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An Offline Method for Designing Adaptive Routing Based on Pressure Model

机译:基于压力模型的离线自适应路由设计方法

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摘要

As a scalable substitute of on-chip bus, network-on-chip (NoC) is proposed as the communication infrastructure in modern multi/many-core system-on-chip (SoC). Efficient communication in NoC is critical to the overall SoC performance. Although local congestion has an important impact on communication delay, it is barely taken into account when designing routing algorithms. In this paper, we propose an offline methodology of designing routing algorithm based on channel pressure model to address the local congestion issue. Specifically, the proposed methodology uses divide-conquer with the aim of generating high performance routing algorithms, which are able to balance the load over the network with a consequent reduction of local congestion. By using the proposed methodology, the obtained routing could achieve up to 37% performance improvement (in terms of average communication delay) as compared to the well-known odd-even routing algorithm for network.
机译:作为片上总线的可扩展替代品,片上网络(NoC)被提出作为现代多/多核片上系统(SoC)中的通信基础结构。 NoC中的有效通信对于整个SoC性能至关重要。尽管局部拥塞对通信延迟有重要影响,但是在设计路由算法时几乎没有考虑到它。本文提出了一种基于信道压力模型设计路由算法的离线方法,以解决本地拥塞问题。具体而言,所提出的方法使用分治法,目的是生成高性能路由算法,该算法能够平衡网络上的负载并因此减少本地拥塞。与网络中众所周知的奇偶路由算法相比,通过使用所提出的方法,所获得的路由可以实现高达37%的性能提升(就平均通信延迟而言)。

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