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On the Integration of Unicast and Multicast Cell Scheduling in Buffered Crossbar Switches

机译:缓冲交叉开关中单播和组播信元调度的集成

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Internet traffic is a mixture of unicast and multicast flows. Integrated schedulers capable of dealing with both traffic types have been designed mainly for Input Queued (IQ) buffer-less crossbar switches. Combined Input and crossbar queued (CICQ) switches, on the other hand, are known to have better performance than their buffer-less predecessors due to their potential in simplifying the scheduling and improving the switching performance. The design of integrated schedulers in CICQ switches has thus far been neglected. In this paper, we propose a novel CICQ architecture that supports both unicast and multicast traffic along with its appropriate scheduling. In particular, we propose an integrated round-robin-based scheduler that efficiently services both unicast and multicast traffic simultaneously. Our scheme, named multicast and unicast round robin scheduling (MURS), has been shown to outperform all existing schemes under various traffic patterns. Simulation results suggested that we can trade the size of the internal buffers for the number of input multicast queues. We further propose a hardware implementation of our algorithm for a 16 times 16 buffered crossbar switch. The implementation results suggest that MURS can run at 20 Gbps line rate and a clock cycle time of 2.8 ns, reaching an aggregate switching bandwidth of 320 Gbps.
机译:Internet流量是单播流和多播流的混合。能够处理两种流量类型的集成调度程序主要是为输入队列(IQ)无缓冲交叉开关设计的。另一方面,已知组合输入和交叉开关队列(CICQ)交换机比无缓冲区前任产品具有更好的性能,这是因为它们在简化调度和改善交换性能方面具有潜力。到目前为止,CICQ交换机中集成调度程序的设计一直被忽略。在本文中,我们提出了一种新颖的CICQ架构,该架构支持单播和多播流量以及适当的调度。特别是,我们提出了一种基于循环调度的集成调度程序,该调度程序可以有效地同时服务于单播和多播流量。我们的方案称为多播和单播循环调度(MURS),在各种流量模式下,其性能均优于所有现有方案。仿真结果表明,我们可以将内部缓冲区的大小换成输入多播队列的数量。我们进一步提出了针对16 x 16缓冲纵横开关的算法的硬件实现。实施结果表明,MURS可以以20 Gbps的线速和2.8 ns的时钟周期运行,达到320 Gbps的总交换带宽。

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