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Implementation and Analysis of History-Based Output Channel Selection Strategies for Adaptive Routers in Mesh NoCs

机译:Mesh NoC中自适应路由器基于历史的输出通道选择策略的实现与分析

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摘要

The efficiency and effectiveness of an adaptive router in an NoC-based multicore system is evaluated by the performance it achieves under varying inter-core communication traffic. A well-designed selection strategy plays an important role in an adaptive router to act upon dynamic traffic variations. The effectiveness of a selection strategy depends on what metric is used to represent congestion, how precisely this metric captures the actual congestion, and how much cost is involved in capturing the congestion on a real-time scale. Congestion is formed over a period of time due to cumulative and chain reaction effects. We propose novel history-based selection strategies that could be used with any adaptive, deadlock-free, minimal routing in mesh NoCs. Buffer occupancy time and rate of flit flow across reachable ports of neighboring routers in the recent past are captured, propagated, and maintained in a cost-effective way to compute the selection metric. Experimental results on real and synthetic workloads show that our proposed selection strategies significantly outperform state-of-the-art techniques.
机译:在基于NoC的多核系统中,自适应路由器的效率和有效性通过在变化的核间通信流量下实现的性能进行评估。精心设计的选择策略在自适应路由器中起着重要作用,以应对动态流量变化。选择策略的有效性取决于用于表示拥塞的度量标准,该度量标准捕获实际拥塞的精确程度以及在实时规模上捕获拥塞所涉及的成本。由于累积和连锁反应的影响,在一段时间内会形成拥塞。我们提出了基于历史的新颖选择策略,该策略可与网格NoC中的任何自适应,无死锁,最小路由一起使用。最近,缓冲区占用时间和跨相邻路由器可访问端口的数据流速率被捕获,传播和维护,以节省成本的方式来计算选择指标。在实际和合成工作负载上的实验结果表明,我们提出的选择策略明显优于最新技术。

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