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A systematic approach to host interface design for high-speed networks

机译:高速网络主机接口设计的系统方法

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Optical fiber has made it possible to build networks with link speeds of over a gigabit per second; however, these networks are pushing end-systems to their limits. For high-speed networks (100 Mbits per second and up), network throughput is typically limited by software overhead on the sending and receiving hosts. Minimizing this overhead improves application-level latency and throughput and reduces the number of cycles that applications lose to communication overhead. Several factors influence communication overhead: communication protocols, the application programming interface (API). and the network interface hardware architecture. The author describes how these factors influence communication performance and under what conditions hardware support on the network adapter can reduce overhead. He first describes the organization of a typical network interface and discusses performance considerations for interfaces to high-speed networks. He then discusses software optimizations that apply to simple network adapters and show how more powerful adapters can improve performance on high-speed networks.
机译:光纤使建立链路速度超过每秒千兆位的网络成为可能。但是,这些网络将终端系统推向了极限。对于高速网络(每秒100 Mbits和更高),网络吞吐量通常受发送和接收主机上的软件开销限制。最小化此开销可改善应用程序级延迟和吞吐量,并减少应用程序因通信开销而丢失的周期数。有几个因素会影响通信开销:通信协议,应用程序编程接口(API)。以及网络接口硬件架构。作者介绍了这些因素如何影响通信性能,以及在什么条件下网络适配器上的硬件支持可以减少开销。他首先描述了典型网络接口的组织,并讨论了高速网络接口的性能注意事项。然后,他讨论了适用于简单网络适配器的软件优化,并展示了功能更强大的适配器如何提高高速网络上的性能。

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