2026-07-19 11:10:55 +00:00
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"""Historical regression pin from the archived v0.2 system report
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(hosted at /paper/v0.2), which cited these exact differential-testing
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counts (164,479 inclusion; 164,224 consistency) for its recursive forms
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against the deployed iterative RFC 9162 verifiers over these families.
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The CURRENT paper makes no extensional-equality claim: it cites the
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accumulator corpus's fidelity harness instead (230,271 / 230,016 honest
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families, 73,573 lied-size cases with 3,867 divergences, every one
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accepted only by the deployed verifier). This test remains as a pinned
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regression boundary for the pacta-internal recursive forms.
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paper: Fable-5 rigor re-audit of the depth pass — fix 3 real defects
Re-auditing the prior (Opus-produced) depth pass adversarially found and
fixed three genuine issues:
1. OVERCLAIM (serious): §5.3 said the consistency verifier was
differential-tested 'on all (n0,n1) with n1<=256' but the script only
SAMPLED sizes (5,508 cases). Ran the genuinely exhaustive test — all
1<=n0<=n1<=256, honest + 4 mutations — 164,224 invocations, and the
inclusion verifier likewise (164,479). Paper now states the true scope
and counts; both are pinned in a new CI test (test_paper_verifiers.py,
104 tests) so the numbers cannot rot.
2. PROOF IMPRECISION: Lemma 2 (Root binding) was applied to ConsRec's
first component, which PASSES THROUGH (no hnode) at some levels and so
is not the hash-fold the lemma needs. Reworked: Lemma 2 now defined
over 'hash-folds' only; Theorem 3 restructured into 3 clean steps that
put only the full-hashing second component through the lemma, then
argue algebraically + one honest-tree collision. Also hoisted Lemma 2
above Theorem 2 and made Theorem 2 invoke it (was inlined), so the
'two theorems share the lemma' remark is now true; deduped the remark.
3. MISLABELED TABLE: Table 1's 'files vs upstream' column actually held
line-diffs against different baselines. Dropped it for clean comparable
columns (files / apex axioms / SHA-512 shape); the diff story stays in
the portability paragraph where each baseline is named.
17 pages, all refs resolve, 104 tests green.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-09 17:46:11 +00:00
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"""
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import hashlib
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from pacta.transparency import (
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consistency_proof,
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inclusion_proof,
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merkle_root,
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verify_consistency,
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verify_inclusion,
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)
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NMAX = 256
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def _h(b: bytes) -> bytes:
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return hashlib.sha256(b).digest()
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def _hleaf(d: bytes) -> bytes:
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return _h(b"\x00" + d)
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def _hnode(x: bytes, y: bytes) -> bytes:
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return _h(b"\x01" + x + y)
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def _k_below(n: int) -> int:
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k = 1
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while 2 * k < n:
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k *= 2
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return k
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# --- the paper's recursive inclusion verifier (App. B) ---------------------
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def _root(v, m, n, path):
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if n == 1:
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if path:
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raise ValueError
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return v
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if not path:
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raise ValueError
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*rest, s = path
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k = _k_below(n)
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return _hnode(_root(v, m, k, rest), s) if m < k else _hnode(s, _root(v, m - k, n - k, rest))
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def _paper_incl(d, m, n, path, root):
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if not (0 <= m < n):
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return False
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try:
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return _root(_hleaf(d), m, n, path) == root
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except ValueError:
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return False
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# --- the paper's recursive consistency verifier (§5.3, ConsRec) ------------
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def _consrec(m, n, P, b, r0):
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if m == n:
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if b:
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if P:
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raise ValueError
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return (r0, r0)
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if len(P) != 1:
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raise ValueError
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return (P[0], P[0])
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if not P:
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raise ValueError
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*rest, s = P
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k = _k_below(n)
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if m <= k:
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x, y = _consrec(m, k, rest, b, r0)
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return (x, _hnode(y, s))
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xr, yr = _consrec(m - k, n - k, rest, False, r0)
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return (_hnode(s, xr), _hnode(s, yr))
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def _paper_cons(m, n, r0, r1, P):
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if m == 0:
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return True
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if m > n:
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return False
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try:
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x, y = _consrec(m, n, P, True, r0)
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except ValueError:
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return False
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return x == r0 and y == r1
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def test_recursive_inclusion_equals_deployed_exhaustive():
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total = 0
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for n in range(1, NMAX + 1):
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data = [bytes([i % 251]) + bytes([(i * 5) % 256]) * (i % 3) for i in range(n)]
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root = merkle_root(data)
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for m in range(n):
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P = inclusion_proof(data, m)
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cases = [
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(data[m], m, n, P, root),
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(data[m] + b"!", m, n, P, root),
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(data[m], (m + 1) % n, n, P, root),
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(data[m], m, n, P, _h(b"q")),
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]
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if P:
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cases.append((data[m], m, n, P[:-1], root))
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for d2, m2, n2, P2, r2 in cases:
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total += 1
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assert verify_inclusion(d2, m2, n2, P2, r2) == _paper_incl(d2, m2, n2, P2, r2), (n, m)
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assert verify_inclusion(data[m], m, n, P, root)
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assert _paper_incl(data[m], m, n, P, root)
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assert total == 164_479, total # the count cited in the paper
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def test_recursive_consistency_equals_deployed_exhaustive():
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total = 0
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for n in range(1, NMAX + 1):
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data = [bytes([i % 251]) + bytes([(i * 7) % 256]) * (i % 4) for i in range(n)]
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r1 = merkle_root(data)
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for m in range(1, n + 1):
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P = consistency_proof(data, m)
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r0 = merkle_root(data[:m])
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cases = [
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(m, n, r0, r1, P),
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(m, n, _h(b"x"), r1, P),
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(m, n, r0, _h(b"y"), P),
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(m, n, r0, r1, P + [_h(b"z")]),
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]
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if P:
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cases.append((m, n, r0, r1, P[:-1]))
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for mm, nn, a, bb, pp in cases:
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total += 1
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assert verify_consistency(mm, nn, a, bb, pp) == _paper_cons(mm, nn, a, bb, pp), (n, m)
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assert verify_consistency(m, n, r0, r1, P)
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assert _paper_cons(m, n, r0, r1, P)
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assert total == 164_224, total # the count cited in the paper
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