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HMAC and "Secure Preferences": Revisiting Chromium-Based Browsers Security.

, , and . CANS, volume 12579 of Lecture Notes in Computer Science, page 107-126. Springer, (2020)

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IBE.js: A Framework for Instrumenting Browser Extensions., and . ICSOFT, page 141-150. SCITEPRESS, (2023)No Signal Left to Chance: Driving Browser Extension Analysis by Download Patterns., , and . ACSAC, page 896-910. ACM, (2022)DeDup.js: Discovering Malicious and Vulnerable Extensions by Detecting Duplication., , and . ICISSP, page 528-535. SCITEPRESS, (2022)Hardening the security analysis of browser extensions., , and . SAC, page 1694-1703. ACM, (2022)Clipaha: A Scheme to Perform Password Stretching on the Client., , , and . ICISSP, page 58-69. SciTePress, (2023)Cryptanalysis of the RNTS system., , , and . J. Supercomput., 65 (2): 949-960 (2013)Two RFID Standard-based Security Protocols for Healthcare Environments., , , and . J. Medical Systems, 37 (5): 9962 (2013)HIKE : Walking the Privacy Trail., , and . CANS, volume 11124 of Lecture Notes in Computer Science, page 43-66. Springer, (2018)HMAC and "Secure Preferences": Revisiting Chromium-Based Browsers Security., , and . CANS, volume 12579 of Lecture Notes in Computer Science, page 107-126. Springer, (2020)Latex Gloves: Protecting Browser Extensions from Probing and Revelation Attacks., , , and . NDSS, The Internet Society, (2019)