Deeper Bound in BMC by Combining Constant Propagation and Abstraction

R. Armoni, L. Fix, Ranan Fraer, T. Heyman, Moshe Y. Vardi, Y. Vizel, Yael Zbar
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引用次数: 5

Abstract

The most successful technologies for automatic verification of large industrial circuits are bounded model checking, abstraction, and iterative refinement. Previous work has demonstrated the ability to verify circuits with thousands of state elements achieving bounds of at most a couple of hundreds. In this paper we present several novel techniques for abstraction-based bounded model checking. Specifically, we introduce a constant-propagation technique to simplify the formulas submitted to the CNF SAT solver; we present a new proof-based iterative abstraction technique for bounded model checking; and we show how the two techniques can be combined. The experimental results demonstrate our ability to handle circuit with several thousands state elements reaching bounds nearing 1,000.
结合常量传播和抽象的BMC深度界
对于大型工业电路的自动验证,最成功的技术是有界模型检查、抽象和迭代细化。以前的工作已经证明了验证具有数千个状态元素的电路的能力,达到最多几百个边界。本文提出了几种基于抽象的有界模型检验的新技术。具体来说,我们引入了常数传播技术来简化提交给CNF SAT求解器的公式;提出了一种新的基于证明的有界模型检验迭代抽象技术;我们将展示如何将这两种技术结合起来。实验结果表明,我们有能力处理具有数千个状态元的电路,达到接近1000的边界。
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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