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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
* This code is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* version 2 for more details (a copy is included in the LICENSE file that
* accompanied this code).
*
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package sun.security.provider;
import java.util.*;
import java.io.*;
import java.math.BigInteger;
import java.security.InvalidKeyException;
import java.security.ProviderException;
import java.security.AlgorithmParameters;
import java.security.spec.DSAParameterSpec;
import java.security.spec.InvalidParameterSpecException;
import java.security.interfaces.DSAParams;
import sun.security.x509.X509Key;
import sun.security.x509.AlgIdDSA;
import sun.security.util.BitArray;
import sun.security.util.Debug;
import sun.security.util.DerValue;
import sun.security.util.DerInputStream;
import sun.security.util.DerOutputStream;
/**
* An X.509 public key for the Digital Signature Algorithm.
*
* @author Benjamin Renaud
*
*
* @see DSAPrivateKey
* @see AlgIdDSA
* @see DSA
*/
public class DSAPublicKey extends X509Key
implements java.security.interfaces.DSAPublicKey, Serializable {
/** use serialVersionUID from JDK 1.1. for interoperability */
private static final long serialVersionUID = -2994193307391104133L;
/* the public key */
private BigInteger y;
/*
* Keep this constructor for backwards compatibility with JDK1.1.
*/
public DSAPublicKey() {
}
/**
* Make a DSA public key out of a public key and three parameters.
* The p, q, and g parameters may be null, but if so, parameters will need
* to be supplied from some other source before this key can be used in
* cryptographic operations. PKIX RFC2459bis explicitly allows DSA public
* keys without parameters, where the parameters are provided in the
* issuer's DSA public key.
*
* @param y the actual key bits
* @param p DSA parameter p, may be null if all of p, q, and g are null.
* @param q DSA parameter q, may be null if all of p, q, and g are null.
* @param g DSA parameter g, may be null if all of p, q, and g are null.
*/
public DSAPublicKey(BigInteger y, BigInteger p, BigInteger q,
BigInteger g)
throws InvalidKeyException {
this.y = y;
algid = new AlgIdDSA(p, q, g);
try {
byte[] keyArray = new DerValue(DerValue.tag_Integer,
y.toByteArray()).toByteArray();
setKey(new BitArray(keyArray.length*8, keyArray));
encode();
} catch (IOException e) {
throw new InvalidKeyException("could not DER encode y: " +
e.getMessage());
}
}
/**
* Make a DSA public key from its DER encoding (X.509).
*/
public DSAPublicKey(byte[] encoded) throws InvalidKeyException {
decode(encoded);
}
/**
* Returns the DSA parameters associated with this key, or null if the
* parameters could not be parsed.
*/
public DSAParams getParams() {
try {
if (algid instanceof DSAParams) {
return (DSAParams)algid;
} else {
DSAParameterSpec paramSpec;
AlgorithmParameters algParams = algid.getParameters();
if (algParams == null) {
return null;
}
paramSpec = algParams.getParameterSpec(DSAParameterSpec.class);
return (DSAParams)paramSpec;
}
} catch (InvalidParameterSpecException e) {
return null;
}
}
/**
* Get the raw public value, y, without the parameters.
*
* @see getParameters
*/
public BigInteger getY() {
return y;
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