Android {SmartTVs} Vulnerability Discovery via {Log-Guided} Fuzzing Aafer Y, You W, Sun Y, Shi Y, Zhang X, Yin H. 2021. Android {SmartTVs} Vulnerability Discovery via {Log-Guided} Fuzzing. 30th USENIX Security Symposium (USENIX Security 21). :2759--2776. Read more about Android {SmartTVs} Vulnerability Discovery via {Log-Guided} FuzzingDBLPLog in to post commentsGoogle ScholarBibTeX
Exposing New Vulnerabilities of Error Handling Mechanism in {CAN} Serag K, Bhatia R, Kumar V, Z. Celik B, Xu D. 2021. Exposing New Vulnerabilities of Error Handling Mechanism in {CAN}. 30th USENIX Security Symposium (USENIX Security 21). :4241--4258. Read more about Exposing New Vulnerabilities of Error Handling Mechanism in {CAN}DBLPLog in to post commentsGoogle ScholarBibTeX
Defeating {DNN-Based} Traffic Analysis Systems in {Real-Time} With Blind Adversarial Perturbations Na, sr M, Bahramali A, Houmansadr A. 2021. Defeating {DNN-Based} Traffic Analysis Systems in {Real-Time} With Blind Adversarial Perturbations. 30th USENIX Security Symposium (USENIX Security 21). :2705--2722. Read more about Defeating {DNN-Based} Traffic Analysis Systems in {Real-Time} With Blind Adversarial PerturbationsDBLPLog in to post commentsGoogle ScholarBibTeX
Lord of the Ring(s): Side Channel Attacks on the {CPU} {On-Chip} Ring Interconnect Are Practical Paccagnella R, Luo L, Fletcher CW. 2021. Lord of the Ring(s): Side Channel Attacks on the {CPU} {On-Chip} Ring Interconnect Are Practical. 30th USENIX Security Symposium (USENIX Security 21). :645--662. Read more about Lord of the Ring(s): Side Channel Attacks on the {CPU} {On-Chip} Ring Interconnect Are PracticalDBLPLog in to post commentsGoogle ScholarBibTeX
Automatic Firmware Emulation through Invalidity-guided Knowledge Inference Zhou W, Guan L, Liu P, Zhang Y. 2021. Automatic Firmware Emulation through Invalidity-guided Knowledge Inference. 30th USENIX Security Symposium (USENIX Security 21). :2007--2024. Read more about Automatic Firmware Emulation through Invalidity-guided Knowledge InferenceDBLPLog in to post commentsGoogle ScholarBibTeX
Reducing {HSM} Reliance in Payments through Proxy {Re-Encryption} Gaddam S, Luykx A, Sinha R, Watson G. 2021. Reducing {HSM} Reliance in Payments through Proxy {Re-Encryption}. 30th USENIX Security Symposium (USENIX Security 21). :4061--4078. Read more about Reducing {HSM} Reliance in Payments through Proxy {Re-Encryption}DBLPLog in to post commentsGoogle ScholarBibTeX
Examining the Efficacy of Decoy-based and Psychological Cyber Deception Ferguson-Walter KJ, Major MM, Johnson CK, Muhleman DH. 2021. Examining the Efficacy of Decoy-based and Psychological Cyber Deception. 30th USENIX Security Symposium (USENIX Security 21). :1127--1144. Read more about Examining the Efficacy of Decoy-based and Psychological Cyber DeceptionDBLPLog in to post commentsGoogle ScholarBibTeX
Does logic locking work with {EDA} tools? Han Z, Yasin M, Rajendran J. 2021. Does logic locking work with {EDA} tools? 30th USENIX Security Symposium (USENIX Security 21). :1055--1072. Read more about Does logic locking work with {EDA} tools?DBLPLog in to post commentsGoogle ScholarBibTeX
{ExpRace}: Exploiting Kernel Races through Raising Interrupts Lee Y, Min C, Lee B. 2021. {ExpRace}: Exploiting Kernel Races through Raising Interrupts. 30th USENIX Security Symposium (USENIX Security 21). :2363--2380. Read more about {ExpRace}: Exploiting Kernel Races through Raising InterruptsDBLPLog in to post commentsGoogle ScholarBibTeX
{CANARY} - a reactive defense mechanism for Controller Area Networks based on Active {RelaYs} Groza B, Popa L, Murvay P-S, Elovici Y, Shabtai A. 2021. {CANARY} - a reactive defense mechanism for Controller Area Networks based on Active {RelaYs}. 30th USENIX Security Symposium (USENIX Security 21). :4259--4276. Read more about {CANARY} - a reactive defense mechanism for Controller Area Networks based on Active {RelaYs}DBLPLog in to post commentsGoogle ScholarBibTeX