Book Image

Cross-platform Desktop Application Development: Electron, Node, NW.js, and React

By : Dmitry Sheiko
Book Image

Cross-platform Desktop Application Development: Electron, Node, NW.js, and React

By: Dmitry Sheiko

Overview of this book

Building and maintaining cross-platform desktop applications with native languages isn’t a trivial task. Since it’s hard to simulate on a foreign platform, packaging and distribution can be quite platform-specific and testing cross-platform apps is pretty complicated.In such scenarios, web technologies such as HTML5 and JavaScript can be your lifesaver. HTML5 desktop applications can be distributed across different platforms (Window, MacOS, and Linux) without any modifications to the code. The book starts with a walk-through on building a simple file explorer from scratch powered by NW.JS. So you will practice the most exciting features of bleeding edge CSS and JavaScript. In addition you will learn to use the desktop environment integration API, source code protection, packaging, and auto-updating with NW.JS. As the second application you will build a chat-system example implemented with Electron and React. While developing the chat app, you will get Photonkit. Next, you will create a screen capturer with NW.JS, React, and Redux. Finally, you will examine an RSS-reader built with TypeScript, React, Redux, and Electron. Generic UI components will be reused from the React MDL library. By the end of the book, you will have built four desktop apps. You will have covered everything from planning, designing, and development to the enhancement, testing, and delivery of these apps.
Table of Contents (9 chapters)

Summary

We started this chapter by introducing the Redux middleware. As an example, we used redux-diff-logger to monitor mutations in the store. We also plugged in a collection of tools (redux-devtools), enabling DevTools-like panels on a page for inspecting the store and traveling back in time using the cancelling actions. Closing with Redux, we examined unit-testing of action creators and reducers.

In this chapter, we created the Capturer service responsible for taking screenshots and recording screencasts. We achieved capturing of desktop video input in MediaStream by using webkitGetUserMedia API. With the Canvas API, we managed to take a still frame from the video stream and convert it into an image. For video recording, we went with the MediaRecorder API. Both screenshot and screencast actions we have provided with the corresponding desktop notifications. We implemented an...