Integrating runtime assertions with dynamic types: structuring a derivation from an incomputable specification

P. Bailes, Colin J. M. Kemp
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引用次数: 2

Abstract

An inherent incomputability in the specification of a functional language extension that combines assertions with dynamic type checking is isolated in an explicit derivation from mathematical specifications. The combination of types and assertions (into "dynamic assertion-types" - DATs) is a significant issue since, because the two are congruent means for program correctness, benefit arises from their better integration in contrast to the harm resulting from their unnecessary separation. However, projecting the "set membership" view of assertion-checking into dynamic types results in some incomputable combinations. Refinement of the specification of DAT checking into an implementation by rigorous application of mathematical identities becomes feasible through the addition of a "best-approximate" pseudo-equality that isolates the incomputable component of the specification. This formal treatment leads to an improved, more maintainable outcome with further development potential.
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将运行时断言与动态类型集成:从不可计算的规范构造派生
结合断言和动态类型检查的函数式语言扩展的规范中固有的不可计算性在数学规范的显式派生中被隔离。类型和断言的组合(到“动态断言类型”—dat中)是一个重要的问题,因为这两者是程序正确性的一致方法,与不必要的分离所造成的危害相比,更好地集成它们会带来好处。然而,将断言检查的“集合成员”视图投射到动态类型中会导致一些不可计算的组合。通过严格应用数学恒等式,将DAT检查规范细化到实现中,通过添加“最佳近似”伪等式(隔离规范中不可计算的组件)变得可行。这种正式的治疗可以改善,更可持续的结果,并具有进一步的发展潜力。
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