首页> 外文期刊>The Astrophysical Journal. Supplement Series >A New Hydrodynamic Code with Explicit Vectorization Instructions Optimizations that Is Dedicated to the Numerical Simulation of Astrophysical Gas Flow. I. Numerical Method, Tests, and Model Problems
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A New Hydrodynamic Code with Explicit Vectorization Instructions Optimizations that Is Dedicated to the Numerical Simulation of Astrophysical Gas Flow. I. Numerical Method, Tests, and Model Problems

机译:一种新的流体动力学代码,具有明确的矢量化指令优化,其专用于天体物理气体流量的数值模拟。 I.数值方法,测试和模型问题

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In this paper, a new hydrodynamics code to simulate astrophysical flows on Intel Xeon Phi KNL and Intel Xeon Scalable processors is presented. A new vector high-order accuracy numerical method implemented in the form of a program code for massively parallel architectures is proposed in detail. The details of code verification are described. A detailed description is given and a parallel implementation of the code is made. The performance of 173 gigaflops and a 48-fold speedup are obtained on a single Intel Xeon Phi processor. A 97% weak scalability is reached with 16 Intel Xeon Phi 7290 processors. We also provide a short description of vector instructions that were used for code optimization. Through this optimization, we achieved 200% performance growth in comparison with the nonvectorized code.
机译:在本文中,提出了一种新的流体动力学代码,用于模拟英特尔Xeon Phi KNL和英特尔Xeon可扩展处理器上的天体物理流。 详细提出了一种以用于大规模并行架构的程序代码的形式实现的新的矢量高阶精度数值方法。 描述了代码验证的细节。 给出了详细描述,并进行了对代码的并行实现。 在单个Intel Xeon Phi处理器上获得了173个Gigaflops和48倍的加速度的性能。 16英特尔Xeon Phi 7290处理器达到了97%的可扩展性。 我们还提供了用于代码优化的向量指令的简短描述。 通过这种优化,我们与非传输代码相比,实现了200%的性能增长。

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