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238 lines
5.7 KiB
238 lines
5.7 KiB
#if !BESTHTTP_DISABLE_ALTERNATE_SSL && (!UNITY_WEBGL || UNITY_EDITOR) |
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#pragma warning disable |
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using System; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto.Parameters; |
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namespace BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto.Modes |
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{ |
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/** |
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* implements the GOST 28147 OFB counter mode (GCTR). |
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*/ |
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public class GOfbBlockCipher |
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: IBlockCipher |
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{ |
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private byte[] IV; |
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private byte[] ofbV; |
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private byte[] ofbOutV; |
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private readonly int blockSize; |
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private readonly IBlockCipher cipher; |
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bool firstStep = true; |
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int N3; |
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int N4; |
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const int C1 = 16843012; //00000001000000010000000100000100 |
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const int C2 = 16843009; //00000001000000010000000100000001 |
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/** |
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* Basic constructor. |
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* |
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* @param cipher the block cipher to be used as the basis of the |
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* counter mode (must have a 64 bit block size). |
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*/ |
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public GOfbBlockCipher( |
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IBlockCipher cipher) |
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{ |
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this.cipher = cipher; |
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this.blockSize = cipher.GetBlockSize(); |
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if (blockSize != 8) |
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{ |
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throw new ArgumentException("GCTR only for 64 bit block ciphers"); |
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} |
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this.IV = new byte[cipher.GetBlockSize()]; |
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this.ofbV = new byte[cipher.GetBlockSize()]; |
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this.ofbOutV = new byte[cipher.GetBlockSize()]; |
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} |
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/** |
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* return the underlying block cipher that we are wrapping. |
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* |
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* @return the underlying block cipher that we are wrapping. |
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*/ |
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public IBlockCipher GetUnderlyingCipher() |
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{ |
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return cipher; |
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} |
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/** |
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* Initialise the cipher and, possibly, the initialisation vector (IV). |
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* If an IV isn't passed as part of the parameter, the IV will be all zeros. |
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* An IV which is too short is handled in FIPS compliant fashion. |
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* |
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* @param encrypting if true the cipher is initialised for |
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* encryption, if false for decryption. |
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* @param parameters the key and other data required by the cipher. |
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* @exception ArgumentException if the parameters argument is inappropriate. |
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*/ |
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public void Init( |
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bool forEncryption, //ignored by this CTR mode |
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ICipherParameters parameters) |
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{ |
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firstStep = true; |
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N3 = 0; |
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N4 = 0; |
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if (parameters is ParametersWithIV) |
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{ |
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ParametersWithIV ivParam = (ParametersWithIV)parameters; |
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byte[] iv = ivParam.GetIV(); |
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if (iv.Length < IV.Length) |
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{ |
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// prepend the supplied IV with zeros (per FIPS PUB 81) |
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Array.Copy(iv, 0, IV, IV.Length - iv.Length, iv.Length); |
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for (int i = 0; i < IV.Length - iv.Length; i++) |
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{ |
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IV[i] = 0; |
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} |
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} |
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else |
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{ |
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Array.Copy(iv, 0, IV, 0, IV.Length); |
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} |
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parameters = ivParam.Parameters; |
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} |
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Reset(); |
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// if it's null, key is to be reused. |
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if (parameters != null) |
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{ |
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cipher.Init(true, parameters); |
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} |
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} |
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/** |
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* return the algorithm name and mode. |
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* |
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* @return the name of the underlying algorithm followed by "/GCTR" |
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* and the block size in bits |
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*/ |
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public string AlgorithmName |
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{ |
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get { return cipher.AlgorithmName + "/GCTR"; } |
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} |
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public bool IsPartialBlockOkay |
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{ |
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get { return true; } |
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} |
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/** |
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* return the block size we are operating at (in bytes). |
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* |
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* @return the block size we are operating at (in bytes). |
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*/ |
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public int GetBlockSize() |
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{ |
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return blockSize; |
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} |
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/** |
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* Process one block of input from the array in and write it to |
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* the out array. |
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* |
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* @param in the array containing the input data. |
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* @param inOff offset into the in array the data starts at. |
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* @param out the array the output data will be copied into. |
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* @param outOff the offset into the out array the output will start at. |
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* @exception DataLengthException if there isn't enough data in in, or |
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* space in out. |
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* @exception InvalidOperationException if the cipher isn't initialised. |
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* @return the number of bytes processed and produced. |
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*/ |
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public int ProcessBlock( |
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byte[] input, |
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int inOff, |
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byte[] output, |
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int outOff) |
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{ |
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if ((inOff + blockSize) > input.Length) |
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{ |
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throw new DataLengthException("input buffer too short"); |
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} |
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if ((outOff + blockSize) > output.Length) |
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{ |
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throw new DataLengthException("output buffer too short"); |
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} |
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if (firstStep) |
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{ |
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firstStep = false; |
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cipher.ProcessBlock(ofbV, 0, ofbOutV, 0); |
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N3 = bytesToint(ofbOutV, 0); |
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N4 = bytesToint(ofbOutV, 4); |
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} |
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N3 += C2; |
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N4 += C1; |
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if (N4 < C1) // addition is mod (2**32 - 1) |
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{ |
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if (N4 > 0) |
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{ |
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N4++; |
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} |
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} |
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intTobytes(N3, ofbV, 0); |
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intTobytes(N4, ofbV, 4); |
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cipher.ProcessBlock(ofbV, 0, ofbOutV, 0); |
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// |
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// XOR the ofbV with the plaintext producing the cipher text (and |
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// the next input block). |
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// |
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for (int i = 0; i < blockSize; i++) |
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{ |
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output[outOff + i] = (byte)(ofbOutV[i] ^ input[inOff + i]); |
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} |
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// |
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// change over the input block. |
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// |
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Array.Copy(ofbV, blockSize, ofbV, 0, ofbV.Length - blockSize); |
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Array.Copy(ofbOutV, 0, ofbV, ofbV.Length - blockSize, blockSize); |
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return blockSize; |
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} |
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/** |
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* reset the feedback vector back to the IV and reset the underlying |
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* cipher. |
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*/ |
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public void Reset() |
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{ |
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Array.Copy(IV, 0, ofbV, 0, IV.Length); |
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cipher.Reset(); |
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} |
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//array of bytes to type int |
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private int bytesToint( |
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byte[] inBytes, |
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int inOff) |
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{ |
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return (int)((inBytes[inOff + 3] << 24) & 0xff000000) + ((inBytes[inOff + 2] << 16) & 0xff0000) + |
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((inBytes[inOff + 1] << 8) & 0xff00) + (inBytes[inOff] & 0xff); |
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} |
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//int to array of bytes |
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private void intTobytes( |
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int num, |
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byte[] outBytes, |
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int outOff) |
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{ |
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outBytes[outOff + 3] = (byte)(num >> 24); |
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outBytes[outOff + 2] = (byte)(num >> 16); |
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outBytes[outOff + 1] = (byte)(num >> 8); |
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outBytes[outOff] = (byte)num; |
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} |
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} |
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} |
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#pragma warning restore |
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#endif
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