mirror of
https://github.com/open-goal/jak-project.git
synced 2025-02-01 11:22:12 +00:00
dd0a8a17b2
- started documenting the files I glossed over, some are totally done, others are just partially done - I changed the decompiler to automatically initialize the art-group-info from the json file. This makes updating gsrc, even a single file at a time, have consistent naming - Though I disabled this functionality for jak 1, as I have no idea if using the ntsc art groups will cause a regression for different versions - fix indentation for docstrings -- it still doesn't look great, but this is now a formatting concern, rather than the docstring having a bunch of happen-stance leading whitespace.
270 lines
12 KiB
C++
270 lines
12 KiB
C++
#include "config.h"
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#include "common/log/log.h"
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#include "common/util/FileUtil.h"
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#include "common/util/json_util.h"
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#include "decompiler/util/config_parsers.h"
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#include "third-party/fmt/core.h"
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#include "third-party/json.hpp"
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namespace decompiler {
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namespace {
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/*!
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* Read an entry from cfg containing the name of a json file, and parse that file.
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* Relative to jak-project directory.
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*/
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nlohmann::json read_json_file_from_config(const nlohmann::json& cfg, const std::string& file_key) {
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auto file_name = cfg.at(file_key).get<std::string>();
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auto file_txt = file_util::read_text_file(file_util::get_file_path({file_name}));
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return parse_commented_json(file_txt, file_name);
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}
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} // namespace
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/*!
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* Parse the main config file and return decompiler config.
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*/
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Config read_config_file(const fs::path& path_to_config_file, const std::string& override_json) {
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Config config;
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auto config_str = file_util::read_text_file(path_to_config_file);
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auto cfg = parse_commented_json(config_str, path_to_config_file.string());
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lg::info("Config Overide: '{}'\n", override_json);
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auto cfg_override = parse_commented_json(override_json, "");
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cfg.update(cfg_override);
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int version_int = cfg.at("game_version").get<int>();
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ASSERT(version_int == 1 || version_int == 2);
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config.game_version = (GameVersion)version_int;
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config.text_version = cfg.at("text_version").get<GameTextVersion>();
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config.game_name = cfg.at("game_name").get<std::string>();
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if (cfg.contains("expected_elf_name")) {
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config.expected_elf_name = cfg.at("expected_elf_name").get<std::string>();
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}
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config.all_types_file = cfg.at("all_types_file").get<std::string>();
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auto inputs_json = read_json_file_from_config(cfg, "inputs_file");
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config.dgo_names = inputs_json.at("dgo_names").get<std::vector<std::string>>();
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config.object_file_names = inputs_json.at("object_file_names").get<std::vector<std::string>>();
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config.str_file_names = inputs_json.at("str_file_names").get<std::vector<std::string>>();
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config.audio_dir_file_name = inputs_json.at("audio_dir_file_name").get<std::string>();
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config.streamed_audio_file_names =
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inputs_json.at("streamed_audio_file_names").get<std::vector<std::string>>();
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if (cfg.contains("art_group_dump_file")) {
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auto json_data = file_util::read_text_file(
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file_util::get_file_path({cfg.at("art_group_dump_file").get<std::string>()}));
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std::unordered_map<std::string, std::unordered_map<int, std::string>> serialized =
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parse_commented_json(json_data, "art_group_dump_file");
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config.art_group_info_dump = serialized;
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}
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if (cfg.contains("obj_file_name_map_file")) {
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config.obj_file_name_map_file = cfg.at("obj_file_name_map_file").get<std::string>();
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}
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config.disassemble_code = cfg.at("disassemble_code").get<bool>();
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config.decompile_code = cfg.at("decompile_code").get<bool>();
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config.write_hex_near_instructions = cfg.at("write_hex_near_instructions").get<bool>();
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config.write_scripts = cfg.at("write_scripts").get<bool>();
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config.disassemble_data = cfg.at("disassemble_data").get<bool>();
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config.process_tpages = cfg.at("process_tpages").get<bool>();
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config.process_game_text = cfg.at("process_game_text").get<bool>();
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config.process_game_count = cfg.at("process_game_count").get<bool>();
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config.process_art_groups = cfg.at("process_art_groups").get<bool>();
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config.dump_art_group_info = cfg.at("dump_art_group_info").get<bool>();
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config.hexdump_code = cfg.at("hexdump_code").get<bool>();
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config.hexdump_data = cfg.at("hexdump_data").get<bool>();
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config.find_functions = cfg.at("find_functions").get<bool>();
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config.dump_objs = cfg.at("dump_objs").get<bool>();
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config.print_cfgs = cfg.at("print_cfgs").get<bool>();
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config.generate_symbol_definition_map = cfg.at("generate_symbol_definition_map").get<bool>();
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config.is_pal = cfg.at("is_pal").get<bool>();
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config.rip_levels = cfg.at("rip_levels").get<bool>();
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config.extract_collision = cfg.at("extract_collision").get<bool>();
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config.generate_all_types = cfg.at("generate_all_types").get<bool>();
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if (cfg.contains("old_all_types_file")) {
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config.old_all_types_file = cfg.at("old_all_types_file").get<std::string>();
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}
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auto allowed = cfg.at("allowed_objects").get<std::vector<std::string>>();
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for (const auto& x : allowed) {
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config.allowed_objects.insert(x);
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}
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auto banned = cfg.at("banned_objects").get<std::vector<std::string>>();
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for (const auto& x : banned) {
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config.banned_objects.insert(x);
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}
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auto type_casts_json = read_json_file_from_config(cfg, "type_casts_file");
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for (auto& kv : type_casts_json.items()) {
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auto& function_name = kv.key();
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auto& casts = kv.value();
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for (auto& cast : casts) {
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if (cast.at(0).is_string()) {
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auto cast_name = cast.at(0).get<std::string>();
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if (cast_name == "_stack_") {
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// it's a stack var cast
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StackTypeCast stack_cast;
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stack_cast.stack_offset = cast.at(1).get<int>();
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stack_cast.type_name = cast.at(2).get<std::string>();
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config.stack_type_casts_by_function_by_stack_offset[function_name]
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[stack_cast.stack_offset] = stack_cast;
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} else {
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throw std::runtime_error(fmt::format("Unknown cast type: {}", cast_name));
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}
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} else {
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auto idx_range = parse_json_optional_integer_range(cast.at(0));
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for (auto idx : idx_range) {
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RegisterTypeCast type_cast;
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type_cast.atomic_op_idx = idx;
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type_cast.reg = Register(cast.at(1).get<std::string>());
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type_cast.type_name = cast.at(2).get<std::string>();
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config.register_type_casts_by_function_by_atomic_op_idx[function_name][idx].push_back(
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type_cast);
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}
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}
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}
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}
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auto anon_func_json = read_json_file_from_config(cfg, "anonymous_function_types_file");
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for (auto& kv : anon_func_json.items()) {
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auto& obj_file_name = kv.key();
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auto& anon_types = kv.value();
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for (auto& anon_type : anon_types) {
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auto id = anon_type.at(0).get<int>();
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const auto& type_name = anon_type.at(1).get<std::string>();
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config.anon_function_types_by_obj_by_id[obj_file_name][id] = type_name;
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}
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}
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auto var_names_json = read_json_file_from_config(cfg, "var_names_file");
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for (auto& kv : var_names_json.items()) {
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auto& function_name = kv.key();
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auto arg = kv.value().find("args");
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if (arg != kv.value().end()) {
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for (auto& x : arg.value()) {
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config.function_arg_names[function_name].push_back(x);
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}
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}
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auto var = kv.value().find("vars");
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if (var != kv.value().end()) {
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for (auto& vkv : var->get<std::unordered_map<std::string, nlohmann::json>>()) {
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LocalVarOverride override;
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if (vkv.second.is_string()) {
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override.name = vkv.second.get<std::string>();
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} else if (vkv.second.is_array()) {
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override.name = vkv.second[0].get<std::string>();
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override.type = vkv.second[1].get<std::string>();
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} else {
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throw std::runtime_error("Invalid function var override.");
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}
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config.function_var_overrides[function_name][vkv.first] = override;
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}
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}
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}
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auto label_types_json = read_json_file_from_config(cfg, "label_types_file");
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for (auto& kv : label_types_json.items()) {
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auto& obj_name = kv.key();
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auto& types = kv.value();
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for (auto& x : types) {
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const auto& name = x.at(0).get<std::string>();
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const auto& type_name = x.at(1).get<std::string>();
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bool is_val = false;
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std::optional<int> array_size;
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if (x.size() > 2) {
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if (x.at(2).is_boolean()) {
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is_val = x.at(2).get<bool>();
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} else {
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array_size = x.at(2).get<int>();
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}
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}
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auto& config_entry = config.label_types[obj_name][name];
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config_entry = {is_val, type_name, array_size};
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}
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}
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auto stack_structures_json = read_json_file_from_config(cfg, "stack_structures_file");
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for (auto& kv : stack_structures_json.items()) {
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auto& func_name = kv.key();
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auto& stack_structures = kv.value();
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config.stack_structure_hints_by_function[func_name] =
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parse_stack_structure_hints(stack_structures);
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}
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auto hacks_json = read_json_file_from_config(cfg, "hacks_file");
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config.hacks.hint_inline_assembly_functions =
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hacks_json.at("hint_inline_assembly_functions").get<std::unordered_set<std::string>>();
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config.hacks.asm_functions_by_name =
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hacks_json.at("asm_functions_by_name").get<std::unordered_set<std::string>>();
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config.hacks.pair_functions_by_name =
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hacks_json.at("pair_functions_by_name").get<std::unordered_set<std::string>>();
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config.hacks.no_type_analysis_functions_by_name =
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hacks_json.at("no_type_analysis_functions_by_name").get<std::unordered_set<std::string>>();
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config.hacks.types_with_bad_inspect_methods =
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hacks_json.at("types_with_bad_inspect_methods").get<std::unordered_set<std::string>>();
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config.hacks.reject_cond_to_value = hacks_json.at("aggressively_reject_cond_to_value_rewrite")
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.get<std::unordered_set<std::string>>();
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config.hacks.blocks_ending_in_asm_branch_by_func_name =
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hacks_json.at("blocks_ending_in_asm_branch")
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.get<std::unordered_map<std::string, std::unordered_set<int>>>();
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config.hacks.format_ops_with_dynamic_string_by_func_name =
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hacks_json.at("dynamic_format_arg_counts")
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.get<std::unordered_map<std::string, std::vector<std::vector<int>>>>();
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config.hacks.mips2c_functions_by_name =
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hacks_json.at("mips2c_functions_by_name").get<std::unordered_set<std::string>>();
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config.hacks.mips2c_jump_table_functions =
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hacks_json.at("mips2c_jump_table_functions")
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.get<std::unordered_map<std::string, std::vector<int>>>();
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for (auto& entry : hacks_json.at("cond_with_else_max_lengths")) {
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auto func_name = entry.at(0).get<std::string>();
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auto cond_name = entry.at(1).get<std::string>();
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auto max_len = entry.at(2).get<int>();
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config.hacks.cond_with_else_len_by_func_name[func_name].max_length_by_start_block[cond_name] =
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max_len;
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}
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for (auto& entry : hacks_json.at("missing_textures")) {
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int tpage = entry.at(1).get<int>();
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int idx = entry.at(2).get<int>();
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config.hacks.missing_textures_by_level[entry.at(0).get<std::string>()].emplace_back(tpage, idx);
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}
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config.bad_format_strings =
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hacks_json.at("bad_format_strings").get<std::unordered_map<std::string, int>>();
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auto merged = hacks_json.at("expected_merged_objs").get<std::vector<std::string>>();
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for (const auto& x : merged) {
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config.merged_objects.insert(x);
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}
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config.levels_to_extract = inputs_json.at("levels_to_extract").get<std::vector<std::string>>();
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config.levels_extract = cfg.at("levels_extract").get<bool>();
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auto art_info_json = read_json_file_from_config(cfg, "art_info_file");
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config.art_groups_by_file =
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art_info_json.at("files").get<std::unordered_map<std::string, std::string>>();
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config.art_groups_by_function =
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art_info_json.at("functions").get<std::unordered_map<std::string, std::string>>();
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auto import_deps = read_json_file_from_config(cfg, "import_deps_file");
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config.import_deps_by_file =
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import_deps.get<std::unordered_map<std::string, std::vector<std::string>>>();
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config.write_patches = cfg.at("write_patches").get<bool>();
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config.apply_patches = cfg.at("apply_patches").get<bool>();
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const auto& object_patches = cfg.at("object_patches");
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for (auto& [obj, pch] : object_patches.items()) {
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ObjectPatchInfo new_pch;
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new_pch.crc = (u32)std::stoull(pch.at("crc32").get<std::string>(), nullptr, 16);
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new_pch.target_file = pch.at("in").get<std::string>();
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new_pch.patch_file = pch.at("out").get<std::string>();
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config.object_patches.insert({obj, new_pch});
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}
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return config;
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}
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} // namespace decompiler
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