2026-07-19 22:20:05 -05:00

216 lines
5.0 KiB
C++

#pragma once
#ifndef _NB_IMAGE
#define _NB_IMAGE
#include <cstring>
#include <NBCore/Errors.hpp>
namespace nb {
template<typename T>
struct Color {};
struct Red : Color<Red> {};
struct Green : Color<Green> {};
struct Blue : Color<Blue> {};
struct Alpha : Color<Alpha> {};
struct Depth;
struct Stencil;
template<typename... T>
struct PixelChannel;
template<typename T>
struct PixelChannel<T, Red> {
using type=T;
T value;
T& r=value;
};
template<typename T>
struct PixelChannel<T, Green> {
using type=T;
T value;
T& g=value;
};
template<typename T>
struct PixelChannel<T, Blue> {
using type=T;
T value;
T& b=value;
};
template<typename T>
struct PixelChannel<T, Alpha> {
using type=T;
T value;
T& a=value;
};
template<typename T>
struct PixelChannel<T, Depth> {
using type=T;
T value;
T& z=value;
};
template<>
struct PixelChannel<uint8_t, Stencil> {
using type=uint8_t;
uint8_t value;
uint8_t& u=value;
};
template<typename T, typename... Channels>
struct Pixel : public PixelChannel<T, Channels>... {
Pixel() = default;
Pixel& operator=(const Pixel& rhs) {
((
[&](const typename PixelChannel<T, Channels>::type& val){
this->PixelChannel<T, Channels>::value = val;
}(rhs.PixelChannel<T, Channels>::value)
), ...);
return *this;
}
Pixel(const Pixel& cpy)
: Pixel(cpy.PixelChannel<T, Channels>::value...) {}
Pixel(typename PixelChannel<T, Channels>::type... vals)
: PixelChannel<T, Channels>{vals}... {}
};
template<typename Ref>
struct PixelReference;
template<typename T, typename... Channels>
struct PixelReference<Pixel<T, Channels...>>
: public Pixel<T&, Channels...> {
using PixelType = Pixel<T, Channels...>;
using Base = Pixel<T&, Channels...>;
using Base::Base;
PixelReference(PixelType& pixel)
: Base(pixel.PixelChannel<T, Channels>::value...) {}
operator PixelType() {
return PixelType(this->PixelChannel<T&, Channels>::value...);
}
PixelReference& operator=(const PixelType& pixel) {
((
[&](const typename PixelChannel<T, Channels>::type& val){
this->PixelChannel<T&, Channels>::value = val;
}(pixel.PixelChannel<T, Channels>::value)
), ...);
return *this;
}
};
template <typename T>
using RGBA = Pixel<T, Red, Green, Blue, Alpha>;
template <typename T>
using RGB = Pixel<T, Red, Green, Blue>;
class ImageError : public Error<ImageError> {
protected:
using Base = Error<ImageError>;
using Base::Base;
public:
enum Codes : unsigned int {
UNDEFINED, OUT_OF_BOUNDS
};
static const std::string type;
static const ErrorCodeMap ErrorMessages;
};
template<typename T>
class Image;
template<typename T, typename... Channels>
class Image<Pixel<T, Channels...>> {
protected:
using Codes = ImageError::Codes;
T* _data;
Image(unsigned int x, unsigned int y)
: width(x), height(y), _data(nullptr) {}
public:
using PixelType = Pixel<T, Channels...>;
static constexpr size_t NumberChannels = sizeof...(Channels);
const unsigned int width;
const unsigned int height;
Image(unsigned int x, unsigned int y, const T* data)
: Image(x, y) {
size_t data_size = width*height*NumberChannels;
_data = new T[data_size];
std::memcpy(_data, data, data_size*sizeof(T));
}
Image(const Image&) = delete;
Image& operator=(const Image&) = delete;
Image& operator=(Image&&) = delete;
Image(Image&& mv)
: width(mv.width), height(mv.height), _data(mv._data) {
mv._data = nullptr;
}
~Image() {
if (_data) {
delete[] _data;
}
}
const T* data() const { return _data; }
Image&& copy() const {
return Image(width, height, _data);
}
PixelReference<PixelType> at(unsigned int x, unsigned int y) {
if (!(x<width) || !(y<height)) {
std::string note = "w/ ("+std::to_string(x);
note += ", "+std::to_string(y) + ") >= (";
note += std::to_string(width)+", "+std::to_string(height);
note += ")";
THROW(ImageError(
Codes::OUT_OF_BOUNDS,
note
));
}
auto coord = y*height+x;
return PixelReference<PixelType>(
_data[coord*NumberChannels+Find<Channels, Channels...>::value-1]...
);
}
};
template<typename... T>
class ImageReference;
template<typename T, typename... Channels>
class ImageReference<Pixel<T, Channels...>> : public Image<Pixel<T, Channels...>> {
protected:
using Base = Image<Pixel<T, Channels...>>;
using Base::_data;
public:
using Base::width;
using Base::height;
using Base::copy;
ImageReference(unsigned int x, unsigned int y, T* data)
: Base(x, y) {
_data = data;
}
~ImageReference() noexcept {
Base::_data = nullptr;
}
};
} // namespace nb
#endif // _NB_IMAGE