Rename shp.(frag|vert) to combined.(frag|vert).
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108
glsl/combined.vert
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108
glsl/combined.vert
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@@ -0,0 +1,108 @@
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uniform vec3 Scroll;
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uniform vec3 r1, r2;
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attribute vec4 aVertexPosition;
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attribute vec4 aVertexTexCoord;
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attribute vec2 aVertexTexMetadata;
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varying vec4 vTexCoord;
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varying vec2 vTexMetadata;
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varying vec4 vChannelMask;
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varying vec4 vDepthMask;
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varying vec2 vTexSampler;
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varying vec4 vColorFraction;
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varying vec4 vRGBAFraction;
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varying vec4 vPalettedFraction;
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vec4 UnpackChannelAttributes(float x)
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{
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// The channel attributes float encodes a set of attributes
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// stored as flags in the mantissa of the unnormalized float value.
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// Bits 9-11 define the sampler index (0-7) that the secondary texture is bound to
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// Bits 6-8 define the sampler index (0-7) that the primary texture is bound to
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// Bits 3-5 define the behaviour of the secondary texture channel:
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// 000: Channel is not used
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// 001, 011, 101, 111: Sample depth sprite from channel R,G,B,A
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// Bits 0-2 define the behaviour of the primary texture channel:
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// 000: Channel is not used (aVertexTexCoord instead defines a color value)
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// 010: Sample RGBA sprite from all four channels
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// 001, 011, 101, 111: Sample paletted sprite from channel R,G,B,A
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float secondarySampler = 0.0;
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if (x >= 2048.0) { x -= 2048.0; secondarySampler += 4.0; }
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if (x >= 1024.0) { x -= 1024.0; secondarySampler += 2.0; }
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if (x >= 512.0) { x -= 512.0; secondarySampler += 1.0; }
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float primarySampler = 0.0;
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if (x >= 256.0) { x -= 256.0; primarySampler += 4.0; }
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if (x >= 128.0) { x -= 128.0; primarySampler += 2.0; }
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if (x >= 64.0) { x -= 64.0; primarySampler += 1.0; }
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float secondaryChannel = 0.0;
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if (x >= 32.0) { x -= 32.0; secondaryChannel += 4.0; }
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if (x >= 16.0) { x -= 16.0; secondaryChannel += 2.0; }
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if (x >= 8.0) { x -= 8.0; secondaryChannel += 1.0; }
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float primaryChannel = 0.0;
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if (x >= 4.0) { x -= 4.0; primaryChannel += 4.0; }
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if (x >= 2.0) { x -= 2.0; primaryChannel += 2.0; }
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if (x >= 1.0) { x -= 1.0; primaryChannel += 1.0; }
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return vec4(primaryChannel, secondaryChannel, primarySampler, secondarySampler);
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}
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vec4 SelectChannelMask(float x)
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{
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if (x >= 7.0)
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return vec4(0,0,0,1);
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if (x >= 5.0)
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return vec4(0,0,1,0);
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if (x >= 3.0)
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return vec4(0,1,0,0);
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if (x >= 2.0)
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return vec4(1,1,1,1);
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if (x >= 1.0)
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return vec4(1,0,0,0);
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return vec4(0, 0, 0, 0);
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}
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vec4 SelectColorFraction(float x)
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{
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if (x > 0.0)
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return vec4(0, 0, 0, 0);
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return vec4(1, 1, 1, 1);
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}
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vec4 SelectRGBAFraction(float x)
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{
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if (x == 2.0)
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return vec4(1, 1, 1, 1);
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return vec4(0, 0, 0, 0);
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}
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vec4 SelectPalettedFraction(float x)
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{
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if (x == 0.0 || x == 2.0)
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return vec4(0, 0, 0, 0);
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return vec4(1, 1, 1, 1);
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}
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void main()
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{
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gl_Position = vec4((aVertexPosition.xyz - Scroll.xyz) * r1 + r2, 1);
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vTexCoord = aVertexTexCoord;
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vTexMetadata = aVertexTexMetadata;
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vec4 attrib = UnpackChannelAttributes(aVertexTexMetadata.t);
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vChannelMask = SelectChannelMask(attrib.s);
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vColorFraction = SelectColorFraction(attrib.s);
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vRGBAFraction = SelectRGBAFraction(attrib.s);
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vPalettedFraction = SelectPalettedFraction(attrib.s);
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vDepthMask = SelectChannelMask(attrib.t);
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vTexSampler = attrib.pq;
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}
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