Draw rim and lid
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144f6d951e
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@ -44,8 +44,11 @@ args.radius = args.hole/2
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args.corner = args.corner_length*args.thickness
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args.corner_s = args.corner*args.stretch
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args.corner_radius = 3*args.corner_s/math.pi
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args.plug_radius = args.corner_radius-args.thickness
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args.corner_inset = args.corner_s*math.sqrt(3)/math.pi
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args.plug_inset = args.plug_radius/math.sqrt(3)
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args.interior_edge = args.grid*args.dimension*0.5+args.outside_padding
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args.plug_edge = args.interior_edge-args.thickness
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args.exterior_edge = args.interior_edge+2.0*args.thickness
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args.interior_leg = (args.interior_edge-args.horizontal_finger-args.kerf)/2-args.corner_inset
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finger_length = args.interior_edge-2.0*args.corner_inset
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@ -60,11 +63,12 @@ if args.verbose:
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print(args, file=sys.stderr)
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DIMX = 5.0*args.grid*args.dimension
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DIMY = 3.0*args.grid*args.dimension
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DIMY = 2.5*args.grid*args.dimension+args.height+3.0*args.thickness
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PI3 = math.pi/3
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HOLES = ''
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SHAPES = ''
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MARKS = ''
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def draw_grid(cx, cy):
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global HOLES
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@ -75,17 +79,19 @@ def draw_grid(cx, cy):
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for col in range(num_col):
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HOLES += '<circle cx="%.2f" cy="%.2f" r="%.2f"/>\n' % (cxr+col*args.grid, cyr, args.radius)
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def draw_plane(cx, cy, interior=False):
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global HOLES, SHAPES
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if interior:
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def draw_plane(cx, cy, layer):
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global HOLES, SHAPES, MARKS
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if layer=='interior':
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edge = args.interior_edge
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elif layer=='plug' or layer=='plug_mark':
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edge = args.plug_edge
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else:
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edge = args.exterior_edge
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turtle = svgturtle.SvgTurtle(cx, cy)
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turtle.penup()
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turtle.forward(edge)
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turtle.right(120)
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if interior:
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if layer=='interior':
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turtle.forward(args.corner_inset)
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turtle.pendown()
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for side in range(5):
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@ -99,17 +105,28 @@ def draw_plane(cx, cy, interior=False):
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turtle.left(90)
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turtle.forward(args.interior_leg)
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turtle.circle(-args.corner_radius, 60)
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turtle.forward(args.interior_edge-2.0*args.corner_inset)
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turtle.forward(edge-2.0*args.corner_inset)
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turtle.circle(-args.corner_radius, 60)
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elif layer=='plug' or layer=='plug_mark':
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turtle.forward(args.plug_inset)
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turtle.pendown()
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for side in range(6):
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turtle.forward(edge-2.0*args.plug_inset)
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turtle.circle(-args.plug_radius, 60)
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else:
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turtle.pendown()
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for side in range(6):
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turtle.forward(args.exterior_edge)
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turtle.forward(edge)
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turtle.right(60)
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if layer=='plug':
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HOLES += '<path d="%s"/>\n' % turtle.to_s()
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elif layer=='plug_mark':
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MARKS += '<path d="%s"/>\n' % turtle.to_s()
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else:
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SHAPES += '<path d="%s"/>\n' % turtle.to_s()
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if not interior:
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turtle.reset()
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turtle.penup()
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if layer=='bottom' or layer=='rim':
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turtle.forward(args.interior_edge)
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turtle.right(120)
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turtle.forward(args.corner_inset)
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@ -273,10 +290,14 @@ def draw_case(x0, y0, h, slots):
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print('<svg viewBox="0 0 %.2f %.2f" width="%.2fmm" height="%.2fmm" stroke-width="0.1" xmlns="http://www.w3.org/2000/svg">' % (DIMX, DIMY, DIMX, DIMY))
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draw_grid(0.65*args.grid*args.dimension, 0.60*args.grid*args.dimension)
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draw_plane(0.65*args.grid*args.dimension, 0.60*args.grid*args.dimension, True)
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draw_plane(0.65*args.grid*args.dimension, 0.60*args.grid*args.dimension, 'interior')
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draw_grid(1.90*args.grid*args.dimension, 0.60*args.grid*args.dimension)
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draw_plane(1.90*args.grid*args.dimension, 0.60*args.grid*args.dimension, True)
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draw_plane(3.15*args.grid*args.dimension, 0.60*args.grid*args.dimension)
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draw_case(0.05*args.grid*args.dimension, 1.25*args.grid*args.dimension, args.height, args.slots)
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print('<g fill="none" stroke="red">', HOLES, '</g>', '<g fill="none" stroke="black">', SHAPES, '</g>', sep='\n')
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draw_plane(1.90*args.grid*args.dimension, 0.60*args.grid*args.dimension, 'interior')
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draw_plane(3.15*args.grid*args.dimension, 0.60*args.grid*args.dimension, 'bottom')
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draw_plane(0.65*args.grid*args.dimension, 1.70*args.grid*args.dimension, 'rim')
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draw_plane(0.65*args.grid*args.dimension, 1.70*args.grid*args.dimension, 'plug')
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draw_plane(2.00*args.grid*args.dimension, 1.70*args.grid*args.dimension, 'lid')
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draw_plane(2.00*args.grid*args.dimension, 1.70*args.grid*args.dimension, 'plug_mark')
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draw_case(0.05*args.grid*args.dimension, 2.30*args.grid*args.dimension, args.height, args.slots)
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print('<g fill="none" stroke="red">', HOLES, '</g>', '<g fill="none" stroke="blue">', MARKS, '</g>', '<g fill="none" stroke="black">', SHAPES, '</g>', sep='\n')
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print('</svg>')
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