Understanding and improving computational science storage access through continuous characterization

P. Carns, K. Harms, W. Allcock, Charles Bacon, S. Lang, R. Latham, R. Ross
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引用次数: 253

Abstract

Computational science applications are driving a demand for increasingly powerful storage systems. While many techniques are available for capturing the I/O behavior of individual application trial runs and specific components of the storage system, continuous characterization of a production system remains a daunting challenge for systems with hundreds of thousands of compute cores and multiple petabytes of storage. As a result, these storage systems are often designed without a clear understanding of the diverse computational science workloads they will support.
通过连续表征理解和改进计算科学存储访问
计算科学应用正在推动对日益强大的存储系统的需求。虽然有许多技术可用于捕获单个应用程序试运行和存储系统特定组件的I/O行为,但对于具有数十万个计算核心和多个pb存储的系统来说,持续表征生产系统仍然是一项艰巨的挑战。因此,在设计这些存储系统时,通常没有清楚地了解它们将支持的各种计算科学工作负载。
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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