使用模板元编程的静态循环并行化决策

Alexis Pereda, D. Hill, C. Mazel, Bruno Bachelet
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引用次数: 0

摘要

本文建议使用c++模板元编程技术在编译时决定循环中代码序列的哪些部分可以并行化。该方法侧重于描述在循环中访问变量的方式(读或写);首先决定如何分割循环,以便对每个部分进行并行化分析;然后决定每个循环中的迭代是否独立,以便它们可以并行运行。首先解释使循环并行化的条件,以证明所提出的决策算法的正确性。然后;提出了一种基于c++库的解决方案,使用表达式模板获取循环并行化决策所需的相关信息;以及元程序来决定是否并行化循环并生成并行代码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Static Loop Parallelization Decision Using Template Metaprogramming
This article proposes to use C++ template metaprogramming techniques to decide at compile-time which parts of a code sequence in a loop can be parallelized. The approach focuses on characterizing the way a variable is accessed in a loop (reading or writing); first to decide how the loop should be split to enable the analysis for parallelization on each part; and then to decide if the iterations inside each loop are independent so that they can be run in parallel. The conditions that enable the parallelization of a loop are first explained to justify the proposed decision algorithm exposed. Then; a C++ library-based solution is presented that uses expression templates to get the relevant information necessary for the parallelization decision of a loop; and metaprograms to decide whether to parallelize the loop and generate a parallel code.
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