Install
$ agentstack add mcp-dpconde-claude-android-skill ✓ scanned · ✓ verified, works with Claude Code, Cursor, and more.
Security review
✓ PassedNo issues found. Passed automated security review. · v0.1.0 How review works →
- ✓ Prompt-injection patterns
- ✓ Secret / credential exfiltration
- ✓ Dangerous shell & filesystem operations
- ✓ Untrusted network calls
- ✓ Known-malicious package signatures
What it can access
- ✓ Network access No
- ✓ Filesystem access No
- ✓ Shell / process execution No
- ✓ Environment & secrets No
- ✓ Dynamic code execution No
From automated source analysis of v0.1.0. “Used” means the capability is present in the source — more access means more to trust, not that it’s unsafe.
Verified badge
Passed review? Show it. Paste this badge into your README, it links to the public security report.
Reliability & compatibility
Declared compatibility
Compatibility is declared by the source manifest. End-to-end runtime verification is coming, see below.
We're building live execution health for every listing: tool-call success rate, median latency, uptime, and last-checked timestamps, measured, not self-reported. It isn't live yet, so we don't show numbers we can't stand behind.
How agent discovery & health will work →About
[WIP] Android Development Skill for Claude Code
A production-ready skill that enables Claude Code to build Android applications following Google's official architecture guidance and best practices from the NowInAndroid reference app.
Overview
This skill provides Claude with comprehensive knowledge of modern Android development patterns, including:
- Clean Architecture with UI, Domain, and Data layers
- Jetpack Compose patterns and best practices
- Multi-module project structure with convention plugins
- Offline-first architecture with Room and reactive streams
- Dependency injection with Hilt
- Comprehensive testing strategies
Installation
- Clone this repository into your Claude Code skills directory:
``bash git clone https://github.com/dpconde/claude-android-skill.git ``
- Claude Code will automatically detect and load the skill when you work on Android projects.
Usage
The skill automatically activates when you request Android-related tasks. Simply ask Claude to:
- "Create a new Android feature module for user settings"
- "Build a Compose screen with MVVM pattern"
- "Set up a Repository with offline-first architecture"
- "Add navigation to my Android app"
- "Configure multi-module Gradle setup"
Claude will follow the patterns and best practices defined in this skill.
Project Structure
claude-android-skill/
├── SKILL.md # Main skill definition and quick reference
├── references/ # Detailed documentation
│ ├── architecture.md # UI, Domain, Data layers patterns
│ ├── compose-patterns.md # Jetpack Compose best practices
│ ├── gradle-setup.md # Build configuration & convention plugins
│ ├── modularization.md # Multi-module project structure
│ └── testing.md # Testing strategies and patterns
├── assets/
│ └── templates/ # Project templates
│ ├── libs.versions.toml.template
│ └── settings.gradle.kts.template
└── scripts/
└── generate_feature.py # Feature module generator script
Core Principles
This skill teaches Claude to follow these key Android development principles:
- Offline-first: Local database as source of truth, synchronized with remote data
- Unidirectional data flow: Events flow down, data flows up (UDF pattern)
- Reactive streams: Use Kotlin Flow for all data exposure
- Modular by feature: Each feature is self-contained with clear API boundaries
- Testable by design: Use interfaces and test doubles, avoid mocking frameworks
Reference Documentation
Quick Navigation
| Topic | File | Description | |-------|------|-------------| | Architecture | [architecture.md](references/architecture.md) | MVVM pattern, layers, repositories, use cases | | Compose UI | [compose-patterns.md](references/compose-patterns.md) | Screens, state hoisting, side effects, theming | | Build Setup | [gradle-setup.md](references/gradle-setup.md) | Convention plugins, version catalogs, configuration | | Modularization | [modularization.md](references/modularization.md) | Module types, dependencies, feature structure | | Testing | [testing.md](references/testing.md) | Unit tests, UI tests, test doubles, strategies |
Architecture Overview
┌─────────────────────────────────────────┐
│ UI Layer │
│ (Compose Screens + ViewModels) │
├─────────────────────────────────────────┤
│ Domain Layer │
│ (Use Cases - optional, for reuse) │
├─────────────────────────────────────────┤
│ Data Layer │
│ (Repositories + DataSources) │
└─────────────────────────────────────────┘
Module Types
app/ # Application module
feature/
├── featurename/
│ ├── api/ # Public navigation contracts
│ └── impl/ # Internal implementation
core/
├── data/ # Repositories
├── database/ # Room DAOs & entities
├── network/ # Retrofit & API models
├── model/ # Domain models
├── ui/ # Reusable components
├── designsystem/ # Theme & design tokens
└── testing/ # Test utilities
Features
Code Generation
The skill includes a Python script to generate feature modules:
python scripts/generate_feature.py settings \
--package com.example.app \
--path /path/to/project
This creates a complete feature module with:
- API module with navigation definitions
- Implementation module with Screen, ViewModel, UiState
- Gradle build files with proper dependencies
- Hilt dependency injection setup
Templates
Pre-configured templates for common Android project files:
libs.versions.toml.template- Gradle version catalogsettings.gradle.kts.template- Project settings
Standard Patterns
ViewModel Pattern
@HiltViewModel
class MyFeatureViewModel @Inject constructor(
private val repository: MyRepository,
) : ViewModel() {
val uiState: StateFlow = repository
.getData()
.map { MyFeatureUiState.Success(it) }
.stateIn(
scope = viewModelScope,
started = SharingStarted.WhileSubscribed(5_000),
initialValue = MyFeatureUiState.Loading,
)
}
Screen Pattern
@Composable
internal fun MyFeatureRoute(
viewModel: MyFeatureViewModel = hiltViewModel(),
) {
val uiState by viewModel.uiState.collectAsStateWithLifecycle()
MyFeatureScreen(uiState = uiState)
}
Repository Pattern
interface MyRepository {
fun getData(): Flow>
}
internal class OfflineFirstMyRepository @Inject constructor(
private val dao: MyDao,
private val api: MyNetworkApi,
) : MyRepository {
override fun getData(): Flow> =
dao.getAll().map { it.toModel() }
}
Technology Stack
This skill configures projects with:
- Language: Kotlin
- UI: Jetpack Compose
- Architecture: MVVM with UDF
- DI: Hilt
- Database: Room
- Network: Retrofit + Kotlinx Serialization
- Async: Kotlin Coroutines + Flow
- Testing: JUnit, Turbine, Compose Testing
- Build: Gradle with Convention Plugins
License
This project is licensed under the MIT License - see the LICENSE file for details.
Acknowledgments
Based on patterns and practices from:
Resources
- Android Developer Documentation
- NowInAndroid Repository
- Kotlin Documentation
- Jetpack Compose Pathway
Source & license
This open-source MCP server is cataloged on AgentStack and links to its original source — we do not rehost the code.
- Author: dpconde
- Source: dpconde/claude-android-skill
- License: MIT
Install and usage instructions live in the source repository linked above.
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Versions
- v0.1.0 Imported from the upstream source.