sweap: Reactive Synthesis forĀ Infinite-State Integer Problems
Paper in proceeding, 2026

Recent years have seen a significant increase in the interest in reactive synthesis from specifications that relate to infinite state spaces. We present sweap, a tool for synthesis of infinite-state Linear Integer Arithmetic reactive systems. sweap implements a CEGAR approach, relying on state-of-the-art finite-state synthesis tools as black boxes to solve abstract synthesis problems. sweap supports most common input formalisms for infinite-state reactive-synthesis problems: Temporal Stream Logic Modulo Theories, Reactive Program Games, the bespoke input of the Issy tool, and our own bespoke input. We present a mature version of sweap with novel features: a dual abstraction approach that improves its capabilities in proving unrealisability, support for nondeterministic and unbounded updates, more general initialization of variables, and equirealisable reductions for optimisation. Experimental evaluation shows that sweap outperforms its only competitor in this domain.

Reactive Synthesis

Infinite-State Systems

CEGAR

Author

Shaun Azzopardi

Dedaub

Luca Di Stefano

Vienna University of Technology

N. Piterman

University of Gothenburg

Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)

03029743 (ISSN) 16113349 (eISSN)

Vol. 16682 LNCS 340-353
9783032325181 (ISBN)

38th International Conference on Computer Aided Verification, CAV 2026
Lisbon, Portugal,

Subject Categories (SSIF 2025)

Computer Sciences

DOI

10.1007/978-3-032-32519-8_18

More information

Latest update

8/18/2026