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Value-Sensitive Hybrid Information Flow Control for a JavaScript-Like Language.

, , and . CSF, page 351-365. IEEE Computer Society, (2015)

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VERONICA: Expressive and Precise Concurrent Information Flow Security., , and . CSF, page 79-94. IEEE, (2020)TOPPool: Time-aware Optimized Privacy-Preserving Ridesharing., , , , and . Proc. Priv. Enhancing Technol., 2019 (4): 93-111 (2019)Language-based information-flow security., and . IEEE J. Sel. Areas Commun., 21 (1): 5-19 (2003)Bridging Language-Based and Process Calculi Security., , and . FoSSaCS, volume 3441 of Lecture Notes in Computer Science, page 299-315. Springer, (2005)May I? - Content Security Policy Endorsement for Browser Extensions., , and . DIMVA, volume 9148 of Lecture Notes in Computer Science, page 261-281. Springer, (2015)GlassTube: a lightweight approach to web application integrity., , and . PLAS, page 71-82. ACM, (2013)Latex Gloves: Protecting Browser Extensions from Probing and Revelation Attacks., , , and . NDSS, The Internet Society, (2019)CatNap: Leveraging Generic MPC for Actively Secure Privacy-enhancing Proximity Testing with a Napping Party., , and . SECRYPT, page 237-248. SCITEPRESS, (2022)SandTrap: Securing JavaScript-driven Trigger-Action Platforms., , , , and . USENIX Security Symposium, page 2899-2916. USENIX Association, (2021)Practical Data Access Minimization in Trigger-Action Platforms., , , , and . USENIX Security Symposium, page 2929-2945. USENIX Association, (2022)