HomeRun: High-efficiency Oblivious Message Retrieval, Unrestricted
Yanxue Jia, Varun Madathil, Aniket Kate
摘要
In the realm of privacy-preserving blockchain applications such as Zcash, oblivious message retrieval (OMR) enables recipients to privately access messages directed to them on blockchain nodes (or bulletin board servers). OMR prevents servers from linking a message and its corresponding recipient's address, thereby safeguarding recipient privacy. Several OMR schemes have emerged recently to meet the demands of these privacy-centric blockchains; however, we observe that existing solutions exhibit shortcomings in various critical aspects and may only achieve certain objectives inefficiently, sometimes relying on trusted hardware, thereby impacting their practical utility. This work introduces a novel OMR protocol, HomeRun, that leverages two semi-honest, non-colluding servers to excel in both performance and security attributes as compared to the current state-of-the-art.
HomeRun stands out by providing unlinkability across multiple requests for the same recipient's address. Moreover, it does not impose a limit on the number of pertinent messages that can be received by a recipient, which thwarts ``message balance exhaustion'' attacks and enhances system usability. HomeRun also empowers servers to regularly delete the retrieved messages and the associated auxiliary data, which mitigates the constantly increasing computation costs and storage costs incurred by servers. Remarkably, none of the existing solutions offer all of these features collectively. Finally, thanks to its judicious use of highly efficient cryptographic building blocks, HomeRun is highly performant: Specifically, the total runtime of servers in HomeRun is less than that in the work by Liu et al. (CRYPTO '22) based on fully-homomorphic encryption, and at least less than that in the design by Madathil et al. (USENIX Security '22) based on two semi-honest and non-colluding servers, using a single thread in a WAN setting.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
引用它的顶会 Paper5
- Private Signaling Secure Against Actively Corrupted ServersHaotian Chu, Xiao Wang, Yanxue JiaCCS 2026 · 被引用 3 次
- InstantOMR: Oblivious Message Retrieval with Low Latency and Optimal ParallelizabilityHaofei Liang, Zeyu Liu, Eran Tromer, Xiang Xie 等USENIX Security 2026
- The SecureDrop Protocol: End-to-End Encrypted Whistleblowing for AllGiulio Berra, Felix Linker, Luca Maier, Cory Francis Myers 等CCS 2026
- SophOMR: Improved Oblivious Message Retrieval from SIMD-Aware Homomorphic CompressionKeewoo Lee, Yongdong YeoUSENIX Security 2026
- UnifOMR: Oblivious Message Retrieval with Near-optimal Concrete EfficiencyBen Fisch, Zeyu Liu, Eran Tromer, Yunhao WangCCS 2026
相关 Paper
- Group Oblivious Message RetrievalZeyu Liu, Eran Tromer, Yunhao WangS&P 2024 · 被引用 24 次
- PerfOMR: Oblivious Message Retrieval with Reduced Communication and ComputationZeyu Liu, Eran Tromer, Yunhao WangUSENIX Security 2024 · 被引用 16 次
- StOMR: Stateful Oblivious Message RetrievalCharles Gouert, Keewoo Lee, Dimitris Mouris, Yiannis Tselekounis 等CCS 2026
- Oblivious Message RetrievalZeyu Liu, Eran TromerCRYPTO 2022 · 被引用 28 次
- Oblivious SignalingMirza Kamrul Bashar Shuhan, Foteini Baldimtsi, Giuseppe AtenieseUSENIX Security 2026
