ICIM: An Inline Network Measurement Mechanism for Highspeed Networks

C. Man, G. Hasegawa, M. Murata
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引用次数: 17

Abstract

In high-speed networks, such as 1-Gbps or higher networks, bandwidth measurement algorithms that utilize packet transmission/arrival intervals, such as packet trains and packet pairs, have a number of problems. First, network measurement for large bandwidth requires short packet transmission intervals, which causes a heavy load on the CPU. Second, network interface cards for high-speed networks usually employ Interrupt Coalescence (IC), which rearranges the arrival intervals of packets and causes bursty transmission of packets. In the present study, we introduce ICIM (Interrupt Coalescence-aware inline measurement), a new bandwidth measurement approach that overcomes these two problems. ICIM utilizes the data packets of an active TCP connection for the measurement. In order to determine the available bandwidth, rather than adjusting the packet transmission intervals, the TCP sender instead adjusts the number of packets involved in a burst and checks whether the inter-intervals of the bursts of corresponding ACK packets are increased or not. Simulation results show that ICIM can measure the bandwidth as high as some Gbps while requiring a number of data packets that is only 1/100 of that of the existing stream-based algorithm.
高速网络的内联网络测量机制
在高速网络中,例如1gbps或更高的网络,利用分组传输/到达间隔(例如分组列车和分组对)的带宽测量算法存在许多问题。首先,对于大带宽的网络测量,报文传输间隔较短,对CPU的负荷较大。其次,高速网络的网络接口卡通常采用中断合并(Interrupt Coalescence, IC),它重新安排数据包的到达间隔,导致数据包的突发传输。在本研究中,我们引入了一种新的带宽测量方法ICIM(中断合并感知内联测量),克服了这两个问题。ICIM利用活动TCP连接的数据包进行测量。为了确定可用带宽,TCP发送方不调整报文的传输间隔,而是调整突发的报文数,并检查相应ACK报文的突发间隔是否增大。仿真结果表明,ICIM可以测量高达几Gbps的带宽,而所需的数据包数量仅为现有基于流的算法的1/100。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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