2006•Unpublished venueRequires access

Verification of software via integration of design and implementation

Andrew S. Miner, Sriparna Basu

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Abstract

Model checking is usually applied at the design phase to verify that preliminary high-level design specifications conform to their requirements. Source code analysis, on the other hand, is used to check for correctness of implementation once it is realized from the design specifications. However, the current practice of validating a design and its implementation in isolation makes it necessary to employ rigorous testing analysis to empirically ensure that the implementation satisfies the design specification. This article describes a formal framework that allows design models to contain embedded partial implementations as components; these models are then formally analyzed to ensure that global requirements are satisfied. This framework can be utilized to incrementally develop and ensure correctness of the design and the corresponding implementation. Realization of this framework requires consolidation and expansion of traditional formal verification techniques by integration of model checking, program analysis and constraint solving

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What this paper is about

Model checking is usually applied at the design phase to verify that preliminary high-level design specifications conform to their requirements. Source code analysis, on the other hand, is used to check for correctness of implementation once it is realized from the design specifications. However, the current practice of validating a design and its implementation in isolation makes it necessary to employ rigorous testing analysis to empirically ensure that the implementation satisfies the design specification. This article describes a formal framework that allows design models to contain embedded partial implementations as components; these models are then formally analyzed to ensure that global requirements are satisfied. This framework can be utilized to incrementally develop and ensure correctness of the design and the corresponding implementation. Realization of this framework requires consolidation and expansion of traditional formal verification techniques by integration of model checking, program analysis and constraint solving

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Available abstract

Model checking is usually applied at the design phase to verify that preliminary high-level design specifications conform to their requirements. Source code analysis, on the other hand, is used to check for correctness of implementation once it is realized from the design specifications. However, the current practice of validating a design and its implementation in isolation makes it necessary to employ rigorous testing analysis to empirically ensure that the implementation satisfies the design specification. This article describes a formal framework that allows design models to contain embedded partial implementations as components; these models are then formally analyzed to ensure that global requirements are satisfied. This framework can be utilized to incrementally develop and ensure correctness of the design and the corresponding implementation. Realization of this framework requires consolidation and expansion of traditional formal verification techniques by integration of model checking, program analysis and constraint solving

Key concepts: Correctness, Computer science, Implementation, Formal methods, Formal verification, Programming language, Formal specification, Software engineering

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