Pure Borrow: Linear Haskell Meets Rust-Style Borrowing

A promising approach to unifying functional and imperative programming paradigms is to localize mutation using linear or affine types. Haskell, a purely functional language, was recently extended with linear types by Bernardy et al., in the name of Linear Haskell. However, it remained unknown whether such a pure language could safely support non-local borrowing in the style of Rust, where each borrower can be freely split and dropped without direct communication of ownership back to the lender. We answer this question affirmatively with Pure Borrow , a novel framework that realizes Rust-style borrowing in Linear Haskell with purity. Notably, it features parallel state mutation with affine mutable references inside pure computation, unlike the IO and ST monads and existing Linear Haskell APIs. It also enjoys purity, lazy evaluation, first-class polymorphism and leak freedom, unlike Rust. We implement Pure Borrow simply as a library in Linear Haskell and demonstrate its power with a case study in parallel computing. We formalize the core of Pure Borrow and build a metatheory that works toward establishing safety, leak freedom and confluence, with a new, history-based model of borrowing.

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Publication Details

Journal
Proceedings of the ACM on Programming Languages
Published
2026-06-08
DOI
https://doi.org/10.1145/3808259
Primary Topic
Logic, programming, and type systems
Type
article
Field-Weighted Citation Impact
0.00

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article

Pure Borrow: Linear Haskell Meets Rust-Style Borrowing

Yusuke Matsushita, Hiromi Ishii
Proceedings of the ACM on Programming Languages
Logic, programming, and type systems
article

Pure Borrow: Linear Haskell Meets Rust-Style Borrowing

Yusuke Matsushita, Hiromi Ishii
article en

Abstract

A promising approach to unifying functional and imperative programming paradigms is to localize mutation using linear or affine types. Haskell, a purely functional language, was recently extended with linear types by Bernardy et al., in the name of Linear Haskell. However, it remained unknown whether such a pure language could safely support non-local borrowing in the style of Rust, where each borrower can be freely split and dropped without direct communication of ownership back to the lender. We answer this question affirmatively with Pure Borrow , a novel framework that realizes Rust-style borrowing in Linear Haskell with purity. Notably, it features parallel state mutation with affine mutable references inside pure computation, unlike the IO and ST monads and existing Linear Haskell APIs. It also enjoys purity, lazy evaluation, first-class polymorphism and leak freedom, unlike Rust. We implement Pure Borrow simply as a library in Linear Haskell and demonstrate its power with a case study in parallel computing. We formalize the core of Pure Borrow and build a metatheory that works toward establishing safety, leak freedom and confluence, with a new, history-based model of borrowing.

Proceedings of the ACM on Programming LanguagesVol. 10(PLDI)
Kyoto University (JP), Architectural Institute of Japan (JP)
Kyoto University, Japan Society for the Promotion of Science
Peace, Justice and strong institutions
Openalex Percentile: Top 42%
Logic, programming, and type systems
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