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首页> 外文期刊>International Journal of Parallel Programming >Architectural Breakdown of End-to-End Latency in a TCP/IP Network
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Architectural Breakdown of End-to-End Latency in a TCP/IP Network

机译:TCP / IP网络中端到端延迟的体系结构细分

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Adoption of the 10GbE Ethernet standard as a high performance interconnect has been impeded by two important performance-oriented considerations: (1) processing requirements of common protocol stacks and (2) end-to-end latency. The overheads of typical software based protocol stacks on CPU utilization and throughput have been well evaluated in several recent studies. We focus on end-to-end latency and present a detailed characterization across typical server system hardware and software stack components. We demonstrate that application level end-to-end one-way latency with a 10GbE connection can be as low as 10 μs for a single isolated request in a standard Linux network stack. The paper analyzes the components of the latency and discusses possible significant variations to the components under realistic conditions. We found that methods that optimize for throughput can significantly compromise Ethernet based latencies. Methods to pursue reducing the minimum latency and controlling the variations are presented.
机译:面向性能的两个重要考虑因素阻碍了采用10GbE以太网标准作为高性能互连:(1)通用协议栈的处理要求和(2)端到端延迟。在最近的几项研究中,已经很好地评估了基于典型软件的协议栈在CPU利用率和吞吐量方面的开销。我们专注于端到端延迟,并提供了典型服务器系统硬件和软件堆栈组件的详细特性。我们证明,对于标准Linux网络堆栈中的单个隔离请求,具有10GbE连接的应用程序级别的端到端单向延迟可以低至10μs。本文分析了延迟的组成部分,并讨论了在现实条件下这些组成部分可能发生的重大变化。我们发现,针对吞吐量进行优化的方法会大大损害基于以太网的延迟。提出了追求减少最小等待时间并控制变化的方法。

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