Rajat Gupta

h-index32
2papers
3,563citations

2 Papers

6.6CRDec 31, 2021
SOK: On the Analysis of Web Browser Security

Jungwon Lim, Yonghwi Jin, Mansour Alharthi et al.

Web browsers are integral parts of everyone's daily life. They are commonly used for security-critical and privacy sensitive tasks, like banking transactions and checking medical records. Unfortunately, modern web browsers are too complex to be bug free (e.g., 25 million lines of code in Chrome), and their role as an interface to the cyberspace makes them an attractive target for attacks. Accordingly, web browsers naturally become an arena for demonstrating advanced exploitation techniques by attackers and state-of-the-art defenses by browser vendors. Web browsers, arguably, are the most exciting place to learn the latest security issues and techniques, but remain as a black art to most security researchers because of their fast-changing characteristics and complex code bases. To bridge this gap, this paper attempts to systematize the security landscape of modern web browsers by studying the popular classes of security bugs, their exploitation techniques, and deployed defenses. More specifically, we first introduce a unified architecture that faithfully represents the security design of four major web browsers. Second, we share insights from a 10-year longitudinal study on browser bugs. Third, we present a timeline and context of mitigation schemes and their effectiveness. Fourth, we share our lessons from a full-chain exploit used in 2020 Pwn2Own competition. and the implication of bug bounty programs to web browser security. We believe that the key takeaways from this systematization can shed light on how to advance the status quo of modern web browsers, and, importantly, how to create secure yet complex software in the future.

3.8CRMay 11, 2021
An Innovative Security Strategy using Reactive Web Application Honeypot

Rajat Gupta, Madhu Viswanatham V., Manikandan K

Nowadays, web applications have become most prevalent in the industry, and the critical data of most organizations stored using web apps. Hence, web applications a much bigger target for diverse cyber-attacks, which varies from database injections-SQL injection, PHP object injection, template injection, XML external entity injection, unsanitized input attacks- Cross-Site Scripting(XSS), and many more. As mitigation for them, among many proposed solutions, web application honeypots are a much sophisticated and powerful protection mechanism. In this paper, we propose a low interaction, adaptive, and dynamic web application honeypot that imitates the vulnerabilities through HTTP events. The honeypot is built with SNARE and TANNER; SNARE creates the attack surface and sends the requests to TANNER, which evaluates them and decides how SNARE should respond to the requests. TANNER is an analysis and classification tool, which analyzes and evaluates HTTP requests served by SNARE and to compose the response, it is powered by emulators, which are engines used for the emulation of vulnerabilities.