gl_rasterizer: Use the shared texture buffer for the fog lut.
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4679487640
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@ -135,16 +135,6 @@ RasterizerOpenGL::RasterizerOpenGL()
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glActiveTexture(TextureUnits::TextureBufferLUT_RGBA.Enum());
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glActiveTexture(TextureUnits::TextureBufferLUT_RGBA.Enum());
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glTexBuffer(GL_TEXTURE_BUFFER, GL_RGBA32F, texture_buffer.GetHandle());
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glTexBuffer(GL_TEXTURE_BUFFER, GL_RGBA32F, texture_buffer.GetHandle());
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// Setup the LUT for the fog
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fog_lut.Create();
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state.fog_lut.texture_buffer = fog_lut.handle;
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state.Apply();
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fog_lut_buffer.Create();
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glBindBuffer(GL_TEXTURE_BUFFER, fog_lut_buffer.handle);
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glBufferData(GL_TEXTURE_BUFFER, sizeof(GLfloat) * 2 * 128, nullptr, GL_DYNAMIC_DRAW);
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glActiveTexture(TextureUnits::FogLUT.Enum());
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glTexBuffer(GL_TEXTURE_BUFFER, GL_RG32F, fog_lut_buffer.handle);
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// Setup the noise LUT for proctex
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// Setup the noise LUT for proctex
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proctex_noise_lut.Create();
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proctex_noise_lut.Create();
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state.proctex_noise_lut.texture_buffer = proctex_noise_lut.handle;
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state.proctex_noise_lut.texture_buffer = proctex_noise_lut.handle;
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@ -1978,7 +1968,7 @@ void RasterizerOpenGL::SyncAndUploadLUTs() {
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uniform_block_data.lighting_lut_dirty_any = false;
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uniform_block_data.lighting_lut_dirty_any = false;
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// Sync the fog lut
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// Sync the fog lut
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if (uniform_block_data.fog_lut_dirty) {
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if (uniform_block_data.fog_lut_dirty || invalidate) {
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std::array<GLvec2, 128> new_data;
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std::array<GLvec2, 128> new_data;
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std::transform(Pica::g_state.fog.lut.begin(), Pica::g_state.fog.lut.end(), new_data.begin(),
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std::transform(Pica::g_state.fog.lut.begin(), Pica::g_state.fog.lut.end(), new_data.begin(),
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@ -1986,11 +1976,12 @@ void RasterizerOpenGL::SyncAndUploadLUTs() {
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return GLvec2{entry.ToFloat(), entry.DiffToFloat()};
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return GLvec2{entry.ToFloat(), entry.DiffToFloat()};
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});
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});
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if (new_data != fog_lut_data) {
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if (new_data != fog_lut_data || invalidate) {
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fog_lut_data = new_data;
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fog_lut_data = new_data;
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glBindBuffer(GL_TEXTURE_BUFFER, fog_lut_buffer.handle);
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std::memcpy(buffer + bytes_used, new_data.data(), new_data.size() * sizeof(GLvec2));
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glBufferSubData(GL_TEXTURE_BUFFER, 0, new_data.size() * sizeof(GLvec2),
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uniform_block_data.data.fog_lut_offset = (offset + bytes_used) / sizeof(GLvec2);
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new_data.data());
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uniform_block_data.dirty = true;
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bytes_used += new_data.size() * sizeof(GLvec2);
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}
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}
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uniform_block_data.fog_lut_dirty = false;
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uniform_block_data.fog_lut_dirty = false;
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}
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}
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@ -290,9 +290,6 @@ private:
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OGLTexture texture_buffer_lut_rgba;
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OGLTexture texture_buffer_lut_rgba;
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std::array<std::array<GLvec2, 256>, Pica::LightingRegs::NumLightingSampler> lighting_lut_data{};
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std::array<std::array<GLvec2, 256>, Pica::LightingRegs::NumLightingSampler> lighting_lut_data{};
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OGLBuffer fog_lut_buffer;
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OGLTexture fog_lut;
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std::array<GLvec2, 128> fog_lut_data{};
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std::array<GLvec2, 128> fog_lut_data{};
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OGLBuffer proctex_noise_lut_buffer;
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OGLBuffer proctex_noise_lut_buffer;
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@ -1224,7 +1224,6 @@ uniform sampler2D tex2;
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uniform samplerCube tex_cube;
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uniform samplerCube tex_cube;
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uniform samplerBuffer texture_buffer_lut_rg;
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uniform samplerBuffer texture_buffer_lut_rg;
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uniform samplerBuffer texture_buffer_lut_rgba;
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uniform samplerBuffer texture_buffer_lut_rgba;
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uniform samplerBuffer fog_lut;
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uniform samplerBuffer proctex_noise_lut;
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uniform samplerBuffer proctex_noise_lut;
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uniform samplerBuffer proctex_color_map;
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uniform samplerBuffer proctex_color_map;
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uniform samplerBuffer proctex_alpha_map;
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uniform samplerBuffer proctex_alpha_map;
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@ -1494,7 +1493,8 @@ vec4 secondary_fragment_color = vec4(0.0);
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// Generate clamped fog factor from LUT for given fog index
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// Generate clamped fog factor from LUT for given fog index
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out += "float fog_i = clamp(floor(fog_index), 0.0, 127.0);\n";
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out += "float fog_i = clamp(floor(fog_index), 0.0, 127.0);\n";
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out += "float fog_f = fog_index - fog_i;\n";
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out += "float fog_f = fog_index - fog_i;\n";
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out += "vec2 fog_lut_entry = texelFetch(fog_lut, int(fog_i) + fog_lut_offset).rg;\n";
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out += "vec2 fog_lut_entry = texelFetch(texture_buffer_lut_rg, int(fog_i) + "
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"fog_lut_offset).rg;\n";
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out += "float fog_factor = fog_lut_entry.r + fog_lut_entry.g * fog_f;\n";
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out += "float fog_factor = fog_lut_entry.r + fog_lut_entry.g * fog_f;\n";
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out += "fog_factor = clamp(fog_factor, 0.0, 1.0);\n";
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out += "fog_factor = clamp(fog_factor, 0.0, 1.0);\n";
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@ -57,7 +57,6 @@ static void SetShaderSamplerBindings(GLuint shader) {
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// Set the texture samplers to correspond to different lookup table texture units
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// Set the texture samplers to correspond to different lookup table texture units
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SetShaderSamplerBinding(shader, "texture_buffer_lut_rg", TextureUnits::TextureBufferLUT_RG);
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SetShaderSamplerBinding(shader, "texture_buffer_lut_rg", TextureUnits::TextureBufferLUT_RG);
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SetShaderSamplerBinding(shader, "texture_buffer_lut_rgba", TextureUnits::TextureBufferLUT_RGBA);
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SetShaderSamplerBinding(shader, "texture_buffer_lut_rgba", TextureUnits::TextureBufferLUT_RGBA);
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SetShaderSamplerBinding(shader, "fog_lut", TextureUnits::FogLUT);
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SetShaderSamplerBinding(shader, "proctex_noise_lut", TextureUnits::ProcTexNoiseLUT);
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SetShaderSamplerBinding(shader, "proctex_noise_lut", TextureUnits::ProcTexNoiseLUT);
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SetShaderSamplerBinding(shader, "proctex_color_map", TextureUnits::ProcTexColorMap);
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SetShaderSamplerBinding(shader, "proctex_color_map", TextureUnits::ProcTexColorMap);
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SetShaderSamplerBinding(shader, "proctex_alpha_map", TextureUnits::ProcTexAlphaMap);
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SetShaderSamplerBinding(shader, "proctex_alpha_map", TextureUnits::ProcTexAlphaMap);
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@ -58,8 +58,6 @@ OpenGLState::OpenGLState() {
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texture_buffer_lut_rg.texture_buffer = 0;
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texture_buffer_lut_rg.texture_buffer = 0;
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texture_buffer_lut_rgba.texture_buffer = 0;
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texture_buffer_lut_rgba.texture_buffer = 0;
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fog_lut.texture_buffer = 0;
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proctex_lut.texture_buffer = 0;
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proctex_lut.texture_buffer = 0;
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proctex_diff_lut.texture_buffer = 0;
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proctex_diff_lut.texture_buffer = 0;
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proctex_color_map.texture_buffer = 0;
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proctex_color_map.texture_buffer = 0;
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@ -235,12 +233,6 @@ void OpenGLState::Apply() const {
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glBindTexture(GL_TEXTURE_BUFFER, texture_buffer_lut_rgba.texture_buffer);
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glBindTexture(GL_TEXTURE_BUFFER, texture_buffer_lut_rgba.texture_buffer);
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}
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}
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// Fog LUT
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if (fog_lut.texture_buffer != cur_state.fog_lut.texture_buffer) {
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glActiveTexture(TextureUnits::FogLUT.Enum());
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glBindTexture(GL_TEXTURE_BUFFER, fog_lut.texture_buffer);
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}
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// ProcTex Noise LUT
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// ProcTex Noise LUT
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if (proctex_noise_lut.texture_buffer != cur_state.proctex_noise_lut.texture_buffer) {
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if (proctex_noise_lut.texture_buffer != cur_state.proctex_noise_lut.texture_buffer) {
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glActiveTexture(TextureUnits::ProcTexNoiseLUT.Enum());
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glActiveTexture(TextureUnits::ProcTexNoiseLUT.Enum());
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@ -386,8 +378,6 @@ OpenGLState& OpenGLState::ResetTexture(GLuint handle) {
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texture_buffer_lut_rg.texture_buffer = 0;
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texture_buffer_lut_rg.texture_buffer = 0;
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if (texture_buffer_lut_rgba.texture_buffer == handle)
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if (texture_buffer_lut_rgba.texture_buffer == handle)
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texture_buffer_lut_rgba.texture_buffer = 0;
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texture_buffer_lut_rgba.texture_buffer = 0;
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if (fog_lut.texture_buffer == handle)
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fog_lut.texture_buffer = 0;
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if (proctex_noise_lut.texture_buffer == handle)
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if (proctex_noise_lut.texture_buffer == handle)
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proctex_noise_lut.texture_buffer = 0;
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proctex_noise_lut.texture_buffer = 0;
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if (proctex_color_map.texture_buffer == handle)
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if (proctex_color_map.texture_buffer == handle)
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@ -20,7 +20,6 @@ constexpr TextureUnit PicaTexture(int unit) {
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return TextureUnit{unit};
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return TextureUnit{unit};
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}
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}
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constexpr TextureUnit FogLUT{4};
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constexpr TextureUnit ProcTexNoiseLUT{5};
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constexpr TextureUnit ProcTexNoiseLUT{5};
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constexpr TextureUnit ProcTexColorMap{6};
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constexpr TextureUnit ProcTexColorMap{6};
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constexpr TextureUnit ProcTexAlphaMap{7};
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constexpr TextureUnit ProcTexAlphaMap{7};
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@ -112,10 +111,6 @@ public:
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GLuint texture_buffer; // GL_TEXTURE_BINDING_BUFFER
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GLuint texture_buffer; // GL_TEXTURE_BINDING_BUFFER
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} texture_buffer_lut_rgba;
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} texture_buffer_lut_rgba;
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struct {
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GLuint texture_buffer; // GL_TEXTURE_BINDING_BUFFER
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} fog_lut;
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struct {
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struct {
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GLuint texture_buffer; // GL_TEXTURE_BINDING_BUFFER
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GLuint texture_buffer; // GL_TEXTURE_BINDING_BUFFER
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} proctex_noise_lut;
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} proctex_noise_lut;
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