2012-01-24 15:47:49 +00:00
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#include "sky.h"
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2011-12-10 13:25:22 +00:00
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#include <stdlib.h>
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#include <math.h>
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#include "shared/types.h"
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2012-01-29 17:39:56 +00:00
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#include "color.h"
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2011-12-10 13:25:22 +00:00
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#include "clouds.h"
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2012-01-29 17:39:56 +00:00
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#include "euclid.h"
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2012-01-22 22:06:11 +00:00
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#include "lighting.h"
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2012-01-29 17:39:56 +00:00
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#include "render.h"
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#include "tools.h"
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2011-12-10 13:25:22 +00:00
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#define SPHERE_SIZE 1000.0
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2011-12-17 10:55:37 +00:00
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void skyInit()
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{
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}
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2012-02-12 16:57:29 +00:00
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void skyQuit()
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{
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}
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2012-04-22 17:12:39 +00:00
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void skySave(PackStream* stream, SkyDefinition* definition)
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2011-12-10 13:25:22 +00:00
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{
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2012-04-22 17:12:39 +00:00
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packWriteDouble(stream, &definition->daytime);
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colorGradationSave(stream, definition->sun_color);
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packWriteDouble(stream, &definition->sun_radius);
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colorGradationSave(stream, definition->zenith_color);
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colorGradationSave(stream, definition->haze_color);
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packWriteDouble(stream, &definition->haze_height);
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packWriteDouble(stream, &definition->haze_smoothing);
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2011-12-10 13:25:22 +00:00
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}
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2012-04-22 17:12:39 +00:00
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void skyLoad(PackStream* stream, SkyDefinition* definition)
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2011-12-10 13:25:22 +00:00
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{
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2012-04-22 17:12:39 +00:00
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packReadDouble(stream, &definition->daytime);
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colorGradationLoad(stream, definition->sun_color);
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packReadDouble(stream, &definition->sun_radius);
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colorGradationLoad(stream, definition->zenith_color);
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colorGradationLoad(stream, definition->haze_color);
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packReadDouble(stream, &definition->haze_height);
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packReadDouble(stream, &definition->haze_smoothing);
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2012-01-23 23:45:33 +00:00
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skyValidateDefinition(definition);
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2011-12-10 13:25:22 +00:00
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}
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2011-12-17 10:55:37 +00:00
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SkyDefinition skyCreateDefinition()
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2011-12-10 13:25:22 +00:00
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{
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2011-12-17 10:55:37 +00:00
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SkyDefinition def;
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def.daytime = 0.0;
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def.sun_color = colorGradationCreate();
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def.sun_radius = 1.0;
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def.zenith_color = colorGradationCreate();
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def.haze_color = colorGradationCreate();
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def.haze_height = 0.0;
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def.haze_smoothing = 0.0;
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skyValidateDefinition(&def);
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return def;
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}
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2012-01-23 23:45:33 +00:00
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void skyDeleteDefinition(SkyDefinition* definition)
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2011-12-17 10:55:37 +00:00
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{
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2012-03-08 15:10:25 +00:00
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colorGradationDelete(definition->sun_color);
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colorGradationDelete(definition->zenith_color);
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colorGradationDelete(definition->haze_color);
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2011-12-17 10:55:37 +00:00
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}
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2012-01-23 23:45:33 +00:00
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void skyCopyDefinition(SkyDefinition* source, SkyDefinition* destination)
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2011-12-17 10:55:37 +00:00
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{
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2012-03-08 15:10:25 +00:00
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destination->daytime = source->daytime;
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destination->sun_radius = source->sun_radius;
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destination->haze_height = source->haze_height;
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destination->haze_smoothing = source->haze_smoothing;
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colorGradationCopy(source->sun_color, destination->sun_color);
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colorGradationCopy(source->zenith_color, destination->zenith_color);
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colorGradationCopy(source->haze_color, destination->haze_color);
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colorGradationCopy(source->_sky_gradation, destination->_sky_gradation);
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2011-12-17 10:55:37 +00:00
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}
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void skyValidateDefinition(SkyDefinition* definition)
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{
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Color zenith, haze;
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2012-03-08 15:10:25 +00:00
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zenith = colorGradationGet(definition->zenith_color, definition->daytime);
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haze = colorGradationGet(definition->haze_color, definition->daytime);
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2011-12-17 10:55:37 +00:00
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definition->_sky_gradation = colorGradationCreate();
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2012-03-08 15:10:25 +00:00
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colorGradationQuickAdd(definition->_sky_gradation, 0.0, &haze);
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colorGradationQuickAdd(definition->_sky_gradation, definition->haze_height - definition->haze_smoothing, &haze);
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colorGradationQuickAdd(definition->_sky_gradation, definition->haze_height, &zenith);
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colorGradationQuickAdd(definition->_sky_gradation, 1.0, &zenith);
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2011-12-17 10:55:37 +00:00
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}
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2012-01-23 23:45:33 +00:00
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int skyGetLights(SkyDefinition* sky, LightDefinition* lights, int max_lights)
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2012-01-22 22:06:11 +00:00
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{
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double sun_angle;
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Vector3 sun_direction;
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int nblights = 0;
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2012-01-23 23:45:33 +00:00
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sun_angle = (sky->daytime + 0.75) * M_PI * 2.0;
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2012-01-22 22:06:11 +00:00
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sun_direction.x = cos(sun_angle);
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sun_direction.y = sin(sun_angle);
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sun_direction.z = 0.0;
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2012-01-25 17:31:36 +00:00
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/* TODO Night lights */
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2012-01-22 22:06:11 +00:00
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if (max_lights > 0)
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{
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2012-01-25 17:31:36 +00:00
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/* Light from the sun */
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2012-01-22 22:06:11 +00:00
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lights[0].direction = v3Scale(sun_direction, -1.0);
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2012-03-08 15:10:25 +00:00
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lights[0].color = colorGradationGet(sky->sun_color, sky->daytime);
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2012-01-26 18:20:19 +00:00
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lights[0].reflection = 1.0;
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2012-01-25 17:31:36 +00:00
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lights[0].filtered = 1;
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lights[0].masked = 1;
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lights[0].amplitude = 0.0;
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2012-01-22 22:06:11 +00:00
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nblights = 1;
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2012-01-25 17:31:36 +00:00
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if (max_lights > 1)
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{
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/* Skydome lighting */
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lights[1].direction.x = 0.0;
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lights[1].direction.y = -1.0;
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lights[1].direction.z = 0.0;
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2012-03-08 15:10:25 +00:00
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lights[1].color = colorGradationGet(sky->zenith_color, sky->daytime);
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2012-02-15 16:39:57 +00:00
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lights[1].color.r *= 0.6;
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lights[1].color.g *= 0.6;
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lights[1].color.b *= 0.6;
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2012-01-26 18:20:19 +00:00
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lights[1].reflection = 0.0;
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2012-01-25 17:31:36 +00:00
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lights[1].filtered = 1;
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lights[1].masked = 0;
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lights[1].amplitude = M_PI / 2.0;
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nblights = 2;
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}
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2012-01-22 22:06:11 +00:00
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}
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return nblights;
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}
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2012-01-23 23:45:33 +00:00
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Color skyGetColor(SkyDefinition* definition, Renderer* renderer, Vector3 eye, Vector3 look)
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2011-12-17 10:55:37 +00:00
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{
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2012-05-08 14:07:47 +00:00
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double dist;
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2011-12-18 21:59:33 +00:00
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Vector3 sun_position;
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Color sun_color, sky_color;
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2012-05-08 14:07:47 +00:00
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sun_position = skyGetSunDirection(definition);
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2011-12-18 21:59:33 +00:00
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2011-12-17 10:55:37 +00:00
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look = v3Normalize(look);
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2011-12-18 21:59:33 +00:00
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dist = v3Norm(v3Sub(look, sun_position));
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2012-03-08 15:10:25 +00:00
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sky_color = colorGradationGet(definition->_sky_gradation, look.y * 0.5 + 0.5);
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2011-12-18 21:59:33 +00:00
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if (dist < definition->sun_radius)
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{
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dist = dist / definition->sun_radius;
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2012-03-08 15:10:25 +00:00
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sun_color = colorGradationGet(definition->sun_color, definition->daytime);
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2011-12-18 21:59:33 +00:00
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if (dist < 0.9)
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{
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return sun_color;
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}
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else
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{
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sun_color.a = (1.0 - dist) / 0.1;
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colorMask(&sky_color, &sun_color);
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return sky_color;
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}
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}
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else
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{
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return sky_color;
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}
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2011-12-17 10:55:37 +00:00
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}
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2012-01-24 13:16:20 +00:00
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static int _postProcessFragment(RenderFragment* fragment, Renderer* renderer, void* data)
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2011-12-10 13:25:22 +00:00
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{
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2012-01-24 13:16:20 +00:00
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Vector3 location, direction;
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Color result;
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SkyDefinition* definition;
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definition = (SkyDefinition*)data;
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2011-12-10 13:25:22 +00:00
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location = fragment->vertex.location;
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2012-01-24 13:16:20 +00:00
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direction = v3Sub(location, renderer->camera_location);
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2011-12-10 13:25:22 +00:00
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2012-01-24 13:16:20 +00:00
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result = skyGetColor(definition, renderer, renderer->camera_location, v3Normalize(direction));
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result = renderer->applyClouds(renderer, result, renderer->camera_location, v3Add(renderer->camera_location, v3Scale(direction, 10.0)));
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2011-12-17 10:55:37 +00:00
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2012-01-24 13:16:20 +00:00
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fragment->vertex.color = result;
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2011-12-10 13:25:22 +00:00
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return 1;
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}
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2012-01-29 21:45:58 +00:00
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void skyRender(SkyDefinition* definition, Renderer* renderer)
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2011-12-10 13:25:22 +00:00
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{
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int res_i, res_j;
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int i, j;
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double step_i, step_j;
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double current_i, current_j;
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Vertex vertex1, vertex2, vertex3, vertex4;
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Color col;
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Vector3 direction;
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2012-01-23 23:45:33 +00:00
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res_i = renderer->render_quality * 40;
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res_j = renderer->render_quality * 20;
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2011-12-10 13:25:22 +00:00
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step_i = M_PI * 2.0 / (double)res_i;
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step_j = M_PI / (double)res_j;
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col.r = 0.0;
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col.g = 0.0;
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col.a = 1.0;
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for (j = 0; j < res_j; j++)
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{
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2012-01-29 21:45:58 +00:00
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if (!renderer->addRenderProgress(renderer, 0.0))
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2011-12-10 13:25:22 +00:00
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{
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return;
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}
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2011-12-17 10:55:37 +00:00
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2011-12-10 13:25:22 +00:00
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current_j = (double)(j - res_j / 2) * step_j;
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for (i = 0; i < res_i; i++)
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{
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current_i = (double)i * step_i;
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direction.x = SPHERE_SIZE * cos(current_i) * cos(current_j);
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direction.y = SPHERE_SIZE * sin(current_j);
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direction.z = SPHERE_SIZE * sin(current_i) * cos(current_j);
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2012-01-23 23:45:33 +00:00
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vertex1.location = v3Add(renderer->camera_location, direction);
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2011-12-10 13:25:22 +00:00
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col.b = sin(direction.x) * sin(direction.x) * cos(direction.z) * cos(direction.z);
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vertex1.color = col;
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vertex1.callback = _postProcessFragment;
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2012-01-24 13:16:20 +00:00
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vertex1.callback_data = definition;
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2011-12-10 13:25:22 +00:00
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direction.x = SPHERE_SIZE * cos(current_i + step_i) * cos(current_j);
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direction.y = SPHERE_SIZE * sin(current_j);
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direction.z = SPHERE_SIZE * sin(current_i + step_i) * cos(current_j);
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2012-01-23 23:45:33 +00:00
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vertex2.location = v3Add(renderer->camera_location, direction);
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2011-12-10 13:25:22 +00:00
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col.b = sin(direction.x) * sin(direction.x) * cos(direction.z) * cos(direction.z);
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vertex2.color = col;
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vertex2.callback = _postProcessFragment;
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2012-01-24 13:16:20 +00:00
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vertex2.callback_data = definition;
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2011-12-10 13:25:22 +00:00
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direction.x = SPHERE_SIZE * cos(current_i + step_i) * cos(current_j + step_j);
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direction.y = SPHERE_SIZE * sin(current_j + step_j);
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direction.z = SPHERE_SIZE * sin(current_i + step_i) * cos(current_j + step_j);
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2012-01-23 23:45:33 +00:00
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vertex3.location = v3Add(renderer->camera_location, direction);
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2011-12-10 13:25:22 +00:00
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col.b = sin(direction.x) * sin(direction.x) * cos(direction.z) * cos(direction.z);
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vertex3.color = col;
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vertex3.callback = _postProcessFragment;
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2012-01-24 13:16:20 +00:00
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vertex3.callback_data = definition;
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2011-12-10 13:25:22 +00:00
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direction.x = SPHERE_SIZE * cos(current_i) * cos(current_j + step_j);
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direction.y = SPHERE_SIZE * sin(current_j + step_j);
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direction.z = SPHERE_SIZE * sin(current_i) * cos(current_j + step_j);
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2012-01-23 23:45:33 +00:00
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vertex4.location = v3Add(renderer->camera_location, direction);
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2011-12-10 13:25:22 +00:00
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col.b = sin(direction.x) * sin(direction.x) * cos(direction.z) * cos(direction.z);
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vertex4.color = col;
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vertex4.callback = _postProcessFragment;
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2012-01-24 13:16:20 +00:00
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vertex4.callback_data = definition;
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2011-12-10 13:25:22 +00:00
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/* TODO Triangles at poles */
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2012-01-29 21:45:58 +00:00
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renderer->pushQuad(renderer, &vertex1, &vertex4, &vertex3, &vertex2);
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2011-12-10 13:25:22 +00:00
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}
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}
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}
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2012-05-08 14:07:47 +00:00
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Vector3 skyGetSunDirection(SkyDefinition* definition)
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{
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Vector3 result;
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double sun_angle = (definition->daytime + 0.75) * M_PI * 2.0;
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result.x = cos(sun_angle);
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result.y = sin(sun_angle);
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result.z = 0.0;
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return result;
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}
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Color skyGetSunColor(SkyDefinition* definition)
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{
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return colorGradationGet(definition->sun_color, definition->daytime);
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}
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Color skyGetZenithColor(SkyDefinition* definition)
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{
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return colorGradationGet(definition->zenith_color, definition->daytime);
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}
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