具有动态作业组合的硬实时流的多处理器资源分配

Orlando Moreira, J. Mol, M. Bekooij, J. V. Meerbergen
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引用次数: 2

摘要

可以同时运行多个硬实时(HRT)作业的嵌入式多处理器必须保证有足够的资源来满足时间限制。应用程序模型和硬件都必须针对这一目标进行定制。此外,还需要适当的资源分配和调度。本文提出了一种为HRT流应用提供保障的资源分配器。因为新作业在操作期间到达,所以资源分配是在运行时执行的。这提供了准入控制。资源预算执行由本地调度器处理。我们将资源分配问题形式化,并证明它是np完全的。我们开发了启发式方法来在运行时解决问题并对其进行评估。一种改进的第一拟合向量装箱算法提供了很好的解决方案;它可以分配95%的资源,同时在一个负载沉重的系统上处理大量的工作到达和离开。
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Multiprocessor resource allocation for hard-real-time streaming with a dynamic job-mix
An embedded multiprocessor that can run multiple hard-real-time (HRT) jobs simultaneously has to guarantee that enough resources are available to meet the timing constraints. It is essential that both application model and hardware be tailored to this goal. Moreover, suitable resource allocation and scheduling are needed. This paper proposes a resource allocator that gives guarantees for HRT streaming applications. Because new jobs arrive during operation, resource allocation is performed at run-time. This provides admission control. Resource budget enforcement is handled by local schedulers. We formalize our resource allocation problem and show that it is NP-complete. We developed heuristics to tackle the problem during runtime and evaluated them. A modified First-fit Vector Bin-Packing algorithm provides a good solution; it can allocate 95% of the resources, while handling a large number of job arrivals and departures on a heavily loaded system.
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