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An Efficient Greybox Fuzzing Scheme for Linux-based IoT Programs Through Binary Static Analysis., , , , , и . IPCCC, стр. 1-8. IEEE, (2019)Reviewing IoT Security via Logic Bugs in IoT Platforms and Systems., , , , , , , , , и 3 other автор(ы). IEEE Internet Things J., 8 (14): 11621-11639 (2021)Inferring Device Interactions for Attack Path Discovery in Smart Home IoT., , , , , и . WASA (1), том 13471 из Lecture Notes in Computer Science, стр. 64-75. Springer, (2022)An Empirical Study of the Impact of COVID-19 on OSS Development., , , , и . QRS Companion, стр. 708-717. IEEE, (2022)IPSpex: Enabling Efficient Fuzzing via Specification Extraction on ICS Protocol., , , , , , и . ACNS, том 13269 из Lecture Notes in Computer Science, стр. 356-375. Springer, (2022)Harnessing the Power of LLM to Support Binary Taint Analysis., , , , , , , и . CoRR, (2023)UCRF: Static analyzing firmware to generate under-constrained seed for fuzzing SOHO router., , , , , , и . Comput. Secur., (мая 2023)FITS: Inferring Intermediate Taint Sources for Effective Vulnerability Analysis of IoT Device Firmware., , , , , , и . ASPLOS (4), стр. 138-152. ACM, (2023)Fuzzing proprietary protocols of programmable controllers to find vulnerabilities that affect physical control., , , , , и . J. Syst. Archit., (2022)ICS3Fuzzer: A Framework for Discovering Protocol Implementation Bugs in ICS Supervisory Software by Fuzzing., , , , , , , , , и . ACSAC, стр. 849-860. ACM, (2021)