102 lines
4.2 KiB
C#
102 lines
4.2 KiB
C#
#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 System.Collections;
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using System.IO;
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto.Parameters;
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Security;
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.IO;
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namespace BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto.Tls
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{
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public class TlsDheKeyExchange
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: TlsDHKeyExchange
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{
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protected TlsSignerCredentials mServerCredentials = null;
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[Obsolete("Use constructor that takes a TlsDHVerifier")]
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public TlsDheKeyExchange(int keyExchange, IList supportedSignatureAlgorithms, DHParameters dhParameters)
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: this(keyExchange, supportedSignatureAlgorithms, new DefaultTlsDHVerifier(), dhParameters)
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{
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}
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public TlsDheKeyExchange(int keyExchange, IList supportedSignatureAlgorithms, TlsDHVerifier dhVerifier, DHParameters dhParameters)
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: base(keyExchange, supportedSignatureAlgorithms, dhVerifier, dhParameters)
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{
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}
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public override void ProcessServerCredentials(TlsCredentials serverCredentials)
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{
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if (!(serverCredentials is TlsSignerCredentials))
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throw new TlsFatalAlert(AlertDescription.internal_error);
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ProcessServerCertificate(serverCredentials.Certificate);
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this.mServerCredentials = (TlsSignerCredentials)serverCredentials;
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}
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public override byte[] GenerateServerKeyExchange()
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{
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if (this.mDHParameters == null)
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throw new TlsFatalAlert(AlertDescription.internal_error);
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DigestInputBuffer buf = new DigestInputBuffer();
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this.mDHAgreePrivateKey = TlsDHUtilities.GenerateEphemeralServerKeyExchange(mContext.SecureRandom,
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this.mDHParameters, buf);
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/*
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* RFC 5246 4.7. digitally-signed element needs SignatureAndHashAlgorithm from TLS 1.2
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*/
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SignatureAndHashAlgorithm signatureAndHashAlgorithm = TlsUtilities.GetSignatureAndHashAlgorithm(
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mContext, mServerCredentials);
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IDigest d = TlsUtilities.CreateHash(signatureAndHashAlgorithm);
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SecurityParameters securityParameters = mContext.SecurityParameters;
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d.BlockUpdate(securityParameters.clientRandom, 0, securityParameters.clientRandom.Length);
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d.BlockUpdate(securityParameters.serverRandom, 0, securityParameters.serverRandom.Length);
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buf.UpdateDigest(d);
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byte[] hash = DigestUtilities.DoFinal(d);
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byte[] signature = mServerCredentials.GenerateCertificateSignature(hash);
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DigitallySigned signed_params = new DigitallySigned(signatureAndHashAlgorithm, signature);
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signed_params.Encode(buf);
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return buf.ToArray();
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}
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public override void ProcessServerKeyExchange(Stream input)
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{
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SecurityParameters securityParameters = mContext.SecurityParameters;
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SignerInputBuffer buf = new SignerInputBuffer();
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Stream teeIn = new TeeInputStream(input, buf);
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this.mDHParameters = TlsDHUtilities.ReceiveDHParameters(mDHVerifier, teeIn);
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this.mDHAgreePublicKey = new DHPublicKeyParameters(TlsDHUtilities.ReadDHParameter(teeIn), mDHParameters);
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DigitallySigned signed_params = ParseSignature(input);
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ISigner signer = InitVerifyer(mTlsSigner, signed_params.Algorithm, securityParameters);
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buf.UpdateSigner(signer);
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if (!signer.VerifySignature(signed_params.Signature))
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throw new TlsFatalAlert(AlertDescription.decrypt_error);
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}
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protected virtual ISigner InitVerifyer(TlsSigner tlsSigner, SignatureAndHashAlgorithm algorithm,
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SecurityParameters securityParameters)
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{
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ISigner signer = tlsSigner.CreateVerifyer(algorithm, this.mServerPublicKey);
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signer.BlockUpdate(securityParameters.clientRandom, 0, securityParameters.clientRandom.Length);
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signer.BlockUpdate(securityParameters.serverRandom, 0, securityParameters.serverRandom.Length);
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return signer;
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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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