Usable, easy and safe pure-Rust crypto
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Updated
Apr 3, 2026 - Rust
Cryptographic algorithms secure against potential future quantum computers.
Usable, easy and safe pure-Rust crypto
A simple and ultrafast http reverse proxy serving multiple domain names and terminating TLS for http/1.1, 2 and 3, written in Rust
Rust Post-Quantum cryptography
Multi Layer Archive – A pure Rust archive format with encryption, compression, digital signatures, and post-quantum cryptography
A Rust implementation of LMS and LM-OTS. See RustCrypto for living code.
A framework to build OpenSSL Providers tailored for the transition to post-quantum cryptography.
Quantum-safe IPSec protocol written entirely in Rust, leveraging Kyber & Falcon for post-quantum cryptography. Modular, no_std-ready, and ideal for secure tunnels in next-gen IIoT and VPN infrastructure.
Kyber IND-CCA2 KEM in Rust
Crystals is a post-quantum verification protocol for Solana leveraging the power of Dilithium 2 & 3 -- achieving more than 128 bits of security against all known classical and quantum attacks.
Integration of Post-Quantum (PQ) and Post-Quantum/Traditional (PQ/T) hybrid signatures for Verifiable Credentials, and of Zero-Knowledge Proof of Knowledge (ZKPoK) of a signature for Selective Disclosure VCs into IOTA Identity
Post-quantum cryptography tooling for Rust and TypeScript. Key encoding, JWK, PEM, DER, JWS, certificates, and more — built on NIST-standardized algorithms.
qualitative frame entanglement - an experimental protocol for quantum-secure communication
Post-quantum cryptographic library for Rust — ML-KEM, ML-DSA, hybrid schemes, and classical algorithms with unified traits
Post-quantum cryptography toolkit: Rust Kyber768 (NIST FIPS 203) + Python SDK with 10-level anonymization, PII scanning, and quantum entropy from IBM Quantum hardware
Post-Quantum VPN for Infrastructure You Control — ML-KEM-768 + ML-DSA-65, WireGuard-compatible, self-hosted
The Quantova Network is a next-generation blockchain platform designed to address the emerging threats posed by quantum computing. Traditional blockchains rely on cryptographic algorithms (e.g., ECDSA, RSA) that are vulnerable to quantum attacks, such as Shor's Algorithm (which breaks public-key cryptography) and Grover's Algorithm
Threshold file encryption using Shamir Secret Sharing and post-quantum cryptography (SMAUG-T + HAETAE).
In conjunction with "Hybrid Classical-Quantum Cryptographic Operation Scheduling with Dynamic Algorithm Selection and Multi-Objective Resource Optimization" Research Paper submitted to ICCFN 2025
Hybrid Post-Quantum Cryptography Library for Rust - Secure transition to Quantum-Safe Encryption.