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OpenRCT2/data/shaders/drawrect.vert

67 lines
1.7 KiB
GLSL

#version 330 core
// Allows for about 8 million draws per frame
const float DEPTH_INCREMENT = 1.0 / float(1u << 22u);
uniform ivec2 uScreenSize;
// clang-format off
in ivec4 vClip;
in int vTexColourAtlas;
in vec4 vTexColourCoords;
in int vTexMaskAtlas;
in vec4 vTexMaskCoords;
in ivec3 vPalettes;
in int vFlags;
in uint vColour;
in ivec4 vBounds;
in int vDepth;
in float vZoom;
in mat4x2 vVertMat;
in vec2 vVertVec;
flat out vec2 fPosition;
out vec3 fPeelPos;
flat out int fFlags;
flat out uint fColour;
flat out vec4 fTexColour;
flat out vec4 fTexMask;
flat out vec3 fPalettes;
flat out float fZoom;
flat out int fTexColourAtlas;
flat out int fTexMaskAtlas;
flat out int fScreenHeight;
// clang-format on
void main()
{
// Clamp position by vClip, correcting interpolated values for the clipping
vec2 m = clamp(
((vVertMat * vec4(vClip)) - (vVertMat * vec4(vBounds))) / vec2(vBounds.zw - vBounds.xy) + vVertVec, 0.0, 1.0);
vec2 pos = mix(vec2(vBounds.xy), vec2(vBounds.zw), m);
fTexColour = vTexColourCoords;
fTexMask = vTexMaskCoords;
fPosition = vBounds.xy;
fZoom = vZoom;
fTexColourAtlas = vTexColourAtlas;
fTexMaskAtlas = vTexMaskAtlas;
// Transform screen coordinates to texture coordinates
float depth = 1.0 - (float(vDepth) + 1.0) * DEPTH_INCREMENT;
pos = pos / vec2(uScreenSize);
pos.y = pos.y * -1.0 + 1.0;
fPeelPos = vec3(pos, depth * 0.5 + 0.5);
fFlags = vFlags;
fColour = vColour;
fPalettes = vec3(vPalettes);
fScreenHeight = uScreenSize.y;
// Transform texture coordinates to viewport coordinates
pos = pos * 2.0 - 1.0;
gl_Position = vec4(pos, depth, 1.0);
}