749 lines
27 KiB
C++
749 lines
27 KiB
C++
#include "ContentLoader.hpp"
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#include <algorithm>
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#include <glm/glm.hpp>
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#include <iostream>
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#include <memory>
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#include <string>
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#include "Content.hpp"
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#include "ContentBuilder.hpp"
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#include "ContentPack.hpp"
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#include "coders/json.hpp"
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#include "core_defs.hpp"
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#include "debug/Logger.hpp"
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#include "files/files.hpp"
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#include "items/ItemDef.hpp"
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#include "logic/scripting/scripting.hpp"
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#include "objects/rigging.hpp"
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#include "typedefs.hpp"
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#include "util/listutil.hpp"
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#include "util/stringutil.hpp"
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#include "voxels/Block.hpp"
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#include "data/dv_util.hpp"
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#include "data/StructLayout.hpp"
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namespace fs = std::filesystem;
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using namespace data;
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static debug::Logger logger("content-loader");
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ContentLoader::ContentLoader(ContentPack* pack, ContentBuilder& builder)
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: pack(pack), builder(builder) {
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auto runtime = std::make_unique<ContentPackRuntime>(
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*pack, scripting::create_pack_environment(*pack)
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);
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stats = &runtime->getStatsWriteable();
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env = runtime->getEnvironment();
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this->runtime = runtime.get();
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builder.add(std::move(runtime));
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}
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static void detect_defs(
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const fs::path& folder,
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const std::string& prefix,
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std::vector<std::string>& detected
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) {
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if (fs::is_directory(folder)) {
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for (const auto& entry : fs::directory_iterator(folder)) {
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const fs::path& file = entry.path();
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std::string name = file.stem().string();
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if (name[0] == '_') {
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continue;
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}
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if (fs::is_regular_file(file) && file.extension() == ".json") {
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detected.push_back(prefix.empty() ? name : prefix + ":" + name);
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} else if (fs::is_directory(file)) {
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detect_defs(file, name, detected);
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}
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}
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}
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}
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bool ContentLoader::fixPackIndices(
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const fs::path& folder,
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dv::value& indicesRoot,
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const std::string& contentSection
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) {
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std::vector<std::string> detected;
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detect_defs(folder, "", detected);
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std::vector<std::string> indexed;
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bool modified = false;
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if (!indicesRoot.has(contentSection)) {
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indicesRoot.list(contentSection);
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}
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auto& arr = indicesRoot[contentSection];
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for (size_t i = 0; i < arr.size(); i++) {
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const std::string& name = arr[i].asString();
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if (!util::contains(detected, name)) {
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arr.erase(i);
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i--;
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modified = true;
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continue;
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}
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indexed.push_back(name);
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}
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for (auto name : detected) {
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if (!util::contains(indexed, name)) {
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arr.add(name);
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modified = true;
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}
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}
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return modified;
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}
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void ContentLoader::fixPackIndices() {
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auto folder = pack->folder;
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auto indexFile = pack->getContentFile();
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auto blocksFolder = folder / ContentPack::BLOCKS_FOLDER;
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auto itemsFolder = folder / ContentPack::ITEMS_FOLDER;
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auto entitiesFolder = folder / ContentPack::ENTITIES_FOLDER;
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dv::value root;
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if (fs::is_regular_file(indexFile)) {
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root = files::read_json(indexFile);
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} else {
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root = dv::object();
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}
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bool modified = false;
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modified |= fixPackIndices(blocksFolder, root, "blocks");
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modified |= fixPackIndices(itemsFolder, root, "items");
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modified |= fixPackIndices(entitiesFolder, root, "entities");
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if (modified) {
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// rewrite modified json
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files::write_json(indexFile, root);
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}
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}
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static void perform_user_block_fields(
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const std::string& blockName, StructLayout& layout
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) {
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if (layout.size() > MAX_USER_BLOCK_FIELDS_SIZE) {
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throw std::runtime_error(
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util::quote(blockName) +
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" fields total size exceeds limit (" +
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std::to_string(layout.size()) + "/" +
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std::to_string(MAX_USER_BLOCK_FIELDS_SIZE) + ")");
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}
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for (const auto& field : layout) {
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if (field.name.at(0) == '.') {
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throw std::runtime_error(
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util::quote(blockName) + " field " + field.name +
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": user field may not start with '.'");
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}
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}
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std::vector<Field> fields;
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fields.insert(fields.end(), layout.begin(), layout.end());
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// add built-in fields here
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layout = StructLayout::create(fields);
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}
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void ContentLoader::loadBlock(
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Block& def, const std::string& name, const fs::path& file
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) {
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auto root = files::read_json(file);
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if (root.has("parent")) {
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const auto& parentName = root["parent"].asString();
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auto parentDef = this->builder.blocks.get(parentName);
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if (parentDef == nullptr) {
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throw std::runtime_error(
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"Failed to find parent(" + parentName + ") for " + name
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);
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}
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parentDef->cloneTo(def);
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}
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root.at("caption").get(def.caption);
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// block texturing
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if (root.has("texture")) {
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const auto& texture = root["texture"].asString();
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for (uint i = 0; i < 6; i++) {
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def.textureFaces[i] = texture;
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}
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} else if (root.has("texture-faces")) {
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const auto& texarr = root["texture-faces"];
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for (uint i = 0; i < 6; i++) {
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def.textureFaces[i] = texarr[i].asString();
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}
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}
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// block model
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std::string modelName;
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root.at("model").get(modelName);
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if (auto model = BlockModel_from(modelName)) {
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if (*model == BlockModel::custom) {
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if (root.has("model-primitives")) {
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loadCustomBlockModel(def, root["model-primitives"]);
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} else {
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logger.error() << name << ": no 'model-primitives' found";
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}
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}
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def.model = *model;
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} else if (!modelName.empty()) {
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logger.error() << "unknown model " << modelName;
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def.model = BlockModel::none;
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}
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root.at("material").get(def.material);
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// rotation profile
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std::string profile = "none";
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root.at("rotation").get(profile);
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def.rotatable = profile != "none";
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if (profile == BlockRotProfile::PIPE_NAME) {
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def.rotations = BlockRotProfile::PIPE;
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} else if (profile == BlockRotProfile::PANE_NAME) {
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def.rotations = BlockRotProfile::PANE;
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} else if (profile != "none") {
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logger.error() << "unknown rotation profile " << profile;
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def.rotatable = false;
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}
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// block hitbox AABB [x, y, z, width, height, depth]
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if (auto found = root.at("hitboxes")) {
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const auto& boxarr = *found;
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def.hitboxes.resize(boxarr.size());
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for (uint i = 0; i < boxarr.size(); i++) {
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const auto& box = boxarr[i];
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auto& hitboxesIndex = def.hitboxes[i];
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hitboxesIndex.a = glm::vec3(
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box[0].asNumber(), box[1].asNumber(), box[2].asNumber()
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);
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hitboxesIndex.b = glm::vec3(
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box[3].asNumber(), box[4].asNumber(), box[5].asNumber()
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);
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hitboxesIndex.b += hitboxesIndex.a;
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}
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} else if (auto found = root.at("hitbox")) {
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const auto& box = *found;
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AABB aabb;
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aabb.a = glm::vec3(
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box[0].asNumber(), box[1].asNumber(), box[2].asNumber()
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);
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aabb.b = glm::vec3(
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box[3].asNumber(), box[4].asNumber(), box[5].asNumber()
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);
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aabb.b += aabb.a;
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def.hitboxes = {aabb};
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} else if (!def.modelBoxes.empty()) {
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def.hitboxes = def.modelBoxes;
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} else {
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def.hitboxes = {AABB()};
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}
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// block light emission [r, g, b] where r,g,b in range [0..15]
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if (auto found = root.at("emission")) {
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const auto& emissionarr = *found;
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def.emission[0] = emissionarr[0].asInteger();
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def.emission[1] = emissionarr[1].asInteger();
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def.emission[2] = emissionarr[2].asInteger();
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}
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// block size
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if (auto found = root.at("size")) {
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const auto& sizearr = *found;
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def.size.x = sizearr[0].asInteger();
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def.size.y = sizearr[1].asInteger();
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def.size.z = sizearr[2].asInteger();
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if (def.size.x < 1 || def.size.y < 1 || def.size.z < 1) {
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throw std::runtime_error(
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"block " + util::quote(def.name) + ": invalid block size"
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);
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}
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if (def.model == BlockModel::block &&
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(def.size.x != 1 || def.size.y != 1 || def.size.z != 1)) {
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def.model = BlockModel::aabb;
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def.hitboxes = {AABB(def.size)};
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}
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}
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// primitive properties
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root.at("obstacle").get(def.obstacle);
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root.at("replaceable").get(def.replaceable);
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root.at("light-passing").get(def.lightPassing);
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root.at("sky-light-passing").get(def.skyLightPassing);
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root.at("shadeless").get(def.shadeless);
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root.at("ambient-occlusion").get(def.ambientOcclusion);
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root.at("breakable").get(def.breakable);
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root.at("selectable").get(def.selectable);
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root.at("grounded").get(def.grounded);
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root.at("hidden").get(def.hidden);
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root.at("draw-group").get(def.drawGroup);
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root.at("picking-item").get(def.pickingItem);
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root.at("script-name").get(def.scriptName);
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root.at("ui-layout").get(def.uiLayout);
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root.at("inventory-size").get(def.inventorySize);
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root.at("tick-interval").get(def.tickInterval);
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if (root.has("fields")) {
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def.dataStruct = std::make_unique<StructLayout>();
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def.dataStruct->deserialize(root["fields"]);
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perform_user_block_fields(def.name, *def.dataStruct);
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}
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if (def.tickInterval == 0) {
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def.tickInterval = 1;
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}
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if (def.hidden && def.pickingItem == def.name + BLOCK_ITEM_SUFFIX) {
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def.pickingItem = CORE_EMPTY;
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}
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}
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void ContentLoader::loadCustomBlockModel(Block& def, const dv::value& primitives) {
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if (primitives.has("aabbs")) {
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const auto& modelboxes = primitives["aabbs"];
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for (uint i = 0; i < modelboxes.size(); i++) {
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// Parse aabb
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const auto& boxarr = modelboxes[i];
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AABB modelbox;
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modelbox.a = glm::vec3(
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boxarr[0].asNumber(), boxarr[1].asNumber(), boxarr[2].asNumber()
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);
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modelbox.b = glm::vec3(
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boxarr[3].asNumber(), boxarr[4].asNumber(), boxarr[5].asNumber()
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);
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modelbox.b += modelbox.a;
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def.modelBoxes.push_back(modelbox);
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if (boxarr.size() == 7) {
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for (uint j = 6; j < 12; j++) {
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def.modelTextures.emplace_back(boxarr[6].asString());
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}
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} else if (boxarr.size() == 12) {
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for (uint j = 6; j < 12; j++) {
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def.modelTextures.emplace_back(boxarr[j].asString());
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}
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} else {
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for (uint j = 6; j < 12; j++) {
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def.modelTextures.emplace_back("notfound");
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}
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}
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}
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}
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if (primitives.has("tetragons")) {
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const auto& modeltetragons = primitives["tetragons"];
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for (uint i = 0; i < modeltetragons.size(); i++) {
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// Parse tetragon to points
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const auto& tgonobj = modeltetragons[i];
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glm::vec3 p1(
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tgonobj[0].asNumber(), tgonobj[1].asNumber(), tgonobj[2].asNumber()
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);
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glm::vec3 xw(
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tgonobj[3].asNumber(), tgonobj[4].asNumber(), tgonobj[5].asNumber()
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);
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glm::vec3 yh(
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tgonobj[6].asNumber(), tgonobj[7].asNumber(), tgonobj[8].asNumber()
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);
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def.modelExtraPoints.push_back(p1);
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def.modelExtraPoints.push_back(p1 + xw);
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def.modelExtraPoints.push_back(p1 + xw + yh);
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def.modelExtraPoints.push_back(p1 + yh);
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def.modelTextures.emplace_back(tgonobj[9].asString());
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}
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}
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}
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void ContentLoader::loadItem(
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ItemDef& def, const std::string& name, const fs::path& file
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) {
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auto root = files::read_json(file);
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if (root.has("parent")) {
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const auto& parentName = root["parent"].asString();
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auto parentDef = this->builder.items.get(parentName);
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if (parentDef == nullptr) {
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throw std::runtime_error(
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"Failed to find parent(" + parentName + ") for " + name
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);
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}
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parentDef->cloneTo(def);
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}
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root.at("caption").get(def.caption);
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std::string iconTypeStr = "";
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root.at("icon-type").get(iconTypeStr);
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if (iconTypeStr == "none") {
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def.iconType = item_icon_type::none;
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} else if (iconTypeStr == "block") {
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def.iconType = item_icon_type::block;
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} else if (iconTypeStr == "sprite") {
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def.iconType = item_icon_type::sprite;
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} else if (iconTypeStr.length()) {
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logger.error() << name << ": unknown icon type" << iconTypeStr;
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}
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root.at("icon").get(def.icon);
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root.at("placing-block").get(def.placingBlock);
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root.at("script-name").get(def.scriptName);
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root.at("stack-size").get(def.stackSize);
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// item light emission [r, g, b] where r,g,b in range [0..15]
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if (auto found = root.at("emission")) {
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const auto& emissionarr = *found;
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def.emission[0] = emissionarr[0].asNumber();
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def.emission[1] = emissionarr[1].asNumber();
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def.emission[2] = emissionarr[2].asNumber();
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}
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}
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void ContentLoader::loadEntity(
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EntityDef& def, const std::string& name, const fs::path& file
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) {
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auto root = files::read_json(file);
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if (root.has("parent")) {
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const auto& parentName = root["parent"].asString();
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auto parentDef = this->builder.entities.get(parentName);
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if (parentDef == nullptr) {
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throw std::runtime_error(
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"Failed to find parent(" + parentName + ") for " + name
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);
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}
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parentDef->cloneTo(def);
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}
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if (auto found = root.at("components")) {
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for (const auto& elem : *found) {
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def.components.emplace_back(elem.asString());
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}
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}
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if (auto found = root.at("hitbox")) {
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const auto& arr = *found;
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def.hitbox = glm::vec3(
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arr[0].asNumber(), arr[1].asNumber(), arr[2].asNumber()
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);
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}
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if (auto found = root.at("sensors")) {
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const auto& arr = *found;
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for (size_t i = 0; i < arr.size(); i++) {
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const auto& sensorarr = arr[i];
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const auto& sensorType = sensorarr[0].asString();
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if (sensorType == "aabb") {
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def.boxSensors.emplace_back(
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i,
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AABB {
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{sensorarr[1].asNumber(),
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sensorarr[2].asNumber(),
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sensorarr[3].asNumber()},
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{sensorarr[4].asNumber(),
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sensorarr[5].asNumber(),
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sensorarr[6].asNumber()}
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}
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);
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} else if (sensorType == "radius") {
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def.radialSensors.emplace_back(i, sensorarr[1].asNumber());
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} else {
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logger.error()
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<< name << ": sensor #" << i << " - unknown type "
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<< util::quote(sensorType);
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}
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}
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}
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root.at("save").get(def.save.enabled);
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root.at("save-skeleton-pose").get(def.save.skeleton.pose);
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root.at("save-skeleton-textures").get(def.save.skeleton.textures);
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root.at("save-body-velocity").get(def.save.body.velocity);
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root.at("save-body-settings").get(def.save.body.settings);
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std::string bodyTypeName;
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root.at("body-type").get(bodyTypeName);
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if (auto bodyType = BodyType_from(bodyTypeName)) {
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def.bodyType = *bodyType;
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}
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root.at("skeleton-name").get(def.skeletonName);
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root.at("blocking").get(def.blocking);
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}
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void ContentLoader::loadEntity(
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EntityDef& def, const std::string& full, const std::string& name
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) {
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auto folder = pack->folder;
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auto configFile = folder / fs::path("entities/" + name + ".json");
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if (fs::exists(configFile)) loadEntity(def, full, configFile);
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}
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void ContentLoader::loadBlock(
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Block& def, const std::string& full, const std::string& name
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) {
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auto folder = pack->folder;
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auto configFile = folder / fs::path("blocks/" + name + ".json");
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if (fs::exists(configFile)) loadBlock(def, full, configFile);
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auto scriptfile = folder / fs::path("scripts/" + def.scriptName + ".lua");
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if (fs::is_regular_file(scriptfile)) {
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scripting::load_block_script(env, full, scriptfile, def.rt.funcsset);
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}
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if (!def.hidden) {
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auto& item = builder.items.create(full + BLOCK_ITEM_SUFFIX);
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item.generated = true;
|
|
item.caption = def.caption;
|
|
item.iconType = item_icon_type::block;
|
|
item.icon = full;
|
|
item.placingBlock = full;
|
|
|
|
for (uint j = 0; j < 4; j++) {
|
|
item.emission[j] = def.emission[j];
|
|
}
|
|
stats->totalItems++;
|
|
}
|
|
}
|
|
|
|
void ContentLoader::loadItem(
|
|
ItemDef& def, const std::string& full, const std::string& name
|
|
) {
|
|
auto folder = pack->folder;
|
|
auto configFile = folder / fs::path("items/" + name + ".json");
|
|
if (fs::exists(configFile)) loadItem(def, full, configFile);
|
|
|
|
auto scriptfile = folder / fs::path("scripts/" + def.scriptName + ".lua");
|
|
if (fs::is_regular_file(scriptfile)) {
|
|
scripting::load_item_script(env, full, scriptfile, def.rt.funcsset);
|
|
}
|
|
}
|
|
|
|
void ContentLoader::loadBlockMaterial(
|
|
BlockMaterial& def, const fs::path& file
|
|
) {
|
|
auto root = files::read_json(file);
|
|
root.at("steps-sound").get(def.stepsSound);
|
|
root.at("place-sound").get(def.placeSound);
|
|
root.at("break-sound").get(def.breakSound);
|
|
}
|
|
|
|
void ContentLoader::load() {
|
|
logger.info() << "loading pack [" << pack->id << "]";
|
|
|
|
fixPackIndices();
|
|
|
|
auto folder = pack->folder;
|
|
|
|
fs::path scriptFile = folder / fs::path("scripts/world.lua");
|
|
if (fs::is_regular_file(scriptFile)) {
|
|
scripting::load_world_script(
|
|
env, pack->id, scriptFile, runtime->worldfuncsset
|
|
);
|
|
}
|
|
|
|
if (!fs::is_regular_file(pack->getContentFile())) return;
|
|
|
|
auto root = files::read_json(pack->getContentFile());
|
|
std::vector<std::pair<std::string, std::string>> pendingDefs;
|
|
auto getJsonParent = [this](const std::string& prefix, const std::string& name) {
|
|
auto configFile = pack->folder / fs::path(prefix + "/" + name + ".json");
|
|
std::string parent;
|
|
if (fs::exists(configFile)) {
|
|
auto root = files::read_json(configFile);
|
|
root.at("parent").get(parent);
|
|
}
|
|
return parent;
|
|
};
|
|
auto processName = [this](const std::string& name) {
|
|
auto colon = name.find(':');
|
|
auto new_name = name;
|
|
std::string full =
|
|
colon == std::string::npos ? pack->id + ":" + name : name;
|
|
if (colon != std::string::npos) new_name[colon] = '/';
|
|
|
|
return std::make_pair(full, new_name);
|
|
};
|
|
|
|
if (auto found = root.at("blocks")) {
|
|
const auto& blocksarr = *found;
|
|
for (size_t i = 0; i < blocksarr.size(); i++) {
|
|
auto [full, name] = processName(blocksarr[i].asString());
|
|
auto parent = getJsonParent("blocks", name);
|
|
if (parent.empty() || builder.blocks.get(parent)) {
|
|
// No dependency or dependency already loaded/exists in another
|
|
// content pack
|
|
auto& def = builder.blocks.create(full);
|
|
loadBlock(def, full, name);
|
|
stats->totalBlocks++;
|
|
} else {
|
|
// Dependency not loaded yet, add to pending items
|
|
pendingDefs.emplace_back(full, name);
|
|
}
|
|
}
|
|
|
|
// Resolve dependencies for pending items
|
|
bool progressMade = true;
|
|
while (!pendingDefs.empty() && progressMade) {
|
|
progressMade = false;
|
|
|
|
for (auto it = pendingDefs.begin(); it != pendingDefs.end();) {
|
|
auto parent = getJsonParent("blocks", it->second);
|
|
if (builder.blocks.get(parent)) {
|
|
// Dependency resolved or parent exists in another pack,
|
|
// load the item
|
|
auto& def = builder.blocks.create(it->first);
|
|
loadBlock(def, it->first, it->second);
|
|
stats->totalBlocks++;
|
|
it = pendingDefs.erase(it); // Remove resolved item
|
|
progressMade = true;
|
|
} else {
|
|
++it;
|
|
}
|
|
}
|
|
}
|
|
|
|
if (!pendingDefs.empty()) {
|
|
// Handle circular dependencies or missing dependencies
|
|
// You can log an error or throw an exception here if necessary
|
|
throw std::runtime_error("Unresolved block dependencies detected.");
|
|
}
|
|
}
|
|
|
|
if (auto found = root.at("items")) {
|
|
const auto& itemsarr = *found;
|
|
for (size_t i = 0; i < itemsarr.size(); i++) {
|
|
auto [full, name] = processName(itemsarr[i].asString());
|
|
auto parent = getJsonParent("items", name);
|
|
if (parent.empty() || builder.items.get(parent)) {
|
|
// No dependency or dependency already loaded/exists in another
|
|
// content pack
|
|
auto& def = builder.items.create(full);
|
|
loadItem(def, full, name);
|
|
stats->totalItems++;
|
|
} else {
|
|
// Dependency not loaded yet, add to pending items
|
|
pendingDefs.emplace_back(full, name);
|
|
}
|
|
}
|
|
|
|
// Resolve dependencies for pending items
|
|
bool progressMade = true;
|
|
while (!pendingDefs.empty() && progressMade) {
|
|
progressMade = false;
|
|
|
|
for (auto it = pendingDefs.begin(); it != pendingDefs.end();) {
|
|
auto parent = getJsonParent("items", it->second);
|
|
if (builder.items.get(parent)) {
|
|
// Dependency resolved or parent exists in another pack,
|
|
// load the item
|
|
auto& def = builder.items.create(it->first);
|
|
loadItem(def, it->first, it->second);
|
|
stats->totalItems++;
|
|
it = pendingDefs.erase(it); // Remove resolved item
|
|
progressMade = true;
|
|
} else {
|
|
++it;
|
|
}
|
|
}
|
|
}
|
|
|
|
if (!pendingDefs.empty()) {
|
|
// Handle circular dependencies or missing dependencies
|
|
// You can log an error or throw an exception here if necessary
|
|
throw std::runtime_error("Unresolved item dependencies detected.");
|
|
}
|
|
}
|
|
|
|
if (auto found = root.at("entities")) {
|
|
const auto& entitiesarr = *found;
|
|
for (size_t i = 0; i < entitiesarr.size(); i++) {
|
|
auto [full, name] = processName(entitiesarr[i].asString());
|
|
auto parent = getJsonParent("entities", name);
|
|
if (parent.empty() || builder.entities.get(parent)) {
|
|
// No dependency or dependency already loaded/exists in another
|
|
// content pack
|
|
auto& def = builder.entities.create(full);
|
|
loadEntity(def, full, name);
|
|
stats->totalEntities++;
|
|
} else {
|
|
// Dependency not loaded yet, add to pending items
|
|
pendingDefs.emplace_back(full, name);
|
|
}
|
|
}
|
|
|
|
// Resolve dependencies for pending items
|
|
bool progressMade = true;
|
|
while (!pendingDefs.empty() && progressMade) {
|
|
progressMade = false;
|
|
|
|
for (auto it = pendingDefs.begin(); it != pendingDefs.end();) {
|
|
auto parent = getJsonParent("entities", it->second);
|
|
if (builder.entities.get(parent)) {
|
|
// Dependency resolved or parent exists in another pack,
|
|
// load the item
|
|
auto& def = builder.entities.create(it->first);
|
|
loadEntity(def, it->first, it->second);
|
|
stats->totalEntities++;
|
|
it = pendingDefs.erase(it); // Remove resolved item
|
|
progressMade = true;
|
|
} else {
|
|
++it;
|
|
}
|
|
}
|
|
}
|
|
|
|
if (!pendingDefs.empty()) {
|
|
// Handle circular dependencies or missing dependencies
|
|
// You can log an error or throw an exception here if necessary
|
|
throw std::runtime_error(
|
|
"Unresolved entities dependencies detected."
|
|
);
|
|
}
|
|
}
|
|
|
|
fs::path materialsDir = folder / fs::u8path("block_materials");
|
|
if (fs::is_directory(materialsDir)) {
|
|
for (const auto& entry : fs::directory_iterator(materialsDir)) {
|
|
const fs::path& file = entry.path();
|
|
std::string name = pack->id + ":" + file.stem().u8string();
|
|
loadBlockMaterial(builder.createBlockMaterial(name), file);
|
|
}
|
|
}
|
|
|
|
fs::path skeletonsDir = folder / fs::u8path("skeletons");
|
|
if (fs::is_directory(skeletonsDir)) {
|
|
for (const auto& entry : fs::directory_iterator(skeletonsDir)) {
|
|
const fs::path& file = entry.path();
|
|
std::string name = pack->id + ":" + file.stem().u8string();
|
|
std::string text = files::read_string(file);
|
|
builder.add(
|
|
rigging::SkeletonConfig::parse(text, file.u8string(), name)
|
|
);
|
|
}
|
|
}
|
|
|
|
fs::path componentsDir = folder / fs::u8path("scripts/components");
|
|
if (fs::is_directory(componentsDir)) {
|
|
for (const auto& entry : fs::directory_iterator(componentsDir)) {
|
|
fs::path scriptfile = entry.path();
|
|
if (fs::is_regular_file(scriptfile)) {
|
|
auto name = pack->id + ":" + scriptfile.stem().u8string();
|
|
scripting::load_entity_component(name, scriptfile);
|
|
}
|
|
}
|
|
}
|
|
|
|
fs::path resourcesFile = folder / fs::u8path("resources.json");
|
|
if (fs::exists(resourcesFile)) {
|
|
auto resRoot = files::read_json(resourcesFile);
|
|
for (const auto& [key, arr] : resRoot.asObject()) {
|
|
if (auto resType = ResourceType_from(key)) {
|
|
loadResources(*resType, arr);
|
|
} else {
|
|
logger.warning() << "unknown resource type: " << key;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void ContentLoader::loadResources(ResourceType type, const dv::value& list) {
|
|
for (size_t i = 0; i < list.size(); i++) {
|
|
builder.resourceIndices[static_cast<size_t>(type)].add(
|
|
pack->id + ":" + list[i].asString(), nullptr
|
|
);
|
|
}
|
|
}
|