Debugging 2023-12-11
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@ -78,76 +78,89 @@ while not found:
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x = cur[1]
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x = cur[1]
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sub_found = False
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sub_found = False
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print('Start: ' + str(cur) + ' ' + wall(cur))
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#print('Start: ' + str(cur) + ' ' + wall(cur))
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dirc = ''
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dirc = ''
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print('Trying to find way')
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#print('Trying to find way')
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print('Previous is ' + str(prev) + wall(prev))
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#print('Previous is ' + str(prev) + wall(prev))
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if y+1 < len(grid[0]) and not sub_found:
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if y+1 < len(grid[0]) and not sub_found:
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#print('Can go right')
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# Right
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# Right
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new = (list(cur)[0]+1,list(cur)[1])
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new = (list(cur)[0]+1,list(cur)[1])
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#print(wall(new))
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if grid[x][y+1] in ('─','┐','┘') and new != prev:
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if grid[x][y+1] in ('─','┐','┘') and new != prev:
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print('Trying Right')
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#print('Trying Right')
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print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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#print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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dirc = 'R'
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dirc = 'R'
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if wall(cur) in ('─','┌','└','S'):
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if wall(cur) in ('─','┌','└','S'):
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print('Went Right')
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#print('Went Right')
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prev = (y,x)
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prev = (y,x)
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y += 1
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y += 1
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sub_found = True
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sub_found = True
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else:
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print('Cant go right cus ' + str(y) + ' < ' + str(len(grid)))
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if y > 0 and not sub_found:
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if y > 0 and not sub_found:
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#print('Can go left')
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# Left
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# Left
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new = (list(cur)[0]-1,list(cur)[1])
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new = (list(cur)[0]-1,list(cur)[1])
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#print(wall(new))
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found = True if wall(new) == 'S' else False
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if grid[x][y-1] in ('─','┌','└') and new != prev:
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if grid[x][y-1] in ('─','┌','└') and new != prev:
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print('Trying Left')
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#print('Trying Left')
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print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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#print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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dirc = 'L'
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dirc = 'L'
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if wall(cur) in ('─','┐','┘','S'):
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if wall(cur) in ('─','┐','┘','S'):
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print('Went Left')
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#print('Went Left')
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prev = (y,x)
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y -= 1
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y -= 1
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sub_found = True
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sub_found = True
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else:
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print('Cant go left cus ' + str(y) + ' > ' + str(0))
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if x > 0 and not sub_found:
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if x > 0 and not sub_found:
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#print('Can go up')
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# Up
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# Up
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new = (list(cur)[0],list(cur)[1]-1)
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new = (list(cur)[0],list(cur)[1]-1)
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#print(wall(new))
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found = True if wall(new) == 'S' else False
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if grid[x-1][y] in ('│','┌','┐') and new != prev:
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if grid[x-1][y] in ('│','┌','┐') and new != prev:
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print('Trying Up')
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#print('Trying Up')
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print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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#print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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dirc = 'U'
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dirc = 'U'
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if wall(cur) in ('│','└','┘','S'):
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if wall(cur) in ('│','└','┘','S'):
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print('Went Up')
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#print('Went Up')
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prev = (y,x)
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x -=1
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x -=1
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sub_found = True
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sub_found = True
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if x < len(grid) and not sub_found:
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if x < len(grid) and not sub_found:
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#print('Can go down')
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# Down
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# Down
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new = (list(cur)[0],list(cur)[1]+1)
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new = (list(cur)[0],list(cur)[1]+1)
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#print(wall(new))
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if wall(new) == 'S':
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#print('Found the S')
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found = True
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if grid[x+1][y] in ('│','└','┘') and new != prev:
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if grid[x+1][y] in ('│','└','┘') and new != prev:
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print('Trying Down')
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#print('Trying Down')
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print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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#print('prev: ' + str(prev) + ' cur: ' + str(cur) + ' new: ' + str(new))
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dirc = 'D'
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dirc = 'D'
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if wall(cur) in ('│','┌','┐','S'):
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if wall(cur) in ('│','┌','┐','S'):
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print('Went Down')
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#print('Went Down')
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prev = (y,x)
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x += 1
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x += 1
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sub_found = True
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sub_found = True
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cur = (y,x)
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cur = (y,x)
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steps.append((x,y))
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steps.append((x,y))
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p(grid,steps)
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print('Going ' + dirc + ' to ' + str(cur) + ' ' + wall(cur))
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print('Going ' + dirc + ' to ' + str(cur) + ' ' + wall(cur))
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print('Previous is ' + str(prev) + ' ' + wall(prev))
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print('Previous is ' + str(prev) + ' ' + wall(prev))
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p(grid,steps)
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print()
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print()
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input()
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input()
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count += 1
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count += 1
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if cur == start:
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#print(cur, start)
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found = True
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p(grid,steps)
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print(count)
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print(count)
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print(count/2)
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