Modeling and Verifying Uncertainty-Aware Timing Behaviors using Parametric Logical Time Constraint

Fei Gao, F. Mallet, Min Zhang, Mingsong Chen
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引用次数: 2

Abstract

The Clock Constraint Specification Language (CCSL) is a logical time based modeling language to formalize timing behaviors of real-time and embedded systems. However, it cannot capture timing behaviors that contain uncertainties, e.g., uncertainty in execution time and period. This limits the application of the language to real-world systems, as uncertainty often exists in practice due to both internal and external factors. To capture uncertainties in timing behaviors, in this paper we extend CCSL by introducing parameters into constraints. We then propose an approach to transform parametric CCSL constraints into SMT formulas for efficient verification. We apply our approach to an industrial case which is proposed as the FMTV (Formal Methods for Timing Verification) Challenge in 2015, which shows that timing behaviors with uncertainties can be effectively modeled and verified using the parametric CCSL.
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基于参数化逻辑时间约束的不确定性感知时序行为建模与验证
时钟约束规范语言(CCSL)是一种基于逻辑时间的建模语言,用于形式化实时和嵌入式系统的时序行为。然而,它不能捕获包含不确定性的计时行为,例如,执行时间和周期的不确定性。这限制了该语言在现实世界系统中的应用,因为由于内部和外部因素,不确定性在实践中经常存在。为了捕获时序行为中的不确定性,本文通过在约束中引入参数来扩展CCSL。然后,我们提出了一种将参数CCSL约束转换为SMT公式的方法,以进行有效的验证。我们将我们的方法应用于2015年提出的FMTV(时序验证的正式方法)挑战的工业案例,该案例表明,使用参数CCSL可以有效地建模和验证具有不确定性的时序行为。
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