Finished day 11.
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4b4b083bd4
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2021/11/data
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2021/11/data
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1254117228
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4416873224
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8354381553
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1372637614
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5586538553
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7213333427
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3571362825
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1681126243
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8718312138
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5254266347
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10
2021/11/example_data
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2021/11/example_data
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5483143223
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2745854711
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5264556173
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6141336146
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6357385478
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4167524645
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2176841721
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6882881134
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4846848554
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5283751526
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42
2021/11/main.py
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2021/11/main.py
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grid = []
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to_flash = []
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for line in open('data', 'r'):
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grid_line = []
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for ch in line.strip():
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grid_line.append(int(ch))
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grid.append(grid_line)
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flashed = 0
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for step in range(0, 100):
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# Step 1: Increment
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for y in range(0, len(grid)):
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for x in range(0, len(grid[y])):
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grid[y][x] += 1
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if(grid[y][x] > 9):
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to_flash.append(tuple([y, x]))
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if(len(to_flash) == len(grid) * len(grid[0])):
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print('all flash step #', step + 1)
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# Step 2: Flash
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while(len(to_flash)):
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cell = to_flash[-1] # take the last one
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to_flash.pop() # remove
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flashed += 1 # count
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for y in range(-1, 2):
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new_y = cell[0] + y
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if(new_y >= 0 and new_y < len(grid)): # in bounds
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for x in range(-1, 2):
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new_x = cell[1] + x
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if(new_x >= 0 and new_x < len(grid[y])): # in bounds
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grid[new_y][new_x] += 1
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if(grid[new_y][new_x] == 10): # JUST flashed
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to_flash.append(tuple([new_y, new_x]))
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# Step 3: Reset (if flashed)
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for y in range(0, len(grid)):
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for x in range(0, len(grid[y])):
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if(grid[y][x] > 9):
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grid[y][x] = 0
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print('Step #', (step + 1), ': ', flashed)
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49
2021/11/main2.py
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2021/11/main2.py
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grid = []
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to_flash = []
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for line in open('data', 'r'):
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grid_line = []
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for ch in line.strip():
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grid_line.append(int(ch))
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grid.append(grid_line)
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flashed = 0
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step = 0
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#for step in range(0, 100):
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while(True):
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# Step 1: Increment
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for y in range(0, len(grid)):
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for x in range(0, len(grid[y])):
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grid[y][x] += 1
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if(grid[y][x] > 9):
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to_flash.append(tuple([y, x]))
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# Step 2: Flash
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prior_flash = flashed
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while(len(to_flash)):
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cell = to_flash[-1] # take the last one
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to_flash.pop() # remove
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flashed += 1 # count
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for y in range(-1, 2):
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new_y = cell[0] + y
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if(new_y >= 0 and new_y < len(grid)): # in bounds
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for x in range(-1, 2):
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new_x = cell[1] + x
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if(new_x >= 0 and new_x < len(grid[y])): # in bounds
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grid[new_y][new_x] += 1
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if(grid[new_y][new_x] == 10): # JUST flashed
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to_flash.append(tuple([new_y, new_x]))
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# PART TWO ANSWER
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if(flashed - prior_flash == len(grid) * len(grid[0])):
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print('all flash step #', step + 1)
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break
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# Step 3: Reset (if flashed)
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for y in range(0, len(grid)):
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for x in range(0, len(grid[y])):
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if(grid[y][x] > 9):
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grid[y][x] = 0
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print('Step #', (step + 1), ': ', flashed)
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step += 1
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