Pinghai Yuan

dblp:153/3110 · DBLP profile ↗
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8ranked-venue papers
3as first author
4since 2021 · last 2026
0000-0002-8861-6672ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 7 · 3 first-author · 3 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 since 2021
YearPublicationVenuePosition
2026 Towards Deployable VCFI: Architectural Analysis and Cache-Optimized Verification
Pinghai Yuan, Zhixiang Lu, Fulong Chen 0002, Zhenjiang Qian
EuroS&P1
2024 Privacy-preserving pathological data sharing among multiple remote parties
abstract
The sharing of pathological data is of utmost importance in various applications such as remote diagnosis, graded diagnosis, illness treatment, and specialist system development. However, ensuring reliable, secure, privacy-preserving, and efficient sharing of pathological data pose significant challenges. This paper presents a novel solution that leverages blockchain technology to ensure reliability in pathological data sharing. Additionally, it employs conditional proxy re-encryption (C-PRE) and public key encryption with equality test technology to control the scope and preserve the privacy of shared data. To assess the practicality of our solution, we have implemented a prototype system using Hyperledger Fabric and conducted evaluations with various metrics. We also compared the solution with relevant schemes. The results demonstrate that the proposed solution effectively meets the requirements for pathological data sharing and is practical in production scenarios.
Wei Wu 0014, Fulong Chen 0002, Pinghai Yuan, Taochun Wang, Dong Xie 0005, Chuanxin Zhao, Detao Tang, Ji Zhang 0001
Blockchain Res. Appl.3
2022 Extensible Virtual Call Integrity
Yuancheng Jiang, Gregory J. Duck, Roland H. C. Yap, Zhenkai Liang, Pinghai Yuan
ESORICS (3)5
2022 Dynamic Binary Translation for SGX Enclaves
abstract
Enclaves, such as those enabled by Intel SGX, offer a hardware primitive for shielding user-level applications from the OS. While enclaves are a useful starting point, code running in the enclave requires additional checks whenever control or data is transferred to/from the untrusted OS. The enclave-OS interface on SGX, however, can be extremely large if we wish to run existing unmodified binaries inside enclaves. This article presents Ratel , a dynamic binary translation engine running inside SGX enclaves on Linux. Ratel offers complete interposition , the ability to interpose on all executed instructions in the enclave and monitor all interactions with the OS. Instruction-level interposition offers a general foundation for implementing a large variety of inline security monitors in thefuture. We take a principled approach in explaining why complete interposition on SGX is challenging. We draw attention to five design decisions in SGX that create fundamental trade-offs between performance and ensuring complete interposition, and we explain how to resolve them in the favor of complete interposition. To illustrate the utility of the Ratel framework, we present the first attempt to offer binary compatibility with existing software on SGX. We report that Ratel offers binary compatibility with over 200 programs we tested, including micro-benchmarks and real applications, such as Linux shell utilities. Runtimes for two programming languages, namely, Python and R, tested with standard benchmarks work out-of-the-box on Ratel without any specialized handling.
Jinhua Cui 0002, Shweta Shinde, Satyaki Sen, Prateek Saxena, Pinghai Yuan
ACM Trans. Priv. Secur.5
2020 BesFS: A POSIX Filesystem for Enclaves with a Mechanized Safety Proof
Shweta Shinde, Pinghai Yuan, Aquinas Hobor, Abhik Roychoudhury, Prateek Saxena
USENIX Security Symposium3
2017 Optimizing TLB for Access Pattern Privacy Protection in Data Outsourcing
Yao Liu 0011, Qingkai Zeng 0002, Pinghai Yuan
SecureComm3
2015 Hardware-Assisted Fine-Grained Code-Reuse Attack Detection
Pinghai Yuan, Qingkai Zeng 0002, Xuhua Ding
RAID1
2014 Using Machine Language Model for Mimimorphic Malware Detection
Pinghai Yuan, Qingkai Zeng 0002, Yao Liu 0011
ISC1