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On the impact of fault list partitioning in parallel implementations for dynamic test compaction considering multicore systems

机译:考虑多核系统的并行测试中故障列表分区对动态测试压缩的影响

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Modern multicore systems have multiplied the processing power of computing systems, increasing the potential of solving difficult EDA problems. At the same time, careful decomposition of the problem should be made in order to explore the parallelism without compromising the quality of the result with respect to the existing non-parallel solutions. Test set compaction is one of the major EDA problems that is NP-hard and a crucial component of any ATPG methodology. This paper presents a study on the effect of fault list partitioning on a dynamic test set compaction algorithm that has shown to give very good results when considering the entire fault list. The serial algorithm is executed in different subsets of the considered fault list and the obtained results are evaluated in terms of the compaction achieved as well as the execution time. The experimental results demonstrate that the partitioning technique used highly affects the compaction quality while the execution time is significantly reduced.
机译:现代多核系统使计算系统的处理能力成倍增加,从而增加了解决困难的EDA问题的潜力。同时,应该对问题进行仔细的分解,以探索并行性,同时又不损害现有非并行解决方案的结果质量。测试集压缩是NP难解决的主要EDA问题之一,并且是任何ATPG方法学的关键组成部分。本文介绍了故障列表划分对动态测试集压缩算法的影响的研究,当考虑整个故障列表时,该算法已显示出很好的结果。在考虑的故障列表的不同子集中执行串行算法,并根据压缩程度和执行时间评估获得的结果。实验结果表明,所使用的分区技术对压实质量有很大影响,而执行时间却大大减少。

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