Binius is a Cryptographic Proof System That Will Unlock the Next Order-of-Magnitude Performance Improvement in Verifiable Computing

Binius is a Cryptographic Proof System That Will Unlock the Next Order-of-Magnitude Performance Improvement in Verifiable Computing

Binius is a Cryptographic Proof System That Will Unlock the Next Order-of-Magnitude Performance Improvement in Verifiable Computing

Binius is a Cryptographic Proof System That Will Unlock the Next Order-of-Magnitude Performance Improvement in Verifiable Computing

What is Binius

Binius is the product of a research effort driven by Irreducible. Our paper, Succinct Arguments over Towers of Binary Fields, introduced a novel approach to succinct argument construction that holds unique advantages in computational efficiency.

Binary fields have a long history in the field of cryptography and are used in standards like the Advanced Encryption Standard (AES) and the Galois Message Authentication Code (GMAC). Our work applies the remarkable properties of binary fields to the problem of verifiable computing.

Open Source

Binius is implemented as a fully open-source software project in Rust under the Apache 2.0 license. The library is designed to support ZK virtual machines requiring state-of-the-art performance.

Binius is implemented as a fully open-source software project in Rust under the Apache 2.0 license. The library is designed to support ZK virtual machines requiring state-of-the-art performance.

November 2023

Succinct Arguments over Towers of Binary Fields paper published and initial code release

February 2024

SNARK for Keccak-256 hash function

What’s Next

Binius is still under active development and has many more chapters to add to its roadmap.

FPGA Acceleration

Irreducible’s proving service will feature flagship support for Binius, accelerated by our FPGA server clusters.

Binary field arithmetic allows for compact circuit designs that operate at high clock frequencies. As a result, our custom digital logic tears through binary field operations far more efficiently than CPU and GPU processors can.

Want to learn more?

© 2024 Irreducible Inc. All rights reserved.

Want to learn more?

© 2024 Irreducible Inc. All rights reserved.

Want to learn more?

© 2024 Irreducible Inc. All rights reserved.