用于可见下推语法的基于派生的解析器生成器

IF 1.5 2区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING ACM Transactions on Programming Languages and Systems Pub Date : 2023-05-15 DOI:https://dl.acm.org/doi/10.1145/3591472
Xiaodong Jia, Ashish Kumar, Gang Tan
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引用次数: 0

摘要

在这篇文章中,我们提出了一个基于导数的功能识别器和解析器生成器,用于可见的下推语法。生成的解析器接受模棱两可的语法,并在线性时间内生成包含输入字符串的所有有效解析树的解析林。然后,也可以在线性时间内提取林中的每个解析树。除了解析器生成器之外,为了允许更灵活的可见下推语法形式,我们还提供了一个转换器,可以将标记的CFG以合理的方式转换为可见下推语法,并且通过运行嵌入在已翻译的可见下推语法解析树中的语义操作来进一步生成标记CFG的解析树。将解析器的性能与流行的解析工具(包括ANTLR、GNU Bison和其他流行的手工解析器)进行比较。在证明辅助Coq中正式验证了核心解析算法的正确性和时间复杂度。
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A Derivative-based Parser Generator for Visibly Pushdown Grammars

In this article, we present a derivative-based, functional recognizer and parser generator for visibly pushdown grammars. The generated parser accepts ambiguous grammars and produces a parse forest containing all valid parse trees for an input string in linear time. Each parse tree in the forest can then be extracted also in linear time. Besides the parser generator, to allow more flexible forms of the visibly pushdown grammars, we also present a translator that converts a tagged CFG to a visibly pushdown grammar in a sound way, and the parse trees of the tagged CFG are further produced by running the semantic actions embedded in the parse trees of the translated visibly pushdown grammar. The performance of the parser is compared with popular parsing tools, including ANTLR, GNU Bison, and other popular hand-crafted parsers. The correctness and the time complexity of the core parsing algorithm are formally verified in the proof assistant Coq.

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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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