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15 Commits

Author SHA1 Message Date
Teejoon 09249c970a Commitiing assets 2016-02-24 17:42:55 +01:00
Teejoon fe3e0bac5b Changed SpritIndicator values on player 2016-02-22 18:45:02 +01:00
Teejoon fa4f007604 Changed name from Indicator to SpriteIndicator. Can now be an indicator for a single team or every one 2016-02-22 18:35:00 +01:00
Teejoon 6fab971734 Merge branch 'master' of https://github.com/teamfisk/TacticalZ into SeeTeamMates
Conflicts:
	include/Engine/Rendering/SpriteJob.h
	resources/Schema/Components.xsd
	resources/Schema/Entities/Player.xml
	resources/Schema/Entities/PlayerRed.xml
2016-02-22 16:43:18 +01:00
Viktor Ljung 2c18068059 Merge pull request #126 from teamfisk/SSAO
SSAO
2016-02-22 16:40:11 +01:00
Teejoon 09aec08d0e Pull request fixes 2016-02-22 16:38:20 +01:00
Teejoon 4cf8c3d8d7 Fixed PerformanceTimer start and stop in Renderer.cpp since I have changed a little code there 2016-02-22 15:02:20 +01:00
Teejoon 37414ce124 Merge branch 'master' of https://github.com/teamfisk/TacticalZ into SSAO
Conflicts:
	include/Engine/Rendering/Renderer.h
	src/Engine/Rendering/Renderer.cpp
2016-02-22 14:51:42 +01:00
Teejoon adceccf402 SSAO now working. Changed in DrawFinalePass so that th AOTexture is on texture position 0 and only get binded once.
Changed so that the picking pass get drawn once in the beginning so that the AO shatde could calculate AO from the depthbuffer generated during pthe pickingpass.

In the ImGUI debugg window there is now sliders to change the behavior of the AO shader. Only the minimum ambient lightning is HardCoded in to the frowardPlus fragmentshaders with a define in the begining.
2016-02-22 14:48:20 +01:00
Teejoon 201480b17f SSAO is working, but is kinda crappy. You can change shade variables in the debug window. 2016-02-19 16:50:04 +01:00
Teejoon c4d3c515e4 Marge with Master 2016-02-17 18:04:49 +01:00
Teejoon 7cc58dc94c Merge branch 'master' of https://github.com/teamfisk/TacticalZ into SeeTeamMates 2016-02-17 18:00:30 +01:00
Teejoon 5e3af7ac5d Player Indicator now working OK. Scaling depending on how far away you are makes the Indicator to hide players head behind it. Shields are making indicators to disappear. 2016-02-17 17:58:01 +01:00
Teejoon 4fd0108443 Working billbording 2016-02-17 16:50:24 +01:00
Teejoon 17da9a8036 WIP 2016-02-16 15:56:58 +01:00
41 changed files with 780 additions and 374 deletions
+1 -1
Submodule assets updated: 1e7adc749e...651f65a98d
+1 -4
View File
@@ -9,16 +9,13 @@ typedef unsigned int PacketID;
class NetworkClient
{
public:
NetworkClient();
virtual ~NetworkClient();
virtual void Connect(std::string playerName, std::string address, int port) = 0;
virtual void Disconnect() = 0;
virtual void Receive(Packet& packet) = 0;
virtual void Send(Packet & packet) = 0;
virtual bool IsSocketAvailable() = 0;
protected:
char* m_ReadBuffer;
unsigned int m_BufferSize = BUFFERSIZE;
char m_ReadBuffer[BUFFERSIZE] = { 0 };
};
#endif
+1 -4
View File
@@ -10,15 +10,12 @@ typedef unsigned int PacketID;
class NetworkServer
{
public:
NetworkServer();
virtual ~NetworkServer();
virtual void AcceptNewConnections(int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers) = 0;
virtual void Receive(Packet & packet, PlayerDefinition & playerDefinition) = 0;
virtual void Send(Packet & packet, PlayerDefinition & playerDefinition) = 0;
virtual void Send(Packet & packet) = 0;
protected:
char* m_ReadBuffer;
unsigned int m_BufferSize = BUFFERSIZE;
char m_ReadBuffer[BUFFERSIZE] = { 0 };
};
#endif
+2 -3
View File
@@ -54,7 +54,7 @@ private:
std::vector<Events::InputCommand> m_InputCommandsToBroadcast;
//Timers
std::clock_t m_StartPingTime;
// Packet loss logic
PacketID m_PacketID = 0;
PacketID m_PreviousPacketID = 0;
@@ -64,7 +64,6 @@ private:
void reliableBroadcast(Packet& packet);
void unreliableBroadcast(Packet& packet);
void sendSnapshot();
void addPlayersToPacket(Packet& packet, EntityID entityID);
void addChildrenToPacket(Packet& packet, EntityID entityID);
void addInputCommandsToPacket(Packet& packet);
void sendPing();
@@ -78,7 +77,7 @@ private:
void parsePlayerTransform(Packet& packet);
void parseOnInputCommand(Packet& packet);
void parseClientPing();
void parsePing();
void parsePing();
void parseUDPConnect(Packet & packet);
void parseTCPConnect(Packet & packet);
void parseDisconnect();
+1 -1
View File
@@ -20,7 +20,7 @@ private:
boost::asio::ip::tcp::endpoint m_Endpoint;
boost::asio::io_service m_IOService;
std::unique_ptr<boost::asio::ip::tcp::socket> m_Socket;
size_t readBuffer();
size_t readBuffer(char* data);
PacketID m_SendPacketID = 0;
bool m_IsConnected = false;
};
+1 -1
View File
@@ -25,7 +25,7 @@ private:
void handle_accept(boost::shared_ptr<boost::asio::ip::tcp::socket> socket,
int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers,
const boost::system::error_code& error);
int readBuffer(PlayerDefinition& playerDefinition);
int readBuffer(char* data, PlayerDefinition& playerDefinition);
};
#endif
+1 -1
View File
@@ -20,7 +20,7 @@ private:
boost::asio::io_service m_IOService;
boost::asio::ip::udp::endpoint m_ReceiverEndpoint;
boost::shared_ptr<boost::asio::ip::udp::socket> m_Socket;
int readBuffer();
int readBuffer(char* data);
PacketID m_SendPacketID = 0;
};
+1 -1
View File
@@ -19,7 +19,7 @@ private:
boost::asio::io_service m_IOService;
boost::asio::ip::udp::endpoint m_ReceiverEndpoint;
std::unique_ptr<boost::asio::ip::udp::socket> m_Socket;
int readBuffer();
int readBuffer(char* data);
};
#endif
+2 -2
View File
@@ -18,7 +18,7 @@ public:
void InitializeTextures();
void InitializeFrameBuffers();
void InitializeShaderPrograms();
void Draw(RenderScene& scene);
void Draw(RenderScene& scene, GLuint SSAOTexture);
void ClearBuffer();
void OnWindowResize();
@@ -37,7 +37,7 @@ private:
void GenerateMipMapTexture(GLuint* texture, GLenum wrapping, glm::vec2 dimensions, GLint format, GLenum type, GLint numMipMaps) const;
void DrawSprites(std::list<std::shared_ptr<RenderJob>>&jobs, RenderScene& scene);
void DrawModelRenderQueues(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene);
void DrawModelRenderQueues(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene, GLuint SSAOTexture);
void DrawShieldToStencilBuffer(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene);
void DrawShieldedModelRenderQueue(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene);
void DrawToDepthBuffer(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene);
+1 -1
View File
@@ -184,7 +184,7 @@ struct ModelJob : RenderJob
void CalculateHash() override
{
Hash = TextureID + ModelID << 10 + ShaderID << 20;
Hash = ShaderID << 20 + ModelID << 10 + TextureID;
}
};
+8
View File
@@ -16,6 +16,7 @@
#include "DrawScreenQuadPass.h"
#include "DrawBloomPass.h"
#include "DrawColorCorrectionPass.h"
#include "SSAOPass.h"
#include "../Core/EventBroker.h"
#include "ImGuiRenderPass.h"
#include "Camera.h"
@@ -58,6 +59,12 @@ private:
int m_DebugTextureToDraw = 0;
bool m_ResizeWindow = false;
float m_SSAO_Radius = 1.0f;
float m_SSAO_Bias = 0.05f;
float m_SSAO_Contrast = 1.5f;
float m_SSAO_IntensityScale = 1.0f;
int m_SSAO_NumOfSamples = 24;
int m_SSAO_NumOfTurns = 7;
PickingPass* m_PickingPass;
LightCullingPass* m_LightCullingPass;
@@ -66,6 +73,7 @@ private:
DrawScreenQuadPass* m_DrawScreenQuadPass;
DrawBloomPass* m_DrawBloomPass;
DrawColorCorrectionPass* m_DrawColorCorrectionPass;
SSAOPass* m_SSAOPass;
//----------------------Functions----------------------//
void InitializeWindow();
+61
View File
@@ -0,0 +1,61 @@
#ifndef SSAOPass_h__
#define SSAOPass_h__
#include "IRenderer.h"
#include "SSAOPassState.h"
//#include "LightCullingPass.h" Finalpass om den skall skickas in
#include "FrameBuffer.h"
#include "ShaderProgram.h"
#include "DrawBloomPass.h"
//#include "Util/UnorderedMapVec2.h"
#include "Texture.h"
class SSAOPass
{
public:
SSAOPass(IRenderer* rendere);
~SSAOPass() { };
void Draw(GLuint depthBuffer, Camera* camera);
void Setting(float radius, float bias, float contrast, float intensityScale, int numOfSamples, int NumOfTurns);
void ClearBuffer();
//Return the SSAO of the texture sent to Draw
GLuint SSAOTexture() const { return m_DrawBloomPass->GaussianTexture(); }
private:
void InitializeTexture();
void InitializeFrameBuffer();
void InitializeShaderProgram();
void InitializeBuffer();
void GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const;
void ComputeAO(GLuint depthBuffer, Camera* camera);
//void blurHorizontal(GLuint depthBuffer);
//void blurVertical(GLuint depthBuffer);
Model* m_ScreenQuad;
const IRenderer* m_Renderer;
float m_Radius;
float m_Bias;
float m_Contrast;
float m_IntensityScale;
int m_NumOfSamples;
int m_NumOfTurns;
GLuint m_SSAOTexture;
FrameBuffer m_SSAOFramBuffer;
GLuint m_SSAOViewSpaceZTexture;
FrameBuffer m_SSAOViewSpaceZFramBuffer;
ShaderProgram* m_SSAOProgram;
ShaderProgram* m_SSAOViewSpaceZProgram;
DrawBloomPass* m_DrawBloomPass;
};
#endif
+15
View File
@@ -0,0 +1,15 @@
#ifndef SSAOPassState_h__
#define SSAOPassState_h__
#include "Rendering/RenderState.h"
class SSAOPassState : public RenderState
{
public:
SSAOPassState();
~SSAOPassState();
private:
};
#endif
+6 -3
View File
@@ -17,7 +17,7 @@
struct SpriteJob : RenderJob
{
SpriteJob(ComponentWrapper cSprite, Camera* camera, glm::mat4 matrix, World* world, glm::vec4 fillColor, float fillPercentage, bool depthSorted)
SpriteJob(ComponentWrapper cSprite, Camera* camera, glm::mat4 matrix, World* world, glm::vec4 fillColor, float fillPercentage, bool depthSorted, bool isIndicator)
: RenderJob()
{
Model = ResourceManager::Load<::Model>("Models/Core/UnitQuad.mesh");
@@ -30,7 +30,7 @@ struct SpriteJob : RenderJob
StartIndex = matProp.material->StartIndex;
EndIndex = matProp.material->EndIndex;
Matrix = matrix;
Matrix = matrix;
Color = cSprite["Color"];
Entity = cSprite.EntityID;
Position = Transform::AbsolutePosition(world, cSprite.EntityID);
@@ -41,7 +41,8 @@ struct SpriteJob : RenderJob
}
World = world;
Pickable = world->HasComponent(cSprite.EntityID, "Button");
IsIndicator = isIndicator;
FillColor = fillColor;
FillPercentage = fillPercentage;
};
@@ -61,7 +62,9 @@ struct SpriteJob : RenderJob
unsigned int StartIndex = 0;
unsigned int EndIndex = 0;
World* World;
bool Pickable;
bool IsIndicator = false;
glm::vec4 FillColor = glm::vec4(0);
float FillPercentage = 0.0;
+1
View File
@@ -44,5 +44,6 @@
<xs:include schemaLocation="Components/Menu.xsd"/>
<xs:include schemaLocation="Components/KillFeed.xsd"/>
<xs:include schemaLocation="Components/Page.xsd"/>
<xs:include schemaLocation="Components/SpriteIndicator.xsd"/>
<xs:include schemaLocation="Components/Button.xsd"/>
</xs:schema>
@@ -0,0 +1,5 @@
<?xml version="1.0" encoding="UTF-8" standalone="no" ?>
<SpriteIndicator xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:noNamespaceSchemaLocation="SpriteIndicator.xsd">
<MinScale>10</MinScale>
<VisibleForSingleTeamOnly>false</VisibleForSingleTeamOnly>
</SpriteIndicator>
@@ -0,0 +1,19 @@
<?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="SpriteIndicator">
<xs:annotation>
<xs:documentation>Billbord a Sprite around global Y axis</xs:documentation>
</xs:annotation>
<xs:complexType>
<xs:all>
<xs:element name="MinScale" type="t:double" minOccurs="0"/>
<xs:element name="VisibleForSingleTeamOnly" type="t:bool" minOccurs="0">
<xs:annotation><xs:documentation>Add a Team component to this Entity or Parent to make it visible only for that team</xs:documentation></xs:annotation>
</xs:element>
</xs:all>
</xs:complexType>
</xs:element>
</xs:schema>
+47 -8
View File
@@ -13,6 +13,7 @@
<c:DashAbility/>
<c:Health/>
<c:Physics>
<PrevOrigin X="0" Y="0.772000015" Z="0"/>
<Velocity X="2.30999646e-23" Y="0" Z="1.05272533e-23"/>
</c:Physics>
<c:Player>
@@ -60,6 +61,7 @@
<c:Sprite>
<DiffuseTexture>Textures/Weapons/Crosshair/SmallThickHoleDot.png</DiffuseTexture>
<DepthSort>false</DepthSort>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.200000003"/>
@@ -110,6 +112,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/HealthHUD3.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.588235319" B="0" G="0" R="0"/>
</c:Sprite>
<c:HealthHUD/>
@@ -135,6 +138,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.300000012" B="1" G="1" R="1"/>
</c:Sprite>
<c:Transform>
@@ -152,6 +156,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -167,6 +172,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.300000012" B="1" G="1" R="1"/>
</c:Sprite>
<c:Transform>
@@ -185,6 +191,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -200,6 +207,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.699999988" B="1" G="0.200000003" R="0"/>
</c:Sprite>
<c:Transform>
@@ -217,6 +225,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -232,6 +241,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.300000012" B="1" G="1" R="1"/>
</c:Sprite>
<c:Transform>
@@ -249,6 +259,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -264,6 +275,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.699999988" B="0" G="0.200000003" R="1"/>
</c:Sprite>
<c:Transform>
@@ -279,6 +291,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -304,6 +317,7 @@
<Entity name="KillFeed1">
<Components>
<c:Text>
<Content></Content>
<Resource>Fonts/DroidSans.ttf,64</Resource>
<Alignment>
<Right/>
@@ -316,6 +330,7 @@
<Entity name="KillFeed2">
<Components>
<c:Text>
<Content></Content>
<Resource>Fonts/DroidSans.ttf,64</Resource>
<Alignment>
<Right/>
@@ -330,6 +345,7 @@
<Entity name="KillFeed3">
<Components>
<c:Text>
<Content></Content>
<Resource>Fonts/DroidSans.ttf,64</Resource>
<Alignment>
<Right/>
@@ -349,13 +365,14 @@
<Components>
<c:Animation>
<AnimationName1>Idle</AnimationName1>
<Time1>1.6050530664521858</Time1>
<Time1>0.97725610639912475</Time1>
<Speed1>1</Speed1>
<AnimationName2></AnimationName2>
<AnimationName3></AnimationName3>
</c:Animation>
<c:Model>
<Resource>Models/Characters/Assault/FirstPerson.mesh</Resource>
<Color A="1" B="1" G="0.309803933" R="0"/>
<Transparent>true</Transparent>
</c:Model>
<c:Transform/>
</Components>
@@ -367,11 +384,10 @@
</c:BoneAttachment>
<c:Model>
<Resource>Models/Weapons/Blue/AssaultWeaponBlue.mesh</Resource>
<Transparent>true</Transparent>
</c:Model>
<c:Transform>
<Position X="0.12043035" Y="-0.234149337" Z="-0.181454644"/>
<Orientation X="0.0104045281" Y="-0.00268131681" Z="0.0428438708"/>
<Position X="0.12043038" Y="-0.244988307" Z="-0.181454808"/>
<Orientation X="0.010404544" Y="-0.00268173823" Z="0.0428441577"/>
</c:Transform>
</Components>
<Children>
@@ -408,6 +424,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.588235319" B="0" G="0" R="0"/>
</c:Sprite>
<c:Transform>
@@ -477,8 +494,10 @@
<Components>
<c:Animation>
<AnimationName1>Idle</AnimationName1>
<Time1>1.620305457513453</Time1>
<Time1>0.87583812735846323</Time1>
<Speed1>1</Speed1>
<AnimationName2></AnimationName2>
<AnimationName3></AnimationName3>
</c:Animation>
<c:AnimationOffset>
<AnimationName>AimRifle</AnimationName>
@@ -501,8 +520,8 @@
<Resource>Models/Weapons/Blue/AssaultWeaponBlue.mesh</Resource>
</c:Model>
<c:Transform>
<Position X="0.160351232" Y="1.02591991" Z="-0.215102971"/>
<Orientation X="-0.0627480298" Y="-0.0432248674" Z="0.119431816"/>
<Position X="0.163429111" Y="1.0235405" Z="-0.215489209"/>
<Orientation X="-0.0631071255" Y="-0.0576644838" Z="0.118255548"/>
</c:Transform>
</Components>
<Children>
@@ -572,6 +591,26 @@
</Components>
<Children/>
</Entity>
<Entity name="Indicator">
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Icons/Arrow.png</DiffuseTexture>
<DepthSort>false</DepthSort>
<GlowMap></GlowMap>
<Color A="1" B="1" G="0.309803933" R="0"/>
</c:Sprite>
<c:HiddenForLocalPlayer/>
<c:SpriteIndicator>
<MinScale>50</MinScale>
<VisibleForSingleTeamOnly>true</VisibleForSingleTeamOnly>
</c:SpriteIndicator>
<c:Transform>
<Position X="0" Y="1.84019077" Z="0"/>
<Scale X="0.300000012" Y="0.300000012" Z="0.300000012"/>
</c:Transform>
</Components>
<Children/>
</Entity>
</Children>
</Entity>
+47 -8
View File
@@ -13,6 +13,7 @@
<c:DashAbility/>
<c:Health/>
<c:Physics>
<PrevOrigin X="0" Y="0.772000015" Z="0"/>
<Velocity X="2.30999646e-23" Y="0" Z="1.05272533e-23"/>
</c:Physics>
<c:Player>
@@ -60,6 +61,7 @@
<c:Sprite>
<DiffuseTexture>Textures/Weapons/Crosshair/SmallThickHoleDot.png</DiffuseTexture>
<DepthSort>false</DepthSort>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.200000003"/>
@@ -110,6 +112,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/HealthHUD3.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.588235319" B="0" G="0" R="0"/>
</c:Sprite>
<c:HealthHUD/>
@@ -135,6 +138,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.300000012" B="1" G="1" R="1"/>
</c:Sprite>
<c:Transform>
@@ -152,6 +156,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -167,6 +172,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.300000012" B="1" G="1" R="1"/>
</c:Sprite>
<c:Transform>
@@ -185,6 +191,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -200,6 +207,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.699999988" B="1" G="0.200000003" R="0"/>
</c:Sprite>
<c:Transform>
@@ -217,6 +225,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -232,6 +241,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.300000012" B="1" G="1" R="1"/>
</c:Sprite>
<c:Transform>
@@ -249,6 +259,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -264,6 +275,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.699999988" B="0" G="0.200000003" R="1"/>
</c:Sprite>
<c:Transform>
@@ -279,6 +291,7 @@
</c:Fill>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon_Rotated.png</DiffuseTexture>
<GlowMap></GlowMap>
</c:Sprite>
<c:Transform>
<Position X="0" Y="0" Z="0.00999999978"/>
@@ -304,6 +317,7 @@
<Entity name="KillFeed1">
<Components>
<c:Text>
<Content></Content>
<Resource>Fonts/DroidSans.ttf,64</Resource>
<Alignment>
<Right/>
@@ -316,6 +330,7 @@
<Entity name="KillFeed2">
<Components>
<c:Text>
<Content></Content>
<Resource>Fonts/DroidSans.ttf,64</Resource>
<Alignment>
<Right/>
@@ -330,6 +345,7 @@
<Entity name="KillFeed3">
<Components>
<c:Text>
<Content></Content>
<Resource>Fonts/DroidSans.ttf,64</Resource>
<Alignment>
<Right/>
@@ -349,13 +365,14 @@
<Components>
<c:Animation>
<AnimationName1>Idle</AnimationName1>
<Time1>1.6050530664521858</Time1>
<Time1>1.2667383999985162</Time1>
<Speed1>1</Speed1>
<AnimationName2></AnimationName2>
<AnimationName3></AnimationName3>
</c:Animation>
<c:Model>
<Resource>Models/Characters/Assault/FirstPerson.mesh</Resource>
<Color A="1" B="0" G="0" R="1"/>
<Transparent>true</Transparent>
</c:Model>
<c:Transform/>
</Components>
@@ -367,11 +384,10 @@
</c:BoneAttachment>
<c:Model>
<Resource>Models/Weapons/Red/AssaultWeaponRed.mesh</Resource>
<Transparent>true</Transparent>
</c:Model>
<c:Transform>
<Position X="0.12043035" Y="-0.234149337" Z="-0.181454644"/>
<Orientation X="0.0104045281" Y="-0.00268131681" Z="0.0428438708"/>
<Position X="0.120430425" Y="-0.242105931" Z="-0.181454822"/>
<Orientation X="0.010404665" Y="-0.00268179877" Z="0.0428443067"/>
</c:Transform>
</Components>
<Children>
@@ -408,6 +424,7 @@
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Core/UnitHexagon.png</DiffuseTexture>
<GlowMap></GlowMap>
<Color A="0.588235319" B="0" G="0" R="0"/>
</c:Sprite>
<c:Transform>
@@ -477,8 +494,10 @@
<Components>
<c:Animation>
<AnimationName1>Idle</AnimationName1>
<Time1>1.620305457513453</Time1>
<Time1>0.26532318661337229</Time1>
<Speed1>1</Speed1>
<AnimationName2></AnimationName2>
<AnimationName3></AnimationName3>
</c:Animation>
<c:AnimationOffset>
<AnimationName>AimRifle</AnimationName>
@@ -501,8 +520,8 @@
<Resource>Models/Weapons/Red/AssaultWeaponRed.mesh</Resource>
</c:Model>
<c:Transform>
<Position X="0.160351232" Y="1.02591991" Z="-0.215102971"/>
<Orientation X="-0.0627480298" Y="-0.0432248674" Z="0.119431816"/>
<Position X="0.159282878" Y="1.0300566" Z="-0.216084003"/>
<Orientation X="-0.0626799241" Y="-0.0390551724" Z="0.119761385"/>
</c:Transform>
</Components>
<Children>
@@ -572,6 +591,26 @@
</Components>
<Children/>
</Entity>
<Entity>
<Components>
<c:Sprite>
<DiffuseTexture>Textures/Icons/Arrow.png</DiffuseTexture>
<DepthSort>false</DepthSort>
<GlowMap></GlowMap>
<Color A="1" B="0" G="0" R="1"/>
</c:Sprite>
<c:HiddenForLocalPlayer/>
<c:SpriteIndicator>
<MinScale>50</MinScale>
<VisibleForSingleTeamOnly>true</VisibleForSingleTeamOnly>
</c:SpriteIndicator>
<c:Transform>
<Position X="0" Y="1.84000003" Z="0"/>
<Scale X="0.300000012" Y="0.300000012" Z="0.300000012"/>
</c:Transform>
</Components>
<Children/>
</Entity>
</Children>
</Entity>
@@ -19,6 +19,8 @@ void main()
vec4 bloomColor = texture(BloomTexture, Input.TextureCoordinate);
vec4 hdrColorLowRes = texture(SceneTextureLowRes, Input.TextureCoordinate);
vec4 bloomColorLowRes = texture(BloomTextureLowRes, Input.TextureCoordinate);
//hdrColor = hdrColor * SSAO;
hdrColor += bloomColor;
hdrColorLowRes;
@@ -33,7 +35,6 @@ void main()
//gamme correction
result = pow(result, vec3(1.0 / Gamma));
fragmentColor = vec4(result, 1.0);
//fragmentColor = hdrColor;
//fragmentColor = bloomColor;
+12 -7
View File
@@ -1,5 +1,7 @@
#version 430
#define MIN_AMBIENT_LIGHT 0.3
uniform mat4 M;
uniform mat4 V;
uniform mat4 P;
@@ -15,10 +17,11 @@ uniform vec2 DiffuseUVRepeat;
uniform vec2 NormalUVRepeat;
uniform vec2 SpecularUVRepeat;
uniform vec2 GlowUVRepeat;
layout (binding = 0) uniform sampler2D DiffuseTexture;
layout (binding = 1) uniform sampler2D NormalMapTexture;
layout (binding = 2) uniform sampler2D SpecularMapTexture;
layout (binding = 3) uniform sampler2D GlowMapTexture;
layout (binding = 0) uniform sampler2D AOTexture;
layout (binding = 1) uniform sampler2D DiffuseTexture;
layout (binding = 2) uniform sampler2D NormalMapTexture;
layout (binding = 3) uniform sampler2D SpecularMapTexture;
layout (binding = 4) uniform sampler2D GlowMapTexture;
#define TILE_SIZE 16
@@ -120,6 +123,8 @@ vec4 CalcNormalMappedValue(vec3 normal, vec3 tangent, vec3 bitangent, vec2 textu
void main()
{
float ao = texelFetch(AOTexture, ivec2(gl_FragCoord.xy), 0).r;
ao = (clamp(1.0 - (1.0 - ao), 0.0, 1.0) + MIN_AMBIENT_LIGHT) / (1.0 + MIN_AMBIENT_LIGHT);
vec4 diffuseTexel = texture2D(DiffuseTexture, Input.TextureCoordinate * DiffuseUVRepeat);
vec4 glowTexel = texture2D(GlowMapTexture, Input.TextureCoordinate * GlowUVRepeat);
vec4 specularTexel = texture2D(SpecularMapTexture, Input.TextureCoordinate * SpecularUVRepeat);
@@ -134,7 +139,7 @@ void main()
tilePos.y = int(gl_FragCoord.y/TILE_SIZE);
LightResult totalLighting;
totalLighting.Diffuse = vec4(AmbientColor.rgb, 1.0);
totalLighting.Diffuse = vec4(AmbientColor.rgb * ao, 1.0);
int currentTile = int(floor(gl_FragCoord.x/TILE_SIZE) + (floor(gl_FragCoord.y/TILE_SIZE) * int(ScreenDimensions.x/TILE_SIZE)));
int start = int(LightGrids.Data[currentTile].Start);
@@ -152,8 +157,8 @@ void main()
} else if (light.Type == 2) { //Directional
light_result = CalcDirectionalLightSource(V * light.Direction, light.Color, light.Intensity, viewVec, normal);
}
totalLighting.Diffuse += light_result.Diffuse;
totalLighting.Specular += light_result.Specular;
totalLighting.Diffuse += vec4(light_result.Diffuse.rgb * ao, light_result.Diffuse.a);
totalLighting.Specular += vec4(light_result.Specular.rgb * ao, light_result.Specular.a);
}
vec4 color_result = mix((Color * diffuseTexel * DiffuseColor), Input.ExplosionColor, Input.ExplosionPercentageElapsed);
@@ -1,5 +1,7 @@
#version 430
#define MIN_AMBIENT_LIGHT 0.3
uniform mat4 M;
uniform mat4 V;
uniform mat4 P;
@@ -23,19 +25,20 @@ uniform vec2 SpecularUVRepeat3;
uniform vec2 GlowUVRepeat1;
uniform vec2 GlowUVRepeat2;
uniform vec2 GlowUVRepeat3;
layout (binding = 0) uniform sampler2D SplatMapTexture;
layout (binding = 1) uniform sampler2D DiffuseTexture1;
layout (binding = 2) uniform sampler2D DiffuseTexture2;
layout (binding = 3) uniform sampler2D DiffuseTexture3;
layout (binding = 4) uniform sampler2D NormalMapTexture1;
layout (binding = 5) uniform sampler2D NormalMapTexture2;
layout (binding = 6) uniform sampler2D NormalMapTexture3;
layout (binding = 7) uniform sampler2D SpecularMapTexture1;
layout (binding = 8) uniform sampler2D SpecularMapTexture2;
layout (binding = 9) uniform sampler2D SpecularMapTexture3;
layout (binding = 10) uniform sampler2D GlowMapTexture1;
layout (binding = 11) uniform sampler2D GlowMapTexture2;
layout (binding = 12) uniform sampler2D GlowMapTexture3;
layout (binding = 0) uniform sampler2D AOTexture;
layout (binding = 1) uniform sampler2D SplatMapTexture;
layout (binding = 2) uniform sampler2D DiffuseTexture1;
layout (binding = 3) uniform sampler2D DiffuseTexture2;
layout (binding = 4) uniform sampler2D DiffuseTexture3;
layout (binding = 5) uniform sampler2D NormalMapTexture1;
layout (binding = 6) uniform sampler2D NormalMapTexture2;
layout (binding = 7) uniform sampler2D NormalMapTexture3;
layout (binding = 8) uniform sampler2D SpecularMapTexture1;
layout (binding = 9) uniform sampler2D SpecularMapTexture2;
layout (binding = 10) uniform sampler2D SpecularMapTexture3;
layout (binding = 11) uniform sampler2D GlowMapTexture1;
layout (binding = 12) uniform sampler2D GlowMapTexture2;
layout (binding = 13) uniform sampler2D GlowMapTexture3;
#define TILE_SIZE 16
@@ -174,6 +177,9 @@ vec4 CalcBlendedNormal(vec4 blendValue, sampler2D R, sampler2D G, sampler2D B,
void main()
{
float ao = texelFetch(AOTexture, ivec2(gl_FragCoord.xy), 0).r;
ao = (clamp(1.0 - (1.0 - ao), 0.0, 1.0) + MIN_AMBIENT_LIGHT) / (1.0 + MIN_AMBIENT_LIGHT);
vec4 splatTexel = texture2D(SplatMapTexture, Input.TextureCoordinate);
vec4 diffuseTexel = CalcBlendedTexel(splatTexel, DiffuseTexture1, DiffuseTexture2, DiffuseTexture3,
@@ -195,7 +201,7 @@ void main()
tilePos.y = int(gl_FragCoord.y/TILE_SIZE);
LightResult totalLighting;
totalLighting.Diffuse = vec4(AmbientColor.rgb, 1.0);
totalLighting.Diffuse = vec4(AmbientColor.rgb * ao, 1.0);
int currentTile = int(floor(gl_FragCoord.x/TILE_SIZE) + (floor(gl_FragCoord.y/TILE_SIZE) * int(ScreenDimensions.x/TILE_SIZE)));
int start = int(LightGrids.Data[currentTile].Start);
@@ -213,8 +219,8 @@ void main()
} else if (light.Type == 2) { //Directional
light_result = CalcDirectionalLightSource(V * light.Direction, light.Color, light.Intensity, viewVec, normal);
}
totalLighting.Diffuse += light_result.Diffuse;
totalLighting.Specular += light_result.Specular;
totalLighting.Diffuse += vec4(light_result.Diffuse.rgb * ao, light_result.Diffuse.a);
totalLighting.Specular += vec4(light_result.Specular.rgb * ao, light_result.Specular.a);
}
vec4 color_result = mix((Color * diffuseTexel * DiffuseColor), Input.ExplosionColor, Input.ExplosionPercentageElapsed);
+114
View File
@@ -0,0 +1,114 @@
#version 430
//Number of samples per pixel
uniform int uNumOfSamples;
//#define NUM_SAMPLES (11)
//Number of turns around the cirle
uniform int uNumOfTurns;
//#define NUM_TURNS (7)
layout (binding = 0) uniform sampler2D ViewSpaceZ;
uniform vec4 uProjInfo;
uniform float uProjScale;
//#define ProjScale 500
uniform float uRadius;
//#define Radius 1.0f
uniform float uBias;
//#define Bias 0.012f
uniform float uContrast;
//#define IntensityDivR6 1
uniform float uIntensityScale;
out float AO;
vec3 getVSPosition(ivec2 ScreenSpaceCoord) {
float z = texelFetch(ViewSpaceZ, ScreenSpaceCoord, 0).r;
//Get the xy view space coordinates and add the z value from ViewSpaceZ buffer.
return vec3((uProjInfo[0] + (ScreenSpaceCoord.x * uProjInfo[1])) * z, (uProjInfo[2] + (ScreenSpaceCoord.y * uProjInfo[3])) * z, z);
}
vec3 getVSFaceNormal(vec3 ViewSpacePosition) {
// Get tangets vector for the plane and ViewSpacePositin... don't ask how this functions works. It's pure magic.
// 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.
return normalize(cross(dFdx(ViewSpacePosition), dFdy(ViewSpacePosition)));
}
vec3 getSampleViewSpacePos(ivec2 ScreenSpaceCoord, int SampleIndex, float RotationAngle, float ScreenSpaceSampleRadius){
// Pure Magic...
float alpha = float(SampleIndex) * (1.0 / uNumOfSamples);
// Angle to where to sample
float angle = alpha * (uNumOfTurns * 6.28) + RotationAngle;
//Lenght to were to sample
ScreenSpaceSampleRadius = ScreenSpaceSampleRadius * alpha;
vec2 screenSpaceSampleOffsetVecor = vec2(cos(angle), sin(angle));
// Get texel coordinate on where to sample by going screenSpaceSampleOffsetVecor direction in ScreenSpaceSampleRadius units from ScreenSpaceCoord (the point being shaded);
ivec2 screenSpaceSampleTexel = ivec2(ScreenSpaceSampleRadius * screenSpaceSampleOffsetVecor) + ScreenSpaceCoord;
return getVSPosition(screenSpaceSampleTexel);
}
float sampleAO(ivec2 ScreenSpaceCoord, vec3 Origin, vec3 OriginNormal, float ScreenSpaceSampleRadius, int SampleIndex, float RotationAngle, float Radius) {
float radius2 = Radius * Radius;
vec3 sampleViewSpacePosition = getSampleViewSpacePos(ScreenSpaceCoord, SampleIndex, RotationAngle, ScreenSpaceSampleRadius);
vec3 sampleVector = Origin - sampleViewSpacePosition;
// vv = sampleVectorLenght ^ 2
float vv = dot(sampleVector, sampleVector);
// vn = angle between sampleVector and Normal
float vn = dot(sampleVector, OriginNormal);
const float epsilon = 0.0001f;
// vv < radius2 if the vector is shorter then the radius;
// vn - bias, offset the angle to reduse self occlusion.
// epsilon is here to make divison by 0 impossible.
return float(vv < radius2) * max((vn - uBias) / (epsilon + vv), 0.0);
//float f = max(radius2 - vv, 0.0);
//return f * f * f * max((vn - uBias) / (epsilon + vv), 0.0);
}
void main() {
ivec2 originScreenCoord = ivec2(gl_FragCoord.xy);
vec3 origin = getVSPosition(originScreenCoord);
float radius;
if(origin.z < uRadius){
radius = origin.z;
} else {
radius = uRadius;
}
vec3 originNormal = getVSFaceNormal(origin);
float screenSpaceSampleRadius = -uProjScale * radius / origin.z;
float rotationAngleOffset = 30 * originScreenCoord.x ^ originScreenCoord.y + 10 * originScreenCoord.x * originScreenCoord.y;
float sum = 0.0;
for (int i = 0; i < uNumOfSamples; i++) {
sum += sampleAO(originScreenCoord, origin, originNormal, screenSpaceSampleRadius, i, rotationAngleOffset, radius);
}
//float A = max(0.0, 1.0 - sum * (2.0f / uNumOfSamples));
float A = 1.0 - sum * (2.0f * uIntensityScale / float(uNumOfSamples));
AO = clamp(pow(A, uContrast), 0.0f, 1.0f);
//AO = vec4(originNormal, 1.0f);
}
+8
View File
@@ -0,0 +1,8 @@
#version 430
layout (location = 0) in vec3 Position;
void main()
{
gl_Position = vec4(Position, 1.0);
}
@@ -0,0 +1,14 @@
#version 430
layout (binding = 0) uniform sampler2D DepthBuffer;
uniform vec3 ClipInfo;
out float depthLinear;
//Just for Debug, should be depthLinear
//out vec4 fragmentColor;
void main() {
float depthSample = texelFetch(DepthBuffer, ivec2(gl_FragCoord.xy), 0).r;
depthLinear = ClipInfo[0] / (ClipInfo[1] * depthSample + ClipInfo[2]);
//float depthLinear = (NearClip) / ( -depthSample + 1.0f);
//fragmentColor = vec4(depthLinear, depthLinear, depthLinear, 1.0f);
}
+2 -2
View File
@@ -7,8 +7,8 @@ uniform mat4 M;
uniform mat4 V;
uniform mat4 P;
layout (binding = 0) uniform sampler2D DiffuseTexture;
layout (binding = 1) uniform sampler2D GlowMapTexture;
layout (binding = 1) uniform sampler2D DiffuseTexture;
layout (binding = 2) uniform sampler2D GlowMapTexture;
in VertexData{
-11
View File
@@ -1,11 +0,0 @@
#include "Network/NetworkClient.h"
NetworkClient::NetworkClient()
{
m_ReadBuffer = new char[m_BufferSize];
}
NetworkClient::~NetworkClient()
{
delete[] m_ReadBuffer;
}
-11
View File
@@ -1,11 +0,0 @@
#include "Network/NetworkServer.h"
NetworkServer::NetworkServer()
{
m_ReadBuffer = new char[m_BufferSize];
}
NetworkServer::~NetworkServer()
{
delete[] m_ReadBuffer;
}
+3 -53
View File
@@ -146,7 +146,7 @@ void Server::sendSnapshot()
{
Packet packet(MessageType::Snapshot);
addInputCommandsToPacket(packet);
addPlayersToPacket(packet, EntityID_Invalid);
addChildrenToPacket(packet, EntityID_Invalid);
unreliableBroadcast(packet);
}
@@ -163,7 +163,7 @@ void Server::addInputCommandsToPacket(Packet& packet)
m_InputCommandsToBroadcast.clear();
}
void Server::addPlayersToPacket(Packet & packet, EntityID entityID)
void Server::addChildrenToPacket(Packet & packet, EntityID entityID)
{
auto itPair = m_World->GetChildren(entityID);
std::unordered_map<std::string, ComponentPool*> worldComponentPools = m_World->GetComponentPools();
@@ -212,49 +212,6 @@ void Server::addPlayersToPacket(Packet & packet, EntityID entityID)
}
}
void Server::addChildrenToPacket(Packet & packet, EntityID entityID)
{
auto itPair = m_World->GetChildren(entityID);
std::unordered_map<std::string, ComponentPool*> worldComponentPools = m_World->GetComponentPools();
// Loop through every child
for (auto it = itPair.first; it != itPair.second; it++) {
EntityID childEntityID = it->second;
// Write EntityID and parentsID and Entity name
packet.WritePrimitive(childEntityID);
packet.WritePrimitive(entityID);
packet.WriteString(m_World->GetName(childEntityID));
// Write components to child
int numberOfComponents = 0;
for (auto& i : worldComponentPools) {
if (i.second->KnowsEntity(childEntityID)) {
numberOfComponents++;
}
}
// Write how many components should be read
packet.WritePrimitive(numberOfComponents);
for (auto& i : worldComponentPools) {
// If the entity exist in the pool
if (i.second->KnowsEntity(childEntityID)) {
ComponentWrapper componentWrapper = i.second->GetByEntity(childEntityID);
// ComponentType
packet.WriteString(componentWrapper.Info.Name);
// Loop through fields
for (auto& componentField : componentWrapper.Info.FieldsInOrder) {
ComponentInfo::Field_t fieldInfo = componentWrapper.Info.Fields.at(componentField);
if (fieldInfo.Type == "string") {
std::string& value = componentWrapper[componentField];
packet.WriteString(value);
} else {
packet.WriteData(componentWrapper.Data + fieldInfo.Offset, fieldInfo.Stride);
}
}
}
}
// Go to to your children
addChildrenToPacket(packet, childEntityID);
}
}
void Server::sendPing()
{
// Prints connected players ping
@@ -347,11 +304,6 @@ void Server::parseTCPConnect(Packet & packet)
connnectPacket.WritePrimitive(playerID);
m_Reliable.Send(connnectPacket);
Packet firstSnapshot(MessageType::Snapshot);
addInputCommandsToPacket(firstSnapshot);
addChildrenToPacket(firstSnapshot, EntityID_Invalid);
m_Reliable.Send(firstSnapshot);
// Send notification that a player has connected
//Packet notificationPacket(MessageType::PlayerConnected);
//broadcast(notificationPacket);
@@ -494,9 +446,7 @@ void Server::parsePing()
{
for (auto& kv : m_ConnectedPlayers) {
if (kv.second.TCPAddress == m_Address &&
kv.second.TCPPort == m_Port
|| (kv.second.Endpoint.address() == m_Address
&& kv.second.Endpoint.port() == m_Port)) {
kv.second.TCPPort == m_Port) {
kv.second.StopTime = std::clock();
break;
}
+10 -40
View File
@@ -56,62 +56,32 @@ void TCPClient::Disconnect()
void TCPClient::Receive(Packet& packet)
{
size_t bytesRead = readBuffer();
size_t bytesRead = readBuffer(m_ReadBuffer);
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
}
size_t TCPClient::readBuffer()
size_t TCPClient::readBuffer(char* data)
{
//if (!m_Socket) {
// return 0;
//}
//boost::system::error_code error;
//// Read size of packet
//size_t bytesReceived = m_Socket->read_some(boost
// ::asio::buffer((void*)data, sizeof(int)),
// error);
//int sizeOfPacket = 0;
//memcpy(&sizeOfPacket, data, sizeof(int));
//// Read the rest of the message
//bytesReceived += m_Socket->read_some(boost
// ::asio::buffer((void*)(data + bytesReceived), sizeOfPacket - bytesReceived),
// error);
//if (error) {
// //LOG_ERROR("receive: %s", error.message().c_str());
//}
//return bytesReceived;
if (!m_Socket) {
return 0;
}
boost::system::error_code error;
// Read size of packet
m_Socket->receive(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
boost::asio::ip::tcp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
// TODO if message is huge 1 time the buffer will not decrease.
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
// Read the rest of the message
size_t bytesReceived = m_Socket->read_some(boost
::asio::buffer((void*)(m_ReadBuffer), sizeOfPacket),
::asio::buffer((void*)data, sizeof(int)),
error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, data, sizeof(int));
// Read the rest of the message
bytesReceived += m_Socket->read_some(boost
::asio::buffer((void*)(data + bytesReceived), sizeOfPacket - bytesReceived),
error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
+15 -55
View File
@@ -7,7 +7,8 @@ TCPServer::TCPServer()
}
TCPServer::~TCPServer()
{ }
{
}
void TCPServer::AcceptNewConnections(int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers)
{
@@ -30,7 +31,7 @@ PlayerID GetPlayerIDFromEndpoint(const std::map<PlayerID, PlayerDefinition>& con
return -1;
}
void TCPServer::handle_accept(boost::shared_ptr<tcp::socket> socket,
void TCPServer::handle_accept(boost::shared_ptr<tcp::socket> socket,
int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers,
const boost::system::error_code& error)
{
@@ -50,8 +51,8 @@ void TCPServer::handle_accept(boost::shared_ptr<tcp::socket> socket,
void TCPServer::Send(Packet & packet, PlayerDefinition & playerDefinition)
{
packet.UpdateSize();
try {
packet.UpdateSize();
int bytesSent = playerDefinition.TCPSocket->send(
boost::asio::buffer(packet.Data(), packet.Size()),
0);
@@ -72,79 +73,38 @@ void TCPServer::Send(Packet & packet)
}
void TCPServer::Disconnect()
{
{
}
//void TCPServer::Receive(Packet & packet, PlayerDefinition & playerDefinition)
//{
// int bytesRead = readBuffer(m_ReadBuffer, playerDefinition);
// if (bytesRead > 0) {
// packet.ReconstructFromData(m_ReadBuffer, bytesRead);
// }
// lastReceivedSocket = playerDefinition.TCPSocket;
//}
//
//int TCPServer::readBuffer(char* data, PlayerDefinition & playerDefinition)
//{
// if (!playerDefinition.TCPSocket) {
// return 0;
// }
// boost::system::error_code error;
// // Read size of packet
// size_t bytesReceived = playerDefinition.TCPSocket->read_some(boost
// ::asio::buffer((void*)data, sizeof(int)),
// error);
// int sizeOfPacket = 0;
// memcpy(&sizeOfPacket, data, sizeof(int));
//
// // Read the rest of the message
// bytesReceived += playerDefinition.TCPSocket->read_some(boost
// ::asio::buffer((void*)(data + bytesReceived), sizeOfPacket - bytesReceived),
// error);
// if (error) {
// //LOG_ERROR("receive: %s", error.message().c_str());
// }
// return bytesReceived;
//}
void TCPServer::Receive(Packet & packet, PlayerDefinition & playerDefinition)
{
int bytesRead = readBuffer(playerDefinition);
int bytesRead = readBuffer(m_ReadBuffer, playerDefinition);
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
lastReceivedSocket = playerDefinition.TCPSocket;
}
int TCPServer::readBuffer(PlayerDefinition & playerDefinition)
int TCPServer::readBuffer(char* data, PlayerDefinition & playerDefinition)
{
if (!playerDefinition.TCPSocket) {
return 0;
}
boost::system::error_code error;
// Read size of packet
playerDefinition.TCPSocket->receive(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
boost::asio::ip::tcp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
// Read the rest of the message
size_t bytesReceived = playerDefinition.TCPSocket->read_some(boost
::asio::buffer((void*)(m_ReadBuffer), sizeOfPacket),
::asio::buffer((void*)data, sizeof(int)),
error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, data, sizeof(int));
// Read the rest of the message
bytesReceived += playerDefinition.TCPSocket->read_some(boost
::asio::buffer((void*)(data + bytesReceived), sizeOfPacket - bytesReceived),
error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
+6 -38
View File
@@ -27,62 +27,30 @@ void UDPClient::Disconnect()
void UDPClient::Receive(Packet& packet)
{
int bytesRead = readBuffer();
int bytesRead = readBuffer(m_ReadBuffer);
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
}
int UDPClient::readBuffer()
int UDPClient::readBuffer(char* data)
{
//if (!m_Socket) {
// return 0;
//}
//boost::system::error_code error;
//int bytesReceived = m_Socket->receive_from(boost
// ::asio::buffer((void*)data, BUFFERSIZE),
// m_ReceiverEndpoint,
// 0, error);
//if (error) {
// //LOG_ERROR("receive: %s", error.message().c_str());
//}
//return bytesReceived;
if (!m_Socket) {
return 0;
}
boost::system::error_code error;
// Read size of packet
m_Socket->receive(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
boost::asio::ip::udp::socket::message_peek, error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
size_t availableData = m_Socket->available();
// Read the rest of the message
size_t bytesReceived = m_Socket->receive_from(boost
::asio::buffer((void*)(m_ReadBuffer),
sizeOfPacket),
m_ReceiverEndpoint, 0, error);
int bytesReceived = m_Socket->receive_from(boost
::asio::buffer((void*)data, BUFFERSIZE),
m_ReceiverEndpoint,
0, error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
void UDPClient::Send(Packet& packet)
{
packet.UpdateSize();
m_Socket->send_to(boost::asio::buffer(
packet.Data(),
packet.Size()),
+10 -42
View File
@@ -10,7 +10,6 @@ UDPServer::~UDPServer()
void UDPServer::Send(Packet& packet, PlayerDefinition & playerDefinition)
{
packet.UpdateSize();
try {
int bytesSent = m_Socket->send_to(
boost::asio::buffer(packet.Data(), packet.Size()),
@@ -24,7 +23,6 @@ void UDPServer::Send(Packet& packet, PlayerDefinition & playerDefinition)
// Send back to endpoint of received packet
void UDPServer::Send(Packet & packet)
{
packet.UpdateSize();
m_Socket->send_to(
boost::asio::buffer(
packet.Data(),
@@ -35,7 +33,7 @@ void UDPServer::Send(Packet & packet)
void UDPServer::Receive(Packet & packet, PlayerDefinition & playerDefinition)
{
int bytesRead = readBuffer();
int bytesRead = readBuffer(m_ReadBuffer);
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
@@ -47,47 +45,17 @@ bool UDPServer::IsSocketAvailable()
return m_Socket->available();
}
int UDPServer::readBuffer()
int UDPServer::readBuffer(char* data)
{
//boost::system::error_code error = boost::asio::error::host_not_found;
//unsigned int length = m_Socket->receive_from(
// boost::asio::buffer((void*)data
// , BUFFERSIZE)
// , m_ReceiverEndpoint, 0, error);
//if (error) {
// LOG_WARNING(error.message().c_str());
//}
//return length;
if (!m_Socket) {
return 0;
boost::system::error_code error = boost::asio::error::host_not_found;
unsigned int length = m_Socket->receive_from(
boost::asio::buffer((void*)data
, BUFFERSIZE)
, m_ReceiverEndpoint, 0, error);
if (error) {
LOG_WARNING(error.message().c_str());
}
boost::system::error_code error;
// Read size of packet
m_Socket->receive_from(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
m_ReceiverEndpoint, boost::asio::ip::udp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
// Read the rest of the message
size_t bytesReceived = m_Socket->receive_from(boost
::asio::buffer((void*)(m_ReadBuffer),
sizeOfPacket),
m_ReceiverEndpoint, 0, error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
return length;
}
void UDPServer::AcceptNewConnections(int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers)
+13 -14
View File
@@ -19,16 +19,20 @@ void DrawBloomPass::InitializeTextures()
void DrawBloomPass::InitializeShaderPrograms()
{
m_GaussianProgram_horiz = ResourceManager::Load<ShaderProgram>("##GaussianProgramHoriz");
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_horiz.vert.glsl")));
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_horiz.frag.glsl")));
m_GaussianProgram_horiz->Compile();
m_GaussianProgram_horiz->Link();
if (m_GaussianProgram_horiz->GetHandle() == 0) {
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_horiz.vert.glsl")));
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_horiz.frag.glsl")));
m_GaussianProgram_horiz->Compile();
m_GaussianProgram_horiz->Link();
}
m_GaussianProgram_vert = ResourceManager::Load<ShaderProgram>("##GaussianProgramVert");
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_vert.vert.glsl")));
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_vert.frag.glsl")));
m_GaussianProgram_vert->Compile();
m_GaussianProgram_vert->Link();
m_GaussianProgram_vert = ResourceManager::Load<ShaderProgram>("##GaussianProgramVert");
if (m_GaussianProgram_vert->GetHandle() == 0) {
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_vert.vert.glsl")));
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_vert.frag.glsl")));
m_GaussianProgram_vert->Compile();
m_GaussianProgram_vert->Link();
}
}
@@ -71,15 +75,12 @@ void DrawBloomPass::Draw(GLuint texture)
//Horizontal pass, first use the given texture then save it to the horizontal framebuffer.
m_GaussianFrameBuffer_horiz.Bind();
m_GaussianProgram_horiz->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, texture);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
//Iterate some times to make it more gaussian.
for (int i = 1; i < m_iterations; i++) {
//Vertical pass
@@ -92,7 +93,6 @@ void DrawBloomPass::Draw(GLuint texture)
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
//horizontal pass
m_GaussianFrameBuffer_horiz.Bind();
@@ -112,7 +112,6 @@ void DrawBloomPass::Draw(GLuint texture)
m_GaussianProgram_vert->Bind();
glBindTexture(GL_TEXTURE_2D, m_GaussianTexture_horiz);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
+30 -26
View File
@@ -27,6 +27,7 @@ void DrawFinalPass::InitializeFrameBuffers()
glRenderbufferStorage(GL_RENDERBUFFER, GL_DEPTH24_STENCIL8, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);
GLERROR("RenderBuffer generation");
GenerateTexture(&m_SceneTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
//GenerateTexture(&m_BloomTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewPortSize().Width, m_Renderer->GetViewPortSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
GenerateTexture(&m_BloomTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
@@ -173,25 +174,25 @@ void DrawFinalPass::InitializeShaderPrograms()
GLERROR("Creating DepthFill program");
}
void DrawFinalPass::Draw(RenderScene& scene)
void DrawFinalPass::Draw(RenderScene& scene, GLuint SSAOTexture)
{
GLERROR("Pre");
DrawFinalPassState* state = new DrawFinalPassState(m_FinalPassFrameBuffer.GetHandle());
if (scene.ClearDepth) {
glClear(GL_DEPTH_BUFFER_BIT);
//glClear(GL_DEPTH_BUFFER_BIT);
state->Disable(GL_DEPTH_TEST);
state->DepthMask(GL_FALSE);
}
//TODO: Do we need check for this or will it be per scene always?
glClearStencil(0x00);
glClear(GL_STENCIL_BUFFER_BIT);
//Fill depth buffer
state->StencilMask(0x00);
DrawModelRenderQueues(scene.Jobs.OpaqueObjects, scene);
DrawModelRenderQueues(scene.Jobs.OpaqueObjects, scene, SSAOTexture);
GLERROR("OpaqueObjects");
DrawModelRenderQueues(scene.Jobs.TransparentObjects, scene);
DrawModelRenderQueues(scene.Jobs.TransparentObjects, scene, SSAOTexture);
GLERROR("TransparentObjects");
DrawSprites(scene.Jobs.SpriteJob, scene);
GLERROR("SpriteJobs");
@@ -206,11 +207,11 @@ void DrawFinalPass::Draw(RenderScene& scene)
//Draw Opaque shielded objects
state->StencilFunc(GL_NOTEQUAL, 1, 0xFF);
state->StencilMask(0x00);
DrawModelRenderQueues(scene.Jobs.OpaqueShieldedObjects, scene); //might need changing
DrawModelRenderQueues(scene.Jobs.OpaqueShieldedObjects, scene, SSAOTexture); //might need changing
GLERROR("Shielded Opaque object");
//Draw Transparen Shielded objects
DrawModelRenderQueues(scene.Jobs.TransparentShieldedObjects, scene); //might need changing
DrawModelRenderQueues(scene.Jobs.TransparentShieldedObjects, scene, SSAOTexture); //might need changing
GLERROR("Shielded Transparent objects");
GLERROR("END");
@@ -241,14 +242,14 @@ void DrawFinalPass::Draw(RenderScene& scene)
DrawShieldToStencilBuffer(scene.Jobs.ShieldObjects, scene);
GLERROR("StencilPass");
glClear(GL_DEPTH_BUFFER_BIT);
//glClear(GL_DEPTH_BUFFER_BIT);
stateLowRes->Enable(GL_DEPTH_TEST);
stateLowRes->StencilFunc(GL_LEQUAL, 1, 0xFF);
stateLowRes->StencilMask(0x00);
DrawModelRenderQueues(scene.Jobs.OpaqueObjects, scene);
DrawModelRenderQueues(scene.Jobs.OpaqueObjects, scene, SSAOTexture);
GLERROR("OpaqueObjects");
DrawModelRenderQueues(scene.Jobs.TransparentObjects, scene);
DrawModelRenderQueues(scene.Jobs.TransparentObjects, scene, SSAOTexture);
GLERROR("TransparentObjects");
glViewport(0, 0, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);
glScissor(0, 0, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);
@@ -321,7 +322,7 @@ void DrawFinalPass::GenerateMipMapTexture(GLuint* texture, GLenum wrapping, glm:
GLERROR("MipMap Texture initialization failed");
}
void DrawFinalPass::DrawModelRenderQueues(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene)
void DrawFinalPass::DrawModelRenderQueues(std::list<std::shared_ptr<RenderJob>>& jobs, RenderScene& scene, GLuint SSAOTexture)
{
GLuint forwardHandle = m_ForwardPlusProgram->GetHandle();
GLERROR("forwardHandle");
@@ -344,6 +345,9 @@ void DrawFinalPass::DrawModelRenderQueues(std::list<std::shared_ptr<RenderJob>>&
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 2, m_LightCullingPass->LightGridSSBO());
glBindBufferBase(GL_SHADER_STORAGE_BUFFER, 4, m_LightCullingPass->LightIndexSSBO());
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, SSAOTexture);
for (auto &job : jobs) {
auto explosionEffectJob = std::dynamic_pointer_cast<ExplosionEffectJob>(job);
if (explosionEffectJob) {
@@ -690,14 +694,14 @@ void DrawFinalPass::DrawSprites(std::list<std::shared_ptr<RenderJob>>&jobs, Rend
glUniform4fv(glGetUniformLocation(shaderHandle, "FillColor"), 1, glm::value_ptr(spriteJob->FillColor));
glUniform1f(glGetUniformLocation(shaderHandle, "FillPercentage"), spriteJob->FillPercentage);
glActiveTexture(GL_TEXTURE0);
glActiveTexture(GL_TEXTURE1);
if (spriteJob->DiffuseTexture != nullptr) {
glBindTexture(GL_TEXTURE_2D, spriteJob->DiffuseTexture->m_Texture);
} else {
glBindTexture(GL_TEXTURE_2D, m_ErrorTexture->m_Texture);
}
glActiveTexture(GL_TEXTURE1);
glActiveTexture(GL_TEXTURE2);
if (spriteJob->IncandescenceTexture != nullptr) {
glBindTexture(GL_TEXTURE_2D, spriteJob->IncandescenceTexture->m_Texture);
} else {
@@ -807,7 +811,7 @@ void DrawFinalPass::BindExplosionTextures(GLuint shaderHandle, std::shared_ptr<E
case RawModel::MaterialType::SingleTextures:
case RawModel::MaterialType::Basic:
{
glActiveTexture(GL_TEXTURE0);
glActiveTexture(GL_TEXTURE1);
if (job->DiffuseTexture.size() > 0 && job->DiffuseTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->DiffuseTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "DiffuseUVRepeat"), 1, glm::value_ptr(job->DiffuseTexture[0]->UVRepeat));
@@ -817,7 +821,7 @@ void DrawFinalPass::BindExplosionTextures(GLuint shaderHandle, std::shared_ptr<E
glUniform2fv(glGetUniformLocation(shaderHandle, "DiffuseUVRepeat"), 1, glm::value_ptr(glm::vec2(1.0f, 1.0f)));
}
glActiveTexture(GL_TEXTURE1);
glActiveTexture(GL_TEXTURE2);
if (job->NormalTexture.size() > 0 && job->NormalTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->NormalTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "NormalUVRepeat"), 1, glm::value_ptr(job->NormalTexture[0]->UVRepeat));
@@ -827,7 +831,7 @@ void DrawFinalPass::BindExplosionTextures(GLuint shaderHandle, std::shared_ptr<E
glUniform2fv(glGetUniformLocation(shaderHandle, "NormalUVRepeat"), 1, glm::value_ptr(glm::vec2(1.0f, 1.0f)));
}
glActiveTexture(GL_TEXTURE2);
glActiveTexture(GL_TEXTURE3);
if (job->SpecularTexture.size() > 0 && job->SpecularTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->SpecularTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "SpecularUVRepeat"), 1, glm::value_ptr(job->SpecularTexture[0]->UVRepeat));
@@ -837,7 +841,7 @@ void DrawFinalPass::BindExplosionTextures(GLuint shaderHandle, std::shared_ptr<E
glUniform2fv(glGetUniformLocation(shaderHandle, "SpecularUVRepeat"), 1, glm::value_ptr(glm::vec2(1.0f, 1.0f)));
}
glActiveTexture(GL_TEXTURE3);
glActiveTexture(GL_TEXTURE4);
if (job->IncandescenceTexture.size() > 0 && job->IncandescenceTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->IncandescenceTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "GlowUVRepeat"), 1, glm::value_ptr(job->IncandescenceTexture[0]->UVRepeat));
@@ -850,7 +854,7 @@ void DrawFinalPass::BindExplosionTextures(GLuint shaderHandle, std::shared_ptr<E
}
case RawModel::MaterialType::SplatMapping:
{
glActiveTexture(GL_TEXTURE0);
glActiveTexture(GL_TEXTURE1);
glBindTexture(GL_TEXTURE_2D, job->SplatMap->Texture->m_Texture);
int texturePosition = GL_TEXTURE1;
@@ -925,7 +929,7 @@ void DrawFinalPass::BindModelTextures(GLuint shaderHandle, std::shared_ptr<Model
case RawModel::MaterialType::SingleTextures:
case RawModel::MaterialType::Basic:
{
glActiveTexture(GL_TEXTURE0);
glActiveTexture(GL_TEXTURE1);
if (job->DiffuseTexture.size() > 0 && job->DiffuseTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->DiffuseTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "DiffuseUVRepeat"), 1, glm::value_ptr(job->DiffuseTexture[0]->UVRepeat));
@@ -935,7 +939,7 @@ void DrawFinalPass::BindModelTextures(GLuint shaderHandle, std::shared_ptr<Model
glUniform2fv(glGetUniformLocation(shaderHandle, "DiffuseUVRepeat"), 1, glm::value_ptr(glm::vec2(1.0f, 1.0f)));
}
glActiveTexture(GL_TEXTURE1);
glActiveTexture(GL_TEXTURE2);
if (job->NormalTexture.size() > 0 && job->NormalTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->NormalTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "NormalUVRepeat"), 1, glm::value_ptr(job->NormalTexture[0]->UVRepeat));
@@ -945,7 +949,7 @@ void DrawFinalPass::BindModelTextures(GLuint shaderHandle, std::shared_ptr<Model
glUniform2fv(glGetUniformLocation(shaderHandle, "NormalUVRepeat"), 1, glm::value_ptr(glm::vec2(1.0f, 1.0f)));
}
glActiveTexture(GL_TEXTURE2);
glActiveTexture(GL_TEXTURE3);
if (job->SpecularTexture.size() > 0 && job->SpecularTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->SpecularTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "SpecularUVRepeat"), 1, glm::value_ptr(job->SpecularTexture[0]->UVRepeat));
@@ -955,7 +959,7 @@ void DrawFinalPass::BindModelTextures(GLuint shaderHandle, std::shared_ptr<Model
glUniform2fv(glGetUniformLocation(shaderHandle, "SpecularUVRepeat"), 1, glm::value_ptr(glm::vec2(1.0f, 1.0f)));
}
glActiveTexture(GL_TEXTURE3);
glActiveTexture(GL_TEXTURE4);
if (job->IncandescenceTexture.size() > 0 && job->IncandescenceTexture[0]->Texture != nullptr) {
glBindTexture(GL_TEXTURE_2D, job->IncandescenceTexture[0]->Texture->m_Texture);
glUniform2fv(glGetUniformLocation(shaderHandle, "GlowUVRepeat"), 1, glm::value_ptr(job->IncandescenceTexture[0]->UVRepeat));
@@ -968,10 +972,10 @@ void DrawFinalPass::BindModelTextures(GLuint shaderHandle, std::shared_ptr<Model
}
case RawModel::MaterialType::SplatMapping:
{
glActiveTexture(GL_TEXTURE0);
glActiveTexture(GL_TEXTURE1);
glBindTexture(GL_TEXTURE_2D, job->SplatMap->Texture->m_Texture);
int texturePosition = GL_TEXTURE1;
int texturePosition = GL_TEXTURE2;
//Bind 5 diffuse textures
std::string UniformName = "DiffuseUVRepeat";
+15 -4
View File
@@ -25,11 +25,20 @@ void PickingPass::InitializeTextures()
void PickingPass::InitializeFrameBuffers()
{
glGenRenderbuffers(1, &m_DepthBuffer);
/* glGenRenderbuffers(1, &m_DepthBuffer);
glBindRenderbuffer(GL_RENDERBUFFER, m_DepthBuffer);
glRenderbufferStorage(GL_RENDERBUFFER, GL_DEPTH_COMPONENT, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);
glRenderbufferStorage(GL_RENDERBUFFER, GL_DEPTH_COMPONENT, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);*/
m_PickingBuffer.AddResource(std::shared_ptr<BufferResource>(new RenderBuffer(&m_DepthBuffer, GL_DEPTH_ATTACHMENT)));
glGenTextures(1, &m_DepthBuffer);
glBindTexture(GL_TEXTURE_2D, m_DepthBuffer);
glTexImage2D(GL_TEXTURE_2D, 0, GL_DEPTH24_STENCIL8, (int)(m_Renderer->GetViewportSize().Width), (int)(m_Renderer->GetViewportSize().Height), 0, GL_DEPTH_STENCIL, GL_UNSIGNED_INT_24_8, nullptr);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_BORDER);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_BORDER);
m_PickingBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_DepthBuffer, GL_DEPTH_ATTACHMENT)));
m_PickingBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_PickingTexture, GL_COLOR_ATTACHMENT0)));
m_PickingBuffer.Generate();
}
@@ -63,7 +72,9 @@ void PickingPass::Draw(RenderScene& scene)
m_PickingProgram->Bind();
if (scene.ClearDepth) {
glClear(GL_DEPTH_BUFFER_BIT);
//glClear(GL_DEPTH_BUFFER_BIT);
state->Disable(GL_DEPTH_TEST);
state->DepthMask(GL_FALSE);
}
m_Camera = scene.Camera;
+96 -6
View File
@@ -52,6 +52,101 @@ void RenderSystem::fillSprites(std::list<std::shared_ptr<RenderJob>>& jobs, Worl
continue;
}
glm::mat4 modelMatrix;
// See a sprite is an SpriteIndicator
bool isIndicator = false;
if (world->HasComponent(entity.ID, "SpriteIndicator"))
{
auto indicator = entity["SpriteIndicator"];
float minScale = (float)(double)indicator["MinScale"];
bool hasTeam = indicator["VisibleForSingleTeamOnly"];
isIndicator = true;
glm::vec3 pos = Transform::AbsolutePosition(entity);
EntityWrapper entityTeam;
if (hasTeam && (entity.HasComponent("Team") || entity.FirstParentWithComponent("Team").Valid()) && m_LocalPlayer.World != nullptr) {
if (!entity.HasComponent("Team")) {
entityTeam = entity.FirstParentWithComponent("Team");
}
else {
entityTeam = entity;
}
ComponentWrapper& entityTeamComponent = entityTeam["Team"];
ComponentWrapper& localComponent = m_LocalPlayer["Team"];
int entityTeamInt = entityTeamComponent["Team"];
int localComponentInt = localComponent["Team"];
int SpectatorInt = localComponent["Team"].Enum("Spectator");
if (entityTeamInt != localComponentInt && localComponentInt != SpectatorInt) {
continue;
}
}
// Code for check if sprite is inside or outside of screen
//glm::vec4 projectedPos = m_Camera->ProjectionMatrix() * m_Camera->ViewMatrix() * glm::vec4(pos, 1.0f);
//projectedPos /= projectedPos.w;
//// Check if inside of outside of screen.
//if (projectedPos.x < -1.0f || projectedPos.x > 1.0f || projectedPos.y < -1.0f || projectedPos.y > 1.0f) {
// // is outside of screen
//} else {
// // is inside of screen
//}
glm::vec3 zAxis = glm::vec3(0.0f, 1.0f, 0.0f);
glm::vec3 normal = pos - m_Camera->Position();
//float distance = glm::length(normal);
//if (distance < minDistance) {
// pos = pos - glm::normalize(normal) * (distance - minDistance);
//} else if (distance > maxDistance) {
// pos = pos - glm::normalize(normal) * (distance - maxDistance);
//}
normal.y = 0;
normal = glm::normalize(normal);
glm::vec3 right = glm::cross(normal, zAxis);
glm::vec3 up = glm::cross(right, normal);
modelMatrix[0][0] = right.x;
modelMatrix[0][1] = right.y;
modelMatrix[0][2] = right.z;
modelMatrix[0][3] = 0.0f;
modelMatrix[1][0] = zAxis.x;
modelMatrix[1][1] = zAxis.y;
modelMatrix[1][2] = zAxis.z;
modelMatrix[1][3] = 0.0f;
modelMatrix[2][0] = normal.x;
modelMatrix[2][1] = normal.y;
modelMatrix[2][2] = normal.z;
modelMatrix[2][3] = 0.0f;
modelMatrix[3][0] = pos.x;
modelMatrix[3][1] = pos.y;
modelMatrix[3][2] = pos.z;
modelMatrix[3][3] = 1.0f;
glm::mat4 tranformationMatrix = modelMatrix * glm::scale(Transform::AbsoluteScale(entity));
glm::vec4 tmp = tranformationMatrix * glm::vec4(glm::vec3(0.5, 0.5, 0), 1.0f);
glm::vec2 projectedTopRight = m_Camera->WorldToScreen(glm::vec3(tmp), m_Renderer->GetViewportSize());
tmp = tranformationMatrix * glm::vec4(glm::vec3(-0.5, -0.5, 0), 1.0f);
glm::vec2 projectedBottomLeft = m_Camera->WorldToScreen(glm::vec3(tmp), m_Renderer->GetViewportSize());
float diag = glm::length(projectedBottomLeft - projectedTopRight);
if (diag < minScale) {
tranformationMatrix = tranformationMatrix * glm::scale(glm::vec3(minScale / diag, minScale / diag, minScale / diag));
}
modelMatrix = tranformationMatrix;
}
else {
modelMatrix = Transform::ModelMatrix(entity.ID, world);
}
std::string diffuseResource = cSprite["DiffuseTexture"];
std::string glowResource = cSprite["GlowMap"];
bool depthSorted = cSprite["DepthSort"];
@@ -67,11 +162,7 @@ void RenderSystem::fillSprites(std::list<std::shared_ptr<RenderJob>>& jobs, Worl
fillColor = (glm::vec4)fillComponent["Color"];
}
glm::mat4 modelMatrix = Transform::ModelMatrix(entity.ID, world);
//modelMatrix *= m_Camera->BillboardMatrix();
std::shared_ptr<SpriteJob> spriteJob = std::shared_ptr<SpriteJob>(new SpriteJob(cSprite, m_Camera, modelMatrix, world, fillColor, fillPercentage, depthSorted));
std::shared_ptr<SpriteJob> spriteJob = std::shared_ptr<SpriteJob>(new SpriteJob(cSprite, m_Camera, modelMatrix, world, fillColor, fillPercentage, depthSorted, isIndicator));
jobs.push_back(spriteJob);
}
@@ -93,7 +184,6 @@ bool RenderSystem::isEntityVisible(EntityWrapper& entity)
) {
return false;
}
return true;
}
+29 -8
View File
@@ -108,7 +108,15 @@ void Renderer::Update(double dt)
void Renderer::Draw(RenderFrame& frame)
{
ImGui::Combo("Draw textures", &m_DebugTextureToDraw, "Final\0Scene\0Bloom\0SceneLowRes\0BloomLowRes\0Gaussian\0Picking");
ImGui::Combo("Draw textures", &m_DebugTextureToDraw, "Final\0Scene\0Bloom\0SceneLowRes\0BloomLowRes\0Gaussian\0Picking\0Ambient Occlusion");
ImGui::SliderFloat("SSAO sample radius", &m_SSAO_Radius, 0.01f, 5.0f);
ImGui::SliderFloat("SSAO bias", &m_SSAO_Bias, 0.0f, 0.1f);
ImGui::SliderFloat("SSAO contrast", &m_SSAO_Contrast, 0.0f, 10.0f);
ImGui::SliderFloat("SSAO IntensityScale", &m_SSAO_IntensityScale, 0.0f, 10.0f);
ImGui::SliderInt("SSAO Number of Samples", &m_SSAO_NumOfSamples, 2, 100);
ImGui::SliderInt("SSAO Number of Turns", &m_SSAO_NumOfTurns, 0, 50);
m_SSAOPass->Setting(m_SSAO_Radius, m_SSAO_Bias, m_SSAO_Contrast, m_SSAO_IntensityScale, m_SSAO_NumOfSamples, m_SSAO_NumOfTurns);
//clear buffer 0
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
@@ -119,15 +127,21 @@ void Renderer::Draw(RenderFrame& frame)
m_DrawFinalPass->ClearBuffer();
m_DrawBloomPass->ClearBuffer();
PerformanceTimer::StopTimer("Renderer-ClearBuffers");
for (auto scene : frame.RenderScenes) {
PerformanceTimer::StartTimer("Renderer-Depth");
m_PickingPass->Draw(*scene);
GLERROR("Drawing pickingpass");
PerformanceTimer::StopTimer("Renderer-Depth");
}
PerformanceTimer::StartTimer("AO generation");
m_SSAOPass->Draw(m_PickingPass->DepthBuffer(), frame.RenderScenes.front()->Camera);
GLuint ao = m_SSAOPass->SSAOTexture();
PerformanceTimer::StopTimer("AO generation");
for (auto scene : frame.RenderScenes){
PerformanceTimer::StartTimer("Renderer-Depth");
PerformanceTimer::StartTimer("Renderer-Drawing PickingPass");
SortRenderJobsByDepth(*scene);
GLERROR("SortByDepth");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Drawing PickingPass");
m_PickingPass->Draw(*scene);
GLERROR("Drawing pickingpass");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Generate Frustrums");
m_LightCullingPass->GenerateNewFrustum(*scene);
GLERROR("Generate frustums");
@@ -137,8 +151,8 @@ void Renderer::Draw(RenderFrame& frame)
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Light Culling");
m_LightCullingPass->CullLights(*scene);
GLERROR("LightCulling");
m_DrawFinalPass->Draw(*scene, ao);
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Draw Geometry+Light");
m_DrawFinalPass->Draw(*scene);
GLERROR("Draw Geometry+Light");
//m_DrawScenePass->Draw(*scene);
@@ -147,14 +161,17 @@ void Renderer::Draw(RenderFrame& frame)
GLERROR("Draw Text");
PerformanceTimer::StopTimer("Renderer-Draw Text");
}
PerformanceTimer::StartTimer("Renderer-Draw Bloom");
m_DrawBloomPass->Draw(m_DrawFinalPass->BloomTexture());
PerformanceTimer::StopTimer("Renderer-Draw Bloom");
if (m_DebugTextureToDraw == 0) {
PerformanceTimer::StartTimer("Renderer-Color Correction Pass");
m_DrawColorCorrectionPass->Draw(m_DrawFinalPass->SceneTexture(), m_DrawBloomPass->GaussianTexture(), m_DrawFinalPass->SceneTextureLowRes(), m_DrawFinalPass->BloomTextureLowRes(), frame.Gamma, frame.Exposure);
PerformanceTimer::StopTimer("Renderer-Color Correction Pass");
}
PerformanceTimer::StartTimer("Renderer-Misc Debug Draws");
if (m_DebugTextureToDraw == 1) {
m_DrawScreenQuadPass->Draw(m_DrawFinalPass->SceneTexture());
@@ -174,7 +191,10 @@ void Renderer::Draw(RenderFrame& frame)
if (m_DebugTextureToDraw == 6) {
m_DrawScreenQuadPass->Draw(m_PickingPass->PickingTexture());
}
PerformanceTimer::StopTimer("Renderer-Misc Debug Draws");
if (m_DebugTextureToDraw == 7) {
m_DrawScreenQuadPass->Draw(m_SSAOPass->SSAOTexture());
}
PerformanceTimer::StopTimer("Renderer-Misc Debug Draws");
PerformanceTimer::StartTimer("Renderer-ImGuiRenderPass");
m_ImGuiRenderPass->Draw();
@@ -223,4 +243,5 @@ void Renderer::InitializeRenderPasses()
m_DrawScreenQuadPass = new DrawScreenQuadPass(this);
m_DrawBloomPass = new DrawBloomPass(this);
m_DrawColorCorrectionPass = new DrawColorCorrectionPass(this);
m_SSAOPass = new SSAOPass(this);
}
+141
View File
@@ -0,0 +1,141 @@
#include "Rendering/SSAOPass.h"
SSAOPass::SSAOPass(IRenderer* renderer)
{
m_Renderer = renderer;
m_ScreenQuad = ResourceManager::Load<Model>("Models/Core/ScreenQuad.mesh");
InitializeBuffer();
InitializeShaderProgram();
Setting(0.1f, 0.012f, 1.0f, 1.0f, 13, 7);
m_DrawBloomPass = new DrawBloomPass(renderer);
}
void SSAOPass::InitializeShaderProgram()
{
m_SSAOProgram = ResourceManager::Load<ShaderProgram>("##SSAOProgram");
m_SSAOProgram->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/SSAO.vert.glsl")));
m_SSAOProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/SSAO.frag.glsl")));
m_SSAOProgram->Compile();
m_SSAOProgram->Link();
m_SSAOViewSpaceZProgram = ResourceManager::Load<ShaderProgram>("##SSAOViewSpaceZProgram");
m_SSAOViewSpaceZProgram->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/SSAO.vert.glsl")));
m_SSAOViewSpaceZProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/SSAOViewSpaceZ.frag.glsl")));
m_SSAOViewSpaceZProgram->Compile();
m_SSAOViewSpaceZProgram->Link();
}
void SSAOPass::InitializeBuffer()
{
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);
m_SSAOFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOTexture, GL_COLOR_ATTACHMENT0)));
m_SSAOFramBuffer.Generate();
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);
m_SSAOViewSpaceZFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOViewSpaceZTexture, GL_COLOR_ATTACHMENT0)));
m_SSAOViewSpaceZFramBuffer.Generate();
}
void SSAOPass::ClearBuffer()
{
m_SSAOFramBuffer.Bind();
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
m_SSAOFramBuffer.Unbind();
m_SSAOViewSpaceZFramBuffer.Bind();
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
m_SSAOViewSpaceZFramBuffer.Unbind();
}
void SSAOPass::Setting(float radius, float bias, float contrast, float intensityScale, int numOfSamples, int NumOfTurns) {
m_Radius = radius;
m_Bias = bias;
m_Contrast = contrast;
m_IntensityScale = intensityScale;
m_NumOfSamples = numOfSamples;
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)
{
SSAOPassState state;
GLuint viewSpaceZPShaderHandle = m_SSAOViewSpaceZProgram->GetHandle();
GLuint SSAOShaderHandle = m_SSAOProgram->GetHandle();
m_SSAOViewSpaceZFramBuffer.Bind();
m_SSAOViewSpaceZProgram->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, depthBuffer);
glm::vec3 clipInfo = glm::vec3(
(camera->NearClip() * camera->FarClip()),
(camera->NearClip() - camera->FarClip()),
(camera->FarClip())
);
/*glm::vec3 clipInfo = glm::vec3(
(camera->NearClip()),
(-1.0f),
(+1.0f)
);*/
glUniform3fv(glGetUniformLocation(viewSpaceZPShaderHandle, "ClipInfo"), 1, glm::value_ptr(clipInfo));
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
glm::vec4 projInfo = glm::vec4(
((1.0 - camera->ProjectionMatrix()[0][2]) / camera->ProjectionMatrix()[0][0]),
(-2.0 / (m_Renderer->GetViewportSize().Width * camera->ProjectionMatrix()[0][0])),
((1.0 + camera->ProjectionMatrix()[1][2]) / camera->ProjectionMatrix()[1][1]),
(-2.0 / (m_Renderer->GetViewportSize().Height * camera->ProjectionMatrix()[1][1]))
);
m_SSAOFramBuffer.Bind();
m_SSAOProgram->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_SSAOViewSpaceZTexture);
// 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, "uRadius"), m_Radius);
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uBias"), m_Bias);
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uContrast"), m_Contrast);
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uIntensityScale"), m_IntensityScale);
glUniform1i(glGetUniformLocation(SSAOShaderHandle, "uNumOfSamples"), m_NumOfSamples);
glUniform1i(glGetUniformLocation(SSAOShaderHandle, "uNumOfTurns"), m_NumOfTurns);;
glUniform4fv(glGetUniformLocation(SSAOShaderHandle, "uProjInfo"), 1, glm::value_ptr(projInfo));
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
m_DrawBloomPass->ClearBuffer();
m_DrawBloomPass->Draw(m_SSAOTexture);
}
void ComputeAO(GLuint depthBuffer, Camera* camera) {
}
+16
View File
@@ -0,0 +1,16 @@
#include "Rendering/SSAOPassState.h"
SSAOPassState::SSAOPassState()
{
//BindFramebuffer(0);
Disable(GL_BLEND);
Disable(GL_DEPTH_TEST);
Disable(GL_CULL_FACE);
}
SSAOPassState::~SSAOPassState()
{
}
+1 -2
View File
@@ -98,8 +98,7 @@ void ShaderProgram::AddShader(std::shared_ptr<Shader> shader)
void ShaderProgram::Compile()
{
if (m_ShaderProgramHandle == 0)
{
if (m_ShaderProgramHandle == 0) {
m_ShaderProgramHandle = glCreateProgram();
}