多处理机系统全局调度分析的MARTE扩展

A. Magdich, Y. H. Kacem, A. Mahfoudhi, M. Abid
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引用次数: 11

摘要

实时系统受到软/硬时间约束。此外,任务调度步骤需要满足最大的截止日期,为此有不同的调度算法。然而,当今实时系统由于其日益增长的复杂性而成为全球工业的一个严重问题。事实上,由于它们更容易受到发展失败和不足的影响,因此依靠高水平的发展方法是至关重要的。在这种背景下,一些研究人员提出了在新的实时和嵌入式系统建模与分析(MARTE)中进行调度分析,该系统支持单处理器和多处理器调度算法。虽然支持的多处理器调度算法是分区方法的一部分,但全局方法算法尚未得到MARTE的支持。在本文中,我们试图改进MARTE刻板印象的元模型,以建立全局方法的调度分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A MARTE Extension for Global Scheduling Analysis of Multiprocessor Systems
Real-Time Systems are subject to Soft/Hard temporal constraints. Besides, a tasks scheduling step is required to meet the maximum of deadlines, for which there are different scheduling algorithms to do. However, nowadays real-time systems represent a serious issue for the worldwide industry due to their growing complexity. Indeed, since they are more susceptible to failures and deficiencies of development, it is crucial to rely on high level development methods. In this context, some researchers have proposed scheduling analysis within the new profile Modeling and Analysis of Real-Time and Embedded systems (MARTE), which supports both monoprocessor and multiprocessor scheduling algorithms. While supported multiprocessor scheduling algorithms are part of the partitioned approach, global approach algorithms have not been backed by MARTE yet. In the present paper, we seek to improve the meta-models of MARTE stereotypes to establish scheduling analysis for the global approach.
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