Nurgle: Exacerbating Resource Consumption in Blockchain State Storage via MPT Manipulation
Zheyuan He, Zihao Li, Ao Qiao, Xiapu Luo, Xiaosong Zhang, Ting Chen, Shuwei Song, Dijun Liu, Weina Niu
Abstract
Blockchains, with intricate architectures, encompass various components, e.g., consensus network, smart contracts, decentralized applications, and auxiliary services. While offering numerous advantages, these components expose various attack surfaces, leading to severe threats to blockchains. In this study, we unveil a novel attack surface, i.e., the state storage, in blockchains. The state storage, based on the Merkle Patricia Trie, plays a crucial role in maintaining blockchain state. Besides, we design Nurgle, the first Denial-of-Service attack targeting the state storage. By proliferating intermediate nodes within the state storage, Nurgle forces blockchains to expend additional resources on state maintenance and verification, impairing their performance. We conduct a comprehensive and systematic evaluation of Nurgle, including the factors affecting it, its impact on blockchains, its financial cost, and practically demonstrating the resulting damage to blockchains. The implications of Nurgle extend beyond the performance degradation of blockchains, potentially reducing trust in them and the value of their cryptocurrencies. Additionally, we further discuss three feasible mitigations against Nurgle. At the time of writing, the vulnerability exploited by Nurgle has been confirmed by six mainstream blockchains, and we received thousands of USD bounty from them.
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.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 245d89e3-9f49-407e-9dc4-6ff121fc1f0cCited by top-tier papers8
- Enhancing the Open Network: Definition and Automated Detection of Smart Contract DefectsHao Song, Teng Li, Jiachi Chen, Ting Chen et al.ICSE 2025 · 5 citations
- fAmulet: Finding Finalization Failure Bugs in Polygon zkRollupZihao Li, Xinghao Peng, Zheyuan He, Xiapu Luo et al.CCS 2024 · 5 citations
- Towards Automatic Discovery of Denial of Service Weaknesses in Blockchain Resource ModelsFeng Luo, Huangkun Lin, Zihao Li, Xiapu Luo et al.CCS 2024 · 4 citations
- Maat: Analyzing and Optimizing Overcharge on Blockchain StorageZheyuan He, Zihao Li, Ao Qiao, Jingwei Li et al.FAST 2025 · 3 citations
- Pistis: A Decentralized Knowledge Graph Platform Enabling Ownership-Preserving SPARQL QueryingEnyuan Zhou, Song Guo, Zicong Hong, Christian S. Jensen et al.VLDB 2025 · 1 citation
Builds on25
- T-Fuzz: Fuzzing by Program TransformationHui Peng, Yan Shoshitaishvili, Mathias PayerS&P 2018 · 326 citations
- SAILFISH: Vetting Smart Contract State-Inconsistency Bugs in SecondsPriyanka Bose, Dipanjan Das, Yanju Chen, Yu Feng et al.S&P 2022 · 142 citations
- TokenScope: Automatically Detecting Inconsistent Behaviors of Cryptocurrency Tokens in EthereumTing Chen, Yufei Zhang, Zihao Li, Xiapu Luo et al.CCS 2019 · 140 citations
- A Stealthier Partitioning Attack against Bitcoin Peer-to-Peer NetworkMuoi Tran, Inho Choi, Gi Jun Moon, Anh V. Vu et al.S&P 2020 · 126 citations
- Blockchains vs. Distributed Databases: Dichotomy and FusionPingcheng Ruan, Tien Tuan Anh Dinh, Dumitrel Loghin, Meihui Zhang et al.SIGMOD 2021 · 68 citations
Related papers
- MHOT: Height-Optimized Authenticated Data Structure for Blockchain State CommitmentSipeng Xie, Qianhong Wu, Minghang Li, Qiyuan Gao et al.USENIX Security 2026 · 2 citations
- Code is the (F)Law: Demystifying and Mitigating Blockchain Inconsistency Attacks Caused by Software BugsGuorui Yu, Shibin Zhao, Chao Zhang, Zhiniang Peng et al.INFOCOM 2021 · 6 citations
- Understanding Ethereum Mempool Security under Asymmetric DoS by Symbolized Stateful FuzzingYibo Wang, Yuzhe Tang, Kai Li, Wanning Ding et al.USENIX Security 2024 · 9 citations
- Content Censorship in the InterPlanetary File SystemSrivatsan Sridhar, Onur Ascigil, Navin V. Keizer, François Genon et al.NDSS 2024
- BDoS: Blockchain Denial-of-ServiceMichael Mirkin, Yan Ji, Jonathan Pang, Ariah Klages-Mundt et al.CCS 2020 · 1 citation
