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System Architecture Design of PCIe Root Complex Based on SOPC

机译:基于SOPC的PCIe根复合体系结构设计

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摘要

PCIe bus is widely applied because of its high-bandwidth, high reliability and low cost characteristic. Research on PCIe root complex architecture based on FPGA begin to receive attentions. However, current methods are usually expensive, code closure and poor flexibility. A new open source PCIe root system architecture based on Xilinx SOPC platform is proposed in this paper. The system is mainly composed of AXI-PCIe bridge "AXI interconnect, processing subsystem and DDR3 memory. The processing system runs the embedded Linux operating system for controlling and management functions. The AXI-PCIe bridge communicates with the specific PCIe endpoint device and provides the conversion logic for the PCIe domain address and the AXI domain address. They are connected by high performance AXI interconnect. This paper uses the gigabit ethernet card and network bandwidth testing tools to verify the proposed hardware and software design method. The architecture of this approach has the advantages of simple structure, powerful performance and easy expansion, which provides a feasible solution for new high-performance servers and large-scale PLC systems.
机译:由于其高带宽,高可靠性和低成本特性,PCIe总线广泛应用。基于FPGA的PCIe根复杂架构研究开始接受注意。然而,目前的方法通常是昂贵的,代码闭合和差的灵活性。本文提出了一种基于Xilinx SOPC平台的新开源PCIe根系统架构。该系统主要由AXI-PCIe桥“AXI互连,处理子系统和DDR3内存组成。处理系统运行嵌入式Linux操作系统以控制和管理功能。AXI-PCIe Bridge与特定PCIe端点设备通信并提供PCIe域地址和AXI域地址的转换逻辑。它们通过高性能AXI互连连接。本文使用千兆以太网卡和网络带宽测试工具来验证所提出的硬件和软件设计方法。这种方法的架构具有结构简单,性能强大,易于扩展,为新型高性能服务器和大型PLC系统提供了可行的解决方案。

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