合金规格修理的有界穷举搜索

Simón Gutiérrez Brida, Germán Regis, Guolong Zheng, H. Bagheri, Thanhvu Nguyen, Nazareno Aguirre, M. Frias
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引用次数: 13

摘要

声明性语言的日益流行及其难以调试的特性促使人们需要适用于此类语言的自动修复技术。然而,尽管命令式语言的程序修复取得了重大进展,但声明性语言的修复技术仍然缺乏。BeAFix是一种基于一阶关系逻辑的声明性语言Alloy编写的故障模型自动修复技术。BeAFix支持一种新颖的策略,用于对固定候选空间进行有界的详尽但可扩展的探索,并对这些空间进行正式的严格、合理的修剪。此外,与Alloy自动化修复中依赖于单元测试可用性的最新技术不同,BeAFix不需要测试,并且可以处理在正式声明性语言中自然使用的断言。我们使用BeAFix修复由其他研究人员收集的数千个现实世界中的故障模型的经验,证实了它能够有效地生成正确的修复,并且优于最先进的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bounded Exhaustive Search of Alloy Specification Repairs
The rising popularity of declarative languages and the hard to debug nature thereof have motivated the need for applicable, automated repair techniques for such languages. However, despite significant advances in the program repair of imperative languages, there is a dearth of repair techniques for declarative languages. This paper presents BeAFix, an automated repair technique for faulty models written in Alloy, a declarative language based on first-order relational logic. BeAFix is backed with a novel strategy for bounded exhaustive, yet scalable, exploration of the spaces of fix candidates and a formally rigorous, sound pruning of such spaces. Moreover, different from the state-of-the-art in Alloy automated repair, that relies on the availability of unit tests, BeAFix does not require tests and can work with assertions that are naturally used in formal declarative languages. Our experience with using BeAFix to repair thousands of real-world faulty models, collected by other researchers, corroborates its ability to effectively generate correct repairs and outperform the state-of-the-art.
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