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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 1.4.
package org.bouncycastle.asn1;
import java.io.IOException;
public final class ASN1ObjectDescriptor
extends ASN1Primitive
{
static final ASN1UniversalType TYPE = new ASN1UniversalType(ASN1ObjectDescriptor.class, BERTags.OBJECT_DESCRIPTOR)
{
ASN1Primitive fromImplicitPrimitive(DEROctetString octetString)
{
return new ASN1ObjectDescriptor(
(ASN1GraphicString)ASN1GraphicString.TYPE.fromImplicitPrimitive(octetString));
}
ASN1Primitive fromImplicitConstructed(ASN1Sequence sequence)
{
return new ASN1ObjectDescriptor(
(ASN1GraphicString)ASN1GraphicString.TYPE.fromImplicitConstructed(sequence));
}
};
/**
* Return an ObjectDescriptor from the passed in object.
*
* @param obj an ASN1ObjectDescriptor or an object that can be converted into one.
* @exception IllegalArgumentException if the object cannot be converted.
* @return an ASN1ObjectDescriptor instance, or null.
*/
public static ASN1ObjectDescriptor getInstance(Object obj)
{
if (obj == null || obj instanceof ASN1ObjectDescriptor)
{
return (ASN1ObjectDescriptor)obj;
}
else if (obj instanceof ASN1Encodable)
{
ASN1Primitive primitive = ((ASN1Encodable)obj).toASN1Primitive();
if (primitive instanceof ASN1ObjectDescriptor)
{
return (ASN1ObjectDescriptor)primitive;
}
}
else if (obj instanceof byte[])
{
try
{
return (ASN1ObjectDescriptor)TYPE.fromByteArray((byte[])obj);
}
catch (IOException e)
{
throw new IllegalArgumentException("failed to construct object descriptor from byte[]: " + e.getMessage());
}
}
throw new IllegalArgumentException("illegal object in getInstance: " + obj.getClass().getName());
}
/**
* Return an ObjectDescriptor from a tagged object.
*
* @param taggedObject the tagged object holding the object we want.
* @param explicit true if the object is meant to be explicitly tagged,
* false otherwise.
* @exception IllegalArgumentException if the tagged object cannot be converted.
* @return an ASN1ObjectDescriptor instance, or null.
*/
public static ASN1ObjectDescriptor getInstance(ASN1TaggedObject taggedObject, boolean explicit)
{
return (ASN1ObjectDescriptor)TYPE.getContextInstance(taggedObject, explicit);
}
private final ASN1GraphicString baseGraphicString;
public ASN1ObjectDescriptor(ASN1GraphicString baseGraphicString)
{
if (null == baseGraphicString)
{
throw new NullPointerException("'baseGraphicString' cannot be null");
}
this.baseGraphicString = baseGraphicString;
}
public ASN1GraphicString getBaseGraphicString()
{
return baseGraphicString;
}
boolean encodeConstructed()
{
return false;
}
int encodedLength(boolean withTag)
{
return baseGraphicString.encodedLength(withTag);
}
void encode(ASN1OutputStream out, boolean withTag) throws IOException
{
out.writeIdentifier(withTag, BERTags.OBJECT_DESCRIPTOR);
baseGraphicString.encode(out, false);
}
ASN1Primitive toDERObject()
{
ASN1GraphicString der = (ASN1GraphicString)baseGraphicString.toDERObject();
return der == baseGraphicString ? this : new ASN1ObjectDescriptor(der);
}
ASN1Primitive toDLObject()
{
ASN1GraphicString dl = (ASN1GraphicString)baseGraphicString.toDLObject();
return dl == baseGraphicString ? this : new ASN1ObjectDescriptor(dl);
}
boolean asn1Equals(ASN1Primitive other)
{
if (!(other instanceof ASN1ObjectDescriptor))
{
return false;
}
ASN1ObjectDescriptor that = (ASN1ObjectDescriptor)other;
return this.baseGraphicString.asn1Equals(that.baseGraphicString);
}
public int hashCode()
{
return ~baseGraphicString.hashCode();
}
static ASN1ObjectDescriptor createPrimitive(byte[] contents)
{
return new ASN1ObjectDescriptor(ASN1GraphicString.createPrimitive(contents));
}
}
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