Android Coroutines

new-silvermoon/awesome-android-agent-skills/.github/skills/concurrency_and_networking/android-coroutines

作者 new-silvermoon82900eacc8dbe13de93c6310af27b9df4b2bd2f6無授權條款收錄於 2026年10月9日更新於 2026年10月9日

Authoritative rules and patterns for production-quality Kotlin Coroutines onto Android. Covers structured concurrency, lifecycle integration, and reactive streams.

AI 產生的概覽

提供在 Android 上撰寫生產級 Kotlin 協程程式碼的權威規則與模式。

功能
此技能提供一套在 Android 應用程式中實作 Kotlin 協程的規則與程式碼模式。內容涵蓋結構化並行、調度器注入、生命週期感知的 Flow 收集、ViewModel 作用域使用、例外處理、可取消性、回呼轉換,以及使用 runTest 進行測試。它產出的是指引說明與範例程式碼,而非可執行產物。
適用情境
適用於撰寫或審查 Android 協程程式碼的情境,例如從 API 或資料庫取得資料、執行背景處理、修復與執行緒相關的記憶體洩漏、將回呼轉換為 Flow、實作 ViewModel,或處理 UI 狀態更新。
執行需求
不需要指令碼或特殊工具,這是僅含說明的技能。套用其指引需要具備 Kotlin/Android 專案以及 Kotlin 協程程式庫。

Android Coroutines Expert Skill

This skill provides authoritative rules and patterns for writing production-quality Kotlin Coroutines code on Android. It enforces structured concurrency, lifecycle safety, and modern best practices (2025 standards).

Responsibilities

  • Asynchronous Logic: Implementing suspend functions, Dispatcher management, and parallel execution.
  • Reactive Streams: Implementing Flow, StateFlow, SharedFlow, and callbackFlow.
  • Lifecycle Integration: Managing scopes (viewModelScope, lifecycleScope) and safe collection (repeatOnLifecycle).
  • Error Handling: Implementing CoroutineExceptionHandler, SupervisorJob, and proper try-catch hierarchies.
  • Cancellability: Ensuring long-running operations are cooperative using ensureActive().
  • Testing: Setting up TestDispatcher and runTest.

Applicability

Activate this skill when the user asks to:

  • "Fetch data from an API/Database."
  • "Perform background processing."
  • "Fix a memory leak" related to threads/tasks.
  • "Convert a listener/callback to Coroutines."
  • "Implement a ViewModel."
  • "Handle UI state updates."

Critical Rules & Constraints

1. Dispatcher Injection (Testability)

  • NEVER hardcode Dispatchers (e.g., Dispatchers.IO, Dispatchers.Default) inside classes.
  • ALWAYS inject a CoroutineDispatcher via the constructor.
  • DEFAULT to Dispatchers.IO in the constructor argument for convenience, but allow it to be overridden.
kotlin
// CORRECTclass UserRepository(    private val ioDispatcher: CoroutineDispatcher = Dispatchers.IO) { ... }
// INCORRECTclass UserRepository {    fun getData() = withContext(Dispatchers.IO) { ... }}

2. Main-Safety

  • All suspend functions defined in the Data or Domain layer must be main-safe.
  • One-shot calls should be exposed as suspend functions.
  • Data changes should be exposed as Flow.
  • The caller (ViewModel) should be able to call them from Dispatchers.Main without blocking the UI.
  • Use withContext(dispatcher) inside the repository implementation to move execution to the background.

3. Lifecycle-Aware Collection

  • NEVER collect a flow directly in lifecycleScope.launch or launchWhenStarted (deprecated/unsafe).
  • ALWAYS use repeatOnLifecycle(Lifecycle.State.STARTED) for collecting flows in Activities or Fragments.
kotlin
// CORRECTviewLifecycleOwner.lifecycleScope.launch {    viewLifecycleOwner.repeatOnLifecycle(Lifecycle.State.STARTED) {        viewModel.uiState.collect { ... }    }}

4. ViewModel Scope Usage

  • Use viewModelScope for initiating coroutines in ViewModels.
  • Do not expose suspend functions from the ViewModel to the View. The ViewModel should expose StateFlow or SharedFlow that the View observes.

5. Mutable State Encapsulation

  • NEVER expose MutableStateFlow or MutableSharedFlow publicly.
  • Expose them as read-only StateFlow or Flow using .asStateFlow() or upcasting.

6. GlobalScope Prohibition

  • NEVER use GlobalScope. It breaks structured concurrency and leads to leaks.
  • If a task must survive the current scope, use an injected applicationScope (a custom scope tied to the Application lifecycle).

7. Exception Handling

  • NEVER catch CancellationException in a generic catch (e: Exception) block without rethrowing it.
  • Use runCatching only if you explicitly rethrow CancellationException.
  • Use CoroutineExceptionHandler only for top-level coroutines (inside launch). It has no effect inside async or child coroutines.

8. Cancellability

  • Coroutines feature cooperative cancellation. They don't stop immediately unless they check for cancellation.
  • ALWAYS call ensureActive() or yield() in tight loops (e.g., processing a large list, reading files) to check for cancellation.
  • Standard functions like delay() and withContext() are already cancellable.

9. Callback Conversion

  • Use callbackFlow to convert callback-based APIs to Flow.
  • ALWAYS use awaitClose at the end of the callbackFlow block to unregister listeners.

Code Patterns

Repository Pattern with Flow

kotlin
class NewsRepository(    private val remoteDataSource: NewsRemoteDataSource,    private val externalScope: CoroutineScope, // For app-wide events    private val ioDispatcher: CoroutineDispatcher = Dispatchers.IO) {    val newsUpdates: Flow<List<News>> = flow {        val news = remoteDataSource.fetchLatestNews()        emit(news)    }.flowOn(ioDispatcher) // Upstream executes on IO}

Parallel Execution

kotlin
suspend fun loadDashboardData() = coroutineScope {    val userDeferred = async { userRepo.getUser() }    val feedDeferred = async { feedRepo.getFeed() }        // Wait for both    DashboardData(        user = userDeferred.await(),        feed = feedDeferred.await()    )}

Testing with runTest

kotlin
@Testfun testViewModel() = runTest {    val testDispatcher = StandardTestDispatcher(testScheduler)    val viewModel = MyViewModel(testDispatcher)        viewModel.loadData()    advanceUntilIdle() // Process coroutines        assertEquals(expectedState, viewModel.uiState.value)}

來源與署名

來源:new-silvermoon/awesome-android-agent-skills位於.github/skills/concurrency_and_networking/android-coroutines提交82900ea

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