Show HN: FORTRESS ULTRA v2.0.0 - Hardware-Isolated Cryptographic Enclave for Web Runtimes
We have finalized the production-ready build and Red Team validation for FORTRESS ULTRA v2.0.0, an advanced client-side cryptographic isolation layer engineered in Rust and compiled to WebAssembly (wasm32-unknown-unknown).
The architecture is specifically designed to eliminate runtime memory scraping and supply-chain XSS key exfiltration in high-stakes FinTech and Web3 applications.
Core Security Implementations:
1. Process Isolation: Moving the cryptographic engine to a dedicated WebAssembly linear memory space, completely isolated from the standard V8 JavaScript heap execution context.
2. RAM Sanitization: Real-time, byte-level zeroification of temporary encryption buffers (conforming to NIST SP 800-88 Rev.1 protocols) with execution latency under 1.2μs.
3. Threshold Cryptography: Key-at-rest (DEK) splitting using a (2,3) Shamir's Secret Sharing scheme over Galois Field GF(2^8) to render local storage exfiltration mathematically useless.
An independent automated Red Team evaluation suite subjected the architecture to 14 critical frontend attack vectors (including dynamic multi-realm iframe hopping and prototype tampering), achieving a perfect 14/14 PASSED score with 0.00% cryptographic material leakage.
We are currently opening international positioning for:
- Non-exclusive Commercial Licensing ($150,000 per instance)
- Full Intellectual Property (IP Asset) Acquisition / Exit
The complete 25-page evaluation log, telemetry data, and the interactive HTML test runner are available for qualified engineering teams under a mutual NDA framework.
Secure inbound channel: fortresschart [at] proton [dot] me