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Anamorphic Signatures: Secrecy from a Dictator Who Only Permits Authentication!

  • Mirosław Kutyłowski
  • , Giuseppe Persiano
  • , Duong Hieu Phan
  • , Moti Yung
  • , Marcin Zawada
  • Wroclaw University of Technology
  • NASK -National Research Institute
  • University of Salerno
  • Google Inc.
  • Columbia University

Résultats de recherche: Le chapitre dans un livre, un rapport, une anthologie ou une collectionContribution à une conférenceRevue par des pairs

Résumé

The goal of this research is to raise technical doubts regarding the usefulness of the repeated attempts by governments to curb Cryptography (aka the “Crypto Wars”), and argue that they, in fact, cause more damage than adding effective control. The notion of Anamorphic Encryption was presented in Eurocrypt’22 for a similar aim. There, despite the presence of a Dictator who possesses all keys and knows all messages, parties can arrange a hidden “anamorphic” message in an otherwise indistinguishable from regular ciphertexts (wrt the Dictator). In this work, we postulate a stronger cryptographic control setting where encryption does not exist (or is neutralized) since all communication is passed through the Dictator in, essentially, cleartext mode (or otherwise, when secure channels to and from the Dictator are the only confidentiality mechanism). Messages are only authenticated to assure recipients of the identity of the sender. We ask whether security against the Dictator still exists, even under such a strict regime which allows only authentication (i.e., authenticated/ signed messages) to pass end-to-end, and where received messages are determined by/ known to the Dictator, and the Dictator also eventually gets all keys to verify compliance of past signing. To frustrate the Dictator, this authenticated message setting gives rise to the possible notion of anamorphic channels inside signature and authentication schemes, where parties attempt to send undetectable secure messages (or other values) using signature tags which are indistinguishable from regular tags. We define and present implementation of schemes for anamorphic signature and authentication; these are applicable to existing and standardized signature and authentication schemes which were designed independently of the notion of anamorphic messages. Further, some cornerstone constructions of the foundations of signatures, in fact, introduce anamorphism. The extended version of this paper, including extra results and proofs, is available as [17].

langue originaleAnglais
titreAdvances in Cryptology – CRYPTO 2023 - 43rd Annual International Cryptology Conference, CRYPTO 2023, Proceedings
rédacteurs en chefHelena Handschuh, Anna Lysyanskaya
EditeurSpringer Science and Business Media Deutschland GmbH
Pages759-790
Nombre de pages32
ISBN (imprimé)9783031385445
Les DOIs
étatPublié - 1 janv. 2023
Evénement43rd Annual International Cryptology Conference, CRYPTO 2023 - Santa Barbara, États-Unis
Durée: 20 août 202324 août 2023

Série de publications

NomLecture Notes in Computer Science
Volume14082 LNCS
ISSN (imprimé)0302-9743
ISSN (Electronique)1611-3349

Une conférence

Une conférence43rd Annual International Cryptology Conference, CRYPTO 2023
Pays/TerritoireÉtats-Unis
La villeSanta Barbara
période20/08/2324/08/23

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