嵌入式分布式系统中复杂实时任务的调度

L. Maillet, C. Fraboul
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引用次数: 3

摘要

目前大多数实时调度算法都是独立于其他资源分配处理单元。其中一些集成了处理单元和被动资源分配以避免死锁或数据一致性失败,但所提出的机制通常依赖于对共享控制变量(例如信号量)的访问,并且主要在单处理器环境中实现。此外,它们广泛地使用了过度保留,这降低了整个系统的不可用性。嵌入式实时系统通常需要一个分布式体系结构,因为它具有灵活性和可伸缩性,并且需要一个更复杂的任务模型:实时任务必须能够通信、同步和访问分布式资源。我们提出了分布式本地监视器之间的协作机制,允许处理单元分配、任务间通信同步和资源分配之间的协调。本文概述了由此产生的监控体系结构的主要特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scheduling complex real-time tasks in an embedded distributed system
Most current real time scheduling algorithms allocate the processing unit independently of other resources. Some of them integrate processing unit and passive resource allocation to avoid deadlocks or data coherency failures, but the proposed mechanisms often rely on the access to shared control variables (e.g. semaphores) and have been mainly implemented in monoprocessor contexts. Moreover, they use over reservation extensively, which reduces overall system disponibility. Embedded real time systems often require a distributed architecture for flexibility and disponibility reasons and a more complex task model: real time tasks must be able to communicate, synchronize, and access distributed resources. We propose cooperation mechanisms between distributed local monitors that allow coordination between processing unit allocation, intertask communication synchronization, and resource allocation. The paper outlines the main characteristics of the resulting monitor architecture.
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