数据包内容与packetC搜索集匹配

R. Duncan, P. Jungck, Kenneth Ross, S. Tillman
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引用次数: 6

摘要

速度和容量的增加促使网络数据包应用程序使用并行处理来提高性能。检查包的有效负载(消息内容)是包处理的一个关键方面。应用程序搜索有效负载以查找与正则表达式(regex)描述的模式匹配的字符串。搜索可能从有效负载的任何位置开始的多个字符串是性能的主要障碍。商业系统通常使用多个网络处理器来提供并行处理,并使用regex软件引擎或特殊的regex处理器来通过并行性加快搜索性能。通常,regex规则与应用程序分开准备,并编译成二进制映像,供regex处理器或软件引擎读取。我们的方法集成了指定搜索规则和指定用包C编写的网络应用程序代码,包C是一种隐藏主机细节的C方言,支持粗粒度并行性,并为包处理提供高级数据类型和操作符扩展。packetC提供了一个搜索集数据类型,以及匹配和查找操作,以支持有效负载搜索。我们展示了使用关联内存和正则表达式处理器的搜索集运算符实现,使用户无需学习硬件细节或使用单独的正则表达式工具链就可以享受并行正则表达式技术的性能优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Packet Content Matching with packetC Searchsets
Increasing speeds and volumes push network packet applications to use parallel processing to boost performance. Examining the packet payload (message content) is a key aspect of packet processing. Applications search payloads to find strings that match a pattern described by regular expressions (regex). Searching for multiple strings that may start anywhere in the payload is a major obstacle to performance. Commercial systems often employ multiple network processors to provide parallel processing in general and use regex software engines or special regex processors to speed up searching performance via parallelism. Typically, regex rules are prepared separately from the application program and compiled into a binary image to be read by a regex processor or software engine. Our approach integrates specifying search rules with specifying network application code written in packet C, a C dialect that hides host-machine specifics, supports coarse-grain parallelism and supplies high-level data type and operator extensions for packet processing. packetC provides a search set data type, as well as match and find operations, to support payload searching. We show that our search set operator implementation, using associative memory and regex processors, lets users enjoy the performance benefits of parallel regex technology without learning hardware-specifics or using a separate regex toolchain’s use.
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