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Hands-On Penetration Testing on Windows

Hands-On Penetration Testing on Windows

By : Phil Bramwell
5 (3)
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Hands-On Penetration Testing on Windows

Hands-On Penetration Testing on Windows

5 (3)
By: Phil Bramwell

Overview of this book

Windows has always been the go-to platform for users around the globe to perform administration and ad hoc tasks, in settings that range from small offices to global enterprises, and this massive footprint makes securing Windows a unique challenge. This book will enable you to distinguish yourself to your clients. In this book, you'll learn advanced techniques to attack Windows environments from the indispensable toolkit that is Kali Linux. We'll work through core network hacking concepts and advanced Windows exploitation techniques, such as stack and heap overflows, precision heap spraying, and kernel exploitation, using coding principles that allow you to leverage powerful Python scripts and shellcode. We'll wrap up with post-exploitation strategies that enable you to go deeper and keep your access. Finally, we'll introduce kernel hacking fundamentals and fuzzing testing, so you can discover vulnerabilities and write custom exploits. By the end of this book, you'll be well-versed in identifying vulnerabilities within the Windows OS and developing the desired solutions for them.
Table of Contents (19 chapters)
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Kernel fundamentals – understanding how kernel attacks work


A crucial philosophical point to remember: 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 the computer and the software of the operating system. 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 as the cop managing all the high-level...

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