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A novel non-minimal/minimal turn model for highly adaptive routing in 2D NoCs

机译:一种新颖的非最小/最小转弯模型,用于二维NoC中的高度自适应路由

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Networks-on-Chip (NoCs) are emerging as a promising communication paradigm to overcome bottleneck of traditional bus-based interconnects for current micro-architectures (MCSoC and CMP). One of the current issues in NoC routing is the use of acyclic Channel Dependency Graph (CDG) for deadlock freedom. This requirement forces certain routing turns to be prohibited, thus, reducing the degree of adaptiveness. In this paper, we propose a novel non-minimal turn model which allows cycles in CDG provided that Extended Channel Dependency Graph (ECDG) remains acyclic. The proposed turn model reduces number of restrictions on routing turns, hence able to provide path diversity through additional minimal and non-minimal routes between source and destination.
机译:片上网络(NoC)逐渐成为一种有希望的通信范例,可以克服当前微体系结构(MCSoC和CMP)的传统基于总线的互连的瓶颈。 NoC路由中的当前问题之一是使用非循环信道依赖图(CDG)来实现死锁自由。该要求强制禁止某些路由转弯,从而降低了适应程度。在本文中,我们提出了一种新颖的非最小转弯模型,只要扩展通道相关性图(ECDG)保持非循环,就可以在CDG中进行循环。提出的转弯模型减少了对路由转弯的限制,因此能够通过源与目的地之间的其他最小和非最小路线提供路径多样性。

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