首页> 外文会议>Distributed Computing Systems, 2009. ICDCS '09 >Reducing Disk I/O Performance Sensitivity for Large Numbers of Sequential Streams
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Reducing Disk I/O Performance Sensitivity for Large Numbers of Sequential Streams

机译:降低大量顺序流的磁盘I / O性能敏感性

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Retrieving sequential rich media content from modern commodity disks is a challenging task. As disk capacity increases, there is a need to increase the number of streams that are allocated to each disk. However, when multiple streams are accessing a single disk, throughput is dramatically reduced because of disk head seek overhead, resulting in requirements for more disks. Thus, there is a tradeoff between how many streams should be allowed to access a disk and the total throughput that can be achieved. In this work we examine this tradeoff and provide an understanding of issues along with a practical solution. We use Disksim, a detailed architectural simulator, to examine several aspects of a modern I/O subsystem and we show the effect of various disk parameters on system performance under multiple sequential streams. Then, we propose a solution that dynamically adjusts I/O request streams, based on host and I/O subsystem parameters. We implement our approach in a real system and perform experiments with a small and a large disk configuration. Our approach improves disk throughput up to a factor of 4 with a workload of 100 sequential streams, without requiring large amounts of memory on the storage node. Moreover, it is able to adjust (statically) to different storage node configurations, essentially making the I/O subsystem insensitive to the number of I/O streams used.
机译:从现代商品磁盘中检索顺序富媒体内容是一项艰巨的任务。随着磁盘容量的增加,需要增加分配给每个磁盘的流的数量。但是,当多个流正在访问单个磁盘时,由于磁盘头查找开销,吞吐量会大大降低,从而需要更多磁盘。因此,在应允许多少个流访问磁盘与可以实现的总吞吐量之间进行权衡。在这项工作中,我们研究了这种权衡,并提供了对问题的理解以及实际的解决方案。我们使用详细的体系结构模拟器Disksim来检查现代I / O子系统的多个方面,并展示在多个顺序流下各种磁盘参数对系统性能的影响。然后,我们提出了一种基于主机和I / O子系统参数动态调整I / O请求流的解决方案。我们在一个实际的系统中实现我们的方法,并使用大小磁盘配置进行实验。我们的方法通过1​​00个连续流的工作负载将磁盘吞吐量提高到原来的4倍,而无需在存储节点上使用大量内存。而且,它能够(静态地)适应不同的存储节点配置,从而使I / O子系统对所使用的I / O流的数量不敏感。

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