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Metasploit Revealed: Secrets of the Expert Pentester

You're reading from   Metasploit Revealed: Secrets of the Expert Pentester Build your defense against complex attacks

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Product type Course
Published in Dec 2017
Publisher
ISBN-13 9781788624596
Length 860 pages
Edition 1st Edition
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Authors (2):
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Nipun Jaswal Nipun Jaswal
Author Profile Icon Nipun Jaswal
Nipun Jaswal
Sagar Rahalkar Sagar Rahalkar
Author Profile Icon Sagar Rahalkar
Sagar Rahalkar
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Toc

Table of Contents (35) Chapters Close

Title Page
Credits
Preface
1. Module 1 2. Introduction to Metasploit and Supporting Tools FREE CHAPTER 3. Setting up Your Environment 4. Metasploit Components and Environment Configuration 5. Information Gathering with Metasploit 6. Vulnerability Hunting with Metasploit 7. Client-side Attacks with Metasploit 8. Web Application Scanning with Metasploit 9. Antivirus Evasion and Anti-Forensics 10. Cyber Attack Management with Armitage 11. Extending Metasploit and Exploit Development 12. Module 2 13. Approaching a Penetration Test Using Metasploit 14. Reinventing Metasploit 15. The Exploit Formulation Process 16. Porting Exploits 17. Testing Services with Metasploit 18. Virtual Test Grounds and Staging 19. Client-side Exploitation 20. Metasploit Extended 21. Speeding up Penetration Testing 22. Visualizing with Armitage 23. Module 3 24. Getting Started with Metasploit 25. Identifying and Scanning Targets 26. Exploitation and Gaining Access 27. Post-Exploitation with Metasploit 28. Testing Services with Metasploit 29. Fast-Paced Exploitation with Metasploit 30. Exploiting Real-World Challenges with Metasploit 31. Bibliography
32. Thanks page

Bypassing DEP in Metasploit modules


Data Execution Prevention (DEP) is a protection mechanism that marks certain areas of memory as non-executable, causing no execution of ShellCode when it comes to exploitation. Therefore, even if we are able to overwrite EIP register and point ESP to the start of ShellCode, we will not be able to execute our payloads. This is because DEP prevents the execution of data in the writable areas of the memory such as stack and heap. In this case, we will need to use existing instructions that are in the executable areas to achieve the desired functionality. We can do this by putting all the executable instructions in such an order that jumping to the ShellCode becomes viable.

The technique for bypassing DEP is called Return Oriented Programming (ROP). ROP differs from a normal stack overflow of overwriting EIP and calling the jump to the ShellCode. When DEP is enabled, we cannot do that since the data in the stack is non-executable. Here, instead of jumping to...

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