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Implementing a Multi-ejection Switch and Making the Use of Multiple Lanes in a Circuit-switched Multi-FPGA System

机译:实现多弹射开关并在电路交换多FPGA系统中使用多个泳道

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A multi-FPGA System called Flow-in-Cloud (FiC) is currently being developed as an accelerator of Multi-access Edge Computing (MEC), which is one of the core 5G technologies. FiC is a system that consists of multiple mid-range FPGAs tightly connected by high-speed serial links. Since timing-critical jobs are assumed to be executed in MEC, a circuit-switched network with static time-division multiplexing (STDM) switches has been implemented on FiC. In this paper, we investigate the methods to enhance the interconnection performance of FiC. We proposed the link aggregation and the slot distribution for making the use of multiple lanes naturally supported with Aurora-IP and economical FireFly cables. We evaluated combinations of the techniques by using three practical applications on a real FiC prototype with 24 boards. When the number of slots is large and the number of packets is small, the slot distribution is sometimes more effective, while the link aggregation is superior for other most cases. As a result, the communication performance could be improved up to 3.01 times by using four lanes. Furthermore, we found that application designers can use enough resources even using four lanes and the link aggregation is better than the slot distribution.
机译:目前正在开发一种称为云(FIC)的多FPGA系统作为多访问边缘计算(MEC)的加速器,这是核心5G技术之一。 FIC是由高速串行链路紧密连接的多个中档FPGA的系统。由于假设时序关键作业在MEC中执行,因此在FIC上已经实现了具有静态时分复用(STDM)交换机的电路交换网络。在本文中,我们研究了提高FIC互连性能的方法。我们提出了链路聚合和插槽分配,用于使用Aurora-IP和经济萤火虫电缆自然支持的多个车道。我们通过使用24个板上的真实FIC原型的三种实际应用评估了技术的组合。当插槽数量大而数据包数量小时,插槽分布有时更有效,而链路聚合对于其他大多数情况优越。结果,通过使用四个车道可以提高通信性能高达3.01次。此外,我们发现应用程序设计人员即使使用四个车道也可以使用足够的资源,并且链路聚合优于插槽分布。

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