PUFatt: Embedded platform attestation based on novel processor-based PUFs
Software-based attestation schemes aim at proving the integrity of code and data residing on a platform to a verifying party. However, they do not bind the hardware characteristics to the attestation protocol and are vulnerable to impersonation attacks. We present PUFatt, a new automatable method fo...
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| Vydáno v: | Proceedings - ACM IEEE Design Automation Conference s. 1 - 6 |
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| Jazyk: | angličtina |
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01.06.2014
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| ISSN: | 0738-100X |
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| Abstract | Software-based attestation schemes aim at proving the integrity of code and data residing on a platform to a verifying party. However, they do not bind the hardware characteristics to the attestation protocol and are vulnerable to impersonation attacks. We present PUFatt, a new automatable method for linking software-based attestation to intrinsic device characteristics by means of a novel processor-based Physically Unclonable Function, which enables secure timed (and even) remote attestation particularly suitable for embedded and low-cost devices. Our proof-of-concept implementation on FPGA demonstrates the effectiveness, applicability and practicability of the approach. |
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| AbstractList | Software-based attestation schemes aim at proving the integrity of code and data residing on a platform to a verifying party. However, they do not bind the hardware characteristics to the attestation protocol and are vulnerable to impersonation attacks. We present PUFatt, a new automatable method for linking software-based attestation to intrinsic device characteristics by means of a novel processor-based Physically Unclonable Function, which enables secure timed (and even) remote attestation particularly suitable for embedded and low-cost devices. Our proof-of-concept implementation on FPGA demonstrates the effectiveness, applicability and practicability of the approach. |
| Author | Koushanfar, Farinaz Pendyala, Praveen K. Kong, Joonho Wachsmann, Christian Sadeghi, Ahmad-Reza |
| Author_xml | – sequence: 1 givenname: Joonho surname: Kong fullname: Kong, Joonho email: joonho.kong@rice.edu organization: Dept. of ECE, Rice University, USA – sequence: 2 givenname: Farinaz surname: Koushanfar fullname: Koushanfar, Farinaz email: farinaz@rice.edu organization: Dept. of ECE, Rice University, USA – sequence: 3 givenname: Praveen K. surname: Pendyala fullname: Pendyala, Praveen K. email: praveendath92@iitb.ac.in organization: Indian Institute of Technology, Mumbai, India – sequence: 4 givenname: Ahmad-Reza surname: Sadeghi fullname: Sadeghi, Ahmad-Reza email: ahmad.sadeghi@trust.cased.de organization: Technische Universität Darmstadt, Germany – sequence: 5 givenname: Christian surname: Wachsmann fullname: Wachsmann, Christian email: christian.wachsmann@trust.cased.de organization: Intel CRI for Secure Computing at TU Darmstadt, Germany |
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| Snippet | Software-based attestation schemes aim at proving the integrity of code and data residing on a platform to a verifying party. However, they do not bind the... |
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| SubjectTerms | Attestation Clocks Delays Field programmable gate arrays Hardware High definition video Physically Unclonable Function (PUF) Program processors Security |
| Title | PUFatt: Embedded platform attestation based on novel processor-based PUFs |
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