unit test for new scale() and scaled() path transformation. tests all current segment types, composite paths, etc
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d21a66aff0
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@ -4,6 +4,7 @@ import unittest
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from math import sqrt, pi
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from math import sqrt, pi
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from operator import itemgetter
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from operator import itemgetter
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from numpy import poly1d
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from numpy import poly1d
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from numpy import linspace
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# Internal dependencies
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# Internal dependencies
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from svgpathtools import *
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from svgpathtools import *
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@ -701,6 +702,72 @@ class TestPath(unittest.TestCase):
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with self.assertRaises(AssertionError):
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with self.assertRaises(AssertionError):
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p_open.cropped(1, 0)
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p_open.cropped(1, 0)
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def test_transform_scale(self):
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line1 = Line(600 + 350j, 650 + 325j)
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arc1 = Arc(650 + 325j, 25 + 25j, -30, 0, 1, 700 + 300j)
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cub1 = CubicBezier(650 + 325j, 25 + 25j, -30, 700 + 300j)
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cub2 = CubicBezier(700 + 300j, 800 + 400j, 750 + 200j, 600 + 100j)
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quad3 = QuadraticBezier(600 + 100j, 600, 600 + 300j)
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linez = Line(600 + 300j, 600 + 350j)
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bezpath = Path(line1, cub1, cub2, quad3)
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bezpathz = Path(line1, cub1, cub2, quad3, linez)
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path = Path(line1, arc1, cub2, quad3)
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pathz = Path(line1, arc1, cub2, quad3, linez)
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lpath = Path(linez)
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qpath = Path(quad3)
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cpath = Path(cub1)
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apath = Path(arc1)
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test_paths = [
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bezpath,
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bezpathz,
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path,
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pathz,
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lpath,
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qpath,
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cpath,
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apath,
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]
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for path_orig in test_paths:
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# scale by 2 around (100, 100)
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path_trns = path_orig.scaled(2.0, complex(100, 100))
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# expected length
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len_orig = path_orig.length()
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len_trns = path_trns.length()
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self.assertAlmostEqual(len_orig * 2.0, len_trns)
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# expected positions
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for T in linspace(0.0, 1.0, num=100):
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pt_orig = path_orig.point(T)
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pt_trns = path_trns.point(T)
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pt_xpct = (pt_orig - complex(100, 100)) * 2.0 + complex(100, 100)
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self.assertAlmostEqual(pt_xpct, pt_trns)
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for path_orig in test_paths:
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# scale by 0.3 around (0, -100)
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# the 'almost equal' test fails at the 7th decimal place for some length and position tests here.
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path_trns = path_orig.scaled(0.3, complex(0, -100))
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# expected length
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len_orig = path_orig.length()
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len_trns = path_trns.length()
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self.assertAlmostEqual(len_orig * 0.3, len_trns, delta = 0.000001)
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# expected positions
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for T in linspace(0.0, 1.0, num=100):
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pt_orig = path_orig.point(T)
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pt_trns = path_trns.point(T)
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pt_xpct = (pt_orig - complex(0, -100)) * 0.3 + complex(0, -100)
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self.assertAlmostEqual(pt_xpct, pt_trns, delta = 0.000001)
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class Test_ilength(unittest.TestCase):
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class Test_ilength(unittest.TestCase):
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# See svgpathtools.notes.inv_arclength.py for information on how these
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# See svgpathtools.notes.inv_arclength.py for information on how these
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