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-rw-r--r--indra/newview/app_settings/shaders/class1/deferred/skyV.glsl66
1 files changed, 37 insertions, 29 deletions
diff --git a/indra/newview/app_settings/shaders/class1/deferred/skyV.glsl b/indra/newview/app_settings/shaders/class1/deferred/skyV.glsl
index 7c02d31d43..ead754ec76 100644
--- a/indra/newview/app_settings/shaders/class1/deferred/skyV.glsl
+++ b/indra/newview/app_settings/shaders/class1/deferred/skyV.glsl
@@ -39,7 +39,9 @@ uniform vec3 camPosLocal;
uniform vec4 lightnorm;
uniform vec4 sunlight_color;
-uniform vec4 ambient;
+uniform vec4 moonlight_color;
+uniform int sun_up_factor;
+uniform vec4 ambient_color;
uniform vec4 blue_horizon;
uniform vec4 blue_density;
uniform float haze_horizon;
@@ -47,21 +49,28 @@ uniform float haze_density;
uniform float cloud_shadow;
uniform float density_multiplier;
+uniform float distance_multiplier;
uniform float max_y;
uniform vec4 glow;
+uniform float sun_moon_glow_factor;
uniform vec4 cloud_color;
+// NOTE: Keep these in sync!
+// indra\newview\app_settings\shaders\class1\deferred\skyV.glsl
+// indra\newview\app_settings\shaders\class1\deferred\cloudsV.glsl
+// indra\newview\lllegacyatmospherics.cpp
void main()
{
// World / view / projection
- gl_Position = modelview_projection_matrix * vec4(position.xyz, 1.0);
+ vec4 pos = modelview_projection_matrix * vec4(position.xyz, 1.0);
+
+ gl_Position = pos;
// Get relative position
vec3 P = position.xyz - camPosLocal.xyz + vec3(0,50,0);
- //vec3 P = position.xyz + vec3(0,50,0);
// Set altitude
if (P.y > 0.)
@@ -75,39 +84,40 @@ void main()
// Can normalize then
vec3 Pn = normalize(P);
- float Plen = length(P);
+
+ float Plen = length(P);
// Initialize temp variables
vec4 temp1 = vec4(0.);
vec4 temp2 = vec4(0.);
vec4 blue_weight;
vec4 haze_weight;
- vec4 sunlight = sunlight_color;
+ vec4 sunlight = (sun_up_factor == 1) ? sunlight_color : moonlight_color;
vec4 light_atten;
+ float dens_mul = density_multiplier;
// Sunlight attenuation effect (hue and brightness) due to atmosphere
// this is used later for sunlight modulation at various altitudes
- light_atten = (blue_density + vec4(haze_density * 0.25)) * (density_multiplier * max_y);
+ light_atten = (blue_density + vec4(haze_density * 0.25)) * (dens_mul * max_y);
// Calculate relative weights
- temp1 = blue_density + haze_density;
+ temp1 = abs(blue_density) + vec4(abs(haze_density));
blue_weight = blue_density / temp1;
haze_weight = haze_density / temp1;
// Compute sunlight from P & lightnorm (for long rays like sky)
- temp2.y = max(0., max(0., Pn.y) * 1.0 + lightnorm.y );
- temp2.y = 1. / temp2.y;
- sunlight *= exp( - light_atten * temp2.y);
+ temp2.y = max(0., max(0., Pn.y) * 1.0 + lightnorm.y );
+ temp2.y = 1. / temp2.y;
+ sunlight *= exp( - light_atten * temp2.y);
// Distance
- temp2.z = Plen * density_multiplier;
+ temp2.z = Plen * dens_mul;
// Transparency (-> temp1)
- // ATI Bugfix -- can't store temp1*temp2.z in a variable because the ati
- // compiler gets confused.
- temp1 = exp(-temp1 * temp2.z);
-
+ // ATI Bugfix -- can't store temp1*temp2.z in a variable because the ati
+ // compiler gets confused.
+ temp1 = exp(-temp1 * temp2.z);
// Compute haze glow
temp2.x = dot(Pn, lightnorm.xyz);
@@ -123,35 +133,33 @@ void main()
// Add "minimum anti-solar illumination"
temp2.x += .25;
+ vec4 color = ( blue_horizon * blue_weight * (sunlight + ambient_color)
+ + (haze_horizon * haze_weight) * (sunlight * temp2.x + ambient_color)
+ );
- // Haze color above cloud
- vary_HazeColor = ( blue_horizon * blue_weight * (sunlight + ambient)
- + (haze_horizon * haze_weight) * (sunlight * temp2.x + ambient)
- );
+ // Final atmosphere additive
+ color *= (1. - temp1);
// Increase ambient when there are more clouds
- vec4 tmpAmbient = ambient;
- tmpAmbient += (1. - tmpAmbient) * cloud_shadow * 0.5;
+ vec4 tmpAmbient = ambient_color;
+ tmpAmbient += max(vec4(0), (1. - ambient_color)) * cloud_shadow * 0.5;
// Dim sunlight by cloud shadow percentage
- sunlight *= (1. - cloud_shadow);
+ sunlight *= max(0.0, (1. - cloud_shadow));
// Haze color below cloud
vec4 additiveColorBelowCloud = ( blue_horizon * blue_weight * (sunlight + tmpAmbient)
+ (haze_horizon * haze_weight) * (sunlight * temp2.x + tmpAmbient)
);
- // Final atmosphere additive
- vary_HazeColor *= (1. - temp1);
-
// Attenuate cloud color by atmosphere
temp1 = sqrt(temp1); //less atmos opacity (more transparency) below clouds
// At horizon, blend high altitude sky color towards the darker color below the clouds
- vary_HazeColor += (additiveColorBelowCloud - vary_HazeColor) * (1. - sqrt(temp1));
-
- // won't compile on mac without this being set
- //vary_AtmosAttenuation = vec3(0.0,0.0,0.0);
+ color += (additiveColorBelowCloud - color) * (1. - sqrt(temp1));
+
+ // Haze color above cloud
+ vary_HazeColor = color;
}