矢量计算机中具有数据位置的多线程提取

J. Sheu, Chih-Yung Chang
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引用次数: 0

摘要

本文提出了一种源到源的编译策略,将向量化循环程序划分为多线程执行形式。每个分区线程由在向量寄存器中具有位置的语句实例组成。多线程方案提供了循环展开、语句实例重新排序、索引移动、向量寄存器重用利用和多线程的新颖组合。实验结果表明,我们的多线程方案帮助凸C38系列矢量编译器减少了内存访问次数和cpu之间的同步次数,通常可以获得更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extracting multi-thread with data localities for vector computers
In this paper, we propose a source-to-source compilation strategy to partition vectorized loop programs into multithread execution form. Each partitioned thread consists of instances of statements with localities in vector registers. The multi-threading scheme gives a novel combination of loop unrolling, statement instances reordering, index shifting, vector register reuse exploiting, and multi-threading. Experimental results show that our multithreading scheme assists vector compiler of Convex C38 series to reduce the number of memory accesses and the number of synchronizations among CPUs and usually obtains a better performance.
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