Multi-Window Applications with React Native visionOS

Jul 17, 2024

Multi-Window Applications with React Native visionOS

Author

Shivraj Kumar
Shivraj KumarPrincipal Technical Consultant.

Subject Matter Expert

Tarunlal Rajak
Tarunlal RajakSoftware Engineer III

As we continue to explore React Native's capabilities for visionOS development, we encounter exciting opportunities to enhance user experiences. In this article, we'll explore creating and managing multiple windows in your visionOS application using the React Native visionOS-specific Window Manager API.

We will work with an existing YouTube-like application, expanding its functionality to support multiple windows. This approach allows us to focus on the multi-window implementation while building upon a familiar foundation.

Prerequisites

Before we begin, ensure you have:

  • A React Native visionOS development environment set up
  • Basic familiarity with React Native development
  • The latest version of necessary dependencies installed in your project
  • An existing visionOS application (like our YouTube clone) to build upon

To set up your environment or create a base application, refer to the React Native visionOS setup, as detailed in our introductory guide.

Implementing Multi-Window Functionality

Let's walk through the process of adding multi-window support to your visionOS application.

Step 1: Configure Info.plist

First, we need to enable multiple scene support in your Info.plist file:

<dict>
  <key>UIApplicationSceneManifest</key>
  <dict>
    <key>UIApplicationPreferredDefaultSceneSessionRole</key>
    <string>UIWindowSceneSessionRolApplication</string>
    <key>UIApplicationSupportsMultipleScenes</key>
    <true/>
    <key>UISceneConfigurations</key>
    <dict/>
  </dict>
</dict>

Step 2: Create the Second Window Component

Now, let's create a component for our second window. In this example, we'll display a video thumbnail:

// SecondWindow.tsx
import React from 'react';
import { Image, StyleSheet, View } from 'react-native';
import useVideoStore from '../store/store';

const SecondWindow = () => {
  const [allVideos, indexVideo] = useVideoStore(state => [
    state.allVideos,
    state.indexVideo,
  ]);

  return (
    <View style={styles.container}>
      <Image source={{uri: allVideos[indexVideo].thumb}} style={styles.image} />
    </View>
  );
};

const styles = StyleSheet.create({
  container: {
    flex: 1,
    backgroundColor: 'white',
  },
  image: {
    flex: 1,
    resizeMode: 'cover',
  },
});

export default SecondWindow;

Step 3: Register the Second Window Component

In your index.js file, register the SecondWindow component:

Step 4: Modify App.swift for Native Integration

Update your App.swift file to support the second window:

import SwiftUI
import React
import React_RCTSwiftExtensions

@main
struct YoutubeCloneApp: App {
  @UIApplicationDelegateAdaptor var delegate: AppDelegate
  @Environment(\\.reactContext) private var reactContext

  var body: some Scene {
    RCTMainWindow(moduleName: "YoutubeClone")
    RCTWindow(id: "SecondWindow", sceneData: reactContext.getSceneData(id: "SecondWindow"))
  }
}

Step 5: Implement Window Management in JavaScript

Use the Window Manager API to control the second window:

import React from 'react';
import { Button, View, StyleSheet } from 'react-native';
import { WindowManager } from '@callstack/react-native-visionos';
import useVideoStore from '../store/store';

const WindowControl = () => {
  const secondWindow = WindowManager.getWindow("SecondWindow");
  const increment = useVideoStore(state => state.increment);

  return (
    <View style={styles.container}>
      <Button
        title="Open Second Window"
        onPress={() => secondWindow.open()}
      />
      <Button
        title="Next Video"
        onPress={increment}
      />
    </View>
  );
};

const styles = StyleSheet.create({
  container: {
    flexDirection: 'row',
    justifyContent: 'space-around',
    padding: 10,
  },
});

export default WindowControl;

Managing State with Zustand

To manage state across windows, we'll use Zustand. Here's a basic store setup:

// store.ts
import create from 'zustand';

interface VideoType {
  thumb: string;
  // Add other video properties as needed
}

interface VideoStore {
  allVideos: VideoType[];
  indexVideo: number;
  setAllVideos: (videos: VideoType[]) => void;
  increment: () => void;
}

const useVideoStore = create<VideoStore>((set) => ({
  allVideos: [],
  indexVideo: 0,
  setAllVideos: (videos) => set({ allVideos: videos }),
  increment: () => set((state) => ({ indexVideo: (state.indexVideo + 1) % state.allVideos.length })),
}));

export default useVideoStore;

Putting It All Together

Now that we have all the pieces let's see how they work together:

visionos.mov

  1. The main window displays video content and the WindowControl component.
  2. When the user presses "Open Second Window," a new window shows the current video's thumbnail.
  3. Pressing "Next Video" updates the indexVideo in the store, which automatically updates the thumbnail in the second window.

Next step would be to move the video to the second window, which needs to be tried out.

Conclusion

Implementing multi-window functionality in your React Native visionOS app can create more immersive and interactive user experiences. This approach allows for flexible content presentation and enhanced user engagement.

As you continue to explore visionOS development with React Native, consider how multi-window support can elevate your application's user experience. Consider various user interactions and edge cases and thoroughly test your implementation.

We hope this guide helps you unlock new possibilities in your visionOS applications. Happy coding!

Subscribe to Our Newsletter

More from the engineering frontline.

Dive deep into our research and insights on design, development, and the impact of various trends to businesses.
Insight
The Agent Can See Your App. How Often Can It Look?
Sep 4, 2026

The Agent Can See Your App. How Often Can It Look?

AI coding agents can now interact with mobile apps, but their effectiveness depends on iteration speed. This blog explores how React Native architecture influences feedback loops and AI-driven developer productivity.

Insight
Building Interactive Cards from Design JSON Without Killing Your Feed: Overlays, Video, Mute/Unmute, and Lag-Free Lists
Sep 1, 2026

Building Interactive Cards from Design JSON Without Killing Your Feed: Overlays, Video, Mute/Unmute, and Lag-Free Lists

Learn how to turn design JSON into interactive, video-enabled cards using overlays, smart media controls, caching, and virtualization without slowing down high-cardinality feeds.

Insight
The Bug That Doesn't Show Up in Code Review: Why Your Flutter Web App Reloads on Safari
Aug 19, 2026

The Bug That Doesn't Show Up in Code Review: Why Your Flutter Web App Reloads on Safari

A real-world look at how oversized images can trigger Safari reloads and iOS crashes in Flutter apps and how smarter image decoding prevents them.

Insight
From Prompting to Process: What Changed When Flutter Shipped Agent Skills
Aug 19, 2026

From Prompting to Process: What Changed When Flutter Shipped Agent Skills

This blog explores how Flutter Agent Skills improve AI-assisted development by combining official framework workflows with project-specific guidance for more consistent development.

Insight
Why Everything Your AI Builds Looks the Same
Aug 19, 2026

Why Everything Your AI Builds Looks the Same

This blog explores why AI-generated interfaces often look alike and explains how design systems, product context, and reusable engineering practices help teams build distinctive, scalable

Technology
How We Built the Missing Bridge from Code to Figma
Jul 10, 2026

How We Built the Missing Bridge from Code to Figma

This blog explores how AI-generated React apps get turned into fully editable, designer-ready Figma files by reading React Fiber instead of the DOM.

Technology
Building a Resilient Hybrid-Cloud Network with WireGuard HA, Route-Based Failover, and Deep Observability
Jun 27, 2026

Building a Resilient Hybrid-Cloud Network with WireGuard HA, Route-Based Failover, and Deep Observability

A practical breakdown of building resilient AWS-to-on-premises connectivity with WireGuard HA, active-standby failover, and deep packet-forwarding observability.

The Right Conversation Can

Save You Six Months.

Book a call
Multi-Window Applications with React Native visionOS - GeekyAnts