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Adaptive Mixed Criticality Scheduling with Deferred Preemption

机译:延迟优先的自适应混合临界调度

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Adaptive Mixed Criticality (AMC) scheduling has previously been shown to be the most effective fixed priority approach for scheduling mixed criticality systems, while the idea of final non-preemptive regions has been shown to improve the schedulability of systems with a single criticality level. In this paper, we combine AMC with the concept of non-preemptive regions by making the final part of each task's execution at each criticality level non-preemptive. We derive schedulability analysis for this approach, and provide an effective algorithm for choosing each task's priority and the durations of its non-preemptive regions. Evaluations illustrate the benefits of this approach in terms of increased schedulability.
机译:以前,自适应混合关键性(AMC)调度是用于调度混合关键性系统的最有效的固定优先级方法,而最终非抢占区域的思想已显示出可以提高具有单个关键性级别的系统的可调度性。在本文中,我们通过使每个关键级别的每个任务执行的最后部分成为非抢占性,将AMC与非抢占性区域的概念结合起来。我们对此方法进行了可调度性分析,并提供了一种有效的算法来选择每个任务的优先级及其非抢占区域的持续时间。评估显示了这种方法在提高可调度性方面的好处。

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