A novel compilation approach for image processing graphs on a many-core platform with explicitly managed memory

Thierry Lepley, P. Paulin, E. Flamand
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引用次数: 19

Abstract

Explicitly managed memory many-cores (EMM) have been a part of the industrial landscape for the last decade. The IBM CELL processor, general-purpose graphics processing units (GP-GPU) and the STHORM embedded many-core of STMicroelectronics are representative examples. This class of architecture is expected to scale well and to deliver good performance per watt and per mm2 of silicon. As such, it is appealing for application problems with regular data access patterns. However, this moves significant complexity to the programmer who must master parallelization and data movement. High level programming tools are therefore essential in order to allow the effective programming of EMM many-cores to a wide class of programmers. This paper presents a novel approach designed for simplifying the programming of EMM many-core architectures. It initially addresses the image processing application domain and has been targeted to the STHORM platform. It takes a high-level description of the computation kernel algorithm and generates an OpenCL kernel optimized for the target architecture, while managing the parallelization and data movements across the hierarchy in a transparent fashion. The goal is to provide both high productivity and high performance without requiring parallel computing expertise from the programmer, nor the need for application code specialization for the target architecture.
一种在具有显式托管内存的多核平台上用于图像处理图形的新颖编译方法
显式管理内存多核(EMM)在过去十年中已经成为工业领域的一部分。IBM CELL处理器、通用图形处理单元(GP-GPU)和意法半导体(STMicroelectronics)的嵌入式多核STHORM就是代表性的例子。这类架构有望很好地扩展,并提供每瓦和每平方毫米硅的良好性能。因此,它适用于具有常规数据访问模式的应用程序问题。然而,这给程序员带来了巨大的复杂性,他们必须掌握并行化和数据移动。因此,高级编程工具是必不可少的,以便为广泛的程序员提供EMM多核的有效编程。本文提出了一种简化EMM多核体系结构编程的新方法。它最初针对图像处理应用领域,并针对STHORM平台。它采用计算内核算法的高级描述,并生成针对目标体系结构优化的OpenCL内核,同时以透明的方式管理层次结构中的并行化和数据移动。目标是提供高生产力和高性能,而不需要程序员的并行计算专业知识,也不需要针对目标体系结构的应用程序代码专门化。
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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