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Improved Design Debugging Using Maximum Satisfiability

机译:使用最大可靠性改进设计调试

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In today''s SoC design cycles, debugging is one of the most time consuming manual tasks. CAD solutions strive to reduce the inefficiency of debugging by identifying error sources in designs automatically. Unfortunately, the capacity and performance of such automated techniques must be considerably extended for industrial applicability. This work aims to improve the performance of current state-of-the-art debugging techniques, thus making them more practical. More specifically, this work proposes a novel design debugging formulation based on maximum satisfiability (max-sat) and approximate max-sat. The developed technique can quickly discard many potential error sources in designs, thus drastically reducing the size of the problem passed to an existing debugger. The max-sat formulation is used as a pre-processing step to construct a highly optimized debugging framework. Empirical results demonstrate the effectiveness of the proposed framework as run-time improvements of orders of magnitude are consistently realized over a state-of-the-art debugger.
机译:在今天的SoC设计周期中,调试是最耗时的手动任务之一。 CAD解决方案努力通过自动识别设计中的错误来源来降低调试的效率。不幸的是,必须大大扩展了这种自动化技术的能力和性能以实现工业实用性。这项工作旨在提高当前最先进的调试技术的性能,从而使其更加实用。更具体地,这项工作提出了一种基于最大可满足性(MAX-SAT)和近似MAX-SAT的新颖设计调试制定。开发技术可以快速丢弃设计中许多潜在的误差源,从而大大降低了传递给现有调试器的问题的大小。 MAX-SAT配方用作预处理步骤,以构建高度优化的调试框架。经验结果证明了所提出的框架的有效性,随着数量数量级的运行时间改进,始终如一地实现了最先进的调试器。

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