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src/bin/a.out
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#pragma GCC optimize("Ofast")
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/////////////////////////////////////////////////////////
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/**
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* Useful Macros
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* by subcrip
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* (requires C++17)
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*/
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#include<bits/stdc++.h>
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using namespace std;
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/* macro helpers */
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#define __NARGS(...) std::tuple_size<decltype(std::make_tuple(__VA_ARGS__))>::value
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#define __DECOMPOSE_S(a, x) auto x = a;
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#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a;
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constexpr void __() {}
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#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __()
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#define __as_typeof(container) decltype(container)::value_type
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/* type aliases */
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#if LONG_LONG_MAX != INT64_MAX
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using ll = int64_t;
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using ull = uint64_t;
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#else
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using ll = long long;
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using ull = unsigned long long;
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#endif
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using int128 = __int128_t;
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using uint128 = __uint128_t;
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using pii = pair<int, int>;
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using pil = pair<int, ll>;
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using pli = pair<ll, int>;
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using pll = pair<ll, ll>;
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/* constants */
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constexpr int INF = 0x3f3f3f3f;
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constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL;
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constexpr ll MDL = 1e9 + 7;
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constexpr ll PRIME = 998'244'353;
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constexpr ll MDL1 = 8784491;
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constexpr ll MDL2 = PRIME;
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constexpr int128 INT128_MAX = numeric_limits<int128>::max();
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constexpr uint128 UINT128_MAX = numeric_limits<uint128>::max();
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constexpr int128 INT128_MIN = numeric_limits<int128>::min();
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constexpr uint128 UINT128_MIN = numeric_limits<uint128>::min();
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/* random */
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mt19937 rd(chrono::duration_cast<chrono::milliseconds>(chrono::system_clock::now().time_since_epoch()).count());
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/* bit-wise operations */
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#define lowbit(x) ((x) & -(x))
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#define popcount(x) (__builtin_popcountll(ll(x)))
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#define parity(x) (__builtin_parityll(ll(x)))
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#define msp(x) (63LL - __builtin_clzll(ll(x)))
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#define lsp(x) (__builtin_ctzll(ll(x)))
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/* arithmetic operations */
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#define mod(x, y) ((((x) % (y)) + (y)) % (y))
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/* fast pairs */
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#define upair ull
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#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1)))
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#define u1(p) ((p) >> 32)
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#define u2(p) ((p) & ((1ULL << 32) - 1))
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#define ult std::less<upair>
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#define ugt std::greater<upair>
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#define ipair ull
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#define imake(x, y) (umake(x, y))
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#define i1(p) (int(u1(ll(p))))
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#define i2(p) (ll(u2(p) << 32) >> 32)
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struct ilt {
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bool operator()(const ipair& a, const ipair& b) const {
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if (i1(a) == i1(b)) return i2(a) < i2(b);
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else return i1(a) < i1(b);
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}
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};
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struct igt {
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bool operator()(const ipair& a, const ipair& b) const {
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if (i1(a) == i1(b)) return i2(a) > i2(b);
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else return i1(a) > i1(b);
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}
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};
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/* conditions */
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#define loop while (1)
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#define if_or(var, val) if (!(var == val)) var = val; else
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#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;)
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#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;)
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/* hash */
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struct safe_hash {
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// https://codeforces.com/blog/entry/62393
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static uint64_t splitmix64(uint64_t x) {
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// http://xorshift.di.unimi.it/splitmix64.c
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x += 0x9e3779b97f4a7c15;
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x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9;
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x = (x ^ (x >> 27)) * 0x94d049bb133111eb;
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return x ^ (x >> 31);
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}
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size_t operator()(uint64_t x) const {
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static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count();
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return splitmix64(x + FIXED_RANDOM);
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}
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};
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struct pair_hash {
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template <typename T, typename U>
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size_t operator()(const pair<T, U>& a) const {
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auto hash1 = safe_hash()(a.first);
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auto hash2 = safe_hash()(a.second);
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if (hash1 != hash2) {
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return hash1 ^ hash2;
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}
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return hash1;
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}
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};
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uniform_int_distribution<mt19937::result_type> dist(PRIME);
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const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd);
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struct array_hash {
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template <typename Sequence>
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size_t operator()(const Sequence& arr) const {
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size_t pw1 = 1, pw2 = 1;
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size_t res1 = 0, res2 = 0;
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for (auto&& x : arr) {
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res1 = (res1 + x * pw1) % __array_hash_mdl1;
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res2 = (res2 + x * pw2) % __array_hash_mdl2;
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pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1;
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pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2;
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}
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return res1 + res2;
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}
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};
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/* build data structures */
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#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];)
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#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];)
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#define pa(a) __AS_PROCEDURE(__typeof(a) pa; pa.push_back({}); for (auto&&x : a) pa.push_back(pa.back() + x);)
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#define sa(a) __AS_PROCEDURE(__typeof(a) sa(a.size() + 1); {int n = a.size(); for (int i = n - 1; i >= 0; --i) sa[i] = sa[i + 1] + a[i];};)
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#define adj(ch, n) __AS_PROCEDURE(vector<vector<int>> ch((n) + 1);)
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#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);)
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#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);)
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template <typename T, typename Iterator> pair<size_t, map<T, size_t>> discretize(Iterator __first, Iterator __last) {
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set<T> st(__first, __last);
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size_t N = 0;
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map<T, size_t> mp;
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for (auto&& x : st) mp[x] = ++N;
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return {N, mp};
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}
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template <typename T, typename Iterator> pair<size_t, unordered_map<T, size_t, safe_hash>> unordered_discretize(Iterator __first, Iterator __last) {
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set<T> st(__first, __last);
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size_t N = 0;
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unordered_map<T, size_t, safe_hash> mp;
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for (auto&& x : st) mp[x] = ++N;
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return {N, mp};
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}
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/* io */
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#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL))
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template<typename T> void __read(T& x) { cin >> x; }
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template<typename T, typename... U> void __read(T& x, U&... args) { cin >> x; __read(args...); }
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#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);)
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#define readvec(type, a, n) __AS_PROCEDURE(vector<type> a(n); for (int i = 0; i < (n); ++i) cin >> a[i];)
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#define putvec(a) __AS_PROCEDURE(for (auto&& x : a) cout << x << ' '; cout << endl;)
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#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;)
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#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;)
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template<typename T, typename U> ostream& operator<<(ostream& out, const pair<T, U>& p) {
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out << "{" << p.first << ", " << p.second << "}";
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return out;
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}
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template<typename Char, typename Traits, typename Tuple, std::size_t... Index>
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void print_tuple_impl(std::basic_ostream<Char, Traits>& os, const Tuple& t, std::index_sequence<Index...>) {
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using swallow = int[]; // guaranties left to right order
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(void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get<Index>(t)), 0)... };
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}
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template<typename Char, typename Traits, typename... Args>
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decltype(auto) operator<<(std::basic_ostream<Char, Traits>& os, const std::tuple<Args...>& t) {
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os << "{";
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print_tuple_impl(os, t, std::index_sequence_for<Args...>{});
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return os << "}";
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}
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template<typename T> ostream& operator<<(ostream& out, const vector<T>& vec) {
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for (auto&& i : vec) out << i << ' ';
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return out;
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}
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std::ostream& operator<<(std::ostream& dest, const int128& value) {
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// https://stackoverflow.com/a/25115163/23881100
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std::ostream::sentry s( dest );
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if ( s ) {
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uint128 tmp = value < 0 ? -value : value;
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char buffer[ 128 ];
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char* d = std::end( buffer );
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do {
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-- d;
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*d = "0123456789"[ tmp % 10 ];
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tmp /= 10;
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} while ( tmp != 0 );
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if ( value < 0 ) {
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-- d;
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*d = '-';
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}
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int len = std::end( buffer ) - d;
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if ( dest.rdbuf()->sputn( d, len ) != len ) {
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dest.setstate( std::ios_base::badbit );
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}
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}
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return dest;
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}
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/* pops */
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#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();)
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#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();)
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#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();)
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/* math */
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constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); }
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void __exgcd(ll a, ll b, ll& x, ll& y) {
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if (b == 0) {
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x = 1, y = 0;
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return;
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}
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__exgcd(b, a % b, y, x);
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y -= a / b * x;
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}
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ll inverse(ll a, ll b) {
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ll x, y;
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__exgcd(a, b, x, y);
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return mod(x, b);
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}
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vector<tuple<int, int, ll>> decompose(ll x) {
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vector<tuple<int, int, ll>> res;
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for (int i = 2; i * i <= x; i++) {
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if (x % i == 0) {
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int cnt = 0;
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ll pw = 1;
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while (x % i == 0) ++cnt, x /= i, pw *= i;
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res.emplace_back(i, cnt, pw);
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}
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}
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if (x != 1) {
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res.emplace_back(x, 1, x);
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}
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return res;
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}
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/* string algorithms */
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vector<int> calc_next(string t) { // pi function of t
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int n = (int)t.length();
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vector<int> pi(n);
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for (int i = 1; i < n; i++) {
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int j = pi[i - 1];
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while (j > 0 && t[i] != t[j]) j = pi[j - 1];
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if (t[i] == t[j]) j++;
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pi[i] = j;
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}
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return pi;
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}
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vector<int> calc_z(string t) { // z function of t
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int m = t.length();
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vector<int> z;
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z.push_back(m);
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pair<int, int> prev = {1, -1};
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for (int i = 1; i < m; ++i) {
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if (z[i - prev.first] + i <= prev.second) {
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z.push_back(z[i - prev.first]);
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} else {
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int j = max(i, prev.second + 1);
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while (j < m && t[j] == t[j - i]) ++j;
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z.push_back(j - i);
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prev = {i, j - 1};
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}
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}
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return z;
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}
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vector<int> kmp(string s, string t) { // find all t in s
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string cur = t + '#' + s;
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int sz1 = s.size(), sz2 = t.size();
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vector<int> v;
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vector<int> lps = calc_next(cur);
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for (int i = sz2 + 1; i <= sz1 + sz2; i++) {
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if (lps[i] == sz2) v.push_back(i - 2 * sz2);
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}
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return v;
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}
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int period(string s) { // find the length of shortest recurring period
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int n = s.length();
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auto z = calc_z(s);
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for (int i = 1; i <= n / 2; ++i) {
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if (n % i == 0 && z[i] == n - i) {
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return i;
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}
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}
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return n;
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}
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/* modular arithmetic */
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template <ll mdl> struct MLL {
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ll val;
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MLL(ll v = 0) : val(mod(v, mdl)) {}
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MLL(const MLL<mdl>& other) : val(other.val) {}
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friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); }
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friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); }
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friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); }
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friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); }
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friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); }
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friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; }
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friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; }
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void operator+=(const MLL& rhs) { val = (*this + rhs).val; }
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void operator-=(const MLL& rhs) { val = (*this - rhs).val; }
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void operator*=(const MLL& rhs) { val = (*this * rhs).val; }
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void operator/=(const MLL& rhs) { val = (*this / rhs).val; }
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void operator%=(const MLL& rhs) { val = (*this % rhs).val; }
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};
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template <ll mdl>
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ostream& operator<<(ostream& out, const MLL<mdl>& num) {
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return out << num.val;
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}
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template <ll mdl>
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istream& operator>>(istream& in, MLL<mdl>& num) {
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return in >> num.val;
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}
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/////////////////////////////////////////////////////////
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// #define SINGLE_TEST_CASE
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// #define DUMP_TEST_CASE 7219
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void dump() {}
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void dump_ignore() {}
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void prep() {}
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template<typename T>
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struct BIT {
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int n;
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vector<T> c;
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BIT(size_t n) : n(n), c(n + 1) {}
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void add(size_t i, const T& k) {
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while (i <= n) {
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c[i] += k;
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i += lowbit(i);
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}
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}
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T getsum(size_t i) {
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T res = {};
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while (i) {
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res += c[i];
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i -= lowbit(i);
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}
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return res;
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}
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};
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void solve() {
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using ll = MLL<PRIME>;
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read(int, n, k);
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readvec(int, a, n);
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readvec(int, q, k);
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BIT<int> bt(k);
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ll res = 0;
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for (int i = 0; i < k; ++i) {
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res += bt.getsum(k) - bt.getsum(q[i] + 1);
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bt.add(q[i] + 1, 1);
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}
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BIT<int> tr(2 * n);
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res *= n;
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for (int i = 0; i < n; ++i) {
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for (int j = 1; j < k and (1 << j) * a[i] <= 2 * n; ++j) {
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res += ll(1) * (tr.getsum(2 * n) - tr.getsum(a[i] * (1 << j))) * (k - j);
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}
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int j = 0;
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for (; j < k and a[i] / (1 << j) > 0; ++j) {
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res += ll(1) * (tr.getsum(2 * n) - tr.getsum(a[i] / (1 << j))) * (k - j);
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}
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if (j < k) {
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res += (tr.getsum(2 * n) - tr.getsum(0)) * (ll(1) * k * (k - j + 1) - ll(1) * (j + k) * (k - j + 1) / 2);
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}
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tr.add(a[i], 1);
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}
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cout << res << '\n';
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}
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int main() {
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#if __cplusplus < 201703L || defined(_MSC_VER) && !defined(__clang__)
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assert(false && "incompatible compiler variant detected.");
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#endif
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untie, cout.tie(NULL);
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prep();
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#ifdef SINGLE_TEST_CASE
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||||
solve();
|
||||
#else
|
||||
read(int, t);
|
||||
for (int i = 0; i < t; ++i) {
|
||||
#ifdef DUMP_TEST_CASE
|
||||
if (t < (DUMP_TEST_CASE)) {
|
||||
solve();
|
||||
} else if (i + 1 == (DUMP_TEST_CASE)) {
|
||||
dump();
|
||||
} else {
|
||||
dump_ignore();
|
||||
}
|
||||
#else
|
||||
solve();
|
||||
#endif
|
||||
}
|
||||
#endif
|
||||
}
|
|
@ -329,7 +329,7 @@ istream& operator>>(istream& in, MLL<mdl>& num) {
|
|||
}
|
||||
/////////////////////////////////////////////////////////
|
||||
|
||||
#define SINGLE_TEST_CASE
|
||||
// #define SINGLE_TEST_CASE
|
||||
// #define DUMP_TEST_CASE 7219
|
||||
|
||||
void dump() {}
|
||||
|
@ -338,145 +338,54 @@ void dump_ignore() {}
|
|||
|
||||
void prep() {}
|
||||
|
||||
template<typename Addable_Info_t, typename Tag_t, typename Sequence = std::vector<Addable_Info_t>> class segtree {
|
||||
private:
|
||||
using size_type = uint64_t;
|
||||
using info_type = Addable_Info_t;
|
||||
using tag_type = Tag_t;
|
||||
size_type _max;
|
||||
vector<info_type> d;
|
||||
vector<tag_type> b;
|
||||
void pull(size_type p) {
|
||||
d[p] = d[p * 2] + d[p * 2 + 1];
|
||||
template<typename T>
|
||||
struct BIT {
|
||||
int n;
|
||||
vector<T> c;
|
||||
BIT(size_t n) : n(n), c(n + 1) {}
|
||||
void add(size_t i, const T& k) {
|
||||
while (i <= n) {
|
||||
c[i] += k;
|
||||
i += lowbit(i);
|
||||
}
|
||||
void push(size_type p, size_type left_len, size_type right_len) {
|
||||
d[p * 2].apply(b[p], left_len), d[p * 2 + 1].apply(b[p], right_len);
|
||||
b[p * 2].apply(b[p]), b[p * 2 + 1].apply(b[p]);
|
||||
b[p] = tag_type();
|
||||
}
|
||||
void set(size_type s, size_type t, size_type p, size_type x, const info_type& c) {
|
||||
if (s == t) {
|
||||
d[p] = c;
|
||||
return;
|
||||
}
|
||||
size_type m = s + (t - s >> 1);
|
||||
if (s != t) push(p, m - s + 1, t - m);
|
||||
if (x <= m) set(s, m, p * 2, x, c);
|
||||
else set(m + 1, t, p * 2 + 1, x, c);
|
||||
d[p] = d[p * 2] + d[p * 2 + 1];
|
||||
}
|
||||
|
||||
void range_apply(size_type s, size_type t, size_type p, size_type l, size_type r, const tag_type& c) {
|
||||
if (l <= s && t <= r) {
|
||||
d[p].apply(c, t - s + 1);
|
||||
b[p].apply(c);
|
||||
return;
|
||||
}
|
||||
size_type m = s + (t - s >> 1);
|
||||
push(p, m - s + 1, t - m);
|
||||
if (l <= m) range_apply(s, m, p * 2, l, r, c);
|
||||
if (r > m) range_apply(m + 1, t, p * 2 + 1, l, r, c);
|
||||
pull(p);
|
||||
}
|
||||
info_type range_query(size_type s, size_type t, size_type p, size_type l, size_type r) {
|
||||
if (l <= s && t <= r) {
|
||||
return d[p];
|
||||
}
|
||||
size_type m = s + (t - s >> 1);
|
||||
info_type res = {};
|
||||
push(p, m - s + 1, t - m);
|
||||
if (l <= m) res = res + range_query(s, m, p * 2, l, r);
|
||||
if (r > m) res = res + range_query(m + 1, t, p * 2 + 1, l, r);
|
||||
return res;
|
||||
}
|
||||
void build(const Sequence& a, size_type s, size_type t, size_type p) {
|
||||
if (s == t) {
|
||||
d[p] = a[s];
|
||||
return;
|
||||
}
|
||||
int m = s + (t - s >> 1);
|
||||
build(a, s, m, p * 2);
|
||||
build(a, m + 1, t, p * 2 + 1);
|
||||
pull(p);
|
||||
}
|
||||
public:
|
||||
segtree(size_type __max) : d(4 * __max), b(4 * __max), _max(__max - 1) {}
|
||||
segtree(const Sequence& a) : segtree(a.size()) {
|
||||
build(a, {}, _max, 1);
|
||||
}
|
||||
void set(size_type i, const info_type& c) {
|
||||
set({}, _max, 1, i, c);
|
||||
}
|
||||
|
||||
void range_apply(size_type l, size_type r, const tag_type& c) {
|
||||
range_apply({}, _max, 1, l, r, c);
|
||||
}
|
||||
void apply(size_type i, const tag_type& c) {
|
||||
range_apply(i, i, c);
|
||||
}
|
||||
info_type range_query(size_type l, size_type r) {
|
||||
return range_query({}, _max, 1, l, r);
|
||||
}
|
||||
info_type query(size_type i) {
|
||||
return range_query(i, i);
|
||||
}
|
||||
Sequence serialize() {
|
||||
Sequence res = {};
|
||||
for (size_type i = 0; i <= _max; ++i) {
|
||||
res.push_back(query(i));
|
||||
T getsum(size_t i) {
|
||||
T res = {};
|
||||
while (i) {
|
||||
res += c[i];
|
||||
i -= lowbit(i);
|
||||
}
|
||||
return res;
|
||||
}
|
||||
const vector<info_type>& get_d() {
|
||||
return d;
|
||||
}
|
||||
};
|
||||
struct Tag {
|
||||
ll val = 0;
|
||||
void apply(const Tag& rhs) {
|
||||
val += rhs.val;
|
||||
}
|
||||
};
|
||||
struct Info {
|
||||
ll val = INFLL;
|
||||
void apply(const Tag& rhs, size_t len) {
|
||||
val += rhs.val;
|
||||
}
|
||||
};
|
||||
Info operator+(const Info &a, const Info &b) {
|
||||
return {min(a.val, b.val)};
|
||||
}
|
||||
|
||||
void solve() {
|
||||
read(int, n, q);
|
||||
readvec(ll, a, n);
|
||||
readvec(ll, b, n);
|
||||
for (int i = 0; i < n - 1; ++i) {
|
||||
read(ll, x);
|
||||
using ll = MLL<PRIME>;
|
||||
read(int, n, k);
|
||||
readvec(int, a, n);
|
||||
readvec(int, q, k);
|
||||
BIT<int> bt(k);
|
||||
ll res = 0;
|
||||
for (int i = 0; i < k; ++i) {
|
||||
res += bt.getsum(k) - bt.getsum(q[i] + 1);
|
||||
bt.add(q[i] + 1, 1);
|
||||
}
|
||||
vector<ll> ps(n + 1), ss(n + 1);
|
||||
for (int i = 1; i <= n; ++i) {
|
||||
ps[i] = ps[i - 1] + a[i - 1];
|
||||
BIT<int> tr(2 * n);
|
||||
res *= n;
|
||||
for (int i = 0; i < n; ++i) {
|
||||
for (int j = 1; j < k and (1 << j) * a[i] <= 2 * n; ++j) {
|
||||
res += ll(1) * (tr.getsum(2 * n) - tr.getsum(a[i] * (1 << j))) * (k - j);
|
||||
}
|
||||
for (int i = n - 1; ~i; --i) {
|
||||
ss[i] = ss[i + 1] + b[i];
|
||||
int j = 0;
|
||||
for (; j < k and a[i] / (1 << j) > 0; ++j) {
|
||||
res += ll(1) * (tr.getsum(2 * n) - tr.getsum(a[i] / (1 << j))) * (k - j);
|
||||
}
|
||||
segtree<Info, Tag> tr(n + 1);
|
||||
for (int i = 0; i <= n; ++i) {
|
||||
tr.set(i, {ps[i] + ss[i]});
|
||||
if (j < k) {
|
||||
res += (tr.getsum(2 * n) - tr.getsum(0)) * (ll(1) * k * (k - j + 1) - ll(1) * (j + k) * (k - j + 1) / 2);
|
||||
}
|
||||
// for (auto&& x : tr.serialize()) cerr << x.val << ' ';
|
||||
// cerr << endl;
|
||||
while (q--) {
|
||||
read(ll, p, x, y, z);
|
||||
// debug(make_tuple(p, x, y , z));
|
||||
--p;
|
||||
tr.range_apply(p + 1, n, {x - a[p]}), a[p] = x;
|
||||
tr.range_apply(0, p, {y - b[p]}), b[p] = y;
|
||||
cout << tr.range_query(0, n).val << '\n';
|
||||
// for (auto&& x : tr.serialize()) cerr << x.val << ' ';
|
||||
// cerr << endl;
|
||||
tr.add(a[i], 1);
|
||||
}
|
||||
cout << res << '\n';
|
||||
}
|
||||
|
||||
int main() {
|
||||
|
|
|
@ -1,10 +1,14 @@
|
|||
5 5
|
||||
10 3 8 9 2
|
||||
3 4 10 8 1
|
||||
1000000000000000000 1000000000000000000 1000000000000000000 1000000000000000000
|
||||
5 4 9 1000000000000000000
|
||||
1 1 1 1000000000000000000
|
||||
2 7 4 1000000000000000000
|
||||
4 1 1 1000000000000000000
|
||||
1 8 3 1000000000000000000
|
||||
4
|
||||
3 2
|
||||
3 5 1
|
||||
0 1
|
||||
3 4
|
||||
1 3 5
|
||||
3 2 0 1
|
||||
1 5
|
||||
1
|
||||
0 1 2 3 4
|
||||
8 3
|
||||
5 1 7 11 15 3 9 13
|
||||
2 0 1
|
||||
|
||||
|
|
Loading…
Reference in New Issue