LWE with Side Information: Attacks and Concrete Security Estimation
Dana Dachman-Soled, Léo Ducas, Huijing Gong, Mélissa Rossi
Abstract
We propose a framework for cryptanalysis of lattice-based schemes, when side informationin the form of "hints"-about the secret and/or error is available. Our framework generalizes the so-called primal lattice reduction attack, and allows the progressive integration of hints before running a final lattice reduction step. Our techniques for integrating hints include sparsifying the lattice, projecting onto and intersecting with hyperplanes, and/or altering the distribution of the secret vector. Our main contribution is to propose a toolbox and a methodology to integrate such hints into lattice reduction attacks and to predict the performance of those lattice attacks with side information.
While initially designed for side-channel information, our framework can also be used in other cases: exploiting decryption failures, or simply exploiting constraints imposed by certain schemes (LAC, Round5, NTRU).
We implement a Sage 9.0 toolkit to actually mount such attacks with hints when computationally feasible, and to predict their performances on larger instances. We provide several end-to-end application examples, such as an improvement of a single trace attack on Frodo by Bos et al (SAC 2018). In particular, our work can estimates security loss even given very little side information, leading to a smooth measurement/computation trade-off for side-channel attacks.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext e7c2981f-0e4d-4abd-af07-4b5e4c76fb87Cited by top-tier papers12
- When Frodo Flips: End-to-End Key Recovery on FrodoKEM via RowhammerMichael Fahr, Hunter Kippen, Andrew Kwong, Thinh Dang et al.CCS 2022 · 34 citations
- On Bounded Distance Decoding with Predicate: Breaking the "Lattice Barrier" for the Hidden Number ProblemMartin R. Albrecht, Nadia HeningerEUROCRYPT 2021 · 31 citations
- Partial Key Exposure Attacks on BIKE, Rainbow and NTRUAndre Esser, Alexander May, Javier A. Verbel, Weiqiang WenCRYPTO 2022 · 22 citations
- A Closer Look at FalconPierre-Alain Fouque, Phillip Gajland, Hubert de Groote, Jonas Janneck et al.EUROCRYPT 2026 · 15 citations
- K-Waay: Fast and Deniable Post-Quantum X3DH without Ring SignaturesDaniel Collins, Loïs Huguenin-Dumittan, Ngoc Khanh Nguyen, Nicolas Rolin et al.USENIX Security 2024 · 12 citations
Builds on4
- Post-quantum Key Exchange - A New HopeErdem Alkim, Léo Ducas, Thomas Pöppelmann, Peter SchwabeUSENIX Security 2016 · 972 citations
- Frodo: Take off the Ring! Practical, Quantum-Secure Key Exchange from LWEJoppe W. Bos, Craig Costello, Léo Ducas, Ilya Mironov et al.CCS 2016 · 431 citations
- Towards Practical Tools for Side Channel Aware Software Engineering: 'Grey Box' Modelling for Instruction LeakagesDavid McCann, Elisabeth Oswald, Carolyn WhitnallUSENIX Security 2017 · 99 citations
- (One) Failure Is Not an Option: Bootstrapping the Search for Failures in Lattice-Based Encryption SchemesJan-Pieter D'Anvers, Mélissa Rossi, Fernando VirdiaEUROCRYPT 2020 · 2 citations
Related papers
- A Generic Framework for Side-Channel Attacks Against LWE-Based CryptosystemsJulius Hermelink, Silvan Streit, Erik Mårtensson, Richard PetriEUROCRYPT 2025 · 6 citations
- From Perfect to Approximate Hints: Efficient LWE Secret Recovery Leveraging Low Hamming WeightMinki Hhan, Ga Hee Hong, Jiseung Kim, Changmin Lee et al.S&P 2026
- Revisiting Security Estimation for LWE with Hints from a Geometric PerspectiveDana Dachman-Soled, Huijing Gong, Tom Hanson, Hunter KippenCRYPTO 2023 · 15 citations
- Refined Attack on LWE with Hints: Constructing Lattice via Gaussian EliminationJinzheng Cao, Haodong Jiang, Qingfeng ChengCRYPTO 2025 · 3 citations
- How to Meet Ternary LWE KeysAlexander MayCRYPTO 2021 · 36 citations
