2023-02-22 16:39:21 +08:00
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#version 450
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#extension GL_ARB_separate_shader_objects : enable
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#extension GL_ARB_shading_language_420pack : enable
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#extension GL_EXT_nonuniform_qualifier : require
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struct MatPropData
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{
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int textureIndex;
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float highlightPosition;
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2023-02-25 21:56:49 +08:00
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float thickness;
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2023-02-22 16:39:21 +08:00
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};
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struct GenericData
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{
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//! Delta time
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float dt;
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//! Elapsed time of the application
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float elapsedTime;
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//! Viewport width of the scene (excluding imgui, that means smaller than window)
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uint viewportWidth;
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//! Ditto but for height
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uint viewportHeight;
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};
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layout(location = 0) in struct
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{
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vec4 vertPos; // location 0
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vec2 uv; // location = 1
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vec4 normal; // location = 2
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vec4 worldPos; // location = 3
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} In;
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// material stuff
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layout(location = 4) flat in struct
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{
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int materialIndex;
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uint eid;
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uint lightLayerIndex;
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vec3 screenSpacePos;
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} In2;
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layout (set = 0, binding = 0) uniform GenericDataBuffer
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{
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GenericData data;
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} genericDataBuffer;
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layout (set = 0, binding = 1) uniform sampler2D textures[]; // for textures (global)
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layout (std430, set = 2, binding = 0) buffer MaterialProperties // For materials
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{
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MatPropData data[];
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} MatProp;
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layout(location = 0) out vec4 position;
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layout(location = 1) out uint outEntityID;
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layout(location = 2) out uint lightLayerIndices;
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layout(location = 3) out vec4 normals;
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layout(location = 4) out vec4 albedo;
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layout(location = 5) out vec4 worldSpacePosition;
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layout(location = 6) out vec4 objectVFX;
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2023-02-24 08:27:04 +08:00
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float map (float value, float srcLow, float srcHigh, float dstLow, float dstHigh)
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{
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return dstLow + (value - srcLow) * (dstHigh - dstLow) / (srcHigh - srcLow);
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}
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2023-02-22 16:39:21 +08:00
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void main()
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{
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position = In.vertPos;
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normals = In.normal;
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albedo = texture(textures[nonuniformEXT(MatProp.data[In2.materialIndex].textureIndex)], In.uv);
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worldSpacePosition = In.worldPos;
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outEntityID = In2.eid;
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lightLayerIndices = In2.lightLayerIndex;
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2023-03-04 15:55:04 +08:00
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// float vpHeight = float (In2.screenSpacePos.y) - MatProp.data[In2.materialIndex].highlightPosition;
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// bring the frame of reference to the object's screen space pos
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int scale = 470;
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float vpHeight = float (In2.screenSpacePos.y);
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float relativePos = float(int (-MatProp.data[In2.materialIndex].highlightPosition) % scale) - float (scale / 2);
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vpHeight += relativePos;
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// vpHeight = float (int (vpHeight) % genericDataBuffer.data.viewportHeight);
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2023-02-25 21:56:49 +08:00
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float scanlineScale = MatProp.data[In2.materialIndex].thickness * (1.0f - In2.screenSpacePos.z) * 100.0f;
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float lowerLimit = vpHeight - scanlineScale;
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float upperLimit = vpHeight + scanlineScale;
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if (gl_FragCoord.y > lowerLimit && gl_FragCoord.y < upperLimit)
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2023-02-24 08:27:04 +08:00
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{
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float opacity = 0.0f;
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opacity = map (abs (gl_FragCoord.y - vpHeight), 0.0f, upperLimit - vpHeight, 0.0f, 1.0f);
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opacity = 1.0f - clamp (opacity, 0.0f, 1.0f);
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objectVFX = vec4(opacity);
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}
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else
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objectVFX = vec4(0.0f, 0.0f, 0.0f, 1.0f);
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}
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