Replicated state machines without replicated execution
Jonathan Lee, Kirill Nikitin, Srinath T. V. Setty
摘要
This paper introduces a new approach to reduce end-to-end costs in large-scale replicated systems built under a Byzantine fault model. Specifically, our approach transforms a given replicated state machine (RSM) to another RSM where nodes incur lower costs by delegating state machine execution: an untrusted prover produces succinct cryptographic proofs of correct state transitions along with state changes, which nodes in the transformed RSM verify and apply respectively.To realize our approach, we build Piperine, a system that makes the proof machinery profitable in the context of RSMs. Specifically, Piperine reduces the costs of both proving and verifying the correctness of state machine execution while retaining liveness—a distinctive requirement in the context of RSMs. Our experimental evaluation demonstrates that, for a payment service, employing Piperine is more profitable than naive reexecution of transactions as long as there are > 104 nodes. When we apply Piperine to ERC-20 transactions in Ethereum (a real-world RSM with up to 105 nodes), it reduces per-transaction costs by 5.4× and network costs by 2.7×.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper11
- Byzantine Ordered Consensus without Byzantine OligarchyYunhao Zhang, Srinath T. V. Setty, Qi Chen, Lidong Zhou 等OSDI 2020 · 被引用 131 次
- Nova: Recursive Zero-Knowledge Arguments from Folding SchemesAbhiram Kothapalli, Srinath T. V. Setty, Ioanna TziallaCRYPTO 2022 · 被引用 123 次
- HyperNova: Recursive Arguments for Customizable Constraint SystemsAbhiram Kothapalli, Srinath T. V. SettyCRYPTO 2024 · 被引用 41 次
- Vega: Low-Latency Zero-Knowledge Proofs over Existing CredentialsDarya Kaviani, Srinath SettyS&P 2026 · 被引用 5 次
- Aardvark: An Asynchronous Authenticated Dictionary with Applications to Account-based CryptocurrenciesDerek Leung, Yossi Gilad, Sergey Gorbunov, Leonid Reyzin 等USENIX Security 2022
它引用的顶会 Paper15
- A Secure Sharding Protocol For Open BlockchainsLoi Luu, Viswesh Narayanan, Chaodong Zheng, Kunal Baweja 等CCS 2016 · 被引用 1,392 次
- OmniLedger: A Secure, Scale-Out, Decentralized Ledger via ShardingEleftherios Kokoris-Kogias, Philipp Jovanovic, Linus Gasser, Nicolas Gailly 等S&P 2018 · 被引用 1,145 次
- RapidChain: Scaling Blockchain via Full ShardingMahdi Zamani, Mahnush Movahedi, Mariana RaykovaCCS 2018 · 被引用 1,084 次
- Enhancing Bitcoin Security and Performance with Strong Consistency via Collective SigningEleftherios Kokoris-Kogias, Philipp Jovanovic, Nicolas Gailly, Ismail Khoffi 等USENIX Security 2016 · 被引用 769 次
- Doubly-Efficient zkSNARKs Without Trusted SetupRiad S. Wahby, Ioanna Tzialla, Abhi Shelat, Justin Thaler 等S&P 2018 · 被引用 356 次
相关 Paper
- Permissionless Verifiable Information Dispersal (Data Availability for Bitcoin Rollups)Ben Fisch, Arthur Lazzaretti, Zeyu Liu, Lei YangS&P 2025
- Verifying a high-performance distributed transaction system using permissioned state machinesYun-Sheng Chang, Joseph Tassarotti, Frans Kaashoek, Nickolai ZeldovichSOSP 2026
- An Algorithm and Architecture Co-design for Accelerating Smart Contracts in BlockchainRui Pan, Chubo Liu, Guoqing Xiao, Mingxing Duan 等ISCA 2023 · 被引用 3 次
- LiDO: Linearizable Byzantine Distributed Objects with Refinement-Based Liveness ProofsLongfei Qiu, Yoonseung Kim, Ji-Yong Shin, Jieung Kim 等PLDI 2024 · 被引用 12 次
- Recover from Excessive Faults in Partially-Synchronous BFT SMRTiantian Gong, Gustavo Franco Camilo, Kartik Nayak, Andrew Lewis-Pye 等USENIX Security 2025
