A dynamic scheduling framework for emerging heterogeneous systems

Vignesh T. Ravi, G. Agrawal
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引用次数: 41

Abstract

A trend that has materialized, and has given rise to much attention, is of the increasingly heterogeneous computing platforms. Recently, it has become very common for a desktop or a notebook computer to be equipped with both a multi-core CPU and a GPU. Application development for exploiting the aggregate computing power of such an environment is a major challenge today. Particularly, we need dynamic work distribution schemes that are adaptable to different computation and communication patterns in applications, and to various heterogeneous configurations. This paper describes a general dynamic scheduling framework for mapping applications with different communication patterns to heterogeneous architectures. We first make key observations about the architectural tradeoffs among heterogeneous resources and the communication pattern of an application, and then infer constraints for the dynamic scheduler. We then present a novel cost model for choosing the optimal chunk size in a heterogeneous configuration. Finally, based on general framework and cost model we provide optimized work distribution schemes to further improve the performance.
新兴异构系统的动态调度框架
越来越多的异构计算平台已经成为现实,并引起了广泛关注。最近,台式机或笔记本电脑同时配备多核CPU和GPU已经变得非常普遍。利用这种环境的综合计算能力的应用程序开发是当今的主要挑战。特别是,我们需要动态的工作分配方案,以适应应用程序中不同的计算和通信模式,以及各种异构配置。本文描述了一个通用的动态调度框架,用于将具有不同通信模式的应用程序映射到异构体系结构。我们首先对异构资源和应用程序通信模式之间的体系结构权衡进行关键观察,然后推断动态调度器的约束。然后,我们提出了一种新的成本模型,用于在异构配置中选择最佳块大小。最后,在总体框架和成本模型的基础上,提出了优化的工作分配方案,进一步提高了性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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