Ryujinx/Ryujinx.Headless.SDL2/WindowBase.cs
riperiperi ec3e848d79
Add a Multithreading layer for the GAL, multi-thread shader compilation at runtime (#2501)
* Initial Implementation

About as fast as nvidia GL multithreading, can be improved with faster command queuing.

* Struct based command list

Speeds up a bit. Still a lot of time lost to resource copy.

* Do shader init while the render thread is active.

* Introduce circular span pool V1

Ideally should be able to use structs instead of references for storing these spans on commands. Will try that next.

* Refactor SpanRef some more

Use a struct to represent SpanRef, rather than a reference.

* Flush buffers on background thread

* Use a span for UpdateRenderScale.

Much faster than copying the array.

* Calculate command size using reflection

* WIP parallel shaders

* Some minor optimisation

* Only 2 max refs per command now.

The command with 3 refs is gone. 😌

* Don't cast on the GPU side

* Remove redundant casts, force sync on window present

* Fix Shader Cache

* Fix host shader save.

* Fixup to work with new renderer stuff

* Make command Run static, use array of delegates as lookup

Profile says this takes less time than the previous way.

* Bring up to date

* Add settings toggle. Fix Muiltithreading Off mode.

* Fix warning.

* Release tracking lock for flushes

* Fix Conditional Render fast path with threaded gal

* Make handle iteration safe when releasing the lock

This is mostly temporary.

* Attempt to set backend threading on driver

Only really works on nvidia before launching a game.

* Fix race condition with BufferModifiedRangeList, exceptions in tracking actions

* Update buffer set commands

* Some cleanup

* Only use stutter workaround when using opengl renderer non-threaded

* Add host-conditional reservation of counter events

There has always been the possibility that conditional rendering could use a query object just as it is disposed by the counter queue. This change makes it so that when the host decides to use host conditional rendering, the query object is reserved so that it cannot be deleted. Counter events can optionally start reserved, as the threaded implementation can reserve them before the backend creates them, and there would otherwise be a short amount of time where the counter queue could dispose the event before a call to reserve it could be made.

* Address Feedback

* Make counter flush tracked again.

Hopefully does not cause any issues this time.

* Wait for FlushTo on the main queue thread.

Currently assumes only one thread will want to FlushTo (in this case, the GPU thread)

* Add SDL2 headless integration

* Add HLE macro commands.

Co-authored-by: Mary <mary@mary.zone>
2021-08-27 00:31:29 +02:00

410 lines
14 KiB
C#

using ARMeilleure.Translation;
using Ryujinx.Common.Configuration;
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Logging;
using Ryujinx.Graphics.GAL;
using Ryujinx.Graphics.GAL.Multithreading;
using Ryujinx.HLE;
using Ryujinx.HLE.HOS.Applets;
using Ryujinx.HLE.HOS.Services.Am.AppletOE.ApplicationProxyService.ApplicationProxy.Types;
using Ryujinx.HLE.HOS.Services.Hid;
using Ryujinx.Input;
using Ryujinx.Input.HLE;
using Ryujinx.SDL2.Common;
using System;
using System.Collections.Generic;
using System.Diagnostics;
using System.Threading;
using static SDL2.SDL;
using Switch = Ryujinx.HLE.Switch;
namespace Ryujinx.Headless.SDL2
{
abstract class WindowBase : IHostUiHandler, IDisposable
{
protected const int DefaultWidth = 1280;
protected const int DefaultHeight = 720;
private const SDL_WindowFlags DefaultFlags = SDL_WindowFlags.SDL_WINDOW_ALLOW_HIGHDPI | SDL_WindowFlags.SDL_WINDOW_RESIZABLE | SDL_WindowFlags.SDL_WINDOW_INPUT_FOCUS | SDL_WindowFlags.SDL_WINDOW_SHOWN;
private const int TargetFps = 60;
public NpadManager NpadManager { get; }
public TouchScreenManager TouchScreenManager { get; }
public Switch Device { get; private set; }
public IRenderer Renderer { get; private set; }
public event EventHandler<StatusUpdatedEventArgs> StatusUpdatedEvent;
protected IntPtr WindowHandle { get; set; }
protected SDL2MouseDriver MouseDriver;
private InputManager _inputManager;
private IKeyboard _keyboardInterface;
private GraphicsDebugLevel _glLogLevel;
private readonly Stopwatch _chrono;
private readonly long _ticksPerFrame;
private readonly ManualResetEvent _exitEvent;
private long _ticks;
private bool _isActive;
private bool _isStopped;
private uint _windowId;
private string _gpuVendorName;
private AspectRatio _aspectRatio;
private bool _enableMouse;
public WindowBase(InputManager inputManager, GraphicsDebugLevel glLogLevel, AspectRatio aspectRatio, bool enableMouse)
{
MouseDriver = new SDL2MouseDriver();
_inputManager = inputManager;
_inputManager.SetMouseDriver(MouseDriver);
NpadManager = _inputManager.CreateNpadManager();
TouchScreenManager = _inputManager.CreateTouchScreenManager();
_keyboardInterface = (IKeyboard)_inputManager.KeyboardDriver.GetGamepad("0");
_glLogLevel = glLogLevel;
_chrono = new Stopwatch();
_ticksPerFrame = Stopwatch.Frequency / TargetFps;
_exitEvent = new ManualResetEvent(false);
_aspectRatio = aspectRatio;
_enableMouse = enableMouse;
SDL2Driver.Instance.Initialize();
}
public void Initialize(Switch device, List<InputConfig> inputConfigs, bool enableKeyboard, bool enableMouse)
{
Device = device;
IRenderer renderer = Device.Gpu.Renderer;
if (renderer is ThreadedRenderer tr)
{
renderer = tr.BaseRenderer;
}
Renderer = renderer;
NpadManager.Initialize(device, inputConfigs, enableKeyboard, enableMouse);
TouchScreenManager.Initialize(device);
}
private void InitializeWindow()
{
string titleNameSection = string.IsNullOrWhiteSpace(Device.Application.TitleName) ? string.Empty
: $" - {Device.Application.TitleName}";
string titleVersionSection = string.IsNullOrWhiteSpace(Device.Application.DisplayVersion) ? string.Empty
: $" v{Device.Application.DisplayVersion}";
string titleIdSection = string.IsNullOrWhiteSpace(Device.Application.TitleIdText) ? string.Empty
: $" ({Device.Application.TitleIdText.ToUpper()})";
string titleArchSection = Device.Application.TitleIs64Bit ? " (64-bit)" : " (32-bit)";
WindowHandle = SDL_CreateWindow($"Ryujinx {Program.Version}{titleNameSection}{titleVersionSection}{titleIdSection}{titleArchSection}", SDL_WINDOWPOS_UNDEFINED, SDL_WINDOWPOS_UNDEFINED, DefaultWidth, DefaultHeight, DefaultFlags | GetWindowFlags());
if (WindowHandle == IntPtr.Zero)
{
string errorMessage = $"SDL_CreateWindow failed with error \"{SDL_GetError()}\"";
Logger.Error?.Print(LogClass.Application, errorMessage);
throw new Exception(errorMessage);
}
_windowId = SDL_GetWindowID(WindowHandle);
SDL2Driver.Instance.RegisterWindow(_windowId, HandleWindowEvent);
}
private void HandleWindowEvent(SDL_Event evnt)
{
if (evnt.type == SDL_EventType.SDL_WINDOWEVENT)
{
switch (evnt.window.windowEvent)
{
case SDL_WindowEventID.SDL_WINDOWEVENT_SIZE_CHANGED:
Renderer?.Window.SetSize(evnt.window.data1, evnt.window.data2);
MouseDriver.SetClientSize(evnt.window.data1, evnt.window.data2);
break;
case SDL_WindowEventID.SDL_WINDOWEVENT_CLOSE:
Exit();
break;
default:
break;
}
}
else
{
MouseDriver.Update(evnt);
}
}
protected abstract void InitializeRenderer();
protected abstract void FinalizeRenderer();
protected abstract void SwapBuffers();
protected abstract string GetGpuVendorName();
public abstract SDL_WindowFlags GetWindowFlags();
public void Render()
{
InitializeRenderer();
Device.Gpu.Renderer.Initialize(_glLogLevel);
_gpuVendorName = GetGpuVendorName();
Device.Gpu.Renderer.RunLoop(() =>
{
Device.Gpu.InitializeShaderCache();
Translator.IsReadyForTranslation.Set();
while (_isActive)
{
if (_isStopped)
{
return;
}
_ticks += _chrono.ElapsedTicks;
_chrono.Restart();
if (Device.WaitFifo())
{
Device.Statistics.RecordFifoStart();
Device.ProcessFrame();
Device.Statistics.RecordFifoEnd();
}
while (Device.ConsumeFrameAvailable())
{
Device.PresentFrame(SwapBuffers);
}
if (_ticks >= _ticksPerFrame)
{
string dockedMode = Device.System.State.DockedMode ? "Docked" : "Handheld";
float scale = Graphics.Gpu.GraphicsConfig.ResScale;
if (scale != 1)
{
dockedMode += $" ({scale}x)";
}
StatusUpdatedEvent?.Invoke(this, new StatusUpdatedEventArgs(
Device.EnableDeviceVsync,
dockedMode,
Device.Configuration.AspectRatio.ToText(),
$"Game: {Device.Statistics.GetGameFrameRate():00.00} FPS",
$"FIFO: {Device.Statistics.GetFifoPercent():0.00} %",
$"GPU: {_gpuVendorName}"));
_ticks = Math.Min(_ticks - _ticksPerFrame, _ticksPerFrame);
}
}
});
FinalizeRenderer();
}
public void Exit()
{
TouchScreenManager?.Dispose();
NpadManager?.Dispose();
if (_isStopped)
{
return;
}
_isStopped = true;
_isActive = false;
_exitEvent.WaitOne();
_exitEvent.Dispose();
}
public void MainLoop()
{
while (_isActive)
{
UpdateFrame();
SDL_PumpEvents();
// Polling becomes expensive if it's not slept
Thread.Sleep(1);
}
_exitEvent.Set();
}
private void NVStutterWorkaround()
{
while (_isActive)
{
// When NVIDIA Threaded Optimization is on, the driver will snapshot all threads in the system whenever the application creates any new ones.
// The ThreadPool has something called a "GateThread" which terminates itself after some inactivity.
// However, it immediately starts up again, since the rules regarding when to terminate and when to start differ.
// This creates a new thread every second or so.
// The main problem with this is that the thread snapshot can take 70ms, is on the OpenGL thread and will delay rendering any graphics.
// This is a little over budget on a frame time of 16ms, so creates a large stutter.
// The solution is to keep the ThreadPool active so that it never has a reason to terminate the GateThread.
// TODO: This should be removed when the issue with the GateThread is resolved.
ThreadPool.QueueUserWorkItem((state) => { });
Thread.Sleep(300);
}
}
private bool UpdateFrame()
{
if (!_isActive)
{
return true;
}
if (_isStopped)
{
return false;
}
NpadManager.Update();
// Touchscreen
bool hasTouch = false;
// Get screen touch position
if (!_enableMouse)
{
hasTouch = TouchScreenManager.Update(true, (_inputManager.MouseDriver as SDL2MouseDriver).IsButtonPressed(MouseButton.Button1), _aspectRatio.ToFloat());
}
if (!hasTouch)
{
TouchScreenManager.Update(false);
}
Device.Hid.DebugPad.Update();
return true;
}
public void Execute()
{
_chrono.Restart();
_isActive = true;
InitializeWindow();
Thread renderLoopThread = new Thread(Render)
{
Name = "GUI.RenderLoop"
};
renderLoopThread.Start();
Thread nvStutterWorkaround = null;
if (Renderer is Graphics.OpenGL.Renderer)
{
nvStutterWorkaround = new Thread(NVStutterWorkaround)
{
Name = "GUI.NVStutterWorkaround"
};
nvStutterWorkaround.Start();
}
MainLoop();
renderLoopThread.Join();
nvStutterWorkaround?.Join();
Exit();
}
public bool DisplayInputDialog(SoftwareKeyboardUiArgs args, out string userText)
{
// SDL2 doesn't support input dialogs
userText = "Ryujinx";
return true;
}
public bool DisplayMessageDialog(string title, string message)
{
SDL_ShowSimpleMessageBox(SDL_MessageBoxFlags.SDL_MESSAGEBOX_INFORMATION, title, message, WindowHandle);
return true;
}
public bool DisplayMessageDialog(ControllerAppletUiArgs args)
{
string playerCount = args.PlayerCountMin == args.PlayerCountMax ? $"exactly {args.PlayerCountMin}" : $"{args.PlayerCountMin}-{args.PlayerCountMax}";
string message = $"Application requests {playerCount} player(s) with:\n\n"
+ $"TYPES: {args.SupportedStyles}\n\n"
+ $"PLAYERS: {string.Join(", ", args.SupportedPlayers)}\n\n"
+ (args.IsDocked ? "Docked mode set. Handheld is also invalid.\n\n" : "")
+ "Please reconfigure Input now and then press OK.";
return DisplayMessageDialog("Controller Applet", message);
}
public void ExecuteProgram(Switch device, ProgramSpecifyKind kind, ulong value)
{
device.Configuration.UserChannelPersistence.ExecuteProgram(kind, value);
Exit();
}
public bool DisplayErrorAppletDialog(string title, string message, string[] buttonsText)
{
SDL_MessageBoxData data = new SDL_MessageBoxData
{
title = title,
message = message,
buttons = new SDL_MessageBoxButtonData[buttonsText.Length],
numbuttons = buttonsText.Length,
window = WindowHandle
};
for (int i = 0; i < buttonsText.Length; i++)
{
data.buttons[i] = new SDL_MessageBoxButtonData
{
buttonid = i,
text = buttonsText[i]
};
}
SDL_ShowMessageBox(ref data, out int _);
return true;
}
public void Dispose()
{
Dispose(true);
}
protected virtual void Dispose(bool disposing)
{
if (disposing)
{
_isActive = false;
TouchScreenManager?.Dispose();
NpadManager.Dispose();
SDL2Driver.Instance.UnregisterWindow(_windowId);
SDL_DestroyWindow(WindowHandle);
SDL2Driver.Instance.Dispose();
}
}
}
}