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Fuzz testing in practice: Obstacles and solutions., , , , and . SANER, page 562-566. IEEE Computer Society, (2018)RIFF: Reduced Instruction Footprint for Coverage-Guided Fuzzing., , , , , , and . USENIX ATC, page 147-159. USENIX Association, (2021)Dodrio: Parallelizing Taint Analysis Based Fuzzing via Redundancy-Free Scheduling., , , , , and . SIGSOFT FSE Companion, page 244-254. ACM, (2024)Industry practice of coverage-guided enterprise Linux kernel fuzzing., , , , , , , , and . ESEC/SIGSOFT FSE, page 986-995. ACM, (2019)Robust and Efficient Corner Detection for Computer Vision.. University of New South Wales, Sydney, Australia, (2022)base-search.net (ftunswworks:oai:unsworks.library.unsw.edu.au:1959.4/100035).Premise Selection for Theorem Proving by Deep Graph Embedding., , , and . NIPS, page 2786-2796. (2017)Minerva: browser API fuzzing with dynamic mod-ref analysis., , , , , , , and . ESEC/SIGSOFT FSE, page 1135-1147. ACM, (2022)Limits of I/O Based Ransomware Detection: An Imitation Based Attack., , , , , , , and . SP, page 2584-2601. IEEE, (2023)Towards Better Semantics Exploration for Browser Fuzzing., , , , , , , , and . Proc. ACM Program. Lang., 7 (OOPSLA2): 604-631 (October 2023)Mozi: Discovering DBMS Bugs via Configuration-Based Equivalent Transformation., , , , , and . ICSE, page 135:1-135:12. ACM, (2024)