567 lines
19 KiB
C#
567 lines
19 KiB
C#
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Text;
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using System.Threading.Tasks;
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using System.IO;
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namespace LeanCloud.Storage.Internal
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{
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/// <summary>
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/// 弥补Windows Phone 8 API没有自带MD5加密的拓展方法。
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/// </summary>
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internal class MD5CryptoServiceProvider : MD5
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{
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public MD5CryptoServiceProvider()
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: base()
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{
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}
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}
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/// <summary>
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/// Summary description for MD5.
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/// </summary>
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internal class MD5 : IDisposable
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{
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static public MD5 Create(string hashName)
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{
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if (hashName == "MD5")
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return new MD5();
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else
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throw new NotSupportedException();
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}
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static public string GetMd5String(String source)
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{
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MD5 md = MD5CryptoServiceProvider.Create();
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byte[] hash;
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//Create a new instance of ASCIIEncoding to
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//convert the string into an array of Unicode bytes.
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UTF8Encoding enc = new UTF8Encoding();
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// ASCIIEncoding enc = new ASCIIEncoding();
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//Convert the string into an array of bytes.
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byte[] buffer = enc.GetBytes(source);
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//Create the hash value from the array of bytes.
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hash = md.ComputeHash(buffer);
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StringBuilder sb = new StringBuilder();
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foreach (byte b in hash)
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sb.Append(b.ToString("x2"));
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return sb.ToString();
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}
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static public MD5 Create()
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{
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return new MD5();
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}
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#region base implementation of the MD5
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#region constants
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private const byte S11 = 7;
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private const byte S12 = 12;
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private const byte S13 = 17;
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private const byte S14 = 22;
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private const byte S21 = 5;
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private const byte S22 = 9;
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private const byte S23 = 14;
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private const byte S24 = 20;
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private const byte S31 = 4;
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private const byte S32 = 11;
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private const byte S33 = 16;
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private const byte S34 = 23;
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private const byte S41 = 6;
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private const byte S42 = 10;
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private const byte S43 = 15;
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private const byte S44 = 21;
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static private byte[] PADDING = new byte[] {
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0x80, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0
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};
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#endregion
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#region F, G, H and I are basic MD5 functions.
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static private uint F(uint x, uint y, uint z)
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{
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return (((x) & (y)) | ((~x) & (z)));
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}
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static private uint G(uint x, uint y, uint z)
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{
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return (((x) & (z)) | ((y) & (~z)));
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}
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static private uint H(uint x, uint y, uint z)
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{
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return ((x) ^ (y) ^ (z));
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}
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static private uint I(uint x, uint y, uint z)
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{
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return ((y) ^ ((x) | (~z)));
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}
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#endregion
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#region rotates x left n bits.
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/// <summary>
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/// rotates x left n bits.
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/// </summary>
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/// <param name="x"></param>
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/// <param name="n"></param>
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/// <returns></returns>
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static private uint ROTATE_LEFT(uint x, byte n)
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{
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return (((x) << (n)) | ((x) >> (32 - (n))));
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}
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#endregion
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#region FF, GG, HH, and II transformations
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/// FF, GG, HH, and II transformations
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/// for rounds 1, 2, 3, and 4.
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/// Rotation is separate from addition to prevent recomputation.
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static private void FF(ref uint a, uint b, uint c, uint d, uint x, byte s, uint ac)
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{
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(a) += F((b), (c), (d)) + (x) + (uint)(ac);
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(a) = ROTATE_LEFT((a), (s));
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(a) += (b);
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}
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static private void GG(ref uint a, uint b, uint c, uint d, uint x, byte s, uint ac)
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{
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(a) += G((b), (c), (d)) + (x) + (uint)(ac);
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(a) = ROTATE_LEFT((a), (s));
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(a) += (b);
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}
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static private void HH(ref uint a, uint b, uint c, uint d, uint x, byte s, uint ac)
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{
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(a) += H((b), (c), (d)) + (x) + (uint)(ac);
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(a) = ROTATE_LEFT((a), (s));
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(a) += (b);
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}
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static private void II(ref uint a, uint b, uint c, uint d, uint x, byte s, uint ac)
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{
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(a) += I((b), (c), (d)) + (x) + (uint)(ac);
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(a) = ROTATE_LEFT((a), (s));
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(a) += (b);
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}
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#endregion
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#region context info
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/// <summary>
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/// state (ABCD)
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/// </summary>
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uint[] state = new uint[4];
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/// <summary>
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/// number of bits, modulo 2^64 (lsb first)
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/// </summary>
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uint[] count = new uint[2];
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/// <summary>
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/// input buffer
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/// </summary>
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byte[] buffer = new byte[64];
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#endregion
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internal MD5()
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{
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Initialize();
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}
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/// <summary>
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/// MD5 initialization. Begins an MD5 operation, writing a new context.
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/// </summary>
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/// <remarks>
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/// The RFC named it "MD5Init"
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/// </remarks>
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public virtual void Initialize()
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{
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count[0] = count[1] = 0;
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// Load magic initialization constants.
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state[0] = 0x67452301;
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state[1] = 0xefcdab89;
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state[2] = 0x98badcfe;
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state[3] = 0x10325476;
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}
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/// <summary>
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/// MD5 block update operation. Continues an MD5 message-digest
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/// operation, processing another message block, and updating the
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/// context.
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/// </summary>
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/// <param name="input"></param>
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/// <param name="offset"></param>
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/// <param name="count"></param>
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/// <remarks>The RFC Named it MD5Update</remarks>
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protected virtual void HashCore(byte[] input, int offset, int count)
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{
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int i;
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int index;
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int partLen;
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// Compute number of bytes mod 64
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index = (int)((this.count[0] >> 3) & 0x3F);
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// Update number of bits
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if ((this.count[0] += (uint)((uint)count << 3)) < ((uint)count << 3))
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this.count[1]++;
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this.count[1] += ((uint)count >> 29);
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partLen = 64 - index;
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// Transform as many times as possible.
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if (count >= partLen)
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{
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Buffer.BlockCopy(input, offset, this.buffer, index, partLen);
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Transform(this.buffer, 0);
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for (i = partLen; i + 63 < count; i += 64)
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Transform(input, offset + i);
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index = 0;
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}
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else
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i = 0;
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// Buffer remaining input
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Buffer.BlockCopy(input, offset + i, this.buffer, index, count - i);
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}
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/// <summary>
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/// MD5 finalization. Ends an MD5 message-digest operation, writing the
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/// the message digest and zeroizing the context.
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/// </summary>
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/// <returns>message digest</returns>
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/// <remarks>The RFC named it MD5Final</remarks>
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protected virtual byte[] HashFinal()
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{
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byte[] digest = new byte[16];
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byte[] bits = new byte[8];
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int index, padLen;
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// Save number of bits
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Encode(bits, 0, this.count, 0, 8);
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// Pad out to 56 mod 64.
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index = (int)((uint)(this.count[0] >> 3) & 0x3f);
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padLen = (index < 56) ? (56 - index) : (120 - index);
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HashCore(PADDING, 0, padLen);
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// Append length (before padding)
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HashCore(bits, 0, 8);
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// Store state in digest
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Encode(digest, 0, state, 0, 16);
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// Zeroize sensitive information.
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count[0] = count[1] = 0;
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state[0] = 0;
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state[1] = 0;
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state[2] = 0;
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state[3] = 0;
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// initialize again, to be ready to use
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Initialize();
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return digest;
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}
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/// <summary>
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/// MD5 basic transformation. Transforms state based on 64 bytes block.
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/// </summary>
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/// <param name="block"></param>
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/// <param name="offset"></param>
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private void Transform(byte[] block, int offset)
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{
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uint a = state[0], b = state[1], c = state[2], d = state[3];
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uint[] x = new uint[16];
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Decode(x, 0, block, offset, 64);
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// Round 1
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FF(ref a, b, c, d, x[0], S11, 0xd76aa478); /* 1 */
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FF(ref d, a, b, c, x[1], S12, 0xe8c7b756); /* 2 */
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FF(ref c, d, a, b, x[2], S13, 0x242070db); /* 3 */
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FF(ref b, c, d, a, x[3], S14, 0xc1bdceee); /* 4 */
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FF(ref a, b, c, d, x[4], S11, 0xf57c0faf); /* 5 */
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FF(ref d, a, b, c, x[5], S12, 0x4787c62a); /* 6 */
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FF(ref c, d, a, b, x[6], S13, 0xa8304613); /* 7 */
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FF(ref b, c, d, a, x[7], S14, 0xfd469501); /* 8 */
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FF(ref a, b, c, d, x[8], S11, 0x698098d8); /* 9 */
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FF(ref d, a, b, c, x[9], S12, 0x8b44f7af); /* 10 */
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FF(ref c, d, a, b, x[10], S13, 0xffff5bb1); /* 11 */
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FF(ref b, c, d, a, x[11], S14, 0x895cd7be); /* 12 */
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FF(ref a, b, c, d, x[12], S11, 0x6b901122); /* 13 */
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FF(ref d, a, b, c, x[13], S12, 0xfd987193); /* 14 */
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FF(ref c, d, a, b, x[14], S13, 0xa679438e); /* 15 */
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FF(ref b, c, d, a, x[15], S14, 0x49b40821); /* 16 */
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// Round 2
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GG(ref a, b, c, d, x[1], S21, 0xf61e2562); /* 17 */
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GG(ref d, a, b, c, x[6], S22, 0xc040b340); /* 18 */
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GG(ref c, d, a, b, x[11], S23, 0x265e5a51); /* 19 */
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GG(ref b, c, d, a, x[0], S24, 0xe9b6c7aa); /* 20 */
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GG(ref a, b, c, d, x[5], S21, 0xd62f105d); /* 21 */
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GG(ref d, a, b, c, x[10], S22, 0x2441453); /* 22 */
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GG(ref c, d, a, b, x[15], S23, 0xd8a1e681); /* 23 */
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GG(ref b, c, d, a, x[4], S24, 0xe7d3fbc8); /* 24 */
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GG(ref a, b, c, d, x[9], S21, 0x21e1cde6); /* 25 */
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GG(ref d, a, b, c, x[14], S22, 0xc33707d6); /* 26 */
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GG(ref c, d, a, b, x[3], S23, 0xf4d50d87); /* 27 */
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GG(ref b, c, d, a, x[8], S24, 0x455a14ed); /* 28 */
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GG(ref a, b, c, d, x[13], S21, 0xa9e3e905); /* 29 */
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GG(ref d, a, b, c, x[2], S22, 0xfcefa3f8); /* 30 */
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GG(ref c, d, a, b, x[7], S23, 0x676f02d9); /* 31 */
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GG(ref b, c, d, a, x[12], S24, 0x8d2a4c8a); /* 32 */
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// Round 3
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HH(ref a, b, c, d, x[5], S31, 0xfffa3942); /* 33 */
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HH(ref d, a, b, c, x[8], S32, 0x8771f681); /* 34 */
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HH(ref c, d, a, b, x[11], S33, 0x6d9d6122); /* 35 */
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HH(ref b, c, d, a, x[14], S34, 0xfde5380c); /* 36 */
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HH(ref a, b, c, d, x[1], S31, 0xa4beea44); /* 37 */
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HH(ref d, a, b, c, x[4], S32, 0x4bdecfa9); /* 38 */
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HH(ref c, d, a, b, x[7], S33, 0xf6bb4b60); /* 39 */
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HH(ref b, c, d, a, x[10], S34, 0xbebfbc70); /* 40 */
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HH(ref a, b, c, d, x[13], S31, 0x289b7ec6); /* 41 */
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HH(ref d, a, b, c, x[0], S32, 0xeaa127fa); /* 42 */
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HH(ref c, d, a, b, x[3], S33, 0xd4ef3085); /* 43 */
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HH(ref b, c, d, a, x[6], S34, 0x4881d05); /* 44 */
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HH(ref a, b, c, d, x[9], S31, 0xd9d4d039); /* 45 */
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HH(ref d, a, b, c, x[12], S32, 0xe6db99e5); /* 46 */
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HH(ref c, d, a, b, x[15], S33, 0x1fa27cf8); /* 47 */
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HH(ref b, c, d, a, x[2], S34, 0xc4ac5665); /* 48 */
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// Round 4
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II(ref a, b, c, d, x[0], S41, 0xf4292244); /* 49 */
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II(ref d, a, b, c, x[7], S42, 0x432aff97); /* 50 */
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II(ref c, d, a, b, x[14], S43, 0xab9423a7); /* 51 */
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II(ref b, c, d, a, x[5], S44, 0xfc93a039); /* 52 */
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II(ref a, b, c, d, x[12], S41, 0x655b59c3); /* 53 */
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II(ref d, a, b, c, x[3], S42, 0x8f0ccc92); /* 54 */
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II(ref c, d, a, b, x[10], S43, 0xffeff47d); /* 55 */
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II(ref b, c, d, a, x[1], S44, 0x85845dd1); /* 56 */
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II(ref a, b, c, d, x[8], S41, 0x6fa87e4f); /* 57 */
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II(ref d, a, b, c, x[15], S42, 0xfe2ce6e0); /* 58 */
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II(ref c, d, a, b, x[6], S43, 0xa3014314); /* 59 */
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II(ref b, c, d, a, x[13], S44, 0x4e0811a1); /* 60 */
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II(ref a, b, c, d, x[4], S41, 0xf7537e82); /* 61 */
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II(ref d, a, b, c, x[11], S42, 0xbd3af235); /* 62 */
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II(ref c, d, a, b, x[2], S43, 0x2ad7d2bb); /* 63 */
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II(ref b, c, d, a, x[9], S44, 0xeb86d391); /* 64 */
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state[0] += a;
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state[1] += b;
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state[2] += c;
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state[3] += d;
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// Zeroize sensitive information.
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for (int i = 0; i < x.Length; i++)
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x[i] = 0;
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}
|
|||
|
|
|||
|
/// <summary>
|
|||
|
/// Encodes input (uint) into output (byte). Assumes len is
|
|||
|
/// multiple of 4.
|
|||
|
/// </summary>
|
|||
|
/// <param name="output"></param>
|
|||
|
/// <param name="outputOffset"></param>
|
|||
|
/// <param name="input"></param>
|
|||
|
/// <param name="inputOffset"></param>
|
|||
|
/// <param name="count"></param>
|
|||
|
private static void Encode(byte[] output, int outputOffset, uint[] input, int inputOffset, int count)
|
|||
|
{
|
|||
|
int i, j;
|
|||
|
int end = outputOffset + count;
|
|||
|
for (i = inputOffset, j = outputOffset; j < end; i++, j += 4)
|
|||
|
{
|
|||
|
output[j] = (byte)(input[i] & 0xff);
|
|||
|
output[j + 1] = (byte)((input[i] >> 8) & 0xff);
|
|||
|
output[j + 2] = (byte)((input[i] >> 16) & 0xff);
|
|||
|
output[j + 3] = (byte)((input[i] >> 24) & 0xff);
|
|||
|
}
|
|||
|
}
|
|||
|
|
|||
|
/// <summary>
|
|||
|
/// Decodes input (byte) into output (uint). Assumes len is
|
|||
|
/// a multiple of 4.
|
|||
|
/// </summary>
|
|||
|
/// <param name="output"></param>
|
|||
|
/// <param name="outputOffset"></param>
|
|||
|
/// <param name="input"></param>
|
|||
|
/// <param name="inputOffset"></param>
|
|||
|
/// <param name="count"></param>
|
|||
|
static private void Decode(uint[] output, int outputOffset, byte[] input, int inputOffset, int count)
|
|||
|
{
|
|||
|
int i, j;
|
|||
|
int end = inputOffset + count;
|
|||
|
for (i = outputOffset, j = inputOffset; j < end; i++, j += 4)
|
|||
|
output[i] = ((uint)input[j]) | (((uint)input[j + 1]) << 8) | (((uint)input[j + 2]) << 16) | (((uint)input[j + 3]) << 24);
|
|||
|
}
|
|||
|
#endregion
|
|||
|
|
|||
|
#region expose the same interface as the regular MD5 object
|
|||
|
|
|||
|
protected byte[] HashValue;
|
|||
|
protected int State;
|
|||
|
public virtual bool CanReuseTransform
|
|||
|
{
|
|||
|
get
|
|||
|
{
|
|||
|
return true;
|
|||
|
}
|
|||
|
}
|
|||
|
|
|||
|
public virtual bool CanTransformMultipleBlocks
|
|||
|
{
|
|||
|
get
|
|||
|
{
|
|||
|
return true;
|
|||
|
}
|
|||
|
}
|
|||
|
public virtual byte[] Hash
|
|||
|
{
|
|||
|
get
|
|||
|
{
|
|||
|
if (this.State != 0)
|
|||
|
throw new InvalidOperationException();
|
|||
|
return (byte[])HashValue.Clone();
|
|||
|
}
|
|||
|
}
|
|||
|
public virtual int HashSize
|
|||
|
{
|
|||
|
get
|
|||
|
{
|
|||
|
return HashSizeValue;
|
|||
|
}
|
|||
|
}
|
|||
|
protected int HashSizeValue = 128;
|
|||
|
|
|||
|
public virtual int InputBlockSize
|
|||
|
{
|
|||
|
get
|
|||
|
{
|
|||
|
return 1;
|
|||
|
}
|
|||
|
}
|
|||
|
public virtual int OutputBlockSize
|
|||
|
{
|
|||
|
get
|
|||
|
{
|
|||
|
return 1;
|
|||
|
}
|
|||
|
}
|
|||
|
|
|||
|
public void Clear()
|
|||
|
{
|
|||
|
Dispose(true);
|
|||
|
}
|
|||
|
|
|||
|
public byte[] ComputeHash(byte[] buffer)
|
|||
|
{
|
|||
|
return ComputeHash(buffer, 0, buffer.Length);
|
|||
|
}
|
|||
|
public byte[] ComputeHash(byte[] buffer, int offset, int count)
|
|||
|
{
|
|||
|
Initialize();
|
|||
|
HashCore(buffer, offset, count);
|
|||
|
HashValue = HashFinal();
|
|||
|
return (byte[])HashValue.Clone();
|
|||
|
}
|
|||
|
|
|||
|
public byte[] ComputeHash(Stream inputStream)
|
|||
|
{
|
|||
|
Initialize();
|
|||
|
int count;
|
|||
|
byte[] buffer = new byte[4096];
|
|||
|
while (0 < (count = inputStream.Read(buffer, 0, 4096)))
|
|||
|
{
|
|||
|
HashCore(buffer, 0, count);
|
|||
|
}
|
|||
|
HashValue = HashFinal();
|
|||
|
return (byte[])HashValue.Clone();
|
|||
|
}
|
|||
|
|
|||
|
public int TransformBlock(
|
|||
|
byte[] inputBuffer,
|
|||
|
int inputOffset,
|
|||
|
int inputCount,
|
|||
|
byte[] outputBuffer,
|
|||
|
int outputOffset
|
|||
|
)
|
|||
|
{
|
|||
|
if (inputBuffer == null)
|
|||
|
{
|
|||
|
throw new ArgumentNullException("inputBuffer");
|
|||
|
}
|
|||
|
if (inputOffset < 0)
|
|||
|
{
|
|||
|
throw new ArgumentOutOfRangeException("inputOffset");
|
|||
|
}
|
|||
|
if ((inputCount < 0) || (inputCount > inputBuffer.Length))
|
|||
|
{
|
|||
|
throw new ArgumentException("inputCount");
|
|||
|
}
|
|||
|
if ((inputBuffer.Length - inputCount) < inputOffset)
|
|||
|
{
|
|||
|
throw new ArgumentOutOfRangeException("inputOffset");
|
|||
|
}
|
|||
|
if (this.State == 0)
|
|||
|
{
|
|||
|
Initialize();
|
|||
|
this.State = 1;
|
|||
|
}
|
|||
|
|
|||
|
HashCore(inputBuffer, inputOffset, inputCount);
|
|||
|
if ((inputBuffer != outputBuffer) || (inputOffset != outputOffset))
|
|||
|
{
|
|||
|
Buffer.BlockCopy(inputBuffer, inputOffset, outputBuffer, outputOffset, inputCount);
|
|||
|
}
|
|||
|
return inputCount;
|
|||
|
}
|
|||
|
public byte[] TransformFinalBlock(
|
|||
|
byte[] inputBuffer,
|
|||
|
int inputOffset,
|
|||
|
int inputCount
|
|||
|
)
|
|||
|
{
|
|||
|
if (inputBuffer == null)
|
|||
|
{
|
|||
|
throw new ArgumentNullException("inputBuffer");
|
|||
|
}
|
|||
|
if (inputOffset < 0)
|
|||
|
{
|
|||
|
throw new ArgumentOutOfRangeException("inputOffset");
|
|||
|
}
|
|||
|
if ((inputCount < 0) || (inputCount > inputBuffer.Length))
|
|||
|
{
|
|||
|
throw new ArgumentException("inputCount");
|
|||
|
}
|
|||
|
if ((inputBuffer.Length - inputCount) < inputOffset)
|
|||
|
{
|
|||
|
throw new ArgumentOutOfRangeException("inputOffset");
|
|||
|
}
|
|||
|
if (this.State == 0)
|
|||
|
{
|
|||
|
Initialize();
|
|||
|
}
|
|||
|
HashCore(inputBuffer, inputOffset, inputCount);
|
|||
|
HashValue = HashFinal();
|
|||
|
byte[] buffer = new byte[inputCount];
|
|||
|
Buffer.BlockCopy(inputBuffer, inputOffset, buffer, 0, inputCount);
|
|||
|
this.State = 0;
|
|||
|
return buffer;
|
|||
|
}
|
|||
|
#endregion
|
|||
|
|
|||
|
protected virtual void Dispose(bool disposing)
|
|||
|
{
|
|||
|
if (!disposing)
|
|||
|
Initialize();
|
|||
|
}
|
|||
|
public void Dispose()
|
|||
|
{
|
|||
|
Dispose(true);
|
|||
|
}
|
|||
|
}
|
|||
|
}
|
|||
|
|