5629f3698d
Review follow-ups on MqttConnection (Task 3): - Every certificate test asserted rejection, so the accept branch was unreachable-by-regression. Adds a leaf genuinely issued by the pinned CA and asserts acceptance. - ValidateAgainstPinnedCa never seeded ChainPolicy.ExtraStore from the incoming chain, so a leaf behind an intermediate delivered during the handshake failed despite a legitimate path to the pinned root. Seeds from both the incoming chain's elements and its ExtraStore; CustomRootTrust still means only the pinned roots may terminate the chain. - A DisposeAsync racing an in-flight connect escaped as an unclassified exception; it now folds into ObjectDisposedException. - Promotes the single-caller concurrency invariant into the type remarks, with the accurate blast radius (a leaked live connection, not a benign throw). Serialising the lifecycle remains Task 4's job. - X509Chain.Build can throw; an exception escaping a TLS validation callback is an opaque handshake crash, so it is caught and refused. - Adds a connect-retry test (Task 4's reconnect loop reuses the instance) and a disposed-then-connect test. Claude-Session: https://claude.ai/code/session_01GASWkNEi68FSCtvr6rLoEW
526 lines
22 KiB
C#
526 lines
22 KiB
C#
using System.Diagnostics;
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using System.Net;
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using System.Net.Security;
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using System.Net.Sockets;
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using System.Security.Cryptography;
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using System.Security.Cryptography.X509Certificates;
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using MQTTnet;
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using Shouldly;
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using Xunit;
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namespace ZB.MOM.WW.OtOpcUa.Driver.Mqtt.Tests;
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/// <summary>
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/// Covers <see cref="MqttConnection"/>'s two Task-3 responsibilities: the pure
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/// <see cref="MqttConnection.BuildClientOptions"/> options assembly (TLS / CA pin /
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/// credentials / protocol knobs) and the bounded <see cref="MqttConnection.ConnectAsync"/>
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/// deadline.
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/// </summary>
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public sealed class MqttConnectionTests
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{
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private const string Host = "broker.example.test";
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// ---------------------------------------------------------------------------------
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// Bounded connect (the R2-01 frozen-peer lesson: no unbounded wait on a dead broker)
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// ---------------------------------------------------------------------------------
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/// <summary>
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/// A broker that completes the TCP handshake but never answers CONNACK is the shape that
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/// actually wedges a client — a refused port returns ECONNREFUSED instantly and would pass
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/// whether or not any deadline logic existed.
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/// </summary>
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[Fact]
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public async Task ConnectAsync_BlackholeBroker_FailsWithinDeadline_NoHang()
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{
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using var blackhole = new BlackholeBroker();
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var opts = new MqttDriverOptions
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{
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Host = "127.0.0.1", Port = blackhole.Port, UseTls = false, ConnectTimeoutSeconds = 2,
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};
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await using var conn = new MqttConnection(opts, driverId: "t", logger: null);
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var sw = Stopwatch.StartNew();
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await Should.ThrowAsync<Exception>(async () => await conn.ConnectAsync(CancellationToken.None));
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sw.Stop();
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sw.Elapsed.ShouldBeLessThan(TimeSpan.FromSeconds(10));
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conn.IsConnected.ShouldBeFalse();
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}
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/// <summary>
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/// Falsifiability control for the linked-CTS wiring specifically: the configured connect
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/// deadline is 60 s, so the only thing that can end this call inside 10 s is the caller's
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/// token actually reaching MQTTnet. Drop the <c>CreateLinkedTokenSource</c> and this test
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/// hangs for a minute.
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/// </summary>
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[Fact]
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public async Task ConnectAsync_CallerCancellation_ObservedLongBeforeConnectDeadline()
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{
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using var blackhole = new BlackholeBroker();
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var opts = new MqttDriverOptions
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{
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Host = "127.0.0.1", Port = blackhole.Port, UseTls = false, ConnectTimeoutSeconds = 60,
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};
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await using var conn = new MqttConnection(opts, driverId: "t", logger: null);
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using var caller = new CancellationTokenSource(TimeSpan.FromMilliseconds(300));
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var sw = Stopwatch.StartNew();
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await Should.ThrowAsync<OperationCanceledException>(async () => await conn.ConnectAsync(caller.Token));
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sw.Stop();
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sw.Elapsed.ShouldBeLessThan(TimeSpan.FromSeconds(10));
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}
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/// <summary>
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/// The deadline leg is distinguishable from a caller cancellation — a timed-out connect
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/// surfaces <see cref="TimeoutException"/>, not a bare <see cref="OperationCanceledException"/>,
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/// so an operator can tell "broker never answered" from "we were asked to stop".
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/// </summary>
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[Fact]
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public async Task ConnectAsync_DeadlineElapsed_ThrowsTimeoutException()
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{
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using var blackhole = new BlackholeBroker();
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var opts = new MqttDriverOptions
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{
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Host = "127.0.0.1", Port = blackhole.Port, UseTls = false, ConnectTimeoutSeconds = 1,
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};
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await using var conn = new MqttConnection(opts, driverId: "t", logger: null);
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await Should.ThrowAsync<TimeoutException>(async () => await conn.ConnectAsync(CancellationToken.None));
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}
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/// <summary>
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/// Task 4's reconnect loop retries connect on the SAME instance, reusing the
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/// <c>IMqttClient</c> held across failures. A failed attempt must therefore leave the
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/// connection usable rather than poisoned.
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/// </summary>
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[Fact]
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public async Task ConnectAsync_CanBeRetriedOnTheSameInstanceAfterAFailedAttempt()
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{
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using var blackhole = new BlackholeBroker();
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var opts = new MqttDriverOptions
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{
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Host = "127.0.0.1", Port = blackhole.Port, UseTls = false, ConnectTimeoutSeconds = 1,
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};
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await using var conn = new MqttConnection(opts, driverId: "t", logger: null);
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await Should.ThrowAsync<TimeoutException>(async () => await conn.ConnectAsync(CancellationToken.None));
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// Second attempt reaches the broker again and fails the same way — not ObjectDisposed,
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// not a null client, not a silently-swallowed no-op.
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await Should.ThrowAsync<TimeoutException>(async () => await conn.ConnectAsync(CancellationToken.None));
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conn.IsConnected.ShouldBeFalse();
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}
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/// <summary>
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/// Connecting a disposed instance is an <see cref="ObjectDisposedException"/> — the same
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/// classification the in-flight dispose race folds into. Dispose is idempotent.
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/// </summary>
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[Fact]
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public async Task ConnectAsync_AfterDispose_ThrowsObjectDisposed_AndDisposeIsIdempotent()
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{
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var opts = new MqttDriverOptions { Host = "127.0.0.1", Port = 1, UseTls = false, ConnectTimeoutSeconds = 1 };
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var conn = new MqttConnection(opts, driverId: "t", logger: null);
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await conn.DisposeAsync();
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await conn.DisposeAsync();
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await Should.ThrowAsync<ObjectDisposedException>(async () => await conn.ConnectAsync(CancellationToken.None));
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}
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/// <summary>Never log or throw credentials — the plan's cross-cutting secrets rule.</summary>
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[Fact]
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public async Task ConnectAsync_Failure_DoesNotLeakPasswordIntoExceptionMessage()
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{
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const string secret = "sup3r-s3cret-broker-pw";
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using var blackhole = new BlackholeBroker();
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var opts = new MqttDriverOptions
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{
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Host = "127.0.0.1",
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Port = blackhole.Port,
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UseTls = false,
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ConnectTimeoutSeconds = 1,
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Username = "svc",
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Password = secret,
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};
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await using var conn = new MqttConnection(opts, driverId: "t", logger: null);
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var ex = await Should.ThrowAsync<Exception>(async () => await conn.ConnectAsync(CancellationToken.None));
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ex.ToString().ShouldNotContain(secret);
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}
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// ---------------------------------------------------------------------------------
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// BuildClientOptions — pure assembly, no I/O
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// ---------------------------------------------------------------------------------
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[Fact]
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public void BuildClientOptions_UseTlsWithCaPin_SetsTlsAndInstallsChainValidator()
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{
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var opts = new MqttDriverOptions
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{
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Host = Host,
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Port = 8883,
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UseTls = true,
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AllowUntrustedServerCertificate = false,
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CaCertificatePath = "/tmp/ca.pem",
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};
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var tls = BuildTls(opts);
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tls.UseTls.ShouldBeTrue();
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tls.TargetHost.ShouldBe(Host);
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tls.AllowUntrustedCertificates.ShouldBeFalse();
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tls.IgnoreCertificateChainErrors.ShouldBeFalse();
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tls.CertificateValidationHandler.ShouldNotBeNull();
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}
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/// <summary>
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/// The CA file is read lazily inside the validation callback, never by the builder — so a
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/// path that does not exist yet must not throw at build time, and must fail the *connection*
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/// closed when the handshake finally asks.
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/// </summary>
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[Fact]
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public void BuildClientOptions_CaPinPathMissing_BuildsWithoutIo_AndValidatorFailsClosed()
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{
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var missing = Path.Combine(Path.GetTempPath(), $"otopcua-mqtt-no-such-ca-{Guid.NewGuid():N}.pem");
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File.Exists(missing).ShouldBeFalse();
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var opts = new MqttDriverOptions { Host = Host, Port = 8883, UseTls = true, CaCertificatePath = missing };
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var built = MqttConnection.BuildClientOptions(opts, clientIdSuffix: null);
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var tls = built.ChannelOptions.ShouldBeOfType<MqttClientTcpOptions>().TlsOptions;
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tls.CertificateValidationHandler.ShouldNotBeNull();
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using var stranger = SelfSignedLeaf(Host);
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tls.CertificateValidationHandler(ValidationArgs(built, stranger)).ShouldBeFalse();
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}
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/// <summary>An untrusted, unpinned server certificate is rejected — the pin actually validates.</summary>
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[Fact]
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public void BuildClientOptions_CaPin_RejectsCertificateNotIssuedByThePinnedCa()
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{
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using var ca = IssueCa(issuer: null, "otopcua-test-ca", validDays: 30);
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var caPath = WritePem(ca);
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try
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{
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var opts = new MqttDriverOptions { Host = Host, Port = 8883, UseTls = true, CaCertificatePath = caPath };
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var built = MqttConnection.BuildClientOptions(opts, clientIdSuffix: null);
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var tls = built.ChannelOptions.ShouldBeOfType<MqttClientTcpOptions>().TlsOptions;
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using var stranger = SelfSignedLeaf(Host);
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tls.CertificateValidationHandler!(ValidationArgs(built, stranger)).ShouldBeFalse();
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}
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finally
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{
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File.Delete(caPath);
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}
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}
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/// <summary>
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/// The accept path. Without this every certificate test asserts rejection, so deleting the
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/// <c>return true</c> — or getting <c>TrustMode</c> / <c>CustomTrustStore</c> wrong — would
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/// leave the suite green while no broker could ever connect.
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/// </summary>
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[Fact]
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public void BuildClientOptions_CaPin_AcceptsLeafIssuedByThePinnedCa()
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{
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using var ca = IssueCa(issuer: null, "otopcua-test-ca", validDays: 30);
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using var leaf = IssueLeaf(ca, Host, validDays: 20);
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var caPath = WritePem(ca);
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try
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{
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var opts = new MqttDriverOptions { Host = Host, Port = 8883, UseTls = true, CaCertificatePath = caPath };
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var built = MqttConnection.BuildClientOptions(opts, clientIdSuffix: null);
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var tls = built.ChannelOptions.ShouldBeOfType<MqttClientTcpOptions>().TlsOptions;
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tls.CertificateValidationHandler!(ValidationArgs(built, leaf)).ShouldBeTrue();
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}
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finally
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{
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File.Delete(caPath);
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}
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}
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/// <summary>
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/// The common real-world broker topology: the leaf is signed by an intermediate that chains
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/// to the pinned root, and the intermediate is delivered in the handshake rather than being
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/// installed locally. Only the pinned ROOT is written to the CA file — the intermediate must
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/// be picked up from what the broker presented.
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/// </summary>
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[Fact]
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public void BuildClientOptions_CaPin_AcceptsLeafBehindAnIntermediateThatTheBrokerPresented()
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{
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using var root = IssueCa(issuer: null, "otopcua-test-root", validDays: 30);
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using var intermediate = IssueCa(root, "otopcua-test-intermediate", validDays: 25);
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using var leaf = IssueLeaf(intermediate, Host, validDays: 20);
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var caPath = WritePem(root);
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try
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{
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var opts = new MqttDriverOptions { Host = Host, Port = 8883, UseTls = true, CaCertificatePath = caPath };
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var built = MqttConnection.BuildClientOptions(opts, clientIdSuffix: null);
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var tls = built.ChannelOptions.ShouldBeOfType<MqttClientTcpOptions>().TlsOptions;
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tls.CertificateValidationHandler!(ValidationArgs(built, leaf, intermediate)).ShouldBeTrue();
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}
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finally
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{
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File.Delete(caPath);
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}
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}
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/// <summary>Default posture: OS trust store, no custom handler, escape hatch off.</summary>
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[Fact]
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public void BuildClientOptions_TlsWithoutCaPin_LeavesOsTrustStoreValidationInPlace()
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{
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var opts = new MqttDriverOptions { Host = Host, Port = 8883, UseTls = true };
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var tls = BuildTls(opts);
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tls.UseTls.ShouldBeTrue();
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tls.CertificateValidationHandler.ShouldBeNull();
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tls.AllowUntrustedCertificates.ShouldBeFalse();
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tls.IgnoreCertificateChainErrors.ShouldBeFalse();
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tls.IgnoreCertificateRevocationErrors.ShouldBeFalse();
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}
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/// <summary>The dev/on-prem escape hatch only opens when explicitly asked for.</summary>
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[Fact]
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public void BuildClientOptions_AllowUntrustedServerCertificate_OpensEscapeHatch()
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{
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var opts = new MqttDriverOptions
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{
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Host = Host, Port = 8883, UseTls = true, AllowUntrustedServerCertificate = true,
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};
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var tls = BuildTls(opts);
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tls.AllowUntrustedCertificates.ShouldBeTrue();
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tls.IgnoreCertificateChainErrors.ShouldBeTrue();
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tls.CertificateValidationHandler.ShouldNotBeNull();
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}
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[Fact]
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public void BuildClientOptions_UseTlsFalse_KeepsTlsOffAndInstallsNoValidator()
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{
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var opts = new MqttDriverOptions
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{
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Host = Host, Port = 1883, UseTls = false, AllowUntrustedServerCertificate = true, CaCertificatePath = "/tmp/ca.pem",
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};
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var tls = BuildTls(opts);
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tls.UseTls.ShouldBeFalse();
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tls.CertificateValidationHandler.ShouldBeNull();
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tls.AllowUntrustedCertificates.ShouldBeFalse();
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}
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[Fact]
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public void BuildClientOptions_MapsProtocolAndSessionKnobs()
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{
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var opts = new MqttDriverOptions
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{
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Host = Host,
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Port = 8883,
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ClientId = "otopcua-node-1",
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ProtocolVersion = MqttProtocolVersion.V311,
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CleanSession = false,
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KeepAliveSeconds = 45,
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ConnectTimeoutSeconds = 7,
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};
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var built = MqttConnection.BuildClientOptions(opts, clientIdSuffix: null);
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built.ProtocolVersion.ShouldBe(MQTTnet.Formatter.MqttProtocolVersion.V311);
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built.ClientId.ShouldBe("otopcua-node-1");
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built.CleanSession.ShouldBeFalse();
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built.KeepAlivePeriod.ShouldBe(TimeSpan.FromSeconds(45));
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built.Timeout.ShouldBe(TimeSpan.FromSeconds(7));
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var tcp = built.ChannelOptions.ShouldBeOfType<MqttClientTcpOptions>();
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tcp.RemoteEndpoint.ShouldBeOfType<DnsEndPoint>().Host.ShouldBe(Host);
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tcp.RemoteEndpoint.ShouldBeOfType<DnsEndPoint>().Port.ShouldBe(8883);
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}
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[Fact]
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public void BuildClientOptions_ClientIdSuffix_IsAppended()
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{
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var opts = new MqttDriverOptions { Host = Host, ClientId = "otopcua" };
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MqttConnection.BuildClientOptions(opts, clientIdSuffix: "-browse").ClientId.ShouldBe("otopcua-browse");
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}
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[Fact]
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public void BuildClientOptions_NoUsername_SendsNoCredentials()
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=> MqttConnection.BuildClientOptions(new MqttDriverOptions { Host = Host }, clientIdSuffix: null)
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.Credentials.ShouldBeNull();
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[Fact]
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public void BuildClientOptions_Username_SendsCredentials()
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{
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var opts = new MqttDriverOptions { Host = Host, Username = "svc", Password = "pw" };
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var built = MqttConnection.BuildClientOptions(opts, clientIdSuffix: null);
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built.Credentials.ShouldNotBeNull();
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built.Credentials.GetUserName(built).ShouldBe("svc");
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}
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/// <summary>The ctor must not touch the network — the universal-browser throwaway-instance pattern.</summary>
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[Fact]
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public void Ctor_IsConnectionFree()
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{
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var opts = new MqttDriverOptions { Host = "127.0.0.1", Port = 1, UseTls = false };
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var conn = new MqttConnection(opts, driverId: "t", logger: null);
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conn.IsConnected.ShouldBeFalse();
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}
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// ---------------------------------------------------------------------------------
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// helpers
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// ---------------------------------------------------------------------------------
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private static MqttClientTlsOptions BuildTls(MqttDriverOptions opts)
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=> MqttConnection.BuildClientOptions(opts, clientIdSuffix: null)
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.ChannelOptions.ShouldBeOfType<MqttClientTcpOptions>().TlsOptions;
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private static readonly DateTimeOffset NotBefore = DateTimeOffset.UtcNow.AddDays(-1);
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/// <summary>A CA certificate, self-signed when <paramref name="issuer"/> is null.</summary>
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private static X509Certificate2 IssueCa(X509Certificate2? issuer, string commonName, int validDays)
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{
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using var key = RSA.Create(2048);
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var request = new CertificateRequest($"CN={commonName}", key, HashAlgorithmName.SHA256, RSASignaturePadding.Pkcs1);
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request.CertificateExtensions.Add(new X509BasicConstraintsExtension(true, false, 0, true));
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request.CertificateExtensions.Add(
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new X509KeyUsageExtension(X509KeyUsageFlags.KeyCertSign | X509KeyUsageFlags.CrlSign, true));
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request.CertificateExtensions.Add(new X509SubjectKeyIdentifierExtension(request.PublicKey, false));
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if (issuer is null)
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{
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return request.CreateSelfSigned(NotBefore, NotBefore.AddDays(validDays));
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}
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// Create() drops the private key; an intermediate needs it back to sign its own children.
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using var issued = request.Create(issuer, NotBefore, NotBefore.AddDays(validDays), NextSerial());
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return issued.CopyWithPrivateKey(key);
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}
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/// <summary>A server (end-entity) certificate signed by <paramref name="issuer"/>.</summary>
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private static X509Certificate2 IssueLeaf(X509Certificate2 issuer, string commonName, int validDays)
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{
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using var key = RSA.Create(2048);
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var request = new CertificateRequest($"CN={commonName}", key, HashAlgorithmName.SHA256, RSASignaturePadding.Pkcs1);
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request.CertificateExtensions.Add(new X509BasicConstraintsExtension(false, false, 0, true));
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request.CertificateExtensions.Add(
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new X509KeyUsageExtension(X509KeyUsageFlags.DigitalSignature | X509KeyUsageFlags.KeyEncipherment, true));
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request.CertificateExtensions.Add(
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new X509EnhancedKeyUsageExtension([new Oid("1.3.6.1.5.5.7.3.1")], false)); // serverAuth
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request.CertificateExtensions.Add(new X509SubjectKeyIdentifierExtension(request.PublicKey, false));
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return request.Create(issuer, NotBefore, NotBefore.AddDays(validDays), NextSerial());
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}
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/// <summary>A self-signed leaf that chains to nothing — the "stranger" a pin must reject.</summary>
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private static X509Certificate2 SelfSignedLeaf(string commonName)
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{
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using var key = RSA.Create(2048);
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var request = new CertificateRequest($"CN={commonName}", key, HashAlgorithmName.SHA256, RSASignaturePadding.Pkcs1);
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return request.CreateSelfSigned(NotBefore, NotBefore.AddDays(20));
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}
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private static byte[] NextSerial() => RandomNumberGenerator.GetBytes(8);
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private static string WritePem(params X509Certificate2[] certificates)
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{
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var path = Path.Combine(Path.GetTempPath(), $"otopcua-mqtt-ca-{Guid.NewGuid():N}.pem");
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File.WriteAllText(path, string.Join(Environment.NewLine, certificates.Select(c => c.ExportCertificatePem())));
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return path;
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}
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/// <summary>
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/// Mimics what <c>SslStream</c> hands a validation callback: the presented leaf plus a chain
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/// carrying whatever intermediates the peer supplied. The chain is built (and allowed to
|
|
/// fail) purely so <c>ChainElements</c> is populated the way the platform would populate it.
|
|
/// </summary>
|
|
private static MqttClientCertificateValidationEventArgs ValidationArgs(
|
|
MqttClientOptions built,
|
|
X509Certificate2 leaf,
|
|
params X509Certificate2[] presentedIntermediates)
|
|
{
|
|
var chain = new X509Chain();
|
|
chain.ChainPolicy.RevocationMode = X509RevocationMode.NoCheck;
|
|
chain.ChainPolicy.VerificationFlags = X509VerificationFlags.AllFlags;
|
|
foreach (var intermediate in presentedIntermediates)
|
|
{
|
|
chain.ChainPolicy.ExtraStore.Add(intermediate);
|
|
}
|
|
|
|
chain.Build(leaf);
|
|
|
|
return new MqttClientCertificateValidationEventArgs(
|
|
leaf,
|
|
chain,
|
|
SslPolicyErrors.RemoteCertificateChainErrors,
|
|
built.ChannelOptions);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Accepts the TCP connection and then says nothing — the client sends CONNECT and waits
|
|
/// forever for a CONNACK that never comes. This is the frozen-peer shape; a closed port is
|
|
/// not (it refuses instantly and proves nothing about a deadline).
|
|
/// </summary>
|
|
private sealed class BlackholeBroker : IDisposable
|
|
{
|
|
private readonly List<TcpClient> _accepted = [];
|
|
private readonly CancellationTokenSource _cts = new();
|
|
private readonly TcpListener _listener;
|
|
|
|
public BlackholeBroker()
|
|
{
|
|
_listener = new TcpListener(IPAddress.Loopback, 0);
|
|
_listener.Start();
|
|
Port = ((IPEndPoint)_listener.LocalEndpoint).Port;
|
|
_ = Task.Run(AcceptLoopAsync);
|
|
}
|
|
|
|
public int Port { get; }
|
|
|
|
public void Dispose()
|
|
{
|
|
_cts.Cancel();
|
|
_listener.Stop();
|
|
lock (_accepted)
|
|
{
|
|
foreach (var client in _accepted)
|
|
{
|
|
client.Dispose();
|
|
}
|
|
|
|
_accepted.Clear();
|
|
}
|
|
|
|
_cts.Dispose();
|
|
}
|
|
|
|
private async Task AcceptLoopAsync()
|
|
{
|
|
try
|
|
{
|
|
while (!_cts.IsCancellationRequested)
|
|
{
|
|
var client = await _listener.AcceptTcpClientAsync(_cts.Token);
|
|
lock (_accepted)
|
|
{
|
|
_accepted.Add(client);
|
|
}
|
|
}
|
|
}
|
|
catch (Exception)
|
|
{
|
|
// Listener stopped / token cancelled — the fixture is going away.
|
|
}
|
|
}
|
|
}
|
|
}
|