380 lines
13 KiB
C++
380 lines
13 KiB
C++
#include "FunctionCompiler.hh"
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#include <stdio.h>
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#include <string.h>
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#include <phosg/Filesystem.hh>
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#include <phosg/Hash.hh>
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#include <phosg/Time.hh>
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#include <stdexcept>
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#ifdef HAVE_RESOURCE_FILE
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#include <resource_file/Emulators/PPC32Emulator.hh>
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#endif
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#include "CommandFormats.hh"
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#include "Compression.hh"
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#include "Loggers.hh"
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using namespace std;
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static bool is_function_compiler_available = true;
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bool function_compiler_available() {
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#ifndef HAVE_RESOURCE_FILE
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return false;
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#else
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return is_function_compiler_available;
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#endif
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}
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void set_function_compiler_available(bool is_available) {
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is_function_compiler_available = is_available;
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}
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const char* name_for_architecture(CompiledFunctionCode::Architecture arch) {
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switch (arch) {
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case CompiledFunctionCode::Architecture::POWERPC:
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return "PowerPC";
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case CompiledFunctionCode::Architecture::X86:
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return "x86";
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default:
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throw logic_error("invalid architecture");
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}
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}
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template <typename FooterT>
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string CompiledFunctionCode::generate_client_command_t(
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const unordered_map<string, uint32_t>& label_writes,
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const string& suffix,
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uint32_t override_relocations_offset) const {
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FooterT footer;
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footer.num_relocations = this->relocation_deltas.size();
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footer.unused1.clear(0);
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footer.entrypoint_addr_offset = this->entrypoint_offset_offset;
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footer.unused2.clear(0);
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StringWriter w;
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if (!label_writes.empty()) {
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string modified_code = this->code;
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for (const auto& it : label_writes) {
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size_t offset = this->label_offsets.at(it.first);
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if (offset > modified_code.size() - 4) {
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throw runtime_error("label out of range");
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}
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*reinterpret_cast<be_uint32_t*>(modified_code.data() + offset) = it.second;
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}
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w.write(modified_code);
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} else {
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w.write(this->code);
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}
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w.write(suffix);
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while (w.size() & 3) {
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w.put_u8(0);
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}
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footer.relocations_offset = w.size();
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// Always write at least 4 bytes even if there are no relocations
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if (this->relocation_deltas.empty()) {
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w.put_u32(0);
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}
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if (override_relocations_offset) {
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footer.relocations_offset = override_relocations_offset;
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} else {
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for (uint16_t delta : this->relocation_deltas) {
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w.put<typename FooterT::U16T>(delta);
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}
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if (this->relocation_deltas.size() & 1) {
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w.put_u16(0);
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}
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}
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w.put(footer);
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return std::move(w.str());
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}
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string CompiledFunctionCode::generate_client_command(
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const unordered_map<string, uint32_t>& label_writes,
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const string& suffix,
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uint32_t override_relocations_offset) const {
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if (this->arch == Architecture::POWERPC) {
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return this->generate_client_command_t<S_ExecuteCode_Footer_GC_B2>(
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label_writes, suffix, override_relocations_offset);
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} else if ((this->arch == Architecture::X86) || (this->arch == Architecture::SH4)) {
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return this->generate_client_command_t<S_ExecuteCode_Footer_DC_PC_XB_BB_B2>(
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label_writes, suffix, override_relocations_offset);
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} else {
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throw logic_error("invalid architecture");
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}
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}
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bool CompiledFunctionCode::is_big_endian() const {
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return this->arch == Architecture::POWERPC;
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}
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shared_ptr<CompiledFunctionCode> compile_function_code(
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CompiledFunctionCode::Architecture arch,
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const string& directory,
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const string& name,
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const string& text) {
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#ifndef HAVE_RESOURCE_FILE
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(void)arch;
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(void)directory;
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(void)name;
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(void)text;
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throw runtime_error("function compiler is not available");
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#else
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shared_ptr<CompiledFunctionCode> ret(new CompiledFunctionCode());
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ret->arch = arch;
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ret->name = name;
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ret->index = 0;
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ret->hide_from_patches_menu = false;
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if (arch == CompiledFunctionCode::Architecture::POWERPC) {
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auto assembled = PPC32Emulator::assemble(text, {directory});
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ret->code = std::move(assembled.code);
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ret->label_offsets = std::move(assembled.label_offsets);
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} else if (arch == CompiledFunctionCode::Architecture::X86) {
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throw runtime_error("x86 assembler is not implemented");
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}
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set<uint32_t> reloc_indexes;
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for (const auto& it : ret->label_offsets) {
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if (starts_with(it.first, "reloc")) {
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reloc_indexes.emplace(it.second / 4);
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} else if (starts_with(it.first, "newserv_index_")) {
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ret->index = stoul(it.first.substr(14), nullptr, 16);
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} else if (it.first == "hide_from_patches_menu") {
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ret->hide_from_patches_menu = true;
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}
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}
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try {
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ret->entrypoint_offset_offset = ret->label_offsets.at("entry_ptr");
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} catch (const out_of_range&) {
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throw runtime_error("code does not contain entry_ptr label");
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}
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uint32_t prev_index = 0;
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for (const auto& it : reloc_indexes) {
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uint32_t delta = it - prev_index;
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if (delta > 0xFFFF) {
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throw runtime_error("relocation delta too far away");
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}
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ret->relocation_deltas.emplace_back(delta);
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prev_index = it;
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}
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return ret;
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#endif
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}
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FunctionCodeIndex::FunctionCodeIndex(const string& directory) {
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if (!function_compiler_available()) {
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function_compiler_log.info("Function compiler is not available");
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return;
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}
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uint32_t next_menu_item_id = 0;
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for (const auto& filename : list_directory(directory)) {
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if (!ends_with(filename, ".s") || ends_with(filename, ".inc.s")) {
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continue;
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}
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bool is_patch = ends_with(filename, ".patch.s");
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string name = filename.substr(0, filename.size() - (is_patch ? 8 : 2));
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// Check for specific_version token
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uint32_t specific_version = 0;
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string patch_name = name;
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if (is_patch &&
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(filename.size() >= 13) &&
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(filename[filename.size() - 13] == '.') &&
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isdigit(filename[filename.size() - 12]) &&
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(filename[filename.size() - 11] == 'O' || filename[filename.size() - 11] == 'S') &&
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(filename[filename.size() - 10] == 'E' || filename[filename.size() - 10] == 'J' || filename[filename.size() - 10] == 'P') &&
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(isdigit(filename[filename.size() - 9]) || filename[filename.size() - 9] == 'T')) {
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specific_version = 0x33000000 | (filename[filename.size() - 11] << 16) | (filename[filename.size() - 10] << 8) | filename[filename.size() - 9];
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patch_name = filename.substr(0, filename.size() - 13);
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}
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try {
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string path = directory + "/" + filename;
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string text = load_file(path);
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auto code = compile_function_code(
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CompiledFunctionCode::Architecture::POWERPC, directory, name, text);
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if (code->index != 0) {
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if (!this->index_to_function.emplace(code->index, code).second) {
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throw runtime_error(string_printf(
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"duplicate function index: %08" PRIX32, code->index));
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}
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}
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code->specific_version = specific_version;
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code->patch_name = patch_name;
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this->name_to_function.emplace(name, code);
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if (is_patch) {
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code->menu_item_id = next_menu_item_id++;
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this->menu_item_id_and_specific_version_to_patch_function.emplace(
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static_cast<uint64_t>(code->menu_item_id) << 32 | specific_version, code);
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this->name_and_specific_version_to_patch_function.emplace(
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string_printf("%s-%08" PRIX32, patch_name.c_str(), specific_version), code);
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}
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string index_prefix = code->index ? string_printf("%02X => ", code->index) : "";
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string patch_prefix = is_patch ? string_printf("[%08" PRIX32 "/%08" PRIX32 "] ", code->menu_item_id, code->specific_version) : "";
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function_compiler_log.info("Compiled function %s%s%s (%s)",
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index_prefix.c_str(), patch_prefix.c_str(), name.c_str(), name_for_architecture(code->arch));
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} catch (const exception& e) {
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function_compiler_log.warning("Failed to compile function %s: %s", name.c_str(), e.what());
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}
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}
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}
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shared_ptr<const Menu> FunctionCodeIndex::patch_menu(uint32_t specific_version) const {
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auto suffix = string_printf("-%08" PRIX32, specific_version);
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shared_ptr<Menu> ret(new Menu(MenuID::PATCHES, u"Patches"));
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ret->items.emplace_back(PatchesMenuItemID::GO_BACK, u"Go back", u"Return to the\nmain menu", 0);
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for (const auto& it : this->name_and_specific_version_to_patch_function) {
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const auto& fn = it.second;
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if (!fn->hide_from_patches_menu && ends_with(it.first, suffix)) {
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ret->items.emplace_back(fn->menu_item_id, decode_sjis(fn->patch_name), u"",
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MenuItem::Flag::REQUIRES_SEND_FUNCTION_CALL);
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}
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}
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return ret;
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}
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bool FunctionCodeIndex::patch_menu_empty(uint32_t specific_version) const {
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for (const auto& it : this->menu_item_id_and_specific_version_to_patch_function) {
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if ((it.first & 0xFF000000) == (specific_version & 0xFF000000)) {
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return false;
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}
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}
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return true;
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}
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DOLFileIndex::DOLFileIndex(const string& directory) {
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if (!function_compiler_available()) {
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function_compiler_log.info("Function compiler is not available");
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return;
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}
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if (!isdir(directory)) {
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function_compiler_log.info("DOL file directory is missing");
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return;
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}
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shared_ptr<Menu> menu(new Menu(MenuID::PROGRAMS, u"Programs"));
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this->menu = menu;
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menu->items.emplace_back(ProgramsMenuItemID::GO_BACK, u"Go back", u"Return to the\nmain menu", 0);
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uint32_t next_menu_item_id = 0;
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for (const auto& filename : list_directory_sorted(directory)) {
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bool is_dol = ends_with(filename, ".dol");
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bool is_compressed_dol = ends_with(filename, ".dol.prs");
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if (!is_dol && !is_compressed_dol) {
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continue;
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}
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string name = filename.substr(0, filename.size() - (is_compressed_dol ? 8 : 4));
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try {
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shared_ptr<DOLFile> dol(new DOLFile());
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dol->menu_item_id = next_menu_item_id++;
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dol->name = name;
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string path = directory + "/" + filename;
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string file_data = load_file(path);
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string description;
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if (is_compressed_dol) {
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size_t decompressed_size = prs_decompress_size(file_data);
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StringWriter w;
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w.put_u32b(file_data.size());
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w.put_u32b(decompressed_size);
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w.write(file_data);
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while (w.size() & 3) {
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w.put_u8(0);
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}
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dol->data = std::move(w.str());
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string compressed_size_str = format_size(file_data.size());
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string decompressed_size_str = format_size(decompressed_size);
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function_compiler_log.info("Loaded compressed DOL file %s (%s -> %s)",
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dol->name.c_str(), compressed_size_str.c_str(), decompressed_size_str.c_str());
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description = string_printf("$C6%s$C7\n%s\n%s (orig)",
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dol->name.c_str(), compressed_size_str.c_str(), decompressed_size_str.c_str());
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} else {
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StringWriter w;
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w.put_u32b(0);
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w.put_u32b(file_data.size());
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w.write(file_data);
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while (w.size() & 3) {
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w.put_u8(0);
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}
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dol->data = std::move(w.str());
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string size_str = format_size(dol->data.size());
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function_compiler_log.info("Loaded DOL file %s (%s)", filename.c_str(), size_str.c_str());
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description = string_printf("$C6%s$C7\n%s", dol->name.c_str(), size_str.c_str());
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}
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this->name_to_file.emplace(dol->name, dol);
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this->item_id_to_file.emplace_back(dol);
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menu->items.emplace_back(dol->menu_item_id, decode_sjis(dol->name),
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decode_sjis(description), MenuItem::Flag::REQUIRES_SEND_FUNCTION_CALL);
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} catch (const exception& e) {
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function_compiler_log.warning("Failed to load DOL file %s: %s", filename.c_str(), e.what());
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}
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}
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}
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uint32_t specific_version_for_gc_header_checksum(uint32_t header_checksum) {
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static unordered_map<uint32_t, uint32_t> checksum_to_specific_version;
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if (checksum_to_specific_version.empty()) {
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struct {
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char system_code = 'G';
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char game_code1 = 'P';
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char game_code2;
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char region_code;
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char developer_code1 = '8';
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char developer_code2 = 'P';
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uint8_t disc_number = 0;
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uint8_t version_code;
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} __attribute__((packed)) data;
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for (const char* game_code2 = "OS"; *game_code2; game_code2++) {
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data.game_code2 = *game_code2;
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for (const char* region_code = "JEP"; *region_code; region_code++) {
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data.region_code = *region_code;
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for (uint8_t version_code = 0; version_code < 8; version_code++) {
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data.version_code = version_code;
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uint32_t checksum = crc32(&data, sizeof(data));
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uint32_t specific_version = 0x33000030 | (*game_code2 << 16) | (*region_code << 8) | version_code;
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if (!checksum_to_specific_version.emplace(checksum, specific_version).second) {
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throw logic_error("multiple specific_versions have same header checksum");
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}
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}
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}
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{
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// Generate entries for Trial Editions
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data.region_code = 'J';
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data.system_code = 'D';
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data.version_code = 0;
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uint32_t checksum = crc32(&data, sizeof(data));
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uint32_t specific_version = 0x33004A54 | (*game_code2 << 16);
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if (!checksum_to_specific_version.emplace(checksum, specific_version).second) {
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throw logic_error("multiple specific_versions have same header checksum");
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}
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data.system_code = 'G';
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}
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}
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}
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return checksum_to_specific_version.at(header_checksum);
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}
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