結果
問題 | No.518 ローマ数字の和 |
ユーザー | 紙ぺーぱー |
提出日時 | 2017-05-28 21:45:04 |
言語 | C#(csc) (csc 3.9.0) |
結果 |
WA
|
実行時間 | - |
コード長 | 6,574 bytes |
コンパイル時間 | 924 ms |
コンパイル使用メモリ | 113,280 KB |
実行使用メモリ | 18,432 KB |
最終ジャッジ日時 | 2024-09-21 15:21:40 |
合計ジャッジ時間 | 2,093 ms |
ジャッジサーバーID (参考情報) |
judge3 / judge1 |
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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 | WA | - |
testcase_01 | AC | 24 ms
17,920 KB |
testcase_02 | WA | - |
testcase_03 | WA | - |
testcase_04 | AC | 23 ms
18,304 KB |
testcase_05 | WA | - |
testcase_06 | WA | - |
testcase_07 | AC | 22 ms
18,048 KB |
testcase_08 | WA | - |
testcase_09 | WA | - |
testcase_10 | AC | 22 ms
18,176 KB |
testcase_11 | AC | 22 ms
18,048 KB |
testcase_12 | WA | - |
testcase_13 | AC | 23 ms
18,176 KB |
testcase_14 | AC | 22 ms
18,304 KB |
testcase_15 | WA | - |
testcase_16 | WA | - |
testcase_17 | WA | - |
testcase_18 | AC | 21 ms
18,176 KB |
testcase_19 | AC | 22 ms
18,048 KB |
testcase_20 | AC | 21 ms
18,176 KB |
testcase_21 | AC | 22 ms
18,176 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.Linq; using System.Collections.Generic; using Debug = System.Diagnostics.Debug; using SB = System.Text.StringBuilder; using Number = System.Int64; //using System.Numerics; //using static System.Math; //using static MathEx; //using P = System.Collections.Generic.KeyValuePair<int, int>; namespace Program { public class Solver { public void Solve() { var n = ri; var a = Enumerate(n, x => f(rs)); Debug.WriteLine(a.AsJoinedString()); var v = a.Sum(); IO.Printer.Out.WriteLine(g(v)); } string g(int x) { Debug.WriteLine(x); if (x >= 4000) return "ERROR"; var s = ""; while (x >= 1000) { x -= 1000; s += "M"; } if (x >= 900) { x -= 900; s += "CM"; } if (x >= 500) { x -= 500; s += "CD"; } if (x >= 400) { x -= 400; s += "CD"; } while (x >= 100) { x -= 100; s += "C"; } if (x >= 90) { x -= 90; s += "XC"; } if (x >= 50) { x -= 50; s += "L"; } while (x >= 10) { x -= 10; s += "X"; } if (x >= 9) { x -= 9; s += "IX"; } if (x >= 5) { x -= 9; s += "V"; } if (x >= 4) { x -= 9; s += "IV"; } while (x >= 1) { x -= 1; s += "I"; } return s; } int f(string s) { var ret = 0; ret += s.Count(x => x == 'I'); ret += s.Count(x => x == 'V') * 5; ret += s.Count(x => x == 'X') * 10; ret += s.Count(x => x == 'L') * 50; ret += s.Count(x => x == 'C') * 100; ret += s.Count(x => x == 'D') * 500; ret += s.Count(x => x == 'M') * 1000; for (int i = 1; i < s.Length; i++) { var p = s[i - 1]; var c = s[i]; if (p == 'I' && c == 'V') ret -= 2; if (p == 'I' && c == 'X') ret -= 2; if (p == 'X' && c == 'L') ret -= 20; if (p == 'X' && c == 'C') ret -= 20; if (p == 'C' && c == 'D') ret -= 200; if (p == 'C' && c == 'M') ret -= 200; } return ret; } //* int ri => sc.Integer(); long rl => sc.Long(); double rd => sc.Double(); string rs => sc.Scan(); char rc => sc.Char(); [System.Diagnostics.Conditional("DEBUG")] void put(params object[] a) => Debug.WriteLine(string.Join(" ", a)); //*/ public IO.StreamScanner sc = new IO.StreamScanner(Console.OpenStandardInput()); static T[] Enumerate<T>(int n, Func<int, T> f) { var a = new T[n]; for (int i = 0; i < n; ++i) a[i] = f(i); return a; } static public void Swap<T>(ref T a, ref T b) { var tmp = a; a = b; b = tmp; } } } #region main static class Ex { static public string AsString(this IEnumerable<char> ie) { return new string(System.Linq.Enumerable.ToArray(ie)); } static public string AsJoinedString<T>(this IEnumerable<T> ie, string st = " ") { return string.Join(st, ie); } static public void Main() { var solver = new Program.Solver(); solver.Solve(); Program.IO.Printer.Out.Flush(); } } #endregion #region Ex namespace Program.IO { using System.IO; using System.Text; using System.Globalization; public class Printer: StreamWriter { static Printer() { Out = new Printer(Console.OpenStandardOutput()) { AutoFlush = false }; } public static Printer Out { get; set; } public override IFormatProvider FormatProvider { get { return CultureInfo.InvariantCulture; } } public Printer(System.IO.Stream stream) : base(stream, new UTF8Encoding(false, true)) { } public Printer(System.IO.Stream stream, Encoding encoding) : base(stream, encoding) { } public void Write<T>(string format, T[] source) { base.Write(format, source.OfType<object>().ToArray()); } public void WriteLine<T>(string format, T[] source) { base.WriteLine(format, source.OfType<object>().ToArray()); } } public class StreamScanner { public StreamScanner(Stream stream) { str = stream; } public readonly Stream str; private readonly byte[] buf = new byte[1024]; private int len, ptr; public bool isEof = false; public bool IsEndOfStream { get { return isEof; } } private byte read() { if (isEof) return 0; if (ptr >= len) { ptr = 0; if ((len = str.Read(buf, 0, 1024)) <= 0) { isEof = true; return 0; } } return buf[ptr++]; } public char Char() { byte b = 0; do b = read(); while ((b < 33 || 126 < b) && !isEof); return (char)b; } public string Scan() { var sb = new StringBuilder(); for (var b = Char(); b >= 33 && b <= 126; b = (char)read()) sb.Append(b); return sb.ToString(); } public string ScanLine() { var sb = new StringBuilder(); for (var b = Char(); b != '\n'; b = (char)read()) if (b == 0) break; else if (b != '\r') sb.Append(b); return sb.ToString(); } public long Long() { if (isEof) return long.MinValue; long ret = 0; byte b = 0; var ng = false; do b = read(); while (b != 0 && b != '-' && (b < '0' || '9' < b)); if (b == 0) return long.MinValue; if (b == '-') { ng = true; b = read(); } for (; true; b = read()) { if (b < '0' || '9' < b) return ng ? -ret : ret; else ret = ret * 10 + b - '0'; } } public int Integer() { return (isEof) ? int.MinValue : (int)Long(); } public double Double() { var s = Scan(); return s != "" ? double.Parse(s, CultureInfo.InvariantCulture) : double.NaN; } private T[] enumerate<T>(int n, Func<T> f) { var a = new T[n]; for (int i = 0; i < n; ++i) a[i] = f(); return a; } public char[] Char(int n) { return enumerate(n, Char); } public string[] Scan(int n) { return enumerate(n, Scan); } public double[] Double(int n) { return enumerate(n, Double); } public int[] Integer(int n) { return enumerate(n, Integer); } public long[] Long(int n) { return enumerate(n, Long); } } } #endregion