多处理器实时锁定的最优结果

Björn B. Brandenburg, James H. Anderson
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引用次数: 146

摘要

当在实时系统中使用锁定协议时,在确保时间约束时需要对阻塞时间进行限制。虽然术语“阻塞”在单处理器实时系统的上下文中很容易理解,但在多处理器的情况下并非如此。本文给出了两种适用于基于挂起的多处理器锁定协议的阻塞定义。之所以需要两个定义,是因为在现有的可调度性分析中处理挂起的方式存在差异。对于每个定义,都给出了具有渐近最优阻塞行为的锁定协议。特别地,提出了适用于任何作业级静态优先级全局调度算法或分区调度算法的协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimality Results for Multiprocessor Real-Time Locking
When locking protocols are used in real-time systems, bounds on blocking times are required when ensuring timing constraints. While the term “blocking” is well-understood in the context of uniprocessor real-time systems, the same is not true in the multiprocessor case. In this paper, two definitions of blocking are presented that are applicable to suspension-based multiprocessor locking protocols. The need for two definitions arises because of differences in how suspensions are handled in existing schedulability analysis. For each definition, locking protocols are presented that have asymptotically optimal blocking behavior. In particular, protocols are presented for any job-level static-priority global or partitioned scheduling algorithm.
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