Focusing on Refinement Typing

IF 1.5 2区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Dimitrios J. Economou, Neel Krishnaswami, Jana Dunfield
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引用次数: 0

Abstract

We present a logically principled foundation for systematizing, in a way that works with any computational effect and evaluation order, SMT constraint generation seen in refinement type systems for functional programming languages. By carefully combining a focalized variant of call-by-push-value, bidirectional typing, and our novel technique of value-determined indexes, our system generates solvable SMT constraints without existential (unification) variables. We design a polarized subtyping relation allowing us to prove our logically focused typing algorithm is sound, complete, and decidable. We prove type soundness of our declarative system with respect to an elementary domain-theoretic denotational semantics. Type soundness implies, relatively simply, the total correctness and logical consistency of our system. The relative ease with which we obtain both algorithmic and semantic results ultimately stems from the proof-theoretic technique of focalization.
注重精细化类型
我们提出了一个系统化的逻辑原则基础,以一种适用于任何计算效果和求值顺序的方式,在函数式编程语言的细化类型系统中看到SMT约束生成。通过仔细组合按推值调用的集中变体、双向类型和我们的值确定索引的新技术,我们的系统生成了可解决的SMT约束,而不需要存在(统一)变量。我们设计了一个极化的子类型关系,使我们能够证明我们的逻辑集中的类型算法是健全的、完整的和可确定的。我们用一个基本领域论指称语义证明了我们的陈述系统的类型稳健性。相对简单地说,类型稳健性意味着系统的全部正确性和逻辑一致性。我们获得算法和语义结果的相对容易最终源于聚焦的证明理论技术。
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来源期刊
ACM Transactions on Programming Languages and Systems
ACM Transactions on Programming Languages and Systems 工程技术-计算机:软件工程
CiteScore
3.10
自引率
7.70%
发文量
28
审稿时长
>12 weeks
期刊介绍: ACM Transactions on Programming Languages and Systems (TOPLAS) is the premier journal for reporting recent research advances in the areas of programming languages, and systems to assist the task of programming. Papers can be either theoretical or experimental in style, but in either case, they must contain innovative and novel content that advances the state of the art of programming languages and systems. We also invite strictly experimental papers that compare existing approaches, as well as tutorial and survey papers. The scope of TOPLAS includes, but is not limited to, the following subjects: language design for sequential and parallel programming programming language implementation programming language semantics compilers and interpreters runtime systems for program execution storage allocation and garbage collection languages and methods for writing program specifications languages and methods for secure and reliable programs testing and verification of programs
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