A programmable data plane for heterogeneous NFV platforms

Diego Perino, Massimo Gallo, R. Laufer, Zied Ben-Houidi, Fabio Pianese
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引用次数: 15

Abstract

Network function virtualization (NFV) has recently allowed the rapid deployment of network functions. As software implementations become the main option for NFV, performance requirements call for an increased level of hardware support and acceleration. Additionally, the higher demand for flexibility and optimization also requires protocol stack customization at different layers. To fulfill these requirements, we introduce in this paper a programmable data plane (PDP) whose goals are to enable on-the-fly customization of L2-L7 stacks and to integrate both general-purpose CPUs and hardware accelerators. The PDP data plane provides a set of modular elements that the control plane instantiates and orchestrates to compose L2-L7 network functions, allowing a centralized controller to reconfigure heterogeneous network devices and manage state across network functions. We present examples of how PDP data plane modules can be used to realize different functions, such as an information-centric networking (ICN) router and an HTTP reverse proxy. Our preliminary results show that hardware acceleration provides significant benefits at negligible cost, and that careful use of modularity brings a minimal latency penalty, while providing high flexibility and reconfigurability to the network.
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异构NFV平台的可编程数据平面
最近,网络功能虚拟化(NFV)使得网络功能的快速部署成为可能。随着软件实现成为NFV的主要选择,性能需求需要更高级别的硬件支持和加速。此外,对灵活性和优化的更高要求还要求在不同层定制协议栈。为了满足这些需求,我们在本文中引入了一个可编程数据平面(PDP),其目标是实现L2-L7堆栈的动态定制,并集成通用cpu和硬件加速器。PDP数据平面提供了一组模块化元素,由控制平面实例化和编排组成L2-L7网络功能,允许集中控制器重新配置异构网络设备,并跨网络功能管理状态。我们给出了PDP数据平面模块如何用于实现不同功能的示例,例如信息中心网络(ICN)路由器和HTTP反向代理。我们的初步结果表明,硬件加速以可忽略不计的成本提供了显著的好处,并且仔细使用模块化带来了最小的延迟损失,同时为网络提供了高度的灵活性和可重构性。
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