We present high-speed implementations of the post-quantum supersingular isogeny Diffie-Hellman key exchange (SIDH) and the supersingular isogeny key encapsulation (SIKE) protocols for 32-bit ARMv7-A processors with NEON support. The high performance of our implementations is mainly due to carefully optimized multiprecision and modular arithmetic that finely integrates both ARM and NEON instructions in order to reduce the number of pipeline stalls and memory accesses, and a new Montgomery reduction technique that combines the use of the UMAAL instruction with a variant of the hybrid-scanning approach. In addition, we present efficient implementations of SIDH and SIKE for 64-bit ARMv8-A processors, based on a high-speed Montgomery multiplicat...
peer reviewedIt is generally accepted that a large-scale quantum computer would be capable to break ...
We give a systematic overview of techniques to compute efficient arithmetic modulo 2xpy±12xpy±1. Thi...
We present efficient and compact hardware/software co-design implementations of the Supersingular Is...
We present high-speed implementations of the post-quantum supersingular isogeny Diffie-Hellman key e...
We investigate the efficiency of implementing the Jao and De Feo isogeny-based post-quantum key exch...
We investigate the efficiency of implementing the Jao and De Feo isogeny-based post-quantum key exch...
Since its introduction by Jao and De Feo in 2011, the supersingular isogeny Diffie-Hellman (SIDH) ke...
New primes were proposed for Supersingular Isogeny Key Encapsulation (SIKE) in NIST standardization ...
Thanks to relatively small public and secret keys, the Supersingular Isogeny Key Encapsulation (SIKE...
In this paper, we present new algorithms for the field arithmetic of supersingular isogeny Diffie-He...
This work investigates the efficiency of implementing the isogeny-based post-quantum key exchange pr...
This work investigates the efficiency of implementing the isogeny-based post-quantum key exchange pr...
It is generally accepted that a large-scale quantum computer would be capable to break any public-ke...
In recent years, the isogeny-based protocol, namely supersingular isogeny Diffe-Hellman (SIDH) has b...
peer reviewedIt is generally accepted that a large-scale quantum computer would be capable to break ...
peer reviewedIt is generally accepted that a large-scale quantum computer would be capable to break ...
We give a systematic overview of techniques to compute efficient arithmetic modulo 2xpy±12xpy±1. Thi...
We present efficient and compact hardware/software co-design implementations of the Supersingular Is...
We present high-speed implementations of the post-quantum supersingular isogeny Diffie-Hellman key e...
We investigate the efficiency of implementing the Jao and De Feo isogeny-based post-quantum key exch...
We investigate the efficiency of implementing the Jao and De Feo isogeny-based post-quantum key exch...
Since its introduction by Jao and De Feo in 2011, the supersingular isogeny Diffie-Hellman (SIDH) ke...
New primes were proposed for Supersingular Isogeny Key Encapsulation (SIKE) in NIST standardization ...
Thanks to relatively small public and secret keys, the Supersingular Isogeny Key Encapsulation (SIKE...
In this paper, we present new algorithms for the field arithmetic of supersingular isogeny Diffie-He...
This work investigates the efficiency of implementing the isogeny-based post-quantum key exchange pr...
This work investigates the efficiency of implementing the isogeny-based post-quantum key exchange pr...
It is generally accepted that a large-scale quantum computer would be capable to break any public-ke...
In recent years, the isogeny-based protocol, namely supersingular isogeny Diffe-Hellman (SIDH) has b...
peer reviewedIt is generally accepted that a large-scale quantum computer would be capable to break ...
peer reviewedIt is generally accepted that a large-scale quantum computer would be capable to break ...
We give a systematic overview of techniques to compute efficient arithmetic modulo 2xpy±12xpy±1. Thi...
We present efficient and compact hardware/software co-design implementations of the Supersingular Is...