English

Modular Inference of Linear Types for Multiplicity-Annotated Arrows

Programming Languages 2020-02-20 v2 Logic in Computer Science

Abstract

Bernardy et al. [2018] proposed a linear type system λq\lambda^q_\to as a core type system of Linear Haskell. In the system, linearity is represented by annotated arrow types AmBA \to_m B, where mm denotes the multiplicity of the argument. Thanks to this representation, existing non-linear code typechecks as it is, and newly written linear code can be used with existing non-linear code in many cases. However, little is known about the type inference of λq\lambda^q_\to. Although the Linear Haskell implementation is equipped with type inference, its algorithm has not been formalized, and the implementation often fails to infer principal types, especially for higher-order functions. In this paper, based on OutsideIn(X) [Vytiniotis et al., 2011], we propose an inference system for a rank 1 qualified-typed variant of λq\lambda^q_\to, which infers principal types. A technical challenge in this new setting is to deal with ambiguous types inferred by naive qualified typing. We address this ambiguity issue through quantifier elimination and demonstrate the effectiveness of the approach with examples.

Keywords

Cite

@article{arxiv.1911.00268,
  title  = {Modular Inference of Linear Types for Multiplicity-Annotated Arrows},
  author = {Kazutaka Matsuda},
  journal= {arXiv preprint arXiv:1911.00268},
  year   = {2020}
}

Comments

The full version of our paper to appear in ESOP 2020

R2 v1 2026-06-23T12:01:59.736Z