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LTD-Router: Low Latency Traffic Distributed FPGA Based Router Architecture Using Dedicated Paths

机译:LTD-路由器:使用专用路径的低延迟流量分布式基于FPGA的路由器体系结构

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Switch Allocation is an important pipeline stage in Network on Chip (NoC) routers. In this pipeline stage, input requests are assigned to output resources. A convenient router design should be able to resolve contradictions between the requests and available resources. One important issue that cramps routers and consequently NoC performance is head-of-line (HoL) blocking problem that only allows packets located at the head of a queue or Virtual Channel (VC) to be allocated by switch allocator. In this paper a new router architecture called LTD-Router is proposed that in addition to resolves HoL blocking problem, manages requests such that the packets with the same desired output, place in their appointed VC in a way that deadlock freedom is also guaranteed. Our router is also a better design in order to achieve low-latency and high throughput than the previous designs because it imposes lower area and timing overhead. The new design can be expanded to the most state-of-the-art routers. Evaluation results show that our LTD-Router can improve the network performance by reducing latency and improving throughput of the network by about 22%and 13%, respectively while its overhead imposition is about 21% lower than the previous designs.
机译:交换机分配是片上网络(NoC)路由器中重要的流水线阶段。在此管道阶段,将输入请求分配给输出资源。便捷的路由器设计应该能够解决请求与可用资源之间的矛盾。局限在路由器上的一个重要问题是No-of-head(HoL)阻塞问题,该问题仅允许位于队列或虚拟通道(VC)头的数据包由交换机分配器分配。在本文中,提出了一种称为LTD-Router的新路由器体系结构,该体系结构除了解决HoL阻塞问题之外,还可以管理请求,以使具有相同期望输出的数据包以确保死锁自由的方式放置在其指定的VC中。与以前的设计相比,我们的路由器在实现低延迟和高吞吐量方面也是一个更好的设计,因为它具有较小的面积和时序开销。新设计可以扩展到最先进的路由器。评估结果表明,我们的LTD-Router可以通过减少延迟和将网络吞吐量分别提高22%和13%来提高网络性能,而其开销则比以前的设计低21%。

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