SCOC: High-radix switches made of bufferless clos networks

Nikolaos Chrysos, C. Minkenberg, Mark Rudquist, C. Basso, Brian Vanderpool
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引用次数: 20

Abstract

In today's datacenters handling big data and for exascale computers of tomorrow, there is a pressing need for high-radix switches to economically and efficiently unify the computing and storage resources that are dispersed across multiple racks. In this paper, we present SCOC, a switch architecture suitable for economical IC implementation that can efficiently replace crossbars for high-radix switch nodes. SCOC is a multi-stage bufferless network with O(N2/m) cost, where m is a design parameter, practically ranging between 4-16. We identify and resolve more than five fairness violations that are pertinent to hierarchical scheduling. Effectively, from a performance perspective, SCOC is indistinguishable from efficient flat crossbars. Computer simulations show that it competes well or even outperforms flat crossbars and hierarchical switches. We report data from our ASIC implementation at 32 nm of a SCOC 136×136 switch, with shallow buffers, connecting 25 Gb/s links. In this first incarnation, SCOC is used at the spines of a server-rack, fat-tree network. Internally, it runs at 9.9 Tb/s, thus offering a speedup of 1.45 ×, and provides a fall-through latency of just 61 ns.
SCOC:由无缓冲闭合网络组成的高基数交换机
在当今处理大数据的数据中心和未来的百亿亿次计算机中,迫切需要高基数交换机来经济高效地统一分散在多个机架上的计算和存储资源。在本文中,我们提出了SCOC,一种适合经济集成电路实现的交换架构,可以有效地取代高基数交换节点的交叉棒。SCOC是一个多阶段无缓冲网络,其成本为0 (N2/m),其中m为设计参数,实际取值范围为4-16。我们发现并解决了五个以上与分级调度相关的公平违规行为。实际上,从性能的角度来看,SCOC与高效的平面横梁没有什么区别。计算机模拟表明,它可以很好地竞争,甚至优于平横杆和分层开关。我们报告的数据来自我们在32nm的SCOC 136×136开关的ASIC实现,具有浅缓冲,连接25gb /s链路。在第一个版本中,SCOC用于服务器机架、胖树网络的核心。在内部,它以9.9 Tb/s的速度运行,从而提供1.45倍的加速,并提供仅61 ns的故障延迟。
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