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Advanced Automated Web Application Vulnerability Analysis.

. University of California, Santa Barbara, USA, (2014)

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Exploring Abstraction Functions in Fuzzing., , , , , and . CNS, page 1-9. IEEE, (2020)Mitigating Threats Emerging from the Interaction between SDN Apps and SDN (Configuration) Datastore., , , and . CCSW, page 23-39. ACM, (2022)Using Deception in Markov Game to Understand Adversarial Behaviors Through a Capture-The-Flag Environment., , , , and . GameSec, volume 13727 of Lecture Notes in Computer Science, page 87-106. Springer, (2022)Playing for K(H)eaps: Understanding and Improving Linux Kernel Exploit Reliability., , , , , , and . USENIX Security Symposium, page 71-88. USENIX Association, (2022)Greenhouse: Single-Service Rehosting of Linux-Based Firmware Binaries in User-Space Emulation., , , , , , , , , and 4 other author(s). USENIX Security Symposium, page 5791-5808. USENIX Association, (2023)Toss a Fault to Your Witcher: Applying Grey-box Coverage-Guided Mutational Fuzzing to Detect SQL and Command Injection Vulnerabilities., , , , , , , , , and . SP, page 2658-2675. IEEE, (2023)HoneyPLC: A Next-Generation Honeypot for Industrial Control Systems., , , , , , and . CCS, page 279-291. ACM, (2020)SmokeBomb: effective mitigation against cache side-channel attacks on the ARM architecture., , , , , , and . MobiSys, page 107-120. ACM, (2020)HoneyMix: Toward SDN-based Intelligent Honeynet., , , and . SDN-NFV@CODASPY, page 1-6. ACM, (2016)iCore: continuous and proactive extrospection on multi-core IoT devices., , , , and . SAC, page 851-860. ACM, (2019)