{MOAT}: Towards Safe {BPF} Kernel Extension Lu H, Wang S, Wu Y, He W, Zhang F. 2024. {MOAT}: Towards Safe {BPF} Kernel Extension. 33rd USENIX Security Symposium (USENIX Security 24). :1153--1170. Read more about {MOAT}: Towards Safe {BPF} Kernel ExtensionDBLPGoogle ScholarBibTeX
{Invalidate+Compare}: A {Timer-Free} {GPU} Cache Attack Primitive Zhang Z, Cai K, Guo Y, Yao F, Gao X. 2024. {Invalidate+Compare}: A {Timer-Free} {GPU} Cache Attack Primitive. 33rd USENIX Security Symposium (USENIX Security 24). :2101--2118. Read more about {Invalidate+Compare}: A {Timer-Free} {GPU} Cache Attack PrimitiveDBLPGoogle ScholarBibTeX
It Doesn't Look Like Anything to Me: Using Diffusion Model to Subvert Visual Phishing Detectors Hao Q, Diwan N, Yuan Y, Apruzzese G, Conti M, Wang G. 2024. It Doesn't Look Like Anything to Me: Using Diffusion Model to Subvert Visual Phishing Detectors. 33rd USENIX Security Symposium (USENIX Security 24). :3027--3044. Read more about It Doesn't Look Like Anything to Me: Using Diffusion Model to Subvert Visual Phishing DetectorsDBLPGoogle ScholarBibTeX
{DMAAUTH}: A Lightweight Pointer Integrity-based Secure Architecture to Defeat {DMA} Attacks Wang X, Shen W, Bu Y, Zhou J, Zhou Y. 2024. {DMAAUTH}: A Lightweight Pointer Integrity-based Secure Architecture to Defeat {DMA} Attacks. 33rd USENIX Security Symposium (USENIX Security 24). :1081--1098. Read more about {DMAAUTH}: A Lightweight Pointer Integrity-based Secure Architecture to Defeat {DMA} AttacksDBLPGoogle ScholarBibTeX
{PEPSI}: Practically Efficient Private Set Intersection in the Unbalanced Setting Mahdavi RAkhavan, Lukas N, Ebrahimianghazani F, Humphries T, Kacsmar B, Premkumar J, Li X, Oya S, Amjadian E, Kerschbaum F. 2024. {PEPSI}: Practically Efficient Private Set Intersection in the Unbalanced Setting. 33rd USENIX Security Symposium (USENIX Security 24). :6453--6470. Read more about {PEPSI}: Practically Efficient Private Set Intersection in the Unbalanced SettingDBLPGoogle ScholarBibTeX
True Attacks, Attack Attempts, or Benign Triggers? An Empirical Measurement of Network Alerts in a Security Operations Center Yang L, Chen Z, Wang C, Zhang Z, Booma S, Cao P, Adam C, Withers A, Kalbarczyk Z, Iyer RK et al.. 2024. True Attacks, Attack Attempts, or Benign Triggers? An Empirical Measurement of Network Alerts in a Security Operations Center 33rd USENIX Security Symposium (USENIX Security 24). :1525--1542. Read more about True Attacks, Attack Attempts, or Benign Triggers? An Empirical Measurement of Network Alerts in a Security Operations CenterDBLPGoogle ScholarBibTeX
Double Face: Leveraging User Intelligence to Characterize and Recognize {AI-synthesized} Faces Joslin M, Wang X, Hao S. 2024. Double Face: Leveraging User Intelligence to Characterize and Recognize {AI-synthesized} Faces. 33rd USENIX Security Symposium (USENIX Security 24). :1009--1026. Read more about Double Face: Leveraging User Intelligence to Characterize and Recognize {AI-synthesized} FacesDBLPGoogle ScholarBibTeX
Athena: Analyzing and Quantifying Side Channels of Transport Layer Protocols Yu F, Zhou Q, Hussain SRafiul, Zhang D. 2024. Athena: Analyzing and Quantifying Side Channels of Transport Layer Protocols. 33rd USENIX Security Symposium (USENIX Security 24). :3117--3133. Read more about Athena: Analyzing and Quantifying Side Channels of Transport Layer ProtocolsDBLPGoogle ScholarBibTeX
Sprints: Intermittent Blockchain {PoW} Mining Mirkin M, Zhou L, Eyal I, Zhang F. 2024. Sprints: Intermittent Blockchain {PoW} Mining. 33rd USENIX Security Symposium (USENIX Security 24). :6273--6289. Read more about Sprints: Intermittent Blockchain {PoW} MiningDBLPGoogle ScholarBibTeX
{TAPFixer}: Automatic Detection and Repair of Home Automation Vulnerabilities based on Negated-property Reasoning Yu Y, Xu Y, Huang K, Liu J. 2024. {TAPFixer}: Automatic Detection and Repair of Home Automation Vulnerabilities based on Negated-property Reasoning. 33rd USENIX Security Symposium (USENIX Security 24). :4945--4962. Read more about {TAPFixer}: Automatic Detection and Repair of Home Automation Vulnerabilities based on Negated-property ReasoningDBLPGoogle ScholarBibTeX