P4NFV:带smartnic的P4使能NFV系统

Ali Mohammadkhan, Sourav Panda, Sameer G. Kulkarni, K. Ramakrishnan, L. Bhuyan
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引用次数: 7

摘要

软件定义网络(SDN)和网络功能虚拟化(NFV)正在改变数据中心(DC)、电信和企业网络。P4提供的可编程性使SDN具有更大的协议独立性和灵活性。数据中心越来越多地采用snic (smartnic)来加速数据包处理,从而支持数据包处理管道和自定义NFs (Network Functions)。然而,在集成和部署基于P4的SDN控制以及基于主机和snic的可编程NFs方面存在一些挑战。包括SDN控制平面的数据平面组件(主机和sNIC P4交换机)的配置和管理,以及数据平面资源的有效利用。P4NFV解决了这些问题,并提供了统一的P4交换机抽象框架来简化SDN控制平面,降低管理复杂性,并利用主机本地SDN代理来提高整体资源利用率。SDN代理考虑网络范围、主机和sNIC特定的能力和约束。基于工作负载和流量特征,P4NFV确定P4表的分区和NFs (P4动作)的最佳放置,以最小化总体延迟并最大化资源利用率。P4NFV采用基于混合整数线性规划(MILP)的优化公式,最大可达2。系统容量增加5倍,同时最大限度地减少流量的延迟。P4NFV考虑了分组交换的数量、流大小和状态依赖性,以最大限度地减少通过PCI Express接口传输数据所带来的延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
P4NFV: P4 Enabled NFV Systems with SmartNICs
Software Defined Networking (SDN) and Network Function Virtualization (NFV) are transforming Data Center (DC), Telecom, and enterprise networking. The programmability offered by P4 enables SDN to be more protocol-independent and flexible. Data Centers are increasingly adopting SmartNICs (sNICs) to accelerate packet processing that can be leveraged to support packet processing pipelines and custom Network Functions (NFs). However, there are several challenges in integrating and deploying P4 based SDN control as well as host and sNIC-based programmable NFs. These include configuration and management of the data plane components (Host and sNIC P4 switches) for the SDN control plane and effective utilization of data plane resources. P4NFV addresses these concerns and provides a unified P4 switch abstraction framework to simplify the SDN control plane, reducing management complexities, and leveraging a host-local SDN Agent to improve the overall resource utilization. The SDN agent considers the network-wide, host, and sNIC specific capabilities and constraints. Based on workload and traffic characteristics, P4NFV determines the partitioning of the P4 tables and optimal placement of NFs (P4 actions) to minimize the overall delay and maximize resource utilization. P4NFV uses Mixed Integer Linear Programming (MILP) based optimization formulation and achieves up to 2. 5X increase in system capacity while minimizing the delay experienced by flows. P4NFV considers the number of packet exchanges, flow size, and state dependency to minimize the delay imposed by data transmission over PCI Express interface.
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