HBM Connect: High-Performance HLS Interconnect for FPGA HBM.

Young-Kyu Choi, Yuze Chi, Weikang Qiao, Nikola Samardzic, Jason Cong
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引用次数: 41

Abstract

With the recent release of High Bandwidth Memory (HBM) based FPGA boards, developers can now exploit unprecedented external memory bandwidth. This allows more memory-bounded applications to benefit from FPGA acceleration. However, fully utilizing the available bandwidth may not be an easy task. If an application requires multiple processing elements to access multiple HBM channels, we observed a significant drop in the effective bandwidth. The existing high-level synthesis (HLS) programming environment had limitation in producing an efficient communication architecture. In order to solve this problem, we propose HBM Connect, a high-performance customized interconnect for FPGA HBM board. Novel HLS-based optimization techniques are introduced to increase the throughput of AXI bus masters and switching elements. We also present a high-performance customized crossbar that may replace the built-in crossbar. The effectiveness of HBM Connect is demonstrated using Xilinx's Alveo U280 HBM board. Based on bucket sort and merge sort case studies, we explore several design spaces and find the design point with the best resource-performance trade-off. The result shows that HBM Connect improves the resource-performance metrics by 6.5X-211X.

HBM Connect:用于FPGA HBM的高性能HLS互连。
随着最近发布的基于高带宽内存(HBM)的FPGA板,开发人员现在可以利用前所未有的外部内存带宽。这允许更多内存受限的应用程序受益于FPGA加速。然而,充分利用可用带宽可能不是一件容易的事。如果应用程序需要多个处理元素来访问多个HBM通道,我们观察到有效带宽的显著下降。现有的高级综合(HLS)编程环境在生成高效的通信体系结构方面存在局限性。为了解决这个问题,我们提出了HBM Connect,一种针对FPGA HBM板的高性能定制互连。引入了新的基于hls的优化技术来提高AXI总线主站和交换元件的吞吐量。我们还提出了一种高性能的定制横条,可以取代内置的横条。使用赛灵思的Alveo U280 HBM板验证了HBM Connect的有效性。基于桶排序和合并排序的案例研究,我们探索了几个设计空间,并找到了具有最佳资源性能权衡的设计点。结果表明,HBM Connect将资源性能指标提高了6.5X-211X。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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