异构计算的编译器和运行时

Joshua S. Auerbach, D. F. Bacon, Ioana Baldini, P. Cheng, Stephen J. Fink, R. Rabbah, Sunil Shukla
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引用次数: 68

摘要

异构系统通过将传统架构的优势与图形处理器(gpu)和可重构硬件(fpga)形式的专用加速器相结合,在提取高性能方面表现出了很大的希望。提取这种性能通常需要使用不同的语言和模型进行编程,这使得程序员很难在应用程序的所有方面都做得很好。此外,对协同执行的关注相对较少——使用多个不同的计算元素无缝地协同工作来编排程序执行的问题。我们介绍了Liquid Metal,这是一种名为Lime的新编程语言的综合编译器和运行时系统。我们的工作能够使用单一语言对异构计算平台进行编程,并在cpu和包括gpu和fpga在内的加速器上无缝地协同执行生成的程序。我们已经开发了许多Lime应用程序,并成功编译了其中一些应用程序,以便在各种支持GPU和FPGA的架构上协同执行。到目前为止,我们的经验使我们相信Liquid Metal方法是有前途的,并且可以使主流程序员更容易地访问异构体系结构的计算能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A compiler and runtime for heterogeneous computing
Heterogeneous systems show a lot of promise for extracting highperformance by combining the benefits of conventional architectures with specialized accelerators in the form of graphics processors (GPUs) and reconfigurable hardware (FPGAs). Extracting this performance often entails programming in disparate languages and models, making it hard for a programmer to work equally well on all aspects of an application. Further, relatively little attention is paid to co-execution - the problem of orchestrating program execution using multiple distinct computational elements that work seamlessly together. We present Liquid Metal, a comprehensive compiler and runtime system for a new programming language called Lime. Our work enables the use of a single language for programming heterogeneous computing platforms, and the seamless co-execution of the resultant programs on CPUs and accelerators that include GPUs and FPGAs. We have developed a number of Lime applications, and successfully compiled some of these for co-execution on various GPU and FPGA enabled architectures. Our experience so far leads us to believe the Liquid Metal approach is promising and can make the computational power of heterogeneous architectures more easily accessible to mainstream programmers.
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