mirror of
https://github.com/yuzu-emu/yuzu-mainline.git
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62c6c9f6a6
- This can be used to advance time, e.g. for Pokemon Sword/Shield pokejobs.
413 lines
12 KiB
C++
413 lines
12 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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#pragma once
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#include <cstddef>
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#include <memory>
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#include <string>
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#include <vector>
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#include "common/common_types.h"
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#include "core/file_sys/vfs_types.h"
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#include "core/hle/kernel/object.h"
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namespace Core::Frontend {
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class EmuWindow;
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} // namespace Core::Frontend
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namespace FileSys {
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class ContentProvider;
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class ContentProviderUnion;
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enum class ContentProviderUnionSlot;
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class VfsFilesystem;
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} // namespace FileSys
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namespace Kernel {
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class GlobalScheduler;
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class KernelCore;
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class PhysicalCore;
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class Process;
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class Scheduler;
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} // namespace Kernel
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namespace Loader {
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class AppLoader;
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enum class ResultStatus : u16;
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} // namespace Loader
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namespace Core::Memory {
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struct CheatEntry;
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class Memory;
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} // namespace Core::Memory
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namespace Service {
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namespace AM::Applets {
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struct AppletFrontendSet;
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class AppletManager;
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} // namespace AM::Applets
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namespace APM {
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class Controller;
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}
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namespace FileSystem {
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class FileSystemController;
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} // namespace FileSystem
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namespace Glue {
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class ARPManager;
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}
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namespace LM {
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class Manager;
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} // namespace LM
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namespace SM {
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class ServiceManager;
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} // namespace SM
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namespace Time {
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class TimeManager;
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} // namespace Time
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} // namespace Service
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namespace Tegra {
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class DebugContext;
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class GPU;
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} // namespace Tegra
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namespace VideoCore {
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class RendererBase;
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} // namespace VideoCore
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namespace Core::Timing {
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class CoreTiming;
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}
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namespace Core::Hardware {
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class InterruptManager;
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}
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namespace Core {
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class ARM_Interface;
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class CpuManager;
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class DeviceMemory;
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class ExclusiveMonitor;
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class FrameLimiter;
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class PerfStats;
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class Reporter;
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class TelemetrySession;
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struct PerfStatsResults;
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FileSys::VirtualFile GetGameFileFromPath(const FileSys::VirtualFilesystem& vfs,
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const std::string& path);
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class System {
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public:
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using CurrentBuildProcessID = std::array<u8, 0x20>;
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System(const System&) = delete;
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System& operator=(const System&) = delete;
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System(System&&) = delete;
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System& operator=(System&&) = delete;
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~System();
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/**
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* Gets the instance of the System singleton class.
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* @returns Reference to the instance of the System singleton class.
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*/
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[[deprecated("Use of the global system instance is deprecated")]] static System& GetInstance() {
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return s_instance;
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}
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/// Enumeration representing the return values of the System Initialize and Load process.
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enum class ResultStatus : u32 {
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Success, ///< Succeeded
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ErrorNotInitialized, ///< Error trying to use core prior to initialization
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ErrorGetLoader, ///< Error finding the correct application loader
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ErrorSystemFiles, ///< Error in finding system files
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ErrorSharedFont, ///< Error in finding shared font
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ErrorVideoCore, ///< Error in the video core
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ErrorUnknown, ///< Any other error
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ErrorLoader, ///< The base for loader errors (too many to repeat)
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};
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/**
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* Run the OS and Application
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* This function will start emulation and run the relevant devices
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*/
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ResultStatus Run();
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/**
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* Pause the OS and Application
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* This function will pause emulation and stop the relevant devices
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*/
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ResultStatus Pause();
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/**
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* Step the CPU one instruction
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* @return Result status, indicating whether or not the operation succeeded.
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*/
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ResultStatus SingleStep();
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/**
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* Invalidate the CPU instruction caches
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* This function should only be used by GDB Stub to support breakpoints, memory updates and
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* step/continue commands.
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*/
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void InvalidateCpuInstructionCaches();
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/// Shutdown the emulated system.
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void Shutdown();
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/**
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* Load an executable application.
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* @param emu_window Reference to the host-system window used for video output and keyboard
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* input.
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* @param filepath String path to the executable application to load on the host file system.
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* @returns ResultStatus code, indicating if the operation succeeded.
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*/
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ResultStatus Load(Frontend::EmuWindow& emu_window, const std::string& filepath);
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/**
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* Indicates if the emulated system is powered on (all subsystems initialized and able to run an
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* application).
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* @returns True if the emulated system is powered on, otherwise false.
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*/
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bool IsPoweredOn() const;
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/// Gets a reference to the telemetry session for this emulation session.
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Core::TelemetrySession& TelemetrySession();
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/// Gets a reference to the telemetry session for this emulation session.
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const Core::TelemetrySession& TelemetrySession() const;
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/// Prepare the core emulation for a reschedule
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void PrepareReschedule();
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/// Prepare the core emulation for a reschedule
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void PrepareReschedule(u32 core_index);
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/// Gets and resets core performance statistics
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PerfStatsResults GetAndResetPerfStats();
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/// Gets an ARM interface to the CPU core that is currently running
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ARM_Interface& CurrentArmInterface();
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/// Gets an ARM interface to the CPU core that is currently running
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const ARM_Interface& CurrentArmInterface() const;
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/// Gets the index of the currently running CPU core
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std::size_t CurrentCoreIndex() const;
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/// Gets the scheduler for the CPU core that is currently running
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Kernel::Scheduler& CurrentScheduler();
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/// Gets the scheduler for the CPU core that is currently running
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const Kernel::Scheduler& CurrentScheduler() const;
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/// Gets the physical core for the CPU core that is currently running
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Kernel::PhysicalCore& CurrentPhysicalCore();
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/// Gets the physical core for the CPU core that is currently running
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const Kernel::PhysicalCore& CurrentPhysicalCore() const;
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/// Gets a reference to an ARM interface for the CPU core with the specified index
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ARM_Interface& ArmInterface(std::size_t core_index);
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/// Gets a const reference to an ARM interface from the CPU core with the specified index
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const ARM_Interface& ArmInterface(std::size_t core_index) const;
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CpuManager& GetCpuManager();
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const CpuManager& GetCpuManager() const;
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/// Gets a reference to the exclusive monitor
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ExclusiveMonitor& Monitor();
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/// Gets a constant reference to the exclusive monitor
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const ExclusiveMonitor& Monitor() const;
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/// Gets a mutable reference to the system memory instance.
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Core::Memory::Memory& Memory();
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/// Gets a constant reference to the system memory instance.
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const Core::Memory::Memory& Memory() const;
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/// Gets a mutable reference to the GPU interface
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Tegra::GPU& GPU();
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/// Gets an immutable reference to the GPU interface.
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const Tegra::GPU& GPU() const;
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/// Gets a mutable reference to the renderer.
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VideoCore::RendererBase& Renderer();
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/// Gets an immutable reference to the renderer.
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const VideoCore::RendererBase& Renderer() const;
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/// Gets the scheduler for the CPU core with the specified index
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Kernel::Scheduler& Scheduler(std::size_t core_index);
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/// Gets the scheduler for the CPU core with the specified index
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const Kernel::Scheduler& Scheduler(std::size_t core_index) const;
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/// Gets the global scheduler
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Kernel::GlobalScheduler& GlobalScheduler();
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/// Gets the global scheduler
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const Kernel::GlobalScheduler& GlobalScheduler() const;
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/// Gets the manager for the guest device memory
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Core::DeviceMemory& DeviceMemory();
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/// Gets the manager for the guest device memory
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const Core::DeviceMemory& DeviceMemory() const;
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/// Provides a pointer to the current process
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Kernel::Process* CurrentProcess();
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/// Provides a constant pointer to the current process.
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const Kernel::Process* CurrentProcess() const;
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/// Provides a reference to the core timing instance.
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Timing::CoreTiming& CoreTiming();
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/// Provides a constant reference to the core timing instance.
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const Timing::CoreTiming& CoreTiming() const;
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/// Provides a reference to the interrupt manager instance.
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Core::Hardware::InterruptManager& InterruptManager();
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/// Provides a constant reference to the interrupt manager instance.
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const Core::Hardware::InterruptManager& InterruptManager() const;
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/// Provides a reference to the kernel instance.
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Kernel::KernelCore& Kernel();
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/// Provides a constant reference to the kernel instance.
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const Kernel::KernelCore& Kernel() const;
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/// Provides a reference to the internal PerfStats instance.
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Core::PerfStats& GetPerfStats();
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/// Provides a constant reference to the internal PerfStats instance.
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const Core::PerfStats& GetPerfStats() const;
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/// Provides a reference to the frame limiter;
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Core::FrameLimiter& FrameLimiter();
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/// Provides a constant referent to the frame limiter
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const Core::FrameLimiter& FrameLimiter() const;
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/// Gets the name of the current game
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Loader::ResultStatus GetGameName(std::string& out) const;
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void SetStatus(ResultStatus new_status, const char* details);
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const std::string& GetStatusDetails() const;
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Loader::AppLoader& GetAppLoader() const;
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Service::SM::ServiceManager& ServiceManager();
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const Service::SM::ServiceManager& ServiceManager() const;
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void SetFilesystem(FileSys::VirtualFilesystem vfs);
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FileSys::VirtualFilesystem GetFilesystem() const;
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void RegisterCheatList(const std::vector<Memory::CheatEntry>& list,
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const std::array<u8, 0x20>& build_id, VAddr main_region_begin,
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u64 main_region_size);
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void SetAppletFrontendSet(Service::AM::Applets::AppletFrontendSet&& set);
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void SetDefaultAppletFrontendSet();
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Service::AM::Applets::AppletManager& GetAppletManager();
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const Service::AM::Applets::AppletManager& GetAppletManager() const;
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void SetContentProvider(std::unique_ptr<FileSys::ContentProviderUnion> provider);
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FileSys::ContentProvider& GetContentProvider();
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const FileSys::ContentProvider& GetContentProvider() const;
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Service::FileSystem::FileSystemController& GetFileSystemController();
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const Service::FileSystem::FileSystemController& GetFileSystemController() const;
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void RegisterContentProvider(FileSys::ContentProviderUnionSlot slot,
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FileSys::ContentProvider* provider);
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void ClearContentProvider(FileSys::ContentProviderUnionSlot slot);
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const Reporter& GetReporter() const;
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Service::Glue::ARPManager& GetARPManager();
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const Service::Glue::ARPManager& GetARPManager() const;
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Service::APM::Controller& GetAPMController();
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const Service::APM::Controller& GetAPMController() const;
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Service::LM::Manager& GetLogManager();
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const Service::LM::Manager& GetLogManager() const;
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Service::Time::TimeManager& GetTimeManager();
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const Service::Time::TimeManager& GetTimeManager() const;
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void SetExitLock(bool locked);
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bool GetExitLock() const;
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void SetCurrentProcessBuildID(const CurrentBuildProcessID& id);
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const CurrentBuildProcessID& GetCurrentProcessBuildID() const;
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/// Register a host thread as an emulated CPU Core.
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void RegisterCoreThread(std::size_t id);
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/// Register a host thread as an auxiliary thread.
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void RegisterHostThread();
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/// Enter Dynarmic Microprofile
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void EnterDynarmicProfile();
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/// Exit Dynarmic Microprofile
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void ExitDynarmicProfile();
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/// Tells if system is running on multicore.
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bool IsMulticore() const;
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private:
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System();
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/**
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* Initialize the emulated system.
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* @param emu_window Reference to the host-system window used for video output and keyboard
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* input.
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* @return ResultStatus code, indicating if the operation succeeded.
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*/
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ResultStatus Init(Frontend::EmuWindow& emu_window);
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struct Impl;
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std::unique_ptr<Impl> impl;
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static System s_instance;
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};
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} // namespace Core
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