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main
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d3eca1f155
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@@ -5,7 +5,7 @@
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<AssemblyName>ShrinkContext.Core.Runtime</AssemblyName>
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<RootNamespace>ShrinkContext</RootNamespace>
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<PackageId>ShrinkSDK.Context.Core</PackageId>
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<Version>0.2.0</Version>
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<Version>0.3.0</Version>
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<Description>ShrinkSDK reversible context and fiber runtime.</Description>
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<ShrinkCodeGenEnabled>false</ShrinkCodeGenEnabled>
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</PropertyGroup>
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@@ -69,3 +69,13 @@
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- 仅主线程使用;异步转换在同步可完成路径上内联跑完(测试无需 PlayerLoop 泵即可确定性断言)。
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- 测试中的 `TestAwait.Run` 同步阻塞等待,仅用于保证延续同步完成的测试代码。
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## 可复用能力
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<!-- shrink:capabilities -->
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Capability: 动态模块依赖、provider 替换和可逆生命周期;声明式组合失败恢复
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Aliases: 上下文 组件 加载 卸载 装卸 依赖 热替换 isolate intercept Cordis
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Limits: 不提供具体战斗、资源、背包机制;同一 runtime 的组合操作须在所属线程串行协调
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Extension: IShrinkComponent.Inject/Provide/Apply;ShrinkLoaderEntry 配置;ctx.Effect/Set/Get
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Evidence: [ShrinkContextRuntime](Runtime/ShrinkContextRuntime.cs); [ShrinkContextLoader](Runtime/ShrinkContextDefaults.cs); [ShrinkCtx](Runtime/Context/ShrinkCtx.cs)
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<!-- /shrink:capabilities -->
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@@ -14,6 +14,7 @@ namespace ShrinkContext
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public sealed class ShrinkCtx
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{
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private readonly List<ShrinkEffectHandle> _effects = new();
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private bool _disposing;
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private readonly Dictionary<string, string>? _isolateOverlay;
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private Dictionary<string, IReadOnlyDictionary<string, object?>>? _interceptOverlay;
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@@ -81,6 +82,13 @@ namespace ShrinkContext
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internal void Attach(ShrinkEffectHandle handle) => _effects.Add(handle);
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internal void Detach(ShrinkEffectHandle handle)
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{
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// During parent teardown the reverse traversal owns removal.
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if (!_disposing)
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_effects.Remove(handle);
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}
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/// <summary>
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/// 前向已在外部执行完毕的效应:仅登记逆操作(供桥接适配器把既有 API 的"注册/注销"对包装为可逆效应)。
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/// </summary>
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@@ -98,9 +106,14 @@ namespace ShrinkContext
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/// <summary>按 LIFO 顺序执行本上下文注册的全部逆操作。</summary>
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public async UniTask DisposeAsync()
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{
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for (var i = _effects.Count - 1; i >= 0; i--)
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await _effects[i].DisposeAsync();
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_effects.Clear();
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_disposing = true;
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try
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{
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for (var i = _effects.Count - 1; i >= 0; i--)
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await _effects[i].DisposeAsync();
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_effects.Clear();
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}
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finally { _disposing = false; }
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}
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// ---------------- 余效应(论文 3.2 / 算法 2) ----------------
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@@ -62,6 +62,8 @@ namespace ShrinkContext
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internal long[]? Target;
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internal bool InTransition;
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internal bool Retired;
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internal ShrinkCtx? EffectOwner;
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internal ShrinkEffectHandle? Instantiation;
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internal HashSet<string> InjectSet { get; }
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internal HashSet<string> ProvideSet { get; }
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}
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@@ -20,16 +20,22 @@ namespace ShrinkContext
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{
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private readonly ShrinkCtx _rootCtx;
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private readonly List<ShrinkFiber> _fibers = new();
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private readonly Queue<ShrinkFiberDiagnostic> _retiredHistory = new();
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private readonly int _retiredHistoryCapacity;
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private readonly Dictionary<string, ShrinkBinding> _store = new();
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private readonly Dictionary<string, HashSet<ShrinkFiber>> _injectIndex =
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new(StringComparer.Ordinal);
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private readonly Queue<Action> _transitionWork = new();
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private bool _drainingTransitionWork;
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private long _uidCounter;
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private long _notificationDispatchCount;
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private long _notificationCandidateVisitCount;
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private int _lastNotificationCandidateCount;
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public ShrinkContextRuntime()
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public ShrinkContextRuntime(int retiredHistoryCapacity = 64)
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{
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if (retiredHistoryCapacity < 0) throw new ArgumentOutOfRangeException(nameof(retiredHistoryCapacity));
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_retiredHistoryCapacity = retiredHistoryCapacity;
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_rootCtx = new ShrinkCtx(this, null, null, null);
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}
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@@ -65,6 +71,8 @@ namespace ShrinkContext
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var instantiationHandle = new ShrinkEffectHandle();
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instantiationHandle.AttachInverse(() => RetireCoreAsync(fiber));
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parent.Attach(instantiationHandle);
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fiber.EffectOwner = parent;
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fiber.Instantiation = instantiationHandle;
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Refresh(fiber);
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return fiber;
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@@ -77,11 +85,16 @@ namespace ShrinkContext
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public async UniTask RetireAsync(ShrinkFiber fiber)
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{
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if (fiber.Retired)
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{
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if (fiber.InTransition) await fiber.Inertia;
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await ReleaseRetiredAsync(fiber);
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return;
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}
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UnindexFiber(fiber);
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if (fiber.State == ShrinkFiberState.Inactive && !fiber.InTransition)
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{
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fiber.Retired = true;
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await ReleaseRetiredAsync(fiber);
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return;
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}
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@@ -89,12 +102,33 @@ namespace ShrinkContext
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fiber.Target = null;
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if (!fiber.InTransition)
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{
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fiber.InTransition = true;
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fiber.Inertia = RunTransitionAsync(fiber);
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ScheduleTransition(fiber);
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}
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if (fiber.InTransition)
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await fiber.Inertia;
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await ReleaseRetiredAsync(fiber);
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}
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private async UniTask ReleaseRetiredAsync(ShrinkFiber fiber)
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{
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if (fiber.InTransition || fiber.State != ShrinkFiberState.Inactive || !_fibers.Remove(fiber)) return;
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var owner = fiber.EffectOwner;
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var handle = fiber.Instantiation;
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fiber.EffectOwner = null;
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fiber.Instantiation = null;
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if (handle != null)
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{
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owner?.Detach(handle);
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await handle.DisposeAsync();
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}
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if (_retiredHistoryCapacity == 0) return;
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while (_retiredHistory.Count >= _retiredHistoryCapacity) _retiredHistory.Dequeue();
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_retiredHistory.Enqueue(new ShrinkFiberDiagnostic(fiber.Uid, fiber.Name,
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ShrinkFiberDiagnosticStatus.Retired, fiber.State, true, false,
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fiber.InjectSet.ToArray(), fiber.ProvideSet.ToArray(), Array.Empty<long>(),
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Array.Empty<ShrinkDependencyDiagnostic>(), Array.Empty<string>(),
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fiber.LastError?.GetType().FullName, fiber.LastError?.Message));
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}
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/// <summary>卸载全部纤程并回滚根上下文效应。</summary>
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@@ -123,13 +157,47 @@ namespace ShrinkContext
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fiber.Target = target;
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if (!fiber.InTransition)
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{
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fiber.InTransition = true;
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fiber.Inertia = RunTransitionAsync(fiber);
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ScheduleTransition(fiber);
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}
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return true;
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}
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private void ScheduleTransition(ShrinkFiber fiber)
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{
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var completion = new UniTaskCompletionSource();
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fiber.InTransition = true;
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fiber.Inertia = completion.Task.Preserve();
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EnqueueTransitionWork(() => RunScheduledTransitionAsync(fiber, completion).Forget());
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}
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private async UniTask RunScheduledTransitionAsync(ShrinkFiber fiber, UniTaskCompletionSource completion)
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{
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try
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{
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await RunTransitionAsync(fiber);
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EnqueueTransitionWork(() => completion.TrySetResult());
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}
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catch (Exception error)
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{
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EnqueueTransitionWork(() => completion.TrySetException(error));
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}
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}
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private void EnqueueTransitionWork(Action work)
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{
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_transitionWork.Enqueue(work);
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if (_drainingTransitionWork) return;
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_drainingTransitionWork = true;
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try
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{
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// Starting transitions and completing their awaiters both use this trampoline.
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// Deep synchronous dependency chains therefore keep a bounded CLR call stack.
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while (_transitionWork.Count > 0) _transitionWork.Dequeue()();
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}
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finally { _drainingTransitionWork = false; }
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}
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private async UniTask RunTransitionAsync(ShrinkFiber fiber)
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{
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try
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@@ -457,8 +525,21 @@ namespace ShrinkContext
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/// <summary>捕获不含可变运行时引用的诊断快照。</summary>
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public ShrinkContextRuntimeDiagnostic CaptureDiagnostic()
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{
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var diagnostics = new List<ShrinkFiberDiagnostic>(_fibers.Count);
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foreach (var fiber in _fibers.OrderBy(item => item.Uid))
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var providers = new Dictionary<(string key, string realm), List<long>>();
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foreach (var candidate in _fibers)
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{
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if (candidate.Retired) continue;
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foreach (var key in candidate.ProvideSet)
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{
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if (!_injectIndex.ContainsKey(key)) continue;
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var id = (key, candidate.Ctx.ResolveRealm(key));
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if (!providers.TryGetValue(id, out var entries)) providers.Add(id, entries = new List<long>());
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entries.Add(candidate.Uid);
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}
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}
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var diagnostics = new List<ShrinkFiberDiagnostic>(_fibers.Count + _retiredHistory.Count);
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diagnostics.AddRange(_retiredHistory);
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foreach (var fiber in _fibers)
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{
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var dependencies = new List<ShrinkDependencyDiagnostic>();
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foreach (var key in fiber.Component.Inject ?? Array.Empty<string>())
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@@ -467,12 +548,8 @@ namespace ShrinkContext
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var current = ResolveBinding(fiber.Ctx, key);
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ShrinkBinding? committed = null;
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fiber.Committed?.TryGetValue(key, out committed);
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var potential = _fibers
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.Where(candidate => !candidate.Retired && candidate.ProvideSet.Contains(key) &&
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candidate.Ctx.ResolveRealm(key) == realm)
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.Select(candidate => candidate.Uid)
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.OrderBy(uid => uid)
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.ToArray();
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var potential = providers.TryGetValue((key, realm), out var candidates)
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? candidates.ToArray() : Array.Empty<long>();
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dependencies.Add(new ShrinkDependencyDiagnostic(
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key,
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@@ -499,7 +576,7 @@ namespace ShrinkContext
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}
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return new ShrinkContextRuntimeDiagnostic(
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diagnostics,
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diagnostics.OrderBy(item => item.Uid).ToArray(),
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_store.Count,
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new ShrinkNotificationDiagnostic(
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_notificationDispatchCount,
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@@ -0,0 +1,88 @@
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#nullable enable
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using System;
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using System.Linq;
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using System.Runtime.CompilerServices;
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using Cysharp.Threading.Tasks;
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using NUnit.Framework;
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namespace ShrinkContext.Tests
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{
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public class RetirementRetentionTests
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{
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[Test]
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public void DeepDependencyChainRetiresWithoutGrowingTheCallStack()
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{
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var runtime = new ShrinkContextRuntime();
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ShrinkFiber first = null;
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for (var i = 0; i < 1000; i++)
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{
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var fiber = runtime.Use(new ChainComponent(i));
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if (i == 0) first = fiber;
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}
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TestAwait.Run(runtime.RetireAsync(first));
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Assert.That(runtime.Fibers.All(f => f.State == ShrinkFiberState.Inactive));
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Assert.That(runtime.CaptureDiagnostic().BindingCount, Is.Zero);
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TestAwait.Run(runtime.ShutdownAsync());
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Assert.That(runtime.Fibers, Is.Empty);
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}
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private sealed class ChainComponent : IShrinkComponent
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{
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public ChainComponent(int index)
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{
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Name = "chain-" + index;
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Inject = index == 0 ? Array.Empty<string>() : new[] { "chain-" + (index - 1) };
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Provide = new[] { Name };
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}
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public string Name { get; }
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public System.Collections.Generic.IReadOnlyList<string> Inject { get; }
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public System.Collections.Generic.IReadOnlyList<string> Provide { get; }
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public UniTask ApplyAsync(ShrinkCtx ctx, object config) { ctx.Set(Name, this); return UniTask.CompletedTask; }
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}
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[Test]
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public void RepeatedRetirementKeepsOnlyBoundedValueHistory()
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{
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var runtime = new ShrinkContextRuntime(8);
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for (var i = 0; i < 10000; i++)
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TestAwait.Run(runtime.RetireAsync(runtime.Use(new ProviderComponent("provider", "value", i))));
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Assert.That(runtime.Fibers, Is.Empty);
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var diagnostic = runtime.CaptureDiagnostic();
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Assert.That(diagnostic.Fibers.Count, Is.EqualTo(8));
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Assert.That(diagnostic.Fibers.All(f => f.Retired));
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Assert.That(diagnostic.BindingCount, Is.Zero);
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TestAwait.Run(runtime.ShutdownAsync());
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}
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[Test]
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public void RuntimeAndParentEffectsDoNotRetainRetiredComponent()
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{
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var runtime = new ShrinkContextRuntime();
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var weak = CreateAndRetire(runtime);
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GC.Collect(); GC.WaitForPendingFinalizers(); GC.Collect();
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Assert.That(weak.IsAlive, Is.False);
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GC.KeepAlive(runtime);
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}
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[MethodImpl(MethodImplOptions.NoInlining)]
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private static WeakReference CreateAndRetire(ShrinkContextRuntime runtime)
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{
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var component = new ProviderComponent("collectible", "key", new byte[1024]);
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var weak = new WeakReference(component);
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TestAwait.Run(runtime.RetireAsync(runtime.Use(component)));
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return weak;
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}
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[Test]
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public void DiagnosticProvidersRespectRealmsAndExcludeRetired()
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{
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var runtime = new ShrinkContextRuntime();
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var p = runtime.Use(new ProviderComponent("p", "key", "value"));
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var c = runtime.Use(new ConsumerComponent("c", "key"));
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Assert.That(runtime.CaptureDiagnostic().Fibers.Single(f => f.Uid == c.Uid).Dependencies.Single().PotentialProviderUids, Is.EqualTo(new[] { p.Uid }));
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TestAwait.Run(runtime.RetireAsync(p));
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Assert.That(runtime.CaptureDiagnostic().Fibers.Single(f => f.Uid == c.Uid).Dependencies.Single().PotentialProviderUids, Is.Empty);
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TestAwait.Run(runtime.ShutdownAsync());
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}
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}
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}
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@@ -0,0 +1,11 @@
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fileFormatVersion: 2
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guid: 3593eb7178803dd40b5e070709a5fe8b
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MonoImporter:
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externalObjects: {}
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serializedVersion: 2
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defaultReferences: []
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executionOrder: 0
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icon: {instanceID: 0}
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userData:
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assetBundleName:
|
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assetBundleVariant:
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+1
-1
@@ -1,6 +1,6 @@
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||||
{
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||||
"name": "com.cneicy.shrink-context-core",
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"version": "0.2.0",
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"version": "0.3.0",
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"displayName": "ShrinkContext Core",
|
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"description": "Cordis 时空可组合性范式的 Unity/C# 原型核心:可逆效应追踪、响应式余效应与组件纤程生命周期。",
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"unity": "2022.3",
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|
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Reference in New Issue
Block a user