IDriver.DriverInstanceId is declared as string in Core.Abstractions; keeping the pipeline key as Guid meant every call site would need .ToString() / Guid.Parse at the boundary. Switching the Resilience types to string removes that friction and lets OtOpcUaServer pass driver.DriverInstanceId directly to the builder in the upcoming server-dispatch wiring PR. - DriverResiliencePipelineBuilder.GetOrCreate + Invalidate + PipelineKey - CapabilityInvoker.ctor + _driverInstanceId field Tests: all 48 Core.Tests still pass. The Invalidate test's keepId / dropId now use distinct "drv-keep" / "drv-drop" literals (previously both were distinct Guid.NewGuid() values, which the sed-driven refactor had collapsed to the same literal — caught pre-commit). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
152 lines
5.0 KiB
C#
152 lines
5.0 KiB
C#
using Shouldly;
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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.Core.Resilience;
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namespace ZB.MOM.WW.OtOpcUa.Core.Tests.Resilience;
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[Trait("Category", "Unit")]
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public sealed class CapabilityInvokerTests
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{
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private static CapabilityInvoker MakeInvoker(
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DriverResiliencePipelineBuilder builder,
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DriverResilienceOptions options) =>
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new(builder, "drv-test", () => options);
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[Fact]
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public async Task Read_ReturnsValue_FromCallSite()
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{
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var invoker = MakeInvoker(new DriverResiliencePipelineBuilder(), new DriverResilienceOptions { Tier = DriverTier.A });
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var result = await invoker.ExecuteAsync(
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DriverCapability.Read,
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"host-1",
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_ => ValueTask.FromResult(42),
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CancellationToken.None);
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result.ShouldBe(42);
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}
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[Fact]
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public async Task Read_Retries_OnTransientFailure()
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{
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var invoker = MakeInvoker(new DriverResiliencePipelineBuilder(), new DriverResilienceOptions { Tier = DriverTier.A });
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var attempts = 0;
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var result = await invoker.ExecuteAsync(
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DriverCapability.Read,
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"host-1",
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async _ =>
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{
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attempts++;
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if (attempts < 2) throw new InvalidOperationException("transient");
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await Task.Yield();
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return "ok";
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},
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CancellationToken.None);
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result.ShouldBe("ok");
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attempts.ShouldBe(2);
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}
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[Fact]
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public async Task Write_NonIdempotent_DoesNotRetry_EvenWhenPolicyHasRetries()
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{
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var options = new DriverResilienceOptions
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{
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Tier = DriverTier.A,
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CapabilityPolicies = new Dictionary<DriverCapability, CapabilityPolicy>
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{
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[DriverCapability.Write] = new(TimeoutSeconds: 2, RetryCount: 3, BreakerFailureThreshold: 5),
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},
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};
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var invoker = MakeInvoker(new DriverResiliencePipelineBuilder(), options);
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var attempts = 0;
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await Should.ThrowAsync<InvalidOperationException>(async () =>
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await invoker.ExecuteWriteAsync(
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"host-1",
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isIdempotent: false,
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async _ =>
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{
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attempts++;
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await Task.Yield();
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throw new InvalidOperationException("boom");
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#pragma warning disable CS0162
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return 0;
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#pragma warning restore CS0162
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},
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CancellationToken.None));
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attempts.ShouldBe(1, "non-idempotent write must never replay");
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}
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[Fact]
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public async Task Write_Idempotent_Retries_WhenPolicyHasRetries()
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{
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var options = new DriverResilienceOptions
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{
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Tier = DriverTier.A,
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CapabilityPolicies = new Dictionary<DriverCapability, CapabilityPolicy>
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{
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[DriverCapability.Write] = new(TimeoutSeconds: 2, RetryCount: 3, BreakerFailureThreshold: 5),
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},
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};
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var invoker = MakeInvoker(new DriverResiliencePipelineBuilder(), options);
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var attempts = 0;
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var result = await invoker.ExecuteWriteAsync(
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"host-1",
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isIdempotent: true,
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async _ =>
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{
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attempts++;
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if (attempts < 2) throw new InvalidOperationException("transient");
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await Task.Yield();
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return "ok";
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},
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CancellationToken.None);
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result.ShouldBe("ok");
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attempts.ShouldBe(2);
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}
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[Fact]
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public async Task Write_Default_DoesNotRetry_WhenPolicyHasZeroRetries()
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{
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// Tier A Write default is RetryCount=0. Even isIdempotent=true shouldn't retry
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// because the policy says not to.
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var invoker = MakeInvoker(new DriverResiliencePipelineBuilder(), new DriverResilienceOptions { Tier = DriverTier.A });
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var attempts = 0;
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await Should.ThrowAsync<InvalidOperationException>(async () =>
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await invoker.ExecuteWriteAsync(
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"host-1",
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isIdempotent: true,
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async _ =>
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{
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attempts++;
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await Task.Yield();
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throw new InvalidOperationException("boom");
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#pragma warning disable CS0162
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return 0;
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#pragma warning restore CS0162
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},
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CancellationToken.None));
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attempts.ShouldBe(1, "tier-A default for Write is RetryCount=0");
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}
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[Fact]
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public async Task Execute_HonorsDifferentHosts_Independently()
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{
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var builder = new DriverResiliencePipelineBuilder();
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var invoker = MakeInvoker(builder, new DriverResilienceOptions { Tier = DriverTier.A });
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await invoker.ExecuteAsync(DriverCapability.Read, "host-a", _ => ValueTask.FromResult(1), CancellationToken.None);
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await invoker.ExecuteAsync(DriverCapability.Read, "host-b", _ => ValueTask.FromResult(2), CancellationToken.None);
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builder.CachedPipelineCount.ShouldBe(2);
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}
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}
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