关于相位干扰的组合推理

Ismael Figueroa, T. Schrijvers, Nicolas Tabareau, É. Tanter
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引用次数: 5

摘要

Oliveira和他的同事最近开发了一个强大的模型来推理基于混合的有效成分组成及其相互干扰,利用了各种各样的技术,如等式推理、参数化和一元效应的代数定律。这项工作解决了在通过切入点进行无限制量化的情况下,对有效方面的干扰进行推理的问题。虽然需要全局推理,但我们证明了以组合方式推理是可能的,这是面对大型和不断发展的系统时方法可扩展性的关键。我们建立了一个基于几个条件的一般等价定理,这些条件可以随着系统的发展而单独建立、重用和适应。有趣的是,其中一个条件,局部无害,可以通过转换到mixin设置来证明,从而可以直接利用先前建立的关于某些类型无害扩展的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compositional reasoning about aspect interference
Oliveira and colleagues recently developed a powerful model to reason about mixin-based composition of effectful components and their interference, exploiting a wide variety of techniques such as equational reasoning, parametricity, and algebraic laws about monadic effects. This work addresses the issue of reasoning about interference with effectful aspects in the presence of unrestricted quantification through pointcuts. While global reasoning isrequired, we show that it is possible to reason in a compositional manner, which is key for the scalability of the approach in the face of large and evolving systems. We establish a general equivalence theorem that is based on a few conditions that can be established, reused, and adapted separately as the system evolves. Interestingly, one of these conditions, local harmlessness, can be proven by a translation to the mixin setting, making it possible to directly exploit previously established results about certain kinds of harmless extensions.
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