Book Image

Linux Device Driver Development Cookbook

By : Rodolfo Giometti
Book Image

Linux Device Driver Development Cookbook

By: Rodolfo Giometti

Overview of this book

Linux is a unified kernel that is widely used to develop embedded systems. As Linux has turned out to be one of the most popular operating systems worldwide, the interest in developing proprietary device drivers has also increased. Device drivers play a critical role in how the system performs and ensure that the device works in the manner intended. By exploring several examples on the development of character devices, the technique of managing a device tree, and how to use other kernel internals, such as interrupts, kernel timers, and wait queue, you’ll be able to add proper management for custom peripherals to your embedded system. You’ll begin by installing the Linux kernel and then configuring it. Once you have installed the system, you will learn to use different kernel features and character drivers. You will also cover interrupts in-depth and understand how you can manage them. Later, you will explore the kernel internals required for developing applications. As you approach the concluding chapters, you will learn to implement advanced character drivers and also discover how to write important Linux device drivers. By the end of this book, you will be equipped with the skills you need to write a custom character driver and kernel code according to your requirements.
Table of Contents (14 chapters)
10
Additional Information: Managing Interrupts and Concurrency

Using the Device Tree

Modern computers are really complex systems composed of complex peripherals, which have tons of different configuration settings; that's why having all possible variants of device driver configurations in a dedicated file can solve a lot of problems. Having a logical description about how a system is structured (that is how they are interconnected to each other and not just their list) can allow system developers to focus their attention on device driver mechanisms without the boring job of managing all possible user settings.

Moreover, knowing how every peripheral is connected to the system (for example, which bus a peripheral is dependent on) allows the implementation of a really smart peripheral management system. Such a system can correctly activate (or deactivate), in the right order, all the subsystems needed, by a specific device, to work.

Let...