A low power and delay multi-protocol switch with IO and network virtualization

Haojun Luo, J. Hui, A. Fayoumi
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引用次数: 3

Abstract

Data centers connect a larger number of servers requiring IO and switches with low power and delay. Virtualization of IO and network is crucial for these servers, which run virtual processes for computing, storage, and applications. We propose using the PCI Express (PCIe) protocol and a new PCIe switch fabric for IO and switch virtualization. The switch fabric has little data buffering, allowing up to 512 physical 10 Gb/s PCIe 2.0 lanes to be connected via a switch fabric on a chip. The switch is scalable with adapters running multiple adaptation protocols, such as Ethernet over PCIe, PCIe over Internet, or FibreChannel over Ethernet. Such adaptation protocols allow integration of IO often required for disjoint data center applications such as storage and networking. The novel switch fabric based on space-time carrier sensing facilitates high bandwidth, low power, and low delay multiprotocol switching. To achieve Terabit switching, both time (high transmission speed) and space (multi-stage interconnection network) technologies are required. In this paper, we present the design of an up to 256 lanes Close-network of multistage crossbar switch fabric for PCIe system. The switch core consists of 32 16x16 crossbar sub-switches. We also propose a new output contention resolution algorithm utilizing an out-of-band protocol of Request-To-Send (RTS), Clear-To-Send (CTS) before sending PCIe packets through the switch fabric. Preliminary power and delay estimates are provided.
具有IO和网络虚拟化的低功耗和延迟多协议交换机
数据中心连接大量需要IO的服务器和低功耗、低时延的交换机。IO和网络的虚拟化对这些服务器至关重要,它们运行用于计算、存储和应用程序的虚拟进程。我们建议使用PCI Express (PCIe)协议和一个新的PCIe交换结构来实现IO和交换虚拟化。交换结构几乎没有数据缓冲,允许通过芯片上的交换结构连接多达512个10gb /s的PCIe 2.0物理通道。该交换机可通过运行多种适配协议的适配器进行扩展,例如基于PCIe的以太网、基于Internet的PCIe或基于以太网的FibreChannel。这种自适应协议允许集成IO,这通常是存储和网络等脱节的数据中心应用程序所需要的。基于时空载波感知的新型交换结构实现了高带宽、低功耗、低时延的多协议交换。为了实现太比特交换,需要时间(高传输速度)和空间(多级互连网络)技术。在本文中,我们提出了一种用于PCIe系统的多达256通道的多级交叉交换结构的封闭网络设计。交换机核心由32个16 × 16交叉排子交换机组成。我们还提出了一种新的输出争用解决算法,在通过交换结构发送PCIe数据包之前,利用请求发送(RTS),清除发送(CTS)的带外协议。提供了初步的功率和延迟估计。
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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