Book Image

Mastering Malware Analysis

By : Alexey Kleymenov, Amr Thabet
Book Image

Mastering Malware Analysis

By: Alexey Kleymenov, Amr Thabet

Overview of this book

With the ever-growing proliferation of technology, the risk of encountering malicious code or malware has also increased. Malware analysis has become one of the most trending topics in businesses in recent years due to multiple prominent ransomware attacks. Mastering Malware Analysis explains the universal patterns behind different malicious software types and how to analyze them using a variety of approaches. You will learn how to examine malware code and determine the damage it can possibly cause to your systems to ensure that it won't propagate any further. Moving forward, you will cover all aspects of malware analysis for the Windows platform in detail. Next, you will get to grips with obfuscation and anti-disassembly, anti-debugging, as well as anti-virtual machine techniques. This book will help you deal with modern cross-platform malware. Throughout the course of this book, you will explore real-world examples of static and dynamic malware analysis, unpacking and decrypting, and rootkit detection. Finally, this book will help you strengthen your defenses and prevent malware breaches for IoT devices and mobile platforms. By the end of this book, you will have learned to effectively analyze, investigate, and build innovative solutions to handle any malware incidents.
Table of Contents (18 chapters)
Free Chapter
1
Section 1: Fundamental Theory
3
Section 2: Diving Deep into Windows Malware
5
Unpacking, Decryption, and Deobfuscation
9
Section 3: Examining Cross-Platform Malware
13
Section 4: Looking into IoT and Other Platforms

Summary

In this chapter, we covered the essentials of computer programming and described universal elements shared between multiple CISC and RISC architectures. Then, we went through multiple assembly languages including the ones behind Intel x86, ARM, MIPS, and others, and understood their application areas that eventually shaped the design and structure. We also covered the fundamental basics of each of them, learned the most important notions (such as the registers used and CPU modes supported), got an idea of how the instruction sets look, discovered what opcode formats are supported there, and explored what calling conventions are used.

Finally, we went from the low-level assembly languages to their high-level representation in C or other similar languages, and became familiar with a set of examples for universal blocks, such as if conditions and loops.

After reading this chapter, you should have the ability to read the disassembled code of different assembly languages and be able...