def make_deck(self, cards=None):
if cards is None:
- cards = [{'actions': []}]
+ cards = [{'card_name': 'card', 'actions': []}]
return {'cards': cards}
def assert_state(self, state1, state2, exclude=(), player_exclude=()):
self.assertEqual(state1, state2)
def test_export_new_board(self):
- board = GameBoard.new_game({'cards': [{'actions': [
- {
- 'action_class': 'LoseHealthOrMSB',
- 'required_bits': [],
- }, {
- 'action_class': 'GainHealth',
- 'required_bits': [BITS.RED],
- },
- ]}]})
+ board = GameBoard.new_game({'cards': [
+ {'card_name': 'card1', 'actions': [
+ {
+ 'action_class': 'LoseHealthOrMSB',
+ 'required_bits': [],
+ }, {
+ 'action_class': 'GainHealth',
+ 'required_bits': [BITS.RED],
+ },
+ ]}]})
exported_state = board.export()
board_locations = exported_state.pop('board_locations')
self.assertEqual(exported_state, {
+ 'clock_count': 0,
'max_health': 4,
'health': 4,
'wins_required': 4,
'wins': 0,
- 'locations': [{'actions': [
+ 'locations': [{'card_name': 'card1', 'actions': [
{
'action_class': 'LoseHealthOrMSB',
'required_bits': [],
'player': board.player.export(),
'puzzle': False,
'player_mode': EXAMINE,
+ 'replacement_params': None,
})
positions = []
for position, location_state in board_locations:
positions.append(position)
- self.assertEqual(
- sorted(location_state.keys()), ['actions', 'bitwise_operand'])
+ self.assertEqual(sorted(location_state.keys()), [
+ 'actions', 'bitwise_operand', 'card_name', 'max_number',
+ 'replacement_time'])
self.assertEqual(location_state['actions'], [
{
'action_class': 'LoseHealthOrMSB',
self.assertEqual(
positions, sorted((x, y) for x in range(5) for y in range(5)))
+ def test_max_number(self):
+ def _check_counts(board):
+ counts = {}
+ exported_state = board.export()
+ board_locations = exported_state.pop('board_locations')
+ for _position, location_state in board_locations:
+ counts.setdefault(
+ location_state['actions'][0]['action_class'], 0)
+ counts[location_state['actions'][0]['action_class']] += 1
+ self.assertTrue(counts.get('LoseHealthOrMSB', 0) <= 5)
+
+ board = GameBoard.new_game({'cards': [
+ {'card_name': 'card1', 'actions': [{
+ 'action_class': 'LoseHealthOrMSB',
+ 'required_bits': [], }],
+ 'max_number': 5},
+ {'card_name': 'card2', 'actions': [{
+ 'action_class': 'DoNothing',
+ 'required_bits': [], }],
+ 'max_number': 25}]})
+ # check creation constraints
+ _check_counts(board)
+ # Check replacement
+ # Replace center card 12 times and assert invariant still holds
+ for x in range(12):
+ board.replace_card((2, 2))
+ _check_counts(board)
+ # replace a diagonal of cards
+ for x in range(5):
+ board.replace_card((x, x))
+ _check_counts(board)
+
+ def test_max_number_complex(self):
+ def _check_counts(board):
+ counts = {}
+ exported_state = board.export()
+ board_locations = exported_state.pop('board_locations')
+ for _position, location_state in board_locations:
+ counts.setdefault(
+ location_state['actions'][0]['action_class'], 0)
+ counts[location_state['actions'][0]['action_class']] += 1
+ self.assertTrue(counts.get('LoseHealthOrMSB', 0) <= 5)
+ self.assertTrue(counts.get('DoNothing', 0) <= 3)
+ self.assertTrue(counts.get('AcquireWinToken', 0) <= 4)
+ self.assertTrue(counts.get('GainHealth', 0) <= 3)
+
+ board = GameBoard.new_game({'cards': [
+ {'card_name': 'card1', 'actions': [{
+ 'action_class': 'LoseHealthOrMSB',
+ 'required_bits': [], }],
+ 'max_number': 5},
+ {'card_name': 'card2', 'actions': [{
+ 'action_class': 'AcquireWinToken',
+ 'required_bits': [], }],
+ 'max_number': 4},
+ {'card_name': 'card3', 'actions': [{
+ 'action_class': 'GainHealth',
+ 'required_bits': [], }],
+ 'max_number': 3},
+ {'card_name': 'card4', 'actions': [{
+ 'action_class': 'RotateLocations',
+ 'required_bits': [], }],
+ 'max_number': 25},
+ {'card_name': 'card5', 'actions': [{
+ 'action_class': 'AllowChessMove',
+ 'required_bits': [], }],
+ 'max_number': 25},
+ {'card_name': 'card6', 'actions': [{
+ 'action_class': 'DoNothing',
+ 'required_bits': [], }],
+ 'max_number': 3}]})
+ # check creation constraints
+ _check_counts(board)
+ # Check replacement
+ # Replace center card 12 times and assert invariant still holds
+ for x in range(12):
+ board.replace_card((2, 2))
+ _check_counts(board)
+ # replace a diagonal of cards
+ for x in range(5):
+ board.replace_card((x, x))
+ _check_counts(board)
+
def test_lose_health(self):
board = GameBoard.new_game(self.make_deck())
self.assertEqual(board.health, 4)
self.assertEqual(bits, set(BITS.values()))
def test_new_location_no_actions(self):
- location = LocationCard.new_location({'actions': []})
+ location = LocationCard.new_location(
+ {'card_name': 'card', 'actions': []}, None)
+ [action] = location.actions
+ self.assertEqual(type(action), actions.DoNothing)
+ self.assertEqual(action.required_bits, set())
+ self.assertEqual(location.replacement_time, None)
+
+ def test_new_location_replacement_params(self):
+ location = LocationCard.new_location(
+ {'card_name': 'card', 'actions': []},
+ {'chance': 1, 'min': 2, 'max': 2})
[action] = location.actions
self.assertEqual(type(action), actions.DoNothing)
self.assertEqual(action.required_bits, set())
+ self.assertEqual(location.replacement_time, 2)
def test_new_location_one_action(self):
- location = LocationCard.new_location({'actions': [
- {'required_bits': [], 'action_class': 'DoNothing'},
- ]})
+ location = LocationCard.new_location({
+ 'card_name': 'card1',
+ 'actions': [
+ {'required_bits': [], 'action_class': 'DoNothing'},
+ ]}, None)
[action] = location.actions
self.assertEqual(type(action), actions.DoNothing)
self.assertEqual(action.required_bits, set())
+ self.assertEqual(location.replacement_time, None)
def test_parse_bits(self):
self.assertEqual(