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Cryptographic Security Through a Hardware Root of Trust

Authors :
Ministerio de Ciencia e Innovación (España)
European Commission
Junta de Andalucía
Rojas-Muñoz, Luis Felipe [0000-0002-5568-1136]
Martínez-Rodríguez, Macarena C. [0000-0003-3025-5736]
Brox, Piedad [0000-0003-1059-5338]
Tena-Sánchez, Erica [0000-0002-8905-5715]
Camacho-Ruiz, Eros [0000-0002-3177-2260]
Sánchez-Solano, Santiago [0000-0002-0700-0447]
Rojas-Muñoz, Luis Felipe
Sánchez-Solano, Santiago
Martínez-Rodríguez, Macarena Cristina
Camacho-Ruiz, Eros
Navarro-Torrero, Pablo
Karmakar, Apurba
Fernández-Garcia, Carlos
Tena-Sánchez, Erica
Potestad-Ordoñez, Francisco E.
Casado-Galán, Alejandro
Ortega-Castro, Pau
Acosta-Jiménez, Antonio J.
Jiménez-Fernández, Carlos J.
Brox, Piedad
Ministerio de Ciencia e Innovación (España)
European Commission
Junta de Andalucía
Rojas-Muñoz, Luis Felipe [0000-0002-5568-1136]
Martínez-Rodríguez, Macarena C. [0000-0003-3025-5736]
Brox, Piedad [0000-0003-1059-5338]
Tena-Sánchez, Erica [0000-0002-8905-5715]
Camacho-Ruiz, Eros [0000-0002-3177-2260]
Sánchez-Solano, Santiago [0000-0002-0700-0447]
Rojas-Muñoz, Luis Felipe
Sánchez-Solano, Santiago
Martínez-Rodríguez, Macarena Cristina
Camacho-Ruiz, Eros
Navarro-Torrero, Pablo
Karmakar, Apurba
Fernández-Garcia, Carlos
Tena-Sánchez, Erica
Potestad-Ordoñez, Francisco E.
Casado-Galán, Alejandro
Ortega-Castro, Pau
Acosta-Jiménez, Antonio J.
Jiménez-Fernández, Carlos J.
Brox, Piedad
Publication Year :
2024

Abstract

This work presents a novel approach to a Hardware Root-of-Trust that leverages System-on-Chip technology for the implementation of hardware cryptographic functions. Taking advantage of the processing power of a System-on-Chip, the solution established promotes hardware-based security solutions over software-only solutions. The proposed Root-of-Trust, developed around a Xilinx Zynq-7000 SoC device, integrates components based on cryptographic algorithms and physical phenomena. This innovative Root-of-Trust is tailored to support a spectrum of security tasks within cryptographic systems, including device-specific identifiers and keys, encryption and decryption, hashing, and signature generation and verification. The study adopts a unified design methodology, capitalizing on collaborative efforts to efficiently develop hardware primitives that significantly contribute to enhancing security in computing environments. Aligned with the advantages of reconfigurable hardware, this Hardware Root-of-Trust addresses the critical need for robust hardware-level security and introduces a set of countermeasures to fortify the design against potential threats.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1431967233
Document Type :
Electronic Resource