Verifying whether an ω-regular property is satisfied by a finite-state system is a core problem in model checking. Standard techniques build an automaton with the complementary language, compute its product with the system, and then check for emptiness. Generalized symbolic trajectory evaluation (GSTE) has been recently proposed as an alternative approach, extending the computationally efficient symbolic trajectory evaluation (STE) to general ω-regular properties. In this paper, we show that the GSTE algorithms are essentially a partitioned version of standard symbolic model-checking (SMC) algorithms, where the partitioning is driven by the property under verification. We export this technique of property-driven partitioning to SMC and show that it typically does speed up SMC algorithms. © Springer-Verlag Berlin Heidelberg 2004.

GSTE is partitioned model checking

Sebastiani, Roberto;Tonetta, Stefano;
2004-01-01

Abstract

Verifying whether an ω-regular property is satisfied by a finite-state system is a core problem in model checking. Standard techniques build an automaton with the complementary language, compute its product with the system, and then check for emptiness. Generalized symbolic trajectory evaluation (GSTE) has been recently proposed as an alternative approach, extending the computationally efficient symbolic trajectory evaluation (STE) to general ω-regular properties. In this paper, we show that the GSTE algorithms are essentially a partitioned version of standard symbolic model-checking (SMC) algorithms, where the partitioning is driven by the property under verification. We export this technique of property-driven partitioning to SMC and show that it typically does speed up SMC algorithms. © Springer-Verlag Berlin Heidelberg 2004.
2004
Proceedings on Computer Aided Verification: 16th International Conference, CAV 2004
Heildelberg
Springer
9783540223429
Sebastiani, Roberto; E., Singerman; Tonetta, Stefano; M. Y., Vardi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/78295
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