自适应TDMA总线分配和弹性调度:一种增强多核RT系统鲁棒性的统一方法

P. Burgio, M. Ruggiero, Francesco Esposito, Mauro Marinoni, G. Buttazzo, L. Benini
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引用次数: 13

摘要

下一代实时系统将越来越多地基于异构MPSoC设计范式,其中可预测性和性能将是需要处理的关键问题。这些问题可以在硬件级别(通过嵌入TDMA总线等技术)和操作系统级别(适当的调度技术可以提高性能并降低能耗)解决。其中,弹性调度通过在运行时动态减少任务周期,以确保处理器的最高利用率,已被证明可以提供令人满意的结果。另一方面,弹性调度降低了可预测性,并增加了系统级分析的复杂性。这降低了TDMA总线提供的好处,TDMA总线依赖于高级任务分析来实现健壮和有效的插槽分配。从这个角度出发,我们提出了一个弹性调度和TDMA总线协同工作的系统。我们引入了一种qos感知自适应总线服务,它利用了这两种技术的优点,同时减轻了它们的缺点。我们展示了协调操作所带来的开销是如何的小,然而它是由整体策略在性能和可预测性保证方面的好处所主导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive TDMA bus allocation and elastic scheduling: A unified approach for enhancing robustness in multi-core RT systems
Next-generation real-time systems will be increasingly based on heterogeneous MPSoC design paradigms, where predictability and performance will be key issues to deal with. Such issues can be tackled both at the hardware level, by embedding technologies such as TDMA busses, and at the OS level, where suitable scheduling techniques can improve performance and reduce energy consumption. Among these, elastic scheduling has been proved to provide satisfactory results by dynamically reducing task periods at run-time to ensure the highest utilization possible of the processors. On the other hand, elastic scheduling lowers the degree of predictability and increases the complexity of the analysis at the system level. This reduces the benefits given by the TDMA bus, which relies on the high level task analysis for a robust and efficient slot allocation. Starting from this consideration, we propose a system where the elastic scheduling and the TDMA bus work synergistically. We introduce a QoS-aware adaptive bus service which takes the best of both techniques, mitigating their drawbacks at the same time. We show how the overhead introduced by coordination action is small, and it is however dominated by the benefits of the overall strategy in terms of performance and predictability guarantees.
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