System Virtualization for Neural Processing Units

Yu Xue, Yiqi Liu, Jian Huang
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Abstract

Modern cloud platforms have been employing hardware accelerators such as neural processing units (NPUs) to meet the increasing demand for computing resources for AI-based application services. However, due to the lack of system virtualization support, the current way of using NPUs in cloud platforms suffers from either low resource utilization or poor isolation between multi-tenant application services. In this paper, we investigate the system virtualization techniques for NPUs across the entire software and hardware stack, and present our NPU virtualization solution named NeuCloud. We propose a flexible NPU abstraction named vNPU that allows fine-grained NPU virtualization and resource management. We leverage this abstraction and design the vNPU allocation, mapping, and scheduling policies to maximize the resource utilization, while achieving both performance and security isolation for vNPU instances at runtime.
神经处理单元的系统虚拟化
现代云平台一直在采用神经处理单元(npu)等硬件加速器,以满足基于人工智能的应用服务对计算资源日益增长的需求。但是,由于缺乏系统虚拟化支持,目前在云平台上使用npu的方式存在资源利用率低或多租户应用服务之间隔离性差的问题。在本文中,我们研究了跨整个软件和硬件堆栈的NPU系统虚拟化技术,并提出了我们的NPU虚拟化解决方案NeuCloud。我们提出了一种灵活的NPU抽象,称为vNPU,它允许细粒度的NPU虚拟化和资源管理。我们利用这种抽象并设计vNPU分配、映射和调度策略,以最大限度地提高资源利用率,同时在运行时实现vNPU实例的性能和安全隔离。
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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