Many of the automatic formal verification techniques choose to model a non-Boolean program variable as a bit-vector with bounded width (i.e. a vector of multiple bits like 32- or 64- bits) to achieve bit-precise verification. The major challenge of applying such formal technique to real-world embedded software is scalability. This book explores several abstraction techniques to deal with this challenge. It first proposes a tight integration of program slicing, which is an important static program analysis technique, with bounded model checking. Then it presents a new symbolic simulation for scalable formal verification. This simulation involves using distinguishing Xs as symbolic values to abstract concrete variables' values. It also defines two testability metrics - controllability and observability - as the high-level structural guidance to improve efficiency of the proof-based abstraction refinement framework. This book finally proposes a novel algorithm to discover path-oriented non-uniform encoding widths of individual variables, which may be smaller than their original modeling width but large enough for formal verification.
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Many of the automatic formal verification techniques choose to model a non-Boolean program variable as a bit-vector with bounded width (i.e. a vector of multiple bits like 32- or 64- bits) to achieve bit-precise verification. The major challenge of applying such formal technique to real-world embedded software is scalability. This book explores several abstraction techniques to deal with this challenge. It first proposes a tight integration of program slicing, which is an important static program analysis technique, with bounded model checking. Then it presents a new symbolic simulation for scalable formal verification. This simulation involves using distinguishing Xs as symbolic values to abstract concrete variables' values. It also defines two testability metrics - controllability and observability - as the high-level structural guidance to improve efficiency of the proof-based abstraction refinement framework. This book finally proposes a novel algorithm to discover path-oriented non-uniform encoding widths of individual variables, which may be smaller than their original modeling width but large enough for formal verification.
Dr. Nannan He is an assistant professor in the Department of ECET at Minnesota State University, US. She received her PhD in Computer Engineering from Virginia Tech,US(2009),and did post-doctoral research in the Computer Science Department at Oxford University, UK. Her research interests include software formal verification and model-based design.
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Librería: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Alemania
Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Many of the automatic formal verification techniques choose to model a non-Boolean program variable as a bit-vector with bounded width (i.e. a vector of multiple bits like 32- or 64- bits) to achieve bit-precise verification. The major challenge of applying such formal technique to real-world embedded software is scalability. This book explores several abstraction techniques to deal with this challenge. It first proposes a tight integration of program slicing, which is an important static program analysis technique, with bounded model checking. Then it presents a new symbolic simulation for scalable formal verification. This simulation involves using distinguishing Xs as symbolic values to abstract concrete variables' values. It also defines two testability metrics - controllability and observability - as the high-level structural guidance to improve efficiency of the proof-based abstraction refinement framework. This book finally proposes a novel algorithm to discover path-oriented non-uniform encoding widths of individual variables, which may be smaller than their original modeling width but large enough for formal verification. 212 pp. Englisch. Nº de ref. del artículo: 9783659936548
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Librería: moluna, Greven, Alemania
Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: He NannanDr. Nannan He is an assistant professor in the Department of ECET at Minnesota State University, US. She received her PhD in Computer Engineering from Virginia Tech,US(2009),and did post-doctoral research in the Computer Sci. Nº de ref. del artículo: 158877950
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Librería: Revaluation Books, Exeter, Reino Unido
Paperback. Condición: Brand New. 212 pages. 8.66x5.91x0.48 inches. In Stock. Nº de ref. del artículo: 3659936545
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Librería: buchversandmimpf2000, Emtmannsberg, BAYE, Alemania
Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Many of the automatic formal verification techniques choose to model a non-Boolean program variable as a bit-vector with bounded width (i.e. a vector of multiple bits like 32- or 64- bits) to achieve bit-precise verification. The major challenge of applying such formal technique to real-world embedded software is scalability. This book explores several abstraction techniques to deal with this challenge. It first proposes a tight integration of program slicing, which is an important static program analysis technique, with bounded model checking. Then it presents a new symbolic simulation for scalable formal verification. This simulation involves using distinguishing Xs as symbolic values to abstract concrete variables' values. It also defines two testability metrics - controllability and observability - as the high-level structural guidance to improve efficiency of the proof-based abstraction refinement framework. This book finally proposes a novel algorithm to discover path-oriented non-uniform encoding widths of individual variables, which may be smaller than their original modeling width but large enough for formal verification.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 212 pp. Englisch. Nº de ref. del artículo: 9783659936548
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Librería: AHA-BUCH GmbH, Einbeck, Alemania
Taschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Many of the automatic formal verification techniques choose to model a non-Boolean program variable as a bit-vector with bounded width (i.e. a vector of multiple bits like 32- or 64- bits) to achieve bit-precise verification. The major challenge of applying such formal technique to real-world embedded software is scalability. This book explores several abstraction techniques to deal with this challenge. It first proposes a tight integration of program slicing, which is an important static program analysis technique, with bounded model checking. Then it presents a new symbolic simulation for scalable formal verification. This simulation involves using distinguishing Xs as symbolic values to abstract concrete variables' values. It also defines two testability metrics - controllability and observability - as the high-level structural guidance to improve efficiency of the proof-based abstraction refinement framework. This book finally proposes a novel algorithm to discover path-oriented non-uniform encoding widths of individual variables, which may be smaller than their original modeling width but large enough for formal verification. Nº de ref. del artículo: 9783659936548
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Librería: preigu, Osnabrück, Alemania
Taschenbuch. Condición: Neu. Scalable Bit-precise Formal Verification of Embedded Software | Nannan He | Taschenbuch | 212 S. | Englisch | 2016 | LAP LAMBERT Academic Publishing | EAN 9783659936548 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. Nº de ref. del artículo: 102877343
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