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A Fast Online Task Placement Algorithm for Three-Dimensional Dynamic Partial Reconfigurable Devices

机译:三维动态部分可重新配置设备快速在线任务放置算法

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摘要

Three-dimensional (3D) integration technology provides a great opportunity for reconfigurable devices to increase device performance. Nevertheless, there is no efficient data structure and task placement algorithm to manage 3D dynamic partial reconfigurable (DPR) resources in literature. Inefficient algorithms limit the performance of 3D DPR devices. This study addresses the issue of the 3D task placement problem via a novel data structure named Maximal Empty Cuboid (MEC) list, which is proposed to manage the unoccupied space on the 3D DPR device. No matter if a task is assigned or removed on the device, the MEC list is updated in real-time to record 3D unoccupied resources so that the online task placement can be executed in a shorter time. Experiments are carried out to evaluate the performance of the proposed task placement algorithm, and results demonstrate that the proposed algorithm can make a reduction of at least 39% in terms of the task rejection ratio verifying the algorithm's efficiency.
机译:三维(3D)集成技术为可重新配置设备提供了一个很好的机会,以提高设备性能。然而,没有有效的数据结构和任务放置算法来管理文献中的3D动态部分可重新配置(DPR)资源。效率低下算法限制了3D DPR设备的性能。本研究通过名为Maximal空型(MEC)列表的新型数据结构来解决3D任务放置问题的问题,该列表被建议管理3D DPR设备上的未占用空间。无论如果在设备上分配或删除任务,MEC列表都是实时更新的,以便记录3D不占用的资源,以便在较短的时间内可以执行在线任务放置。进行实验以评估所提出的任务放置算法的性能,结果表明,所提出的算法可以减少至少39%的任务抑制比验证算法的效率。

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