BFT Protocol Forensics
Peiyao Sheng, Gerui Wang, Kartik Nayak, Sreeram Kannan, Pramod Viswanath
摘要
Byzantine fault-tolerant (BFT) protocols allow a group of replicas to come to consensus even when some of the replicas are Byzantine faulty. There exist multiple BFT protocols to securely tolerate an optimal number of faults t under different network settings. However, if the number of faults f exceeds t then security could be violated. In this paper we mathematically formalize the study of forensic support of BFT protocols: we aim to identify (with cryptographic integrity) as many of the malicious replicas as possible and in as distributed manner as possible. Our main result is that forensic support of BFT protocols depends heavily on minor implementation details that do not affect the protocol's security or complexity. Focusing on popular BFT protocols (PBFT, HotStuff, Algorand) we exactly characterize their forensic support, showing that there exist minor variants of each protocol for which the forensic supports vary widely. We show strong forensic support capability of LibraBFT, the consensus protocol of Diem cryptocurrency; our lightweight forensic module implemented on a Diem client is open-sourced and is under active consideration for deployment in Diem. Finally, we show that all secure BFT protocols designed for 2t+1 replicas communicating over a synchronous network forensic support is inherently nonexistent; this impossibility result holds for all BFT protocols and even if one has access to the states of all replicas (including Byzantine ones).
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引用它的顶会 Paper12
- Ebb-and-Flow Protocols: A Resolution of the Availability-Finality DilemmaJoachim Neu, Ertem Nusret Tas, David TseS&P 2021 · 被引用 105 次
- HotStuff-1: Linear Consensus with One-Phase SpeculationDakai Kang, Suyash Gupta, Dahlia Malkhi, Mohammad SadoghiSIGMOD 2025 · 被引用 23 次
- Optimal Flexible Consensus and its Application to EthereumJoachim Neu, Srivatsan Sridhar, Lei Yang, David TseS&P 2024 · 被引用 12 次
- SpotLess: Concurrent Rotational Consensus Made Practical Through Rapid View SynchronizationDakai Kang, Sajjad Rahnama, Jelle Hellings, Mohammad SadoghiICDE 2024 · 被引用 10 次
- More is Merrier: Relax the Non-Collusion Assumption in Multi-Server PIRTiantian Gong, Ryan Henry, Alexandros Psomas, Aniket KateS&P 2024 · 被引用 7 次
它引用的顶会 Paper3
- 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
- Flexible Byzantine Fault ToleranceDahlia Malkhi, Kartik Nayak, Ling RenCCS 2019 · 被引用 122 次
- Ebb-and-Flow Protocols: A Resolution of the Availability-Finality DilemmaJoachim Neu, Ertem Nusret Tas, David TseS&P 2021 · 被引用 105 次
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