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Favocado: Fuzzing the Binding Code of JavaScript Engines Using Semantically Correct Test Cases.

, , , , , , , , , , and . NDSS, The Internet Society, (2021)

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Hiding in Plain Site: Detecting JavaScript Obfuscation through Concealed Browser API Usage., , and . Internet Measurement Conference, page 648-661. ACM, (2020)Towards Realistic and ReproducibleWeb Crawl Measurements., , , , , , , and . WWW, page 80-91. ACM / IW3C2, (2021)SoK: Workerounds - Categorizing Service Worker Attacks and Mitigations., , , and . EuroS&P, page 555-571. IEEE, (2022)Mininode: Reducing the Attack Surface of Node.js Applications., and . RAID, page 121-134. USENIX Association, (2020)Revolver: An Automated Approach to the Detection of Evasive Web-based Malware., , , , and . USENIX Security Symposium, page 637-652. USENIX Association, (2013)Manifest V3 Unveiled: Navigating the New Era of Browser Extensions., and . CoRR, (2024)D(e|i)aling with VoIP: Robust Prevention of DIAL Attacks., , , , and . ESORICS, volume 6345 of Lecture Notes in Computer Science, page 663-678. Springer, (2010)Automatic Discovery of Emerging Browser Fingerprinting Techniques., and . WWW, page 2178-2188. ACM, (2023)ARGUS: A Framework for Staged Static Taint Analysis of GitHub Workflows and Actions., , , , , , , , and . USENIX Security Symposium, page 6983-7000. USENIX Association, (2023)Fingerprinting in Style: Detecting Browser Extensions via Injected Style Sheets., , , , and . USENIX Security Symposium, page 2507-2524. USENIX Association, (2021)