kopia lustrzana https://github.com/villares/sketch-a-day
				
				
				
			
		
			
				
	
	
		
			235 wiersze
		
	
	
		
			8.8 KiB
		
	
	
	
		
			Python
		
	
	
			
		
		
	
	
			235 wiersze
		
	
	
		
			8.8 KiB
		
	
	
	
		
			Python
		
	
	
| # -*- coding: utf-8 -*-
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| from random import choice
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| from poly_arcs import quarter_poly, half_poly, poly_arc, bar
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| 
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| class Cell():
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|     grid = dict()
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|     border = None
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|     debug_mode = False
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|     # constants
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|     variations = "abcde"
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|     N, A, I, T, L, C, E = type_names = "NAITLCE"
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|     module_types = {"11111": A,  # All neighbours on
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|                     "00100": N,  # No neighbours on - isolated
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|                     "01111": T,  # T-shaped (three neighbours)
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|                     "11110": T,
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|                     "11101": T,
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|                     "10111": T,
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|                     "10101": I,  # I - Up & down or Left and Right
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|                     "01110": I,
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|                     "01100": C,  # Cap - single neighbour
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|                     "00110": C,
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|                     "00101": C,
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|                     "10100": C,
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|                     "01101": L,  # L-shaped (two neighbours)
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|                     "10110": L,
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|                     "00111": L,
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|                     "11100": L,
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|                     "00000": E,  # Empty - not used at this point
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|                     # "10000": E,
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|                     # "01000": E,
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|                     # "00010": E
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|                     }
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| 
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|     # ortho neighbours
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|     ONL = ((+0, -1),
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|            (-1, +0), (+0, +0),
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|            (+1, +0),
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|            (+0, +1))
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|     
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| 
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|     def __init__(self, index, cell_size, state=False):
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|         self.index = index
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|         self.state = state
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|         self.size_ = cell_size
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|         self.mouse_down = False
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|         self.variation = "a"
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|         self.ang = choice((0, 1, 2, 3))
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|         self.res = 2
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|         self.off = 0
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|         self.calculate_pos()
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| 
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|     def calculate_pos(self):
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|         i, j = self.index
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|         if Cell.border == None:
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|             border = self.size_
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|         else:
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|             border = Cell.border
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|         self.pos = PVector(border + self.size_ / 2 + i * self.size_ - width / 2,
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|                            border + self.size_ / 2 + j * self.size_ - height / 2)
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| 
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|     def update(self, mx, my):
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|         # mouse over & selection treatment
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|         hs = self.size_ / 2
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|         px, py = self.pos.x, self.pos.y
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|         self.mouse_on = (px - hs < mx < px + hs and
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|                          py - hs < my < py + hs)
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|         if self.mouse_on and mousePressed:
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|             self.mouse_down = True
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| 
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|         elif self.mouse_down:
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|             self.state = not self.state
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|             self.mouse_down = False
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| 
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|         self.identify_module(Cell.ONL)
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|         self.type = Cell.module_types.get(self.module, "")
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| 
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|     def plot(self, mode):
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|         self.res = int (5 +  2 * cos( frameCount/10. + self.pos.x/2.))
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|         mode = self.res
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|         rnd = choice(Cell.variations)
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|         mode_variation = {1: "a",
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|                           2: "b",
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|                           3: "c",
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|                           4: "d",
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|                           5: "e",
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|                           6: Cell.variation_dict.get(
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|                                Cell.module_types.get(self.module)
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|                                ),
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|                           7: rnd
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|                           }
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|         if self.state:
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|             strokeWeight(2)
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|             self.variation = mode_variation.get(mode, self.variation)
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|             if mode == -1:
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|                 fill(100, 100)
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|                 noStroke()
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|                 rect(self.pos.x, self.pos.y, self.size_, self.size_)
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|                 noFill()
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|             self.draw_mode()
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| 
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|     def draw_mode(self):
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|         """ draws node """
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|         siz = self.size_
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|         l = siz / 2.
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|         half = self.size_ / 2
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|         q_minus= siz / 4. - self.off
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|         q_plus = siz / 4. + self.off
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|         with pushMatrix():
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|             translate(self.pos.x, self.pos.y)
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|             if Cell.debug_mode:
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|                 fill(255)
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|                 text(self.res, 0, 0)
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|             noFill()  # stroke(0)
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|             rotation = {"11110": PI,
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|                         "10110": PI,
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|                         "00101": PI,
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|                         "11101": HALF_PI,
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|                         "01110": HALF_PI,
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|                         "11100": HALF_PI,
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|                         "00110": HALF_PI,
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|                         "11111": HALF_PI * self.ang,
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|                         "10111": PI + HALF_PI,
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|                         "00111": PI + HALF_PI,
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|                         "01100": PI + HALF_PI
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|                         }
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|             # rotation appropriate for each type
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|             rotate(rotation.get(self.module, 0))
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|             def corner(h, v, i):
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|                     corner_y = {TOP : siz / 2, BOTTOM: -siz / 2}
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|                     corner_x = {LEFT : siz / 2, RIGHT: -siz / 2}
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|                     quarter_poly(corner_x[h], corner_y[v], q_plus + i, h + v, self.res)
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|                     
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|             def side(pos, i):
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|                     x, y = {TOP : (0, half), BOTTOM: (0, -half),
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|                             LEFT: (half, 0), RIGHT : (-half, 0)}[pos]
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|                     half_poly(x, y, q_minus - i, pos, self.res)
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| 
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|             def middle(i):
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|                 poly_arc(0, 0, (q_minus-i), 0, TWO_PI, self.res *2)
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| 
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|             for i in range(Cell.step_start,
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|                            Cell.step_end,
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|                            Cell.step):  # (-28, 29, 7):
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|                 translate(0, 0, (q_minus + i))
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|                 stroke(16 + i * 8, 255, 255)
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| 
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|                 if self.type == Cell.A:
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|                     if self.variation in "bd":
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|                         corner(LEFT, TOP, i)
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|                         corner(LEFT, BOTTOM, i)
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|                         corner(RIGHT, TOP, i)
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|                         corner(RIGHT, BOTTOM, i)
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|                     if self.variation in "ae":
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|                         for pos in (RIGHT, LEFT, TOP, BOTTOM):
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|                             side(pos, i)
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|                     if self.variation == "c":
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|                         line(+q_minus - i, -l, +q_minus - i, l)
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|                         line(-q_minus + i, -l, -q_minus + i, l)
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|                         side(RIGHT, i)
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|                         side(LEFT, i)
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|                     if self.variation in "de":
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|                         middle(i)
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| 
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|                 elif self.type == Cell.T:
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|                     if self.variation in "bde":
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|                         line(-l, -q_minus + i, l, -q_minus + i)
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|                         corner(LEFT, TOP, i)
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|                         corner(RIGHT, TOP, i)
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|                     elif self.variation in "ac":
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|                         for pos in (RIGHT, LEFT, TOP):
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|                             side(pos, i)
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|                     if self.variation in "ce":
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|                         middle(i)
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|                     if self.variation == "a":
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|                         line(-l, -q_minus + i, l, -q_minus + i)
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|  
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|                 elif self.type == Cell.I:
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|                     if self.variation in "abde":
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|                         line(+q_minus - i, -l, +q_minus - i, l)
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|                         line(-q_minus + i, -l, -q_minus + i, l)
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|                     if self.variation in "ca":
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|                         side(TOP, i)
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|                         side(BOTTOM, i)
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|                     if self.variation == "ce":
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|                         middle(i)
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| 
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|                 elif self.type == Cell.L:
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|                     if self.variation in "acde":
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|                         half_poly(-l, 0, q_minus - i, RIGHT, self.res)
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|                         half_poly(0, l, q_minus - i, TOP, self.res)
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|                     if self.variation in "ab":
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|                         quarter_poly(-l, l, siz - q_plus - i, TOP + RIGHT, self.res)
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|                     if self.variation == "b":
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|                         #quarter_poly(-l, l, siz - q_plus - i, TOP + RIGHT, self.res)
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|                         i *= -1
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|                         quarter_poly(-l, l, q_plus - i, TOP + RIGHT, self.res)
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|                     elif self.variation in "ce":
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|                         middle(i)
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| 
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|                 elif self.type == Cell.C:
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|                     if self.variation in "ac":
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|                         half_poly(0, -l, q_minus - i, BOTTOM, self.res)
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|                     if self.variation in "abe":
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|                         half_poly(0, 0, q_minus - i, BOTTOM, self.res)
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|                     if self.variation in "abde":
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|                         line(+q_minus - i, -l, +q_minus - i, 0)
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|                         line(-q_minus + i, -l, -q_minus + i, 0)
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|                     if self.variation in "dc":
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|                         middle(i)
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|                     if self.variation == "e":
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|                         half_poly(0, -l / 2, q_minus - i, TOP, self.res)
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| 
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|                 elif self.type == Cell.N:
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|                     poly_arc(
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|                         0, 0, (q_minus - i), QUARTER_PI, TWO_PI, self.res *2)
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| 
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|     def identify_module(self, nbs):
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|         i, j = self.index[0], self.index[1]
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|         self.module = ""
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|         for (ni, nj) in nbs:
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|             nb = Cell.grid.get((i + ni, j + nj), None)
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|             if nb and nb.state:
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|                 self.module += "1"
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|             else:
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|                 self.module += "0"
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| 
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|         # num_points=self.res*2):
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|         #rect(0, 0, (q - i) * 2, (q - i) * 2)
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| 
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|     @staticmethod
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|     def variation_choices():
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|         Cell.variation_dict = dict()
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|         for t in Cell.type_names:
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|             Cell.variation_dict[t] = choice(Cell.variations)
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