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https://github.com/yuzu-emu/yuzu.git
synced 2024-11-30 20:24:24 +01:00
loader: Various improvements for NSO/NRO loaders.
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33ea53094c
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23ce4f5afc
@ -147,9 +147,9 @@ void Process::LoadModule(SharedPtr<CodeSet> module_, VAddr base_addr) {
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};
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// Map CodeSet segments
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MapSegment(module_->code, VMAPermission::ReadExecute, MemoryState::Code);
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MapSegment(module_->rodata, VMAPermission::Read, MemoryState::Code);
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MapSegment(module_->data, VMAPermission::ReadWrite, MemoryState::Private);
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MapSegment(module_->code, VMAPermission::ReadWrite, MemoryState::Private);
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MapSegment(module_->rodata, VMAPermission::Read, MemoryState::Static);
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MapSegment(module_->data, VMAPermission::ReadWrite, MemoryState::Static);
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}
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VAddr Process::GetLinearHeapAreaAddress() const {
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@ -429,7 +429,7 @@ ResultVal<SharedPtr<Thread>> Thread::Create(std::string name, VAddr entry_point,
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// Map the page to the current process' address space.
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// TODO(Subv): Find the correct MemoryState for this region.
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vm_manager.MapMemoryBlock(Memory::TLS_AREA_VADDR + available_page * Memory::PAGE_SIZE,
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linheap_memory, offset, Memory::PAGE_SIZE, MemoryState::Private);
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linheap_memory, offset, Memory::PAGE_SIZE, MemoryState::Static);
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}
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// Mark the slot as used
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@ -121,11 +121,11 @@ static std::unique_ptr<AppLoader> GetFileLoader(FileUtil::IOFile&& file, FileTyp
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// NX NSO file format.
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case FileType::NSO:
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return std::make_unique<AppLoader_NSO>(std::move(file), filename, filepath);
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return std::make_unique<AppLoader_NSO>(std::move(file), filepath);
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// NX NRO file format.
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case FileType::NRO:
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return std::make_unique<AppLoader_NRO>(std::move(file), filename, filepath);
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return std::make_unique<AppLoader_NRO>(std::move(file), filepath);
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default:
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return nullptr;
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@ -75,17 +75,6 @@ static std::vector<u8> ReadSegment(FileUtil::IOFile& file, const NroSegmentHeade
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return data;
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}
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VAddr AppLoader_NRO::GetEntryPoint(VAddr load_base) const {
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// Find nnMain function, set entrypoint to that address
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const auto& search = exports.find("nnMain");
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if (search != exports.end()) {
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return load_base + search->second;
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}
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const VAddr entry_point{load_base + sizeof(NroHeader)};
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LOG_ERROR(Loader, "Unable to find entrypoint, defaulting to: 0x%llx", entry_point);
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return entry_point;
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}
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bool AppLoader_NRO::LoadNro(const std::string& path, VAddr load_base) {
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FileUtil::IOFile file(path, "rb");
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if (!file.IsOpen()) {
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@ -152,9 +141,9 @@ ResultStatus AppLoader_NRO::Load() {
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}
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// Load and relocate "main" and "sdk" NSO
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static constexpr VAddr main_base{0x10000000};
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static constexpr VAddr base_addr{Memory::PROCESS_IMAGE_VADDR};
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Kernel::g_current_process = Kernel::Process::Create("main");
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if (!LoadNro(filepath, main_base)) {
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if (!LoadNro(filepath, base_addr)) {
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return ResultStatus::ErrorInvalidFormat;
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}
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@ -162,7 +151,7 @@ ResultStatus AppLoader_NRO::Load() {
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Kernel::g_current_process->address_mappings = default_address_mappings;
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Kernel::g_current_process->resource_limit =
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Kernel::ResourceLimit::GetForCategory(Kernel::ResourceLimitCategory::APPLICATION);
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Kernel::g_current_process->Run(GetEntryPoint(main_base), 48, Kernel::DEFAULT_STACK_SIZE);
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Kernel::g_current_process->Run(base_addr, 48, Kernel::DEFAULT_STACK_SIZE);
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ResolveImports();
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@ -17,9 +17,8 @@ namespace Loader {
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/// Loads an NRO file
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class AppLoader_NRO final : public AppLoader, Linker {
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public:
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AppLoader_NRO(FileUtil::IOFile&& file, std::string filename, std::string filepath)
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: AppLoader(std::move(file)), filename(std::move(filename)), filepath(std::move(filepath)) {
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}
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AppLoader_NRO(FileUtil::IOFile&& file, std::string filepath)
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: AppLoader(std::move(file)), filepath(std::move(filepath)) {}
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/**
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* Returns the type of the file
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@ -35,10 +34,8 @@ public:
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ResultStatus Load() override;
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private:
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VAddr GetEntryPoint(VAddr load_base) const;
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bool LoadNro(const std::string& path, VAddr load_base);
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std::string filename;
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std::string filepath;
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};
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@ -70,31 +70,21 @@ static std::vector<u8> ReadSegment(FileUtil::IOFile& file, const NsoSegmentHeade
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std::vector<u8> uncompressed_data;
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uncompressed_data.resize(header.size);
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const int bytes_uncompressed =
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LZ4_decompress_safe_partial(reinterpret_cast<const char*>(compressed_data.data()),
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reinterpret_cast<char*>(uncompressed_data.data()),
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compressed_size, header.size, header.size);
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const int bytes_uncompressed = LZ4_decompress_safe(
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reinterpret_cast<const char*>(compressed_data.data()),
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reinterpret_cast<char*>(uncompressed_data.data()), compressed_size, header.size);
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ASSERT_MSG(bytes_uncompressed == header.size, "%d != %d", bytes_uncompressed, header.size);
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ASSERT_MSG(bytes_uncompressed == header.size && bytes_uncompressed == uncompressed_data.size(),
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"%d != %d != %d", bytes_uncompressed, header.size, uncompressed_data.size());
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return uncompressed_data;
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}
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VAddr AppLoader_NSO::GetEntryPoint(VAddr load_base) const {
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// Find nnMain function, set entrypoint to that address
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const auto& search = exports.find("nnMain");
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if (search != exports.end()) {
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return search->second;
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}
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LOG_ERROR(Loader, "Unable to find entrypoint, defaulting to: 0x%llx", load_base);
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return load_base;
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}
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static constexpr u32 PageAlignSize(u32 size) {
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return (size + Memory::PAGE_MASK) & ~Memory::PAGE_MASK;
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}
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bool AppLoader_NSO::LoadNso(const std::string& path, VAddr load_base) {
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VAddr AppLoader_NSO::LoadNso(const std::string& path, VAddr load_base, bool relocate) {
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FileUtil::IOFile file(path, "rb");
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if (!file.IsOpen()) {
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return {};
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@ -137,11 +127,12 @@ bool AppLoader_NSO::LoadNso(const std::string& path, VAddr load_base) {
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bss_size = PageAlignSize(mod_header.bss_end_offset - mod_header.bss_start_offset);
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codeset->data.size += bss_size;
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}
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program_image.resize(PageAlignSize(static_cast<u32>(program_image.size()) + bss_size));
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const u32 image_size{PageAlignSize(static_cast<u32>(program_image.size()) + bss_size)};
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program_image.resize(image_size);
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// Relocate symbols if there was a proper MOD header - This must happen after the image has been
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// loaded into memory
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if (has_mod_header) {
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if (has_mod_header && relocate) {
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Relocate(program_image, module_offset + mod_header.dynamic_offset, load_base);
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}
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@ -150,7 +141,7 @@ bool AppLoader_NSO::LoadNso(const std::string& path, VAddr load_base) {
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codeset->memory = std::make_shared<std::vector<u8>>(std::move(program_image));
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Kernel::g_current_process->LoadModule(codeset, load_base);
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return true;
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return load_base + image_size;
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}
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ResultStatus AppLoader_NSO::Load() {
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@ -161,22 +152,29 @@ ResultStatus AppLoader_NSO::Load() {
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return ResultStatus::Error;
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}
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// Load and relocate "main" and "sdk" NSO
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static constexpr VAddr main_base{0x710000000};
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// Load and relocate "rtld" NSO
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static constexpr VAddr base_addr{Memory::PROCESS_IMAGE_VADDR};
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Kernel::g_current_process = Kernel::Process::Create("main");
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if (!LoadNso(filepath, main_base)) {
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VAddr next_base_addr{LoadNso(filepath, base_addr)};
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if (!next_base_addr) {
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return ResultStatus::ErrorInvalidFormat;
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}
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const std::string sdkpath = filepath.substr(0, filepath.find_last_of("/\\")) + "/sdk";
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if (!LoadNso(sdkpath, 0x720000000)) {
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LOG_WARNING(Loader, "failed to find SDK NSO");
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// Load and relocate remaining submodules
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for (const auto& module_name : {"main", "sdk", "subsdk0", "subsdk1"}) {
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const std::string module_path =
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filepath.substr(0, filepath.find_last_of("/\\")) + "/" + module_name;
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next_base_addr = LoadNso(module_path, next_base_addr);
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if (!next_base_addr) {
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LOG_WARNING(Loader, "failed to find load module: %s", module_name);
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}
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}
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Kernel::g_current_process->svc_access_mask.set();
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Kernel::g_current_process->address_mappings = default_address_mappings;
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Kernel::g_current_process->resource_limit =
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Kernel::ResourceLimit::GetForCategory(Kernel::ResourceLimitCategory::APPLICATION);
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Kernel::g_current_process->Run(GetEntryPoint(main_base), 48, Kernel::DEFAULT_STACK_SIZE);
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Kernel::g_current_process->Run(base_addr, 48, Kernel::DEFAULT_STACK_SIZE);
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ResolveImports();
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@ -17,8 +17,8 @@ namespace Loader {
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/// Loads an NSO file
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class AppLoader_NSO final : public AppLoader, Linker {
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public:
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AppLoader_NSO(FileUtil::IOFile&& file, std::string filename, std::string filepath)
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: AppLoader(std::move(file)), filename(std::move(filename)), filepath(std::move(filepath)) {
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AppLoader_NSO(FileUtil::IOFile&& file, std::string filepath)
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: AppLoader(std::move(file)), filepath(std::move(filepath)) {
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}
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/**
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@ -35,10 +35,8 @@ public:
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ResultStatus Load() override;
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private:
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VAddr GetEntryPoint(VAddr load_base) const;
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bool LoadNso(const std::string& path, VAddr load_base);
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VAddr LoadNso(const std::string& path, VAddr load_base, bool relocate = false);
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std::string filename;
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std::string filepath;
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};
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@ -65,8 +65,8 @@ enum : PAddr {
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/// Virtual user-space memory regions
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enum : VAddr {
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/// Where the application text, data and bss reside.
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PROCESS_IMAGE_VADDR = 0x00100000,
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PROCESS_IMAGE_MAX_SIZE = 0x03F00000,
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PROCESS_IMAGE_VADDR = 0x08000000,
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PROCESS_IMAGE_MAX_SIZE = 0x08000000,
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PROCESS_IMAGE_VADDR_END = PROCESS_IMAGE_VADDR + PROCESS_IMAGE_MAX_SIZE,
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/// Area where IPC buffers are mapped onto.
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