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Reflect3d: An Adaptive and Fault-Tolerant Routing Algorithm for Vertically-Partially-Connected 3D-NoC

机译:Reflect3d:一种适用于垂直部分连接的3D NoC的自适应容错路由算法

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The combined benefits of the Three-Dimensional (3D) and Network-on-Chip (NoC) schemes enable designing a high-performance system in a limited chip area. The 3D-NoC major advantages are the average reductions of wire length and delay, resulting in lower power dissipation and higher performance. However, 3D-NoCs suffer from some reliability issues, such as the 3D-IC manufacturing variability. The low yield of vertical connection harms the design of 3D die stacks with many Through Silicon Via (TSV). Vertically-Partially-Connected NoCs have been gaining relevance to reduce the number of TSV links. This work introduces Reflect3d, an adaptive, scalable, and highly resilient routing algorithm targeting partially and vertically connected 3D-NoCs to route packets under such conditions. Reflect3d separates virtual channels in four reflected virtual networks to search for vertical connections dynamically and progressively, guaranteeing packet delivery as long as one healthy TSV connecting all layers is available anywhere in the network. The experimental results show that Reflect3d can ensure high performance in terms of latency, achieving more valid paths and better cost-effectiveness when compared to related work. Furthermore, the hardware synthesis performed using a commercial 28nm technology library shows few area and power overheads compared to other state-of-the-art routing algorithms.
机译:三维(3D)和片上网络(NoC)方案的综合优势使我们能够在有限的芯片区域内设计出高性能的系统。3D NoC的主要优点是平均减少了布线长度和延迟,从而降低了功耗,提高了性能。然而,3D NOC存在一些可靠性问题,例如3D-IC制造的可变性。垂直连接的低成品率损害了具有多通硅通孔(TSV)的3D芯片堆的设计。垂直部分连接的NOC在减少TSV链路数量方面越来越重要。这项工作引入了Reflect3d,这是一种自适应、可扩展和高弹性的路由算法,目标是部分和垂直连接的3D NOC在这种情况下路由数据包。Reflect3d在四个反射虚拟网络中分离虚拟通道,以动态渐进地搜索垂直连接,只要网络中的任何地方都有一个连接所有层的健康TSV,就可以保证数据包交付。实验结果表明,与相关工作相比,Reflect3d可以确保在延迟方面的高性能,实现更有效的路径和更好的成本效益。此外,与其他最先进的路由算法相比,使用商用28nm技术库进行的硬件合成显示出很少的面积和电源开销。

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