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File-access characteristics of parallel scientific workloads

机译:并行科学工作负载的文件访问特征

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Phenomenal improvements in the computational performance of multiprocessors have not been matched by comparable gains in I/O system performance. This imbalance has resulted in I/O becoming a significant bottleneck for many scientific applications. One key to overcoming this bottleneck is improving the performance of multiprocessor file systems. The design of a high-performance multiprocessor file system requires a comprehensive understanding of the expected workload. Unfortunately, until recently, no general workload studies of multiprocessor file systems have been conducted. The goal of the CHARISMA project was to remedy this problem by characterizing the behavior of several production workloads, on different machines, at the level of individual reads and writes. The first set of results from the CHARISMA project describe the workloads observed on an Intel iPSC/860 and a Thinking Machines CM-5. This paper is intended to compare and contrast these two workloads for an understanding of their essential similarities and differences, isolating common trends and platform-dependent variances. Using this comparison, we are able to gain more insight into the general principles that should guide multiprocessor file-system design.
机译:I / O系统性能的可比增长还无法与多处理器计算性能的显着改善相提并论。这种不平衡导致I / O成为许多科学应用程序的重要瓶颈。克服此瓶颈的一个关键是提高多处理器文件系统的性能。高性能多处理器文件系统的设计需要对预期工作量的全面了解。不幸的是,直到最近,还没有对多处理器文件系统进行一般的工作负载研究。 CHARISMA项目的目标是通过表征不同读取和写入级别上不同机器上的几种生产工作负载的行为来解决此问题。 CHARISMA项目的第一组结果描述了在Intel iPSC / 860和Thinking Machines CM-5上观察到的工作负载。本文旨在比较和对比这两个工作负载,以了解它们的基本相似之处和不同之处,隔离出常见趋势和平台相关的差异。使用这种比较,我们可以对指导多处理器文件系统设计的一般原理有更多的了解。

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