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Revisiting the Description-to-Behavior Fidelity in Android Applications.

, , , and . SANER, page 415-426. IEEE Computer Society, (2016)

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Enhancing the Description-to-Behavior Fidelity in Android Apps with Privacy Policy., , , , and . IEEE Trans. Software Eng., 44 (9): 834-854 (2018)CydiOS: A Model-Based Testing Framework for iOS Apps., , , , , , , and . ISSTA, page 1-13. ACM, (2023)RAZOR: A Framework for Post-deployment Software Debloating., , , , , and . USENIX Security Symposium, page 1733-1750. USENIX Association, (2019)On Tracking Information Flows through JNI in Android Applications., , , and . DSN, page 180-191. IEEE Computer Society, (2014)VulHunter: Toward Discovering Vulnerabilities in Android Applications., , , and . IEEE Micro, 35 (1): 44-53 (2015)Reducing Software's Attack surface with Code Debloating.. Georgia Institute of Technology, Atlanta, GA, USA, (2021)base-search.net (ftgeorgiatech:oai:smartech.gatech.edu:1853/64787).Rampart: Protecting Web Applications from CPU-Exhaustion Denial-of-Service Attacks., , , , , , and . USENIX Security Symposium, page 393-410. USENIX Association, (2018)Revisiting the Description-to-Behavior Fidelity in Android Applications., , , and . SANER, page 415-426. IEEE Computer Society, (2016)Cloak and Dagger: From Two Permissions to Complete Control of the UI Feedback Loop., , , and . IEEE Symposium on Security and Privacy, page 1041-1057. IEEE Computer Society, (2017)RootGuard: Protecting Rooted Android Phones., , and . Computer, 47 (6): 32-40 (2014)