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Reconfigurable topology synthesis for application-specific NoC on partially dynamically reconfigurable systems

机译:在部分动态可重新配置系统上可重新配置拓扑合成的应用专用NOC

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摘要

In this paper, a four-stage method for synthesizing reconfigurable ASNoC topology is proposed for partially dynamically reconfigurable systems, where the topology is reconfigured dynamically at run-time along with the application's execution. Firstly, a simulated annealing based topology-aware integrated optimization framework is proposed to generate the proper schedule and floorplan of task modules. Secondly, based on the schedule and floorplan of task modules, an Integer Linear Programming (ILP)-based method and a heuristic method, are proposed to partition the communication requirements of the application into T time intervals. Thirdly, we explore the proper positions of switches in the floorplan for global communications. Finally, considering the reconfiguration costs between adjacent time intervals, the routing path allocation problem is solved for time intervals in an iterative procedure to generate fine-grained dynamically reconfigurable ASNoC topologies. Experimental results show that, compared to the random partition of communication requirements, the proposed heuristic method and ILP-based method can achieve 5.4% and 10.0% power consumption improvement, respectively. And, the reconfigurable ASNoC can achieve 31.6% power consumption improvement when compared with static ASNoC.
机译:在本文中,提出了一种用于合成可重构ASNOC拓扑的四阶段方法,用于部分动态可重新配置系统,其中拓扑在运行时动态重新配置以及应用程序的执行。首先,提出了一种基于模拟的基于退火的拓扑知识的集成优化框架,以生成任务模块的适当时间表和平面图。其次,基于任务模块的计划和平面图,建议将整数线性编程(ILP)的方法和启发式方法分区以将应用程序的通信要求分区为T时间间隔。第三,我们探索了用于全球通信的平面图中的交换机的适当位置。最后,考虑到相邻时间间隔之间的重新配置成本,为迭代过程中的时间间隔解决了路由路径分配问题,以生成细粒度动态可重新配置的ASNOC拓扑。实验结果表明,与通信要求的随机分区相比,所提出的启发式方法和基于ILP的方法可以分别达到5.4%和10.0%的功耗改善。并且,与静态Asnoc相比,可重新配置的Asnoc可以达到31.6%的功耗改善。

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