Merge pull request #25 from teamfisk/Forward+

Forward+
This commit is contained in:
2016-01-11 12:43:43 +01:00
26 changed files with 781 additions and 273 deletions
+1 -1
Submodule assets updated: 673d4a4e4c...c8e631f449
+38
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@@ -0,0 +1,38 @@
#ifndef DrawFinalPass_h__
#define DrawFinalPass_h__
#include "IRenderer.h"
#include "DrawFinalPassState.h"
#include "LightCullingPass.h"
#include "FrameBuffer.h"
#include "ShaderProgram.h"
#include "Util/UnorderedMapVec2.h"
#include "Texture.h"
class DrawFinalPass
{
public:
DrawFinalPass(IRenderer* renderer, LightCullingPass* lightCullingPass);
~DrawFinalPass() { }
void InitializeTextures();
void InitializeFrameBuffers();
void InitializeShaderPrograms();
void Draw(RenderQueueCollection& rq);
//Getters
private:
void GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const;
Texture* m_WhiteTexture;
const IRenderer* m_Renderer;
const LightCullingPass* m_LightCullingPass;
ShaderProgram* m_ForwardPlusProgram;
};
#endif
@@ -0,0 +1,15 @@
#ifndef DrawFinalPassState_h__
#define DrawFinalPassState_h__
#include "Rendering/RenderState.h"
class DrawFinalPassState : public RenderState
{
public:
DrawFinalPassState();
~DrawFinalPassState();
private:
};
#endif
@@ -0,0 +1,78 @@
#ifndef LightCullingPass_h__
#define LightCullingPass_h__
#define TILE_SIZE 16
#define NUM_LIGHTS 1000
#include "IRenderer.h"
#include "LightCullingPassState.h"
#include "ShaderProgram.h"
class LightCullingPass
{
public:
LightCullingPass(IRenderer* renderer);
~LightCullingPass();
void GenerateNewFrustum();
void CullLights();
void FillLightList(RenderQueueCollection& rq);
GLuint FrustumSSBO() const { return m_FrustumSSBO; }
GLuint LightSSBO() const { return m_LightSSBO; }
GLuint LightGridSSBO() const { return m_LightGridSSBO; }
GLuint LightOffsetSSBO() const { return m_LightOffsetSSBO; }
GLuint LightIndexSSBO() const { return m_LightIndexSSBO; }
private:
void InitializeSSBOs();
void InitializeShaderPrograms();
const IRenderer* m_Renderer;
GLuint m_FrustumSSBO = 0;
GLuint m_LightSSBO = 0;
GLuint m_LightGridSSBO = 0;
GLuint m_LightOffsetSSBO = 0;
GLuint m_LightIndexSSBO = 0;
ShaderProgram* m_CalculateFrustumProgram;
ShaderProgram* m_LightCullProgram;
struct Plane {
glm::vec3 Normal;
float d;
};
struct Frustum {
Plane Planes[4];
};
Frustum m_Frustums[80*45]; //TODO: Renderer: Make this change with resolution
//This should be a component
struct PointLight {
glm::vec4 Position = glm::vec4(0.f);
glm::vec4 Color = glm::vec4(1.f);
float Radius = 5.f;
float Intensity = 0.8f;
float Falloff = 0.3f;
float Padding = 1337;
};
std::vector<PointLight> m_PointLights;
struct LightGrid {
float Start;
float Amount;
glm::vec2 Padding;
};
LightGrid m_LightGrid[80*45]; //TODO: Renderer: Make this change with resolution
int m_LightOffset = 0;
float m_LightIndex[80*45*200]; //TODO: Renderer: Make this change with resolution
};
#endif
+4 -2
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@@ -1,6 +1,8 @@
#ifndef PickingPass_h__
#define PickingPass_h__
#include "IRenderer.h"
#include "PickingPassState.h"
#include "FrameBuffer.h"
@@ -9,6 +11,8 @@
#include "../Core/EventBroker.h"
#include "EPicking.h"
class PickingPass
{
public:
@@ -20,7 +24,6 @@ public:
void Draw(RenderQueueCollection& rq);
//Getters
const ShaderProgram& PickingProgram() const { return *m_PickingProgram; }
const std::unordered_map<glm::vec2, EntityID>& PickingColorsToEntity() const { return m_PickingColorsToEntity; }
@@ -28,7 +31,6 @@ public:
GLuint DepthBuffer() const { return m_DepthBuffer; }
const FrameBuffer& PickingBuffer() const { return m_PickingBuffer; }
private:
void GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const;
+6 -5
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@@ -82,11 +82,12 @@ struct SpriteJob : RenderJob
struct PointLightJob : RenderJob
{
glm::vec3 Position;
glm::vec3 SpecularColor = glm::vec3(1, 1, 1);
glm::vec3 DiffuseColor = glm::vec3(1, 1, 1);
float Radius = 1.f;
float Intensity = 0.8f;
glm::vec4 Position;
glm::vec4 Color;
float Radius;
float Intensity;
float Falloff;
float padding = 123;
void CalculateHash() override
{
+4 -61
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@@ -13,19 +13,8 @@
#include "PickingPass.h"
#include "DrawScenePass.h"
#include "DebugCameraInputController.h"
#define TILE_SIZE 16
#define NUM_LIGHTS 3
enum lightType
{
Point,
Spot,
Directional,
Area
};
#include "LightCullingPass.h"
#include "DrawFinalPass.h"
#include "../Core/EventBroker.h"
#include "EPicking.h"
@@ -58,70 +47,24 @@ private:
DrawScenePass* m_DrawScenePass;
PickingPass* m_PickingPass;
LightCullingPass* m_LightCullingPass;
ImGuiRenderPass* m_ImGuiRenderPass;
DrawFinalPass* m_DrawFinalPass;
//----------------------Functions----------------------//
void InitializeWindow();
void InitializeShaders();
void InitializeTextures();
void InitializeSSBOs();
void InitializeRenderPasses();
//TODO: Renderer: Get InputUpdate out of renderer
void InputUpdate(double dt);
//void PickingPass(RenderQueueCollection& rq);
void DrawScreenQuad(GLuint textureToDraw);
//----------------------Forward+-----------------------//
void CalculateFrustum();
void CullLights();
//Frustum
struct Plane {
glm::vec3 Normal;
float d;
};
struct Frustum {
Plane Planes[4];
};
Frustum m_Frustums[80*45]; //TODO: Renderer: Make this change with resolution
//Lights
void TEMPCreateLights();
//TODO: Renderer: Add Directionllights, spotlights and area lights to this as type.
struct PointLight {
glm::vec4 Position = glm::vec4(0.f);
glm::vec4 Color = glm::vec4(1.f);
float Radius = 5.f;
float Intensity = 0.8f;
float Falloff = 0.3f;
float Padding = 1337;
};
PointLight m_PointLights[NUM_LIGHTS];
struct LightGrid {
int Amount;
int Start;
glm::vec2 Padding;
};
LightGrid m_LightGrid[80*45];
int m_LightOffset = 0;
int m_LightIndex[80*45*200];
//-------------------------SSBO------------------------//
GLuint m_FrustumSSBO = 0;
GLuint m_LightSSBO = 1;
GLuint m_LightGridSSBO = 2;
GLuint m_LightOffsetSSBO = 3;
GLuint m_LightIndexSSBO = 4;
void GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type);
//--------------------ShaderPrograms-------------------//
ShaderProgram* m_BasicForwardProgram;
ShaderProgram* m_DrawScreenQuadProgram;
ShaderProgram* m_CalculateFrustumProgram;
ShaderProgram* m_LightCullProgram;
};
#endif
+1
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@@ -7,6 +7,7 @@
<xs:include schemaLocation="Components/RaptorCopter.xsd"/>
<xs:include schemaLocation="Components/Player.xsd"/>
<xs:include schemaLocation="Components/AABB.xsd"/>
<xs:include schemaLocation="Components/PointLight.xsd"/>
<xs:include schemaLocation="Components/Trigger.xsd"/>
<xs:include schemaLocation="Components/Health.xsd"/>
</xs:schema>
@@ -0,0 +1,7 @@
<c:PointLight>
<Color R="1" G="1" B="1" A="1"/>
<Radius>1.0</Radius>
<Intensity>0.8</Intensity>
<Falloff>0.3</Falloff>
<Visible>true</Visible>
</c:PointLight>
@@ -0,0 +1,20 @@
<?xml version="1.0"?>
<xs:schema xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:t="types">
<xs:import schemaLocation="../Types.xsd" namespace="types"/>
<xs:element name="PointLight">
<xs:annotation>
<xs:documentation>A pointlight that lights up geometry in a radius.</xs:documentation>
</xs:annotation>
<xs:complexType>
<xs:all>
<xs:element name="Color" type="t:Color" minOccurs="0"/>
<xs:element name="Radius" type="t:double" minOccurs="0"/>
<xs:element name="Intensity" type="t:double" minOccurs="0"/>
<xs:element name="Falloff" type="t:double" minOccurs="0"/>
<xs:element name="Visible" type="t:bool" minOccurs="0"/>
</xs:all>
</xs:complexType>
</xs:element>
</xs:schema>
+4 -4
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@@ -10,7 +10,7 @@
</c:Model>
</Components>
<Children>
<Entity>
<!--<Entity>
<Components>
<c:Transform>
<Position X="-1.5"/>
@@ -20,8 +20,8 @@
<Resource>Models/ScaleWidget.obj</Resource>
</c:Model>
</Components>
</Entity>
<Entity>
</Entity>-->
<!--<Entity>
<Components>
<c:Transform>
<Position X="1.5"/>
@@ -33,7 +33,7 @@
<c:Trigger>
</c:Trigger>
</Components>
</Entity>
</Entity>-->
<!--<Entity>
<Components>
<c:Player>
+1
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@@ -16,6 +16,7 @@
<xs:element ref="c:RaptorCopter" minOccurs="0"/>
<xs:element ref="c:Player" minOccurs="0"/>
<xs:element ref="c:Health" minOccurs="0"/>
<xs:element ref="c:PointLight" minOccurs="0"/>
</xs:all>
</xs:complexType>
</xs:element>
+154
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@@ -0,0 +1,154 @@
#version 430
//in uvec3 gl_NumWorkGroups; //contains the number of workgroups that have been dispatched to a compute shader
//in uvec3 gl_WorkGroupID; //contains the index of the workgroup currently being operated on by a compute shader
//in uvec3 gl_LocalInvocationID; //contains the index of work item currently being operated on by a compute shader
//in uvec3 gl_GlobalInvocationID; //contains the global index of work item currently being operated on by a compute shader
//in uint gl_LocalInvocationIndex; //contains the local linear index of work item currently being operated on by a compute shader
#define MAX_LIGHTS_PER_TILE 200
#define NUM_TILES 3600
#define TILE_SIZE 16
uniform mat4 V;
struct Plane {
vec3 Normal;
float d;
};
struct Frustum {
Plane Planes[4];
};
layout (std430, binding = 0) buffer FrustumBuffer
{
Frustum Data[];
} Frustums;
struct PointLight {
vec4 Position;
vec4 Color;
float Radius;
float Intensity;
float Falloff;
float Padding;
};
layout (std430, binding = 1) buffer LightBuffer
{
PointLight List[];
} PointLights;
struct LightGrid {
float Start;
float Amount;
vec2 Padding;
};
layout (std430, binding = 2) buffer LightGridBuffer
{
LightGrid Data[];
} LightGrids;
layout (std430, binding = 3) buffer LightOffsetBuffer
{
int LightOffset[];
};
layout (std430, binding = 4) buffer LightIndexBuffer
{
float LightIndex[];
};
shared int GroupLightCount;
shared int GroupLightIndexStartOffset;
shared int GroupLightIndex[MAX_LIGHTS_PER_TILE];
shared Frustum GroupFrustum;
int GroupIndex;
bool SphereInsidePlane(vec3 center, float radius, Plane plane)
{
return dot(plane.Normal, center) - plane.d > -radius;
}
bool SphereInsideFrustrum(vec3 center, float radius, Frustum frustum/*, float zNear, float zFar*/)
{
//Check depth here
//if ( sphere.c.z - sphere.r > zNear || sphere.c.z + sphere.r < zFar )
//{
// result = false;
//}
for (int i =0; i < 4; i++)
{
if(! SphereInsidePlane(center, radius, frustum.Planes[i]))
{
return false;
}
}
return true;
}
void AppendLight(int li)
{
int index;
index = atomicAdd(GroupLightCount, 1);
if( index < MAX_LIGHTS_PER_TILE )
{
GroupLightIndex[index] = int(li);
}
}
layout (local_size_x = 16, local_size_y = 16, local_size_z = 1) in;
void main ()
{
GroupIndex = int(gl_WorkGroupID.x + (gl_WorkGroupID.y * 80));
if(gl_LocalInvocationIndex == 0)
{
GroupLightCount = 0;
GroupFrustum = Frustums.Data[GroupIndex];
}
barrier();
memoryBarrierShared();
for(int i = int(gl_LocalInvocationIndex); i < PointLights.List.length(); i += TILE_SIZE*TILE_SIZE)
{
PointLight light = PointLights.List[i];
//if pointlight
//Pos i view antagligen
if(SphereInsideFrustrum( vec3(V * light.Position), light.Radius, GroupFrustum))
{
//TODO: Fix transparent and opaque list, and depth test.
AppendLight( i );
}
//if conelight
//if directional
}
barrier();
memoryBarrierShared();
if(gl_LocalInvocationIndex == 0)
{
GroupLightIndexStartOffset = atomicAdd(LightOffset[0], GroupLightCount);
LightGrids.Data[GroupIndex].Start = GroupLightIndexStartOffset;
LightGrids.Data[GroupIndex].Amount = GroupLightCount;
}
barrier();
for (uint i = gl_LocalInvocationIndex; i < GroupLightCount; i += TILE_SIZE * TILE_SIZE )
{
LightIndex[GroupLightIndexStartOffset + i] = GroupLightIndex[i];
}
}
+132
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@@ -0,0 +1,132 @@
#version 430
uniform mat4 M;
uniform mat4 V;
uniform mat4 P;
uniform vec4 Color;
uniform sampler2D texture0;
#define TILE_SIZE 16
struct PointLight {
vec4 Position;
vec4 Color;
float Radius;
float Intensity;
float Falloff;
float Padding;
};
layout (std430, binding = 1) buffer LightBuffer
{
PointLight List[];
} PointLights;
struct LightGrid {
float Start;
float Amount;
vec2 Padding;
};
layout (std430, binding = 2) buffer LightGridBuffer
{
LightGrid Data[];
} LightGrids;
layout (std430, binding = 4) buffer LightIndexBuffer
{
float LightIndex[];
};
in VertexData{
vec3 Position;
vec3 Normal;
vec2 TextureCoordinate;
vec4 DiffuseColor;
}Input;
out vec4 fragmentColor;
vec4 scene_ambient = vec4(0.3,0.3,0.3,1);
struct LightResult {
vec4 Diffuse;
vec4 Specular;
};
float CalcAttenuation(float radius, float dist) {
return 1.0 - smoothstep(radius * 0.3, radius, dist);
}
vec4 CalcSpecular(vec4 lightColor, vec4 viewVec, vec4 lightVec, vec4 normal) {
vec4 R = normalize( reflect(-lightVec, normal));
float RdotV = max( dot(R, viewVec), 0.0);
return lightColor * pow(RdotV, 90.0);
}
vec4 CalcDiffuse(vec4 lightColor, vec4 lightVec, vec4 normal) {
float power = max( dot(normal, lightVec), 0.0);
return lightColor * power;
}
LightResult CalcPointLight(vec4 lightPos, float lightRadius, vec4 lightColor, float intensity, vec4 viewVec, vec4 position, vec4 normal)
{
vec4 L = lightPos - position;
float dist = length(L);
L = normalize(L);
float attenuation = CalcAttenuation(lightRadius, dist);
LightResult result;
result.Diffuse = CalcDiffuse(lightColor, L, normal) * attenuation * intensity;
result.Specular = CalcSpecular(lightColor, viewVec, L, normal) * attenuation * intensity;
return result;
}
void main()
{
vec4 texel = texture2D(texture0, Input.TextureCoordinate);
vec4 position = V * M * vec4(Input.Position, 1.0);
vec4 normal = V * vec4(Input.Normal, 0.0);
vec4 viewVec = normalize(-position);
vec2 tilePos;
tilePos.x = int(gl_FragCoord.x/16);
tilePos.y = int(gl_FragCoord.y/16);
LightResult totalLighting;
totalLighting.Diffuse = scene_ambient;
int currentTile = int(floor(gl_FragCoord.x/TILE_SIZE) + (floor(gl_FragCoord.y/TILE_SIZE) * 80));
int start = int(LightGrids.Data[currentTile].Start);
int amount = int(LightGrids.Data[currentTile].Amount);
//for(int i = 0; i < 3; i++)
for(int i = start; i < start + amount; i++)
{
int l = int(LightIndex[i]);
LightResult result = CalcPointLight(V * PointLights.List[l].Position, PointLights.List[l].Radius, PointLights.List[l].Color, PointLights.List[l].Intensity, viewVec, position, normal);
totalLighting.Diffuse += result.Diffuse;
totalLighting.Specular += result.Specular;
}
fragmentColor += Input.DiffuseColor * (totalLighting.Diffuse + totalLighting.Specular) * texel * Color;
//fragmentColor += Input.DiffuseColor * (totalLighting.Diffuse) * texel * Color;
//fragmentColor += vec4(0.0, LightGrids.Data[currentTile].Amount/3.0, 0, 1);
//fragmentColor = texel * Input.DiffuseColor * Color;
if(int(gl_FragCoord.x)%16 == 0 || int(gl_FragCoord.y)%16 == 0 )
{
//fragmentColor += vec4(0.5, 0, 0, 0);
} else {
//fragmentColor += vec4(LightGrids.Data[int(tilePos.x + tilePos.y*80)].Amount/3.0, 0, 0, 1);
}
}
+34
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@@ -0,0 +1,34 @@
#version 430
uniform mat4 M;
uniform mat4 V;
uniform mat4 P;
layout(location = 0) in vec3 Position;
layout(location = 1) in vec3 Normal;
layout(location = 2) in vec3 Tangent;
layout(location = 3) in vec3 BiTangent;
layout(location = 4) in vec2 TextureCoords;
layout(location = 5) in vec4 DiffuseVertexColor;
layout(location = 6) in vec4 SpecularVertexColor;
layout(location = 7) in vec4 BoneIndices1;
layout(location = 8) in vec4 BoneIndices2;
layout(location = 9) in vec4 BoneWeights1;
layout(location = 10) in vec4 BoneWeights2;
out VertexData{
vec3 Position;
vec3 Normal;
vec2 TextureCoordinate;
vec4 DiffuseColor;
}Output;
void main()
{
gl_Position = P*V*M * vec4(Position, 1.0);
Output.Position = Position;
Output.TextureCoordinate = TextureCoords;
Output.Normal = Normal;
Output.DiffuseColor = DiffuseVertexColor;
}
+27 -24
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@@ -16,7 +16,7 @@ struct Frustum {
layout (std430, binding = 0) buffer FrustumBuffer
{
Frustum Data[3600];
Frustum Data[];
} Frustums;
vec4 ConvertToView(vec4 ScreenCoords)
@@ -43,31 +43,34 @@ Plane ComputePlane( vec3 p0, vec3 p1, vec3 p2 )
layout (local_size_x = 16, local_size_y = 16, local_size_z = 1) in;
void main ()
{
if(gl_GlobalInvocationID.x * TILE_SIZE < ScreenDimensions.x && gl_GlobalInvocationID.y * TILE_SIZE < ScreenDimensions.y) {
//Top-Left = 0 | Top-Right = 1
//Bottom-Left = 2 | Bottom-Right = 3
vec4 ScreenCoords[4];
ScreenCoords[0] = vec4(gl_GlobalInvocationID.x * TILE_SIZE, (gl_GlobalInvocationID.y + 1 ) * TILE_SIZE, -1.0, 1.0); // Z-axis might need to be 1
ScreenCoords[1] = vec4((gl_GlobalInvocationID.x + 1) * TILE_SIZE, (gl_GlobalInvocationID.y + 1) * TILE_SIZE, -1.0, 1.0);
ScreenCoords[2] = vec4(gl_GlobalInvocationID.x * TILE_SIZE, (gl_GlobalInvocationID.y) * TILE_SIZE, -1.0, 1.0);
ScreenCoords[3] = vec4((gl_GlobalInvocationID.x + 1) * TILE_SIZE, (gl_GlobalInvocationID.y) * TILE_SIZE, -1.0, 1.0);
vec3 ViewVectors[4];
for(int i = 0; i < 4; i++) {
ViewVectors[i] = vec3(ConvertToView(ScreenCoords[i]));
}
vec3 EyePos = vec3(0,0,0);
Frustum f;
f.Planes[0] = ComputePlane(EyePos, ViewVectors[2], ViewVectors[0]);
f.Planes[1] = ComputePlane(EyePos, ViewVectors[1], ViewVectors[3]);
f.Planes[2] = ComputePlane(EyePos, ViewVectors[0], ViewVectors[1]);
f.Planes[3] = ComputePlane(EyePos, ViewVectors[3], ViewVectors[2]);
//Top-Left = 0 | Top-Right = 1
//Bottom-Left = 2 | Bottom-Right = 3
vec4 ScreenCoords[4];
ScreenCoords[0] = vec4(gl_GlobalInvocationID.x * TILE_SIZE, (gl_GlobalInvocationID.y + 1) * TILE_SIZE, -1.0, 1.0);
ScreenCoords[1] = vec4((gl_GlobalInvocationID.x + 1) * TILE_SIZE, (gl_GlobalInvocationID.y + 1) * TILE_SIZE, -1.0, 1.0);
ScreenCoords[2] = vec4(gl_GlobalInvocationID.x * TILE_SIZE, (gl_GlobalInvocationID.y) * TILE_SIZE, -1.0, 1.0);
ScreenCoords[3] = vec4((gl_GlobalInvocationID.x + 1) * TILE_SIZE, (gl_GlobalInvocationID.y) * TILE_SIZE, -1.0, 1.0);
Frustums.Data[gl_GlobalInvocationID.x + gl_GlobalInvocationID.y*80] = f;
vec3 ViewVectors[4];
for(int i = 0; i < 4; i++) {
ViewVectors[i] = vec3(ConvertToView(ScreenCoords[i]));
}
vec3 EyePos = vec3(0.0, 0.0 ,0.0);
Frustum f;
f.Planes[0] = ComputePlane(EyePos, ViewVectors[2], ViewVectors[0]); // left plane
f.Planes[1] = ComputePlane(EyePos, ViewVectors[1], ViewVectors[3]); // right plane
f.Planes[2] = ComputePlane(EyePos, ViewVectors[0], ViewVectors[1]); // top plane
f.Planes[3] = ComputePlane(EyePos, ViewVectors[3], ViewVectors[2]); // bottom plane
if ( gl_GlobalInvocationID.x < ScreenDimensions.x / TILE_SIZE && gl_GlobalInvocationID.y < ScreenDimensions.y / TILE_SIZE ) { // inside the screen
Frustums.Data[gl_GlobalInvocationID.x + gl_GlobalInvocationID.y*80] = f;
}
}
-35
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@@ -1,35 +0,0 @@
#version 430
//in uvec3 gl_NumWorkGroups;
//in uvec3 gl_WorkGroupID;
//in uvec3 gl_LocalInvocationID;
//in uvec3 gl_GlobalInvocationID;
//in uint gl_LocalInvocationIndex;
#define NUM_LIGHTS 3
#define MAX_LIGHTS_PER_TILE 200
#define NUM_TILES 3600
struct Plane {
vec3 Normal;
float d;
};
struct Frustum {
Plane Planes[4];
};
layout (std430, binding = 0) buffer FrustumBuffer
{
Frustum Data[3600];
} Frustums;
layout (local_size_x = 16, local_size_y = 16, local_size_z = 1) in;
void main ()
{
if(1 == 1) {
}
}
+65
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@@ -0,0 +1,65 @@
#include "Rendering/DrawFinalPass.h"
DrawFinalPass::DrawFinalPass(IRenderer* renderer, LightCullingPass* lightCullingPass)
{
m_Renderer = renderer;
m_LightCullingPass = lightCullingPass;
InitializeTextures();
InitializeShaderPrograms();
}
void DrawFinalPass::InitializeTextures()
{
m_WhiteTexture = ResourceManager::Load<Texture>("Textures/Core/Blank.png");
}
void DrawFinalPass::InitializeShaderPrograms()
{
m_ForwardPlusProgram = ResourceManager::Load<ShaderProgram>("#ForwardPlusProgram");
m_ForwardPlusProgram->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/ForwardPlus.vert.glsl")));
m_ForwardPlusProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/ForwardPlus.frag.glsl")));
m_ForwardPlusProgram->Compile();
m_ForwardPlusProgram->Link();
}
void DrawFinalPass::Draw(RenderQueueCollection& rq)
{
GLERROR("DrawFinalPass::Draw: Pre");
DrawFinalPassState state;
m_ForwardPlusProgram->Bind();
GLuint shaderHandle = m_ForwardPlusProgram->GetHandle();
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 1, m_LightCullingPass->LightSSBO());
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 2, m_LightCullingPass->LightGridSSBO());
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 4, m_LightCullingPass->LightIndexSSBO());
glUniformMatrix4fv(glGetUniformLocation(shaderHandle, "V"), 1, GL_FALSE, glm::value_ptr(m_Renderer->Camera()->ViewMatrix()));
glUniformMatrix4fv(glGetUniformLocation(shaderHandle, "P"), 1, GL_FALSE, glm::value_ptr(m_Renderer->Camera()->ProjectionMatrix()));
//TODO: Render: Add code for more jobs than modeljobs.
for (auto &job : rq.Forward) {
auto modelJob = std::dynamic_pointer_cast<ModelJob>(job);
if(modelJob) {
//TODO: Kolla upp "header/include/common" shader saken så man slipper skicka in asmycket uniforms
glUniformMatrix4fv(glGetUniformLocation(shaderHandle, "M"), 1, GL_FALSE, glm::value_ptr(modelJob->ModelMatrix));
glUniform4fv(glGetUniformLocation(shaderHandle, "Color"), 1, glm::value_ptr(modelJob->Color));
if(modelJob->DiffuseTexture != nullptr) {
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, modelJob->DiffuseTexture->m_Texture);
} else {
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_WhiteTexture->m_Texture);
}
glBindVertexArray(modelJob->Model->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, modelJob->Model->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, modelJob->EndIndex - modelJob->StartIndex + 1, GL_UNSIGNED_INT, 0, modelJob->StartIndex);
continue;
}
}
GLERROR("DrawFinalPass::Draw: END");
}
@@ -0,0 +1,17 @@
#include "Rendering/DrawFinalPassState.h"
DrawFinalPassState::DrawFinalPassState()
{
BindFramebuffer(0);
Enable(GL_DEPTH_TEST);
Enable(GL_CULL_FACE);
ClearColor(glm::vec4(200.f / 255, 0.f / 255, 200.f / 255, 0.f));
Clear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
}
DrawFinalPassState::~DrawFinalPassState()
{
}
+9 -6
View File
@@ -14,23 +14,21 @@ void DrawScenePass::InitializeTextures()
void DrawScenePass::InitializeShaderPrograms()
{
//Gör så att shaders är en resource, tex som texture classen. Konstruktorn måste vara privat.
m_BasicForwardProgram = ResourceManager::Load<ShaderProgram>("#BasicForwardProgram");
m_BasicForwardProgram->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/BasicForward.vert.glsl")));
m_BasicForwardProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/BasicForward.frag.glsl")));
m_BasicForwardProgram->Compile();
m_BasicForwardProgram->Link();
}
void DrawScenePass::Draw(RenderQueueCollection& rq)
{
//glBindFramebuffer(GL_FRAMEBUFFER, 0);
GLERROR("Renderer::Draw PickingPass");
GLERROR("DrawScenePass::Draw: Pre");
DrawScenePassState state;
m_BasicForwardProgram->Bind();
//TODO: Render: Add code for more jobs than modeljobs.
@@ -39,7 +37,6 @@ void DrawScenePass::Draw(RenderQueueCollection& rq)
if (modelJob) {
GLuint ShaderHandle = m_BasicForwardProgram->GetHandle();
m_BasicForwardProgram->Bind();
//TODO: Kolla upp "header/include/common" shader saken så man slipper skicka in asmycket uniforms
glUniformMatrix4fv(glGetUniformLocation(ShaderHandle, "M"), 1, GL_FALSE, glm::value_ptr(modelJob->ModelMatrix));
glUniformMatrix4fv(glGetUniformLocation(ShaderHandle, "V"), 1, GL_FALSE, glm::value_ptr(m_Renderer->Camera()->ViewMatrix()));
@@ -61,6 +58,12 @@ void DrawScenePass::Draw(RenderQueueCollection& rq)
continue;
}
auto spriteJob = std::dynamic_pointer_cast<SpriteJob>(job);
if(spriteJob)
{
//Hello im a sprite, please draw me.
}
}
GLERROR("DrawScene Error");
GLERROR("DrawScenePass::Draw: End");
}
+126
View File
@@ -0,0 +1,126 @@
#include "Rendering/LightCullingPass.h"
LightCullingPass::LightCullingPass(IRenderer* renderer)
{
m_Renderer = renderer;
InitializeSSBOs();
InitializeShaderPrograms();
GenerateNewFrustum();
}
LightCullingPass::~LightCullingPass()
{
}
void LightCullingPass::GenerateNewFrustum()
{
GLERROR("CalculateFrustum Error: Pre");
m_CalculateFrustumProgram->Bind();
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 0, m_FrustumSSBO);
glUniformMatrix4fv(glGetUniformLocation(m_CalculateFrustumProgram->GetHandle(), "P"), 1, false, glm::value_ptr(m_Renderer->Camera()->ProjectionMatrix()));
glUniform2f(glGetUniformLocation(m_CalculateFrustumProgram->GetHandle(), "ScreenDimensions"), m_Renderer->Resolution().Width, m_Renderer->Resolution().Height);
glDispatchCompute(5, 3, 1); //TODO: Renderer: This needs change so resolution will be right.
GLERROR("CalculateFrustum Error: End");
}
void LightCullingPass::CullLights()
{
GLERROR("CullLights Error: Pre");
m_LightOffset = 0;
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightOffsetSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightOffset), &m_LightOffset, GL_DYNAMIC_COPY);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightSSBO);
if (m_PointLights.size() > 0) {
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(PointLight) * m_PointLights.size(), &(m_PointLights[0]), GL_DYNAMIC_COPY);
} else {
GLfloat zero = 0.f;
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(GLfloat), &zero , GL_DYNAMIC_COPY);
}
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
m_LightCullProgram->Bind();
glUniformMatrix4fv(glGetUniformLocation(m_LightCullProgram->GetHandle(), "V"), 1, false, glm::value_ptr(m_Renderer->Camera()->ViewMatrix()));
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 0, m_FrustumSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 1, m_LightSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 2, m_LightGridSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 3, m_LightOffsetSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 4, m_LightIndexSSBO);
glDispatchCompute(m_Renderer->Resolution().Width / TILE_SIZE, m_Renderer->Resolution().Height / TILE_SIZE, 1);
GLERROR("CullLights Error: End");
}
void LightCullingPass::FillLightList(RenderQueueCollection& rq)
{
m_PointLights.clear();
for(auto &job : rq.Lights) {
auto pointLightjob = std::dynamic_pointer_cast<PointLightJob>(job);
if (pointLightjob) {
PointLight p;
p.Color = pointLightjob->Color;
p.Falloff = pointLightjob->Falloff;
p.Intensity = pointLightjob->Intensity;
p.Position = glm::vec4(glm::vec3(pointLightjob->Position), 1.f);
p.Radius = pointLightjob->Radius;
p.Padding = 123.f;
m_PointLights.push_back(p);
continue;
}
}
}
void LightCullingPass::InitializeSSBOs()
{
glGenBuffers(1, &m_FrustumSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_FrustumSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_Frustums), &m_Frustums, GL_DYNAMIC_COPY);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_FrustumSSBO");
glGenBuffers(1, &m_LightSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightSSBO);
if(m_PointLights.size() > 0) {
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(PointLight) * m_PointLights.size(), &(m_PointLights[0]), GL_DYNAMIC_COPY);
}
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightSSBO");
glGenBuffers(1, &m_LightGridSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightGridSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightGrid), &m_LightGrid, GL_DYNAMIC_COPY);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightGridSSBO");
glGenBuffers(1, &m_LightOffsetSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightOffsetSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightOffset), &m_LightOffset, GL_DYNAMIC_COPY);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightOffsetSSBO");
glGenBuffers(1, &m_LightIndexSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightIndexSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightIndex), &m_LightIndex, GL_DYNAMIC_COPY);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightIndexSSBO");
}
void LightCullingPass::InitializeShaderPrograms()
{
m_CalculateFrustumProgram = ResourceManager::Load<ShaderProgram>("#CalculateFrustumProgram");
m_CalculateFrustumProgram->AddShader(std::shared_ptr<Shader>(new ComputeShader("Shaders/GridFrustum.comp.glsl")));
m_CalculateFrustumProgram->Compile();
m_CalculateFrustumProgram->Link();
m_LightCullProgram = ResourceManager::Load<ShaderProgram>("#LightCullProgram");
m_LightCullProgram->AddShader(std::shared_ptr<Shader>(new ComputeShader("Shaders/CullLights.comp.glsl")));
m_LightCullProgram->Compile();
m_LightCullProgram->Link();
}
@@ -111,6 +111,34 @@ void RenderQueueFactory::FillModels(World* world, RenderQueue* renderQueue)
void RenderQueueFactory::FillLights(World* world, RenderQueue* renderQueue)
{
auto pointLights = world->GetComponents("PointLight");
if(pointLights == nullptr) {
return;
}
for(auto& pointlightC : *pointLights) {
bool visible = pointlightC["Visible"];
if(!visible) {
continue;
}
auto transformC = world->GetComponent(pointlightC.EntityID, "Transform");
if(&transformC == nullptr) {
return;
}
glm::vec4 color = pointlightC["Color"];
float radius = (double)pointlightC["Radius"];
float intensity = (double)pointlightC["Intensity"];
float falloff = (double)pointlightC["Falloff"];
PointLightJob job;
job.Position = glm::vec4(AbsolutePosition(world, transformC.EntityID), 1.f);
job.Color = color;
job.Radius = radius;
job.Intensity = intensity;
job.Falloff = falloff;
renderQueue->Add(job);
}
}
+1
View File
@@ -3,6 +3,7 @@
bool RenderState::Enable(GLenum cap)
{
if (glIsEnabled(cap)) {
//LOG_WARNING("Trying to enable somthing that is already enabled.");
return false;
}
m_ResetFunctions.push_back(std::bind(glDisable, cap));
+9 -135
View File
@@ -4,20 +4,17 @@ void Renderer::Initialize()
{
InitializeWindow();
// Create default camera
m_DefaultCamera = new ::Camera((float)m_Resolution.Width / m_Resolution.Height, glm::radians(45.f), 0.01f, 5000.f);
m_DefaultCamera->SetPosition(glm::vec3(0, 0, 10));
m_DefaultCamera = new ::Camera((float)m_Resolution.Width / m_Resolution.Height, glm::radians(90.0f), 0.01f, 5000.f);
m_DefaultCamera->SetPosition(glm::vec3(0, 1, 10));
if (m_Camera == nullptr) {
m_Camera = m_DefaultCamera;
}
m_DebugCameraInputController = std::make_shared<DebugCameraInputController<Renderer>>(m_EventBroker, -1);
TEMPCreateLights();
InitializeRenderPasses();
glfwSwapInterval(m_VSYNC);
InitializeShaders();
InitializeTextures();
InitializeSSBOs();
//CalculateFrustum();
m_ScreenQuad = ResourceManager::Load<Model>("Models/Core/ScreenQuad.obj");
m_UnitQuad = ResourceManager::Load<Model>("Models/Core/UnitQuad.obj");
@@ -75,49 +72,10 @@ void Renderer::InitializeShaders()
m_DrawScreenQuadProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/DrawScreenQuad.frag.glsl")));
m_DrawScreenQuadProgram->Compile();
m_DrawScreenQuadProgram->Link();
//m_CalculateFrustumProgram = ResourceManager::Load<ShaderProgram>("#CalculateFrustumProgram");
//m_CalculateFrustumProgram.AddShader(std::shared_ptr<Shader>(new ComputeShader("Shaders/GridFrustum.comp.glsl")));
//m_CalculateFrustumProgram.Compile();
//m_CalculateFrustumProgram.Link();
//m_LightCullProgram = ResourceManager::Load<ShaderProgram>("#LightCullProgram");
//m_LightCullProgram.AddShader(std::shared_ptr<Shader>(new ComputeShader("Shaders/cullLights.comp.glsl")));
//m_LightCullProgram.Compile();
//m_LightCullProgram.Link();
}
void Renderer::InputUpdate(double dt)
{
glm::vec3 m_Position = m_Camera->Position();
if (glfwGetKey(m_Window, GLFW_KEY_O) == GLFW_PRESS)
{
m_Position = glm::vec3(0.f, 0.f, 5.f);
}
if (glfwGetKey(m_Window, GLFW_KEY_W) == GLFW_PRESS)
{
m_Position += m_Camera->Forward() * m_CameraMoveSpeed * (float)dt;
}
if (glfwGetKey(m_Window, GLFW_KEY_S) == GLFW_PRESS)
{
m_Position -= m_Camera->Forward() * m_CameraMoveSpeed * (float)dt;
}
if (glfwGetKey(m_Window, GLFW_KEY_D) == GLFW_PRESS)
{
m_Position += m_Camera->Right() * m_CameraMoveSpeed * (float)dt;
}
if (glfwGetKey(m_Window, GLFW_KEY_A) == GLFW_PRESS)
{
m_Position -= m_Camera->Right() * m_CameraMoveSpeed * (float)dt;
}
if (glfwGetKey(m_Window, GLFW_KEY_LEFT_SHIFT) == GLFW_PRESS)
{
m_CameraMoveSpeed = 5.f;
}
else {
m_CameraMoveSpeed = 0.5f;
}
m_DebugCameraInputController->Update(dt);
m_Camera->SetOrientation(m_DebugCameraInputController->Orientation());
m_Camera->SetPosition(m_DebugCameraInputController->Position());
@@ -134,11 +92,12 @@ void Renderer::Draw(RenderQueueCollection& rq)
{
m_PickingPass->Draw(rq);
//DrawScreenQuad(m_PickingPass->PickingTexture());
//CullLights();
m_LightCullingPass->FillLightList(rq);
m_LightCullingPass->CullLights();
//m_DrawScenePass->Draw(rq);
m_DrawFinalPass->Draw(rq);
glClearColor(255.f / 255, 163.f / 255, 176.f / 255, 1.f);
m_DrawScenePass->Draw(rq);
GLERROR("Renderer::Draw m_DrawScenePass->Draw");
m_ImGuiRenderPass->Draw();
glfwSwapBuffers(m_Window);
@@ -183,95 +142,10 @@ void Renderer::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filterin
GLERROR("Texture initialization failed");
}
void Renderer::InitializeSSBOs()
{
printf("Size: %i\n", sizeof(m_Frustums));
glGenBuffers(1, &m_FrustumSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_FrustumSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_Frustums), &m_Frustums, GL_DYNAMIC_COPY);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 0, m_FrustumSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_FrustumSSBO");
glGenBuffers(1, &m_LightSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_PointLights), &m_PointLights, GL_DYNAMIC_COPY);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 1, m_LightSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightSSBO");
glGenBuffers(1, &m_LightGridSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightGridSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightGrid), &m_LightGrid, GL_DYNAMIC_COPY);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 2, m_LightGridSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightGridSSBO");
glGenBuffers(1, &m_LightOffsetSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightOffsetSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightOffset), &m_LightOffset, GL_DYNAMIC_COPY);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 3, m_LightOffsetSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightOffsetSSBO");
glGenBuffers(1, &m_LightIndexSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightIndexSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightIndex), &m_LightIndex, GL_DYNAMIC_COPY);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 4, m_LightIndexSSBO);
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
GLERROR("m_LightIndexSSBO");
}
void Renderer::InitializeRenderPasses()
{
m_DrawScenePass = new DrawScenePass(this);
m_PickingPass = new PickingPass(this, m_EventBroker);
}
void Renderer::CalculateFrustum()
{
GLERROR("CalculateFrustum Error-1");
m_CalculateFrustumProgram->Bind();
GLERROR("CalculateFrustum Error1");
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 0, m_FrustumSSBO);
GLERROR("CalculateFrustum Error2");
glUniformMatrix4fv(glGetUniformLocation(m_CalculateFrustumProgram->GetHandle(), "P"), 1, false, glm::value_ptr(m_Camera->ProjectionMatrix()));
GLERROR("CalculateFrustum Error3");
glUniform2f(glGetUniformLocation(m_CalculateFrustumProgram->GetHandle(), "ScreenDimensions"), m_Resolution.Width, m_Resolution.Height);
GLERROR("CalculateFrustum Error4");
glDispatchCompute(5, 3, 1);
GLERROR("CalculateFrustum Error5");
}
void Renderer::TEMPCreateLights()
{
for (int i = 0; i < NUM_LIGHTS; i++) {
m_PointLights[i].Position = glm::vec4(i, 0.f, 0.f, 0.f);
m_PointLights[i].Color = glm::vec4(1.f, 0.5f, 0.f + i*0.1f, 1.f);
}
}
void Renderer::CullLights()
{
m_LightCullProgram->Bind();
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 0, m_FrustumSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 1, m_LightSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 2, m_LightGridSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 3, m_LightOffsetSSBO);
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 4, m_LightIndexSSBO);
glDispatchCompute(m_Resolution.Width / TILE_SIZE, m_Resolution.Height / TILE_SIZE, 1);
GLERROR("CullLights Error");
}
m_LightCullingPass = new LightCullingPass(this);
m_DrawFinalPass = new DrawFinalPass(this, m_LightCullingPass);
}