MTP: a Petri net-based framework for the analysis and transformation of SystemC designs

N. Savoiu
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引用次数: 1

Abstract

Shrinking time-to-market requires faster traversals of the design space of current complex SoC and embedded systems designs just as their complexity increases. To facilitate that designers are increasingly moving their exploration methodologies from RTL to system level. This, coupled with the need for a tighter integration between hardware and software earlier in the design cycle, has lead to emergence of mixed-level methodologies, such as SystemC, that allow for easier hardware/software codesign. In this paper, we describe a framework for the development of transformations aimed at restructuring both RTL and system-level SystemC models. We have chosen Petri nets, a well known mathematical model for concurrent systems, as our underlying formal representation. By balancing their expressive power and theoretical results transformations aimed at improving a wide range of metrics can be developed. To that effect we present the design and implementation of a semantics preserving reduction-based transformation that we have developed in previous work. Our experiments show that the resulting transformed SystemC models have indeed improved simulation performance over the original ones which often translates into designers being able to cover larger areas of the design space in the same amount of time.
MTP:用于分析和转换SystemC设计的基于Petri网的框架
缩短上市时间需要更快地遍历当前复杂SoC和嵌入式系统设计的设计空间,就像它们的复杂性增加一样。为了实现这一点,设计师们正逐渐将他们的探索方法从RTL转移到系统级别。这一点,再加上在设计周期的早期需要硬件和软件之间更紧密的集成,导致了混合级方法的出现,例如SystemC,它允许更容易的硬件/软件协同设计。在本文中,我们描述了一个旨在重构RTL和系统级SystemC模型的转换开发框架。我们选择了Petri网,一个著名的并发系统数学模型,作为我们的基础形式表示。通过平衡它们的表达能力和理论结果,可以开发旨在改善广泛度量的转换。为此,我们提出了我们在以前的工作中开发的保持语义的基于约简的转换的设计和实现。我们的实验表明,由此产生的转换后的SystemC模型确实比原始模型提高了仿真性能,这通常转化为设计师能够在相同的时间内覆盖更大的设计空间区域。
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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