Isolated Routing Algorithm without Virtual Channels for Network-on-Chip

Ruilian Xie, Jiye Jiao, Youyao Liu · Journal of Computer-Aided Design & Computer Graphics · 2021

Subnet isolation method is very important to solve the traffic interference when a large number of applications execute concurrently for network-on-chip (NoC) based many-core processor. Aiming at the problem that the state-of-the-art subnet isolation routing algorithms are only suitable for some specific types of irregular topological subnets, which reduce the utilization of the on-chip system, a topology model of irregular subnets is presented, and a low-cost isolation routing algorithm (LIRA) is proposed without virtual channels based on the odd-even turn model. LIRA employs the dimensional routing algorithm to transmit packets, until the boundaries of the irregular topological subnets destroy the minimal routing path. Then, LIRA adopts two modes of north-south boundary routing and east-west boundary routing to transmit packets. Experimental results on both synthetic traffic patterns and application traces show that LIRA improves the utilization of the system without decreasing the network performance.

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