Polylogarithmic Proofs for Multilinears over Binary Towers
Benjamin E. Diamond, Jim Posen
Abstract
The use of small fields has come to typify the design of modern, production-oriented SNARKs. In this work, we treat multilinear polynomial commitment over tiny fields. A tiny-field polynomial—in the nomenclature of Diamond and Posen (EUROCRYPT '25)—is defined over a field that has fewer elements than the polynomial itself has coefficients. We focus on multilinears over the field with just two elements.
In this work, we generically reduce the problem of tiny-field commitment to that of large-field commitment. We introduce a sumcheck-based compiler—called "ring-switching"—which, upon being fed a multilinear polynomial commitment scheme over some large extension field, yields a further scheme over that field's ground field. The resulting scheme lacks embedding overhead, in that its commitment cost, on each input, equals that of the large-field scheme on each input of identical size (in bits). Its evaluation protocol's overhead is linear for the prover and logarithmic for the verifier, and is essentially optimal.
Instantiating our ring-switching reduction on the BaseFold (CRYPTO '24) large-field multilinear polynomial commitment scheme—or more precisely on a characteristic-2 adaptation of that scheme that we develop at length—we obtain an extremely fast polynomial commitment scheme for bit-valued multilinears. Our scheme outperforms its state-of-the-art peers, a fact we demonstrate experimentally.
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.
Cited by top-tier papers8
- Blaze: Fast SNARKs from Interleaved RAA CodesMartijn Brehm, Binyi Chen, Ben Fisch, Nicolas Resch et al.EUROCRYPT 2025 · 15 citations
- UniZK: Accelerating Zero-Knowledge Proof with Unified Hardware and Flexible Kernel MappingCheng Wang, Mingyu GaoASPLOS 2025 · 12 citations
- Need for zkSpeed: Accelerating HyperPlonk for Zero-Knowledge ProofsAlhad Daftardar, Jianqiao Mo, Joey Ah-kiow, Benedikt Bünz et al.ISCA 2025 · 12 citations
- Speeding Up Sum-Check ProvingQuang Dao, Zachary DeStefano, Suyash Bagad, Yuval Domb et al.CCS 2026 · 6 citations
- NOPE: Strengthening domain authentication with succinct proofsZachary DeStefano, Jeff J. Ma, Joseph Bonneau, Michael WalfishSOSP 2024 · 2 citations
Related papers
- Bolt: Faster SNARKs from Sketched CodesKobi Gurkan, Andrija Novakovic, Ron D. RothblumCRYPTO 2026 · 4 citations
- Succinct Arguments over Towers of Binary FieldsBenjamin E. Diamond, Jim PosenEUROCRYPT 2025 · 12 citations
- BaseFold: Efficient Field-Agnostic Polynomial Commitment Schemes from Foldable CodesHadas Zeilberger, Binyi Chen, Ben FischCRYPTO 2024 · 38 citations
- TensorSwitch: Nearly Optimal Polynomial Commitments from Tensor CodesBenedikt Bünz, Giacomo Fenzi, Ron D. Rothblum, William WangCRYPTO 2026
- Dual Polynomial Commitment Schemes and Applications to Commit-and-Prove SNARKsChaya Ganesh, Vineet Nair, Ashish SharmaCCS 2024 · 4 citations
