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import argparse |
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from PIL import Image |
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class Steganography: |
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BLACK_PIXEL = (0, 0, 0) |
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def _int_to_bin(self, rgb): |
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"""Convert an integer tuple to a binary (string) tuple. |
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:param rgb: An integer tuple like (220, 110, 96) |
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:return: A string tuple like ("00101010", "11101011", "00010110") |
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""" |
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r, g, b = rgb |
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return f'{r:08b}', f'{g:08b}', f'{b:08b}' |
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def _bin_to_int(self, rgb): |
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"""Convert a binary (string) tuple to an integer tuple. |
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:param rgb: A string tuple like ("00101010", "11101011", "00010110") |
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:return: Return an int tuple like (220, 110, 96) |
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""" |
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r, g, b = rgb |
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return int(r, 2), int(g, 2), int(b, 2) |
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def _merge_rgb(self, rgb1, rgb2, digit): |
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"""Merge two RGB tuples. |
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:param rgb1: An integer tuple like (220, 110, 96) |
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:param rgb2: An integer tuple like (240, 95, 105) |
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:return: An integer tuple with the two RGB values merged. |
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""" |
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r1, g1, b1 = self._int_to_bin(rgb1) |
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r2, g2, b2 = self._int_to_bin(rgb2) |
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rgb = r1[:digit] + r2[:8-digit], g1[:digit] + g2[:8-digit], b1[:digit] + b2[:8-digit] |
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return self._bin_to_int(rgb) |
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def _unmerge_rgb(self, rgb, digit): |
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"""Unmerge RGB. |
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:param rgb: An integer tuple like (220, 110, 96) |
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:return: An integer tuple with the two RGB values merged. |
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""" |
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r, g, b = self._int_to_bin(rgb) |
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new_rgb = r[digit:] + '0'*digit, g[digit:] + '0'*digit, b[digit:] + '0'*digit |
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return self._bin_to_int(new_rgb) |
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def merge(self, image1, image2, digit=4): |
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"""Merge image2 into image1. |
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:param image1: First image |
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:param image2: Second image |
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:return: A new merged image. |
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""" |
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if image2.size[0] > image1.size[0] or image2.size[1] > image1.size[1]: |
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raise ValueError('Image 2 should be smaller than Image 1!') |
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map1 = image1.load() |
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map2 = image2.load() |
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new_image = Image.new(image1.mode, image1.size) |
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new_map = new_image.load() |
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for i in range(image1.size[0]): |
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for j in range(image1.size[1]): |
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is_valid = lambda: i < image2.size[0] and j < image2.size[1] |
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rgb1 = map1[i ,j] |
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rgb2 = map2[i, j] if is_valid() else self.BLACK_PIXEL |
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new_map[i, j] = self._merge_rgb(rgb1, rgb2, digit) |
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return new_image |
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def unmerge(self, image, digit=4, binarization=True): |
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"""Unmerge an image. |
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:param image: The input image. |
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:return: The unmerged/extracted image. |
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""" |
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pixel_map = image.load() |
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new_image = Image.new(image.mode, image.size) |
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new_map = new_image.load() |
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for i in range(image.size[0]): |
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for j in range(image.size[1]): |
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r, g, b = self._unmerge_rgb(pixel_map[i, j], digit) |
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r = 255 if r >= 128 else 0 |
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g = 255 if g >= 128 else 0 |
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b = 255 if b >= 128 else 0 |
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new_map[i, j] = r, g, b |
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return new_image |
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def main(): |
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parser = argparse.ArgumentParser(description='Steganography') |
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subparser = parser.add_subparsers(dest='command') |
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merge = subparser.add_parser('merge') |
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merge.add_argument('--image1', required=True, help='Image1 path') |
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merge.add_argument('--image2', required=True, help='Image2 path') |
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merge.add_argument('--output', required=True, help='Output path') |
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unmerge = subparser.add_parser('unmerge') |
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unmerge.add_argument('--image', required=True, help='Image path') |
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unmerge.add_argument('--output', required=True, help='Output path') |
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args = parser.parse_args() |
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if args.command == 'merge': |
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image1 = Image.open(args.image1) |
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image2 = Image.open(args.image2) |
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Steganography().merge(image1, image2).save(args.output) |
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elif args.command == 'unmerge': |
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image = Image.open(args.image) |
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Steganography().unmerge(image).save(args.output) |
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if __name__ == '__main__': |
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main() |
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