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.gitattributes
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.gitattributes
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board = [
[5,3,0,0,7,0,0,0,0],
[6,0,0,1,9,5,0,0,0],
[0,9,8,0,0,0,0,6,0],
[8,0,0,0,6,0,0,0,3],
[4,0,0,8,0,3,0,0,1],
[7,0,0,0,2,0,0,0,6],
[0,6,0,0,0,0,2,8,0],
[0,0,0,4,1,9,0,0,5],
[0,0,0,0,8,0,0,7,9]
]
def solution(board):
find = find_empty(board)
if not find:
return True
else:
row, col = find
for i in range(1,10):
if check(board, i, (row, col)):
board[row][col] = i
if solution(board):
return True
board[row][col] = 0
return False
def check(board, num, pos):
# Check row
for i in range(len(board[0])):
if board[pos[0]][i] == num and pos[1] != i:
return False
# Check column
for i in range(len(board)):
if board[i][pos[1]] == num and pos[0] != i:
return False
# Check box
box_x = pos[1] // 3
box_y = pos[0] // 3
for i in range(box_y*3, box_y*3 + 3):
for j in range(box_x * 3, box_x*3 + 3):
if board[i][j] == num and (i,j) != pos:
return False
return True
def print_board(board):
for i in range(len(board)):
if i % 3 == 0 and i != 0:
print("- - - - - - - - - - - - - ")
for j in range(len(board[0])):
if j % 3 == 0 and j != 0:
print(" | ", end="")
if j == 8:
print(board[i][j])
else:
print(str(board[i][j]) + " ", end="")
def find_empty(board):
for i in range(len(board)):
for j in range(len(board[0])):
if board[i][j] == 0:
return (i, j) # row, col
return None
print_board(board)
print('---------------------------------')
solution(board)
print_board(board)