Horizon.cs 18 KB

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  1. using LibHac;
  2. using LibHac.Bcat;
  3. using LibHac.Fs;
  4. using LibHac.FsSystem;
  5. using Ryujinx.Audio;
  6. using Ryujinx.Audio.Input;
  7. using Ryujinx.Audio.Integration;
  8. using Ryujinx.Audio.Output;
  9. using Ryujinx.Audio.Renderer.Device;
  10. using Ryujinx.Audio.Renderer.Server;
  11. using Ryujinx.Common;
  12. using Ryujinx.Common.Logging;
  13. using Ryujinx.Configuration;
  14. using Ryujinx.HLE.FileSystem.Content;
  15. using Ryujinx.HLE.HOS.Font;
  16. using Ryujinx.HLE.HOS.Kernel;
  17. using Ryujinx.HLE.HOS.Kernel.Memory;
  18. using Ryujinx.HLE.HOS.Kernel.Process;
  19. using Ryujinx.HLE.HOS.Kernel.Threading;
  20. using Ryujinx.HLE.HOS.Services;
  21. using Ryujinx.HLE.HOS.Services.Am.AppletAE.AllSystemAppletProxiesService.SystemAppletProxy;
  22. using Ryujinx.HLE.HOS.Services.Apm;
  23. using Ryujinx.HLE.HOS.Services.Arp;
  24. using Ryujinx.HLE.HOS.Services.Audio.AudioRenderer;
  25. using Ryujinx.HLE.HOS.Services.Caps;
  26. using Ryujinx.HLE.HOS.Services.Mii;
  27. using Ryujinx.HLE.HOS.Services.Nfc.Nfp.UserManager;
  28. using Ryujinx.HLE.HOS.Services.Nv;
  29. using Ryujinx.HLE.HOS.Services.Nv.NvDrvServices.NvHostCtrl;
  30. using Ryujinx.HLE.HOS.Services.Pcv.Bpc;
  31. using Ryujinx.HLE.HOS.Services.Settings;
  32. using Ryujinx.HLE.HOS.Services.Sm;
  33. using Ryujinx.HLE.HOS.Services.SurfaceFlinger;
  34. using Ryujinx.HLE.HOS.Services.Time.Clock;
  35. using Ryujinx.HLE.HOS.SystemState;
  36. using Ryujinx.HLE.Loaders.Executables;
  37. using Ryujinx.HLE.Utilities;
  38. using System;
  39. using System.Collections.Generic;
  40. using System.IO;
  41. using System.Linq;
  42. using System.Threading;
  43. namespace Ryujinx.HLE.HOS
  44. {
  45. using TimeServiceManager = Services.Time.TimeManager;
  46. public class Horizon : IDisposable
  47. {
  48. internal const int HidSize = 0x40000;
  49. internal const int FontSize = 0x1100000;
  50. internal const int IirsSize = 0x8000;
  51. internal const int TimeSize = 0x1000;
  52. internal KernelContext KernelContext { get; }
  53. internal Switch Device { get; private set; }
  54. internal SurfaceFlinger SurfaceFlinger { get; private set; }
  55. internal AudioManager AudioManager { get; private set; }
  56. internal AudioOutputManager AudioOutputManager { get; private set; }
  57. internal AudioInputManager AudioInputManager { get; private set; }
  58. internal AudioRendererManager AudioRendererManager { get; private set; }
  59. internal VirtualDeviceSessionRegistry AudioDeviceSessionRegistry { get; private set; }
  60. public SystemStateMgr State { get; private set; }
  61. internal PerformanceState PerformanceState { get; private set; }
  62. internal AppletStateMgr AppletState { get; private set; }
  63. internal List<NfpDevice> NfpDevices { get; private set; }
  64. internal ServerBase BsdServer { get; private set; }
  65. internal ServerBase AudRenServer { get; private set; }
  66. internal ServerBase AudOutServer { get; private set; }
  67. internal ServerBase HidServer { get; private set; }
  68. internal ServerBase NvDrvServer { get; private set; }
  69. internal ServerBase TimeServer { get; private set; }
  70. internal ServerBase ViServer { get; private set; }
  71. internal ServerBase ViServerM { get; private set; }
  72. internal ServerBase ViServerS { get; private set; }
  73. internal KSharedMemory HidSharedMem { get; private set; }
  74. internal KSharedMemory FontSharedMem { get; private set; }
  75. internal KSharedMemory IirsSharedMem { get; private set; }
  76. internal SharedFontManager Font { get; private set; }
  77. internal ContentManager ContentManager { get; private set; }
  78. internal CaptureManager CaptureManager { get; private set; }
  79. internal KEvent VsyncEvent { get; private set; }
  80. internal KEvent DisplayResolutionChangeEvent { get; private set; }
  81. public Keyset KeySet => Device.FileSystem.KeySet;
  82. private bool _isDisposed;
  83. public bool EnablePtc { get; set; }
  84. public IntegrityCheckLevel FsIntegrityCheckLevel { get; set; }
  85. public int GlobalAccessLogMode { get; set; }
  86. internal ulong HidBaseAddress { get; private set; }
  87. internal NvHostSyncpt HostSyncpoint { get; private set; }
  88. internal LibHac.Horizon LibHacHorizonServer { get; private set; }
  89. internal HorizonClient LibHacHorizonClient { get; private set; }
  90. public Horizon(Switch device, ContentManager contentManager, MemoryConfiguration memoryConfiguration)
  91. {
  92. KernelContext = new KernelContext(
  93. device,
  94. device.Memory,
  95. memoryConfiguration.ToKernelMemorySize(),
  96. memoryConfiguration.ToKernelMemoryArrange());
  97. Device = device;
  98. State = new SystemStateMgr();
  99. PerformanceState = new PerformanceState();
  100. NfpDevices = new List<NfpDevice>();
  101. // Note: This is not really correct, but with HLE of services, the only memory
  102. // region used that is used is Application, so we can use the other ones for anything.
  103. KMemoryRegionManager region = KernelContext.MemoryRegions[(int)MemoryRegion.NvServices];
  104. ulong hidPa = region.Address;
  105. ulong fontPa = region.Address + HidSize;
  106. ulong iirsPa = region.Address + HidSize + FontSize;
  107. ulong timePa = region.Address + HidSize + FontSize + IirsSize;
  108. HidBaseAddress = hidPa - DramMemoryMap.DramBase;
  109. KPageList hidPageList = new KPageList();
  110. KPageList fontPageList = new KPageList();
  111. KPageList iirsPageList = new KPageList();
  112. KPageList timePageList = new KPageList();
  113. hidPageList .AddRange(hidPa, HidSize / KMemoryManager.PageSize);
  114. fontPageList.AddRange(fontPa, FontSize / KMemoryManager.PageSize);
  115. iirsPageList.AddRange(iirsPa, IirsSize / KMemoryManager.PageSize);
  116. timePageList.AddRange(timePa, TimeSize / KMemoryManager.PageSize);
  117. HidSharedMem = new KSharedMemory(KernelContext, hidPageList, 0, 0, KMemoryPermission.Read);
  118. FontSharedMem = new KSharedMemory(KernelContext, fontPageList, 0, 0, KMemoryPermission.Read);
  119. IirsSharedMem = new KSharedMemory(KernelContext, iirsPageList, 0, 0, KMemoryPermission.Read);
  120. KSharedMemory timeSharedMemory = new KSharedMemory(KernelContext, timePageList, 0, 0, KMemoryPermission.Read);
  121. TimeServiceManager.Instance.Initialize(device, this, timeSharedMemory, timePa - DramMemoryMap.DramBase, TimeSize);
  122. AppletState = new AppletStateMgr(this);
  123. AppletState.SetFocus(true);
  124. Font = new SharedFontManager(device, fontPa - DramMemoryMap.DramBase);
  125. VsyncEvent = new KEvent(KernelContext);
  126. DisplayResolutionChangeEvent = new KEvent(KernelContext);
  127. ContentManager = contentManager;
  128. CaptureManager = new CaptureManager(device);
  129. // TODO: use set:sys (and get external clock source id from settings)
  130. // TODO: use "time!standard_steady_clock_rtc_update_interval_minutes" and implement a worker thread to be accurate.
  131. UInt128 clockSourceId = new UInt128(Guid.NewGuid().ToByteArray());
  132. IRtcManager.GetExternalRtcValue(out ulong rtcValue);
  133. // We assume the rtc is system time.
  134. TimeSpanType systemTime = TimeSpanType.FromSeconds((long)rtcValue);
  135. // Configure and setup internal offset
  136. TimeSpanType internalOffset = TimeSpanType.FromSeconds(ConfigurationState.Instance.System.SystemTimeOffset);
  137. TimeSpanType systemTimeOffset = new TimeSpanType(systemTime.NanoSeconds + internalOffset.NanoSeconds);
  138. if (systemTime.IsDaylightSavingTime() && !systemTimeOffset.IsDaylightSavingTime())
  139. {
  140. internalOffset = internalOffset.AddSeconds(3600L);
  141. }
  142. else if (!systemTime.IsDaylightSavingTime() && systemTimeOffset.IsDaylightSavingTime())
  143. {
  144. internalOffset = internalOffset.AddSeconds(-3600L);
  145. }
  146. internalOffset = new TimeSpanType(-internalOffset.NanoSeconds);
  147. // First init the standard steady clock
  148. TimeServiceManager.Instance.SetupStandardSteadyClock(null, clockSourceId, systemTime, internalOffset, TimeSpanType.Zero, false);
  149. TimeServiceManager.Instance.SetupStandardLocalSystemClock(null, new SystemClockContext(), systemTime.ToSeconds());
  150. if (NxSettings.Settings.TryGetValue("time!standard_network_clock_sufficient_accuracy_minutes", out object standardNetworkClockSufficientAccuracyMinutes))
  151. {
  152. TimeSpanType standardNetworkClockSufficientAccuracy = new TimeSpanType((int)standardNetworkClockSufficientAccuracyMinutes * 60000000000);
  153. // The network system clock needs a valid system clock, as such we setup this system clock using the local system clock.
  154. TimeServiceManager.Instance.StandardLocalSystemClock.GetClockContext(null, out SystemClockContext localSytemClockContext);
  155. TimeServiceManager.Instance.SetupStandardNetworkSystemClock(localSytemClockContext, standardNetworkClockSufficientAccuracy);
  156. }
  157. TimeServiceManager.Instance.SetupStandardUserSystemClock(null, false, SteadyClockTimePoint.GetRandom());
  158. // FIXME: TimeZone shoud be init here but it's actually done in ContentManager
  159. TimeServiceManager.Instance.SetupEphemeralNetworkSystemClock();
  160. DatabaseImpl.Instance.InitializeDatabase(device);
  161. HostSyncpoint = new NvHostSyncpt(device);
  162. SurfaceFlinger = new SurfaceFlinger(device);
  163. ConfigurationState.Instance.System.EnableDockedMode.Event += OnDockedModeChange;
  164. InitLibHacHorizon();
  165. InitializeAudioRenderer();
  166. }
  167. private void InitializeAudioRenderer()
  168. {
  169. AudioManager = new AudioManager();
  170. AudioOutputManager = new AudioOutputManager();
  171. AudioInputManager = new AudioInputManager();
  172. AudioRendererManager = new AudioRendererManager();
  173. AudioDeviceSessionRegistry = new VirtualDeviceSessionRegistry();
  174. IWritableEvent[] audioOutputRegisterBufferEvents = new IWritableEvent[Constants.AudioOutSessionCountMax];
  175. for (int i = 0; i < audioOutputRegisterBufferEvents.Length; i++)
  176. {
  177. KEvent registerBufferEvent = new KEvent(KernelContext);
  178. audioOutputRegisterBufferEvents[i] = new AudioKernelEvent(registerBufferEvent);
  179. }
  180. AudioOutputManager.Initialize(Device.AudioDeviceDriver, audioOutputRegisterBufferEvents);
  181. IWritableEvent[] audioInputRegisterBufferEvents = new IWritableEvent[Constants.AudioInSessionCountMax];
  182. for (int i = 0; i < audioInputRegisterBufferEvents.Length; i++)
  183. {
  184. KEvent registerBufferEvent = new KEvent(KernelContext);
  185. audioInputRegisterBufferEvents[i] = new AudioKernelEvent(registerBufferEvent);
  186. }
  187. AudioInputManager.Initialize(Device.AudioDeviceDriver, audioInputRegisterBufferEvents);
  188. IWritableEvent[] systemEvents = new IWritableEvent[Constants.AudioRendererSessionCountMax];
  189. for (int i = 0; i < systemEvents.Length; i++)
  190. {
  191. KEvent systemEvent = new KEvent(KernelContext);
  192. systemEvents[i] = new AudioKernelEvent(systemEvent);
  193. }
  194. AudioManager.Initialize(Device.AudioDeviceDriver.GetUpdateRequiredEvent(), AudioOutputManager.Update, AudioInputManager.Update);
  195. AudioRendererManager.Initialize(systemEvents, Device.AudioDeviceDriver);
  196. AudioManager.Start();
  197. }
  198. public void InitializeServices()
  199. {
  200. IUserInterface sm = new IUserInterface(KernelContext);
  201. // Wait until SM server thread is done with initialization,
  202. // only then doing connections to SM is safe.
  203. sm.Server.InitDone.WaitOne();
  204. sm.Server.InitDone.Dispose();
  205. BsdServer = new ServerBase(KernelContext, "BsdServer");
  206. AudRenServer = new ServerBase(KernelContext, "AudioRendererServer");
  207. AudOutServer = new ServerBase(KernelContext, "AudioOutServer");
  208. HidServer = new ServerBase(KernelContext, "HidServer");
  209. NvDrvServer = new ServerBase(KernelContext, "NvservicesServer");
  210. TimeServer = new ServerBase(KernelContext, "TimeServer");
  211. ViServer = new ServerBase(KernelContext, "ViServerU");
  212. ViServerM = new ServerBase(KernelContext, "ViServerM");
  213. ViServerS = new ServerBase(KernelContext, "ViServerS");
  214. }
  215. public void LoadKip(string kipPath)
  216. {
  217. using IStorage kipFile = new LocalStorage(kipPath, FileAccess.Read);
  218. ProgramLoader.LoadKip(KernelContext, new KipExecutable(kipFile));
  219. }
  220. private void InitLibHacHorizon()
  221. {
  222. LibHac.Horizon horizon = new LibHac.Horizon(null, Device.FileSystem.FsServer);
  223. horizon.CreateHorizonClient(out HorizonClient ryujinxClient).ThrowIfFailure();
  224. horizon.CreateHorizonClient(out HorizonClient bcatClient).ThrowIfFailure();
  225. ryujinxClient.Sm.RegisterService(new LibHacIReader(this), "arp:r").ThrowIfFailure();
  226. new BcatServer(bcatClient);
  227. LibHacHorizonServer = horizon;
  228. LibHacHorizonClient = ryujinxClient;
  229. }
  230. private void OnDockedModeChange(object sender, ReactiveEventArgs<bool> e)
  231. {
  232. if (e.NewValue != State.DockedMode)
  233. {
  234. State.DockedMode = e.NewValue;
  235. PerformanceState.PerformanceMode = State.DockedMode ? PerformanceMode.Boost : PerformanceMode.Default;
  236. AppletState.Messages.Enqueue(MessageInfo.OperationModeChanged);
  237. AppletState.Messages.Enqueue(MessageInfo.PerformanceModeChanged);
  238. AppletState.MessageEvent.ReadableEvent.Signal();
  239. SignalDisplayResolutionChange();
  240. // Reconfigure controllers
  241. Device.Hid.RefreshInputConfig(ConfigurationState.Instance.Hid.InputConfig.Value);
  242. Logger.Info?.Print(LogClass.Application, $"IsDocked toggled to: {State.DockedMode}");
  243. }
  244. }
  245. public void SimulateWakeUpMessage()
  246. {
  247. AppletState.Messages.Enqueue(MessageInfo.Resume);
  248. AppletState.MessageEvent.ReadableEvent.Signal();
  249. }
  250. public void ScanAmiibo(int nfpDeviceId, string amiiboId, bool useRandomUuid)
  251. {
  252. if (NfpDevices[nfpDeviceId].State == NfpDeviceState.SearchingForTag)
  253. {
  254. NfpDevices[nfpDeviceId].State = NfpDeviceState.TagFound;
  255. NfpDevices[nfpDeviceId].AmiiboId = amiiboId;
  256. NfpDevices[nfpDeviceId].UseRandomUuid = useRandomUuid;
  257. }
  258. }
  259. public bool SearchingForAmiibo(out int nfpDeviceId)
  260. {
  261. nfpDeviceId = default;
  262. for (int i = 0; i < NfpDevices.Count; i++)
  263. {
  264. if (NfpDevices[i].State == NfpDeviceState.SearchingForTag)
  265. {
  266. nfpDeviceId = i;
  267. return true;
  268. }
  269. }
  270. return false;
  271. }
  272. public void SignalDisplayResolutionChange()
  273. {
  274. DisplayResolutionChangeEvent.ReadableEvent.Signal();
  275. }
  276. public void SignalVsync()
  277. {
  278. VsyncEvent.ReadableEvent.Signal();
  279. }
  280. public void Dispose()
  281. {
  282. Dispose(true);
  283. }
  284. protected virtual void Dispose(bool disposing)
  285. {
  286. if (!_isDisposed && disposing)
  287. {
  288. ConfigurationState.Instance.System.EnableDockedMode.Event -= OnDockedModeChange;
  289. _isDisposed = true;
  290. KProcess terminationProcess = new KProcess(KernelContext);
  291. KThread terminationThread = new KThread(KernelContext);
  292. terminationThread.Initialize(0, 0, 0, 3, 0, terminationProcess, ThreadType.Kernel, () =>
  293. {
  294. // Force all threads to exit.
  295. lock (KernelContext.Processes)
  296. {
  297. // Terminate application.
  298. foreach (KProcess process in KernelContext.Processes.Values.Where(x => x.Flags.HasFlag(ProcessCreationFlags.IsApplication)))
  299. {
  300. process.Terminate();
  301. }
  302. // The application existed, now surface flinger can exit too.
  303. SurfaceFlinger.Dispose();
  304. // Terminate HLE services (must be done after the application is already terminated,
  305. // otherwise the application will receive errors due to service termination.
  306. foreach (KProcess process in KernelContext.Processes.Values.Where(x => !x.Flags.HasFlag(ProcessCreationFlags.IsApplication)))
  307. {
  308. process.Terminate();
  309. }
  310. }
  311. // Exit ourself now!
  312. KernelStatic.GetCurrentThread().Exit();
  313. });
  314. terminationThread.Start();
  315. // Wait until the thread is actually started.
  316. while (terminationThread.HostThread.ThreadState == ThreadState.Unstarted)
  317. {
  318. Thread.Sleep(10);
  319. }
  320. // Wait until the termination thread is done terminating all the other threads.
  321. terminationThread.HostThread.Join();
  322. // Destroy nvservices channels as KThread could be waiting on some user events.
  323. // This is safe as KThread that are likely to call ioctls are going to be terminated by the post handler hook on the SVC facade.
  324. INvDrvServices.Destroy();
  325. AudioManager.Dispose();
  326. AudioOutputManager.Dispose();
  327. AudioInputManager.Dispose();
  328. AudioRendererManager.Dispose();
  329. KernelContext.Dispose();
  330. }
  331. }
  332. }
  333. }