diff --git a/src/bin/cf-1032e.cc b/src/bin/cf-1032e.cc new file mode 100644 index 0000000..c16b56d --- /dev/null +++ b/src/bin/cf-1032e.cc @@ -0,0 +1,527 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + constexpr int N = 10010; + read(int, n); + readvec(int, a, n); + unordered_map cnt; + vector dp(N, vector(n + 1, pii(INF, -INF))); + dp[0][0] = { INF - 1, -INF }; + for (int i = 0; i < n; ++i) { + cnt[a[i]] += 1; + vector ndp = dp; + for (int j = 0; j + a[i] < N; ++j) { + for (int k = 0; k < n; ++k) { + if (dp[j][k].first < INF) { + chmin(ndp[j + a[i]][k + 1].first, min(dp[j][k].first, a[i])); + chmax(ndp[j + a[i]][k + 1].second, max(dp[j][k].second, a[i])); + } + } + } + dp = std::move(ndp); + } + int res = 0; + for (int i = 0; i < N; ++i) { + for (int j = 0; j <= n; ++j) { + if (dp[i][j].first == dp[i][j].second) { + int curr = cnt.size() == 2 ? n : j; + chmax(res, curr); + } + } + } + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1036e.cc b/src/bin/cf-1036e.cc new file mode 100644 index 0000000..c5a5d12 --- /dev/null +++ b/src/bin/cf-1036e.cc @@ -0,0 +1,545 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type +template struct argument_type; +template struct argument_type { using type = U; }; + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template istream& operator>>(istream& in, array& a) { + for (size_t i = 0; i < N; ++i) in >> a[i]; + return in; +} +template ostream& operator<<(ostream& out, const array& a) { + for (auto&& i : a) out << i << ' '; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(t, ...) __AS_PROCEDURE(argument_type::type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(t, a, n) __AS_PROCEDURE(vector::type> a(n); for (auto& x : a) cin >> x;) +#define readvec1(t, a, n) __AS_PROCEDURE(vector::type> a((n) + 1); copy_n(ii::type>(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n); + readvec((array), a, n); + ll res = 0; + for (int i = 0; i < n; ++i) { + auto&& [x1, y1, x2, y2] = a[i]; + res += gcd(abs(x2 - x1), abs(y2 - y1)) + 1; + unordered_set oc; + for (int j = 0; j < i; ++j) { + auto&& [x3, y3, x4, y4] = a[j]; + ll px = (x1 * y2 - y1 * x2) * (x3 - x4) - (x1 - x2) * (x3 * y4 - y3 * x4); + ll py = (x1 * y2 - y1 * x2) * (y3 - y4) - (y1 - y2) * (x3 * y4 - y3 * x4); + ll q = (x1 - x2) * (y3 - y4) - (y1 - y2) * (x3 - x4); + if (q != 0 and px % q == 0 and py % q == 0 and px / q >= max(min(x1, x2), min(x3, x4)) and px / q <= min(max(x1, x2), max(x3, x4)) and py / q >= max(min(y1, y2), min(y3, y4)) and py / q <= min(max(y1, y2), max(y3, y4))) { + oc.emplace(px / q, py / q); + } + } + res -= oc.size(); + } + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1036f.cc b/src/bin/cf-1036f.cc new file mode 100644 index 0000000..4f418b2 --- /dev/null +++ b/src/bin/cf-1036f.cc @@ -0,0 +1,547 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template istream& operator>>(istream& in, array& a) { + for (size_t i = 0; i < N; ++i) in >> a[i]; + return in; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +// #define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + + +void prep() { +} + +inline ll root(ll n, ll i) { + ll l = 0, r = pow(LLONG_MAX, ld(1) / i); + while (l < r) { + ll mid = l + r + 1 >> 1; + if (qpow(mid, i) <= n) { + l = mid; + } else { + r = mid - 1; + } + } + return l; +} + +// __attribute__((target("popcnt"))) +void solve() { + constexpr int m = 64; + read(ll, n); + vector f(m); + ll res = 0; + for (int i = m - 1; i > 1; --i) { + f[i] = root(n, i) - 1; + for (int j = 2 * i; j < m; j += i) { + f[i] -= f[j]; + } + res += f[i]; + } + res = n - 1 - res; + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1037f.cc b/src/bin/cf-1037f.cc new file mode 100644 index 0000000..55e1bc6 --- /dev/null +++ b/src/bin/cf-1037f.cc @@ -0,0 +1,541 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type +template struct argument_type; +template struct argument_type { using type = U; }; + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template istream& operator>>(istream& in, array& a) { + for (size_t i = 0; i < N; ++i) in >> a[i]; + return in; +} +template ostream& operator<<(ostream& out, const array& a) { + for (auto&& i : a) out << i << ' '; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(t, ...) __AS_PROCEDURE(argument_type::type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(t, a, n) __AS_PROCEDURE(vector::type> a(n); for (auto& x : a) cin >> x;) +#define readvec1(t, a, n) __AS_PROCEDURE(vector::type> a((n) + 1); copy_n(ii::type>(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +// Accurately find `i` 'th root of `n` (taking the floor) +inline ll root(ll n, ll i) { + ll l = 0, r = pow(LLONG_MAX, ld(1) / i); + while (l < r) { + ll mid = l + r + 1 >> 1; + if (qpow(mid, i) <= n) { + l = mid; + } else { + r = mid - 1; + } + } + return l; +} + + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + MLL& operator+=(const MLL& rhs) { return *this = *this + rhs; } + MLL& operator-=(const MLL& rhs) { return *this = *this - rhs; } + MLL& operator*=(const MLL& rhs) { return *this = *this * rhs; } + MLL& operator/=(const MLL& rhs) { return *this = *this / rhs; } + MLL& operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +// #define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1038e.cc b/src/bin/cf-1038e.cc new file mode 100644 index 0000000..bd9b18c --- /dev/null +++ b/src/bin/cf-1038e.cc @@ -0,0 +1,603 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type +template struct argument_type; +template struct argument_type { using type = U; }; + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template istream& operator>>(istream& in, array& a) { + for (size_t i = 0; i < N; ++i) in >> a[i]; + return in; +} +template ostream& operator<<(ostream& out, const array& a) { + for (auto&& i : a) out << i << ' '; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(t, ...) __AS_PROCEDURE(argument_type::type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(t, a, n) __AS_PROCEDURE(vector::type> a(n); for (auto& x : a) cin >> x;) +#define readvec1(t, a, n) __AS_PROCEDURE(vector::type> a((n) + 1); copy_n(ii::type>(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +// Accurately find `i` 'th root of `n` (taking the floor) +inline ll root(ll n, ll i) { + ll l = 0, r = pow(LLONG_MAX, ld(1) / i); + while (l < r) { + ll mid = l + r + 1 >> 1; + if (qpow(mid, i) <= n) { + l = mid; + } else { + r = mid - 1; + } + } + return l; +} + + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + MLL& operator+=(const MLL& rhs) { return *this = *this + rhs; } + MLL& operator-=(const MLL& rhs) { return *this = *this - rhs; } + MLL& operator*=(const MLL& rhs) { return *this = *this * rhs; } + MLL& operator/=(const MLL& rhs) { return *this = *this / rhs; } + MLL& operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n); + vector bk(4, vector>(4)); + for (int i = 0; i < n; ++i) { + read(int, u, w, v); + --u, --v; + if (u > v) swap(u, v); + bk[u][v].emplace_back(w); + } + vector> e(4); + vector w; + for (int i = 0; i < 4; ++i) { + w.emplace_back(accumulate(bk[i][i].begin(), bk[i][i].end(), 0)); + Edgew(e, i, i, w.size() - 1); + for (int j = i + 1; j < 4; ++j) { + if (bk[i][j].empty()) continue; + int mx = *min_element(bk[i][j].begin(), bk[i][j].end()); + int sum = accumulate(bk[i][j].begin(), bk[i][j].end(), 0); + int m = bk[i][j].size(); + if (m % 2 == 0) { + w.emplace_back(sum - mx); + edgew(e, i, j, w.size() - 1); + w.emplace_back(mx); + edgew(e, i, j, w.size() - 1); + } else if (m == 1) { + w.emplace_back(sum); + edgew(e, i, j, w.size() - 1); + } else { + w.emplace_back(sum); + edgew(e, i, j, w.size() - 1); + w.emplace_back(-mx); + edgew(e, i, j, w.size() - 1); + } + } + } + int m = w.size(); + vector vis(1 << m + 2); + auto dfs = [&] (auto dfs, int mask) -> void { + if (vis[mask]) return; + vis[mask] = true; + int v = mask & 3; + int visited = mask >> 2; + for (auto&& [u, i] : e[v]) { + if (visited >> i & 1) continue; + dfs(dfs, (visited | 1 << i) << 2 | u); + } + }; + for (int i = 0; i < 4; ++i) { + dfs(dfs, i); + } + int res = 0; + for (int i = 0; i < (1 << m + 2); ++i) { + if (not vis[i]) continue; + int mask = i >> 2; + int curr = 0; + for (int j = 0; j < m; ++j) { + if (mask >> j & 1) { + curr += w[j]; + } + } + chmax(res, curr); + } + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1042e.cc b/src/bin/cf-1042e.cc new file mode 100644 index 0000000..7c000ee --- /dev/null +++ b/src/bin/cf-1042e.cc @@ -0,0 +1,551 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + MLL& operator+=(const MLL& rhs) { return *this = *this + rhs; } + MLL& operator-=(const MLL& rhs) { return *this = *this - rhs; } + MLL& operator*=(const MLL& rhs) { return *this = *this * rhs; } + MLL& operator/=(const MLL& rhs) { return *this = *this / rhs; } + MLL& operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + using mll = MLL; + + map> bk; + + read(int, n, m); + vector a(n, vector(m)); + for (int i = 0; i < n; ++i) { + for (int j = 0; j < m; ++j) { + cin >> a[i][j]; + bk[a[i][j]].emplace_back(i, j); + } + } + + int cnt = 0; + mll val = 0; + mll f = 0, g = 0; + mll h = 0, p = 0; + vector dp(n, vector(m)); + for (auto&& [k, v] : bk) { + for (auto&& [i, j] : v) { + dp[i][j] = (val + mll(1) * cnt * i * i - 2 * f * i + g + mll(1) * cnt * j * j - 2 * h * j + p) / cnt; + } + cnt += v.size(); + for (auto&& [i, j] : v) { + val += dp[i][j]; + f += i; + g += i * i; + h += j; + p += j * j; + } + } + + read(int, i, j); + --i, --j; + cout << dp[i][j] << endl; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1042f.cc b/src/bin/cf-1042f.cc new file mode 100644 index 0000000..b697c7c --- /dev/null +++ b/src/bin/cf-1042f.cc @@ -0,0 +1,572 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + MLL& operator+=(const MLL& rhs) { return *this = *this + rhs; } + MLL& operator-=(const MLL& rhs) { return *this = *this - rhs; } + MLL& operator*=(const MLL& rhs) { return *this = *this * rhs; } + MLL& operator/=(const MLL& rhs) { return *this = *this / rhs; } + MLL& operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n, k); + adj(ch, n); + int root; + for (int i = 0; i < n - 1; ++i) { + read(int, u, v); + edge(ch, u, v); + if (ch[u].size() > 1) { + root = u; + } else if (ch[v].size() > 1) { + root = v; + } + } + vector depth(n + 1); + depth[0] = -1; + int leaf = 0; + { + auto dfs = [&] (auto dfs, int v, int pa) -> void { + if (ch[v].size() == 1) { + leaf += 1; + } + depth[v] = depth[pa] + 1; + for (auto&& u : ch[v]) { + if (u == pa) continue; + dfs(dfs, u, v); + } + }; + dfs(dfs, root, 0); + } + int m = 0; + { + auto dfs = [&] (auto dfs, int v, int pa) -> int { + vector son; + for (auto&& u : ch[v]) { + if (u == pa) continue; + int c = dfs(dfs, u, v); + son.emplace_back(c); + } + if (ch[v].size() == 1) { + return depth[v]; + } + sort(son.begin(), son.end()); + int t = son.size(); + int s = 0; + for (int i = 1; i < t; ++i) { + if (son[i] + son[i - 1] - 2 * depth[v] <= k) { + m += 1; + s += 1; + } else { + break; + } + } + return son[s]; + }; + dfs(dfs, root, 0); + } + cout << leaf - m << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1044d.cc b/src/bin/cf-1044d.cc new file mode 100644 index 0000000..e69de29 diff --git a/src/bin/cf-1045c.cc b/src/bin/cf-1045c.cc new file mode 100644 index 0000000..015a43c --- /dev/null +++ b/src/bin/cf-1045c.cc @@ -0,0 +1,696 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template istream& operator>>(istream& in, array& a) { + for (size_t i = 0; i < N; ++i) in >> a[i]; + return in; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +struct LCA { + vector depth; + vector> pa; + LCA(const vector>& g, int root = 1) { + int n = g.size() - 1; + int m = 32 - __builtin_clz(n); + depth.resize(n + 1); + pa.resize(n + 1, vector(m, -1)); + function dfs = [&](int x, int fa) { + pa[x][0] = fa; + for (int y: g[x]) { + if (y != fa) { + depth[y] = depth[x] + 1; + dfs(y, x); + } + } + }; + dfs(root, 0); + for (int i = 0; i < m - 1; i++) + for (int x = 1; x <= n; x++) + if (int p = pa[x][i]; p != -1) + pa[x][i + 1] = pa[p][i]; + } + int get_kth_ancestor(int node, int k) { + for (; k; k &= k - 1) + node = pa[node][__builtin_ctz(k)]; + return node; + } + int query(int x, int y) { + if (depth[x] > depth[y]) + swap(x, y); + y = get_kth_ancestor(y, depth[y] - depth[x]); + if (y == x) + return x; + for (int i = pa[x].size() - 1; i >= 0; i--) { + int px = pa[x][i], py = pa[y][i]; + if (px != py) { + x = px; + y = py; + } + } + return pa[x][0]; + } +}; + +// WARN: Input could contain multiple edges, but not self loops +// +// Returns: (BCC count, indices of BCCs of each vertex) +// +// BCC index starts from 1 +pair>> vbcc(const vector>& ch) { + int n = ch.size() - 1; + vector> c(n + 1); // a vertex could be contained in multiple vBCCs + + int tm = 0; + int cnt = 0; + + vector low(n + 1), dfn(n + 1); + vector stack; + auto dfs = [&] (auto dfs, int v, int pa) -> void { + int son = 0; + low[v] = dfn[v] = ++tm; + stack.emplace_back(v); + for (auto&& u : ch[v]) { + if (u == pa) continue; + son += 1; + if (not dfn[u]) { + dfs(dfs, u, v); + chmin(low[v], low[u]); + if (low[u] >= dfn[v]) { + cnt += 1; + int z; + do { + z = popback(stack); + c[z].emplace_back(cnt); + } while (z != u); + c[v].emplace_back(cnt); + } + } + chmin(low[v], dfn[u]); + } + if (pa == 0 and son == 0) { + cnt += 1; + c[v].emplace_back(cnt); + } + }; + for (int i = 1; i <= n; ++i) { + if (not dfn[i]) { + dfs(dfs, i, 0); + } + } + return { cnt, c }; +} + +class quick_union { +private: + vector c, sz; +public: + quick_union(size_t n) : c(n), sz(n) { + iota(c.begin(), c.end(), 0); + sz.assign(n, 1); + } + size_t query(size_t i) { + if (c[i] != i) c[i] = query(c[i]); + return c[i]; + } + void merge(size_t i, size_t j) { + if (connected(i, j)) return; + sz[query(j)] += sz[query(i)]; + c[query(i)] = query(j); + } + bool connected(size_t i, size_t j) { + return query(i) == query(j); + } + size_t query_size(size_t i) { + return sz[query(i)]; + } +}; + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n, m, q); + vector edges; + vector> bk; + { + adj(ch, n); + for (int i = 0; i < m; ++i) { + read(int, u, v); + edges.emplace_back(u, v); + edge(ch, u, v); + } + auto [cnt, c] = vbcc(ch); + m = cnt; + bk.resize(m + 1); + for (int i = 1; i <= n; ++i) { + for (int j : c[i]) { + bk[j].emplace_back(i); + } + } + } + adj(ch, n + m); + quick_union qu(n + 1); + for (auto&& v : bk) { + int m = v.size(); + for (int i = 1; i < m; ++i) { + qu.merge(v[i], v[i - 1]); + } + } + vector w(n + m + 1); + for (auto&& [u, v] : edges) { + if (qu.connected(u, v)) continue; + edge(ch, u, v); + } + for (int i = 1; i <= n; ++i) { + w[i] = 1; + } + for (int i = 1; i <= m; ++i) { + for (auto&& v : bk[i]) { + edge(ch, n + i, v); + } + } + vector pf(n + m + 1); + auto dfs = [&] (auto dfs, int v, int pa) -> void { + pf[v] += w[v]; + for (auto&& u : ch[v]) { + if (u == pa) continue; + pf[u] = pf[v]; + dfs(dfs, u, v); + } + }; + dfs(dfs, 1, 0); + LCA lca(ch); + + while (q--) { + read(int, u, v); + int l = lca.query(u, v); + cout << pf[u] + pf[v] - 2 * pf[l] + w[l] - 1 << '\n'; + } +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1045d.cc b/src/bin/cf-1045d.cc new file mode 100644 index 0000000..c355b12 --- /dev/null +++ b/src/bin/cf-1045d.cc @@ -0,0 +1,560 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n); + readvec(ld, p, n); + + adj(ch, n - 1); + for (int i = 0; i < n - 1; ++i) { + read(int, u, v); + edge(ch, u, v); + } + + vector f(n); + ld res = 0; + + vector fa(n); + { + auto dfs = [&] (auto dfs, int v, int pa) -> void { + fa[v] = pa; + f[v].first = 1 - p[v]; + f[v].second = 1; + for (auto&& u : ch[v]) { + if (u == pa) continue; + dfs(dfs, u, v); + f[v].second -= 1 - p[u]; + } + res += f[v].first * f[v].second; + }; + dfs(dfs, 0, -1); + } + + read(int, q); + cout << fixed << setprecision(5); + while (q--) { + read(int, v); + read(ld, np); + res -= f[v].first * f[v].second; + f[v].first = 1 - np; + res += f[v].first * f[v].second; + if (fa[v] != -1) { + res -= f[fa[v]].first * f[fa[v]].second; + f[fa[v]].second += np - p[v]; + res += f[fa[v]].first * f[fa[v]].second; + } + cout << res << '\n'; + p[v] = np; + } +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1045d.py b/src/bin/cf-1045d.py new file mode 100644 index 0000000..b46bb77 --- /dev/null +++ b/src/bin/cf-1045d.py @@ -0,0 +1,37 @@ +from sys import stdin +input = stdin.readline +n = int(input()) +p = [float(x) for x in input().split(' ')] +ch = [[] for _ in range(n)] +for _ in range(n - 1): + u, v = map(int, input().split(' ')) + ch[u].append(v) + ch[v].append(u) +f = [[0., 0.] for _ in range(n)] +res = 0. +fa = [0] * n +def dfs(v, pa): + global res + fa[v] = pa + f[v] = [1 - p[v], 1] + for u in ch[v]: + if u == pa: continue + dfs(u, v) + f[v][1] -= 1 - p[u] + res += f[v][0] * f[v][1] +dfs(0, -1) +q = int(input()) +for _ in range(q): + line = input().split(' ') + v = int(line[0]) + np = float(line[1]) + res -= f[v][0] * f[v][1] + f[v][0] = 1 - np + res += f[v][0] * f[v][1] + if fa[v] != -1: + res -= f[fa[v]][0] * f[fa[v]][1] + f[fa[v]][1] += np - p[v] + res += f[fa[v]][0] * f[fa[v]][1] + print(res) + p[v] = np + diff --git a/src/bin/cf-1046i.cc b/src/bin/cf-1046i.cc new file mode 100644 index 0000000..8716932 --- /dev/null +++ b/src/bin/cf-1046i.cc @@ -0,0 +1,645 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +template struct point { + T x, y; + point() : x(), y() {} + point(const pair& a) : x(a.first), y(a.second) {} + point(const T& x, const T& y) : x(x), y(y) {} + + inline T square() const { return x * x + y * y; } + inline ld norm() const { return sqrt(ld(square())); } + + inline point operator+(const point& rhs) const { return point(x + rhs.x, y + rhs.y); } + inline point operator-(const point& rhs) const { return point(x - rhs.x, y - rhs.y); } + inline point operator+() const { return *this; } + inline point operator-() const { return point(-x, -y); } + inline point operator*(const T& a) const { return point(x * a, y * a); } + inline T operator*(const point& rhs) const { return x * rhs.y - y * rhs.x; } + inline point operator/(const T& a) const { return point(x / a, y / a); } + inline point& operator+=(const point& rhs) { x += rhs.x, y += rhs.y; return *this; } + inline point& operator-=(const point& rhs) { x -= rhs.x, y -= rhs.y; return *this; } + inline point& operator*=(const T& a) { x *= a, y *= a; return *this; } + inline point& operator/=(const T& a) { x /= a, y /= a; return *this; } + + inline bool operator==(const point& rhs) const { return x == rhs.x and y == rhs.y; } + inline bool operator!=(const point& rhs) const { return not (*this == rhs); } + inline bool operator<(const point& rhs) const { return pair(x, y) < pair(rhs.x, rhs.y); } + inline bool operator<=(const point& rhs) const { return *this < rhs or *this == rhs; } + inline bool operator>(const point& rhs) const { return not (*this <= rhs); } + inline bool operator>=(const point& rhs) const { return not (*this < rhs); } + + static inline ld slope(const point& a, const point& b) { + if (a.x == b.x) return INFLL; + return ld(a.y - b.y) / (a.x - b.x); + } + + // distance from point `a` to line `l--r` + static inline ld dist(const point& a, const point& l, const point& r) { + return area(a, l, r) * 2 / (l - r).norm(); + } + + static inline ld area(const point& a, const point& b, const point& c) { + return (b - a) * (c - a) / ld(2); + } + + friend inline istream& operator>>(istream& in, point& a) { + return in >> a.x >> a.y; + } + + friend inline ostream& operator<<(ostream& out, const point& a) { + return out << a.x << ' ' << a.y; + } +}; + +template +struct fractional { + T p, q; + inline void reduce(void) { + if (q < 0) p = -p, q = -q; + if (p == 0) q = 1; else { T g = mygcd(abs(p), abs(q)); p /= g; q /= g; } + } + fractional(void) : p(0), q(1) {} + template + fractional(const U& p) : p(p), q(1) { reduce(); } + fractional(const T& p, const T& q) : p(p), q(q) { reduce(); } + friend inline fractional operator+(const fractional& lhs) { return *lhs; } + friend inline fractional operator-(const fractional& lhs) { return { -lhs.p, lhs.q }; } + friend inline fractional operator+(const fractional& lhs, const fractional& rhs) { return { lhs.p * rhs.q + lhs.q * rhs.p, lhs.q * rhs.q }; } + friend inline fractional operator-(const fractional& lhs, const fractional& rhs) { return lhs + (-rhs); } + friend inline fractional operator*(const fractional& lhs, const fractional& rhs) { return { lhs.p * rhs.p, lhs.q * rhs.q }; } + friend inline fractional operator/(const fractional& lhs, const fractional& rhs) { return lhs * fractional(rhs.q, rhs.p); } + inline fractional& operator+=(const fractional& rhs) { return *this = *this + rhs; } + inline fractional& operator-=(const fractional& rhs) { return *this = *this - rhs; } + inline fractional& operator*=(const fractional& rhs) { return *this = *this * rhs; } + inline fractional& operator/=(const fractional& rhs) { return *this = *this / rhs; } + friend inline bool operator==(const fractional& lhs, const fractional& rhs) { return lhs.p == rhs.p and lhs.q == rhs.q; } + friend inline bool operator!=(const fractional& lhs, const fractional& rhs) { return not (lhs == rhs); } + friend inline bool operator<(const fractional& lhs, const fractional& rhs) { return (lhs - rhs).p < 0; } + friend inline bool operator>=(const fractional& lhs, const fractional& rhs) { return not (lhs < rhs); } + friend inline bool operator>(const fractional& lhs, const fractional& rhs) { return lhs >= rhs and lhs != rhs; } + friend inline bool operator<=(const fractional& lhs, const fractional& rhs) { return lhs < rhs or lhs == rhs; } + friend inline ostream& operator<<(ostream& out, const fractional& x) { return out << x.p << '/' << x.q; } +}; + +// __attribute__((target("popcnt"))) +void solve() { + using fractional = fractional; + using point = point; + + read(int, n); + read(int, l, r); + vector> a; + for (int i = 0; i < n; ++i) { + read(int, x1, y1, x2, y2); + a.emplace_back(point(x1, y1), point(x2, y2)); + } + int flag = 1; + int res = 0; + pair prev = a[0]; + for (auto&& [p1, p2] : a) { + auto&& [p_1, p_2] = prev; + auto [A, C] = p_1 - p_2; + auto [B, D] = (p1 - p_1) - (p2 - p_2); + auto dis = [&] (fractional k) { + return (B * B + D * D) * k * k + 2 * (A * B + C * D) * k + A * A + C * C; + }; + if (B * B + D * D == 0) { + fractional d = dis(0); + if (flag == 1 and d <= l * l) { + res += 1; + flag = 0; + } + if (d > r * r) { + flag = 1; + } + } else { + fractional k = clamp(-(A * B + C * D) / (B * B + D * D), 0, 1); + fractional mind = dis(k); + fractional maxd = dis(0); + if (maxd > r * r) { + flag = 1; + } + if (flag == 1 and mind <= l * l) { + res += 1; + flag = 0; + } + maxd = dis(1); + if (maxd > r * r) { + flag = 1; + } + } + prev = { p1, p2 }; + } + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1051f.cc b/src/bin/cf-1051f.cc new file mode 100644 index 0000000..36b93e7 --- /dev/null +++ b/src/bin/cf-1051f.cc @@ -0,0 +1,647 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +class quick_union { +private: + vector c, sz; +public: + quick_union(size_t n) : c(n), sz(n) { + iota(c.begin(), c.end(), 0); + sz.assign(n, 1); + } + size_t query(size_t i) { + if (c[i] != i) c[i] = query(c[i]); + return c[i]; + } + void merge(size_t i, size_t j) { + if (connected(i, j)) return; + sz[query(j)] += sz[query(i)]; + c[query(i)] = query(j); + } + bool connected(size_t i, size_t j) { + return query(i) == query(j); + } + size_t query_size(size_t i) { + return sz[query(i)]; + } +}; + +struct LCA { + vector depth; + vector> pa; + LCA(const vector>& g, int root = 1) { + int n = g.size() - 1; + int m = 32 - __builtin_clz(n); + depth.resize(n + 1); + pa.resize(n + 1, vector(m, -1)); + function dfs = [&](int x, int fa) { + pa[x][0] = fa; + for (int y: g[x]) { + if (y != fa) { + depth[y] = depth[x] + 1; + dfs(y, x); + } + } + }; + dfs(root, 0); + for (int i = 0; i < m - 1; i++) + for (int x = 1; x <= n; x++) + if (int p = pa[x][i]; p != -1) + pa[x][i + 1] = pa[p][i]; + } + int get_kth_ancestor(int node, int k) { + for (; k; k &= k - 1) + node = pa[node][__builtin_ctz(k)]; + return node; + } + int query(int x, int y) { + if (depth[x] > depth[y]) + swap(x, y); + y = get_kth_ancestor(y, depth[y] - depth[x]); + if (y == x) + return x; + for (int i = pa[x].size() - 1; i >= 0; i--) { + int px = pa[x][i], py = pa[y][i]; + if (px != py) { + x = px; + y = py; + } + } + return pa[x][0]; + } +}; + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n, m); + vector edges; + vector> e1(n + 1); + for (int i = 0; i < m; ++i) { + read(int, u, v, w); + edgew(e1, u, v, w); + edges.emplace_back(u, v, w); + } + sort_by_key(edges.begin(), edges.end(), expr(get<2>(t), auto&& t)); + quick_union qu(n + 1); + unordered_set red; + vector> e(n + 1); + adj(ch, n); + for (auto&& [u, v, w] : edges) { + if (qu.connected(u, v)) { + red.emplace(u); + red.emplace(v); + } else { + qu.merge(u, v); + edgew(e, u, v, w); + edge(ch, u, v); + } + } + LCA lca(ch); + vector pf(n + 1); + { + auto dfs = [&] (auto dfs, int v, int pa) -> void { + for (auto&& [u, w] : e[v]) { + if (u == pa) continue; + pf[u] = pf[v] + w; + dfs(dfs, u, v); + } + }; + dfs(dfs, 1, 0); + } + m = red.size(); + vector dis(m, vector(n + 1, INFLL)); + int i = 0; + for (auto&& b : red) { + dis[i][b] = 0; + min_heap q; + q.emplace(0, b); + while (q.size()) { + auto [d, v] = poptop(q); + for (auto&& [u, w] : e1[v]) { + if (chmin(dis[i][u], dis[i][v] + w)) { + q.emplace(dis[i][u], u); + } + } + } + i += 1; + } + read(int, q); + while (q--) { + read(int, u, v); + ll res = pf[u] + pf[v] - 2 * pf[lca.query(u, v)]; + for (int i = 0; i < m; ++i) { + chmin(res, dis[i][u] + dis[i][v]); + } + cout << res << '\n'; + } +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1055d.cc b/src/bin/cf-1055d.cc new file mode 100644 index 0000000..ddad77e --- /dev/null +++ b/src/bin/cf-1055d.cc @@ -0,0 +1,713 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +static vector> power1; +static vector> power2; +static const ll b = rd(); +template +struct hash_vec { + using hash_type = pll; + MLL hash1; + MLL hash2; + vector<_Tp> seq; + size_t size() { + return seq.size(); + } + void push_back(const _Tp& x) { + hash1 = hash1 * b + x; + hash2 = hash2 * b + x; + seq.push_back(x); + } + void push_front(const _Tp& x) { + size_t length = size(); + hash1 += x * power1[length]; + hash2 += x * power2[length]; + seq.push_front(x); + } + void pop_back() { + _Tp e = seq.back(); seq.pop_back(); + hash1 = (hash1 - e) / b; + hash2 = (hash2 - e) / b; + } + void pop_front() { + _Tp e = seq.front(); seq.pop_front(); + int length = seq.size(); + hash1 -= e * power1[length]; + hash2 -= e * power2[length]; + } + void set(size_t pos, const _Tp& value) { + int length = seq.size(); + int old_value = seq[pos]; + hash1 += (value - old_value) * power1[length - 1 - pos]; + hash2 += (value - old_value) * power2[length - 1 - pos]; + seq[pos] = value; + } + const _Tp& operator[](size_t pos) { + return seq[pos]; + } + hash_type hash() { + return {hash1.val, hash2.val}; + } + void clear() { + hash1 = 0; + hash2 = 0; + seq.clear(); + } + hash_vec(size_t maxn) { + clear(); + MLL c1 = power1.size() ? power1.back() * b : 1; + MLL c2 = power2.size() ? power2.back() * b : 1; + for (int i = power1.size(); i < maxn; ++i) { + power1.push_back(c1); + power2.push_back(c2); + c1 *= b; + c2 *= b; + } + } + hash_vec(size_t maxn, const _Tp& init_value) : hash_vec(maxn) { + for (size_t i = 0; i != maxn; ++i) { + push_back(init_value); + } + } +}; +struct range_hash { + vector, MLL>> hp; + range_hash() {} + template + range_hash(const T& vec) { + hp.emplace_back(); + hash_vec hs(vec.size() + 1); + for (auto&& x : vec) { + hs.push_back(x); + hp.emplace_back(hs.hash()); + } + } + /// query hash of subarray [l, r]. Index starts from 0. + pair, MLL> range_query(size_t l, size_t r) const { + return { + (hp[r + 1].first - hp[l].first * power1[r + 1 - l]), + (hp[r + 1].second - hp[l].second * power2[r + 1 - l]), + }; + } +}; + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n); + readvec(string, a, n); + readvec(string, b, n); + + int first = -1; + vector diff(n, pii(-1, -1)); + range_hash ba, bb; + for (int i = 0; i < n; ++i) { + int m = a[i].size(); + for (int j = 0; j < m; ++j) { + if (a[i][j] != b[i][j]) { + if (first == -1) { + first = i; + ba = range_hash(a[i]); + bb = range_hash(b[i]); + } + diff[i].first = j; + break; + } + } + for (int j = m - 1; ~j; --j) { + if (a[i][j] != b[i][j]) { + diff[i].second = j; + break; + } + } + } + + auto&& [x, y] = diff[first]; + int len = y - x + 1; + + auto find_left = [&] (const range_hash& hs, int i, int s) { + int l = 1, r = min(s + 1, x + 1); + while (l < r) { + int mid = l + r + 1 >> 1; + if (hs.range_query(s - mid + 1, s) == ba.range_query(x - mid + 1, x)) { + l = mid; + } else { + r = mid - 1; + } + } + + return l; + }; + + auto find_right = [&] (const range_hash& hs, int i, int s) { + int m = a[i].size(); + int l = 1, r = min(m - s, a[first].size() - y); + while (l < r) { + int mid = l + r + 1 >> 1; + if (hs.range_query(s, s + mid - 1) == ba.range_query(y, y + mid - 1)) { + l = mid; + } else { + r = mid - 1; + } + } + + return l; + }; + + auto ref = ba.range_query(x, y); + auto rbf = bb.range_query(x, y); + vector constraint; + int l = 0, r = a[first].size() - 1; + for (int i = 0; i < n; ++i) { + if (i == first) continue; + range_hash ca(a[i]), cb(b[i]); + if (diff[i].first != -1) { + if (ca.range_query(diff[i].first, diff[i].second) != ref or cb.range_query(diff[i].first, diff[i].second) != rbf) { + cout << "NO\n"; + return; + } + chmax(l, x - find_left(ca, i, diff[i].first) + 1); + chmin(r, y + find_right(ca, i, diff[i].second) - 1); + // deb(i, l, r); + // debug(diff[i]); + // debug(find_left(i, diff[i].first)); + // debug(find_right(i, diff[i].second)); + // } else { + // for (int j = 0; j + len - 1 < a[i].size(); ++j) { + // if (ca.range_query(j, j + len - 1) == ref) { + // // deb(i, j); + // // deb(x - find_left(i, j), y + find_right(i, j + len - 1)); + // constraint.emplace_back(x - find_left(ca, i, j), y + find_right(ca, i, j + len - 1)); + // } + // } + } + } + + int rl = l, rr = r; + len = r - l + 1; + ref = ba.range_query(l, r); + auto rawa = a[first].substr(rl, rr - rl + 1); + for (int i = 0; i < n; ++i) { + range_hash ca(a[i]), cb(b[i]); + for (int j = 0; j + len - 1 < a[i].size(); ++j) { + if (ca.range_query(j, j + len - 1) == ref) { + copy_n(b[first].begin() + rl, len, a[i].begin() + j); + break; + } + } + if (a[i] != b[i]) { + cout << "NO\n"; + return; + } + } + + // int rl = x, rr = y; + // for (auto&& [p, q] : constraint) { + // // deb(p, q); + // // deb(l, r); + // if (p >= l) { + // chmin(rl, p); + // } else if (q <= r) { + // chmax(rr, q); + // } else { + // cout << "NO\n"; + // return; + // } + // } + + cout << "YES\n"; + // cout << a[first].substr(rl, rr - rl + 1) << '\n'; + cout << rawa << '\n'; + cout << b[first].substr(rl, rr - rl + 1) << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1059e.cc b/src/bin/cf-1059e.cc new file mode 100644 index 0000000..510de95 --- /dev/null +++ b/src/bin/cf-1059e.cc @@ -0,0 +1,745 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +struct LCA { + vector depth; + vector> pa; + LCA(const vector>& g, int root = 1) { + int n = g.size() - 1; + int m = 32 - __builtin_clz(n); + depth.resize(n + 1); + pa.resize(n + 1, vector(m, -1)); + function dfs = [&](int x, int fa) { + pa[x][0] = fa; + for (int y: g[x]) { + if (y != fa) { + depth[y] = depth[x] + 1; + dfs(y, x); + } + } + }; + dfs(root, 0); + for (int i = 0; i < m - 1; i++) + for (int x = 1; x <= n; x++) + if (int p = pa[x][i]; p != -1) + pa[x][i + 1] = pa[p][i]; + } + int get_kth_ancestor(int node, int k) { + for (; k; k &= k - 1) + node = pa[node][__builtin_ctz(k)]; + return node; + } + int query(int x, int y) { + if (depth[x] > depth[y]) + swap(x, y); + y = get_kth_ancestor(y, depth[y] - depth[x]); + if (y == x) + return x; + for (int i = pa[x].size() - 1; i >= 0; i--) { + int px = pa[x][i], py = pa[y][i]; + if (px != py) { + x = px; + y = py; + } + } + return pa[x][0]; + } +}; + +template> class segtree { +private: + using size_type = uint64_t; + using info_type = Addable_Info_t; + using tag_type = Tag_t; + size_type _max; + vector d; + vector b; + void pull(size_type p) { + d[p] = d[p * 2] + d[p * 2 + 1]; + } + 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); + pull(p); + } + + 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)); + } + return res; + } + const vector& 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) { + if (val != INFLL) + val += rhs.val; + } +}; +Info operator+(const Info &a, const Info &b) { + return { min(a.val, b.val) }; +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n, L); + read(ll, S); + readvec1(int, w, n); + adj(ch, n); + for (int i = 2; i <= n; ++i) { + read(int, j); + edge(ch, i, j); + } + LCA lca(ch); + vector seq; + vector dfn(n + 1); + vector sz(n + 1); + vector ps(n + 1); + { + auto dfs = [&] (auto dfs, int v, int pa) -> void { + sz[v] = 1; + ps[v] = ps[pa] + w[v]; + dfn[v] = seq.size(); + seq.emplace_back(v); + for (auto&& u : ch[v]) { + if (u == pa) continue; + dfs(dfs, u, v); + sz[v] += sz[u]; + } + }; + dfs(dfs, 1, 0); + } + segtree val(n); + vector> layer(n); + for (int i = 1; i <= n; ++i) { + layer[lca.depth[i]].emplace_back(i); + } + vector> bk(n + 1); + for (int i = 1; i <= n; ++i) { + int l = 1, r = min(lca.depth[i] + 1, L); + while (l < r) { + int mid = l + r + 1 >> 1; + int g = lca.get_kth_ancestor(i, mid); + if (ps[i] - ps[g] <= S) { + l = mid; + } else { + r = mid - 1; + } + } + bk[lca.get_kth_ancestor(i, l - 1)].emplace_back(i); + } + vector dp(n + 1, INFLL); + for (int i = n - 1; ~i; --i) { + for (auto&& v : layer[i]) { + int fa = lca.get_kth_ancestor(v, 1); + ll sub = 0; + for (auto&& u : ch[v]) { + if (u == fa) continue; + sub += dp[u]; + } + if (w[v] <= S) { + chmin(dp[v], sub + 1); + } + ll low = val.range_query(dfn[v], dfn[v] + sz[v] - 1).val; + if (low != INFLL) { + chmin(dp[v], sub + low + 1); + } + if (dp[v] == INFLL) { + cout << -1 << '\n'; + return; + } + val.set(dfn[v], { 0 }); + val.range_apply(dfn[v], dfn[v] + sz[v] - 1, { sub - dp[v] }); + for (auto&& u : bk[v]) { + val.set(dfn[u], { INFLL }); + } + } + } + cout << dp[1] << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1062e.cc b/src/bin/cf-1062e.cc new file mode 100644 index 0000000..687b2ec --- /dev/null +++ b/src/bin/cf-1062e.cc @@ -0,0 +1,627 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +struct LCA { + vector depth; + vector> pa; + LCA(const vector>& g, int root = 1) { + int n = g.size() - 1; + int m = 32 - __builtin_clz(n); + depth.resize(n + 1); + pa.resize(n + 1, vector(m, -1)); + function dfs = [&](int x, int fa) { + pa[x][0] = fa; + for (int y: g[x]) { + if (y != fa) { + depth[y] = depth[x] + 1; + dfs(y, x); + } + } + }; + dfs(root, 0); + for (int i = 0; i < m - 1; i++) + for (int x = 1; x <= n; x++) + if (int p = pa[x][i]; p != -1) + pa[x][i + 1] = pa[p][i]; + } + int get_kth_ancestor(int node, int k) { + for (; k; k &= k - 1) + node = pa[node][__builtin_ctz(k)]; + return node; + } + int query(int x, int y) { + if (depth[x] > depth[y]) + swap(x, y); + y = get_kth_ancestor(y, depth[y] - depth[x]); + if (y == x) + return x; + for (int i = pa[x].size() - 1; i >= 0; i--) { + int px = pa[x][i], py = pa[y][i]; + if (px != py) { + x = px; + y = py; + } + } + return pa[x][0]; + } +}; + +template> struct sparse_table { + _Op op; + vector> st; + sparse_table() {} + template + sparse_table(ReverseIterator __first, ReverseIterator __last, _Op&& __operation) { + op = __operation; + int n = distance(__first, __last); + st = vector>(n, vector<_Tp>(int(log2(n) + 1))); + int i = n - 1; + for (auto it = __first; it != __last; ++it) { + st[i][0] = *it; + for (int j = 1; i + (1 << j) <= n; ++j) { + st[i][j] = op(st[i][j - 1], st[i + (1 << (j - 1))][j - 1]); + } + i -= 1; + } + } + _Tp query(size_t __start, size_t __end) { + int s = lg2(__end - __start + 1); + return op(st[__start][s], st[__end - (1 << s) + 1][s]); + } +}; + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n, q); + adj(ch, n); + for (int i = 2; i <= n; ++i) { + read(int, j); + edge(ch, i, j); + } + + vector depth(n + 1, -1); + auto dfs = [&] (auto dfs, int v, int pa) -> void { + depth[v] = depth[pa] + 1; + for (auto&& u : ch[v]) { + if (u == pa) continue; + dfs(dfs, u, v); + } + }; + dfs(dfs, 1, 0); + + LCA lca(ch); + vector idx(n); + iota(idx.begin(), idx.end(), 1); + sparse_table range_lca(idx.rbegin(), idx.rend(), expr(lca.query(u, v), auto&& u, auto&& v)); + + while (q--) { + read(int, l, r); + int x = range_lca.query(l - 1, r - 1); + int choice; + if (l + 1 == r) { + choice = lca.depth[l] > lca.depth[r] ? r : l; + } else { + int left = l, right = r; + while (right - left >= 2) { + int mid = left + right >> 1; + if (range_lca.query(left - 1, mid - 1) == x) { + right = mid; + } else { + left = mid + 1; + } + } + if (left != right) { + int other = right == r ? l : r; + if (lca.query(left, right) == x and lca.query(left, other) == x) { + choice = left; + } else { + choice = right; + } + } else { + choice = left; + } + } + int left = l <= choice - 1 ? range_lca.query(l - 1, choice - 1 - 1) : -1; + int right = choice + 1 <= r ? range_lca.query(choice + 1 - 1, r - 1) : -1; + if (left != -1 and right != -1) { + x = lca.query(left, right); + } else if (left != -1) { + x = left; + } else { + x = right; + } + cout << choice << ' ' << depth[x] << '\n'; + } +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1065d.cc b/src/bin/cf-1065d.cc new file mode 100644 index 0000000..53b35dd --- /dev/null +++ b/src/bin/cf-1065d.cc @@ -0,0 +1,592 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n); + vector a(n, vector(n)); + for (int i = 0; i < n; ++i) { + for (int j = 0; j < n; ++j) { + cin >> a[i][j]; + } + } + int s = n * n; + vector dis(3 * s, vector(3 * s, { INFLL, 0 })); + for (int i = 0; i < 3 * s; ++i) { + dis[i][i] = { 0, 0 }; + deque q = { i }; + while (q.size()) { + auto v = popfront(q); + // change chip type + for (int j = 0; j < 3; ++j) { + int u = (v % s) + j * s; + if (u == v) continue; + if (chmin(dis[i][u], pll(dis[i][v].first + 1, dis[i][v].second + 1))) { + q.emplace_back(u); + } + } + int type = (v - (v % s)) / s; + int xv = (v % s) / n, yv = (v % s) % n; + if (type == 0) { + for (int j = 0; j < s; ++j) { + int u = type * s + j; + int xu = j / n, yu = j % n; + if (abs(xv - xu) == 2 and abs(yv - yu) == 1 or abs(xv - xu) == 1 and abs(yv - yu) == 2) { + if (chmin(dis[i][u], pll(dis[i][v].first + 1, dis[i][v].second))) { + q.emplace_back(u); + } + } + } + } else if (type == 1) { + for (int j = 0; j < s; ++j) { + int u = type * s + j; + int xu = j / n, yu = j % n; + if (abs(xv - xu) == abs(yv - yu)) { + if (chmin(dis[i][u], pll(dis[i][v].first + 1, dis[i][v].second))) { + q.emplace_back(u); + } + } + } + } else { + for (int j = 0; j < s; ++j) { + int u = type * s + j; + int xu = j / n, yu = j % n; + if (xv - xu == 0 or yv - yu == 0) { + if (chmin(dis[i][u], pll(dis[i][v].first + 1, dis[i][v].second))) { + q.emplace_back(u); + } + } + } + } + } + } + vector rev(s); + for (int i = 0; i < n; ++i) { + for (int j = 0; j < n; ++j) { + rev[a[i][j] - 1] = i * n + j; + } + } + auto add = [] (const pll& a, const pll& b) { + return pll(a.first + b.first, a.second + b.second); + }; + array res = {}; + for (int i = 1; i < s; ++i) { + res = { + min({ add(res[0], dis[rev[i - 1]][rev[i]]), add(res[1], dis[s + rev[i - 1]][rev[i]]), add(res[2], dis[2 * s + rev[i - 1]][rev[i]]) }), + min({ add(res[0], dis[rev[i - 1]][s + rev[i]]), add(res[1], dis[s + rev[i - 1]][s + rev[i]]), add(res[2], dis[2 * s + rev[i - 1]][s + rev[i]]) }), + min({ add(res[0], dis[rev[i - 1]][2 * s + rev[i]]), add(res[1], dis[s + rev[i - 1]][2 * s + rev[i]]), add(res[2], dis[2 * s + rev[i - 1]][2 * s + rev[i]]) }), + }; + } + auto&& [x, y] = *min_element(res.begin(), res.end()); + cout << x << ' ' << y << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1065e.cc b/src/bin/cf-1065e.cc new file mode 100644 index 0000000..109f3cf --- /dev/null +++ b/src/bin/cf-1065e.cc @@ -0,0 +1,529 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + using mll = MLL; + + read(int, n, m, b); + readvec(int, a, m); + mll res = 1; + for (int i = 0; i < m; ++i) { + int len = i == 0 ? a[i] : a[i] - a[i - 1]; + mll all = qpow(b, len); + res *= (all * all + all) / 2; + } + int rem = n - a.back() * 2; + res *= qpow(b, rem); + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1080e.cc b/src/bin/cf-1080e.cc new file mode 100644 index 0000000..d9466ae --- /dev/null +++ b/src/bin/cf-1080e.cc @@ -0,0 +1,664 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +static vector> power1; +static vector> power2; +static const ll b = rd(); +template +struct hash_vec { + using hash_type = pll; + MLL hash1; + MLL hash2; + vector<_Tp> seq; + size_t size() { + return seq.size(); + } + void push_back(const _Tp& x) { + hash1 = hash1 * b + x; + hash2 = hash2 * b + x; + seq.push_back(x); + } + void push_front(const _Tp& x) { + size_t length = size(); + hash1 += x * power1[length]; + hash2 += x * power2[length]; + seq.push_front(x); + } + void pop_back() { + _Tp e = seq.back(); seq.pop_back(); + hash1 = (hash1 - e) / b; + hash2 = (hash2 - e) / b; + } + void pop_front() { + _Tp e = seq.front(); seq.pop_front(); + int length = seq.size(); + hash1 -= e * power1[length]; + hash2 -= e * power2[length]; + } + void set(size_t pos, const _Tp& value) { + int length = seq.size(); + int old_value = seq[pos]; + hash1 += (value - old_value) * power1[length - 1 - pos]; + hash2 += (value - old_value) * power2[length - 1 - pos]; + seq[pos] = value; + } + const _Tp& operator[](size_t pos) { + return seq[pos]; + } + hash_type hash() { + return {hash1.val, hash2.val}; + } + void clear() { + hash1 = 0; + hash2 = 0; + seq.clear(); + } + hash_vec(size_t maxn) { + clear(); + MLL c1 = power1.size() ? power1.back() * b : 1; + MLL c2 = power2.size() ? power2.back() * b : 1; + for (int i = power1.size(); i < maxn; ++i) { + power1.push_back(c1); + power2.push_back(c2); + c1 *= b; + c2 *= b; + } + } + hash_vec(size_t maxn, const _Tp& init_value) : hash_vec(maxn) { + for (size_t i = 0; i != maxn; ++i) { + push_back(init_value); + } + } +}; +struct range_hash { + vector, MLL>> hp; + template + range_hash(const T& vec) { + hp.emplace_back(); + hash_vec hs(vec.size() + 1); + for (auto&& x : vec) { + hs.push_back(x); + hp.emplace_back(hs.hash()); + } + } + /// query hash of subarray [l, r]. Index starts from 0. + pair, MLL> range_query(size_t l, size_t r) { + return { + (hp[r + 1].first - hp[l].first * power1[r + 1 - l]), + (hp[r + 1].second - hp[l].second * power2[r + 1 - l]), + }; + } +}; + +template +vector manacher(const vector& s, const T& never) { + vector t = { never }; + for (auto&& c : s) { + t.emplace_back(c); + t.emplace_back(never); + } + int n = t.size(); + vector r(n); + for (int i = 0, j = 0; i < n; ++i) { + if (2 * j - i >= 0 && j + r[j] > i) { + r[i] = min(r[2 * j - i], j + r[j] - i); + } + while (i - r[i] >= 0 && i + r[i] < n && t[i - r[i]] == t[i + r[i]]) { + r[i] += 1; + } + if (i + r[i] > j + r[j]) { + j = i; + } + } + for (int i = 0; i < n; i += 2) { + r[i] = (r[i] - 1) / 2; + } + for (int i = 1; i < n; i += 2) { + r[i] /= 2; + } + return r; +} + +__attribute__((target("popcnt"))) +void solve() { + read(int, n, m); + vector a(n, vector(m)); + vector ps(n, vector(m + 1, array())); + for (int i = 0; i < n; ++i) { + for (int j = 0; j < m; ++j) { + read(char, c); + a[i][j] = c - 'a'; + ps[i][j + 1] = ps[i][j]; + ps[i][j + 1][a[i][j]] += 1; + } + } + ll res = 0; + for (int i = 0; i < m; ++i) { + vector cnt(n, hash_vec(26)); + vector cnt_odd(n); + for (int j = 0; j < n; ++j) { + for (int k = 0; k < 26; ++k) { + cnt[j].push_back(0); + } + } + for (int j = i; j < m; ++j) { + vector seq(n); + vector pos(n); + for (int k = 0; k < n; ++k) { + int nxt = cnt[k][a[k][j]] + 1; + cnt_odd[k] &= ((1 << 26) - 1) ^ (1 << a[k][j]); + cnt_odd[k] |= (nxt & 1) << a[k][j]; + cnt[k].set(a[k][j], nxt); + seq[k] = cnt[k].hash1.val xor cnt[k].hash2.val; + pos[k] = popcount(cnt_odd[k]) == ((j - i + 1) & 1); + } + + ll never = 0; + for (int k = 0; k < n; ++k) { + if (pos[k] == 0) { + seq[k] = --never; + } + } + vector cnt = manacher(seq, -INFLL); + for (int k = 0; k < 2 * n + 1; ++k) { + if (k % 2 == 0 or pos[k / 2]) { + res += cnt[k]; + } + } + } + } + + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1082g.cc b/src/bin/cf-1082g.cc new file mode 100644 index 0000000..90f492c --- /dev/null +++ b/src/bin/cf-1082g.cc @@ -0,0 +1,582 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +struct dinic { + struct edge { + int to; + ll cap; + ll flow; + int rev; + int mark; + }; + vector> edges; + vector layer; + vector vis; + dinic(int n) : edges(n + 1), layer(n + 1), vis(n + 1) {} + void add_edge(int from, int to, ll cap, int mark = 0, int mark_rev = 0) { + edges[from].push_back({ to, cap, 0, int(edges[to].size()), mark }); + edges[to].push_back({ from, 0, 0, int(edges[from].size() - 1), mark_rev }); + } + bool bfs(int s, int t) { + layer.assign(edges.size(), 0); + deque dq; + layer[s] = 1; + dq.emplace_back(s, 1); + while (dq.size()) { + popfront(dq, v, l); + for (auto&& e : edges[v]) { + if (layer[e.to] == 0 and e.cap > e.flow) { + layer[e.to] = l + 1; + dq.emplace_back(e.to, l + 1); + } + } + } + return layer[t] != 0; + } + ll dfs(int s, int t, ll cap) { + if (vis[s]) { + return 0; + } + vis[s] = 1; + if (s == t) { + return cap; + } + ll res = 0; + int n = edges[s].size(); + for (int i = 0; i < n; ++i) { + auto e = edges[s][i]; + if (e.cap > e.flow and layer[e.to] == layer[s] + 1) { + ll nw = dfs(e.to, t, min(cap - res, e.cap - e.flow)); + edges[s][i].flow += nw; + edges[e.to][e.rev].flow -= nw; + res += nw; + if (res == cap) { + return res; + } + } + } + return res; + } + ll run(int s, int t) { + ll res = 0; + while (bfs(s, t)) { + vis.assign(edges.size(), 0); + res += dfs(s, t, LLONG_MAX); + } + return res; + } +}; + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n, m); + dinic net(n + m + 3); + int s = n + m + 1, t = n + m + 2; + readvec1(int, a, n); + int ep = n; + ll tot = 0; + for (int i = 1; i <= m; ++i) { + read(int, u, v, w); + net.add_edge(ep + i, u, INFLL); + net.add_edge(ep + i, v, INFLL); + net.add_edge(s, ep + i, w); + tot += w; + } + for (int i = 1; i <= n; ++i) { + net.add_edge(i, t, a[i]); + } + auto flow = net.run(s, t); + cout << tot - flow << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1083e.cc b/src/bin/cf-1083e.cc new file mode 100644 index 0000000..2fc70e3 --- /dev/null +++ b/src/bin/cf-1083e.cc @@ -0,0 +1,581 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +template struct point { + T x, y; + point() : x(), y() {} + point(const pair& a) : x(a.first), y(a.second) {} + point(const T& x, const T& y) : x(x), y(y) {} + + inline T square() const { return x * x + y * y; } + inline ld norm() const { return sqrt(ld(square())); } + + inline point operator+(const point& rhs) const { return point(x + rhs.x, y + rhs.y); } + inline point operator-(const point& rhs) const { return point(x - rhs.x, y - rhs.y); } + inline point operator+() const { return *this; } + inline point operator-() const { return point(-x, -y); } + inline point operator*(const T& a) const { return point(x * a, y * a); } + inline T operator*(const point& rhs) const { return x * rhs.y - y * rhs.x; } + inline point operator/(const T& a) const { return point(x / a, y / a); } + inline point& operator+=(const point& rhs) { x += rhs.x, y += rhs.y; return *this; } + inline point& operator-=(const point& rhs) { x -= rhs.x, y -= rhs.y; return *this; } + inline point& operator*=(const T& a) { x *= a, y *= a; return *this; } + inline point& operator/=(const T& a) { x /= a, y /= a; return *this; } + + inline bool operator==(const point& rhs) const { return x == rhs.x and y == rhs.y; } + inline bool operator!=(const point& rhs) const { return not (*this == rhs); } + inline bool operator<(const point& rhs) const { return pair(x, y) < pair(rhs.x, rhs.y); } + inline bool operator<=(const point& rhs) const { return *this < rhs or *this == rhs; } + inline bool operator>(const point& rhs) const { return not (*this <= rhs); } + inline bool operator>=(const point& rhs) const { return not (*this < rhs); } + + static inline ld slope(const point& a, const point& b) { + if (a.x == b.x) return INFLL; + return ld(a.y - b.y) / (a.x - b.x); + } + + // distance from point `a` to line `l--r` + static inline ld dist(const point& a, const point& l, const point& r) { + return area(a, l, r) * 2 / (l - r).norm(); + } + + static inline ld area(const point& a, const point& b, const point& c) { + return (b - a) * (c - a) / ld(2); + } + + friend inline istream& operator>>(istream& in, point& a) { + return in >> a.x >> a.y; + } + + friend inline ostream& operator<<(ostream& out, const point& a) { + return out << a.x << ' ' << a.y; + } +}; + +// __attribute__((target("popcnt"))) +void solve() { + using point = point; + + read(int, n); + vector a; + for (int i = 0; i < n; ++i) { + read(int, x, y); + read(ll, z); + a.emplace_back(x, y, z); + } + sort_by_key(a.begin(), a.end(), expr(get<0>(t), auto&& t)); + deque stack; + int128 res = 0; + for (auto&& [x, y, z] : a) { + int m = stack.size(); + while (m >= 2 and (stack[1] - stack[0]) * point(1, y) < 0) { + stack.pop_front(); + m -= 1; + } + int128 best = 0; + if (m) { + chmax(best, stack[0].y - y * stack[0].x); + } + int128 curr = ll(1) * x * y + best - z; + chmax(res, curr); + point p(x, curr); + while (m >= 2 and (stack[m - 1] - stack[m - 2]) * (p - stack[m - 1]) > 0) { + stack.pop_back(); + m -= 1; + } + stack.emplace_back(p); + } + cout << res << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/cf-1088e.cc b/src/bin/cf-1088e.cc new file mode 100644 index 0000000..b0bbdf0 --- /dev/null +++ b/src/bin/cf-1088e.cc @@ -0,0 +1,539 @@ +// #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") +#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +/************* This code requires C++17. ***************/ + +#include +using namespace std; + +/* macro helpers */ +#define __NARGS(...) std::tuple_size::value +#define __DECOMPOSE_S(a, x) auto x = a; +#define __DECOMPOSE_N(a, ...) auto [__VA_ARGS__] = a; +constexpr void __() {} +#define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() +#define __as_typeof(container) remove_reference::type + +/* type aliases */ +#if LONG_LONG_MAX != INT64_MAX +using ll = int64_t; +using ull = uint64_t; +#else +using ll = long long; +using ull = unsigned long long; +#endif +using int128 = __int128_t; +using uint128 = __uint128_t; +using ld = long double; +using pii = pair; using pil = pair; using pid = pair; +using pli = pair; using pll = pair; using pld = pair; +using pdi = pair; using pdl = pair; using pdd = pair; +using tiii = tuple; using tiil = tuple; using tiid = tuple; +using tili = tuple; using till = tuple; using tild = tuple; +using tidi = tuple; using tidl = tuple; using tidd = tuple; +using tlii = tuple; using tlil = tuple; using tlid = tuple; +using tlli = tuple; using tlll = tuple; using tlld = tuple; +using tldi = tuple; using tldl = tuple; using tldd = tuple; +using tdii = tuple; using tdil = tuple; using tdid = tuple; +using tdli = tuple; using tdll = tuple; using tdld = tuple; +using tddi = tuple; using tddl = tuple; using tddd = tuple; +template using max_heap = priority_queue; +template using min_heap = priority_queue, greater<>>; +template using oi = ostream_iterator; +template using ii = istream_iterator; + +/* constants */ +constexpr int INF = 0x3f3f3f3f; +constexpr ll INFLL = 0x3f3f3f3f3f3f3f3fLL; +constexpr ll MDL = 1e9 + 7; +constexpr ll PRIME = 998'244'353; +constexpr ll MDL1 = 8784491; +constexpr ll MDL2 = PRIME; +constexpr int128 INT128_MAX = numeric_limits::max(); +constexpr uint128 UINT128_MAX = numeric_limits::max(); +constexpr int128 INT128_MIN = numeric_limits::min(); +constexpr uint128 UINT128_MIN = numeric_limits::min(); + +/* random */ + +mt19937_64 rd(chrono::duration_cast(chrono::system_clock::now().time_since_epoch()).count()); + +/* bit-wise operations */ +#define lowbit(x) ((x) & -(x)) +#define popcount(x) (__builtin_popcountll(ll(x))) +#define parity(x) (__builtin_parityll(ll(x))) +#define msp(x) (63LL - __builtin_clzll(ll(x))) +#define lsp(x) (__builtin_ctzll(ll(x))) + +/* arithmetic operations */ +#define mod(x, y) ((((x) % (y)) + (y)) % (y)) + +/* fast pairs */ +#define upair ull +#define umake(x, y) (ull(x) << 32 | (ull(y) & ((1ULL << 32) - 1))) +#define u1(p) ((p) >> 32) +#define u2(p) ((p) & ((1ULL << 32) - 1)) +#define ult std::less +#define ugt std::greater + +#define ipair ull +#define imake(x, y) (umake(x, y)) +#define i1(p) (int(u1(ll(p)))) +#define i2(p) (ll(u2(p) << 32) >> 32) +struct ilt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) < i2(b); + else return i1(a) < i1(b); + } +}; +struct igt { + bool operator()(const ipair& a, const ipair& b) const { + if (i1(a) == i1(b)) return i2(a) > i2(b); + else return i1(a) > i1(b); + } +}; + +/* conditions */ +#define loop while (1) +#define if_or(var, val) if (!(var == val)) var = val; else +#define continue_or(var, val) __AS_PROCEDURE(if (var == val) continue; var = val;) +#define break_or(var, val) __AS_PROCEDURE(if (var == val) break; var = val;) + +/* hash */ +struct safe_hash { + // https://codeforces.com/blog/entry/62393 + static uint64_t splitmix64(uint64_t x) { + // http://xorshift.di.unimi.it/splitmix64.c + x += 0x9e3779b97f4a7c15; + x = (x ^ (x >> 30)) * 0xbf58476d1ce4e5b9; + x = (x ^ (x >> 27)) * 0x94d049bb133111eb; + return x ^ (x >> 31); + } + + size_t operator()(uint64_t x) const { + static const uint64_t FIXED_RANDOM = chrono::steady_clock::now().time_since_epoch().count(); + return splitmix64(x + FIXED_RANDOM); + } +}; + +struct pair_hash { + template + size_t operator()(const pair& a) const { + auto hash1 = safe_hash()(a.first); + auto hash2 = safe_hash()(a.second); + if (hash1 != hash2) { + return hash1 ^ hash2; + } + return hash1; + } +}; + +uniform_int_distribution dist(PRIME); +const size_t __array_hash_b = 31, __array_hash_mdl1 = dist(rd), __array_hash_mdl2 = dist(rd); +struct array_hash { + template + size_t operator()(const Sequence& arr) const { + size_t pw1 = 1, pw2 = 1; + size_t res1 = 0, res2 = 0; + for (auto&& x : arr) { + res1 = (res1 + x * pw1) % __array_hash_mdl1; + res2 = (res2 + x * pw2) % __array_hash_mdl2; + pw1 = (pw1 * __array_hash_b) % __array_hash_mdl1; + pw2 = (pw2 * __array_hash_b) % __array_hash_mdl2; + } + return res1 + res2; + } +}; + +/* build data structures */ +#define faster(um) __AS_PROCEDURE((um).reserve(1024); (um).max_load_factor(0.25);) +#define unordered_counter(from, to) __AS_PROCEDURE(unordered_map<__as_typeof(from), size_t, safe_hash> to; for (auto&& x : from) ++to[x];) +#define counter(from, to, cmp) __AS_PROCEDURE(map<__as_typeof(from), size_t, cmp> to; for (auto&& x : from) ++to[x];) +#define adj(ch, n) __AS_PROCEDURE(vector> ch((n) + 1);) +#define edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v), ch[v].push_back(u);) +#define edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__), ch[v].emplace_back(u, __VA_ARGS__);) +#define Edge(ch, u, v) __AS_PROCEDURE(ch[u].push_back(v);) +#define Edgew(ch, u, v, ...) __AS_PROCEDURE(ch[u].emplace_back(v, __VA_ARGS__);) +template pair> discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} +template pair> unordered_discretize(Iterator __first, Iterator __last) { + set st(__first, __last); + size_t N = 0; + unordered_map mp; + for (auto&& x : st) mp[x] = ++N; + return {N, mp}; +} + +/* io */ +#define untie __AS_PROCEDURE(ios_base::sync_with_stdio(0), cin.tie(NULL)) +template istream& operator>>(istream& in, pair& p) { + return in >> p.first >> p.second; +} +template ostream& operator<<(ostream& out, const pair& p) { + out << "{" << p.first << ", " << p.second << "}"; + return out; +} +template +void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { + using swallow = int[]; // guaranties left to right order + (void)swallow { 0, (void(os << (Index == 0 ? "" : ", ") << std::get(t)), 0)... }; +} +template +decltype(auto) operator<<(std::basic_ostream& os, const std::tuple& t) { + os << "{"; + print_tuple_impl(os, t, std::index_sequence_for{}); + return os << "}"; +} +template ostream& operator<<(ostream& out, const vector& vec) { + for (auto&& i : vec) out << i << ' '; + return out; +} +std::ostream& operator<<(std::ostream& dest, const int128& value) { + // https://stackoverflow.com/a/25115163/23881100 + std::ostream::sentry s( dest ); + if ( s ) { + uint128 tmp = value < 0 ? -value : value; + char buffer[ 128 ]; + char* d = std::end( buffer ); + do { + -- d; + *d = "0123456789"[ tmp % 10 ]; + tmp /= 10; + } while ( tmp != 0 ); + if ( value < 0 ) { + -- d; + *d = '-'; + } + int len = std::end( buffer ) - d; + if ( dest.rdbuf()->sputn( d, len ) != len ) { + dest.setstate( std::ios_base::badbit ); + } + } + return dest; +} +template void __read(T& x) { cin >> x; } +template void __read(T& x, U&... args) { cin >> x; __read(args...); } +#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) +#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) +#define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define putvec1_eol(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) +#define debug(x) __AS_PROCEDURE(cerr << #x" = " << (x) << endl;) +#define debugvec(a) __AS_PROCEDURE(cerr << #a" = "; for (auto&& x : a) cerr << x << ' '; cerr << endl;) +#define deb(...) debug(make_tuple(__VA_ARGS__)) + +/* pops */ +#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) +#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) +#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) + +/* math */ +template +return_t qpow(ll b, ll p) { + if (b == 0 and p != 0) return 0; + if (p == 0) return 1; + return_t half = qpow(b, p / 2); + if (p % 2 == 1) return half * half * b; + else return half * half; +} + +#define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) +#define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) + +constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } + +void __exgcd(ll a, ll b, ll& x, ll& y) { + if (b == 0) { + x = 1, y = 0; + return; + } + __exgcd(b, a % b, y, x); + y -= a / b * x; +} + +ll inverse(ll a, ll b) { + ll x, y; + __exgcd(a, b, x, y); + return mod(x, b); +} + +vector> decompose(ll x) { + // return (factor, count, factor ** count) + vector> res; + for (int i = 2; i * i <= x; i++) { + if (x % i == 0) { + int cnt = 0; + ll pw = 1; + while (x % i == 0) ++cnt, x /= i, pw *= i; + res.emplace_back(i, cnt, pw); + } + } + if (x != 1) { + res.emplace_back(x, 1, x); + } + return res; +} + +vector decompose_prime(int N) { + // return (factor, count) + vector result; + for (int i = 2; i * i <= N; i++) { + if (N % i == 0) { + int cnt = 0; + while (N % i == 0) N /= i, ++cnt; + result.emplace_back(i, cnt); + } + } + if (N != 1) { + result.emplace_back(N, 1); + } + return result; +} + +/* string algorithms */ +vector calc_next(string t) { // pi function of t + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; +} +vector calc_z(string t) { // z function of t + int m = t.length(); + vector z; + z.push_back(m); + pair prev = {1, -1}; + for (int i = 1; i < m; ++i) { + if (z[i - prev.first] + i <= prev.second) { + z.push_back(z[i - prev.first]); + } else { + int j = max(i, prev.second + 1); + while (j < m && t[j] == t[j - i]) ++j; + z.push_back(j - i); + prev = {i, j - 1}; + } + } + return z; +} +vector kmp(string s, string t) { // find all t in s + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; +} +int period(string s) { // find the length of shortest recurring period + int n = s.length(); + auto z = calc_z(s); + for (int i = 1; i <= n / 2; ++i) { + if (n % i == 0 && z[i] == n - i) { + return i; + } + } + return n; +} + +/* modular arithmetic */ +template struct MLL { + ll val; + MLL(ll v = 0) : val(mod(v, mdl)) {} + MLL(const MLL& other) : val(other.val) {} + friend MLL operator+(const MLL& lhs, const MLL& rhs) { return mod(lhs.val + rhs.val, mdl); } + friend MLL operator-(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - rhs.val, mdl); } + friend MLL operator*(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * rhs.val, mdl); } + friend MLL operator/(const MLL& lhs, const MLL& rhs) { return mod(lhs.val * mod(inverse(rhs.val, mdl), mdl), mdl); } + friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } + friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } + friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } + void operator+=(const MLL& rhs) { val = (*this + rhs).val; } + void operator-=(const MLL& rhs) { val = (*this - rhs).val; } + void operator*=(const MLL& rhs) { val = (*this * rhs).val; } + void operator/=(const MLL& rhs) { val = (*this / rhs).val; } + void operator%=(const MLL& rhs) { val = (*this % rhs).val; } +}; + +template +ostream& operator<<(ostream& out, const MLL& num) { + return out << num.val; +} + +template +istream& operator>>(istream& in, MLL& num) { + return in >> num.val; +} + +// miscancellous +template +bool chmax(T& lhs, const U& rhs) { + bool ret = lhs < rhs; + if (ret) { + lhs = rhs; + } + return ret; +} +template +bool chmin(T& lhs, const U& rhs) { + bool ret = lhs > rhs; + if (ret) { + lhs = rhs; + } + return ret; +} + +#define functor(func) ([&](auto&&... val) \ +noexcept(noexcept(func(std::forward(val)...))) -> decltype(auto) \ +{return func(std::forward(val)...);}) +#define expr(ret, ...) ([&] (__VA_ARGS__) { return (ret); }) +template void sort_by_key(RandomIt first, RandomIt last, Func extractor) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return std::less<>()(extractor(a), extractor(b)); }); +} +template void sort_by_key(RandomIt first, RandomIt last, Func extractor, Compare comp) { + std::sort(first, last, [&] (auto&& a, auto&& b) { return comp(extractor(a), extractor(b)); }); +} +template +vector> zip(Iterator_T a_first, Iterator_T a_last, Iterator_U b_first, Iterator_U b_last) { + vector> res; + auto a_it = a_first; + auto b_it = b_first; + for (; not (a_it == a_last) and not (b_it == b_last); ++a_it, ++b_it) { + res.emplace_back(*a_it, *b_it); + } + return res; +} +template +vector> zip_n(Iterator_T a_first, Iterator_U b_first, size_t n) { + vector> res; + if (n > 0) { + res.emplace_back(*a_first, *b_first); + for (size_t i = 1; i != n; ++i) { + res.emplace_back(*++a_first, *++b_first); + } + } + return res; +} +template +class ArithmeticIterator : bidirectional_iterator_tag { +public: + using difference_type = ptrdiff_t; + using value_type = T; +private: + value_type value; +public: + ArithmeticIterator(const T& value) : value(value) {} + value_type operator*() const { return value; } + ArithmeticIterator& operator++() { ++value; return *this; } + ArithmeticIterator& operator--() { --value; return *this; } + bool operator==(const ArithmeticIterator& rhs) const { return value == rhs.value; } +}; +template vector> enumerate(const vector& container) { + return zip(ArithmeticIterator(0), ArithmeticIterator(INT_MAX), container.begin(), container.end()); +} +#define initarray(init, N) (__initarray::type, (N)>(init)) +namespace detail { + template + constexpr std::array + make_array(const T& value, std::index_sequence) { + return {{(static_cast(Is), value)...}}; + } +} + +template +constexpr std::array __initarray(const T& value) { + return detail::make_array(value, std::make_index_sequence()); +} +/*******************************************************/ + +#define SINGLE_TEST_CASE +// #define DUMP_TEST_CASE 7219 +// #define TOT_TEST_CASE 10000 + +void dump() {} + +void dump_ignore() {} + +void prep() { +} + +// __attribute__((target("popcnt"))) +void solve() { + read(int, n); + readvec1(int, a, n); + adj(ch, n); + for (int i = 0; i < n - 1; ++i) { + read(int, u, v); + edge(ch, u, v); + } + vector mx(n + 1); + { + auto dfs = [&] (auto dfs, int v, int pa) -> void { + mx[v] = a[v]; + for (auto&& u : ch[v]) { + if (u == pa) continue; + dfs(dfs, u, v); + if (mx[u] > 0) { + mx[v] += mx[u]; + } + } + }; + dfs(dfs, 1, 0); + } + ll res = *max_element(mx.begin() + 1, mx.begin() + n + 1); + int cnt = 0; + { + auto dfs = [&] (auto dfs, int v, int pa) -> void { + mx[v] = a[v]; + for (auto&& u : ch[v]) { + if (u == pa) continue; + dfs(dfs, u, v); + if (mx[u] > 0) { + mx[v] += mx[u]; + } + } + if (mx[v] == res) { + cnt += 1; + mx[v] = 0; + } + }; + dfs(dfs, 1, 0); + } + cout << res * cnt << ' ' << cnt << '\n'; +} + +int main() { +#if __cplusplus < 201402L or defined(_MSC_VER) and not defined(__clang__) + assert(false && "incompatible compiler variant detected."); +#endif + untie; + prep(); +#ifdef SINGLE_TEST_CASE + solve(); +#else + read(int, t); + for (int i = 0; i < t; ++i) { +#ifdef DUMP_TEST_CASE + if (t != (TOT_TEST_CASE)) { + solve(); + } else if (i + 1 == (DUMP_TEST_CASE)) { + dump(); + } else { + dump_ignore(); + } +#else + solve(); +#endif + } +#endif +} diff --git a/src/bin/std.in b/src/bin/std.in index 796731c..d048404 100644 --- a/src/bin/std.in +++ b/src/bin/std.in @@ -1,5 +1,13 @@ -4 -4 -2 -7 -69 +6 + +1 10 1 + +1 2 2 + +2 10 3 + +2 20 3 + +3 1 4 + +4 10 4 diff --git a/src/bin/template.cc b/src/bin/template.cc index 27c7314..55e1bc6 100644 --- a/src/bin/template.cc +++ b/src/bin/template.cc @@ -1,5 +1,5 @@ // #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") -#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +#pragma GCC optimize("Ofast") /************* This code requires C++17. ***************/ #include @@ -12,6 +12,8 @@ using namespace std; constexpr void __() {} #define __AS_PROCEDURE(...) __(); __VA_ARGS__; __() #define __as_typeof(container) remove_reference::type +template struct argument_type; +template struct argument_type { using type = U; }; /* type aliases */ #if LONG_LONG_MAX != INT64_MAX @@ -177,6 +179,14 @@ template ostream& operator<<(ostream& out, const pair istream& operator>>(istream& in, array& a) { + for (size_t i = 0; i < N; ++i) in >> a[i]; + return in; +} +template ostream& operator<<(ostream& out, const array& a) { + for (auto&& i : a) out << i << ' '; + return out; +} template void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { using swallow = int[]; // guaranties left to right order @@ -217,9 +227,9 @@ std::ostream& operator<<(std::ostream& dest, const int128& value) { } template void __read(T& x) { cin >> x; } template void __read(T& x, U&... args) { cin >> x; __read(args...); } -#define read(type, ...) __AS_PROCEDURE(type __VA_ARGS__; __read(__VA_ARGS__);) -#define readvec(type, a, n) __AS_PROCEDURE(vector a(n); for (auto& x : a) cin >> x;) -#define readvec1(type, a, n) __AS_PROCEDURE(vector a((n) + 1); copy_n(ii(cin), (n), a.begin() + 1);) +#define read(t, ...) __AS_PROCEDURE(argument_type::type __VA_ARGS__; __read(__VA_ARGS__);) +#define readvec(t, a, n) __AS_PROCEDURE(vector::type> a(n); for (auto& x : a) cin >> x;) +#define readvec1(t, a, n) __AS_PROCEDURE(vector::type> a((n) + 1); copy_n(ii::type>(cin), (n), a.begin() + 1);) #define putvec(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) #define putvec1(a) __AS_PROCEDURE(copy(a.begin() + 1, a.end(), oi<__as_typeof(a)::value_type>(cout, " ")); cout << endl;) #define putvec_eol(a) __AS_PROCEDURE(copy(a.begin(), a.end(), oi<__as_typeof(a)::value_type>(cout, "\n"));) @@ -229,9 +239,24 @@ template void __read(T& x, U&... args) { cin >> x; __ #define deb(...) debug(make_tuple(__VA_ARGS__)) /* pops */ -#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) -#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) -#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} /* math */ template @@ -243,11 +268,29 @@ return_t qpow(ll b, ll p) { else return half * half; } +// Accurately find `i` 'th root of `n` (taking the floor) +inline ll root(ll n, ll i) { + ll l = 0, r = pow(LLONG_MAX, ld(1) / i); + while (l < r) { + ll mid = l + r + 1 >> 1; + if (qpow(mid, i) <= n) { + l = mid; + } else { + r = mid - 1; + } + } + return l; +} + + #define comb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] / fact[k] / fact[(n) - (k)]) #define fastcomb(n, k) ((n) < 0 or (k) < 0 or (n) < (k) ? 0 : fact[n] * factrev[k] * factrev[(n) - (k)]) constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + void __exgcd(ll a, ll b, ll& x, ll& y) { if (b == 0) { x = 1, y = 0; @@ -298,15 +341,15 @@ vector decompose_prime(int N) { /* string algorithms */ vector calc_next(string t) { // pi function of t - int n = (int)t.length(); - vector pi(n); - for (int i = 1; i < n; i++) { - int j = pi[i - 1]; - while (j > 0 && t[i] != t[j]) j = pi[j - 1]; - if (t[i] == t[j]) j++; - pi[i] = j; - } - return pi; + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; } vector calc_z(string t) { // z function of t int m = t.length(); @@ -326,14 +369,14 @@ vector calc_z(string t) { // z function of t return z; } vector kmp(string s, string t) { // find all t in s - string cur = t + '#' + s; - int sz1 = s.size(), sz2 = t.size(); - vector v; - vector lps = calc_next(cur); - for (int i = sz2 + 1; i <= sz1 + sz2; i++) { - if (lps[i] == sz2) v.push_back(i - 2 * sz2); - } - return v; + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; } int period(string s) { // find the length of shortest recurring period int n = s.length(); @@ -358,11 +401,11 @@ template struct MLL { friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } - void operator+=(const MLL& rhs) { val = (*this + rhs).val; } - void operator-=(const MLL& rhs) { val = (*this - rhs).val; } - void operator*=(const MLL& rhs) { val = (*this * rhs).val; } - void operator/=(const MLL& rhs) { val = (*this / rhs).val; } - void operator%=(const MLL& rhs) { val = (*this % rhs).val; } + MLL& operator+=(const MLL& rhs) { return *this = *this + rhs; } + MLL& operator-=(const MLL& rhs) { return *this = *this - rhs; } + MLL& operator*=(const MLL& rhs) { return *this = *this * rhs; } + MLL& operator/=(const MLL& rhs) { return *this = *this / rhs; } + MLL& operator%=(const MLL& rhs) { return *this = *this % rhs; } }; template diff --git a/src/bin/test.cc b/src/bin/test.cc index 6c7a13e..a0e575b 100644 --- a/src/bin/test.cc +++ b/src/bin/test.cc @@ -1,5 +1,5 @@ // #pragma GCC target("popcnt,lzcnt,abm,bmi,bmi2") -#pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math") +// #pragma GCC optimize("Ofast") /************* This code requires C++17. ***************/ #include @@ -177,6 +177,10 @@ template ostream& operator<<(ostream& out, const pair istream& operator>>(istream& in, array& a) { + for (int i = 0; i < N; ++i) in >> a[i]; + return in; +} template void print_tuple_impl(std::basic_ostream& os, const Tuple& t, std::index_sequence) { using swallow = int[]; // guaranties left to right order @@ -229,9 +233,24 @@ template void __read(T& x, U&... args) { cin >> x; __ #define deb(...) debug(make_tuple(__VA_ARGS__)) /* pops */ -#define poptop(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.top(); q.pop();) -#define popback(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.back(); q.pop_back();) -#define popfront(q, ...) __AS_PROCEDURE(auto [__VA_ARGS__] = q.front();q.pop_front();) +template +inline auto poptop(Container& q) { + auto ret = q.top(); + q.pop(); + return ret; +} +template +inline auto popback(Container& q) { + auto ret = q.back(); + q.pop_back(); + return ret; +} +template +inline auto popfront(Container& q) { + auto ret = q.front(); + q.pop_front(); + return ret; +} /* math */ template @@ -248,6 +267,9 @@ return_t qpow(ll b, ll p) { constexpr inline int lg2(ll x) { return x == 0 ? -1 : sizeof(ll) * 8 - 1 - __builtin_clzll(x); } +template +T mygcd(T a, T b) { return b == 0 ? a : mygcd(b, a % b); } + void __exgcd(ll a, ll b, ll& x, ll& y) { if (b == 0) { x = 1, y = 0; @@ -298,15 +320,15 @@ vector decompose_prime(int N) { /* string algorithms */ vector calc_next(string t) { // pi function of t - int n = (int)t.length(); - vector pi(n); - for (int i = 1; i < n; i++) { - int j = pi[i - 1]; - while (j > 0 && t[i] != t[j]) j = pi[j - 1]; - if (t[i] == t[j]) j++; - pi[i] = j; - } - return pi; + int n = (int)t.length(); + vector pi(n); + for (int i = 1; i < n; i++) { + int j = pi[i - 1]; + while (j > 0 && t[i] != t[j]) j = pi[j - 1]; + if (t[i] == t[j]) j++; + pi[i] = j; + } + return pi; } vector calc_z(string t) { // z function of t int m = t.length(); @@ -326,14 +348,14 @@ vector calc_z(string t) { // z function of t return z; } vector kmp(string s, string t) { // find all t in s - string cur = t + '#' + s; - int sz1 = s.size(), sz2 = t.size(); - vector v; - vector lps = calc_next(cur); - for (int i = sz2 + 1; i <= sz1 + sz2; i++) { - if (lps[i] == sz2) v.push_back(i - 2 * sz2); - } - return v; + string cur = t + '#' + s; + int sz1 = s.size(), sz2 = t.size(); + vector v; + vector lps = calc_next(cur); + for (int i = sz2 + 1; i <= sz1 + sz2; i++) { + if (lps[i] == sz2) v.push_back(i - 2 * sz2); + } + return v; } int period(string s) { // find the length of shortest recurring period int n = s.length(); @@ -358,11 +380,11 @@ template struct MLL { friend MLL operator%(const MLL& lhs, const MLL& rhs) { return mod(lhs.val - (lhs / rhs).val, mdl); } friend bool operator==(const MLL& lhs, const MLL& rhs) { return lhs.val == rhs.val; } friend bool operator!=(const MLL& lhs, const MLL& rhs) { return lhs.val != rhs.val; } - void operator+=(const MLL& rhs) { val = (*this + rhs).val; } - void operator-=(const MLL& rhs) { val = (*this - rhs).val; } - void operator*=(const MLL& rhs) { val = (*this * rhs).val; } - void operator/=(const MLL& rhs) { val = (*this / rhs).val; } - void operator%=(const MLL& rhs) { val = (*this % rhs).val; } + void operator+=(const MLL& rhs) { return *this = *this + rhs; } + void operator-=(const MLL& rhs) { return *this = *this - rhs; } + void operator*=(const MLL& rhs) { return *this = *this * rhs; } + void operator/=(const MLL& rhs) { return *this = *this / rhs; } + void operator%=(const MLL& rhs) { return *this = *this % rhs; } }; template @@ -467,29 +489,81 @@ void dump_ignore() {} void prep() { } -__attribute__((target("lzcnt"))) +// WARN: Input could contain multiple edges, but not self loops +// +// Returns: (BCC count, indices of BCCs of each vertex) +// +// BCC index starts from 1 +pair>> vbcc(const vector>& ch) { + int n = ch.size() - 1; + vector> c(n + 1); // a vertex could be contained in multiple vBCCs + + int tm = 0; + int cnt = 0; + + vector low(n + 1), dfn(n + 1); + vector stack; + auto dfs = [&] (auto dfs, int v, int pa) -> void { + int son = 0; + low[v] = dfn[v] = ++tm; + stack.emplace_back(v); + for (auto&& u : ch[v]) { + if (u == pa) continue; + son += 1; + if (not dfn[u]) { + dfs(dfs, u, v); + chmin(low[v], low[u]); + if (low[u] >= dfn[v]) { + cnt += 1; + int z; + do { + z = popback(stack); + c[z].emplace_back(cnt); + } while (z != u); + c[v].emplace_back(cnt); + } + } + chmin(low[v], dfn[u]); + } + if (pa == 0 and son == 0) { + cnt += 1; + c[v].emplace_back(cnt); + } + }; + for (int i = 1; i <= n; ++i) { + if (not dfn[i]) { + dfs(dfs, i, 0); + } + } + return { cnt, c }; +} + +// __attribute__((target("popcnt"))) void solve() { - read(int, n, s); - readvec(int, a, n); - int left = n / 2; - vector dp(1 << left); - unordered_map cnt; - faster(cnt); - cnt[0] = 1; - for (int i = 1; i < (1 << left); ++i) { - int lz = lsp(i); - dp[i] = dp[i ^ (1 << lz)] + a[lz]; - cnt[dp[i]] += 1; + read(int, n, m); + adj(ch, n); + while (m--) { + read(int, u, v); + if (u == v) continue; + edge(ch, u, v); } - int right = n - left; - dp.assign(1 << right, 0); - ll res = cnt.count(s) ? cnt[s] : 0; - for (int i = 1; i < (1 << right); ++i) { - int lz = lsp(i); - dp[i] = dp[i ^ (1 << lz)] + a[left + lz]; - res += cnt.count(s - dp[i]) ? cnt[s - dp[i]] : 0; + auto [cnt, c] = vbcc(ch); + cout << cnt << '\n'; + vector> bk(cnt); + // debug(cnt); + for (int i = 1; i <= n; ++i) { + // deb(i, c[i]); + for (auto&& j : c[i]) { + bk[j - 1].emplace_back(i); + } + } + for (auto&& v : bk) { + cout << v.size() << ' '; + for (auto&& u : v) { + cout << u << ' '; + } + cout << '\n'; } - cout << res << '\n'; } int main() { diff --git a/src/bin/test.py b/src/bin/test.py index 0f2a792..c0db13c 100644 --- a/src/bin/test.py +++ b/src/bin/test.py @@ -1,5 +1,5 @@ from math import lcm, ceil, log2 -from random import choice, randint, shuffle +from random import choice, randint, shuffle, random from os import system from collections import defaultdict import io @@ -7,7 +7,10 @@ import io PRIME = 998_244_353 if __name__ == '__main__': - n = 1000000 - print(n, n) - for i in range(n): - print(1, 100000) + N = 100000 + print(N) + print(*(random() for _ in range(N))) + print(*(f'{randint(0, i - 1)} {i}' for i in range(1, N)), sep='\n') + print(N) + for _ in range(N): + print(randint(0, N - 1), random()) diff --git a/src/bin/test2.cc b/src/bin/test2.cc new file mode 100644 index 0000000..1e38f41 --- /dev/null +++ b/src/bin/test2.cc @@ -0,0 +1,86 @@ +#include +using namespace std; + +#define isdigit(x) ('0' <= x && x <= '9') +template +inline void read(types &x){ + x = 0; int f = 1; char c; + while ((c = getchar()) && !isdigit(c)) if (c == '-') f = -1; + x = c ^ 48; + while ((c = getchar()) && isdigit(c)) x = (x << 3) + (x << 1) + (c ^ 48); + x *= f; return; +} +template +void write(types x){ + if (x < 0) putchar('-'), x = - x; + types k = x / 10; + if (k) write(k); + putchar(x - (k << 3) - (k << 1) | 48); + return; +} + +const int MAXN = 500010; +const int MAXM = 4000010; + +int n, m; +int head[MAXN], to[MAXM], nxt[MAXM], idx = 1; +int dfn[MAXN], low[MAXN], timecnt; // timecnt 时间戳记录顺序 +vector vdcc[MAXN]; +int vdcc_cnt; +stack s; + +inline void addedge(int x, int y){ + nxt[++idx] = head[x]; + to[idx] = y; + head[x] = idx; + return; +} + +void Tarjan(int x, int from){ + dfn[x] = low[x] = ++timecnt; + s.push(x); + int child = 0; + int p; + for (int i = head[x]; i; i = nxt[i]){ + if (i == (from ^ 1)) continue; // 判断来路 + child++; + int y = to[i]; + if (!dfn[y]){ + Tarjan(y, i); + low[x] = min(low[x], low[y]); + if (low[y] >= dfn[x]){ // 找到点双 + ++vdcc_cnt; + do{ + p = s.top(); s.pop(); + vdcc[vdcc_cnt].push_back(p); + } while (p != y); // 弹到子节点 + vdcc[vdcc_cnt].push_back(x); // 记得把自己加进去 + } + } + low[x] = min(low[x], dfn[y]); + } + if (!child && !from) // 记得特判孤立点 + vdcc[++vdcc_cnt].push_back(x); + return; +} + +int main(){ + read(n), read(m); + int x, y; + for (int i = 1; i <= m; ++i){ + read(x), read(y); + if (x != y) addedge(x, y), addedge(y, x); + } + + for (int i = 1; i <= n; ++i) if (!dfn[i]) Tarjan(i, 0); + + write(vdcc_cnt), putchar('\n'); + for (int i = 1; i <= vdcc_cnt; ++i){ + write(vdcc[i].size()), putchar(' '); + for (auto j = vdcc[i].begin(); j != vdcc[i].end(); ++j){ + write(*j), putchar(' '); + } + putchar('\n'); + } + return 0; +}