有限抢占的广义固定优先级调度

R. J. Bril, M. V. D. Heuvel, U. Keskin, J. Lukkien
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引用次数: 23

摘要

具有延迟抢占的固定优先级调度(FPDS)和具有抢占阈值的固定优先级调度(FPTS)在文献中被提出作为固定优先级抢占调度(FPPS)的可行替代方案,它们减少了内存需求,降低了任意抢占的成本,并且即使在忽略抢占开销的情况下也可以提高任务集的可行性。本文将FPDS和FPTS相结合,提高了有限抢占调度程序的相对强度。特别地,我们提出了FPDS的改进,为作业和子作业提供了抢占阈值,称为FPGS。我们提供了FPGS的精确可调度性分析,并展示了如何在给定优先级、计算时间、周期和任务截止日期的情况下最大化FPGS下一组零星任务的可行性。通过仿真比较FPGS下任务集与其他固定优先级调度算法的可行性,对FPGS的有效性进行了评价。我们的实验表明,FPGS允许在固定优先级调度下可调度的任务集数量的增加。
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Generalized Fixed-Priority Scheduling with Limited Preemptions
Fixed-priority scheduling with deferred preemption(FPDS) and fixed-priority scheduling with preemption thresholds(FPTS) have been proposed in the literature as viable alternatives to fixed-priority preemptive scheduling (FPPS), that reduce memory requirements, reduce the cost of arbitrary preemptions, and may improve the feasibility of a task set even when preemption overheads are neglected. This paper aims at advancing the relative strength of limited preemptive schedulers by combining FPDS and FPTS. In particular, we present a refinement of FPDS with preemption thresholds for both jobs and sub-jobs, termed FPGS. We provide an exact schedulability analysis for FPGS, and show how to maximize the feasibility of a set of sporadic tasks under FPGS for given priorities, computation times, periods, and deadlines of tasks. We evaluate the effectiveness of FPGS by comparing the feasibility of task sets under FPGS with other fixed-priority scheduling algorithms by means of a simulation. Our experiments show that FPGS allows an increase of the number of task sets that are schedulable under fixed-priority scheduling.
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