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Expressive Synchronization Types for Inheritance in the Join Calculus

机译:加入微积分中继承的富有表现力的同步类型

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In prior work, Fournet et al. proposed an extension of the join calculus with class-based inheritance, aiming to provide a precise semantics for concurrent objects. However, as we show here, their system suffers from several limitations, which make it inadequate to form the basis of a practical implementation. In this paper, we redesign the static semantics for inheritance in the join calculus, equipping class types with more precise information. Compared to previous work, the new type system is more powerful, more expressive and simpler. Additionally, one runtime check of the old system is suppressed in the new design. We also prove the soundness of the new system, and have implemented type inference.
机译:在上班,Fournet等人。提出了基于类继承的加入微积分的扩展,旨在为并发对象提供精确的语义。然而,正如我们在这里展示的那样,他们的系统遭受了几个限制,这使得构成实际实施的基础是不充分的。在本文中,我们重新设计了加入微积分中继承的静态语义,配备了更精确的信息。与以前的工作相比,新型系统更强大,更具表现力和更简单。此外,在新设计中抑制了旧系统的一个运行时检查。我们还证明了新系统的声音,并实现了类型推断。

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