USENIX Security2024Top-tier venue
Abuse Reporting for Metadata-Hiding Communication Based on Secret Sharing
Saba Eskandarian
Abstract
As interest in metadata-hiding communication grows in both research and practice, a need exists for stronger abuse reporting features on metadata-hiding platforms. While message franking has been deployed on major end-to-end encrypted platforms as a lightweight and effective abuse reporting feature, there is no comparable technique for metadata-hiding platforms. Existing efforts to support abuse reporting in this setting, such as asymmetric message franking or the Hecate scheme, require order of magnitude increases in client and server computation or fundamental changes to the architecture of messaging systems. As a result, while metadata-hiding communication inches closer to practice, critical content moderation concerns remain unaddressed. This paper demonstrates that, for broad classes of metadatahiding schemes, lightweight abuse reporting can be deployed with minimal changes to the overall architecture of the system. Our insight is that much of the structure needed to support abuse reporting already exists in these schemes. By taking a non-generic approach, we can reuse this structure to achieve abuse reporting with minimal overhead. In particular, we show how to modify schemes based on secret sharing user inputs to support a message franking-style protocol. Compared to prior work, our shared franking technique more than halves the time to prepare a franked message and gives order of magnitude reductions in server-side message processing times, as well as in the time to decrypt a message and verify a report.
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Install the CLIlune papers fulltext f3e3ee57-1e4f-4c17-bb60-6b81d1160e80Cited by top-tier papers4
- Onion Franking: Abuse Reports for Mix-Based Private MessagingMatthew Gregoire, Margaret Pierce, Saba EskandarianNDSS 2025
- Abuse Resistant Traceability with Minimal Trust for Encrypted Messaging SystemsZhongming Wang, Tao Xiang, Xiaoguo Li, Guomin Yang et al.NDSS 2026
- Ring of Gyges: Accountable Anonymous Broadcast via Secret-Shared ShuffleWentao Dong, Peipei Jiang, Huayi Duan, Cong Wang et al.NDSS 2025
- Interoperable Symmetric Message FrankingCarolina Ortega Pérez, Thomas Ristenpart, Julia LenCCS 2025
Builds on10
- Function Secret Sharing: Improvements and ExtensionsElette Boyle, Niv Gilboa, Yuval IshaiCCS 2016 · 404 citations
- HoneyBadgerMPC and AsynchroMix: Practical Asynchronous MPC and its Application to Anonymous CommunicationDonghang Lu, Thomas Yurek, Samarth Kulshreshtha, Rahul Govind et al.CCS 2019 · 120 citations
- Express: Lowering the Cost of Metadata-hiding Communication with Cryptographic PrivacySaba Eskandarian, Henry Corrigan-Gibbs, Matei Zaharia, Dan BonehUSENIX Security 2021 · 98 citations
- MCMix: Anonymous Messaging via Secure Multiparty ComputationNikolaos Alexopoulos, Aggelos Kiayias, Riivo Talviste, Thomas ZachariasUSENIX Security 2017 · 85 citations
- Traceback for End-to-End Encrypted MessagingNirvan Tyagi, Ian Miers, Thomas RistenpartCCS 2019 · 39 citations
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- Hecate: Abuse Reporting in Secure Messengers with Sealed SenderRawane Issa, Nicolas Alhaddad, Mayank VariaUSENIX Security 2022
- Abuse Reporting and Enforcement for Third Party Moderators in Private MessagingMatthew Gregoire, Jade Keegan, Saba EskandarianCCS 2026
- Private Hierarchical Governance for Encrypted MessagingArmin Namavari, Barry Wang, Sanketh Menda, Ben Nassi et al.S&P 2024 · 1 citation
- Clarion: Anonymous Communication from Multiparty Shuffling ProtocolsSaba Eskandarian, Dan BonehNDSS 2022
- XRD: Scalable Messaging System with Cryptographic PrivacyAlbert Kwon, David Lu, Srinivas DevadasNSDI 2020 · 87 citations
