/// @brief Include to sample cube map array textures. /// @file gli/sampler_cube_array.hpp #pragma once #include "sampler.hpp" #include "texture_cube_array.hpp" #include "mipmaps_compute.hpp" #include "convert_func.hpp" #include "clear.hpp" namespace gli { /// Cube map array texture sampler /// @tparam T Sampler can fetch, write and interpret any texture format but will expose and process the data through type T conversions. /// @tparam P Precision in term of ULPs template class sampler_cube_array : public sampler { private: typedef typename detail::interpolate::type interpolate_type; public: typedef texture_cube_array texture_type; typedef typename texture_type::size_type size_type; typedef typename texture_type::extent_type extent_type; typedef interpolate_type level_type; typedef vec<2, interpolate_type, P> normalized_type; typedef vec<4, T, P> texel_type; sampler_cube_array(texture_type const& Texture, wrap Wrap, filter Mip = FILTER_NEAREST, filter Min = FILTER_NEAREST, texel_type const& BorderColor = texel_type(0, 0, 0, 1)); ~sampler_cube_array() { } void set_border_color(texel_type BorderColor) { this->BorderColor = BorderColor; } /// Access the sampler texture object texture_type const& operator()() const; /// Fetch a texel from the sampler texture texel_type texel_fetch(extent_type const& TexelCoord, size_type layer, size_type Face, size_type Level) const; /// Write a texel in the sampler texture void texel_write(extent_type const& TexelCoord, size_type layer, size_type Face, size_type Level, texel_type const& Texel); /// Clear the sampler texture with a uniform texel void clear(texel_type const& Texel); /// Sample the sampler texture at a specific level texel_type texture_lod(normalized_type const& SampleCoord, size_type layer, size_type Face, level_type Level) const; /// Generate all the mipmaps of the sampler texture from the texture base level void generate_mipmaps(filter Minification); /// Generate the mipmaps of the sampler texture from the texture base level to the texture max level included void generate_mipmaps(size_type BaseLayer, size_type MaxLayer, size_type BaseFace, size_type MaxFace, size_type BaseLevel, size_type MaxLevel, filter Minification); private: typedef typename detail::convert::func convert_type; typedef typename detail::convert::fetchFunc fetch_type; typedef typename detail::convert::writeFunc write_type; typedef typename detail::filterBase::filterFunc filter_type; texture_type Texture; convert_type Convert; texel_type BorderColor; filter_type Filter; }; typedef sampler_cube_array fsamplerCubeArray; typedef sampler_cube_array dsamplerCubeArray; typedef sampler_cube_array usamplerCubeArray; typedef sampler_cube_array isamplerCubeArray; }//namespace gli extern "C" { namespace bindings { namespace FSamplerCubeArray { #ifndef _WIN32 gli::fsamplerCubeArray fsampler_cube_array_new(const gli::texture_cube_array & Texture, gli::wrap Wrap, gli::filter Mip, gli::filter Min) { return gli::fsamplerCubeArray(Texture, Wrap, Mip, Min); } #endif void fsampler_cube_array_set_border_color(gli::fsamplerCubeArray & Sampler, TexelType4F BorderColor) { Sampler.set_border_color(gli::tex4FToVec4(BorderColor)); } void fsampler_cube_array_clear(gli::fsamplerCubeArray & Sampler, TexelType4F Texel) { Sampler.clear(gli::tex4FToVec4(Texel)); } TexelType4F fsampler_cube_array_texel_fetch(const gli::fsamplerCubeArray & Sampler, const gli::fsamplerCubeArray::extent_type & TexelCoord, gli::texture::size_type Layer, gli::texture::size_type Face, gli::texture::size_type Level) { gli::vec4 raw = Sampler.texel_fetch(TexelCoord, Layer, Face, Level); return vec4ToTex4F(raw); } void fsampler_cube_array_texel_write(gli::fsamplerCubeArray & Sampler, const gli::fsamplerCubeArray::extent_type & TexelCoord, gli::texture::size_type Layer, gli::texture::size_type Face, gli::texture::size_type Level, TexelType4F Texel) { return Sampler.texel_write(TexelCoord, Layer, Face, Level, gli::tex4FToVec4(Texel)); } TexelType4F fsampler_cube_array_texel_lod(const gli::fsamplerCubeArray & Sampler, const float SampleCoord[2], gli::texture::size_type Layer, gli::texture::size_type Face, float Level) { gli::vec4 raw = Sampler.texture_lod(gli::fsamplerCubeArray::normalized_type(SampleCoord[0], SampleCoord[1]), Layer, Face, Level); return vec4ToTex4F(raw); } const gli::texture_cube_array & fsampler_cube_array_target_texture(const gli::fsamplerCubeArray & Sampler) { return Sampler.operator()(); } void fsampler_cube_array_generate_mipmaps1(gli::fsamplerCubeArray & Sampler, gli::filter Minification) { Sampler.generate_mipmaps(Minification); } void fsampler_cube_array_generate_mipmaps2(gli::fsamplerCubeArray & Sampler, gli::texture::size_type BaseLayer, gli::texture::size_type MaxLayer, gli::texture::size_type BaseFace, gli::texture::size_type MaxFace, gli::texture::size_type BaseLevel, gli::texture::size_type MaxLevel, gli::filter Minification) { Sampler.generate_mipmaps(BaseLayer, MaxLayer, BaseFace, MaxFace, BaseLevel, MaxLevel, Minification); } /// Manually Call destructor for image object. Helper function used in FFI. void destroy_sampler_cube_array(gli::fsamplerCubeArray & Sampler) { Sampler.~sampler_cube_array(); } } } } #ifdef GLI_IMPLEMENTATION #include "sampler_cube_array.inl" #endif