71 lines
1.6 KiB
Python
71 lines
1.6 KiB
Python
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import pygame
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import pygame.gfxdraw
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import gas_sim as gs
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##### CONFIG #####
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window_size = (1280, 720)
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particle_radius_ws = 0.1
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particle_compressibility = 0.5
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cursor_radius_ws = 0.1
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substeps = 10
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##################
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# ws - world space
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# ss - screen space
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window_aspect = window_size[0] / window_size[1]
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cursor_radius_ss = cursor_radius_ws * window_size[1]
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# pygame init
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pygame.init()
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window = pygame.display.set_mode(window_size)
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clock = pygame.time.Clock()
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# gas sim init
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gas_sim = gs.GasSim(particle_radius_ws, particle_compressibility, substeps)
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# main loop
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while True:
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# events
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for event in pygame.event.get():
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if event.type == pygame.QUIT:
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pygame.quit()
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quit()
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# on mouse down
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if pygame.mouse.get_pressed()[0]:
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mouse_pos_ss = pygame.mouse.get_pos()
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mouse_pos_ws = (mouse_pos_ss[0] / window_size[1], mouse_pos_ss[1] / window_size[1])
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# if not colliding with any particles
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if not gas_sim.cursor_particle_collide_test(mouse_pos_ws, cursor_radius_ws):
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gas_sim.add_particle(mouse_pos_ws)
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window.fill((0, 0, 0))
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# draw cursor
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cursor_pos = pygame.mouse.get_pos()
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pygame.gfxdraw.aacircle(window, cursor_pos[0], cursor_pos[1], int(cursor_radius_ss), (255, 255, 255))
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# draw particles
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for particle_pos in gas_sim.return_particles_pos():
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particle_pos_ss = (int(particle_pos[0] * window_size[1]), int(particle_pos[1] * window_size[1]))
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pygame.gfxdraw.aacircle(window, particle_pos_ss[0], particle_pos_ss[1], int(cursor_radius_ss), (255, 255, 255))
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# update
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pygame.display.update()
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clock.tick(60)
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