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Characterizing and Adapting the Consistency-Latency Tradeoff in Distributed Key-Value Stores

机译:表征和适应分布式键值存储中的一致性-延迟权衡

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摘要

The CAP theorem is a fundamental result that applies to distributed storage systems. In this article, we first present and prove two CAP-like impossibility theorems. To state these theorems, we present probabilistic models to characterize the three important elements of the CAP theorem: consistency (C), availability or latency (A), and partition tolerance (P). The theorems show the un-achievable envelope, that is, which combinations of the parameters of the three models make them impossible to achieve together. Next, we present the design of a class of systems called Probabilistic CAP (PCAP) that perform close to the envelope described by our theorems. In addition, these systems allow applications running on a single data center to specify either a latency Service Level Agreement (SLA) or a consistency SLA. The PCAP systems-automatically adapt, in real time and under changing network conditions, to meet the SLA while optimizing the other C/A metric. We incorporate PCAP into two popular key-value stores: Apache Cassandra and Riak. Our experiments with these two deployments, under realistic workloads, reveal that the PCAP systems satisfactorily meets SLAs and perform close to the achievable envelope. We also extend PCAP from a single data center to multiple geo-distributed data centers.
机译:CAP定理是适用于分布式存储系统的基本结果。在本文中,我们首先介绍并证明两个类似于CAP的不可能定理。为了陈述这些定理,我们提出概率模型来描述CAP定理的三个重要元素:一致性(C),可用性或等待时间(A)和分区容限(P)。定理显示了无法实现的包络,即三个模型的参数组合使它们无法一起实现。接下来,我们介绍一类称为概率CAP(PCAP)的系统的设计,该系统的性能接近定理所描述的范围。此外,这些系统还允许在单个数据中心上运行的应用程序指定延迟服务级别协议(SLA)或一致性SLA。 PCAP系统可以自动并实时地并在不断变化的网络条件下适应SLA,同时优化其他C / A指标。我们将PCAP合并到两个流行的键值存储中:Apache Cassandra和Riak。我们在实际工作负载下对这两种部署进行的实验表明,PCAP系统令人满意地满足了SLA,并且性能接近可实现的范围。我们还将PCAP从单个数据中心扩展到多个地理分布的数据中心。

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