通过部分复制和1拷贝-快照隔离提高数据库复制的可伸缩性

Damián Serrano, M. Patiño-Martínez, R. Jiménez-Peris, Bettina Kemme
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引用次数: 89

摘要

数据库已成为现代信息系统的重要组成部分。同时,它们也成为大多数系统的主要瓶颈。数据库复制协议的提出是为了通过在站点集群中向外扩展来解决可伸缩性问题。目前的技术已经达到了一定程度的可伸缩性,但是现有的方法有两个主要的限制。首先,大多数解决方案采用完整复制模型,其中所有站点都存储数据库的完整副本。保持所有副本的一致性所带来的协调开销使得这种方法只能实现中等的可伸缩性。其次,大多数复制协议依赖于传统的一致性标准,即1拷贝-串行性,这限制了并发性,从而限制了系统的可伸缩性。在本文中,我们首先分析了通过各种部分复制配置(即并非所有站点都存储所有数据的配置)可以实现的性能提升。在此基础上,我们导出了一个部分复制协议,该协议提供1拷贝快照隔离作为正确性标准。我们用TPC-W对该协议进行了评估,结果显示出比完全复制更好的可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Boosting Database Replication Scalability through Partial Replication and 1-Copy-Snapshot-Isolation
Databases have become a crucial component in modern information systems. At the same time, they have become the main bottleneck in most systems. Database replication protocols have been proposed to solve the scalability problem by scaling out in a cluster of sites. Current techniques have attained some degree of scalability, however there are two main limitations to existing approaches. Firstly, most solutions adopt a full replication model where all sites store a full copy of the database. The coordination overhead imposed by keeping all replicas consistent allows such approaches to achieve only medium scalability. Secondly, most replication protocols rely on the traditional consistency criterion, 1-copy-serializability, which limits concurrency, and thus scalability of the system. In this paper, we first analyze analytically the performance gains that can be achieved by various partial replication configurations, i.e., configurations where not all sites store all data. From there, we derive a partial replication protocol that provides 1-copy-snapshot isolation as correctness criterion. We have evaluated the protocol with TPC-W and the results show better scalability than full replication.
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