Weakly acyclic diagrams: A data structure for infinite-state symbolic verification

November 26, 2024 ยท The Ethereal ยท ๐Ÿ› International Conference on Tools and Algorithms for Construction and Analysis of Systems

๐Ÿ”ฎ THE ETHEREAL: The Ethereal
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Authors Michael Blondin, Michaรซl Cadilhac, Xin-Yi Cui, Philipp Czerner, Javier Esparza, Jakob Schulz arXiv ID 2411.17250 Category cs.LO: Logic in CS Cross-listed cs.DS Citations 1 Venue International Conference on Tools and Algorithms for Construction and Analysis of Systems Last Checked 5 months ago
Abstract
Ordered binary decision diagrams (OBDDs) are a fundamental data structure for the manipulation of Boolean functions, with strong applications to finite-state symbolic model checking. OBDDs allow for efficient algorithms using top-down dynamic programming. From an automata-theoretic perspective, OBDDs essentially are minimal deterministic finite automata recognizing languages whose words have a fixed length (the arity of the Boolean function). We introduce weakly acyclic diagrams (WADs), a generalization of OBDDs that maintains their algorithmic advantages, but can also represent infinite languages. We develop the theory of WADs and show that they can be used for symbolic model checking of various models of infinite-state systems.
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