cgame.py 15 KB

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  1. #!/usr/bin/env python
  2. """
  3. Class defenition for Carcassonne score keeping system.
  4. Copyright 2018 George C. Privon
  5. This program is free software: you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation, either version 3 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program. If not, see <http://www.gnu.org/licenses/>.
  15. """
  16. import re as _re
  17. import sys as _sys
  18. from datetime import datetime as _datetime
  19. import sqlite3 as _sqlite3
  20. import numpy as _np
  21. class cgame:
  22. """
  23. Carcassonne game object
  24. """
  25. def __init__(self):
  26. """
  27. Initialize some variables and set up a game
  28. """
  29. self.commands = [('r', 'record score'),
  30. ('n', 'next turn'),
  31. ('e', 'end game (or end play if already in postgame scoring)'),
  32. ('s', '(current) score and game status'),
  33. ('q', 'quit (will be removed for real gameplay'),
  34. ('?', 'print help')]
  35. self.conn = _sqlite3.connect('CarcassonneScore.db')
  36. self.cur = self.conn.cursor()
  37. self.setupGame()
  38. def showCommands(self):
  39. """
  40. Print out a list of valid commands for in-game play.
  41. """
  42. _sys.stderr.write('Possible commands:\n')
  43. for entry in self.commands:
  44. _sys.stderr.write('\t' + entry[0] + ': ' + entry[1] + '\n')
  45. def setupGame(self):
  46. """
  47. Initialize a game
  48. """
  49. # game state information
  50. self.state = 0 # 0 for main game, 1 for postgame, 2 for ended game
  51. self.nscore = 0
  52. self.ntile = 0 # number of tiles played
  53. self.nbuilder = 0 # number of tiles placed due to builders
  54. self.totaltiles = 72 # may be increased by expansions
  55. self.tokens = ["Meeple"]
  56. self.tiletypes = []
  57. self.scoretypes = ["Meadow", "City", "Road"]
  58. # get players for this game
  59. _sys.stdout.write("Collecting player information...\n")
  60. while self.getPlayers():
  61. continue
  62. # get expansions used for this game
  63. _sys.stdout.write("Collecting expansion information...\n")
  64. while self.getExpansions():
  65. continue
  66. # get general game info (do this after expansions because
  67. # expansion info is entered into the game table)
  68. while self.gameInfo():
  69. continue
  70. def gameInfo(self):
  71. """
  72. Load basic game info
  73. """
  74. location = input("Where is the game being played? ")
  75. starttime = _datetime.utcnow().strftime("%Y-%m-%dT%H:%M")
  76. self.cur.execute('INSERT INTO games (location, starttime, expansions) VALUES ("' + location + '","' + starttime + '","' + ','.join(["{0:d}".format(x) for x in self.expansionIDs]) + '")')
  77. gID = self.cur.execute('select last_insert_rowid();').fetchall()[0]
  78. self.conn.commit()
  79. self.gameID = gID[0]
  80. def getPlayers(self):
  81. """
  82. Get a list of possible players from the database
  83. """
  84. self.players = []
  85. dbplayers = self.cur.execute('''SELECT * FROM players''').fetchall()
  86. if len(dbplayers):
  87. for dbplayer in dbplayers:
  88. _sys.stdout.write("{0:d}) ".format(dbplayer[0]) + dbplayer[1] + '\n')
  89. playerinput = input("Please list the IDs for the players in this game (in order of play): ")
  90. playerIDs = [int(x) for x in playerinput.split()]
  91. for playerID in playerIDs:
  92. matched = False
  93. for dbplayer in dbplayers:
  94. if playerID == dbplayer[0]:
  95. self.players.append((playerID, dbplayer[1]))
  96. matched = True
  97. continue
  98. if not matched:
  99. _sys.stderr.write("Error: player ID {0:d} does not match an option from the list.\n".format(playerID))
  100. return 1
  101. else:
  102. _sys.stderr.write("Error: players table empty. Exiting.\n")
  103. _sys.exit(-1)
  104. return 0
  105. def getExpansions(self):
  106. """
  107. Get a list of playable expansions
  108. """
  109. self.expansionIDs = []
  110. for minisel in range(0, 2):
  111. if minisel:
  112. exptype = "mini"
  113. else:
  114. exptype = "large"
  115. dbexpans = self.cur.execute('''SELECT expansionID,name,tokens,Ntiles,tiletypes,scoretypes FROM expansions WHERE active==1 and mini=={0:d}'''.format(minisel)).fetchall()
  116. if len(dbexpans):
  117. for dbexpan in dbexpans:
  118. _sys.stdout.write("{0:d}) ".format(dbexpan[0]) + dbexpan[1] + '\n')
  119. expaninput = input("Please list the numbers for the " + exptype + " used in this game: ")
  120. expanIDs = [int(x) for x in expaninput.split()]
  121. for expanID in expanIDs:
  122. matched = False
  123. # add the builder cmd if Traders & Builders is used
  124. if expanID == 2:
  125. self.commands.append(('b', 'additional turn for a player due to a builder (use for the 2nd play by a player)'))
  126. for dbexpan in dbexpans:
  127. if expanID == dbexpan[0]:
  128. self.expansionIDs.append(expanID)
  129. self.totaltiles += dbexpan[3]
  130. ttypes = dbexpan[2].split(',')
  131. if len(ttypes):
  132. # add new types of tokens
  133. for token in ttypes:
  134. if token:
  135. self.tokens.append(token)
  136. tiletypes = dbexpan[4].split(',')
  137. if len(tiletypes):
  138. # add special tiles
  139. for tile in tiletypes:
  140. if tile:
  141. self.tiletypes.append(tile)
  142. stypes = dbexpan[5].split(',')
  143. if len(stypes):
  144. # add new types of scoring
  145. for stype in stypes:
  146. if stype:
  147. self.scoretypes.append(stype)
  148. matched = True
  149. continue
  150. if not matched:
  151. _sys.stderr.write("Error: expansion ID {0:d} does not match an option from the list.\n".format(expanID))
  152. return 1
  153. else:
  154. _sys.stdout.write("No active " + exptype + " expansions found. Continuing.\n")
  155. return 0
  156. def recordScore(self):
  157. """
  158. Record a score event in the game
  159. """
  160. score = {'playerIDs': -1,
  161. 'ingame' : 1,
  162. 'points' : 0,
  163. 'scoretype': '',
  164. 'sharedscore': 0,
  165. 'tokens': '',
  166. 'extras': '',
  167. 'comments': ''}
  168. if self.state:
  169. score['ingame'] = 0
  170. # ask the user which player scored
  171. VALID = False
  172. while not VALID:
  173. for player in self.players:
  174. _sys.stdout.write("{0:d}) ".format(player[0]) + player[1] + "\n")
  175. scoreplayers = input("Please enter the numbers for the players who scored: ")
  176. score['playerIDs'] = [int(x) for x in scoreplayers.split()]
  177. VALID = True
  178. if len(score['playerIDs']) > 1:
  179. score['sharedscore'] = 1
  180. # get points for score
  181. VALID = False
  182. while not VALID:
  183. points = input("Enter the total number of points: ")
  184. try:
  185. score['points'] = int(points)
  186. VALID = True
  187. except:
  188. _sys.stderr.write("'" + points + "' is not a valid score.\n")
  189. continue
  190. # get the score type
  191. VALID = False
  192. while not VALID:
  193. for i, stype in enumerate(self.scoretypes):
  194. _sys.stdout.write("{0:d}) ".format(i+1) + stype + "\n")
  195. # here i want a list of valid score types
  196. stype = input("Please select the score type: ")
  197. try:
  198. score['scoretype'] = self.scoretypes[int(stype)-1]
  199. VALID = True
  200. except:
  201. _sys.stderr.write("'" + stype + "' is not a valid score type.\n")
  202. continue
  203. # see which token scored
  204. # really this should be expanded to allow multiple token types for one score
  205. if len(self.tokens) > 1:
  206. VALID = False
  207. while not VALID:
  208. for i, token in enumerate(self.tokens):
  209. _sys.stdout.write("{0:d}) ".format(i+1) + token + "\n")
  210. tID = input("Please select the token type(s): ")
  211. try:
  212. score['tokens'] = ','.join(self.tokens[int(x)-1] for x in tID.split())
  213. VALID = True
  214. except:
  215. _sys.stderr.write("'" + tID + "' is not a valid token.\n")
  216. continue
  217. else:
  218. score['tokens'] = self.tokens[0]
  219. score['comments'] = input("Enter any comments you would like saved (a single line): ")
  220. # now construct a SQL query
  221. for player in score['playerIDs']:
  222. command = 'INSERT INTO scores VALUES ({0:d},'.format(self.gameID)
  223. command = command + '{0:d},'.format(player)
  224. command = command + '{0:d},{1:d},'.format(self.ntile,
  225. self.nscore)
  226. command = command + '{0:d},{1:d},'.format(score['ingame'],
  227. score['points'])
  228. command = command + '"' + score['scoretype'] + '",'
  229. command = command + '{0:d},'.format(score['sharedscore'])
  230. command = command + '"' + score['tokens'] + '",'
  231. command = command + '"' + score['extras'] + '",'
  232. command = command + '"' + score['comments'] + '")'
  233. self.cur.execute(command)
  234. self.conn.commit()
  235. # now increment the score number
  236. self.nscore += 1
  237. return 0
  238. def advanceTurn(self, builder=False):
  239. """
  240. Make a new entry in the turns table
  241. """
  242. cmdtime = _datetime.utcnow().strftime("%Y-%m-%dT%H:%M")
  243. command = '''INSERT INTO turns VALUES ({0:d}, {1:d}, "'''.format(self.gameID, self.ntile)
  244. command = command + cmdtime + '"'
  245. if builder:
  246. bID = 1
  247. else:
  248. bID = 0
  249. # compute playerID based on the turn number minus nbuilders / number of players
  250. player = self.getCurrentPlayer()
  251. command = command + ', {0:d}, {1:d})'.format(bID, player[0])
  252. self.cur.execute(command)
  253. self.conn.commit()
  254. self.ntile += 1
  255. if builder:
  256. self.nbuilder += 1
  257. def runGame(self):
  258. """
  259. Main routine for entering games
  260. """
  261. # here wait for input for scores, advancing to next round, or completion of game
  262. # for each step of entry, present a series of options, based on the list
  263. # of playerIDs and expansions
  264. while self.state < 2:
  265. # set up prompt based on current round
  266. if self.state:
  267. prompt = "postgame > "
  268. else:
  269. player = self.getCurrentPlayer()
  270. prompt = "round: {0:d}, turn: {1:d} ".format(int(_np.floor((self.ntile-self.nbuilder) / len(self.players))),
  271. self.ntile-self.nbuilder)
  272. prompt = prompt + "(" + player[1] + ") > "
  273. try:
  274. cmd = input(prompt)
  275. except (EOFError, KeyboardInterrupt):
  276. _sys.stderr.write('Improper input. Please retry\n')
  277. self.showCommands()
  278. if _re.match('e', cmd, _re.IGNORECASE):
  279. self.advanceState()
  280. elif _re.match('q', cmd, _re.IGNORECASE):
  281. _sys.exit(0)
  282. elif _re.match('s', cmd, _re.IGNORECASE):
  283. self.printStatus(tilestats=True)
  284. elif _re.match('n', cmd, _re.IGNORECASE):
  285. self.advanceTurn(builder=False)
  286. elif _re.match('r', cmd, _re.IGNORECASE):
  287. self.recordScore()
  288. elif _re.match('b', cmd, _re.IGNORECASE):
  289. self.advanceTurn(builder=True)
  290. elif _re.match('\?', cmd, _re.IGNORECASE):
  291. self.showCommands()
  292. else:
  293. _sys.stderr.write('Command not understood. Please try again.\n')
  294. self.showCommands()
  295. if state == 2:
  296. #game is over. write end time to the games table
  297. time = _datetime.utcnow().strftime("%Y-%m-%dT%H:%M")
  298. self.cur.execute('''UPDATE games SET endtime = "''' + time + '''" WHERE gameID = ''' + str(gameID))
  299. conn.commit()
  300. printStatus(tilestats=False)
  301. #### Is there a way to capture "ineffective" uses? For example,
  302. #### meeples that don't score points because they end up in a meadow that's
  303. #### controled by someone else?
  304. return 0
  305. def advanceState(self):
  306. """
  307. End the main part of play or finish the game
  308. """
  309. self.state += 1
  310. if self.state < 2:
  311. self.commands = [('r', 'record score'),
  312. ('e', 'end game (or end play if already in postgame scoring)'),
  313. ('s', '(current) score and game status'),
  314. ('?', 'print help')]
  315. _sys.stdout.write("At the end of regulation... ")
  316. printStatus(tilestats=False, sort=True)
  317. else:
  318. _sys.stdout.write("Game over!\n\n")
  319. printStatus(tilestats=False, sort=True)
  320. def printStatus(self, tilestats=False, sort=False):
  321. """
  322. Print the total score (current or final) for the specified gameID
  323. tilestats controls printing info on the number of tiles played/remaining
  324. sort will trigger sorting by score
  325. """
  326. _sys.stdout.write('\nCurrent Score\n')
  327. for player in self.players:
  328. a = self.cur.execute('SELECT points FROM scores WHERE gameID={0:d} and playerID={1:d}'.format(self.gameID, player[0]))
  329. res = a.fetchall()
  330. score = _np.sum(res)
  331. _sys.stdout.write('\t' + player[1]+ ': {0:1.0f}'.format(score) + '\n')
  332. _sys.stdout.write("{0:1.0f} tiles played, {1:1.0f} remaining.\n\n".format(self.ntile,
  333. self.totaltiles - self.ntile))
  334. def getCurrentPlayer(self):
  335. """
  336. Return the current player, determined by the turn number
  337. """
  338. return self.players[int((self.ntile - self.nbuilder) % len(self.players))]