Incrementally Updateable Honey Password Vaults
Haibo Cheng, Wenting Li, Ping Wang, Chao-Hsien Chu, Kaitai Liang
摘要
Password vault applications allow a user to store multiple passwords in a vault and choose a master password to encrypt the vault. In practice, attackers may steal the storage file of the vault and further compromise all stored passwords by offline guessing the master password. Honey vaults have been proposed to address the threat. By producing plausible-looking decoy vaults for wrong master passwords, honey vaults force attackers to shift offline guessing to online verifications. However, the existing honey vault schemes all suffer from intersection attacks in the multi-leakage case where an old version of the storage file (e.g., a backup) is stolen along with the current version. The attacker can offline identify the decoys and completely break the schemes. We design a generic construction based on a multi-similar-password model and further propose an incremental update mechanism. With our mechanism, the attacker cannot get any extra advantages from the old storage, and therefore degenerates to an attacker only with knowledge of the current version. To further evaluate the security in the traditional singleleakage case where only the current version is stolen, we investigate the theoretically optimal strategy for online verifications, and propose practical attacks. Targeting the existing schemes, our attacks crack 33%-55% of real vaults via only one-time online guess and achieve 85%-94% accuracy in distinguishing real vaults from decoys. In contrast, our design reduces the values of the two metrics to 2% and 58% (close to the ideal values 0% and 50%), respectively. This indicates that the attackers needs to carry out 2.8x-7.5x online verifications to break our scheme. * Due to the page limit, the mathematical derivation and some design details are left in the full version of this paper (see the authors' websites). † Corresponding author. He is also with Key Laboratory of High Confidence Software Technologies (PKU), Ministry of Education, China.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper4
- "Get in Researchers; We're Measuring Reproducibility": A Reproducibility Study of Machine Learning Papers in Tier 1 Security ConferencesDaniel Olszewski, Allison Lu, Carson Stillman, Kevin Warren 等CCS 2023 · 被引用 19 次
- A Security Analysis of Honey VaultsFei Duan, Ding Wang, Chunfu JiaS&P 2024 · 被引用 3 次
- Practically Secure Honey Password Vaults: New Design and New Evaluation against Online GuessingHaibo Cheng, Fugeng Huang, Jiahong Yang, Wenting Li 等USENIX Security 2025
- Detecting Compromise of Passkey Storage on the CloudMazharul Islam, Sunpreet S. Arora, Rahul Chatterjee, Ke Coby WangUSENIX Security 2025
它引用的顶会 Paper10
- A Security Analysis of HoneywordsDing Wang, Haibo Cheng, Ping Wang, Jeff Yan 等NDSS 2018 · 被引用 1,102 次
- Targeted Online Password Guessing: An Underestimated ThreatDing Wang, Zijian Zhang, Ping Wang, Jeff Yan 等CCS 2016 · 被引用 385 次
- Fast, Lean, and Accurate: Modeling Password Guessability Using Neural NetworksWilliam Melicher, Blase Ur, Sean M. Segreti, Saranga Komanduri 等USENIX Security 2016 · 被引用 331 次
- Who Are You? A Statistical Approach to Measuring User AuthenticityDavid Freeman, Sakshi Jain, Markus Dürmuth, Battista Biggio 等NDSS 2016 · 被引用 151 次
- Improving Password Guessing via Representation LearningDario Pasquini, Ankit Gangwal, Giuseppe Ateniese, Massimo Bernaschi 等S&P 2021 · 被引用 101 次
相关 Paper
- How to Design Secure Honey Vault SchemesZhenduo Hou, Tingwei Fan, Fei Duan, Ding WangCCS 2025
- On the Security of Cracking-Resistant Password VaultsMaximilian Golla, Benedict Beuscher, Markus DürmuthCCS 2016 · 被引用 54 次
- Probability Model Transforming Encoders Against Encoding AttacksHaibo Cheng, Zhixiong Zheng, Wenting Li, Ping Wang 等USENIX Security 2019 · 被引用 12 次
- How to Attack and Generate HoneywordsDing Wang, Yunkai Zou, Qiying Dong, Yuanming Song 等S&P 2022 · 被引用 45 次
- The Impact of Exposed Passwords on Honeyword EfficacyZonghao Huang, Lujo Bauer, Michael K. ReiterUSENIX Security 2024 · 被引用 7 次
