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game.py
4
game.py
@ -107,8 +107,8 @@ def get_card_info():
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def get_starting_deck():
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return [["Copper", 7], ["Estate", 3]]
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# return [["Market", 2], ["Merchant", 2], ["Smithy", 2], ["Village", 2], ["Moat", 2]]
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# return [["Copper", 7], ["Estate", 3]]
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return [["Market", 2], ["Merchant", 2], ["Smithy", 2], ["Village", 2], ["Moat", 2]]
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# return [["Militia", 4], ["Cellar", 3], ["Moat", 3]]
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# return [["Silver", 7], ["Merchant", 3]]
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# return [["Copper", 4], ["Mine", 2], ["Remodel", 2], ["Workshop", 2]]
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@ -1,6 +1,6 @@
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from player.player import Player
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from card.card import Card
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#name943meats23jet
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class Pure_Big_Money(Player):
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def take_action(self):
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@ -34,7 +34,7 @@ class Pure_Big_Money(Player):
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return choice
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#This will pick either the first or the first least effective purchasing card as this bot doesn't care about that
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def militia_input(self, message):
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def militia_input(self, message, target_type):
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choice = self.__get_first_non_Treasure()
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min_coin = self.get_hand().get_supply()[choice].get_purchase_power()
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@ -8,7 +8,7 @@ from random import randint
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class Player:
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def __init__(self, table):
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self.__std_chances = 2
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self.__std_chances = 3
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self.__deck = Deck()
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self.__discard = Discard()
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self.__hand = Hand()
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@ -136,11 +136,13 @@ class Player:
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print("You have elected to forfeit any remaining plays.")
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self.__buys = 0
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elif pile_index >= self.__table.get_pile_count():
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print("Acceptable inputs range from 0 to " + str(self.__table.get_pile_count() - 1) + ". Try again.")
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print("Acceptable inputs range from 0 to " + str(self.__table.get_pile_count() - 1) + ".")
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chances -= 1
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print("You have " + str(chances) + " chances left to input correctly.")
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elif self.__table.get_pile(pile_index).get_card_group().get_cost() > self.__purchase_power:
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print("You do not have enough coin. Try again.")
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print("You do not have enough coin.")
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chances -= 1
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print("You have " + str(chances) + " chances left to input correctly.")
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else:
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self.__buys -= 1
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self.__purchase_power -= self.__table.get_pile(pile_index).get_card_group().get_cost()
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@ -149,6 +151,7 @@ class Player:
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str(self.__purchase_power) + " coin(s) and " + str(self.__buys) + " buy(s) following purchase.")
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self.__table.get_pile(pile_index).transfer_top_card(self.__discard)
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self.claim_top_card(self.__discard)
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chances = self.get_std_chances()
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def take_turn(self):
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self.__turn_setup()
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@ -243,7 +246,7 @@ class Player:
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print("Coin: " + str(self.__purchase_power))
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self.print_hand()
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self.__print_discard()
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# self.__print_deck()
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print("")
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def __turn_setup(self):
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self.__actions.int = 1
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@ -81,5 +81,7 @@ class Table:
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print(str(index) + ": " + s.identify())
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index += 1
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print("")
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def __str__(self):
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return "A table with " + str(len(self.__pile)) + " card piles and " + str(len(self.__player)) + " players."
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