k2U: A General Framework from k-Point Effective Schedulability Analysis to Utilization-Based Tests

Jian-Jia Chen, Wen-Hung Huang, Cong Liu
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引用次数: 27

Abstract

To deal with a large variety of workloads in different application domains in real-time embedded systems, a number of expressive task models have been developed. For each individual task model, researchers tend to develop different types of techniques for deriving schedulability tests with different computation complexity and performance. In this paper, we present a general schedulability analysis framework, namely the k2U framework, that can be potentially applied to analyze a large set of real-time task models under any fixed-priority scheduling algorithm, on both uniprocessor and multiprocessor scheduling. The key to k2U is a k-point effective schedulability test, which can be viewed as a "blackbox" interface. For any task model, if a corresponding k-point effective schedulability test can be constructed, then a sufficient utilization-based test can be automatically derived. We show the generality of k2U by applying it to different task models, which results in new and improved tests compared to the state-of-the-art.
k2U:从k点有效可调度性分析到基于利用率测试的通用框架
为了处理实时嵌入式系统中不同应用领域的大量工作负载,已经开发了许多表达性任务模型。对于每一个单独的任务模型,研究者倾向于开发不同类型的技术来推导具有不同计算复杂度和性能的可调度性测试。在本文中,我们提出了一个通用的可调度性分析框架,即k2U框架,它可以潜在地应用于分析任意固定优先级调度算法下的大量实时任务模型,无论是单处理器调度还是多处理器调度。k2U的关键是一个k点有效可调度性测试,它可以看作是一个“黑盒”接口。对于任何任务模型,如果能够构造相应的k点有效可调度性测试,则可以自动导出充分的基于利用率的测试。我们通过将k2U应用于不同的任务模型来展示它的通用性,与最先进的测试相比,这将产生新的和改进的测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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