Practical smart contract sharding with ownership and commutativity analysis
George Pîrlea, Amrit Kumar, Ilya Sergey
Abstract
Sharding is a popular way to achieve scalability in blockchain protocols, increasing their throughput by partitioning the set of transaction validators into a number of smaller committees, splitting the workload. Existing approaches for blockchain sharding, however, do not scale well when concurrent transactions alter the same replicated state componentÐa common scenario in Ethereum-style smart contracts.
We propose a novel approach for efficiently sharding such transactions. It is based on a folklore idea: state-manipulating atomic operations that commute can be processed in parallel, with their cumulative result defined deterministically, while executing non-commuting operations requires one to own the state they alter. We present CoSplitÐa static program analysis tool that soundly infers ownership and commutativity summaries for smart contracts and translates those summaries to sharding signatures that are used by the blockchain protocol to maximise parallelism. Our evaluation shows that using CoSplit introduces negligible overhead to the transaction validation cost, while the inferred signatures allow the system to achieve a significant increase in transaction processing throughput for real-world smart contracts.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Cited by top-tier papers7
- GriDB: Scaling Blockchain Database via Sharding and Off-Chain Cross-Shard MechanismZicong Hong, Song Guo, Enyuan Zhou, Wuhui Chen et al.VLDB 2023 · 65 citations
- CoChain: High Concurrency Blockchain Sharding via Consensus on ConsensusMingzhe Li, You Lin, Jin Zhang, Wei WangINFOCOM 2023 · 42 citations
- Prophet: Conflict-Free Sharding Blockchain via Byzantine-Tolerant Deterministic OrderingZicong Hong, Song Guo, Enyuan Zhou, Jianting Zhang et al.INFOCOM 2023 · 40 citations
- Optimal Sharding for Scalable Blockchains with Deconstructed SMRJianting Zhang, Zhongtang Luo, Raghavendra Ramesh, Aniket KateVLDB 2025 · 7 citations
- Consolidating Smart Contracts with Behavioral ContractsGuannan Wei, Danning Xie, Wuqi Zhang, Yongwei Yuan et al.PLDI 2024 · 6 citations
Builds on6
- A Secure Sharding Protocol For Open BlockchainsLoi Luu, Viswesh Narayanan, Chaodong Zheng, Kunal Baweja et al.CCS 2016 · 1,392 citations
- OmniLedger: A Secure, Scale-Out, Decentralized Ledger via ShardingEleftherios Kokoris-Kogias, Philipp Jovanovic, Linus Gasser, Nicolas Gailly et al.S&P 2018 · 1,145 citations
- RapidChain: Scaling Blockchain via Full ShardingMahdi Zamani, Mahnush Movahedi, Mariana RaykovaCCS 2018 · 1,084 citations
- Keeping Authorities "Honest or Bust" with Decentralized Witness CosigningEwa Syta, Iulia Tamas, Dylan Visher, David Isaac Wolinsky et al.S&P 2016 · 285 citations
- Automated Generation of Event-Oriented Exploits in Android Hybrid AppsGuangliang Yang, Jeff Huang, Guofei GuNDSS 2018 · 79 citations
Related papers
- On Sharding Open Blockchains with Smart ContractsYuechen Tao, Bo Li, Jingjie Jiang, Hok Chu Ng et al.ICDE 2020 · 76 citations
- Concordia: Enabling Low-Conflict Distributed Transaction Scheduling in Sharding Blockchain via Cooperative PerceptionYanxiu Liu, Linpeng Jia, Xiaohu Yang, Zhongcheng Li et al.WWW 2026
- LightCross: Sharding with Lightweight Cross-Shard Execution for Smart ContractsXiaodong Qi, Yi LiINFOCOM 2024 · 22 citations
- Poros: Secure and Highly Parallel Sharding Blockchain with Optimized Cross-Shard Transaction ProcessingZhuocheng Pan, Jianwei Liu, Andi Liu, Yuxuan Hu et al.CCS 2026
- Sharon: Secure and Efficient Cross-shard Transaction Processing via Shard RotationShan Jiang, Jiannong Cao, Cheung Leong Tung, Yuqin Wang et al.INFOCOM 2024 · 22 citations
