Compare commits
2 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| ddb969f1f0 | |||
| 06ea99a769 |
@@ -29,8 +29,6 @@ private:
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void InitializeShaderProgram();
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void InitializeShaderProgram();
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void InitializeBuffer();
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void InitializeBuffer();
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void GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const;
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void ComputeAO(GLuint depthBuffer, Camera* camera);
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void ComputeAO(GLuint depthBuffer, Camera* camera);
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//void blurHorizontal(GLuint depthBuffer);
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//void blurHorizontal(GLuint depthBuffer);
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//void blurVertical(GLuint depthBuffer);
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//void blurVertical(GLuint depthBuffer);
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@@ -38,7 +36,7 @@ private:
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Model* m_ScreenQuad;
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Model* m_ScreenQuad;
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const IRenderer* m_Renderer;
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const IRenderer* m_Renderer;
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static const GLint MAX_MIP_LEVEL = 5;
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float m_Radius;
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float m_Radius;
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float m_Bias;
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float m_Bias;
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float m_Contrast;
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float m_Contrast;
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@@ -1,12 +1,15 @@
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#version 430
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#version 430
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#define MIP_MAPS_LEVELS (3)
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#define MAX_PIXEL_BEFOR_LOWER_MIP_LEVEL (3)
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//Number of samples per pixel
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//Number of samples per pixel
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uniform int uNumOfSamples;
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uniform int uNumOfSamples;
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//#define NUM_SAMPLES (11)
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//#define uNumOfSamples (11)
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//Number of turns around the cirle
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//Number of turns around the cirle
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uniform int uNumOfTurns;
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uniform int uNumOfTurns;
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//#define NUM_TURNS (7)
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//#define uNumOfTurns (7)
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layout (binding = 0) uniform sampler2D ViewSpaceZ;
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layout (binding = 0) uniform sampler2D ViewSpaceZ;
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@@ -42,42 +45,41 @@ vec3 getVSFaceNormal(vec3 ViewSpacePosition) {
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vec3 getSampleViewSpacePos(ivec2 ScreenSpaceCoord, int SampleIndex, float RotationAngle, float ScreenSpaceSampleRadius){
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vec3 getSampleViewSpacePos(ivec2 ScreenSpaceCoord, int SampleIndex, float RotationAngle, float ScreenSpaceSampleRadius){
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// Pure Magic...
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// SampleIndex + 0.5f so that we alpha != 0, since if alpha = 0 then screenSpaceSampleTexel will be the same texel as origin.
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float alpha = float(SampleIndex) * (1.0 / uNumOfSamples);
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float alpha = float(SampleIndex + 0.5f) * (1.0f / uNumOfSamples);
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// Angle to where to sample
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// Angle to where to sample
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float angle = alpha * (uNumOfTurns * 6.28) + RotationAngle;
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float angle = alpha * (uNumOfTurns * 6.28f) + RotationAngle;
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//Lenght to were to sample
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//Lenght to were to sample
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ScreenSpaceSampleRadius = ScreenSpaceSampleRadius * alpha;
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ScreenSpaceSampleRadius = ScreenSpaceSampleRadius * alpha;
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vec2 screenSpaceSampleOffsetVecor = vec2(cos(angle), sin(angle));
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vec2 screenSpaceSampleOffsetVecor = vec2(cos(angle), sin(angle));
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//int mipmapLevel = clamp(int(floor(log2(-ScreenSpaceSampleRadius))) - MAX_PIXEL_BEFOR_LOWER_MIP_LEVEL, 0, MIP_MAPS_LEVELS);
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// Get texel coordinate on where to sample by going screenSpaceSampleOffsetVecor direction in ScreenSpaceSampleRadius units from ScreenSpaceCoord (the point being shaded);
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// Get texel coordinate on where to sample by going screenSpaceSampleOffsetVecor direction in ScreenSpaceSampleRadius units from ScreenSpaceCoord (the point being shaded);
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ivec2 screenSpaceSampleTexel = ivec2(ScreenSpaceSampleRadius * screenSpaceSampleOffsetVecor) + ScreenSpaceCoord;
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ivec2 screenSpaceSampleTexel = (ivec2(ScreenSpaceSampleRadius * screenSpaceSampleOffsetVecor) + ScreenSpaceCoord);// >> mipmapLevel;
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return getVSPosition(screenSpaceSampleTexel);
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return getVSPosition(screenSpaceSampleTexel);
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}
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}
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float sampleAO(ivec2 ScreenSpaceCoord, vec3 Origin, vec3 OriginNormal, float ScreenSpaceSampleRadius, int SampleIndex, float RotationAngle, float Radius) {
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float sampleAO(ivec2 ScreenSpaceCoord, vec3 Origin, vec3 OriginNormal, float ScreenSpaceSampleRadius, int SampleIndex, float RotationAngle, float Radius, float Radius2) {
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float radius2 = Radius * Radius;
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vec3 sampleViewSpacePosition = getSampleViewSpacePos(ScreenSpaceCoord, SampleIndex, RotationAngle, ScreenSpaceSampleRadius);
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vec3 sampleViewSpacePosition = getSampleViewSpacePos(ScreenSpaceCoord, SampleIndex, RotationAngle, ScreenSpaceSampleRadius);
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vec3 sampleVector = Origin - sampleViewSpacePosition;
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vec3 sampleVector = Origin - sampleViewSpacePosition;
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// vv = sampleVectorLenght ^ 2
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// vv = sampleVectorLenght ^ 2
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float vv = dot(sampleVector, sampleVector);
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float vv = dot(sampleVector, sampleVector);
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// vn = angle between sampleVector and Normal
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// vn = angle between sampleVector and Normal
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float vn = dot(sampleVector, OriginNormal);
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float vn = dot(sampleVector, OriginNormal);
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const float epsilon = 0.0001f;
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const float epsilon = 0.01f;
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// vv < radius2 if the vector is shorter then the radius;
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// vv < radius2 if the vector is shorter then the radius;
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// vn - bias, offset the angle to reduse self occlusion.
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// vn - bias, offset the angle to reduse self occlusion.
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// epsilon is here to make divison by 0 impossible.
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// epsilon is here to make divison by 0 impossible.
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return float(vv < radius2) * max((vn - uBias) / (epsilon + vv), 0.0);
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return float(vv < Radius2) * max((vn - uBias) / (epsilon + vv), 0.0);
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//float f = max(radius2 - vv, 0.0);
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//float f = max(radius2 - vv, 0.0);
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//return f * f * f * max((vn - uBias) / (epsilon + vv), 0.0);
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//return f * f * f * max((vn - uBias) / (epsilon + vv), 0.0);
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}
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}
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@@ -86,9 +88,11 @@ float sampleAO(ivec2 ScreenSpaceCoord, vec3 Origin, vec3 OriginNormal, float Scr
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void main() {
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void main() {
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ivec2 originScreenCoord = ivec2(gl_FragCoord.xy);
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ivec2 originScreenCoord = ivec2(gl_FragCoord.xy);
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// We always get the Orginin from the level 0 of the mipmaps
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vec3 origin = getVSPosition(originScreenCoord);
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vec3 origin = getVSPosition(originScreenCoord);
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float radius;
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float radius;
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if(origin.z < uRadius){
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if(origin.z < uRadius){
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radius = origin.z;
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radius = origin.z;
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} else {
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} else {
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@@ -96,19 +100,24 @@ void main() {
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}
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}
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float radius2 = radius * radius;
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vec3 originNormal = getVSFaceNormal(origin);
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vec3 originNormal = getVSFaceNormal(origin);
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//screenSpaceSampleRadius is in pixels
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float screenSpaceSampleRadius = -uProjScale * radius / origin.z;
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float screenSpaceSampleRadius = -uProjScale * radius / origin.z;
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//screenSpaceSampleRadius = clamp(screenSpaceSampleRadius, 0.0f, -uProjScale * radius);
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float rotationAngleOffset = 30 * originScreenCoord.x ^ originScreenCoord.y + 10 * originScreenCoord.x * originScreenCoord.y;
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float rotationAngleOffset = 30 * originScreenCoord.x ^ originScreenCoord.y + 10 * originScreenCoord.x * originScreenCoord.y;
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float sum = 0.0;
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float sum = 0.0f;
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for (int i = 0; i < uNumOfSamples; i++) {
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for(int i = 0; i < uNumOfSamples; i++) {
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sum += sampleAO(originScreenCoord, origin, originNormal, screenSpaceSampleRadius, i, rotationAngleOffset, radius);
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sum += sampleAO(originScreenCoord, origin, originNormal, screenSpaceSampleRadius, i, rotationAngleOffset, radius, radius2);
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}
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}
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//float A = max(0.0, 1.0 - sum * (2.0f / uNumOfSamples));
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//float A = max(0.0, 1.0 - sum * (2.0f / uNumOfSamples));
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float A = 1.0 - sum * (2.0f * uIntensityScale / float(uNumOfSamples));
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float A = 1.0f - sum * (2.0f * uIntensityScale / float(uNumOfSamples));
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AO = clamp(pow(A, uContrast), 0.0f, 1.0f);
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AO = clamp(pow(A, uContrast), 0.0f, 1.0f);
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//AO = screenSpaceSampleRadius;
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//AO = vec4(originNormal, 1.0f);
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//AO = vec4(originNormal, 1.0f);
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}
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}
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@@ -0,0 +1,123 @@
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#version 430
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#define MIP_MAPS_LEVELS (5)
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#define LOWER_MIP_LEVEL (2)
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//Number of samples per pixel
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uniform int uNumOfSamples;
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//#define uNumOfSamples (11)
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//Number of turns around the cirle
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uniform int uNumOfTurns;
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//#define uNumOfTurns (7)
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layout (binding = 0) uniform sampler2D ViewSpaceZ;
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uniform vec4 uProjInfo;
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uniform float uProjScale;
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//#define ProjScale 500
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uniform float uRadius;
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//#define Radius 1.0f
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uniform float uBias;
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//#define Bias 0.012f
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uniform float uContrast;
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//#define IntensityDivR6 1
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uniform float uIntensityScale;
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out float AO;
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vec3 getVSPosition(ivec2 ScreenSpaceCoord, int mipmaplevel) {
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float z = texelFetch(ViewSpaceZ, ScreenSpaceCoord, mipmaplevel).r;
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//Get the xy view space coordinates and add the z value from ViewSpaceZ buffer.
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return vec3((uProjInfo[0] + (ScreenSpaceCoord.x * uProjInfo[1])) * z, (uProjInfo[2] + (ScreenSpaceCoord.y * uProjInfo[3])) * z, z);
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}
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vec3 getVSFaceNormal(vec3 ViewSpacePosition) {
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// Get tangets vector for the plane and ViewSpacePositin... don't ask how this functions works. It's pure magic.
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// They do this and it just works... I would guess that they approximate the function of a plane from pixels close to the pixel were on now.
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return normalize(cross(dFdx(ViewSpacePosition), dFdy(ViewSpacePosition)));
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}
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vec3 getSampleViewSpacePos(ivec2 ScreenSpaceCoord, int SampleIndex, float RotationAngle, float ScreenSpaceSampleRadius){
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// SampleIndex + 0.5f so that we alpha != 0, since if alpha = 0 then screenSpaceSampleTexel will be the same texel as origin.
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float alpha = float(SampleIndex + 0.5f) * (1.0f / uNumOfSamples);
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// Angle to where to sample
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float angle = alpha * (uNumOfTurns * 6.28f) + RotationAngle;
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//Lenght to were to sample
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ScreenSpaceSampleRadius = ScreenSpaceSampleRadius * alpha;
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vec2 screenSpaceSampleOffsetVecor = vec2(cos(angle), sin(angle));
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int mipmapLevel = clamp(int(floor(log2(-ScreenSpaceSampleRadius))) - LOWER_MIP_LEVEL, 0, MIP_MAPS_LEVELS);
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// Get texel coordinate on where to sample by going screenSpaceSampleOffsetVecor direction in ScreenSpaceSampleRadius units from ScreenSpaceCoord (the point being shaded);
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ivec2 screenSpaceSampleTexel = (ivec2(ScreenSpaceSampleRadius * screenSpaceSampleOffsetVecor) + ScreenSpaceCoord) >> mipmapLevel;
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return getVSPosition(screenSpaceSampleTexel, mipmapLevel);
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}
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float sampleAO(ivec2 ScreenSpaceCoord, vec3 Origin, vec3 OriginNormal, float ScreenSpaceSampleRadius, int SampleIndex, float RotationAngle, float Radius, float Radius2) {
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vec3 sampleViewSpacePosition = getSampleViewSpacePos(ScreenSpaceCoord, SampleIndex, RotationAngle, ScreenSpaceSampleRadius);
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vec3 sampleVector = Origin - sampleViewSpacePosition;
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// vv = sampleVectorLenght ^ 2
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float vv = dot(sampleVector, sampleVector);
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// vn = angle between sampleVector and Normal
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float vn = dot(sampleVector, OriginNormal);
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const float epsilon = 0.01f;
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// vv < radius2 if the vector is shorter then the radius;
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// vn - bias, offset the angle to reduse self occlusion.
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// epsilon is here to make divison by 0 impossible.
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return float(vv < Radius2) * max((vn - uBias) / (epsilon + vv), 0.0);
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}
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void main() {
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ivec2 originScreenCoord = ivec2(gl_FragCoord.xy);
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// We always get the Orginin from the level 0 of the mipmaps
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vec3 origin = getVSPosition(originScreenCoord, 0);
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float radius;
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if(origin.z < uRadius){
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radius = origin.z;
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} else {
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radius = uRadius;
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}
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float radius2 = radius * radius;
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vec3 originNormal = getVSFaceNormal(origin);
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//AO = originNormal;
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//return;
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//screenSpaceSampleRadius is in pixels
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float screenSpaceSampleRadius = -uProjScale * radius / origin.z;
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//screenSpaceSampleRadius = clamp(screenSpaceSampleRadius, 0.0f, pow(2, MIP_MAPS_LEVELS * LOWER_MIP_LEVEL + 1));
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//AO = clamp(int(floor(log2(screenSpaceSampleRadius))) - LOWER_MIP_LEVEL, 0, MIP_MAPS_LEVELS);
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//return;
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float rotationAngleOffset = 30 * originScreenCoord.x ^ originScreenCoord.y + 10 * originScreenCoord.x * originScreenCoord.y;
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float sum = 0.0f;
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for(int i = 0; i < uNumOfSamples; i++) {
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sum += sampleAO(originScreenCoord, origin, originNormal, screenSpaceSampleRadius, i, rotationAngleOffset, radius, radius2);
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}
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//float A = max(0.0, 1.0 - sum * (2.0f / uNumOfSamples));
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float A = 1.0f - sum * (2.0f * uIntensityScale / float(uNumOfSamples));
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AO = clamp(pow(A, uContrast), 0.0f, 1.0f);
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//AO = vec4(originNormal, 1.0f);
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}
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@@ -31,12 +31,30 @@ void SSAOPass::InitializeShaderProgram()
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void SSAOPass::InitializeBuffer()
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void SSAOPass::InitializeBuffer()
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{
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{
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GenerateTexture(&m_SSAOTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_R8, GL_RED, GL_FLOAT);
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glGenTextures(1, &m_SSAOTexture);
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glBindTexture(GL_TEXTURE_2D, m_SSAOTexture);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
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glTexImage2D(GL_TEXTURE_2D, 0, GL_R8, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height, 0, GL_RED, GL_FLOAT, nullptr);
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//glTexImage2D(GL_TEXTURE_2D, 0, GL_R32I, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height, 0, GL_RED_INTEGER, GL_INT, nullptr);
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//glTexImage2D(GL_TEXTURE_2D, 0, GL_RGB32F, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height, 0, GL_RGB, GL_FLOAT, nullptr);
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m_SSAOFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOTexture, GL_COLOR_ATTACHMENT0)));
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m_SSAOFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOTexture, GL_COLOR_ATTACHMENT0)));
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m_SSAOFramBuffer.Generate();
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m_SSAOFramBuffer.Generate();
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GenerateTexture(&m_SSAOViewSpaceZTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_R32F, GL_RED, GL_FLOAT);
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glGenTextures(1, &m_SSAOViewSpaceZTexture);
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glBindTexture(GL_TEXTURE_2D, m_SSAOViewSpaceZTexture);
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glTexImage2D(GL_TEXTURE_2D, 0, GL_R32F, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height, 0, GL_RED, GL_FLOAT, nullptr);
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//glTexStorage2D(GL_TEXTURE_2D, MAX_MIP_LEVEL, GL_R32F, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);;
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//glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height, GL_RED, GL_FLOAT, nullptr);
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//glGenerateMipmap(GL_TEXTURE_2D);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
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//glTexParameteri(GL_TEXTURE_2D, GL_GENERATE_MIPMAP_SGIS, GL_TRUE);
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m_SSAOViewSpaceZFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOViewSpaceZTexture, GL_COLOR_ATTACHMENT0)));
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m_SSAOViewSpaceZFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOViewSpaceZTexture, GL_COLOR_ATTACHMENT0)));
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m_SSAOViewSpaceZFramBuffer.Generate();
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m_SSAOViewSpaceZFramBuffer.Generate();
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@@ -45,12 +63,12 @@ void SSAOPass::InitializeBuffer()
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void SSAOPass::ClearBuffer()
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void SSAOPass::ClearBuffer()
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{
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{
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m_SSAOFramBuffer.Bind();
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m_SSAOFramBuffer.Bind();
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glClearColor(0.f, 0.f, 0.f, 0.f);
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glClearColor(1.f, 1.f, 1.f, 1.f);
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||||||
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
|
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
|
||||||
m_SSAOFramBuffer.Unbind();
|
m_SSAOFramBuffer.Unbind();
|
||||||
|
|
||||||
m_SSAOViewSpaceZFramBuffer.Bind();
|
m_SSAOViewSpaceZFramBuffer.Bind();
|
||||||
glClearColor(0.f, 0.f, 0.f, 0.f);
|
glClearColor(1.f, 1.f, 1.f, 1.f);
|
||||||
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
|
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
|
||||||
m_SSAOViewSpaceZFramBuffer.Unbind();
|
m_SSAOViewSpaceZFramBuffer.Unbind();
|
||||||
}
|
}
|
||||||
@@ -64,17 +82,6 @@ void SSAOPass::Setting(float radius, float bias, float contrast, float intensity
|
|||||||
m_NumOfTurns = NumOfTurns;
|
m_NumOfTurns = NumOfTurns;
|
||||||
}
|
}
|
||||||
|
|
||||||
void SSAOPass::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const
|
|
||||||
{
|
|
||||||
glGenTextures(1, texture);
|
|
||||||
glBindTexture(GL_TEXTURE_2D, *texture);
|
|
||||||
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapping);
|
|
||||||
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapping);
|
|
||||||
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, filtering);
|
|
||||||
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, filtering);
|
|
||||||
glTexImage2D(GL_TEXTURE_2D, 0, internalFormat, dimensions.x, dimensions.y, 0, format, type, nullptr);
|
|
||||||
GLERROR("Texture initialization failed");
|
|
||||||
}
|
|
||||||
|
|
||||||
void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
|
void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
|
||||||
{
|
{
|
||||||
@@ -111,6 +118,11 @@ void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
|
|||||||
(-2.0 / (m_Renderer->GetViewportSize().Height * camera->ProjectionMatrix()[1][1]))
|
(-2.0 / (m_Renderer->GetViewportSize().Height * camera->ProjectionMatrix()[1][1]))
|
||||||
);
|
);
|
||||||
|
|
||||||
|
m_SSAOViewSpaceZFramBuffer.Unbind();
|
||||||
|
|
||||||
|
//glBindTexture(GL_TEXTURE_2D, m_SSAOViewSpaceZTexture);
|
||||||
|
//glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height, GL_RED, GL_FLOAT, &m_SSAOViewSpaceZTexture);
|
||||||
|
//glGenerateMipmap(GL_TEXTURE_2D);
|
||||||
|
|
||||||
m_SSAOFramBuffer.Bind();
|
m_SSAOFramBuffer.Bind();
|
||||||
m_SSAOProgram->Bind();
|
m_SSAOProgram->Bind();
|
||||||
@@ -119,7 +131,7 @@ void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
|
|||||||
glBindTexture(GL_TEXTURE_2D, m_SSAOViewSpaceZTexture);
|
glBindTexture(GL_TEXTURE_2D, m_SSAOViewSpaceZTexture);
|
||||||
|
|
||||||
// How many pixel there are in a 1m long object 1m away from the camera
|
// How many pixel there are in a 1m long object 1m away from the camera
|
||||||
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uProjScale"), m_Renderer->GetViewportSize().Height / (-2.0f * glm::tan(camera->FOV() * 0.5f)));
|
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uProjScale"), m_Renderer->GetViewportSize().Height / (-2.0f * glm::tan(glm::radians(camera->FOV()) * 0.5f)));
|
||||||
|
|
||||||
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uRadius"), m_Radius);
|
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uRadius"), m_Radius);
|
||||||
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uBias"), m_Bias);
|
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uBias"), m_Bias);
|
||||||
@@ -135,7 +147,3 @@ void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
|
|||||||
m_DrawBloomPass->ClearBuffer();
|
m_DrawBloomPass->ClearBuffer();
|
||||||
m_DrawBloomPass->Draw(m_SSAOTexture);
|
m_DrawBloomPass->Draw(m_SSAOTexture);
|
||||||
}
|
}
|
||||||
|
|
||||||
void ComputeAO(GLuint depthBuffer, Camera* camera) {
|
|
||||||
|
|
||||||
}
|
|
||||||
Reference in New Issue
Block a user