Title :
HCrypt: A Novel Concept of Crypto-processor with Secured Key Management
Author :
Gaspar, Lubos ; Fischer, Viktor ; Bernard, Florent ; Bossuet, Lilian ; Cotret, Pascal
Author_Institution :
Lab. Hubert Curien, Univ. de Lyon, St. Etienne, France
Abstract :
The paper presents a novel concept of processor aimed at symmetric-key cryptographic applications. Its architecture is optimized for implementation of common cryptography tasks. The processor has 128-bit separated data and key registers, dedicated instruction set optimized for key generation and management, embedded cipher, and embedded random number generator. From an architectural point of view, the most important characteristic of the proposed crypto-processor is the physical separation of data and key registers and buses, insuring that confidential keys will never leave the system in clear. This way, the processor enables to separate protected and unprotected security zones easily and also achieve complete physical isolation of key management and data zones inside the single FPGA. The first version of the processor implemented in Xilinx Virtex 5 FPGA device achieves the frequency of 160 MHz and it occupies 1343 configurable logic blocks and 21 embedded memory blocks.
Keywords :
cryptographic protocols; embedded systems; field programmable gate arrays; instruction sets; microprocessor chips; random number generation; security of data; HCrypt; Xilinx Virtex 5 FPGA device; configurable logic blocks; crypto-processor; dedicated instruction set; embedded cipher; embedded memory blocks; embedded random number generator; frequency 160 MHz; key registers; secured key management; security zones; separated data; symmetric-key cryptographic applications; HCrypt; key management; register separation; secured crypto-processor;
Conference_Titel :
Reconfigurable Computing and FPGAs (ReConFig), 2010 International Conference on
Conference_Location :
Quintana Roo
Print_ISBN :
978-1-4244-9523-8
Electronic_ISBN :
978-0-7695-4314-7
DOI :
10.1109/ReConFig.2010.38