"""Practice runner for the deduction-serve arena (Phase 3, ADR-0256). Folds the ADR-0199 ``run_practice`` engine over the synthetic shape-band corpus (``gold.py``) and reads the per-band ``ClassTally`` through the reliability gate. Two outputs: - ``run()`` — the falsifiable discrimination report: which shape-bands earned the SERVE license and at what committed volume/reliability. - ``seal_ledger()`` — regenerates the committed, SHA-sealed ledger artifact the serving reader (``chat/deduction_serve_license.py``) trusts. The engine READS that artifact; only this sealed-practice runner WRITES it. Determinism: the corpus is synthetic + indexed (no clock/RNG), ``run_practice`` is a pure fold, so the sealed ledger is byte-identical across runs — safe to commit and SHA-verify on load. """ from __future__ import annotations import argparse from pathlib import Path from typing import Any from core.learning_arena.engine import run_practice from core.ratified_ledger import seal_artifact, tally_dict, write_sealed_ledger from core.reliability_gate import Action, Ceilings, ClassTally, license_for from evals.deduction_serve.practice.gold import ( ConstructionGoldTether, DeductionSolver, all_gold_problems, assert_corpus_sound, ) #: The committed sealed ledger lives next to its serving READER (chat/), mirroring #: the estimation ledger's topology (producer in evals/, artifact by the reader). _SEALED_LEDGER_PATH = ( Path(__file__).resolve().parents[3] / "chat" / "data" / "deduction_serve_ledger.json" ) def build_ledger() -> dict[str, ClassTally]: """Run sealed practice over the synthetic corpus → per-band ledger.""" report = run_practice(all_gold_problems(), DeductionSolver(), ConstructionGoldTether()) return dict(report.ledger) def _tally_dict(tally: ClassTally) -> dict[str, Any]: return tally_dict(tally) def run(ceilings: Ceilings | None = None) -> dict[str, Any]: """Build the ledger and report the SERVE license verdict per shape-band.""" ceilings = ceilings if ceilings is not None else Ceilings.default() ledger = build_ledger() classes: dict[str, Any] = {} for cls, tally in sorted(ledger.items()): serve = license_for(tally, Action.SERVE, ceilings) classes[cls] = { "correct": tally.correct, "wrong": tally.wrong, "refused": tally.refused, "reliability": tally.reliability, "serve_licensed": serve.licensed, "serve_ratio": serve.ratio, } all_serve = bool(classes) and all(c["serve_licensed"] for c in classes.values()) wrong_is_zero = all(c["wrong"] == 0 for c in classes.values()) return { "lane": "deduction-serve-practice", "classes": classes, "all_bands_serve_licensed": all_serve, "wrong_is_zero": wrong_is_zero, } def build_sealed_artifact() -> dict[str, Any]: """The committed sealed-ledger dict (self-verifying ``content_sha256``). Formatting and hashing come from the shared bridge (ADR-0263) — byte -identical to what this module wrote before the extraction, which is how the refactor is proven safe: re-sealing must not move the artifact. """ return seal_artifact( build_ledger(), schema="deduction_serve_ledger_v1", note=( "Sealed-practice committed ledger for deduction serving (ADR-0256). " "Engine reads, never writes. Ceilings stay at safe defaults " "(theta_SERVE=0.99). A band earns SERVE by demonstrated pipeline " "reliability (reader+projector+engine) at volume >= 657 committed." ), provenance="evals.deduction_serve.practice.runner.seal_ledger", ) def seal_ledger(path: Path = _SEALED_LEDGER_PATH) -> dict[str, Any]: """Regenerate + write the committed sealed ledger. Verifies corpus soundness against the independent oracle first (a mis-stated gold can never seal).""" assert_corpus_sound() return write_sealed_ledger(path, build_sealed_artifact()) def main(argv: list[str] | None = None) -> int: parser = argparse.ArgumentParser(description=__doc__) parser.add_argument( "--seal", action="store_true", help="regenerate + write the committed sealed ledger (chat/data/deduction_serve_ledger.json)", ) args = parser.parse_args(argv) if args.seal: artifact = seal_ledger() print(f"sealed {len(artifact['classes'])} bands -> {_SEALED_LEDGER_PATH}") return 0 report = run() for cls, c in report["classes"].items(): print(f" {cls:20s} correct={c['correct']:4d} wrong={c['wrong']} " f"reliability={c['reliability']:.5f} SERVE={c['serve_licensed']}") print(f"all_bands_serve_licensed={report['all_bands_serve_licensed']} " f"wrong_is_zero={report['wrong_is_zero']}") return 0 if (report["all_bands_serve_licensed"] and report["wrong_is_zero"]) else 1 if __name__ == "__main__": raise SystemExit(main())