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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Integrated Optimization of Partitioning, Scheduling, and Floorplanning for Partially Dynamically Reconfigurable Systems
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Integrated Optimization of Partitioning, Scheduling, and Floorplanning for Partially Dynamically Reconfigurable Systems

机译:用于部分动态可重新配置系统的分区,调度和平面算法的整合优化

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Confronted with the challenge of high performance for applications and the restriction of hardware resources for field-programmable gate arrays (FPGAs), partial dynamic reconfiguration technology is anticipated to accelerate the reconfiguration process and alleviate the device shortage. In this paper, we propose an integrated optimization framework for task partitioning, scheduling, and floorplanning on partially dynamically reconfigurable FPGAs. The partition, schedule, and floorplan of the tasks are represented by the partitioned sequence triple (P-ST) (PS, QS, RS), where (PS, QS) is a hybrid nested sequence pair for representing the spatial and temporal partitions, as well as the floorplan, and RS is the partitioned dynamic configuration order of the tasks. The floorplanning and scheduling of task modules can be computed from the P-ST in O(n(2)) time. To integrate the exploration of the scheduling and floorplanning design space, we use a simulated annealing-based search engine and elaborate a perturbation method, where a randomly chosen task module is removed from the partition sequence triple and then reinserted into a proper position selected from all the O(n(3)) possible combinations of partition, schedule and floorplan. We also prove a sufficient and necessary condition for the feasibility of the partitioning of tasks and scheduling of task configurations, and derive conditions for the feasibility of the insertion points in a P-ST. The experimental results demonstrate the efficiency and effectiveness of the proposed framework.
机译:面对应用高性能的挑战以及用于现场可编程门阵列(FPGA)的硬件资源的限制,预计部分动态重新配置技术将加速重新配置过程并减轻设备短缺。在本文中,我们在部分动态可重新配置的FPGA上提出了用于任务分区,调度和平面图的集成优化框架。任务的分区,时间表和平面图由分区序列三(P-ST)(PS,QS,RS)表示,其中(PS,QS)是用于表示空间和时间分区的混合嵌套序列对,以及PlitherPlan,RS是任务的分区动态配置顺序。可以从O(n(2))时间的p-st计算任务模块的地板平面图和调度。要整合调度和平面图设计空间的探索,我们使用模拟的退火型搜索引擎并详细阐述了一种扰动方法,其中从分区序列三序中删除了随机选择的任务模块,然后重新插入从所有选定的适当位置o(n(3))分区,时间表和地板的可能组合。我们还证明了足​​够和必要的条件,以便对任务配置的任务和调度分区的可行性,以及推导P-ST中插入点的可行性的条件。实验结果表明了拟议框架的效率和有效性。

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