Predicate Diagrams for the Verification of Real-Time Systems
Author(s) -
Eun-Young Kang,
Stephan Merz
Publication year - 2006
Publication title -
electronic notes in theoretical computer science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.242
H-Index - 60
ISSN - 1571-0661
DOI - 10.1016/j.entcs.2005.10.010
Subject(s) - computer science , predicate abstraction , predicate (mathematical logic) , correctness , theoretical computer science , programming language , predicate variable , automaton , model checking , mutual exclusion , formalism (music) , syntactic predicate , algorithm , description logic , art , musical , zeroth order logic , parsing , multimodal logic , visual arts
We propose a format of predicate diagrams for the verification of real-time systems. We consider systems that are defined as extended timed graphs, a format that combines timed automata and constructs for modeling data, possibly over infinite domains. Predicate diagrams are succinct and intuitive representations of Boolean abstractions. They also represent an interface between deductive tools used to establish the correctness of an abstraction, and model checking tools that can verify behavioral properties of finite-state models. The contribution of this paper is to extend the format of predicate diagrams to timed systems. We also establish a set of verification conditions that are sufficient to prove that a given predicate diagram is a correct abstraction of an extended timed graph. The formalism is supported by a toolkit, and we demonstrate its use at the hand of Fischer's real-time mutual-exclusion protocol
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