A novel formal approach to generate high-level test vectors without ILP and SAT solvers

B. Alizadeh, M. Fujita
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引用次数: 6

Abstract

This paper proposes a novel formal method to generate functional test vectors using a hybrid Boolean-word canonical representation called Linear Taylor Expansion Diagram (LTED) [1] rather than utilizing SAT or ILP solvers. Our approach differs from other methods since it not only uses a canonical hybrid representation, but also generates behavioral test patterns from faulty behavior instead of checking the equivalence between the fault-free and faulty designs. After representing the faulty behavior in LTED, based on a beneficial property of this canonical representation, we will be able to distinguish the fault-free portion of the faulty design. Furthermore, it is possible to determine conditions caused the related faults are propagated to at least one of primary outputs. In order to evaluate the performance of the proposed method, it is run on some large industrial designs and experimental results are compared with those of Hybrid SAT (HSAT) approach [2].
一种新的形式化方法来生成高级测试向量,而不需要ILP和SAT求解器
本文提出了一种新的形式化方法,使用称为线性泰勒展开图(LTED)[1]的混合布尔词规范化表示来生成功能测试向量,而不是使用SAT或ILP求解器。我们的方法不同于其他方法,因为它不仅使用了规范的混合表示,而且还从错误行为中生成行为测试模式,而不是检查无故障和有故障设计之间的等效性。在ltd中表示故障行为之后,基于这种规范表示的有利性质,我们将能够区分故障设计的无故障部分。此外,还可以确定导致相关故障传播到至少一个主输出的条件。为了评估该方法的性能,在一些大型工业设计中运行了该方法,并将实验结果与混合SAT (HSAT)方法的实验结果进行了比较[2]。
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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