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Efficient Implementations of Multi-pumped Multi-port Register Files in FPGAs

机译:FPGA中多泵浦多端口寄存器文件的高效实现

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Existing implementation methods of multi-port register files (MPo-RF) in FPGAs are not scalable enough to deal with the increased number of ports due to higher logic area and power. While the usage of dedicated block RAMs (BRAMs) limits the designer to use only single read and single write port, slice based approach causes large resource occupation and degrades design performance significantly. Similarly, the conventional multi-pumping (MPu) approaches are not efficient enough due to increased combinational delay and area of huge multiplexers. In this paper, we propose a new design which exploits the banking and replication of BRAMs with efficient shift register based multi-pumping (SR-MPu) approach. While increased port number causes internal frequency drops in conventional multiplexer based MPu approaches, it does not affect internal operating frequency of our SR-MPu methodology. Test results on Xilinx Virtex-5 XC5VLX110T FPGA show that our 32-bit 12-read & 6-write (12R&6W) RF can operate internally up to 429 Mhz while 64-bit version up to 408 Mhz. The speed of our RF is independent from MPu factor and occupies lower logic resources up to 47% when compared with other design methods. In terms of energy consumption, our RF design saves energy up to 26% according to the Xilinx Power Analyzer (XPA) results.
机译:FPGA中的多端口寄存器文件(MPO-RF)的现有实现方法不能缩放,足以处理由于更高的逻辑区域和功率的端口数量增加。虽然专用块RAM(BRAMS)的使用限制了设计者仅使用单个读取和单个写入端口,但基于切片的方法会导致大的资源占用并显着降低设计性能。类似地,由于庞大多路复用器的组合延迟和面积增加,传统的多泵送(MPU)方法不够高。在本文中,我们提出了一种新的设计,利用基于高效的换档寄存器的多泵(SR-MPU)方法来利用BRAM的银行和复制。虽然增加的端口号导致基于传统的多路复用器的MPU方法中的内部频率下降,但它不会影响我们的SR-MPU方法的内部工作频率。 Xilinx Virtex-5 XC5VLX110T FPGA的测试结果表明我们的32位12读& 6 - 写(12R&&& 6W)RF可以在内部高达429 MHz运行,而64位版本高达408 MHz。与其他设计方法相比,我们的RF的速度与MPU因子无关,占用高达47%的较低逻辑资源。在能耗方面,根据Xilinx Power Analyzer(XPA)结果,我们的RF设计可节省高达26%的能量。

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