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Exact Speedup Factors for Linear-Time Schedulability Tests for Fixed-Priority Preemptive and Non-preemptive Scheduling

机译:固定优先抢占式和非抢占式调度的线性时间可调度性测试的精确加速因子

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摘要

In this paper, we investigate the quality of several linear-time schedulability tests for preemptive and non-preemptive fixed-priority scheduling of uniprocessor systems. The metric used to assess the quality of these tests is the resource augmentation bound commonly known as the processor speedup factor. The speedup factor of a schedulability test corresponds to the smallest factor by which the processing speed of a uniprocessor needs to be increased such that any task set that is feasible under an optimal preemptive (non-preemptive) work-conserving scheduling algorithm is guaranteed to be schedulable with preemptive (non-preemptive) fixed priority scheduling if this scheduling test is used, assuming an appropriate priority assignment. We show the surprising result that the exact speedup factors for Deadline Monotonic (DM) priority assignment combined with sufficient linear-time schedulability tests for implicit-, constrained-, and arbitrary-deadline task sets are the same as those obtained for optimal priority assignment policies combined with exact schedulability tests. Thus in terms of the speedup-factors required, there is no penalty in using DM priority assignment and simple linear schedulability tests.
机译:在本文中,我们研究了单处理器系统的先占式和非先占式固定优先级调度的几种线性时间可调度性测试的质量。用来评估这些测试质量的度量标准是资源增加限制,通常称为处理器加速因子。可调度性测试的加速因子对应于需要提高单处理器的处理速度的最小因子,从而确保在最佳抢先(非抢先)工作保留调度算法下可行的任何任务集如果使用了此调度测试,并且假定适当的优先级分配,则可以使用抢先(非抢先)固定优先级调度进行调度。我们显示出令人惊讶的结果,即对于截止时间单调(DM)优先级分配的确切加速因子,以及针对隐式,约束和任意截止期限任务集的足够的线性时间可调度性测试,与针对最佳优先级分配策略获得的相同结合精确的可调度性测试。因此,就所需的加速因子而言,使用DM优先级分配和简单的线性可调度性测试不会带来任何损失。

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