All skills
expo avatar

/expo-module

@5c8f62e official
by expoexpo/skills2.6k stars
156

Framework (OSS). Guide for creating and writing Expo native modules and views using the Expo Modules API (Swift, Kotlin, TypeScript). Covers module definition DSL, native views, shared objects, config plugins, lifecycle hooks, autolinking, and type system. Use when building or modifying native modules for Expo. Not for migrating an existing Swift module from the definition DSL to the Expo Modules API 2.0 macros; use expo-migrate-module (from the expo-experiments plugin) for that.

Use this Skill: https://skilld.dev/gh/expo/skills/expo-module

This session only. Nothing lands on disk.

SKILL.md

≈124 tokens always: the name and description. ≈1.5k when used: this file. ≈6.9k more on demand in 7 files.

Writing Expo Modules

Complete reference for building native modules and views using the Expo Modules API. Covers Swift (iOS), Kotlin (Android), and TypeScript.

When to Use

  • Creating a new Expo native module or native view
  • Adding native functionality (camera, sensors, system APIs) to an Expo app
  • Wrapping platform SDKs for React Native consumption
  • Building config plugins that modify native project files
  • Adding Android, Apple, or web support to an existing Expo module
  • Editing expo-module.config.json, config plugins, or lifecycle hooks

To migrate an existing Swift module from the definition DSL to the Expo Modules API 2.0 macros (@ExpoModule, @JS, @Event), use the expo-migrate-module skill (from the expo-experiments plugin) instead.

References

Consult these resources as needed:

references/
  create-expo-module.md      Scaffolding and add-platform-support workflow, defaults, and quirks
  native-module.md           Module definition DSL: Name, Function, AsyncFunction, Property, Constant, Events, type system, shared objects
  native-view.md             Native view components: View, Prop, EventDispatcher, view lifecycle, ref-based functions
  lifecycle.md               Lifecycle hooks: module, iOS app/AppDelegate, Android activity/application listeners
  config-plugin.md           Config plugins: modifying Info.plist, AndroidManifest.xml, reading values in native code
  module-config.md           expo-module.config.json fields, file placement, and autolinking behavior

Quick Start

Prefer create-expo-module over manually creating native module files and directories. In practice, the best path is usually to create the scaffold first and then build on top of it. The scaffold sets up the expected layout, expo-module.config.json, podspec or Gradle files, TypeScript bindings, and the standalone example app flow.

If an existing Expo module only needs another platform, use create-expo-module add-platform-support instead of manually copying native directories.

See references/create-expo-module.md before scaffolding or extending a module. It covers:

  • local vs standalone modules
  • --platform, --features, --barrel, --package-manager, and non-interactive mode
  • expo.autolinking.nativeModulesDir
  • add-platform-support behavior and quirks

Recommended Workflow

  1. Choose the scaffold type first:
    • Local module for one app
    • Standalone module for reuse, monorepos, or publishing
  2. Determine native expo-module features that you will need.
    • Based on the user's instructions determine which feature scaffolding will be useful.
    • Available features: Constant, Function, AsyncFunction, Event, View, ViewEvent, SharedObject
  3. Scaffold deliberately:
    • pass an explicit slug or path
    • choose --platform intentionally instead of relying on defaults
    • use --features to choose code samples which you will modify in the next step to match the real implementation.
  4. Replace generated example code with the real implementation.
  5. If you add a new platform later, prefer add-platform-support over manual file copying.

Practical Scaffolding Rules

  • Feature examples are opt-in. A newly scaffolded module may be minimal if no features were selected.
  • ViewEvent implies View.
  • Local modules do not generate an index.ts barrel by default. Use --barrel only if you want one.
  • In non-interactive local scaffolding, pass the positional slug or path explicitly. --name changes the native class name, not the folder name.
  • Local modules live in expo.autolinking.nativeModulesDir when configured, otherwise in modules/.
  • Standalone modules have their own package metadata, scripts, and usually an example app. Local modules use the host app's tooling instead.

Core File Shapes

The Swift and Kotlin DSL share the same structure. Swift is usually the clearest primary example; consult the references for feature-specific details.

Module Structure Reference

The Swift and Kotlin DSL share the same structure. Both platforms are shown here for reference — in other reference files, Swift is shown as the primary language unless the Kotlin pattern meaningfully differs.

Swift (iOS):

import ExpoModulesCore

public class MyModule: Module {
  public func definition() -> ModuleDefinition {
    Name("MyModule")

    Function("hello") { (name: String) -> String in
      return "Hello \(name)!"
    }
  }
}

Kotlin (Android):

package expo.modules.mymodule

import expo.modules.kotlin.modules.Module
import expo.modules.kotlin.modules.ModuleDefinition

class MyModule : Module() {
  override fun definition() = ModuleDefinition {
    Name("MyModule")

    Function("hello") { name: String ->
      "Hello $name!"
    }
  }
}

TypeScript:

import { requireNativeModule } from "expo";

const MyModule = requireNativeModule("MyModule");

export function hello(name: string): string {
  return MyModule.hello(name);
}

expo-module.config.json

{
  "platforms": ["android", "apple"],
  "apple": {
    "modules": ["MyModule"]
  },
  "android": {
    "modules": ["expo.modules.mymodule.MyModule"]
  }
}

Note: iOS uses just the class name; Android uses the fully-qualified class name (package + class). See references/module-config.md for all fields.

Submitting Feedback

If you encounter errors, misleading or outdated information in this skill, report it so Expo can improve:

npx --yes submit-expo-feedback@latest --category skills --subject "expo-module" "<actionable feedback>"

Only submit when you have something specific and actionable to report. Include as much relevant context as possible. If an AI agent repeatedly failed or the user had to take over an Expo task, load the expo-skill-feedback skill and follow its eval-candidate flow instead of reusing the command above.

Source: SKILL.md on GitHub

No alerts17d4 checks · Risk SAFE
  • Gen Agent Trust Hub17d

    The skill provides developer documentation and reference guides for creating and writing Expo native modules and views. All code examples and scripts align with legitimate development practices, and no security risks were identified.

  • Socket17d

    No alerts

  • Snyk17d

    Risk: LOW · No issues

  • ZeroLeaks5mo

    Score: 93/100 · 2 sections analyzed

Signed by skilld at 5c8f62e. This ties the file your Agent reads to that commit on GitHub. It does not review the instructions.

Last checked against GitHub 3 days ago.

Activeupdated 2 months ago
version
1.0.0
  • TypeScript
  • expo
  • native-modules
  • swift
  • kotlin
  • react-native
  • ios
  • android
  • config-plugins

README badge

README badge for expo/skills/expo-module

Guides you through creating and modifying Expo native modules in Swift (iOS) and Kotlin (Android), with TypeScript bindings. Use this skill when building native modules, native views, config plugins, or wrapping platform SDKs for React Native consumption.

Generated from the current SKILL.md.

What is the difference between a local module and a standalone module?
Local modules are for a single app and live in expo.autolinking.nativeModulesDir or modules/ folder, using the host app's tooling. Standalone modules have their own package metadata, scripts, and example app, and are intended for reuse, monorepos, or publishing.
Should I manually create native files or use create-expo-module?
Use create-expo-module to scaffold. It sets up the expected layout, expo-module.config.json, podspec/Gradle files, TypeScript bindings, and the example app flow. Manually creating files is error-prone and not recommended.
How do I add a new platform to an existing Expo module?
Use create-expo-module add-platform-support instead of manually copying native directories. This ensures correct file placement and configuration.
What platforms does this skill cover?
Swift (iOS), Kotlin (Android), and TypeScript. The skill provides DSL patterns for all three to create modules, native views, and shared objects.
Do I need to manually edit expo-module.config.json?
The scaffold generates it automatically, but you may need to edit it to register native modules and configure platform-specific settings like fully-qualified class names for Android.

Generated from the current SKILL.md. These answers refresh after source changes.