模型集成并行应用综合

A. Lodeczi
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引用次数: 2

摘要

基于Texas Instruments TMS320C40或Analog Devices ADSP21060等处理器的并行计算机架构具有高性能和I/O带宽,灵活的拓扑结构和低成本的特点,使其成为嵌入式并行信号处理和仪器应用的理想选择。然而,由于大规模并行应用的复杂性和硬件拓扑结构的灵活性,这种系统的软件难以用传统的软件工程方法进行管理。本文讨论了在该领域采用模型集成编程环境——多图体系结构(Multigraph Architecture, MGA)。通过使用MGA,从高级系统模型自动合成并行应用程序,并将其分配给可用的处理器网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-integrated parallel application synthesis
Parallel computer architectures based on such processors as the Texas Instruments TMS320C40, or the Analog Devices ADSP21060, are characterized by high performance and I/O bandwidth, flexible topology and low cost making them ideal for embedded parallel signal processing and instrumentation applications. However, the software of such systems is difficult to manage by conventional software engineering methods because of the complexity of the large-scale parallel application and the flexibility of the hardware topology. This paper discusses the adoption of a model-integrated programming environment, the Multigraph Architecture (MGA), to this domain. By using the MGA, the parallel application is automatically synthesized from high-level system models and assigned to the available network of processors.
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