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Multi-Application Mapping onto a Switch-Based Reconfigurable Network-on-Chip Architecture

机译:多应用程序映射到基于交换机的可重配置片上网络体系结构

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This paper presents a reconfigurable architecture for Network-on-Chip (NoC) design based on configuration switches. Reconfiguration is achieved by varying connection pattern between routers, depending on the currently running application. Mapping and reconfiguration strategies have been developed for the proposed architecture. In the mapping phase, cores in the combined application set are mapped to individual routers, minimizing the overall communication cost. In the second phase, for each application, configuration information for the switches (between the routers) are generated to optimize the communication cost further to suit the corresponding application. Exact methods, based on Integer Linear Programming (ILP), have been proposed for both the phases. Since ILP takes a large amount of CPU time, Particle Swarm Optimization (PSO)-based approaches have also been developed. The architecture and mapping strategies have been evaluated against benchmarks, considering communication cost, throughput, latency and network energy before and after reconfiguration. Significant improvements could be achieved via reconfiguration. Compared to the approaches reported in the literature, communication cost, throughput, latency and energy consumption values improve by 23.4%, 4%, 3% and 7%, respectively. These improvements come at a nominal increase in area overhead of 0.07%.
机译:本文提出了一种基于配置开关的片上网络(NoC)设计的可重新配置体系结构。根据当前运行的应用程序,通过改变路由器之间的连接模式来实现重新配置。已经针对所提议的体系结构开发了映射和重新配置策略。在映射阶段,将组合应用程序集中的核心映射到各个路由器,从而将总体通信成本降至最低。在第二阶段,对于每个应用程序,将生成用于交换机(路由器之间)的配置信息,以进一步优化通信成本,以适应相应的应用程序。已经针对这两个阶段提出了基于整数线性规划(ILP)的精确方法。由于ILP占用大量CPU时间,因此还开发了基于粒子群优化(PSO)的方法。已根据基准评估了体系结构和映射策略,并考虑了重新配置前后的通信成本,吞吐量,延迟和网络能量。通过重新配置可以实现重大改进。与文献中报道的方法相比,通信成本,吞吐量,等待时间和能耗值分别提高了23.4%,4%,3%和7%。这些改进的名义上是面积开销增加了0.07%。

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