High performance CUDA AES implementation: A quantitative performance analysis approach
Ahmed A. Abdelrahman, Mohamed Mahmoud Fouad, Hisham Dahshan, Ahmed M. Mousa · 2017 Computing Conference · 2017
The importance of cryptography on ensuring security or integrity of the electronic data transaction had become higher during the past few years. Multiple security protocols are currently using various block ciphers. One of the most widely used block ciphers is the Advanced Encryption Standard (AES) which is chosen as a standard for its higher efficiency and stronger security than its competitors. Unfortunately, the encryption and decryption processes of AES takes a considerable amount of time for large data size. The GPU is an attractive platform for accelerating block ciphers and other cryptography algorithms due to its massively parallel processing power. In this work, an implementation of the AES-128 ECB Encryption on three different GPU architectures (Kepler, Maxwell and Pascal) has been presented. The results show that encryption speeds with 207 Gbps on the NVIDIA GTX TITAN X (Maxwell) and 280 Gbps on the NVIDIA GTX 1080 (Pascal) have been achieved by performing new optimization techniques using 32bytes/thread granularity.