[perimeterPen] 5x speed-up cubic by using complex numbers as points
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@ -16,6 +16,12 @@ def _intSecAtan(x):
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# Out: x*sqrt(x**2 + 1)/2 + asinh(x)/2
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return x * math.sqrt(x**2 + 1)/2 + math.asinh(x)/2
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def _split_cubic_into_two(p0, p1, p2, p3):
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mid = (p0 + 3 * (p1 + p2) + p3) * .125
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deriv3 = (p3 + p2 - p1 - p0) * .125
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return ((p0, (p0 + p1) * .5, mid - deriv3, mid),
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(mid, mid + deriv3, (p2 + p3) * .5, p3))
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class PerimeterPen(BasePen):
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def __init__(self, glyphset=None, tolerance=0.005):
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@ -55,17 +61,18 @@ class PerimeterPen(BasePen):
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self.value += Len
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def _addCubic(self, p0, p1, p2, p3):
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arch = _distance(p0, p3)
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box = _distance(p0, p1) + _distance(p1, p2) + _distance(p2, p3)
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arch = abs(p0-p3)
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box = abs(p0-p1) + abs(p1-p2) + abs(p2-p3)
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if arch * self._mult >= box:
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self.value += (arch + box) * .5
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else:
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for c in splitCubicAtT(p0,p1,p2,p3,.2,.4,.6,.8):
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self._addCubic(*c)
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one,two = _split_cubic_into_two(p0,p1,p2,p3)
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self._addCubic(*one)
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self._addCubic(*two)
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def _curveToOne(self, p1, p2, p3):
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p0 = self._getCurrentPoint()
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self._addCubic(p0, p1, p2, p3)
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self._addCubic(complex(*p0), complex(*p1), complex(*p2), complex(*p3))
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def _closePath(self):
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p0 = self._getCurrentPoint()
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