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186 lines
10 KiB
Markdown
186 lines
10 KiB
Markdown
# fips205-slhdsa-verified
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Machine-checked verification campaign for the **SLH-DSA (FIPS 205) verify
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path**, extracted from a pure-Rust implementation into Lean 4 via
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Charon/Aeneas — the same pipeline, discipline, and honesty rules as the
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four ed25519 campaigns (`dalek/anza/risc0/betrusted-ed25519-verified`).
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## STATUS: SIX LAYERS PROVEN — chain (5), WOTS+ (8), XMSS (10), hypertree (12), FORS (17), input-prep (2/3/4)
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`verification/check.sh` is **green** (exit 0): the model compiles, the
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proofs compile, and the axiom audit passes. **Ten theorems across six
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verify-path layers, proven bottom-up. After de-plumbing round 2 the model
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carries no plumbing axioms on the verify path — its external surface is
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exactly the five SHA-2 oracles (plus off-path zeroize impls).**
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- **`fips205.chain_free_loop_eq`** (Algorithm 5, WOTS+ chaining): the
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extracted `chain_free` loop equals the explicit s-fold hash chain, with
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the hash address set to i, i+1, …, i+s−1 in turn. This rules out —
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machine-checked, for the deployed monomorphic SHA2-128s verify path — an
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off-by-one loop bound, a wrong address field, and wrong threading. Its
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`#print axioms` cone is **exactly** `[propext, Classical.choice,
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Quot.sound, verify_mono.oracle.f]` — the three kernel axioms plus the one
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hash oracle it touches, and nothing else (no transpiler plumbing; the u32
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range machinery was discharged with real definitions). check.sh Phase 3
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fails the build if any certificate cone contains anything outside the
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kernel three + the five documented SHA-2 oracles.
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- **`fips205.wots_loop1_eq`** (Algorithm 8, WOTS+ pk recomputation — the
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chain loop): the extracted `wots_pk_from_sig_free_loop1` equals the fold
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that, at each index i in [0, LEN), sets the chain address to i and runs
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`chain_free` on sig[i] starting at digit msg[i] for W−1−msg[i] steps,
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writing tmp[i]. This is the layer above chain: it consumes `chain_free`
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and pins that the LEN chains run with the right start indices, step
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counts, and slots. Cone: kernel three + `verify_mono.oracle.f`.
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- **`fips205.xmss_loop_eq`** (Algorithm 10, XMSS pk-from-sig — the
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authentication-path Merkle loop): the extracted
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`xmss_pk_from_sig_free_loop` equals the fold that, at step k, sets the
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tree height to k+1, tests bit k of the leaf index, and on an even bit
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halves the tree index and hashes H(node ∥ auth[k]), on an odd bit sets
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the tree index to (i−1)/2 and hashes H(auth[k] ∥ node). This pins the
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Merkle sibling ORDER (the even/odd rule), the tree-height/tree-index
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address schedule, and the auth-path indexing — the heart of Merkle-path
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verification. Cone: kernel three + `verify_mono.oracle.h` (the first
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certificate where H enters; F does not — the loop runs above the WOTS+
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computation).
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- **`fips205.ht_loop_eq`** (Algorithm 12, hypertree verification — the
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layer walk): the extracted `ht_verify_free_loop` equals the fold that,
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at layer j, splits the tree index (idx_leaf = idx_tree mod 2^h' by
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mask+cast, then idx_tree >>= h'), sets the layer address to j and the
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tree address to the shifted index, and recomputes the node through
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`xmss_pk_from_sig` on the j-th XMSS signature. This pins the layer
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schedule of hypertree verification; the final node = pk_root comparison
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sits one bind above, in `ht_verify_free`, and belongs to the apex
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composition. Cone: kernel three + `verify_mono.oracle.{f, h, t_l}` —
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the full WOTS+/XMSS machinery referenced through the fold, and nothing
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else.
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Foundations behind this (2026-07-22/23): the Aeneas-compat patch (additive
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monomorphic verify module through a named oracle boundary; charon + aeneas
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exit 0); the u32 range-loop de-plumbing (faithful `Step` defs vs pinned
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rustc, axiom-clean); the 8-site source de-plumbing (snapshot commit
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`6f6a9d6`: `try_from`/`is_err`/`unwrap` on pre-masked values → plain
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casts, the WOTS+ checksum `iter().take()` + `&u32` Sub → an index loop —
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each site semantics-identical for every FIPS 205 parameter set, and the
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obsoleted transpiler axioms deleted from the external files); fidelity
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pinned by a differential test in the snapshot (valid / corrupted /
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wrong-message), re-run green after every source patch.
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- **`fips205.fors_inner_loop_eq`** + **`fips205.fors_outer_loop_eq`**
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(Algorithm 17, FORS pk-from-sig): a nested loop, split into two theorems.
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The inner one pins the auth-path Merkle fold for a single FORS tree (bit
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source `indices[i] >> j`, `H` in the even/odd sibling order) — cone
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kernel-3 + `oracle.h`. The outer one pins the K-tree fold: for each tree
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compute the leaf with `F` at index `(i<<a)+indices[i]`, run the inner
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Merkle loop, write `root[i]` — cone kernel-3 + `oracle.{f, h}`. Split into
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two files under the memory discipline; the outer step lemma closes by
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peeling its 16-bind body with `bind_congr` (a bare `rfl` there whnf-times-
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out over the nested inner `loop`).
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- **input-prep** (`fips205.to_int_loop_eq`, `to_byte_loop_eq`,
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`wots_csum_loop_eq`, `base2b_outer_loop_eq` — Algorithms 2/3/4 + the WOTS+
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checksum): the byte→integer, integer→byte, checksum, and digit-decomposition
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loops that prepare the verifier's inputs. All four cones are **exactly**
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`[propext, Classical.choice, Quot.sound]` — pure kernel-3, no hash oracle
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(byte/bit arithmetic touches no hash). `base_2b`'s inner `while` loop is
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threaded opaquely, as every layer treats its sub-loops. These proofs became
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possible after **de-plumbing round 2** (snapshot `bea1051`) rewrote
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`to_int`'s `iter().take()` and `base_2b`'s `iter_mut()` as index loops,
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removing the last `Take`/`IterMut` iterator adapters; the obsoleted `Take`
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axiom was then deleted.
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The remaining work (the digest-split composition and the apex — the top-level
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`slh_verify` accepting iff the recomputed hypertree root equals the pinned
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public-key root) is not yet proven. The pyramid rises one certificate at a
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time, each audited to the same boundary.
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## Subject
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- Upstream: `integritychain/fips205` — pure-Rust FIPS 205 (final standard,
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2024-08-13), zero `unsafe`, `no_std`, const-generic parameterization,
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modules mirroring the FIPS 205 algorithm structure.
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- Pinned at upstream commit `30bac08580aa61f653e5436d1bbacb5ffac446c4`
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(2025-09-01), snapshotted with full history at
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`saymrwulf/fips205-source` (snapshot head `5dca0db`, whose single
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deviation from verbatim is the removal of upstream CI workflows,
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documented in that commit). Aeneas-compat patches will land in the
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snapshot repo as transparent, individually-justified commits — never
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upstream. **No affiliation with, and no changes proposed to, the
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upstream project.**
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- Parameter set: **SLH-DSA-SHA2-128s** first (the small-signature profile
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deployed in the firmware/code-signing lane). The architecture
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generalizes; each further parameter set is a separate claim (rigor
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invariant R2).
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## Scope
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**Verify path only.** The extraction cone, mirroring FIPS 205's own
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algorithm tree:
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```
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slh_verify -> slh_verify_internal
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-> fors_pk_from_sig
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-> ht_verify -> xmss_pk_from_sig -> wots_pk_from_sig -> chain
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```
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Key generation and signing are out of scope (trusted base), exactly as
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ed25519 signing was. The five verify-path hash oracles (`h_msg, f, h,
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t_l, t_len` — SHA-2 instantiations; `prf`/`prf_msg` are sign-side only
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and never enter the cone) are opaque external models with written
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justifications, kept outside every certificate's dependency cone
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(honesty invariant H4); their semantics are the standing SHA-2 oracle
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boundary documented in [TRUSTED-BASE.md](TRUSTED-BASE.md).
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## Gate-0 record (2026-07-22)
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Per TARGETS.md ("re-verify before use"), the subject was probed before
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this repository was created:
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- **Charon**: clean (`charon cargo --preset=aeneas`, roots at the verify
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cone, `sha2/sha3/zeroize/rand_core` opaque, features
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`slh_dsa_sha2_128s`) — LLBC produced, exit 0.
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- **Aeneas**: translated the entire const-generic verify cone to Lean
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definitions (`wots.chain` … `slh.slh_verify_internal` all generated),
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with exactly **one obstruction class** (3 unique errors): the
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`crate::hashers::Hashers` struct of plain **function pointers** cannot
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be translated.
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- **Phase 1 — DONE (2026-07-22)**: the Aeneas-compat patch landed in
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`fips205-source` (snapshot `2d89ee3`): an additive monomorphic SHA2-128s
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verify module (`src/verify_mono.rs`) whose hash suite is reached through
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named free functions in `verify_mono::oracle` (marked opaque at the
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Charon boundary) — the `sha512_*`-shim pattern. Two further compat
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refinements: the message-digest input M' passes as a single `&[u8]`
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(nested `&[&[u8]]` is untranslatable), and one `let-else` became the
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`is_err`/`unwrap` idiom. `verification/extract.sh` now re-derives the
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model from the mono root; charon + aeneas both exit 0, and
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`verification/check.sh` compiles the result. The generic paths and all
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twelve parameter sets are untouched (the only change to existing code is
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two lines wiring the module).
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## What will be claimed (when the button is green, not before)
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One theorem per layer, each a statement about the **extracted** functions
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(H3), compiled by `verification/check.sh` with a per-certificate
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`#print axioms` audit (H1): chain semantics, WOTS+ pk recomputation,
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XMSS path recomputation, hypertree acceptance, FORS pk recomputation,
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and the apex — `slh_verify_internal` accepts iff the recomputed
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hypertree root equals the pinned public-key root.
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**The allowed axiom set, stated precisely:** unlike the ed25519 field and
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scalar layers (whose cones are exactly `[propext, Classical.choice,
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Quot.sound]`), the hash oracles permeate *every* SLH-DSA layer — `chain`
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already calls `F`. So each certificate's cone may contain the three
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kernel axioms **plus at most the five named oracles**
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(`verify_mono.oracle.{h_msg, f, h, t_l, t_len}`) — and nothing else: the
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transpiler-plumbing axioms currently in `FunsExternal.lean` must be
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discharged before any certificate ships, and the audit fails the button
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if any of them (or anything unlisted) appears in a cone.
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## Discipline
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Every Lean compile in this repository runs under `verification/lean-guard`
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(memory-capped, machine-wide serialized). Extraction is reproducible from
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the committed `extract.sh` against the pinned snapshot (R1). What cannot
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be proven is named in [TRUSTED-BASE.md](TRUSTED-BASE.md), not hidden (H5).
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