Providing scalable single‐operating‐system NUMA abstraction of physically discrete resources

With an explosive increase of data produced annually, researchers have been attempting to develop solutions for systems that can effectively handle large amounts of data. Single‐operating‐system (OS) non‐uniform memory access (NUMA) ion technology is an important technology that ensures the compatib...

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Veröffentlicht in:ETRI journal 2024-06, Vol.46 (3), p.501-512
Hauptverfasser: An, Baik Song, Cha, Myung Hoon, Lee, Sang‐Min, Yang, Won Hyuk, Kim, Hong Yeon
Format: Artikel
Sprache:eng
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Zusammenfassung:With an explosive increase of data produced annually, researchers have been attempting to develop solutions for systems that can effectively handle large amounts of data. Single‐operating‐system (OS) non‐uniform memory access (NUMA) ion technology is an important technology that ensures the compatibility of single‐node programming interfaces across multiple nodes owing to its higher cost efficiency compared with scale‐up systems. However, existing technologies have not been successful in optimizing user performance. In this paper, we introduce a single‐OS NUMA ion technology that ensures full compatibility with the existing OS while improving the performance at both hypervisor and guest levels. Benchmark results show that the proposed technique can improve performance by up to 4.74 × on average in terms of execution time compared with the existing state‐of‐the‐art open‐source technology.
ISSN:1225-6463
2233-7326
DOI:10.4218/etrij.2023-0056