194 lines
7.2 KiB
C++
194 lines
7.2 KiB
C++
#pragma once
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#include <chrono>
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#include <gl/glew.h>
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#include <gl/gl.h>
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#include <GLFW/glfw3.h>
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#include <glm/glm.hpp>
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#include "../event/event.h"
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#include <exception>
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#include <fstream>
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#include <memory>
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#include <stdexcept>
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#include <string>
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#include <iostream>
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#include <sstream>
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namespace simpleengine::gfx {
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class ShaderException : public std::runtime_error {
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public:
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explicit ShaderException(char const* const msg) : std::runtime_error(msg) {
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}
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};
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enum ShaderType {
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ST_Vertex = GL_VERTEX_SHADER,
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ST_Fragment = GL_FRAGMENT_SHADER,
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};
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class Shader {
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protected:
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Shader() {
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}
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public:
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std::shared_ptr<GLuint> program;
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GLuint shader;
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Shader(std::shared_ptr<GLuint> program);
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Shader(std::shared_ptr<GLuint> program, GLuint shader);
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static Shader from_source(const ShaderType& type, std::string& shader_source);
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static Shader from_source(std::shared_ptr<GLuint> program, const ShaderType& type, std::string& shader_source);
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/**
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* @brief Load a shader from a filepath.
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*
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* @param type The type of the shader.
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* @param shader_path The path of the shader source.
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*/
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static Shader from_filepath(const ShaderType& type, const std::string& shader_path);
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/**
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* @brief Load a shader from a filepath.
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*
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* @param program The shader program that this shader will be attached to.
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* @param type The type of the shader.
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* @param shader_path The path of shader source.
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*/
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static Shader from_filepath(std::shared_ptr<GLuint> program, const ShaderType& type, const std::string& shader_path);
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virtual ~Shader();
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/**
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* @brief Link the shader program and checks for errors.
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*
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*/
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void link();
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/**
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* @brief Delete the shader with glDeleteShader. Only do this after we've linked.
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*
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*/
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void delete_shader();
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/**
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* @brief Use the shader program.
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*
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*/
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void use() const;
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/**
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* @brief Un-use the shader program by using the id of "0".
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*
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*/
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static void unuse();
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/**
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* @brief Get a Uniform Float from the shader using a `location`.
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*
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* @param location The location of the uniform float.
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* @return GLfloat The value of the uniform float from the shader.
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*/
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GLfloat getUniformFloat(GLint location) const;
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/**
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* @brief Get a Uniform Float from the shader finding the location of the uniform using `uniform_name`.
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*
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* @param uniform_name The name of the uniform inside of the shader.
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* @return GLfloat The value of the uniform float from the shader.
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*/
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GLfloat getUniformFloat(const char* uniform_name) const;
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/**
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* @brief Get a Uniform integer from the shader using a `location`.
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*
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* @param location The location of the uniform integer.
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* @return GLint The value of the uniform integer from the shader.
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*/
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GLint getUniformInt(GLint location) const;
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/**
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* @brief Get a Uniform integer from the shader finding the location of the uniform using `uniform_name`.
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*
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* @param uniform_name The name of the uniform inside of the shader.
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* @return GLint The value of the uniform integer from the shader.
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*/
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GLint getUniformInt(const char* uniform_name) const;
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/**
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* @brief Get a Uniform unsigned integer from the shader using a `location`.
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*
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* @param location The location of the uniform unsigned integer.
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* @return GLuint The value of the uniform unsigned integer from the shader.
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*/
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GLuint getUniformUInt(GLint location) const;
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/**
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* @brief Get a Uniform unsigned integer from the shader finding the location of the uniform using `uniform_name`.
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*
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* @param uniform_name The name of the uniform inside of the shader.
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* @return GLuint The value of the uniform unsigned integer from the shader.
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*/
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GLuint getUniformUInt(const char* uniform_name) const;
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/**
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* @brief Get a Uniform double from the shader using a `location`.
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*
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* @param location The location of the uniform double.
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* @return GLdouble The value of the uniform double from the shader.
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*/
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GLdouble getUniformDouble(GLint location) const;
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/**
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* @brief Get a Uniform double from the shader finding the location of the uniform using `uniform_name`.
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*
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* @param uniform_name The name of the uniform inside of the shader.
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* @return GLdouble The value of the uniform double from the shader.
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*/
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GLdouble getUniformDouble(const char* uniform_name) const;
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void setUniformFloat(GLint location, GLfloat fl, bool bind_shader = true);
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void setUniformFloat(const char* uniform_name, GLfloat fl, bool bind_shader = true);
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void setUniformFloatVec2(GLint location, glm::vec2 vec, bool bind_shader = true);
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void setUniformFloatVec2(const char* uniform_name, glm::vec2 vec, bool bind_shader = true);
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void setUniformFloatVec3(GLint location, glm::vec3 vec, bool bind_shader = true);
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void setUniformFloatVec3(const char* uniform_name, glm::vec3 vec, bool bind_shader = true);
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void setUniformFloatVec4(GLint location, glm::vec4 vec, bool bind_shader = true);
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void setUniformFloatVec4(const char* uniform_name, glm::vec4 vec, bool bind_shader = true);
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void setUniformInt(GLint location, GLint i, bool bind_shader = true);
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void setUniformInt(const char* uniform_name, GLint i, bool bind_shader = true);
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void setUniformIntVec2(GLint location, glm::ivec2 vec, bool bind_shader = true);
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void setUniformIntVec2(const char* uniform_name, glm::ivec2 vec, bool bind_shader = true);
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void setUniformIntVec3(GLint location, glm::ivec3 vec, bool bind_shader = true);
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void setUniformIntVec3(const char* uniform_name, glm::ivec3 vec, bool bind_shader = true);
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void setUniformIntVec4(GLint location, glm::ivec4 vec, bool bind_shader = true);
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void setUniformIntVec4(const char* uniform_name, glm::ivec4 vec, bool bind_shader = true);
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void setUniformUInt(GLint location, GLuint ui, bool bind_shader = true);
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void setUniformUInt(const char* uniform_name, GLuint ui, bool bind_shader = true);
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void setUniformUIntVec2(GLint location, glm::uvec2 vec, bool bind_shader = true);
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void setUniformUIntVec2(const char* uniform_name, glm::uvec2 vec, bool bind_shader = true);
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void setUniformUIntVec3(GLint location, glm::uvec3 vec, bool bind_shader = true);
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void setUniformUIntVec3(const char* uniform_name, glm::uvec3 vec, bool bind_shader = true);
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void setUniformUIntVec4(GLint location, glm::uvec4 vec, bool bind_shader = true);
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void setUniformUIntVec4(const char* uniform_name, glm::uvec4 vec, bool bind_shader = true);
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};
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} |