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Secure Communication Channel Establishment: TLS 1.3 (over TCP Fast Open) vs. QUIC.

, , , , and . ESORICS (1), volume 11735 of Lecture Notes in Computer Science, page 404-426. Springer, (2019)

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Leveraging Textual Specifications for Grammar-based Fuzzing of Network Protocols., , , and . CoRR, (2018)The Thundering Herd: Amplifying Kernel Interference to Attack Response Times., , , , , and . RTAS, page 95-107. IEEE, (2022)Automated Discovery of Cross-Plane Event-Based Vulnerabilities in Software-Defined Networking., , , , , , and . NDSS, The Internet Society, (2020)Identifier Binding Attacks and Defenses in Software-Defined Networks., , , , , and . USENIX Security Symposium, page 415-432. USENIX Association, (2017)One Giant Leap for Computer Security., , , , , , and . IEEE Secur. Priv., 18 (4): 8-19 (2020)BEADS: Automated Attack Discovery in OpenFlow-Based SDN Systems., , , , , and . RAID, volume 10453 of Lecture Notes in Computer Science, page 311-333. Springer, (2017)How Secure and Quick is QUIC? Provable Security and Performance Analyses., , , and . IEEE Symposium on Security and Privacy, page 214-231. IEEE Computer Society, (2015)Causal Analysis for Software-Defined Networking Attacks., , , , , and . USENIX Security Symposium, page 3183-3200. USENIX Association, (2021)Automated Attack Discovery in TCP Congestion Control Using a Model-guided Approach., , , , and . NDSS, The Internet Society, (2018)Leveraging Textual Specifications for Grammar-Based Fuzzing of Network Protocols., , , and . AAAI, page 9478-9483. AAAI Press, (2019)