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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 with debug enabled.
package org.bouncycastle.asn1.cms;
import org.bouncycastle.asn1.ASN1Choice;
import org.bouncycastle.asn1.ASN1Encodable;
import org.bouncycastle.asn1.ASN1Integer;
import org.bouncycastle.asn1.ASN1Object;
import org.bouncycastle.asn1.ASN1Primitive;
import org.bouncycastle.asn1.ASN1Sequence;
import org.bouncycastle.asn1.ASN1TaggedObject;
import org.bouncycastle.asn1.DERTaggedObject;
/**
* RFC 5652:
* Content encryption key delivery mechanisms.
*
*
* RecipientInfo ::= CHOICE {
* ktri KeyTransRecipientInfo,
* kari [1] KeyAgreeRecipientInfo,
* kekri [2] KEKRecipientInfo,
* pwri [3] PasswordRecipientInfo,
* ori [4] OtherRecipientInfo }
*
*/
public class RecipientInfo
extends ASN1Object
implements ASN1Choice
{
ASN1Encodable info;
public RecipientInfo(
KeyTransRecipientInfo info)
{
this.info = info;
}
public RecipientInfo(
KeyAgreeRecipientInfo info)
{
this.info = new DERTaggedObject(false, 1, info);
}
public RecipientInfo(
KEKRecipientInfo info)
{
this.info = new DERTaggedObject(false, 2, info);
}
public RecipientInfo(
PasswordRecipientInfo info)
{
this.info = new DERTaggedObject(false, 3, info);
}
public RecipientInfo(
OtherRecipientInfo info)
{
this.info = new DERTaggedObject(false, 4, info);
}
public RecipientInfo(
ASN1Primitive info)
{
this.info = info;
}
/**
* Return a RecipientInfo object from the given object.
*
* Accepted inputs:
*
* - null → null
*
- {@link RecipientInfo} object
*
- {@link org.bouncycastle.asn1.ASN1Sequence#getInstance(java.lang.Object) ASN1Sequence} input formats with RecipientInfo structure inside
*
- {@link org.bouncycastle.asn1.ASN1TaggedObject#getInstance(java.lang.Object) ASN1TaggedObject} input formats with RecipientInfo structure inside
*
*
* @param o the object we want converted.
* @exception IllegalArgumentException if the object cannot be converted.
*/
public static RecipientInfo getInstance(
Object o)
{
if (o == null || o instanceof RecipientInfo)
{
return (RecipientInfo)o;
}
else if (o instanceof ASN1Sequence)
{
return new RecipientInfo((ASN1Sequence)o);
}
else if (o instanceof ASN1TaggedObject)
{
return new RecipientInfo((ASN1TaggedObject)o);
}
throw new IllegalArgumentException("unknown object in factory: "
+ o.getClass().getName());
}
public ASN1Integer getVersion()
{
if (info instanceof ASN1TaggedObject)
{
ASN1TaggedObject o = (ASN1TaggedObject)info;
switch (o.getTagNo())
{
case 1:
return KeyAgreeRecipientInfo.getInstance(o, false).getVersion();
case 2:
return getKEKInfo(o).getVersion();
case 3:
return PasswordRecipientInfo.getInstance(o, false).getVersion();
case 4:
return new ASN1Integer(0); // no syntax version for OtherRecipientInfo
default:
throw new IllegalStateException("unknown tag");
}
}
return KeyTransRecipientInfo.getInstance(info).getVersion();
}
public boolean isTagged()
{
return (info instanceof ASN1TaggedObject);
}
public ASN1Encodable getInfo()
{
if (info instanceof ASN1TaggedObject)
{
ASN1TaggedObject o = (ASN1TaggedObject)info;
switch (o.getTagNo())
{
case 1:
return KeyAgreeRecipientInfo.getInstance(o, false);
case 2:
return getKEKInfo(o);
case 3:
return PasswordRecipientInfo.getInstance(o, false);
case 4:
return OtherRecipientInfo.getInstance(o, false);
default:
throw new IllegalStateException("unknown tag");
}
}
return KeyTransRecipientInfo.getInstance(info);
}
private KEKRecipientInfo getKEKInfo(ASN1TaggedObject o)
{
if (o.isExplicit())
{ // compatibilty with erroneous version
return KEKRecipientInfo.getInstance(o, true);
}
else
{
return KEKRecipientInfo.getInstance(o, false);
}
}
/**
* Produce an object suitable for an ASN1OutputStream.
*/
public ASN1Primitive toASN1Primitive()
{
return info.toASN1Primitive();
}
}
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