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PBC: A Partially Buffered Crossbar Packet Switch

机译:PBC:部分缓冲的交叉开关分组交换机

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The crossbar fabric is widely used as the interconnect of high-performance packet switches due to its low cost and scalability. There are two main variants of the crossbar fabric: unbuffered and internally buffered. On one hand, unbuffered crossbar fabric switches exhibit the advantage of using no internal buffers. However, they require a complex scheduler to solve input and output ports contention. Internally, buffered crossbar fabric switches, on the other hand, overcome the scheduling complexity by means of distributed schedulers. However, they require expensive internal buffersȁ4;one per crosspoint. In this paper, we propose a novel architecture, namely, the Partially Buffered Crossbar (PBC) switching architecture, where a small number of separate internal buffers are maintained per output. Our goal is to design a PBC switch having the performance of buffered crossbars and a cost comparable to that of unbuffered crossbars. We propose a class of round robin scheduling algorithms for the PBC architecture. Simulations results show that using as few as eight buffers per fabric column and irrespective of the number N of input ports of the switch, we can achieve similar performance to buffered crossbars that use N buffers per fabric output.
机译:纵横制交换矩阵由于其低成本和可扩展性而被广泛用作高性能分组交换机的互连。交叉开关结构有两个主要变体:无缓冲和内部缓冲。一方面,未缓冲的纵横制交换机具有不使用内部缓冲区的优势。但是,它们需要复杂的调度程序来解决输入和输出端口的争用。另一方面,在内部,缓冲的纵横制交换矩阵交换机通过分布式调度程序克服了调度复杂性。但是,它们需要昂贵的内部缓冲区ȁ4;每个交叉点一个。在本文中,我们提出了一种新颖的体系结构,即部分缓冲交叉开关(PBC)交换体系结构,其中每个输出维护少量单独的内部缓冲区。我们的目标是设计一种PBC交换机,该交换机具有缓冲式交叉开关的性能,并且其成本可与无缓冲式交叉开关的成本相媲美。我们提出了一种用于PBC体系结构的轮循调度算法。仿真结果表明,每个交换矩阵列使用少至八个缓冲区,而与交换机的输入端口的数量N无关,我们可以获得与每个交换矩阵输出使用N个缓冲区的缓冲交叉开关类似的性能。

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