Deadlock-free and plane-balanced adaptive routing for 3D networks-on-chip

Nizar Dahir, Ra'ed Al-Dujaily, A. Yakovlev, Petros Missailidis, T. Mak
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引用次数: 11

Abstract

This paper proposes a new method for designing adaptive routing algorithms for 3D networks-on-chip (NoCs). This method is based on extending the existing 2D turn model adaptive routing to a 3D scenario. A 3-D plane-balanced approach with maximal degree of adaptiveness is achieved by applying a well-defined set of rules for different strata of the 3D NoC. The proposed method is applicable to any of the turn models. In this paper, we employ odd-even turn model as a basis for introducing the proposed strategy. Experimental results show that the new 3D odd-even can achieve up to 23.8% improvement in throughput over conventional odd-even approach. The improvement is consistent for different traffic types. The proposed method enables a new avenue to explore adaptive approaches for future large-scale 3D integration.
三维片上网络无死锁和平面平衡自适应路由
本文提出了一种设计三维片上网络自适应路由算法的新方法。该方法是将现有的二维转弯模型自适应路由扩展到三维场景的基础上。通过对不同地层的三维NoC应用一套定义良好的规则,实现了一种具有最大自适应程度的三维平面平衡方法。该方法适用于任何转弯模型。在本文中,我们采用奇偶回合模型作为引入该策略的基础。实验结果表明,与传统的奇偶算法相比,新的三维奇偶算法的吞吐量提高了23.8%。对于不同的流量类型,改善效果是一致的。提出的方法为探索未来大规模三维集成的自适应方法提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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