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PojavLauncherTeam
GitHub Repository: PojavLauncherTeam/mobile
Path: blob/master/test/jdk/sun/security/pkcs11/ec/TestECDSA2.java
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/*
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* Copyright (c) 2012, 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 6405536
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* @summary basic test of ECDSA signatures for P-256 and P-384 from the
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* example data in "Suite B Implementer's Guide to FIPS 186-3".
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* @library /test/lib ..
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* @library ../../../../java/security/testlibrary
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* @modules java.base/sun.security.util
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* jdk.crypto.cryptoki
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* @compile -XDignore.symbol.file TestECDSA2.java
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* @run main/othervm TestECDSA2
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* @run main/othervm -Djava.security.manager=allow TestECDSA2 sm
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*/
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import java.math.BigInteger;
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import java.security.AlgorithmParameters;
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import java.security.KeyFactory;
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import java.security.KeyPair;
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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.spec.ECGenParameterSpec;
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import java.security.spec.ECParameterSpec;
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import java.security.spec.ECPoint;
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import java.security.spec.ECPrivateKeySpec;
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import java.security.spec.ECPublicKeySpec;
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public class TestECDSA2 extends PKCS11Test {
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// values of the keys we use for the tests
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// keypair using NIST P-256
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private final static String privD256 = "70a12c2db16845ed56ff68cfc21a472b3f04d7d6851bf6349f2d7d5b3452b38a";
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private final static String pubX256 = "8101ece47464a6ead70cf69a6e2bd3d88691a3262d22cba4f7635eaff26680a8";
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private final static String pubY256 = "d8a12ba61d599235f67d9cb4d58f1783d3ca43e78f0a5abaa624079936c0c3a9";
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// keypair using NIST P-384
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private final static String privD384 = "c838b85253ef8dc7394fa5808a5183981c7deef5a69ba8f4f2117ffea39cfcd90e95f6cbc854abacab701d50c1f3cf24";
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private final static String pubX384 = "1fbac8eebd0cbf35640b39efe0808dd774debff20a2a329e91713baf7d7f3c3e81546d883730bee7e48678f857b02ca0";
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private final static String pubY384 = "eb213103bd68ce343365a8a4c3d4555fa385f5330203bdd76ffad1f3affb95751c132007e1b240353cb0a4cf1693bdf9";
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// data to be signed
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private final static byte[] data = "This is only a test message. It is 48 bytes long".getBytes();
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private KeyFactory kf = null;
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private static void testSignAndVerify(String alg, KeyPair kp, Provider p) throws Exception {
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Signature s = Signature.getInstance(alg, p);
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s.initSign(kp.getPrivate());
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s.update(data);
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byte[] result = s.sign();
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s.initVerify(kp.getPublic());
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s.update(data);
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if (!s.verify(result)) {
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throw new Exception("Error: Signature verification failed");
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}
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System.out.println(p.getName() + ": " + alg + " Passed");
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}
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private KeyPair genECKeyPair(String curvName, String privD, String pubX,
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String pubY, Provider p) throws Exception {
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AlgorithmParameters params = AlgorithmParameters.getInstance("EC", p);
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params.init(new ECGenParameterSpec(curvName));
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ECParameterSpec ecParams = params.getParameterSpec(ECParameterSpec.class);
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ECPrivateKeySpec privKeySpec =
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new ECPrivateKeySpec(new BigInteger(privD, 16), ecParams);
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ECPublicKeySpec pubKeySpec =
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new ECPublicKeySpec(new ECPoint(new BigInteger(pubX, 16), new BigInteger(pubY, 16)),
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ecParams);
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PrivateKey privKey = kf.generatePrivate(privKeySpec);
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PublicKey pubKey = kf.generatePublic(pubKeySpec);
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return new KeyPair(pubKey, privKey);
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}
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public static void main(String[] args) throws Exception {
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main(new TestECDSA2(), args);
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}
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@Override
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protected boolean skipTest(Provider provider) {
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boolean testP256 =
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provider.getService("Signature", "SHA256withECDSA") != null;
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boolean testP384 =
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provider.getService("Signature", "SHA384withECDSA") != null;
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if (!testP256 && !testP384) {
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System.out.println("ECDSA not supported, skipping");
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return true;
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}
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if (isBadNSSVersion(provider)) {
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return true;
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}
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return false;
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}
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@Override
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public void main(Provider provider) throws Exception {
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boolean testP256 =
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(provider.getService("Signature", "SHA256withECDSA") != null);
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boolean testP384 =
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(provider.getService("Signature", "SHA384withECDSA") != null);
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kf = KeyFactory.getInstance("EC", provider);
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long start = System.currentTimeMillis();
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if (testP256) {
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// can use secp256r1, NIST P-256, X9.62 prime256v1, or 1.2.840.10045.3.1.7
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KeyPair kp =
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genECKeyPair("secp256r1", privD256, pubX256, pubY256, provider);
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testSignAndVerify("SHA256withECDSA", kp, provider);
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}
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if (testP384) {
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// can use secp384r1, NIST P-384, 1.3.132.0.34
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KeyPair kp =
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genECKeyPair("secp384r1", privD384, pubX384, pubY384, provider);
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testSignAndVerify("SHA384withECDSA", kp, provider);
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}
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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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}
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