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Explorations of Honeycomb Topologies for Network-on-Chip

机译:网络上蜂窝状拓扑探索

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Rectangular mesh and torus are the mostly used topologies in network-on-chip (NoC) based systems. In this paper, we quantitatively illustrate that the honeycomb topology is an advantageous design alternative in terms of network cost which is one of the most important parameters that reflects both network performance and implementation cost. Comparing with the rectangular mesh and torus, honeycomb mesh and torus topologies lead to 40% decrease of the network cost. Then we explore the NoC related topological properties of both honeycomb mesh and torus topologies. By transforming the honeycomb topologies into rectangular brick shapes, we demonstrate that the honeycomb topologies are feasible to be implemented with rectangular devices. We also propose a 3D honeycomb topology since 3D IC has become an emerging and promising technique. Another contribution of this paper is the proposal of deadlock free routing algorithms. Based on either the concept of turn model or the logical network, deadlock free routing for all the discussed honeycomb topologies can be achieved.
机译:矩形网格和环形是基于网络(NOC)的系统中主要使用的拓扑。在本文中,我们定量说明了蜂窝拓扑是一种有利的设计替代方面,该网络成本是反映网络性能和实现成本的最重要参数之一。与矩形网格和圆环相比,蜂窝网格和托伦拓扑导致网络成本降低40%。然后我们探索蜂窝网格和圆环拓扑的NOC相关拓扑特性。通过将蜂窝拓扑转化为矩形砖形状,我们证明蜂窝拓扑是可行的,可以用矩形器件实现。我们还提出了一种3D蜂窝拓扑,因为3D IC已成为新兴和有希望的技术。本文的另一个贡献是僵局自由路由算法的提议。基于转向模型或逻辑网络的概念,可以实现所有讨论的蜂窝拓扑的死锁免费路由。

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