OSMOSIS: Enabling Multi-Tenancy in Datacenter SmartNICs

Fuente: arXiv
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Autores principales: Khalilov, Mikhail, Chrapek, Marcin, Shen, Siyuan, Vezzu, Alessandro, Benz, Thomas, Di Girolamo, Salvatore, Schneider, Timo, De Sensi, Daniele, Benini, Luca, Hoefler, Torsten
Formato: Preprint
Publicado: 2023
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author Khalilov, Mikhail
Chrapek, Marcin
Shen, Siyuan
Vezzu, Alessandro
Benz, Thomas
Di Girolamo, Salvatore
Schneider, Timo
De Sensi, Daniele
Benini, Luca
Hoefler, Torsten
author_facet Khalilov, Mikhail
Chrapek, Marcin
Shen, Siyuan
Vezzu, Alessandro
Benz, Thomas
Di Girolamo, Salvatore
Schneider, Timo
De Sensi, Daniele
Benini, Luca
Hoefler, Torsten
contents Multi-tenancy is essential for unleashing SmartNIC's potential in datacenters. Our systematic analysis in this work shows that existing on-path SmartNICs have resource multiplexing limitations. For example, existing solutions lack multi-tenancy capabilities such as performance isolation and QoS provisioning for compute and IO resources. Compared to standard NIC data paths with a well-defined set of offloaded functions, unpredictable execution times of SmartNIC kernels make conventional approaches for multi-tenancy and QoS insufficient. We fill this gap with OSMOSIS, a SmartNICs resource manager co-design. OSMOSIS extends existing OS mechanisms to enable dynamic hardware resource multiplexing of the on-path packet processing data plane. We integrate OSMOSIS within an open-source RISC-V-based 400Gbit/s SmartNIC. Our performance results demonstrate that OSMOSIS fully supports multi-tenancy and enables broader adoption of SmartNICs in datacenters with low overhead.
format Preprint
id arxiv_https___arxiv_org_abs_2309_03628
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle OSMOSIS: Enabling Multi-Tenancy in Datacenter SmartNICs
Khalilov, Mikhail
Chrapek, Marcin
Shen, Siyuan
Vezzu, Alessandro
Benz, Thomas
Di Girolamo, Salvatore
Schneider, Timo
De Sensi, Daniele
Benini, Luca
Hoefler, Torsten
Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
Operating Systems
Systems and Control
Multi-tenancy is essential for unleashing SmartNIC's potential in datacenters. Our systematic analysis in this work shows that existing on-path SmartNICs have resource multiplexing limitations. For example, existing solutions lack multi-tenancy capabilities such as performance isolation and QoS provisioning for compute and IO resources. Compared to standard NIC data paths with a well-defined set of offloaded functions, unpredictable execution times of SmartNIC kernels make conventional approaches for multi-tenancy and QoS insufficient. We fill this gap with OSMOSIS, a SmartNICs resource manager co-design. OSMOSIS extends existing OS mechanisms to enable dynamic hardware resource multiplexing of the on-path packet processing data plane. We integrate OSMOSIS within an open-source RISC-V-based 400Gbit/s SmartNIC. Our performance results demonstrate that OSMOSIS fully supports multi-tenancy and enables broader adoption of SmartNICs in datacenters with low overhead.
title OSMOSIS: Enabling Multi-Tenancy in Datacenter SmartNICs
topic Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
Operating Systems
Systems and Control
url https://arxiv.org/abs/2309.03628