Guaranteed bandwidth using looped containers in temporally disjoint networks within the nostrum network on chip

Mikael Millberg, E. Nilsson, R. Thid, A. Jantsch
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引用次数: 429

Abstract

In today's emerging network-on-chips, there is a need for different traffic classes with different quality-of-service guarantees. Within our NoC architecture nostrum, we have implemented a service of guaranteed bandwidth (GB), and latency, in addition to the already existing service of best-effort (BE) packet delivery. The guaranteed bandwidth is accessed via virtual circuits (VC). The VCs are implemented using a combination of two concepts that we call 'Looped Containers' and 'Temporally Disjoint Networks'. The looped containers are used to guarantee access to the network-independently of the current network load without dropping packets; and the TDNs are used in order to achieve several VCs, plus ordinary BE traffic, in the network. The TDNs are a consequence of the deflective routing policy used, and gives rise to an explicit time-division-multiplexing within the network. To prove our concept an HDL implementation has been synthesised and simulated. The cost in terms of additional hardware needed, as well as additional bandwidth is very low-less than 2 percent in both cases! Simulations showed that ordinary BE traffic is practically unaffected by the VCs.
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在芯片上的nostrum网络内的暂时不连接的网络中使用环形容器保证带宽
在当今新兴的片上网络中,需要具有不同服务质量保证的不同流量类别。在我们的NoC架构中,除了现有的尽力而为(best-effort, BE)包交付服务之外,我们还实现了保证带宽(GB)和延迟的服务。保证的带宽是通过虚拟电路(VC)访问的。vc的实现结合了两个概念,我们称之为“环形容器”和“暂时分离网络”。环形容器用于保证对网络的访问——独立于当前网络负载而不丢弃数据包;tdn用于在网络中实现多个vc和普通BE流量。tdn是使用偏转路由策略的结果,并在网络中产生显式的时分多路复用。为了证明我们的概念,合成了一个HDL实现并进行了仿真。就所需的额外硬件和额外带宽而言,成本非常低——在这两种情况下都不到2% !仿真表明,普通的BE流量实际上不受vc的影响。
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