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Guillaume Revy
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2020 – today
- 2023
- [c16]Youssef Fakhreddine, Guillaume Revy:
Using loop transformations for precision tuning in iterative programs. ARITH 2023: 159-166 - 2021
- [c15]Guillaume Revy:
Analyzing the impact of floating-point precision adaptation in iterative programs. ARITH 2021: 25-32 - 2020
- [j4]Luisa Arrabito, Konrad Bernlöhr, Johan Bregeon, Matthieu Carrère, Adnane Khattabi, Philippe Langlois, David Parello, Guillaume Revy:
Optimizing Cherenkov Photons Generation and Propagation in CORSIKA for CTA Monte-Carlo Simulations. Comput. Softw. Big Sci. 4(1) (2020)
2010 – 2019
- 2019
- [c14]Nicolas Brunie, Christoph Quirin Lauter, Guillaume Revy:
Precision Adaptation for Fast and Accurate Polynomial Evaluation Generation. ASAP 2019: 41 - 2018
- [c13]Hugues de Lassus Saint-Genies, Nicolas Brunie, Guillaume Revy:
Meta-implementation of vectorized logarithm function in binary floating-point arithmetic. ASAP 2018: 1-8 - 2017
- [j3]Matthieu Martel, Amine Najahi, Guillaume Revy:
Trade-offs of certified fixed-point code synthesis for linear algebra basic blocks. J. Syst. Archit. 76: 133-148 (2017) - [j2]Hugues de Lassus Saint-Genies, David Defour, Guillaume Revy:
Exact Lookup Tables for the Evaluation of Trigonometric and Hyperbolic Functions. IEEE Trans. Computers 66(12): 2058-2071 (2017) - 2016
- [c12]Guillaume Revy:
Automated Design of Floating-Point Logarithm Functions on Integer Processors. ARITH 2016: 172-180 - 2015
- [c11]Hugues de Lassus Saint-Genies, David Defour, Guillaume Revy:
Range reduction based on Pythagorean triples for trigonometric function evaluation. ASAP 2015: 74-81 - 2014
- [c10]Matthieu Martel, Amine Najahi, Guillaume Revy:
Toward the synthesis of fixed-point code for matrix inversion based on Cholesky decomposition. DASIP 2014: 1-8 - [c9]Matthieu Martel, Amine Najahi, Guillaume Revy:
Code Size and Accuracy-aware Synthesis of Fixed-point Programs for Matrix Multiplication. PECCS 2014: 204-214 - [c8]Christophe Mouilleron, Amine Najahi, Guillaume Revy:
Automated Synthesis of Target-Dependent Programs for Polynomial Evaluation in Fixed-Point Arithmetic. SYNASC 2014: 141-148 - 2012
- [c7]Daniel Ménard, Romuald Rocher, Olivier Sentieys, Nicolas Simon, Laurent-Stéphane Didier, Thibault Hilaire, Benoit Lopez, Eric Goubault, Sylvie Putot, Franck Védrine, Amine Najahi, Guillaume Revy, L. Fangain, Christian Samoyeau, Fabrice Lemonnier, Christophe Clienti:
Design of fixed-point embedded systems (DEFIS) French ANR project. DASIP 2012: 1-2 - 2011
- [j1]Claude-Pierre Jeannerod, Herve Knochel, Christophe Monat, Guillaume Revy:
Computing Floating-Point Square Roots via Bivariate Polynomial Evaluation. IEEE Trans. Computers 60(2): 214-227 (2011) - [c6]Claude-Pierre Jeannerod, Jingyan Jourdan-Lu, Christophe Monat, Guillaume Revy:
How to Square Floats Accurately and Efficiently on the ST231 Integer Processor. IEEE Symposium on Computer Arithmetic 2011: 77-81 - [c5]Christophe Mouilleron, Guillaume Revy:
Automatic Generation of Fast and Certified Code for Polynomial Evaluation. IEEE Symposium on Computer Arithmetic 2011: 233-242 - 2010
- [c4]Claude-Pierre Jeannerod, Christophe Mouilleron, Jean-Michel Muller, Guillaume Revy, Christian Bertin, Jingyan Jourdan-Lu, Herve Knochel, Christophe Monat:
Techniques and tools for implementing IEEE 754 floating-point arithmetic on VLIW integer processors. PASCO 2010: 1-9 - [c3]Florent de Dinechin, Mioara Joldes, Bogdan Pasca, Guillaume Revy:
Multiplicative Square Root Algorithms for FPGAs. FPL 2010: 574-577
2000 – 2009
- 2009
- [b1]Guillaume Revy:
Implementation of binary floating-point arithmetic on embedded integer processors - Polynomial evaluation-based algorithms and certified code generation. University of Lyon, France, 2009 - [c2]Claude-Pierre Jeannerod, Herve Knochel, Christophe Monat, Guillaume Revy, Gilles Villard:
A New Binary Floating-Point Division Algorithm and Its Software Implementation on the ST231 Processor. IEEE Symposium on Computer Arithmetic 2009: 95-103 - 2007
- [c1]Claude-Pierre Jeannerod, Herve Knochel, Christophe Monat, Guillaume Revy:
Faster floating-point square root for integer processors. SIES 2007: 324-327
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