Extending the Control Plane of Container Orchestrators for I/O Virtualization

Fuente: arXiv
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Main Authors: Grigoryan, Garegin, Kwon, Minseok, Rafique, M. Mustafa
Format: Preprint
Published: 2025
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author Grigoryan, Garegin
Kwon, Minseok
Rafique, M. Mustafa
author_facet Grigoryan, Garegin
Kwon, Minseok
Rafique, M. Mustafa
contents Single Root Input/Output Virtualization (SR-IOV) is a standard technology for forking a single PCI express device and providing it to applications while ensuring performance isolation. It enables container orchestrators to share a limited number of physical network interfaces without incurring significant virtualization overhead. The allocation of virtualized network devices to containers, however, needs to be more configurable based on the bandwidth needs of running applications. Moreover, container orchestrators' network control over the virtualized interfaces is limited by the abilities of SR-IOV. We explore the design considerations for a system with controlled SR-IOV virtualization and present ConRDMA, a novel architecture that enables fine control of RDMA virtualization for containers. Our evaluation shows that ConRDMA enables containers to use RDMA allocated bandwidth more efficiently and to select best-suited nodes to meet their varying communication requirements.
format Preprint
id arxiv_https___arxiv_org_abs_2505_06041
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extending the Control Plane of Container Orchestrators for I/O Virtualization
Grigoryan, Garegin
Kwon, Minseok
Rafique, M. Mustafa
Networking and Internet Architecture
Systems and Control
Single Root Input/Output Virtualization (SR-IOV) is a standard technology for forking a single PCI express device and providing it to applications while ensuring performance isolation. It enables container orchestrators to share a limited number of physical network interfaces without incurring significant virtualization overhead. The allocation of virtualized network devices to containers, however, needs to be more configurable based on the bandwidth needs of running applications. Moreover, container orchestrators' network control over the virtualized interfaces is limited by the abilities of SR-IOV. We explore the design considerations for a system with controlled SR-IOV virtualization and present ConRDMA, a novel architecture that enables fine control of RDMA virtualization for containers. Our evaluation shows that ConRDMA enables containers to use RDMA allocated bandwidth more efficiently and to select best-suited nodes to meet their varying communication requirements.
title Extending the Control Plane of Container Orchestrators for I/O Virtualization
topic Networking and Internet Architecture
Systems and Control
url https://arxiv.org/abs/2505.06041