affaan-m/ECC

swift-actor-persistence

在 Swift 中使用 actor 实现线程安全的数据持久化——基于内存缓存与文件支持的存储,通过设计消除数据竞争。

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See how to use itView GitHub source
npx skills add https://github.com/affaan-m/ECC --skill "docs/zh-CN/skills/swift-actor-persistence"
Automated source guide

Source checked Jul 28, 2026·Refresh due Oct 26, 2026

Reorganized from the pinned upstream SKILL.md

Turn swift-actor-persistence's source instructions into a guide you can follow

According to the pinned SKILL.md from affaan-m/ECC: 使用 Swift actor 构建线程安全数据持久化层的模式。结合内存缓存与文件支持的存储,利用 actor 模型在编译时消除数据竞争。

npx skills add https://github.com/affaan-m/ECC --skill "docs/zh-CN/skills/swift-actor-persistence"
Check the pinned source

Best fit

  • 在 Swift 中使用 actor 实现线程安全的数据持久化——基于内存缓存与文件支持的存储,通过设计消除数据竞争。

Bring this context

  • A concrete task that matches the documented purpose of swift-actor-persistence.
  • The files, examples, or context the task depends on.
  • Your constraints, target environment, and definition of done.

Expected outputs

  • A result that follows the pinned swift-actor-persistence instructions.
  • A concise record of assumptions, inputs used, and unresolved questions.
  • A final check against the source workflow and relevant permission signals.

Key source sections

Read swift-actor-persistence through these 5 source sections

Sections are extracted automatically from the pinned SKILL.md and link back to the source.

01

何时激活

在 Swift 5.5+ 中构建数据持久化层 需要对共享可变状态进行线程安全访问 希望消除手动同步(锁、DispatchQueue) 构建具有本地存储的离线优先应用

SKILL.md · 何时激活
在 Swift 5.5+ 中构建数据持久化层需要对共享可变状态进行线程安全访问希望消除手动同步(锁、DispatchQueue)
02

核心模式

Actor 模型保证了序列化访问 —— 没有数据竞争,由编译器强制执行。

SKILL.md · 核心模式
Actor 模型保证了序列化访问 —— 没有数据竞争,由编译器强制执行。由于 actor 隔离,所有调用都会自动变为异步:
03

基于 Actor 的存储库

Actor 模型保证了序列化访问 —— 没有数据竞争,由编译器强制执行。

SKILL.md · 基于 Actor 的存储库
Actor 模型保证了序列化访问 —— 没有数据竞争,由编译器强制执行。
04

用法

由于 actor 隔离,所有调用都会自动变为异步:

SKILL.md · 用法
由于 actor 隔离,所有调用都会自动变为异步:
05

与 @Observable ViewModel 结合使用

Review the “与 @Observable ViewModel 结合使用” section in the pinned source before continuing.

SKILL.md · 与 @Observable ViewModel 结合使用
Review and apply the “与 @Observable ViewModel 结合使用” source section.

SkillSignal prompt templates

Provide the task, context, and acceptance criteria

These prompts were written by SkillSignal from the source structure; they are not upstream text.

Task-start prompt

Confirm source fit, inputs, and outputs before acting.

Use swift-actor-persistence to help me with: [specific task]. Context: [files, data, or background]. Constraints: [environment, scope, and prohibited actions]. Before acting, check the pinned SKILL.md and explain which sections apply, what inputs are still missing, and what you will deliver.

Source-guided execution

Make the Agent explicitly follow the key extracted sections.

Apply the pinned swift-actor-persistence source to [task]. Pay particular attention to these source sections: “何时激活”, “核心模式”, “基于 Actor 的存储库”, “用法”, “与 @Observable ViewModel 结合使用”. Preserve the important decision at each step. Mark facts not covered by the source as “needs confirmation” instead of inventing them. Then verify the result against my acceptance criteria: [criteria].

Result-review prompt

Check omissions, permissions, and source drift before delivery.

Review the current swift-actor-persistence result: (1) does it satisfy the original task; (2) were any applicable steps or limits in the pinned SKILL.md missed; (3) did it perform any unauthorized file, command, network, or data action; and (4) which conclusions remain unverified? List issues first, then fix only what the source or user authorization supports.

Output checklist

Verify each item before delivery

The task matches the purpose documented in the SKILL.md.

The source section “何时激活” has been checked.

The source section “核心模式” has been checked.

The source section “基于 Actor 的存储库” has been checked.

The source section “用法” has been checked.

Inputs, constraints, and acceptance criteria are explicit.

Unverified facts, compatibility, and outcome claims are clearly marked.

Any file, command, network, or data action has been reviewed.

Choose a different workflow

When another Skill is the better fit

FAQ

What does swift-actor-persistence do?

使用 Swift actor 构建线程安全数据持久化层的模式。结合内存缓存与文件支持的存储,利用 actor 模型在编译时消除数据竞争。

How do I start using swift-actor-persistence?

The catalog detected this source-specific install command: npx skills add https://github.com/affaan-m/ECC --skill "docs/zh-CN/skills/swift-actor-persistence". Inspect the command and pinned source before running it.

Which Agent platforms does it declare?

No dedicated Agent platform is declared in the pinned source record.

Repository stars
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Quality breakdown

Based on traceable docs and repository signals; stars are not treated as quality.

62/100
Documentation20/30
Specificity11/25
Maintenance20/20
Trust signals11/25

Compare before choosing

Related Agent Skills and source variants

These links are selected from shared tasks, functions, stacks, platforms, and same-name variants. Compare the source owner, documentation, permissions, and maintenance signals.

swift-actor-persistence by affaan-m

Thread-safe data persistence in Swift using actors — in-memory cache with file-backed storage, eliminating data races by design.

swift-actor-persistence by affaan-m

Thread-safe data persistence in Swift using actors — in-memory cache with file-backed storage, eliminating data races by design.

swift-actor-persistence by affaan-m

Swiftでactorを使用してスレッドセーフなデータ永続化を実装する——メモリキャッシュとファイルバックドストレージを組み合わせ、設計によってデータ競合を排除する。

ab-testing by coreyhaines31

When the user wants to plan, design, or implement an A/B test or experiment, or build a growth experimentation program. Also use when the user mentions "A/B test," "split test," "experiment," "test this change," "variant copy," "multivariate test," "hypothesis," "should I test this," "which version is better," "test two versions," "statistical significance," "how long should I run this test," "growth experiments," "experiment velocity," "experiment backlog," "ICE score," "experimentation program

churn-prevention by coreyhaines31

When the user wants to reduce churn, build cancellation flows, set up save offers, recover failed payments, or implement retention strategies. Also use when the user mentions 'churn,' 'cancel flow,' 'offboarding,' 'save offer,' 'dunning,' 'failed payment recovery,' 'win-back,' 'retention,' 'exit survey,' 'pause subscription,' 'involuntary churn,' 'people keep canceling,' 'churn rate is too high,' 'how do I keep users,' or 'customers are leaving.' Use this whenever someone is losing subscribers o

View original Skill.mdThis page is parsed directly from the repository SKILL.md without editorial rewriting. Collected: Jul 28, 2026 · about 1 min

用于线程安全持久化的 Swift Actor

使用 Swift actor 构建线程安全数据持久化层的模式。结合内存缓存与文件支持的存储,利用 actor 模型在编译时消除数据竞争。

何时激活

  • 在 Swift 5.5+ 中构建数据持久化层
  • 需要对共享可变状态进行线程安全访问
  • 希望消除手动同步(锁、DispatchQueue)
  • 构建具有本地存储的离线优先应用

核心模式

基于 Actor 的存储库

Actor 模型保证了序列化访问 —— 没有数据竞争,由编译器强制执行。

public actor LocalRepository<T: Codable & Identifiable> where T.ID == String {
    private var cache: [String: T] = [:]
    private let fileURL: URL

    public init(directory: URL = .documentsDirectory, filename: String = "data.json") {
        self.fileURL = directory.appendingPathComponent(filename)
        // Synchronous load during init (actor isolation not yet active)
        self.cache = Self.loadSynchronously(from: fileURL)
    }

    // MARK: - Public API

    public func save(_ item: T) throws {
        cache[item.id] = item
        try persistToFile()
    }

    public func delete(_ id: String) throws {
        cache[id] = nil
        try persistToFile()
    }

    public func find(by id: String) -> T? {
        cache[id]
    }

    public func loadAll() -> [T] {
        Array(cache.values)
    }

    // MARK: - Private

    private func persistToFile() throws {
        let data = try JSONEncoder().encode(Array(cache.values))
        try data.write(to: fileURL, options: .atomic)
    }

    private static func loadSynchronously(from url: URL) -> [String: T] {
        guard let data = try? Data(contentsOf: url),
              let items = try? JSONDecoder().decode([T].self, from: data) else {
            return [:]
        }
        return Dictionary(uniqueKeysWithValues: items.map { ($0.id, $0) })
    }
}

用法

由于 actor 隔离,所有调用都会自动变为异步:

let repository = LocalRepository<Question>()

// Read — fast O(1) lookup from in-memory cache
let question = await repository.find(by: "q-001")
let allQuestions = await repository.loadAll()

// Write — updates cache and persists to file atomically
try await repository.save(newQuestion)
try await repository.delete("q-001")

与 @Observable ViewModel 结合使用

@Observable
final class QuestionListViewModel {
    private(set) var questions: [Question] = []
    private let repository: LocalRepository<Question>

    init(repository: LocalRepository<Question> = LocalRepository()) {
        self.repository = repository
    }

    func load() async {
        questions = await repository.loadAll()
    }

    func add(_ question: Question) async throws {
        try await repository.save(question)
        questions = await repository.loadAll()
    }
}

关键设计决策

决策理由
Actor(而非类 + 锁)编译器强制执行的线程安全性,无需手动同步
内存缓存 + 文件持久化从缓存中快速读取,持久化写入磁盘
同步初始化加载避免异步初始化的复杂性
按 ID 键控的字典按标识符进行 O(1) 查找
泛型化 Codable & Identifiable可在任何模型类型中重复使用
原子文件写入 (.atomic)防止崩溃时部分写入

最佳实践

  • 对所有跨越 actor 边界的数据使用 Sendable 类型
  • 保持 actor 的公共 API 最小化 —— 仅暴露领域操作,而非持久化细节
  • 使用 .atomic 写入 以防止应用在写入过程中崩溃导致数据损坏
  • init 中同步加载 —— 异步初始化器会增加复杂性,而对本地文件的益处微乎其微
  • @Observable ViewModel 结合使用 以实现响应式 UI 更新

应避免的反模式

  • 在 Swift 并发新代码中使用 DispatchQueueNSLock 而非 actor
  • 将内部缓存字典暴露给外部调用者
  • 在不进行验证的情况下使文件 URL 可配置
  • 忘记所有 actor 方法调用都是 await —— 调用者必须处理异步上下文
  • 使用 nonisolated 来绕过 actor 隔离(违背了初衷)

何时使用

  • iOS/macOS 应用中的本地数据存储(用户数据、设置、缓存内容)
  • 稍后同步到服务器的离线优先架构
  • 应用中多个部分并发访问的任何共享可变状态
  • 用现代 Swift 并发性替换基于 DispatchQueue 的旧式线程安全机制
Source repo
affaan-m/ECC
Skill path
docs/zh-CN/skills/swift-actor-persistence/SKILL.md
Commit SHA
4e973d3eaf92
Repository license
MIT
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