基于时序弧的逻辑分析降噪方法

Murthy Palla, J. Bargfrede, Stephan Eggersglüß, W. Anheier, R. Drechsler
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引用次数: 4

摘要

考虑到串扰固有的逻辑和时序特性,精确计算串扰对电路的影响是一个非常复杂的问题。虽然已经得到了广泛的研究,但仍然缺乏有效的解决方案。因此,最先进的相声计算器使用过于简单和过于悲观的模型,导致对相声效果的过度估计。在相声分析中,这种悲观主义往往会引发错误的违反,从而导致设计资源的低效利用。本文的主要贡献是一种称为时序弧逻辑分析(TABLA)的新技术,它可以作为计算真实串扰边界的有效手段。TABLA使用时序弧作为基本元素,采用最小-最大时序模型,使用专用的逻辑和时序求解器进行有效的时序逻辑分析。此外,还提出了一个生成强大冲突子句的过程,以提高整体分析的运行时间。所提出的技术已经在基准电路和工业设计的工业环境中进行了测试,并提供了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Timing Arc based logic analysis for false noise reduction
The problem of calculating accurate impact of crosstalk on a circuit considering its inherent logic and timing properties is very complex. Although it has been widely studied, it still lacks an efficient solution. As a result, state-of-the-art crosstalk calculators use simplistic and overly pessimistic models resulting in the over-estimation of crosstalk effects. Such pessimism in crosstalk analysis often leads to the triggering of false violations and consequently an inefficient use of design resources. The main contribution of this paper is a novel technique called Timing Arc Based Logic Analysis (TABLA) that serves as an efficient means to calculate realistic crosstalk bounds. TABLA uses timing arcs as basic elements to perform an efficient temporal logic analysis employing the min-max timing model using dedicated solvers for logic and timing. Additionally, a procedure to generate powerful conflict clauses is proposed to improve the run time of the overall analysis. The proposed technique has been tested in an industrial environment on benchmark circuits as well as on an industrial design, and results are provided.
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CiteScore
4.60
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