author | jjiang |
Wed, 15 Aug 2018 18:41:18 +0800 | |
changeset 51460 | 97e361fe3433 |
parent 47216 | 71c04702a3d5 |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2003, 2018, 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 4856966 |
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* @summary basic test of SHA1withDSA and RawDSA signing/verifying |
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* @author Andreas Sterbenz |
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* @library /test/lib .. |
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* @key randomness |
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* @modules jdk.crypto.cryptoki |
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* @run main/othervm TestDSA |
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* @run main/othervm TestDSA sm |
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*/ |
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import java.io.ByteArrayOutputStream; |
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import java.io.IOException; |
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import java.io.StringReader; |
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import java.math.BigInteger; |
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import java.security.KeyFactory; |
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import java.security.MessageDigest; |
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import java.security.PrivateKey; |
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import java.security.Provider; |
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import java.security.PublicKey; |
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import java.security.Signature; |
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import java.security.SignatureException; |
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import java.security.spec.DSAPrivateKeySpec; |
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import java.security.spec.DSAPublicKeySpec; |
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import java.util.Random; |
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public class TestDSA extends PKCS11Test { |
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// values of the keys we use for the tests |
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private final static String ps = |
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"fd7f53811d75122952df4a9c2eece4e7f611b7523cef4400c31e3f80b6512669" + |
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"455d402251fb593d8d58fabfc5f5ba30f6cb9b556cd7813b801d346ff26660b7" + |
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"6b9950a5a49f9fe8047b1022c24fbba9d7feb7c61bf83b57e7c6a8a6150f04fb" + |
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"83f6d3c51ec3023554135a169132f675f3ae2b61d72aeff22203199dd14801c7"; |
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private final static String qs = |
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"9760508f15230bccb292b982a2eb840bf0581cf5"; |
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private final static String gs = |
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"f7e1a085d69b3ddecbbcab5c36b857b97994afbbfa3aea82f9574c0b3d078267" + |
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"5159578ebad4594fe67107108180b449167123e84c281613b7cf09328cc8a6e1" + |
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"3c167a8b547c8d28e0a3ae1e2bb3a675916ea37f0bfa213562f1fb627a01243b" + |
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"cca4f1bea8519089a883dfe15ae59f06928b665e807b552564014c3bfecf492a"; |
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private final static String xs = |
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"2952afd9aef9527f9b40d23c8916f7d046028f9d"; |
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private final static String ys = |
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"b16ddb0f9394c328c983ecf23b20014ace368a1af5728dffbf1162de9ed8ebf6" + |
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"384f323930e091503035caa797e3674221fc16136240b5474799ede2b7b11313" + |
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"7574a9c26bcf900940027b4bcd511ef1d1daf2e69c416aebaf3bdf39f02473b9" + |
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"d963f99414c09d97bb0830d9fbdcf7bb9dad8a2179fcdf296838c4cfab8f4d8f"; |
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private final static BigInteger p = new BigInteger(ps, 16); |
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private final static BigInteger q = new BigInteger(qs, 16); |
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private final static BigInteger g = new BigInteger(gs, 16); |
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private final static BigInteger x = new BigInteger(xs, 16); |
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private final static BigInteger y = new BigInteger(ys, 16); |
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// data for test 1, original and SHA-1 hashed |
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private final static byte[] data1Raw = b("0102030405060708090a0b0c0d0e0f10111213"); |
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private final static byte[] data1SHA = b("00:e2:5f:c9:1c:8f:d6:8c:6a:dc:c6:bd:f0:46:60:5e:a2:cd:8d:ad"); |
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// valid signatures of data1. sig1b uses incorrect ASN.1 encoding, |
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// which we want to accept anyway for compatibility |
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private final static byte[] sig1a = b("30:2d:02:14:53:06:3f:7d:ec:48:3c:99:17:9a:2c:a9:4d:e8:00:da:70:fb:35:d7:02:15:00:92:6a:39:6b:15:63:2f:e7:32:90:35:bf:af:47:55:e7:ff:33:a5:13"); |
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private final static byte[] sig1b = b("30:2c:02:14:53:06:3f:7d:ec:48:3c:99:17:9a:2c:a9:4d:e8:00:da:70:fb:35:d7:02:14:92:6a:39:6b:15:63:2f:e7:32:90:35:bf:af:47:55:e7:ff:33:a5:13"); |
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// data for test 2 (invalid signatures) |
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private final static byte[] data2Raw = {}; |
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private final static byte[] data2SHA = b("da:39:a3:ee:5e:6b:4b:0d:32:55:bf:ef:95:60:18:90:af:d8:07:09"); |
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private static void verify(Provider provider, String alg, PublicKey key, byte[] data, byte[] sig, boolean result) throws Exception { |
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Signature s = Signature.getInstance(alg, provider); |
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s.initVerify(key); |
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boolean r; |
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s.update(data); |
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r = s.verify(sig); |
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if (r != result) { |
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throw new Exception("Result mismatch, actual: " + r); |
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} |
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s.update(data); |
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r = s.verify(sig); |
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if (r != result) { |
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throw new Exception("Result mismatch, actual: " + r); |
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} |
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System.out.println("Passed"); |
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} |
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public static void main(String[] args) throws Exception { |
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main(new TestDSA(), args); |
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} |
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@Override |
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public void main(Provider provider) throws Exception { |
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long start = System.currentTimeMillis(); |
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System.out.println("Testing provider " + provider + "..."); |
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/* |
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* Use Solaris SPARC 11.2 or later to avoid an intermittent failure |
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* when running SunPKCS11-Solaris (8044554) |
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*/ |
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if (provider.getName().equals("SunPKCS11-Solaris") && |
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props.getProperty("os.name").equals("SunOS") && |
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props.getProperty("os.arch").equals("sparcv9") && |
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props.getProperty("os.version").compareTo("5.11") <= 0 && |
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getDistro().compareTo("11.2") < 0) { |
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System.out.println("SunPKCS11-Solaris provider requires " + |
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"Solaris SPARC 11.2 or later, skipping"); |
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return; |
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} |
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if (provider.getService("Signature", "SHA1withDSA") == null) { |
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System.out.println("DSA not supported, skipping"); |
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return; |
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} |
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KeyFactory kf = KeyFactory.getInstance("DSA", provider); |
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DSAPrivateKeySpec privSpec = new DSAPrivateKeySpec(x, p, q, g); |
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DSAPublicKeySpec pubSpec = new DSAPublicKeySpec(y, p, q, g); |
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PrivateKey privateKey = kf.generatePrivate(privSpec); |
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PublicKey publicKey = kf.generatePublic(pubSpec); |
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// verify known-good and known-bad signatures using SHA1withDSA and RawDSA |
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verify(provider, "SHA1withDSA", publicKey, data1Raw, sig1a, true); |
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verify(provider, "SHA1withDSA", publicKey, data1Raw, sig1b, true); |
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verify(provider, "SHA1withDSA", publicKey, data2Raw, sig1a, false); |
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verify(provider, "SHA1withDSA", publicKey, data2Raw, sig1b, false); |
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verify(provider, "RawDSA", publicKey, data1SHA, sig1a, true); |
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verify(provider, "RawDSA", publicKey, data1SHA, sig1b, true); |
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verify(provider, "RawDSA", publicKey, data2SHA, sig1a, false); |
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verify(provider, "RawDSA", publicKey, data2SHA, sig1b, false); |
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testSigning(provider, privateKey, publicKey); |
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long stop = System.currentTimeMillis(); |
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System.out.println("All tests passed (" + (stop - start) + " ms)."); |
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} |
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private void testSigning(Provider provider, PrivateKey privateKey, |
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PublicKey publicKey) throws Exception { |
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byte[] data = new byte[2048]; |
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new Random().nextBytes(data); |
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// sign random data using SHA1withDSA and verify using |
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// SHA1withDSA and RawDSA |
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Signature s = Signature.getInstance("SHA1withDSA", provider); |
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s.initSign(privateKey); |
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s.update(data); |
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byte[] s1 = s.sign(); |
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s.initVerify(publicKey); |
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s.update(data); |
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if (!s.verify(s1)) { |
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throw new Exception("Sign/verify 1 failed"); |
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} |
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s = Signature.getInstance("RawDSA", provider); |
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MessageDigest md = MessageDigest.getInstance("SHA-1"); |
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byte[] digest = md.digest(data); |
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s.initVerify(publicKey); |
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s.update(digest); |
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if (!s.verify(s1)) { |
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throw new Exception("Sign/verify 2 failed"); |
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} |
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// sign random data using RawDSA and verify using |
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// SHA1withDSA and RawDSA |
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s.initSign(privateKey); |
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s.update(digest); |
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byte[] s2 = s.sign(); |
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s.initVerify(publicKey); |
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s.update(digest); |
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if (!s.verify(s2)) { |
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throw new Exception("Sign/verify 3 failed"); |
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} |
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s = Signature.getInstance("SHA1withDSA", provider); |
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s.initVerify(publicKey); |
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s.update(data); |
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if (!s.verify(s2)) { |
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throw new Exception("Sign/verify 4 failed"); |
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} |
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// test behavior if data of incorrect length is passed |
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s = Signature.getInstance("RawDSA", provider); |
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s.initSign(privateKey); |
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s.update(new byte[8]); |
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s.update(new byte[64]); |
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try { |
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s.sign(); |
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throw new Exception("No error RawDSA signing long data"); |
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} catch (SignatureException e) { |
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// expected |
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224 |
} |
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} |
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226 |
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227 |
private final static char[] hexDigits = "0123456789abcdef".toCharArray(); |
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public static String toString(byte[] b) { |
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230 |
StringBuffer sb = new StringBuffer(b.length * 3); |
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231 |
for (int i = 0; i < b.length; i++) { |
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232 |
int k = b[i] & 0xff; |
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if (i != 0) { |
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234 |
sb.append(':'); |
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} |
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sb.append(hexDigits[k >>> 4]); |
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sb.append(hexDigits[k & 0xf]); |
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} |
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return sb.toString(); |
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} |
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242 |
public static byte[] parse(String s) { |
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243 |
try { |
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int n = s.length(); |
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ByteArrayOutputStream out = new ByteArrayOutputStream(n / 3); |
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246 |
StringReader r = new StringReader(s); |
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247 |
while (true) { |
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int b1 = nextNibble(r); |
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249 |
if (b1 < 0) { |
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250 |
break; |
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251 |
} |
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252 |
int b2 = nextNibble(r); |
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253 |
if (b2 < 0) { |
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254 |
throw new RuntimeException("Invalid string " + s); |
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255 |
} |
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256 |
int b = (b1 << 4) | b2; |
|
257 |
out.write(b); |
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258 |
} |
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259 |
return out.toByteArray(); |
|
260 |
} catch (IOException e) { |
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261 |
throw new RuntimeException(e); |
|
262 |
} |
|
263 |
} |
|
264 |
||
265 |
public static byte[] b(String s) { |
|
266 |
return parse(s); |
|
267 |
} |
|
268 |
||
269 |
private static int nextNibble(StringReader r) throws IOException { |
|
270 |
while (true) { |
|
271 |
int ch = r.read(); |
|
272 |
if (ch == -1) { |
|
273 |
return -1; |
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274 |
} else if ((ch >= '0') && (ch <= '9')) { |
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275 |
return ch - '0'; |
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276 |
} else if ((ch >= 'a') && (ch <= 'f')) { |
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277 |
return ch - 'a' + 10; |
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278 |
} else if ((ch >= 'A') && (ch <= 'F')) { |
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279 |
return ch - 'A' + 10; |
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280 |
} |
|
281 |
} |
|
282 |
} |
|
283 |
||
284 |
} |