关于广义共识的局部性开发

Sebastiano Peluso, Alexandru Turcu, R. Palmieri, B. Ravindran
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引用次数: 1

摘要

众所周知,一旦leader达到饱和点,基于单个leader的共识协议就会停止扩展。另一方面,通过只考虑它们的依赖关系(如广义共识所指定的)来建立命令的一致性是有吸引力的,因为潜在的更高的并行性和更低的延迟。然而,目前的解决方案存在众所周知的缺陷,因为需要较高的仲裁大小,这需要利用低延迟的快速决策,并且需要跟踪依赖关系。在本文中,我们简要介绍了M2PAXOS,这是广义共识的一种新实现,它通过利用经典的仲裁大小来提供快速的命令决策,该仲裁大小仅与部署的大多数节点相匹配。M2PAXOS不基于冲突建立命令依赖关系,而是将被访问的对象与节点关联起来,因此在相同对象上操作的命令的交付决策由公共节点做出。M2PAXOS的评估研究证实了它的有效性,显示出比最先进的(广义)共识协议提高了7倍。
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On Exploiting Locality for Generalized Consensus
Single leader-based Consensus protocols are known to stop scaling once the leader reaches its saturation point. On the other hand, establishing Consensus of commands by taking into account only their dependencies (as specified by Generalized Consensus) is appealing because of the potentially higher parallelism and lower latency. However, current solutions have well-known pitfalls due to the higher quorum size, which is required to exploit low-latency fast decisions, and the need for tracking dependency relations. In this paper we briefly introduce M2PAXOS, a new implementation of Generalized Consensus that provides a fast decision of commands by leveraging a classic quorum size, which matches just the majority of nodes deployed. M2PAXOS does not establish command dependencies based on conflicts, rather it associates accessed objects with nodes, so that the delivery decision of commands operating on the same objects is made by a common node. The evaluation study of M2PAXOS confirms its effectiveness by showing an improvement up to 7× over state-of-the-art (Generalized) Consensus protocols.
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