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The Bouncy Castle Crypto package is a Java implementation of cryptographic algorithms. This jar contains JCE provider for the Bouncy Castle Cryptography APIs for JDK 1.5 to JDK 1.7.

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package org.spongycastle.asn1.cms;

import java.io.IOException;

import org.spongycastle.asn1.ASN1Encodable;
import org.spongycastle.asn1.ASN1Integer;
import org.spongycastle.asn1.ASN1OctetString;
import org.spongycastle.asn1.ASN1SequenceParser;
import org.spongycastle.asn1.ASN1SetParser;
import org.spongycastle.asn1.ASN1TaggedObjectParser;
import org.spongycastle.asn1.BERTags;

/**
 * Produce an object suitable for an ASN1OutputStream.
 * 
 * 
 * AuthEnvelopedData ::= SEQUENCE {
 *   version CMSVersion,
 *   originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
 *   recipientInfos RecipientInfos,
 *   authEncryptedContentInfo EncryptedContentInfo,
 *   authAttrs [1] IMPLICIT AuthAttributes OPTIONAL,
 *   mac MessageAuthenticationCode,
 *   unauthAttrs [2] IMPLICIT UnauthAttributes OPTIONAL }
 * 
*/ public class AuthEnvelopedDataParser { private ASN1SequenceParser seq; private ASN1Integer version; private ASN1Encodable nextObject; private boolean originatorInfoCalled; public AuthEnvelopedDataParser(ASN1SequenceParser seq) throws IOException { this.seq = seq; // TODO // "It MUST be set to 0." this.version = ASN1Integer.getInstance(seq.readObject()); } public ASN1Integer getVersion() { return version; } public OriginatorInfo getOriginatorInfo() throws IOException { originatorInfoCalled = true; if (nextObject == null) { nextObject = seq.readObject(); } if (nextObject instanceof ASN1TaggedObjectParser && ((ASN1TaggedObjectParser)nextObject).getTagNo() == 0) { ASN1SequenceParser originatorInfo = (ASN1SequenceParser) ((ASN1TaggedObjectParser)nextObject).getObjectParser(BERTags.SEQUENCE, false); nextObject = null; return OriginatorInfo.getInstance(originatorInfo.toASN1Primitive()); } return null; } public ASN1SetParser getRecipientInfos() throws IOException { if (!originatorInfoCalled) { getOriginatorInfo(); } if (nextObject == null) { nextObject = seq.readObject(); } ASN1SetParser recipientInfos = (ASN1SetParser)nextObject; nextObject = null; return recipientInfos; } public EncryptedContentInfoParser getAuthEncryptedContentInfo() throws IOException { if (nextObject == null) { nextObject = seq.readObject(); } if (nextObject != null) { ASN1SequenceParser o = (ASN1SequenceParser) nextObject; nextObject = null; return new EncryptedContentInfoParser(o); } return null; } public ASN1SetParser getAuthAttrs() throws IOException { if (nextObject == null) { nextObject = seq.readObject(); } if (nextObject instanceof ASN1TaggedObjectParser) { ASN1Encodable o = nextObject; nextObject = null; return (ASN1SetParser)((ASN1TaggedObjectParser)o).getObjectParser(BERTags.SET, false); } // TODO // "The authAttrs MUST be present if the content type carried in // EncryptedContentInfo is not id-data." return null; } public ASN1OctetString getMac() throws IOException { if (nextObject == null) { nextObject = seq.readObject(); } ASN1Encodable o = nextObject; nextObject = null; return ASN1OctetString.getInstance(o.toASN1Primitive()); } public ASN1SetParser getUnauthAttrs() throws IOException { if (nextObject == null) { nextObject = seq.readObject(); } if (nextObject != null) { ASN1Encodable o = nextObject; nextObject = null; return (ASN1SetParser)((ASN1TaggedObjectParser)o).getObjectParser(BERTags.SET, false); } return null; } }




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