云环境下FPGA多租户的架构支持

Joel Mandebi Mbongue, Alex Shuping, Pankaj Bhowmik, C. Bobda
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引用次数: 16

摘要

云部署现在越来越多地提供FPGA加速器作为虚拟实例的一部分。虽然FPGA本质上仍然是单租户的,但是对硬件加速的不断增长的需求将不可避免地导致对支持FPGA多租户的方法和体系结构的需求。在本文中,我们提出了一种支持FPGA设备在云中的多个租户之间空间共享的架构。该架构实现了一种芯片网络(NoC),旨在实现快速数据移动和低硬件占用。在Xilinx Virtex Ultrascale +上对所提出的架构进行原型设计,证明了芯片上数据移动的最高频率接近规格,并且在虚拟实例访问硬件加速器时具有高吞吐量。与单租户部署相比,我们展示了类似的性能,同时提高了FPGA利用率(通过我们的案例研究,FPGA利用率提高了6倍),这是虚拟化的主要目标之一。总体而言,我们的NoC互连实现了比最先进的最大频率高约2倍,带宽为25.6 Gbps。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architecture Support for FPGA Multi-tenancy in the Cloud
Cloud deployments now increasingly provision FPGA accelerators as part of virtual instances. While FPGAs are still essentially single-tenant, the growing demand for hardware acceleration will inevitably lead to the need for methods and architectures supporting FPGA multi-tenancy. In this paper, we propose an architecture supporting space-sharing of FPGA devices among multiple tenants in the cloud. The proposed architecture implements a network-on-chip (NoC) designed for fast data movement and low hardware footprint. Prototyping the proposed architecture on a Xilinx Virtex Ultrascale + demonstrated near specification maximum frequency for on-chip data movement and high throughput in virtual instance access to hardware accelerators. We demonstrate similar performance compared to single-tenant deployment while increasing FPGA utilization (we achieved $6 \times$ higher FPGA utilization with our case study), which is one of the major goals of virtualization. Overall, our NoC interconnect achieved about $2 \times$ higher maximum frequency than the state-of-the-art and a bandwidth of 25.6 Gbps.
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