Logic Programming with Extensible Types

Fuente: arXiv
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Hauptverfasser: Perez, Ivan, Herranz, Angel
Format: Preprint
Veröffentlicht: 2026
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author Perez, Ivan
Herranz, Angel
author_facet Perez, Ivan
Herranz, Angel
contents Logic programming languages present clear advantages in terms of declarativeness and conciseness. However, the ideas of logic programming have been met with resistance in other programming communities, and have not generally been adopted by other paradigms and languages. This paper proposes a novel way to incorporate logic programming in an existing codebase in a typed functional programming language. Our approach integrates with the host language without sacrificing static typing, and leverages strengths of typed functional programming such as polymorphism and higher-order. We do so by combining three ideas. First, we use the extensible types technique to allow values of the host language to contain logic variables. Second, we implement a unification algorithm that works for any data structure that supports certain operations.Third, we introduce a domain-specific language to define and query predicates. We demonstrate our proposal via a series of examples, and provide aids to make the notation convenient for users, showing that the proposed approach is not just technically possible but also practical. Our ideas have been implemented in the language Haskell with very good results.
format Preprint
id arxiv_https___arxiv_org_abs_2601_03836
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Logic Programming with Extensible Types
Perez, Ivan
Herranz, Angel
Programming Languages
Logic in Computer Science
Logic programming languages present clear advantages in terms of declarativeness and conciseness. However, the ideas of logic programming have been met with resistance in other programming communities, and have not generally been adopted by other paradigms and languages. This paper proposes a novel way to incorporate logic programming in an existing codebase in a typed functional programming language. Our approach integrates with the host language without sacrificing static typing, and leverages strengths of typed functional programming such as polymorphism and higher-order. We do so by combining three ideas. First, we use the extensible types technique to allow values of the host language to contain logic variables. Second, we implement a unification algorithm that works for any data structure that supports certain operations.Third, we introduce a domain-specific language to define and query predicates. We demonstrate our proposal via a series of examples, and provide aids to make the notation convenient for users, showing that the proposed approach is not just technically possible but also practical. Our ideas have been implemented in the language Haskell with very good results.
title Logic Programming with Extensible Types
topic Programming Languages
Logic in Computer Science
url https://arxiv.org/abs/2601.03836