Bolt-Dumbo Transformer: Asynchronous Consensus As Fast As the Pipelined BFT
Yuan Lu, Zhenliang Lu, Qiang Tang
摘要
An urgent demand of deploying BFT consensus (e.g., atomic broadcast) over the Internet is raised for implementing (permissioned) blockchain services. The deterministic (partial) synchronous protocols can be simple and fast in good network conditions, but are subject to denial-of-service (or even safety vulnerability) when synchrony assumption fails. Asynchronous protocols, on the contrary, are robust against the adversarial network, but are substantially more complicated and slower for the inherent use of randomness. Facing the issues, optimistic asynchronous atomic broadcast (Kursawe-Shoup, 2002; Ramasamy-Cachin, 2005) was proposed to improve the normal-case performance of the slow asynchronous consensus. They run a deterministic fastlane if the network condition remains good, and can fall back to a fully asynchronous protocol via a pace-synchronization mechanism (analog to view-change with asynchronous securities) if the fastlane fails. Unfortunately, existing pace-synchronization directly uses a heavy tool of asynchronous multi-valued validated Byzantine agreement (MVBA). When such fallback frequently occurs in the fluctuating wide-area network setting, the benefits of adding fastlane can be eliminated. We present Bolt-Dumbo Transformer (BDT), a generic framework for practical optimistic asynchronous atomic broadcast. At the core of BDT, we set forth a new fastlane abstraction that is simple and fast, while preparing honest parties to gracefully face potential fastlane failures caused by malicious leader or bad network. This enables a highly efficient pace-synchronization to handle fallback. The resulting design reduces a cumbersome MVBA to a variant of the conceptually simplest binary agreement only. Besides detailed security analyses, we also give concrete instantiations of our framework and implement them. Extensive experiments demonstrate that BDT can enjoy both the low latency of deterministic protocols (e.g. 2-chain version of HotStuff) and the robustness of state-of-the-art asynchronous protocols in practice.
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引用它的顶会 Paper15
- HotStuff-1: Linear Consensus with One-Phase SpeculationDakai Kang, Suyash Gupta, Dahlia Malkhi, Mohammad SadoghiSIGMOD 2025 · 被引用 23 次
- SharDAG: Scaling DAG-Based Blockchains Via Adaptive ShardingFeng Cheng, Jiang Xiao, Cunyang Liu, Shijie Zhang 等ICDE 2024 · 被引用 20 次
- Scalable Accountable Byzantine Agreement and BeyondPierre Civit, Daniel Collins, Vincent Gramoli, Rachid Guerraoui 等S&P 2026 · 被引用 4 次
- Chitu: Avoiding Unnecessary Fallback in Byzantine ConsensusRongji Huang, Xiangzhe Wang, Xiaofeng Yan, Lei Fan 等USENIX ATC 2025 · 被引用 3 次
- Ipotane: Balancing the Good and Bad Cases of Asynchronous BFTXiaohai Dai, Chaozheng Ding, Hai Jin, Julian Loss 等NDSS 2026 · 被引用 3 次
它引用的顶会 Paper15
- 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
- Sync HotStuff: Simple and Practical Synchronous State Machine ReplicationIttai Abraham, Dahlia Malkhi, Kartik Nayak, Ling Ren 等S&P 2020 · 被引用 240 次
- Practical Asynchronous Distributed Key GenerationSourav Das, Thomas Yurek, Zhuolun Xiang, Andrew Miller 等S&P 2022 · 被引用 136 次
- DispersedLedger: High-Throughput Byzantine Consensus on Variable Bandwidth NetworksLei Yang, Seo Jin Park, Mohammad Alizadeh, Sreeram Kannan 等NSDI 2022 · 被引用 120 次
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