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Mastering Malware Analysis

Mastering Malware Analysis

By : Alexey Kleymenov, Amr Thabet
4.6 (9)
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Mastering Malware Analysis

Mastering Malware Analysis

4.6 (9)
By: Alexey Kleymenov, Amr Thabet

Overview of this book

New and developing technologies inevitably bring new types of malware with them, creating a huge demand for IT professionals that can keep malware at bay. With the help of this updated second edition of Mastering Malware Analysis, you’ll be able to add valuable reverse-engineering skills to your CV and learn how to protect organizations in the most efficient way. This book will familiarize you with multiple universal patterns behind different malicious software types and teach you how to analyze them using a variety of approaches. You'll learn how to examine malware code and determine the damage it can possibly cause to systems, along with ensuring that the right prevention or remediation steps are followed. As you cover all aspects of malware analysis for Windows, Linux, macOS, and mobile platforms in detail, you’ll also get to grips with obfuscation, anti-debugging, and other advanced anti-reverse-engineering techniques. The skills you acquire in this cybersecurity book will help you deal with all types of modern malware, strengthen your defenses, and prevent or promptly mitigate breaches regardless of the platforms involved. By the end of this book, you will have learned how to efficiently analyze samples, investigate suspicious activity, and build innovative solutions to handle malware incidents.
Table of Contents (20 chapters)
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1
Part 1 Fundamental Theory
4
Part 2 Diving Deep into Windows Malware
10
Part 3 Examining Cross-Platform and Bytecode-Based Malware
14
Part 4 Looking into IoT and Other Platforms

Basics of MIPS

Microprocessor without Interlocked Pipelined Stages (MIPS) was developed by MIPS Technologies (formerly MIPS computer systems). Similar to ARM, at first, it was a 32-bit architecture with 64-bit functionality added later. Taking advantage of the RISC ISA, MIPS processors are characterized by their low power and heat consumption. They can often be found in multiple embedded systems, such as routers and gateways. Several video game consoles such as Sony PlayStation also incorporated them. Unfortunately, due to the popularity of this architecture, the systems that implement it became a target of multiple IoT malware families. An example can be seen in the following screenshot:

Figure 2.8 – IoT malware targeting MIPS-based systems

As the architecture evolved, there were several versions of it, starting from MIPS I and going up to V, and then several releases of the more recent MIPS32/MIPS64. MIPS64 remains backward compatible with MIPS32....

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