具有最优和接近最优并行性的散簇磁盘阵列架构

G. A. Alvarez, W. Burkhard, L. Stockmeyer, F. Cristian
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引用次数: 55

摘要

本文研究了冗余磁盘阵列上数据和奇偶校验的放置。传统上使用集群组织来实现故障磁盘内容的快速重建。在之前的工作中,Holland和Gibson确定了理想布局的六个理想属性;然而,文献中还没有发表过满足所有属性的聚类布局。我们提出了一个完整的,建设性的特征集合的理想散簇布局具有所有六个性质。考虑到理想布局只存在于有限的配置集,我们还提出了两种新的布局族。PRIME和RELPR可以在各种配置中容忍多次故障,与理想情况略有偏差。我们的仿真研究表明,与先前发布的布局相比,新布局提供了出色的并行访问性能,并且在降级操作期间减少了增量负载。对于大访问和高负载,新布局的响应时间通常比以前发布的集群布局的响应时间小2.5倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Declustered disk array architectures with optimal and near-optimal parallelism
This paper investigates the placement of data and parity on redundant disk arrays. Declustered organizations have been traditionally used to achieve fast reconstruction of a failed disk's contents. In previous work, Holland and Gibson identified six desirable properties for ideal layouts; however no declustered layout satisfying all properties has been published in the literature. We present a complete, constructive characterization of the collection of ideal declustered layouts possessing all six properties. Given that ideal layouts exist only for a limited set of configurations, we also present two novel layout families. PRIME and RELPR can tolerate multiple failures in a wide variety of configurations with slight deviations from the ideal. Our simulation studies show that the new layouts provide excellent parallel access performance and reduced incremental loads during degraded operation, when compared with previously published layouts. For large accesses and under high loads, response times for the new layouts are typically smaller than those of previously published declustered layouts by a factor of 2.5.
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