Improved Cryptanalysis of ChaCha: Beating PNBs with Bit Puncturing
Antonio Flórez-Gutiérrez, Yosuke Todo
Abstract
ChaCha is a widely deployed stream cipher and one of the most important symmetric primitives. Due to this practical importance, many cryptanalysis have been proposed. Until now, Probabilistic Neutral Bits (PNBs) have been the most successful. Given differential-linear distinguishers, PNBs are the technique for key recovery relying on an experimental backward correlation obtained through blackbox analysis. A careful theoretical analysis exploiting the round function design may find a better attack and improve our understanding, but the complicated nature of the ARX structure makes such analysis difficult.
%
We propose a theoretical methodology inspired by bit puncturing, which was recently proposed at Eurocrypt 2024. Our method has a theoretical foundation and is thus fundamentally different from PNBs, to which it is the first effective alternative. As a result, we significantly improved the attack complexity for 6, 7, and 7.5-round ChaCha. The 7-round attack is about times faster than the previous best. Furthermore, we propose the first 7.5-round attack with a non-negligible advantage over an exhaustive search.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get b8c8c252-e6c6-4639-b36c-5a28ffe24cfaRelated papers
- Moving a Step of ChaCha in Syncopated RhythmShichang Wang, Meicheng Liu, Shiqi Hou, Dongdai LinCRYPTO 2023 · 16 citations
- Revamped Differential-Linear Cryptanalysis on Reduced Round ChaChaSabyasachi Dey, Hirendra Kumar Garai, Santanu Sarkar, Nitin Kumar SharmaEUROCRYPT 2022 · 32 citations
- Improved Linear Approximations to ARX Ciphers and Attacks Against ChaChaMurilo Coutinho, Tertuliano C. Souza NetoEUROCRYPT 2021 · 42 citations
- Improved Differential-Linear Attacks with Applications to ARX CiphersChristof Beierle, Gregor Leander, Yosuke TodoCRYPTO 2020 · 57 citations
- A Generic Algorithm for Efficient Key Recovery in Differential Attacks - and its Associated ToolChristina Boura, Nicolas David, Patrick Derbez, Rachelle Heim Boissier et al.EUROCRYPT 2024 · 11 citations
