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TCAM-PC: Space-efficient TCAM-based packet classification with packet-forwarding-rate constraints

机译:TCAM-PC:基于空间高效的基于TCAM的数据包分类,具有数据包转发速率约束

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Packet classification has been the core component of current Internet architecture, and ternary content addressable memory (TCAM) has become the de facto standard for performing high-speed packet classification. Unfortunately, TCAM has limitations such as small capacity and high power consumption. Therefore, how to improve memory usage and decrease power consumption are crucial to TCAM-based technologies. In this paper, we propose a space-efficient TCAM-based packet classification scheme called TCAM-PC, which decreases TCAM memory consumption by compressing the space for the same information parts embedded in different rules, and guarantees a predetermined packet forwarding rate based on the cooperation between the global mask register and block mask register in a TCAM. Performance analysis shows TCAM-PC can achieve smaller memory requirement and higher memory utilization while guaranteeing a high-speed packet forwarding rate. To the best of our knowledge, this is the first attempt to adaptively compress the TCAM space while guaranteeing a high packet forwarding rate.
机译:数据包分类已成为当前Internet体系结构的核心组成部分,三态内容可寻址存储器(TCAM)已成为执行高速数据包分类的事实上的标准。不幸的是,TCAM具有局限性,如小容量和高功耗。因此,如何提高内存使用率并降低功耗对基于TCAM的技术至关重要。在本文中,我们提出了一种基于空间高效的基于TCAM的数据包分类方案,称为TCAM-PC,该方案通过压缩嵌入在不同规则中的相同信息部分的空间来减少TCAM内存消耗,并基于该数据包保证预定的数据包转发率。 TCAM中全局掩码寄存器和块掩码寄存器之间的协作。性能分析表明,TCAM-PC在保证高速数据包转发率的同时,可以实现较小的内存需求和更高的内存利用率。据我们所知,这是在确保高数据包转发率的同时自适应压缩TCAM空间的首次尝试。

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