Computer Science – Cryptography and Security
Scientific paper
2010-07-05
Computer Science
Cryptography and Security
11 pages, 2 figures, v3: Reference added
Scientific paper
The establishment of trust relationships to a trusted platform relies on the process of validation. Validation allows an external entity to build trust in the expected behaviour of the platform based on provided evidence of the platform's configuration. In a validation mechanism such as remote attestation, the trusted platform exhibits verification data created during a start up process. These data consist in hardware-protected values of platform configuration registers, containing nested measurement values, i.e., hash values, of all loaded or started components. The values are created in linear order by the secured extend operation. Fine-grained diagnosis of components by the validator, based on the linear order of verification data and associated measurement logs, is inefficient. We propose a method to create a tree-formed verification data, in which component measurement values represent leaves and protected registers represent roots. It is shown how this is possible using a limited number of hardware-protected registers and the standard extend operation. In this way, the security of verification data is maintained, while the stored measurement log is consistently organised as a tree. We exhibit the basic mechanism of validating a platform using tree-formed measurement logs and verification data.
Cha Inhyok
Leicher Andreas
Schmidt Andreas U.
Shah Yogendra
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