Zippy LL(1) parsing with derivatives

Romain Edelmann, Jad Hamza, Viktor Kunčak
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引用次数: 6

Abstract

In this paper, we present an efficient, functional, and formally verified parsing algorithm for LL(1) context-free expressions based on the concept of derivatives of formal languages. Parsing with derivatives is an elegant parsing technique, which, in the general case, suffers from cubic worst-case time complexity and slow performance in practice. We specialise the parsing with derivatives algorithm to LL(1) context-free expressions, where alternatives can be chosen given a single token of lookahead. We formalise the notion of LL(1) expressions and show how to efficiently check the LL(1) property. Next, we present a novel linear-time parsing with derivatives algorithm for LL(1) expressions operating on a zipper-inspired data structure. We prove the algorithm correct in Coq and present an implementation as a part of Scallion, a parser combinators framework in Scala with enumeration and pretty printing capabilities.
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Zippy LL(1)带有导数的解析
在本文中,我们提出了一种基于形式语言的导数概念的高效、功能和形式验证的LL(1)上下文无关表达式解析算法。导数解析是一种优雅的解析技术,但在实际应用中存在三次最坏情况时间复杂度和性能低下的问题。我们将使用衍生算法的解析专门用于LL(1)上下文无关表达式,其中可以在给定单个向前看令牌的情况下选择替代方案。我们形式化了LL(1)表达式的概念,并展示了如何有效地检查LL(1)性质。接下来,我们提出了一个新颖的线性时间解析与导数算法的LL(1)表达式操作在一个拉链启发的数据结构。我们在Coq中证明了这个算法是正确的,并给出了一个实现,作为Scallion的一部分,Scallion是Scala中的一个解析器组合子框架,具有枚举和漂亮的打印功能。
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