Trace Compaction using SAT-based Reachability Analysis

Sean Safarpour, A. Veneris, Hratch Mangassarian
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引用次数: 16

Abstract

In today's designs, when functional verification fails, engineers perform debugging using the provided error traces. Reducing the length of error traces can help the debugging task by decreasing the number of variables and clock cycles that must be considered. We propose a novel trace length compaction approach based on SAT-based reachability analysis. We develop procedures and algorithms using pre-image computation to efficiently traverse the state space and reduce the trace lengths. We further introduce a data structure used to store the visited states which is critical to the performance of the proposed approach. Experiments demonstrate the effectiveness of the reachability approach as approximately 75% of the traces are reduced by one or two orders of magnitudes.
使用基于sat的可达性分析的跟踪压缩
在今天的设计中,当功能验证失败时,工程师使用提供的错误跟踪执行调试。减少错误跟踪的长度可以通过减少必须考虑的变量和时钟周期的数量来帮助调试任务。我们提出了一种新的基于sat可达性分析的轨迹长度压缩方法。我们开发了使用预图像计算的程序和算法来有效地遍历状态空间并减少跟踪长度。我们进一步介绍了一种用于存储访问状态的数据结构,这对所提出的方法的性能至关重要。实验证明了可达性方法的有效性,约75%的迹线被降低了一到两个数量级。
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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