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2020
Conference Paper
Titel

Post-Quantum Secure Boot

Abstract
A secure boot protocol is fundamental to ensuring the integrity of the trusted computing base of a secure system. The use of digital signature algorithms (DSAs) based on traditional asymmetric cryptography, particularly for secure boot, leaves such systems vulnerable to the threat of quantum computers. This paper presents the first post-quantum secure boot solution, implemented fully as hardware for reasons of security and performance. In particular, this work uses the eXtended Merkle Signature Scheme (XMSS), a hash-based scheme that has been specified as an IETF RFC. The solution has been integrated into a secure SoC platform around RISC-V cores and evaluated on an FPGA and is shown to be orders of magnitude faster compared to corresponding hardware/software implementations and to compare competitively with a fully hardware elliptic curve DSA based solution.
Author(s)
Kumar, Vinay B.Y.
Nanyang Technological University
Gupta, Naina
Fraunhofer Singapore
Chattopadhyay, Anupam
Nanyang Technological University
Kasper, Michael
Fraunhofer Singapore
Krauß, Christoph
Fraunhofer-Institut für Sichere Informationstechnologie SIT
Niederhagen, Ruben
Fraunhofer-Institut für Sichere Informationstechnologie SIT
Hauptwerk
Design, Automation and Test in Europe Conference and Exhibition, DATE 2020. Proceedings
Project(s)
SOCure
Funder
Singapore National Research Foundation
Konferenz
Design, Automation and Test in Europe Conference and Exhibition (DATE) 2020
Thumbnail Image
DOI
10.23919/DATE48585.2020.9116252
Language
English
google-scholar
Singapore
Fraunhofer-Institut für Sichere Informationstechnologie SIT
Tags
  • secure SoC

  • secure boot

  • PQC

  • XMSS

  • RISC-V

  • Lead Topic: Digitized Work

  • Research Line: Machine Learning (ML)

  • computer security

  • field-programmable gate array (FPGA)

  • hash function

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