首页> 外文会议>2018 Symposium on High Performance Computing Systems >Analysis of Optimization Opportunities for Intel Xeon Phi and Intel Xeon Scalable Processors Environments of a Numerical Method for the Biphasic Flow of Fluids in Porous Media
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Analysis of Optimization Opportunities for Intel Xeon Phi and Intel Xeon Scalable Processors Environments of a Numerical Method for the Biphasic Flow of Fluids in Porous Media

机译:多孔介质中流体双相流动数值方法的英特尔至强融核和英特尔至强可扩展处理器环境的优化机会分析

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This paper presents optimizations of a numerical method for the biphasic flow of fluids in porous media, for Intel® Xeon PhiTM and Intel® Xeon Scalable ProcessorsTM. Intel® Parallel Studios XE suite tools were used in the study of three method implementations (naive, EWS-Sync and RC). The EWS-Sync implementation consists of replacing the OpenMP barriers by an explicit thread synchronization mechanism. By avoiding barriers, by explicitly synchronizing threads waiting only for their adjacent ones in execution, the spin time was reduced. These implementations obtained a Speedups of 27x, compared to a serial execution, in multi-core and manycore architectures.
机译:本文针对Intel \ n ® \ n Xeon Phi \ n TM \ n和Intel \ n ® \ n Xeon可扩展处理器\ n TM \ 。英特尔\ n ® \ n Parallel Studios XE套件工具被用于研究三种方法的实现(天真,EWS-Sync和RC)。 EWS-Sync实现包括通过显式线程同步机制替换OpenMP障碍。通过避免障碍,通过显式同步仅等待执行中相邻线程的线程,减少了旋转时间。与串行执行相比,在多核和多核架构中,这些实现获得的27倍加速比。

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