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Intel Many Integrated Core (MIC) Architecture Optimization Strategies for a Memory-Bound Weather Research and Forecasting (WRF) Goddard Microphysics Scheme

机译:英特尔®内存受限天气研究与预报(WRF)Goddard微物理学计划的许多集成核心(MIC)架构优化策略

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The Goddard cloud microphysics scheme is a sophisticated cloud microphysics scheme in the Weather Research and Forecasting (WRF) model. The WRF is a widely used weather prediction system in the world. It development is a done in collaborative around the globe. The Goddard microphysics scheme is very suitable for massively parallel computation as there are no interactions among horizontal grid points. Compared to the earlier microphysics schemes, the Goddard scheme incorporates a large number of improvements. Thus, we have optimized the code of this important part of WRF. In this paper, we present our results of optimizing the Goddard microphysics scheme on Intel Many Integrated Core Architecture (MIC) hardware. The Intel Xeon Phi coprocessor is the first product based on Intel MIC architecture, and it consists of up to 61 cores connected by a high performance on-die bidirectional interconnect. The Intel MIC is capable of executing a full operating system and entire programs rather than just kernels as the GPU do. The MIC coprocessor supports all important Intel development tools. Thus, the development environment is familiar one to a vast number of CPU developers. Although, getting a maximum performance out of MICs will require using some novel optimization techniques. Those optimization techniques are discusses in this paper. The results show that the optimizations improved performance of the original code on Xeon Phi 7120P by a factor of 4.7x. Furthermore, the same optimizations improved performance on a dual socket Intel Xeon E5-2670 system by a factor of 2.8x compared to the original code.
机译:戈达德云微物理方案是天气研究和预报(WRF)模型中的一种复杂的云微物理方案。 WRF是世界上广泛使用的天气预报系统。它的开发是全球协作的成果。戈达德微物理学方案非常适合大规模并行计算,因为水平网格点之间没有相互作用。与早期的微物理方案相比,戈达德方案进行了大量改进。因此,我们优化了WRF这一重要部分的代码。在本文中,我们介绍了在Intel Many Integrated Core Architecture(MIC)硬件上优化Goddard微物理方案的结果。英特尔至强融核协处理器是第一个基于英特尔MIC架构的产品,它包含多达61个内核,这些内核通过高性能的芯片上双向互连连接。英特尔MIC能够执行完整的操作系统和整个程序,而不仅仅是GPU那样的内核。 MIC协处理器支持所有重要的英特尔开发工具。因此,开发环境是众多CPU开发人员所熟悉的。尽管要使MIC发挥最大性能将需要使用一些新颖的优化技术。这些优化技术将在本文中进行讨论。结果表明,这些优化将至强融核7120P上原始代码的性能提高了4.7倍。此外,与原始代码相比,相同的优化将双插槽Intel Xeon E5-2670系统的性能提高了2.8倍。

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