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Local Proofs for Global Safety Properties

机译:全球安全特性的本地证明

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摘要

This paper explores the concept of locality in proofs of global safety properties of asynchronously composed, multi-process programs. Model checking on the full state space is often infeasible due to state explosion. A local proof, in contrast, is a collection of per-process invariants, which together imply the global safety property. Local proofs can be compact: but a central problem is that local reasoning is incomplete. In this paper, we present a "completion" algorithm, which gradually exposes facts about the internal state of components, until either a local proof or a real error is discovered. Experiments show that local reasoning can have significantly better performance over a reachability computation. Moreover, for some parameterized protocols, a local proof can be used to show correctness for all instances.
机译:本文探讨了局部性的概念,以证明异步组成的多过程程序的全局安全性。由于状态爆炸,通常无法对整个状态空间进行模型检查。相反,本地证明是每个过程不变量的集合,这些不变量共同暗示了全局安全性。本地证明可以是紧凑的:但是一个中心问题是本地推理是不完整的。在本文中,我们提出了一种“完成”算法,该算法逐渐揭示有关组件内部状态的事实,直到发现局部证明或实际错误为止。实验表明,局部推理在可及性计算上具有明显更好的性能。此外,对于某些参数化协议,可以使用局部证明来显示所有实例的正确性。

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