首页> 外文会议>International Conference on Computer Aided Verification(CAV 2006); 20060817-20; Seattle,WA(US) >Automatic Refinement and Vacuity Detection for Symbolic Trajectory Evaluation
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Automatic Refinement and Vacuity Detection for Symbolic Trajectory Evaluation

机译:自动精炼和真空度检测,用于符号轨迹评估

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Symbolic Trajectory Evaluation (STE) is a powerful technique for model checking. It is based on 3-valued symbolic simulation, using 0,1 and X ("unknown"). The X value is used to abstract away parts of the circuit. The abstraction is derived from the user's specification. Currently the process of abstraction and refinement in STE is performed manually. This paper presents an automatic refinement technique for STE. The technique is based on a clever selection of constraints that are added to the specification so that on the one hand the semantics of the original specification is preserved, and on the other hand, the part of the state space in which the "unknown" result is received is significantly decreased or totally eliminated. In addition, this paper raises the problem of vacuity of passed and failed specifications. This problem was never discussed in the framework of STE. We describe when an STE specification may vacuously pass or fail, and propose a method for vacuity detection in STE.
机译:符号轨迹评估(STE)是一种强大的模型检查技术。它基于使用0,1和X(“未知”)的三值符号模拟。 X值用于提取电路的各个部分。抽象是根据用户的规范得出的。当前,STE中的抽象和优化过程是手动执行的。本文提出了一种用于STE的自动细化技术。该技术基于对规范添加的约束的明智选择,因此,一方面保留了原始规范的语义,另一方面,保留了状态空间中“未知”结果的一部分收到的钱明显减少或完全消除。另外,本文提出了通过和未通过规范的空缺问题。在STE的框架中从未讨论过此问题。我们描述了STE规范何时可能虚空地通过或失败,并提出了STE中的空位检测方法。

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