Arrow Research search
Back to Highlights

Highlights 2020

Parametrized Universality Problems for One-Counter Nets

Conference Abstract Session 14B: PETRI Logic in Computer Science · Theoretical Computer Science

Abstract

We study the language universality problem for One-Counter Nets, also known as 1-dimensional Vector Addition Systems with States (1-VASS), parameterized either with an initial counter value, or with an upper bound on the allowed counter value during runs. The language accepted by an OCN (defined by reaching a final control state) is monotone in both parameters. This yields two natural decision problems: 1. does there exist an initial counter value that makes the language universal? 2. does there exist a sufficiently high ceiling so that the bounded language is universal? Although the ordinary universality problem is decidable (and Ackermann-complete) and these parameterized variants seem to reduce to checking basic structural properties of the underlying automaton, we show that in fact both problems are undecidable. We also look into the complexities of the problems for several decidable subclasses, namely for unambiguous, and deterministic systems, and for those over a single-letter alphabet. This is joint work with Shaull Almagor, Udi Boker, and Piotr Hofman. The paper will be presented at CONCUR’20 and a full version is available on the arXiv: https: //arxiv. org/abs/2005. 03435.

Authors

Keywords

No keywords are indexed for this paper.

Context

Venue
Highlights of Logic, Games and Automata
Archive span
2013-2025
Indexed papers
1236
Paper id
1043722428704078257
v2026.09.13