Daniele Friolo

dblp:220/2704 · DBLP profile ↗
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11ranked-venue papers
3as first author
10since 2021 · last 2026
0000-0003-0836-1735ORCID · verified

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Security and privacy · 10 · 3 first-author · 9 since 2021Theory of computation · 1 · 1 first-author
YearPublicationVenuePosition
2026 Stealth and Beyond: Attribute-Driven Accountability in Bitcoin Transactions
Alberto Maria Mongardini, Daniele Friolo, Giuseppe Ateniese
ACNS (2)2
2025 Compact Proofs of Partial Knowledge for Overlapping CNF Formulae
Gennaro Avitabile, Vincenzo Botta, Daniele Friolo, Daniele Venturi 0001, Ivan Visconti
J. Cryptol.3
2024 Multi-key and Multi-input Predicate Encryption (for Conjunctions) from Learning with Errors
abstract
Abstract We put forward two natural generalizations of predicate encryption (PE), dubbed multi-key and multi-input PE. More in details, our contributions are threefold. Definitions. We formalize security of multi-key PE and multi-input PE following the standard indistinguishability paradigm, and modeling security both against malicious senders (i.e., corruption of encryption keys) and malicious receivers (i.e., collusions). Constructions. We construct adaptively secure multi-key and multi-input PE supporting the conjunction of poly-many arbitrary single-input predicates, assuming the sub-exponential hardness of the learning with errors (LWE) problem. Applications. We show that multi-key and multi-input PE for expressive enough predicates suffices for interesting cryptographic applications, including non-interactive multi-party computation (NI-MPC) and matchmaking encryption (ME). In particular, plugging in our constructions of multi-key and multi-input PE, under the sub-exponential LWE assumption, we obtain the first ME supporting arbitrary policies with unbounded collusions, as well as robust (resp. non-robust) NI-MPC for so-called all-or-nothing functions satisfying a non-trivial notion of reusability and supporting a constant (resp. polynomial) number of parties. Prior to our work, both of these applications required much heavier tools such as indistinguishability obfuscation or compact functional encryption.
Danilo Francati, Daniele Friolo, Giulio Malavolta, Daniele Venturi 0001
J. Cryptol.2
2023 On the Complete Non-malleability of the Fujisaki-Okamoto Transform
Daniele Friolo, Matteo Salvino, Daniele Venturi 0001
ACNS1
2023 Registered (Inner-Product) Functional Encryption
Danilo Francati, Daniele Friolo, Monosij Maitra, Giulio Malavolta, Ahmadreza Rahimi, Daniele Venturi 0001
ASIACRYPT (5)2
2023 MARTSIA: Enabling Data Confidentiality for Blockchain-Based Process Execution
Edoardo Marangone, Claudio Di Ciccio, Daniele Friolo, Eugenio Nerio Nemmi, Daniele Venturi 0001, Ingo Weber
EDOC3
2023 Multi-key and Multi-input Predicate Encryption from Learning with Errors
Danilo Francati, Daniele Friolo, Giulio Malavolta, Daniele Venturi 0001
EUROCRYPT (3)2
2022 Efficient Proofs of Knowledge for Threshold Relations
Gennaro Avitabile, Vincenzo Botta, Daniele Friolo, Ivan Visconti
ESORICS (3)3
2022 Cryptographic and Financial Fairness
abstract
A recent trend in multi-party computation is to achieve cryptographic fairness via monetary penalties, i.e. each honest player either obtains the output or receives a compensation in the form of a cryptocurrency. We pioneer another type of fairness, financial fairness, that is closer to the real-world valuation of financial transactions. Intuitively, a penalty protocol is financially fair if the net present cost of participation (the total value of cash inflows less cash outflows, weighted by the relative discount rate) is the same for all honest participants, even when some parties cheat. We formally define the notion, show several impossibility results based on game theory, and analyze the practical effects of (lack of) financial fairness if one was to run the protocols for real on Bitcoin using Bloomberg’s dark pool trading. For example, we show that the ladder protocol (CRYPTO’14), and its variants (CCS’15 and CCS’16), fail to achieve financial fairness both in theory and in practice, while the penalty protocols of Kumaresan and Bentov (CCS’14) and Baum, David and Dowsley (FC’20) are financially fair.
Daniele Friolo, Fabio Massacci, Chan Nam Ngo, Daniele Venturi 0001
IEEE Trans. Inf. Forensics Secur.1
2021 Terrorist Attacks for Fake Exposure Notifications in Contact Tracing Systems
Gennaro Avitabile, Daniele Friolo, Ivan Visconti
ACNS (1)2
2019 A Black-Box Construction of Fully-Simulatable, Round-Optimal Oblivious Transfer from Strongly Uniform Key Agreement
Daniele Friolo, Daniel Masny, Daniele Venturi 0001
TCC (1)1