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Mapping and Physical Planning of Networks-on-Chip Architectures with Quality-of-Service Guarantees

机译:具有服务质量保证的片上网络体系结构的映射和物理规划

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摘要

Networks on Chips (NoCs) have evolved as the communication design paradigm of future Systems on Chips (SoCs). In this work we target the NoC design of complex SoCs with heterogeneous processor/memory cores, providing Quality-of-Service (QoS) for the applicaion. We present an integrated approach to mapping of cores onto NoC topologies and physical planning of NoCs, where the position and size of the cores and network components are computed. Our design methodology automates NoC mapping, physical planning, topology selection, topology optimization and instantiation, bridging an important design gap in building application specific NoCs. We also present a methodology to guarantee QoS for the application during the mapping-physical planning process by satisfying the delay/jitter constraints and real-time constraints of the traffic streams. Experimental studies show large area savings (up to 2x), bandwidth savings (up to 5x) and network component savings (up to 2.2x in buffer count, 3.8x in number of wires, 1.6x in switch ports) compared to traditional design approaches.
机译:片上网络(NoC)已经发展成为未来片上系统(SoC)的通信设计范例。在这项工作中,我们针对具有异构处理器/内存内核的复杂SoC的NoC设计,为应用程序提供服务质量(QoS)。我们提出了一种将核心映射到NoC拓扑以及对NoC进行物理规划的集成方法,其中计算了核心和网络组件的位置和大小。我们的设计方法可自动执行NoC映射,物理规划,拓扑选择,拓扑优化和实例化,弥合了构建特定于应用NoC的重要设计差距。我们还提出了一种方法,可通过满足流量流的延迟/抖动约束和实时约束,在映射物理规划过程中保证应用程序的QoS。实验研究表明,与传统设计方法相比,可节省大量面积(最多2倍),节省带宽(最多5倍)和节省网络组件(最多可节省2.2倍的缓冲区数量,3.8倍的电线数量,1.6倍的交换机端口) 。

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