Gareth T. Davies

dblp:134/7582 · DBLP profile ↗
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12ranked-venue papers
5as first author
4since 2021 · last 2024
0000-0002-5935-5725ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 11 · 5 first-author · 3 since 2021Systems, architecture and hardware · 1 · 1 since 2021Software engineering, systems software and programming languages · 1 · 1 since 2021
YearPublicationVenuePosition
2024 SECURED for Health: Scaling Up Privacy to Enable the Integration of the European Health Data Space
abstract
In this paper, we present the SECURED project11Funded in part by the European Union (EU), Grant Agreement no. 10109571. Views and opinions expressed are those of the authors and do not necessarily reflect those of the EU or the Health and Digital Executive Agency. Neither the EU nor the granting authority are responsible for them., aimed at improving privacy-preserving processing of data in the health domain. The technologies developed in the project will be demonstrated in four health-related use cases and with the involvement of SME's selected through an open funding call.
Francesco Regazzoni 0001, Gergely Ács, Albert Zoltan Aszalos, Christos Avgerinos, Nikolaos Bakalos, Josep Lluís Berral, Joppe W. Bos, Marco Brohet, Andrés G. Castillo, Gareth T. Davies, Stefanos Florescu, Pierre-Elisée Flory, Alberto Gutierrez-Torre, Evangelos Haleplidis, Alice Héliou, Sotiris Ioannidis, Alexander El-Kady, Katarzyna Kapusta, Konstantina Karagianni, Pieter Kruizinga, Kyrian Maat, Zoltán Ádám Mann, Kalliopi Mastoraki, SeoJeong Moon, Maja Nisevic, Balazs Pejo, Kostas Papagiannopoulos, Vassilis Paliouras, Paolo Palmieri 0001, Francesca Palumbo, Juan Carlos Pérez Baun, Péter Pollner, Eduard Porta-Pardo, Luca Pulina, Muhammad Ali Siddiqi, Daniela Spajic, Christos Strydis, George Tasopoulos, Vincent Thouvenot, Christos Tselios, Apostolos P. Fournaris
DATE10
2023 Security Analysis of the WhatsApp End-to-End Encrypted Backup Protocol
Gareth T. Davies, Sebastian H. Faller, Kai Gellert, Tobias Handirk, Julia Hesse, Máté Horváth, Tibor Jager
CRYPTO (4)1
2022 sfPERKS: Persistent and Distributed Key Acquisition for Secure Storage from Passwords
Gareth T. Davies, Jeroen Pijnenburg
SAC1
2021 Symmetric Key Exchange with Full Forward Security and Robust Synchronization
Colin Boyd, Gareth T. Davies, Bor de Kock, Kai Gellert, Tibor Jager, Lise Millerjord
ASIACRYPT (4)2
2020 Cloud-Assisted Asynchronous Key Transport with Post-Quantum Security
Gareth T. Davies, Herman Galteland, Kristian Gjøsteen, Yao Jiang Galteland
ACISP1
2020 Fast and Secure Updatable Encryption
Colin Boyd, Gareth T. Davies, Kristian Gjøsteen, Yao Jiang Galteland
CRYPTO (1)2
2020 Client-Oblivious OPRAM
Gareth T. Davies, Christian Janson, Daniel P. Martin 0001
ICICS1
2018 Definitions for Plaintext-Existence Hiding in Cloud Storage
abstract
Cloud storage services use deduplication for saving bandwidth and storage. An adversary can exploit side-channel information in several attack scenarios when deduplication takes place at the client side, leaking information on whether a specific plaintext exists in the cloud storage. Generalising existing security definitions, we introduce formal security games for a number of possible adversaries in this domain, and show that games representing all natural adversarial behaviors are in fact equivalent. These results allow users and practitioners alike to accurately assess the vulnerability of deployed systems to this real-world concern.
Colin Boyd, Gareth T. Davies, Kristian Gjøsteen, Håvard Raddum, Mohsen Toorani
ARES2
2018 Offline Assisted Group Key Exchange
Colin Boyd, Gareth T. Davies, Kristian Gjøsteen, Yao Jiang Galteland
ISC2
2018 Security Notions for Cloud Storage and Deduplication
Colin Boyd, Gareth T. Davies, Kristian Gjøsteen, Håvard Raddum, Mohsen Toorani
ProvSec2
2017 Side Channels in Deduplication: Trade-offs between Leakage and Efficiency
abstract
Deduplication removes redundant copies of files or data blocks stored on the cloud. Client-side deduplication, where the client only uploads the file upon the request of the server, provides major storage and bandwidth savings, but introduces a number of security concerns. Harnik et al. (2010) showed how cross-user client-side deduplication inherently gives the adversary access to a (noisy) side-channel that may divulge whether or not a particular file is stored on the server, leading to leakage of user information. We provide formal definitions for deduplication strategies and their security in terms of adversarial advantage. Using these definitions, we provide a criterion for designing good strategies and then prove a bound characterizing the necessary trade-off between security and efficiency.
Frederik Armknecht, Colin Boyd, Gareth T. Davies, Kristian Gjøsteen, Mohsen Toorani
AsiaCCS3
2014 KDM Security in the Hybrid Framework
Gareth T. Davies, Martijn Stam
CT-RSA1