author | erikj |
Tue, 12 Sep 2017 19:03:39 +0200 (2017-09-12) | |
changeset 47216 | 71c04702a3d5 |
parent 27260 | jdk/test/java/security/KeyRep/Serial.java@8d82d0e9556b |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2003, 2004, Oracle and/or its affiliates. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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*/ |
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/* |
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* @test |
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* @bug 4532506 4999599 |
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* @summary Serializing KeyPair on one VM (Sun), |
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* and Deserializing on another (IBM) fails |
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27260
8d82d0e9556b
8043277: Update jdk regression tests to extend the default security policy instead of override
mchung
parents:
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diff
changeset
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* @run main/othervm/java.security.policy=Serial.policy Serial |
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*/ |
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import java.io.*; |
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import java.math.BigInteger; |
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import java.security.*; |
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import javax.crypto.*; |
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import javax.crypto.spec.*; |
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public class Serial { |
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// providers |
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private static final String SUN = "SUN"; |
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private static final String RSA = "SunRsaSign"; |
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private static final String JCE = "SunJCE"; |
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public static void main(String[] args) throws Exception { |
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// generate DSA key pair |
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KeyPairGenerator kpg = KeyPairGenerator.getInstance("DSA", SUN); |
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kpg.initialize(512); |
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KeyPair dsaKp = kpg.genKeyPair(); |
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// serialize DSA key pair |
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ByteArrayOutputStream baos = new ByteArrayOutputStream(); |
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ObjectOutputStream oos = new ObjectOutputStream(baos); |
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oos.writeObject(dsaKp); |
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oos.close(); |
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// deserialize DSA key pair |
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ObjectInputStream ois = new ObjectInputStream |
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(new ByteArrayInputStream(baos.toByteArray())); |
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KeyPair dsaKp2 = (KeyPair)ois.readObject(); |
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ois.close(); |
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if (!dsaKp2.getPublic().equals(dsaKp.getPublic()) || |
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!dsaKp2.getPrivate().equals(dsaKp.getPrivate())) { |
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throw new SecurityException("DSA test failed"); |
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} |
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// generate RSA key pair |
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kpg = KeyPairGenerator.getInstance("RSA", RSA); |
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kpg.initialize(512); |
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KeyPair rsaKp = kpg.genKeyPair(); |
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// serialize RSA key pair |
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baos.reset(); |
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oos = new ObjectOutputStream(baos); |
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oos.writeObject(rsaKp); |
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oos.close(); |
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// deserialize RSA key pair |
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ois = new ObjectInputStream |
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(new ByteArrayInputStream(baos.toByteArray())); |
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KeyPair rsaKp2 = (KeyPair)ois.readObject(); |
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ois.close(); |
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if (!rsaKp2.getPublic().equals(rsaKp.getPublic()) || |
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!rsaKp2.getPrivate().equals(rsaKp.getPrivate())) { |
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throw new SecurityException("RSA test failed"); |
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} |
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// exclude test is ECF provider is installed, see 4923290 |
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if (Security.getProvider("SunPKCS11-Solaris") == null) { |
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// generate DH key pair |
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kpg = KeyPairGenerator.getInstance("DiffieHellman", JCE); |
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kpg.initialize(new DHParameterSpec(skip1024Modulus, skip1024Base)); |
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KeyPair dhKp = kpg.genKeyPair(); |
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// serialize DH key pair |
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baos.reset(); |
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oos = new ObjectOutputStream(baos); |
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oos.writeObject(dhKp); |
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oos.close(); |
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// deserialize DH key pair |
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ois = new ObjectInputStream |
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(new ByteArrayInputStream(baos.toByteArray())); |
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KeyPair dhKp2 = (KeyPair)ois.readObject(); |
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ois.close(); |
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if (!dhKp2.getPublic().equals(dhKp.getPublic()) || |
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!dhKp2.getPrivate().equals(dhKp.getPrivate())) { |
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throw new SecurityException("DH test failed"); |
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} |
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} |
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// generate RC5 key |
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SecretKeySpec rc5Key = new SecretKeySpec(new byte[128], "RC5"); |
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// serialize RC5 key |
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baos.reset(); |
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oos = new ObjectOutputStream(baos); |
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oos.writeObject(rc5Key); |
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oos.close(); |
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// deserialize RC5 key |
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ois = new ObjectInputStream |
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(new ByteArrayInputStream(baos.toByteArray())); |
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SecretKey rc5Key2 = (SecretKey)ois.readObject(); |
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ois.close(); |
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if (!rc5Key.equals(rc5Key2)) { |
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throw new SecurityException("RC5 test failed"); |
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} |
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// generate PBE key |
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// Salt |
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byte[] salt = { |
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(byte)0xc7, (byte)0x73, (byte)0x21, (byte)0x8c, |
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(byte)0x7e, (byte)0xc8, (byte)0xee, (byte)0x99 |
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}; |
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// Iteration count |
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int count = 20; |
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// Create PBE parameter set |
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PBEParameterSpec pbeParamSpec = new PBEParameterSpec(salt, count); |
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char[] password = new char[] {'f', 'o', 'o'}; |
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PBEKeySpec pbeKeySpec = new PBEKeySpec(password); |
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SecretKeyFactory keyFac = |
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SecretKeyFactory.getInstance("PBEWithMD5AndDES", JCE); |
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SecretKey pbeKey = keyFac.generateSecret(pbeKeySpec); |
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// serialize PBE key |
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baos.reset(); |
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oos = new ObjectOutputStream(baos); |
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oos.writeObject(pbeKey); |
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oos.close(); |
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// deserialize PBE key |
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ois = new ObjectInputStream |
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(new ByteArrayInputStream(baos.toByteArray())); |
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SecretKey pbeKey2 = (SecretKey)ois.readObject(); |
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ois.close(); |
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if (!pbeKey.equals(pbeKey2)) { |
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throw new SecurityException("PBE test failed"); |
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} |
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checkKey("AES", 128); |
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checkKey("Blowfish", -1); |
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checkKey("DES", 56); |
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checkKey("DESede", 168); |
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checkKey("HmacMD5", -1); |
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checkKey("HmacSHA1", -1); |
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} |
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private static void checkKey(String algorithm, int size) throws Exception { |
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// generate key |
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KeyGenerator kg = KeyGenerator.getInstance(algorithm, JCE); |
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if (size > 0) { |
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kg.init(size); |
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} |
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SecretKey key = kg.generateKey(); |
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// serialize key |
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ByteArrayOutputStream baos = new ByteArrayOutputStream(); |
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ObjectOutputStream oos = new ObjectOutputStream(baos); |
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oos.writeObject(key); |
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oos.close(); |
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// deserialize key |
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ObjectInputStream ois = new ObjectInputStream |
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(new ByteArrayInputStream(baos.toByteArray())); |
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SecretKey key2 = (SecretKey)ois.readObject(); |
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ois.close(); |
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if (!key.equals(key2)) { |
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throw new SecurityException(algorithm + " test failed"); |
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} |
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} |
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// The 1024 bit Diffie-Hellman modulus values used by SKIP |
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private static final byte skip1024ModulusBytes[] = { |
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(byte)0xF4, (byte)0x88, (byte)0xFD, (byte)0x58, |
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(byte)0x4E, (byte)0x49, (byte)0xDB, (byte)0xCD, |
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(byte)0x20, (byte)0xB4, (byte)0x9D, (byte)0xE4, |
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(byte)0x91, (byte)0x07, (byte)0x36, (byte)0x6B, |
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(byte)0x33, (byte)0x6C, (byte)0x38, (byte)0x0D, |
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(byte)0x45, (byte)0x1D, (byte)0x0F, (byte)0x7C, |
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(byte)0x88, (byte)0xB3, (byte)0x1C, (byte)0x7C, |
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(byte)0x5B, (byte)0x2D, (byte)0x8E, (byte)0xF6, |
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(byte)0xF3, (byte)0xC9, (byte)0x23, (byte)0xC0, |
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(byte)0x43, (byte)0xF0, (byte)0xA5, (byte)0x5B, |
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(byte)0x18, (byte)0x8D, (byte)0x8E, (byte)0xBB, |
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(byte)0x55, (byte)0x8C, (byte)0xB8, (byte)0x5D, |
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(byte)0x38, (byte)0xD3, (byte)0x34, (byte)0xFD, |
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(byte)0x7C, (byte)0x17, (byte)0x57, (byte)0x43, |
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(byte)0xA3, (byte)0x1D, (byte)0x18, (byte)0x6C, |
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(byte)0xDE, (byte)0x33, (byte)0x21, (byte)0x2C, |
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(byte)0xB5, (byte)0x2A, (byte)0xFF, (byte)0x3C, |
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(byte)0xE1, (byte)0xB1, (byte)0x29, (byte)0x40, |
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(byte)0x18, (byte)0x11, (byte)0x8D, (byte)0x7C, |
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(byte)0x84, (byte)0xA7, (byte)0x0A, (byte)0x72, |
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(byte)0xD6, (byte)0x86, (byte)0xC4, (byte)0x03, |
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(byte)0x19, (byte)0xC8, (byte)0x07, (byte)0x29, |
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(byte)0x7A, (byte)0xCA, (byte)0x95, (byte)0x0C, |
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(byte)0xD9, (byte)0x96, (byte)0x9F, (byte)0xAB, |
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(byte)0xD0, (byte)0x0A, (byte)0x50, (byte)0x9B, |
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(byte)0x02, (byte)0x46, (byte)0xD3, (byte)0x08, |
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(byte)0x3D, (byte)0x66, (byte)0xA4, (byte)0x5D, |
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(byte)0x41, (byte)0x9F, (byte)0x9C, (byte)0x7C, |
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(byte)0xBD, (byte)0x89, (byte)0x4B, (byte)0x22, |
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(byte)0x19, (byte)0x26, (byte)0xBA, (byte)0xAB, |
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(byte)0xA2, (byte)0x5E, (byte)0xC3, (byte)0x55, |
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(byte)0xE9, (byte)0x2F, (byte)0x78, (byte)0xC7 |
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}; |
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// The SKIP 1024 bit modulus |
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private static final BigInteger skip1024Modulus |
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= new BigInteger(1, skip1024ModulusBytes); |
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// The base used with the SKIP 1024 bit modulus |
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private static final BigInteger skip1024Base = BigInteger.valueOf(2); |
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} |