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Implementation and Analysis of a New Selection Strategy for Adaptive Routing in Networks-on-Chip

机译:片上网络自适应路由选择新策略的实现与分析

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Efficient and deadlock-free routing is critical to the performance of networks-on-chip. The effectiveness of any adaptive routing algorithm strongly depends on the underlying selection strategy. A selection function is used to select the output channel where the packet will be forwarded on. In this paper we present a novel selection strategy that can be coupled with any adaptive routing algorithm. The proposed selection strategy is based on the concept of Neighbors-on-Path the aims of which is to exploit the situations of indecision occurring when the routing function returns several admissible output channels. The overall objective is to choose the channel that will allow the packet to be routed to its destination along a path that is as free as possible of congested nodes. Performance evaluation is carried out by using a flit-accurate simulator under traffic scenarios generated by both synthetic and real applications. Results obtained show how the proposed selection strategy applied to the Odd-Even routing algorithm yields an improvement in both average delay and saturation point up to 20% and 30% on average respectively, with a minimal overhead in terms of area occupation. In addition, a positive effect on total energy consumption is also observed under near-congestion packet injection rates.
机译:高效且无死锁的路由对于片上网络的性能至关重要。任何自适应路由算法的有效性在很大程度上取决于基础选择策略。选择功能用于选择要转发数据包的输出通道。在本文中,我们提出了一种可以与任何自适应路由算法结合的新颖选择策略。所提出的选择策略基于路径邻居的概念,其目的是利用路由功能返回几个允许的输出通道时发生不确定性的情况。总体目标是选择允许数据包沿着尽可能少的拥塞节点路径路由到其目的地的通道。在合成和实际应用程序生成的流量情况下,使用精度精确的模拟器进行性能评估。获得的结果表明,将拟议的选择策略应用于奇偶路由算法,如何平均延迟和饱和点分别平均提高20%和30%,而在占用面积方面的开销却最小。此外,在接近拥塞的小包注入速率下,还观察到了对总能耗的积极影响。

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