Paper
6 June 2024 TeTPCM: building endogenous trusted computing on trusted execution environment
Jiajian Li, Chenlin Huang, Jun Luo, Jinzhu Kong, Yiwen Ji, Yongpeng Liu, Kaikai Sun, Shuyang Deng
Author Affiliations +
Proceedings Volume 13175, International Conference on Computer Network Security and Software Engineering (CNSSE 2024); 1317511 (2024) https://doi.org/10.1117/12.3031944
Event: 4th International Conference on Computer Network Security and Software Engineering (CNSSE 2024), 2024, Sanya, China
Abstract
Traditional Trusted Computing is mainly implemented in the form of boards, chips, etc., and the requirements of hardware modification have greatly limited the widely use of trusted computing. To cope with the dilemma, the idea of designing “Trusted Computing on Chips” becomes a trend with the development of the build-in security module in CPUs. The main challenge lies on how to make full use of processor security features and design a dual-computing security system that meets the requirements of Trusted Computing 3.0. At present, the built-in secure and cryptographic units on processors, such as Phytium and Loongson, and the supported Trust Execution Environment have already provided the foundation for endogenous trusted computing. In this paper, we propose TeTPCM: a TEE Based Endogenous Trusted Platform Control Module (TPCM), which builds an endogenous trusted computing architecture by the collaboration of the TEE and the SoC on phytium processor. Experimental analysis shows that compared with the general-purpose trusted computing chip, endogenous trusted TPCM does not need additional hardware, and is characterized by strong capability, high performance, good scalability, and has better application prospects.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Jiajian Li, Chenlin Huang, Jun Luo, Jinzhu Kong, Yiwen Ji, Yongpeng Liu, Kaikai Sun, and Shuyang Deng "TeTPCM: building endogenous trusted computing on trusted execution environment", Proc. SPIE 13175, International Conference on Computer Network Security and Software Engineering (CNSSE 2024), 1317511 (6 June 2024); https://doi.org/10.1117/12.3031944
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KEYWORDS
Computer hardware

Computer architecture

Design

Information security

Operating systems

Computing systems

Computer security

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