Xinshu Ma (University of Edinburgh), Michio Honda (University of Edinburgh)

Quantum computers threaten to break the cryptographic foundations of classical TLS, prompting a shift to post-quantum cryptography. However, post-quantum authentication imposes significant performance overheads, particularly for mutual TLS in cloud environments with high handshake rates. We present Looma, a fast post-quantum authentication architecture that splits authentication into a fast, on-path sign/verify operation and slow, off-path pre-computations performed asynchronously, reducing handshake latency without sacrificing security. Integrated into TLS 1.3, Looma lowers PQTLS handshake latency by up to 44% compared to a Dilithium-2--based baseline. Our results demonstrate the practicality of Looma for scaling post-quantum secure communications in cloud environments.

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Crack in the Armor: Underlying Infrastructure Threats to RPKI...

Yunhao Liu (Tsinghua University & Zhongguancun Laboratory), Jessie Hui Wang (Tsinghua University & Zhongguancun Laboratory), Yuedong Xu (Fudan University), Zongpeng Li (Tsinghua University), Yangyang Wang (Tsinghua University & Zhongguancun Laboratory), Jilong Wang (Tsinghua University & Zhongguancun Laboratory)

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Automated Code Annotation with LLMs for Establishing TEE Boundaries

Varun Gadey (University of Würzburg), Melanie Goetz (University of Würzburg), Christoph Sendner (University of Würzburg), Sampo Sovio (Huawei Technologies), Alexandra Dmitrienko (University of Wuerzburg)

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Augmented Shuffle Differential Privacy Protocols for Large-Domain Categorical and...

Takao Murakami (The Institute of Statistical Mathematics (ISM) / National Institute of Advanced Industrial Science and Technology (AIST) / RIKEN AIP), Yuichi Sei (University of Electro-Communications), Reo Eriguchi (National Institute of Advanced Industrial Science and Technology (AIST))

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