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Impact of the end-system and affinities on the throughput of high-speed flows

机译:最终系统和亲情对高速流量吞吐量的影响

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Network throughput is scaling-up to higher data rates while processors are scaling-out to multiple cores. In order to optimize high speed data transfer into multicore end-systems, network adapter offloads and performance tuning have received a great deal of attention. However, much of this attention is focused on how to set the tuning parameters and which offloads to select for higher performance and not why they do (or do not) work. In this study we have attempted to address two issues that impact the data transfer performance. First is the impact of the processor core affinity (or core binding) which determines the choice of which processor core or cores handle certain tasks in a network-or I/O-heavy application running on a multicore end-system. Second issue is the impact of Ethernet pause frames which provides a link layer flow control in addition to the end-to-end flow control provided by TCP. The goal of our research is to delve deeper into why these tuning suggestions and this offload exist, and how they affect the end-to-end performance and efficiency of a single, large TCP flow.
机译:网络吞吐量是缩放到更高的数据速率,而处理器将缩放到多个核心。为了优化高速数据传输到多核端系统,网络适配器卸载和性能调整已接受大量的关注。但是,大部分关注都集中在如何设置调整参数以及选择更高的性能的卸载,而不是为什么(或不)工作。在这项研究中,我们试图解决影响数据传输性能的两个问题。首先是处理器核心亲和力(或核心绑定)的影响,该影响是确定处理器核心或核心在多核最终系统上运行的网络或I / O型繁重应用中处理某些任务的选择。第二个问题是以太网暂停帧的影响,除了由TCP提供的端到端流量控制之外提供链路层流量控制。我们的研究的目标是深入了解为什么这些调整建议和此卸载存在,以及它们如何影响单个大型TCP流的端到端性能和效率。

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