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An evaluation of TCP and UDP protocols processing required for network interface design at 100 Gbps

机译:评估100 Gbps网络接口设计所需的TCP和UDP协议处理

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摘要

Today major challenges are faced by server platforms while performing TCP/IP or UDP/IP protocol processing. For instance, the speed of networks now exceeds the gigabit per sec Gbps, the design and implementations of high-performance Network Interfaces (NI) have become very challenging. There are different possible design approaches to implement high-speed NI. However, using the General Purpose Processing (GPP) as a core engine to offload some, if not all, of the TCP/IP or UDP/IP protocol functions can deliver some important features to NIs, such as simplicity, scalability, shorter developing cycle time and reduced costs. Still it is not clear whether the GPP can provide the processing required for high-speed line over 10 Gbps. Also, where is the limit of such GPP in supporting the processing of network interfaces? In this paper, we have measured the amount of processing required for Ethernet Network Interfaces (ENI) design supporting different transmission line speeds. A NI-programmable based RISC model has been designed to measure the processing required for the ENI|. The results have shown that a RISC core running at 240 MHz can be used as a processing core in high-speed ENI. Such core can support a wide range of transmission line speeds, up to 100 Gbps. Also, we have discussed some of the design issues that are related to RISC core based NI and the data movement type.
机译:如今,服务器平台在执行TCP / IP或UDP / IP协议处理时面临着主要挑战。例如,现在的网络速度已经超过了千兆比特每秒Gbps,高性能网络接口(NI)的设计和实现变得非常具有挑战性。有多种可能的设计方法来实现高速NI。但是,使用通用处理(GPP)作为核心引擎来减轻某些(如果不是全部)TCP / IP或UDP / IP协议功能的负担,可以为NI提供一些重要功能,例如简单性,可伸缩性,较短的开发周期时间并降低成本。尚不清楚GPP是否可以提供10 Gbps以上的高速线路所需的处理。而且,这种GPP在支持网络接口处理方面的局限性在哪里?在本文中,我们测量了支持不同传输线速度的以太网网络接口(ENI)设计所需的处理量。设计了基于NI可编程的RISC模型,以测量ENI |所需的处理。结果表明,以240 MHz运行的RISC内核可以用作高速ENI中的处理内核。这种内核可以支持高达100 Gbps的各种传输线速度。此外,我们还讨论了一些与基于RISC核心的NI和数据移动类型有关的设计问题。

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