Play around with SBRT for a bit, I'm probably doing it wrong
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@ -1,7 +1,8 @@
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import gym
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#import numpy as np
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import gym_tic_tac_toe #noqa
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import math
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import random
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import gym_tic_tac_toe
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import gym
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def random_plus_middle_move(moves, p):
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@ -10,6 +11,8 @@ def random_plus_middle_move(moves, p):
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else:
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m = random_move(moves, p)
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return m
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def random_move(moves, p):
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m = random.choice(moves)
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return m
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@ -17,56 +20,83 @@ def random_move(moves, p):
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env = gym.make('tic_tac_toe-v1')
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num_episodes = 2000
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p1 = 0.48
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p2 = 0.55
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alpha = 0.01
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beta = 0.01
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# theta = math.log((p1*(1-p0)) / (p0*(1-p1)));
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h1 = math.log((1 - alpha) / beta) / (math.log(p2 / p1) + math.log((1 - p1) / (1 - p2)))
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h2 = math.log((1 - beta) / alpha) / (math.log(p2 / p1) + math.log((1 - p1) / (1 - p2)))
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ss = math.log((1 - p1) / (1 - p2)) / (math.log(p2 / p1) + math.log((1 - p1) / (1 - p2)))
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print("ss:", ss)
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print("h1:", h1)
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print("h2:", h2)
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num_episodes = 300
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num_steps_per_episode = 10
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collected_rewards = []
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oom =1
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oom = 1
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for i in range(num_episodes):
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s = env.reset()
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#print (s)
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#print ("starting new episode")
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#env.render()
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#print ("started")
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# print (s)
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# print ("starting new episode")
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# env.render()
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# print ("started")
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total_reward = 0
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done = False
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om = oom;
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#run one episode
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#print("starting player: ", om);
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# run one episode
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# print("starting player: ", om);
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for j in range(num_steps_per_episode):
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moves = env.move_generator()
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#print ("moves: ", moves)
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# print ("moves: ", moves)
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if (not moves):
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#print ("out of moves")
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# print ("out of moves")
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break
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if (len(moves)==1):
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#only a single possible move
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if (len(moves) == 1):
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# only a single possible move
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m = moves[0]
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else:
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if (om == 1):
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m = random_plus_middle_move(moves, om)
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#m = random_move(moves, om)
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#m = random_move(moves, om)
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else:
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m = random_move(moves, om)
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#print ("m: ", m)
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# print ("m: ", m)
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s1, reward, done, _ = env.step(m)
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om = -om
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#env.render()
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# env.render()
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total_reward += reward
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s = s1
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if done:
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#print ("game over: ", reward)
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# print ("game over: ", reward)
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break
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env.render()
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# env.render()
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total_reward *= oom;
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collected_rewards.append(total_reward)
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#print ("total reward", total_reward, "after episode: ", i+1, ". steps: ", j+1)
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# print ("total reward", total_reward, "after episode: ", i+1, ". steps: ", j+1)
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oom = -oom
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print ("after "+ str(i+1) + " episodes:");
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average = sum(collected_rewards) / num_episodes;
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print ("average score: ", average);
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print("percentage: ", round(100*(average+1)/2,1));
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print("after " + str(i + 1) + " episodes:")
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average = sum(collected_rewards) / num_episodes
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percentage = round(100*(average + 1) / 2, 1)
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score = percentage/100 * (i+1);
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print("average score: ", average)
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print("percentage: ", percentage)
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print("score:", score)
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print()
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y1 = ss * (i+1) - h1
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print ("y1:", y1)
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y2 = ss * (i+1) + h2
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print ("y2:", y2)
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if (score <= y1):
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print("accept null hypothesis")
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break
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if (score >= y2):
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print("reject null hypothesis")
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break
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print("#########")
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