Side-by-side fixture that boots both backends against the same dev Galaxy: - Legacy GalaxyProxyDriver against an out-of-process Galaxy.Host EXE (skipped when ZB SQL on localhost:1433 isn't reachable or when the EXE hasn't been built). - New in-process GalaxyDriver against an mxaccessgw gateway at http://localhost:5120 by default (skipped when the gateway isn't reachable). Endpoint, API key, and client name are env-var overridable for the central parity host. Per-backend availability is independent — each scenario decides whether to RequireBoth, GetDriver(specific), or use RunOnAvailableAsync to drive both with the same closure and diff snapshots. PR 5.2–5.8 land scenarios on top of this shell. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
286 lines
12 KiB
C#
286 lines
12 KiB
C#
using System.Diagnostics;
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using System.Net.Sockets;
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using System.Reflection;
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using System.Security.Principal;
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using Xunit;
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using ZB.MOM.WW.OtOpcUa.Core.Abstractions;
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using ZB.MOM.WW.OtOpcUa.Driver.Galaxy.Proxy;
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namespace ZB.MOM.WW.OtOpcUa.Driver.Galaxy.ParityTests;
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/// <summary>
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/// Side-by-side fixture that drives both the legacy <see cref="GalaxyProxyDriver"/>
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/// (talking to an out-of-process <c>OtOpcUa.Driver.Galaxy.Host.exe</c>) and the new
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/// in-process <see cref="GalaxyDriver"/> (talking to a running <c>mxaccessgw</c>
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/// gateway) against the same dev Galaxy. Phase 5 scenario tests use this harness
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/// to capture comparable snapshots from each backend.
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/// </summary>
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/// <remarks>
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/// Per-backend availability is independent — a developer running just the legacy
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/// Galaxy.Host EXE without an mxaccessgw process up will see the legacy driver
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/// resolve and the mxgw driver mark itself unavailable. Each test decides how to
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/// handle partial availability:
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/// <list type="bullet">
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/// <item>Strict-parity tests call <see cref="RequireBoth"/> to skip when either side
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/// is missing.</item>
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/// <item>Single-backend smoke tests call <see cref="GetDriver"/> for the backend they
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/// care about and skip with the recorded <c>SkipReason</c>.</item>
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/// </list>
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/// Endpoint overrides come from environment variables so dev VMs and the central
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/// parity host can target the same suite without touching the test source:
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/// <list type="bullet">
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/// <item><c>OTOPCUA_PARITY_GW_ENDPOINT</c> — defaults to <c>http://localhost:5120</c>
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/// (mxaccessgw <c>launchSettings.json</c> http profile).</item>
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/// <item><c>OTOPCUA_PARITY_GW_API_KEY</c> — defaults to <c>parity-suite-key</c>.</item>
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/// <item><c>OTOPCUA_PARITY_CLIENT_NAME</c> — defaults to <c>OtOpcUa-Parity</c>.</item>
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/// </list>
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/// </remarks>
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public sealed class ParityHarness : IAsyncLifetime
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{
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public enum Backend { LegacyHost, MxGateway }
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private const string LegacySecret = "parity-suite-secret";
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private const string DefaultGwEndpoint = "http://localhost:5120";
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private const string DefaultGwApiKey = "parity-suite-key";
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private const string DefaultClientName = "OtOpcUa-Parity";
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public IDriver? LegacyDriver { get; private set; }
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public string? LegacySkipReason { get; private set; }
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public IDriver? MxGatewayDriver { get; private set; }
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public string? MxGatewaySkipReason { get; private set; }
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private Process? _legacyHost;
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public async ValueTask InitializeAsync()
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{
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if (!OperatingSystem.IsWindows())
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{
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LegacySkipReason = "Windows-only";
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MxGatewaySkipReason = "Windows-only";
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return;
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}
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await InitializeLegacyAsync();
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await InitializeMxGatewayAsync();
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}
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public async ValueTask DisposeAsync()
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{
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// Independent teardown — failure on one side must not prevent the other from
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// releasing its resources (esp. the legacy Host EXE subprocess).
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if (LegacyDriver is not null)
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{
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try { await LegacyDriver.ShutdownAsync(CancellationToken.None); } catch { /* shutdown */ }
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(LegacyDriver as IDisposable)?.Dispose();
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LegacyDriver = null;
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}
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if (_legacyHost is not null && !_legacyHost.HasExited)
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{
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try { _legacyHost.Kill(entireProcessTree: true); } catch { /* ignore */ }
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try { _legacyHost.WaitForExit(5_000); } catch { /* ignore */ }
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}
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_legacyHost?.Dispose();
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_legacyHost = null;
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if (MxGatewayDriver is not null)
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{
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try { await MxGatewayDriver.ShutdownAsync(CancellationToken.None); } catch { /* shutdown */ }
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(MxGatewayDriver as IDisposable)?.Dispose();
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MxGatewayDriver = null;
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}
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}
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/// <summary>Skip the test if either backend isn't available — strict-parity scenarios.</summary>
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public void RequireBoth()
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{
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if (LegacySkipReason is not null) Assert.Skip($"legacy backend unavailable: {LegacySkipReason}");
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if (MxGatewaySkipReason is not null) Assert.Skip($"mxgateway backend unavailable: {MxGatewaySkipReason}");
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}
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/// <summary>Get a backend driver or skip if it's unavailable.</summary>
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public IDriver GetDriver(Backend backend)
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{
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return backend switch
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{
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Backend.LegacyHost when LegacyDriver is not null => LegacyDriver,
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Backend.LegacyHost => SkipAndThrow($"legacy backend unavailable: {LegacySkipReason}"),
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Backend.MxGateway when MxGatewayDriver is not null => MxGatewayDriver,
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Backend.MxGateway => SkipAndThrow($"mxgateway backend unavailable: {MxGatewaySkipReason}"),
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_ => throw new ArgumentOutOfRangeException(nameof(backend), backend, null),
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};
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}
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/// <summary>
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/// Drive the same closure against every available backend. Tests use the
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/// returned dictionary to diff snapshots — keys are the backends that
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/// successfully resolved during <see cref="InitializeAsync"/>. If neither
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/// resolved, the result is empty and the test should skip.
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/// </summary>
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public async Task<IReadOnlyDictionary<Backend, T>> RunOnAvailableAsync<T>(
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Func<IDriver, CancellationToken, Task<T>> scenario, CancellationToken cancellationToken)
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{
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ArgumentNullException.ThrowIfNull(scenario);
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var results = new Dictionary<Backend, T>();
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if (LegacyDriver is not null)
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{
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results[Backend.LegacyHost] = await scenario(LegacyDriver, cancellationToken).ConfigureAwait(false);
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}
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if (MxGatewayDriver is not null)
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{
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results[Backend.MxGateway] = await scenario(MxGatewayDriver, cancellationToken).ConfigureAwait(false);
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}
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return results;
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}
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[System.Runtime.Versioning.SupportedOSPlatform("windows")]
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private async Task InitializeLegacyAsync()
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{
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if (!await ZbReachableAsync())
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{
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LegacySkipReason = "Galaxy ZB SQL not reachable on localhost:1433";
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return;
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}
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var hostExe = FindLegacyHostExe();
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if (hostExe is null)
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{
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LegacySkipReason = "Galaxy.Host EXE not built — run `dotnet build src/ZB.MOM.WW.OtOpcUa.Driver.Galaxy.Host`";
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return;
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}
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var pipe = $"OtOpcUaGalaxyParity-{Guid.NewGuid():N}";
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using var identity = WindowsIdentity.GetCurrent();
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var sid = identity.User!.Value;
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var psi = new ProcessStartInfo(hostExe)
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{
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UseShellExecute = false,
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CreateNoWindow = true,
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RedirectStandardOutput = true,
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RedirectStandardError = true,
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EnvironmentVariables =
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{
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["OTOPCUA_GALAXY_PIPE"] = pipe,
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["OTOPCUA_ALLOWED_SID"] = sid,
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["OTOPCUA_GALAXY_SECRET"] = LegacySecret,
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["OTOPCUA_GALAXY_BACKEND"] = "db",
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["OTOPCUA_GALAXY_ZB_CONN"] = "Server=localhost;Database=ZB;Integrated Security=True;TrustServerCertificate=True;Encrypt=False;",
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},
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};
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try
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{
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_legacyHost = Process.Start(psi)
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?? throw new InvalidOperationException("Failed to spawn Galaxy.Host EXE");
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await Task.Delay(2_000); // PipeServer warm-up — ParityFixture's settled value
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var driver = new GalaxyProxyDriver(new GalaxyProxyOptions
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{
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DriverInstanceId = "parity-legacy",
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PipeName = pipe,
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SharedSecret = LegacySecret,
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ConnectTimeout = TimeSpan.FromSeconds(5),
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});
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await driver.InitializeAsync(driverConfigJson: "{}", CancellationToken.None);
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LegacyDriver = driver;
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}
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catch (Exception ex)
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{
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LegacySkipReason = $"legacy backend boot failed: {ex.Message}";
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if (_legacyHost is not null && !_legacyHost.HasExited)
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{
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try { _legacyHost.Kill(entireProcessTree: true); } catch { /* ignore */ }
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}
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}
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}
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private async Task InitializeMxGatewayAsync()
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{
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var endpoint = Environment.GetEnvironmentVariable("OTOPCUA_PARITY_GW_ENDPOINT") ?? DefaultGwEndpoint;
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var apiKey = Environment.GetEnvironmentVariable("OTOPCUA_PARITY_GW_API_KEY") ?? DefaultGwApiKey;
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var clientName = Environment.GetEnvironmentVariable("OTOPCUA_PARITY_CLIENT_NAME") ?? DefaultClientName;
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if (!await GwReachableAsync(endpoint))
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{
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MxGatewaySkipReason = $"mxaccessgw not reachable at {endpoint}";
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return;
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}
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var configJson = $$"""
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{
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"Gateway": {
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"Endpoint": "{{endpoint}}",
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"ApiKeySecretRef": "{{apiKey}}",
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"UseTls": {{(endpoint.StartsWith("https") ? "true" : "false")}}
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},
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"MxAccess": { "ClientName": "{{clientName}}" }
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}
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""";
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try
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{
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var driver = GalaxyDriverFactoryExtensions.CreateInstance("parity-mxgw", configJson);
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await driver.InitializeAsync(configJson, CancellationToken.None);
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MxGatewayDriver = driver;
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}
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catch (Exception ex)
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{
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MxGatewaySkipReason = $"mxgateway backend boot failed: {ex.GetType().Name}: {ex.Message}";
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}
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}
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private static IDriver SkipAndThrow(string reason)
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{
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Assert.Skip(reason);
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throw new UnreachableException(); // Assert.Skip throws SkipException; this satisfies the compiler
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}
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private static async Task<bool> ZbReachableAsync()
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{
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try
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{
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using var client = new TcpClient();
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var task = client.ConnectAsync("localhost", 1433);
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return await Task.WhenAny(task, Task.Delay(1_500)) == task && client.Connected;
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}
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catch { return false; }
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}
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private static async Task<bool> GwReachableAsync(string endpoint)
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{
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// Lightweight TCP probe — avoids spending the full gRPC connect timeout when the
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// gateway just isn't running. We can't validate the API-key handshake here without
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// doing a real RPC, so a successful TCP connect is the "available" signal and any
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// auth/protocol failure surfaces during InitializeAsync below.
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try
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{
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var uri = new Uri(endpoint, UriKind.Absolute);
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using var client = new TcpClient();
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var port = uri.Port > 0 ? uri.Port : (uri.Scheme == "https" ? 443 : 80);
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var task = client.ConnectAsync(uri.Host, port);
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return await Task.WhenAny(task, Task.Delay(1_500)) == task && client.Connected;
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}
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catch { return false; }
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}
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private static string? FindLegacyHostExe()
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{
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var asmDir = Path.GetDirectoryName(Assembly.GetExecutingAssembly().Location)!;
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var solutionRoot = asmDir;
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for (var i = 0; i < 8 && solutionRoot is not null; i++)
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{
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if (File.Exists(Path.Combine(solutionRoot, "ZB.MOM.WW.OtOpcUa.slnx"))) break;
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solutionRoot = Path.GetDirectoryName(solutionRoot);
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}
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if (solutionRoot is null) return null;
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var path = Path.Combine(solutionRoot,
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"src", "ZB.MOM.WW.OtOpcUa.Driver.Galaxy.Host", "bin", "Debug", "net48",
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"OtOpcUa.Driver.Galaxy.Host.exe");
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return File.Exists(path) ? path : null;
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}
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}
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[CollectionDefinition(nameof(ParityCollection))]
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public sealed class ParityCollection : ICollectionFixture<ParityHarness> { }
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