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|
| | from __future__ import annotations
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| |
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| | from . import Image
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| |
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| |
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| | def constant(image: Image.Image, value: int) -> Image.Image:
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| | """Fill a channel with a given gray level.
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| |
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| | :rtype: :py:class:`~PIL.Image.Image`
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| | """
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| |
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| | return Image.new("L", image.size, value)
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| |
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| |
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| | def duplicate(image: Image.Image) -> Image.Image:
|
| | """Copy a channel. Alias for :py:meth:`PIL.Image.Image.copy`.
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
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| |
|
| | return image.copy()
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| |
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| |
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| | def invert(image: Image.Image) -> Image.Image:
|
| | """
|
| | Invert an image (channel). ::
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| |
|
| | out = MAX - image
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
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| |
|
| | image.load()
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| | return image._new(image.im.chop_invert())
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| |
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| |
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| | def lighter(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Compares the two images, pixel by pixel, and returns a new image containing
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| | the lighter values. ::
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| |
|
| | out = max(image1, image2)
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
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| |
|
| | image1.load()
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| | image2.load()
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| | return image1._new(image1.im.chop_lighter(image2.im))
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| |
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| |
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| | def darker(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Compares the two images, pixel by pixel, and returns a new image containing
|
| | the darker values. ::
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| |
|
| | out = min(image1, image2)
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
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| |
|
| | image1.load()
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| | image2.load()
|
| | return image1._new(image1.im.chop_darker(image2.im))
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| |
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| |
|
| | def difference(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Returns the absolute value of the pixel-by-pixel difference between the two
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| | images. ::
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| |
|
| | out = abs(image1 - image2)
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
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| |
|
| | image1.load()
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| | image2.load()
|
| | return image1._new(image1.im.chop_difference(image2.im))
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| |
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| |
|
| | def multiply(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Superimposes two images on top of each other.
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| |
|
| | If you multiply an image with a solid black image, the result is black. If
|
| | you multiply with a solid white image, the image is unaffected. ::
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| |
|
| | out = image1 * image2 / MAX
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
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| |
|
| | image1.load()
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| | image2.load()
|
| | return image1._new(image1.im.chop_multiply(image2.im))
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| |
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| |
|
| | def screen(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Superimposes two inverted images on top of each other. ::
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| |
|
| | out = MAX - ((MAX - image1) * (MAX - image2) / MAX)
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_screen(image2.im))
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| |
|
| |
|
| | def soft_light(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Superimposes two images on top of each other using the Soft Light algorithm
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_soft_light(image2.im))
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| |
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| |
|
| | def hard_light(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Superimposes two images on top of each other using the Hard Light algorithm
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_hard_light(image2.im))
|
| |
|
| |
|
| | def overlay(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """
|
| | Superimposes two images on top of each other using the Overlay algorithm
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_overlay(image2.im))
|
| |
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| |
|
| | def add(
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| | image1: Image.Image, image2: Image.Image, scale: float = 1.0, offset: float = 0
|
| | ) -> Image.Image:
|
| | """
|
| | Adds two images, dividing the result by scale and adding the
|
| | offset. If omitted, scale defaults to 1.0, and offset to 0.0. ::
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| |
|
| | out = ((image1 + image2) / scale + offset)
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_add(image2.im, scale, offset))
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| |
|
| |
|
| | def subtract(
|
| | image1: Image.Image, image2: Image.Image, scale: float = 1.0, offset: float = 0
|
| | ) -> Image.Image:
|
| | """
|
| | Subtracts two images, dividing the result by scale and adding the offset.
|
| | If omitted, scale defaults to 1.0, and offset to 0.0. ::
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| |
|
| | out = ((image1 - image2) / scale + offset)
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| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_subtract(image2.im, scale, offset))
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| |
|
| |
|
| | def add_modulo(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """Add two images, without clipping the result. ::
|
| |
|
| | out = ((image1 + image2) % MAX)
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_add_modulo(image2.im))
|
| |
|
| |
|
| | def subtract_modulo(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """Subtract two images, without clipping the result. ::
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| |
|
| | out = ((image1 - image2) % MAX)
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_subtract_modulo(image2.im))
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| |
|
| |
|
| | def logical_and(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """Logical AND between two images.
|
| |
|
| | Both of the images must have mode "1". If you would like to perform a
|
| | logical AND on an image with a mode other than "1", try
|
| | :py:meth:`~PIL.ImageChops.multiply` instead, using a black-and-white mask
|
| | as the second image. ::
|
| |
|
| | out = ((image1 and image2) % MAX)
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_and(image2.im))
|
| |
|
| |
|
| | def logical_or(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """Logical OR between two images.
|
| |
|
| | Both of the images must have mode "1". ::
|
| |
|
| | out = ((image1 or image2) % MAX)
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_or(image2.im))
|
| |
|
| |
|
| | def logical_xor(image1: Image.Image, image2: Image.Image) -> Image.Image:
|
| | """Logical XOR between two images.
|
| |
|
| | Both of the images must have mode "1". ::
|
| |
|
| | out = ((bool(image1) != bool(image2)) % MAX)
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | image1.load()
|
| | image2.load()
|
| | return image1._new(image1.im.chop_xor(image2.im))
|
| |
|
| |
|
| | def blend(image1: Image.Image, image2: Image.Image, alpha: float) -> Image.Image:
|
| | """Blend images using constant transparency weight. Alias for
|
| | :py:func:`PIL.Image.blend`.
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | return Image.blend(image1, image2, alpha)
|
| |
|
| |
|
| | def composite(
|
| | image1: Image.Image, image2: Image.Image, mask: Image.Image
|
| | ) -> Image.Image:
|
| | """Create composite using transparency mask. Alias for
|
| | :py:func:`PIL.Image.composite`.
|
| |
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | return Image.composite(image1, image2, mask)
|
| |
|
| |
|
| | def offset(image: Image.Image, xoffset: int, yoffset: int | None = None) -> Image.Image:
|
| | """Returns a copy of the image where data has been offset by the given
|
| | distances. Data wraps around the edges. If ``yoffset`` is omitted, it
|
| | is assumed to be equal to ``xoffset``.
|
| |
|
| | :param image: Input image.
|
| | :param xoffset: The horizontal distance.
|
| | :param yoffset: The vertical distance. If omitted, both
|
| | distances are set to the same value.
|
| | :rtype: :py:class:`~PIL.Image.Image`
|
| | """
|
| |
|
| | if yoffset is None:
|
| | yoffset = xoffset
|
| | image.load()
|
| | return image._new(image.im.offset(xoffset, yoffset))
|
| |
|