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https://github.com/python-pillow/Pillow.git
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d50445ff30
Similar to the recent adoption of Black. isort is a Python utility to sort imports alphabetically and automatically separate into sections. By using isort, contributors can quickly and automatically conform to the projects style without thinking. Just let the tool do it. Uses the configuration recommended by the Black to avoid conflicts of style. Rewrite TestImageQt.test_deprecated to no rely on import order.
155 lines
4.3 KiB
Python
155 lines
4.3 KiB
Python
import colorsys
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import itertools
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from PIL import Image
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from PIL._util import py3
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from .helper import PillowTestCase, hopper
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class TestFormatHSV(PillowTestCase):
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def int_to_float(self, i):
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return float(i) / 255.0
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def str_to_float(self, i):
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return float(ord(i)) / 255.0
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def tuple_to_ints(self, tp):
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x, y, z = tp
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return int(x * 255.0), int(y * 255.0), int(z * 255.0)
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def test_sanity(self):
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Image.new("HSV", (100, 100))
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def wedge(self):
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w = Image._wedge()
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w90 = w.rotate(90)
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(px, h) = w.size
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r = Image.new("L", (px * 3, h))
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g = r.copy()
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b = r.copy()
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r.paste(w, (0, 0))
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r.paste(w90, (px, 0))
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g.paste(w90, (0, 0))
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g.paste(w, (2 * px, 0))
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b.paste(w, (px, 0))
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b.paste(w90, (2 * px, 0))
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img = Image.merge("RGB", (r, g, b))
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return img
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def to_xxx_colorsys(self, im, func, mode):
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# convert the hard way using the library colorsys routines.
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(r, g, b) = im.split()
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if py3:
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conv_func = self.int_to_float
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else:
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conv_func = self.str_to_float
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if hasattr(itertools, "izip"):
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iter_helper = itertools.izip
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else:
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iter_helper = itertools.zip_longest
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converted = [
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self.tuple_to_ints(func(conv_func(_r), conv_func(_g), conv_func(_b)))
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for (_r, _g, _b) in iter_helper(r.tobytes(), g.tobytes(), b.tobytes())
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]
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if py3:
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new_bytes = b"".join(
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bytes(chr(h) + chr(s) + chr(v), "latin-1") for (h, s, v) in converted
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)
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else:
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new_bytes = b"".join(chr(h) + chr(s) + chr(v) for (h, s, v) in converted)
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hsv = Image.frombytes(mode, r.size, new_bytes)
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return hsv
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def to_hsv_colorsys(self, im):
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return self.to_xxx_colorsys(im, colorsys.rgb_to_hsv, "HSV")
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def to_rgb_colorsys(self, im):
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return self.to_xxx_colorsys(im, colorsys.hsv_to_rgb, "RGB")
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def test_wedge(self):
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src = self.wedge().resize((3 * 32, 32), Image.BILINEAR)
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im = src.convert("HSV")
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comparable = self.to_hsv_colorsys(src)
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self.assert_image_similar(
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im.getchannel(0), comparable.getchannel(0), 1, "Hue conversion is wrong"
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)
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self.assert_image_similar(
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im.getchannel(1),
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comparable.getchannel(1),
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1,
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"Saturation conversion is wrong",
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)
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self.assert_image_similar(
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im.getchannel(2), comparable.getchannel(2), 1, "Value conversion is wrong"
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)
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comparable = src
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im = im.convert("RGB")
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self.assert_image_similar(
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im.getchannel(0), comparable.getchannel(0), 3, "R conversion is wrong"
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)
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self.assert_image_similar(
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im.getchannel(1), comparable.getchannel(1), 3, "G conversion is wrong"
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)
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self.assert_image_similar(
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im.getchannel(2), comparable.getchannel(2), 3, "B conversion is wrong"
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)
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def test_convert(self):
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im = hopper("RGB").convert("HSV")
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comparable = self.to_hsv_colorsys(hopper("RGB"))
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self.assert_image_similar(
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im.getchannel(0), comparable.getchannel(0), 1, "Hue conversion is wrong"
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)
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self.assert_image_similar(
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im.getchannel(1),
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comparable.getchannel(1),
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1,
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"Saturation conversion is wrong",
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)
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self.assert_image_similar(
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im.getchannel(2), comparable.getchannel(2), 1, "Value conversion is wrong"
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)
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def test_hsv_to_rgb(self):
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comparable = self.to_hsv_colorsys(hopper("RGB"))
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converted = comparable.convert("RGB")
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comparable = self.to_rgb_colorsys(comparable)
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self.assert_image_similar(
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converted.getchannel(0),
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comparable.getchannel(0),
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3,
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"R conversion is wrong",
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)
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self.assert_image_similar(
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converted.getchannel(1),
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comparable.getchannel(1),
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3,
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"G conversion is wrong",
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)
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self.assert_image_similar(
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converted.getchannel(2),
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comparable.getchannel(2),
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3,
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"B conversion is wrong",
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)
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