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Towards Overhead-Free Interface Theory for Compositional Hierarchical Real-Time Systems

机译:面向组成分层实时系统的无开销接口理论

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A significant amount of research has been conducted in the past on compositional real-time scheduling as it has become a useful foundational theory for real-time operating systems and hypervisors. However, compositional frameworks suffer from abstraction overhead in composing components. In this paper, we decompose the abstraction overhead into: 1) supply abstraction overhead associated with the supply from a resource provider and 2) demand abstraction overhead associated with the component workload. Then, we provide sufficient conditions for each abstraction overhead to be eliminated. In addition, this paper provides a heuristic technique that transforms a component to satisfy the sufficient conditions so that the abstraction overhead can be minimized. In experiments, we show that our technique outperforms two prior overhead-reducing techniques. The reduction in overhead is about 10% on average when compared to a technique that uses a single global period and about 8% on average when compared to a technique based on harmonicity.
机译:过去,关于合成实时调度已经进行了大量研究,因为它已成为实时操作系统和虚拟机管理程序的有用基础理论。但是,组成框架在组成组件时会遭受抽象开销。在本文中,我们将抽象开销分解为:1)与来自资源提供者的供应相关的供应抽象开销,以及2)与组件工作负载相关的需求抽象开销。然后,我们为消除每个抽象开销提供了充分的条件。此外,本文提供了一种启发式技术,该技术可以对组件进行转换以满足足够的条件,从而可以最大程度地减少抽象开销。在实验中,我们证明了我们的技术优于两项现有的减少开销的技术。与使用单个全局周期的技术相比,开销的减少平均大约为10%,与基于谐波的技术相比,开销的平均减少大约8%。

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