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首页> 外文期刊>ACM Transactions on Design Automation of Electronic Systems >Spatio-Temporal Scheduling of Preemptive Real-Time Tasks on Partially Reconfigurable Systems
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Spatio-Temporal Scheduling of Preemptive Real-Time Tasks on Partially Reconfigurable Systems

机译:部分可重新配置系统上的抢先实时任务的时空调度

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摘要

Reconfigurable devices that promise to offer the twin benefits of flexibility as in general-purpose processors along with the efficiency of dedicated hardwares often provide a lucrative solution for many of today's highly complex real-time embedded systems. However, online scheduling of dynamic hard real-time tasks on such systems with efficient resource utilization in terms of both space and time poses an enormously challenging problem. We attempt to solve this problem using a combined offline-online approach. The offline component generates and stores various optional feasible placement solutions for different sub-sets of tasks that may possibly be co-mapped together. Given a set of periodic preemptive real-time tasks that requires to be executed at runtime, the online scheduler first carries out an admission control procedure and then produces a schedule, which is guaranteed to meet all timing constraints provided it is spatially feasible to place designated subsets of these tasks at specified scheduling points within a future time interval. These feasibility checks are done and actual placement solutions are obtained through a low overhead search of the statically precomputed placement solutions. Based on this approach, we have proposed a periodic preemptive real-time scheduling methodology for runtime partially reconfigurable devices. Effectiveness of the proposed strategy has been verified through simulation based experiments and we observed that the strategy achieves high resource utilization with low task rejection rates over various simulation scenarios.
机译:可以重新配置的设备,承诺提供具有普通用途处理器的灵活性的双重优势以及专用硬件的效率通常为今天的许多高度复杂的实时嵌入式系统提供了利润丰厚的解决方案。然而,在在空间和时间方面具有有效资源利用的这种系统上的动态硬实时任务的在线调度构成了极具挑战性的问题。我们试图使用组合的离线在线方法来解决这个问题。离线组件为不同的子组组件生成并存储各种可选的可行性放置解决方案,这些任务可能会被共映射在一起。给定需要在运行时执行的一组周期性抢占实时任务,在线调度器首先执行准入控制过程,然后生成一个时间表,该时间表可以保证满足所有定时约束,所以它可以在空间上可行地放置到指定的地方在未来的时间间隔内的指定调度点处的这些任务的子集。完成了这些可行性检查,通过静态预先计算的放置解决方案的低开销搜索获得实际的放置解决方案。基于这种方法,我们已经提出了针对运行时部分可重新配置设备的定期抢先实时调度方法。通过基于模拟的实验验证了所提出的策略的有效性,我们观察到该战略在各种模拟场景中实现了低的任务抑制率的资源利用率。

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