author | xuelei |
Fri, 08 Apr 2011 02:00:09 -0700 | |
changeset 9246 | c459f79af46b |
parent 5506 | 202f599c92aa |
child 9691 | 98b26ecef4c0 |
permissions | -rw-r--r-- |
2 | 1 |
/* |
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* Copyright (c) 2001, 2011, 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. Oracle designates this |
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* particular file as subject to the "Classpath" exception as provided |
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* by Oracle in the LICENSE file that accompanied this code. |
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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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package sun.security.ssl; |
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import java.util.*; |
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import java.math.BigInteger; |
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30 |
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31 |
import java.security.*; |
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32 |
import java.security.interfaces.RSAPublicKey; |
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import java.security.spec.RSAPublicKeySpec; |
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import java.security.spec.*; |
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36 |
import javax.crypto.*; |
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38 |
// explicit import to override the Provider class in this package |
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import java.security.Provider; |
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40 |
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// need internal Sun classes for FIPS tricks |
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42 |
import sun.security.jca.Providers; |
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43 |
import sun.security.jca.ProviderList; |
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45 |
import sun.security.ec.ECParameters; |
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46 |
import sun.security.ec.NamedCurve; |
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47 |
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48 |
import static sun.security.ssl.SunJSSE.cryptoProvider; |
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||
50 |
/** |
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51 |
* This class contains a few static methods for interaction with the JCA/JCE |
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52 |
* to obtain implementations, etc. |
|
53 |
* |
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54 |
* @author Andreas Sterbenz |
|
55 |
*/ |
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56 |
final class JsseJce { |
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58 |
private final static Debug debug = Debug.getInstance("ssl"); |
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60 |
private final static ProviderList fipsProviderList; |
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62 |
// Flag indicating whether EC crypto is available. |
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63 |
// If null, then we have not checked yet. |
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64 |
// If yes, then all the EC based crypto we need is available. |
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65 |
private static volatile Boolean ecAvailable; |
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66 |
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// Flag indicating whether Kerberos crypto is available. |
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// If true, then all the Kerberos-based crypto we need is available. |
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private final static boolean kerberosAvailable; |
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static { |
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boolean temp; |
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try { |
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AccessController.doPrivileged( |
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new PrivilegedExceptionAction<Void>() { |
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public Void run() throws Exception { |
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// Test for Kerberos using the bootstrap class loader |
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Class.forName("sun.security.krb5.PrincipalName", true, |
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null); |
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return null; |
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} |
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}); |
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temp = true; |
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} catch (Exception e) { |
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temp = false; |
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} |
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kerberosAvailable = temp; |
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} |
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static { |
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// force FIPS flag initialization |
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// Because isFIPS() is synchronized and cryptoProvider is not modified |
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// after it completes, this also eliminates the need for any further |
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// synchronization when accessing cryptoProvider |
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if (SunJSSE.isFIPS() == false) { |
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fipsProviderList = null; |
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97 |
} else { |
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// Setup a ProviderList that can be used by the trust manager |
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// during certificate chain validation. All the crypto must be |
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100 |
// from the FIPS provider, but we also allow the required |
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101 |
// certificate related services from the SUN provider. |
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102 |
Provider sun = Security.getProvider("SUN"); |
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103 |
if (sun == null) { |
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throw new RuntimeException |
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("FIPS mode: SUN provider must be installed"); |
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} |
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107 |
Provider sunCerts = new SunCertificates(sun); |
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fipsProviderList = ProviderList.newList(cryptoProvider, sunCerts); |
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} |
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} |
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112 |
private static final class SunCertificates extends Provider { |
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SunCertificates(final Provider p) { |
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114 |
super("SunCertificates", 1.0d, "SunJSSE internal"); |
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AccessController.doPrivileged(new PrivilegedAction<Object>() { |
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116 |
public Object run() { |
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// copy certificate related services from the Sun provider |
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for (Map.Entry<Object,Object> entry : p.entrySet()) { |
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String key = (String)entry.getKey(); |
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if (key.startsWith("CertPathValidator.") |
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|| key.startsWith("CertPathBuilder.") |
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|| key.startsWith("CertStore.") |
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123 |
|| key.startsWith("CertificateFactory.")) { |
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put(key, entry.getValue()); |
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} |
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126 |
} |
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return null; |
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128 |
} |
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129 |
}); |
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130 |
} |
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131 |
} |
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133 |
/** |
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* JCE transformation string for RSA with PKCS#1 v1.5 padding. |
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* Can be used for encryption, decryption, signing, verifying. |
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136 |
*/ |
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final static String CIPHER_RSA_PKCS1 = "RSA/ECB/PKCS1Padding"; |
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138 |
/** |
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139 |
* JCE transformation string for the stream cipher RC4. |
|
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*/ |
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141 |
final static String CIPHER_RC4 = "RC4"; |
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142 |
/** |
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143 |
* JCE transformation string for DES in CBC mode without padding. |
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*/ |
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final static String CIPHER_DES = "DES/CBC/NoPadding"; |
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/** |
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147 |
* JCE transformation string for (3-key) Triple DES in CBC mode |
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* without padding. |
|
149 |
*/ |
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final static String CIPHER_3DES = "DESede/CBC/NoPadding"; |
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/** |
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152 |
* JCE transformation string for AES in CBC mode |
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* without padding. |
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*/ |
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final static String CIPHER_AES = "AES/CBC/NoPadding"; |
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/** |
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* JCA identifier string for DSA, i.e. a DSA with SHA-1. |
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158 |
*/ |
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159 |
final static String SIGNATURE_DSA = "DSA"; |
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160 |
/** |
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161 |
* JCA identifier string for ECDSA, i.e. a ECDSA with SHA-1. |
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162 |
*/ |
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163 |
final static String SIGNATURE_ECDSA = "SHA1withECDSA"; |
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164 |
/** |
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165 |
* JCA identifier string for Raw DSA, i.e. a DSA signature without |
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166 |
* hashing where the application provides the SHA-1 hash of the data. |
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167 |
* Note that the standard name is "NONEwithDSA" but we use "RawDSA" |
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168 |
* for compatibility. |
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169 |
*/ |
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170 |
final static String SIGNATURE_RAWDSA = "RawDSA"; |
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/** |
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172 |
* JCA identifier string for Raw ECDSA, i.e. a DSA signature without |
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173 |
* hashing where the application provides the SHA-1 hash of the data. |
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174 |
*/ |
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175 |
final static String SIGNATURE_RAWECDSA = "NONEwithECDSA"; |
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/** |
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* JCA identifier string for Raw RSA, i.e. a RSA PKCS#1 v1.5 signature |
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* without hashing where the application provides the hash of the data. |
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* Used for RSA client authentication with a 36 byte hash. |
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*/ |
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final static String SIGNATURE_RAWRSA = "NONEwithRSA"; |
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/** |
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183 |
* JCA identifier string for the SSL/TLS style RSA Signature. I.e. |
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* an signature using RSA with PKCS#1 v1.5 padding signing a |
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* concatenation of an MD5 and SHA-1 digest. |
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*/ |
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final static String SIGNATURE_SSLRSA = "MD5andSHA1withRSA"; |
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189 |
private JsseJce() { |
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190 |
// no instantiation of this class |
|
191 |
} |
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192 |
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193 |
static boolean isEcAvailable() { |
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194 |
if (ecAvailable == null) { |
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195 |
try { |
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196 |
JsseJce.getSignature(SIGNATURE_ECDSA); |
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JsseJce.getSignature(SIGNATURE_RAWECDSA); |
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JsseJce.getKeyAgreement("ECDH"); |
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JsseJce.getKeyFactory("EC"); |
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200 |
JsseJce.getKeyPairGenerator("EC"); |
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ecAvailable = true; |
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} catch (Exception e) { |
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203 |
ecAvailable = false; |
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204 |
} |
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} |
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206 |
return ecAvailable; |
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207 |
} |
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208 |
||
209 |
static void clearEcAvailable() { |
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210 |
ecAvailable = null; |
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} |
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diff
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static boolean isKerberosAvailable() { |
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return kerberosAvailable; |
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} |
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2 | 217 |
/** |
218 |
* Return an JCE cipher implementation for the specified algorithm. |
|
219 |
*/ |
|
220 |
static Cipher getCipher(String transformation) |
|
221 |
throws NoSuchAlgorithmException { |
|
222 |
try { |
|
223 |
if (cryptoProvider == null) { |
|
224 |
return Cipher.getInstance(transformation); |
|
225 |
} else { |
|
226 |
return Cipher.getInstance(transformation, cryptoProvider); |
|
227 |
} |
|
228 |
} catch (NoSuchPaddingException e) { |
|
229 |
throw new NoSuchAlgorithmException(e); |
|
230 |
} |
|
231 |
} |
|
232 |
||
233 |
/** |
|
234 |
* Return an JCA signature implementation for the specified algorithm. |
|
235 |
* The algorithm string should be one of the constants defined |
|
236 |
* in this class. |
|
237 |
*/ |
|
238 |
static Signature getSignature(String algorithm) |
|
239 |
throws NoSuchAlgorithmException { |
|
240 |
if (cryptoProvider == null) { |
|
241 |
return Signature.getInstance(algorithm); |
|
242 |
} else { |
|
243 |
// reference equality |
|
244 |
if (algorithm == SIGNATURE_SSLRSA) { |
|
245 |
// The SunPKCS11 provider currently does not support this |
|
246 |
// special algorithm. We allow a fallback in this case because |
|
247 |
// the SunJSSE implementation does the actual crypto using |
|
248 |
// a NONEwithRSA signature obtained from the cryptoProvider. |
|
249 |
if (cryptoProvider.getService("Signature", algorithm) == null) { |
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// Calling Signature.getInstance() and catching the |
c459f79af46b
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// exception would be cleaner, but exceptions are a little |
c459f79af46b
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// expensive. So we check directly via getService(). |
2 | 253 |
try { |
254 |
return Signature.getInstance(algorithm, "SunJSSE"); |
|
255 |
} catch (NoSuchProviderException e) { |
|
256 |
throw new NoSuchAlgorithmException(e); |
|
257 |
} |
|
258 |
} |
|
259 |
} |
|
260 |
return Signature.getInstance(algorithm, cryptoProvider); |
|
261 |
} |
|
262 |
} |
|
263 |
||
264 |
static KeyGenerator getKeyGenerator(String algorithm) |
|
265 |
throws NoSuchAlgorithmException { |
|
266 |
if (cryptoProvider == null) { |
|
267 |
return KeyGenerator.getInstance(algorithm); |
|
268 |
} else { |
|
269 |
return KeyGenerator.getInstance(algorithm, cryptoProvider); |
|
270 |
} |
|
271 |
} |
|
272 |
||
273 |
static KeyPairGenerator getKeyPairGenerator(String algorithm) |
|
274 |
throws NoSuchAlgorithmException { |
|
275 |
if (cryptoProvider == null) { |
|
276 |
return KeyPairGenerator.getInstance(algorithm); |
|
277 |
} else { |
|
278 |
return KeyPairGenerator.getInstance(algorithm, cryptoProvider); |
|
279 |
} |
|
280 |
} |
|
281 |
||
282 |
static KeyAgreement getKeyAgreement(String algorithm) |
|
283 |
throws NoSuchAlgorithmException { |
|
284 |
if (cryptoProvider == null) { |
|
285 |
return KeyAgreement.getInstance(algorithm); |
|
286 |
} else { |
|
287 |
return KeyAgreement.getInstance(algorithm, cryptoProvider); |
|
288 |
} |
|
289 |
} |
|
290 |
||
291 |
static Mac getMac(String algorithm) |
|
292 |
throws NoSuchAlgorithmException { |
|
293 |
if (cryptoProvider == null) { |
|
294 |
return Mac.getInstance(algorithm); |
|
295 |
} else { |
|
296 |
return Mac.getInstance(algorithm, cryptoProvider); |
|
297 |
} |
|
298 |
} |
|
299 |
||
300 |
static KeyFactory getKeyFactory(String algorithm) |
|
301 |
throws NoSuchAlgorithmException { |
|
302 |
if (cryptoProvider == null) { |
|
303 |
return KeyFactory.getInstance(algorithm); |
|
304 |
} else { |
|
305 |
return KeyFactory.getInstance(algorithm, cryptoProvider); |
|
306 |
} |
|
307 |
} |
|
308 |
||
309 |
static SecureRandom getSecureRandom() throws KeyManagementException { |
|
310 |
if (cryptoProvider == null) { |
|
311 |
return new SecureRandom(); |
|
312 |
} |
|
313 |
// Try "PKCS11" first. If that is not supported, iterate through |
|
314 |
// the provider and return the first working implementation. |
|
315 |
try { |
|
316 |
return SecureRandom.getInstance("PKCS11", cryptoProvider); |
|
317 |
} catch (NoSuchAlgorithmException e) { |
|
318 |
// ignore |
|
319 |
} |
|
320 |
for (Provider.Service s : cryptoProvider.getServices()) { |
|
321 |
if (s.getType().equals("SecureRandom")) { |
|
322 |
try { |
|
323 |
return SecureRandom.getInstance(s.getAlgorithm(), cryptoProvider); |
|
324 |
} catch (NoSuchAlgorithmException ee) { |
|
325 |
// ignore |
|
326 |
} |
|
327 |
} |
|
328 |
} |
|
329 |
throw new KeyManagementException("FIPS mode: no SecureRandom " |
|
330 |
+ " implementation found in provider " + cryptoProvider.getName()); |
|
331 |
} |
|
332 |
||
333 |
static MessageDigest getMD5() { |
|
334 |
return getMessageDigest("MD5"); |
|
335 |
} |
|
336 |
||
337 |
static MessageDigest getSHA() { |
|
338 |
return getMessageDigest("SHA"); |
|
339 |
} |
|
340 |
||
341 |
static MessageDigest getMessageDigest(String algorithm) { |
|
342 |
try { |
|
343 |
if (cryptoProvider == null) { |
|
344 |
return MessageDigest.getInstance(algorithm); |
|
345 |
} else { |
|
346 |
return MessageDigest.getInstance(algorithm, cryptoProvider); |
|
347 |
} |
|
348 |
} catch (NoSuchAlgorithmException e) { |
|
349 |
throw new RuntimeException |
|
350 |
("Algorithm " + algorithm + " not available", e); |
|
351 |
} |
|
352 |
} |
|
353 |
||
354 |
static int getRSAKeyLength(PublicKey key) { |
|
355 |
BigInteger modulus; |
|
356 |
if (key instanceof RSAPublicKey) { |
|
357 |
modulus = ((RSAPublicKey)key).getModulus(); |
|
358 |
} else { |
|
359 |
RSAPublicKeySpec spec = getRSAPublicKeySpec(key); |
|
360 |
modulus = spec.getModulus(); |
|
361 |
} |
|
362 |
return modulus.bitLength(); |
|
363 |
} |
|
364 |
||
365 |
static RSAPublicKeySpec getRSAPublicKeySpec(PublicKey key) { |
|
366 |
if (key instanceof RSAPublicKey) { |
|
367 |
RSAPublicKey rsaKey = (RSAPublicKey)key; |
|
368 |
return new RSAPublicKeySpec(rsaKey.getModulus(), |
|
369 |
rsaKey.getPublicExponent()); |
|
370 |
} |
|
371 |
try { |
|
372 |
KeyFactory factory = JsseJce.getKeyFactory("RSA"); |
|
51 | 373 |
return factory.getKeySpec(key, RSAPublicKeySpec.class); |
2 | 374 |
} catch (Exception e) { |
375 |
throw (RuntimeException)new RuntimeException().initCause(e); |
|
376 |
} |
|
377 |
} |
|
378 |
||
379 |
static ECParameterSpec getECParameterSpec(String namedCurveOid) { |
|
380 |
return NamedCurve.getECParameterSpec(namedCurveOid); |
|
381 |
} |
|
382 |
||
383 |
static String getNamedCurveOid(ECParameterSpec params) { |
|
384 |
return ECParameters.getCurveName(params); |
|
385 |
} |
|
386 |
||
387 |
static ECPoint decodePoint(byte[] encoded, EllipticCurve curve) |
|
388 |
throws java.io.IOException { |
|
389 |
return ECParameters.decodePoint(encoded, curve); |
|
390 |
} |
|
391 |
||
392 |
static byte[] encodePoint(ECPoint point, EllipticCurve curve) { |
|
393 |
return ECParameters.encodePoint(point, curve); |
|
394 |
} |
|
395 |
||
396 |
// In FIPS mode, set thread local providers; otherwise a no-op. |
|
397 |
// Must be paired with endFipsProvider. |
|
398 |
static Object beginFipsProvider() { |
|
399 |
if (fipsProviderList == null) { |
|
400 |
return null; |
|
401 |
} else { |
|
402 |
return Providers.beginThreadProviderList(fipsProviderList); |
|
403 |
} |
|
404 |
} |
|
405 |
||
406 |
static void endFipsProvider(Object o) { |
|
407 |
if (fipsProviderList != null) { |
|
408 |
Providers.endThreadProviderList((ProviderList)o); |
|
409 |
} |
|
410 |
} |
|
411 |
||
412 |
} |