fips205-slhdsa-verified/README.md
mrwulf 0fa36c7258 phase 2: THIRD CERTIFICATE — XMSS auth-path Merkle loop (Algorithm 10)
fips205.xmss_loop_eq (Proofs/XmssSpec.lean): the extracted
xmss_pk_from_sig_free_loop equals the explicit Merkle-path fold — at step
k set the tree height to k+1, test bit k of the leaf index; even bit:
tree_index := i/2 and H(node || auth[k]); odd bit: tree_index := (i-1)/2
and H(auth[k] || node). This pins the sibling hash ORDER, the address
schedule, and the auth-path indexing of Merkle verification. Exact cone:
[propext, Classical.choice, Quot.sound, verify_mono.oracle.h] — the first
certificate where H enters; F does not (the loop runs above the WOTS+
computation). check.sh green over all three certificates.

Fidelity review at authorship (three-way): extracted body (gen Funs.lean
761-801) == Rust verify_mono.rs xmss_pk_from_sig_free (verbatim from
upstream xmss.rs, hash calls -> oracle) == FIPS 205 Algorithm 10, incl.
the per-branch operation order (even: node-slice then auth[k]; odd:
auth[k] then node-slice) and the k+1 tree height.

Proof: the chain/wots recipe on a u32 range — u32_succ / fwd_succ / hnext
/ loop_unfold_bind reused VERBATIM from ChainSpec. New layer lesson (the
one novel obstruction, on pattern): the loop body BRANCHES on the index
bit, so the step lemma splits with by_cases + if_pos/if_neg; and the
get_tree_index pair-bind needs its matcher made concrete before the tail
normalizes — bind_congr + rintro to fix the scrutinee, then FULL simp
(only full simp iota-reduces the pair matcher; simp only will not) with
bind_assoc + bind_ok + the loop def closes each branch. The certificate's
own induction threads the IH under the opaque binds of BOTH branches with
bind_congr, per branch, ending exact ih.

check.sh: PROOFS += XmssSpec, CERTS += fips205.xmss_loop_eq, audit
imports XmssSpec (self-test structure anchors untouched). README: status
three certificates, Algorithm numbering per upstream comments (wots=8,
xmss=10).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-23 16:18:44 +02:00

143 lines
7.4 KiB
Markdown
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

# fips205-slhdsa-verified
Machine-checked verification campaign for the **SLH-DSA (FIPS 205) verify
path**, extracted from a pure-Rust implementation into Lean 4 via
Charon/Aeneas — the same pipeline, discipline, and honesty rules as the
four ed25519 campaigns (`dalek/anza/risc0/betrusted-ed25519-verified`).
## STATUS: THREE CERTIFICATES PROVEN — chain (5) + WOTS+ loop (8) + XMSS path (10)
`verification/check.sh` is **green** (exit 0): the model compiles, the
proofs compile, and the axiom audit passes. **Three certificates proven so
far, bottom-up:**
- **`fips205.chain_free_loop_eq`** (Algorithm 5, WOTS+ chaining): the
extracted `chain_free` loop equals the explicit s-fold hash chain, with
the hash address set to i, i+1, …, i+s1 in turn. This rules out —
machine-checked, for the deployed monomorphic SHA2-128s verify path — an
off-by-one loop bound, a wrong address field, and wrong threading. Its
`#print axioms` cone is **exactly** `[propext, Classical.choice,
Quot.sound, verify_mono.oracle.f]` — the three kernel axioms plus the one
hash oracle it touches, and nothing else (no transpiler plumbing; the u32
range machinery was discharged with real definitions). check.sh Phase 3
fails the build if any certificate cone contains anything outside the
kernel three + the five documented SHA-2 oracles.
- **`fips205.wots_loop1_eq`** (Algorithm 8, WOTS+ pk recomputation — the
chain loop): the extracted `wots_pk_from_sig_free_loop1` equals the fold
that, at each index i in [0, LEN), sets the chain address to i and runs
`chain_free` on sig[i] starting at digit msg[i] for W1msg[i] steps,
writing tmp[i]. This is the layer above chain: it consumes `chain_free`
and pins that the LEN chains run with the right start indices, step
counts, and slots. Cone: kernel three + `verify_mono.oracle.f`.
- **`fips205.xmss_loop_eq`** (Algorithm 10, XMSS pk-from-sig — the
authentication-path Merkle loop): the extracted
`xmss_pk_from_sig_free_loop` equals the fold that, at step k, sets the
tree height to k+1, tests bit k of the leaf index, and on an even bit
halves the tree index and hashes H(node ∥ auth[k]), on an odd bit sets
the tree index to (i1)/2 and hashes H(auth[k] ∥ node). This pins the
Merkle sibling ORDER (the even/odd rule), the tree-height/tree-index
address schedule, and the auth-path indexing — the heart of Merkle-path
verification. Cone: kernel three + `verify_mono.oracle.h` (the first
certificate where H enters; F does not — the loop runs above the WOTS+
computation).
Foundations behind this (2026-07-22/23): the Aeneas-compat patch (additive
monomorphic verify module through a named oracle boundary; charon + aeneas
exit 0); the u32 range-loop de-plumbing (faithful `Step` defs vs pinned
rustc, axiom-clean); fidelity pinned by a differential test in the snapshot
(valid / corrupted / wrong-message).
The remaining layers (hypertree, FORS, the WOTS+/XMSS input-prep plumbing,
apex) are not yet proven — the pyramid rises one certificate at a time,
each audited to the same boundary.
## Subject
- Upstream: `integritychain/fips205` — pure-Rust FIPS 205 (final standard,
2024-08-13), zero `unsafe`, `no_std`, const-generic parameterization,
modules mirroring the FIPS 205 algorithm structure.
- Pinned at upstream commit `30bac08580aa61f653e5436d1bbacb5ffac446c4`
(2025-09-01), snapshotted with full history at
`saymrwulf/fips205-source` (snapshot head `5dca0db`, whose single
deviation from verbatim is the removal of upstream CI workflows,
documented in that commit). Aeneas-compat patches will land in the
snapshot repo as transparent, individually-justified commits — never
upstream. **No affiliation with, and no changes proposed to, the
upstream project.**
- Parameter set: **SLH-DSA-SHA2-128s** first (the small-signature profile
deployed in the firmware/code-signing lane). The architecture
generalizes; each further parameter set is a separate claim (rigor
invariant R2).
## Scope
**Verify path only.** The extraction cone, mirroring FIPS 205's own
algorithm tree:
```
slh_verify -> slh_verify_internal
-> fors_pk_from_sig
-> ht_verify -> xmss_pk_from_sig -> wots_pk_from_sig -> chain
```
Key generation and signing are out of scope (trusted base), exactly as
ed25519 signing was. The five verify-path hash oracles (`h_msg, f, h,
t_l, t_len` — SHA-2 instantiations; `prf`/`prf_msg` are sign-side only
and never enter the cone) are opaque external models with written
justifications, kept outside every certificate's dependency cone
(honesty invariant H4); their semantics are the standing SHA-2 oracle
boundary documented in [TRUSTED-BASE.md](TRUSTED-BASE.md).
## Gate-0 record (2026-07-22)
Per TARGETS.md ("re-verify before use"), the subject was probed before
this repository was created:
- **Charon**: clean (`charon cargo --preset=aeneas`, roots at the verify
cone, `sha2/sha3/zeroize/rand_core` opaque, features
`slh_dsa_sha2_128s`) — LLBC produced, exit 0.
- **Aeneas**: translated the entire const-generic verify cone to Lean
definitions (`wots.chain` … `slh.slh_verify_internal` all generated),
with exactly **one obstruction class** (3 unique errors): the
`crate::hashers::Hashers` struct of plain **function pointers** cannot
be translated.
- **Phase 1 — DONE (2026-07-22)**: the Aeneas-compat patch landed in
`fips205-source` (snapshot `2d89ee3`): an additive monomorphic SHA2-128s
verify module (`src/verify_mono.rs`) whose hash suite is reached through
named free functions in `verify_mono::oracle` (marked opaque at the
Charon boundary) — the `sha512_*`-shim pattern. Two further compat
refinements: the message-digest input M' passes as a single `&[u8]`
(nested `&[&[u8]]` is untranslatable), and one `let-else` became the
`is_err`/`unwrap` idiom. `verification/extract.sh` now re-derives the
model from the mono root; charon + aeneas both exit 0, and
`verification/check.sh` compiles the result. The generic paths and all
twelve parameter sets are untouched (the only change to existing code is
two lines wiring the module).
## What will be claimed (when the button is green, not before)
One theorem per layer, each a statement about the **extracted** functions
(H3), compiled by `verification/check.sh` with a per-certificate
`#print axioms` audit (H1): chain semantics, WOTS+ pk recomputation,
XMSS path recomputation, hypertree acceptance, FORS pk recomputation,
and the apex — `slh_verify_internal` accepts iff the recomputed
hypertree root equals the pinned public-key root.
**The allowed axiom set, stated precisely:** unlike the ed25519 field and
scalar layers (whose cones are exactly `[propext, Classical.choice,
Quot.sound]`), the hash oracles permeate *every* SLH-DSA layer — `chain`
already calls `F`. So each certificate's cone may contain the three
kernel axioms **plus at most the five named oracles**
(`verify_mono.oracle.{h_msg, f, h, t_l, t_len}`) — and nothing else: the
transpiler-plumbing axioms currently in `FunsExternal.lean` must be
discharged before any certificate ships, and the audit fails the button
if any of them (or anything unlisted) appears in a cone.
## Discipline
Every Lean compile in this repository runs under `verification/lean-guard`
(memory-capped, machine-wide serialized). Extraction is reproducible from
the committed `extract.sh` against the pinned snapshot (R1). What cannot
be proven is named in [TRUSTED-BASE.md](TRUSTED-BASE.md), not hidden (H5).