{MVP}: Detecting Vulnerabilities using {Patch-Enhanced} Vulnerability Signatures Xiao Y, Chen B, Yu C, Xu Z, Yuan Z, Li F, Liu B, Liu Y, Huo W, Zou W et al.. 2020. {MVP}: Detecting Vulnerabilities using {Patch-Enhanced} Vulnerability Signatures. 29th USENIX Security Symposium (USENIX Security 20). :1165--1182. Read more about {MVP}: Detecting Vulnerabilities using {Patch-Enhanced} Vulnerability SignaturesDBLPLog in to post commentsGoogle ScholarBibTeX
The Impact of {Ad-Blockers} on Product Search and Purchase Behavior: A Lab Experiment Frik A, Haviland A, Acquisti A. 2020. The Impact of {Ad-Blockers} on Product Search and Purchase Behavior: A Lab Experiment. 29th USENIX Security Symposium (USENIX Security 20). :163--179. Read more about The Impact of {Ad-Blockers} on Product Search and Purchase Behavior: A Lab ExperimentDBLPLog in to post commentsGoogle ScholarBibTeX
Sunrise to Sunset: Analyzing the End-to-end Life Cycle and Effectiveness of Phishing Attacks at Scale Oest A, Zhang P, Wardman B, Nunes E, Burgis J, Zand A, Thomas K, Doupé A, Ahn G-J. 2020. Sunrise to Sunset: Analyzing the End-to-end Life Cycle and Effectiveness of Phishing Attacks at Scale. 29th USENIX Security Symposium (USENIX Security 20). :361--377. Read more about Sunrise to Sunset: Analyzing the End-to-end Life Cycle and Effectiveness of Phishing Attacks at ScaleDBLPLog in to post commentsGoogle ScholarBibTeX
Cardpliance: {PCI} {DSS} Compliance of Android Applications Mahmud SYaseer, Acharya A, Andow B, Enck W, Reaves B. 2020. Cardpliance: {PCI} {DSS} Compliance of Android Applications. 29th USENIX Security Symposium (USENIX Security 20). :1517--1533. Read more about Cardpliance: {PCI} {DSS} Compliance of Android ApplicationsDBLPLog in to post commentsGoogle ScholarBibTeX
Composition Kills: A Case Study of Email Sender Authentication Chen J, Paxson V, Jiang J. 2020. Composition Kills: A Case Study of Email Sender Authentication. 29th USENIX Security Symposium (USENIX Security 20). :2183--2199. Read more about Composition Kills: A Case Study of Email Sender AuthenticationDBLPLog in to post commentsGoogle ScholarBibTeX
High Accuracy and High Fidelity Extraction of Neural Networks Jagielski M, Carlini N, Berthelot D, Kurakin A, Papernot N. 2020. High Accuracy and High Fidelity Extraction of Neural Networks. 29th USENIX Security Symposium (USENIX Security 20). :1345--1362. Read more about High Accuracy and High Fidelity Extraction of Neural NetworksDBLPLog in to post commentsGoogle ScholarBibTeX
'I have too much respect for my elders': Understanding South African Mobile Users' Perceptions of Privacy and Current Behaviors on Facebook and {WhatsApp} Reichel J, Peck F, Inaba M, Moges B, Chawla BSingh, Chetty M. 2020. 'I have too much respect for my elders': Understanding South African Mobile Users' Perceptions of Privacy and Current Behaviors on Facebook and {WhatsApp}. 29th USENIX Security Symposium (USENIX Security 20). :1949--1966. Read more about 'I have too much respect for my elders': Understanding South African Mobile Users' Perceptions of Privacy and Current Behaviors on Facebook and {WhatsApp}DBLPLog in to post commentsGoogle ScholarBibTeX
{SpecFuzz}: Bringing Spectre-type vulnerabilities to the surface Oleksenko O, Trach B, Silberstein M, Fetzer C. 2020. {SpecFuzz}: Bringing Spectre-type vulnerabilities to the surface. 29th USENIX Security Symposium (USENIX Security 20). :1481--1498. Read more about {SpecFuzz}: Bringing Spectre-type vulnerabilities to the surfaceDBLPLog in to post commentsGoogle ScholarBibTeX
{APEX}: A Verified Architecture for Proofs of Execution on Remote Devices under Full Software Compromise Nunes IDe Oliveir, Eldefrawy K, Rattanavipanon N, Tsudik G. 2020. {APEX}: A Verified Architecture for Proofs of Execution on Remote Devices under Full Software Compromise. 29th USENIX Security Symposium (USENIX Security 20). :771--788. Read more about {APEX}: A Verified Architecture for Proofs of Execution on Remote Devices under Full Software CompromiseDBLPLog in to post commentsGoogle ScholarBibTeX
The Unpatchable Silicon: A Full Break of the Bitstream Encryption of Xilinx 7-Series {FPGAs} Ender M, Moradi A, Paar C. 2020. The Unpatchable Silicon: A Full Break of the Bitstream Encryption of Xilinx 7-Series {FPGAs}. 29th USENIX Security Symposium (USENIX Security 20). :1803--1819. Read more about The Unpatchable Silicon: A Full Break of the Bitstream Encryption of Xilinx 7-Series {FPGAs}DBLPLog in to post commentsGoogle ScholarBibTeX