Book Image

Architecting and Building High-Speed SoCs

By : Mounir Maaref
5 (1)
Book Image

Architecting and Building High-Speed SoCs

5 (1)
By: Mounir Maaref

Overview of this book

Modern and complex SoCs can adapt to many demanding system requirements by combining the processing power of ARM processors and the feature-rich Xilinx FPGAs. You’ll need to understand many protocols, use a variety of internal and external interfaces, pinpoint the bottlenecks, and define the architecture of an SoC in an FPGA to produce a superior solution in a timely and cost-efficient manner. This book adopts a practical approach to helping you master both the hardware and software design flows, understand key interconnects and interfaces, analyze the system performance and enhance it using the acceleration techniques, and finally build an RTOS-based software application for an advanced SoC design. You’ll start with an introduction to the FPGA SoCs technology fundamentals and their associated development design tools. Gradually, the book will guide you through building the SoC hardware and software, starting from the architecture definition to testing on a demo board or a virtual platform. The level of complexity evolves as the book progresses and covers advanced applications such as communications, security, and coherent hardware acceleration. By the end of this book, you'll have learned the concepts underlying FPGA SoCs’ advanced features and you’ll have constructed a high-speed SoC targeting a high-end FPGA from the ground up.
Table of Contents (20 chapters)
1
Part 1: Fundamentals and the Main Features of High-Speed SoC and FPGA Designs
7
Part 2: Implementing High-Speed SoC Designs in an FPGA
12
Part 3: Implementation and Integration of Advanced High-Speed FPGA SoCs

Communication and Control Systems Implementation in FPGAs and SoCs

In this chapter, you will continue learning about more advanced applications implemented in modern FPGAs and SoCs and what makes these devices suitable to host these types of processing- and bandwidth-demanding applications. You will gain clarity on how pipelined and parallel processing engines required by modern wired and wireless communications systems in general can be easily implemented in the FPGA logic. You will also examine how these parallel compute engines can be interfaced to wide memories and integrated with the powerful CPUs available in the SoCs. You will also gain an overview of modern control and industrial systems, which use a wide range of custom and industry-specific standards. This chapter is also purely informative and introduces high-level architectural details that may inspire you in designing and building these applications. This is the closing chapter of Part 3, which has covered most of the...