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High Performance High-Precision Floating-Point Operations on FPGAs Using OpenCL

机译:使用OpenCL在FPGA上进行高性能,高精度浮点运算

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Development of high-level synthesis tools such as OpenCL SDK for FPGAs enables us to design accelerators for scientific applications that can take advantage of flexibility and efficiency of FPGAs. However, the available OpenCL SDKs only support the standard floating-point (FP) formats. In this paper, we present the performance evaluation of high precision FP operations, which are currently not supported in OpenCL, on recent FPGAs. By using a mechanism to call a custom design from an OpenCL kernel, we evaluate the performance of a sample application in high precision FP format binary128. We found that the sustained performance of our design in binary128 on Intel Arria10 and Stratix10 is 19 and 71 Gflops, respectively.
机译:诸如FPGA的OpenCL SDK之类的高级综合工具的开发使我们能够为科学应用设计加速器,从而可以利用FPGA的灵活性和效率。但是,可用的OpenCL SDK仅支持标准浮点(FP)格式。在本文中,我们介绍了最新FPGA上高精度FP操作的性能评估,OpenCL当前不支持高精度FP操作。通过使用一种从OpenCL内核调用自定义设计的机制,我们以高精度FP格式binary128评估了示例应用程序的性能。我们发现,我们的设计在Intel Arria10和Stratix10上的binary128中的持续性能分别为19 Gflops和71 Gflops。

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