Asynchronous Consensus without Trusted Setup or Public-Key Cryptography
Sourav Das, Sisi Duan, Shengqi Liu, Atsuki Momose, Ling Ren, Victor Shoup
摘要
Byzantine consensus is a fundamental building block in distributed cryptographic problems. Despite decades of research, most existing asynchronous consensus protocols require a strong trusted setup and expensive public-key cryptography. In this paper, we study asynchronous Byzantine consensus protocols that do not rely on a trusted setup and do not use public-key cryptography such as digital signatures. We give an Asynchronous Common Subset (ACS) protocol whose security is only based on cryptographic hash functions modeled as a random oracle. Our protocol has 𝑂(𝜅𝑛 3 ) total communication and runs in expected 𝑂(1) rounds. The fact that we use only cryptographic hash functions also means that our protocol is post-quantum secure. The minimal use of cryptography and the small number of rounds make our protocol practical. We implement our protocol and evaluate it in a geo-distributed setting with up to 128 machines. Our experimental evaluation shows that our protocol is more efficient than the only other setup-free consensus protocol that has been implemented to date. En route to our asynchronous consensus protocols, we also introduce new primitives called asynchronous secret key sharing and cover gather, which may be of independent interest. CCS Concepts • Security and privacy → Distributed systems security.
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引用它的顶会 Paper9
- Scalable Accountable Byzantine Agreement and BeyondPierre Civit, Daniel Collins, Vincent Gramoli, Rachid Guerraoui 等S&P 2026 · 被引用 4 次
- GoSSamer: Lightweight and Linear-Communication Asynchronous (Dynamic Proactive) Secret Sharing and the ApplicationsXinxin Xing, Yizhong Liu, Boyang Liao, Jianwei Liu 等S&P 2026 · 被引用 2 次
- Cross-Consensus Reliable Broadcast and its ApplicationsYue Huang, Xin Wang, Haibin Zhang, Sisi DuanNDSS 2026 · 被引用 2 次
- Partial Synchrony for Free: New Upper Bounds for Byzantine AgreementPierre Civit, Muhammad Ayaz Dzulfikar, Seth Gilbert, Rachid Guerraoui 等SODA 2025
- Sailfish: Towards Improving the Latency of DAG-Based BFTNibesh Shrestha, Rohan Shrothrium, Aniket Kate, Kartik NayakS&P 2025
它引用的顶会 Paper13
- The Honey Badger of BFT ProtocolsAndrew Miller, Yu Xia, Kyle Croman, Elaine Shi 等CCS 2016 · 被引用 974 次
- BEAT: Asynchronous BFT Made PracticalSisi Duan, Michael K. Reiter, Haibin ZhangCCS 2018 · 被引用 255 次
- Practical Asynchronous Distributed Key GenerationSourav Das, Thomas Yurek, Zhuolun Xiang, Andrew Miller 等S&P 2022 · 被引用 136 次
- Asynchronous Distributed Key Generation for Computationally-Secure Randomness, Consensus, and Threshold SignaturesEleftherios Kokoris-Kogias, Dahlia Malkhi, Alexander SpiegelmanCCS 2020 · 被引用 107 次
- Dumbo-NG: Fast Asynchronous BFT Consensus with Throughput-Oblivious LatencyYingzi Gao, Yuan Lu, Zhenliang Lu, Qiang Tang 等CCS 2022 · 被引用 72 次
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