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The Bouncy Castle Crypto package is a Java implementation of cryptographic algorithms. This jar contains JCE provider and lightweight API for the Bouncy Castle Cryptography APIs for JDK 1.5 to JDK 1.8. Note: this package includes the NTRU encryption algorithms.
package org.bouncycastle.asn1.cmc;
import java.math.BigInteger;
import org.bouncycastle.asn1.ASN1EncodableVector;
import org.bouncycastle.asn1.ASN1GeneralizedTime;
import org.bouncycastle.asn1.ASN1Integer;
import org.bouncycastle.asn1.ASN1Object;
import org.bouncycastle.asn1.ASN1OctetString;
import org.bouncycastle.asn1.ASN1Primitive;
import org.bouncycastle.asn1.ASN1Sequence;
import org.bouncycastle.asn1.DERSequence;
import org.bouncycastle.asn1.DERUTF8String;
import org.bouncycastle.asn1.x500.X500Name;
import org.bouncycastle.asn1.x509.CRLReason;
import org.bouncycastle.util.Arrays;
/**
*
* RevokeRequest ::= SEQUENCE {
* issuerName Name,
* serialNumber INTEGER,
* reason CRLReason,
* invalidityDate GeneralizedTime OPTIONAL,
* passphrase OCTET STRING OPTIONAL,
* comment UTF8String OPTIONAL }
*
*/
public class RevokeRequest
extends ASN1Object
{
private final X500Name name;
private final ASN1Integer serialNumber;
private final CRLReason reason;
private ASN1GeneralizedTime invalidityDate;
private ASN1OctetString passphrase;
private DERUTF8String comment;
public RevokeRequest(X500Name name,
ASN1Integer serialNumber,
CRLReason reason,
ASN1GeneralizedTime invalidityDate,
ASN1OctetString passphrase,
DERUTF8String comment)
{
this.name = name;
this.serialNumber = serialNumber;
this.reason = reason;
this.invalidityDate = invalidityDate;
this.passphrase = passphrase;
this.comment = comment;
}
private RevokeRequest(ASN1Sequence seq)
{
if (seq.size() < 3 || seq.size() > 6)
{
throw new IllegalArgumentException("incorrect sequence size");
}
this.name = X500Name.getInstance(seq.getObjectAt(0));
this.serialNumber = ASN1Integer.getInstance(seq.getObjectAt(1));
this.reason = CRLReason.getInstance(seq.getObjectAt(2));
int index = 3;
if (seq.size() > index && seq.getObjectAt(index).toASN1Primitive() instanceof ASN1GeneralizedTime)
{
this.invalidityDate = ASN1GeneralizedTime.getInstance(seq.getObjectAt(index++));
}
if (seq.size() > index && seq.getObjectAt(index).toASN1Primitive() instanceof ASN1OctetString)
{
this.passphrase = ASN1OctetString.getInstance(seq.getObjectAt(index++));
}
if (seq.size() > index && seq.getObjectAt(index).toASN1Primitive() instanceof DERUTF8String)
{
this.comment = DERUTF8String.getInstance(seq.getObjectAt(index));
}
}
public static RevokeRequest getInstance(Object o)
{
if (o instanceof RevokeRequest)
{
return (RevokeRequest)o;
}
if (o != null)
{
return new RevokeRequest(ASN1Sequence.getInstance(o));
}
return null;
}
public X500Name getName()
{
return name;
}
public BigInteger getSerialNumber()
{
return serialNumber.getValue();
}
public CRLReason getReason()
{
return reason;
}
public ASN1GeneralizedTime getInvalidityDate()
{
return invalidityDate;
}
public void setInvalidityDate(ASN1GeneralizedTime invalidityDate)
{
this.invalidityDate = invalidityDate;
}
public ASN1OctetString getPassphrase()
{
return passphrase;
}
public void setPassphrase(ASN1OctetString passphrase)
{
this.passphrase = passphrase;
}
public DERUTF8String getComment()
{
return comment;
}
public void setComment(DERUTF8String comment)
{
this.comment = comment;
}
public byte[] getPassPhrase()
{
if (passphrase != null)
{
return Arrays.clone(passphrase.getOctets());
}
return null;
}
public ASN1Primitive toASN1Primitive()
{
ASN1EncodableVector v = new ASN1EncodableVector();
v.add(name);
v.add(serialNumber);
v.add(reason);
if (invalidityDate != null)
{
v.add(invalidityDate);
}
if (passphrase != null)
{
v.add(passphrase);
}
if (comment != null)
{
v.add(comment);
}
return new DERSequence(v);
}
}