I think we can play against a random bot now
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parent
bae1e73692
commit
a33826219d
8
bot.py
8
bot.py
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@ -30,7 +30,7 @@ class Bot:
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def restore_model(self):
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with self.graph.as_default():
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self.network.restore_model()
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def get_session(self):
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return self.session
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@ -40,6 +40,10 @@ class Bot:
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def get_network(self):
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return self.network
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def make_random_move(self, board, sym, roll):
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legal_moves = Board.calculate_legal_states(board, sym, roll)
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return random.choice(list(legal_moves))
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def make_move(self, board, sym, roll):
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# print(Board.pretty(board))
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legal_moves = Board.calculate_legal_states(board, sym, roll)
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@ -49,4 +53,4 @@ class Bot:
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#print("Found the best state, being:", np.array(move_scores).argmax())
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return best_move_pair
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# return random.choice(list(legal_moves))
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58
game.py
58
game.py
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@ -74,45 +74,53 @@ class Game:
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print(self.board)
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print("--------------------------------")
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def play(self):
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count = 0
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while Board.outcome(self.board) is None:
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count += 1
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print("Turn:",count)
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def play(self, amount_of_games):
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outcomes = []
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for i in range(amount_of_games):
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count = 0
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self.board = Board.initial_state
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while Board.outcome(self.board) is None:
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count += 1
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print("Turn:",count)
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roll = self.roll()
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roll = self.roll()
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print("type of board: ", type(self.board))
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print("Board:",self.board)
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print("{} rolled: {}".format(self.p1.get_sym(), roll))
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print("type of board: ", type(self.board))
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print("Board:",self.board)
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print("{} rolled: {}".format(self.p1.get_sym(), roll))
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self.board = (self.p1.make_move(self.board, self.p1.get_sym(), roll))[0]
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self.board = (self.p1.make_move(self.board, self.p1.get_sym(), roll))[0]
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print(self.board)
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print(self.board)
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print()
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print()
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count += 1
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count += 1
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roll = self.roll()
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print("{} rolled: {}".format(self.p2.get_sym(), roll))
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self.board = self.p2.make_move(self.board, self.p2.get_sym(), roll)[0]
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roll = self.roll()
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print("{} rolled: {}".format(self.p2.get_sym(), roll))
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self.board = Board.flip(self.p2.make_random_move(Board.flip(self.board), self.p2.get_sym(), roll))
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if Board.outcome(self.board)[1] > 0:
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print_winner = "1: White, " + str(Board.outcome(self.board))
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else:
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print_winner = "-1: Black " + str(Board.outcome(self.board))
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print("The winner is {}!".format(print_winner))
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print("Final board:",Board.pretty(self.board))
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return count
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if Board.outcome(self.board)[1] > 0:
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print_winner = "1: White, " + str(Board.outcome(self.board))
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else:
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print_winner = "-1: Black " + str(Board.outcome(self.board))
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outcomes.append(Board.outcome(self.board)[1])
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print("The winner is {}!".format(print_winner))
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print("Final board:",Board.pretty(self.board))
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return outcomes
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# return count
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highest = 0
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#for i in range(100000):
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# try:
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g = Game()
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g.train_model()
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#g.train_model()
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outcomes = g.play(2000)
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print(outcomes)
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print(sum(outcomes))
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#count = g.play()
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# highest = max(highest,count)
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# except KeyboardInterrupt:
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