I/O performance of fully-replicated disk systems

D. Rotem, Gerald A. Schloss
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引用次数: 3

Abstract

Mirrored disk storage is an accepted technique to enhance fault-tolerance of data through complete replication. Recent research suggested that in addition to higher reliability, mirrored disks can offer better I/O performance by either allowing parallel reads or by reducing the seek time in cases where shortest seek distance algorithms can be used. Accurate analysis of mirrored disk systems shows that there is a significant correlation between the distributions of the disk heads positions, which makes them both interdependent and non-uniform. Furthermore, after each write all disk heads move to the same position to form what the authors call a 'bundle'. Such phenomenon may seriously deteriorate system performance. Subsequent reads gradually break up the bundles. Finally, under low rates of request arrivals, the authors provide analytical expressions for optimal anticipation points for two and three mirrored disks under general read/write combinations. Their work makes the following contributions: (1) new heuristics for treating the 'bundling phenomenon' adaptively, for applications with unknown read/write ratios; (2) a new technique that improves the expected seek time and workload balancing by using 'shifted mirroring'.<>
完全复制磁盘系统的I/O性能
镜像磁盘存储是通过完全复制增强数据容错性的一种公认技术。最近的研究表明,除了更高的可靠性之外,镜像磁盘还可以提供更好的I/O性能,因为它允许并行读取,或者在可以使用最短寻道距离算法的情况下减少寻道时间。对镜像磁盘系统的精确分析表明,磁盘磁头位置的分布之间存在显著的相关性,使它们既相互依赖又不均匀。此外,每次写入后,所有的磁头移动到相同的位置,形成作者所说的“束”。这种现象可能会严重影响系统性能。随后的阅读逐渐打破了这一束。最后,在请求到达率较低的情况下,给出了一般读写组合下2镜像盘和3镜像盘最优预期点的解析表达式。他们的工作做出了以下贡献:(1)对于具有未知读/写比率的应用程序,自适应地处理“捆绑现象”的新启发式;(2)一种通过使用“移位镜像”改善预期寻道时间和工作负载平衡的新技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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