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A CRC-Based Classifier Micro-Engine for Efficient Flow Processing in SDN-Based Internet of Things

机译:基于CRC的分类器微型发动机,用于基于SDN的物联网上有效的流量处理

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In the Internet of things (IoT), network devices and mobile systems should exchange a considerable amount of data with negligible delays. For this purpose, the community has used the software-defined networking (SDN), which has provided high-speed flow-based communication mechanisms. To satisfy the requirements of SDN in the classification of communicated packets, high-throughput packet classification systems are needed. A hardware-based method of Internet packet classification that could be simultaneously high-speed and memory-aware has been proved to be able to fill the gap between the network speed and the processing speed of the systems on the network in traffics higher than 100?Gbps. The current architectures, however, have not been successful in achieving these two goals. This paper proposes the architecture of a processing micro-core for packet classification in high-speed, flow-based network systems. By using the hashing technique, this classifying micro-core fixes the length of the rules field. As a result, with a combination of SRAM and BRAM memory cells and implementation of two ports on Virtex?6 FPGAs, the memory usage of 14.5 bytes per rule and a throughput of 324 Mpps were achieved in our experiments. Also, the performance per memory of the proposed design is the highest as compared to its major counterparts and is able to simultaneously meet the speed and memory-usage criteria.
机译:在物联网(物联网)中,网络设备和移动系统应交换相当数量的数据,延迟可忽略不计。为此目的,社区使用了软件定义的网络(SDN),其提供了基于高速流的通信机制。为了满足传送数据包的分类中SDN的要求,需要高吞吐量分类系统。已经证明,可以同时高速和内存感知的基于硬件的Internet分组分类方法,以便能够填充网络速度与网络上网络上的系统的处理速度之间的差距高于100? Gbps。然而,目前的架构在实现这两个目标方面并没有成功。本文提出了高速,基于流量的网络系统的分组分类的处理微核的架构。通过使用散列技术,该分类微内核修复了规则字段的长度。结果,通过SRAM和BRAM存储器单元的组合以及在Virtex?6 FPGA上的两个端口的实现,在我们的实验中实现了每规则14.5个字节的存储器使用和324个MPP的吞吐量。此外,拟议设计的每个存储器的性能最高,与其主要对应物相比是最高的,并且能够同时满足速度和内存使用标准。

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