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Haetae: Scaling the Performance of Network Intrusion Detection with Many-Core Processors

机译:Haetae:用多核处理器扩展网络入侵检测的性能

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In this paper, we present the design and implementation of Haetae, a high-performance Suricata-based NIDS on many-core processors (MCPs). Haetae achieves high performance with three design choices. First, Haetae extensively exploits high parallelism by launching NIDS engines that independently analyze the incoming flows at high speed as much as possible. Second, Haetae fully leverages programmable network interface cards to offload common packet processing tasks from regular cores. Also, Haetae minimizes redundant memory access by maintaining the packet metadata structure as small as possible. Third, Haetae dynamically offloads flows to the host-side CPU when the system experiences a high load. This dynamic flow offloading utilizes all processing power on a given system regardless of processor types. Our evaluation shows that Haetae achieves up to 79.3 Gbps for synthetic traffic or 48.5 Gbps for real packet traces. Our system outperforms the best-known GPU-based NIDS by 2.4 times and the best-performing MCP-based system by 1.7 times. In addition, Haetae is 5.8 times more power efficient than the state-of-the-art GPU-based NIDS.
机译:在本文中,我们展示了Haetae的设计和实施,在许多核心处理器(MCP)上的基于高性能Suricata的NID。 Haetae实现了具有三种设计选择的高性能。首先,Haetae通过推出NIDS引擎广泛利用高并行发动机,以尽可能高速地分析进入的流量。其次,Haetae完全利用可编程网络接口卡从常规核心卸载公共数据包处理任务。此外,HAETAE通过维护尽可能小的分组元数据结构来最小化冗余存储器访问。第三,当系统经历高负荷时,Haetae动态卸载到主机侧CPU。无论处理器类型如何,该动态流卸载都利用给定系统上的所有处理电源。我们的评价表明,Haetae为合成交通或48.5 Gbps实现了高达79.3 Gbps的真实包痕迹。我们的系统优于基于最知名的GPU的NID,并将最佳的基于MCP的系统更优于1.4次,并按1.7次。此外,HAETAE比最先进的GPU的NID效率为5.8倍。

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