现代科学工作负载的内在数据局部性

S. Ramanathan, R. Srinivasan, J. Cook
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引用次数: 1

摘要

了解工作负载的固有数据位置对于理解和预测缓存性能至关重要。特定应用程序或工作负载的固有数据位置可以以与微体系结构无关的方式进行度量。理想情况下,这些测量产生的数据可用于开发分析模型,用于预测不同缓存大小和配置下的内存性能。许多关于数据局部性的研究使用缓存命中率(一个与微体系结构相关的度量)来检查局部性。在本文中,我们提出了一个与微架构相关和与微架构无关的SPEC2000工作负载特性。我们对这些工作负载表现出的不同类型的数据局部性(例如空间和时间)进行了定量统计,并表明复合固有局部性可以与缓存命中率测量的局部性相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intrinsic data locality of modern scientific workloads
Understanding the intrinsic data locality of a workload is essential to understanding and predicting cache performance. The intrinsic data locality of a particular application or workload can be measured in a microarchitecture-independent manner. The data resulting from these measurements ideally can be used to develop an analytic model for predicting memory performance on different cache sizes and configurations. Many studies on data locality use cache hit ratios, a microarchitecture-dependent metric, to examine locality. In this paper, we present a microarchitecture-dependent and a microarchitecture-independent characterization of the SPEC2000 workloads. We present quantitative statistics on the different types of data locality (e.g. spatial and temporal) exhibited by these workloads and we show that the composite intrinsic locality can be correlated to locality measured by cache hit ratio.
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