Paper 2026/1496

Floor-IT: Information-Theoretic BFT in Partial Synchrony with Two Round Good Case Latency and Optimal Resilience

Ittai Abraham, a16z Crypto Research
Yuval Efron, Institute for Advanced Study
Jovan Komatovic, Category Labs
Alejandro Ranchal-Pedrosa, Sei Labs
Abstract

In the information-theoretic model, parties communicate over sender-authenticated point-to-point channels, but use no digital signatures or other transferable cryptographic certificates; the adversary is otherwise computationally unbounded. We present \name, an information-theoretic Byzantine agreement protocol for partial synchrony with a good-case latency of two rounds that achieves the optimal resilience bound of $n = 5f - 1$ in this setting. When the actual network delay after GST is at most $\delta \le \Delta$, our protocol achieves a \emph{robust} good-case latency of $2\delta$. The protocol proceeds in views and guarantees a worst-case view latency of at most $2\Delta + 2\delta$. Moreover, each party requires only $O(1)$ words of persistent storage, and each view incurs $O(n^2)$ messages of $O(1)$ words each.

Metadata
Available format(s)
PDF
Category
Applications
Publication info
Preprint.
Keywords
Byzantine agreementGood-case latency
Contact author(s)
ittaia @ gmail com
efronyuv @ ias edu
jovan komatovic @ gmail com
History
2026-07-25: revised
2026-07-21: received
See all versions
Short URL
https://ia.cr/2026/1496
License
Creative Commons Attribution
CC BY

BibTeX

@misc{cryptoeprint:2026/1496,
      author = {Ittai Abraham and Yuval Efron and Jovan Komatovic and Alejandro Ranchal-Pedrosa},
      title = {Floor-{IT}: Information-Theoretic {BFT} in Partial Synchrony with Two Round Good Case Latency and Optimal Resilience},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/1496},
      year = {2026},
      url = {https://eprint.iacr.org/2026/1496}
}
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