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Supporting Soft Real-Time Sporadic Task Systems on Uniform Heterogeneous Multiprocessors with No Utilization Loss

机译:在没有利用率损失的统一异构多处理器上支持软实时零星任务系统

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Uniform heterogeneous multicore architectures are becoming increasingly popular due to their potential of achieving high performance and energy efficiency compared to the homogeneous multicore architectures. In such systems, the real-time scheduling problem becomes more challenging because processors have different speeds. Prior research on uniform heterogeneous multiprocessor real-time scheduling has focused on hard real-time systems, where, significant processing capacity may have to be sacrificed in the worst-case to ensure that all deadlines are met. As meeting hard deadlines is overkill for many soft real-time systems in practice, this paper shows that on soft real-time uniform heterogeneous multiprocessors, bounded response times can be ensured for globally-scheduled sporadic task systems with no utilization loss. A GEDF-based scheduling algorithm, named as GEDF-H, is presented and response time bounds are established under both preemptive and non-preemptive GEDF-H scheduling. Extensive experiments show that the magnitude of the derived response time bound is reasonable, often smaller than four task relative deadlines. To the best of our knowledge, this paper is the first to show that soft real-time sporadic task systems can be supported on uniform heterogeneous multiprocessors without utilization loss under global scheduling, and with reasonable predicted response times.
机译:统一异构多核体系结构由于与同类多核体系结构相比具有实现高性能和高能效的潜力而变得越来越流行。在这样的系统中,实时调度问题变得更具挑战性,因为处理器具有不同的速度。以前关于统一异构多处理器实时调度的研究主要集中在硬实时系统上,在这种情况下,在最坏的情况下可能必须牺牲大量处理能力以确保满足所有期限。由于在实践中,对于许多软实时系统而言,满足严格的截止日期是过高的,因此,本文表明,在软实时统一异构多处理器上,可以确保全局调度的零星任务系统的响应时间有限,而没有使用率损失。提出了一种基于GEDF的调度算法GEDF-H,并建立了抢占式和非抢占式GEDF-H调度的响应时间范围。大量实验表明,得出的响应时间范围的大小是合理的,通常小于四个任务的相对期限。就我们所知,本文是第一个表明可以在统一的异构多处理器上支持软实时零星任务系统的示例,该任务不会在全局调度下造成利用率损失,并且具有合理的预测响应时间。

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