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android-kotlin

alinaqi/claude-bootstrap

Android Kotlin development with Coroutines, Jetpack Compose, Hilt, and MockK testing

What is android-kotlin?

Provides patterns and configuration for modern Android development using Kotlin. Includes setup for reactive UI with Jetpack Compose, dependency injection with Hilt, asynchronous programming with Coroutines, and testing with MockK. Use this when building or maintaining Android Kotlin applications.

  • Jetpack Compose UI development with Material3 theming and state management
  • Kotlin Coroutines and Flow for reactive data streams and ViewModel state
  • Hilt dependency injection configuration and module setup
  • Room database integration for local data persistence
  • MockK testing framework for unit and instrumentation tests
  • Gradle Kotlin DSL configuration for Android projects

How to install android-kotlin

npx skills add https://github.com/alinaqi/claude-bootstrap --skill android-kotlin
Prerequisites
  • Android Studio or compatible IDE
  • Kotlin 1.9+ compiler
  • Android SDK 24+ (minSdk)
  • Gradle 8.0+
Claude Code
Cursor
Windsurf
Cline

How to use android-kotlin

  1. 1.Review the project structure to understand data, domain, and UI layer organization
  2. 2.Configure app-level build.gradle.kts with required dependencies (Compose, Coroutines, Hilt, Room)
  3. 3.Create Hilt modules in the di/ directory for dependency injection
  4. 4.Implement repositories using Flow for reactive data access
  5. 5.Build ViewModels with StateFlow for UI state management
  6. 6.Create Compose screens using hiltViewModel() and collectAsStateWithLifecycle()
  7. 7.Write unit tests using MockK for mocking dependencies and Turbine for Flow testing

Use cases

Good for
  • Building reactive UI screens with Jetpack Compose and ViewModel state
  • Implementing repository pattern with Flow-based data fetching from API and local cache
  • Setting up dependency injection for services, repositories, and use cases
  • Writing unit tests for ViewModels and repositories with MockK
  • Configuring Gradle build files for multi-layer Android architecture
Who it's for
  • Android developers using Kotlin
  • Teams building modern Android apps with Compose
  • Developers implementing clean architecture patterns on Android
  • QA engineers writing instrumentation tests

android-kotlin FAQ

How do I set up Hilt for dependency injection?

Add Hilt plugin and KSP to build.gradle.kts, create @HiltModule classes in the di/ directory, and annotate your Application class with @HiltAndroidApp. Use @Inject on constructors and @HiltViewModel on ViewModels.

How should I structure data fetching with Room and API?

Implement repositories that emit cached data first via Flow, then fetch from the network and update the Room database. Use flowOn(Dispatchers.IO) to ensure database operations run on background threads.

What is the recommended pattern for ViewModel state?

Use MutableStateFlow for internal state and expose it as StateFlow. Update state with .update { } lambda. Collect in Compose with collectAsStateWithLifecycle() to respect lifecycle.

How do I test Flows and coroutines?

Use kotlinx-coroutines-test for TestDispatchers, MockK for mocking dependencies, and Turbine for asserting Flow emissions in unit tests.

Should I use Compose for all Android UI?

Yes, Jetpack Compose is the modern recommended approach. This skill focuses on Compose-based development with Material3 theming.

Full instructions (SKILL.md)

Source of truth, from alinaqi/claude-bootstrap.


name: android-kotlin description: Android Kotlin development with Coroutines, Jetpack Compose, Hilt, and MockK testing when-to-use: When working on Android Kotlin source files user-invocable: false paths: ["/*.kt", "/*.kts", "android/", "/build.gradle.kts"] effort: medium

Android Kotlin Skill


Project Structure

project/
├── app/
│   ├── src/
│   │   ├── main/
│   │   │   ├── kotlin/com/example/app/
│   │   │   │   ├── data/               # Data layer
│   │   │   │   │   ├── local/          # Room database
│   │   │   │   │   ├── remote/         # Retrofit/Ktor services
│   │   │   │   │   └── repository/     # Repository implementations
│   │   │   │   ├── di/                 # Hilt modules
│   │   │   │   ├── domain/             # Business logic
│   │   │   │   │   ├── model/          # Domain models
│   │   │   │   │   ├── repository/     # Repository interfaces
│   │   │   │   │   └── usecase/        # Use cases
│   │   │   │   ├── ui/                 # Presentation layer
│   │   │   │   │   ├── feature/        # Feature screens
│   │   │   │   │   │   ├── FeatureScreen.kt      # Compose UI
│   │   │   │   │   │   └── FeatureViewModel.kt
│   │   │   │   │   ├── components/     # Reusable Compose components
│   │   │   │   │   └── theme/          # Material theme
│   │   │   │   └── App.kt              # Application class
│   │   │   ├── res/
│   │   │   └── AndroidManifest.xml
│   │   ├── test/                       # Unit tests
│   │   └── androidTest/                # Instrumentation tests
│   └── build.gradle.kts
├── build.gradle.kts                    # Project-level build file
├── gradle.properties
├── settings.gradle.kts
└── CLAUDE.md

Gradle Configuration (Kotlin DSL)

App-level build.gradle.kts

plugins {
    id("com.android.application")
    id("org.jetbrains.kotlin.android")
    id("com.google.dagger.hilt.android")
    id("com.google.devtools.ksp")
}

android {
    namespace = "com.example.app"
    compileSdk = 34

    defaultConfig {
        applicationId = "com.example.app"
        minSdk = 24
        targetSdk = 34
        versionCode = 1
        versionName = "1.0"

        testInstrumentationRunner = "androidx.test.runner.AndroidJUnitRunner"
    }

    buildTypes {
        release {
            isMinifyEnabled = true
            proguardFiles(
                getDefaultProguardFile("proguard-android-optimize.txt"),
                "proguard-rules.pro"
            )
        }
    }

    compileOptions {
        sourceCompatibility = JavaVersion.VERSION_17
        targetCompatibility = JavaVersion.VERSION_17
    }

    kotlinOptions {
        jvmTarget = "17"
    }

    buildFeatures {
        compose = true
    }

    composeOptions {
        kotlinCompilerExtensionVersion = "1.5.8"
    }
}

dependencies {
    // Compose BOM
    val composeBom = platform("androidx.compose:compose-bom:2024.01.00")
    implementation(composeBom)
    implementation("androidx.compose.ui:ui")
    implementation("androidx.compose.ui:ui-tooling-preview")
    implementation("androidx.compose.material3:material3")
    implementation("androidx.activity:activity-compose:1.8.2")
    implementation("androidx.lifecycle:lifecycle-viewmodel-compose:2.7.0")

    // Coroutines
    implementation("org.jetbrains.kotlinx:kotlinx-coroutines-android:1.7.3")

    // Hilt
    implementation("com.google.dagger:hilt-android:2.50")
    ksp("com.google.dagger:hilt-compiler:2.50")
    implementation("androidx.hilt:hilt-navigation-compose:1.1.0")

    // Room
    implementation("androidx.room:room-runtime:2.6.1")
    implementation("androidx.room:room-ktx:2.6.1")
    ksp("androidx.room:room-compiler:2.6.1")

    // Testing
    testImplementation("junit:junit:4.13.2")
    testImplementation("io.mockk:mockk:1.13.9")
    testImplementation("org.jetbrains.kotlinx:kotlinx-coroutines-test:1.7.3")
    testImplementation("app.cash.turbine:turbine:1.0.0")
    androidTestImplementation("androidx.test.ext:junit:1.1.5")
    androidTestImplementation("androidx.compose.ui:ui-test-junit4")
    debugImplementation("androidx.compose.ui:ui-tooling")
    debugImplementation("androidx.compose.ui:ui-test-manifest")
}

Kotlin Coroutines & Flow

ViewModel with StateFlow

@HiltViewModel
class UserViewModel @Inject constructor(
    private val getUserUseCase: GetUserUseCase,
    private val savedStateHandle: SavedStateHandle
) : ViewModel() {

    private val _uiState = MutableStateFlow(UserUiState())
    val uiState: StateFlow<UserUiState> = _uiState.asStateFlow()

    private val userId: String = checkNotNull(savedStateHandle["userId"])

    init {
        loadUser()
    }

    fun loadUser() {
        viewModelScope.launch {
            _uiState.update { it.copy(isLoading = true) }

            getUserUseCase(userId)
                .catch { e ->
                    _uiState.update {
                        it.copy(isLoading = false, error = e.message)
                    }
                }
                .collect { user ->
                    _uiState.update {
                        it.copy(isLoading = false, user = user, error = null)
                    }
                }
        }
    }

    fun clearError() {
        _uiState.update { it.copy(error = null) }
    }
}

data class UserUiState(
    val user: User? = null,
    val isLoading: Boolean = false,
    val error: String? = null
)

Repository with Flow

interface UserRepository {
    fun getUser(userId: String): Flow<User>
    fun observeUsers(): Flow<List<User>>
    suspend fun saveUser(user: User)
}

class UserRepositoryImpl @Inject constructor(
    private val api: UserApi,
    private val dao: UserDao,
    private val dispatcher: CoroutineDispatcher = Dispatchers.IO
) : UserRepository {

    override fun getUser(userId: String): Flow<User> = flow {
        // Emit cached data first
        dao.getUserById(userId)?.let { emit(it) }

        // Fetch from network and update cache
        val remoteUser = api.getUser(userId)
        dao.insert(remoteUser)
        emit(remoteUser)
    }.flowOn(dispatcher)

    override fun observeUsers(): Flow<List<User>> =
        dao.observeAllUsers().flowOn(dispatcher)

    override suspend fun saveUser(user: User) = withContext(dispatcher) {
        api.saveUser(user)
        dao.insert(user)
    }
}

Jetpack Compose

Screen with ViewModel

@Composable
fun UserScreen(
    viewModel: UserViewModel = hiltViewModel(),
    onNavigateBack: () -> Unit
) {
    val uiState by viewModel.uiState.collectAsStateWithLifecycle()

    UserScreenContent(
        uiState = uiState,
        onRefresh = viewModel::loadUser,
        onErrorDismiss = viewModel::clearError,
        onNavigateBack = onNavigateBack
    )
}

@Composable
private fun UserScreenContent(
    uiState: UserUiState,
    onRefresh: () -> Unit,
    onErrorDismiss: () -> Unit,
    onNavigateBack: () -> Unit
) {
    Scaffold(
        topBar = {
            TopAppBar(
                title = { Text("User Profile") },
                navigationIcon = {
                    IconButton(onClick = onNavigateBack) {
                        Icon(Icons.AutoMirrored.Filled.ArrowBack, "Back")
                    }
                }
            )
        }
    ) { padding ->
        Box(
            modifier = Modifier
                .fillMaxSize()
                .padding(padding)
        ) {
            when {
                uiState.isLoading -> {
                    CircularProgressIndicator(
                        modifier = Modifier.align(Alignment.Center)
                    )
                }
                uiState.user != null -> {
                    UserContent(user = uiState.user)
                }
            }

            uiState.error?.let { error ->
                Snackbar(
                    modifier = Modifier.align(Alignment.BottomCenter),
                    action = {
                        TextButton(onClick = onErrorDismiss) {
                            Text("Dismiss")
                        }
                    }
                ) {
                    Text(error)
                }
            }
        }
    }
}

Sealed Classes for State

Result Wrapper

sealed interface Result<out T> {
    data class Success<T>(val data: T) : Result<T>
    data class Error(val exception: Throwable) : Result<Nothing>
    data object Loading : Result<Nothing>
}

fun <T> Result<T>.getOrNull(): T? = (this as? Result.Success)?.data

inline fun <T, R> Result<T>.map(transform: (T) -> R): Result<R> = when (this) {
    is Result.Success -> Result.Success(transform(data))
    is Result.Error -> this
    is Result.Loading -> this
}

Testing with MockK & Turbine

ViewModel Tests

@OptIn(ExperimentalCoroutinesApi::class)
class UserViewModelTest {

    @get:Rule
    val mainDispatcherRule = MainDispatcherRule()

    private val getUserUseCase: GetUserUseCase = mockk()
    private val savedStateHandle = SavedStateHandle(mapOf("userId" to "123"))

    private lateinit var viewModel: UserViewModel

    @Before
    fun setup() {
        viewModel = UserViewModel(getUserUseCase, savedStateHandle)
    }

    @Test
    fun `loadUser success updates state with user`() = runTest {
        val user = User("123", "John Doe", "john@example.com")
        coEvery { getUserUseCase("123") } returns flowOf(user)

        viewModel.uiState.test {
            val initial = awaitItem()
            assertFalse(initial.isLoading)

            viewModel.loadUser()

            val loading = awaitItem()
            assertTrue(loading.isLoading)

            val success = awaitItem()
            assertFalse(success.isLoading)
            assertEquals(user, success.user)
        }
    }
}

class MainDispatcherRule(
    private val dispatcher: TestDispatcher = UnconfinedTestDispatcher()
) : TestWatcher() {
    override fun starting(description: Description) {
        Dispatchers.setMain(dispatcher)
    }
    override fun finished(description: Description) {
        Dispatchers.resetMain()
    }
}

GitHub Actions

name: Android Kotlin CI

on:
  push:
    branches: [main]
  pull_request:
    branches: [main]

jobs:
  build:
    runs-on: ubuntu-latest

    steps:
      - uses: actions/checkout@v4

      - name: Set up JDK 17
        uses: actions/setup-java@v4
        with:
          java-version: '17'
          distribution: 'temurin'

      - name: Setup Gradle
        uses: gradle/actions/setup-gradle@v3

      - name: Run Detekt
        run: ./gradlew detekt

      - name: Run Ktlint
        run: ./gradlew ktlintCheck

      - name: Run Unit Tests
        run: ./gradlew testDebugUnitTest

      - name: Build Debug APK
        run: ./gradlew assembleDebug

Lint Configuration

detekt.yml

build:
  maxIssues: 0

complexity:
  LongMethod:
    threshold: 20
  LongParameterList:
    functionThreshold: 4
  TooManyFunctions:
    thresholdInFiles: 10

style:
  MaxLineLength:
    maxLineLength: 120
  WildcardImport:
    active: true

coroutines:
  GlobalCoroutineUsage:
    active: true

Kotlin Anti-Patterns

  • Blocking coroutines on Main - Never use runBlocking on main thread
  • GlobalScope usage - Use structured concurrency with viewModelScope/lifecycleScope
  • Collecting flows in init - Use repeatOnLifecycle or collectAsStateWithLifecycle
  • Mutable state exposure - Expose StateFlow not MutableStateFlow
  • Not handling exceptions in flows - Always use catch operator
  • Lateinit for nullable - Use lazy or nullable with ?
  • Hardcoded dispatchers - Inject dispatchers for testability
  • Not using sealed classes - Prefer sealed for finite state sets
  • Side effects in Composables - Use LaunchedEffect/SideEffect
  • Unstable Compose parameters - Use stable/immutable types or @Stable