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Windows and Linux Penetration Testing from Scratch

You're reading from   Windows and Linux Penetration Testing from Scratch Harness the power of pen testing with Kali Linux for unbeatable hard-hitting results

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Product type Paperback
Published in Aug 2022
Publisher Packt
ISBN-13 9781801815123
Length 510 pages
Edition 2nd Edition
Languages
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Author (1):
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Phil Bramwell Phil Bramwell
Author Profile Icon Phil Bramwell
Phil Bramwell
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Table of Contents (23) Chapters Close

Preface 1. Part 1: Recon and Exploitation
2. Chapter 1: Open Source Intelligence FREE CHAPTER 3. Chapter 2: Bypassing Network Access Control 4. Chapter 3: Sniffing and Spoofing 5. Chapter 4: Windows Passwords on the Network 6. Chapter 5: Assessing Network Security 7. Chapter 6: Cryptography and the Penetration Tester 8. Chapter 7: Advanced Exploitation with Metasploit 9. Part 2: Vulnerability Fundamentals
10. Chapter 8: Python Fundamentals 11. Chapter 9: PowerShell Fundamentals 12. Chapter 10: Shellcoding - The Stack 13. Chapter 11: Shellcoding – Bypassing Protections 14. Chapter 12: Shellcoding – Evading Antivirus 15. Chapter 13: Windows Kernel Security 16. Chapter 14: Fuzzing Techniques 17. Part 3: Post-Exploitation
18. Chapter 15: Going Beyond the Foothold 19. Chapter 16: Escalating Privileges 20. Chapter 17: Maintaining Access 21. Answers 22. Other Books You May Enjoy

Kernel fundamentals – understanding how kernel attacks work

A crucial philosophical point to remember is that the kernel is a computer program. It’s a construct that can be rather intimidating for us lowly noobs, so it helps to remember the true nature of the beast. The casual flaws you learn about in ordinary programming can all occur in kernel code. The kernel occupies memory, just like any ordinary program, so the potential to put something where it doesn’t belong and execute it exists. If this is the case, what makes the kernel so special? The kernel manages all low-level functions by interfacing the hardware of a computer and the software of an OS. There are many, many different programs running on a modern instance of Windows, and they all want to use one processor at the same time. The programs can’t decide who gets how much time, and the processor dumbly completes operations – it can’t decide, either. It’s the kernel that functions...

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