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A combined input and output queued packet switched system based on PRIZMA switch on a chip technology

机译:基于片上PRIZMA交换机的组合式输入输出排队分组交换系统

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摘要

A packet-switched system architecture based on the combination of a single-chip output-buffered switch element and input queues that sort arriving packets on a per-output-port basis is proposed. Scheduling is performed in a distributed two-stage approach. Independent arbiters at each of the inputs resolve input contention. Whereas the output-buffered switch element resolves output contention. As a result of this distribution of functionality, complexity of the input arbiters is only linearly proportional to the number of output ports N, thus offering better scalability than purely input-buffered approaches that require complex centralized schedulers. Since the input queues are used as the main buffering mechanism, only a relatively small amount of memory (on the order of N/sup 2/ packet locations) is required in the shared-memory switch, allowing high-throughput implementations. We present simulation results to demonstrate the high performance and robustness under bursty traffic achieved with the proposed system architecture. A practical implementation in the form of the PRIZMA family of switch chips is outlined, with emphasis on its versatility in scaling in terms of both port speed and number of ports, and its support for quality-of-service mechanisms.
机译:提出了一种基于单芯片输出缓冲的开关元件和按每个输出端口对到达的分组进行排序的输入队列的组合的分组交换系统架构。调度以分布式两阶段方法执行。每个输入上的独立仲裁器解决输入争用。而输出缓冲开关元素可解决输出争用。由于功能的这种分布,输入仲裁器的复杂度仅与输出端口N的数量成线性比例,因此比需要复杂的集中式调度程序的纯输入缓冲方法具有更好的可伸缩性。由于输入队列用作主要的缓冲机制,因此在共享内存交换机中仅需要相对少量的内存(N / sup 2 /数据包位置的数量级),就可以实现高吞吐量的实现。我们目前的仿真结果证明了在使用建议的系统架构实现的突发流量下的高性能和鲁棒性。概述了PRIZMA交换芯片系列形式的实际实现,重点是在端口速度和端口数量方面的扩展多功能性以及对服务质量机制的支持。

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