Yiming Zhang 0030

dblp:76/5416-30 · DBLP profile ↗
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5ranked-venue papers
4as first author
5since 2021 · last 2026
0000-0002-4247-5202ORCID · verified

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

Security and privacy · 4 · 3 first-author · 4 since 2021Software engineering, systems software and programming languages · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Complementing Confidential Computing Environment for Applications on Arm CCA
Yiming Zhang 0030, Zhenyu Ning, Fengwei Zhang, Xiapu Luo, Haoyang Huang, Shoumeng Yan, Zhengyu He
IEEE Trans. Dependable Secur. Comput.1
2025 SCRUTINIZER: Towards Secure Forensics on Compromised TrustZone
Yiming Zhang 0030, Fengwei Zhang, Xiapu Luo, Rui Hou 0001, Xuhua Ding, Zhenkai Liang, Shoumeng Yan, Tao Wei 0002, Zhengyu He
NDSS1
2024 The HitchHiker's Guide to High-Assurance System Observability Protection with Efficient Permission Switches
abstract
Protecting system observability records (logs) from compromised OSs has gained significant traction in recent times, with several note-worthy approaches proposed. Unfortunately, none of the proposed approaches achieve high performance with tiny log protection delays. They also leverage risky environments for protection (e.g., many use general-purpose hypervisors or TrustZone, which have large TCB and attack surfaces). HitchHiker is an attempt to rectify this problem. The system is designed to ensure (a) in-memory protection of batched logs within a short and configurable real-time deadline by efficient hardware permission switching, and (b) an end-to-end high-assurance environment built upon hardware protection primitives with debloating strategies for secure log protection, persistence, and management. Security evaluations and validations show that HitchHiker reduces log protection delay by 93.3--99.3% compared to the state-of-the-art, while reducing TCB by 9.4--26.9X. Performance evaluations show HitchHiker incurs a geometric mean of less than 6% overhead on diverse real-world programs, improving on the state-of-the-art approach by 61.9--77.5%.
Chuqi Zhang, Jun Zeng 0006, Yiming Zhang 0030, Adil Ahmad, Fengwei Zhang, Hai Jin 0001, Zhenkai Liang
CCS3
2023 Alligator in Vest: A Practical Failure-Diagnosis Framework via Arm Hardware Features
abstract
Failure diagnosis in practical systems is difficult, and the main obstacle is that the information a developer has access to is limited. This information is usually not enough to help developers fix or even locate the related bug. Moreover, due to the vast difference between the development and production environments, it is not trivial to reproduce failures from the production environment in the development environment. When failures are caused by non-deterministic events such as race conditions or unforeseen inputs, reproducing them is even more challenging.
Yiming Zhang 0030, Haonan Li 0009, Zhenyu Ning, Xiapu Luo, Fengwei Zhang
ISSTA1
2023 SHELTER: Extending Arm CCA with Isolation in User Space
Yiming Zhang 0030, Zhenyu Ning, Fengwei Zhang, Xiapu Luo, Haoyang Huang, Shoumeng Yan, Zhengyu He
USENIX Security Symposium1