TXSQL: Lock Optimizations Towards High Contented Workloads
Summary: TXSQL optimizes 2PL with lightweight lock management, a copy-free active transaction list, and queue locking to boost concurrency. A hotspot-aware mode groups conflicts, enabling uncommitted execution without locks and delivering up to 6.5x–22.3x gains. (summarized by gpt-5-nano on Feb 09 2026)
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Authors
- 1. Donghui Wang (Tencent)
- 2. Yuxing Chen (Tencent)
- 3. Chengyao Jiang (Tencent)
- 4. Anqun Pan (Tencent)
- 5. Wei Jiang (Tencent)
- 6. Songli Wang (Tencent)
- 7. Hailin Lei (Tencent)
- 8. Chong Zhu (Tencent)
- 9. Lixiong Zheng (Tencent)
- 10. Wei Lu (Renmin University of China)
- 11. Yunpeng Chai (Renmin University of China)
- 12. Feng Zhang (Renmin University of China)
- 13. Xiaoyong Du (Renmin University of China)
BibTeX Citation
@inproceedings{wang_sigmod25,
title = {{TXSQL: Lock Optimizations Towards High Contented Workloads}},
author = {Wang, Donghui and Chen, Yuxing and Jiang, Chengyao and Pan, Anqun and Jiang, Wei and Wang, Songli and Lei, Hailin and Zhu, Chong and Zheng, Lixiong and Lu, Wei and Chai, Yunpeng and Zhang, Feng and Du, Xiaoyong},
series = {{SIGMOD} '25},
booktitle = {Proceedings of the {ACM} {SIGMOD} International Conference on Management of Data},
publisher = {Association for Computing Machinery},
doi = {10.1145/3722212.3724457},
url = {https://dl.acm.org/doi/10.1145/3722212.3724457},
year = {2025}
}
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| Rank | Citing Paper | Year | Venue | Pagerank |
|---|---|---|---|---|
| 10,014 | TxnSails: Achieving Serializable Transaction Scheduling with Self-Adaptive Isolation Level Selection | 2025 | VLDB | 5.1770751e-05 |
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