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Output Performance Study on a Production Petascale Filesystem

机译:生产PetaScale文件系统的输出绩效研究

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This paper reports our observations from a top-tier supercomputer Titan and its Lustre parallel file stores under production load. In summary, we find that supercomputer file systems are highly variable across the machine at fine time scales. This variability has two major implications. First, stragglers lessen the benefit of coupled I/O parallelism (striping). Peak median output bandwidths are obtained with parallel writes to many independent files, with no striping or write-sharing of files across clients (compute nodes). I/O parallelism is most effective when the application - or its I/O middleware system - distributes the I/O load so that each client writes separate files on multiple targets, and each target stores files for multiple clients, in a balanced way. Second, our results suggest that the potential benefit of dynamic adaptation is limited. In particular, it is not fruitful to attempt to identify "good spots" in the machine or in the file system: component performance is driven by transient load conditions, and past performance is not a useful predictor of future performance. For example, we do not observe regular diurnal load patterns.
机译:本文报告了我们在生产负荷下的顶层超级计算机泰坦及其光泽平行文件店的观察。总之,我们发现超级计算机文件系统在整个机器上在精细时间尺度方面是高度变化的。这种变异性具有两个主要的含义。首先,StragGlers减少耦合I / O平行(条带)的益处。使用并行写入到许多独立文件中获得峰值中位数输出带宽,没有客户端的文件或写入文件(计算节点)。当应用程序或其I / O中间件系统 - 分发I / O负载时,I / O并行性最有效,以便每个客户端在多个目标上写入单独的文件,并且每个目标以平衡方式为多个客户端存储文件。其次,我们的结果表明,动态适应的潜在好处是有限的。特别是,尝试在机器中或文件系统中识别“良好的斑点”并不富有成效:组件性能由瞬态负载条件驱动,并且过去的性能不是未来性能的有用预测因素。例如,我们不观察到规则的昼夜负荷模式。

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