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Preempt a Job or Not in EDF Scheduling of Uniprocessor Systems

机译:在单处理器系统的EDF调度中是否抢占作业

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The earliest-deadline-first (EDF) policy has been widely studied for the scheduling of real-time jobs for its effectiveness and simplicity. However, since each preemption incurs an additional delay to the execution of jobs, the effectiveness of EDF is affected greatly by the underlying preemption policy that determines if and when a higher-priority job is allowed to preempt a currently executing lower-priority job. To address this problem, we propose a new and better (in meeting job deadlines) preemption policy of EDF, given a non-zero preemption delay. Specifically, we propose a controlled preemption (CP) policy that controls the condition of preempting jobs, whereas existing approaches focus on that of preempted jobs. We define cp-EDF in which the CP policy is applied to EDF, and analyze its schedulability. This schedulability analysis is then utilized to develop an algorithm that assigns the optimal control parameters of cp-EDF. Our in-depth evaluation has demonstrated that cp-EDF with the optimal parameter assignment improves EDF schedulability over existing preemption policies by up to 7.4%.
机译:最早截止日期优先(EDF)策略已经被广泛研究用于实时作业的调度,因为它具有有效性和简便性。但是,由于每个抢占都会对作业的执行产生额外的延迟,因此,EDF的有效性会受到基础抢占策略的影响,该策略决定了是否以及何时允许较高优先级的作业抢占当前正在执行的较低优先级的作业。为了解决此问题,鉴于非零的抢占延迟,我们提出了一种新的更好的EDF(在工作截止日期之前)抢占策略。具体来说,我们提出了一种控制抢占(CP)的策略,该策略控制抢占职位的条件,而现有方法则侧重于抢占职位的策略。我们定义将CP策略应用于EDF的cp-EDF,并分析其可调度性。然后利用这种可调度性分析来开发一种算法,该算法分配cp-EDF的最佳控制参数。我们的深入评估表明,具有最佳参数分配的cp-EDF与现有的抢占策略相比,可将EDF的可调度性提高多达7.4%。

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