ltl-accumulator-verified/verification/check.sh
mrwulf 9c78ce88ae P2-b: close classes 9 and 15 — the instruments, and the places nothing looked
CLASS 15 — a Lean file where no phase was looking. The dead-file scan read
Proofs/*.lean and gen/LTLAcc/*.lean and nothing else. A module at the
verification root, or under any other gen/ subdirectory, was neither
compiled nor rejected — while remaining importable by name, since LEAN_PATH
contains both roots. That is a source of the corpus that no phase reads and
no pin covers, which is exactly what the dead-file gate exists to forbid; it
was simply looking in two places instead of everywhere. Now nothing may live
in either root but the two enumerated sets.

CLASS 9 — the instruments' own declaration surface. AxiomCheck.lean and
Inventory.lean perform the audit and are therefore not corpus, so nothing
inventoried what THEY declare. Inventory.lean now walks both: AxiomCheck by
module index, and itself as the module still being elaborated, whose
declarations are the ones the environment reports with no originating
module. That is what makes the inventory cover the instrument that produces
it rather than exempting itself.

The policy is not "declare nothing" — this file legitimately declares its
machinery. It is that an instrument may declare only inert definitions. An
axiom here would widen the trusted base without appearing in any
certificate's cone; a theorem here would be a claim no certificate covers
and no allowlist pins. A flat ban on theorems was WRONG and was measured to
be wrong: defining a function by well-founded recursion makes the elaborator
emit its own obligations, and axiomCone._proof_1 rejected this very file.
The distinction that holds is whether a theorem is a claim someone wrote or
an artefact of a definition declared alongside it — an artefact's name
extends the name of a constant declared with it.

Observed surface: 18 declarations, 16 def and 2 generated obligations, no
axiom, no standalone claim.

The drivers are byte-pinned already, so this does not pin WHICH definitions
they contain — that would add a thing to maintain without adding a thing to
catch. It adds the property byte-pinning cannot give: that no instrument
declares an axiom or a claim, whatever its bytes are.

selftest_audit.sh: 10 cases -> 14. Case 12 uses an INDENTED axiom, because
Phase 1's source grep catches an unindented one and the point is to reach
the kernel-side walk standing behind it.

TWO DEFECTS IN THE TEST HARNESS, found while adding the cases.

· The scratch tree copied verification/ only, but the button also reads
  README.md and STATEMENT-MAP.md from the repository root. check.sh
  therefore ALWAYS died in Phase 3c in the scratch tree, which made every
  `if check.sh; then <attack not caught>` guard unfirable — check.sh could
  not pass in there even with no attack at all. Only the diagnostic greps
  were doing any work. The documents are now copied, and the negative test
  below proves the guard is live: with the driver-surface check disabled,
  check.sh PASSES a tree whose inventory driver declares
  `axiom driver_cheat : False`.
· Case 9 was the last case when it was written and left its rogue gen file
  in place. Harmless then; the new cases inherited it. Cleaned up between
  the blocks rather than inside case 9, so that case still tests what it did.

Also fixed while here: Phase 3b compared the compile manifest against
Inventory.lean by grepping the WHOLE FILE for a backticked module name, so
prose counted — a doc comment naming a module broke the count, and in the
other direction a doc mention of a module missing from the array would have
satisfied the presence check and hidden the omission. It now reads the
arrays.

Both new gates negative-tested by removal. Button green, self-test green.
2026-07-31 14:18:40 +02:00

480 lines
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Executable file

#!/usr/bin/env bash
# ─────────────────────────────────────────────────────────────────────────────
# check.sh — THE button (accumulator corpus). Same discipline as the
# *-ed25519-verified repos: compiles every shipped .lean through lean-guard
# and axiom-audits every certificate against its DOCUMENTED exact cone,
# both directions.
#
# Phases: 0 resource/integrity · 1 stub+axiom-smuggling audit ·
# 2 compile manifest · 3 boundary-exact axiom audit ·
# 3b environment-derived coverage · 3c doc-consistency ·
# 3d statement + specification binding · 4 definition fidelity
# ─────────────────────────────────────────────────────────────────────────────
set -euo pipefail
# Toolchain bootstrap is overridable for reviewers with their own install
# (review round 3, GPT §7); the operator default stays pinned.
AENEAS_ENV="${AENEAS_ENV:-$HOME/aeneas-toolchain/env.sh}"
[ -f "$AENEAS_ENV" ] || { echo "FATAL: Aeneas environment not found: $AENEAS_ENV (set AENEAS_ENV; or use run_bare.sh with a plain lean per lean-toolchain)"; exit 1; }
source "$AENEAS_ENV"
HERE="$(cd "$(dirname "$0")" && pwd)"
AENEAS_LEAN="$AENEAS_HOME/backends/lean"
TIMEOUT="${LEAN_TIMEOUT:-600}"
export LEAN_MEM_MB="${LEAN_MEM_MB:-4096}"
CORES="${LEAN_MAX_CORES:-0-3}"
GEN_MODULES=( LTLAcc/HashExternal )
PROOFS=( Basic Completeness Extract Descent Consistency Binding3 Refactor Theorem3 PinStore )
# The audit infrastructure, named ONCE. These are not corpus — they are the
# instruments — but they are Lean modules in the audited tree, so the dead-file
# scan must know them by membership rather than by two hard-coded basename
# comparisons, and Phase 3b must inventory what they declare. CLASS 9: until
# 2026-07-31 nothing looked at the drivers' own declaration surface, so an
# `axiom` or a `theorem` added to either was invisible to every phase.
DRIVERS=( AxiomCheck Inventory )
# Certificates and their exact expected cones (observed via #print axioms,
# never guessed; any drift in EITHER direction is a failure).
# AUDIT SURFACE: Phase 3b pins the FULL environment of the corpus modules
# (inventory-allowlist.txt, every compiler-generated auxiliary included —
# the count is pinned by the allowlist itself and asserted against the
# docs in Phase 3c); the entries below are the human-reviewed statement
# surface, additionally queried through #print axioms in Phase 3 and
# cross-checked against the inventory's independently computed cones.
declare -A CONES=(
[LTLAcc.domsep]=""
[LTLAcc.kbelow_pos]="propext, Quot.sound"
[LTLAcc.kbelow_lt]="propext, Quot.sound"
[LTLAcc.le_two_kbelow]="propext, Quot.sound"
[LTLAcc.kbelow_pow2]="propext, Quot.sound"
[LTLAcc.MTH]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.Root]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.ConsRec]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.Path]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.incl_complete]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.hnode_preimage_inj]="propext"
[LTLAcc.IsCollision]="LTLAcc.sha256"
[LTLAcc.extractIncl]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractIncl_correct]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractIncl_nonvacuous]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractMTH]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractMTH_correct]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractMTH_nonvacuous]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.kbelow_prefix_eq]="propext, Quot.sound"
[LTLAcc.take_take_le]="propext, Quot.sound"
[LTLAcc.take_drop_prefix]="propext, Classical.choice, Quot.sound"
[LTLAcc.extractConsNode]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.take_all]="propext"
[LTLAcc.consRecBinding]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.consRec_base_false_eq]="propext, Classical.choice, Quot.sound"
[LTLAcc.consRec_base_true_eq]="propext"
[LTLAcc.extractCons]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractCons_correct]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractCons_nonvacuous]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.pinAccept_monotone]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.pin_prefix_correct]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.fork_distinct]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.pin_prefix_nonvacuous]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.MTH_single]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.MTH_split]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.Root_left]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.Root_one]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.Root_one_cons]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.Root_right]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.acceptCons]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.exists_singleton_of_length_one]="propext, Classical.choice, Quot.sound"
[LTLAcc.getD_drop]="propext, Quot.sound"
[LTLAcc.getD_take]="propext, Quot.sound"
[LTLAcc.hleaf]="LTLAcc.sha256"
[LTLAcc.hnode]="LTLAcc.sha256"
[LTLAcc.kbelow]="propext, Quot.sound"
[LTLAcc.kbelow_eq_of_pow2_between]="propext, Quot.sound"
[LTLAcc.pinAccept]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.pinExtract]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.pow2_exp_unique]="propext, Quot.sound"
[LTLAcc.take_append_drop]=""
[LTLAcc.eq_dropLast_append_of_getLast?]="propext"
[LTLAcc.instInhabitedHash]="propext"
[LTLAcc.instDecidableEqHash]=""
[LTLAcc.Hash]=""
[LTLAcc.acceptIncl]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.acceptIncl_complete]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.acceptIncl_sound]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.extractCons_correct_paper]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
[LTLAcc.consRec_some_le]="propext, LTLAcc.sha256, Quot.sound"
[LTLAcc.acceptCons_sound]="propext, Classical.choice, LTLAcc.sha256, Quot.sound"
)
# (The former EXCLUDE table is gone: since Phase 3b reads the environment,
# sha256 and Bytes are ordinary allowlist entries — the axiom is pinned as
# the SINGLE axiom-kind constant, the abbrev carries its empty cone.)
free -m | awk '/Mem:/{if($7<2048){print "FATAL: <2GB RAM available — refusing to compile"; exit 1}}'
echo "=== Phase 0: source integrity ==="
for f in "$HERE"/gen/LTLAcc/*.lean "$HERE"/Proofs/*.lean; do
[ -f "$f" ] || continue
if ! grep -qE '^(/-|import |namespace |theorem |def |noncomputable |open |set_option |--|abbrev )' "$f"; then
echo "CORRUPTED: $f is not Lean source. Restore: git checkout HEAD -- $f"; exit 1
fi
done
echo " all sources valid"
# Recursive: no compiled artifact anywhere in the tree may lack its source
# (review round 2, GPT M1 — previously scanned Proofs/*.olean only).
while IFS= read -r -d '' o; do
[ -f "${o%.olean}.lean" ] || { echo "ORPHAN OLEAN: $o has no sibling .lean (stale artifact)"; exit 1; }
done < <(find "$HERE" -name '*.olean' -print0)
# ── Phase 0c: harness integrity ─────────────────────────────────────────────
# WHY. Every gate below is executed by a script that, until now, nothing
# pinned. Round-5 review of the companion SLH-DSA repository stubbed the
# compiler wrapper alone and its button printed ALL GREEN in 3.6 seconds over
# deliberately destroyed proofs. Depth of checking is worth nothing if the
# thing doing the checking is unbound — and this repo's gates are the estate's
# strongest, which makes them the most valuable to switch off.
#
# WHICH files must be pinned is POLICY, and policy lives here — in the root of
# trust — never inside the map being consulted. If the required set were read
# from HARNESS.sha256, deleting an entry would silently un-pin that file
# instead of failing the build.
#
# Membership is SELF-DERIVING from two sources the filesystem can answer: the
# executable bit (anything this script can shell out to) and gen/**.lean (the
# extracted model, which nothing else byte-pins in this repo). Load-bearing
# files that are neither — the audit drivers, the policy tables, the toolchain
# pin, the fidelity harness — cannot be discovered and are listed explicitly.
HARNESS_EXTRA=(
AUDIT-MANIFEST.txt # the statement block Phase 3d's digest is taken over
inventory-allowlist.txt # the pinned audit surface Phase 3b diffs against
lean-toolchain # which Lean the corpus claims to have been checked by
fidelity/lean_defs.py # the Python transcription the differential compares
fidelity/run_fidelity.py # the differential itself
Proofs/Inventory.lean # audit driver: emits the inventory AND the statements
Proofs/AxiomCheck.lean # audit driver: the #print axioms queries of Phase 3
)
echo "=== Phase 0c: harness integrity ==="
if [ ! -s "$HERE/HARNESS.sha256" ]; then
echo "FATAL: HARNESS.sha256 is missing or empty — the harness is unpinned."
exit 1
fi
# check.sh is pinned like everything else: that catches drift and accident. It
# does NOT stop an author who edits this script and refreshes its pin in one
# commit — nothing executed by the harness can. The defence there is that both
# changes appear in the diff at the pinned commit.
HARNESS_REQUIRED=$( { find "$HERE" -type f -executable -not -path '*/.git/*' -printf '%P\n'
find "$HERE/gen" -type f -name '*.lean' -printf 'gen/%P\n'
printf '%s\n' "${HARNESS_EXTRA[@]}"; } | sort -u )
HARNESS_PINNED=$(awk '{print $2}' "$HERE/HARNESS.sha256" | sort -u)
if [ "$HARNESS_REQUIRED" != "$HARNESS_PINNED" ]; then
echo "FATAL: the set of harness files does not match HARNESS.sha256."
echo " (< pinned, > present and requiring a pin)"
diff <(echo "$HARNESS_PINNED") <(echo "$HARNESS_REQUIRED") | sed 's/^/ /'
exit 1
fi
if ! ( cd "$HERE" && sha256sum -c --quiet HARNESS.sha256 ) ; then
echo "FATAL: a harness file does not match its pin. The button you are"
echo "running is not the button that was reviewed."
exit 1
fi
echo " $(wc -l < "$HERE/HARNESS.sha256") harness files match their pins"
echo "=== Phase 1: stub + axiom-smuggling audit ==="
if grep -rn 'by trivial' "$HERE"/Proofs/*.lean 2>/dev/null; then
echo "STUB DETECTED"; exit 1; fi
if grep -rn ' : True :=' "$HERE"/Proofs/*.lean 2>/dev/null; then
echo "STUB DETECTED: True-target theorem"; exit 1; fi
if grep -rnE '^(private |protected |noncomputable )*axiom ' "$HERE"/Proofs/*.lean 2>/dev/null; then
echo "AXIOM SMUGGLING DETECTED: axiom under Proofs/ — gen/ is the only sanctioned site."; exit 1
fi
# gen/ is the sanctioned site for exactly ONE axiom (review round 2, GPT M1).
# This textual pin is the fast belt; the semantic guarantee is Phase 3b's
# environment inventory (exactly one axiom-kind constant, LTLAcc.sha256).
AXCOUNT=$(grep -hcE '^(private |protected |noncomputable )*axiom ' "$HERE"/gen/LTLAcc/*.lean | paste -sd+ - | bc)
[ "$AXCOUNT" = 1 ] || { echo "AXIOM COUNT DRIFT: gen/ declares $AXCOUNT axioms, sanctioned: 1 (sha256)"; exit 1; }
echo " clean"
echo "=== Phase 2: compile ==="
LOG=$(mktemp /tmp/acc-check-XXXX.log)
cd "$AENEAS_LEAN"
lake env bash -c "
set -euo pipefail
cd '$HERE/gen' && export LEAN_PATH=\"\$LEAN_PATH:\$PWD:$HERE\"
compile() {
echo \" · \$1\"
LEAN_TIMEOUT=$TIMEOUT LEAN_MAX_CORES=$CORES '$HERE/lean-guard' \"\${1}.lean\" 2>&1 | tee -a '$LOG' || { echo \"FAIL: \$1\"; exit 1; }
}
for m in ${GEN_MODULES[*]}; do compile \"\$m\"; done
cd '$HERE'
for m in ${PROOFS[*]}; do
[ -f \"Proofs/\$m.lean\" ] || { echo \"MISSING: Proofs/\$m.lean\"; exit 1; }
compile \"Proofs/\$m\"
done
for f in Proofs/*.lean; do
b=\$(basename \"\$f\" .lean)
case \" ${DRIVERS[*]} \" in (*\" \$b \"*) continue;; esac # audit infrastructure, compiled in Phase 3/3b
case \" ${PROOFS[*]} \" in (*\" \$b \"*) ;; (*) echo \"DEAD FILE: \$f\"; exit 1;; esac
done
# gen/ gets the same unmanifested-source check (review round 2, GPT M1)
for f in gen/LTLAcc/*.lean; do
b=\"LTLAcc/\$(basename \"\$f\" .lean)\"
case \" ${GEN_MODULES[*]} \" in (*\" \$b \"*) ;; (*) echo \"DEAD FILE (gen): \$f\"; exit 1;; esac
done
# CLASS 15. The two loops above look only INSIDE Proofs/ and gen/LTLAcc/, so
# until 2026-07-31 a Lean file anywhere else was invisible: one at the
# verification root, or under gen/AnythingElse/, was neither compiled nor
# rejected. It could be imported by name from a manifested module — the
# manifest names modules, and LEAN_PATH includes both roots — which is a
# source of the corpus that no phase reads and no pin covers. Nothing may
# live in either root but the two enumerated sets.
shopt -s nullglob
for f in *.lean; do echo \"DEAD FILE (verification root): \$f\"; exit 1; done
for d in gen/*/; do
[ \"\$d\" = 'gen/LTLAcc/' ] && continue
for f in \"\$d\"*.lean; do echo \"DEAD FILE (gen subdirectory): \$f\"; exit 1; done
done
for f in gen/*.lean; do echo \"DEAD FILE (gen root): \$f\"; exit 1; done
shopt -u nullglob
"
if grep -q "uses 'sorry'" "$LOG"; then echo "STUB: sorry detected"; exit 1; fi
rm -f "$LOG"
echo "=== Phase 3: boundary-exact axiom audit ==="
AUD=$(mktemp /tmp/acc-audit-XXXX.log)
cd "$AENEAS_LEAN"
lake env bash -c "
cd '$HERE' && export LEAN_PATH=\"\$LEAN_PATH:$HERE/gen:$HERE\"
LEAN_TIMEOUT=300 LEAN_MAX_CORES=$CORES '$HERE/lean-guard' Proofs/AxiomCheck.lean
" > "$AUD" 2>&1 || { cat "$AUD"; exit 1; }
FAIL=0
for cert in "${!CONES[@]}"; do
want="${CONES[$cert]}"
if [ -z "$want" ]; then
exp="'$cert' does not depend on any axioms"
else
exp="'$cert' depends on axioms: [$want]"
fi
if ! grep -qF "$exp" "$AUD"; then
echo " CONE DRIFT: $cert"
echo " expected: $exp"
echo " observed: $(grep -F "'$cert'" "$AUD" || echo '(missing)')"
FAIL=1
else
echo "$cert [$want]"
fi
done
rm -f "$AUD"
# -- Phase 3b: ENVIRONMENT-derived audit-surface coverage (fail-closed) ------
# Review round 2 (GPT H1 / Claude NEW-1): the previous source-regex
# enumerator was evadable (attributes, indentation, private/protected,
# instance, and namespace-nested basename collisions). Replaced entirely:
# Proofs/Inventory.lean reads the compiled Lean ENVIRONMENT and emits every
# constant of every corpus module — fully qualified, unfiltered, each with
# kind and axiom cone (its own walker, cross-checked in-process against
# core collectAxioms). inventory_gate.sh diffs that against the pinned
# allowlist, fail-closed BOTH directions. No name shape can hide: what the
# kernel saw is what gets audited.
echo "=== Phase 3b: environment-derived audit-surface coverage ==="
COVFAIL=0
INVLOG=$(mktemp /tmp/acc-inv-XXXX.log)
cd "$AENEAS_LEAN"
lake env bash -c "
cd '$HERE' && export LEAN_PATH=\"\$LEAN_PATH:$HERE/gen:$HERE\"
LEAN_TIMEOUT=600 LEAN_MAX_CORES=$CORES '$HERE/lean-guard' Proofs/Inventory.lean
" > "$INVLOG" 2>&1 || { cat "$INVLOG"; echo "INVENTORY COMPILE FAILED"; exit 1; }
"$HERE/inventory_gate.sh" "$INVLOG" "$HERE/inventory-allowlist.txt" || COVFAIL=1
# The inventory's corpus-module list must BE the compile manifest — both
# directions, so neither can drift from the other silently.
# Read the module LISTS, not the file. This comparison used to grep the whole
# of Inventory.lean for a backticked name, which meant any PROSE mention of a
# module counted: a doc comment naming `Proofs.AxiomCheck` broke the count, and
# — worse in the other direction — a doc mention of a module missing from the
# array would have satisfied the presence check and hidden the omission. The
# manifest is the arrays; read the arrays.
MODLISTS=$(sed -n '/^def corpusModules/,/\]/p;/^def driverModules/,/\]/p' "$HERE/Proofs/Inventory.lean")
for m in "${GEN_MODULES[@]}" "${PROOFS[@]}"; do
mod=$(echo "$m" | sed 's|^LTLAcc/|LTLAcc.|; s|^\([A-Z]\)|Proofs.\1|; s|^Proofs\.LTLAcc\.|LTLAcc.|')
grep -qF "\`$mod" <<<"$MODLISTS" || {
echo " MANIFEST DRIFT: $mod compiled by check.sh but not inventoried"; COVFAIL=1; }
done
# The drivers are named in Inventory.lean too, now that it walks their
# declaration surface — so they count on both sides of this equality.
for d in "${DRIVERS[@]}"; do
[ "$d" = Inventory ] && continue # covered as the current module, which has
# no module index while it elaborates and
# so is not named in its own module list
grep -qF "\`Proofs.$d" <<<"$MODLISTS" || {
echo " MANIFEST DRIFT: driver Proofs.$d is not inventoried"; COVFAIL=1; }
done
NMANIFEST=$(( ${#GEN_MODULES[@]} + ${#PROOFS[@]} + ${#DRIVERS[@]} - 1 ))
NINV=$(grep -oE '`(LTLAcc|Proofs)\.[A-Za-z0-9_.]+' <<<"$MODLISTS" | wc -l)
[ "$NMANIFEST" = "$NINV" ] || {
echo " MANIFEST DRIFT: check.sh compiles $NMANIFEST modules, Inventory lists $NINV"; COVFAIL=1; }
# CLASS 9. The driver-surface block must actually have RUN. Its violations are
# raised inside Lean, so a walk that silently did not execute would look exactly
# like a clean one — the same vacuous-pass shape the INV-COUNT trailer exists to
# close. Require the trailer, and require it to agree with the lines.
NDRV=$(grep -c '^DRV|' "$INVLOG" || true)
DRVTRAILER=$(grep '^DRV-COUNT|' "$INVLOG" | tail -1 | cut -d'|' -f2)
if [ -z "$DRVTRAILER" ] || [ "$DRVTRAILER" != "$NDRV" ]; then
echo " DRIVER SURFACE NOT OBSERVED: trailer=${DRVTRAILER:-absent}, observed $NDRV lines"
COVFAIL=1
elif [ "$NDRV" -eq 0 ]; then
echo " DRIVER SURFACE NOT OBSERVED: the instruments declare nothing at all,"
echo " which cannot be true — Inventory.lean declares its own machinery."
COVFAIL=1
else
echo " driver surface: $NDRV declarations across the audit instruments, no axiom, no claim"
fi
# NOTE ON WHAT THIS DOES NOT DO. It does not pin WHICH definitions the
# instruments declare — a new inert `def` in a driver is allowed. That is
# deliberate: both drivers are byte-pinned in HARNESS.sha256 (Phase 0c), so
# their contents cannot drift unnoticed, and a second policy file listing their
# internals would add a thing to maintain without adding a thing to catch. What
# the check above adds is the property byte-pinning cannot give: that no
# instrument declares an AXIOM or a CLAIM, whatever its bytes are.
# CONES ⊆ allowlist with IDENTICAL cones: the #print-axioms-pinned table
# and the environment inventory are two independent computations of the
# same facts — any disagreement is a failure of one of them.
# (cones are compared as SETS: CONES keeps #print-axioms order, the
# inventory emits byte-sorted order — canonicalize both before comparing)
canon() { tr -d ' ' <<<"$1" | tr ',' '\n' | LC_ALL=C sort | paste -sd, -; }
while IFS='|' read -r _ name _ cone; do
if [ -n "${CONES[$name]+x}" ]; then
want=$(canon "${CONES[$name]}")
got=$(canon "$cone")
[ "$want" = "$got" ] || {
echo " CONE CROSS-CHECK FAILED: $name CONES=[$want] inventory=[$got]"; COVFAIL=1; }
fi
done < <(grep '^INV|' "$HERE/inventory-allowlist.txt")
# (field-equality, not regex — dots in names must not act as wildcards;
# review round 3, F4)
for cert in "${!CONES[@]}"; do
awk -F'|' -v n="$cert" '$1=="INV" && $2==n {found=1} END {exit !found}' \
"$HERE/inventory-allowlist.txt" || {
echo " PINNED BUT NOT INVENTORIED: $cert (in CONES, not in allowlist)"; COVFAIL=1; }
done
# (INVLOG is NOT removed here: Phase 3d binds the statement block emitted by
# this same run. Removed at the end of 3d.)
# every pinned cert must actually be queried by AxiomCheck (no pin-but-never-check)
for cert in "${!CONES[@]}"; do
grep -qF "#print axioms $cert" "$HERE/Proofs/AxiomCheck.lean" || {
echo " PINNED BUT NOT QUERIED: $cert (in CONES, absent from AxiomCheck.lean)"; COVFAIL=1; }
done
[ "$COVFAIL" = 0 ] && echo " coverage complete: environment == allowlist, CONES cross-checked"
[ "$COVFAIL" = 0 ] || { echo "COVERAGE FAILED"; FAIL=1; }
[ "$FAIL" = 0 ] || exit 1
# -- Phase 3c: documentation consistency (review R4-1: hand-maintained ------
# counts went stale three rounds running — so the docs' numbers are now
# ASSERTED against their sources: allowlist, CONES, and the fidelity pins.
echo "=== Phase 3c: doc-consistency ==="
DOCFAIL=0
NALLOW=$(grep -c '^INV|' "$HERE/inventory-allowlist.txt")
NCONES=${#CONES[@]}
SMAP="$HERE/../STATEMENT-MAP.md"
RDME="$HERE/../README.md"
grep -qF "$NALLOW constants" "$SMAP" || { echo " DOC DRIFT: STATEMENT-MAP lacks '$NALLOW constants'"; DOCFAIL=1; }
grep -qF "$NCONES human-reviewed" "$SMAP" || { echo " DOC DRIFT: STATEMENT-MAP lacks '$NCONES human-reviewed'"; DOCFAIL=1; }
grep -qF "$NALLOW constants" "$RDME" || { echo " DOC DRIFT: README lacks '$NALLOW constants'"; DOCFAIL=1; }
grep -qF "$NCONES human-reviewed" "$RDME" || { echo " DOC DRIFT: README lacks '$NCONES human-reviewed'"; DOCFAIL=1; }
# fidelity pins quoted in the docs must equal the harness's pinned constants
for n in $(python3 -c "
import re
src = open('$HERE/fidelity/run_fidelity.py').read()
vals = [re.search(r'assert ti == ([0-9_]+)', src).group(1),
re.search(r'assert tc == ([0-9_]+)', src).group(1),
re.search(r'LIED_PIN_TOTAL = ([0-9_]+)', src).group(1),
re.search(r'LIED_PIN_DIV = ([0-9_]+)', src).group(1)]
print(' '.join(f'{int(v.replace(chr(95),\"\")):,}' for v in vals))"); do
grep -qF "$n" "$SMAP" || { echo " DOC DRIFT: STATEMENT-MAP lacks fidelity pin '$n'"; DOCFAIL=1; }
done
[ "$DOCFAIL" = 0 ] && echo " docs agree with allowlist ($NALLOW), CONES ($NCONES), fidelity pins"
[ "$DOCFAIL" = 0 ] || { echo "DOC-CONSISTENCY FAILED"; exit 1; }
# -- Phase 3d: statement + specification binding (P1-a) ---------------------
# WHAT PHASES 3/3b DO NOT ESTABLISH. Phase 3 pins each certificate's exact
# axiom cone; Phase 3b pins the full environment surface, kind and cone, both
# directions. Neither records what a declaration SAYS. A theorem gutted to a
# tautology keeps its name, its kind and its cone. A `def` redefined to BE the
# thing it was meant to specify keeps all three, and every certificate stated
# against it silently becomes vacuous — with the allowlist unmoved.
#
# Proofs/Inventory.lean therefore also emits, for every inventoried constant,
# its fully-elaborated TYPE, and for every definition its fully-elaborated
# BODY. Proof terms are deliberately absent: by proof irrelevance a theorem's
# content is its statement. This phase binds the SHA-256 of that block, and
# the block itself is committed as AUDIT-MANIFEST.txt so a mismatch is DIFFED
# rather than merely reported.
#
# To rotate deliberately: run check.sh, take the printed OBSERVED digest, and
# update the constant below AND AUDIT-MANIFEST.txt in the same reviewable
# commit. Visibility in review is the defence; no harness audits its author.
EXPECTED_STMT_SHA256="e7d422f0be9a9e6f5465058292e30c711d52856428da2b01c470a57ec181540c"
echo "=== Phase 3d: statement + specification binding ==="
STMTFAIL=0
STMT_BLOCK=$(awk '/^STMT-BEGIN/{f=1;next} /^STMT-END/{f=0} f' "$INVLOG")
# FAIL CLOSED ON ABSENCE: no block and a matching block must not share a path.
if [ -z "$STMT_BLOCK" ]; then
echo " NO STATEMENT BLOCK emitted by Proofs/Inventory.lean (fail-closed)"; STMTFAIL=1
else
# Output integrity, same discipline as the INV-COUNT trailer: a truncated or
# crashed run must not pass as a short-but-matching block.
N_STMT=$(printf '%s\n' "$STMT_BLOCK" | grep -c '^STMT|')
STMT_TRAILER=$(grep '^STMT-COUNT|' "$INVLOG" | tail -1 | cut -d'|' -f2)
if [ -z "$STMT_TRAILER" ] || [ "$STMT_TRAILER" != "$N_STMT" ]; then
echo " STATEMENT BLOCK TRUNCATED: trailer=${STMT_TRAILER:-absent}, observed $N_STMT"; STMTFAIL=1
fi
# Every inventoried constant must carry a statement line. Inventory.lean
# asserts this internally too; asserting it here as well means a tampered
# Inventory.lean cannot simply drop its own check.
N_INV=$(grep -c '^INV|' "$INVLOG")
N_TYPES=$(printf '%s\n' "$STMT_BLOCK" | grep -c '|type=')
if [ "$N_TYPES" != "$N_INV" ]; then
echo " STATEMENT COVERAGE GAP: $N_INV constants inventoried, $N_TYPES carry a statement"; STMTFAIL=1
fi
GOT_STMT_SHA=$(printf '%s\n' "$STMT_BLOCK" | sha256sum | cut -d' ' -f1)
if [ "$GOT_STMT_SHA" != "$EXPECTED_STMT_SHA256" ]; then
printf '%s\n' "$STMT_BLOCK" > "$HERE/.stmt-manifest.observed"
echo " STATEMENT DIGEST MISMATCH."
echo " expected: $EXPECTED_STMT_SHA256"
echo " observed: $GOT_STMT_SHA"
echo " A statement or a definition body changed. First differences:"
diff -u "$HERE/AUDIT-MANIFEST.txt" "$HERE/.stmt-manifest.observed" 2>/dev/null \
| head -30 | sed 's/^/ /' || echo " (AUDIT-MANIFEST.txt absent — cannot diff)"
rm -f "$HERE/.stmt-manifest.observed"
STMTFAIL=1
elif ! printf '%s\n' "$STMT_BLOCK" | cmp -s - "$HERE/AUDIT-MANIFEST.txt"; then
# The digest's INPUT must be committed and current, or the diff above would
# compare against a stale reference and quietly mislead the next reader.
echo " COMMITTED BLOCK STALE: AUDIT-MANIFEST.txt does not match the emitted block"
echo " (the digest matched, so the committed copy needs refreshing)"; STMTFAIL=1
fi
fi
[ "$STMTFAIL" = 0 ] && echo " statements bound: $N_STMT lines over $N_INV constants, sha256 = $GOT_STMT_SHA"
[ "$STMTFAIL" = 0 ] || { echo "STATEMENT BINDING FAILED"; rm -f "$INVLOG"; exit 1; }
rm -f "$INVLOG"
# -- Phase 4: definition fidelity (Lean defs vs deployed pacta verifiers) --
echo "=== Phase 4: definition fidelity ==="
PACTA_SRC="${PACTA_SRC:-$HERE/../../proof-aware-crypto-tooling-agent/src}"
FIDELITY_RAN=0
if [ "${SKIP_FIDELITY:-0}" = "1" ]; then
echo " skipped (SKIP_FIDELITY=1)"
elif [ -d "$PACTA_SRC/pacta" ]; then
PACTA_SRC="$PACTA_SRC" python3 "$HERE/fidelity/run_fidelity.py" || { echo "FIDELITY FAILED"; exit 1; }
FIDELITY_RAN=1
else
echo " SKIPPED: pacta repo not found at $PACTA_SRC (set PACTA_SRC to run)"
fi
# Fail-closed markers (review H2): the Lean corpus is green either way, but
# only the strong marker — required by the attestation gate — is emitted
# when fidelity actually ran. Never conflate the two.
echo "=== LEAN GREEN ==="
if [ "$FIDELITY_RAN" = 1 ]; then
echo "=== ATTESTATION GREEN (Lean + fidelity) ==="
else
echo "=== FIDELITY NOT RUN — NOT attestation-ready (run with pacta present) ==="
fi