This documentation is automatically generated by competitive-verifier/competitive-verifier
// competitive-verifier: STANDALONE
#include "../../structure/others/plus-minus-one-rmq.hpp"
#include <algorithm>
#include <cassert>
#include <random>
#include <vector>
void check(const std::vector<int>& values) {
const PlusMinusOneRMQ<int> rmq(values);
for (int left = 0; left < (int)values.size(); left++) {
int expected = values[left];
for (int right = left + 1; right <= (int)values.size(); right++) {
expected = std::min(expected, values[right - 1]);
const auto [value, position] = rmq.fold(left, right);
assert(value == expected);
assert(left <= position && position < right);
assert(values[position] == value);
}
}
}
int main() {
check({42});
check({0, 1, 0, -1, 0, -1, -2, -1});
std::mt19937 rng(123456789);
for (int n = 1; n <= 100; n++) {
std::vector<int> values(n);
values[0] = (int)(rng() % 101) - 50;
for (int i = 1; i < n; i++) {
values[i] = values[i - 1] + (rng() % 2 == 0 ? -1 : 1);
}
check(values);
}
}
#line 1 "test/unittest/plus-minus-one-rmq.test.cpp"
// competitive-verifier: STANDALONE
#line 2 "structure/others/plus-minus-one-rmq.hpp"
#include <algorithm>
#include <functional>
#include <utility>
#include <vector>
#line 2 "structure/others/sparse-table.hpp"
#line 4 "structure/others/sparse-table.hpp"
/**
* @brief Sparse-Table(スパーステーブル)
*
*/
template <typename T, typename F>
struct SparseTable {
F f;
std::vector<std::vector<T>> st;
std::vector<int> lookup;
SparseTable() = default;
explicit SparseTable(const std::vector<T>& v, const F& f) : f(f) {
const int n = (int)v.size();
const int b = 32 - __builtin_clz(n);
st.assign(b, std::vector<T>(n));
for (int i = 0; i < n; i++) {
st[0][i] = v[i];
}
for (int i = 1; i < b; i++) {
for (int j = 0; j + (1 << i) <= n; j++) {
st[i][j] = f(st[i - 1][j], st[i - 1][j + (1 << (i - 1))]);
}
}
lookup.resize(v.size() + 1);
for (int i = 2; i <= n; i++) {
lookup[i] = lookup[i >> 1] + 1;
}
}
inline T fold(int l, int r) const {
int b = lookup[r - l];
return f(st[b][l], st[b][r - (1 << b)]);
}
};
template <typename T, typename F>
SparseTable<T, F> get_sparse_table(const std::vector<T>& v, const F& f) {
return SparseTable<T, F>(v, f);
}
#line 9 "structure/others/plus-minus-one-rmq.hpp"
/**
* @brief Plus-Minus-One-RMQ
**/
template <typename T>
struct PlusMinusOneRMQ {
using F = std::function<int(int, int)>;
int backet;
std::vector<T> vs;
std::vector<int> bidx, bbit;
SparseTable<int, F> st;
std::vector<std::vector<std::vector<int>>> lookup;
explicit PlusMinusOneRMQ() = default;
explicit PlusMinusOneRMQ(const std::vector<T>& vs) : vs(vs) {
int n = (int)vs.size();
backet = std::max(1, (31 - __builtin_clz(n)) / 2);
int sz = (n + backet - 1) / backet;
bidx.assign(sz, -1);
bbit.assign(sz, 0);
for (int i = 0; i < sz; i++) {
int l = i * backet;
int r = std::min(l + backet, n);
bidx[i] = l;
for (int j = l + 1; j < r; j++) {
if (vs[j] < vs[bidx[i]]) bidx[i] = j;
if (vs[j - 1] < vs[j]) bbit[i] |= 1 << (j - l - 1);
}
}
F f = [&](int a, int b) { return vs[a] < vs[b] ? a : b; };
st = get_sparse_table(bidx, f);
lookup.assign(1 << (backet - 1), std::vector<std::vector<int>>(
backet, std::vector<int>(backet + 1)));
for (int i = 0; i < (1 << (backet - 1)); i++) {
for (int j = 0; j < backet; j++) {
int sum = 0, ret = 0, pos = j;
for (int k = j + 1; k <= backet; k++) {
lookup[i][j][k] = pos;
if (i & (1 << (k - 1)))
++sum;
else
--sum;
if (sum < ret) {
pos = k;
ret = sum;
}
}
}
}
}
std::pair<T, int> fold(int l, int r) const {
int lb = l / backet;
int rb = r / backet;
if (lb == rb) {
int pos = lb * backet + lookup[bbit[lb]][l % backet][r % backet];
return {vs[pos], pos};
}
int pos = lb * backet + lookup[bbit[lb]][l % backet][backet];
if (r % backet > 0) {
int sub = rb * backet + lookup[bbit[rb]][0][r % backet];
if (vs[sub] < vs[pos]) pos = sub;
}
if (lb + 1 == rb) {
return {vs[pos], pos};
} else {
int sub = st.fold(lb + 1, rb);
if (vs[sub] < vs[pos]) pos = sub;
return {vs[pos], pos};
}
}
};
#line 4 "test/unittest/plus-minus-one-rmq.test.cpp"
#line 6 "test/unittest/plus-minus-one-rmq.test.cpp"
#include <cassert>
#include <random>
#line 9 "test/unittest/plus-minus-one-rmq.test.cpp"
void check(const std::vector<int>& values) {
const PlusMinusOneRMQ<int> rmq(values);
for (int left = 0; left < (int)values.size(); left++) {
int expected = values[left];
for (int right = left + 1; right <= (int)values.size(); right++) {
expected = std::min(expected, values[right - 1]);
const auto [value, position] = rmq.fold(left, right);
assert(value == expected);
assert(left <= position && position < right);
assert(values[position] == value);
}
}
}
int main() {
check({42});
check({0, 1, 0, -1, 0, -1, -2, -1});
std::mt19937 rng(123456789);
for (int n = 1; n <= 100; n++) {
std::vector<int> values(n);
values[0] = (int)(rng() % 101) - 50;
for (int i = 1; i < n; i++) {
values[i] = values[i - 1] + (rng() % 2 == 0 ? -1 : 1);
}
check(values);
}
}