// /*************************************************************************** // The Disc Image Chef // ---------------------------------------------------------------------------- // // Filename : CRC32Context.cs // Author(s) : Natalia Portillo // // Component : Checksums. // // --[ Description ] ---------------------------------------------------------- // // Implements a CRC32 algorithm. // // --[ License ] -------------------------------------------------------------- // // This library is free software; you can redistribute it and/or modify // it under the terms of the GNU Lesser General Public License as // published by the Free Software Foundation; either version 2.1 of the // License, or (at your option) any later version. // // This library is distributed in the hope that it will be useful, but // WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU // Lesser General Public License for more details. // // You should have received a copy of the GNU Lesser General Public // License along with this library; if not, see . // // ---------------------------------------------------------------------------- // Copyright © 2011-2016 Natalia Portillo // ****************************************************************************/ using System.Text; using System.IO; using System; namespace DiscImageChef.Checksums { /// /// Provides a UNIX similar API to calculate CRC32. /// public class CRC32Context { const UInt32 crc32Poly = 0xEDB88320; const UInt32 crc32Seed = 0xFFFFFFFF; UInt32[] table; UInt32 hashInt; /// /// Initializes the CRC32 table and seed /// public void Init() { hashInt = crc32Seed; table = new UInt32[256]; for(int i = 0; i < 256; i++) { UInt32 entry = (UInt32)i; for(int j = 0; j < 8; j++) if((entry & 1) == 1) entry = (entry >> 1) ^ crc32Poly; else entry = entry >> 1; table[i] = entry; } } /// /// Updates the hash with data. /// /// Data buffer. /// Length of buffer to hash. public void Update(byte[] data, uint len) { for(int i = 0; i < len; i++) hashInt = (hashInt >> 8) ^ table[data[i] ^ hashInt & 0xff]; } /// /// Updates the hash with data. /// /// Data buffer. public void Update(byte[] data) { Update(data, (uint)data.Length); } /// /// Returns a byte array of the hash value. /// public byte[] Final() { hashInt ^= crc32Seed; BigEndianBitConverter.IsLittleEndian = BitConverter.IsLittleEndian; return BigEndianBitConverter.GetBytes(hashInt); } /// /// Returns a hexadecimal representation of the hash value. /// public string End() { hashInt ^= crc32Seed; StringBuilder crc32Output = new StringBuilder(); BigEndianBitConverter.IsLittleEndian = BitConverter.IsLittleEndian; for(int i = 0; i < BigEndianBitConverter.GetBytes(hashInt).Length; i++) { crc32Output.Append(BigEndianBitConverter.GetBytes(hashInt)[i].ToString("x2")); } return crc32Output.ToString(); } /// /// Gets the hash of a file /// /// File path. public static byte[] File(string filename) { byte[] hash; File(filename, out hash); return hash; } /// /// Gets the hash of a file in hexadecimal and as a byte array. /// /// File path. /// Byte array of the hash value. public static string File(string filename, out byte[] hash) { FileStream fileStream = new FileStream(filename, FileMode.Open); UInt32[] localTable; UInt32 localhashInt; localhashInt = crc32Seed; localTable = new UInt32[256]; for(int i = 0; i < 256; i++) { UInt32 entry = (UInt32)i; for(int j = 0; j < 8; j++) if((entry & 1) == 1) entry = (entry >> 1) ^ crc32Poly; else entry = entry >> 1; localTable[i] = entry; } for(int i = 0; i < fileStream.Length; i++) localhashInt = (localhashInt >> 8) ^ localTable[fileStream.ReadByte() ^ localhashInt & 0xff]; BigEndianBitConverter.IsLittleEndian = BitConverter.IsLittleEndian; hash = BitConverter.GetBytes(localhashInt); StringBuilder crc32Output = new StringBuilder(); for(int i = 0; i < hash.Length; i++) { crc32Output.Append(hash[i].ToString("x2")); } return crc32Output.ToString(); } /// /// Gets the hash of the specified data buffer. /// /// Data buffer. /// Length of the data buffer to hash. /// Byte array of the hash value. public static string Data(byte[] data, uint len, out byte[] hash) { return Data(data, len, out hash, crc32Poly, crc32Seed); } /// /// Gets the hash of the specified data buffer. /// /// Data buffer. /// Length of the data buffer to hash. /// Byte array of the hash value. /// CRC polynomial /// CRC seed public static string Data(byte[] data, uint len, out byte[] hash, UInt32 polynomial, UInt32 seed) { UInt32[] localTable; UInt32 localhashInt; localhashInt = seed; localTable = new UInt32[256]; for(int i = 0; i < 256; i++) { UInt32 entry = (UInt32)i; for(int j = 0; j < 8; j++) if((entry & 1) == 1) entry = (entry >> 1) ^ polynomial; else entry = entry >> 1; localTable[i] = entry; } for(int i = 0; i < len; i++) localhashInt = (localhashInt >> 8) ^ localTable[data[i] ^ localhashInt & 0xff]; BigEndianBitConverter.IsLittleEndian = BitConverter.IsLittleEndian; hash = BitConverter.GetBytes(localhashInt); StringBuilder crc32Output = new StringBuilder(); for(int i = 0; i < hash.Length; i++) { crc32Output.Append(hash[i].ToString("x2")); } return crc32Output.ToString(); } /// /// Gets the hash of the specified data buffer. /// /// Data buffer. /// Byte array of the hash value. public static string Data(byte[] data, out byte[] hash) { return Data(data, (uint)data.Length, out hash); } } }