63 lines
2.5 KiB
Python
63 lines
2.5 KiB
Python
from pygame.surface import Surface
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from sprite.DynamicSprite import DynamicSprite
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from sprite.PositionScale import PositionScale
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from sprite.Sprite import Sprite
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from sprite.StaticSprite import StaticSprite
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MOTION_STEPS = 10
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class PhysicsElementsHandler:
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def __init__(self):
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self.sprites: list[Sprite] = []
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def add_sprite(self, sprite: Sprite):
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self.sprites.append(sprite)
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def remove_sprite(self, sprite: Sprite):
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self.sprites.remove(sprite)
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def tick(self, dt: float):
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for sprite in self.sprites:
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sprite.tick(dt)
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# handle motion and collisions. To do this:
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# 1. Find all sprites that have collision enabled and store them in a list
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# 2. Create a list of all sprites that are dynamic sprites
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# 3. Sort the sprites by their y position
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# 4. For each sprite:
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# 4.1. Divide the motion into MOTION_STEPS steps
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# 4.2. For each step:
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# 4.2.1. Check if the sprite collides with any other sprite
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# 4.2.2. If it does, move the sprite back to the previous position and stop the motion
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# 4.2.3. If it doesn't, move the sprite to the new position
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colliders = [sprite for sprite in self.sprites if sprite.is_collider and isinstance(sprite, StaticSprite)]
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dynamic_sprites = [sprite for sprite in self.sprites if isinstance(sprite, DynamicSprite)]
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sorted_dynamic_sprites = sorted(dynamic_sprites, key=lambda spr: spr.position_scale.position[1])
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for sprite in sorted_dynamic_sprites:
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total_motion = sprite.motion
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motion_step = (total_motion[0] / MOTION_STEPS, total_motion[1] / MOTION_STEPS)
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for i in range(MOTION_STEPS):
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sprite.position_scale.position = (
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sprite.position_scale.position[0] + motion_step[0],
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sprite.position_scale.position[1] + motion_step[1]
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)
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for collider in colliders:
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if sprite is not collider and sprite.collides_with(collider):
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sprite.position_scale.position = (
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sprite.position_scale.position[0] - motion_step[0],
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sprite.position_scale.position[1] - motion_step[1]
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)
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sprite.motion = (0, 0)
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break
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def draw(self, screen: Surface, screen_transform: PositionScale):
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for sprite in self.sprites:
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sprite.draw(screen, screen_transform)
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