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Integration of resource synchronization and preemption-thresholds into EDF-based mixed-criticality scheduling algorithm

机译:将资源同步和抢占阈值集成到基于EDF的混合关键性调度算法中

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In mixed-criticality systems, multiple subsystems with different levels of criticality may co-exist on the same hardware platform. Many scheduling algorithms have been proposed to achieve certification at multiple levels of criticality. However, current MCS algorithms and analysis techniques generally assume tasks are independent, i.e., they do not share data that need to be protected with synchronization mechanisms like mutexes or semaphores. In this paper, we address this limitation by presenting an extension to the Stack Resource Protocol (SRP), called Mixed-Criticality-SRP (MC-SRP). Moreover, preemption-threshold scheduling is a well-known technique for reducing stack space size and enhance schedulability in resource-constrained embedded systems.We also present the integration of preemption-thresholds into EDF-based mixed-criticality scheduling (MCS) algorithms, and develop the schedulability analysis methods to such systems.
机译:在混合关键性系统中,具有不同关键性级别的多个子系统可以共存于同一硬件平台上。已经提出了许多调度算法来实现多个关键级别的认证。但是,当前的MCS算法和分析技术通常假定任务是独立的,即它们不共享需要使用互斥量或信号量之类的同步机制保护的数据。在本文中,我们通过提出一种称为混合关键性SRP(MC-SRP)的堆栈资源协议(SRP)扩展来解决此限制。此外,抢占阈值调度是一种在资源受限的嵌入式系统中减少堆栈空间大小并增强可调度性的众所周知的技术。我们还提出了抢占阈值与基于EDF的混合关键性调度(MCS)算法的集成,以及开发此类系统的可调度性分析方法。

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