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A CPU/MIC Collaborated Parallel Framework for GROMACS on Tianhe-2 Supercomputer

机译:天河二号超级计算机上GROMACS的CPU / MIC协作并行框架

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Molecular Dynamics (MD) is the simulation of the dynamic behavior of atoms and molecules. As the most popular software for molecular dynamics, GROMACS cannot work on large-scale data because of limit computing resources. In this paper, we propose a CPU and Intel (R) Xeon Phi Many Integrated Core (MIC) collaborated parallel framework to accelerate GROMACS using the offload mode on a MIC coprocessor, with which the performance of GROMACS is improved significantly, especially with the utility of Tianhe-2 supercomputer. Furthermore, we optimize GROMACS so that it can run on both the CPU and MIC at the same time. In addition, we accelerate multi-node GROMACS so that it can be used in practice. Benchmarking on real data, our accelerated GROMACS performs very well and reduces computation time significantly. Source code: https://github.com/tianhe2/gromacs-mic.
机译:分子动力学(MD)是原子和分子动力学行为的模拟。作为最流行的分子动力学软件,由于计算资源有限,GROMACS无法处理大规模数据。在本文中,我们提出了一种CPU和英特尔至强融核多核集成内核(MIC)协作的并行框架,以在MIC协处理器上使用卸载模式来加速GROMACS,从而显着提高了GROMACS的性能,尤其是借助该实用程序天河2号超级计算机。此外,我们优化了GROMACS,使其可以同时在CPU和MIC上运行。此外,我们还加速了多节点GROMACS,使其可以在实践中使用。以实际数据为基准,我们的加速GROMACS性能非常好,并显着减少了计算时间。源代码:https://github.com/tianhe2/gromacs-mic。

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