The text-book LLL algorithm can be sped up considerably by replacing the underlying rational arithmetic used for the Gram–Schmidt orthogonalisation by floating-point approximations. We review how this modification has been and is currently implemented, both in theory and in practice. Using floating-point approximations seems to be natural for LLL even from the theoretical point of view: it is the key to reach a bit-complexity which is quadratic with respect to the bitlength of the input vectors entries, without fast integer multiplication. The latter bit-complexity strengthens the connection between LLL and Euclid’s gcd algorithm. On the practical side, the LLL implementer may weaken the provable variants in order to further improve their e...
International audienceThe LLL algorithm, introduced by Lenstra et al. (Math Ann 261:515-534, 1982), ...
AbstractWe modify the concept of LLL-reduction of lattice bases in the sense of Lenstra, Lenstra, Lo...
Floating-point computations are quickly finding their way in the design of safety- and mission-crit...
Abstract. The Lenstra-Lenstra-Lovász lattice basis reduction algorithm (LLL or L3) is a very popula...
Adaptive precision floating point LLL The LLL algorithm is one of the most studied lattice basis red...
The LLL algorithm is widely used to solve the integer least squares problems that arise in many engi...
We describe a new LLL-type algorithm, H-LLL, that relies on Householder transformations to approxima...
The Lenstra, Lenstra and Lov\'{a}sz (LLL) reduction is the most popular lattice reduction and is a p...
The Lenstra-Lenstra-Lovasz lattice basis reduction algorithm (LLL or L^3) is a very popular tool in ...
This handbook is a definitive guide to the effective use of modern floating-point arithmetic, which ...
International audienceThis handbook is a definitive guide to the effective use of modern floating-po...
Floating-point numbers have an intuitive meaning when it comes to physics-based numerical computatio...
By adapting Mitchell's algorithm for floating-point numbers, one can efficiently perform arithmetic ...
AbstractThe LLL algorithm has received a lot of attention as an effective numerical tool for precond...
Lattice basis reduction arises from many applications, such as cryptography, communications, GPS and...
International audienceThe LLL algorithm, introduced by Lenstra et al. (Math Ann 261:515-534, 1982), ...
AbstractWe modify the concept of LLL-reduction of lattice bases in the sense of Lenstra, Lenstra, Lo...
Floating-point computations are quickly finding their way in the design of safety- and mission-crit...
Abstract. The Lenstra-Lenstra-Lovász lattice basis reduction algorithm (LLL or L3) is a very popula...
Adaptive precision floating point LLL The LLL algorithm is one of the most studied lattice basis red...
The LLL algorithm is widely used to solve the integer least squares problems that arise in many engi...
We describe a new LLL-type algorithm, H-LLL, that relies on Householder transformations to approxima...
The Lenstra, Lenstra and Lov\'{a}sz (LLL) reduction is the most popular lattice reduction and is a p...
The Lenstra-Lenstra-Lovasz lattice basis reduction algorithm (LLL or L^3) is a very popular tool in ...
This handbook is a definitive guide to the effective use of modern floating-point arithmetic, which ...
International audienceThis handbook is a definitive guide to the effective use of modern floating-po...
Floating-point numbers have an intuitive meaning when it comes to physics-based numerical computatio...
By adapting Mitchell's algorithm for floating-point numbers, one can efficiently perform arithmetic ...
AbstractThe LLL algorithm has received a lot of attention as an effective numerical tool for precond...
Lattice basis reduction arises from many applications, such as cryptography, communications, GPS and...
International audienceThe LLL algorithm, introduced by Lenstra et al. (Math Ann 261:515-534, 1982), ...
AbstractWe modify the concept of LLL-reduction of lattice bases in the sense of Lenstra, Lenstra, Lo...
Floating-point computations are quickly finding their way in the design of safety- and mission-crit...