Quantitative Safety and Liveness

Author:

Henzinger Thomas A.,Mazzocchi Nicolas,Saraç N. Ege

Abstract

AbstractSafety and liveness are elementary concepts of computation, and the foundation of many verification paradigms. The safety-liveness classification of boolean properties characterizes whether a given property can be falsified by observing a finite prefix of an infinite computation trace (always for safety, never for liveness). In quantitative specification and verification, properties assign not truth values, but quantitative values to infinite traces (e.g., a cost, or the distance to a boolean property). We introduce quantitative safety and liveness, and we prove that our definitions induce conservative quantitative generalizations of both (1) the safety-progress hierarchy of boolean properties and (2) the safety-liveness decomposition of boolean properties. In particular, we show that every quantitative property can be written as the pointwise minimum of a quantitative safety property and a quantitative liveness property. Consequently, like boolean properties, also quantitative properties can be $$\min $$ min -decomposed into safety and liveness parts, or alternatively, $$\max $$ max -decomposed into co-safety and co-liveness parts. Moreover, quantitative properties can be approximated naturally. We prove that every quantitative property that has both safe and co-safe approximations can be monitored arbitrarily precisely by a monitor that uses only a finite number of states.

Publisher

Springer Nature Switzerland

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. General monitorability of totally ordered verdict domains;Innovations in Systems and Software Engineering;2024-04-06

2. Describing Weighted Safety with Weighted LTL over Product omega-valuation Monoids;Scientific Annals of Computer Science;2023-12-20

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