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Pluto: Exposing Vulnerabilities in Inter-Contract Scenarios., , , , , , , , , и . IEEE Trans. Software Eng., 48 (11): 4380-4396 (2022)Phoenix: Detect and Locate Resilience Issues in Blockchain via Context-Sensitive Chaos., , , , , , , и . CCS, стр. 1182-1196. ACM, (2023)CLFuzz: Vulnerability Detection of Cryptographic Algorithm Implementation via Semantic-aware Fuzzing., , , , и . ACM Trans. Softw. Eng. Methodol., 33 (2): 45:1-45:28 (февраля 2024)Pied-Piper: Revealing the Backdoor Threats in Ethereum ERC Token Contracts., , , , , , , , , и . ACM Trans. Softw. Eng. Methodol., 32 (3): 61:1-61:24 (мая 2023)Tyr: Finding Consensus Failure Bugs in Blockchain System with Behaviour Divergent Model., , , , , и . SP, стр. 2517-2532. IEEE, (2023)EnFuzz: From Ensemble Learning to Ensemble Fuzzing., , , , и . CoRR, (2018)EnFuzz: Ensemble Fuzzing with Seed Synchronization among Diverse Fuzzers., , , , , , , и . USENIX Security Symposium, стр. 1967-1983. USENIX Association, (2019)Engineering a Better Fuzzer with Synergically Integrated Optimizations., , , , , , , и . ISSRE, стр. 82-92. IEEE, (2019)PAFL: extend fuzzing optimizations of single mode to industrial parallel mode., , , , , и . ESEC/SIGSOFT FSE, стр. 809-814. ACM, (2018)Industrial Oriented Evaluation of Fuzzing Techniques., , , , , и . ICST, стр. 306-317. IEEE, (2021)