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We consider commutative regular and context-free grammars, or, in other words, Parikh images of regular and context-free languages. By using linear algebra and a branching analog of the classic Euler theorem, we show that, under an…

Formal Languages and Automata Theory · Computer Science 2015-07-01 Eryk Kopczynski

In a \emph{separability problem}, we are given two sets $K$ and $L$ from a class $\mathcal{C}$, and we want to decide whether there exists a set $S$ from a class $\mathcal{S}$ such that $K\subseteq S$ and $S\cap L=\emptyset$. In this case,…

Formal Languages and Automata Theory · Computer Science 2025-07-02 Elias Rojas Collins , Chris Köcher , Georg Zetzsche

We consider a class of pattern matching problems where a normalising transformation is applied at every alignment. Normalised pattern matching plays a key role in fields as diverse as image processing and musical information processing…

Data Structures and Algorithms · Computer Science 2015-03-19 Ayelet Butman , Peter Clifford , Raphael Clifford , Markus Jalsenius , Noa Lewenstein , Benny Porat , Ely Porat , Benjamin Sach

Parikh automata extend automata with counters whose values can only be tested at the end of the computation, with respect to membership into a semi-linear set. Parikh automata have found several applications, for instance in transducer…

Formal Languages and Automata Theory · Computer Science 2019-07-23 Emmanuel Filiot , Shibashis Guha , Nicolas Mazzocchi

Usually, a parser for an $LR(k)$-grammar $G$ is a deterministic pushdown transducer which produces backwards the unique rightmost derivation for a given input string $x \in L(G)$. The best known upper bound for the size of such a parser is…

Formal Languages and Automata Theory · Computer Science 2015-11-19 Norbert Blum

The Parikh finite word automaton model (PA) was introduced and studied by Klaedtke and Ruess in 2003. Here, by means of related models, it is shown that the bounded languages recognized by PA are the same as those recognized by…

Formal Languages and Automata Theory · Computer Science 2011-08-19 Michaël Cadilhac , Alain Finkel , Pierre McKenzie

We prove that the Parikh map of a bounded context-free language is a box spline. Moreover we prove that in this case, such a function is rational.

Discrete Mathematics · Computer Science 2008-07-08 Flavio D'Alessandro , Benedetto Intrigila , Stefano Varricchio

Partially ordered nondeterminsitic finite automata (poNFAs) are NFAs whose transition relation induces a partial order on states, that is, for which cycles occur only in the form of self-loops on a single state. A poNFA is universal if it…

Formal Languages and Automata Theory · Computer Science 2017-11-15 Markus Krötzsch , Tomáš Masopust , Michaël Thomazo

We investigate the descriptional complexity of operations on semilinear sets. Roughly speaking, a semilinear set is the finite union of linear sets, which are built by constant and period vectors. The interesting parameters of a semilinear…

Formal Languages and Automata Theory · Computer Science 2017-08-23 Simon Beier , Markus Holzer , Martin Kutrib

The atoms of a regular language are non-empty intersections of complemented and uncomplemented quotients of the language. Tight upper bounds on the number of atoms of a language and on the quotient complexities of atoms are known. We…

Formal Languages and Automata Theory · Computer Science 2014-05-23 Janusz Brzozowski , Gareth Davies

A regular language is $k$-piecewise testable if it is a finite boolean combination of languages of the form $\Sigma^* a_1 \Sigma^* \cdots \Sigma^* a_n \Sigma^*$, where $a_i\in\Sigma$ and $0\le n \le k$. Given a DFA $A$ and $k\ge 0$, it is…

Formal Languages and Automata Theory · Computer Science 2016-09-07 Tomáš Masopust

B\"uchi's theorem states that $\omega$-regular languages are characterized as languages of the form $\bigcup_i U_i V_i^\omega$, where $U_i$ and $V_i$ are regular languages. Parikh automata are automata on finite words whose transitions are…

Formal Languages and Automata Theory · Computer Science 2023-02-09 Mario Grobler , Sebastian Siebertz

The Parikh finite word automaton (PA) was introduced and studied by Klaedtke and Ruess in 2003. Natural variants of the PA arise from viewing a PA equivalently as an automaton that keeps a count of its transitions and semilinearly…

Formal Languages and Automata Theory · Computer Science 2011-07-05 Michaël Cadilhac , Alain Finkel , Pierre McKenzie

We study connectivity functions, that is, integer-valued symmetric submodular functions on a finite ground set attaining $0$ on the empty set. For a connectivity function $f$ on an $n$-element set $V$ and an integer $k\ge 0$, we show that…

Combinatorics · Mathematics 2026-03-24 Sang-il Oum , Marek Sokołowski

Given a partially-ordered finite alphabet $\Sigma$ and a language $L\subseteq \Sigma^*$, how large can an antichain in $L$ be (where $L$ is given the lexicographic ordering)? More precisely, since $L$ will in general be infinite, we should…

Formal Languages and Automata Theory · Computer Science 2019-12-10 David Mestel

It is proved that every regular expression of alphabetic width $n$, that is, with $n$ occurrences of symbols of the alphabet, can be transformed into a deterministic finite automaton (DFA) with $2^{\frac{n}{2}+(\frac{\log_2…

Formal Languages and Automata Theory · Computer Science 2025-04-30 Olga Martynova , Alexander Okhotin

Certain upper triangular matrices, termed as Parikh matrices, are often used in the combinatorial study of words. Given a word, the Parikh matrix of that word elegantly computes the number of occurrences of certain predefined subwords in…

Combinatorics · Mathematics 2018-08-14 Adrian Atanasiu , Ghajendran Poovanandran , Wen Chean Teh

For a non-negative integer $k$, a language is $k$-piecewise test\-able ($k$-PT) if it is a finite boolean combination of languages of the form $\Sigma^* a_1 \Sigma^* \cdots \Sigma^* a_n \Sigma^*$ for $a_i\in\Sigma$ and $0\le n \le k$. We…

Formal Languages and Automata Theory · Computer Science 2015-06-10 Tomáš Masopust , Michaël Thomazo

The \emph{state complexity} of a regular language $L_m$ is the number $m$ of states in a minimal deterministic finite automaton (DFA) accepting $L_m$. The state complexity of a regularity-preserving binary operation on regular languages is…

Formal Languages and Automata Theory · Computer Science 2018-12-13 Janusz Brzozowski , Lila Kari , Bai Li , Marek Szykuła

In this paper the concept of Parikh-reducing Church-Rosser systems is studied. It is shown that for two classes of regular languages there exist such systems which describe the languages using finitely many equivalence classes of the…

Formal Languages and Automata Theory · Computer Science 2017-03-30 Tobias Walter