Assessing and countering reaction attacks against post-quantum public-key cryptosystems based on QC-LDPC codes
August 06, 2018 Β· Declared Dead Β· π Cryptology and Network Security
"No code URL or promise found in abstract"
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Authors
Paolo Santini, Marco Baldi, Franco Chiaraluce
arXiv ID
1808.01945
Category
cs.CR: Cryptography & Security
Cross-listed
cs.IT
Citations
3
Venue
Cryptology and Network Security
Last Checked
4 months ago
Abstract
Code-based public-key cryptosystems based on QC-LDPC and QC-MDPC codes are promising post-quantum candidates to replace quantum vulnerable classical alternatives. However, a new type of attacks based on Bob's reactions have recently been introduced and appear to significantly reduce the length of the life of any keypair used in these systems. In this paper we estimate the complexity of all known reaction attacks against QC-LDPC and QC-MDPC code-based variants of the McEliece cryptosystem. We also show how the structure of the secret key and, in particular, the secret code rate affect the complexity of these attacks. It follows from our results that QC-LDPC code-based systems can indeed withstand reaction attacks, on condition that some specific decoding algorithms are used and the secret code has a sufficiently high rate.
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