mirror of git://gcc.gnu.org/git/gcc.git
				
				
				
			
		
			
				
	
	
		
			305 lines
		
	
	
		
			8.3 KiB
		
	
	
	
		
			Java
		
	
	
	
			
		
		
	
	
			305 lines
		
	
	
		
			8.3 KiB
		
	
	
	
		
			Java
		
	
	
	
/* OMAC.java --
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   Copyright (C) 2004, 2006, 2010 Free Software Foundation, Inc.
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This file is a part of GNU Classpath.
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GNU Classpath is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or (at
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your option) any later version.
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GNU Classpath is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GNU Classpath; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301
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USA
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Linking this library statically or dynamically with other modules is
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making a combined work based on this library.  Thus, the terms and
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conditions of the GNU General Public License cover the whole
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combination.
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As a special exception, the copyright holders of this library give you
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permission to link this library with independent modules to produce an
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executable, regardless of the license terms of these independent
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modules, and to copy and distribute the resulting executable under
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terms of your choice, provided that you also meet, for each linked
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independent module, the terms and conditions of the license of that
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module.  An independent module is a module which is not derived from
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or based on this library.  If you modify this library, you may extend
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this exception to your version of the library, but you are not
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obligated to do so.  If you do not wish to do so, delete this
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exception statement from your version.  */
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package gnu.javax.crypto.mac;
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import gnu.java.security.Configuration;
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import gnu.java.security.Registry;
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import gnu.java.security.util.Util;
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import gnu.javax.crypto.cipher.CipherFactory;
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import gnu.javax.crypto.cipher.IBlockCipher;
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import gnu.javax.crypto.mode.IMode;
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import java.security.InvalidKeyException;
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import java.util.Arrays;
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import java.util.HashMap;
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import java.util.Map;
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import java.util.logging.Logger;
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/**
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 * The One-Key CBC MAC, OMAC. This message authentication code is based on a
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 * block cipher in CBC mode.
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 * <p>
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 * References:
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 * <ol>
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 * <li>Tetsu Iwata and Kaoru Kurosawa, <i><a
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 * href="http://crypt.cis.ibaraki.ac.jp/omac/docs/omac.pdf">OMAC: One-Key CBC
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 * MAC</a></i>.</li>
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 * </ol>
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 */
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public class OMAC
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    implements IMac
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{
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  private static final Logger log = Configuration.DEBUG ?
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                        Logger.getLogger(OMAC.class.getName()) : null;
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  private static final byte C1 = (byte) 0x87;
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  private static final byte C2 = 0x1b;
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  // Test key for OMAC-AES-128
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  private static final byte[] KEY0 =
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      Util.toBytesFromString("2b7e151628aed2a6abf7158809cf4f3c");
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  // Test MAC for zero-length input.
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  private static final byte[] DIGEST0 =
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      Util.toBytesFromString("bb1d6929e95937287fa37d129b756746");
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  private static Boolean valid;
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  private final IBlockCipher cipher;
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  private final String name;
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  private IMode mode;
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  private int blockSize;
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  private int outputSize;
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  private byte[] Lu, Lu2;
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  private byte[] M;
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  private byte[] Y;
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  private boolean init;
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  private int index;
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  public OMAC(IBlockCipher cipher)
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  {
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    this.cipher = cipher;
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    this.name = "OMAC-" + cipher.name();
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  }
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  public Object clone()
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  {
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    return new OMAC(cipher);
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  }
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  public String name()
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  {
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    return name;
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  }
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  public int macSize()
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  {
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    return outputSize;
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  }
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  public void init(Map attrib) throws InvalidKeyException
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  {
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    HashMap attrib2 = new HashMap();
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    attrib2.put(IBlockCipher.KEY_MATERIAL, attrib.get(MAC_KEY_MATERIAL));
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    cipher.reset();
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    cipher.init(attrib2);
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    blockSize = cipher.currentBlockSize();
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    Integer os = (Integer) attrib.get(TRUNCATED_SIZE);
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    if (os != null)
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      {
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        outputSize = os.intValue();
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        if (outputSize < 0 || outputSize > blockSize)
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          throw new IllegalArgumentException("truncated size out of range");
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      }
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    else
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      outputSize = blockSize;
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    byte[] L = new byte[blockSize];
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    cipher.encryptBlock(L, 0, L, 0);
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    if (Configuration.DEBUG)
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      log.fine("L = " + Util.toString(L).toLowerCase());
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    if (Lu != null)
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      {
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        Arrays.fill(Lu, (byte) 0);
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        if (Lu.length != blockSize)
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          Lu = new byte[blockSize];
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      }
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    else
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      Lu = new byte[blockSize];
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    if (Lu2 != null)
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      {
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        Arrays.fill(Lu2, (byte) 0);
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        if (Lu2.length != blockSize)
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          Lu2 = new byte[blockSize];
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      }
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    else
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      Lu2 = new byte[blockSize];
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    boolean msb = (L[0] & 0x80) != 0;
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    for (int i = 0; i < blockSize; i++)
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      {
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        Lu[i] = (byte)(L[i] << 1 & 0xFF);
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        if (i + 1 < blockSize)
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          Lu[i] |= (byte)((L[i + 1] & 0x80) >> 7);
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      }
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    if (msb)
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      {
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        if (blockSize == 16)
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          Lu[Lu.length - 1] ^= C1;
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        else if (blockSize == 8)
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          Lu[Lu.length - 1] ^= C2;
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        else
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          throw new IllegalArgumentException("unsupported cipher block size: "
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                                             + blockSize);
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      }
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    if (Configuration.DEBUG)
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      log.fine("Lu = " + Util.toString(Lu).toLowerCase());
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    msb = (Lu[0] & 0x80) != 0;
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    for (int i = 0; i < blockSize; i++)
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      {
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        Lu2[i] = (byte)(Lu[i] << 1 & 0xFF);
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        if (i + 1 < blockSize)
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          Lu2[i] |= (byte)((Lu[i + 1] & 0x80) >> 7);
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      }
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    if (msb)
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      {
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        if (blockSize == 16)
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          Lu2[Lu2.length - 1] ^= C1;
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        else
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          Lu2[Lu2.length - 1] ^= C2;
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      }
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    if (Configuration.DEBUG)
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      log.fine("Lu2 = " + Util.toString(Lu2).toLowerCase());
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    if (M != null)
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      {
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        Arrays.fill(M, (byte) 0);
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        if (M.length != blockSize)
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          M = new byte[blockSize];
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      }
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    else
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      M = new byte[blockSize];
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    if (Y != null)
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      {
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        Arrays.fill(Y, (byte) 0);
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        if (Y.length != blockSize)
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          Y = new byte[blockSize];
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      }
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    else
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      Y = new byte[blockSize];
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    index = 0;
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    init = true;
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  }
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  public void update(byte b)
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  {
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    if (! init)
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      throw new IllegalStateException("not initialized");
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    if (index == M.length)
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      {
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        process();
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        index = 0;
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      }
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    M[index++] = b;
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  }
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  public void update(byte[] buf, int off, int len)
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  {
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    if (! init)
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      throw new IllegalStateException("not initialized");
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    if (off < 0 || len < 0 || off + len > buf.length)
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      throw new IndexOutOfBoundsException("size=" + buf.length + "; off=" + off
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                                          + "; len=" + len);
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    for (int i = 0; i < len;)
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      {
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        if (index == blockSize)
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          {
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            process();
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            index = 0;
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          }
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        int count = Math.min(blockSize - index, len - i);
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        System.arraycopy(buf, off + i, M, index, count);
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        index += count;
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        i += count;
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      }
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  }
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  public byte[] digest()
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  {
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    byte[] b = new byte[outputSize];
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    digest(b, 0);
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    return b;
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  }
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  public void digest(byte[] out, int off)
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  {
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    if (! init)
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      throw new IllegalStateException("not initialized");
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    if (off < 0 || off + outputSize > out.length)
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      throw new IndexOutOfBoundsException("size=" + out.length + "; off=" + off
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                                          + "; len=" + outputSize);
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    byte[] T = new byte[blockSize];
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    byte[] L = Lu;
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    if (index < blockSize)
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      {
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        M[index++] = (byte) 0x80;
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        while (index < blockSize)
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          M[index++] = 0;
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        L = Lu2;
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      }
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    for (int i = 0; i < blockSize; i++)
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      T[i] = (byte)(M[i] ^ Y[i] ^ L[i]);
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    cipher.encryptBlock(T, 0, T, 0);
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    System.arraycopy(T, 0, out, off, outputSize);
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    reset();
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  }
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  public void reset()
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  {
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    index = 0;
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    if (Y != null)
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      Arrays.fill(Y, (byte) 0);
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    if (M != null)
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      Arrays.fill(M, (byte) 0);
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  }
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  public boolean selfTest()
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  {
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    OMAC mac = new OMAC(CipherFactory.getInstance(Registry.AES_CIPHER));
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    mac.reset();
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    Map attr = new HashMap();
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    attr.put(MAC_KEY_MATERIAL, KEY0);
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    byte[] digest = null;
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    try
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      {
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        mac.init(attr);
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        digest = mac.digest();
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      }
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    catch (Exception x)
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      {
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        return false;
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      }
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    if (digest == null)
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      return false;
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    return Arrays.equals(DIGEST0, digest);
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  }
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  private void process()
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  {
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    for (int i = 0; i < blockSize; i++)
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      M[i] = (byte)(M[i] ^ Y[i]);
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    cipher.encryptBlock(M, 0, Y, 0);
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  }
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}
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