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Design of Converged Network Coding Layer for the Ethernet and HPC High-Speed Network

机译:以太网和HPC高速网络融合网络编码层的设计

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With the rapid development of the data center, high-performance computing (HPC), and multi-server system, the relevant applications present different requirements and characteristics. The data transmission is difficult between their interconnection networks, with the urgent demand for the highly converged network adapting to different interconnection networks. Hence, the multi-network convergence becomes an essential trend in the development of the interconnection network. The work proposed a converged network coding sublayer for the Ethernet network and HPC high-speed networks. Firstly, based on the low latency and high-reliability requirements of the HPC high-speed network, we analyzed the relationship between the parameters and the latency of RS code and proposed a new RS(272,257) code for the HPC high-speed network with low latency and high reliability. Then, based on the RS(528,514) code used in 100 Gbps Ethernet and the new RS(272,257) code, the converged interconnection network coding layer was designed. Finally, the work simulated the latency performance of the RS(528,514) code and the new RS(272,257) code and assessed the resource consumption of the converged network coding sublayer, the RS(528,514) coding sublayer, and the RS(272,257) coding sublayer. By the comprehensive assessment of error correction capability, latency performance, and resource consumption, the new RS(272,257) code was an ideal forward errorcorrection code to meet the requirements of the HPC highspeed interconnection network. The converged coding sublayer, configured to support the Ethernet or the HPC high-speed network, was implemented at the cost of finite resources reusing common logic of RS(272,257) and RS(528,514) as much as possible.
机译:随着数据中心的快速发展,高性能计算(HPC)和多服务器系统,相关应用呈现不同的要求和特征。它们的互连网络之间的数据传输难以实现对不同互连网络的高度融合网络的迫切需求。因此,多网络融合成为互连网络的开发的基本趋势。该工作提出了一种用于以太网网络和HPC高速网络的融合网络编码子层。首先,基于HPC高速网络的低延迟和高可靠性要求,我们分析了RS代码的参数和延迟之间的关系,并提出了HPC高速网络的新RS(272,257)代码低延迟和高可靠性。然后,基于100 Gbps以太网和新的RS(272,257)代码中使用的RS(528,514)代码,设计了融合的互连网络编码层。最后,该工作模拟了RS(528,514)代码和新RS(272,257)代码的延迟性能,并评估了融合网络编码子层的资源消耗,RS(528,514)编码子层,RS(272,257)编码子层。通过对纠错能力的全面评估,延迟性能和资源消耗,新的RS(272,257)代码是一个理想的前向错误粗校,以满足HPC高速互连网络的要求。被配置为支持以太网或HPC高速网络的融合编码子层以尽可能多地重用RS(272,257)和RS(528,514)的共同逻辑的成本实现。

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