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A comprehensive comparison between virtual cut-through and wormhole routers for cache coherent Network on-Chips

机译:虚拟直通路由器和蠕虫路由器之间的全面比较,用于缓存一致的网络片上

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References(13) A basic design aspect of cache coherent Networks-on-Chip (NoCs) is the flow control mechanism. Since the minimum buffer size of virtual cut-through (VCT) switching is larger than that of the wormhole one, the VCT switching is traditionally regarded as an inefficient NoC flow control type. Yet, the scaling of semiconductor technology shrinks the transistor size, and reduces the criticality of buffer amount for NoC designs; the VCT switching may becomes a promising NoC flow control candidate. This paper performs a comprehensive comparison between the VCT and wormhole switching. Based on detailed RTL-level implementations, we evaluate the hardware costs with both deterministic and adaptive routing. Compared with the wormhole switching, the VCT one shortens the critical path by up to 27%, and induces less area and power overheads. Furthermore, the allocator in VCT routers exhibits a better scalability in area overheads. Thus, the VCT router is an efficient NoC flow control type.
机译:参考文献(13)高速缓存一致性片上网络(NoC)的基本设计方面是流控制机制。由于虚拟直通(VCT)切换的最小缓冲区大小大于虫洞接口的最小缓冲区大小,因此传统上将VCT切换视为效率低下的NoC流控制类型。然而,半导体技术的扩展缩小了晶体管的尺寸,并降低了NoC设计的缓冲量的临界值。 VCT切换可能成为有希望的NoC流控制候选者。本文对VCT和虫洞切换进行了全面的比较。基于详细的RTL级实现,我们使用确定性路由和自适应路由来评估硬件成本。与虫洞开关相比,VCT可以将关键路径缩短多达27%,并减少了面积和电源开销。此外,VCT路由器中的分配器在区域开销方面显示出更好的可伸缩性。因此,VCT路由器是一种有效的NoC流控制类型。

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