在嵌入式多核加速器上部署OpenMP

S. Agathos, V. Dimakopoulos, Aggelos Mourelis, Alexandros Papadogiannakis
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引用次数: 20

摘要

多处理器片上系统(MPSoC)现在以专用或通用加速器的形式被认为是嵌入式系统和高性能计算领域的一流公民。这类系统的编程模型目前是一个热门的研究课题,通常需要程序员对底层硬件体系结构有深入的了解。在本文中,我们提出了在STHORM加速器上实现最直观和最高效的编程模型之一OpenMP。这个特殊的平台提供了OpenMP所需的共享内存基板。我们设计的一个创新特点是在主机端和fabric端以无缝的方式部署OpenMP模型,这为程序员提供了一个简单而有效的接口,用于在MPSoC上卸载和执行OpenMP内核。优化后的运行时环境提供了完整的OpenMP支持,尽管其占用空间很小(对于16核集群小于10KB),并且可以在计算密集型应用程序中维持接近理想的加速。考虑到有限的可用资源,我们详细介绍了我们所面临的设计问题及其解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deploying OpenMP on an embedded multicore accelerator
Multiprocessor systems-on-chip (MPSoC) are now considered first-class citizens both in the embedded systems and in the high-performance computing arenas, in the form of specialized or general-purpose accelerators. Programming models for such systems is currently a hot research topic, and as a general rule require deep programmer knowledge of the underlying hardware architecture. In this paper we present the implementation of OpenMP, one of the most intuitive and productive programming models, on the STHORM accelerator. This particular platform provides a shared-memory substrate which OpenMP requires. An innovative feature of our design is the deployment of the OpenMP model both at the host and the fabric sides, in a seamless way, which provides the programmer with a simple but effective interface for offloading and executing OpenMP kernels on the MPSoC. The optimized runtime environment provides full OpenMP support despite its small footprint (less than 10KB for a 16-core cluster) and can sustain close-to-ideal speedups in computationally intensive applications. We detail on design issues we faced along with their solutions, given the limited available resources.
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