涨落协议:可用性-最终性困境的解决方案

Joachim Neu, Ertem Nusret Tas, David Tse
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引用次数: 45

摘要

CAP定理表明,没有一个区块链可以在动态参与下存活,在临时网络分区下是安全的。为了解决这种可用性-最终性困境,我们制定了一类新的灵活共识协议,即涨落协议,它支持完整的动态可用分类帐以及最终的前缀分类帐。当网络分区时,最终的分类账落后于完整的分类账,但在网络恢复时赶上。Gasper是以太坊2.0信标链的当前候选协议,它将最终小工具Casper FFG与LMD GHOST分叉选择规则相结合,旨在实现这一属性。然而,我们在标准同步网络模型中发现了攻击,突出了现有基于终端小工具的设计的普遍困难。我们提出了一个可证明安全的具有最优弹性的涨落协议的构造。节点运行现成的动态可用协议,获取不断增长的可用分类账的快照,并将它们输入到一个单独的现成BFT协议中,以最终确定前缀。我们探索与灵活BFT的联系,并针对该问题改进最先进的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ebb-and-Flow Protocols: A Resolution of the Availability-Finality Dilemma
The CAP theorem says that no blockchain can be live under dynamic participation and safe under temporary network partitions. To resolve this availability-finality dilemma, we formulate a new class of flexible consensus protocols, ebb-and-flow protocols, which support a full dynamically available ledger in conjunction with a finalized prefix ledger. The finalized ledger falls behind the full ledger when the network partitions but catches up when the network heals. Gasper, the current candidate protocol for Ethereum 2.0’s beacon chain, combines the finality gadget Casper FFG with the LMD GHOST fork choice rule and aims to achieve this property. However, we discovered an attack in the standard synchronous network model, highlighting a general difficulty with existing finality-gadget-based designs. We present a construction of provably secure ebb-and-flow protocols with optimal resilience. Nodes run an off-the-shelf dynamically available protocol, take snapshots of the growing available ledger, and input them into a separate off-the-shelf BFT protocol to finalize a prefix. We explore connections with flexible BFT and improve upon the state-of-the-art for that problem.
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