Yunhao Wang 0002

dblp:119/0981-2 · DBLP profile ↗
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7ranked-venue papers
0as first author
7since 2021 · last 2025
0009-0006-8128-2346ORCID · conflict

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Security and privacy · 7 · 7 since 2021
YearPublicationVenuePosition
2025 Lattice-Based Multi-message Multi-recipient KEM/PKE with Malicious Security
Zeyu Liu 0004, Katerina Sotiraki, Eran Tromer, Yunhao Wang 0002
ASIACRYPT (3)4
2025 IND-CPA-D of Relaxed Functional Bootstrapping: A New Attack, A General Fix, and A Stronger Model
abstract
Fully homomorphic encryption (FHE) is a powerful and widely used primitive in lots of real-world applications. Recently, Li and Micciancio [Eurocrypt'21] introduced IND-CPA-D security, which strengthens the standard IND-CPA security by allowing the attacker to access a decryption oracle for honestly generated ciphertexts. Recently, Jung et al. [CCS'24] and Checri et al. [Crypto'24] have shown that even exact FHE schemes like FHEW/TFHE/BGV/BFV may still not be IND-CPA-D secure, by exploiting the bootstrapping failure. However, such attacks can be mitigated by setting negligible bootstrapping failure probability. On the other hand, Liu and Wang [Asiacrypt'24] proposed relaxed functional bootstrapping, which has orders of magnitude performance improvement and furthermore allows a free function evaluation during bootstrapping. These efficiency advantages make it a competitive choice in many applications. In this work, we show that the underlying secret key could be recovered within 10 minutes against all existing relaxed functional bootstrapping constructions, and even within 1 minute for some of them. Moreover, our attack works even with a negligible bootstrapping failure probability. Additionally, we propose a general fix that mitigates all the existing modulus-switching-error-based attacks in the IND-CPA-D model. This is achieved by constructing a new modulus switching procedure with essentially no overhead. Lastly, we show that IND-CPA-D may not be sufficient even for passive adversary model. Thus, we extend this model to IND-CPA-D with randomness (IND-CPA-DR).
Zeyu Liu 0004, Yunhao Wang 0002, Ben Fisch
CCS2
2025 Snake-Eye Resistant PKE from LWE for Oblivious Message Retrieval and Robust Encryption
Zeyu Liu 0004, Katerina Sotiraki, Eran Tromer, Yunhao Wang 0002
EUROCRYPT (3)4
2024 Relaxed Functional Bootstrapping: A New Perspective on BGV/BFV Bootstrapping
Zeyu Liu 0004, Yunhao Wang 0002
ASIACRYPT (1)2
2024 Group Oblivious Message Retrieval
abstract
Anonymous message delivery, as in private communication and privacy-preserving blockchain applications, ought to protect recipient metadata: a message should not be inadvertently linkable to its destination. But how can messages then be delivered to each recipient, without each recipient scanning all messages? Recent work constructed Oblivious Message Retrieval (OMR) protocols that outsource this job to untrusted servers in a privacy-preserving manner.We consider the case of group messaging, where each message may have multiple recipients (e.g., in a group chat or blockchain transaction). Direct use of prior OMR protocols in the group setting increases the servers’ work linearly in the group size, rendering it prohibitively costly for large groups.We thus devise new protocols where the servers’ cost grows very slowly with the group size, while recipients’ cost is low and independent of the group size. Our approach uses Fully Homomorphic Encryption and other lattice-based techniques, building on and improving on prior work. The efficient handling of groups is attained by encoding multiple recipient-specific clues into a single polynomial or multilinear function that can be efficiently evaluated under FHE, and via preprocessing and amortization techniques.We formally study Group Oblivious Message Retrieval (GOMR) and describe corresponding GOMR protocols. Our implementation and benchmarks show, for parameters of interest, cost reductions of orders of magnitude compared to prior schemes. For example, the servers’ cost is ~$3.36 per million messages scanned, where each message may address up to 15 recipients.
Zeyu Liu 0004, Eran Tromer, Yunhao Wang 0002
SP3
2024 PerfOMR: Oblivious Message Retrieval with Reduced Communication and Computation
Zeyu Liu 0004, Eran Tromer, Yunhao Wang 0002
USENIX Security Symposium3
2023 Amortized Functional Bootstrapping in Less than 7 ms, with Õ(1) Polynomial Multiplications
Zeyu Liu 0004, Yunhao Wang 0002
ASIACRYPT (6)2