单调性和运行时调度

M. Wiggers, M. Bekooij, G. Smit
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引用次数: 43

摘要

现代嵌入式多处理器可以同时执行多个流处理应用程序。通常,这些应用程序被划分为多个任务,这些任务通过缓冲区进行通信,共同形成一个任务图。这些应用程序是由用户启动和停止的,再加上并非所有应用程序都必须完全被描述,这使得使用运行时调度变得很有吸引力。我们定义并描述了一类预算调度程序,通过构造约束来自其他应用程序的干扰。此外,我们将展示这些调度器的最坏情况影响可以包含在数据流处理网络中。所得到的数据流处理网络的执行结果显示,在循环真模拟器上执行任务图的端到端时间行为上有严格和保守的界限。考虑到应用程序的任务间同步支持功能确定的数据流模型,这就可以在高层次抽象上探索各种缓冲区容量和调度器设置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monotonicity and run-time scheduling
Modern embedded multi-processors can execute several stream-processing applications concurrently. Typically, these applications are partitioned into tasks that communicate over buffers together forming a task graph. The fact that these applications are started and stopped by the user combined with the knowledge that not all applications are necessarily completely characterised makes it attractive to use run-time scheduling. We define and characterise a class of budget schedulers that by construction bound the interference from other applications. Furthermore, we will show that the worst-case effects of these schedulers can be included in dataflow process networks. The execution of the resulting dataflow process network is shown to result in tight and conservative bounds on the end-to-end temporal behaviour of the execution of the task graph on a cycle-true simulator. Given that the inter-task synchronisation of the application allows for a dataflow model that is functionally deterministic, this enables exploration of various buffer capacities and scheduler settings at a high level of abstraction.
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