qcode / scripts /verify_historical_exact_fom11.py
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Add historical exact FOM 100/9 reference
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#!/usr/bin/env python3
from __future__ import annotations
import gzip
import hashlib
import json
import sys
from pathlib import Path
def sha256(path: Path) -> str:
digest = hashlib.sha256()
with path.open("rb") as handle:
for block in iter(lambda: handle.read(1 << 20), b""):
digest.update(block)
return digest.hexdigest()
def canonical_sha256(value: dict, omitted: str) -> str:
payload = {key: item for key, item in value.items() if key != omitted}
encoded = json.dumps(payload, sort_keys=True, separators=(",", ":"))
return hashlib.sha256(encoded.encode()).hexdigest()
def load_jsonl_one(path: Path) -> dict:
lines = [line for line in path.read_text().splitlines() if line.strip()]
assert len(lines) == 1, (path, len(lines))
return json.loads(lines[0])
def load_mtx(path: Path) -> list[list[int]]:
with gzip.open(path, "rt", encoding="ascii") as handle:
assert handle.readline().strip() == (
"%%MatrixMarket matrix coordinate integer general"
)
line = handle.readline()
while line.startswith("%"):
line = handle.readline()
rows, cols, nnz = map(int, line.split())
matrix = [[0] * cols for _ in range(rows)]
seen = 0
for line in handle:
if not line.strip():
continue
row, col, value = map(int, line.split())
assert value == 1
matrix[row - 1][col - 1] ^= 1
seen += 1
assert seen == nnz
return matrix
def gf2_rank(matrix: list[list[int]]) -> int:
packed = [
sum((value & 1) << col for col, value in enumerate(row))
for row in matrix
]
rank = 0
while packed:
pivot = max(packed)
if not pivot:
break
bit = 1 << (pivot.bit_length() - 1)
rank += 1
packed = [
value ^ pivot if value & bit else value
for value in packed
if value != pivot
]
return rank
def content_sha256(matrix: list[list[int]]) -> str:
shape = [len(matrix), len(matrix[0]) if matrix else 0]
header = json.dumps(
{"dtype": "uint8-gf2", "shape": shape},
sort_keys=True,
separators=(",", ":"),
)
raw = bytes(value & 1 for row in matrix for value in row)
return hashlib.sha256(header.encode() + b"\n" + raw).hexdigest()
def polynomial_matrix(
ell: int,
m: int,
terms: list[list[int]],
) -> list[list[int]]:
size = ell * m
matrix = [[0] * size for _ in range(size)]
for row in range(size):
x, y = divmod(row, m)
for dx, dy in terms:
col = ((x + dx) % ell) * m + ((y + dy) % m)
matrix[row][col] ^= 1
return matrix
def transpose(matrix: list[list[int]]) -> list[list[int]]:
return [list(column) for column in zip(*matrix)]
def hstack(
left: list[list[int]],
right: list[list[int]],
) -> list[list[int]]:
return [a + b for a, b in zip(left, right)]
def parity(left: list[int], right: list[int]) -> int:
return sum(a & b for a, b in zip(left, right)) & 1
def main(root: Path) -> None:
root = root.resolve()
data_path = root / "data/historical_exact_fom11.jsonl"
evidence_path = root / "evidence/historical_exact_fom11.jsonl"
manifest_path = root / "manifests/historical_exact_fom11.json"
row = load_jsonl_one(data_path)
evidence = load_jsonl_one(evidence_path)
manifest = json.loads(manifest_path.read_text())
assert canonical_sha256(row, "record_sha256") == row["record_sha256"]
assert canonical_sha256(evidence, "evidence_sha256") == evidence["evidence_sha256"]
assert canonical_sha256(manifest, "manifest_sha256") == manifest["manifest_sha256"]
for item in manifest["files"]:
path = root / item["path"]
assert path.stat().st_size == item["bytes"]
assert sha256(path) == item["sha256"]
assert row["canonical_digest"] == evidence["canonical_digest"]
construction = row["construction"]
construction_payload = {
key: construction[key]
for key in ("ell", "m", "A_terms", "B_terms")
}
encoded = json.dumps(
construction_payload,
sort_keys=True,
separators=(",", ":"),
)
assert hashlib.sha256(encoded.encode()).hexdigest() == row["identity"]["construction_sha256"]
ell, m = construction["ell"], construction["m"]
a_matrix = polynomial_matrix(ell, m, construction["A_terms"])
b_matrix = polynomial_matrix(ell, m, construction["B_terms"])
expected_hx = hstack(a_matrix, b_matrix)
expected_hz = hstack(transpose(b_matrix), transpose(a_matrix))
matrices = row["matrices"]
hx_path = root / matrices["hx_path"]
hz_path = root / matrices["hz_path"]
hx, hz = load_mtx(hx_path), load_mtx(hz_path)
assert hx == expected_hx and hz == expected_hz
assert [len(hx), len(hx[0])] == matrices["hx_shape"] == [144, 288]
assert [len(hz), len(hz[0])] == matrices["hz_shape"] == [144, 288]
assert sha256(hx_path) == matrices["hx_file_sha256"]
assert sha256(hz_path) == matrices["hz_file_sha256"]
assert content_sha256(hx) == matrices["hx_content_sha256"]
assert content_sha256(hz) == matrices["hz_content_sha256"]
rank_x, rank_z = gf2_rank(hx), gf2_rank(hz)
assert rank_x == row["matrix_checks"]["rank_x"] == 119
assert rank_z == row["matrix_checks"]["rank_z"] == 119
n = row["parameters"]["n"]
k = row["parameters"]["k"]
distance = row["distance"]["exact"]
max_check_weight = max(max(map(sum, hx)), max(map(sum, hz)))
max_sector_qubit_degree = max(
max(sum(check[j] for check in hx) for j in range(n)),
max(sum(check[j] for check in hz) for j in range(n)),
)
max_qubit_degree = max(
sum(check[j] for check in hx) + sum(check[j] for check in hz)
for j in range(n)
)
assert row["matrix_checks"]["max_check_weight"] == max_check_weight == 8
assert row["matrix_checks"]["max_sector_qubit_degree"] == max_sector_qubit_degree == 4
assert row["matrix_checks"]["max_qubit_degree"] == max_qubit_degree == 8
assert n - rank_x - rank_z == k == 50
assert all(parity(x_row, z_row) == 0 for x_row in hx for z_row in hz)
assert row["fom"]["exact"]["numerator"] == 100
assert row["fom"]["exact"]["denominator"] == 9
assert k * distance * distance * 9 == 100 * n
assert k * distance * distance < 12 * n
assert row["authority"]["modern_replayable_distance_certificate"] is False
assert evidence["legacy_milp_summary"]["logicals_optimal"] == 100
assert evidence["legacy_milp_summary"]["total_logicals"] == 100
assert evidence["source"]["records"][1]["orientation"] == "equivalent_A_B_swapped_form"
print("PASS: historical [[288,50,8]] identity, matrices, hashes, and FOM verified")
if __name__ == "__main__":
main(Path(sys.argv[1]) if len(sys.argv) > 1 else Path("."))