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Efficient On-Chip Task Scheduler and Allocator for Reconfigurable Operating Systems

机译:用于可重配置操作系统的高效片上任务计划程序和分配器

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This letter presents efficient and modular task scheduler and allocator support for dynamically and partially reconfigurable electronic systems. This enables hardware tasks to be preempted and arbitrarily placed at an optimal position on the chip on-the-fly. In particular, we present a novel fault-tolerant allocating algorithm called “best-fit empty area compact (BF-EAC),” and its on-chip implementation on a Xilinx Virtex-4 field-programmable gate array (FPGA), which circumvents emerging faults while maintaining more compact empty areas for emerging tasks. We also present an implementation of the early deadline first (EDF) scheduling heuristic used to optimize the chronological order of execution of hardware tasks to meet real time constraints. Put together, the placement and scheduling architecture efficiently exploits chip resources with a $mu$s-grade computing speed and a lightweight footprint (less than 500 slices).
机译:这封信为动态和部分可重新配置的电子系统提供了有效的模块化任务调度程序和分配器支持。这使得硬件任务可以被抢占,并且可以动态地任意放置在芯片上的最佳位置。特别是,我们提出了一种新颖的容错分配算法,称为“最佳拟合空区域紧凑(BF-EAC)”,并将其在Xilinx Virtex-4现场可编程门阵列(FPGA)上实现在芯片上,从而避免了这种情况新兴故障,同时为新兴任务保留更紧凑的空白区域。我们还提出了提前截止时间优先(EDF)调度启发式算法的实现,该算法用于优化硬件任务的执行时间顺序,以满足实时约束。总而言之,布局和调度体系结构以$μS级的计算速度和轻巧的占用空间(少于500个切片)有效地利用了芯片资源。

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