mirror of
https://github.com/RetroDECK/Supermodel.git
synced 2024-11-30 01:25:49 +00:00
344 lines
9.5 KiB
C++
344 lines
9.5 KiB
C++
#include "R3DFrameBuffers.h"
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#include "Mat4.h"
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#define countof(a) (sizeof(a)/sizeof(*(a)))
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namespace New3D {
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R3DFrameBuffers::R3DFrameBuffers()
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{
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m_frameBufferID = 0;
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m_renderBufferID = 0;
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m_frameBufferIDCopy = 0;
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m_renderBufferIDCopy = 0;
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m_width = 0;
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m_height = 0;
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for (auto &i : m_texIDs) {
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i = 0;
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}
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m_lastLayer = Layer::none;
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AllocShaderTrans();
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AllocShaderBase();
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FBVertex vertices[4];
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vertices[0].Set(-1,-1, 0, 0);
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vertices[1].Set(-1, 1, 0, 1);
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vertices[2].Set( 1,-1, 1, 0);
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vertices[3].Set( 1, 1, 1, 1);
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m_vbo.Create(GL_ARRAY_BUFFER, GL_STATIC_DRAW, sizeof(vertices), vertices);
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}
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R3DFrameBuffers::~R3DFrameBuffers()
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{
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DestroyFBO();
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m_shaderTrans.UnloadShaders();
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m_vbo.Destroy();
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}
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bool R3DFrameBuffers::CreateFBO(int width, int height)
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{
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m_width = width;
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m_height = height;
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m_texIDs[0] = CreateTexture(width, height); // colour buffer
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m_texIDs[1] = CreateTexture(width, height); // trans layer1
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m_texIDs[2] = CreateTexture(width, height); // trans layer2
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glGenFramebuffers(1, &m_frameBufferID);
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glBindFramebuffer(GL_FRAMEBUFFER, m_frameBufferID);
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// colour attachments
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glFramebufferTexture2D(GL_FRAMEBUFFER, GL_COLOR_ATTACHMENT0, GL_TEXTURE_2D, m_texIDs[0], 0);
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glFramebufferTexture2D(GL_FRAMEBUFFER, GL_COLOR_ATTACHMENT1, GL_TEXTURE_2D, m_texIDs[1], 0);
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glFramebufferTexture2D(GL_FRAMEBUFFER, GL_COLOR_ATTACHMENT2, GL_TEXTURE_2D, m_texIDs[2], 0);
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// depth/stencil attachment
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glGenRenderbuffers(1, &m_renderBufferID);
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glBindRenderbuffer(GL_RENDERBUFFER, m_renderBufferID);
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glRenderbufferStorage(GL_RENDERBUFFER, GL_DEPTH24_STENCIL8, width, height);
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glFramebufferRenderbuffer(GL_FRAMEBUFFER, GL_DEPTH_ATTACHMENT, GL_RENDERBUFFER, m_renderBufferID);
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glFramebufferRenderbuffer(GL_FRAMEBUFFER, GL_STENCIL_ATTACHMENT, GL_RENDERBUFFER, m_renderBufferID);
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// check setup was successful
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auto fboStatus = glCheckFramebufferStatus(GL_FRAMEBUFFER);
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glBindFramebuffer(GL_FRAMEBUFFER, 0); //created R3DFrameBuffers now disable it
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CreateFBODepthCopy(width, height);
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return (fboStatus == GL_FRAMEBUFFER_COMPLETE);
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}
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bool R3DFrameBuffers::CreateFBODepthCopy(int width, int height)
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{
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glGenFramebuffers(1, &m_frameBufferIDCopy);
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glBindFramebuffer(GL_FRAMEBUFFER, m_frameBufferIDCopy);
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glGenRenderbuffers(1, &m_renderBufferIDCopy);
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glBindRenderbuffer(GL_RENDERBUFFER, m_renderBufferIDCopy);
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glRenderbufferStorage(GL_RENDERBUFFER, GL_DEPTH24_STENCIL8, width, height);
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glFramebufferRenderbuffer(GL_FRAMEBUFFER, GL_DEPTH_ATTACHMENT, GL_RENDERBUFFER, m_renderBufferIDCopy);
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glFramebufferRenderbuffer(GL_FRAMEBUFFER, GL_STENCIL_ATTACHMENT, GL_RENDERBUFFER, m_renderBufferIDCopy);
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glBindFramebuffer(GL_FRAMEBUFFER, 0);
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// check setup was successful
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auto fboStatus = glCheckFramebufferStatus(GL_FRAMEBUFFER);
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return (fboStatus == GL_FRAMEBUFFER_COMPLETE);
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}
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void R3DFrameBuffers::StoreDepth()
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{
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glBindFramebuffer(GL_READ_FRAMEBUFFER, m_frameBufferID);
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glBindFramebuffer(GL_DRAW_FRAMEBUFFER, m_frameBufferIDCopy);
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glBlitFramebuffer(0, 0, m_width, m_height, 0, 0, m_width, m_height, GL_DEPTH_BUFFER_BIT | GL_STENCIL_BUFFER_BIT, GL_NEAREST);
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}
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void R3DFrameBuffers::RestoreDepth()
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{
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glBindFramebuffer(GL_READ_FRAMEBUFFER, m_frameBufferIDCopy);
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glBindFramebuffer(GL_DRAW_FRAMEBUFFER, m_frameBufferID);
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glBlitFramebuffer(0, 0, m_width, m_height, 0, 0, m_width, m_height, GL_DEPTH_BUFFER_BIT | GL_STENCIL_BUFFER_BIT, GL_NEAREST);
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}
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void R3DFrameBuffers::DestroyFBO()
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{
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if (m_frameBufferID) {
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glBindFramebuffer(GL_FRAMEBUFFER, 0);
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glDeleteRenderbuffers(1, &m_renderBufferID);
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glDeleteFramebuffers(1, &m_frameBufferID);
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}
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if (m_frameBufferIDCopy) {
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glDeleteRenderbuffers(1, &m_renderBufferIDCopy);
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glDeleteFramebuffers(1, &m_frameBufferIDCopy);
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}
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for (auto &i : m_texIDs) {
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if (i) {
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glDeleteTextures(1, &i);
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i = 0;
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}
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}
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m_frameBufferID = 0;
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m_renderBufferID = 0;
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m_frameBufferIDCopy = 0;
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m_renderBufferIDCopy = 0;
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m_width = 0;
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m_height = 0;
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}
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GLuint R3DFrameBuffers::CreateTexture(int width, int height)
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{
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GLuint texId;
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glGenTextures(1, &texId);
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glBindTexture(GL_TEXTURE_2D, texId);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
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glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
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glTexImage2D(GL_TEXTURE_2D, 0, GL_RGBA8, width, height, 0, GL_RGBA, GL_UNSIGNED_BYTE, 0);
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return texId;
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}
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void R3DFrameBuffers::BindTexture(Layer layer)
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{
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glBindTexture(GL_TEXTURE_2D, m_texIDs[(int)layer]);
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}
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void R3DFrameBuffers::SetFBO(Layer layer)
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{
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if (m_lastLayer == layer) {
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return;
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}
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glBindFramebuffer(GL_FRAMEBUFFER, m_frameBufferID);
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GLenum buffers[] = { GL_COLOR_ATTACHMENT0 + (GLenum)layer };
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glDrawBuffers(countof(buffers), buffers);
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m_lastLayer = layer;
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}
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void R3DFrameBuffers::DisableFBO()
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{
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glBindFramebuffer(GL_FRAMEBUFFER, 0);
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glDrawBuffer(GL_BACK);
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m_lastLayer = Layer::none;
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}
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void R3DFrameBuffers::Clear(GLbitfield mask)
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{
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if (m_lastLayer != Layer::all) {
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glBindFramebuffer(GL_FRAMEBUFFER, m_frameBufferID); // bind frame buffer
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GLenum buffers[] = { GL_COLOR_ATTACHMENT0, GL_COLOR_ATTACHMENT1, GL_COLOR_ATTACHMENT2 };
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glDrawBuffers(countof(buffers), buffers);
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}
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glViewport(0, 0, m_width, m_height);
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glClear(mask);
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m_lastLayer = Layer::all;
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}
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void R3DFrameBuffers::AllocShaderBase()
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{
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const char *vertexShader = R"glsl(
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// inputs
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attribute vec3 inVertex;
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attribute vec2 inTexCoord;
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// outputs
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varying vec2 fsTexCoord;
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void main(void)
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{
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fsTexCoord = inTexCoord;
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gl_Position = vec4(inVertex,1.0);
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}
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)glsl";
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const char *fragmentShader = R"glsl(
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uniform sampler2D tex1; // base tex
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varying vec2 fsTexCoord;
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void main()
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{
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vec4 colBase = texture2D( tex1, fsTexCoord);
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if(colBase.a < 1.0) discard;
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gl_FragColor = colBase;
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}
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)glsl";
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m_shaderBase.LoadShaders(vertexShader, fragmentShader);
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m_shaderBase.uniformLoc[0] = m_shaderTrans.GetUniformLocation("tex1");
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m_shaderBase.attribLoc[0] = m_shaderTrans.GetAttributeLocation("inVertex");
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m_shaderBase.attribLoc[1] = m_shaderTrans.GetAttributeLocation("inTexCoord");
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}
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void R3DFrameBuffers::AllocShaderTrans()
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{
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const char *vertexShader = R"glsl(
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// inputs
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attribute vec3 inVertex;
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attribute vec2 inTexCoord;
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// outputs
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varying vec2 fsTexCoord;
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void main(void)
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{
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fsTexCoord = inTexCoord;
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gl_Position = vec4(inVertex,1.0);
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}
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)glsl";
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const char *fragmentShader = R"glsl(
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uniform sampler2D tex1; // trans layer 1
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uniform sampler2D tex2; // trans layer 2
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varying vec2 fsTexCoord;
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void main()
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{
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vec4 colTrans1 = texture2D( tex1, fsTexCoord);
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vec4 colTrans2 = texture2D( tex2, fsTexCoord);
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if(colTrans1.a+colTrans2.a > 0.0) {
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vec3 col1 = (colTrans1.rgb * colTrans1.a) / ( colTrans1.a + colTrans2.a); // this is my best guess at the blending between the layers
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vec3 col2 = (colTrans2.rgb * colTrans2.a) / ( colTrans1.a + colTrans2.a);
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colTrans1 = vec4(col1+col2,colTrans1.a+colTrans2.a);
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}
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gl_FragColor = colTrans1;
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}
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)glsl";
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m_shaderTrans.LoadShaders(vertexShader, fragmentShader);
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m_shaderTrans.uniformLoc[0] = m_shaderTrans.GetUniformLocation("tex1");
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m_shaderTrans.uniformLoc[1] = m_shaderTrans.GetUniformLocation("tex2");
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m_shaderTrans.attribLoc[0] = m_shaderTrans.GetAttributeLocation("inVertex");
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m_shaderTrans.attribLoc[1] = m_shaderTrans.GetAttributeLocation("inTexCoord");
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}
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void R3DFrameBuffers::Draw()
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{
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DisableFBO (); // make sure to draw on the back buffer
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glViewport (0, 0, m_width, m_height); // cover the entire screen
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glDisable (GL_DEPTH_TEST); // disable depth testing / writing
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glDisable (GL_CULL_FACE);
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for (int i = 0; i < countof(m_texIDs); i++) { // bind our textures to correct texture units
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glActiveTexture(GL_TEXTURE0 + i);
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glBindTexture(GL_TEXTURE_2D, m_texIDs[i]);
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}
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glActiveTexture (GL_TEXTURE0);
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m_vbo.Bind (true);
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DrawBaseLayer ();
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glBlendFunc (GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
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glEnable (GL_BLEND);
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DrawAlphaLayer ();
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glDisable (GL_BLEND);
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m_vbo.Bind (false);
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}
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void R3DFrameBuffers::DrawBaseLayer()
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{
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m_shaderBase.EnableShader();
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glUniform1i(m_shaderTrans.uniformLoc[0], 0);
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glEnableVertexAttribArray(0);
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glEnableVertexAttribArray(1);
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glVertexAttribPointer(m_shaderTrans.attribLoc[0], 3, GL_FLOAT, GL_FALSE, sizeof(FBVertex), (void*)offsetof(FBVertex, verts));
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glVertexAttribPointer(m_shaderTrans.attribLoc[1], 2, GL_FLOAT, GL_FALSE, sizeof(FBVertex), (void*)offsetof(FBVertex, texCoords));
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glDrawArrays(GL_TRIANGLE_STRIP, 0, 4);
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glDisableVertexAttribArray(0);
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glDisableVertexAttribArray(1);
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m_shaderBase.DisableShader();
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}
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void R3DFrameBuffers::DrawAlphaLayer()
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{
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m_shaderTrans.EnableShader();
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glUniform1i(m_shaderTrans.uniformLoc[0], 1); // tex unit 1
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glUniform1i(m_shaderTrans.uniformLoc[1], 2); // tex unit 2
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glEnableVertexAttribArray(0);
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glEnableVertexAttribArray(1);
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glVertexAttribPointer(m_shaderTrans.attribLoc[0], 3, GL_FLOAT, GL_FALSE, sizeof(FBVertex), (void*)offsetof(FBVertex, verts));
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glVertexAttribPointer(m_shaderTrans.attribLoc[1], 2, GL_FLOAT, GL_FALSE, sizeof(FBVertex), (void*)offsetof(FBVertex, texCoords));
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glDrawArrays(GL_TRIANGLE_STRIP, 0, 4);
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glDisableVertexAttribArray(0);
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glDisableVertexAttribArray(1);
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m_shaderTrans.DisableShader();
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}
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} |