Publication | Closed Access
Monitoring programs using rewriting
200
Citations
21
References
2005
Year
Unknown Venue
Software MaintenanceProgram CheckingEngineeringVerificationRewriting AlgorithmSoftware EngineeringSoftware AnalysisFormal VerificationFormal TechniqueLtl FormulaeProgram Process MonitoringFormal SpecificationRuntime VerificationComputer ScienceStatic Program AnalysisSoftware DesignProgram AnalysisAutomated ReasoningSoftware TestingProcess ControlFormal MethodsLtl FormulaSymbolic ExecutionSystem Software
We present a rewriting algorithm for efficiently testing future time Linear Temporal Logic (LTL) formulae on finite execution traces. The standard models of LTL are infinite traces, reflecting the behavior of reactive and concurrent systems which conceptually may be continuously alive. In most past applications of LTL, theorem provers and model checkers have been used to formally prove that down-scaled models satisfy such LTL specifications. Our goal is instead to use LTL for up-scaled testing of real software applications, corresponding to analyzing the conformance of finite traces against LTL formulae. We first describe what it means for a finite trace to satisfy an LTL formula and then suggest an optimized algorithm based on transforming LTL formulae. We use the Maude rewriting logic, which turns out to be a good notation and being supported by an efficient rewriting engine for performing these experiments. The work constitutes part of the Java PathExplorer (JPAX) project, the purpose of which is to develop a flexible tool for monitoring Java program executions.
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