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Description: We present an efficient hardware architecture design & implementation of Advanced Encryption Standard AES Rijndael cryptosystem. The AES algorithm defined by the National Institute of Standard and Technology NIST of United States has been widely accepted. All the cryptographic algorithms developed can be implemented with software or built with pure hardware. However with the help of Field Programmable Gate Arrays FPGA we tend to find expeditious solution and which can be easily upgraded to integrateany concordat changes. This contribution investigates the AES encryption and decryption cryptosystem with regard to FPGA and Very High Speed Integrated Circuit Hardware Description language VHDL. Optimized and Synthesizable VHDL code is developed for the implementation of both 128-bit data encryption and decryption process.
Platform: |
Size: 27648 |
Author: kutti
|
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Description: AES encryption supports 128 192 256-bit keys()
Platform: |
Size: 10240 |
Author: EWNP-64313 |
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Description: Loki97 is 128-bit block cipher that accepts a variable-length key. It
was designed by Lawrie Brown, Josef Pieprzyk, and Jennifer Seberry.
Loki97 was one of the 15 candidates for the AES.
BONUS
The C file, _loki97.c, is a standalone Loki97 implementation. To
compile it, type:
gcc -Wall _loki97.c
A new binary, a.out, will be created.
To run the binary, type:
./a.out
Platform: |
Size: 63488 |
Author: frkjnkvnjknjknf222@e |
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Description: Loki97 is 128-bit block cipher that accepts a variable-length key. It
was designed by Lawrie Brown, Josef Pieprzyk, and Jennifer Seberry. Loki97 was one of the 15 candidates for the AES.
Platform: |
Size: 570368 |
Author: frkjnkvnjknjknf222@e |
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