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"I like to get into boxes."

Project description

Out of the Box

"I like to get into boxes."

A comprehensive toolkit for handling bounding boxes in various formats, including a GUI for ROI selection. For those who like to think out of the box.

Out of the box

Features

  • Bounding box utilities:

    • Support for VOC, COCO, and YOLO formats
    • Conversion between formats
    • Area calculation
    • Intersection over Union (IoU) calculation
    • Drawing bounding boxes on images
  • Roy app:

    • Load any image file supported by PIL
    • Draw and adjust bounding box interactively
    • Display coordinates in both pixel and normalized formats
    • Real-time updates of bounding box parameters

Installation

pip install out-of-the-box

Usage

Bounding box utilities

img_shape = (500, 500)
img = np.zeros((*img_shape, 3), dtype=np.uint8)

# Create bounding boxes in different formats
voc_box = VOCBox(100, 100, 300, 300)
coco_box = COCOBox(100, 100, 200, 200)
yolo_box = YOLOBox(0.4, 0.4, 0.2, 0.2)

bb_voc = BoundingBox(voc_box, img_shape)
bb_coco = BoundingBox(coco_box, img_shape)
bb_yolo = BoundingBox(yolo_box, img_shape)

# Print bounding boxes
print("VOC bounding box:", bb_voc)
print("COCO bounding box:", bb_coco)
print("YOLO bounding box:", bb_yolo)

# Convert between formats
print("\nFormat conversions:")
print("VOC to COCO:", bb_voc.to_coco())
print("COCO to YOLO:", bb_coco.to_yolo())
print("YOLO to VOC:", bb_yolo.to_voc())

# Normalized and pixel coordinates
print("\nNormalized and pixel coordinates:")
print("VOC (normalized):", bb_voc.to_voc(normalized=True))
print("COCO (pixel):", bb_yolo.to_coco(normalized=False))

# Area calculation
print("\nAreas:")
print("VOC box area:", bb_voc.area)
print("COCO box area:", bb_coco.area)
print("YOLO box area:", bb_yolo.area)

# Intersection and Union
intersection = BoundingBox.intersection(bb_voc, bb_coco)
union = BoundingBox.union(bb_voc, bb_coco)
print("\nIntersection and Union:")
print(f"Intersection between VOC and COCO: {intersection:.2f}")
print(f"Union between VOC and COCO: {union:.2f}")

# IoU calculation
iou = BoundingBox.iou(bb_voc, bb_coco)
print(f"IoU between VOC and COCO boxes: {iou:.2f}")

# Percentage inside
percentage = bb_coco.percentage_inside(bb_voc)
print(f"\nPercentage of COCO box inside VOC box: {percentage:.2%}")

# Center point
print("\nCenter points:")
print("VOC box center:", bb_voc.center)
print("COCO box center:", bb_coco.center)
print("YOLO box center:", bb_yolo.center)

# Contains point
test_point = (200, 200)
print(f"\nPoint {test_point} contained in:")
print("VOC box:", bb_voc.contains_point(test_point))
print("COCO box:", bb_coco.contains_point(test_point))
print("YOLO box:", bb_yolo.contains_point(test_point))

# Overlap percentage
overlap = bb_coco.overlap_percentage(bb_voc)
print(f"\nOverlap percentage of COCO box with VOC box: {overlap:.2%}")

# Draw the bounding boxes on the image
img = bb_voc.draw_on_image(img, color=COLOR_RED, thickness=2, label="VOC")
img = bb_coco.draw_on_image(img, color=COLOR_GREEN, thickness=2, label="COCO")
img = bb_yolo.draw_on_image(img, color=COLOR_BLUE, thickness=2, label="YOLO")

# Display the image
cv2.imshow("Image with bounding boxes", img)
cv2.waitKey(0)
cv2.destroyAllWindows()

Roy App

Example of selecting ROI in the app

To start the ROI selector GUI:

roy

In the GUI:

  1. Click "Open Image" to load an image.
  2. Draw a bounding box by clicking and dragging on the image.
  3. Adjust the box using the entry fields or by dragging.
  4. View both pixel and normalized coordinates.

License

This project is licensed under the MIT License. See the LICENSE file for details.

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