重写健全完备的并、交、否定类型

David J. Pearce
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引用次数: 6

摘要

实现编程语言的类型系统是一项关键的任务,通常以一种特别的方式完成。虽然这使得确保系统的可靠性变得困难,但也使得随着语言的发展而扩展变得困难。我们感兴趣的是使用声明性重写规则来描述类型系统,从这些规则中可以自动生成实现。虽然不是所有的类型系统都很容易以这种方式表示,但那些涉及联合、交叉和否定的类型系统非常适合这种方式。在本文中,我们考虑了一个相对复杂的类型系统,涉及先前开发的并、交和否定。这个系统的发展并没有考虑到改写,尽管从最初的介绍中可以立即看到明显的相似之处。例如,系统提出的要求类型首先转换为析取范式的变体。我们确定,原始系统在很大程度上可以重新设计,以使用声明性重写规则启用自然表达式。我们用while重写语言(WyRL)给出了重写规则的实现,并报告了与手工编码解决方案相比的性能结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rewriting for sound and complete union, intersection and negation types
Implementing the type system of a programming language is a critical task that is often done in an ad-hoc fashion. Whilst this makes it hard to ensure the system is sound, it also makes it difficult to extend as the language evolves. We are interested in describing type systems using declarative rewrite rules from which an implementation can be automatically generated. Whilst not all type systems are easily expressed in this manner, those involving unions, intersections and negations are well-suited for this. In this paper, we consider a relatively complex type system involving unions, intersections and negations developed previously. This system was not developed with rewriting in mind, though clear parallels are immediately apparent from the original presentation. For example, the system presented required types be first converted into a variation on Disjunctive Normal Form. We identify that the original system can, for the most part, be reworked to enable a natural expression using declarative rewrite rules. We present an implementation of our rewrite rules in the Whiley Rewrite Language (WyRL), and report performance results compared with a hand-coded solution.
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