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Evaluation of the partitioned global address space (PGAS) model for an inviscid Euler solver

机译:无粘性欧拉求解器的分区全局地址空间(PGAS)模型的评估

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In this paper we evaluate the performance of Unified Parallel C (which implements the partitioned global address space programming model) using a numerical method that is widely used in fluid dynamics. In order to evaluate the incremental approach to parallelization (which is possible with UPC) and its performance characteristics, we implement different levels of optimization of the UPC code and compare it with an MPI parallelization on four different clusters of the Austrian HPC infrastructure (LEO3, LEO3E, VSC2, VSC3) and on an Intel Xeon Phi. We find that UPC is significantly easier to develop in compared to MPI and that the performance achieved is comparable to MPI in most situations. The obtained results show worse performance (on VSC2), competitive performance (on LEO3, LEO3E and VSC3), and superior performance (on the Intel Xeon Phi) compared with MPI. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,我们使用在流体动力学中广泛使用的数值方法来评估Unified Parallel C(实现分区的全局地址空间编程模型)的性能。为了评估增量并行化方法(UPC可以实现)及其性能特征,我们对UPC代码进行了不同级别的优化,并将其与MPI并行化在奥地利HPC基础架构(LEO3, LEO3E,VSC2,VSC3)和Intel Xeon Phi上。我们发现,与MPI相比,UPC明显更易于开发,并且在大多数情况下所达到的性能可与MPI相提并论。与MPI相比,获得的结果显示出较差的性能(在VSC2上),竞争性能(在LEO3,LEO3E和VSC3上)和出色的性能(在Intel Xeon Phi上)。 (C)2016 Elsevier B.V.保留所有权利。

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