基于组件的软实时系统的反馈调度框架

N. Khalilzad, Fanxin Kong, Xue Liu, M. Behnam, Thomas Nolte
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引用次数: 2

摘要

具有实时需求的基于组件的软件系统通常使用处理器预留技术进行调度。这类技术主要是围绕硬实时系统发展起来的,在硬实时系统中,预留区会考虑最坏情况下的资源需求。在软实时系统中,基于最坏情况的需求来预留处理器会导致不必要的过度分配。在本文中,针对运行在多处理器平台上的软实时系统,我们重点研究了在运行期间处理器需求变化的组件。我们提出了一个反馈调度框架,其中处理器预留用于调度组件。预留带宽和预留周期采用MIMO LQR控制器进行调整。我们提供了一种分配机制,用于在处理器上分配组件。提出的框架在TrueTime仿真工具中实现,用于系统识别。我们使用一个案例研究来调查我们的框架在仿真工具中的性能。最后,在Linux内核中实现了该框架,进行了实际评估。评估结果表明,该框架可以在运行时有效地调整保留参数,并且可以忽略开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A feedback scheduling framework for component-based soft real-time systems
Component-based software systems with real-time requirements are often scheduled using processor reservation techniques. Such techniques have mainly evolved around hard real-time systems in which worst-case resource demands are considered for the reservations. In soft real-time systems, reserv- ing the processors based on the worst-case demands results in unnecessary over-allocations. In this paper, targeting soft real-time systems running on multiprocessor platforms, we focus on components for which processor demand varies during run-time. We propose a feedback scheduling framework where processor reservations are used for scheduling components. The reservation bandwidths as well as the reservation periods are adapted using MIMO LQR controllers. We provide an allocation mechanism for distributing components over processors. The proposed framework is implemented in the TrueTime simulation tool for system identification. We use a case study to investigate the performance of our framework in the simulation tool. Finally, the framework is implemented in the Linux kernel for practical evaluations. The evaluation results suggest that the framework can efficiently adapt the reservation parameters during run-time by imposing negligible overhead.
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