汽车以太网中cpu绑定通信的TCP吞吐量病理研究

Wongoo Han, Sangrok Han, Hyogon Kim
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引用次数: 1

摘要

针对一般互联网环境进行优化的TCP协议在车载以太网等车载网络环境中无法最大限度地发挥其潜力。在本文中,我们证明了吞吐量病理可以在两个典型的低速机器ecu之间的TCP通信中发展。我们发现它源于TCP内核数据包处理和TCP发送端发送应用程序之间的处理能力划分。而且,一旦它启动,它会在很长一段时间内持续地将TCP吞吐量降低几十兆比特每秒(Mbps)。通过内核分析和TCP代码分析,我们制定了解决病理的补救措施,使ecu能够充分实现最大吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On TCP Throughput Pathology in CPU-Bound Communication over Automotive Ethernet
TCP protocol optimized for the general Internet environment can fail to maximally realize its potential in the in-vehicular network environment such as the automotive Ethernet. In this paper, we demonstrate that a throughput pathology can develop in the TCP communication between two ECUs that are typically lower-speed machines. We find that it stems from how the processing power is divided between the TCP kernel packet processing and the sending application at the TCP sender side. Moreover, once it sets in, it persistently decreases the TCP throughput by few tens of megabits per second (Mbps) over an extended period of time. Through kernel profiling and TCP code analysis, we prescribe a remedy that solves the pathology and enables ECUs to fully materialize the maximum throughput.
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