ltl-accumulator-verified/verification/fidelity/run_fidelity.py
mrwulf b575e857e3 verification: bind statements and specification bodies (P1-a); un-stale the fidelity pin
STATEMENT BINDING (Phase 3d). The coverage gate pins every constant's name,
kind and axiom cone, both directions, and none of selftest_audit.sh's nine
attacks defeat it. It is nevertheless blind to what a declaration SAYS — and
that is demonstrated here rather than argued:

  Wrapping one branch of `LTLAcc.pinAccept`'s body in `id (…)` is
  definitionally equal. Every downstream proof still compiles. The name, the
  kind, the type and the axiom cone are unchanged. The inventory gate reports
  "222 constants, environment == allowlist" — GREEN.

That edit is harmless by construction; the point is that nothing stood between
it and a genuinely vacuous redefinition of a specification. Proofs/Inventory.lean
now also emits, for every inventoried constant, its fully-elaborated TYPE, and
for every definition its fully-elaborated BODY — 266 lines over 222 constants.
Proof terms are deliberately absent: by proof irrelevance a theorem's content
is its statement. check.sh Phase 3d binds the SHA-256 and the block is
committed as AUDIT-MANIFEST.txt so a mismatch is DIFFED, not merely reported.

The existing gate is untouched, per the standing rule that the port flows FROM
this repo, not to it: INV lines are byte-identical, inventory_gate.sh is
unchanged, and all nine of its attacks still fail as before.

selftest_statements.sh replays the defeq edit as case 1, asserting BOTH that
the coverage gate passes it and that Phase 3d catches it — so if the coverage
gate ever grows to see this, the test says so instead of quietly re-labelling.
Cases 2-4 cover a hand-edited committed block, a truncated block, and a
constant inventoried without a statement.

FIDELITY PIN (unrelated, found while running the button). Phase 4 had been
failing since 2026-07-23: LIED_PIN_DIV expected 3,867 divergences between the
Lean model and the deployed consistency verifier, and observed 0. Cause is
pacta ddbb5a4, which restored the RFC 9162 2.1.4.2 Step-7 terminal `sn == 0`
condition; that one conjunct removes every divergence in the pinned
73,573-case family. KNOWN-GAPS gap 14 already recorded the closure on the day
it landed — only this constant was stale, so the button had been red for five
days with nobody running it. The pin now reads 0 with the history in a comment.
Nothing about the paper, public log entry 13, or the attested commit 172a1d0
changes; the historical divergence stays reproducible at the tagged pre-fix
commit.

KNOWN-GAPS gap 16 records what the binding does not buy: identity, not
meaning; an author who edits and re-pins in one commit is caught by review and
not by the script; and proof terms are unbound by design.

Button green end to end: ATTESTATION GREEN (Lean + fidelity).

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-29 09:07:13 +02:00

196 lines
8.6 KiB
Python

#!/usr/bin/env python3
"""S7 definition-fidelity harness for ltl-accumulator-verified.
Differential-tests the LEAN definitions (transliterated in lean_defs.py:
MTH / Path / Root / ConsRec, post-refactor decidable-if base) against the
DEPLOYED pacta verifiers, over the EXACT case generation of the paper's
tests/test_paper_verifiers.py — this run establishes agreement between the mechanized objects and the
deployed RFC 9162 code EXHAUSTIVELY OVER all size/index (and old/new
size) pairs through 256 FOR the two fixed generated datasets and the
listed mutation classes (honest, wrong-leaf, wrong-index, wrong-root,
truncated/padded proof, and out-of-range m≥n / n0>n1 / n0=0). It is not
a proof of extensional equality over all inputs — and extensional
equality is in fact FALSE for consistency: the lied-size family below
pins the known one-sided divergence (deployed accepts claimed sizes an
honest proof was never generated for; the mechanized ConsRec rejects —
KNOWN-GAPS gap 14). The Lean-to-Python bridge remains trusted
quoted-source inspection (see KNOWN-GAPS).
Requires the pacta repo on PYTHONPATH (its src/). Bound NMAX matches the
paper.
"""
import hashlib
import os
import sys
HERE = os.path.dirname(os.path.abspath(__file__))
PACTA_SRC = os.environ.get("PACTA_SRC",
os.path.join(HERE, "..", "..", "..", "proof-aware-crypto-tooling-agent", "src"))
sys.path.insert(0, PACTA_SRC)
sys.path.insert(0, HERE)
# deployed (pacta) side
from pacta.transparency import ( # noqa: E402
consistency_proof, inclusion_proof, merkle_root,
verify_consistency, verify_inclusion,
)
# lean (mechanized) side
import lean_defs as L # noqa: E402
NMAX = int(os.environ.get("FIDELITY_NMAX", "256"))
# lied-size family pins (gap 14; valid for the default FIDELITY_LIED_NMAX=60):
# 73,573 boundary cases.
#
# The divergence count was 3,867 (3,405 lied-old-size + 462 lied-new-size,
# smallest witness n=3, m=2 claimed 1) until pacta `ddbb5a4` (2026-07-23)
# restored the RFC 9162 2.1.4.2 Step-7 terminal condition `sn == 0` to
# verify_consistency. That one conjunct removes EVERY divergence in this
# family, so the pin is now 0: the deployed verifier and the mechanized
# ConsRec model agree on all 73,573 boundary cases.
#
# The pin was left at 3,867 when the fix landed, which made this assertion —
# and therefore check.sh Phase 4 — fail from 2026-07-23 until it was noticed
# on 2026-07-28. KNOWN-GAPS.md gap 14 had already recorded the closure; only
# this constant was stale. Nothing about the paper, public log entry 13, or
# the attested commit 172a1d0 changes: the historical divergence remains
# truthfully recorded and reproducible at `vulnerable/sn0-consistency-fd2f6ba`.
LIED_PIN_TOTAL = 73_573
LIED_PIN_DIV = 0
def _h(b):
return hashlib.sha256(b).digest()
def inclusion():
total = 0
root_checks = 0
path_checks = 0
for n in range(1, NMAX + 1):
data = [bytes([i % 251]) + bytes([(i * 5) % 256]) * (i % 3) for i in range(n)]
root = merkle_root(data)
# root fidelity: Lean MTH == deployed merkle_root
assert L.MTH(data) == root, ("MTH drift", n)
root_checks += 1
for m in range(n):
P = inclusion_proof(data, m)
# path fidelity: Lean Path == deployed inclusion_proof
assert L.Path(m, data) == P, ("Path drift", n, m)
path_checks += 1
cases = [
(data[m], m, n, P, root),
(data[m] + b"!", m, n, P, root),
(data[m], (m + 1) % n, n, P, root),
(data[m], m, n, P, _h(b"q")),
(data[m], n, n, P, root), # out-of-range m = n (review F1)
(data[m], n + 3, n, P, root), # out-of-range m > n (review F1)
]
if P:
cases.append((data[m], m, n, P[:-1], root))
for d2, m2, n2, P2, r2 in cases:
total += 1
dep = verify_inclusion(d2, m2, n2, P2, r2)
lean = L.accept_incl(d2, m2, n2, P2, r2)
assert dep == lean, ("INCL VERIFIER DRIFT", n, m, dep, lean)
return total, root_checks, path_checks
def consistency():
total = 0
for n in range(1, NMAX + 1):
data = [bytes([i % 251]) + bytes([(i * 7) % 256]) * (i % 4) for i in range(n)]
r1 = merkle_root(data)
assert L.MTH(data) == r1, ("MTH drift (cons)", n)
for m in range(1, n + 1):
P = consistency_proof(data, m)
r0 = merkle_root(data[:m])
cases = [
(m, n, r0, r1, P), # honest consistency
(m, n, _h(b"x"), r1, P),
(m, n, r0, _h(b"y"), P),
(m, n, r0, r1, P + [_h(b"z")]),
(n + 1, n, r1, r0, P), # n0 > n1 (review F1)
(0, n, r0, r1, P), # n0 = 0 escape (review F1)
]
if P:
cases.append((m, n, r0, r1, P[:-1]))
for mm, nn, a, bb, pp in cases:
total += 1
dep = verify_consistency(mm, nn, a, bb, pp)
lean = L.accept_cons(mm, nn, a, bb, pp)
assert dep == lean, ("CONS VERIFIER DRIFT", n, m, dep, lean)
return total
def lied_sizes():
"""Lied-size boundary family (round-3 review, Claude F1* / gap 14).
The deployed RFC 9162 iterative verify_consistency accepts honest
proofs under CLAIMED sizes the proof was never generated for (when
the claimed old size is a power of two it seeds the walk with the
old root and uses the sizes only as bit-navigation state); the
mechanized ConsRec binds the split geometry to the sizes and
rejects. Divergences in this family are therefore EXPECTED and
documented — what this pins is:
(a) the DIRECTION: every divergence must be deployed=True /
lean=False (the mechanized model is the stricter one; a
lean=True/deployed=False case would break soundness transfer
and fails the run immediately), and
(b) the exact divergence COUNT, so any drift in either verifier
shows up as a pin failure.
Inclusion showed zero divergences under identical abuse (round-3
addendum); the inclusion side is covered by the m>=n families above.
"""
lied_nmax = int(os.environ.get("FIDELITY_LIED_NMAX", "60"))
total = 0
div = 0
for n in range(2, lied_nmax):
data = [bytes([i % 251]) for i in range(n)]
r1 = merkle_root(data)
for m_true in range(1, n):
P = consistency_proof(data, m_true)
r0 = merkle_root(data[:m_true])
for m_lie in range(0, n + 1): # lied OLD size
if m_lie == m_true:
continue
total += 1
dep = verify_consistency(m_lie, n, r0, r1, P)
lean = L.accept_cons(m_lie, n, r0, r1, P)
if dep != lean:
div += 1
assert dep and not lean, (
"ONE-SIDEDNESS BROKEN: lean accepts, deployed rejects",
n, m_true, m_lie)
for n_lie in (n - 1, n + 1, n + 7): # lied NEW size
if n_lie < m_true or n_lie == n or n_lie < 1:
continue
total += 1
dep = verify_consistency(m_true, n_lie, r0, r1, P)
lean = L.accept_cons(m_true, n_lie, r0, r1, P)
if dep != lean:
div += 1
assert dep and not lean, (
"ONE-SIDEDNESS BROKEN: lean accepts, deployed rejects",
n, m_true, "n_lie", n_lie)
return total, div
def main():
print(f"S7 fidelity: Lean defs vs deployed pacta, NMAX={NMAX}")
ti, rc, pc = inclusion()
print(f" inclusion: {ti} verifier cases, {rc} MTH==merkle_root, {pc} Path==inclusion_proof — all agree")
tc = consistency()
print(f" consistency baseline family: {tc} verifier cases (incl. honest), MTH checks — all agree")
tl, dl = lied_sizes()
print(f" lied-sizes: {tl} boundary cases, {dl} EXPECTED divergences, all deployed-accepts-only (gap 14)")
# pinned counts (identical generation to the paper's harness)
assert ti == 230_271, ti # re-pinned after adding out-of-range families (F1)
assert tc == 230_016, tc
assert (tl, dl) == (LIED_PIN_TOTAL, LIED_PIN_DIV), (tl, dl)
print(f" PINNED: inclusion={ti} (230,271) consistency={tc} (230,016) lied-sizes={tl}/{dl}")
print("=== FIDELITY GREEN: agreement over the pinned case families "
"(not extensional equality; KNOWN-GAPS gap 14) ===")
if __name__ == "__main__":
main()