English

GeoTP: Latency-aware Geo-Distributed Transaction Processing in Database Middlewares (Extended Version)

Databases 2024-12-06 v3

Abstract

The widespread adoption of database middleware for supporting distributed transaction processing is prevalent in numerous applications, with heterogeneous data sources deployed across national and international boundaries. However, transaction processing performance significantly drops due to the high network latency between the middleware and data sources and the long lock contention span, where transactions may be blocked while waiting for the locks held by concurrent transactions. In this paper, we propose GeoTP, a latency-aware geo-distributed transaction processing approach in database middlewares. GeoTP incorporates three key techniques to enhance geo-distributed transaction performance. First, we propose a decentralized prepare mechanism, which diminishes the requirement of network round trips for distributed transactions. Second, we design a latency-aware scheduler to minimize the lock contention span by strategically postponing the lock acquisition time point. Third, heuristic optimizations are proposed for the scheduler to reduce the lock contention span further. We implemented GeoTP on Apache Shardingsphere, a state-of-the-art middleware, and extended it into Apache ScalarDB. Experimental results on YCSB and TPC-C demonstrate that GeoTP achieves up to 17.7x performance improvement over Shardingsphere.

Keywords

Cite

@article{arxiv.2412.01213,
  title  = {GeoTP: Latency-aware Geo-Distributed Transaction Processing in Database Middlewares (Extended Version)},
  author = {Qiyu Zhuang and Xinyue Shi and Shuang Liu and Wei Lu and Zhanhao Zhao and Yuxing Chen and Tong Li and Anqun Pan and Xiaoyong Du},
  journal= {arXiv preprint arXiv:2412.01213},
  year   = {2024}
}

Comments

To be appeared in ICDE 2025

R2 v1 2026-06-28T20:19:15.599Z