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Adapting the DySER Architecture with DSP Blocks as an Overlay for the Xilinx Zynq

机译:用Xilinx Zynq的DSP模块调整DySER架构的覆盖

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摘要

Coarse-grained overlay architectures have been shown to be effective when paired with general purpose processors, offering software-like programmability, fast compilation, and improved design productivity. These architectures enable general purpose hardware accelerators, allowing hardware design at a higher level of abstraction, but at the cost of area and performance overheads. This paper examines the DySER overlay architecture as a hardware accelerator paired with a general purpose processor in a hybrid FPGA such as the Xilinx Zynq. We evaluate the DySER architecture mapped on the Xilinx Zynq and show that it suffers from a significant area and performance overhead. We then propose an improved functional unit architecture using the flexibility of the DSP48E1 primitive which results in a 2.5 times frequency improvement and 25% area reduction compared to the original functional unit architecture. We demonstrate that this improvement results in the routing architecture becoming the bottleneck in performance.
机译:当与通用处理器配合使用时,粗粒度的覆盖体系结构已被证明是有效的,它提供了类似于软件的可编程性,快速编译和提高了设计生产率的效果。这些体系结构支持通用硬件加速器,从而可以在更高的抽象水平上进行硬件设计,但会占用面积和性能开销。本文研究了DySER覆盖架构,将其作为混合加速器(如Xilinx Zynq)中的通用处理器与硬件加速器配对使用。我们评估了Xilinx Zynq上映射的DySER架构,并证明它遭受了很大的面积和性能开销。然后,我们利用DSP48E1原语的灵活性提出了一种改进的功能单元体系结构,与原始功能单元体系结构相比,其频率提高了2.5倍,面积减少了25%。我们证明,这种改进导致路由体系结构成为性能瓶颈。

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  • 来源
    《Computer architecture news》 |2015年第4期|28-33|共6页
  • 作者单位

    School of Computer Engineering, Nanyang Technological University, Singapore;

    School of Computer Engineering, Nanyang Technological University, Singapore;

    School of Computer Engineering, Nanyang Technological University, Singapore;

    School of Computer Engineering, Nanyang Technological University, Singapore;

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