Cool MPSoC programming

R. Leupers, L. Thiele, Xiaoning Nie, B. Kienhuis, Matthias Weiss, T. Isshiki
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引用次数: 10

Abstract

This paper summarizes a special session on multi-core/multi-processor system-on-chip (MPSoC) programming challenges. Wireless multimedia terminals are among the key drivers for MPSoC platform evolution. Heterogeneous multi-processor architectures achieve high performance and can lead to a significant reduction in energy consumption for this class of applications. However, just designing energy efficient hardware is not enough. Programming models and tools for efficient MPSoC programming are equally important to ensure optimum platform utilization. Unfortunately, this discipline is still in its infancy, which endangers the return on investment for MPSoC architecture designs. On one hand there is a need for maintaining and gradually porting a large amount of legacy code to MPSoCs. On the other hand, special C language extensions for parallel programming as well as adapted process network programming models provide a great opportunity to completely rethink the traditional sequential programming paradigm for sake of higher efficiency and productivity. MPSoC programming is more than just code parallelisation, though. Besides energy efficiency, limited and specialized processing resources, and real-time constraints also growing software complexity and mapping of simultaneous applications need to be taken into account. We analyze the programming methodology requirements for heterogeneous MPSoC platforms and outline new approaches.
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酷酷的MPSoC编程
本文总结了一个关于多核/多处理器片上系统(MPSoC)编程挑战的专题会议。无线多媒体终端是MPSoC平台发展的关键驱动力之一。异构多处理器架构可以实现高性能,并且可以显著降低这类应用程序的能耗。然而,仅仅设计节能硬件是不够的。高效MPSoC编程的编程模型和工具对于确保最佳平台利用率同样重要。不幸的是,这一学科仍处于起步阶段,这危及了MPSoC架构设计的投资回报。一方面,需要维护并逐渐将大量遗留代码移植到mpsoc中。另一方面,用于并行编程的特殊C语言扩展以及适应的过程网络编程模型提供了一个很好的机会,可以完全重新思考传统的顺序编程范式,以获得更高的效率和生产力。不过,MPSoC编程不仅仅是代码并行化。除了能源效率,有限的和专门的处理资源,以及实时限制,还需要考虑不断增长的软件复杂性和同时应用程序的映射。我们分析了异构MPSoC平台的编程方法要求,并概述了新的方法。
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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