mirror of
https://github.com/MaSzyna-EU07/maszyna.git
synced 2026-03-22 15:05:03 +01:00
456 lines
16 KiB
C++
456 lines
16 KiB
C++
/*
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This Source Code Form is subject to the
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terms of the Mozilla Public License, v.
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2.0. If a copy of the MPL was not
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distributed with this file, You can
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obtain one at
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http://mozilla.org/MPL/2.0/.
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*/
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#include "stdafx.h"
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#include "material.h"
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#include "renderer.h"
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#include "parser.h"
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#include "utilities.h"
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#include "sn_utils.h"
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#include "Globals.h"
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#include "Logs.h"
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opengl_material::opengl_material()
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{
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for (size_t i = 0; i < params.size(); i++)
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params[i] = glm::vec4(std::numeric_limits<float>::quiet_NaN());
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}
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bool
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opengl_material::deserialize( cParser &Input, bool const Loadnow ) {
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parse_info = std::make_unique<parse_info_s>();
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bool result { false };
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while( true == deserialize_mapping( Input, 0, Loadnow ) ) {
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result = true; // once would suffice but, eh
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}
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return result;
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}
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void opengl_material::log_error(const std::string &str)
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{
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ErrorLog("bad material: " + name + ": " + str, logtype::material);
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}
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std::map<std::string, int> texture_bindings {
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{ "diffuse", 0 },
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{ "normals", 1 },
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{ "normalmap", 1 }
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};
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void opengl_material::finalize(bool Loadnow)
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{
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if (parse_info)
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{
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for (auto it : parse_info->tex_mapping)
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{
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std::string key = it.first;
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std::string value = it.second.name;
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if (key.size() > 0 && key[0] != '_')
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{
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size_t num = std::stoi(key) - 1;
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if (num < gl::MAX_TEXTURES)
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textures[num] = GfxRenderer->Fetch_Texture(value, Loadnow);
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else
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log_error("invalid texture binding: " + std::to_string(num));
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}
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else if (key.size() > 2)
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{
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key.erase(0, 1);
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key.pop_back();
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std::map<std::string, int>::iterator lookup;
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if( shader && shader->texture_conf.find( key ) != shader->texture_conf.end() ) {
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textures[ shader->texture_conf[ key ].id ] = GfxRenderer->Fetch_Texture( value, Loadnow );
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}
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else if( ( shader == nullptr )
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&& ( lookup = texture_bindings.find( key ) ) != texture_bindings.end() ) {
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textures[ lookup->second ] = GfxRenderer->Fetch_Texture( value, Loadnow );
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}
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else {
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log_error( "unknown texture binding: " + key );
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}
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}
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else
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log_error("unrecognized texture binding: " + key);
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}
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if (!shader)
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{
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if (textures[0] == null_handle)
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{
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log_error("shader not specified, assuming \"default_0\"");
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shader = GfxRenderer->Fetch_Shader("default_0");
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}
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else if (textures[1] == null_handle)
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{
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log_error("shader not specified, assuming \"default_1\"");
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shader = GfxRenderer->Fetch_Shader("default_1");
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}
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else if (textures[2] == null_handle)
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{
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log_error("shader not specified, assuming \"default_2\"");
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shader = GfxRenderer->Fetch_Shader("default_2");
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}
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}
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if (!shader)
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return;
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for (auto it : parse_info->param_mapping)
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{
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std::string key = it.first;
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glm::vec4 value = it.second.data;
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if (key.size() > 1 && key[0] != '_')
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{
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size_t num = std::stoi(key) - 1;
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if (num < gl::MAX_PARAMS)
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params[num] = value;
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else
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log_error("invalid param binding: " + std::to_string(num));
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}
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else if (key.size() > 2)
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{
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key.erase(0, 1);
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key.pop_back();
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if (shader->param_conf.find(key) != shader->param_conf.end())
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{
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gl::shader::param_entry entry = shader->param_conf[key];
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for (size_t i = 0; i < entry.size; i++)
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params[entry.location][entry.offset + i] = value[i];
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}
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else
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log_error("unknown param binding: " + key);
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}
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else
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log_error("unrecognized param binding: " + key);
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}
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parse_info.reset();
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}
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if (!shader)
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return;
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for (auto it : shader->param_conf)
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{
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gl::shader::param_entry entry = it.second;
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if (std::isnan(params[entry.location][entry.offset]))
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{
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float value = std::numeric_limits<float>::quiet_NaN();
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if (entry.defaultparam == gl::shader::defaultparam_e::one)
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value = 1.0f;
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else if (entry.defaultparam == gl::shader::defaultparam_e::zero)
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value = 0.0f;
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else if (entry.defaultparam == gl::shader::defaultparam_e::required)
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log_error("unspecified required param: " + it.first);
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else if (entry.defaultparam != gl::shader::defaultparam_e::nan)
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{
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params_state.push_back(entry);
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continue;
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}
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for (size_t i = 0; i < entry.size; i++)
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params[entry.location][entry.offset + i] = value;
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}
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}
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for (auto it : shader->texture_conf)
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{
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gl::shader::texture_entry &entry = it.second;
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texture_handle handle = textures[entry.id];
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if (handle)
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GfxRenderer->Texture(handle).set_components_hint((GLint)entry.components);
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else
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log_error("missing texture: " + it.first);
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}
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}
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// imports member data pair from the config file
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bool
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opengl_material::deserialize_mapping( cParser &Input, int const Priority, bool const Loadnow ) {
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// NOTE: comma can be part of legacy file names, so we don't treat it as a separator here
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auto key { Input.getToken<std::string>( true, "\n\r\t ;[]" ) };
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// key can be an actual key or block end
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if( ( true == key.empty() ) || ( key == "}" ) ) { return false; }
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if( Priority != -1 ) {
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// regular attribute processing mode
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if( key == Global.Weather ) {
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// weather textures override generic (pri 0) and seasonal (pri 1) textures
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// seasonal weather textures (pri 1+2=3) override generic weather (pri 2) textures
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// skip the opening bracket
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auto const value { Input.getToken<std::string>( true, "\n\r\t ;" ) };
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while( true == deserialize_mapping( Input, Priority + 2, Loadnow ) ) {
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; // all work is done in the header
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}
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}
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else if( key == Global.Season ) {
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// seasonal textures override generic textures
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// skip the opening bracket
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auto const value { Input.getToken<std::string>( true, "\n\r\t ;" ) };
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while( true == deserialize_mapping( Input, Priority + 1, Loadnow ) ) {
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; // all work is done in the header
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}
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}
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else if (key.compare(0, 7, "texture") == 0) {
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key.erase(0, 7);
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auto value { deserialize_random_set( Input ) };
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replace_slashes( value );
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auto it = parse_info->tex_mapping.find(key);
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if (it == parse_info->tex_mapping.end())
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parse_info->tex_mapping.emplace(std::make_pair(key, parse_info_s::tex_def({ value, Priority })));
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else if (Priority > it->second.priority)
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{
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parse_info->tex_mapping.erase(it);
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parse_info->tex_mapping.emplace(std::make_pair(key, parse_info_s::tex_def({ value, Priority })));
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}
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}
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else if (key.compare(0, 5, "param") == 0) {
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key.erase(0, 5);
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std::string value = Input.getToken<std::string>( true, "\n\r\t;" );
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std::istringstream stream(value);
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glm::vec4 data;
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stream >> data.r;
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stream >> data.g;
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stream >> data.b;
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stream >> data.a;
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auto it = parse_info->param_mapping.find(key);
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if (it == parse_info->param_mapping.end())
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parse_info->param_mapping.emplace(std::make_pair(key, parse_info_s::param_def({ data, Priority })));
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else if (Priority > it->second.priority)
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{
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parse_info->param_mapping.erase(it);
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parse_info->param_mapping.emplace(std::make_pair(key, parse_info_s::param_def({ data, Priority })));
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}
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}
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else if (key == "shader:" &&
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(!shader || Priority > m_shader_priority))
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{
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try
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{
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std::string value = deserialize_random_set( Input );
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shader = GfxRenderer->Fetch_Shader(value);
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m_shader_priority = Priority;
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}
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catch (gl::shader_exception const &e)
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{
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log_error("invalid shader: " + std::string(e.what()));
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}
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}
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else if (key == "opacity:" &&
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Priority > m_opacity_priority)
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{
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std::string value = deserialize_random_set( Input );
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opacity = std::stof(value); //m7t: handle exception
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m_opacity_priority = Priority;
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}
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else if (key == "selfillum:" &&
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Priority > m_selfillum_priority)
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{
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std::string value = deserialize_random_set( Input );
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selfillum = std::stof(value); //m7t: handle exception
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m_selfillum_priority = Priority;
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}
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else if( key == "size:" ) {
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Input.getTokens( 2 );
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Input
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>> size.x
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>> size.y;
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}
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else {
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auto const value { Input.getToken<std::string>( true, "\n\r\t ;" ) };
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if( value == "{" ) {
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// unrecognized or ignored token, but comes with attribute block and potential further nesting
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// go through it and discard the content
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while( true == deserialize_mapping( Input, -1, Loadnow ) ) {
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; // all work is done in the header
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}
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}
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}
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}
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else {
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// discard mode; ignores all retrieved tokens
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auto const value { Input.getToken<std::string>( true, "\n\r\t ;" ) };
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if( value == "{" ) {
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// ignored tokens can come with their own blocks, ignore these recursively
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// go through it and discard the content
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while( true == deserialize_mapping( Input, -1, Loadnow ) ) {
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; // all work is done in the header
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}
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}
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}
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return true; // return value marks a key: value pair was extracted, nothing about whether it's recognized
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}
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float opengl_material::get_or_guess_opacity() const {
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if (!std::isnan(opacity))
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return opacity;
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if (textures[0] != null_handle)
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{
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auto const &tex = GfxRenderer->Texture(textures[0]);
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if (tex.has_alpha)
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return 0.0f;
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else
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return 0.5f;
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}
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return 0.0f;
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}
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bool
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opengl_material::is_translucent() const {
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return (
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textures[ 0 ] != null_handle ?
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GfxRenderer->Texture( textures[ 0 ] ).has_alpha :
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false );
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}
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// create material object from data stored in specified file.
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// NOTE: the deferred load parameter is passed to textures defined by material, the material itself is always loaded immediately
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material_handle
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material_manager::create( std::string const &Filename, bool const Loadnow ) {
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auto filename { Filename };
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if( filename.find( '|' ) != std::string::npos )
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filename.erase( filename.find( '|' ) ); // po | może być nazwa kolejnej tekstury
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// discern references to textures generated by a script
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// TBD: support file: for file resources?
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auto const isgenerated { filename.find( "make:" ) == 0 };
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// process supplied resource name
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if( isgenerated ) {
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// generated resource
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// scheme:(user@)path?query
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// remove scheme indicator
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filename.erase( 0, filename.find(':') + 1 );
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// TBD, TODO: allow shader specification as part of the query?
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replace_slashes( filename );
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erase_leading_slashes( filename );
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}
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else {
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// regular file resource
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// (filepath/)filename.extension
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erase_extension( filename );
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replace_slashes( filename );
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erase_leading_slashes( filename );
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}
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auto const databanklookup { find_in_databank( ToLower( filename ) ) };
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if( databanklookup != null_handle ) {
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return databanklookup;
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}
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opengl_material material;
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material_handle materialhandle { null_handle };
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auto const locator {
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isgenerated ?
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std::make_pair( filename, "make:" ) :
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find_on_disk( filename ) };
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if( ( false == isgenerated )
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&& ( false == locator.first.empty() ) ) {
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// try to parse located file resource
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cParser materialparser( locator.first + locator.second, cParser::buffer_FILE );
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if( true == material.deserialize( materialparser, Loadnow ) ) {
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material.name = locator.first;
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}
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}
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else {
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// if there's no .mat file, this can be either autogenerated texture,
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// or legacy method of referring just to diffuse texture directly.
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// wrap basic material around it in either case
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material.textures[0] = GfxRenderer->Fetch_Texture( Filename, Loadnow );
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if( material.textures[0] != null_handle )
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{
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// use texture path and name to tell the newly created materials apart
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material.name = GfxRenderer->Texture( material.textures[0] ).name;
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// material would attach default shader anyway, but it would spit to error log
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try
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{
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material.shader = GfxRenderer->Fetch_Shader("default_1");
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}
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catch (gl::shader_exception const &e)
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{
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ErrorLog("invalid shader: " + std::string(e.what()));
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}
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}
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}
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if( false == material.name.empty() ) {
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// if we have material name and shader it means resource was processed succesfully
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try {
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material.finalize(Loadnow);
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materialhandle = m_materials.size();
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m_materialmappings.emplace( material.name, materialhandle );
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m_materials.emplace_back( std::move(material) );
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} catch (gl::shader_exception const &e) {
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ErrorLog("invalid shader: " + std::string(e.what()));
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m_materialmappings.emplace( filename, materialhandle );
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}
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}
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else {
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// otherwise record our failure to process the resource, to speed up subsequent attempts
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m_materialmappings.emplace( filename, materialhandle );
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}
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return materialhandle;
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};
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// checks whether specified material is in the material bank. returns handle to the material, or a null handle
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material_handle
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material_manager::find_in_databank( std::string const &Materialname ) const {
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std::vector<std::string> const filenames {
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Global.asCurrentTexturePath + Materialname,
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Materialname,
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szTexturePath + Materialname };
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for( auto const &filename : filenames ) {
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auto const lookup { m_materialmappings.find( filename ) };
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if( lookup != m_materialmappings.end() ) {
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return lookup->second;
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}
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}
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// all lookups failed
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return null_handle;
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}
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// checks whether specified file exists.
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// NOTE: technically could be static, but we might want to switch from global texture path to instance-specific at some point
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std::pair<std::string, std::string>
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material_manager::find_on_disk( std::string const &Materialname ) const {
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auto const materialname { ToLower( Materialname ) };
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return (
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FileExists(
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{ Global.asCurrentTexturePath + materialname, materialname, szTexturePath + materialname },
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{ ".mat" } ) );
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}
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//---------------------------------------------------------------------------
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