Complete Symbolic Simulation of SystemC Models
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Complete Symbolic Simulation of SystemC Models

Efficient Formal Verification of Finite Non-Terminating Programs
 eBook
Sofort lieferbar | Lieferzeit: Sofort lieferbar I
ISBN-13:
9783658126803
Veröffentl:
2016
Einband:
eBook
Seiten:
162
Autor:
Vladimir Herdt
Serie:
BestMasters
eBook Typ:
PDF
eBook Format:
Reflowable eBook
Kopierschutz:
Digital Watermark [Social-DRM]
Sprache:
Englisch
Beschreibung:

In hismaster thesis, Vladimir Herdt presents a novel approach, called completesymbolic simulation, for a more efficient verification ofmuch larger (non-terminating) SystemC programs. Theapproach combines symbolic simulation with stateful model checking and allowsto verify safety properties in (cyclic) finite state spaces, by exhaustiveexploration of all possible inputs and process schedulings. The state explosionproblem is alleviated by integrating two complementary reduction techniques. Comparedto existing approaches, the complete symbolic simulation works more efficiently,and therefore can provide correctness proofs for larger systems, which is oneof the most challenging tasks, due to the ever increasing complexity.

In his master thesis, Vladimir Herdt presents a novel approach, called complete symbolic simulation, for a more efficient verification of much larger (non-terminating) SystemC programs. The approach combines symbolic simulation with stateful model checking and allows to verify safety properties in (cyclic) finite state spaces, by exhaustive exploration of all possible inputs and process schedulings. The state explosion problem is alleviated by integrating two complementary reduction techniques. Compared to existing approaches, the complete symbolic simulation works more efficiently, and therefore can provide correctness proofs for larger systems, which is one of the most challenging tasks, due to the ever increasing complexity.

Verification of Systems .- Introduction to Formal Verification of SystemC Models.- Symbolic Model Checking with Partial Order Reduction.- Efficient Symbolic State Matching using State Subsumption.- Heuristic Approaches for Symbolic State Matching.- Evaluation of Proposed Techniques.

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