f3e3aab35a
Former-commit-id: 9c2cb47f45fa221e661ab616387c9cda183f283d
451 lines
13 KiB
C#
451 lines
13 KiB
C#
// Transport Security Layer (TLS)
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// Copyright (c) 2003-2004 Carlos Guzman Alvarez
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// Copyright (C) 2004, 2006-2010 Novell, Inc (http://www.novell.com)
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//
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// Permission is hereby granted, free of charge, to any person obtaining
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// a copy of this software and associated documentation files (the
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// "Software"), to deal in the Software without restriction, including
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// without limitation the rights to use, copy, modify, merge, publish,
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// distribute, sublicense, and/or sell copies of the Software, and to
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// permit persons to whom the Software is furnished to do so, subject to
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// the following conditions:
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//
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// The above copyright notice and this permission notice shall be
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// included in all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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// EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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// NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
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// LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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// OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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// WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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//
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using System;
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using System.Net;
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using System.Collections;
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using System.Globalization;
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using System.Text.RegularExpressions;
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using System.Security.Cryptography;
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using X509Cert = System.Security.Cryptography.X509Certificates;
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using Mono.Security.X509;
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using Mono.Security.X509.Extensions;
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using Mono.Security.Interface;
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namespace Mono.Security.Protocol.Tls.Handshake.Client
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{
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internal class TlsServerCertificate : HandshakeMessage
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{
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#region Fields
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private X509CertificateCollection certificates;
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#endregion
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#region Constructors
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public TlsServerCertificate(Context context, byte[] buffer)
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: base(context, HandshakeType.Certificate, buffer)
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{
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}
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#endregion
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#region Methods
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public override void Update()
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{
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base.Update();
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this.Context.ServerSettings.Certificates = this.certificates;
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this.Context.ServerSettings.UpdateCertificateRSA();
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}
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#endregion
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#region Protected Methods
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protected override void ProcessAsSsl3()
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{
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this.ProcessAsTls1();
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}
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protected override void ProcessAsTls1()
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{
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this.certificates = new X509CertificateCollection();
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int readed = 0;
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int length = this.ReadInt24();
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while (readed < length)
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{
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// Read certificate length
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int certLength = ReadInt24();
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// Increment readed
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readed += 3;
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if (certLength > 0)
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{
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// Read certificate data
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byte[] buffer = this.ReadBytes(certLength);
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// Create a new X509 Certificate
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X509Certificate certificate = new X509Certificate(buffer);
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certificates.Add(certificate);
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readed += certLength;
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DebugHelper.WriteLine(
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String.Format("Server Certificate {0}", certificates.Count),
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buffer);
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}
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}
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this.validateCertificates(certificates);
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}
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#endregion
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#region Private Methods
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// Note: this method only works for RSA certificates
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// DH certificates requires some changes - does anyone use one ?
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private bool checkCertificateUsage (X509Certificate cert)
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{
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ClientContext context = (ClientContext)this.Context;
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// certificate extensions are required for this
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// we "must" accept older certificates without proofs
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if (cert.Version < 3)
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return true;
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KeyUsages ku = KeyUsages.none;
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switch (context.Negotiating.Cipher.ExchangeAlgorithmType)
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{
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case ExchangeAlgorithmType.RsaSign:
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ku = KeyUsages.digitalSignature;
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break;
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case ExchangeAlgorithmType.RsaKeyX:
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ku = KeyUsages.keyEncipherment;
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break;
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case ExchangeAlgorithmType.DiffieHellman:
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ku = KeyUsages.keyAgreement;
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break;
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case ExchangeAlgorithmType.Fortezza:
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return false; // unsupported certificate type
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}
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KeyUsageExtension kux = null;
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ExtendedKeyUsageExtension eku = null;
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X509Extension xtn = cert.Extensions ["2.5.29.15"];
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if (xtn != null)
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kux = new KeyUsageExtension (xtn);
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xtn = cert.Extensions ["2.5.29.37"];
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if (xtn != null)
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eku = new ExtendedKeyUsageExtension (xtn);
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if ((kux != null) && (eku != null))
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{
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// RFC3280 states that when both KeyUsageExtension and
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// ExtendedKeyUsageExtension are present then BOTH should
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// be valid
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if (!kux.Support (ku))
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return false;
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return (eku.KeyPurpose.Contains ("1.3.6.1.5.5.7.3.1") ||
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eku.KeyPurpose.Contains ("2.16.840.1.113730.4.1"));
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}
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else if (kux != null)
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{
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return kux.Support (ku);
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}
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else if (eku != null)
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{
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// Server Authentication (1.3.6.1.5.5.7.3.1) or
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// Netscape Server Gated Crypto (2.16.840.1.113730.4)
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return (eku.KeyPurpose.Contains ("1.3.6.1.5.5.7.3.1") ||
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eku.KeyPurpose.Contains ("2.16.840.1.113730.4.1"));
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}
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// last chance - try with older (deprecated) Netscape extensions
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xtn = cert.Extensions ["2.16.840.1.113730.1.1"];
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if (xtn != null)
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{
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NetscapeCertTypeExtension ct = new NetscapeCertTypeExtension (xtn);
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return ct.Support (NetscapeCertTypeExtension.CertTypes.SslServer);
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}
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// if the CN=host (checked later) then we assume this is meant for SSL/TLS
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// e.g. the new smtp.gmail.com certificate
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return true;
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}
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private void validateCertificates(X509CertificateCollection certificates)
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{
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ClientContext context = (ClientContext)this.Context;
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AlertDescription description = AlertDescription.BadCertificate;
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#if INSIDE_SYSTEM
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// This helps the linker to remove a lot of validation code that will never be used since
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// System.dll will, for OSX and iOS, uses the operating system X.509 certificate validations
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RemoteValidation (context, description);
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#else
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if (context.SslStream.HaveRemoteValidation2Callback)
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RemoteValidation (context, description);
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else
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LocalValidation (context, description);
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#endif
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}
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void RemoteValidation (ClientContext context, AlertDescription description)
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{
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ValidationResult res = context.SslStream.RaiseServerCertificateValidation2 (certificates);
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if (res.Trusted)
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return;
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long error = res.ErrorCode;
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switch (error) {
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case 0x800B0101:
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description = AlertDescription.CertificateExpired;
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break;
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case 0x800B010A:
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description = AlertDescription.UnknownCA;
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break;
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case 0x800B0109:
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description = AlertDescription.UnknownCA;
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break;
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default:
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description = AlertDescription.CertificateUnknown;
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break;
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}
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string err = String.Format ("Invalid certificate received from server. Error code: 0x{0:x}", error);
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throw new TlsException (description, err);
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}
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void LocalValidation (ClientContext context, AlertDescription description)
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{
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// the leaf is the web server certificate
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X509Certificate leaf = certificates [0];
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X509Cert.X509Certificate cert = new X509Cert.X509Certificate (leaf.RawData);
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ArrayList errors = new ArrayList();
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// SSL specific check - not all certificates can be
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// used to server-side SSL some rules applies after
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// all ;-)
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if (!checkCertificateUsage (leaf))
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{
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// WinError.h CERT_E_PURPOSE 0x800B0106
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errors.Add ((int)-2146762490);
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}
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// SSL specific check - does the certificate match
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// the host ?
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if (!checkServerIdentity (leaf))
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{
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// WinError.h CERT_E_CN_NO_MATCH 0x800B010F
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errors.Add ((int)-2146762481);
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}
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// Note: building and verifying a chain can take much time
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// so we do it last (letting simple things fails first)
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// Note: In TLS the certificates MUST be in order (and
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// optionally include the root certificate) so we're not
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// building the chain using LoadCertificate (it's faster)
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// Note: IIS doesn't seem to send the whole certificate chain
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// but only the server certificate :-( it's assuming that you
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// already have this chain installed on your computer. duh!
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// http://groups.google.ca/groups?q=IIS+server+certificate+chain&hl=en&lr=&ie=UTF-8&oe=UTF-8&selm=85058s%24avd%241%40nnrp1.deja.com&rnum=3
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// we must remove the leaf certificate from the chain
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X509CertificateCollection chain = new X509CertificateCollection (certificates);
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chain.Remove (leaf);
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X509Chain verify = new X509Chain (chain);
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bool result = false;
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try
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{
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result = verify.Build (leaf);
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}
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catch (Exception)
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{
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result = false;
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}
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if (!result)
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{
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switch (verify.Status)
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{
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case X509ChainStatusFlags.InvalidBasicConstraints:
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// WinError.h TRUST_E_BASIC_CONSTRAINTS 0x80096019
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errors.Add ((int)-2146869223);
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break;
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case X509ChainStatusFlags.NotSignatureValid:
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// WinError.h TRUST_E_BAD_DIGEST 0x80096010
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errors.Add ((int)-2146869232);
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break;
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case X509ChainStatusFlags.NotTimeNested:
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// WinError.h CERT_E_VALIDITYPERIODNESTING 0x800B0102
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errors.Add ((int)-2146762494);
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break;
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case X509ChainStatusFlags.NotTimeValid:
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// WinError.h CERT_E_EXPIRED 0x800B0101
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description = AlertDescription.CertificateExpired;
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errors.Add ((int)-2146762495);
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break;
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case X509ChainStatusFlags.PartialChain:
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// WinError.h CERT_E_CHAINING 0x800B010A
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description = AlertDescription.UnknownCA;
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errors.Add ((int)-2146762486);
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break;
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case X509ChainStatusFlags.UntrustedRoot:
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// WinError.h CERT_E_UNTRUSTEDROOT 0x800B0109
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description = AlertDescription.UnknownCA;
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errors.Add ((int)-2146762487);
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break;
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default:
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// unknown error
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description = AlertDescription.CertificateUnknown;
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errors.Add ((int)verify.Status);
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break;
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}
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}
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int[] certificateErrors = (int[])errors.ToArray(typeof(int));
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if (!context.SslStream.RaiseServerCertificateValidation(
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cert,
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certificateErrors))
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{
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throw new TlsException(
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description,
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"Invalid certificate received from server.");
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}
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}
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// RFC2818 - HTTP Over TLS, Section 3.1
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// http://www.ietf.org/rfc/rfc2818.txt
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//
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// 1. if present MUST use subjectAltName dNSName as identity
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// 1.1. if multiples entries a match of any one is acceptable
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// 1.2. wildcard * is acceptable
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// 2. URI may be an IP address -> subjectAltName.iPAddress
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// 2.1. exact match is required
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// 3. Use of the most specific Common Name (CN=) in the Subject
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// 3.1 Existing practice but DEPRECATED
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private bool checkServerIdentity (X509Certificate cert)
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{
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ClientContext context = (ClientContext)this.Context;
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string targetHost = context.ClientSettings.TargetHost;
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X509Extension ext = cert.Extensions ["2.5.29.17"];
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// 1. subjectAltName
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if (ext != null)
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{
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SubjectAltNameExtension subjectAltName = new SubjectAltNameExtension (ext);
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// 1.1 - multiple dNSName
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foreach (string dns in subjectAltName.DNSNames)
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{
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// 1.2 TODO - wildcard support
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if (Match (targetHost, dns))
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return true;
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}
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// 2. ipAddress
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foreach (string ip in subjectAltName.IPAddresses)
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{
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// 2.1. Exact match required
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if (ip == targetHost)
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return true;
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}
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}
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// 3. Common Name (CN=)
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return checkDomainName (cert.SubjectName);
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}
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private bool checkDomainName(string subjectName)
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{
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ClientContext context = (ClientContext)this.Context;
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string domainName = String.Empty;
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Regex search = new Regex(@"CN\s*=\s*([^,]*)");
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MatchCollection elements = search.Matches(subjectName);
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if (elements.Count == 1)
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{
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if (elements[0].Success)
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{
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domainName = elements[0].Groups[1].Value.ToString();
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}
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}
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return Match (context.ClientSettings.TargetHost, domainName);
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}
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// ensure the pattern is valid wrt to RFC2595 and RFC2818
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// http://www.ietf.org/rfc/rfc2595.txt
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// http://www.ietf.org/rfc/rfc2818.txt
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static bool Match (string hostname, string pattern)
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{
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// check if this is a pattern
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int index = pattern.IndexOf ('*');
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if (index == -1) {
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// not a pattern, do a direct case-insensitive comparison
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return (String.Compare (hostname, pattern, true, CultureInfo.InvariantCulture) == 0);
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}
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// check pattern validity
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// A "*" wildcard character MAY be used as the left-most name component in the certificate.
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// unless this is the last char (valid)
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if (index != pattern.Length - 1) {
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// then the next char must be a dot .'.
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if (pattern [index + 1] != '.')
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return false;
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}
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// only one (A) wildcard is supported
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int i2 = pattern.IndexOf ('*', index + 1);
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if (i2 != -1)
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return false;
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// match the end of the pattern
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string end = pattern.Substring (index + 1);
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int length = hostname.Length - end.Length;
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// no point to check a pattern that is longer than the hostname
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if (length <= 0)
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return false;
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if (String.Compare (hostname, length, end, 0, end.Length, true, CultureInfo.InvariantCulture) != 0)
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return false;
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// special case, we start with the wildcard
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if (index == 0) {
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// ensure we hostname non-matched part (start) doesn't contain a dot
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int i3 = hostname.IndexOf ('.');
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return ((i3 == -1) || (i3 >= (hostname.Length - end.Length)));
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}
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// match the start of the pattern
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string start = pattern.Substring (0, index);
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return (String.Compare (hostname, 0, start, 0, start.Length, true, CultureInfo.InvariantCulture) == 0);
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}
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#endregion
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}
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}
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