NBEngine/engine/NBGraphics/Buffers.hpp
2026-08-20 08:12:55 -05:00

218 lines
5.6 KiB
C++

#pragma once
#ifndef _NB_BUFFER
#define _NB_BUFFER
#include "GLLoad.hpp"
#include <string>
#include <NBCore/Errors.hpp>
#include <NBCore/Logger.hpp>
#include <NBCore/Utils.hpp>
#include "OGLObjects.hpp"
namespace nb {
extern const std::unordered_map<GLenum, std::string> BufferTypes;
template<GLenum N>
struct GLSLEnum;
template<typename T>
struct GLSLType;
#define GLSLTypeTraits(type_, size_, value_) \
template<>\
struct GLSLEnum<value_> {\
using type = type_;\
static constexpr size_t size = size_;\
static constexpr GLenum value=value_;\
};\
template<>\
struct GLSLType<type_> {\
using type = type_;\
static constexpr size_t size = size_;\
static constexpr GLenum value=value_;\
};
#define GLSLTypeEquivalence(original, newtype) \
template<>\
struct GLSLType<newtype> : public GLSLType<original> {};
GLSLTypeTraits(uint8_t, 1, GL_UNSIGNED_BYTE);
GLSLTypeTraits(uint16_t, 2, GL_UNSIGNED_SHORT);
GLSLTypeTraits(uint32_t, 4, GL_UNSIGNED_INT);
GLSLTypeTraits(int8_t, 1, GL_BYTE);
GLSLTypeTraits(int16_t, 2, GL_SHORT);
GLSLTypeTraits(int32_t, 4, GL_INT);
GLSLTypeTraits(float, 4, GL_FLOAT);
GLSLTypeTraits(double, 8, GL_DOUBLE);
class BufferError : public Error<BufferError> {
protected:
using Base = Error<BufferError>;
public:
using Base::Base;
enum Codes : unsigned int {
UNDEFINED,
DATA_OVERFLOW,
DATA_ERROR
};
static const std::string type;
static const ErrorCodeMap ErrorMessages;
};
class Buffer : public OpenGLObject {
protected:
using Codes = BufferError::Codes;
using OpenGLObject::_id;
GLenum _usage = GL_STATIC_DRAW;
size_t _size;
Buffer(GLenum target) : Target(target) {}
virtual GLuint declare() override {
if (!_id) {
glGenBuffers(1, &_id);
}
bind();
return _id;
}
virtual void remove() override {
if (_id) {
unbind();
glDeleteBuffers(1, &_id);
_id = 0;
}
}
public:
const GLenum Target;
using OpenGLObject::OpenGLObject;
Buffer(Buffer&& other);
Buffer& operator=(Buffer&& rhs);
virtual void bind() const override {
if (_id) {
glBindBuffer(Target, _id);
} else {
THROW(OGLError(
OGLError::Codes::INVALID_OBJECT,
"w/ BufferType " + BufferTypes.at(Target)
));
}
}
virtual void unbind() const override { glBindBuffer(Target, 0); }
GLenum usage() const;
size_t size() const;
ByteVector data() const;
void data(const ByteVector& data, GLenum usage=GL_STATIC_DRAW);
void data(const void* data, size_t size, GLenum usage=GL_STATIC_DRAW);
void subdata(const void* data, size_t size, GLintptr offset=0);
void subdata(const ByteVector& data_, GLintptr offset=0);
// virtual void clear() const { glClearBufferData(Target, ) }
};
/* template <typename BufferType>
class ImmutableBuffer : public virtual Buffer {
public:
ImmutableBuffer() = default;
ImmutableBuffer(
size_t size_,
GLenum usage_ = GL_STATIC_DRAW,
GLbitfield flags_=0x0
) : size(size_), Base::usage(usage_) {
glBufferStorage(Target, size, nullptr, flags_);
}
std::weak_ptr<void> map(GLbitfield access_) {
if (_map && _mapAccess != access_) { unmap(); }
_mapAccess = access_;
if (!_map) {
bind();
glMapBuffer(Target, _mapAccess);
}
return _map;
}
void unmap() {
bind();
glUnmapBuffer(Target);
_map.reset();
}
const size_t size;
protected:
std::shared_ptr<void> _map = nullptr;
GLbitfield _mapAccess = 0;
}; */
class ArrayBuffer : public Buffer {
public:
template<typename T>
ArrayBuffer(const std::vector<T>& data, GLenum usage=GL_STATIC_DRAW)
: Buffer(GL_ARRAY_BUFFER) {
Buffer::data(vectorToBytes(data), usage);
}
};
class ElementBuffer : protected Buffer {
protected:
GLenum _glslType;
size_t _typeSize;
public:
using Buffer::Target;
using Buffer::bind;
using Buffer::usage;
using Buffer::unbind;
ElementBuffer();
template<typename T>
ElementBuffer(const T* const data_ptr, size_t size, GLenum usage=GL_STATIC_DRAW)
: Buffer(GL_ELEMENT_ARRAY_BUFFER) {
data(data_ptr, size, usage);
}
template<typename T>
ElementBuffer(const std::vector<T>& data_, GLenum usage_=GL_STATIC_DRAW)
: ElementBuffer(data_.data(), data_.size(), usage_) {}
size_t size() const;
size_t typeSize() const;
ByteVector data() const;
GLenum glslType() const;
template<typename T>
void data(const T* data_, size_t size_, GLenum usage_=GL_STATIC_DRAW) {
declare();
using TypeInfo = GLSLType<T>;
_typeSize = TypeInfo::size;
Buffer::data(data_, size_*_typeSize, usage_);
_glslType = TypeInfo::value;
}
template<typename T>
void data(const std::vector<T>& data_, GLenum usage_=GL_STATIC_DRAW) {
data(data_.data(), data_.size(), usage_);
}
template<typename T>
void subdata(const T* data, size_t size, size_t offset) {
using TypeInfo = GLSLType<T>;
if ( _glslType != TypeInfo::value ) {
THROW( BufferError(
Codes::DATA_ERROR,
"Check element buffer data types"
) );
}
Buffer::subdata(data, size*_typeSize, offset);
}
template<typename T>
void subdata(const std::vector<T>& data, size_t offset=0) {
subdata(data.data(), data.size(), offset);
}
};
} // namespace NB
#endif // _NB_BUFFER