...
首页> 外文期刊>Journal of Parallel and Distributed Computing >Design and performance of speculative flow control for high-radix datacenter interconnect switches
【24h】

Design and performance of speculative flow control for high-radix datacenter interconnect switches

机译:高基数数据中心互连交换机的推测性流量控制的设计和性能

获取原文
获取原文并翻译 | 示例
           

摘要

High-radix switches are desirable building blocks for large computer interconnection networks, because they are more suitable to convert chip I/O bandwidth into low latency and low cost than low-radix switches [J. Kim, W.J. Dally, B. Towles, A.K. Gupta, Microarchitecture of a high-radix router, in: Proc. ISCA 2005, Madison, WI, 2005]. Unfortunately, most existing switch architectures do not scale well to a large number of ports, for example, the complexity of the buffered crossbar architecture scales quadratically with the number of ports. Compounded with support for long round-trip times and many virtual channels, the overall buffer requirements limit the feasibility of such switches to modest port counts. Compromising on the buffer sizing leads to a drastic increase in latency and reduction in throughput, as long as traditional credit flow control is employed at the link level. We propose a novel link-level flow control protocol that enables high-performance scalable switches that are based on the increasingly popular buffered crossbar architecture, to scale to higher port counts without sacrificing performance. By combining credited and speculative transmission, this scheme achieves reliable delivery, low latency, and high throughput, even with crosspoint buffers that are significantly smaller than the round-trip time. The proposed scheme substantially reduces message latency and improves throughput of partially buffered crossbar switches loaded with synthetic uniform and non-uniform bursty traffic. Moreover, simulations replaying traces of several typical MPI applications demonstrate communication speedup factors of 2 to 10 times.
机译:高基数交换机是大型计算机互连网络的理想构建基块,因为与低基数交换机相比,高基数交换机更适合将芯片I / O带宽转换为低延迟和低成本。金·W·J·达利,B·托尔斯·A.K。 Gupta,高基数路由器的微体系结构,在:Proc。 ISCA 2005,威斯康星州麦迪逊,2005年]。不幸的是,大多数现有的交换机体系结构不能很好地扩展到大量端口,例如,缓冲交叉开关体系结构的复杂度会随着端口数量呈二次方扩展。加上对长往返时间和许多虚拟通道的支持,整体缓冲区要求将此类交换机的可行性限制为适度的端口数。只要在链路级别采用传统的信用流控制,就损害缓冲区大小会导致等待时间的急剧增加和吞吐量的降低。我们提出了一种新颖的链路级流量控制协议,该协议使基于日益流行的缓冲交叉开关架构的高性能可扩展交换机能够在不牺牲性能的情况下扩展到更高的端口数。通过结合可信传输和推测传输,即使交叉点缓冲区的大小明显小于往返时间,该方案也可以实现可靠的传递,低延迟和高吞吐量。所提出的方案显着减少了消息等待时间,并提高了部分缓存的纵横制交换机的吞吐量,该交换机加载了合成的均匀和非均匀突发流量。此外,重播几种典型MPI应用程序的轨迹的仿真结果表明,通讯加速因子是2到10倍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号