package org.bouncycastle.shaded.crypto.modes;
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import org.bouncycastle.shaded.crypto.BlockCipher;
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import org.bouncycastle.shaded.crypto.CipherParameters;
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import org.bouncycastle.shaded.crypto.DataLengthException;
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import org.bouncycastle.shaded.crypto.OutputLengthException;
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import org.bouncycastle.shaded.crypto.StreamBlockCipher;
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import org.bouncycastle.shaded.crypto.params.ParametersWithIV;
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import org.bouncycastle.shaded.util.Arrays;
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import org.bouncycastle.shaded.util.Pack;
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/**
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* Implements the Segmented Integer Counter (SIC) mode on top of a simple
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* block cipher. This mode is also known as CTR mode.
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*/
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public class SICBlockCipher
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extends StreamBlockCipher
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implements CTRModeCipher
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{
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private final BlockCipher cipher;
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private final int blockSize;
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private byte[] IV;
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private byte[] counter;
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private byte[] counterOut;
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private int byteCount;
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/**
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* Return a new SIC/CTR mode cipher based on the passed in base cipher
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*
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* @param cipher the base cipher for the SIC/CTR mode.
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*/
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public static CTRModeCipher newInstance(BlockCipher cipher)
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{
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return new SICBlockCipher(cipher);
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}
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/**
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* Basic constructor.
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*
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* @param c the block cipher to be used.
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* @deprecated use newInstance() method.
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*/
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public SICBlockCipher(BlockCipher c)
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{
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super(c);
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this.cipher = c;
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this.blockSize = cipher.getBlockSize();
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this.IV = new byte[blockSize];
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this.counter = new byte[blockSize];
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this.counterOut = new byte[blockSize];
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this.byteCount = 0;
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}
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public void init(
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boolean forEncryption, //ignored by this CTR mode
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CipherParameters params)
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throws IllegalArgumentException
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{
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if (params instanceof ParametersWithIV)
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{
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ParametersWithIV ivParam = (ParametersWithIV)params;
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this.IV = Arrays.clone(ivParam.getIV());
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if (blockSize < IV.length)
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{
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throw new IllegalArgumentException("CTR/SIC mode requires IV no greater than: " + blockSize + " bytes.");
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}
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int maxCounterSize = (8 > blockSize / 2) ? blockSize / 2 : 8;
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if (blockSize - IV.length > maxCounterSize)
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{
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throw new IllegalArgumentException("CTR/SIC mode requires IV of at least: " + (blockSize - maxCounterSize) + " bytes.");
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}
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// if null it's an IV changed only.
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if (ivParam.getParameters() != null)
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{
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cipher.init(true, ivParam.getParameters());
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}
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reset();
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}
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else
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{
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throw new IllegalArgumentException("CTR/SIC mode requires ParametersWithIV");
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}
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}
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public String getAlgorithmName()
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{
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return cipher.getAlgorithmName() + "/SIC";
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}
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public int getBlockSize()
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{
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return cipher.getBlockSize();
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}
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public int processBlock(byte[] in, int inOff, byte[] out, int outOff)
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throws DataLengthException, IllegalStateException
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{
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if (byteCount != 0)
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{
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processBytes(in, inOff, blockSize, out, outOff);
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return blockSize;
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}
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if (inOff + blockSize > in.length)
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{
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throw new DataLengthException("input buffer too small");
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}
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if (outOff + blockSize > out.length)
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{
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throw new OutputLengthException("output buffer too short");
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}
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cipher.processBlock(counter, 0, counterOut, 0);
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for (int i = 0; i < blockSize; ++i)
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{
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out[outOff + i] = (byte)(in[inOff + i] ^ counterOut[i]);
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}
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incrementCounter();
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return blockSize;
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}
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public int processBytes(byte[] in, int inOff, int len, byte[] out, int outOff)
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throws DataLengthException
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{
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if (inOff + len > in.length)
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{
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throw new DataLengthException("input buffer too small");
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}
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if (outOff + len > out.length)
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{
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throw new OutputLengthException("output buffer too short");
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}
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for (int i = 0; i < len; ++i)
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{
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byte next;
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if (byteCount == 0)
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{
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checkLastIncrement();
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cipher.processBlock(counter, 0, counterOut, 0);
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next = (byte)(in[inOff + i] ^ counterOut[byteCount++]);
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}
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else
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{
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next = (byte)(in[inOff + i] ^ counterOut[byteCount++]);
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if (byteCount == counter.length)
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{
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byteCount = 0;
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incrementCounter();
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}
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}
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out[outOff + i] = next;
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}
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return len;
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}
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protected byte calculateByte(byte in)
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throws DataLengthException, IllegalStateException
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{
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if (byteCount == 0)
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{
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checkLastIncrement();
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cipher.processBlock(counter, 0, counterOut, 0);
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return (byte)(counterOut[byteCount++] ^ in);
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}
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byte rv = (byte)(counterOut[byteCount++] ^ in);
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if (byteCount == counter.length)
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{
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byteCount = 0;
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incrementCounter();
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}
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return rv;
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}
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private void checkCounter()
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{
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// if the IV is the same as the blocksize we assume the user knows what they are doing
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if (IV.length < blockSize)
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{
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for (int i = IV.length - 1; i >= 0; i--)
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{
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if (counter[i] != IV[i])
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{
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throw new IllegalStateException("Counter in CTR/SIC mode out of range.");
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}
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}
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}
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}
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private void checkLastIncrement()
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{
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// if the IV is the same as the blocksize we assume the user knows what they are doing
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if (IV.length < blockSize)
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{
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if (counter[IV.length - 1] != IV[IV.length - 1])
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{
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throw new IllegalStateException("Counter in CTR/SIC mode out of range.");
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}
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}
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}
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private void incrementCounter()
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{
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int i = counter.length;
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while (--i >= 0)
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{
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if (++counter[i] != 0)
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{
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break;
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}
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}
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}
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private void incrementCounterAt(int pos)
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{
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int i = counter.length - pos;
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while (--i >= 0)
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{
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if (++counter[i] != 0)
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{
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break;
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}
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}
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}
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private void incrementCounter(int offSet)
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{
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byte old = counter[counter.length - 1];
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counter[counter.length - 1] += offSet;
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if (old != 0 && counter[counter.length - 1] < old)
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{
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incrementCounterAt(1);
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}
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}
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private void decrementCounterAt(int pos)
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{
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int i = counter.length - pos;
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while (--i >= 0)
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{
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if (--counter[i] != -1)
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{
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return;
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}
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}
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}
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private void adjustCounter(long n)
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{
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if (n >= 0)
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{
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long numBlocks = (n + byteCount) / blockSize;
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long rem = numBlocks;
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if (rem > 255)
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{
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for (int i = 5; i >= 1; i--)
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{
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long diff = 1L << (8 * i);
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while (rem >= diff)
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{
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incrementCounterAt(i);
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rem -= diff;
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}
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}
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}
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incrementCounter((int)rem);
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byteCount = (int)((n + byteCount) - (blockSize * numBlocks));
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}
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else
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{
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long numBlocks = (-n - byteCount) / blockSize;
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long rem = numBlocks;
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if (rem > 255)
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{
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for (int i = 5; i >= 1; i--)
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{
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long diff = 1L << (8 * i);
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while (rem > diff)
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{
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decrementCounterAt(i);
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rem -= diff;
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}
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}
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}
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for (long i = 0; i != rem; i++)
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{
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decrementCounterAt(0);
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}
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int gap = (int)(byteCount + n + (blockSize * numBlocks));
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if (gap >= 0)
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{
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byteCount = 0;
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}
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else
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{
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decrementCounterAt(0);
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byteCount = blockSize + gap;
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}
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}
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}
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public void reset()
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{
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Arrays.fill(counter, (byte)0);
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System.arraycopy(IV, 0, counter, 0, IV.length);
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cipher.reset();
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this.byteCount = 0;
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}
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public long skip(long numberOfBytes)
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{
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adjustCounter(numberOfBytes);
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checkCounter();
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cipher.processBlock(counter, 0, counterOut, 0);
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return numberOfBytes;
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}
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public long seekTo(long position)
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{
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reset();
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return skip(position);
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}
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public long getPosition()
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{
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byte[] res = new byte[counter.length];
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System.arraycopy(counter, 0, res, 0, res.length);
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for (int i = res.length - 1; i >= 1; i--)
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{
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int v;
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if (i < IV.length)
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{
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v = (res[i] & 0xff) - (IV[i] & 0xff);
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}
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else
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{
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v = (res[i] & 0xff);
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}
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if (v < 0)
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{
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res[i - 1]--;
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v += 256;
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}
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res[i] = (byte)v;
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}
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return Pack.bigEndianToLong(res, res.length - 8) * blockSize + byteCount;
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}
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}
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