Media Summary: Ripple: A Programmable, Decentralized Link-Flooding Defense Against Adaptive Adversaries Jiarong Xing, Wenqing Wu, and ... NetShaper: A Differentially Private Network Side-Channel How does Endpoint Detection use the MITRE ATT&CK Framework? Apurva Virkud, Muhammad Adil Inam, Andy Riddle, Jason Liu ...

Usenix Security 20 Netwarden Mitigating - Detailed Analysis & Overview

Ripple: A Programmable, Decentralized Link-Flooding Defense Against Adaptive Adversaries Jiarong Xing, Wenqing Wu, and ... NetShaper: A Differentially Private Network Side-Channel How does Endpoint Detection use the MITRE ATT&CK Framework? Apurva Virkud, Muhammad Adil Inam, Andy Riddle, Jason Liu ... Roland Meier ETH Zurich Abstract: Simple path tracing tools such as traceroute allow malicious users to infer network topologies ... Speakers: Jiarong Xing (Rice University) Alan Liu (Carnegie Mellon & Boston University) Abstract: Network covert channels are ... Inf2Guard: An Information-Theoretic Framework for Learning Privacy-Preserving Representations against Inference Attacks ...

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USENIX Security ’20 - NetWarden: Mitigating Network Covert Channels while Preserving Performance
USENIX Security '20 - Understanding security mistakes developers make: Qualitative analysis...
USENIX Security '20 - Donky: Domain Keys – Efficient In-Process Isolation for RISC-V and x86
USENIX Security '21 - Ripple: A Programmable, Decentralized Link-Flooding Defense Against Adaptive
USENIX Security '24 - NetShaper: A Differentially Private Network Side-Channel Mitigation System
USENIX Security '20 - Remote Side-Channel Attacks on Anonymous Transactions
USENIX Security '24 - How does Endpoint Detection use the MITRE ATT&CK Framework?
USENIX Security '18 - NetHide: Secure and Practical Network Topology Obfuscation
USENIX Security '22 - Bedrock: Programmable Network Support for Secure RDMA Systems
Presentation: NetWarden Mitigating Network Covert Channels While Preserving Performance
DongleScope USENIX Security 2020
USENIX Security '21 - Cross-VM and Cross-Processor Covert Channels Exploiting Processor Idle...
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USENIX Security ’20 - NetWarden: Mitigating Network Covert Channels while Preserving Performance

USENIX Security ’20 - NetWarden: Mitigating Network Covert Channels while Preserving Performance

NetWarden

USENIX Security '20 - Understanding security mistakes developers make: Qualitative analysis...

USENIX Security '20 - Understanding security mistakes developers make: Qualitative analysis...

View the full

USENIX Security '20 - Donky: Domain Keys – Efficient In-Process Isolation for RISC-V and x86

USENIX Security '20 - Donky: Domain Keys – Efficient In-Process Isolation for RISC-V and x86

View the full

USENIX Security '21 - Ripple: A Programmable, Decentralized Link-Flooding Defense Against Adaptive

USENIX Security '21 - Ripple: A Programmable, Decentralized Link-Flooding Defense Against Adaptive

Ripple: A Programmable, Decentralized Link-Flooding Defense Against Adaptive Adversaries Jiarong Xing, Wenqing Wu, and ...

USENIX Security '24 - NetShaper: A Differentially Private Network Side-Channel Mitigation System

USENIX Security '24 - NetShaper: A Differentially Private Network Side-Channel Mitigation System

NetShaper: A Differentially Private Network Side-Channel

USENIX Security '20 - Remote Side-Channel Attacks on Anonymous Transactions

USENIX Security '20 - Remote Side-Channel Attacks on Anonymous Transactions

View the full

USENIX Security '24 - How does Endpoint Detection use the MITRE ATT&CK Framework?

USENIX Security '24 - How does Endpoint Detection use the MITRE ATT&CK Framework?

How does Endpoint Detection use the MITRE ATT&CK Framework? Apurva Virkud, Muhammad Adil Inam, Andy Riddle, Jason Liu ...

USENIX Security '18 - NetHide: Secure and Practical Network Topology Obfuscation

USENIX Security '18 - NetHide: Secure and Practical Network Topology Obfuscation

Roland Meier ETH Zurich Abstract: Simple path tracing tools such as traceroute allow malicious users to infer network topologies ...

USENIX Security '22 - Bedrock: Programmable Network Support for Secure RDMA Systems

USENIX Security '22 - Bedrock: Programmable Network Support for Secure RDMA Systems

USENIX Security

Presentation: NetWarden Mitigating Network Covert Channels While Preserving Performance

Presentation: NetWarden Mitigating Network Covert Channels While Preserving Performance

Speakers: Jiarong Xing (Rice University) Alan Liu (Carnegie Mellon & Boston University) Abstract: Network covert channels are ...

DongleScope USENIX Security 2020

DongleScope USENIX Security 2020

This is the presentation of the

USENIX Security '21 - Cross-VM and Cross-Processor Covert Channels Exploiting Processor Idle...

USENIX Security '21 - Cross-VM and Cross-Processor Covert Channels Exploiting Processor Idle...

USENIX Security

USENIX Security '24 - Inf2Guard: An Information-Theoretic Framework for Learning...

USENIX Security '24 - Inf2Guard: An Information-Theoretic Framework for Learning...

Inf2Guard: An Information-Theoretic Framework for Learning Privacy-Preserving Representations against Inference Attacks ...