Implementierung aller Upgrades mit auswirkungen auf das Spiel + Zusaetzliche Menuinformationen fuer Upgrades (Mit Folke natuerlich)
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@@ -2,21 +2,19 @@ from upgrades import coin_multiplier, lucky_coin, flip_chance
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#import menu
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import random
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propability = 40
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coins_per_head = 0.5
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wealth = 5000
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heads_amount = 1
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multiplier = 0.5
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#Game
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def coin_flip(propability, wealth, coins_per_head, heads_amount, multiplier):
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def coin_flip(wealth, coins_per_head, heads_amount):
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while True:
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result = random.randint(0, 100)
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if result in range(0,propability):
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if result in range(0,base_lvl_flip_chance.chance):
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print(f'Kopf ({heads_amount}x)')
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heads_amount += 1 #Anzahl an hintereinander geworfenen "Köpfen"
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if heads_amount >=3:
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coins_per_head += multiplier #Coin-Boost für mehrfaches werfen von Kopf hintereinander
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coins_per_head += base_lvl_coin_multiplier.multiplier #Coin-Boost für mehrfaches werfen von Kopf hintereinander
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else:
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coins_per_head = 0.5
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wealth += coins_per_head
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@@ -31,7 +29,7 @@ def coin_flip(propability, wealth, coins_per_head, heads_amount, multiplier):
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continue
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except ValueError:
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continue
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elif result in range(propability,100):
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elif result in range(base_lvl_flip_chance.chance,100):
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print('Zahl')
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heads_amount = 1
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answer = input()
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@@ -43,12 +41,26 @@ def coin_flip(propability, wealth, coins_per_head, heads_amount, multiplier):
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continue
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except ValueError:
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continue
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return result
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class coin_multiplier(): #Klasse, die das Upgrade darstellt, welches die anzahl des Bonusses beim Kopfwurf veraendert
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def __init__(self, multiplier:float, cost:int):
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self.multiplier = multiplier
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self.cost = cost
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class flip_chance(): #Upgrade, welches die Chance auf kopf veraendert
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def __init__(self, chance:int, cost:int):
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self.chance = chance
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self.cost = cost
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class lucky_coin(): #Upgrade, welches festlegt wie hoch die Wahrscheinlichkeit auf einen LuckyCoin (Jackpot) ist
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def __init__(self, chance:float, cost:int):
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self.chance = chance
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self.cost = cost
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base_lvl_coin_multiplier = coin_multiplier(0.5, 10)
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base_lvl_flip_chance = flip_chance(10, 0)
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base_lvl_flip_chance = flip_chance(10, 1)
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base_lvl_lucky_coin = lucky_coin(0.5, 10)
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def lvl_up_multiplier():
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@@ -64,11 +76,10 @@ def lvl_up_flip_chance():
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lvl_up = True
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if lvl_up == True:
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base_lvl_flip_chance.cost += 1
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base_lvl_flip_chance.cost *= 6
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base_lvl_flip_chance.chance *= 1.5
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base_lvl_flip_chance.cost *= 10
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base_lvl_flip_chance.chance *= 2
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#print(f" FC Cost: {base_lvl_flip_chance.cost}")
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print(f" Flip Chance liegt bei: {base_lvl_flip_chance.chance}")
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print(f" Flip Chance liegt bei: {base_lvl_flip_chance.chance}%")
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def lvl_up_lucky_coin():
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lvl_up = True
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@@ -76,12 +87,12 @@ def lvl_up_lucky_coin():
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if lvl_up == True:
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base_lvl_lucky_coin.cost *= 3
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base_lvl_lucky_coin.chance *= 1.5
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#print(f" LC Cost: {base_lvl_lucky_coin.cost}")
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print(f" Lucky Coin Chance liegt bei: {base_lvl_lucky_coin.chance}")
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#print(f" Lucky Coin Cost: {base_lvl_lucky_coin.cost}")
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print(f" Lucky Coin Chance liegt bei: {base_lvl_lucky_coin.chance}%")
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def homepage_upgrades(wealth):
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while True:
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answer = input(f' Flip Chance (Preis: {base_lvl_flip_chance.cost} Coins): [1]\n Lucky Coin (Preis: {base_lvl_lucky_coin.cost} Coins): [2]\n Multiplier (Preis: {base_lvl_coin_multiplier.cost} Coins): [3]\n Zum Game: [4]')
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answer = input(f' Flip Chance [{base_lvl_flip_chance.chance}% > {base_lvl_flip_chance.chance*2}%] (Preis: {base_lvl_flip_chance.cost} Coins): [1]\n Lucky Coin [{base_lvl_lucky_coin.chance}% > {base_lvl_lucky_coin.chance*2}] (Preis: {base_lvl_lucky_coin.cost} Coins): [2]\n Multiplier [+{base_lvl_coin_multiplier.multiplier} Coins > {base_lvl_coin_multiplier.multiplier*5} Coins] (Preis: {base_lvl_coin_multiplier.cost} Coins): [3]\n Zum Game: [4]')
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try:
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answer = int(answer)
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if answer == 1:
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@@ -89,7 +100,7 @@ def homepage_upgrades(wealth):
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lvl_up_flip_chance()
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wealth -= base_lvl_flip_chance.cost
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print(f' Erfolgreich geupgradet. Du hast noch {wealth} Coins')
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break
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else:
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print('Du bist zu arm')
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@@ -98,7 +109,6 @@ def homepage_upgrades(wealth):
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lvl_up_lucky_coin()
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wealth -= base_lvl_lucky_coin.cost
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print(f' Erfolgreich geupgradet. Du hast noch {wealth} Coins')
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break
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else:
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print('Du bist zu arm')
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@@ -107,11 +117,10 @@ def homepage_upgrades(wealth):
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lvl_up_multiplier()
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wealth -= base_lvl_coin_multiplier.cost
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print(f' Erfolgreich geupgradet. Du hast noch {wealth} Coins')
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break
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else:
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print('Du bist zu arm')
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elif answer == 4:
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coin_flip(propability, wealth, coins_per_head, heads_amount, multiplier)
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coin_flip(wealth, coins_per_head, heads_amount)
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elif answer not in (1, 2, 3, 4):
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print('Bitte 1, 2, 3 oder 4!')
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@@ -119,4 +128,12 @@ def homepage_upgrades(wealth):
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except ValueError:
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print('Nur Zahlen')
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coin_flip(propability, wealth, coins_per_head, heads_amount, multiplier)
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def check_lucky_coin(result, wealth):
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if result < base_lvl_lucky_coin.chance or result == base_lvl_lucky_coin.chance:
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print('Herzlichen Glueckwunsch! Du hast den Lucky Coin bekommen')
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wealth *= 1.5
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return wealth
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result = coin_flip(wealth, coins_per_head, heads_amount)
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wealth = check_lucky_coin(result, wealth)
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