from naja.options import options
from naja.player import Player
from naja import actions
+from naja.sound import sound
class GameBoard(object):
self.health = state['health']
self.wins = state['wins']
self.locations = [item.copy() for item in state['locations']]
- self.puzzle = state['puzzle']
+ self.puzzle = state.get('puzzle', False)
self.player = player
self.board_locations = board_locations
- self.player_mode = EXAMINE
+ self.player_mode = state.get('player_mode', EXAMINE)
+ self.has_cheated = state.get('cheater', options.cheat_enabled)
@classmethod
def new_game(cls, deck,
return cls(state, player, board_locations)
def export(self):
- return {
+ data = {
'max_health': self.max_health,
'health': self.health,
'wins_required': self.wins_required,
'puzzle': self.puzzle,
'player': self.player.export(),
'board_locations': self.export_board_locations(),
+ 'player_mode': self.player_mode,
}
+ if self.has_cheated:
+ data['cheater'] = True
+ return data
@classmethod
def import_locations(cls, locations_definition):
board_locations = []
for x in range(5):
for y in range(5):
- board_location = LocationCard.new_location(
- choice(deck['cards']).copy())
+ new_choice = cls.choose_card(deck['cards'], board_locations)
+ board_location = LocationCard.new_location(new_choice.copy())
board_locations.append([(x, y), board_location.export()])
return board_locations
self.replace_card(position)
def replace_card(self, position):
- location = LocationCard.new_location(choice(self.locations).copy())
+ new_choice = self.choose_card(self.locations,
+ self.board_locations.items(),
+ position)
+ location = LocationCard.new_location(new_choice.copy())
self.board_locations[position] = location
+ @classmethod
+ def choose_card(cls, cards, board_locations, position=None):
+ # Find which cards are at their maximum and exclude them from
+ # the choice list
+ counts = {}
+ choices = {card['card_name']: card for card in cards}
+ for pos, card in board_locations:
+ if pos == position:
+ # skip the card we're replacing if appropriate
+ continue
+ if isinstance(card, LocationCard):
+ key = card.card_name
+ max_num = card.max_number
+ else:
+ key = card['card_name']
+ max_num = card.get('max_number', 25)
+ counts.setdefault(key, 0)
+ counts[key] += 1
+ if counts[key] >= max_num:
+ if key in choices:
+ del choices[key]
+ return choice(choices.values())
+
def shift_location_row(self, change, is_vertical):
px, py = self.player.position
shifted_locations = {}
if ROTATION[direction] == ROTATION.CLOCKWISE:
new_positions = locations_to_rotate[1:] + [locations_to_rotate[0]]
elif ROTATION[direction] == ROTATION.ANTICLOCKWISE:
- new_positions = (
- [locations_to_rotate[-1]] + locations_to_rotate[:-1])
+ new_positions = ([locations_to_rotate[-1]] + locations_to_rotate[:-1])
for old, new in zip(locations_to_rotate, new_positions):
- rotated_locations[old] = self.board_locations[new]
+ rotated_locations[new] = self.board_locations[old]
self.board_locations.update(rotated_locations)
from naja.events import SceneChangeEvent
from naja.scenes.lose import LoseScene
from naja.scenes.win import WinScene
+ sound.stop()
if win:
SceneChangeEvent.post(WinScene)
else:
A particular set of options available on a location.
"""
- def __init__(self, bitwise_operand, location_actions):
+ def __init__(self, card_name, bitwise_operand, location_actions,
+ max_number=25):
+ self.card_name = card_name
self.bitwise_operand = bitwise_operand
self.actions = location_actions
+ self.max_number = max_number
self.check_actions()
@classmethod
def import_location(cls, state):
location_actions = [
cls.build_action(definition) for definition in state['actions']]
- return cls(state['bitwise_operand'], location_actions)
+ return cls(state['card_name'], state['bitwise_operand'],
+ location_actions, state['max_number'])
@classmethod
def build_action(cls, definition):
bits = cls.parse_bits(definition['bits'])
else:
bits = cls.generate_bitwise_operand()
+ max_number = definition.get('max_number', 25)
+ card_name = definition['card_name']
return cls.import_location({
'bitwise_operand': bits,
'actions': definition['actions'],
+ 'max_number': max_number,
+ 'card_name': card_name,
})
@classmethod
return {
'bitwise_operand': sorted(self.bitwise_operand),
'actions': [action.export() for action in self.actions],
+ 'max_number': self.max_number,
+ 'card_name': self.card_name,
}
def check_actions(self):