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#define PROBLEM "https://judge.yosupo.jp/problem/static_range_sum"
#include "include/mtl/fenwick_tree.hpp"
#include <bits/stdc++.h>
using namespace std;
using ll = long long;
int main() {
cin.tie(nullptr); ios::sync_with_stdio(false);
int n,q; cin>>n>>q;
FenwickTree<ll> rsq(n);
for (int i = 0; i < n; i++) {
int a; cin>>a;
rsq.add(i, a);
}
for (int i = 0; i < q; i++) {
int l,r; cin>>l>>r;
cout << rsq.range_sum(l,r) << endl;
}
return 0;
}
#line 1 "test/yosupo/static_range_sum.test.cpp"
#define PROBLEM "https://judge.yosupo.jp/problem/static_range_sum"
#line 2 "include/mtl/bit_manip.hpp"
#include <cstdint>
#include <cassert>
#if __cplusplus >= 202002L
#ifndef MTL_CPP20
#define MTL_CPP20
#endif
#include <bit>
#endif
namespace bm {
/// Count 1s for each 8 bits
inline constexpr uint64_t popcnt_e8(uint64_t x) {
x = (x & 0x5555555555555555) + ((x>>1) & 0x5555555555555555);
x = (x & 0x3333333333333333) + ((x>>2) & 0x3333333333333333);
x = (x & 0x0F0F0F0F0F0F0F0F) + ((x>>4) & 0x0F0F0F0F0F0F0F0F);
return x;
}
/// Count 1s
inline constexpr unsigned popcnt(uint64_t x) {
#ifdef MTL_CPP20
return std::popcount(x);
#else
return (popcnt_e8(x) * 0x0101010101010101) >> 56;
#endif
}
/// Alias to mtl::popcnt(x)
constexpr unsigned popcount(uint64_t x) {
return popcnt(x);
}
/// Count trailing 0s. s.t. *11011000 -> 3
inline constexpr unsigned ctz(uint64_t x) {
#ifdef MTL_CPP20
return std::countr_zero(x);
#else
return popcnt((x & (-x)) - 1);
#endif
}
/// Alias to mtl::ctz(x)
constexpr unsigned countr_zero(uint64_t x) {
return ctz(x);
}
/// Count trailing 1s. s.t. *11011011 -> 2
inline constexpr unsigned cto(uint64_t x) {
#ifdef MTL_CPP20
return std::countr_one(x);
#else
return ctz(~x);
#endif
}
/// Alias to mtl::cto(x)
constexpr unsigned countr_one(uint64_t x) {
return cto(x);
}
inline constexpr unsigned ctz8(uint8_t x) {
return x == 0 ? 8 : popcnt_e8((x & (-x)) - 1);
}
/// [00..0](8bit) -> 0, [**..*](not only 0) -> 1
inline constexpr uint8_t summary(uint64_t x) {
constexpr uint64_t hmask = 0x8080808080808080ull;
constexpr uint64_t lmask = 0x7F7F7F7F7F7F7F7Full;
auto a = x & hmask;
auto b = x & lmask;
b = hmask - b;
b = ~b;
auto c = (a | b) & hmask;
c *= 0x0002040810204081ull;
return uint8_t(c >> 56);
}
/// Extract target area of bits
inline constexpr uint64_t bextr(uint64_t x, unsigned start, unsigned len) {
uint64_t mask = len < 64 ? (1ull<<len)-1 : 0xFFFFFFFFFFFFFFFFull;
return (x >> start) & mask;
}
/// 00101101 -> 00111111 -count_1s-> 6
inline constexpr unsigned log2p1(uint8_t x) {
if (x & 0x80)
return 8;
uint64_t p = uint64_t(x) * 0x0101010101010101ull;
p -= 0x8040201008040201ull;
p = ~p & 0x8080808080808080ull;
p = (p >> 7) * 0x0101010101010101ull;
p >>= 56;
return p;
}
/// 00101100 -mask_mssb-> 00100000 -to_index-> 5
inline constexpr unsigned mssb8(uint8_t x) {
assert(x != 0);
return log2p1(x) - 1;
}
/// 00101100 -mask_lssb-> 00000100 -to_index-> 2
inline constexpr unsigned lssb8(uint8_t x) {
assert(x != 0);
return popcnt_e8((x & -x) - 1);
}
/// Count leading 0s. 00001011... -> 4
inline constexpr unsigned clz(uint64_t x) {
#ifdef MTL_CPP20
return std::countl_zero(x);
#else
if (x == 0)
return 64;
auto i = mssb8(summary(x));
auto j = mssb8(bextr(x, 8 * i, 8));
return 63 - (8 * i + j);
#endif
}
/// Alias to mtl::clz(x)
constexpr unsigned countl_zero(uint64_t x) {
return clz(x);
}
/// Count leading 1s. 11110100... -> 4
inline constexpr unsigned clo(uint64_t x) {
#ifdef MTL_CPP20
return std::countl_one(x);
#else
return clz(~x);
#endif
}
/// Alias to mtl::clo(x)
constexpr unsigned countl_one(uint64_t x) {
return clo(x);
}
inline constexpr unsigned clz8(uint8_t x) {
return x == 0 ? 8 : 7 - mssb8(x);
}
inline constexpr uint64_t bit_reverse(uint64_t x) {
x = ((x & 0x00000000FFFFFFFF) << 32) | ((x & 0xFFFFFFFF00000000) >> 32);
x = ((x & 0x0000FFFF0000FFFF) << 16) | ((x & 0xFFFF0000FFFF0000) >> 16);
x = ((x & 0x00FF00FF00FF00FF) << 8) | ((x & 0xFF00FF00FF00FF00) >> 8);
x = ((x & 0x0F0F0F0F0F0F0F0F) << 4) | ((x & 0xF0F0F0F0F0F0F0F0) >> 4);
x = ((x & 0x3333333333333333) << 2) | ((x & 0xCCCCCCCCCCCCCCCC) >> 2);
x = ((x & 0x5555555555555555) << 1) | ((x & 0xAAAAAAAAAAAAAAAA) >> 1);
return x;
}
/// Check if x is power of 2. 00100000 -> true, 00100001 -> false
constexpr bool has_single_bit(uint64_t x) noexcept {
#ifdef MTL_CPP20
return std::has_single_bit(x);
#else
return x != 0 && (x & (x - 1)) == 0;
#endif
}
/// Bit width needs to represent x. 00110110 -> 6
constexpr int bit_width(uint64_t x) noexcept {
#ifdef MTL_CPP20
return std::bit_width(x);
#else
return 64 - clz(x);
#endif
}
/// Ceil power of 2. 00110110 -> 01000000
constexpr uint64_t bit_ceil(uint64_t x) {
#ifdef MTL_CPP20
return std::bit_ceil(x);
#else
if (x == 0) return 1;
return 1ull << bit_width(x - 1);
#endif
}
/// Floor power of 2. 00110110 -> 00100000
constexpr uint64_t bit_floor(uint64_t x) {
#ifdef MTL_CPP20
return std::bit_floor(x);
#else
if (x == 0) return 0;
return 1ull << (bit_width(x) - 1);
#endif
}
} // namespace bm
#line 3 "include/mtl/fenwick_tree.hpp"
#include <cstddef>
#include <vector>
template <class T>
class FenwickTree {
private:
std::vector<T> tree_;
public:
FenwickTree() = default;
explicit FenwickTree(size_t size) : tree_(size+1) {}
size_t size() const { return tree_.size()-1; }
template <class Iter>
explicit FenwickTree(Iter begin, Iter end) : FenwickTree(std::distance(begin, end)) {
size_t i = 1;
for (auto it = begin; it != end; ++it) {
tree_[i] = tree_[i] + *it;
auto j = i + (i&(-i));
if (j < tree_.size())
tree_[j] = tree_[j] + tree_[i];
++i;
}
}
template<class V>
void add(size_t index, const V& x) {
for (size_t i = index+1; i < tree_.size(); i += i&(-i))
tree_[i] = tree_[i] + x;
}
T sum(size_t index) const {
T sum = 0;
for (size_t i = index+1; i > 0; i -= i&(-i))
sum = sum + tree_[i];
return sum;
}
T range_sum(size_t l, size_t r) const {
auto sl = l > 0 ? sum(l-1) : 0;
auto sr = r > 0 ? sum(r-1) : 0;
return sr - sl;
}
/// @brief Alias of range_sum(l, r)
T sum(size_t l, size_t r) const {
return range_sum(l, r);
}
template<class V>
size_t lower_bound(const V& _sum) const {
size_t ret = 0;
T s = 0;
for (int k = 63-bm::clz(size()); k >= 0; k--) {
size_t j = ret | (1ull<<k);
if (j < tree_.size() and s + tree_[j] < _sum) {
s = s + tree_[j];
ret = j;
}
}
return ret;
}
};
#line 3 "test/yosupo/static_range_sum.test.cpp"
#include <bits/stdc++.h>
using namespace std;
using ll = long long;
int main() {
cin.tie(nullptr); ios::sync_with_stdio(false);
int n,q; cin>>n>>q;
FenwickTree<ll> rsq(n);
for (int i = 0; i < n; i++) {
int a; cin>>a;
rsq.add(i, a);
}
for (int i = 0; i < q; i++) {
int l,r; cin>>l>>r;
cout << rsq.range_sum(l,r) << endl;
}
return 0;
}
Env | Name | Status | Elapsed | Memory |
---|---|---|---|---|
g++ | example_00 |
![]() |
6 ms | 3 MB |
g++ | max_random_00 |
![]() |
562 ms | 7 MB |
g++ | max_random_01 |
![]() |
555 ms | 7 MB |
g++ | max_random_02 |
![]() |
551 ms | 7 MB |
g++ | max_random_03 |
![]() |
553 ms | 7 MB |
g++ | max_random_04 |
![]() |
557 ms | 7 MB |
g++ | random_00 |
![]() |
459 ms | 6 MB |
g++ | random_01 |
![]() |
467 ms | 7 MB |
g++ | random_02 |
![]() |
396 ms | 4 MB |
g++ | random_03 |
![]() |
64 ms | 7 MB |
g++ | random_04 |
![]() |
127 ms | 5 MB |
clang++ | example_00 |
![]() |
6 ms | 3 MB |
clang++ | max_random_00 |
![]() |
552 ms | 7 MB |
clang++ | max_random_01 |
![]() |
566 ms | 7 MB |
clang++ | max_random_02 |
![]() |
578 ms | 7 MB |
clang++ | max_random_03 |
![]() |
556 ms | 7 MB |
clang++ | max_random_04 |
![]() |
606 ms | 7 MB |
clang++ | random_00 |
![]() |
468 ms | 6 MB |
clang++ | random_01 |
![]() |
468 ms | 7 MB |
clang++ | random_02 |
![]() |
401 ms | 4 MB |
clang++ | random_03 |
![]() |
62 ms | 7 MB |
clang++ | random_04 |
![]() |
127 ms | 5 MB |