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Traffic steering between a low-latency unswitched TL ring and a high-throughput switched on-chip interconnect

机译:低延迟未交换TL环和高吞吐量交换片上互连之间的流量控制

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Growth in core count creates an increasing demand for interconnect bandwidth, driving a change from shared buses to packet-switched on-chip interconnects. However, this increases the latency between cores separated by many links and switches. In this paper, we show that a low-latency unswitched interconnect built with transmission lines can be synergistically used with a high-throughput switched interconnect. First, we design a broadcast ring as a chain of unidirectional transmission line structures with very low latency but limited throughput. Then, we create a new adaptive packet steering policy that judiciously uses the limited throughput of this ring by balancing expected latency benefit and ring utilization. Although the ring uses 1.3% of the on-chip metal area, our experimental results show that, in combination with our steering, it provides an execution time reduction of 12.4% over a mesh-only baseline.
机译:核心数量的增长导致对互连带宽的需求不断增加,从而推动了从共享总线到分组交换片上互连的转变。但是,这增加了由许多链路和交换机分隔的核心之间的等待时间。在本文中,我们展示了使用传输线构建的低延迟未交换互连可以与高吞吐量交换互连协同使用。首先,我们将广播环设计为单链传输线结构链,具有极低的延迟,但吞吐量有限。然后,我们创建一个新的自适应数据包导向策略,该策略通过平衡预期的等待时间收益和环利用率来明智地使用该环的有限吞吐量。尽管该环使用了片上金属面积的1.3%,但我们的实验结果表明,与我们的操纵技术相结合,与仅基于网格的基准相比,它的执行时间减少了12.4%。

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