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Response Time Analysis of Hierarchical Scheduling: The Synchronized Deferrable Servers Approach

机译:分层调度的响应时间分析:同步可延迟服务器方法

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Hierarchical scheduling allows reservation of processor bandwidth and the use of different schedulers for different applications on a single platform. We propose a hierarchical scheduling interface called synchronized deferrable servers that can reserve different processor bandwidth on each core, and can combine global and partitioned scheduling on a multicore platform. Significant challenges will arise in the response time analysis of a task set if the tasks are globally scheduled on a multiprocessor platform and the processor bandwidth reserved for the tasks on each processor is different, as a result, existing works on response time analysis for dedicated scheduling on identical multiprocessor platforms are no longer applicable. A new response time analysis that overcomes these challenges is presented and evaluated by simulations. Based on this new analysis, we show that evenly allocating bandwidth across cores is "better" than other allocation schemes in terms of schedulability, and that the threshold between lightweight and heavyweight tasks under hierarchical scheduling may be different from the threshold under dedicated scheduling.
机译:分层调度允许保留​​处理器带宽,并且可以在单个平台上为不同应用程序使用不同的调度程序。我们提出了一种称为同步可延迟服务器的分层调度接口,该接口可以在每个内核上保留不同的处理器带宽,并且可以在多核平台上结合全局调度和分区调度。如果任务是在多处理器平台上全局调度的,并且为每个处理器在任务上保留的处理器带宽不同,则任务集的响应时间分析将面临重大挑战,因此,现有的用于专用调度的响应时间分析工作在相同的多处理器平台上不再适用。通过仿真提出并评估了克服这些挑战的新的响应时间分析。基于此新分析,我们显示出在可调度性方面,跨内核平均分配带宽比其他分配方案“更好”,并且在分层调度下轻量级任务和重量级任务之间的阈值可能与专用调度下的阈值不同。

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