X-Git-Url: https://git.ctpug.org.za/?a=blobdiff_plain;f=tabakrolletjie%2Flights.py;h=8ef12655ed5da1958a6187a474c8e9c69ea77cf7;hb=2c4e75ff72faa75a3a7386dbbc6d14ba5c18024f;hp=7b2c26380c9800ded9540fcb281766d87903b679;hpb=466429edf04d36e1eeb667e79d55c40f29afbf91;p=tabakrolletjie.git diff --git a/tabakrolletjie/lights.py b/tabakrolletjie/lights.py index 7b2c263..8ef1265 100644 --- a/tabakrolletjie/lights.py +++ b/tabakrolletjie/lights.py @@ -15,7 +15,7 @@ from .constants import LIGHT_CATEGORY, FITTINGS_CATEGORY, COLOURS from .rays import RayPolyManager from .utils import DetailedTimer from .loader import loader -from .transforms import Multiply, MultiplyImage +from .transforms import ColourWedges LIGHT_FILTER = pymunk.ShapeFilter( mask=pymunk.ShapeFilter.ALL_MASKS ^ ( @@ -36,6 +36,7 @@ class LightManager(object): def __init__(self, space, gamestate): self._space = space + self._battery_dead = False self._lights = [ BaseLight.load(cfg) for cfg in gamestate.station["lights"]] for light in self._lights: @@ -46,7 +47,14 @@ class LightManager(object): self._lights.append(light) light.add(self._space) + def battery_dead(self): + self._battery_dead = True + for light in self._lights: + light.off() + def toggle_nearest(self, *args, **kw): + if self._battery_dead: + return light = self.nearest(*args, **kw) if light: light.toggle() @@ -66,7 +74,7 @@ class LightManager(object): surface = pygame.display.get_surface() pos = pymunk.pygame_util.from_pygame(pos, surface) point_info_list = self._space.point_query( - pos, max_distance, pymunk.ShapeFilter(mask=LIGHT_CATEGORY)) + pos, max_distance, LIT_BY_FILTER) lights = [p.shape.body.light for p in point_info_list] return [ light for light in lights @@ -102,6 +110,11 @@ class LightManager(object): light.tick() +def light_fitting_by_type(light_type): + """ Render a light fitting image for a light type. """ + return BaseLight.find_cls(light_type).FITTING_IMG + + class BaseLight(object): """ Common light functionality. """ @@ -140,10 +153,15 @@ class BaseLight(object): def load(cls, config): kw = config.copy() light_type = kw.pop("type") + light_class = cls.find_cls(light_type) + return light_class(**kw) + + @classmethod + def find_cls(cls, light_type): [light_class] = [ c for c in cls.__subclasses__() if c.__name__.lower() == light_type] - return light_class(**kw) + return light_class def add(self, space): if self.body.space is not None: @@ -207,30 +225,9 @@ class BaseLight(object): def fitting_image(self): if self._fitting_image is None: - fitting_colours = [COLOURS[c] for c in self.colour_cycle] - ncolour = len(fitting_colours) - if ncolour > 3: - print "Multicoloured light should not have more than 3 colours" - ncolour = 3 - - if ncolour == 1: - self._fitting_image = loader.load_image( - "48", self.FITTING_IMG, - transform=Multiply(colour=fitting_colours[0])) - else: - if self._colour_mult_image is None: - self._colour_mult_image = pygame.surface.Surface((48, 48)) - - for i in range(ncolour): - sector = loader.load_image( - "48", "light_mask_%d_%d.png" % (ncolour, i + 1), - transform=Multiply(colour=fitting_colours[i])) - self._colour_mult_image.blit(sector, (0, 0), None, 0) - - self._fitting_image = loader.load_image( - "48", self.FITTING_IMG, - transform=MultiplyImage(image=self._colour_mult_image)) - + self._fitting_image = loader.load_image( + "48", self.FITTING_IMG, + transform=ColourWedges(colours=self.colour_cycle)) return self._fitting_image def invalidate_fitting_image(self): @@ -248,7 +245,10 @@ class BaseLight(object): return 5 * area * self.intensity / 6400 # 80x80 unit area def base_damage(self): - return 5 * self.intensity + return 10 * self.intensity + + def off(self): + self.on = False def toggle(self): self.colour_pos += 1 @@ -314,14 +314,14 @@ class SpotLight(BaseLight): def fitting_image(self): fitting_image = super(SpotLight, self).fitting_image() - rot_fitting_image = pygame.transform.rotozoom(fitting_image, self.ray_manager.direction - 90, 1) + rot_fitting_image = pygame.transform.rotozoom( + fitting_image, self.ray_manager.direction - 90, 1) rot_rect = fitting_image.get_rect().copy() rot_rect.center = rot_fitting_image.get_rect().center rot_fitting_image = rot_fitting_image.subsurface(rot_rect).copy() - + return rot_fitting_image - def tick(self): if self.angular_velocity: