1 """Hough transform module."""
12 This class stores the parameters of the transformation.
14 def __init__(self, size, dt, init_angle):
15 self.size = size # this is a tuple (width, height)
16 self.dt = dt # this is the angle step in hough transform
17 self.initial_angle = init_angle
20 def default(cls, image):
21 """Default parameters for Hough transform of the *image*."""
24 initial_angle = (pi / 4) + (dt / 2)
25 return cls(size, dt, initial_angle)
27 def transform(self, image):
28 image_s = pcf.hough(self.size, image.tostring(), self.initial_angle,
30 image_t = Image.fromstring('L', self.size, image_s)
33 def apply_filter(self, filter_f):
34 return Hough(self.size, self.dt, self.initial_angle,
37 def lines_from_list(self, p_list):
38 """Take a list of transformed points and return a list of corresponding
39 lines as (angle, distance) tuples."""
42 lines.append(self.angle_distance(p))
45 def all_lines_h(self, image):
49 for x in xrange(self.size[0] / 2):
50 for y in xrange(self.size[1]):
52 lines1.append(self.angle_distance((x, y)))
54 for x in xrange(self.size[0] / 2, self.size[0]):
55 for y in xrange(self.size[1]):
57 lines2.append(self.angle_distance((x, y)))
58 return [lines1, lines2]
61 # TODO what is this? how does it differ from the upper one?
62 im_l = self.image.load()
64 for x in xrange(self.size[0]):
65 for y in xrange(self.size[1]):
67 lines.append(self.angle_distance((x, y)))
70 def angle_distance(self, point):
71 """Take a point from the transformed image and return the corresponding
72 line in the original as (angle, distance) tuple."""
73 return (self.dt * point[1] + self.initial_angle,
74 point[0] - self.size[0] / 2)