#define _CRT_SECURE_NO_WARNINGS #include "bits/stdc++.h" #if defined(_MSC_VER) || defined(ONLINE_JUDGE) #define getchar_unlocked _getchar_nolock #define putchar_unlocked _putchar_nolock #endif #define rep(i, n) for(int i=0; i<(n); ++i) #define FOR(i, m, n) for(int i=(m); i<(n); ++i) #define sz(x) ((int)(x).size()) #define all(x) (x).begin(),(x).end() #define rall(x) (x).rbegin(),(x).rend() #define mp make_pair #define pb push_back using namespace std; using LL=long long; using VI=vector; using VL=vector; using VS=vector; using VD=vector; using VVI=vector; using VVL=vector; using PII=pair; using PLL=pair; using VP=vector; using VPL=vector; const int inf = (int)1e9; const double PI = acos(-1.0); const LL MOD = 1000000007; const double EPS = 1e-10; const int dx[] = { -1,0,1,0,-1,-1,1,1 }, dy[] = { 0,1,0,-1,-1,1,-1,1 }; templatevoid Sort(T& a) { sort(all(a)); } templatevoid RSort(T& a) { sort(rall(a)); } templatevoid Reverse(T& a) { reverse(all(a)); } templatevoid Unique(T& a) { a.erase(unique(all(a)), a.end()); } templateT Sorted(T a) { Sort(a); return a; } templateT RSorted(T a) { RSort(a); return a; } templateT Reversed(T a) { Reverse(a); return a; } templateT Uniqued(T a) { Unique(a); return a; } templateauto Max(const T& a) { return *max_element(all(a)); } templateauto Min(const T& a) { return *min_element(all(a)); } templateint MaxPos(const T& a) { return max_element(all(a)) - a.begin(); } templateint MinPos(const T& a) { return min_element(all(a)) - a.begin(); } templateint Count(const T& a, const U& v) { return count(all(a), v); } templateint Find(const T& a, const U& v) { auto pos = find(all(a), v); return pos == a.end() ? -1 : pos - a.begin(); } templateU Sum(const T& a, const U& v) { return accumulate(all(a), v); } templateint Lower(const T& a, const U& v) { return lower_bound(all(a), v) - a.begin(); } templateint Upper(const T& a, const U& v) { return upper_bound(all(a), v) - a.begin(); } templatevoid RemoveIf(T& a, P f) { a.erase(remove_if(all(a), f), a.end()); } templateT Age(T n, T m) { return (n + m - 1) / m; } templateT Gcd(T n, T m) { return m ? Gcd(m, n % m) : n; } templateT Lcm(T n, T m) { return n / Gcd(n, m) * m; } templateT Pow(T a, T n) { T r = 1; while (n > 0) { if (n & 1)r *= a; a *= a; n /= 2; }return r; } templateT Powmod(T a, T n, T m = MOD) { T r = 1; while (n > 0) { if (n & 1)r = r * a % m, n--; else a = a * a % m, n /= 2; }return r; } templatebool chmax(T& a, const T& b) { if (a < b) { a = b; return 1; } return 0; } templatebool chmin(T& a, const T& b) { if (b < a) { a = b; return 1; } return 0; } string operator*(string s, int n) { string ret; rep(i, n)ret += s; return ret; } // --- input --- // templateT InputF() { T ret; cin >> ret; return ret; } template<> char InputF() { char ret = '\0', c = getchar_unlocked(); while (c != '\0' && c != '\n' && c != '\t' && c != ' ') { ret = c; c = getchar_unlocked(); } return ret; } template<> string InputF() { string ret; char c = getchar_unlocked(); while (c != '\0' && c != '\n' && c != '\t' && c != ' ') { ret.push_back(c); c = getchar_unlocked(); } return ret; } template<> int InputF() { int ret = 0; bool neg = false; char c = getchar_unlocked(); if (c == '-') { neg = true; c = getchar_unlocked(); } while (isdigit(c)) { ret = ret * 10 + (c - '0'); c = getchar_unlocked(); } return neg ? -ret : ret; } template<> LL InputF() { LL ret = 0; bool neg = false; char c = getchar_unlocked(); if (c == '-') { neg = true; c = getchar_unlocked(); } while (isdigit(c)) { ret = ret * 10LL + (LL(c) - LL('0')); c = getchar_unlocked(); } return neg ? -ret : ret; } template<> double InputF() { double ret = 0, dp = 1; bool neg = false, adp = false; char c = getchar_unlocked(); if (c == '-') { neg = true; c = getchar_unlocked(); } while (isdigit(c) || c == '.') { if (c == '.')adp = true; else if (adp)ret += (c - '0') * (dp *= 0.1); else ret = ret * 10.0 + (c - '0'); c = getchar_unlocked(); } return neg ? -ret : ret; } string GetLine() { string ret; char c = getchar_unlocked(); while (c != '\0' && c != '\n') { ret.push_back(c); c = getchar_unlocked(); } return ret; } templateT Parse(string s) { return s; } template<> char Parse(string s) { return s.front(); } template<> string Parse(string s) { return s; } template<> int Parse(string s) { return stoi(s); } template<> LL Parse(string s) { return stoll(s); } template<> double Parse(string s) { return stod(s); } VS InputB; templatestruct InputC { operator T() { return InputF(); } vector operator[](int h) { vector ret(h); rep(i, h)ret[i] = InputF(); return ret; } vector> operator[](PII p) { int h, w; tie(h, w) = p; vector> ret(h, vector(w)); rep(i, h)rep(j, w)ret[i][j] = InputF(); return ret; } T operator()(int n) { while (sz(InputB) <= n)InputB.pb(InputF()); return Parse(InputB[n]); } vector operator()(int n, int h) { vector ret(h); rep(i, h)ret[i] = operator()(i + n); return ret; } vector> operator()(int n, int h, int w) { vector> ret(h, vector(w)); rep(i, h)rep(j, w)ret[i][j] = operator()(n + i * w + j); return ret; } }; InputC inc; InputC ins; InputC ini; InputC inl; InputC ind; // --- output --- // struct BoolStr { const char* t, * f; BoolStr(const char* _t, const char* _f) :t(_t), f(_f) {} }Yes("Yes", "No"), yes("yes", "no"), YES("YES", "NO"); struct DivStr { const char* d, * l; DivStr(const char* _d, const char* _l) :d(_d), l(_l) {} }spc(" ", "\n"), no_spc("", "\n"), comma(",", "\n"), no_endl(" ", ""); class Print { BoolStr B{ Yes }; DivStr D{ spc }; void p(double v) { printf("%.20f", v); } void p(int v) { printf("%d", v); } void p(LL v) { printf("%lld", v); } void p(char v) { putchar(v); } void p(bool v) { printf(v ? B.t : B.f); } templatevoid p(const T& v) { cout << v; } templatevoid p(const pair& v) { p(v.first); printf(D.d); p(v.second); } templatevoid p(const vector& v) { rep(i, sz(v)) { if (i)printf(D.d); p(v[i]); } } templatevoid p(const vector>& v) { rep(i, sz(v)) { if (i)printf(D.l); p(v[i]); } } void p(const BoolStr& v) { B = v; } void p(const DivStr& v) { D = v; } templatebool isPrint(const T& v) { return !is_same::value && !is_same::value; } public: void operator()() { printf(D.l); } templatevoid operator()(H&& h) { p(h); if (isPrint(h))printf(D.l); B = Yes; D = spc; } templatevoid operator()(H&& h, T&& ...t) { p(h); if (isPrint(h))printf(D.d); operator()(forward(t)...); } }out; // --- answer --- // templatestruct Answer { T min, max, sum; int cnt; Answer() :min(numeric_limits::max()), max(numeric_limits::min()), sum(0), cnt(0) {} void operator=(T n) { min = std::min(min, n); max = std::max(max, n); sum += n; cnt++; } operator bool() { return cnt; } }; // --- step --- // class step { struct It { int x, s; It(int _x, int _s) :x(_x), s(_s) { assert(s); } int operator*() { return x; } void operator++() { x += s; } bool operator!=(It& i) { return 0 < s ? x < i.x : x >= i.x; } }; int x, y, s; public: step(int _y, int _s = 1) :x(0 < _s ? 0 : _y), y(0 < _s ? _y : 0), s(_s) {} step(int _x, int _y, int _s) :x(_x), y(_y), s(_s) {} It begin() { return { x,s }; } It end() { return { y,s }; } }; // --- dump --- // // #define LOCAL #ifdef LOCAL #include "dump.hpp" #else #define dump(...) (void(0)) #endif // LOCAL int main() { out(1 / ind); }