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Methods to Load Balance a GCR Pressure Solver Using a Stencil Framework on Multi- and Many-Core Architectures

机译:在多核和多核体系结构上使用模板框架对GCR压力求解器进行负载平衡的方法

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摘要

The recent advent of novel multi- and many-core architectures forces application programmers to deal with hardware-specific implementation details and to be familiar with software optimisation techniques to benefit from new high-performance computing machines. Extra care must be taken for communication-intensive algorithms, which may be a bottleneck for forthcoming era of exascale computing. This paper aims to present a high-level stencil framework implemented for the EULerian or LAGrangian model (EULAG) that efficiently utilisesmulti- and many-cores architectures. Only an efficient usage of both many-core processors (CPUs) and graphics processing units (GPUs) with the flexible data decomposition method can lead to the maximum performance that scales the communication-intensive Generalized Conjugate Residual (GCR) elliptic solver with preconditioner.
机译:最近出现的新颖的多核和多核体系结构迫使应用程序程序员应对特定于硬件的实现细节,并熟悉软件优化技术,以从新型高性能计算机中受益。通信密集型算法必须格外小心,这可能是即将到来的亿亿级计算时代的瓶颈。本文旨在介绍为EULerian或LAGrangian模型(EULAG)实现的高级模板框架,该模型可有效利用多核和多核体系结构。只有通过灵活的数据分解方法有效地使用多核处理器(CPU)和图形处理单元(GPU),才能获得最大性能,从而可以通过预处理器扩展通信密集型广义共轭残差(GCR)椭圆求解器。

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  • 来源
    《Scientific programming》 |2015年第2015期|648752.1-648752.13|共13页
  • 作者单位

    Poznan Supercomp & Networking Ctr, Applicat Dept, PL-61139 Poznan, Poland|Poznan Univ Tech, PL-60965 Poznan, Poland;

    Poznan Supercomp & Networking Ctr, Applicat Dept, PL-61139 Poznan, Poland;

    Poznan Supercomp & Networking Ctr, Applicat Dept, PL-61139 Poznan, Poland;

    Poznan Supercomp & Networking Ctr, Applicat Dept, PL-61139 Poznan, Poland;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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