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232
Packages/com.tivadar.best.http/Runtime/3rdParty/BouncyCastle/asn1/cmp/PKIHeader.cs
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232
Packages/com.tivadar.best.http/Runtime/3rdParty/BouncyCastle/asn1/cmp/PKIHeader.cs
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#if !BESTHTTP_DISABLE_ALTERNATE_SSL && (!UNITY_WEBGL || UNITY_EDITOR)
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#pragma warning disable
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using System;
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using Best.HTTP.SecureProtocol.Org.BouncyCastle.Asn1.X509;
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using Best.HTTP.SecureProtocol.Org.BouncyCastle.Utilities;
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namespace Best.HTTP.SecureProtocol.Org.BouncyCastle.Asn1.Cmp
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{
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public class PkiHeader
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: Asn1Encodable
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{
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/**
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* Value for a "null" recipient or sender.
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*/
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public static readonly GeneralName NULL_NAME = new GeneralName(X509Name.GetInstance(new DerSequence()));
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public static readonly int CMP_1999 = 1;
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public static readonly int CMP_2000 = 2;
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private readonly DerInteger pvno;
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private readonly GeneralName sender;
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private readonly GeneralName recipient;
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private readonly Asn1GeneralizedTime messageTime;
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private readonly AlgorithmIdentifier protectionAlg;
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private readonly Asn1OctetString senderKID; // KeyIdentifier
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private readonly Asn1OctetString recipKID; // KeyIdentifier
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private readonly Asn1OctetString transactionID;
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private readonly Asn1OctetString senderNonce;
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private readonly Asn1OctetString recipNonce;
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private readonly PkiFreeText freeText;
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private readonly Asn1Sequence generalInfo;
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private PkiHeader(Asn1Sequence seq)
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{
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pvno = DerInteger.GetInstance(seq[0]);
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sender = GeneralName.GetInstance(seq[1]);
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recipient = GeneralName.GetInstance(seq[2]);
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for (int pos = 3; pos < seq.Count; ++pos)
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{
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Asn1TaggedObject tObj = (Asn1TaggedObject)seq[pos];
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switch (tObj.TagNo)
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{
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case 0:
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messageTime = Asn1GeneralizedTime.GetInstance(tObj, true);
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break;
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case 1:
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protectionAlg = AlgorithmIdentifier.GetInstance(tObj, true);
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break;
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case 2:
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senderKID = Asn1OctetString.GetInstance(tObj, true);
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break;
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case 3:
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recipKID = Asn1OctetString.GetInstance(tObj, true);
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break;
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case 4:
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transactionID = Asn1OctetString.GetInstance(tObj, true);
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break;
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case 5:
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senderNonce = Asn1OctetString.GetInstance(tObj, true);
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break;
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case 6:
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recipNonce = Asn1OctetString.GetInstance(tObj, true);
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break;
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case 7:
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freeText = PkiFreeText.GetInstance(tObj, true);
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break;
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case 8:
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generalInfo = Asn1Sequence.GetInstance(tObj, true);
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break;
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default:
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throw new ArgumentException("unknown tag number: " + tObj.TagNo, nameof(seq));
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}
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}
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}
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public static PkiHeader GetInstance(object obj)
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{
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if (obj is PkiHeader)
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return (PkiHeader)obj;
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if (obj is Asn1Sequence)
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return new PkiHeader((Asn1Sequence)obj);
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throw new ArgumentException("Invalid object: " + Org.BouncyCastle.Utilities.Platform.GetTypeName(obj), "obj");
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}
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public PkiHeader(
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int pvno,
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GeneralName sender,
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GeneralName recipient)
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: this(new DerInteger(pvno), sender, recipient)
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{
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}
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private PkiHeader(
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DerInteger pvno,
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GeneralName sender,
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GeneralName recipient)
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{
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this.pvno = pvno;
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this.sender = sender;
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this.recipient = recipient;
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}
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public virtual DerInteger Pvno
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{
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get { return pvno; }
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}
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public virtual GeneralName Sender
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{
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get { return sender; }
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}
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public virtual GeneralName Recipient
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{
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get { return recipient; }
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}
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public virtual Asn1GeneralizedTime MessageTime
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{
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get { return messageTime; }
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}
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public virtual AlgorithmIdentifier ProtectionAlg
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{
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get { return protectionAlg; }
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}
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public virtual Asn1OctetString SenderKID
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{
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get { return senderKID; }
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}
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public virtual Asn1OctetString RecipKID
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{
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get { return recipKID; }
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}
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public virtual Asn1OctetString TransactionID
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{
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get { return transactionID; }
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}
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public virtual Asn1OctetString SenderNonce
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{
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get { return senderNonce; }
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}
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public virtual Asn1OctetString RecipNonce
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{
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get { return recipNonce; }
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}
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public virtual PkiFreeText FreeText
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{
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get { return freeText; }
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}
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public virtual InfoTypeAndValue[] GetGeneralInfo()
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{
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if (generalInfo == null)
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{
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return null;
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}
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InfoTypeAndValue[] results = new InfoTypeAndValue[generalInfo.Count];
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for (int i = 0; i < results.Length; i++)
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{
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results[i] = InfoTypeAndValue.GetInstance(generalInfo[i]);
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}
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return results;
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}
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/**
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* <pre>
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* PkiHeader ::= SEQUENCE {
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* pvno INTEGER { cmp1999(1), cmp2000(2) },
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* sender GeneralName,
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* -- identifies the sender
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* recipient GeneralName,
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* -- identifies the intended recipient
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* messageTime [0] GeneralizedTime OPTIONAL,
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* -- time of production of this message (used when sender
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* -- believes that the transport will be "suitable"; i.e.,
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* -- that the time will still be meaningful upon receipt)
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* protectionAlg [1] AlgorithmIdentifier OPTIONAL,
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* -- algorithm used for calculation of protection bits
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* senderKID [2] KeyIdentifier OPTIONAL,
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* recipKID [3] KeyIdentifier OPTIONAL,
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* -- to identify specific keys used for protection
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* transactionID [4] OCTET STRING OPTIONAL,
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* -- identifies the transaction; i.e., this will be the same in
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* -- corresponding request, response, certConf, and PKIConf
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* -- messages
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* senderNonce [5] OCTET STRING OPTIONAL,
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* recipNonce [6] OCTET STRING OPTIONAL,
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* -- nonces used to provide replay protection, senderNonce
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* -- is inserted by the creator of this message; recipNonce
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* -- is a nonce previously inserted in a related message by
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* -- the intended recipient of this message
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* freeText [7] PKIFreeText OPTIONAL,
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* -- this may be used to indicate context-specific instructions
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* -- (this field is intended for human consumption)
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* generalInfo [8] SEQUENCE SIZE (1..MAX) OF
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* InfoTypeAndValue OPTIONAL
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* -- this may be used to convey context-specific information
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* -- (this field not primarily intended for human consumption)
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* }
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* </pre>
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* @return a basic ASN.1 object representation.
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*/
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public override Asn1Object ToAsn1Object()
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{
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Asn1EncodableVector v = new Asn1EncodableVector(pvno, sender, recipient);
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v.AddOptionalTagged(true, 0, messageTime);
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v.AddOptionalTagged(true, 1, protectionAlg);
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v.AddOptionalTagged(true, 2, senderKID);
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v.AddOptionalTagged(true, 3, recipKID);
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v.AddOptionalTagged(true, 4, transactionID);
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v.AddOptionalTagged(true, 5, senderNonce);
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v.AddOptionalTagged(true, 6, recipNonce);
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v.AddOptionalTagged(true, 7, freeText);
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v.AddOptionalTagged(true, 8, generalInfo);
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return new DerSequence(v);
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}
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}
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}
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#pragma warning restore
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#endif
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