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Performance of Scientific Simulations on QCT Developer Cloud: A Case Study of Molecular Dynamic and Quantum Chemistry Simulations

机译:QCT开发商云科学模拟的性能:分子动力学和量子化学模拟的案例研究

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We present direct performance measurements for four popular scientific simulations on the Knights Landing (KNL) platform. Performance numbers for Broadwell processors are provided for contrast. The applications (NAMD, LAMMPS, GROMACS and CP2K) were selected from among the ten most used in the QCT developer cloud as well as best representative of workloads used by many users and, given their diversity, should be representative of typical high performance computing workloads. All runs were performed with publicly available codes without modification and so results should be expected to improve as developers gain access to Knights Landing (KNL) processor. Current results are promising, with execution on a single KNL processor showing speedups up to 1.5x with respect to a dual socket Broadwell.
机译:我们对骑士着陆(KNL)平台进行了四个普遍的科学模拟的直接性能测量。为Broadwell处理器提供了对比度的性能编号。从QCT开发人员云中使用的十个中使用的申请(NAMD,LAMMPS,Gromacs和CP2K)以及许多用户使用的工作负载的最佳代表,并且鉴于它们的多样性,应代表典型的高性能计算工作负载。所有运行都是通过未经修改的公开可用的代码进行,因此应该预期结果,因为开发人员进入骑士登陆(KNL)处理器时,应该提高结果。目前的结果是有前途的,在单个KNL处理器上执行,显示出在双插座Broadwell的加速高达1.5倍。

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