318 lines
16 KiB
Python
Executable File
318 lines
16 KiB
Python
Executable File
#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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#
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# Copyright 2008, Carl Gherardi
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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########################################################################
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import sys
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import logging
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from HandHistoryConverter import *
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# FullTilt HH Format converter
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class FullTilt(HandHistoryConverter):
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# Static regexes
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re_GameInfo = re.compile('- (?P<CURRENCY>\$|)?(?P<SB>[.0-9]+)/\$?(?P<BB>[.0-9]+) (Ante \$(?P<ANTE>[.0-9]+) )?- (?P<LIMIT>(No Limit|Pot Limit|Limit))? (?P<GAME>(Hold\'em|Omaha Hi|Razz))')
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re_SplitHands = re.compile(r"\n\n+")
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re_HandInfo = re.compile('.*#(?P<HID>[0-9]+): Table (?P<TABLE>[- a-zA-Z]+) (\((?P<TABLEATTRIBUTES>.+)\) )?- \$?(?P<SB>[.0-9]+)/\$?(?P<BB>[.0-9]+) (Ante \$(?P<ANTE>[.0-9]+) )?- (?P<GAMETYPE>[a-zA-Z\' ]+) - (?P<DATETIME>.*)')
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re_Button = re.compile('^The button is in seat #(?P<BUTTON>\d+)', re.MULTILINE)
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re_PlayerInfo = re.compile('Seat (?P<SEAT>[0-9]+): (?P<PNAME>.*) \(\$(?P<CASH>[.0-9]+)\)\n')
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re_Board = re.compile(r"\[(?P<CARDS>.+)\]")
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def __init__(self, in_path = '-', out_path = '-', follow = False, autostart=True):
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"""\
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in_path (default '-' = sys.stdin)
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out_path (default '-' = sys.stdout)
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follow : whether to tail -f the input"""
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HandHistoryConverter.__init__(self, in_path, out_path, sitename="FullTilt", follow=follow)
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logging.info("Initialising FullTilt converter class")
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self.filetype = "text"
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self.codepage = "cp1252"
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if autostart:
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self.start()
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def compilePlayerRegexs(self, hand):
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players = set([player[1] for player in hand.players])
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if not players <= self.compiledPlayers: # x <= y means 'x is subset of y'
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# we need to recompile the player regexs.
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self.compiledPlayers = players
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player_re = "(?P<PNAME>" + "|".join(map(re.escape, players)) + ")"
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logging.debug("player_re: " + player_re)
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self.re_PostSB = re.compile(r"^%s posts the small blind of \$?(?P<SB>[.0-9]+)" % player_re, re.MULTILINE)
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self.re_PostBB = re.compile(r"^%s posts (the big blind of )?\$?(?P<BB>[.0-9]+)" % player_re, re.MULTILINE)
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self.re_Antes = re.compile(r"^%s antes \$?(?P<ANTE>[.0-9]+)" % player_re, re.MULTILINE)
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self.re_BringIn = re.compile(r"^%s brings in for \$?(?P<BRINGIN>[.0-9]+)" % player_re, re.MULTILINE)
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self.re_PostBoth = re.compile(r"^%s posts small \& big blinds \[\$? (?P<SBBB>[.0-9]+)" % player_re, re.MULTILINE)
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self.re_HeroCards = re.compile(r"^Dealt to %s(?: \[(?P<OLDCARDS>.+?)\])?( \[(?P<NEWCARDS>.+?)\])" % player_re, re.MULTILINE)
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self.re_Action = re.compile(r"^%s(?P<ATYPE> bets| checks| raises to| completes it to| calls| folds)(\s\$(?P<BET>[.\d]+))?" % player_re, re.MULTILINE)
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self.re_ShowdownAction = re.compile(r"^%s shows \[(?P<CARDS>.*)\]" % player_re, re.MULTILINE)
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self.re_CollectPot = re.compile(r"^Seat (?P<SEAT>[0-9]+): %s (\(button\) |\(small blind\) |\(big blind\) )?(collected|showed \[.*\] and won) \(\$(?P<POT>[.\d]+)\)(, mucked| with.*)" % player_re, re.MULTILINE)
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self.re_SitsOut = re.compile(r"^%s sits out" % player_re, re.MULTILINE)
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self.re_ShownCards = re.compile(r"^Seat (?P<SEAT>[0-9]+): %s \(.*\) showed \[(?P<CARDS>.*)\].*" % player_re, re.MULTILINE)
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def readSupportedGames(self):
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return [["ring", "hold", "nl"],
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["ring", "hold", "pl"],
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["ring", "hold", "fl"],
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["ring", "stud", "fl"],
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["ring", "omaha", "pl"]
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]
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def determineGameType(self, handText):
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# Full Tilt Poker Game #10777181585: Table Deerfly (deep 6) - $0.01/$0.02 - Pot Limit Omaha Hi - 2:24:44 ET - 2009/02/22
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# Full Tilt Poker Game #10773265574: Table Butte (6 max) - $0.01/$0.02 - Pot Limit Hold'em - 21:33:46 ET - 2009/02/21
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# Full Tilt Poker Game #9403951181: Table CR - tay - $0.05/$0.10 - No Limit Hold'em - 9:40:20 ET - 2008/12/09
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# Full Tilt Poker Game #10809877615: Table Danville - $0.50/$1 Ante $0.10 - Limit Razz - 21:47:27 ET - 2009/02/23
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info = {'type':'ring'}
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m = self.re_GameInfo.search(handText)
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if not m:
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return None
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mg = m.groupdict()
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# translations from captured groups to our info strings
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limits = { 'No Limit':'nl', 'Pot Limit':'pl', 'Limit':'fl' }
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games = { # base, category
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"Hold'em" : ('hold','holdem'),
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'Omaha Hi' : ('hold','omahahi'),
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'Razz' : ('stud','razz'),
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'7 Card Stud' : ('stud','studhi')
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}
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currencies = { u' €':'EUR', '$':'USD', '':'T$' }
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if 'LIMIT' in mg:
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info['limitType'] = limits[mg['LIMIT']]
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if 'GAME' in mg:
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(info['base'], info['category']) = games[mg['GAME']]
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if 'SB' in mg:
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info['sb'] = mg['SB']
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if 'BB' in mg:
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info['bb'] = mg['BB']
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if 'CURRENCY' in mg:
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info['currency'] = currencies[mg['CURRENCY']]
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# NB: SB, BB must be interpreted as blinds or bets depending on limit type.
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return info
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def readHandInfo(self, hand):
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m = self.re_HandInfo.search(hand.handText,re.DOTALL)
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#print m.groups()
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hand.handid = m.group('HID')
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hand.tablename = m.group('TABLE')
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hand.starttime = time.strptime(m.group('DATETIME'), "%H:%M:%S ET - %Y/%m/%d")
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# These work, but the info is already in the Hand class - should be used for tourneys though.
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# m.group('SB')
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# m.group('BB')
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# m.group('GAMETYPE')
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# Stars format (Nov 10 2008): 2008/11/07 12:38:49 CET [2008/11/07 7:38:49 ET]
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# or : 2008/11/07 12:38:49 ET
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# Not getting it in my HH files yet, so using
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# 2008/11/10 3:58:52 ET
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#TODO: Do conversion from GMT to ET
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#TODO: Need some date functions to convert to different timezones (Date::Manip for perl rocked for this)
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#hand.starttime = "%d/%02d/%02d %d:%02d:%02d ET" %(int(m.group('YEAR')), int(m.group('MON')), int(m.group('DAY')),
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##int(m.group('HR')), int(m.group('MIN')), int(m.group('SEC')))
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#FIXME: hand.buttonpos = int(m.group('BUTTON'))
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def readPlayerStacks(self, hand):
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m = self.re_PlayerInfo.finditer(hand.handText)
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players = []
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for a in m:
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hand.addPlayer(int(a.group('SEAT')), a.group('PNAME'), a.group('CASH'))
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def markStreets(self, hand):
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# PREFLOP = ** Dealing down cards **
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if hand.gametype['base'] == 'hold':
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m = re.search(r"\*\*\* HOLE CARDS \*\*\*(?P<PREFLOP>.+(?=\*\*\* FLOP \*\*\*)|.+)"
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r"(\*\*\* FLOP \*\*\*(?P<FLOP> \[\S\S \S\S \S\S\].+(?=\*\*\* TURN \*\*\*)|.+))?"
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r"(\*\*\* TURN \*\*\* \[\S\S \S\S \S\S] (?P<TURN>\[\S\S\].+(?=\*\*\* RIVER \*\*\*)|.+))?"
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r"(\*\*\* RIVER \*\*\* \[\S\S \S\S \S\S \S\S] (?P<RIVER>\[\S\S\].+))?", hand.handText,re.DOTALL)
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elif hand.gametype['base'] == "stud": # or should this be gametype['category'] == 'razz'
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m = re.search(r"(?P<ANTES>.+(?=\*\*\* 3RD STREET \*\*\*)|.+)"
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r"(\*\*\* 3RD STREET \*\*\*(?P<THIRD>.+(?=\*\*\* 4TH STREET \*\*\*)|.+))?"
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r"(\*\*\* 4TH STREET \*\*\*(?P<FOURTH>.+(?=\*\*\* 5TH STREET \*\*\*)|.+))?"
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r"(\*\*\* 5TH STREET \*\*\*(?P<FIFTH>.+(?=\*\*\* 6TH STREET \*\*\*)|.+))?"
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r"(\*\*\* 6TH STREET \*\*\*(?P<SIXTH>.+(?=\*\*\* 7TH STREET \*\*\*)|.+))?"
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r"(\*\*\* 7TH STREET \*\*\*(?P<SEVENTH>.+))?", hand.handText,re.DOTALL)
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hand.addStreets(m)
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def readCommunityCards(self, hand, street): # street has been matched by markStreets, so exists in this hand
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if street in ('FLOP','TURN','RIVER'): # a list of streets which get dealt community cards (i.e. all but PREFLOP)
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#print "DEBUG readCommunityCards:", street, hand.streets.group(street)
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m = self.re_Board.search(hand.streets[street])
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hand.setCommunityCards(street, m.group('CARDS').split(' '))
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def readBlinds(self, hand):
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try:
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m = self.re_PostSB.search(hand.handText)
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hand.addBlind(m.group('PNAME'), 'small blind', m.group('SB'))
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except: # no small blind
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hand.addBlind(None, None, None)
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for a in self.re_PostBB.finditer(hand.handText):
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hand.addBlind(a.group('PNAME'), 'big blind', a.group('BB'))
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for a in self.re_PostBoth.finditer(hand.handText):
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hand.addBlind(a.group('PNAME'), 'small & big blinds', a.group('SBBB'))
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def readAntes(self, hand):
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logging.debug("reading antes")
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m = self.re_Antes.finditer(hand.handText)
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for player in m:
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logging.debug("hand.addAnte(%s,%s)" %(player.group('PNAME'), player.group('ANTE')))
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hand.addAnte(player.group('PNAME'), player.group('ANTE'))
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def readBringIn(self, hand):
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m = self.re_BringIn.search(hand.handText,re.DOTALL)
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if m:
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logging.debug("Player bringing in: %s for %s" %(m.group('PNAME'), m.group('BRINGIN')))
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hand.addBringIn(m.group('PNAME'), m.group('BRINGIN'))
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else:
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logging.warning("No bringin found")
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def readButton(self, hand):
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hand.buttonpos = int(self.re_Button.search(hand.handText).group('BUTTON'))
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def readHeroCards(self, hand):
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m = self.re_HeroCards.search(hand.handText)
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if(m == None):
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#Not involved in hand
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hand.involved = False
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else:
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hand.hero = m.group('PNAME')
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# "2c, qh" -> set(["2c","qc"])
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# Also works with Omaha hands.
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cards = m.group('NEWCARDS')
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cards = [c.strip() for c in cards.split(' ')]
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hand.addHoleCards(cards, m.group('PNAME'))
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def readStudPlayerCards(self, hand, street):
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# This could be the most tricky one to get right.
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# It looks for cards dealt in 'street',
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# which may or may not be in the section of the hand designated 'street' by markStreets earlier.
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# Here's an example at FTP of what 'THIRD' and 'FOURTH' look like to hero PokerAscetic
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#
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#"*** 3RD STREET ***
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#Dealt to BFK23 [Th]
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#Dealt to cutiepr1nnymaid [8c]
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#Dealt to PokerAscetic [7c 8s] [3h]
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#..."
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#
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#"*** 4TH STREET ***
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#Dealt to cutiepr1nnymaid [8c] [2s]
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#Dealt to PokerAscetic [7c 8s 3h] [5s]
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#..."
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#Note that hero's first two holecards are only reported at 3rd street as 'old' cards.
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logging.debug("readStudPlayerCards")
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m = self.re_HeroCards.finditer(hand.streets[street])
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for player in m:
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logging.debug(player.groupdict())
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(pname, oldcards, newcards) = (player.group('PNAME'), player.group('OLDCARDS'), player.group('NEWCARDS'))
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if oldcards:
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oldcards = [c.strip() for c in oldcards.split(' ')]
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if newcards:
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newcards = [c.strip() for c in newcards.split(' ')]
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# options here:
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# (1) we trust the hand will know what to do -- probably check that the old cards match what it already knows, and add the newcards to this street.
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# (2) we're the experts at this particular history format and we know how we're going to be called (once for each street in Hand.streetList)
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# so call addPlayerCards with the appropriate information.
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# I favour (2) here but I'm afraid it is rather stud7-specific.
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# in the following, the final list of cards will be in 'newcards' whilst if the first list exists (most of the time it does) it will be in 'oldcards'
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if street=='ANTES':
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return
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elif street=='THIRD':
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# we'll have observed hero holecards in CARDS and thirdstreet open cards in 'NEWCARDS'
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# hero: [xx][o]
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# others: [o]
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hand.addPlayerCards(player = player.group('PNAME'), street = street, closed = oldcards, open = newcards)
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elif street in ('FOURTH', 'FIFTH', 'SIXTH'):
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# 4th:
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# hero: [xxo] [o]
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# others: [o] [o]
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# 5th:
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# hero: [xxoo] [o]
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# others: [oo] [o]
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# 6th:
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# hero: [xxooo] [o]
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# others: [ooo] [o]
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hand.addPlayerCards(player = player.group('PNAME'), street = street, open = newcards)
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# we may additionally want to check the earlier streets tally with what we have but lets trust it for now.
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elif street=='SEVENTH' and newcards:
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# hero: [xxoooo] [x]
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# others: not reported.
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hand.addPlayerCards(player = player.group('PNAME'), street = street, closed = newcards)
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def readAction(self, hand, street):
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m = self.re_Action.finditer(hand.streets[street])
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for action in m:
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if action.group('ATYPE') == ' raises to':
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hand.addRaiseTo( street, action.group('PNAME'), action.group('BET') )
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elif action.group('ATYPE') == ' completes it to':
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hand.addComplete( street, action.group('PNAME'), action.group('BET') )
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elif action.group('ATYPE') == ' calls':
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hand.addCall( street, action.group('PNAME'), action.group('BET') )
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elif action.group('ATYPE') == ' bets':
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hand.addBet( street, action.group('PNAME'), action.group('BET') )
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elif action.group('ATYPE') == ' folds':
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hand.addFold( street, action.group('PNAME'))
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elif action.group('ATYPE') == ' checks':
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hand.addCheck( street, action.group('PNAME'))
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else:
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print "DEBUG: unimplemented readAction: '%s' '%s'" %(action.group('PNAME'),action.group('ATYPE'),)
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def readShowdownActions(self, hand):
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for shows in self.re_ShowdownAction.finditer(hand.handText):
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cards = shows.group('CARDS')
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cards = cards.split(' ')
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hand.addShownCards(cards, shows.group('PNAME'))
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def readCollectPot(self,hand):
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for m in self.re_CollectPot.finditer(hand.handText):
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hand.addCollectPot(player=m.group('PNAME'),pot=m.group('POT'))
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def readShownCards(self,hand):
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for m in self.re_ShownCards.finditer(hand.handText):
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if m.group('CARDS') is not None:
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cards = m.group('CARDS')
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cards = cards.split(' ')
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hand.addShownCards(cards=cards, player=m.group('PNAME'))
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if __name__ == "__main__":
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parser = OptionParser()
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parser.add_option("-i", "--input", dest="ipath", help="parse input hand history", default="regression-test-files/fulltilt/razz/FT20090223 Danville - $0.50-$1 Ante $0.10 - Limit Razz.txt")
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parser.add_option("-o", "--output", dest="opath", help="output translation to", default="-")
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parser.add_option("-f", "--follow", dest="follow", help="follow (tail -f) the input", action="store_true", default=False)
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parser.add_option("-q", "--quiet",
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action="store_const", const=logging.CRITICAL, dest="verbosity", default=logging.INFO)
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parser.add_option("-v", "--verbose",
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action="store_const", const=logging.INFO, dest="verbosity")
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parser.add_option("--vv",
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action="store_const", const=logging.DEBUG, dest="verbosity")
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(options, args) = parser.parse_args()
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LOG_FILENAME = './logging.out'
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logging.basicConfig(filename=LOG_FILENAME,level=options.verbosity)
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e = FullTilt(in_path = options.ipath, out_path = options.opath, follow = options.follow)
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