- `readiness: ready | refine` is a SECOND axis, orthogonal to status.
`ready` = the brainstorm is complete and the decisions are LOCKED (a spec
approved, or the forks explicitly confirmed). `refine` = open forks remain
and it cannot be planned yet
- `status: refine` RETIRED because it carried both meanings at once, so a held
iteration with an approved spec (language 18, 26) was indistinguishable from
one nobody had thought about. status is now purely where the WORK is:
done | in-progress | pending | hold — `pending` was already the board's own
rendering word, so nothing new was invented
- all 47 iterations classified from EVIDENCE in their own text, not by guess:
"the four forks are SETTLED" / "spec + plan approved" / "Approved spec:" for
ready; "Forks the spec must settle" / "no spec exists yet" for refine. Every
shipped iteration is ready by definition. 19 done, 5 in-progress, 15
pending, 8 hold; 27 ready, 20 refine
- two iterations moved refine -> in-progress rather than -> pending: language
31 and 34 are absorbed into 24 and work on them is literally happening, which
the board already showed as 🔄 while their frontmatter said otherwise. That
disagreement is now gone
- board legend, board-views' frontmatter contract, and two new Dataview
queries updated — the useful one being `readiness: ready AND status:
pending`, the startable set
WHAT THE NEW AXIS IMMEDIATELY SURFACED: of 15 pending iterations, exactly ONE
is startable — databasev2 4, io_uring group-commit, whose forks were confirmed
settled 2026-08-20. Everything else pending needs a brainstorm first. That was
invisible while one key carried both meanings, and it is now on the board.
Also caught by the sweep, unrelated to readiness but found by cross-checking
frontmatter against the board: SIX duplicate rows. Every iteration moved into
databasev2 was still listed in the LANGUAGE pending table under its retired id
(23, 32, 33, 20, 21, 27) as well as its new one. Stale copies removed. And two
databasev2 rows made claims the sweep contradicts — iteration 1 was billed
"startable today" while its forks are open, and 6 still called itself the
ceiling-raiser after 2 took that role.
Docs only. linkcheck 0 broken / 0 anchors.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
4.8 KiB
| iteration | status | readiness |
|---|---|---|
| 34 | in-progress | ready |
Iteration 34 — crypto builtins: digests and HMAC in the runtime
Format:
product/story-iteration-template. Part of Story — one language, one runtime, one database, one binary.Inserted 2026-08-22 — the framework ledger's oldest unowned gap gets an owner. PREMISE UPDATE (same day, post-merge): iteration 36 landed bitwise
& | ^ << >>+ hex literals, so digests ARE now expressible in pure.wo— the original "no bitwise" impossibility is gone. The fork is now a real choice for this story's brainstorm: hand-rolled C builtins (bounded, fast, libc-only doctrine permits) vs pure-.wo(no runtime surface growth; interpreter-speed hashing). Off the concurrency chain but gates chain position 4: iteration 24's WebSocket handshake needs SHA-1 before chat can land.
Why this iteration exists
Four consumers already wait on it, none able to proceed:
iteration 24's upgrade handshake
(Sec-WebSocket-Accept = base64(SHA-1(key + GUID)) — SHA-1
specifically, not a choice); the framework's ETag/conditional-request
row (wants a content hash); HMAC-signed tokens the auth core can grow;
and held databasev2 10, whose
challenge–response needs primitives that "do not exist" (its demotion
note). Bytes and base64 landed with iteration 19 — the carriers exist,
only the digests are missing.
Goals
- Digest builtins over Bytes: SHA-1 (the WS handshake's hard
requirement), SHA-256 (the modern default for ETag/HMAC), each
Bytes -> Bytes, streaming not required (whole-value, like every existing builtin). - HMAC-SHA256 (
key: Bytes, msg: Bytes -> Bytes) — the one composition real services need (signed tokens, webhook signatures); expressible in.wosince iteration 36's bitwise set — C-builtin vs pure-.wois this story's brainstorm call. - Test vectors are the acceptance: FIPS 180 / RFC 2202 / RFC 4231 vectors in a corpus fixture — a digest that "looks right" is worth nothing.
- The contract doc row: names, arities, Bytes-in/Bytes-out, and the explicit note that SHA-1 exists for protocol compatibility (WS), not for new designs.
Acceptance Criteria (draft — the spec refines)
- Given the published test vectors for SHA-1, SHA-256, and HMAC-SHA256, when the corpus fixture runs them through the builtins, then every output matches byte-for-byte (via the existing base64/Bytes surface).
- Given the WS handshake's worked example from RFC 6455
(
dGhlIHNhbXBsZSBub25jZQ==→s3pPLMBiTxaQ9kYGzzhZRbK+xOo=), when composed in pure.wofromsha1+base64_encode, then the exact accept token comes out — iteration 24's handshake is provably one expression away. - Given the full battery, when it runs, then nothing
regresses — new builtin ids only, no opcode, no
.wobversion bump (the iteration-19/time.ticksprecedent).
Out Of Scope
- Asymmetric crypto (ed25519 signatures/keypairs) — held iteration 21's spec decides what it needs when it unholds; this iteration lays the digest floor it will stand on.
- TLS — permanently the proxy's job (framework doctrine).
- CRC32 — the ledger lists it, but no consumer is blocked on it; it joins only if 24's spec finds a real need (rejecting speculative surface).
- A password-hashing story (bcrypt/argon2) — no workload asks yet.
- Bitwise operators in the language — a separate, bigger surface decision this iteration deliberately routes around.
Info
Forks the spec must settle:
- The namespace. The reserved stdlib namespaces are exactly
fs/proc/net/time/json/env(compiler-enforced list) — a newcryptonamespace touches that list plus the typechecker table, or the functions ride an existing namespace. Leaning: a realcryptonamespace (the list exists to be grown deliberately; this is deliberate). - Surface shape:
crypto.sha1(b: Bytes) -> Bytes,crypto.sha256(b: Bytes) -> Bytes,crypto.hmac_sha256(key: Bytes, msg: Bytes) -> Bytes— Text convenience overloads rejected (the caller hasbytes_of_text). - Implementation source: hand-rolled C from the FIPS pseudocode (~200 lines for both digests; well-trodden, vector-verified) — the doctrine's shape. No linking against OpenSSL, ever.
- Where the code lives:
runtime/src/crypto.cbeside sysio, or inside builtin.c — file layout, the executor decides.
Proposed Solution
Brainstorm → (small) spec settling the four forks → implement with the
time.ticks slice's shape (ids, one table row per compiler surface,
contract-doc rows, vector fixtures). Lands any time before iteration
24's spec; independent of 31/22/23.