ChainKV: A Semantics-Aware Key-Value Store for Ethereum System
Zehao Chen, Bingzhe Li, Xiaojun Cai, Zhiping Jia, Lei Ju, Zili Shao, Zhaoyan Shen
Abstract
The Log-Structure Merged tree (LSM-tree) based key-value (KV) store has been widely adopted as the storage engine for blockchain systems, such as Ethereum, in which blockchain data are uniformly transformed into randomly distributed KV items for persistence. However, blockchain semantics are ignored during this process, making the blockchain storage suffer from heavy read/write amplification problems. Moreover, as the Ethereum network scales up, tremendous data further exacerbates its storage burden. Until now, most studies have focused on sharding, data archiving, decentralized distributed storage, etc., to mitigate the burden of the storage layer. However, the incompatibility between Ethereum semantics and the characteristics of the storage engine is ignored. In this paper, we present ChainKV, a new semantics-aware storage paradigm to improve the storage management performance for the Ethereum system. Firstly, based on Ethereum blockchain semantics, ChainKV separately stores different types of data in multiple storage zones in the KV store to mitigate the read/write amplification problem. Secondly, following the mechanism of the verification process in the authenticated data structure (ADS), a new ADS data transformer is proposed to exploit the data locality when persisting ADS. Moreover, a new space gaming caching policy is adopted to coordinate the cache space management for two independent storage zones. Finally, we propose an optional lightweight node crash recovery mechanism to eliminate functional redundancy between the Ethereum protocol and the storage engine. The experimental results indicate that ChainKV outperforms the prior Ethereum systems by up to 1.99× and 4.20× for synchronization and query operations, respectively
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Cited by top-tier papers2
- Aster: Enhancing LSM-structures for Scalable Graph DatabaseDingheng Mo, Junfeng Liu, Fan Wang, Siqiang LuoSIGMOD 2025 · 10 citations
- MHOT: Height-Optimized Authenticated Data Structure for Blockchain State CommitmentSipeng Xie, Qianhong Wu, Minghang Li, Qiyuan Gao et al.USENIX Security 2026 · 2 citations
Related papers
- Authenticated Keyword Search in Scalable Hybrid-Storage BlockchainsCe Zhang, Cheng Xu, Haixin Wang, Jianliang Xu et al.ICDE 2021 · 88 citations
- FicusDB: Scalable Multi-Versioned Authenticated Archival StorageHongbo Zhang, Maofan Yin, Robbert van RenesseEuroSys 2026
- LVMT: An Efficient Authenticated Storage for BlockchainChenxing Li, Sidi Mohamed Beillahi, Guang Yang, Ming Wu et al.OSDI 2023 · 4 citations
- Cole : Towards Practical Column-Based Learned Storage for Blockchain SystemsCe Zhang, Cheng Xu, Haibo Hu, Jianliang XuICDE 2026
- PartitionKV: Redesigning LSM-tree KV Stores on NVMs with Adaptive Partitioning for Reducing Write Stalls and AmplificationXingye Huang, Jinyu Wu, Xiaofang Xia, Jiangtao Cui et al.SIGMOD 2026
