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GPTScan: Detecting Logic Vulnerabilities in Smart Contracts by Combining GPT with Program Analysis.

, , , , , , , and . ICSE, page 166:1-166:13. ACM, (2024)

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Indirect File Leaks in Mobile Applications., and . CoRR, (2015)Understanding Open Ports in Android Applications: Discovery, Diagnosis, and Security Assessment., , , , , and . NDSS, The Internet Society, (2019)LiCA: A Fine-grained and Path-sensitive Linux Capability Analysis Framework., , , , and . RAID, page 364-379. ACM, (2022)Understanding Android VoIP Security: A System-Level Vulnerability Assessment., , and . DIMVA, volume 12223 of Lecture Notes in Computer Science, page 110-131. Springer, (2020)MopEye: Opportunistic Monitoring of Per-app Mobile Network Performance., , , , and . USENIX ATC, page 445-457. USENIX Association, (2017)Using My Functions Should Follow My Checks: Understanding and Detecting Insecure OpenZeppelin Code in Smart Contracts., , , , , , and . USENIX Security Symposium, USENIX Association, (2024)Measuring the Declared SDK Versions and Their Consistency with API Calls in Android Apps., , , , and . WASA, volume 10251 of Lecture Notes in Computer Science, page 678-690. Springer, (2017)SCLib: A Practical and Lightweight Defense against Component Hijacking in Android Applications., , , , and . CODASPY, page 299-306. ACM, (2018)When Program Analysis Meets Bytecode Search: Targeted and Efficient Inter-procedural Analysis of Modern Android Apps in BackDroid., , , and . DSN, page 543-554. IEEE, (2021)Beyond "Protected" and "Private": An Empirical Security Analysis of Custom Function Modifiers in Smart Contracts., , , , , , , and . ISSTA, page 1157-1168. ACM, (2023)