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jeremybenn |
/* BaseCipher.java --
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Copyright (C) 2001, 2002, 2003, 2006 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.cipher;
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import gnu.java.lang.CPStringBuilder;
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import gnu.java.security.Configuration;
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import java.security.InvalidKeyException;
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import java.util.Arrays;
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import java.util.Iterator;
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import java.util.Map;
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import java.util.logging.Level;
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import java.util.logging.Logger;
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/**
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* A basic abstract class to facilitate implementing symmetric key block
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* ciphers.
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*/
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public abstract class BaseCipher
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implements IBlockCipher, IBlockCipherSpi
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{
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private static final Logger log = Logger.getLogger(BaseCipher.class.getName());
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/** The canonical name prefix of the cipher. */
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protected String name;
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/** The default block size, in bytes. */
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protected int defaultBlockSize;
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/** The default key size, in bytes. */
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protected int defaultKeySize;
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/** The current block size, in bytes. */
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protected int currentBlockSize;
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/** The session key for this instance. */
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protected transient Object currentKey;
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/** The instance lock. */
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protected Object lock = new Object();
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/**
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* Trivial constructor for use by concrete subclasses.
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*
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* @param name the canonical name prefix of this instance.
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* @param defaultBlockSize the default block size in bytes.
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* @param defaultKeySize the default key size in bytes.
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*/
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protected BaseCipher(String name, int defaultBlockSize, int defaultKeySize)
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{
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super();
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this.name = name;
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this.defaultBlockSize = defaultBlockSize;
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this.defaultKeySize = defaultKeySize;
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}
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public abstract Object clone();
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public String name()
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{
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CPStringBuilder sb = new CPStringBuilder(name).append('-');
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if (currentKey == null)
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sb.append(String.valueOf(8 * defaultBlockSize));
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else
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sb.append(String.valueOf(8 * currentBlockSize));
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return sb.toString();
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}
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public int defaultBlockSize()
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{
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return defaultBlockSize;
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}
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public int defaultKeySize()
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{
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return defaultKeySize;
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}
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public void init(Map attributes) throws InvalidKeyException
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{
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synchronized (lock)
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{
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if (currentKey != null)
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throw new IllegalStateException();
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Integer bs = (Integer) attributes.get(CIPHER_BLOCK_SIZE);
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if (bs == null) // no block size was specified
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{
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if (currentBlockSize == 0) // happy birthday
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currentBlockSize = defaultBlockSize;
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// else it's a clone. use as is
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}
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else
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{
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currentBlockSize = bs.intValue();
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// ensure that value is valid
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Iterator it;
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boolean ok = false;
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for (it = blockSizes(); it.hasNext();)
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{
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ok = (currentBlockSize == ((Integer) it.next()).intValue());
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if (ok)
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break;
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}
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if (! ok)
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throw new IllegalArgumentException(IBlockCipher.CIPHER_BLOCK_SIZE);
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}
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byte[] k = (byte[]) attributes.get(KEY_MATERIAL);
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currentKey = makeKey(k, currentBlockSize);
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}
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}
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public int currentBlockSize()
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{
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if (currentKey == null)
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throw new IllegalStateException();
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return currentBlockSize;
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}
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public void reset()
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{
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synchronized (lock)
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{
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currentKey = null;
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}
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}
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public void encryptBlock(byte[] in, int inOffset, byte[] out, int outOffset)
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throws IllegalStateException
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{
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synchronized (lock)
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{
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if (currentKey == null)
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throw new IllegalStateException();
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encrypt(in, inOffset, out, outOffset, currentKey, currentBlockSize);
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}
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}
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public void decryptBlock(byte[] in, int inOffset, byte[] out, int outOffset)
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throws IllegalStateException
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{
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synchronized (lock)
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{
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if (currentKey == null)
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throw new IllegalStateException();
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decrypt(in, inOffset, out, outOffset, currentKey, currentBlockSize);
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}
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}
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public boolean selfTest()
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{
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int ks;
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Iterator bit;
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// do symmetry tests for all block-size/key-size combos
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for (Iterator kit = keySizes(); kit.hasNext();)
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{
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ks = ((Integer) kit.next()).intValue();
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for (bit = blockSizes(); bit.hasNext();)
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if (! testSymmetry(ks, ((Integer) bit.next()).intValue()))
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return false;
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}
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return true;
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}
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private boolean testSymmetry(int ks, int bs)
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{
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try
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{
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byte[] kb = new byte[ks];
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byte[] pt = new byte[bs];
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byte[] ct = new byte[bs];
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byte[] cpt = new byte[bs];
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int i;
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for (i = 0; i < ks; i++)
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kb[i] = (byte) i;
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for (i = 0; i < bs; i++)
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pt[i] = (byte) i;
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Object k = makeKey(kb, bs);
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encrypt(pt, 0, ct, 0, k, bs);
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decrypt(ct, 0, cpt, 0, k, bs);
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return Arrays.equals(pt, cpt);
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}
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catch (Exception x)
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{
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if (Configuration.DEBUG)
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log.log(Level.FINE, "Exception in testSymmetry() for " + name(), x);
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return false;
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}
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}
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protected boolean testKat(byte[] kb, byte[] ct)
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{
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return testKat(kb, ct, new byte[ct.length]); // all-zero plaintext
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}
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protected boolean testKat(byte[] kb, byte[] ct, byte[] pt)
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{
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try
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{
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int bs = pt.length;
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byte[] t = new byte[bs];
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Object k = makeKey(kb, bs);
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// test encryption
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encrypt(pt, 0, t, 0, k, bs);
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if (! Arrays.equals(t, ct))
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return false;
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// test decryption
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decrypt(t, 0, t, 0, k, bs);
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return Arrays.equals(t, pt);
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}
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catch (Exception x)
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{
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if (Configuration.DEBUG)
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log.log(Level.FINE, "Exception in testKat() for " + name(), x);
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return false;
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}
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}
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}
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