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Overhead Control in DP-Fair Work Conserving Real-Time Multiprocessor Scheduling

机译:DP公平工作的实时多处理器调度中的开销控制

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摘要

In real-time multiprocessor scheduling, the optimal global scheduling algorithms are criticized for excessive overhead due to the frequent scheduling points, migrations and preemptions. DP-Fair model is an optimal scheduling which combines the notion of fluid scheduling (ideal fairness) with deadline partitioning. It has lower number of scheduling points as compare to PFair which is the first optimal scheduling algorithm proposed for real-time multiprocessor systems. DP-Fair model exists both for non-work conserving as well as work conserving cases. In [14,15], we used some simple heuristics which lower the overhead by reducing the number of migrations and preemptions in the non-work conserving context. In this article, we show that the very same heuristics can be envisaged in case of work conserving scheduling, and we evaluate their efficiencies for lowering the overhead.
机译:在实时多处理器调度中,由于频繁的调度点,迁移和抢占而批评了最佳全局调度算法的开销过大。 DP-Fair模型是一种最佳调度,它将流体调度(理想公平)概念与截止期限划分结合在一起。与PFair相比,它具有更少的调度点数量,PFair是为实时多处理器系统提出的第一个最佳调度算法。 DP-Fair模型既适用于非节约工作案例,也适用于节约工作案例。在[14,15]中,我们使用了一些简单的启发式方法,这些方法通过减少非节约工作环境中的迁移和抢占的数量来降低开销。在本文中,我们证明了在节省工作调度的情况下可以设想到完全相同的启发式方法,并且我们评估了它们在降低开销方面的效率。

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    LUNAM Universite, Universite de Nantes, IRCCyN UMR CNRS 6597 L'Institut de Recherche en Communications et Cybernetique de Nantes Nantes, France;

    LUNAM Universite, Universite de Nantes, IRCCyN UMR CNRS 6597 L'Institut de Recherche en Communications et Cybernetique de Nantes Nantes, France;

    LUNAM Universite, Universite de Nantes, IRCCyN UMR CNRS 6597 L'Institut de Recherche en Communications et Cybernetique de Nantes Nantes, France;

    LUNAM Universite, Universite de Nantes, IRCCyN UMR CNRS 6597 L'Institut de Recherche en Communications et Cybernetique de Nantes Nantes, France;

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