Publication | Closed Access
A flexible formal verification framework for industrial scale validation
45
Citations
14
References
2011
Year
Unknown Venue
Industrial Scale ValidationEngineeringHardware Verification LanguageIndustrial EngineeringVerificationComputer ArchitectureComputer-aided VerificationSoftware EngineeringModel VerificationSoftware AnalysisFormal VerificationReliability EngineeringMechanical VerificationFormal Verification MethodsSystems EngineeringSoftware ValidationComputer EngineeringComputer ScienceSoftware VerificationFormal Verification FrameworkProgram AnalysisSoftware TestingFormal MethodsIndustrial InformaticsFunctional Verification
In recent years, leading microprocessor companies have made huge investments to improve the reliability of their products. Besides expanding their validation and CAD tools teams, they have incorporated formal verification methods into their design flows. Formal verification (FV) engineers require extensive training, and FV tools from CAD vendors are expensive. At first glance, it may seem that FV teams are not affordable by smaller companies. We have not found this to be true. This paper describes the formal verification framework we have built on top of publicly-available tools. This framework gives us the flexibility to work on myriad different problems that occur in microprocessor design.
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