/// <summary> /// Verify the signature of the message headers. /// </summary> /// <remarks> /// Verifies the signature of the message headers. /// </remarks> /// <param name="options">The formatting options.</param> /// <param name="message">The signed MIME message.</param> /// <param name="dkimSignature">The DKIM-Signature or ARC-Message-Signature header.</param> /// <param name="signatureAlgorithm">The algorithm used to sign the message headers.</param> /// <param name="key">The public key used to verify the signature.</param> /// <param name="headers">The list of headers that were signed.</param> /// <param name="canonicalizationAlgorithm">The algorithm used to canonicalize the headers.</param> /// <param name="signature">The expected signature of the headers encoded in base64.</param> /// <returns><c>true</c> if the calculated signature matches <paramref name="signature"/>; otherwise, <c>false</c>.</returns> protected bool VerifySignature(FormatOptions options, MimeMessage message, Header dkimSignature, DkimSignatureAlgorithm signatureAlgorithm, AsymmetricKeyParameter key, string[] headers, DkimCanonicalizationAlgorithm canonicalizationAlgorithm, string signature) { using (var stream = new DkimSignatureStream(CreateVerifyContext(signatureAlgorithm, key))) { using (var filtered = new FilteredStream(stream)) { filtered.Add(options.CreateNewLineFilter()); WriteHeaders(options, message, headers, canonicalizationAlgorithm, filtered); // now include the DKIM-Signature header that we are verifying, // but only after removing the "b=" signature value. var header = GetSignedSignatureHeader(dkimSignature); switch (canonicalizationAlgorithm) { case DkimCanonicalizationAlgorithm.Relaxed: WriteHeaderRelaxed(options, filtered, header, true); break; default: WriteHeaderSimple(options, filtered, header, true); break; } filtered.Flush(); } return(stream.VerifySignature(signature)); } }
async Task <bool> VerifyArcSealAsync(FormatOptions options, ArcHeaderSet[] sets, int i, bool doAsync, CancellationToken cancellationToken) { DkimSignatureAlgorithm algorithm; AsymmetricKeyParameter key; string d, s, q, b; ValidateArcSealParameters(sets[i].ArcSealParameters, out algorithm, out d, out s, out q, out b); if (!IsEnabled(algorithm)) { return(false); } if (doAsync) { key = await PublicKeyLocator.LocatePublicKeyAsync(q, d, s, cancellationToken).ConfigureAwait(false); } else { key = PublicKeyLocator.LocatePublicKey(q, d, s, cancellationToken); } if ((key is RsaKeyParameters rsa) && rsa.Modulus.BitLength < MinimumRsaKeyLength) { return(false); } options = options.Clone(); options.NewLineFormat = NewLineFormat.Dos; using (var stream = new DkimSignatureStream(CreateVerifyContext(algorithm, key))) { using (var filtered = new FilteredStream(stream)) { filtered.Add(options.CreateNewLineFilter()); for (int j = 0; j < i; j++) { WriteHeaderRelaxed(options, filtered, sets[j].ArcAuthenticationResult, false); WriteHeaderRelaxed(options, filtered, sets[j].ArcMessageSignature, false); WriteHeaderRelaxed(options, filtered, sets[j].ArcSeal, false); } WriteHeaderRelaxed(options, filtered, sets[i].ArcAuthenticationResult, false); WriteHeaderRelaxed(options, filtered, sets[i].ArcMessageSignature, false); // now include the ARC-Seal header that we are verifying, // but only after removing the "b=" signature value. var seal = GetSignedSignatureHeader(sets[i].ArcSeal); WriteHeaderRelaxed(options, filtered, seal, true); filtered.Flush(); } return(stream.VerifySignature(b)); } }
Header GenerateArcMessageSignature(FormatOptions options, MimeMessage message, int instance, TimeSpan t, IList <string> headers) { if (message.MimeVersion == null && message.Body != null && message.Body.Headers.Count > 0) { message.MimeVersion = new Version(1, 0); } var value = CreateArcHeaderBuilder(instance); byte[] signature, hash; Header ams; value.AppendFormat("; d={0}; s={1}", Domain, Selector); value.AppendFormat("; c={0}/{1}", HeaderCanonicalizationAlgorithm.ToString().ToLowerInvariant(), BodyCanonicalizationAlgorithm.ToString().ToLowerInvariant()); value.AppendFormat("; t={0}", (long)t.TotalSeconds); using (var stream = new DkimSignatureStream(CreateSigningContext())) { using (var filtered = new FilteredStream(stream)) { filtered.Add(options.CreateNewLineFilter()); // write the specified message headers DkimVerifierBase.WriteHeaders(options, message, headers, HeaderCanonicalizationAlgorithm, filtered); value.AppendFormat("; h={0}", string.Join(":", headers.ToArray())); hash = message.HashBody(options, SignatureAlgorithm, BodyCanonicalizationAlgorithm, -1); value.AppendFormat("; bh={0}", Convert.ToBase64String(hash)); value.Append("; b="); ams = new Header(HeaderId.ArcMessageSignature, value.ToString()); switch (HeaderCanonicalizationAlgorithm) { case DkimCanonicalizationAlgorithm.Relaxed: DkimVerifierBase.WriteHeaderRelaxed(options, filtered, ams, true); break; default: DkimVerifierBase.WriteHeaderSimple(options, filtered, ams, true); break; } filtered.Flush(); } signature = stream.GenerateSignature(); ams.Value += Convert.ToBase64String(signature); return(ams); } }
Header GenerateArcSeal(FormatOptions options, int instance, TimeSpan t, ArcHeaderSet[] sets, int count, Header aar, Header ams) { var value = CreateArcHeaderBuilder(instance); byte[] signature; Header seal; // FIXME: where should this value come from? value.Append("; cv=pass"); value.AppendFormat("; d={0}; s={1}", Domain, Selector); value.AppendFormat("; t={0}", (long)t.TotalSeconds); using (var stream = new DkimSignatureStream(CreateSigningContext())) { using (var filtered = new FilteredStream(stream)) { filtered.Add(options.CreateNewLineFilter()); for (int i = 0; i < count; i++) { DkimVerifierBase.WriteHeaderRelaxed(options, filtered, sets[i].ArcAuthenticationResult, false); DkimVerifierBase.WriteHeaderRelaxed(options, filtered, sets[i].ArcMessageSignature, false); DkimVerifierBase.WriteHeaderRelaxed(options, filtered, sets[i].ArcSeal, false); } DkimVerifierBase.WriteHeaderRelaxed(options, filtered, aar, false); DkimVerifierBase.WriteHeaderRelaxed(options, filtered, ams, false); value.Append("; b="); seal = new Header(HeaderId.ArcSeal, value.ToString()); DkimVerifierBase.WriteHeaderRelaxed(options, filtered, seal, true); filtered.Flush(); } signature = stream.GenerateSignature(); seal.Value += Convert.ToBase64String(signature); return(seal); } }
async Task <bool> VerifyAsync(FormatOptions options, MimeMessage message, Header dkimSignature, bool doAsync, CancellationToken cancellationToken) { if (options == null) { throw new ArgumentNullException(nameof(options)); } if (message == null) { throw new ArgumentNullException(nameof(message)); } if (dkimSignature == null) { throw new ArgumentNullException(nameof(dkimSignature)); } if (dkimSignature.Id != HeaderId.DkimSignature) { throw new ArgumentException("The signature parameter MUST be a DKIM-Signature header.", nameof(dkimSignature)); } var parameters = ParseParameterTags(dkimSignature.Id, dkimSignature.Value); DkimCanonicalizationAlgorithm headerAlgorithm, bodyAlgorithm; DkimSignatureAlgorithm signatureAlgorithm; AsymmetricKeyParameter key; string d, s, q, bh, b; string[] headers; int maxLength; ValidateDkimSignatureParameters(parameters, out signatureAlgorithm, out headerAlgorithm, out bodyAlgorithm, out d, out s, out q, out headers, out bh, out b, out maxLength); if (!IsEnabled(signatureAlgorithm)) { return(false); } if (doAsync) { key = await PublicKeyLocator.LocatePublicKeyAsync(q, d, s, cancellationToken).ConfigureAwait(false); } else { key = PublicKeyLocator.LocatePublicKey(q, d, s, cancellationToken); } if ((key is RsaKeyParameters rsa) && rsa.Modulus.BitLength < MinimumRsaKeyLength) { return(false); } options = options.Clone(); options.NewLineFormat = NewLineFormat.Dos; // first check the body hash (if that's invalid, then the entire signature is invalid) var hash = Convert.ToBase64String(message.HashBody(options, signatureAlgorithm, bodyAlgorithm, maxLength)); if (hash != bh) { return(false); } using (var stream = new DkimSignatureStream(CreateVerifyContext(signatureAlgorithm, key))) { using (var filtered = new FilteredStream(stream)) { filtered.Add(options.CreateNewLineFilter()); WriteHeaders(options, message, headers, headerAlgorithm, filtered); // now include the DKIM-Signature header that we are verifying, // but only after removing the "b=" signature value. var header = GetSignedSignatureHeader(dkimSignature); switch (headerAlgorithm) { case DkimCanonicalizationAlgorithm.Relaxed: WriteHeaderRelaxed(options, filtered, header, true); break; default: WriteHeaderSimple(options, filtered, header, true); break; } filtered.Flush(); } return(stream.VerifySignature(b)); } }
void DkimSign(FormatOptions options, MimeMessage message, IList <string> headers) { var value = new StringBuilder("v=1"); var t = GetTimestamp(); byte[] signature, hash; Header dkim; options = options.Clone(); options.NewLineFormat = NewLineFormat.Dos; options.EnsureNewLine = true; switch (SignatureAlgorithm) { case DkimSignatureAlgorithm.Ed25519Sha256: value.Append("; a=ed25519-sha256"); break; case DkimSignatureAlgorithm.RsaSha256: value.Append("; a=rsa-sha256"); break; default: value.Append("; a=rsa-sha1"); break; } value.AppendFormat("; d={0}; s={1}", Domain, Selector); value.AppendFormat("; c={0}/{1}", HeaderCanonicalizationAlgorithm.ToString().ToLowerInvariant(), BodyCanonicalizationAlgorithm.ToString().ToLowerInvariant()); if (!string.IsNullOrEmpty(QueryMethod)) { value.AppendFormat("; q={0}", QueryMethod); } if (!string.IsNullOrEmpty(AgentOrUserIdentifier)) { value.AppendFormat("; i={0}", AgentOrUserIdentifier); } value.AppendFormat("; t={0}", t); using (var stream = new DkimSignatureStream(CreateSigningContext())) { using (var filtered = new FilteredStream(stream)) { filtered.Add(options.CreateNewLineFilter()); // write the specified message headers DkimVerifierBase.WriteHeaders(options, message, headers, HeaderCanonicalizationAlgorithm, filtered); value.AppendFormat("; h={0}", string.Join(":", headers.ToArray())); hash = message.HashBody(options, SignatureAlgorithm, BodyCanonicalizationAlgorithm, -1); value.AppendFormat("; bh={0}", Convert.ToBase64String(hash)); value.Append("; b="); dkim = new Header(HeaderId.DkimSignature, value.ToString()); message.Headers.Insert(0, dkim); switch (HeaderCanonicalizationAlgorithm) { case DkimCanonicalizationAlgorithm.Relaxed: DkimVerifierBase.WriteHeaderRelaxed(options, filtered, dkim, true); break; default: DkimVerifierBase.WriteHeaderSimple(options, filtered, dkim, true); break; } filtered.Flush(); } signature = stream.GenerateSignature(); dkim.Value += Convert.ToBase64String(signature); } }