pineapple/src/core/cpu_manager.cpp

227 lines
7.1 KiB
C++
Raw Normal View History

2022-04-23 20:49:07 +02:00
// SPDX-FileCopyrightText: Copyright 2018 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
2020-12-28 16:15:37 +01:00
#include "common/fiber.h"
#include "common/microprofile.h"
#include "common/scope_exit.h"
#include "common/thread.h"
#include "core/core.h"
#include "core/core_timing.h"
#include "core/cpu_manager.h"
#include "core/hle/kernel/k_scheduler.h"
2021-01-22 01:15:25 +01:00
#include "core/hle/kernel/k_thread.h"
2020-12-28 16:15:37 +01:00
#include "core/hle/kernel/kernel.h"
#include "core/hle/kernel/physical_core.h"
#include "video_core/gpu.h"
namespace Core {
2022-06-14 03:25:44 +02:00
CpuManager::CpuManager(System& system_) : system{system_} {}
2020-12-28 16:15:37 +01:00
CpuManager::~CpuManager() = default;
2021-09-04 02:08:38 +02:00
void CpuManager::ThreadStart(std::stop_token stop_token, CpuManager& cpu_manager,
std::size_t core) {
2022-06-14 03:25:44 +02:00
cpu_manager.RunThread(core);
2020-12-28 16:15:37 +01:00
}
void CpuManager::Initialize() {
2022-06-14 03:25:44 +02:00
num_cores = is_multicore ? Core::Hardware::NUM_CPU_CORES : 1;
2022-06-17 10:13:07 +02:00
gpu_barrier = std::make_unique<Common::Barrier>(num_cores + 1);
2022-06-14 03:25:44 +02:00
for (std::size_t core = 0; core < num_cores; core++) {
core_data[core].host_thread = std::jthread(ThreadStart, std::ref(*this), core);
2020-12-28 16:15:37 +01:00
}
}
void CpuManager::Shutdown() {
2022-07-10 14:59:48 +02:00
for (std::size_t core = 0; core < num_cores; core++) {
if (core_data[core].host_thread.joinable()) {
core_data[core].host_thread.join();
}
}
2020-12-28 16:15:37 +01:00
}
2022-07-03 10:24:53 +02:00
void CpuManager::GuestThreadFunction() {
if (is_multicore) {
MultiCoreRunGuestThread();
2020-12-28 16:15:37 +01:00
} else {
2022-07-03 10:24:53 +02:00
SingleCoreRunGuestThread();
2020-12-28 16:15:37 +01:00
}
}
2022-07-11 07:10:50 +02:00
void CpuManager::GuestRewindFunction() {
if (is_multicore) {
MultiCoreRunGuestLoop();
} else {
SingleCoreRunGuestLoop();
}
}
2022-07-03 10:24:53 +02:00
void CpuManager::IdleThreadFunction() {
if (is_multicore) {
MultiCoreRunIdleThread();
2020-12-28 16:15:37 +01:00
} else {
2022-07-03 10:24:53 +02:00
SingleCoreRunIdleThread();
2020-12-28 16:15:37 +01:00
}
}
2022-07-10 14:59:48 +02:00
void CpuManager::ShutdownThreadFunction() {
ShutdownThread();
}
2020-12-28 16:15:37 +01:00
///////////////////////////////////////////////////////////////////////////////
/// MultiCore ///
///////////////////////////////////////////////////////////////////////////////
void CpuManager::MultiCoreRunGuestThread() {
auto& kernel = system.Kernel();
kernel.CurrentScheduler()->OnThreadStart();
2022-07-11 07:10:50 +02:00
auto* thread = kernel.CurrentScheduler()->GetSchedulerCurrentThread();
auto& host_context = thread->GetHostContext();
host_context->SetRewindPoint([this] { GuestRewindFunction(); });
MultiCoreRunGuestLoop();
}
void CpuManager::MultiCoreRunGuestLoop() {
auto& kernel = system.Kernel();
2020-12-28 16:15:37 +01:00
while (true) {
auto* physical_core = &kernel.CurrentPhysicalCore();
while (!physical_core->IsInterrupted()) {
physical_core->Run();
physical_core = &kernel.CurrentPhysicalCore();
}
2022-07-11 07:10:50 +02:00
{
Kernel::KScopedDisableDispatch dd(kernel);
physical_core->ArmInterface().ClearExclusiveState();
}
2020-12-28 16:15:37 +01:00
}
}
void CpuManager::MultiCoreRunIdleThread() {
auto& kernel = system.Kernel();
while (true) {
2022-07-11 07:10:50 +02:00
Kernel::KScopedDisableDispatch dd(kernel);
kernel.CurrentPhysicalCore().Idle();
2020-12-28 16:15:37 +01:00
}
}
///////////////////////////////////////////////////////////////////////////////
/// SingleCore ///
///////////////////////////////////////////////////////////////////////////////
void CpuManager::SingleCoreRunGuestThread() {
auto& kernel = system.Kernel();
kernel.CurrentScheduler()->OnThreadStart();
2022-07-11 07:10:50 +02:00
auto* thread = kernel.CurrentScheduler()->GetSchedulerCurrentThread();
auto& host_context = thread->GetHostContext();
host_context->SetRewindPoint([this] { GuestRewindFunction(); });
SingleCoreRunGuestLoop();
}
2020-12-28 16:15:37 +01:00
2022-07-11 07:10:50 +02:00
void CpuManager::SingleCoreRunGuestLoop() {
auto& kernel = system.Kernel();
2020-12-28 16:15:37 +01:00
while (true) {
auto* physical_core = &kernel.CurrentPhysicalCore();
if (!physical_core->IsInterrupted()) {
physical_core->Run();
physical_core = &kernel.CurrentPhysicalCore();
}
2021-01-22 01:15:25 +01:00
kernel.SetIsPhantomModeForSingleCore(true);
2020-12-28 16:15:37 +01:00
system.CoreTiming().Advance();
2021-01-22 01:15:25 +01:00
kernel.SetIsPhantomModeForSingleCore(false);
2022-07-11 07:10:50 +02:00
physical_core->ArmInterface().ClearExclusiveState();
2020-12-28 16:15:37 +01:00
PreemptSingleCore();
2022-07-11 07:10:50 +02:00
auto& scheduler = kernel.Scheduler(current_core);
scheduler.RescheduleCurrentCore();
2020-12-28 16:15:37 +01:00
}
}
void CpuManager::SingleCoreRunIdleThread() {
auto& kernel = system.Kernel();
while (true) {
2022-07-11 07:10:50 +02:00
auto& physical_core = kernel.CurrentPhysicalCore();
2020-12-28 16:15:37 +01:00
PreemptSingleCore(false);
system.CoreTiming().AddTicks(1000U);
idle_count++;
2022-07-11 07:10:50 +02:00
auto& scheduler = physical_core.Scheduler();
scheduler.RescheduleCurrentCore();
2020-12-28 16:15:37 +01:00
}
}
2022-07-11 07:10:50 +02:00
void CpuManager::PreemptSingleCore(bool from_running_enviroment) {
{
auto& kernel = system.Kernel();
auto& scheduler = kernel.Scheduler(current_core);
Kernel::KThread* current_thread = scheduler.GetSchedulerCurrentThread();
if (idle_count >= 4 || from_running_enviroment) {
if (!from_running_enviroment) {
system.CoreTiming().Idle();
idle_count = 0;
}
kernel.SetIsPhantomModeForSingleCore(true);
system.CoreTiming().Advance();
kernel.SetIsPhantomModeForSingleCore(false);
}
current_core.store((current_core + 1) % Core::Hardware::NUM_CPU_CORES);
system.CoreTiming().ResetTicks();
scheduler.Unload(scheduler.GetSchedulerCurrentThread());
2020-12-28 16:15:37 +01:00
2022-07-11 07:10:50 +02:00
auto& next_scheduler = kernel.Scheduler(current_core);
Common::Fiber::YieldTo(current_thread->GetHostContext(), *next_scheduler.ControlContext());
}
// May have changed scheduler
{
auto& scheduler = system.Kernel().Scheduler(current_core);
scheduler.Reload(scheduler.GetSchedulerCurrentThread());
if (!scheduler.IsIdle()) {
2022-07-01 03:13:52 +02:00
idle_count = 0;
}
2020-12-28 16:15:37 +01:00
}
}
2022-07-10 14:59:48 +02:00
void CpuManager::ShutdownThread() {
2022-06-14 03:25:44 +02:00
auto& kernel = system.Kernel();
2022-07-10 14:59:48 +02:00
auto core = is_multicore ? kernel.CurrentPhysicalCoreIndex() : 0;
2022-07-11 07:10:50 +02:00
auto* current_thread = kernel.GetCurrentEmuThread();
2022-06-10 22:06:26 +02:00
2022-07-11 07:10:50 +02:00
Common::Fiber::YieldTo(current_thread->GetHostContext(), *core_data[core].host_context);
2022-07-10 14:59:48 +02:00
UNREACHABLE();
2020-12-28 16:15:37 +01:00
}
2022-06-14 03:25:44 +02:00
void CpuManager::RunThread(std::size_t core) {
2020-12-28 16:15:37 +01:00
/// Initialization
system.RegisterCoreThread(core);
std::string name;
if (is_multicore) {
name = "yuzu:CPUCore_" + std::to_string(core);
} else {
name = "yuzu:CPUThread";
}
MicroProfileOnThreadCreate(name.c_str());
Common::SetCurrentThreadName(name.c_str());
Common::SetCurrentThreadPriority(Common::ThreadPriority::High);
auto& data = core_data[core];
data.host_context = Common::Fiber::ThreadToFiber();
// Cleanup
SCOPE_EXIT({
data.host_context->Exit();
MicroProfileOnThreadExit();
});
2022-06-14 03:25:44 +02:00
// Running
2022-06-17 10:13:07 +02:00
gpu_barrier->Sync();
2022-06-14 03:25:44 +02:00
if (!is_async_gpu && !is_multicore) {
system.GPU().ObtainContext();
2020-12-28 16:15:37 +01:00
}
2022-06-14 03:25:44 +02:00
2022-07-11 07:10:50 +02:00
auto* current_thread = system.Kernel().CurrentScheduler()->GetIdleThread();
Kernel::SetCurrentThread(system.Kernel(), current_thread);
Common::Fiber::YieldTo(data.host_context, *current_thread->GetHostContext());
2020-12-28 16:15:37 +01:00
}
} // namespace Core