto it = st.upper_bound({b[i], +2e9});
if (it != st.end()) pr[i] = it->ss;
st.erase({b[i], i});
if (i+k < 3*n) st.insert({b[i+k], i+k});
}
st = set<PII>();
reprl(i, 3*n-1, 3*n-k) st.insert({b[i], i});
reprl(i, 3*n-1, 0) {
auto it = st.upper_bound({b[i], +2e9});
if (it != st.end()) pl[i] = it->ss;
st.erase({b[i], i});
if (i-k >= 0) st.insert({b[i-k], i-k});
}
parr = parl = VVI(3*n, VI(21));
rep(i, 3*n) {
parr[i][0] = pr[i];
parl[i][0] = pl[i];
}
replr(k, 1, 20) {
rep(i, 3*n) {
parl[i][k] = parl[parl[i][k-1]][k-1];
parr[i][k] = parr[parr[i][k-1]][k-1];
}
}
}
bool goright(int x, int y) {
reprl(k, 20, 0) if (parr[x][k] < y) x = parr[x][k];
return y <= x+k-1 && b[y] > b[x];
}
bool goleft(int x, int y) {
reprl(k, 20, 0) if (parl[x][k] > y) x = parl[x][k];
return x <= y+k-1 && b[y] > b[x];
}
bool issmaller(int x, int y) {
if (y > x) return goright(x, y) || goleft(x, y-n);
return goright(x, y+n) || goleft(x, y);
}
int compare_plants(int x, int y) {
x += n;
y += n;
if (issmaller(x, y)) return -1;
if (issmaller(y, x)) return +1;
return 0;
}
Compilation message
plants.cpp: In member function 'void FIRSTZERODS::print()':
plants.cpp:9:19: warning: this 'for' clause does not guard... [-Wmisleading-indentation]
9 | #define rep(i, n) for (int i = 0; i < int(n); ++i)
| ^~~
plants.cpp:129:9: note: in expansion of macro 'rep'
129 | rep(i, n) cout << seg.get(i, i).ff << " "; cout << endl;
| ^~~
plants.cpp:129:52: note: ...this statement, but the latter is misleadingly indented as if it were guarded by the 'for'
129 | rep(i, n) cout << seg.get(i, i).ff << " "; cout << endl;
| ^~~~
# |
결과 |
실행 시간 |
메모리 |
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 |
64 ms |
3132 KB |
Output is correct |
7 |
Correct |
157 ms |
18900 KB |
Output is correct |
8 |
Correct |
570 ms |
160484 KB |
Output is correct |
9 |
Correct |
606 ms |
159504 KB |
Output is correct |
10 |
Correct |
594 ms |
159544 KB |
Output is correct |
11 |
Correct |
598 ms |
159800 KB |
Output is correct |
12 |
Correct |
608 ms |
160312 KB |
Output is correct |
13 |
Correct |
682 ms |
159544 KB |
Output is correct |
14 |
Correct |
541 ms |
160268 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
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 |
1 ms |
348 KB |
Output is correct |
6 |
Correct |
5 ms |
1116 KB |
Output is correct |
7 |
Correct |
84 ms |
6984 KB |
Output is correct |
8 |
Correct |
2 ms |
600 KB |
Output is correct |
9 |
Correct |
5 ms |
1116 KB |
Output is correct |
10 |
Correct |
103 ms |
6996 KB |
Output is correct |
11 |
Correct |
108 ms |
6992 KB |
Output is correct |
12 |
Correct |
59 ms |
7248 KB |
Output is correct |
13 |
Correct |
86 ms |
6988 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
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 |
1 ms |
348 KB |
Output is correct |
6 |
Correct |
5 ms |
1116 KB |
Output is correct |
7 |
Correct |
84 ms |
6984 KB |
Output is correct |
8 |
Correct |
2 ms |
600 KB |
Output is correct |
9 |
Correct |
5 ms |
1116 KB |
Output is correct |
10 |
Correct |
103 ms |
6996 KB |
Output is correct |
11 |
Correct |
108 ms |
6992 KB |
Output is correct |
12 |
Correct |
59 ms |
7248 KB |
Output is correct |
13 |
Correct |
86 ms |
6988 KB |
Output is correct |
14 |
Correct |
165 ms |
18892 KB |
Output is correct |
15 |
Correct |
1476 ms |
160612 KB |
Output is correct |
16 |
Correct |
162 ms |
18892 KB |
Output is correct |
17 |
Correct |
1537 ms |
159248 KB |
Output is correct |
18 |
Correct |
950 ms |
159504 KB |
Output is correct |
19 |
Correct |
837 ms |
159028 KB |
Output is correct |
20 |
Correct |
1419 ms |
159564 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
1 ms |
348 KB |
Output is correct |
2 |
Correct |
0 ms |
348 KB |
Output is correct |
3 |
Correct |
120 ms |
4592 KB |
Output is correct |
4 |
Correct |
887 ms |
162364 KB |
Output is correct |
5 |
Correct |
918 ms |
159764 KB |
Output is correct |
6 |
Correct |
1167 ms |
159172 KB |
Output is correct |
7 |
Correct |
1252 ms |
160028 KB |
Output is correct |
8 |
Correct |
1516 ms |
159020 KB |
Output is correct |
9 |
Correct |
1002 ms |
159412 KB |
Output is correct |
10 |
Correct |
854 ms |
159960 KB |
Output is correct |
11 |
Correct |
666 ms |
160528 KB |
Output is correct |
12 |
Correct |
577 ms |
159796 KB |
Output is correct |
13 |
Correct |
937 ms |
159288 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
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 |
2 ms |
348 KB |
Output is correct |
7 |
Correct |
16 ms |
1212 KB |
Output is correct |
8 |
Correct |
14 ms |
1116 KB |
Output is correct |
9 |
Correct |
17 ms |
1112 KB |
Output is correct |
10 |
Correct |
14 ms |
1212 KB |
Output is correct |
11 |
Correct |
23 ms |
1200 KB |
Output is correct |
12 |
Correct |
16 ms |
1116 KB |
Output is correct |
13 |
Correct |
19 ms |
1228 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
Grader output |
1 |
Correct |
0 ms |
348 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 |
4 ms |
1116 KB |
Output is correct |
6 |
Correct |
813 ms |
159508 KB |
Output is correct |
7 |
Correct |
962 ms |
159016 KB |
Output is correct |
8 |
Correct |
1174 ms |
160532 KB |
Output is correct |
9 |
Correct |
1391 ms |
160264 KB |
Output is correct |
10 |
Correct |
824 ms |
160960 KB |
Output is correct |
11 |
Correct |
939 ms |
160780 KB |
Output is correct |
12 |
Correct |
682 ms |
162100 KB |
Output is correct |
13 |
Correct |
900 ms |
160916 KB |
Output is correct |
14 |
Correct |
996 ms |
160560 KB |
Output is correct |
15 |
Correct |
1110 ms |
160276 KB |
Output is correct |
16 |
Correct |
666 ms |
159028 KB |
Output is correct |
17 |
Correct |
768 ms |
159544 KB |
Output is correct |
# |
결과 |
실행 시간 |
메모리 |
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 |
64 ms |
3132 KB |
Output is correct |
7 |
Correct |
157 ms |
18900 KB |
Output is correct |
8 |
Correct |
570 ms |
160484 KB |
Output is correct |
9 |
Correct |
606 ms |
159504 KB |
Output is correct |
10 |
Correct |
594 ms |
159544 KB |
Output is correct |
11 |
Correct |
598 ms |
159800 KB |
Output is correct |
12 |
Correct |
608 ms |
160312 KB |
Output is correct |
13 |
Correct |
682 ms |
159544 KB |
Output is correct |
14 |
Correct |
541 ms |
160268 KB |
Output is correct |
15 |
Correct |
0 ms |
344 KB |
Output is correct |
16 |
Correct |
0 ms |
348 KB |
Output is correct |
17 |
Correct |
0 ms |
348 KB |
Output is correct |
18 |
Correct |
0 ms |
348 KB |
Output is correct |
19 |
Correct |
1 ms |
348 KB |
Output is correct |
20 |
Correct |
5 ms |
1116 KB |
Output is correct |
21 |
Correct |
84 ms |
6984 KB |
Output is correct |
22 |
Correct |
2 ms |
600 KB |
Output is correct |
23 |
Correct |
5 ms |
1116 KB |
Output is correct |
24 |
Correct |
103 ms |
6996 KB |
Output is correct |
25 |
Correct |
108 ms |
6992 KB |
Output is correct |
26 |
Correct |
59 ms |
7248 KB |
Output is correct |
27 |
Correct |
86 ms |
6988 KB |
Output is correct |
28 |
Correct |
165 ms |
18892 KB |
Output is correct |
29 |
Correct |
1476 ms |
160612 KB |
Output is correct |
30 |
Correct |
162 ms |
18892 KB |
Output is correct |
31 |
Correct |
1537 ms |
159248 KB |
Output is correct |
32 |
Correct |
950 ms |
159504 KB |
Output is correct |
33 |
Correct |
837 ms |
159028 KB |
Output is correct |
34 |
Correct |
1419 ms |
159564 KB |
Output is correct |
35 |
Correct |
1 ms |
348 KB |
Output is correct |
36 |
Correct |
0 ms |
348 KB |
Output is correct |
37 |
Correct |
120 ms |
4592 KB |
Output is correct |
38 |
Correct |
887 ms |
162364 KB |
Output is correct |
39 |
Correct |
918 ms |
159764 KB |
Output is correct |
40 |
Correct |
1167 ms |
159172 KB |
Output is correct |
41 |
Correct |
1252 ms |
160028 KB |
Output is correct |
42 |
Correct |
1516 ms |
159020 KB |
Output is correct |
43 |
Correct |
1002 ms |
159412 KB |
Output is correct |
44 |
Correct |
854 ms |
159960 KB |
Output is correct |
45 |
Correct |
666 ms |
160528 KB |
Output is correct |
46 |
Correct |
577 ms |
159796 KB |
Output is correct |
47 |
Correct |
937 ms |
159288 KB |
Output is correct |
48 |
Correct |
0 ms |
344 KB |
Output is correct |
49 |
Correct |
0 ms |
348 KB |
Output is correct |
50 |
Correct |
0 ms |
348 KB |
Output is correct |
51 |
Correct |
0 ms |
348 KB |
Output is correct |
52 |
Correct |
0 ms |
348 KB |
Output is correct |
53 |
Correct |
2 ms |
348 KB |
Output is correct |
54 |
Correct |
16 ms |
1212 KB |
Output is correct |
55 |
Correct |
14 ms |
1116 KB |
Output is correct |
56 |
Correct |
17 ms |
1112 KB |
Output is correct |
57 |
Correct |
14 ms |
1212 KB |
Output is correct |
58 |
Correct |
23 ms |
1200 KB |
Output is correct |
59 |
Correct |
16 ms |
1116 KB |
Output is correct |
60 |
Correct |
19 ms |
1228 KB |
Output is correct |
61 |
Correct |
82 ms |
4692 KB |
Output is correct |
62 |
Correct |
146 ms |
18892 KB |
Output is correct |
63 |
Correct |
719 ms |
159752 KB |
Output is correct |
64 |
Correct |
852 ms |
159288 KB |
Output is correct |
65 |
Correct |
1031 ms |
160572 KB |
Output is correct |
66 |
Correct |
1173 ms |
160316 KB |
Output is correct |
67 |
Correct |
1480 ms |
160316 KB |
Output is correct |
68 |
Correct |
947 ms |
161084 KB |
Output is correct |
69 |
Correct |
1145 ms |
158992 KB |
Output is correct |
70 |
Correct |
913 ms |
162064 KB |
Output is correct |
71 |
Correct |
1072 ms |
160484 KB |
Output is correct |
72 |
Correct |
1102 ms |
160268 KB |
Output is correct |
73 |
Correct |
1291 ms |
160316 KB |
Output is correct |
74 |
Correct |
795 ms |
160192 KB |
Output is correct |
75 |
Correct |
873 ms |
159764 KB |
Output is correct |