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A Memory-Efficient TCAM Coprocessor for IPv4/IPv6 Routing Table Update

机译:用于IPv4 / IPv6路由表更新的内存高效TCAM协处理器

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Ternary content-addressable memory (TCAM) is a simple hardware device for fast IP lookups that can perform a lookup per cycle. However, prefixes may be inserted into or deleted from the TCAM because of changes in Internet topology. Traditional TCAM coprocessors maintain the enclosure relationship among prefixes by using an extended binary trie and perform TCAM movements based on an update algorithm (e.g., CAO_OPT) which runs on a local CPU to maintain the speed and correctness of the TCAM search process. In this paper, we propose a memory-efficient TCAM coprocessor architecture for updates that require only small memory size compared with the extended binary trie. The average number of TCAM movements per update is almost the same as that of CAO_OPT. However, the time to compute how to move TCAM entries in the proposed TCAM coprocessor is less than that in CAO_OPT. Only a small part of total TCAM search cycles is used to complete our update process. The proposed TCAM architecture can also be made smaller and faster because large off-chip memory for the extended binary trie and a local CPU are no longer necessary.
机译:三元内容可寻址存储器(TCAM)是用于快速IP查找的简单硬件设备,可以按周期执行查找。但是,由于Internet拓扑的变化,可能会将前缀插入TCAM或从TCAM中删除。传统的TCAM协处理器通过使用扩展的二进制Trie来维护前缀之间的包围关系,并基于在本地CPU上运行的更新算法(例如CAO_OPT)执行TCAM移动,以保持TCAM搜索过程的速度和正确性。在本文中,我们提出了一种内存有效的TCAM协处理器架构,用于与扩展二进制Trie相比仅需要较小内存大小的更新。每次更新的TCAM移动平均次数几乎与CAO_OPT相同。但是,在建议的TCAM协处理器中计算如何移动TCAM条目的时间少于CAO_OPT中的时间。总TCAM搜索周期中只有一小部分用于完成我们的更新过程。由于不再需要用于扩展二进制Trie的大片外存储器和本地CPU,因此可以将提出的TCAM体系结构做得更小,更快。

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