EDBT 2026 Demo / reviewers in the wild / expert
Christoph Striecks
dblp:128/5113
· DBLP profile ↗
19ranked-venue papers
0as first author
8since 2021 · last 2025
0000-0003-4724-8022ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 19 · 8 since 2021Theory of computation · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Malleable SNARKs and Their Applications
Suvradip Chakraborty, Dennis Hofheinz, Roman Langrehr, Jesper Buus Nielsen, Christoph Striecks, Daniele Venturi 0001 |
EUROCRYPT (4) | 5 |
| 2024 | (Inner-Product) Functional Encryption with Updatable CiphertextsabstractAbstract We propose a novel variant of functional encryption which supports ciphertext updates, dubbed ciphertext-updatable functional encryption. Such a feature further broadens the practical applicability of the functional encryption paradigm and allows for fine-grained access control even after a ciphertext is generated. Updating ciphertexts is carried out via so-called update tokens which a dedicated party can use to convert ciphertexts. However, allowing update tokens requires some care for the security definition. Our contribution is threefold: We define our new primitive with a security notion in the indistinguishability setting. Within CUFE, functional decryption keysandciphertexts are labeled with tags such that only if the tags of the decryption key and the ciphertext match, then decryption succeeds. Furthermore, we allow ciphertexts to switch their tags to any other tag via update tokens. Such tokens are generated by the holder of the main secret key and can only be used in the desired direction. We present a generic construction of CUFE for any functionality as well as predicates different from equality testing on tags which relies on the existence of indistinguishability obfuscation (iO). We present a practical construction of CUFE for the inner-product functionality from standard assumptions (i.e., LWE) in the random-oracle model. On the technical level, we build on the recent functional encryption schemes with fine-grained access control and linear operations on encrypted data (Abdalla et al., AC’20) and introduce an additional ciphertext updatability feature. Proving security for such a construction turned out to be non-trivial, particularly when revealing keys for the updated challenge ciphertext is allowed. Overall, such construction enriches the set of known inner-product functional encryption schemes with the additional updatability feature of ciphertexts. Valerio Cini, Sebastian Ramacher, Daniel Slamanig, Christoph Striecks, Erkan Tairi |
J. Cryptol. | 4 |
| 2024 | Identity-Based Encryption with (Almost) Tight Security in the Multi-instance, Multi-ciphertext SettingabstractAbstract We construct an identity-based encryption (IBE) scheme that is tightly secure in a very strong sense. Specifically, we consider a setting with many instances of the scheme and many encryptions per instance. In this setting, we reduce the security of our scheme to a variant of a simple assumption used for a similar purpose by Chen and Wee (CRYPTO 2013, Springer, 2013). The security loss of our reduction is $$\textbf{O} (k)$$ O(k) (where $$k $$ k is the security parameter). Our scheme is the first IBE scheme to achieve this strong flavor of tightness under a simple assumption. Technically, our scheme is a variation of the IBE scheme by Chen and Wee. However, in order to “lift” their results to the multi-instance, multi-ciphertext case, we need to develop new ideas. In particular, while we build on (and extend) their high-level proof strategy, we deviate significantly in the low-level proof steps. Dennis Hofheinz, Jessica Koch, Christoph Striecks |
J. Cryptol. | 3 |
| 2023 | Unique-Path Identity Based Encryption with Applications to Strongly Secure Messaging
Paul Rösler, Daniel Slamanig, Christoph Striecks |
EUROCRYPT (5) | 3 |
| 2023 | Muckle+: End-to-End Hybrid Authenticated Key Exchanges
Sonja Bruckner, Sebastian Ramacher, Christoph Striecks |
PQCrypto | 3 |
| 2023 | Revisiting Updatable Encryption: Controlled Forward Security, Constructions and a Puncturable Perspective
Daniel Slamanig, Christoph Striecks |
TCC (2) | 2 |
| 2021 | Versatile and Sustainable Timed-Release Encryption and Sequential Time-Lock Puzzles (Extended Abstract)
Peter Chvojka, Tibor Jager, Daniel Slamanig, Christoph Striecks |
ESORICS (2) | 4 |
| 2021 | Bloom Filter Encryption and Applications to Efficient Forward-Secret 0-RTT Key ExchangeabstractAbstract Forward secrecy is considered an essential design goal of modern key establishment (KE) protocols, such as TLS 1.3, for example. Furthermore, efficiency considerations such as zero round-trip time (0-RTT), where a client is able to send cryptographically protected payload data along with the very first KE message, are motivated by the practical demand for secure low-latency communication. For a long time, it was unclear whether protocols that simultaneously achieve 0-RTT and full forward secrecy exist. Only recently, the first forward-secret 0-RTT protocol was described by Günther et al. (Eurocrypt, 2017). It is based on puncturable encryption. Forward secrecy is achieved by “puncturing” the secret key after each decryption operation, such that a given ciphertext can only be decrypted once (cf. also Green and Miers, S&P 2015). Unfortunately, their scheme is completely impractical, since one puncturing operation takes between 30 s and several minutes for reasonable security and deployment parameters, such that this solution is only a first feasibility result, but not efficient enough to be deployed in practice. In this paper, we introduce a new primitive that we term Bloom filter encryption (BFE), which is derived from the probabilistic Bloom filter data structure. We describe different constructions of BFE schemes and show how these yield new puncturable encryption mechanisms with extremely efficient puncturing. Most importantly, a puncturing operation only involves a small number of very efficient computations, plus the deletion of certain parts of the secret key, which outperforms previous constructions by orders of magnitude. This gives rise to the first forward-secret 0-RTT protocols that are efficient enough to be deployed in practice. We believe that BFE will find applications beyond forward-secret 0-RTT protocols. David Derler, Kai Gellert, Tibor Jager, Daniel Slamanig, Christoph Striecks |
J. Cryptol. | 5 |
| 2020 | CCA-Secure (Puncturable) KEMs from Encryption with Non-Negligible Decryption Errors
Valerio Cini, Sebastian Ramacher, Daniel Slamanig, Christoph Striecks |
ASIACRYPT (1) | 4 |
| 2020 | Privacy-Preserving Incentive Systems with Highly Efficient Point-CollectionabstractIncentive systems (such as customer loyalty systems) are omnipresent nowadays and deployed in several areas such as retail, travel, and financial services. Despite the benefits for customers and companies, this involves large amounts of sensitive data being transferred and analyzed. These concerns initiated research on privacy-preserving incentive systems, where users register with a provider and are then able to privately earn and spend incentive points. Jan Bobolz, Fabian Eidens, Stephan Krenn, Daniel Slamanig, Christoph Striecks |
AsiaCCS | 5 |
| 2019 | Practical Group-Signatures with Privacy-Friendly OpeningsabstractGroup signatures allow creating signatures on behalf of a group, while remaining anonymous. To prevent misuse, there exists a designated entity, named the opener, which can revoke anonymity by generating a proof which links a signature to its creator. Still, many intermediate cases have been discussed in the literature, where not the full power of the opener is required, or the users themselves require the power to claim (or deny) authorship of a signature and (un-)link signatures in a controlled way. However, these concepts were only considered in isolation. Stephan Krenn, Kai Samelin, Christoph Striecks |
ARES | 3 |
| 2019 | Fine-Grained and Controlled Rewriting in Blockchains: Chameleon-Hashing Gone Attribute-Based
David Derler, Kai Samelin, Daniel Slamanig, Christoph Striecks |
NDSS | 4 |
| 2018 | Bloom Filter Encryption and Applications to Efficient Forward-Secret 0-RTT Key Exchange
David Derler, Tibor Jager, Daniel Slamanig, Christoph Striecks |
EUROCRYPT (3) | 4 |
| 2017 | Towards Attribute-Based Credentials in the Cloud
Stephan Krenn, Thomas Lorünser, Anja Salzer, Christoph Striecks |
CANS | 4 |
| 2017 | Batch-verifiable Secret Sharing with Unconditional Privacy
Stephan Krenn, Thomas Lorünser, Christoph Striecks |
ICISSP | 3 |
| 2015 | Confined Guessing: New Signatures From Standard Assumptions
Florian Böhl, Dennis Hofheinz, Tibor Jager, Jessica Koch, Christoph Striecks |
J. Cryptol. | 5 |
| 2014 | A Generic View on Trace-and-Revoke Broadcast Encryption Schemes
Dennis Hofheinz, Christoph Striecks |
CT-RSA | 2 |
| 2013 | Programmable Hash Functions in the Multilinear Setting
Eduarda S. V. Freire 0001, Dennis Hofheinz, Kenneth G. Paterson, Christoph Striecks |
CRYPTO (1) | 4 |
| 2013 | Practical Signatures from Standard Assumptions
Florian Böhl, Dennis Hofheinz, Tibor Jager, Jessica Koch, Jae Hong Seo, Christoph Striecks |
EUROCRYPT | 6 |