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首页> 外文期刊>Journal of VLSI signal processing systems >Topological Patterns for Scalable Representation and Analysis of Dataflow Graphs
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Topological Patterns for Scalable Representation and Analysis of Dataflow Graphs

机译:用于数据流图的可扩展表示和分析的拓扑模式

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摘要

Tools for designing signal processing systems with their semantic foundation in dataflow modeling often use high-level graphical user interfaces (GUIs) or text based languages that allow specifying applications as directed graphs. Such graphical representations serve as an initial reference point for further analysis and optimizations that lead to platform-specific implementations. For large-scale applications, the underlying graphs often consist of smaller substructures that repeat multiple times. To enable more concise representation and direct analysis of such substructures in the context of high level DSP specification languages and design tools, we develop the modeling concept of topological patterns, and propose ways for supporting this concept in a high-level language. We augment the dataflow interchange format (DIF) language—a language for specifying DSP-oriented dataflow graphs—with constructs for supporting topological patterns, and we show how topological patterns can be effective in various aspects of embedded signal processing design flows using specific application examples.
机译:在数据流建模中使用语义基础设计信号处理系统的工具通常使用高级图形用户界面(GUI)或基于文本的语言,这些语言允许将应用程序指定为有向图。这样的图形表示用作进一步分析和优化的初始参考点,这些分析和优化导致特定于平台的实现。对于大规模应用,基础图通常由重复多次的较小子结构组成。为了在高级DSP规范语言和设计工具的上下文中实现这种子结构的更简洁表示和直接分析,我们开发了拓扑模式的建模概念,并提出了在高级语言中支持该概念的方法。我们使用支持拓扑模式的结构扩展了数据流交换格式(DIF)语言(一种用于指定面向DSP的数据流图的语言),并使用特定的应用示例展示了拓扑模式如何在嵌入式信号处理设计流程的各个方面有效。 。

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