forked from Hanabi/hanabi-league
182 lines
7.7 KiB
Python
182 lines
7.7 KiB
Python
from typing import List, Dict, Tuple
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import utils
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from database import conn_manager
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import psycopg2.extras
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from log_setup import logger
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def rating_change(user_ratings: Dict[int, float], variant_rating: float, win: bool) -> Tuple[Dict[int, float], float]:
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"""
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@param user_ratings: Mapping of user ids to ratings that played this game.
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@param variant_rating: Rating of the variant that was played
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@param win: Whether the team won the game
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@return: Mapping of user ids to their rating *changes* and *change* in variant rating
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"""
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# TODO: Implement this properly (We have not decided how this will work exactly)
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# For now, return +1 elo for players and -1 elo for variants
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return {user_id: 1 for user_id in user_ratings.keys()}, -1
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def next_game_to_rate():
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cur = conn_manager.get_new_cursor()
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cur.execute("SELECT games.id FROM games "
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"LEFT OUTER JOIN user_ratings"
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" ON games.league_id = user_ratings.league_id "
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"WHERE user_ratings.league_id IS NULL "
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"ORDER BY games.league_id ASC "
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"LIMIT 1"
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)
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query_result = cur.fetchone()
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if query_result is None:
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return
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(game_id,) = query_result
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return game_id
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def get_current_user_ratings(user_ids: List[int], rating_type: int) -> Dict[int, float]:
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"""
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Fetches the current ratings for specified players and rating type from DB
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@return: Mapping user_id -> current rating
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"""
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cur = conn_manager.get_new_cursor()
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cur.execute("SELECT user_id, rating FROM user_base_ratings "
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"WHERE user_id IN ({}) AND type = %s".format(", ".join("%s" for _ in user_ids)),
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user_ids + [rating_type]
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)
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base_ratings = cur.fetchall()
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# This query is a bit tricky:
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# The subclause transforms the user_ratings table into the same table (with lesse columns), except that we now
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# group entries corresponding to the same (user_id, type) and replace all of them with just the maximum league id
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# Then we can do an inner join with this specific table, where we join again on (user_id, type), but now also
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# require that the league id matches the max_league_id column from the subclause-generated table.
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# Since an inner join only returns rows that match both tables, this will act as a filter on the initial table,
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# even though we do not retrieve any values from the subclause-table
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cur.execute("SELECT user_ratings.user_id, value_after FROM user_ratings "
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"INNER JOIN ("
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" SELECT user_id, type, MAX(league_id) AS max_league_id"
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" FROM user_ratings "
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" GROUP BY (user_id, type)"
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" ) AS latest_user_ratings "
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" ON"
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" user_ratings.league_id = latest_user_ratings.max_league_id"
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" AND user_ratings.user_id = latest_user_ratings.user_id"
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" AND user_ratings.type = latest_user_ratings.type "
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"WHERE "
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" user_ratings.user_id IN ({})"
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" AND user_ratings.type = %s"
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.format(", ".join("%s" for _ in user_ids))
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, user_ids + [rating_type]
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)
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current_ratings = cur.fetchall()
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ratings: Dict[int, float] = {}
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for user_id, base_rating in base_ratings:
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ratings[user_id] = base_rating
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for user_id, rating in current_ratings:
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ratings[user_id] = rating
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return ratings
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def get_current_variant_rating(variant_id: int, player_count: int) -> float:
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cur = conn_manager.get_new_cursor()
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# Again, this query is tricky. For explanation, see the corresponding query for the user ratings
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cur.execute("SELECT value_after FROM variant_ratings "
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"INNER JOIN ("
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" SELECT variant_id, player_count, MAX(league_id) AS max_league_id"
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" FROM variant_ratings "
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" GROUP BY (variant_id, player_count)"
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" ) AS latest_variant_ratings "
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" ON"
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" variant_ratings.league_id = latest_variant_ratings.max_league_id "
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" AND variant_ratings.variant_id = latest_variant_ratings.variant_id "
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" AND variant_ratings.player_count = latest_variant_ratings.player_count "
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"WHERE variant_ratings.variant_id = %s AND variant_ratings.player_count = %s",
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(variant_id, player_count)
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)
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query_result = cur.fetchone()
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if query_result is not None:
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(current_rating, ) = query_result
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return current_rating
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# Reaching this point of code execution just means this is the first game for this variant rating
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cur.execute("SELECT rating FROM variant_base_ratings "
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"WHERE variant_id = %s AND player_count = %s",
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(variant_id, player_count)
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)
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query_result = cur.fetchone()
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if query_result is None:
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err_msg = "Failed to get current variant rating for variant {}.".format(variant_id)
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logger.error(err_msg)
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raise ValueError(err_msg)
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(base_rating, ) = query_result
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return base_rating
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def process_rating_of_next_game():
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game_id = next_game_to_rate()
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if game_id is None:
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logger.verbose("All games already processed for rating changes.")
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return
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logger.verbose("Processing rating for game {}".format(game_id))
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cur = conn_manager.get_new_cursor()
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# Fetch data on the game played
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cur.execute(
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"SELECT games.league_id, games.num_players, games.score, variants.num_suits, variants.clue_starved, variants.id "
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"FROM games "
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"INNER JOIN variants "
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" ON games.variant_id = variants.id "
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"WHERE games.id = %s",
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(game_id,)
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)
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league_id, num_players, score, num_suits, clue_starved, variant_id = cur.fetchone()
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# Fetch game participants
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cur.execute("SELECT game_participants.user_id FROM games "
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"INNER JOIN game_participants "
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" ON games.id = game_participants.game_id "
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"WHERE games.id = %s",
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(game_id,)
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)
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user_ids = cur.fetchall()
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if len(user_ids) != num_players:
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err_msg = "Player number mismatch: Expected {} participants for game {}, but only found {} in DB: [{}]".format(
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num_players, game_id, len(user_ids), ", ".join(user_ids)
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)
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logger.error(err_msg)
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raise ValueError(err_msg)
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# Fetch current ratings of variant and players involved
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rating_type = utils.get_rating_type(clue_starved)
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user_ratings = get_current_user_ratings(user_ids, rating_type)
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variant_rating = get_current_variant_rating(variant_id, num_players)
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# Calculate changes in rating
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# TODO: If we want to use, we still have to think about how to define the K-factor and add it here
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user_changes, variant_change = rating_change(user_ratings, variant_rating, score == 5 * num_suits)
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# Update database for variants
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cur.execute("INSERT INTO variant_ratings (league_id, variant_id, player_count, change, value_after) "
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"VALUES (%s, %s, %s, %s, %s)",
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(league_id, variant_id, num_players, variant_change, variant_rating + variant_change)
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)
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# Note: We do not commit here, only after players have been processed as well
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user_ratings_vals = []
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for user_id, change in user_changes.items():
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user_ratings_vals.append((league_id, user_id, rating_type, change, user_ratings[user_id] + change))
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# This updates the player rating.
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psycopg2.extras.execute_values(
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cur,
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"INSERT INTO user_ratings (league_id, user_id, type, change, value_after) "
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"VALUES %s",
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user_ratings_vals
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)
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conn_manager.get_connection().commit()
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