任务树执行器:并行遗留软件的新运行时

M. Popovic, I. Basicevic, Vladislav Vrtunski
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引用次数: 13

摘要

在基于计算机的系统工程领域,建立一个非常大规模的分布式系统,如配电系统,一直被认为是一项要求很高的任务。如今这样的系统正在使用相当复杂的数学计算来管理数以千万计的输入变量。传统上,这些计算是在顺序软件中实现的,例如在FORTRAN中。在当前情况下,当处理器面临众所周知的频率墙时,研究界开始探索现代对称多处理器和多核带来的新技术机遇。在构建现代超大规模系统时,最具挑战性的任务之一是遗留软件的并行化。本文通过提出一种对遗留顺序软件进行并行化的原始方法,对该领域的整体研究做出了贡献。本文介绍了基于数据切片的并行化概念,并构造了相应的任务树。然后,我们提出了称为任务树执行器的新运行时引擎。最后,我们给出了基于双核对称多处理器的一系列实验的性能评估结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Task Tree Executor: New Runtime for Parallelized Legacy Software
Building a very large-scale distributed system, such as a power distribution system, was always regarded as a highly demanding undertaking in the area of engineering of computer based systems. Such systems nowadays are managing tens of millions of input variables using rather complex mathematical calculations. Traditionally, these calculations are implemented as sequential software, e.g. in FORTRAN. Under the current circumstances, when the processors are facing the well-known frequency wall, the research community started exploring new technology opportunities brought by the modern symmetric multiprocessors and multicores. One of the most challenging tasks in building modern very large-scale systems is the parallelization of legacy software. This paper contributes to the overall research effort in the area by proposing an original approach to parallelization of legacy sequential software. In the paper we introduce the concept of parallelization based on data slicing and construction of the corresponding task tree. Then we present the new runtime engine referred to as the task tree executor. Finally, we present the results of the performance evaluation based on a series of experiments made on the dual-core symmetric multiprocessor.
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