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📄 blockcipherparameters.java

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/* BlockCipherParameters.java --    Copyright (C) 2002, 2003, 2006  Free Software Foundation, Inc.This file is a part of GNU Classpath.GNU Classpath is free software; you can redistribute it and/or modifyit under the terms of the GNU General Public License as published bythe Free Software Foundation; either version 2 of the License, or (atyour option) any later version.GNU Classpath is distributed in the hope that it will be useful, butWITHOUT ANY WARRANTY; without even the implied warranty ofMERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNUGeneral Public License for more details.You should have received a copy of the GNU General Public Licensealong with GNU Classpath; if not, write to the Free SoftwareFoundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301USALinking this library statically or dynamically with other modules ismaking a combined work based on this library.  Thus, the terms andconditions of the GNU General Public License cover the wholecombination.As a special exception, the copyright holders of this library give youpermission to link this library with independent modules to produce anexecutable, regardless of the license terms of these independentmodules, and to copy and distribute the resulting executable underterms of your choice, provided that you also meet, for each linkedindependent module, the terms and conditions of the license of thatmodule.  An independent module is a module which is not derived fromor based on this library.  If you modify this library, you may extendthis exception to your version of the library, but you are notobligated to do so.  If you do not wish to do so, delete thisexception statement from your version.  */package gnu.javax.crypto.jce.params;import gnu.javax.crypto.jce.spec.BlockCipherParameterSpec;import java.io.IOException;import java.math.BigInteger;import java.security.AlgorithmParametersSpi;import java.security.spec.AlgorithmParameterSpec;import java.security.spec.InvalidParameterSpecException;/** * An implementation of algorithm parameters for the GNU Crypto block * ciphers. This encompasses the cipher's block size, its key size, and * an optional initialization vector (IV). */public class BlockCipherParameters extends AlgorithmParametersSpi{  // Constants and variables.  // -----------------------------------------------------------------------  /**   * The underlying block cipher specification.   */  protected BlockCipherParameterSpec cipherSpec;  private static final String DEFAULT_FORMAT = "ASN.1";  // Instance methods implementing AlgorithmParametersSpi.  // -----------------------------------------------------------------------  /**   * Return these parameters encoded in ASN.1 (DER).   *   * <p>For GNU Crypto block ciphers we will define these parameters as   *   * <blockquote>   * <pre>BlockCipherParameters ::= SEQUENCE {   *   blockSize            INTEGER,   *   keySize              INTEGER,   *   initializationVector OCTET STRING OPTIONAL }</pre>   * </blockquote>   *   * @return The parameters, encoded an an ASN.1 DER sequence.   * @throws java.io.IOException If encoding these parameters fails.   */  protected byte[] engineGetEncoded() throws IOException  {    return engineGetEncoded(DEFAULT_FORMAT);  }  protected byte[] engineGetEncoded(String format) throws IOException  {    if (!format.equalsIgnoreCase(DEFAULT_FORMAT)        && !format.equalsIgnoreCase("asn1"))      {        throw new IOException("unknown format \"" + format + "\"");      }    // This is probably a bad idea.    /*     int len = 12 + ((cipherSpec.getIV() != null)     ? cipherSpec.getIV().length + 2 : 0);     ByteArrayOutputStream out = new ByteArrayOutputStream();     out.write(0x30);     out.write(len);     out.write(0x02);     out.write(4);     out.write(cipherSpec.getBlockSize() >>> 24 & 0xff);     out.write(cipherSpec.getBlockSize() >>> 16 & 0xff);     out.write(cipherSpec.getBlockSize() >>>  8 & 0xff);     out.write(cipherSpec.getBlockSize() & 0xff);     out.write(0x02);     out.write(4);     out.write(cipherSpec.getKeySize() >>> 24 & 0xff);     out.write(cipherSpec.getKeySize() >>> 16 & 0xff);     out.write(cipherSpec.getKeySize() >>>  8 & 0xff);     out.write(cipherSpec.getKeySize() & 0xff);     if (cipherSpec.getIV() != null) {     out.write(0x04);     len = cipherSpec.getIV().length;     out.write(len & 0xff);     out.write(cipherSpec.getIV());     }     out.write(0); out.write(0);     return out.toByteArray();*/    DERWriter writer = new DERWriter();    return writer.joinarrays(                             writer.writeBigInteger(BigInteger.valueOf(cipherSpec.getBlockSize())),                             writer.writeBigInteger(BigInteger.valueOf(cipherSpec.getKeySize())),                             (cipherSpec.getIV() != null) ? writer.writeBigInteger(new BigInteger(                                                                                                  cipherSpec.getIV()))                                                         : new byte[0]);  }  protected void engineInit(AlgorithmParameterSpec spec)      throws InvalidParameterSpecException  {    if (spec instanceof BlockCipherParameterSpec)      {        cipherSpec = (BlockCipherParameterSpec) spec;      }    else      {        throw new InvalidParameterSpecException();      }  }  protected void engineInit(byte[] encoded, String format) throws IOException  {    if (!format.equalsIgnoreCase(DEFAULT_FORMAT)        && !format.equalsIgnoreCase("ASN1"))      {        throw new IOException("invalid format: only accepts ASN.1");      }    engineInit(encoded);  }  protected void engineInit(byte[] encoded) throws IOException  {    // This is probably an equally bad idea.    /*if (encoded[0] != 0x30) {     throw new IOException("malformed ASN.1 sequence");     }     if (encoded[2] != 0x02 || encoded[3] != 4) {     throw new IOException("malformed ASN.1 sequence");     }     int blockSize = encoded[4] << 24 | encoded[5] << 16     | encoded[6] <<  8 | encoded[7];     if (encoded[8] != 0x02 || encoded[9] != 4) {     throw new IOException("malformed ASN.1 sequence");     }     int keySize = encoded[10] << 24 | encoded[11] << 16     | encoded[12] <<  8 | encoded[13];     if (encoded[14] == 0x04) {     int len = encoded[15] & 0xff;     byte[] iv = new byte[len];     System.arraycopy(encoded, 16, iv, 0, len);     cipherSpec = new BlockCipherParameterSpec(iv, blockSize, keySize);     } else if (encoded[14] == 0) {     cipherSpec = new BlockCipherParameterSpec(blockSize, keySize);     } else {     throw new IOException("malformed ASN.1 sequence");     }*/    DERReader reader = new DERReader(encoded);    int bs = reader.getBigInteger().intValue();    int ks = reader.getBigInteger().intValue();    byte[] iv = null;    if (reader.hasMorePrimitives())      {        iv = reader.getBigInteger().toByteArray();      }    cipherSpec = new BlockCipherParameterSpec(iv, bs, ks);    System.out.println(cipherSpec);  }  protected AlgorithmParameterSpec engineGetParameterSpec(Class c)      throws InvalidParameterSpecException  {    if (c.isInstance(cipherSpec))      {        return cipherSpec;      }    throw new InvalidParameterSpecException();  }  protected String engineToString()  {    return cipherSpec.toString();  }}

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