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Practical Hardware Pentesting

You're reading from   Practical Hardware Pentesting A guide to attacking embedded systems and protecting them against the most common hardware attacks

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Product type Paperback
Published in Apr 2021
Publisher Packt
ISBN-13 9781789619133
Length 382 pages
Edition 1st Edition
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Author (1):
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Jean-Georges Valle Jean-Georges Valle
Author Profile Icon Jean-Georges Valle
Jean-Georges Valle
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Table of Contents (20) Chapters Close

Preface 1. Section 1: Getting to Know the Hardware
2. Chapter 1: Setting Up Your Pentesting Lab and Ensuring Lab Safety FREE CHAPTER 3. Chapter 2: Understanding Your Target 4. Chapter 3: Identifying the Components of Your Target 5. Chapter 4: Approaching and Planning the Test 6. Section 2: Attacking the Hardware
7. Chapter 5: Our Main Attack Platform 8. Chapter 6: Sniffing and Attacking the Most Common Protocols 9. Chapter 7: Extracting and Manipulating Onboard Storage 10. Chapter 8: Attacking Wi-Fi, Bluetooth, and BLE 11. Chapter 9: Software-Defined Radio Attacks 12. Section 3: Attacking the Software
13. Chapter 10: Accessing the Debug Interfaces 14. Chapter 11: Static Reverse Engineering and Analysis 15. Chapter 12: Dynamic Reverse Engineering 16. Chapter 13: Scoring and Reporting Your Vulnerabilities 17. Chapter 14: Wrapping It Up – Mitigations and Good Practices 18. Assessments 19. Other Books You May Enjoy

Chapter 7

  1. dd.
  2. Uses a file as a block device.
  3. Because modules are only loaded if they are needed. You can manually load them with modprobe if they are not loaded automatically.
  4. eUSB is embedded USB. It is like a normal USB but the connector is different; it is a 2.54 mm pitch female connector. You can just strip a normal USB cable, add pins to the wires, connect D+, D- , +5 V, and ground, and connect it to a normal computer.
  5. It is a multimedia card. It is possible to desolder the chip from the PCB, clean it, and use a clamshell adapter to read it from a normal computer.
  6. FUSE is the "filesystem in userspace." It is a bridge between the kernel space (highly privileged, direct access to the hardware) and the user space (less privileged, access to the hardware mediated through the kernel). It is dedicated to implementing filesystems in a less-privileged area (for example, to comply with licensing constraints, refer to the history of ntfs-3g and zfs on...
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