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SEAL2: An SDN-enabled all-Layer2 packet forwarding network architecture for multitenant datacenter networks

机译:SEAL2:适用于多租户数据中心网络的SDN支持的全层2数据包转发网络体系结构

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This paper presents the design and development of a new network virtualization scheme to support multitenant datacenter networking (MT-DCN) based on software-defined networking (SDN) technologies. Effective multitenancy supports are essential and challenging for datacenter networking designs. In this study, we propose a new network virtualization architecture framework for efficient packet forwarding in MT-DCN. Traditionally, an internet host uses IP addresses for both host identification and location information, which causes mobile IP problems whenever the host is moved from one IP subnet to another. Unfortunately, virtual machine (VM) mobility is inevitable for cloud computing in datacenters for reasons such as server consolidation and network traffic flow optimization. To solve the problems, we decouple VM identification and location information with two independent values neither by IP addresses. We redefine the semantics of Ethernet MAC address to embed tenant ID information to the MAC address field without violating its original functionality. We also replace traditional Layer2/Layer3 two-stage routing schemes (MAC/IP) with an all-Layer2 packet forwarding mechanism that combines MAC addresses (for VM identification and forwarding in local server groups under an edge switch gateway) and multiprotocol label switching (MPLS) labels (for packet transportation between edge switch gateways across the core label switching network connecting all the edge gateways). To accommodate conventional IP packet architecture in a multitenant environment, SDN (OpenFlow) technology is used to handle all this complex network traffics. We verified the design concepts by a simple system prototype in which all the major system components were implemented. Based on the prototype system, we evaluated packet forwarding efficiency under the proposed network architecture and compared it with conventional IP subnet routing approaches. We also evaluated the incurred packet processing overhead caused by each of the packet routing components.
机译:本文介绍了一种基于软件定义网络(SDN)技术的支持多租户数据中心网络(MT-DCN)的新网络虚拟化方案的设计和开发。有效的多租户支持对于数据中心网络设计至关重要且具有挑战性。在这项研究中,我们提出了一种新的网络虚拟化体系结构框架,用于在MT-DCN中进行有效的数据包转发。传统上,Internet主机将IP地址用于主机标识和位置信息,每当主机从一个IP子网移动到另一个IP子网时,这都会导致移动IP问题。不幸的是,由于服务器整合和网络流量优化等原因,虚拟机(VM)移动对于数据中心中的云计算是不可避免的。为了解决这些问题,我们通过IP地址将VM标识和位置信息与两个独立的值解耦。我们重新定义了以太网MAC地址的语义,将租户ID信息嵌入到MAC地址字段中,而不会违反其原始功能。我们还将全层2数据包转发机制替换了传统的Layer2 / Layer3两阶段路由方案(MAC / IP),该机制将MAC地址(用于在边缘交换网关下的本地服务器组中的VM标识和转发)和MAC标记交换结合在一起( MPLS)标签(用于跨连接所有边缘网关的核心标签交换网络在边缘交换网关之间进行数据包传输)。为了在多租户环境中适应常规IP数据包体系结构,SDN(OpenFlow)技术用于处理所有这些复杂的网络流量。我们通过一个简单的系统原型验证了设计概念,该原型中实现了所有主要的系统组件。在原型系统的基础上,我们评估了所提出的网络架构下的数据包转发效率,并将其与常规IP子网路由方法进行了比较。我们还评估了由每个数据包路由组件引起的数据包处理开销。

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