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NoC with Near-Ideal Express Virtual Channels Using Global-Line Communication

机译:使用全局线通信,NOC与近乎理想的快递虚拟频道

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As processor core counts increase, networks-on-chip (NoCs) are becoming an increasingly popular interconnection fabric due to their ability to supply high bandwidth. However, NoCs need to deliver this high bandwidth at low latencies, while keeping within a tight power envelope. In this paper, we present a novel NoC with hybrid interconnect that leverages multiple types of interconnects-specifically, conventional full-swing short-range wires for the datapath, in conjunction with low-swing, multi-drop wires with long-range, ultra-low-latency communication for the flow control signals. We show how this proposed system can be used to overcome key limitations of express virtual channels (EVC), a recently proposed flow control technique that allows packets to bypass intermediate routers to simultaneously improve energy-delay-throughput. Our preliminary results show up to a 8.2% reduction in power and up to a 44% improvement in latency under heavy load compared to the original EVC design that only uses the conventional full-swing interconnects.
机译:由于处理器核心计数增加,由于其提供高带宽的能力,片上芯片(NOCS)正在成为越来越流行的互连结构。但是,NOCS需要在低延迟的情况下提供这种高带宽,同时保持在紧密的电源包络内。在本文中,我们介绍了一种具有混合互连的新型NOC,其利用多种类型的互连 - 具体而言,用于DataPath的传统的全面全面的短距线线,与低摆动,多滴电线,长范围,超 - 流控制信号的延迟通信。我们展示了该提出的系统如何用于克服快递虚拟通道(EVC)的关键限制,最近提出的流量控制技术,允许数据包绕过中间路由器,同时提高能量延迟吞吐量。与原始EVC设计相比,我们的初步结果显示出高载荷的功率降低8.2%,延迟延迟高达44%,只有使用传统的全面互连。

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