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A practical approach for testing timed deterministic finite state machines with single clock

机译:一种使用单时钟测试定时确定性有限状态机的实用方法

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Finite State Machines (FSMs) are widely used for verification and testing of many reactive systems and many methods are proposed for generating tests from FSMs with the guaranteed fault coverage. However, some systems can only be properly described when time constraints are considered, advocating the adoption of models with the notion of time. In this paper, a method for deriving conformance tests with the guaranteed fault coverage from a Timed FSM (TFSM) with a single clock is presented. Test derivation is based on a given fault domain that allows the derivation of test suites with reasonable length. More precisely, the fault domain includes every possible faulty TFSM implementation with the known largest time constraints boundaries and minimal duration of time guards. Given a deterministic possibly partial TFSM specification, a complete test suite that guarantees the detection of all faulty implementations with respect to the above fault domain is derived. Experiments with randomly generated timed FSMs are conducted to determine length of obtained test suites and assess the impact of varying the TFSM specification parameters on length of obtained test suites. Further, experiments with both untimed and timed machines are conducted and these experiments show that similar patterns for timed and untimed machines are obtained with respect to varying the number of states, inputs, and outputs of machines.
机译:有限状态机(FSM)被广泛用于许多无功系统的验证和测试,并且提出了许多方法来从具有有限故障范围的FSM生成测试。但是,只有在考虑时间限制的情况下,才可以正确地描述某些系统,从而提倡采用具有时间概念的模型。本文提出了一种从具有单个时钟的定时FSM(TFSM)导出具有保证故障覆盖率的一致性测试的方法。测试推导基于给定的故障域,该域允许以合理的长度推导测试套件。更准确地说,故障域包括具有已知最大时间约束边界和最小保护时间的所有可能的故障TFSM实现。给定确定性的可能是部分TFSM规范,就可以得出一个完整的测试套件,该套件可以确保检测到与上述故障域有关的所有故障实现。使用随机生成的定时FSM进行实验,以确定获得的测试套件的长度,并评估更改TFSM规范参数对获得的测试套件的长度的影响。此外,还进行了非定时和定时机器的实验,这些实验表明,就改变机器的状态,输入和输出的数量而言,可以获得定时和非定时机器的相似模式。

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