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Closes four round-7/8 findings. Certified by the round-12 sweep: five repositories, both buttons and every self-test, 48/48 GREEN. ── `scalar-statements-unbound` (gpt, round 7, CRITICAL) ──────────────────── The main button bound its 31 certificates' elaborated statements and reachable specification bodies. This button bound NONE of its thirteen, while TRUSTED-BASE item 8 said the audit covers "every certificate" — false across the 44-certificate surface. The finding was raised in round 7, lost from the round-8 work list by an F-number collision between two reviewers, and re-raised in round 8. Proofs/ScalarAudit.lean is generated from each fork's OWN Audit.lean, so the canonicalisation is provably the same code: pp.all rendering, whitespace normalisation, transitive specification closure. check-scalar.sh Phase 3c pins the block's digest, requires the committed copy to match byte-for-byte so a mismatch can be DIFFED, and cross-checks the auditor's certificate set against the button's CERTS array. dalek ecf3a3f8 · anza 0d942e47 · risc0 4b550a61 · betrusted 4b550a61 risc0 and betrusted share a digest and that is correct, not a collision: their ScalarSubSpec.lean differs only in doc prose and in `black_box` entries inside `simp only [...]` lists AFTER `:= by`. Proof scripts. They bind the same statements over the same specifications, which is the documented scope. selftest-scalar-statements.sh ships the two attacks the reviewer asked for: ok gutted statement caught (cone unchanged) ok rewritten specification body caught (name and cone unchanged) The second rewrites a reachable reference body to `id (…)` — DEFINITIONALLY EQUAL, so the corpus compiles and every proof typechecks and the cone is byte-identical. Every earlier phase is blind to it. ── `drv-surface-no-cones` + `accounting-certifies-enumeration` (claude) ──── The round-7 accounting identity proved every kernel constant was ENUMERATED. The reviewer showed enumeration is not audit: their planted claim WAS enumerated, as DRV|LTLAccAudit.bait.smuggled|theorem with a real cone, and nothing examined it — rows had no cone, no allowlist covered them, the statement digest does not reach instruments, and Phase 2b gates DECLARED AXIOMS, a different question. "Progress of one step, not two." DRV rows now carry their axiom cone and are pinned in driver-allowlist.txt by inventory_gate.sh with a DRV tag — the same implementation that pins the corpus, in both directions, because a second copy of a coverage gate is a second thing to drift. The axiom policy is per-surface and enforced per surface: the corpus admits exactly the sanctioned boundary, the instruments admit none, and an instrument axiom fails EVEN WHEN ALLOWLISTED. Verified with the reviewer's own payload, both placements: before the walk -> UNCLASSIFIED: DRV|…|bait.smuggled|theorem|Classical.choice,Quot.sound,propext after the walk -> ACCOUNTING FAILED names it (kernel-side) ── `drv-naming-heuristic` (claude, round 7) ──────────────────────────────── Retired as load-bearing rather than patched. The rule admits a theorem whose name extends a constant declared alongside it, and "breaks in one line" — declare `def bait`, then `theorem bait.smuggled` walks through. It stays as a fast readable first check; membership in a committed allowlist is what now carries the weight, and a new row fails closed whatever it is called. ── what round 11 caught, which was mine ─────────────────────────────────── DRV rows first shipped WITHOUT their originating driver. dalek and anza run two drivers, each declaring its own `corpus`; keyed on name alone those two distinct declarations produced one byte-identical row, `sort -u` collapsed them, and the trailers summed to 37 against 36. The estate had already learned this on the corpus walk — INV rows carry their module because two modules both declare CurveFieldProofs.zero_spec — and I rebuilt the record without it. Rows now carry their driver, and the gate FAILS CLOSED ON DUPLICATE RECORDS naming the collision: two declarations sharing one entry means one is covered by the other's, which is exactly how a real declaration hides. The trailer now checks what the drivers EMITTED, not what survives de-duplication — conflating "the run was truncated" with "two rows were identical" is what let a record-format defect present itself as an arithmetic complaint. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
33 lines
1.9 KiB
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33 lines
1.9 KiB
Text
/- ──────────────────────────────────────────────────────────────────────────
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Proofs/InventoryScalar.lean — declaration inventory for the scalar layer.
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Audit INFRASTRUCTURE, not corpus. Compiled by check-scalar.sh Phase 2c,
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which is where these modules' compiled artifacts exist: check.sh does not
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compile the scalar layer, so its own inventory could not cover them and
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named them as uncovered on every run instead. This closes that.
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────────────────────────────────────────────────────────────────────────── -/
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import Proofs.InventoryCore
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import Proofs.ScalarDenote
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import Proofs.ScalarLoop
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import Proofs.ScalarSubSpec
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import Proofs.ScalarAddSpec
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import Proofs.ScalarMulSpec
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import Proofs.ScalarMontSpec
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import Proofs.ScalarReduceSpec
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import Proofs.ScalarFullMulSpec
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import Proofs.ScalarMain
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import Proofs.ScalarWideSpec
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import Proofs.ScalarBytesSpec
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import Proofs.ScalarUnpackSpec
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import Proofs.ScalarFromBytesSpec
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-- The scalar audit driver is in this button's compile manifest, exactly as
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-- Proofs.Audit is in the main button's, so the inventory must cover it too.
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import Proofs.ScalarAudit
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open Lean Ed25519Inventory
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/-- Exactly check-scalar.sh's PROOFS manifest; that script asserts the
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correspondence in both directions. -/
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def corpus : Array Name :=
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#[`Proofs.ScalarDenote, `Proofs.ScalarLoop, `Proofs.ScalarSubSpec, `Proofs.ScalarAddSpec, `Proofs.ScalarMulSpec, `Proofs.ScalarMontSpec, `Proofs.ScalarReduceSpec, `Proofs.ScalarFullMulSpec, `Proofs.ScalarMain, `Proofs.ScalarWideSpec, `Proofs.ScalarBytesSpec, `Proofs.ScalarUnpackSpec, `Proofs.ScalarFromBytesSpec, `Proofs.ScalarAudit]
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#eval show MetaM Unit from emitInventory corpus
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