ze game
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36
asteroid.py
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36
asteroid.py
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import pygame
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from circleshape import CircleShape
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from constants import *
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import random
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class Asteroid(CircleShape):
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def __init__(self, x, y, radius):
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super().__init__(x, y, radius)
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def draw(self, screen):
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pygame.draw.circle(screen, pygame.Color(255, 255, 255), self.position, self.radius, 2)
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def update(self, dt):
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self.position += self.velocity * dt
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def split(self):
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self.kill()
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if self.radius <= ASTEROID_MIN_RADIUS:
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return
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angle = random.uniform(20, 50)
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new1 = Asteroid(self.position.x, self.position.y, self.radius - ASTEROID_MIN_RADIUS)
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new1.velocity = self.velocity
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new1.velocity = new1.velocity.rotate(angle)
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new1.velocity *= 1.2
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new2 = Asteroid(self.position.x, self.position.y, self.radius - ASTEROID_MIN_RADIUS)
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new2.velocity = self.velocity
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new2.velocity = new2.velocity.rotate(-angle)
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new2.velocity *= 1.2
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51
asteroidfield.py
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51
asteroidfield.py
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import pygame
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import random
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from asteroid import Asteroid
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from constants import *
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class AsteroidField(pygame.sprite.Sprite):
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edges = [
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[
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pygame.Vector2(1, 0),
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lambda y: pygame.Vector2(-ASTEROID_MAX_RADIUS, y * SCREEN_HEIGHT),
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],
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[
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pygame.Vector2(-1, 0),
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lambda y: pygame.Vector2(
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SCREEN_WIDTH + ASTEROID_MAX_RADIUS, y * SCREEN_HEIGHT
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),
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],
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[
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pygame.Vector2(0, 1),
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lambda x: pygame.Vector2(x * SCREEN_WIDTH, -ASTEROID_MAX_RADIUS),
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],
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[
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pygame.Vector2(0, -1),
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lambda x: pygame.Vector2(
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x * SCREEN_WIDTH, SCREEN_HEIGHT + ASTEROID_MAX_RADIUS
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),
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],
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]
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def __init__(self):
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pygame.sprite.Sprite.__init__(self, self.containers)
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self.spawn_timer = 0.0
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def spawn(self, radius, position, velocity):
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asteroid = Asteroid(position.x, position.y, radius)
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asteroid.velocity = velocity
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def update(self, dt):
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self.spawn_timer += dt
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if self.spawn_timer > ASTEROID_SPAWN_RATE:
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self.spawn_timer = 0
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# spawn a new asteroid at a random edge
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edge = random.choice(self.edges)
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speed = random.randint(40, 100)
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velocity = edge[0] * speed
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velocity = velocity.rotate(random.randint(-30, 30))
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position = edge[1](random.uniform(0, 1))
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kind = random.randint(1, ASTEROID_KINDS)
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self.spawn(ASTEROID_MIN_RADIUS * kind, position, velocity)
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29
circleshape.py
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29
circleshape.py
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import pygame
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# Base class for game objects
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class CircleShape(pygame.sprite.Sprite):
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def __init__(self, x, y, radius):
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# we will be using this later
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if hasattr(self, "containers"):
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super().__init__(self.containers)
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else:
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super().__init__()
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self.position = pygame.Vector2(x, y)
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self.velocity = pygame.Vector2(0, 0)
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self.radius = radius
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def draw(self, screen):
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# sub-classes must override
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pass
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def update(self, dt):
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# sub-classes must override
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pass
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def is_collission(self, obj):
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distance = self.position.distance_to(obj.position)
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if (distance <= self.radius + obj.radius):
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return True
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return False
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10
constants.py
10
constants.py
@@ -4,4 +4,12 @@ SCREEN_HEIGHT = 720
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ASTEROID_MIN_RADIUS = 20
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ASTEROID_MIN_RADIUS = 20
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ASTEROID_KINDS = 3
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ASTEROID_KINDS = 3
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ASTEROID_SPAWN_RATE = 0.8 # seconds
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ASTEROID_SPAWN_RATE = 0.8 # seconds
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ASTEROID_MAX_RADIUS = ASTEROID_MIN_RADIUS * ASTEROID_KINDS
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ASTEROID_MAX_RADIUS = ASTEROID_MIN_RADIUS * ASTEROID_KINDS
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PLAYER_RADIUS = 20
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PLAYER_TURN_SPEED = 300
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PLAYER_SPEED = 200
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PLAYER_SHOOT_SPEED = 500
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SHOT_RADIUS = 5
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PLAYER_SHOOT_COOLDOWN=0.3
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45
main.py
45
main.py
@@ -1,5 +1,10 @@
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import pygame
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import pygame
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import sys
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from constants import *
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from constants import *
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from player import Player
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from asteroid import Asteroid
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from shot import Shot
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from asteroidfield import AsteroidField
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def main():
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def main():
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@@ -10,16 +15,52 @@ def main():
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pygame.init()
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pygame.init()
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screen = pygame.display.set_mode((SCREEN_WIDTH, SCREEN_HEIGHT))
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screen = pygame.display.set_mode((SCREEN_WIDTH, SCREEN_HEIGHT))
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updatable = pygame.sprite.Group()
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drawable = pygame.sprite.Group()
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asteroids = pygame.sprite.Group()
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shots = pygame.sprite.Group()
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clock = pygame.time.Clock()
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dt = 0
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player = Player(SCREEN_WIDTH / 2, SCREEN_HEIGHT / 2)
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drawable.add(player)
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updatable.add(player)
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Player.containers = (updatable, drawable)
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Asteroid.containers = (asteroids, updatable, drawable)
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AsteroidField.containers = (updatable)
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Shot.containers = (shots, updatable, drawable)
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asteroidField = AsteroidField()
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while True:
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while True:
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for event in pygame.event.get():
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for event in pygame.event.get():
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if event.type == pygame.QUIT:
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if event.type == pygame.QUIT:
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return
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return
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dt = clock.tick(60)/1000
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for entity in updatable:
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entity.update(dt)
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for entity in asteroids:
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if player.is_collission(entity):
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print("Game Over!")
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sys.exit(0)
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for bullet in shots:
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if bullet.is_collission(entity):
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entity.split()
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bullet.kill()
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continue
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screen.fill(pygame.Color(0, 0, 0), pygame.Rect(0, 0, SCREEN_WIDTH, SCREEN_HEIGHT))
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screen.fill(pygame.Color(0, 0, 0), pygame.Rect(0, 0, SCREEN_WIDTH, SCREEN_HEIGHT))
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for entity in drawable:
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entity.draw(screen)
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pygame.display.flip()
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pygame.display.flip()
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if __name__ == "__main__":
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if __name__ == "__main__":
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main()
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main()
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53
player.py
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53
player.py
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from circleshape import CircleShape
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from constants import *
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from shot import Shot
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import pygame
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class Player(CircleShape):
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def __init__(self, x, y):
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super().__init__(x, y, PLAYER_RADIUS)
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self.rotation = 0
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self.cooldown = 0
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# in the player class
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def triangle(self):
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forward = pygame.Vector2(0, 1).rotate(self.rotation)
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right = pygame.Vector2(0, 1).rotate(self.rotation + 90) * self.radius / 1.5
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a = self.position + forward * self.radius
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b = self.position - forward * self.radius - right
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c = self.position - forward * self.radius + right
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return [a, b, c]
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def draw(self, screen):
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super().draw(screen)
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pygame.draw.polygon(screen, pygame.Color(255, 255, 255), self.triangle(), 2)
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def rotate(self, dt):
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self.rotation += PLAYER_TURN_SPEED * dt
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def update(self, dt):
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keys = pygame.key.get_pressed()
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self.cooldown -= dt
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if keys[pygame.K_a]:
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self.rotate(-dt)
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if keys[pygame.K_d]:
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self.rotate(dt)
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if keys[pygame.K_w]:
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self.move(dt)
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if keys[pygame.K_s]:
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self.move(-dt)
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if keys[pygame.K_SPACE]:
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self.shoot()
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def move(self, dt):
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forward = pygame.Vector2(0, 1).rotate(self.rotation)
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self.position += forward * PLAYER_SPEED * dt
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def shoot(self):
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if self.cooldown > 0:
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return
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self.cooldown = PLAYER_SHOOT_COOLDOWN
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shot = Shot(self.position.x, self.position.y)
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shot.velocity = pygame.Vector2(0, 1).rotate(self.rotation) * PLAYER_SHOOT_SPEED
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16
shot.py
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16
shot.py
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import pygame
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from circleshape import CircleShape
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from constants import *
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class Shot(CircleShape):
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def __init__(self, x, y):
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super().__init__(x, y, SHOT_RADIUS)
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def draw(self, screen):
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pygame.draw.circle(screen, pygame.Color(255, 255, 255), self.position, self.radius, 2)
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def update(self, dt):
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self.position += self.velocity * dt
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