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2018-07-17 14:15:37 +02:00

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#version 120
const int nLightCount = 2;
attribute vec4 in_vertex;
attribute vec3 in_normal;
attribute vec2 in_uv;
uniform vec4 wsRot;
varying vec3 npos;
varying vec3 normal;
varying vec2 uv;
varying vec3 light[nLightCount];
varying vec4 pos;
float square(float x){
return x*x;
}
vec3 wsAllign(vec3 x){
return x + 2.0 * cross(wsRot.xyz, cross(wsRot.xyz, x) + wsRot.w * x);
}
void main()
{
pos = gl_ModelViewMatrix * in_vertex;
// convert view, normal and light vectors to world space and quaternion correct for model rotation
mat3 tcamrot = transpose(mat3x3(gl_ModelViewMatrix));
npos = (wsAllign(normalize(tcamrot * -pos.xyz)));
normal = (tcamrot * (gl_NormalMatrix * wsAllign(normalize(in_normal))));
for (int i = 0; i < nLightCount; i++) {
light[i] = wsAllign(normalize((tcamrot * (((gl_LightSource[i].position)).xyz - pos.xyz))));
}
uv = in_uv;
gl_Position = gl_ProjectionMatrix * pos;
}