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Crossbar replication vs. sharing for virtual channel flow control in asynchronous NoCs: A comparative study

机译:交叉Nos中虚拟通道流控制的交叉开关复制与共享:一项比较研究

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摘要

In on-chip interconnection networks, performance optimization techniques can be often achieved in two opposite ways: by making control logic more complex inside switches, or by pushing design complexity to the switch boundaries. The implementation of virtual channel (VC) flow control is an important application domain of this design trade-off. The data path of VC switches typically exhibits replicated buffers. The underlying philosophy (i.e., resource replication) can be pushed to the limit, thus incuring an apparently high area cost, while simplifying the switch control path. On the other hand, unreplicated resources require complex control logic for the sake of their efficient sharing among virtual networks. Investigating this design tradeoff is especially important for asynchronous networks, where the synthesis of complex control circuits is a challenge. This paper is a first step toward a design space exploration of VC implementation techniques for transition-signalling bundled-data asynchronous NoCs, and contrasts a VC switch with replicated crossbars against a unified-crossbar architecture relying on multistage switch allocation.
机译:在片上互连网络中,性能优化技术通常可以通过两种相反的方式来实现:通过使开关内部的控制逻辑更加复杂,或将设计复杂性推向开关边界。虚拟通道(VC)流量控制的实现是这种设计折衷的重要应用领域。 VC交换机的数据路径通常具有复制的缓冲区。可以将基本原理(即资源复制)推到极限,从而确保明显较高的区域成本,同时简化开关控制路径。另一方面,未复制的资源需要复杂的控制逻辑,以便在虚拟网络之间进行有效共享。研究这种设计折衷方案对于异步网络尤其重要,在异步网络中,复杂控制电路的合成是一个挑战。本文是对过渡信令绑定数据异步NoC的VC实现技术进行设计空间探索的第一步,并将具有复制交叉开关的VC交换机与依赖于多级交换机分配的统一交叉开关体系结构进行了对比。

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