实现分层调度,支持多模式系统

R. Inam, Mikael Sjödin, Reinder J. Brfi
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引用次数: 8

摘要

多模式嵌入式实时系统在每个模式下都表现出特定的行为,并且在模式更改请求时,需要更改系统的任务集和定时接口。分层调度框架(HSF)是一种已知的将CPU时间划分为若干分层划分的子系统的技术,每个子系统由其自己的任务集组成。我们建议使用两级HSF实现多模式系统,并为支持多模式的自适应HSF提供一个骨架(框架)。在模式变更请求发生时,改变各子系统的时序接口,从而使分层调度具有自适应性质。我们解决了实现的主要目标,并描述了多模式自适应分层调度框架(MMAHSF)的初始设计细节,重点是对底层内核进行最小的更改。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementing hierarchical scheduling to support multi-mode system
Multi-mode embedded real-time systems exhibit a specific behavior for each mode and upon a mode-change request, the task-set and timing interfaces of the system need to be changed. Hierarchical Scheduling Framework (HSF) is a known technique to partition the CPU time into a number of hierarchically divided subsystems each consists of its own task set. We propose to implement a multi-mode system using a two-level HSF and provide a skeleton (framework) for an adaptive HSFs supporting multi-modes. Upon a mode-change request, the timing interface of each subsystem is changed, thus making the hierarchical scheduling adaptive in nature. We address the main goals for the implementation and describe the initial design details of the Multi-Mode Adaptive Hierarchical Scheduling Framework (MMAHSF) with the emphasis of doing minimal changes to the underlying kernel.
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