Lune

EUROCRYPT2023Top-tier venue

Functional Commitments for All Functions, with Transparent Setup and from SIS

Leo de Castro, Chris Peikert

2023Year
38Citations
3Top-tier citations

Abstract

A functional commitment scheme enables a user to concisely commit to a function from a specified family, then later concisely and verifiably reveal values of the function at desired inputs. Useful special cases, which have seen applications across cryptography, include vector commitments and polynomial commitments.

To date, functional commitments have been constructed (under falsifiable assumptions) only for functions that are essentially linear, with one recent exception that works for arbitrarily complex functions. However, that scheme operates in a strong and non-standard model, requiring an online, trusted authority to generate special keys for any opened function inputs.

In this work, we give the first functional commitment scheme for nonlinear functions---indeed, for all functions of any bounded complexity---under a standard setup and a falsifiable assumption. Specifically, the setup is ``transparent,'' requiring only public randomness (and not any trusted entity), and the assumption is the hardness of the standard Short Integer Solution (SIS) lattice problem. Our construction also has other attractive features, including: stateless updates via generic composability; excellent asymptotic efficiency for the verifier, and also for the committer in important special cases like vector and polynomial commitments, via preprocessing; and post-quantum security, since it is based on SIS.

Ask about this paper

Ask your agent about it.

Lune has read the top-tier papers around this one, so every answer names the papers it rests on.

Questions to start from

Your agent calls

Lunesearch_papers

Ask in Lune

Free to start. No credit card required.

lune papers get 80cdb6a2-283a-4bb8-a737-dd0ef2d1e898

Cited by top-tier papers3

Ask how each one uses it

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines