215fd82738
Makes the dependency explicit in the TelemetrySession's interface instead of making it a hidden dependency. This also revealed a hidden issue with the way the telemetry session was being initialized. It was attempting to retrieve the app loader and log out title-specific information. However, this isn't always guaranteed to be possible. During the initialization phase, everything is being constructed. It doesn't mean an actual title has been selected. This is what the Load() function is for. This potentially results in dead code paths involving the app loader. Instead, we explicitly add this information when we know the app loader instance is available.
528 lines
16 KiB
C++
528 lines
16 KiB
C++
// Copyright 2014 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <array>
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#include <memory>
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#include <utility>
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#include "common/file_util.h"
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#include "common/logging/log.h"
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#include "common/string_util.h"
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#include "core/arm/exclusive_monitor.h"
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#include "core/core.h"
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#include "core/core_cpu.h"
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#include "core/core_timing.h"
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#include "core/cpu_core_manager.h"
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#include "core/file_sys/mode.h"
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#include "core/file_sys/registered_cache.h"
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#include "core/file_sys/vfs_concat.h"
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#include "core/file_sys/vfs_real.h"
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#include "core/frontend/applets/error.h"
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#include "core/frontend/applets/general_frontend.h"
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#include "core/frontend/applets/profile_select.h"
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#include "core/frontend/applets/software_keyboard.h"
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#include "core/frontend/applets/web_browser.h"
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#include "core/gdbstub/gdbstub.h"
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#include "core/hle/kernel/client_port.h"
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#include "core/hle/kernel/kernel.h"
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#include "core/hle/kernel/process.h"
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#include "core/hle/kernel/scheduler.h"
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#include "core/hle/kernel/thread.h"
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#include "core/hle/service/am/applets/applets.h"
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#include "core/hle/service/service.h"
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#include "core/hle/service/sm/sm.h"
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#include "core/loader/loader.h"
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#include "core/perf_stats.h"
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#include "core/settings.h"
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#include "core/telemetry_session.h"
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#include "file_sys/cheat_engine.h"
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#include "frontend/applets/profile_select.h"
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#include "frontend/applets/software_keyboard.h"
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#include "frontend/applets/web_browser.h"
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#include "video_core/debug_utils/debug_utils.h"
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#include "video_core/renderer_base.h"
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#include "video_core/video_core.h"
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namespace Core {
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/*static*/ System System::s_instance;
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FileSys::VirtualFile GetGameFileFromPath(const FileSys::VirtualFilesystem& vfs,
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const std::string& path) {
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// To account for split 00+01+etc files.
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std::string dir_name;
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std::string filename;
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Common::SplitPath(path, &dir_name, &filename, nullptr);
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if (filename == "00") {
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const auto dir = vfs->OpenDirectory(dir_name, FileSys::Mode::Read);
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std::vector<FileSys::VirtualFile> concat;
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for (u8 i = 0; i < 0x10; ++i) {
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auto next = dir->GetFile(fmt::format("{:02X}", i));
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if (next != nullptr)
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concat.push_back(std::move(next));
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else {
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next = dir->GetFile(fmt::format("{:02x}", i));
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if (next != nullptr)
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concat.push_back(std::move(next));
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else
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break;
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}
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}
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if (concat.empty())
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return nullptr;
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return FileSys::ConcatenatedVfsFile::MakeConcatenatedFile(concat, dir->GetName());
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}
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if (FileUtil::IsDirectory(path))
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return vfs->OpenFile(path + "/" + "main", FileSys::Mode::Read);
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return vfs->OpenFile(path, FileSys::Mode::Read);
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}
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struct System::Impl {
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explicit Impl(System& system) : kernel{system}, cpu_core_manager{system} {}
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Cpu& CurrentCpuCore() {
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return cpu_core_manager.GetCurrentCore();
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}
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ResultStatus RunLoop(bool tight_loop) {
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status = ResultStatus::Success;
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cpu_core_manager.RunLoop(tight_loop);
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return status;
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}
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ResultStatus Init(System& system, Frontend::EmuWindow& emu_window) {
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LOG_DEBUG(HW_Memory, "initialized OK");
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core_timing.Initialize();
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cpu_core_manager.Initialize();
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kernel.Initialize();
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const auto current_time = std::chrono::duration_cast<std::chrono::seconds>(
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std::chrono::system_clock::now().time_since_epoch());
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Settings::values.custom_rtc_differential =
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Settings::values.custom_rtc.value_or(current_time) - current_time;
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// Create a default fs if one doesn't already exist.
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if (virtual_filesystem == nullptr)
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virtual_filesystem = std::make_shared<FileSys::RealVfsFilesystem>();
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if (content_provider == nullptr)
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content_provider = std::make_unique<FileSys::ContentProviderUnion>();
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/// Create default implementations of applets if one is not provided.
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applet_manager.SetDefaultAppletsIfMissing();
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telemetry_session = std::make_unique<Core::TelemetrySession>();
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service_manager = std::make_shared<Service::SM::ServiceManager>();
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Service::Init(service_manager, system, *virtual_filesystem);
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GDBStub::Init();
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renderer = VideoCore::CreateRenderer(emu_window, system);
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if (!renderer->Init()) {
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return ResultStatus::ErrorVideoCore;
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}
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gpu_core = VideoCore::CreateGPU(system);
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is_powered_on = true;
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LOG_DEBUG(Core, "Initialized OK");
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// Reset counters and set time origin to current frame
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GetAndResetPerfStats();
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perf_stats.BeginSystemFrame();
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return ResultStatus::Success;
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}
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ResultStatus Load(System& system, Frontend::EmuWindow& emu_window,
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const std::string& filepath) {
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app_loader = Loader::GetLoader(GetGameFileFromPath(virtual_filesystem, filepath));
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if (!app_loader) {
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LOG_CRITICAL(Core, "Failed to obtain loader for {}!", filepath);
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return ResultStatus::ErrorGetLoader;
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}
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std::pair<std::optional<u32>, Loader::ResultStatus> system_mode =
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app_loader->LoadKernelSystemMode();
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if (system_mode.second != Loader::ResultStatus::Success) {
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LOG_CRITICAL(Core, "Failed to determine system mode (Error {})!",
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static_cast<int>(system_mode.second));
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return ResultStatus::ErrorSystemMode;
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}
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ResultStatus init_result{Init(system, emu_window)};
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if (init_result != ResultStatus::Success) {
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LOG_CRITICAL(Core, "Failed to initialize system (Error {})!",
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static_cast<int>(init_result));
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Shutdown();
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return init_result;
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}
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telemetry_session->AddInitialInfo(*app_loader);
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auto main_process = Kernel::Process::Create(system, "main");
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const auto [load_result, load_parameters] = app_loader->Load(*main_process);
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if (load_result != Loader::ResultStatus::Success) {
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LOG_CRITICAL(Core, "Failed to load ROM (Error {})!", static_cast<int>(load_result));
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Shutdown();
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return static_cast<ResultStatus>(static_cast<u32>(ResultStatus::ErrorLoader) +
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static_cast<u32>(load_result));
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}
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kernel.MakeCurrentProcess(main_process.get());
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// Main process has been loaded and been made current.
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// Begin GPU and CPU execution.
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gpu_core->Start();
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cpu_core_manager.StartThreads();
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// All threads are started, begin main process execution, now that we're in the clear.
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main_process->Run(load_parameters->main_thread_priority,
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load_parameters->main_thread_stack_size);
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status = ResultStatus::Success;
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return status;
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}
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void Shutdown() {
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// Log last frame performance stats
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const auto perf_results = GetAndResetPerfStats();
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Shutdown_EmulationSpeed",
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perf_results.emulation_speed * 100.0);
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Shutdown_Framerate",
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perf_results.game_fps);
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Shutdown_Frametime",
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perf_results.frametime * 1000.0);
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is_powered_on = false;
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// Shutdown emulation session
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renderer.reset();
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GDBStub::Shutdown();
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Service::Shutdown();
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service_manager.reset();
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cheat_engine.reset();
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telemetry_session.reset();
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gpu_core.reset();
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// Close all CPU/threading state
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cpu_core_manager.Shutdown();
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// Shutdown kernel and core timing
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kernel.Shutdown();
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core_timing.Shutdown();
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// Close app loader
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app_loader.reset();
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// Clear all applets
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applet_manager.ClearAll();
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LOG_DEBUG(Core, "Shutdown OK");
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}
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Loader::ResultStatus GetGameName(std::string& out) const {
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if (app_loader == nullptr)
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return Loader::ResultStatus::ErrorNotInitialized;
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return app_loader->ReadTitle(out);
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}
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void SetStatus(ResultStatus new_status, const char* details = nullptr) {
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status = new_status;
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if (details) {
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status_details = details;
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}
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}
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PerfStatsResults GetAndResetPerfStats() {
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return perf_stats.GetAndResetStats(core_timing.GetGlobalTimeUs());
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}
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Timing::CoreTiming core_timing;
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Kernel::KernelCore kernel;
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/// RealVfsFilesystem instance
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FileSys::VirtualFilesystem virtual_filesystem;
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/// ContentProviderUnion instance
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std::unique_ptr<FileSys::ContentProviderUnion> content_provider;
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/// AppLoader used to load the current executing application
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std::unique_ptr<Loader::AppLoader> app_loader;
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std::unique_ptr<VideoCore::RendererBase> renderer;
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std::unique_ptr<Tegra::GPU> gpu_core;
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std::shared_ptr<Tegra::DebugContext> debug_context;
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CpuCoreManager cpu_core_manager;
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bool is_powered_on = false;
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std::unique_ptr<FileSys::CheatEngine> cheat_engine;
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/// Frontend applets
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Service::AM::Applets::AppletManager applet_manager;
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/// Service manager
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std::shared_ptr<Service::SM::ServiceManager> service_manager;
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/// Telemetry session for this emulation session
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std::unique_ptr<Core::TelemetrySession> telemetry_session;
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ResultStatus status = ResultStatus::Success;
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std::string status_details = "";
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Core::PerfStats perf_stats;
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Core::FrameLimiter frame_limiter;
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};
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System::System() : impl{std::make_unique<Impl>(*this)} {}
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System::~System() = default;
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Cpu& System::CurrentCpuCore() {
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return impl->CurrentCpuCore();
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}
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const Cpu& System::CurrentCpuCore() const {
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return impl->CurrentCpuCore();
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}
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System::ResultStatus System::RunLoop(bool tight_loop) {
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return impl->RunLoop(tight_loop);
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}
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System::ResultStatus System::SingleStep() {
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return RunLoop(false);
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}
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void System::InvalidateCpuInstructionCaches() {
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impl->cpu_core_manager.InvalidateAllInstructionCaches();
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}
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System::ResultStatus System::Load(Frontend::EmuWindow& emu_window, const std::string& filepath) {
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return impl->Load(*this, emu_window, filepath);
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}
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bool System::IsPoweredOn() const {
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return impl->is_powered_on;
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}
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void System::PrepareReschedule() {
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CurrentCpuCore().PrepareReschedule();
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}
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PerfStatsResults System::GetAndResetPerfStats() {
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return impl->GetAndResetPerfStats();
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}
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TelemetrySession& System::TelemetrySession() {
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return *impl->telemetry_session;
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}
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const TelemetrySession& System::TelemetrySession() const {
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return *impl->telemetry_session;
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}
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ARM_Interface& System::CurrentArmInterface() {
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return CurrentCpuCore().ArmInterface();
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}
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const ARM_Interface& System::CurrentArmInterface() const {
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return CurrentCpuCore().ArmInterface();
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}
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std::size_t System::CurrentCoreIndex() const {
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return CurrentCpuCore().CoreIndex();
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}
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Kernel::Scheduler& System::CurrentScheduler() {
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return CurrentCpuCore().Scheduler();
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}
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const Kernel::Scheduler& System::CurrentScheduler() const {
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return CurrentCpuCore().Scheduler();
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}
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Kernel::Scheduler& System::Scheduler(std::size_t core_index) {
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return CpuCore(core_index).Scheduler();
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}
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const Kernel::Scheduler& System::Scheduler(std::size_t core_index) const {
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return CpuCore(core_index).Scheduler();
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}
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Kernel::Process* System::CurrentProcess() {
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return impl->kernel.CurrentProcess();
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}
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const Kernel::Process* System::CurrentProcess() const {
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return impl->kernel.CurrentProcess();
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}
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ARM_Interface& System::ArmInterface(std::size_t core_index) {
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return CpuCore(core_index).ArmInterface();
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}
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const ARM_Interface& System::ArmInterface(std::size_t core_index) const {
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return CpuCore(core_index).ArmInterface();
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}
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Cpu& System::CpuCore(std::size_t core_index) {
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return impl->cpu_core_manager.GetCore(core_index);
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}
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const Cpu& System::CpuCore(std::size_t core_index) const {
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ASSERT(core_index < NUM_CPU_CORES);
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return impl->cpu_core_manager.GetCore(core_index);
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}
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ExclusiveMonitor& System::Monitor() {
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return impl->cpu_core_manager.GetExclusiveMonitor();
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}
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const ExclusiveMonitor& System::Monitor() const {
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return impl->cpu_core_manager.GetExclusiveMonitor();
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}
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Tegra::GPU& System::GPU() {
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return *impl->gpu_core;
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}
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const Tegra::GPU& System::GPU() const {
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return *impl->gpu_core;
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}
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VideoCore::RendererBase& System::Renderer() {
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return *impl->renderer;
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}
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const VideoCore::RendererBase& System::Renderer() const {
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return *impl->renderer;
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}
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Kernel::KernelCore& System::Kernel() {
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return impl->kernel;
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}
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const Kernel::KernelCore& System::Kernel() const {
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return impl->kernel;
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}
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Timing::CoreTiming& System::CoreTiming() {
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return impl->core_timing;
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}
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const Timing::CoreTiming& System::CoreTiming() const {
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return impl->core_timing;
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}
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Core::PerfStats& System::GetPerfStats() {
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return impl->perf_stats;
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}
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const Core::PerfStats& System::GetPerfStats() const {
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return impl->perf_stats;
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}
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Core::FrameLimiter& System::FrameLimiter() {
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return impl->frame_limiter;
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}
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const Core::FrameLimiter& System::FrameLimiter() const {
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return impl->frame_limiter;
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}
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Loader::ResultStatus System::GetGameName(std::string& out) const {
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return impl->GetGameName(out);
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}
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void System::SetStatus(ResultStatus new_status, const char* details) {
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impl->SetStatus(new_status, details);
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}
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const std::string& System::GetStatusDetails() const {
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return impl->status_details;
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}
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Loader::AppLoader& System::GetAppLoader() const {
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return *impl->app_loader;
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}
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void System::SetGPUDebugContext(std::shared_ptr<Tegra::DebugContext> context) {
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impl->debug_context = std::move(context);
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}
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Tegra::DebugContext* System::GetGPUDebugContext() const {
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return impl->debug_context.get();
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}
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void System::RegisterCheatList(const std::vector<FileSys::CheatList>& list,
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const std::string& build_id, VAddr code_region_start,
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VAddr code_region_end) {
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impl->cheat_engine = std::make_unique<FileSys::CheatEngine>(*this, list, build_id,
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code_region_start, code_region_end);
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}
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void System::SetFilesystem(std::shared_ptr<FileSys::VfsFilesystem> vfs) {
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impl->virtual_filesystem = std::move(vfs);
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}
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std::shared_ptr<FileSys::VfsFilesystem> System::GetFilesystem() const {
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return impl->virtual_filesystem;
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}
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void System::SetAppletFrontendSet(Service::AM::Applets::AppletFrontendSet&& set) {
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impl->applet_manager.SetAppletFrontendSet(std::move(set));
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}
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void System::SetDefaultAppletFrontendSet() {
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impl->applet_manager.SetDefaultAppletFrontendSet();
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}
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Service::AM::Applets::AppletManager& System::GetAppletManager() {
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return impl->applet_manager;
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}
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const Service::AM::Applets::AppletManager& System::GetAppletManager() const {
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return impl->applet_manager;
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}
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void System::SetContentProvider(std::unique_ptr<FileSys::ContentProviderUnion> provider) {
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impl->content_provider = std::move(provider);
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}
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FileSys::ContentProvider& System::GetContentProvider() {
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return *impl->content_provider;
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}
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const FileSys::ContentProvider& System::GetContentProvider() const {
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return *impl->content_provider;
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}
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void System::RegisterContentProvider(FileSys::ContentProviderUnionSlot slot,
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FileSys::ContentProvider* provider) {
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impl->content_provider->SetSlot(slot, provider);
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}
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void System::ClearContentProvider(FileSys::ContentProviderUnionSlot slot) {
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impl->content_provider->ClearSlot(slot);
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}
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System::ResultStatus System::Init(Frontend::EmuWindow& emu_window) {
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return impl->Init(*this, emu_window);
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}
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void System::Shutdown() {
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impl->Shutdown();
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}
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Service::SM::ServiceManager& System::ServiceManager() {
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return *impl->service_manager;
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}
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const Service::SM::ServiceManager& System::ServiceManager() const {
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return *impl->service_manager;
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}
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} // namespace Core
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