Swift Concurrency Expert

dimillian/skills/swift-concurrency-expert

作者 dimillian05ba982bfeb0無授權條款3.9K 個星標收錄於 2026年10月8日更新於 2026年10月8日儲存庫6 個月前更新

Swift Concurrency review and remediation for Swift 6.2+. Use when asked to review Swift Concurrency usage, improve concurrency compliance, or fix Swift concurrency compiler errors in a feature or file. Concrete actions include adding Sendable conformance, applying @MainActor annotations, resolving actor isolation warnings, fixing data race diagnostics, and migrating completion handlers to async/await.

AI 產生的概覽

審查並修正 Swift 6.2+ 並行問題,例如 actor 隔離、Sendable 錯誤與資料競爭。

功能
引導代理排查 Swift 並行編譯器診斷訊息,套用最小且安全的修正,並透過重新建置與執行測試來驗證結果。常見修正包括加入 @MainActor 標註、隔離協定遵循、加入 Sendable 遵循,以及用 @concurrent 或 actor 將繁重工作移出主 actor。它也指向隨附的參考資料,涵蓋 Swift 6.2 並行、approachable concurrency 模式以及 SwiftUI 並行。
適用情境
適用於審查 Swift 並行用法、提升並行合規性,或修正某個功能或檔案中的 Swift 並行編譯器錯誤。適合處理 actor 隔離警告、資料競爭診斷,或從完成處理器遷移到 async/await 的 Swift 6.2+ 程式碼庫。
執行需求
需要 Swift 6.2+ 程式碼庫,以及代理可執行的建置與測試環境。不附帶指令碼;此技能由指示與參考文件組成。

Swift Concurrency Expert

Overview

Review and fix Swift Concurrency issues in Swift 6.2+ codebases by applying actor isolation, Sendable safety, and modern concurrency patterns with minimal behavior changes.

Workflow

1. Triage the issue

  • Capture the exact compiler diagnostics and the offending symbol(s).
  • Check project concurrency settings: Swift language version (6.2+), strict concurrency level, and whether approachable concurrency (default actor isolation / main-actor-by-default) is enabled.
  • Identify the current actor context (@MainActor, actor, nonisolated) and whether a default actor isolation mode is enabled.
  • Confirm whether the code is UI-bound or intended to run off the main actor.

2. Apply the smallest safe fix

Prefer edits that preserve existing behavior while satisfying data-race safety.

Common fixes:

  • UI-bound types: annotate the type or relevant members with @MainActor.
  • Protocol conformance on main actor types: make the conformance isolated (e.g., extension Foo: @MainActor SomeProtocol).
  • Global/static state: protect with @MainActor or move into an actor.
  • Background work: move expensive work into a @concurrent async function on a nonisolated type or use an actor to guard mutable state.
  • Sendable errors: prefer immutable/value types; add Sendable conformance only when correct; avoid @unchecked Sendable unless you can prove thread safety.

3. Verify the fix

  • Rebuild and confirm all concurrency diagnostics are resolved with no new warnings introduced.
  • Run the test suite to check for regressions — concurrency changes can introduce subtle runtime issues even when the build is clean.
  • If the fix surfaces new warnings, treat each one as a fresh triage (return to step 1) and resolve iteratively until the build is clean and tests pass.

Examples

UI-bound type — adding @MainActor

swift
// Before: data-race warning because ViewModel is accessed from the main thread// but has no actor isolationclass ViewModel: ObservableObject {    @Published var title: String = ""    func load() { title = "Loaded" }}
// After: annotate the whole type so all stored state and methods are// automatically isolated to the main actor@MainActorclass ViewModel: ObservableObject {    @Published var title: String = ""    func load() { title = "Loaded" }}

Protocol conformance isolation

swift
// Before: compiler error — SomeProtocol method is nonisolated but the// conforming type is @MainActor@MainActorclass Foo: SomeProtocol {    func protocolMethod() { /* accesses main-actor state */ }}
// After: scope the conformance to @MainActor so the requirement is// satisfied inside the correct isolation context@MainActorextension Foo: SomeProtocol {    func protocolMethod() { /* safely accesses main-actor state */ }}

Background work with @concurrent

swift
// Before: expensive computation blocks the main actor@MainActorfunc processData(_ input: [Int]) -> [Int] {    input.map { heavyTransform($0) }   // runs on main thread}
// After: hop off the main actor for the heavy work, then return the result// The caller awaits the result and stays on its own actornonisolated func processData(_ input: [Int]) async -> [Int] {    await Task.detached(priority: .userInitiated) {        input.map { heavyTransform($0) }    }.value}
// Or, using a @concurrent async function (Swift 6.2+):@concurrentfunc processData(_ input: [Int]) async -> [Int] {    input.map { heavyTransform($0) }}

Reference material

  • See references/swift-6-2-concurrency.md for Swift 6.2 changes, patterns, and examples.
  • See references/approachable-concurrency.md when the project is opted into approachable concurrency mode.
  • See references/swiftui-concurrency-tour-wwdc.md for SwiftUI-specific concurrency guidance.

來源與署名

來源:dimillian/skills位於swift-concurrency-expert提交05ba982

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