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Key-dependent Security of Stream Ciphers

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arxiv 2001.00515 v1 pith:OS634P4M submitted 2020-01-02 cs.CR

classification cs.CR
keywords classcontrolsecuritysystembackdoorsbeenbsea-2concept
verification ladder T0 review T1 audit T2 compute T3 formal

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The control of the cryptography is more than ever a recurrent issue. As the current international regulation does not apply in the signatory countries, the concept of enforcing backdoors in encryption system is reborn with more strength. This paper deals with a particular class of stream cipher backdoors. This class, under a different form, has been widely used by the industry in the 80s and 90s in the context of the export control rules imposed by the US to the Western countries. We propose here a new system -- called BSEA-2, with a 128-bit secret key -- which is a seemingly minor modification of BSEA-1, a system proposed in \cite{filiol_bsea1}. BSEA-2 illustrates, in a simple and didactic~\textemdash~it has been also designed for a MSc cryptanalysis course~\textemdash~but efficient way the concept of key-dependent cryptographic security. The aim is to keep control on encryption means that a country/provider could provide to another country/client for which the secret key are also provided. With such systems, changing the key class results in downgrading the cryptographic security.

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  1. Selectively Blind Quantum Computation

    quant-ph 2025-04 reject novelty 5.0 of 10

    The paper defines Selectively Blind Quantum Computing (SBQC), which hides one of a set of known computations from a quantum server while reducing qubit communication, and argues that server-side state expansion cannot...

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