一种不公平但最优的零星任务多处理器调度算法

Geoffrey Nelissen, V. Berten, Vincent Nélis, J. Goossens, D. Milojevic
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引用次数: 78

摘要

文献[1]提出了一种多处理器调度算法U-EDF,用于隐式截止日期的周期性任务调度。据称,U-EDF对于周期性任务是最优的(即,它可以满足每个可调度任务集的所有截止日期),广泛的模拟表明,与最先进的最优算法相比,U-EDF在任务抢占和迁移的数量上有了显着改善。然而,没有证据表明它是最优的,而且U-EDF不是为安排零星任务而设计的。在这项工作中,我们提出了具有隐式截止日期的零星任务调度的U-EDF的推广,并证明了它的最优性。与现有的针对零星任务的多处理器优化调度算法不同,U-EDF算法不以公平性为基础。相反,它扩展了EDF的主要原则,从而实现了最优性,同时受益于抢占和迁移数量的大幅减少。
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U-EDF: An Unfair But Optimal Multiprocessor Scheduling Algorithm for Sporadic Tasks
A multiprocessor scheduling algorithm named U-EDF, was presented in [1] for the scheduling of periodic tasks with implicit deadlines. It was claimed that U-EDF is optimal for periodic tasks (i.e., it can meet all deadlines of every schedulable task set) and extensive simulations showed a drastic improvement in the number of task preemptions and migrations in comparison to state-of-the-art optimal algorithms. However, there was no proof of its optimality and U-EDF was not designed to schedule sporadic tasks. In this work, we propose a generalization of U-EDF for the scheduling of sporadic tasks with implicit deadlines, and we prove its optimality. Contrarily to all other existing optimal multiprocessor scheduling algorithms for sporadic tasks, U-EDF is not based on the fairness property. Instead, it extends the main principles of EDF so that it achieves optimality while benefiting from a substantial reduction in the number of preemptions and migrations.
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