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Experimental performance evaluation of a hybrid packet reception scheme for Linux networking subsystem

机译:Linux网络子系统混合分组接收方案的实验性能评价

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The heavy traffic introduced by Gigabit networks can result in a significant performance degradation of network hosts. This degradation happens as a result of the interrupt overhead associated with the high rate of packet arrivals. NAPI, a packet reception mechanism integrated into the latest version of Linux networking subsystem, was designed to improve Linux performance to suit today's Gigabit traffic. NAPI is definitely a major step up from earlier reception mechanisms; however, NAPI has shortcomings and its performance can be further enhanced. A hybrid packet reception scheme that switches between interrupt disabling-enabling (DE) and polling (NAPI) can better improve the performance of Gigabit network hosts. In this paper we prove experimentally that the hybrid scheme can boost under different traffic load conditions the performance of general-purpose network desktops or servers running network I/O-bound applications. The implementation of the hybrid scheme is done in the latest version of Linux kernel 2.6.15.
机译:千兆网络引入的繁重流量可能导致网络主机的显着性能下降。由于与分组到来的高速率相关联的中断开销,这种劣化发生了劣化。 NAPI是集成到最新版本的Linux网络子系统中的数据包接收机制,旨在提高Linux性能,以适应今天的千兆流量。 NAPI绝对是早期接待机制的重大进步;但是,NAPI具有缺点,其性能可以进一步提高。一种混合包接收方案,即在中断禁用 - 启用(DE)和轮询(NAPI)之间切换的接收方案可以更好地提高千兆网络主机的性能。在本文中,我们将通过实验证明,混合动力车方案可以在不同的交通负载条件下提升通用网络桌面或运行网络I / O绑定应用程序的服务器的性能。混合方案的实现是在最新版本的Linux内核2.6.15中完成的。

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