A relational model of types-and-effects in higher-order concurrent separation logic

Author:

Krogh-Jespersen Morten1,Svendsen Kasper2,Birkedal Lars1

Affiliation:

1. Aarhus University, Denmark

2. University of Cambridge, UK

Abstract

Recently we have seen a renewed interest in programming languages that tame the complexity of state and concurrency through refined type systems with more fine-grained control over effects. In addition to simplifying reasoning and eliminating whole classes of bugs, statically tracking effects opens the door to advanced compiler optimizations. In this paper we present a relational model of a type-and-effect system for a higher-order, concurrent program- ming language. The model precisely captures the semantic invariants expressed by the effect annotations. We demonstrate that these invariants are strong enough to prove advanced program transformations, including automatic parallelization of expressions with suitably disjoint effects. The model also supports refinement proofs between abstract data types implementations with different internal data representations, including proofs that fine-grained concurrent algorithms refine their coarse-grained counterparts. This is the first model for such an expressive language that supports both effect-based optimizations and data abstraction. The logical relation is defined in Iris, a state-of-the-art higher-order concurrent separation logic. This greatly simplifies proving well-definedness of the logical relation and also provides us with a powerful logic for reasoning in the model.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design,Software

Cited by 24 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Logical Approach to Type Soundness;Journal of the ACM;2024-07-10

2. Trillium: Higher-Order Concurrent and Distributed Separation Logic for Intensional Refinement;Proceedings of the ACM on Programming Languages;2024-01-05

3. A Type System for Effect Handlers and Dynamic Labels;Programming Languages and Systems;2023

4. Reasoning about block-based cloud storage systems via separation logic;Theoretical Computer Science;2022-11

5. Later credits: resourceful reasoning for the later modality;Proceedings of the ACM on Programming Languages;2022-08-29

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