Skip to content
STIMSMITH

Yiyuan Liu

Person

Yiyuan Liu is listed as a Zhejiang University author of the 2023 USENIX Security Symposium paper “MorFuzz: Fuzzing Processor via Runtime Instruction Morphing enhanced Synchronizable Co-simulation,” which presents a processor fuzzing approach for discovering software-triggerable hardware bugs.

First seen 5/27/2026
Last seen 6/6/2026
Evidence 2 chunks
Wiki v1

WIKI

Yiyuan Liu

Yiyuan Liu is an author affiliated with Zhejiang University. Liu is listed as a co-author of the paper “MorFuzz: Fuzzing Processor via Runtime Instruction Morphing enhanced Synchronizable Co-simulation”, included in the Proceedings of the 32nd USENIX Security Symposium held August 9–11, 2023 in Anaheim, California.

Research contribution

READ FULL ARTICLE →

NEIGHBORHOOD

No graph connections found for this entity yet. It may appear in future ingestion runs.

explore full graph →

RELATIONSHIPS

2 connections
Yiyuan Liu is listed as an author of the paper.
Zhejiang University part of → 100% 3e
Yiyuan Liu is affiliated with Zhejiang University.

CITATIONS

4 sources
4 citations — click to collapse
[1] Yiyuan Liu is listed as an author of the MorFuzz paper and affiliated with Zhejiang University. MorFuzz: Fuzzing Processor via Runtime Instruction Morphing enhanced Synchronizable Co-simulation
[2] The MorFuzz paper was included in the Proceedings of the 32nd USENIX Security Symposium, held August 9–11, 2023 in Anaheim, CA, USA. MorFuzz: Fuzzing Processor via Runtime Instruction Morphing enhanced Synchronizable Co-simulation
[3] MorFuzz is presented as a processor fuzzer for discovering software-triggerable hardware bugs using runtime information, runtime mutation primitives, instruction morphing, and state synchronization for co-simulation. MorFuzz: Fuzzing Processor via Runtime Instruction Morphing enhanced Synchronizable Co-simulation
[4] The MorFuzz evaluation used CVA6, Rocket, and BOOM and reported 17 new bugs with 13 CVEs assigned. MorFuzz: Fuzzing Processor via Runtime Instruction Morphing enhanced Synchronizable Co-simulation