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Counter Tree: A Scalable Counter Architecture for Per-Flow Traffic Measurement

机译:计数器树:用于按流流量测量的可扩展计数器体系结构

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Per-flow traffic measurement, which is to count the number of packets for each active flow during a certain measurement period, has many applications in traffic engineering, classification of routing distribution or network usage pattern, service provision, anomaly detection, and network forensics. In order to keep up with the high throughput of modern routers or switches, the online module for per-flow traffic measurement should use high-bandwidth SRAM that allows fast memory accesses. Due to limited SRAM space, exact counting, which requires to keep a counter for each flow, does not scale to large networks consisting of numerous flows. Some recent work takes a different approach to estimate the flow sizes using counter architectures that can fit into tight SRAM. However, existing counter architectures have limitations, either still requiring considerable SRAM space or having a small estimation range. In this paper, we design a scalable counter architecture called Counter Tree, which leverages a 2-D counter sharing scheme to achieve far better memory efficiency and in the meantime extend estimation range significantly. Furthermore, we improve the performance of Counter Tree by adding a status bit to each counter. Extensive experiments with real network traces demonstrate that our counter architecture can produce accurate estimates for flows of all sizes under very tight memory space.
机译:每流通信量测量是在某个测量周期内计算每个活动流的数据包数量,它在通信工程,路由分配或网络使用模式分类,服务提供,异常检测和网络取证中具有许多应用。为了跟上现代路由器或交换机的高吞吐量,用于按流流量测量的在线模块应使用允许快速访问存储器的高带宽SRAM。由于有限的SRAM空间,需要为每个流保留一个计数器的精确计数无法扩展到包含多个流的大型网络。最近的一些工作采用了不同的方法来估计流量大小,使用的计数器架构可以适合紧密的SRAM。但是,现有的计数器体系结构有局限性,要么仍然需要相当大的SRAM空间,要么估计范围很小。在本文中,我们设计了一种称为Counter Tree的可扩展计数器体系结构,该体系结构利用2-D计数器共享方案来实现更好的存储效率,同时显着扩展了估计范围。此外,我们通过向每个计数器添加状态位来提高计数器树的性能。使用真实网络轨迹进行的大量实验表明,我们的计数器体系结构可以在非常紧凑的内存空间内对各种大小的流量产生准确的估计。

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