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Bufferless Network-on-Chips With Bridged Multiple Subnetworks for Deflection Reduction and Energy Savings

机译:具有桥接多个子网的Bufferless Network-On-Chips,用于减少偏转和节能

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A bufferless network-on-chip (NoC) can deliver high energy efficiency, but such a NoC is subject to growing deflection when its traffic load rises. This article proposes Deflection Containment (DeC) for the bufferless NoC to address its notorious shortcomings of excessive deflection for performance improvement and energy savings. With multiple subnetworks bridged by an added link between two corresponding routers, DeC lets a contending flit in one subnetwork be forwarded to another subnetwork instead of deflected. Microarchitecture of DeC routers is rectified to shorten the critical path and lift network bandwidth. Its Cadence RTL implementations with a $15-nm$15-nm process are conducted respectively for mesh-based NoCs and torus-based NoCs. Additionally, different sized DeC-NoCs are evaluated extensively and compared with previous bufferless designs (BLESS and MinBD), uncovering that DeC with two bridged subnetworks (dubbed DeC2) for 8X8 mesh-based NoCs can lower deflection drastically by some 90 percent and energy consumption by upto 51 percent under real benchmark traffic loads, in comparison to BLESS. Under various synthetic traffic models and workloads, 16X16 torus-based DeC2-NoC sustains up to 2.33X loads when compared with its mesh-based counterpart, exhibiting the same clock rate and taking only negligible more power and area according to our full layout results.
机译:无可自由的线上的片上(NOC)可以提供高能量效率,但在其交通负荷升高时,这种NOC可能会受到越来越偏转。本文提出了无可用的NOC的偏转遏制(DEC),以解决其绩效改善和节能过度偏转的臭名昭着的缺点。通过两个相应的路由器之间的添加链接桥接的多个子网,DEC可以将一个子网中的竞争污迹转发到另一个子网而不是偏转。 DEC路由器的微架构被纠正以缩短关键路径和升降网络带宽。它的节奏RTL实现具有15亿美元的15纳米工艺的实现,分别用于基于网格的NOC和基于环形的NOC。此外,不同大小的DEC-NOCS广泛评估,与先前的无可用设计(祝福和MINBD)进行评估,揭示DED与两个基于8x8网格的NOC的两个桥接子网(被称为DEC2)可以急剧下降约90%和能量消耗。与祝福相比,在真实的基准交通负荷下达到51%。根据各种合成交通模型和工作负载,与基于网格的对应物相比,基于16x16的Torus的DEC2-NOC维持高达2.33倍的负载,并根据我们的完整布局结果,仅忽略更多的电力和面积。

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