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Application-Driven End-to-End Traffic Predictions for Low Power NoC Design

机译:低功耗NoC设计的应用驱动端到端流量预测

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As chip multiprocessors keep increasing the number of cores on the chip, the network-on-chip (NoC) technology is becoming essential for interconnecting the cores. While NoCs result in noticeable performance boost over conventional bus systems, they consume a non-negligible fraction of the system power. One promising solution is to dynamically adjust the working frequencies/voltages of the switches as well as the links between switches in the NoC to match the traffic flows. The question is when to adjust and by how much. Most previous works take a passive approach by reacting to fluctuations in local traffic flows. Unfortunately, this approach may be too slow and too conservative in adjusting the working frequencies/voltages. Since applications often exhibit periodic behaviors, we propose a hardware mechanism to proactively adjust the frequencies/voltages of switches and/or links in NoC by predicting the application runtime traffic. The evaluations show that our design achieves 86% dynamic power savings of the links in the on-chip network, and the resulting overheads from mispredictions are tolerable.
机译:随着芯片多处理器不断增加芯片上内核的数量,片上网络(NoC)技术对于互连内核变得至关重要。尽管NoC比传统的总线系统具有显着的性能提升,但它们消耗的系统功率却微不足道。一种有前途的解决方案是动态调整交换机的工作频率/电压以及NoC中交换机之间的链路以匹配流量。问题是何时调整以及调整多少。以前的大多数工作都是通过对本地交通流量的波动做出反应而采取被动方式。不幸的是,这种方法在调整工作频率/电压时可能太慢且太保守。由于应用程序经常表现出周期性行为,因此我们提出了一种硬件机制,通过预测应用程序运行时流量来主动调整NoC中的开关和/或链路的频率/电压。评估表明,我们的设计可以使片上网络中的链路实现86%的动态功耗节省,并且因错误预测而导致的开销是可以容忍的。

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