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No Linux, No Problem: Fast and Correct Windows Binary Fuzzing via Target-embedded Snapshotting.

, , , and . USENIX Security Symposium, page 4913-4929. USENIX Association, (2023)

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Capo: a software-hardware interface for practical deterministic multiprocessor replay., , , and . ASPLOS, page 73-84. ACM, (2009)Full-Speed Fuzzing: Reducing Fuzzing Overhead through Coverage-Guided Tracing., and . IEEE Symposium on Security and Privacy, page 787-802. IEEE, (2019)Silicon Dating., , , and . CoRR, (2020)Exploiting the analog properties of digital circuits for malicious hardware., , , , and . Commun. ACM, 60 (9): 83-91 (2017)Determining conserved metabolic biomarkers from a million database queries., , , , , , , , , and 5 other author(s). Bioinform., 31 (23): 3721-3724 (2015)Reap What You Store: Side-channel Resilient Computing Through Energy Harvesting., and . ENSsys@SenSys, page 21-26. ACM, (2017)Overcoming an Untrusted Computing Base: Detecting and Removing Malicious Hardware Automatically., , , , and . IEEE Symposium on Security and Privacy, page 159-172. IEEE Computer Society, (2010)One Fuzz Doesn't Fit All: Optimizing Directed Fuzzing via Target-tailored Program State Restriction., , , , and . ACSAC, page 388-399. ACM, (2022)A2: Analog Malicious Hardware., , , , and . IEEE Symposium on Security and Privacy, page 18-37. IEEE Computer Society, (2016)Full-speed Fuzzing: Reducing Fuzzing Overhead through Coverage-guided Tracing., and . CoRR, (2018)