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Correlation of Performance Optimizations and Energy Consumption for Stencil-Based Application on Intel Xeon Scalable Processors

机译:基于模板的应用程序优化和能耗的相关性在英特尔Xeon可扩展处理器上的应用

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This article provides a comprehensive study of the impact of performance optimizations on the energy efficiency of a real-world CFD application called MPDATA, as well as an insightful analysis of performance-energy interaction of these optimizations with the underlying hardware that represents the first generation of Intel Xeon Scalable processors. Considering the MPDATA iterative application as a use case, we explore the fundamentals of energy and performance analysis for a memory-bound application when exposed to a set of optimization steps that increase the application performance, by improving the operational intensity of code and utilizing resources more efficiently. It is shown that for memory-bound applications, optimizing toward high performance could be a powerful strategy for improving the energy efficiency as well. In fact, for the considered performance optimizations, the energy gain is correlated with the performance gain but with varying degrees. As a result, these optimizations allow improving both performance and energy consumption radically, up to about 10.9 and 8.8 times, respectively. The impact of the Intel AVX-512 SIMD extension on the energy consumption and performance is demonstrated. Also, we discover limitations on the usability of CPU frequency scaling as a tool for balancing energy savings with admissible performance losses.
机译:本文提供了对性能优化对MPDATA的现实CFD应用程序的能效的影响,以及与代表第一代的底层硬件对这些优化的性能 - 能源相互作用的富有熟练分析英特尔Xeon可扩展处理器。将MPData迭代应用程序视为用例,我们通过提高代码的操作强度并更多地利用资源,探讨内存绑定应用程序的能量和性能分析的基础有效率的。结果表明,对于内存绑定的应用,优化高性能可能是提高能源效率的强大策略。实际上,对于考虑的性能优化,能量增益与性能增益相关,但具有不同程度。因此,这些优化允许从根本上提高性能和能量消耗,分别高达约10.9和8.8次。 Intel AVX-512 SIMD扩展对能量消耗和性能的影响。此外,我们发现CPU频率缩放的可用性的限制作为平衡能量节约的工具,可允许的性能损失。

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