Providing 100% Throughput in a Buffered Crossbar Switch

Yanming Shen, S. Panwar, H. J. Chao
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引用次数: 21

Abstract

Buffered crossbar switches have received great attention recently because they have become technologically feasible, have simpler scheduling algorithms, and achieve better performance than a bufferiess crossbar switch. Buffered crossbar switches have a buffer placed at each crosspoint. A cell is first delivered to a crosspoint buffer and then transferred to the output port. With a speedup of two, a buffered crossbar switch has previously been proved to provide 100% throughput. We propose what we believe is the first feasible scheduling scheme that can achieve 100% throughput without speedup and a finite crosspoint buffer. The proposed scheme is called SQUISH: a Stable Queue Input-output Scheduler with Hamiltonian walk. With SQUISH, each input/output first makes decisions based on the information from the virtual output queues and crosspoint buffers. Then it is compared with a Hamiltonian walk schedule to avoid possible "bad" states. We then prove that SQUISH can achieve 100% throughput with a speedup of one. Our simulation results also show good delay performance for SQUISH.
提供100%的吞吐量在缓冲交叉开关
缓冲crossbar交换机最近受到了极大的关注,因为它们在技术上可行,调度算法更简单,并且比无缓冲crossbar交换机具有更好的性能。缓冲横条开关在每个交叉点都有一个缓冲器。单元首先传送到交叉点缓冲器,然后传送到输出端口。缓冲交叉开关的速度提高了两倍,以前已被证明可以提供100%的吞吐量。我们提出了我们认为是第一个可行的调度方案,可以在没有加速和有限交叉点缓冲的情况下实现100%的吞吐量。提出的方案被称为SQUISH:一个稳定的队列输入输出调度程序与哈密顿行走。使用SQUISH,每个输入/输出首先根据来自虚拟输出队列和交叉点缓冲区的信息做出决策。然后将其与汉密尔顿步行计划进行比较,以避免可能出现的“坏”状态。然后,我们证明了SQUISH可以在加速1的情况下实现100%的吞吐量。仿真结果表明,该算法具有良好的延迟性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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