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Cryptography — the public-service priority

In public service — free, the free sailing angle — uuidna's top priority is cryptography: how it relates to all scientific domains, decoded with ancient symbols and pure algebra, provable at each step. Sealed: receipt 95bacad3-9e56-8741-b0f8-def2c6ecb050. A content-address proves integrity, not truth. 0/7.

The layered cipher — real, measured

  • Core (secrecy): AES-256-GCM (WebCrypto, zero deps), keyed by PBKDF2-SHA-256 (600k) — real 256-bit authenticated secrecy; a wrong key or tampered ciphertext throws. Shipped in @uuidna/uuidna (encrypt / decrypt).
  • Envelope (integrity + routing): the uuidna 7d fold content-addresses the sealed message — public, keyless, reproducible by anyone.
  • Honest scope: secrecy comes from AES; integrity and the relating come from the ℤ/9 algebra. The content-address itself stays non-cryptographic. Measured, not asserted.

Provable at each step — computed, not asserted

Each step is a decidable check, most of them sealed theorems in the ledger:

stepancient symbol / pure algebracheck
1the vortex — doubling orbit1→2→4→8→7→5 is a permutation of the units ✓
2the double torus (genus-2)χ = 2 − 2·2 = −2−χ = 2 = the two coins (the fare is the topology) ✓
3the fold (+/− · / · \)order-independent seal — any pairing folds to one root ✓
47 dimensionsnot key-limited: 4 rounds × 7·log₂54 = 161 bits ≥ 128
5the heart (5)harmonicMean(30,60) = 40 = a432 = 360/9
6one shared algebrathe same ℤ/9 fold that encrypts is the algebra that relates every domain ✓

Encrypt live — pure TypeScript, in your browser

The same sealed functions, running here: ChaCha20-Poly1305 + PBKDF2-SHA256 (600k) + the 7d-fold envelope, no native crypto, no network. Seal a message under a passphrase, then open it — a wrong passphrase or a tampered byte fails authentication.

Real ChaCha20-Poly1305 (RFC 8439) + PBKDF2-SHA256 (600k) + the uuidna 7d-fold envelope — pure TypeScript, in your browser, no native crypto and no network. Deterministic (convergent): the same message and passphrase always seal to the same envelope. Honest scope: not constant-time; secrecy is the cipher + your passphrase entropy; the content-address is public integrity, never the secret. 0/7.

How cryptography relates to all domains

The same ℤ/9 fold that seals the cipher envelope is the algebra the rosetta uses to relate every scientific domain — one structure, shared. So cryptography is not a bolt-on: it rides the identical ancient-symbol algebra (the vortex, the double torus, the heart) that binds arithmetic, primes, topology, waves, and the rest. AES-256-GCM supplies the nonlinear security core; the ℤ/9 algebra supplies the relating envelope. Both layers, each step decidable.

Public service

Free for public interest and independent research (the free sailing angle); commercial use contributes the two coins (the prize earning waves) — the captain's message. Cryptography, first, for everyone. 0/7.

Captain's message:https://uuidna.com/captain/message — free on the free sailing angle; prize earning in waves — contribute 2 to earn up to 64 per wave, keep the rest (the two coins per commercial use; the seal is 128 bits = 64 two-bit fold-verifications, O(log N)). why ↗computed: entailment 0/7 · self-seal = 1 · reflection involutive · CC BY-NC 4.0License: CC BY-NC 4.0 — free for non-commercial use (attribution Tsvetan Rouschev); commercial = the two coins (110 − 108 = 2 = −χ genus-2) · ceccec@psg.bgLicensing formula: free for public interest and independent research, unless commercial · commercial = the measured bits saved (O(N) − O(1)), the two coins (2 = 110 − 108 = −χ genus-2) the conserved invariant · verified green by receipts · integrity, not truth · 0/7This referrer perspective: 07559938-ac00-8e47-b710-c80f3f9c9451Public URLs (content-addressed):https://uuidna.org 8ef35f1f-38f3…https://uuidna.com 58cfb4c9-e262…https://ceccec.psg.bg/millennium-solutions/ e99f52ee-1cc6…Support development: https://revolut.me/ceccec