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High Speed Route Lookup for Variable-Length IP Address

机译:可变长度IP地址的高速路由查找

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Since the advent of the Internet, IP addresses have been the core of the Internet. However, with the rapid development of the Internet in recent years, IP addresses are facing more and more problems, such as address exhaustion, low packet efficiency and low flexibility. The reason is that IP addresses use a fixed-length design and lack extensibility. The New IP network architecture and addressing method were born to solve these problems. Based on this architecture, the addressing scheme adopts variable-length and structured addresses. The address space can be smoothly expanded according to the network scale without modifying the old network address configuration. But there are some challenges about New IP, and the greatest one lies in the route lookup of variable-length IP addresses. Content Addressable Memories (CAMs) are widely used in high speed routers to find matching routes for packets in a routing table. They enable the longest prefix matching on fixed-length addresses to be completed in a single clock cycle. However, they can not deal with New IP prefixes with variable lengths directly. In this paper, we propose a mechanism using Binary CAMs (BCAMs) and Ternary CAMs (TCAMs) to efficiently store New IP addresses and complete a route lookup in constant time. Moreover, we combine the hash scheme and CAMs matching scheme to shorten the extremely long New IP addresses and reduce TCAM storage space consumption. The simulation results show that our mechanism can provide high speed route lookup with low power consumption.
机译:自Internet出现以来,IP地址一直是Internet的核心。然而,随着近年来互联网的快速发展,IP地址面临越来越多的问题,例如地址耗尽,低分组效率和低灵活性。原因是IP地址使用固定长度的设计,并且缺乏可扩展性。为了解决这些问题,诞生了新的IP网络体系结构和寻址方法。基于此体系结构,寻址方案采用可变长度和结构化地址。可以根据网络规模平滑扩展地址空间,而无需修改旧的网络地址配置。但是,新IP存在一些挑战,最大的挑战在于可变长度IP地址的路由查找。内容可寻址内存(CAM)广泛用于高速路由器中,以在路由表中查找与数据包匹配的路由。它们使固定长度地址上最长的前缀匹配能够在单个时钟周期内完成。但是,它们不能直接处理具有可变长度的新IP前缀。在本文中,我们提出了一种使用二进制CAM(BCAM)和三元CAM(TCAM)的机制来有效存储新IP地址并在恒定时间内完成路由查找。此外,我们将哈希方案和CAM匹配方案相结合,以缩短极长的新IP地址并减少TCAM存储空间消耗。仿真结果表明,我们的机制可以提供低功耗的高速路由查找。

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