一种用于机器验证可线性化证明的通用、合理和完整的前向推理技术

IF 2.2 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING Proceedings of the ACM on Programming Languages Pub Date : 2024-01-05 DOI:10.1145/3632924
Prasad Jayanti, S. Jayanti, Ugur Y. Yavuz, Lizzie Hernandez
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引用次数: 0

摘要

我们介绍了简单、通用、完善和完整的证明方法,用于生成可线性化和强线性化的机器可验证证明。通用性是指我们的方法适用于任何对象类型;健全性是指算法只有在可线性化(或强线性化)的情况下才能用我们的方法证明其正确性;完备性是指任何可线性化(或强线性化)的实现都能用我们的方法证明其正确性。我们通过证明 Herlihy-Wing 队列和 Jayanti 单扫描器快照的可线性化,以及证明 Jayanti-Tarjan 联合查找对象的强可线性化,展示了我们方法的简单性和强大功能。所有这三个证明都经过了 TLAPS(TLA+ 证明系统)的机器验证。
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A Universal, Sound, and Complete Forward Reasoning Technique for Machine-Verified Proofs of Linearizability
We introduce simple, universal, sound, and complete proof methods for producing machine-verifiable proofs of linearizability and strong linearizability. Universality means that our method works for any object type; soundness means that an algorithm can be proved correct by our method only if it is linearizable (resp. strong linearizable); and completeness means that any linearizable (resp. strong linearizable) implementation can be proved so using our method. We demonstrate the simplicity and power of our method by producing proofs of linearizability for the Herlihy-Wing queue and Jayanti’s single-scanner snapshot, as well as a proof of strong linearizability of the Jayanti-Tarjan union-find object. All three of these proofs are machine-verified by TLAPS (the TLA+ Proof System).
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来源期刊
Proceedings of the ACM on Programming Languages
Proceedings of the ACM on Programming Languages Engineering-Safety, Risk, Reliability and Quality
CiteScore
5.20
自引率
22.20%
发文量
192
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