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28462f4c0d
| Author | SHA1 | Date | |
|---|---|---|---|
| 28462f4c0d | |||
| af0a145953 |
44
bomb.gd
44
bomb.gd
@@ -37,10 +37,6 @@ func _process(delta: float) -> void:
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if is_off_screen() and not has_exploded:
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trigger_explosion()
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# Check for spacebar press to explode, only if the bomb hasn't exploded
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if Input.is_action_just_pressed("throw_bomb") and not has_exploded:
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trigger_explosion()
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# This function is used to set the velocity of the bomb when it’s thrown
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func set_velocity(new_velocity: Vector2) -> void:
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# Apply an impulse based on the new velocity
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@@ -93,39 +89,41 @@ func push_away_players():
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body.apply_central_impulse(impulse)
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func destroy_tiles_in_explosion_area():
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var center = global_position # This is the center of the explosion in global coordinates
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var radius = 30 # The radius of the explosion
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var center = global_position # Explosion center in global coordinates
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var radius = 150 # Explosion radius in pixels
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# Convert center to map coordinates, taking scale into account
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# Convert center to map coordinates
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var map_center = tile_map_layer.local_to_map(center)
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print("Center: ", map_center)
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print("Explosion center in map coordinates:", center, map_center)
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# Get the scale factor of the TileMapLayer
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var scale = tile_map_layer.scale.x # Assuming uniform scale for both x and y
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# Tile dimensions
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var tile_width = 16
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var tile_height = 16
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# Get the bounding box for the explosion area in map coordinates
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var min_x = int((map_center.x - radius * tile_width) / tile_width)
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var max_x = int((map_center.x + radius * tile_width) / tile_width)
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var min_y = int((map_center.y - radius * tile_height) / tile_height)
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var max_y = int((map_center.y + radius * tile_height) / tile_height)
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# Calculate bounds of explosion in tile coordinates
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var min_x = int((center.x - radius) / tile_width)
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var max_x = int((center.x + radius) / tile_width)
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var min_y = int((center.y - radius) / tile_height)
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var max_y = int((center.y + radius) / tile_height)
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# Loop through all cells in the bounding box
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print("Explosion bounds in tile coordinates: ", Vector2i(min_x, min_y), Vector2i(max_x, max_y))
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# Loop through the affected tiles
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for x in range(min_x, max_x + 1):
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for y in range(min_y, max_y + 1):
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# Calculate distance from the center of the explosion (map coordinates)
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var dist = map_center.distance_to(Vector2(x, y))
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# Calculate the distance from the explosion center to the tile center
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var tile_pos = tile_map_layer.map_to_local(Vector2i(x, y))
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var dist = center.distance_to(tile_pos)
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# Check if the tile is within the explosion radius (using the distance check)
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# Check if the tile is within the explosion radius
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if dist <= radius:
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# Print out some debug information
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print("Checking tile:", Vector2i(x, y), "Distance:", dist)
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print("Checking tile at:", Vector2i(x, y), "Distance:", dist)
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print(tile_map_layer.get_cell_source_id(Vector2i(x, y)))
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# Check if the tile is within the bounds of the map and not empty
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# Erase the tile if it exists
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if tile_map_layer.get_cell_source_id(Vector2i(x, y)) != -1:
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# Erase the tile at coordinates (x, y) in map coordinates
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tile_map_layer.erase_cell(Vector2i(x, y))
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print("Erased tile at:", Vector2i(x, y))
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# Function to check if the bomb is off-screen
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46
player.gd
46
player.gd
@@ -12,14 +12,19 @@ extends RigidBody2D
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@export var friction = 5
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@export var max_speed = 500.0
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@export var player_index = 0 # Default to keyboard (-1). Set to controller ID for multiplayer.
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var charging = false
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var current_power = 0.0
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var direction = Vector2(2, -2) # Default direction, can be modified for aiming
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var bomb = null # Global bomb reference
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var aim_direction = Vector2(1, -1) # Default aiming direction
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@onready var velocity_label = $Label
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@onready var line_indicator = $Line2D # Reference to the Line2D node
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# Dead zone for joystick input
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var dead_zone = 0.2
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func _ready() -> void:
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# Set the initial points for the Line2D to indicate the starting vector
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line_indicator.clear_points()
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@@ -29,8 +34,11 @@ func _ready() -> void:
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func _process(delta: float) -> void:
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if position.y > 2000:
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get_tree().reload_current_scene()
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# Start charging when "throw_bomb" is pressed
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if Input.is_action_pressed("throw_bomb") and (!bomb or !is_instance_valid(bomb)):
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update_aim_direction() # Continuously update aiming direction
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# Start charging when "throw_bomb" is pressed (either button or key)
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if is_throwing_input_pressed() and (!bomb or !is_instance_valid(bomb)):
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charging = true
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current_power += charge_rate * delta
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current_power = min(current_power, max_power) # Cap power at max_power
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@@ -38,27 +46,43 @@ func _process(delta: float) -> void:
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# Update velocity on the label
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velocity_label.text = "Power: " + str(current_power)
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# Calculate the direction based on the input (for example, using the mouse position or joystick)
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var aim_direction = (get_global_mouse_position() - global_position).normalized()
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# Set the start position of the line a bit away from the player
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var start_position = aim_direction * line_start_offset
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# Update the Line2D to visualize the throw direction and power
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var end_point = start_position + (aim_direction * current_power / 10)
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#line_indicator.set_point_position(1, end_point) # Set the ending point of the vector
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line_indicator.set_point_position(0, start_position) # Set the starting point of the vector
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line_indicator.set_point_position(1, end_point) # Set the ending point of the vector
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elif Input.is_action_just_released("throw_bomb") and charging:
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elif is_throwing_input_pressed() and is_instance_valid(bomb):
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bomb.trigger_explosion()
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elif not is_throwing_input_pressed() and charging:
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# Throw bomb when the action is released
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throw_bomb(current_power)
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charging = false
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throw_bomb(current_power)
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current_power = 0.0 # Reset power
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# Reset Line2D to initial state after release
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line_indicator.set_point_position(0, Vector2.ZERO)
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line_indicator.set_point_position(1, Vector2.ZERO)
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func update_aim_direction():
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if player_index == -1: # Keyboard/Mouse
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aim_direction = (get_global_mouse_position() - global_position).normalized()
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else: # Controller
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var joy_x = Input.get_joy_axis(player_index, JOY_AXIS_LEFT_X)
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var joy_y = Input.get_joy_axis(player_index, JOY_AXIS_LEFT_Y)
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# Apply dead zone
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if abs(joy_x) > dead_zone or abs(joy_y) > dead_zone:
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aim_direction = Vector2(joy_x, joy_y).normalized()
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func is_throwing_input_pressed() -> bool:
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if player_index == -1: # Keyboard/Mouse
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return Input.is_action_pressed("throw_bomb")
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else: # Controller (use A button for throwing)
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return Input.is_joy_button_pressed(player_index, JOY_BUTTON_A)
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func throw_bomb(power: float):
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# Check if there is no bomb or if the current bomb instance is invalid
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if !bomb or !is_instance_valid(bomb):
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@@ -66,14 +90,10 @@ func throw_bomb(power: float):
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bomb = Bomb.instantiate() # Use global bomb reference
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bomb.position = global_position
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# Calculate the direction based on the mouse position
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var aim_direction = (get_global_mouse_position() - global_position).normalized()
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# Set the velocity for the bomb: direction * power
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var launch_velocity = aim_direction * power * 2
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bomb.set_velocity(launch_velocity)
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# Add the bomb to the scene
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add_child(bomb)
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