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  • Book Overview & Buying Reverse Engineering Armv8-A Systems
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Reverse Engineering Armv8-A Systems

Reverse Engineering Armv8-A Systems

By : Austin Kim
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Reverse Engineering Armv8-A Systems

Reverse Engineering Armv8-A Systems

By: Austin Kim

Overview of this book

Unlock the secrets hidden in binary code without needing the source! Written by a Linux kernel engineer and author with over 14 years of industry experience, this book lays a solid foundation in reverse engineering and takes you from curious analyst to expert. You’ll master advanced techniques to dissect kernel binaries, including kernel module files, vmlinux, and vmcore, giving you the power to analyze systems at their core. This practical, three-part journey starts with the essentials of reverse engineering, introducing the key features of Armv8-A processors and the ELF file format. The second part walks you through the reverse-engineering process, from Arm environment setup to using static and dynamic analysis tools, including innovative methods for analyzing kernel binaries and the powerful debugging tool uftrace. The final part covers security, exploring TrustZone and the latest security techniques to safeguard Arm devices at the hardware level. By the end of this reverse engineering book, you'll have comprehensive Armv8-A expertise and the practical skills to analyze any binary with confidence while leveraging advanced security features to harden your systems.
Table of Contents (22 chapters)
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Preface
Lock Free Chapter
1
Part I: Fundamentals of Armv8-A Architecture
7
Part II: Background Knowledge for Binary Analysis
11
Part III: Unlocking Key Binary Analysis Skills for Reverse Engineering
17
Part IV: Security Features in Armv8-A Systems
20
Other Books You May Enjoy
21
Index

Analyzing Program Behavior with Basic Dynamic Analysis

In this chapter, we will continue by exploring how to analyze the call stack and memory dump while running software on an actual target device.

Specifically, we will cover the following topics:

  • Introducing dynamic analysis
  • Exploring the GDB program
  • Understanding the virtual address range
  • Analyzing stack memory content
  • Return-oriented programming analysis
  • Memory corruption: buffer overflow case study

This chapter begins with an explanation of the methodology for dynamic analysis. After that, we will explore the key features of GDB and then move on to a case study focused on memory corruption.

All the materials covered in this chapter are based on real-world issues, such as stack corruption and memory corruption. By understanding the content in this chapter, you will enhance your debugging skills in binary analysis.

Let’s begin this chapter by learning about the...

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Reverse Engineering Armv8-A Systems
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