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			140 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			140 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
from __future__ import print_function
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from helper import unittest, PillowTestCase, hopper
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from PIL import Image
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try:
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    import site
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    import numpy
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except ImportError:
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    # Skip via setUp()
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    pass
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class TestNumpy(PillowTestCase):
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    def setUp(self):
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        try:
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            import site
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            import numpy
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        except ImportError:
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            self.skipTest("ImportError")
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    def test_numpy_to_image(self):
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        def to_image(dtype, bands=1, bool=0):
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            if bands == 1:
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                if bool:
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                    data = [0, 1] * 50
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                else:
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                    data = list(range(100))
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                a = numpy.array(data, dtype=dtype)
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                a.shape = 10, 10
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                i = Image.fromarray(a)
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                if list(i.getdata()) != data:
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                    print("data mismatch for", dtype)
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            else:
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                data = list(range(100))
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                a = numpy.array([[x]*bands for x in data], dtype=dtype)
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                a.shape = 10, 10, bands
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                i = Image.fromarray(a)
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                if list(i.split()[0].getdata()) != list(range(100)):
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                    print("data mismatch for", dtype)
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            # print dtype, list(i.getdata())
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            return i
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        # self.assert_image(to_image(numpy.bool, bool=1), "1", (10, 10))
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        # self.assert_image(to_image(numpy.bool8, bool=1), "1", (10, 10))
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        self.assertRaises(TypeError, lambda: to_image(numpy.uint))
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        self.assert_image(to_image(numpy.uint8), "L", (10, 10))
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        self.assertRaises(TypeError, lambda: to_image(numpy.uint16))
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        self.assertRaises(TypeError, lambda: to_image(numpy.uint32))
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        self.assertRaises(TypeError, lambda: to_image(numpy.uint64))
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        self.assert_image(to_image(numpy.int8), "I", (10, 10))
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        if Image._ENDIAN == '<':  # Little endian
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            self.assert_image(to_image(numpy.int16), "I;16", (10, 10))
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        else:
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            self.assert_image(to_image(numpy.int16), "I;16B", (10, 10))
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        self.assert_image(to_image(numpy.int32), "I", (10, 10))
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        self.assertRaises(TypeError, lambda: to_image(numpy.int64))
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        self.assert_image(to_image(numpy.float), "F", (10, 10))
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        self.assert_image(to_image(numpy.float32), "F", (10, 10))
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        self.assert_image(to_image(numpy.float64), "F", (10, 10))
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        self.assert_image(to_image(numpy.uint8, 3), "RGB", (10, 10))
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        self.assert_image(to_image(numpy.uint8, 4), "RGBA", (10, 10))
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    # based on an erring example at http://is.gd/6F0esS  (which resolves to)
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    # http://stackoverflow.com/questions/10854903/what-is-causing-dimension-dependent-attributeerror-in-pil-fromarray-function
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    def test_3d_array(self):
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        a = numpy.ones((10, 10, 10), dtype=numpy.uint8)
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        self.assert_image(Image.fromarray(a[1, :, :]), "L", (10, 10))
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        self.assert_image(Image.fromarray(a[:, 1, :]), "L", (10, 10))
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        self.assert_image(Image.fromarray(a[:, :, 1]), "L", (10, 10))
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    def _test_img_equals_nparray(self, img, np):
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        self.assertEqual(img.size, np.shape[0:2])
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        px = img.load()
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        for x in range(0, img.size[0], int(img.size[0]/10)):
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            for y in range(0, img.size[1], int(img.size[1]/10)):
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                self.assert_deep_equal(px[x, y], np[y, x])
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    def test_16bit(self):
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        img = Image.open('Tests/images/16bit.cropped.tif')
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        np_img = numpy.array(img)
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        self._test_img_equals_nparray(img, np_img)
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        self.assertEqual(np_img.dtype, numpy.dtype('<u2'))
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    def test_to_array(self):
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        def _to_array(mode, dtype):
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            img = hopper(mode)
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            np_img = numpy.array(img)
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            self._test_img_equals_nparray(img, np_img)
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            self.assertEqual(np_img.dtype, numpy.dtype(dtype))
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        modes = [("L", 'uint8'),
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                 ("I", 'int32'),
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                 ("F", 'float32'),
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                 ("RGB", 'uint8'),
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                 ("RGBA", 'uint8'),
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                 ("RGBX", 'uint8'),
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                 ("CMYK", 'uint8'),
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                 ("YCbCr", 'uint8'),
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                 ("I;16", '<u2'),
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                 ("I;16B", '>u2'),
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                 ("I;16L", '<u2'),
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                 ]
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        for mode in modes:
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            _to_array(*mode)
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    def test_point_lut(self):
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        # see https://github.com/python-pillow/Pillow/issues/439
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        data = list(range(256))*3
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        lut = numpy.array(data, dtype='uint8')
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        im = hopper()
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        im.point(lut)
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    def test_putdata(self):
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        # shouldn't segfault
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        # see https://github.com/python-pillow/Pillow/issues/1008
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        im = Image.new('F', (150, 100))
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        arr = numpy.zeros((15000,), numpy.float32)
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        im.putdata(arr)
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        self.assertEqual(len(im.getdata()), len(arr))
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if __name__ == '__main__':
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    unittest.main()
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# End of file
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