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problem_064.py
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problem_064.py
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import random
class Position:
def __init__(self, x, y):
self.x = x
self.y = y
def __hash__(self):
return hash((self.x, self.y))
def __eq__(self, other):
return self.x == other.x and self.y == other.y
def __repr__(self):
return "Position=[x={},y={}]".format(self.x, self.y)
def get_potential_knight_moves(start, size, visited):
moves = list()
moves.append(Position(start.x + 1, start.y + 2))
moves.append(Position(start.x + 1, start.y - 2))
moves.append(Position(start.x - 1, start.y + 2))
moves.append(Position(start.x - 1, start.y - 2))
moves.append(Position(start.x + 2, start.y + 1))
moves.append(Position(start.x + 2, start.y - 1))
moves.append(Position(start.x - 2, start.y + 1))
moves.append(Position(start.x - 2, start.y - 1))
valid_moves = [pos for pos in moves if
pos.x >= 0 and pos.x < size and
pos.y >= 0 and pos.y < size and
pos not in visited]
return valid_moves
def run_knights_tour(start, size, visited):
if len(visited) == size * size:
return 1
moves = get_potential_knight_moves(start, size, visited)
count = 0
for move in moves:
tmp_visted = visited.copy()
tmp_visted.add(move)
count += run_knights_tour(move, size, tmp_visted)
return count
def count_knights_tours(size):
count = 0
for i in range(size):
for j in range(size):
start = Position(i, j)
count += run_knights_tour(start, size, set([start]))
return count
assert count_knights_tours(1) == 1
assert count_knights_tours(2) == 0
assert count_knights_tours(3) == 0
assert count_knights_tours(4) == 0
assert count_knights_tours(5) == 1728