227 lines
5.4 KiB
C#
227 lines
5.4 KiB
C#
using System;
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using System.Collections;
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using System.IO;
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using Org.BouncyCastle.Asn1.X509;
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using Org.BouncyCastle.Crypto.Parameters;
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using Org.BouncyCastle.Security;
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namespace Org.BouncyCastle.Crypto.Tls;
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public class TlsECDHKeyExchange : AbstractTlsKeyExchange
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{
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protected TlsSigner mTlsSigner;
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protected int[] mNamedCurves;
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protected byte[] mClientECPointFormats;
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protected byte[] mServerECPointFormats;
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protected AsymmetricKeyParameter mServerPublicKey;
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protected TlsAgreementCredentials mAgreementCredentials;
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protected ECPrivateKeyParameters mECAgreePrivateKey;
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protected ECPublicKeyParameters mECAgreePublicKey;
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public override bool RequiresServerKeyExchange
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{
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get
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{
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switch (mKeyExchange)
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{
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case 17:
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case 19:
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case 20:
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return true;
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default:
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return false;
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}
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}
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}
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public TlsECDHKeyExchange(int keyExchange, IList supportedSignatureAlgorithms, int[] namedCurves, byte[] clientECPointFormats, byte[] serverECPointFormats)
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: base(keyExchange, supportedSignatureAlgorithms)
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{
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switch (keyExchange)
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{
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case 19:
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mTlsSigner = new TlsRsaSigner();
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break;
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case 17:
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mTlsSigner = new TlsECDsaSigner();
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break;
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case 16:
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case 18:
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case 20:
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mTlsSigner = null;
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break;
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default:
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throw new InvalidOperationException("unsupported key exchange algorithm");
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}
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mNamedCurves = namedCurves;
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mClientECPointFormats = clientECPointFormats;
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mServerECPointFormats = serverECPointFormats;
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}
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public override void Init(TlsContext context)
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{
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base.Init(context);
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if (mTlsSigner != null)
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{
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mTlsSigner.Init(context);
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}
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}
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public override void SkipServerCredentials()
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{
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if (mKeyExchange != 20)
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{
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throw new TlsFatalAlert(10);
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}
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}
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public override void ProcessServerCertificate(Certificate serverCertificate)
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{
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if (mKeyExchange == 20)
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{
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throw new TlsFatalAlert(10);
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}
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if (serverCertificate.IsEmpty)
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{
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throw new TlsFatalAlert(42);
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}
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X509CertificateStructure certificateAt = serverCertificate.GetCertificateAt(0);
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SubjectPublicKeyInfo subjectPublicKeyInfo = certificateAt.SubjectPublicKeyInfo;
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try
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{
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mServerPublicKey = PublicKeyFactory.CreateKey(subjectPublicKeyInfo);
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}
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catch (Exception alertCause)
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{
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throw new TlsFatalAlert(43, alertCause);
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}
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if (mTlsSigner == null)
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{
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try
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{
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mECAgreePublicKey = TlsEccUtilities.ValidateECPublicKey((ECPublicKeyParameters)mServerPublicKey);
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}
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catch (InvalidCastException alertCause2)
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{
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throw new TlsFatalAlert(46, alertCause2);
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}
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TlsUtilities.ValidateKeyUsage(certificateAt, 8);
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}
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else
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{
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if (!mTlsSigner.IsValidPublicKey(mServerPublicKey))
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{
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throw new TlsFatalAlert(46);
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}
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TlsUtilities.ValidateKeyUsage(certificateAt, 128);
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}
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base.ProcessServerCertificate(serverCertificate);
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}
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public override byte[] GenerateServerKeyExchange()
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{
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if (!RequiresServerKeyExchange)
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{
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return null;
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}
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MemoryStream memoryStream = new MemoryStream();
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mECAgreePrivateKey = TlsEccUtilities.GenerateEphemeralServerKeyExchange(mContext.SecureRandom, mNamedCurves, mClientECPointFormats, memoryStream);
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return memoryStream.ToArray();
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}
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public override void ProcessServerKeyExchange(Stream input)
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{
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if (!RequiresServerKeyExchange)
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{
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throw new TlsFatalAlert(10);
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}
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ECDomainParameters curve_params = TlsEccUtilities.ReadECParameters(mNamedCurves, mClientECPointFormats, input);
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byte[] encoding = TlsUtilities.ReadOpaque8(input);
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mECAgreePublicKey = TlsEccUtilities.ValidateECPublicKey(TlsEccUtilities.DeserializeECPublicKey(mClientECPointFormats, curve_params, encoding));
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}
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public override void ValidateCertificateRequest(CertificateRequest certificateRequest)
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{
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if (mKeyExchange == 20)
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{
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throw new TlsFatalAlert(40);
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}
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byte[] certificateTypes = certificateRequest.CertificateTypes;
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for (int i = 0; i < certificateTypes.Length; i++)
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{
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switch (certificateTypes[i])
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{
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case 1:
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case 2:
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case 64:
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case 65:
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case 66:
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continue;
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}
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throw new TlsFatalAlert(47);
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}
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}
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public override void ProcessClientCredentials(TlsCredentials clientCredentials)
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{
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if (mKeyExchange == 20)
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{
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throw new TlsFatalAlert(80);
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}
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if (clientCredentials is TlsAgreementCredentials)
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{
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mAgreementCredentials = (TlsAgreementCredentials)clientCredentials;
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}
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else if (!(clientCredentials is TlsSignerCredentials))
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{
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throw new TlsFatalAlert(80);
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}
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}
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public override void GenerateClientKeyExchange(Stream output)
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{
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if (mAgreementCredentials == null)
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{
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mECAgreePrivateKey = TlsEccUtilities.GenerateEphemeralClientKeyExchange(mContext.SecureRandom, mServerECPointFormats, mECAgreePublicKey.Parameters, output);
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}
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}
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public override void ProcessClientCertificate(Certificate clientCertificate)
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{
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if (mKeyExchange == 20)
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{
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throw new TlsFatalAlert(10);
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}
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}
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public override void ProcessClientKeyExchange(Stream input)
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{
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if (mECAgreePublicKey == null)
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{
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byte[] encoding = TlsUtilities.ReadOpaque8(input);
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ECDomainParameters parameters = mECAgreePrivateKey.Parameters;
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mECAgreePublicKey = TlsEccUtilities.ValidateECPublicKey(TlsEccUtilities.DeserializeECPublicKey(mServerECPointFormats, parameters, encoding));
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}
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}
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public override byte[] GeneratePremasterSecret()
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{
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if (mAgreementCredentials != null)
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{
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return mAgreementCredentials.GenerateAgreement(mECAgreePublicKey);
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}
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if (mECAgreePrivateKey != null)
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{
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return TlsEccUtilities.CalculateECDHBasicAgreement(mECAgreePublicKey, mECAgreePrivateKey);
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}
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throw new TlsFatalAlert(80);
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}
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}
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