This documentation is automatically generated by online-judge-tools/verification-helper
#define PROBLEM "https://judge.yosupo.jp/problem/rectangle_sum"
#include "../../Src/DataStructure/RectangleSum/RectangleSumOfPointCloud.hpp"
#include <iostream>
#include <vector>
using namespace zawa;
struct Point {
using P = int;
using W = long long;
P x, y;
W w;
};
struct Rect {
using P = int;
int l, d, r, u;
};
int main() {
std::cin.tie(nullptr);
std::cout.tie(nullptr);
std::ios::sync_with_stdio(false);
int N, Q;
std::cin >> N >> Q;
std::vector<Point> ps(N);
for (int i{} ; i < N ; i++) {
int x, y, w;
std::cin >> x >> y >> w;
ps[i] = {x, y, w};
}
std::vector<Rect> qs(Q);
for (int i{} ; i < Q ; i++) {
int l, d, r, u;
std::cin >> l >> d >> r >> u;
qs[i] = {l, d, r, u};
}
for (auto ans : RectangleSumOfPointCloud(ps, qs)) {
std::cout << ans << '\n';
}
}
#line 1 "Test/LC/rectangle_sum.test.cpp"
#define PROBLEM "https://judge.yosupo.jp/problem/rectangle_sum"
#line 2 "Src/DataStructure/RectangleSum/RectangleSumOfPointCloud.hpp"
#line 2 "Src/Template/TypeAlias.hpp"
#include <cstdint>
#include <cstddef>
namespace zawa {
using i16 = std::int16_t;
using i32 = std::int32_t;
using i64 = std::int64_t;
using i128 = __int128_t;
using u8 = std::uint8_t;
using u16 = std::uint16_t;
using u32 = std::uint32_t;
using u64 = std::uint64_t;
using usize = std::size_t;
} // namespace zawa
#line 4 "Src/DataStructure/RectangleSum/RectangleSumOfPointCloud.hpp"
#include <algorithm>
#include <concepts>
#include <utility>
#include <vector>
#include <type_traits>
namespace zawa {
namespace concepts {
template <class T>
concept Point = requires (T p) {
typename T::P;
typename T::W;
{ p.x } -> std::same_as<typename T::P&>;
{ p.y } -> std::same_as<typename T::P&>;
{ p.w } -> std::same_as<typename T::W&>;
};
template <class T>
concept Rectangle = requires (T r) {
typename T::P;
{ r.l } -> std::same_as<typename T::P&>;
{ r.d } -> std::same_as<typename T::P&>;
{ r.r } -> std::same_as<typename T::P&>;
{ r.u } -> std::same_as<typename T::P&>;
};
template <class T, class U>
concept RSOPCQuery = Point<T> and Rectangle<U> and std::same_as<typename T::P, typename U::P>;
} // namespace concepts
template <class T, class U>
std::vector<typename T::W> RectangleSumOfPointCloud(std::vector<T> ps, std::vector<U> qs) requires concepts::RSOPCQuery<T, U> {
using P = typename T::P;
using W = typename T::W;
usize n{ps.size()}, q{qs.size()};
std::vector<P> xs(n);
for (usize i{} ; i < n ; i++) xs[i] = ps[i].x;
std::sort(xs.begin(), xs.end());
xs.erase(std::unique(xs.begin(), xs.end()), xs.end());
std::sort(ps.begin(), ps.end(), [&](const auto& L, const auto& R) -> bool {
return L.y < R.y;
});
using Q = std::pair<P, usize>;
std::vector<Q> query(qs.size() << 1);
for (usize i{} ; i < qs.size() ; i++) {
qs[i].l = (P)std::distance(xs.begin(), std::lower_bound(xs.begin(), xs.end(), qs[i].l));
qs[i].r = (P)std::distance(xs.begin(), std::lower_bound(xs.begin(), xs.end(), qs[i].r));
query[i] = std::pair{qs[i].d, i};
query[i + q] = std::pair{qs[i].u, i + q};
}
std::sort(query.begin(), query.end());
std::vector<W> fen(xs.size() + 1), res(qs.size());
auto pref{[&](i32 r) -> W {
W sum{};
for ( ; r ; r -= r & -r) sum += fen[r];
return sum;
}};
for (usize i{}, j{} ; i < query.size() ; i++) {
while (j < n and ps[j].y < query[i].first) {
i32 x{(i32)std::distance(xs.begin(), std::lower_bound(xs.begin(), xs.end(), ps[j].x))};
for ( x++ ; (usize)x < fen.size() ; x += x & -x) fen[x] += ps[j].w;
j++;
}
usize idx{query[i].second};
if (idx < q) {
res[idx] += pref(qs[idx].l) - pref(qs[idx].r);
}
else {
idx -= q;
res[idx] += -pref(qs[idx].l) + pref(qs[idx].r);
}
}
return res;
}
} // namespace zawa
#line 4 "Test/LC/rectangle_sum.test.cpp"
#include <iostream>
#line 7 "Test/LC/rectangle_sum.test.cpp"
using namespace zawa;
struct Point {
using P = int;
using W = long long;
P x, y;
W w;
};
struct Rect {
using P = int;
int l, d, r, u;
};
int main() {
std::cin.tie(nullptr);
std::cout.tie(nullptr);
std::ios::sync_with_stdio(false);
int N, Q;
std::cin >> N >> Q;
std::vector<Point> ps(N);
for (int i{} ; i < N ; i++) {
int x, y, w;
std::cin >> x >> y >> w;
ps[i] = {x, y, w};
}
std::vector<Rect> qs(Q);
for (int i{} ; i < Q ; i++) {
int l, d, r, u;
std::cin >> l >> d >> r >> u;
qs[i] = {l, d, r, u};
}
for (auto ans : RectangleSumOfPointCloud(ps, qs)) {
std::cout << ans << '\n';
}
}