結果
問題 | No.170 スワップ文字列(Easy) |
ユーザー | eSeF |
提出日時 | 2020-01-19 03:46:34 |
言語 | C#(csc) (csc 3.9.0) |
結果 |
AC
|
実行時間 | 108 ms / 5,000 ms |
コード長 | 6,183 bytes |
コンパイル時間 | 1,442 ms |
コンパイル使用メモリ | 120,848 KB |
実行使用メモリ | 30,976 KB |
最終ジャッジ日時 | 2024-07-02 21:31:15 |
合計ジャッジ時間 | 3,484 ms |
ジャッジサーバーID (参考情報) |
judge4 / judge5 |
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テストケース
テストケース表示入力 | 結果 | 実行時間 実行使用メモリ |
---|---|---|
testcase_00 | AC | 33 ms
19,712 KB |
testcase_01 | AC | 106 ms
30,720 KB |
testcase_02 | AC | 99 ms
27,136 KB |
testcase_03 | AC | 100 ms
27,136 KB |
testcase_04 | AC | 100 ms
27,392 KB |
testcase_05 | AC | 108 ms
30,848 KB |
testcase_06 | AC | 108 ms
30,976 KB |
testcase_07 | AC | 43 ms
23,548 KB |
testcase_08 | AC | 99 ms
27,008 KB |
testcase_09 | AC | 100 ms
27,008 KB |
testcase_10 | AC | 105 ms
29,184 KB |
testcase_11 | AC | 33 ms
19,968 KB |
testcase_12 | AC | 33 ms
19,840 KB |
testcase_13 | AC | 33 ms
19,968 KB |
testcase_14 | AC | 33 ms
19,968 KB |
testcase_15 | AC | 35 ms
20,480 KB |
testcase_16 | AC | 32 ms
19,712 KB |
testcase_17 | AC | 33 ms
19,840 KB |
testcase_18 | AC | 33 ms
20,096 KB |
testcase_19 | AC | 32 ms
19,968 KB |
testcase_20 | AC | 33 ms
20,096 KB |
testcase_21 | AC | 34 ms
20,864 KB |
testcase_22 | AC | 33 ms
19,712 KB |
testcase_23 | AC | 33 ms
19,840 KB |
コンパイルメッセージ
Microsoft (R) Visual C# Compiler version 3.9.0-6.21124.20 (db94f4cc) Copyright (C) Microsoft Corporation. All rights reserved.
ソースコード
using System; using System.Collections.Generic; using System.Linq; using System.IO; using System.Text; using static System.Math; using static System.Array; using static AtCoder.Tool; using static AtCoder.CalcL; namespace AtCoder { class AC { const int MOD = 1000000007; const int INF = int.MaxValue / 2; const long SINF = long.MaxValue / 2; const double EPS = 1e-8; static readonly int[] dI = { 0, 1, 0, -1 }; static readonly int[] dJ = { 1, 0, -1, 0 }; //static List<List<int>> G = new List<List<int>>(); //static List<List<Edge>>G = new List<List<Edge>>(); //static List<Edge> E = new List<Edge>(); static void Main(string[] args) { //var sw = new StreamWriter(Console.OpenStandardOutput()) { AutoFlush = false }; //Console.SetOut(sw); var cin = new Scanner(); var s = Console.ReadLine(); var ans = new HashSet<string>(); var perm = Permutation<int>.All(Enumerable.Range(0, s.Length).ToList()); foreach(var p in perm) { var ss = ""; for(var i = 0; i < s.Length; i++) { ss += s[p[i]]; } ans.Add(ss); } ans.Remove(s); Console.WriteLine(ans.Count()); //Console.Out.Flush(); } struct Edge { public int from; public int to; public long dist; public Edge(int t, long c) { from = -1; to = t; dist = c; } public Edge(int f, int t, long c) { from = f; to = t; dist = c; } } } static class Permutation<T> { private static void Search(List<T[]> perms, Stack<T> stack, T[] a) { int N = a.Length; if (N == 0) { perms.Add(stack.Reverse().ToArray()); } else { var b = new T[N - 1]; Array.Copy(a, 1, b, 0, N - 1); for (int i = 0; i < a.Length; ++i) { stack.Push(a[i]); Search(perms, stack, b); if (i < b.Length) { b[i] = a[i]; } stack.Pop(); } } } public static IEnumerable<T[]> All(IEnumerable<T> src) { var perms = new List<T[]>(); Search(perms, new Stack<T>(), src.ToArray()); return perms; } } public class Scanner { public int[] ReadSplitInt() { return ConvertAll(Console.ReadLine().Split(), int.Parse); } public long[] ReadSplitLong() { return ConvertAll(Console.ReadLine().Split(), long.Parse); } public double[] ReadSplit_Double() { return ConvertAll(Console.ReadLine().Split(), double.Parse); } } public static class Tool { static public void Initialize<T>(ref T[] array, T initialvalue) { for (var i = 0; i < array.Length; i++) { array[i] = initialvalue; } } static public void Swap<T>(ref T a, ref T b) { T keep = a; a = b; b = keep; } static public void Display<T>(T[,] array2d, int n, int m) { for (var i = 0; i < n; i++) { for (var j = 0; j < m; j++) { Console.Write($"{array2d[i, j]} "); } Console.WriteLine(); } } static public long LPow(int a, int b) { return (long)Pow(a, b); } } static public class CalcI { public static int Gcd(int a, int b) { if (a * b == 0) { return Max(a, b); } return a % b == 0 ? b : Gcd(b, a % b); } public static int Lcm(int a, int b) { int g = Gcd(a, b); return a / g * b; } public static int Ceil(int n, int div) { return (n + div - 1) / div; } } static public class CalcL { public static long Gcd(long a, long b) { if (a * b == 0) { return Max(a, b); } return a % b == 0 ? b : Gcd(b, a % b); } public static long Lcm(long a, long b) { long g = Gcd(a, b); return a / g * b; } public static long Ceil(long n, long div) { return (n + div - 1) / div; } } class Modulo { private const int M = 1000000007; private readonly int[] m_facs; public int Mul(int a, int b) { return (int)(Math.BigMul(a, b) % M); } public Modulo(int n) { m_facs = new int[n + 1]; m_facs[0] = 1; for (int i = 1; i <= n; ++i) { m_facs[i] = Mul(m_facs[i - 1], i); } } public int Fac(int n) { return m_facs[n]; } public int Pow(int a, int m) { switch (m) { case 0: return 1; case 1: return a; default: int p1 = Pow(a, m / 2); int p2 = Mul(p1, p1); return ((m % 2) == 0) ? p2 : Mul(p2, a); } } public int Div(int a, int b) { return Mul(a, Pow(b, M - 2)); } public int Ncr(int n, int r) { if (n < r) { return 0; } if (n == r) { return 1; } int res = Fac(n); res = Div(res, Fac(r)); res = Div(res, Fac(n - r)); return res; } public Modulo() { } } }