Yue Huang (Tsinghua University), Xin Wang (Tsinghua University), Haibin Zhang (Yangtze Delta Region Institute of Tsinghua University, Zhejiang), Sisi Duan (Tsinghua University)

Conventional Byzantine fault-tolerant consensus protocols focus on the workflow within a group of nodes. In recent years, many applications of consensus involve communication across groups. Examples include communication between replicated state machine across different infrastructures, sharding-based protocols where nodes from different shards communicate with each other, and cross-chain bridges. Unfortunately, little effort has been made to model the properties for communication across groups.

In this work, we propose a new primitive called cross-consensus reliable broadcast (XRBC). The XRBC primitive models the security properties of communication between two groups, where at least one group executes a consensus protocol. We provide three constructions of XRBC under different assumptions and present three different applications for our XRBC protocols: a cross-shard coordination protocol via a case study of Reticulum (NDSS 2024), a protocol for cross-shard transactions via a case study of Chainspace (NDSS 2018), and a solution for cross-chain bridge. Our evaluation results show that our protocols are highly efficient and benefit different applications. For example, in our case study on Reticulum, our approach achieves 61.16% lower latency than the vanilla approach.

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LinkGuard: A Lightweight State-Aware Runtime Guard Against Link Following...

Bocheng Xiang (Fudan University), Yuan Zhang (Fudan University), Hao Huang (Fudan university), Fengyu Liu (Fudan University), Youkun Shi (Fudan University)

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Enhancing Legal Document Security and Accessibility with TAF

Renata Vaderna (Independent Researcher), Dušan Nikolić (University of Novi Sad), Patrick Zielinski (New York University), David Greisen (Open Law Library), BJ Ard (University of Wisconsin–Madison), Justin Cappos (New York University)

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