336 lines
9.7 KiB
C++
Executable File
336 lines
9.7 KiB
C++
Executable File
#ifndef __gl_h_
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#include <glad/glad.h>
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#endif
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#include "hpr/window_system/window_system.hpp"
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#include "hpr/window_system/glfw/window_system.hpp"
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#include "hpr/window_system/glfw/window.hpp"
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#include "hpr/gpu.hpp"
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#include "hpr/math.hpp"
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#include "hpr/mesh.hpp"
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#include <imgui.h>
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#include <imgui_impl_glfw.h>
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#include <imgui_impl_opengl3.h>
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#include <iostream>
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void APIENTRY glDebugOutput(
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GLenum source,
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GLenum type,
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unsigned int id,
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GLenum severity,
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GLsizei length,
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const char* message,
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const void* userParam
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)
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{
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// ignore non-significant error/warning codes
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if (id == 131169 || id == 131185 || id == 131218 || id == 131204)
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return;
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std::cout << "Debug::GL[" << id << "]: " << message << std::endl;
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switch (source)
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{
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case GL_DEBUG_SOURCE_API:
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std::cout << "Source: API";
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break;
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case GL_DEBUG_SOURCE_WINDOW_SYSTEM:
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std::cout << "Source: Window System";
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break;
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case GL_DEBUG_SOURCE_SHADER_COMPILER:
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std::cout << "Source: Shader Compiler";
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break;
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case GL_DEBUG_SOURCE_THIRD_PARTY:
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std::cout << "Source: Third Party";
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break;
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case GL_DEBUG_SOURCE_APPLICATION:
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std::cout << "Source: Application";
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break;
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case GL_DEBUG_SOURCE_OTHER:
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std::cout << "Source: Other";
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break;
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}
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std::cout << std::endl;
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switch (type)
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{
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case GL_DEBUG_TYPE_ERROR:
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std::cout << "Type: Error";
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break;
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case GL_DEBUG_TYPE_DEPRECATED_BEHAVIOR:
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std::cout << "Type: Deprecated Behaviour";
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break;
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case GL_DEBUG_TYPE_UNDEFINED_BEHAVIOR:
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std::cout << "Type: Undefined Behaviour";
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break;
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case GL_DEBUG_TYPE_PORTABILITY:
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std::cout << "Type: Portability";
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break;
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case GL_DEBUG_TYPE_PERFORMANCE:
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std::cout << "Type: Performance";
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break;
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case GL_DEBUG_TYPE_MARKER:
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std::cout << "Type: Marker";
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break;
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case GL_DEBUG_TYPE_PUSH_GROUP:
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std::cout << "Type: Push Group";
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break;
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case GL_DEBUG_TYPE_POP_GROUP:
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std::cout << "Type: Pop Group";
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break;
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case GL_DEBUG_TYPE_OTHER:
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std::cout << "Type: Other";
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break;
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}
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std::cout << std::endl;
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switch (severity)
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{
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case GL_DEBUG_SEVERITY_HIGH:
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std::cout << "Severity: high";
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break;
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case GL_DEBUG_SEVERITY_MEDIUM:
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std::cout << "Severity: medium";
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break;
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case GL_DEBUG_SEVERITY_LOW:
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std::cout << "Severity: low";
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break;
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case GL_DEBUG_SEVERITY_NOTIFICATION:
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std::cout << "Severity: notification";
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break;
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}
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std::cout << std::endl;
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}
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void debug()
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{
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GLint flags;
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glGetIntegerv(GL_CONTEXT_FLAGS, &flags);
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if (flags & GL_CONTEXT_FLAG_DEBUG_BIT)
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{
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glEnable(GL_DEBUG_OUTPUT);
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glEnable(GL_DEBUG_OUTPUT_SYNCHRONOUS);
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glDebugMessageCallback(glDebugOutput, nullptr);
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glDebugMessageControl(GL_DONT_CARE, GL_DONT_CARE, GL_DONT_CARE, 0, nullptr, GL_TRUE);
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}
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}
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struct ConstantBuffer {
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hpr::mat4 World;
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hpr::mat4 View;
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hpr::mat4 Projection;
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hpr::vec4 Eye;
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float Color[4];
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float Offset[4];
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float Scale;
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int AllWhiteLight;
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int Pad[2];
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};
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struct ObjectBuffer {
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hpr::mat4 ObjectTransform;
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hpr::vec4 DiffuseColor;
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hpr::vec4 FalloffColor;
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float FalloffPower;
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int UseDiffuseMap;
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int UseSpecularMap;
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int UseNormalMap;
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int UseFalloff;
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int UseAlpha;
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int UseReflectMap;
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float Specular;
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float SpecularPower;
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float ReflectPower;
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float Ambient;
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int Lit;
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int LightExclusion[3];
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int Pad[1];
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};
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int main()
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{
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using namespace hpr;
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gpu::WindowSystem* ws = gpu::WindowSystem::create(gpu::WindowContext::Provider::GLFW);
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gpu::Window* w = ws->newWindow();
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w->init("test", gpu::Window::Style::Windowed, 0, 0, 600, 400, nullptr, nullptr);
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if (gpu::opengl::Device::loadLoader())
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std::cerr << "Load gl loader error" << std::endl;
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//debug();
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gpu::Device* device;
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gpu::Device::create(&device, gpu::Device::DeviceAPI::OpenGL);
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device->initialize();
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gpu::Shader* vertexShader;
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device->createVertexShader(&vertexShader, "shaders/test.vert.glsl", "VS");
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gpu::Shader* fragmentShader;
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device->createFragmentShader(&fragmentShader, "shaders/test.frag.glsl", "FS");
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gpu::ShaderProgram* shaderProgram;
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device->createShaderProgram(&shaderProgram);
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device->attachShader(shaderProgram, vertexShader);
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device->attachShader(shaderProgram, fragmentShader);
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device->linkProgram(shaderProgram);
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mesh::Mesh mesh;
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mesh.addVertex(-1, 1, 0.5);
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mesh.addVertex(1, 1, 0.5);
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mesh.addVertex(1, -1, 0.5);
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mesh.addVertex(-1, -1, 0.5);
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mesh.addEdge(mesh.vertex(0), mesh.vertex(1));
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mesh.addEdge(mesh.vertex(1), mesh.vertex(2));
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mesh.addEdge(mesh.vertex(2), mesh.vertex(3));
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mesh.addEdge(mesh.vertex(3), mesh.vertex(0));
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mesh.addEdge(mesh.vertex(0), mesh.vertex(2));
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mesh.addFace(mesh.edge(0), mesh.edge(1), mesh.edge(4));
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mesh.addFace(mesh.edge(2), mesh.edge(3), mesh.edge(4));
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darray<float> data (3 * 6, 0.f);
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auto arr = mesh.face(0)->vertices() + mesh.face(1)->vertices();
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for (auto n = 0; n < arr.size(); ++n)
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for (auto k = 0; k < 3; ++k)
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data[k + 3 * n] = *(arr[n]->data() + k);
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darray<unsigned short> indices (6, 0);
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indices[0] = 0;
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indices[1] = 1;
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indices[2] = 2;
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indices[3] = 2;
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indices[4] = 3;
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indices[5] = 0;
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//for (auto n = 0; n < arr.size(); ++n)
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// indices[n] = mesh.indexOf(arr[n]);
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std::cout << "Data: ";
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for (auto p : data)
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std::cout << p << " ";
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std::cout << std::endl;
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std::cout << "Indices: ";
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for (auto p : indices)
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std::cout << p << " ";
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std::cout << std::endl;
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darray<float> vertices {
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0.5f, 0.5f, 0.0f, // top right
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0.5f, -0.5f, 0.0f, // bottom right
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-0.5f, -0.5f, 0.0f, // bottom left
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-0.5f, 0.5f, 0.0f // top left
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};
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darray<unsigned int> indices2 { // note that we start from 0!
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0, 1, 3, // first Triangle
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1, 2, 3 // second Triangle
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};
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gpu::Buffer* vertexBuffer;
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device->createVertexBuffer(&vertexBuffer, sizeof(float) * vertices.size(), (char*)vertices.data());
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gpu::Buffer* indexBuffer;
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device->createIndexBuffer(&indexBuffer, sizeof(unsigned int) * indices2.size(), (char*)indices2.data());
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gpu::Buffer* constantBuffer;
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device->createUniformBuffer(&constantBuffer, sizeof(ConstantBuffer), nullptr);
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gpu::Buffer* objectBuffer;
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device->createUniformBuffer(&objectBuffer, sizeof(ObjectBuffer), nullptr);
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ConstantBuffer constantData;
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constantData.Color[0] = 1;
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constantData.Color[1] = 0;
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constantData.Color[2] = 0;
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constantData.Color[3] = 1;
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constantData.Offset[0] = 0;
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constantData.Offset[1] = 0;
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constantData.Offset[2] = 0;
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constantData.Offset[3] = 1;
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constantData.Scale = 1;
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ObjectBuffer objectData;
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objectData.Lit = 1;
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objectData.DiffuseColor = vec4(1, 1, 1, 1);
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objectData.Specular = 0.25;
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objectData.SpecularPower = 1;
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objectData.UseDiffuseMap = 0;
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objectData.UseSpecularMap = 0;
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objectData.UseNormalMap = 0;
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objectData.UseFalloff = 0;
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objectData.FalloffColor = vec4(1, 1, 1, 1);
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objectData.FalloffPower = 1;
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objectData.Ambient = 1;
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objectData.UseAlpha = 0;
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objectData.UseReflectMap = 0;
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device->useShaderProgram(shaderProgram);
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device->useUniformBuffer(constantBuffer, 0);
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device->useUniformBuffer(objectBuffer, 1);
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IMGUI_CHECKVERSION();
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ImGui::CreateContext();
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ImGuiIO& io = ImGui::GetIO();
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io.ConfigFlags |= ImGuiConfigFlags_NavEnableKeyboard;
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io.ConfigFlags |= ImGuiConfigFlags_DockingEnable;
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ImGui::StyleColorsDark();
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ImGui_ImplGlfw_InitForOpenGL(dynamic_cast<gpu::glfw::Window*>(w)->instance(), true);
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ImGui_ImplOpenGL3_Init("#version 420");
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while (w->isOpen())
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{
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glViewport(0, 0, 600, 400);
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glEnable(GL_DEPTH_TEST);
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glClearColor(0.2f, 0.2f, 0.2f, 1.0f);
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glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
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device->useShaderProgram(shaderProgram);
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device->useVertexBuffer(vertexBuffer, 0, 0);
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device->useIndexBuffer(indexBuffer, 0);
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//dynamic_cast<gpu::opengl::Device*>(device)->Draw(2, 0, 0);
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//glDrawArrays(GL_TRIANGLES, 0, 6);
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glDrawElements(GL_TRIANGLES, 6, GL_UNSIGNED_INT, 0);
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ImGui_ImplOpenGL3_NewFrame();
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ImGui_ImplGlfw_NewFrame();
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ImGui::NewFrame();
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bool yes = true;
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ImGui::ShowDemoWindow(&yes);
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ImGui::Begin("Hello, world!");
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{
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if (ImGui::Button("Exit"))
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w->state(gpu::Window::State::Closed);
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ImGui::End();
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}
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ImGui::Render();
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ImGui_ImplOpenGL3_RenderDrawData(ImGui::GetDrawData());
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dynamic_cast<gpu::glfw::Window*>(w)->swapBuffers();
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dynamic_cast<gpu::glfw::Window*>(w)->pollEvents();
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}
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ImGui_ImplOpenGL3_Shutdown();
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ImGui_ImplGlfw_Shutdown();
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ImGui::DestroyContext();
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device->destroyShaderProgram(shaderProgram, false);
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device->destroyShader(vertexShader);
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device->destroyShader(fragmentShader);
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device->destroyBuffer(vertexBuffer);
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device->destroyBuffer(indexBuffer);
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device->destroyBuffer(constantBuffer);
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device->destroyBuffer(objectBuffer);
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delete dynamic_cast<gpu::opengl::Device*>(device);
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ws->destroyWindow(w);
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gpu::WindowSystem::destroy(ws);
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return 0;
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}
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