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| #!/usr/bin/env python3 | |
| """Export the screening-ceiling dataset from committed source artifacts. | |
| Two very different kinds of row come out of this, and keeping them straight is | |
| the whole point of the dataset: | |
| certified_regions.jsonl -- a UNIVERSAL claim. 256 sub-boxes of a 4-parameter | |
| family, each certified by outward-rounded interval branch-and-bound to | |
| contain NO layout whose screening factor exceeds k_bar. Exported from a | |
| committed proof witness; provenance recorded by digest. | |
| counterexamples.jsonl -- an EXISTENTIAL refutation. Concrete layouts where | |
| a second-order Born extractor predicts k > 1, which no passive | |
| arrangement of conductors can do. Generated here by running the | |
| open-source `maxwell-lint` reference models, so every row is reproducible | |
| from published code alone. | |
| Run: | |
| python3 export.py # writes data/ | |
| python3 export.py --check # verify existing data, write nothing | |
| """ | |
| from __future__ import annotations | |
| import argparse | |
| import hashlib | |
| import json | |
| import pathlib | |
| import sys | |
| HERE = pathlib.Path(__file__).resolve().parent | |
| DATA = HERE / "data" | |
| REPO = HERE.parents[2] | |
| WITNESS = REPO / "benchmarks" / "impossibility" / \ | |
| "family_two_tight_pairs_k10pct_parallel_2026_07.json" | |
| DIM_NAMES = ["d0_um", "pt_mult", "sep_mult", "jog_mult"] | |
| # Reproduced verbatim from the source witness so the published scope statement | |
| # cannot drift from the one the proof was run under. | |
| HONEST_SCOPE = ( | |
| "A complete interval theorem about the frozen MONOPOLE-CLOSURE model only. " | |
| "The closure-vs-BEM/PDE model gap remains additive and unresolved. This " | |
| "witness does not establish Maxwell, BEM, driven-S, fabrication, or " | |
| "measured-silicon truth." | |
| ) | |
| def sha256(path: pathlib.Path) -> str: | |
| return hashlib.sha256(path.read_bytes()).hexdigest() | |
| # --------------------------------------------------------------- certified regions | |
| def export_certified_regions(w: dict) -> list[dict]: | |
| """One row per certified root region of the branch-and-bound partition. | |
| The witness stores the 256-region partition with per-region certification | |
| rather than all 237,490 leaves. That is what gets published, and the | |
| distinction is stated rather than glossed: each row is a region the prover | |
| certified, together with how many leaves it took and the largest screening | |
| factor the interval enclosure admitted anywhere inside it. | |
| """ | |
| rows = [] | |
| for r in w["root_results"]: | |
| rows.append({ | |
| "region_id": r["root_id"], | |
| "bounds": {n: {"lo": lo, "hi": hi} | |
| for n, (lo, hi) in zip(DIM_NAMES, r["box"])}, | |
| "status": r["status"], | |
| "certified_leaves": r["certified_boxes"], | |
| "processed_leaves": r["processed_boxes"], | |
| "sup_certified_k_hi": r["sup_certified_k_hi"], | |
| "volume_fraction_of_region": r["certified_volume_frac_of_root"], | |
| "unresolved_leaves": r["unresolved_count"], | |
| }) | |
| return rows | |
| # ----------------------------------------------------------------- counterexamples | |
| def export_counterexamples() -> list[dict]: | |
| """Concrete layouts where a plausible cheap extractor predicts k > 1. | |
| Generated by running the published `maxwell-lint` reference models, so a | |
| reader can regenerate every row without this repository. Full coordinates | |
| are emitted -- a counterexample you cannot rebuild is an anecdote. | |
| """ | |
| try: | |
| import numpy as np | |
| from maxwell_lint.models import ( | |
| born_second_order, | |
| isolated_pair_matrix, | |
| random_layout, | |
| ) | |
| except ImportError as exc: # pragma: no cover - exercised by the CLI path | |
| raise SystemExit( | |
| f"counterexample export needs maxwell-lint installed: {exc}\n" | |
| " pip install ../../maxwell-lint") from exc | |
| rows = [] | |
| for n in (6, 8, 12): | |
| for pitch in (60.0, 80.0, 100.0): | |
| for seed in range(4): | |
| lay = random_layout(n, seed=seed, pitch_um=pitch) | |
| full = born_second_order(lay) | |
| iso = isolated_pair_matrix(lay) | |
| with np.errstate(divide="ignore", invalid="ignore"): | |
| k = np.where(iso > 0, full / iso, 0.0) | |
| np.fill_diagonal(k, 0.0) | |
| i, j = np.unravel_index(int(np.argmax(k)), k.shape) | |
| kmax = float(k[i, j]) | |
| if kmax <= 1.0: | |
| continue | |
| rows.append({ | |
| "case_id": f"born2_n{n}_p{int(pitch)}_s{seed}", | |
| "model": "born_second_order", | |
| "n_conductors": int(n), | |
| "nominal_pitch_um": pitch, | |
| "seed": int(seed), | |
| "worst_pair": [int(i), int(j)], | |
| "k_predicted": kmax, | |
| "violates_ceiling": True, | |
| "n_pairs_violating": int((k > 1.0).sum()), | |
| "n_pairs_total": int(n * (n - 1)), | |
| "xy_um": [[float(x * 1e6), float(y * 1e6)] for x, y in lay.xy], | |
| "radius_um": [float(r * 1e6) for r in lay.radius], | |
| "eps_r": float(lay.eps_r), | |
| }) | |
| return rows | |
| # ------------------------------------------------------------------------ theorem | |
| def export_theorem(w: dict) -> dict: | |
| return { | |
| "family": w["family"], | |
| "parameters": DIM_NAMES, | |
| # the top-level box is keyed by name; the per-region boxes are positional | |
| "family_box": {n: {"lo": w["box"][n][0], "hi": w["box"][n][1]} | |
| for n in DIM_NAMES}, | |
| "k_bar": w["k_bar"], | |
| "statement": ( | |
| "For every layout in the family box, the monopole-closure many-body " | |
| f"screening factor satisfies k <= {w['k_bar']:.12f}. A pairwise-" | |
| "superposition extractor assumes k == 1, so it over-predicts the worst " | |
| f"coupling by at least {100.0 / w['k_bar'] - 100.0:.4f}% on every " | |
| "member of the family." | |
| ), | |
| # Derived from the supremum the proof actually certified, not from the | |
| # target bound -- so it is very slightly STRONGER than 100/k_bar - 100 | |
| # (10.000002% vs 10.000000%). Recorded explicitly because a reader who | |
| # divides by k_bar and gets a different last digit deserves an answer. | |
| "forced_pairwise_overprediction_pct": w["forced_pairwise_overprediction_pct"], | |
| "forced_pairwise_overprediction_basis": "sup_certified_k_hi", | |
| "certified_leaves_total": w["certified_boxes"], | |
| "processed_leaves_total": w["processed_boxes"], | |
| "certified_volume_fraction": w["certified_volume_frac"], | |
| "failure_regions": w["n_failure_regions"], | |
| "open_boxes": w["open_boxes"], | |
| "sup_certified_k_hi": w["sup_certified_k_hi"], | |
| "enclosure_mode": w["enclosure_mode"], | |
| "status": w["status"], | |
| "honest_scope": HONEST_SCOPE, | |
| "geometry": { | |
| "description": ( | |
| "Four parallel circular conductors forming two tight pairs. " | |
| "pitch = 1.6 * d0 * pt_mult; separation = pitch * sep_mult; " | |
| "jog = jog_mult * separation. Conductor centres at (0,0), " | |
| "(pitch,0), (separation,jog), (separation+pitch,jog); every " | |
| "conductor has diameter d0." | |
| ), | |
| "units": "d0_um in micrometres; the multipliers are dimensionless", | |
| "self_term_radius_scale": 1.0, | |
| }, | |
| "provenance": { | |
| "source_witness": WITNESS.name, | |
| "source_sha256": sha256(WITNESS), | |
| "witness_content_sha256": w["content_sha256"], | |
| "schema": w["schema"], | |
| "prover_wall_seconds": w["wall_s"], | |
| "partition_regions": w["root_count"], | |
| }, | |
| } | |
| def write_jsonl(path: pathlib.Path, rows: list[dict]) -> None: | |
| with path.open("w", encoding="utf-8", newline="\n") as fh: | |
| for r in rows: | |
| fh.write(json.dumps(r, sort_keys=True) + "\n") | |
| def main() -> int: | |
| ap = argparse.ArgumentParser(description=__doc__) | |
| ap.add_argument("--check", action="store_true", | |
| help="verify the committed data instead of rewriting it") | |
| args = ap.parse_args() | |
| if not WITNESS.exists(): | |
| print(f"source witness not found: {WITNESS}", file=sys.stderr) | |
| print("(export requires the source repository; the published data files " | |
| "stand alone)", file=sys.stderr) | |
| return 2 | |
| w = json.loads(WITNESS.read_text(encoding="utf-8")) | |
| regions = export_certified_regions(w) | |
| theorem = export_theorem(w) | |
| counters = export_counterexamples() | |
| if args.check: | |
| old_r = [json.loads(x) for x in | |
| (DATA / "certified_regions.jsonl").read_text(encoding="utf-8").splitlines()] | |
| old_c = [json.loads(x) for x in | |
| (DATA / "counterexamples.jsonl").read_text(encoding="utf-8").splitlines()] | |
| old_t = json.loads((DATA / "theorem.json").read_text(encoding="utf-8")) | |
| ok = (old_r == regions and old_c == counters and old_t == theorem) | |
| print("data matches a fresh export" if ok else "DATA DRIFT") | |
| return 0 if ok else 1 | |
| DATA.mkdir(parents=True, exist_ok=True) | |
| write_jsonl(DATA / "certified_regions.jsonl", regions) | |
| write_jsonl(DATA / "counterexamples.jsonl", counters) | |
| (DATA / "theorem.json").write_text( | |
| json.dumps(theorem, indent=2, sort_keys=True) + "\n", | |
| encoding="utf-8", newline="\n") | |
| n_viol = sum(r["n_pairs_violating"] for r in counters) | |
| print(f"certified_regions.jsonl {len(regions)} regions " | |
| f"({theorem['certified_leaves_total']} leaves)") | |
| print(f"counterexamples.jsonl {len(counters)} layouts " | |
| f"({n_viol} violating pairs)") | |
| print(f"theorem.json k_bar = {theorem['k_bar']:.12f}") | |
| return 0 | |
| if __name__ == "__main__": | |
| raise SystemExit(main()) | |