Media Summary: Strong and Efficient Cache Side-Channel Protection using Hardware Transactional Memory Daniel Gruss, Graz University of ...

Usenix Security 23 Miner A - Detailed Analysis & Overview

Strong and Efficient Cache Side-Channel Protection using Hardware Transactional Memory Daniel Gruss, Graz University of ...

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USENIX Security '23 - MINER: A Hybrid Data-Driven Approach for REST API Fuzzing
USENIX Security '23 - No more Reviewer #2: Subverting Automatic Paper-Reviewer Assignment using...
USENIX Security '23 - AIRS: Explanation for Deep Reinforcement Learning based Security Applications
USENIX Security '21 - T-Miner: A Generative Approach to Defend Against Trojan Attacks on DNN-based
USENIX Security '23 - Capstone: A Capability-based Foundation for Trustless Secure Memory Access
USENIX Security '23 - "Un-Equal Online Safety?" A Gender Analysis of Security and Privacy...
USENIX Security '17 - Strong and Efficient Cache Side-Channel Protection...
USENIX Security '23 - Unique Identification of 50,000+ Virtual Reality Users from Head & Hand...
USENIX Security '23 - “Millions of people are watching you”: Understanding the Digital-Safety...
USENIX Security '23 - The Digital-Safety Risks of Financial Technologies for Survivors of...
USENIX Security '23 - Adversarial Training for Raw-Binary Malware Classifiers
USENIX Security '23 - Eos: Efficient Private Delegation of zkSNARK Provers
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USENIX Security '23 - MINER: A Hybrid Data-Driven Approach for REST API Fuzzing

USENIX Security '23 - MINER: A Hybrid Data-Driven Approach for REST API Fuzzing

USENIX Security

USENIX Security '23 - No more Reviewer #2: Subverting Automatic Paper-Reviewer Assignment using...

USENIX Security '23 - No more Reviewer #2: Subverting Automatic Paper-Reviewer Assignment using...

USENIX Security

USENIX Security '23 - AIRS: Explanation for Deep Reinforcement Learning based Security Applications

USENIX Security '23 - AIRS: Explanation for Deep Reinforcement Learning based Security Applications

USENIX Security

USENIX Security '21 - T-Miner: A Generative Approach to Defend Against Trojan Attacks on DNN-based

USENIX Security '21 - T-Miner: A Generative Approach to Defend Against Trojan Attacks on DNN-based

USENIX Security

USENIX Security '23 - Capstone: A Capability-based Foundation for Trustless Secure Memory Access

USENIX Security '23 - Capstone: A Capability-based Foundation for Trustless Secure Memory Access

USENIX Security

USENIX Security '23 - "Un-Equal Online Safety?" A Gender Analysis of Security and Privacy...

USENIX Security '23 - "Un-Equal Online Safety?" A Gender Analysis of Security and Privacy...

USENIX Security

USENIX Security '17 - Strong and Efficient Cache Side-Channel Protection...

USENIX Security '17 - Strong and Efficient Cache Side-Channel Protection...

Strong and Efficient Cache Side-Channel Protection using Hardware Transactional Memory Daniel Gruss, Graz University of ...

USENIX Security '23 - Unique Identification of 50,000+ Virtual Reality Users from Head & Hand...

USENIX Security '23 - Unique Identification of 50,000+ Virtual Reality Users from Head & Hand...

USENIX Security

USENIX Security '23 - “Millions of people are watching you”: Understanding the Digital-Safety...

USENIX Security '23 - “Millions of people are watching you”: Understanding the Digital-Safety...

USENIX Security

USENIX Security '23 - The Digital-Safety Risks of Financial Technologies for Survivors of...

USENIX Security '23 - The Digital-Safety Risks of Financial Technologies for Survivors of...

USENIX Security

USENIX Security '23 - Adversarial Training for Raw-Binary Malware Classifiers

USENIX Security '23 - Adversarial Training for Raw-Binary Malware Classifiers

USENIX Security

USENIX Security '23 - Eos: Efficient Private Delegation of zkSNARK Provers

USENIX Security '23 - Eos: Efficient Private Delegation of zkSNARK Provers

USENIX Security

USENIX Security '21 - Effect of Mood, Location, Trust, and Presence of Others on Video-Based...

USENIX Security '21 - Effect of Mood, Location, Trust, and Presence of Others on Video-Based...

USENIX Security