CLAIMS.md is now mechanically derived from two ground-truth sources: - core.capability.ledger_report (Tier 1: ratified domains) - scripts/verify_lane_shas.PINNED_SHAS (Tier 2: pinned lane reports) The generator is deterministic and gated by tests/test_claims_md_is_current.py + the lane-shas CI workflow's new 'verify CLAIMS.md is current' step. Drift between in-tree state and the published claims fails CI before merge. Tier 1 (5 ratified domains) and Tier 2 (6 pinned lanes) cover every ADR-0092..0102 invariant currently CI-pinned.
264 lines
8.7 KiB
Python
264 lines
8.7 KiB
Python
"""Generate CLAIMS.md from the capability ledger and pinned lane SHAs.
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CLAIMS.md is a single-page, auditable list of every CI-pinned
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capability claim CORE currently makes. It is **mechanically derived**
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from two ground-truth sources:
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- ``core.capability.ledger_report()`` — domain ratification rows
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(Tier 1: "this domain is reasoning-capable").
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- ``scripts.verify_lane_shas.PINNED_SHAS`` + ``LANE_SPECS`` —
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per-lane pinned report SHA-256 (Tier 2: "this lane's report bytes
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hash to X under deterministic replay").
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The generator is **deterministic**: same inputs → byte-identical
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output. ``tests/test_claims_md_is_current.py`` regenerates the file
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into a temp path and asserts byte equality with the on-disk copy.
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"""
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from __future__ import annotations
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import argparse
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import hashlib
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import sys
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from dataclasses import dataclass
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from pathlib import Path
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REPO_ROOT = Path(__file__).resolve().parent.parent
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CLAIMS_PATH = REPO_ROOT / "CLAIMS.md"
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# Import via path so this script remains runnable without installing the
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# package.
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sys.path.insert(0, str(REPO_ROOT))
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from core.capability import ledger_report # noqa: E402
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from scripts.verify_lane_shas import LANE_SPECS, PINNED_SHAS # noqa: E402 # type: ignore[import-not-found]
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# ADR → human-readable lane purpose. Keep this in lockstep with the
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# ADR docs themselves; the generator fails fast if any lane lacks a
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# mapping here, which surfaces drift before CI does.
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_LANE_ADR: dict[str, tuple[str, str]] = {
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"reviewer_registry": (
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"ADR-0092",
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"Reviewer registry schema validates + bootstrap entry self-seals",
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),
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"miner_loop_closure": (
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"ADR-0095",
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"Miner-sourced proposals route through single reviewed teaching path",
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),
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"domain_contract_validation": (
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"ADR-0093",
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"All ratified packs satisfy the 9 ADR-0091 contract predicates",
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),
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"fabrication_control_summary": (
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"ADR-0096",
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"Phantom endpoints / cross-pack non-bridges / sibling collapses refuse",
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),
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"demo_composition": (
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"ADR-0098",
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"Demos compose from shipped modules; no parallel mechanism",
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),
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"public_demo": (
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"ADR-0099",
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"Public showcase runs deterministically under 30s; all claims supported",
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),
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}
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# Domain → ratifying ADR. The ledger row already carries provenance
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# inside each contract (e.g. "adr-0101:reviewed:2026-05-21"), but we
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# pin the canonical ADR id here so the table reads cleanly even if a
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# pack later carries a different provenance prefix.
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_DOMAIN_ADR: dict[str, str] = {
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"systems_software": "ADR-0101",
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"mathematics_logic": "ADR-0097",
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"physics": "ADR-0100",
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"hebrew_greek_textual_reasoning": "ADR-0102",
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"philosophy_theology": "ADR-0085",
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}
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@dataclass(frozen=True, slots=True)
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class DomainRow:
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domain: str
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status: str
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adr: str
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pack_count: int
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open_gaps_count: int
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@dataclass(frozen=True, slots=True)
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class LaneRow:
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lane_id: str
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adr: str
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purpose: str
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report_path: str
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pinned_sha: str
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def _collect_domain_rows() -> list[DomainRow]:
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report = ledger_report()
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rows: list[DomainRow] = []
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for entry in report["domains"]:
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domain = entry["domain"]
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if domain not in _DOMAIN_ADR:
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raise RuntimeError(
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f"domain {domain!r} missing from _DOMAIN_ADR mapping in "
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f"scripts/generate_claims.py — add its ratifying ADR id."
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)
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rows.append(
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DomainRow(
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domain=domain,
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status=entry["status"],
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adr=_DOMAIN_ADR[domain],
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pack_count=len(entry["packs"]),
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open_gaps_count=len(entry["open_gaps"]),
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)
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)
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# Deterministic ordering: by ADR id (lexicographic), then domain.
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return sorted(rows, key=lambda r: (r.adr, r.domain))
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def _collect_lane_rows() -> list[LaneRow]:
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rows: list[LaneRow] = []
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for spec in LANE_SPECS:
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if spec.lane_id not in _LANE_ADR:
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raise RuntimeError(
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f"lane {spec.lane_id!r} missing from _LANE_ADR mapping in "
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f"scripts/generate_claims.py — add its ADR id and purpose."
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)
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adr, purpose = _LANE_ADR[spec.lane_id]
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pinned = PINNED_SHAS.get(spec.lane_id)
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if not pinned:
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raise RuntimeError(
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f"lane {spec.lane_id!r} has no entry in PINNED_SHAS — "
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f"run scripts/verify_lane_shas.py --update first."
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)
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rows.append(
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LaneRow(
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lane_id=spec.lane_id,
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adr=adr,
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purpose=purpose,
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report_path=spec.report_relative,
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pinned_sha=pinned,
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)
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)
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return sorted(rows, key=lambda r: r.adr)
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def _render(
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*, domain_rows: list[DomainRow], lane_rows: list[LaneRow]
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) -> str:
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"""Render CLAIMS.md as a deterministic markdown string.
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Two tables. No timestamps, no git revs, no wall-clock — anything
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volatile would break the "regenerate and compare bytes" test.
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"""
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lines: list[str] = [
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"# CLAIMS",
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"",
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"<!--",
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"AUTO-GENERATED by scripts/generate_claims.py.",
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"Do not hand-edit. Run `python3 scripts/generate_claims.py` to",
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"regenerate after any change to the capability ledger or pinned",
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"lane SHAs (scripts/verify_lane_shas.py).",
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"-->",
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"",
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"Every row below is mechanically derived from in-tree state and",
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"verified by CI. Tier 1 rows come from `core.capability.ledger_report`;",
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"Tier 2 rows come from `scripts/verify_lane_shas.py`'s pinned SHAs.",
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"",
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"## Tier 1 — Ratified domains",
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"",
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"Each row asserts: the domain's packs pass all nine ADR-0091 contract",
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"predicates, declared operator chains meet the ≥8 / ≥3-intent floor,",
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"the reviewer registry resolves the primary reviewer, and the ledger",
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"status predicate evaluates to `reasoning-capable` with no open gaps.",
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"",
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"| Domain | Status | ADR | Packs | Open gaps |",
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"| --- | --- | --- | --- | --- |",
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]
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for row in domain_rows:
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lines.append(
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f"| `{row.domain}` | {row.status} | {row.adr} | {row.pack_count} | "
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f"{row.open_gaps_count} |"
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)
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lines.extend(
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[
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"",
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"## Tier 2 — Pinned lane reports",
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"",
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"Each row asserts: running the lane's runner produces a JSON",
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"report whose SHA-256 matches the pinned value below. Mismatch",
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"is a CI failure (`.github/workflows/lane-shas.yml`).",
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"",
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"| ADR | Lane | Purpose | Report path | Pinned SHA-256 |",
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"| --- | --- | --- | --- | --- |",
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]
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)
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for row in lane_rows:
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lines.append(
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f"| {row.adr} | `{row.lane_id}` | {row.purpose} | "
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f"`{row.report_path}` | `{row.pinned_sha}` |"
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)
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lines.extend(
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[
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"",
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"## Verification",
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"",
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"```bash",
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"python3 scripts/verify_lane_shas.py # verify all Tier 2 SHAs",
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"core test --suite full -q # exercises Tier 1 invariants",
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"```",
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"",
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]
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)
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return "\n".join(lines)
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def render_claims() -> bytes:
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domain_rows = _collect_domain_rows()
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lane_rows = _collect_lane_rows()
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text = _render(domain_rows=domain_rows, lane_rows=lane_rows)
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return text.encode("utf-8")
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def main(argv: list[str] | None = None) -> int:
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parser = argparse.ArgumentParser(description="generate CLAIMS.md")
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parser.add_argument(
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"--check",
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action="store_true",
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help="exit non-zero if CLAIMS.md differs from regenerated bytes",
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)
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parser.add_argument(
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"--output",
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type=Path,
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default=CLAIMS_PATH,
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help="write to this path (default: repo-root CLAIMS.md)",
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)
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args = parser.parse_args(argv)
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payload = render_claims()
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sha = hashlib.sha256(payload).hexdigest()
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if args.check:
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if not CLAIMS_PATH.exists():
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print(f"FAIL: {CLAIMS_PATH} does not exist; run without --check")
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return 1
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on_disk = CLAIMS_PATH.read_bytes()
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if on_disk != payload:
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print("FAIL: CLAIMS.md is stale — regenerate with:")
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print(" python3 scripts/generate_claims.py")
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print(f" on-disk sha256: {hashlib.sha256(on_disk).hexdigest()}")
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print(f" computed sha256: {sha}")
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return 1
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print(f"OK: CLAIMS.md is current (sha256: {sha})")
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return 0
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args.output.write_bytes(payload)
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print(f"wrote {args.output} (sha256: {sha})")
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return 0
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if __name__ == "__main__":
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sys.exit(main())
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