Ripple-precharge TCAM:网络搜索引擎的低功耗解决方案

Deepak S. Vijayasarathi, M. Nourani, M. Akhbarizadeh, P. Balsara
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引用次数: 41

摘要

针对最长前缀匹配任务,提出了一种新颖的低功耗纹波预充三元CAM (RP-TCAM)结构。本研究的主要动机是为了降低由于高电容匹配线频繁充放电而导致的TCAM动态功耗。这个问题是通过利用这样一个事实来解决的:当我们只比较传入数据包的目的地址的前四位时,我们可以在转发表中识别多达80%的不匹配。利用上述事实,设计了一种选择性预充方案,其中匹配线仅在TCAM字的前四位完全匹配时进行充电,从而显着减少匹配线中的转换次数。采用0.18/spl mu/m技术,从64 /spl times/ 32 RP-TCAM架构实现的布局中提取仿真寄生。与同等存储大小和功能的传统TCAM相比,该结构的面积减少了1.71%,功耗减少了80%。我们的RP-TCAM架构的搜索时间为1.86ns。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ripple-precharge TCAM: a low-power solution for network search engines
A novel low power ripple-precharge ternary CAM (RP-TCAM) architecture is proposed for applications in longest prefix matching tasks. The main motivation behind this research is to reduce the dynamic power consumption in TCAM due to frequent charging and discharging of the highly capacitive match line. This issue is addressed by exploiting the fact that when we compare only the first four bits of incoming packet's destination address we can identify up to 80% mismatches in the forwarding table. A selective precharge scheme was devised exploiting the above fact wherein the match line is charged only when there is an exact match in the first four bits of TCAM word, thereby significantly reducing the number of transitions in the match line. The parasitics for simulation were extracted from the layout implemented for a 64 /spl times/ 32 RP-TCAM architecture using 0.18/spl mu/m technology. This structure has 1.71% less area and 80% less power when compared to the conventional TCAM of equal storage size and functionality. Our RP-TCAM architecture has a search time of 1.86ns.
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