English

Free Monads, Intrinsic Scoping, and Higher-Order Preunification

Logic in Computer Science 2024-02-27 v2

Abstract

Type checking algorithms and theorem provers rely on unification algorithms. In presence of type families or higher-order logic, higher-order (pre)unification (HOU) is required. Many HOU algorithms are expressed in terms of λ\lambda-calculus and require encodings, such as higher-order abstract syntax, which are sometimes not comfortable to work with for language implementors. To facilitate implementations of languages, proof assistants, and theorem provers, we propose a novel approach based on the second-order abstract syntax of Fiore, data types \`a la carte of Swierstra, and intrinsic scoping of Bird and Patterson. With our approach, an object language is generated freely from a given bifunctor. Then, given an evaluation function and making a few reasonable assumptions on it, we derive a higher-order preunification procedure on terms in the object language. More precisely, we apply a variant of EE-unification for second-order syntax. Finally, we briefly demonstrate an application of this technique to implement type checking (with type inference) for Martin-L\"of Type Theory, a dependent type theory.

Keywords

Cite

@article{arxiv.2204.05653,
  title  = {Free Monads, Intrinsic Scoping, and Higher-Order Preunification},
  author = {Nikolai Kudasov},
  journal= {arXiv preprint arXiv:2204.05653},
  year   = {2024}
}
R2 v1 2026-06-24T10:45:34.837Z