$,times,$ 8 mesh network-on-chip (NoC) is presented that uses both new architectural and circuit design techniques to impr'/> SWIFT: A Low-Power Network-On-Chip Implementing the Token Flow Control Router Architecture With Swing-Reduced Interconnects
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SWIFT: A Low-Power Network-On-Chip Implementing the Token Flow Control Router Architecture With Swing-Reduced Interconnects

机译:SWIFT:一种低功耗片上网络,可通过减少摆幅的互连实现令牌流控制路由器架构

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摘要

A 64-bit, 8$,times,$ 8 mesh network-on-chip (NoC) is presented that uses both new architectural and circuit design techniques to improve on-chip network energy-efficiency, latency, and throughput. First, we propose token flow control, which enables bypassing of flit buffering in routers, thereby reducing buffer size and their power consumption. We also incorporate reduced-swing signaling in on-chip links and crossbars to minimize datapath interconnect energy. The 64-node NoC is experimentally validated with a 2$,times,$2 test chip in 90 nm, 1.2 V CMOS that incorporates traffic generators to emulate the traffic of the full network. Compared with a fully synthesized baseline 8$,times,$8 NoC architecture designed to meet the same peak throughput, the fabricated prototype reduces network latency by 20% under uniform random traffic, when both networks are run at their maximum operating frequencies. When operated at the same frequencies, the SWIFT NoC reduces network power by 38% and 25% at saturation and low loads, respectively.
机译:提出了使用8位网格的8位片上网络(64位),8位 $,times,$ 新的体系结构和电路设计技术,可提高片上网络的能源效率,延迟和吞吐量。首先,我们提出令牌流控制,它可以绕过路由器中的flit缓冲,从而减小缓冲区大小和降低功耗。我们还在片上链路和交叉开关中集成了减少摆幅的信令,以最大程度地减少数据路径互连的能量。 64节点NoC已通过2 $,times,$ 2测试芯片在90 nm,1.2 V CMOS上进行实验验证集成了流量生成器以模拟整个网络的流量。与完全合成的基线8 $,times,$ 8旨在满足相同峰值吞吐量的NoC架构相比,制造的原型当两个网络均以其最大工作频率运行时,在均匀的随机流量下可以将网络延迟降低20%。当以相同的频率运行时,SWIFT NoC在饱和和低负载下分别将网络功率降低38%和25%。

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