This documentation is automatically generated by competitive-verifier/competitive-verifier
// competitive-verifier: STANDALONE
#include "../../structure/others/linear-rmq.hpp"
#include <algorithm>
#include <cassert>
#include <random>
#include <vector>
void check(const std::vector<int>& values) {
const auto rmq = get_linear_rmq(
values.size(), [&](int a, int b) { return values[a] < values[b]; });
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]);
int position = rmq.fold(left, right);
assert(left <= position && position < right);
assert(values[position] == expected);
}
}
}
int main() {
check({42});
check({5, 2, 7, 1, 1, 6});
std::mt19937 rng(123456789);
for (int n = 1; n <= 100; n++) {
std::vector<int> values(n);
for (int& value : values) value = (int)(rng() % 201) - 100;
check(values);
}
}
#line 1 "test/unittest/linear-rmq.test.cpp"
// competitive-verifier: STANDALONE
#line 2 "structure/others/linear-rmq.hpp"
#include <cstddef>
#include <utility>
#include <vector>
/**
* @brief Linear-RMQ
**/
template <typename Comp>
struct LinearRMQ {
std::vector<int> small;
std::vector<std::vector<int>> large;
LinearRMQ() = default;
Comp comp;
static inline int msb(int c) { return 31 - __builtin_clz(c); }
static inline int ctz(unsigned int c) { return __builtin_ctz(c); }
inline int get_min(int l, int r) const { return comp(l, r) ? l : r; }
explicit LinearRMQ(std::size_t size, const Comp& comp) : comp(comp) {
const int n = (int)size;
std::vector<int> st;
st.reserve(32);
large.emplace_back();
large.front().reserve(n / 32);
small.reserve(n);
for (int i = 0; i < n; i++) {
while (!st.empty() && !comp(st.back(), i)) {
st.pop_back();
}
small.emplace_back(st.empty() ? 0 : small[st.back()]);
small.back() |= 1U << (i % 32);
st.emplace_back(i);
if ((i + 1) % 32 == 0) {
large.front().emplace_back(st.front());
st.clear();
}
}
for (int i = 1; (i << 1) <= n / 32; i <<= 1) {
std::vector<int> v;
int csz = n / 32 + 1 - (i << 1);
v.reserve(csz);
for (int k = 0; k < csz; k++) {
v.emplace_back(get_min(large.back()[k], large.back()[k + i]));
}
large.emplace_back(std::move(v));
}
}
int fold(int l, int r) const {
--r;
int left = l / 32 + 1;
int right = r / 32;
if (left < right) {
auto p = msb(right - left);
return get_min(
get_min((left - 1) * 32 + ctz((unsigned int)small[left * 32 - 1] &
(~0U << (l % 32))),
large[p][left]),
get_min(large[p][right - (1 << p)], right * 32 + ctz(small[r])));
} else if (left == right) {
return get_min((left - 1) * 32 + ctz((unsigned int)small[left * 32 - 1] &
(~0U << (l % 32))),
left * 32 + ctz(small[r]));
} else {
return right * 32 + ctz((unsigned int)small[r] & (~0U << (l % 32)));
}
}
};
template <typename Comp>
LinearRMQ<Comp> get_linear_rmq(int n, const Comp& comp) {
return LinearRMQ<Comp>(n, comp);
}
#line 4 "test/unittest/linear-rmq.test.cpp"
#include <algorithm>
#include <cassert>
#include <random>
#line 9 "test/unittest/linear-rmq.test.cpp"
void check(const std::vector<int>& values) {
const auto rmq = get_linear_rmq(
values.size(), [&](int a, int b) { return values[a] < values[b]; });
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]);
int position = rmq.fold(left, right);
assert(left <= position && position < right);
assert(values[position] == expected);
}
}
}
int main() {
check({42});
check({5, 2, 7, 1, 1, 6});
std::mt19937 rng(123456789);
for (int n = 1; n <= 100; n++) {
std::vector<int> values(n);
for (int& value : values) value = (int)(rng() % 201) - 100;
check(values);
}
}