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A Segment-Level Adaptive Data Layout Scheme for Improved Load Balance in Parallel File Systems

机译:用于提高并行文件系统中的负载平衡的段级自适应数据布局方案

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Parallel file systems are designed to mask the ever-increasing gap between CPU and disk speeds via parallel I/O processing. While they have become an indispensable component of modern high-end computing systems, their inadequate performance is a critical issue facing the HPC community today. Conventionally, a parallel file system stripes a file across multiple file servers with a fixed stripe size. The stripe size is a vital performance parameter, but the optimal value for it is often application dependent. How to determine the optimal stripe size is a difficult research problem. Based on the observation that many applications have different data-access clusters in one file, with each cluster having a distinguished data access pattern, we propose in this paper a segmented data layout scheme for parallel file systems. The basic idea behind the segmented approach is to divide a file logically into segments such that an optimal stripe size can be identified for each segment. A five-step method is introduced to conduct the segmentation, to identify the appropriate stripe size for each segment, and to carry out the segmented data layout scheme automatically. Experimental results show that the proposed layout scheme is feasible and effective, and it improves performance up to 163% for writing and 132% for reading on the widely used IOR and IOzone benchmarks.
机译:并行文件系统旨在通过并行I / O处理来掩盖CPU和磁盘速度之间越来越大的差距。尽管它们已成为现代高端计算系统必不可少的组成部分,但其性能不足却是当今HPC社区面临的一个关键问题。按照惯例,并行文件系统以固定的条带大小跨多个文件服务器对文件进行条带化。条带大小是至关重要的性能参数,但其最佳值通常取决于应用程序。如何确定最佳条带尺寸是一个困难的研究问题。基于观察到许多应用程序在一个文件中具有不同的数据访问群集,并且每个群集具有不同的数据访问模式的观点,我们在本文中提出了一种针对并行文件系统的分段数据布局方案。分段方法背后的基本思想是将文件逻辑上划分为多个段,以便可以为每个段确定最佳的条带大小。引入了一种五步方法来进行分段,为每个分段标识合适的条带大小,并自动执行分段的数据布局方案。实验结果表明,所提出的布局方案是可行且有效的,并且在广泛使用的IOR和IOzone基准上,其写入性能提高了163%,读取性能提高了132%。

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