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geointel/scripts/audit_yolo_cross_tile_repetition.py
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Jens 736e773fb8
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audit YOLO geometry and overlapping validation rows
2026-08-09 19:36:15 +02:00

195 lines
6.9 KiB
Python

#!/usr/bin/env python3
"""Quantify exact interior-object repetition caused by overlapping YOLO tiles."""
from __future__ import annotations
import argparse
import json
import re
from collections import defaultdict
from datetime import UTC, datetime
from pathlib import Path
from typing import Any
try:
from scripts.audit_yolo_label_relationships import (
Box,
parse_label_file,
resolve_path,
sha256_file,
)
except ModuleNotFoundError: # Standalone operator-tool copy beside the auditor.
from audit_yolo_label_relationships import (
Box,
parse_label_file,
resolve_path,
sha256_file,
)
OFFSET_PATTERN = re.compile(r"_r(?P<row>\d+)_c(?P<column>\d+)$")
def tile_offsets(image_path: str) -> tuple[int, int]:
match = OFFSET_PATTERN.search(Path(image_path).stem)
if match is None:
raise ValueError(f"tile filename has no row/column offsets: {image_path}")
return int(match["row"]), int(match["column"])
def interior_global_key(
box: Box,
*,
row_offset: int,
column_offset: int,
tile_size: int,
edge_tolerance_pixels: float,
) -> tuple[float, float, float, float] | None:
left, top, right, bottom = box.coordinates
pixel_box = (
left * tile_size,
top * tile_size,
right * tile_size,
bottom * tile_size,
)
if (
pixel_box[0] <= edge_tolerance_pixels
or pixel_box[1] <= edge_tolerance_pixels
or tile_size - pixel_box[2] <= edge_tolerance_pixels
or tile_size - pixel_box[3] <= edge_tolerance_pixels
):
return None
return (
round(column_offset + pixel_box[0], 3),
round(row_offset + pixel_box[1], 3),
round(column_offset + pixel_box[2], 3),
round(row_offset + pixel_box[3], 3),
)
def main() -> int:
parser = argparse.ArgumentParser()
parser.add_argument("--summary-path", required=True, type=Path)
parser.add_argument("--output", required=True, type=Path)
parser.add_argument("--edge-tolerance-pixels", type=float, default=0.5)
args = parser.parse_args()
if args.output.exists():
parser.error(f"output already exists: {args.output}")
if args.edge_tolerance_pixels < 0:
parser.error("--edge-tolerance-pixels must be non-negative")
summary_path = args.summary_path.expanduser().resolve(strict=True)
summary = json.loads(summary_path.read_text(encoding="utf-8"))
tiles = summary.get("tiles")
tile_size = summary.get("tile_size")
if not isinstance(tiles, list):
raise ValueError("dataset summary must contain a tiles list")
if not isinstance(tile_size, int) or tile_size <= 0:
raise ValueError("dataset summary must contain a positive integer tile_size")
groups: dict[tuple[str, int, float, float, float, float], list[dict[str, Any]]] = (
defaultdict(list)
)
reviewed_label_count = 0
edge_label_count = 0
for tile in tiles:
if not isinstance(tile, dict) or not tile.get("kept", True):
continue
image_path = str(tile.get("image_path") or "")
row_offset, column_offset = tile_offsets(image_path)
label_path = resolve_path(str(tile.get("label_path") or ""), summary_path)
boxes = parse_label_file(label_path)
reviewed_label_count += len(boxes)
for index, box in enumerate(boxes):
global_key = interior_global_key(
box,
row_offset=row_offset,
column_offset=column_offset,
tile_size=tile_size,
edge_tolerance_pixels=args.edge_tolerance_pixels,
)
if global_key is None:
edge_label_count += 1
continue
key = (
str(tile.get("sample_slug") or "unknown"),
box.class_id,
*global_key,
)
groups[key].append(
{
"split": str(tile.get("split") or "unknown"),
"tile_index": int(tile.get("tile_index") or 0),
"label_index": index,
"image_path": image_path,
"label_path": str(label_path),
}
)
repeated_groups = [members for members in groups.values() if len(members) > 1]
split_leakage_groups = [
members
for members in repeated_groups
if len({member["split"] for member in members}) > 1
]
repetition_histogram: dict[str, int] = defaultdict(int)
for members in groups.values():
repetition_histogram[str(len(members))] += 1
sample_stats: dict[str, dict[str, int]] = defaultdict(
lambda: {
"unique_interior_objects": 0,
"interior_label_rows": 0,
"repeated_object_groups": 0,
"extra_repeated_rows": 0,
}
)
for key, members in groups.items():
sample = sample_stats[key[0]]
sample["unique_interior_objects"] += 1
sample["interior_label_rows"] += len(members)
if len(members) > 1:
sample["repeated_object_groups"] += 1
sample["extra_repeated_rows"] += len(members) - 1
interior_label_count = sum(len(members) for members in groups.values())
extra_repeated_rows = sum(len(members) - 1 for members in repeated_groups)
payload = {
"schema_version": 1,
"generated_at": datetime.now(UTC).isoformat(),
"status": "attention" if repeated_groups else "ok",
"claim_boundary": (
"Exact reconstructed repetition among interior boxes only; tile-edge "
"rows remain unlinked and repetition is not automatically an error."
),
"summary_path": str(summary_path),
"summary_sha256": sha256_file(summary_path),
"tile_size": tile_size,
"stride": summary.get("stride"),
"edge_tolerance_pixels": args.edge_tolerance_pixels,
"reviewed_label_count": reviewed_label_count,
"interior_label_count": interior_label_count,
"edge_label_count": edge_label_count,
"unique_interior_object_count": len(groups),
"repeated_object_group_count": len(repeated_groups),
"extra_repeated_label_row_count": extra_repeated_rows,
"max_repetition": max((len(members) for members in groups.values()), default=0),
"repetition_histogram": dict(
sorted(repetition_histogram.items(), key=lambda item: int(item[0]))
),
"cross_split_repetition_group_count": len(split_leakage_groups),
"sample_stats": [
{"sample_slug": slug, **stats}
for slug, stats in sorted(sample_stats.items())
],
}
args.output.parent.mkdir(parents=True, exist_ok=True)
args.output.write_text(
json.dumps(payload, indent=2, sort_keys=True) + "\n", encoding="utf-8"
)
print(json.dumps(payload, indent=2))
return 0
if __name__ == "__main__":
raise SystemExit(main())