239 lines
8.5 KiB
Python
239 lines
8.5 KiB
Python
#!/usr/bin/env python3
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import re
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import textwrap
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import ast
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svg_str = lambda content: content if isinstance(content, str) else '\n'.join(str(c) for c in content)
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class Pattern:
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def __init__(self, w, h, content):
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self.w = w
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self.h = h
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self.content = content
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@property
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def svg_id(self):
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return f'pat-{id(self):16x}'
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def __str__(self):
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return textwrap.dedent(f'''
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<pattern id="{self.svg_id}" viewBox="0,0,{self.w},{self.h}" width="{self.w}" height="{self.h}" patternUnits="userSpaceOnUse">
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{svg_str(self.content)}
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</pattern>''')
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def make_rect(x, y, w, h):
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return f'<rect x="{x}" y="{y}" w="{w}" h="{h}" fill="url(#{self.svg_id})"/>'
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class CirclePattern(Pattern):
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def __init__(self, d, w, h=None):
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self.d = d
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self.w = w
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self.h = h or w
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@property
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def content(self):
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return f'<circle cx={self.w/2} cy={self.h/2} r={self.d/2}/>'
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make_layer = lambda layer_name, content: \
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f'<g id="g-{layer_name.replace(" ", "-")}" inkscape:label="{layer_name}" inkscape:groupmode="layer">{svg_str(content)}</g>'
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svg_template = textwrap.dedent('''
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<?xml version="1.0" encoding="UTF-8" standalone="no"?>
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<svg version="1.1" width="{w}mm" height="{h}mm" viewBox="0 0 {w} {h}" id="svg18" sodipodi:docname="proto.svg"
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inkscape:version="1.2 (dc2aedaf03, 2022-05-15)"
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xmlns:inkscape="http://www.inkscape.org/namespaces/inkscape"
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xmlns:sodipodi="http://sodipodi.sourceforge.net/DTD/sodipodi-0.dtd"
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xmlns="http://www.w3.org/2000/svg"
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xmlns:svg="http://www.w3.org/2000/svg">
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<defs id="defs2">
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{defs}
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</defs>
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<sodipodi:namedview inkscape:current-layer="g-top-copper" id="namedview4" pagecolor="#ffffff" bordercolor="#666666"
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borderopacity="1.0" inkscape:showpageshadow="2" inkscape:pageopacity="0.0" inkscape:pagecheckerboard="0"
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inkscape:deskcolor="#d1d1d1" inkscape:document-units="mm" showgrid="false" inkscape:zoom="2.8291492"
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inkscape:cx="157.29111" inkscape:cy="80.943063" inkscape:window-width="1920" inkscape:window-height="1011"
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inkscape:window-x="0" inkscape:window-y="0" inkscape:window-maximized="1" />
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{layers}
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</svg>
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''')
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class PatternProtoArea:
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def __init__(self, pitch_x, pitch_y=None):
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self.pitch_x = pitch_x
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self.pitch_y = pitch_y or pitch_x
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@property
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def pitch(self):
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if self.pitch_x != self.pitch_y:
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raise ValueError('Pattern has different X and Y pitches')
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return self.pitch_x
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def fit_rect(self, x, y, w, h, center=True):
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w_fit, h_fit = round(w - (w % self.pitch_x), 6), round(h - (h % self.pitch_y), 6)
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if center:
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x = x + (w-w_fit)/2
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y = y + (h-h_fit)/2
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return x, y, w_fit, h_fit
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else:
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return x, y, w_fit, h_fit
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class THTProtoAreaCircles:
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def __init__(self, pad_dia=2.0, drill=1.0, pitch=2.54, sides='both', plated=True):
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super(pitch)
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self.pad_dia = pad_dia
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self.drill = drill
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self.drill_pattern = CirclePattern(self.drill, self.pitch)
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self.pad_pattern = CirclePattern(self.pad_dia, self.pitch)
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self.patterns = [self.drill_pattern, self.pad_pattern]
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self.plated = plated
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self.sides = sides
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def generate(self, x, y, w, h, center=True):
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x, y, w, h = self.fit_rect(x, y, w, h, center)
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drill = 'plated drill' if self.plated else 'nonplated drill'
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d = { drill: self.drill_pattern.make_rect(x, y, w, h) }
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if self.sides in ('top', 'both'):
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d['top copper'] = self.pad_pattern.make_rect(x, y, w, h)
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if self.sides in ('bottom', 'both'):
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d['bottom copper'] = self.pad_pattern.make_rect(x, y, w, h)
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return d
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class ProtoBoard:
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def __init__(self, desc_str):
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pass
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def convert_to_mm(value, unit):
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match unit.lower():
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case 'mm': return value
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case 'cm': return value*10
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case 'in': return value*25.4
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case 'mil': return value/1000*25.4
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raise ValueError(f'Invalid unit {unit}, allowed units are mm, cm, in, and mil.')
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value_re = re.compile('([0-9]*\.?[0-9]+)(cm|mm|in|mil|%)')
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def eval_value(value, total_length=None):
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if not isinstance(value, str):
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return None
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m = value_re.match(value)
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number, unit = m.groups()
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if unit == '%':
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if total_length is None:
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raise ValueError('Percentages are not allowed for this value')
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return total_length * float(number) / 100
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return convert_to_mm(float(number), unit)
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class PropLayout:
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def __init__(self, content, direction, proportions):
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self.content = content
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self.direction = direction
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self.proportions = proportions
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if len(content) != len(proportions):
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raise ValueError('proportions and content must have same length')
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def layout(self, length):
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out = [ eval_value(value, length) for value in self.proportions ]
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total_length = sum(value for value in out if value is not None)
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if length - total_length < -1e-6:
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raise ValueError(f'Proportions sum to {total_length} mm, which is greater than the available space of {length} mm.')
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leftover = length - total_length
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sum_props = sum( (value or 1.0) for value in self.proportions if not isinstance(value, str) )
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return [ (leftover * (value or 1.0) / sum_props if not isinstance(value, str) else calculated)
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for value, calculated in zip(self.proportions, out) ]
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def __str__(self):
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children = ', '.join( f'{elem}:{width}' for elem, width in zip(self.content, self.proportions))
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return f'PropLayout[{self.direction.upper()}]({children})'
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def _map_expression(node):
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match node:
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case ast.Name():
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return node.id
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case ast.Constant():
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return node.value
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case ast.BinOp(op=ast.BitOr()) | ast.BinOp(op=ast.BitAnd()):
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left_prop = right_prop = None
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left, right = node.left, node.right
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if isinstance(left, ast.BinOp) and isinstance(left.op, ast.MatMult):
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left_prop = _map_expression(left.right)
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left = left.left
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if isinstance(right, ast.BinOp) and isinstance(right.op, ast.MatMult):
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right_prop = _map_expression(right.right)
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right = right.left
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direction = 'h' if isinstance(node.op, ast.BitOr) else 'v'
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left, right = _map_expression(left), _map_expression(right)
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if isinstance(left, PropLayout) and left.direction == direction and left_prop is None:
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left.content.append(right)
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left.proportions.append(right_prop)
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return left
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elif isinstance(right, PropLayout) and right.direction == direction and right_prop is None:
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right.content.insert(0, left)
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right.proportions.insert(0, left_prop)
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return right
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else:
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return PropLayout([left, right], direction, [left_prop, right_prop])
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case ast.BinOp(op=ast.MatMult()):
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raise SyntaxError(f'Unexpected width specification "{ast.unparse(node.right)}"')
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case _:
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raise SyntaxError(f'Invalid layout expression "{ast.unparse(node)}"')
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def parse_layout(expr):
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''' Example layout:
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( tht @ 2in | smd ) @ 50% / tht
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'''
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expr = re.sub(r'\s', '', expr).lower()
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expr = re.sub(r'([0-9]*\.?[0-9]+)(mm|cm|in|mil|%)', r'"\1\2"', expr)
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expr = expr.replace('/', '&')
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try:
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expr = ast.parse(expr, mode='eval').body
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match expr:
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case ast.Name():
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return PropLayout([expr.id], 'h', [None])
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case ast.BinOp(op=ast.MatMult()):
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assert isinstance(expr.right, ast.Constant)
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return PropLayout([_map_expression(expr.left)], 'h', [expr.right.value])
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case _:
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return _map_expression(expr)
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except SyntaxError as e:
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raise SyntaxError('Invalid layout expression') from e
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if __name__ == '__main__':
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import sys
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for line in [
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'tht',
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'tht@1mm',
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'tht|tht',
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'tht@1mm|tht',
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'tht|tht|tht',
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'tht@1mm|tht@2mm|tht@3mm',
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'(tht@1mm|tht@2mm)|tht@3mm',
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'tht@1mm|(tht@2mm|tht@3mm)',
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'tht@2|tht|tht',
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'(tht@1mm|tht|tht@3mm) / tht',
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]:
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layout = parse_layout(line)
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print(line, '->', layout)
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print(' ', layout.layout(100))
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print()
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