将拥塞控制移出数据路径的案例

Akshay Narayan, Frank Cangialosi, Prateesh Goyal, S. Narayana, Mohammad Alizadeh, Harinarayanan Balakrishnan
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引用次数: 9

摘要

随着摩尔定律的终结,通用处理器速度和网络连接速率之间的差距正在扩大。这一趋势导致了端点中新的数据包处理“数据路径”,包括内核旁路软件和新兴的SmartNIC硬件。此外,一些应用程序正在UDP之上推出自己的协议(例如,QUIC, WebRTC, Mosh等),形成不同于传统内核TCP堆栈的新数据路径。所有这些数据路径都需要拥塞控制,但是它们必须单独实现,因为不可能重用内核的TCP实现。本文提出将拥塞控制从数据路径转移到一个单独的代理中。这个代理,我们称之为拥塞控制平面(CCP),必须提供表达性的拥塞控制API以及数据路径设计者实现和部署CCP的规范。我们提出了一个用于拥塞控制的API、数据路径原语和一个使用批处理方法与数据路径通信的用户空间代理设计。我们的方法承诺保留数据路径内实现的行为和性能,同时使实现和部署新的拥塞控制算法变得更加容易。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Case for Moving Congestion Control Out of the Datapath
With Moore's law ending, the gap between general-purpose processor speeds and network link rates is widening. This trend has led to new packet-processing "datapaths" in endpoints, including kernel bypass software and emerging SmartNIC hardware. In addition, several applications are rolling out their own protocols atop UDP (e.g., QUIC, WebRTC, Mosh, etc.), forming new datapaths different from the traditional kernel TCP stack. All these datapaths require congestion control, but they must implement it separately because it is not possible to reuse the kernel's TCP implementations. This paper proposes moving congestion control from the datapath into a separate agent. This agent, which we call the congestion control plane (CCP), must provide both an expressive congestion control API as well as a specification for datapath designers to implement and deploy CCP. We propose an API for congestion control, datapath primitives, and a user-space agent design that uses a batching method to communicate with the datapath. Our approach promises to preserve the behavior and performance of in-datapath implementations while making it significantly easier to implement and deploy new congestion control algorithms.
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