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SymbiFlow and VPR: An Open-Source Design Flow for Commercial and Novel FPGAs

机译:Symbiflow和VPR:用于商业和新型FPGA的开源设计流程

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摘要

As the benefits of Moore's Law diminish, computing performance, and efficiency gains are increasingly achieved through specializing hardware to a domain of computation. However, this limits the hardware's generality and flexibility. Field-programmable gate arrays (FPGAs), microchips which can be reprogrammed to implement arbitrary digital circuits, enable the benefits of specialization while remaining flexible. A challenge to using FPGAs is the complex computer-aided design flow required to efficiently map a computation onto an FPGA. Traditionally, these design flows are closed-source and highly specialized to a particular vendor's devices. We propose an alternate data-driven approach, which uses highly adaptable and retargettable open-source tools to target both commercial and research FPGA architectures. While challenges remain, we believe this approach makes the development of novel and commercial FPGA architectures faster and more accessible. Furthermore, it provides a path forward for industry, academia, and the open-source community to collaborate and combine their resources to advance FPGA technology.
机译:随着摩尔法的好处,通过专业化硬件到计算领域,越来越多地实现计算性能和效率提升。但是,这限制了硬件的一般性和灵活性。现场可编程门阵列(FPGA),可以重新编程以实现任意数字电路的微芯片,实现专业化的好处,同时保持灵活。使用FPGA的挑战是复杂的计算机辅助设计流程,以便将计算映射到FPGA上。传统上,这些设计流是封闭源,专业为特定供应商的设备。我们提出了一种替代数据驱动的方法,它使用高度适应和重新排列的开源工具来针对商业和研究FPGA架构。虽然挑战仍然存在,但我们认为这种方法使新颖和商业FPGA架构的发展更快,更易于获得。此外,它为行业,学术界和开放源社区提供了一条前进的道路,并结合其资源推进FPGA技术。

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