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Autori principali: Zhou, Jiatang, Huang, Kaisong, Wang, Tianzheng
Natura: Preprint
Pubblicazione: 2026
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Accesso online:https://arxiv.org/abs/2603.02108
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author Zhou, Jiatang
Huang, Kaisong
Wang, Tianzheng
author_facet Zhou, Jiatang
Huang, Kaisong
Wang, Tianzheng
contents With millisecond-level latency and support for mutable objects, recent low-latency object storage services as represented by Amazon S3 Express One Zone have become an attractive option for OLTP engines to directly commit transactions and persist operational data with transparent strong consistency, high durability and high availability. But a naïve adoption can still lead to high commit latency due to idiosyncrasies of S3 Express One Zone and modern decentralized logging. This paper presents Milliscale, a memory-optimized OLTP engine for low-latency object storage. Milliscale optimizes commit latency with new techniques that lower commit delays and reduce the number of object access requests. Our evaluation using representative benchmarks shows that Milliscale delivers much lower commit latency than baselines while sustaining high throughput.
format Preprint
id arxiv_https___arxiv_org_abs_2603_02108
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Milliscale: Fast Commit on Low-Latency Object Storage
Zhou, Jiatang
Huang, Kaisong
Wang, Tianzheng
Databases
With millisecond-level latency and support for mutable objects, recent low-latency object storage services as represented by Amazon S3 Express One Zone have become an attractive option for OLTP engines to directly commit transactions and persist operational data with transparent strong consistency, high durability and high availability. But a naïve adoption can still lead to high commit latency due to idiosyncrasies of S3 Express One Zone and modern decentralized logging. This paper presents Milliscale, a memory-optimized OLTP engine for low-latency object storage. Milliscale optimizes commit latency with new techniques that lower commit delays and reduce the number of object access requests. Our evaluation using representative benchmarks shows that Milliscale delivers much lower commit latency than baselines while sustaining high throughput.
title Milliscale: Fast Commit on Low-Latency Object Storage
topic Databases
url https://arxiv.org/abs/2603.02108