Adaptive and reconfigurable bubble routing technique for 2D Torus interconnection networks

Poona Bahrebar, D. Stroobandt
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Abstract

Networks with torus interconnection topology are widely used due to the symmetry in traffic distribution. In order to ensure deadlock-freedom and provide adaptive routing in torus, at least two Virtual Channels (VCs) per physical channel are required to break the cyclic channel dependencies. However, VCs increase the arbitration latency and consume large power/area overheads which is undesirable, particularly for on-chip networks with limited power/area budgets. In this paper, we propose a novel technique for routing in wormhole-switched 2D torus networks. The proposed method relies on the Abacus Turn Model (AbTM) and Worm-Bubble Flow Control (WBFC) to support adaptive and deadlock-free routing without using VCs. Furthermore, the network blocking is reduced by providing on-demand routing adaptiveness through reconfiguration. The experimental results demonstrate the efficiency of the proposed scheme in terms of performance and hardware overhead.
二维环面互连网络的自适应可重构气泡路由技术
环面互连网络由于其流量分布的对称性而得到了广泛的应用。为了确保无死锁并提供环面自适应路由,每个物理通道至少需要两个虚拟通道(VCs)来打破循环通道依赖。然而,vc增加了仲裁延迟并消耗了大量的功率/面积开销,这是不希望的,特别是对于功率/面积预算有限的片上网络。在本文中,我们提出了一种新的虫洞交换二维环面网络路由技术。该方法基于Abacus转弯模型(AbTM)和虫泡流控制(WBFC)来支持自适应和无死锁路由,而无需使用VCs。此外,通过重新配置提供按需路由自适应,减少了网络阻塞。实验结果证明了该方案在性能和硬件开销方面的有效性。
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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