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Characterizing Ethereum Upgradable Smart Contracts and Their Security Implications.

, , , , and . WWW, page 1847-1858. ACM, (2024)

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Understanding the Security Risks of Decentralized Exchanges by Uncovering Unfair Trades in the Wild., , , , , , and . EuroS&P, page 332-351. IEEE, (2023)Poster: Enabling Cost-Effective Blockchain Applications via Workload-Adaptive Transaction Execution., and . CCS, page 3483-3485. ACM, (2022)Characterizing Ethereum Upgradable Smart Contracts and Their Security Implications., , , , and . WWW, page 1847-1858. ACM, (2024)TopoShot: uncovering Ethereum's network topology leveraging replacement transactions., , , , and . Internet Measurement Conference, page 302-319. ACM, (2021)Authenticated key-value stores with hardware enclaves., , , , and . Middleware Industry, page 1-8. ACM, (2021)Understanding Ethereum Mempool Security under Asymmetric DoS by Symbolized Stateful Fuzzing., , , , and . USENIX Security Symposium, USENIX Association, (2024)Asymmetric Mempool DoS Security: Formal Definitions and Provable Secure Designs., , and . CoRR, (2024)Privacy-preserving GWAS analysis on federated genomic datasets., , , , and . BMC Medical Informatics Decis. Mak., 15-S (5): S2 (December 2015)iBatch: saving Ethereum fees via secure and cost-effective batching of smart-contract invocations., , , , , , and . ESEC/SIGSOFT FSE, page 566-577. ACM, (2021)DETER: Denial of Ethereum Txpool sERvices., , and . CCS, page 1645-1667. ACM, (2021)