Toomas Krips

dblp:145/1684 · DBLP profile ↗
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6ranked-venue papers
2as first author
4since 2021 · last 2024
0000-0003-0981-3553ORCID · corroborated

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Security and privacy · 6 · 2 first-author · 4 since 2021
YearPublicationVenuePosition
2024 Actively Secure Polynomial Evaluation from Shared Polynomial Encodings
Pascal Reisert, Marc Rivinius, Toomas Krips, Sebastian Hasler, Ralf Küsters
ASIACRYPT (6)3
2023 Overdrive LowGear 2.0: Reduced-Bandwidth MPC without Sacrifice
abstract
Some of the most efficient protocols for Multi-Party Computation (MPC) follow a two-phase approach where correlated randomness, in particular Beaver triples, is generated in the offline phase and then used to speed up the online phase. Recently, more complex correlations have been introduced to optimize certain operations even further, such as matrix triples for matrix multiplications. In this paper, our goal is to improve the efficiency of the triple generation in general and in particular for classical field values as well as matrix operations. To this end, we modify the Overdrive LowGear protocol to remove the costly sacrificing step and therewith reduce the round complexity and the bandwidth. We extend the state-of-the-art MP-SPDZ implementation with our new protocols and show that the new offline phase outperforms state-of-the-art protocols for the generation of Beaver triples and matrix triples. For example, we save in bandwidth compared to Overdrive LowGear.
Pascal Reisert, Marc Rivinius, Toomas Krips, Ralf Küsters
AsiaCCS3
2022 Kryvos: Publicly Tally-Hiding Verifiable E-Voting
abstract
Elections are an important corner stone of democratic processes. In addition to publishing the final result (e.g., the overall winner), elections typically publish the full tally consisting of all (aggregated) individual votes. This causes several issues, including loss of privacy for both voters and election candidates as well as so-called Italian attacks that allow for easily coercing voters.
Nicolas Huber, Ralf Küsters, Toomas Krips, Julian Liedtke, Johannes Müller 0001, Daniel Rausch 0001, Pascal Reisert, Andreas Vogt 0001
CCS3
2021 More Efficient Shuffle Argument from Unique Factorization
Toomas Krips, Helger Lipmaa
CT-RSA1
2016 Alternative Implementations of Secure Real Numbers
abstract
This paper extends the choice available for secure real number implementations with two new contributions. We will consider the numbers represented in form a-φ b where φ is the golden ratio, and in form (-1)s.2e where e is a fixed-point number. We develop basic arithmetic operations together with some frequently used elementary functions. All the operations are implemented and benchmarked on SHAREMIND secure multi-party computation framework. It turns out that the new proposals provide viable alternatives to standard floating- and fixed-point implementations from the performance/error viewpoint in various settings. However, the optimal choice still depends on the exact requirements of the numerical algorithm to be implemented.
Vassil S. Dimitrov, Liisi Kerik, Toomas Krips, Jaak Randmets, Jan Willemson
CCS3
2014 Hybrid Model of Fixed and Floating Point Numbers in Secure Multiparty Computations
Toomas Krips, Jan Willemson
ISC1