ServerBase.cs 14 KB

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  1. using Ryujinx.Common;
  2. using Ryujinx.Common.Memory;
  3. using Ryujinx.HLE.HOS.Ipc;
  4. using Ryujinx.HLE.HOS.Kernel;
  5. using Ryujinx.HLE.HOS.Kernel.Ipc;
  6. using Ryujinx.HLE.HOS.Kernel.Process;
  7. using Ryujinx.HLE.HOS.Kernel.Threading;
  8. using Ryujinx.Horizon.Common;
  9. using System;
  10. using System.Buffers;
  11. using System.Buffers.Binary;
  12. using System.Collections.Generic;
  13. using System.IO;
  14. using System.Threading;
  15. namespace Ryujinx.HLE.HOS.Services
  16. {
  17. class ServerBase : IDisposable
  18. {
  19. // Must be the maximum value used by services (highest one know is the one used by nvservices = 0x8000).
  20. // Having a size that is too low will cause failures as data copy will fail if the receiving buffer is
  21. // not large enough.
  22. private const int PointerBufferSize = 0x8000;
  23. private readonly static uint[] DefaultCapabilities = new uint[]
  24. {
  25. 0x030363F7,
  26. 0x1FFFFFCF,
  27. 0x207FFFEF,
  28. 0x47E0060F,
  29. 0x0048BFFF,
  30. 0x01007FFF
  31. };
  32. private readonly KernelContext _context;
  33. private KProcess _selfProcess;
  34. private readonly List<int> _sessionHandles = new List<int>();
  35. private readonly List<int> _portHandles = new List<int>();
  36. private readonly Dictionary<int, IpcService> _sessions = new Dictionary<int, IpcService>();
  37. private readonly Dictionary<int, Func<IpcService>> _ports = new Dictionary<int, Func<IpcService>>();
  38. private readonly MemoryStream _requestDataStream;
  39. private readonly BinaryReader _requestDataReader;
  40. private readonly MemoryStream _responseDataStream;
  41. private readonly BinaryWriter _responseDataWriter;
  42. public ManualResetEvent InitDone { get; }
  43. public string Name { get; }
  44. public Func<IpcService> SmObjectFactory { get; }
  45. public ServerBase(KernelContext context, string name, Func<IpcService> smObjectFactory = null)
  46. {
  47. _context = context;
  48. _requestDataStream = MemoryStreamManager.Shared.GetStream();
  49. _requestDataReader = new BinaryReader(_requestDataStream);
  50. _responseDataStream = MemoryStreamManager.Shared.GetStream();
  51. _responseDataWriter = new BinaryWriter(_responseDataStream);
  52. InitDone = new ManualResetEvent(false);
  53. Name = name;
  54. SmObjectFactory = smObjectFactory;
  55. const ProcessCreationFlags flags =
  56. ProcessCreationFlags.EnableAslr |
  57. ProcessCreationFlags.AddressSpace64Bit |
  58. ProcessCreationFlags.Is64Bit |
  59. ProcessCreationFlags.PoolPartitionSystem;
  60. ProcessCreationInfo creationInfo = new ProcessCreationInfo("Service", 1, 0, 0x8000000, 1, flags, 0, 0);
  61. KernelStatic.StartInitialProcess(context, creationInfo, DefaultCapabilities, 44, Main);
  62. }
  63. private void AddPort(int serverPortHandle, Func<IpcService> objectFactory)
  64. {
  65. _portHandles.Add(serverPortHandle);
  66. _ports.Add(serverPortHandle, objectFactory);
  67. }
  68. public void AddSessionObj(KServerSession serverSession, IpcService obj)
  69. {
  70. // Ensure that the sever loop is running.
  71. InitDone.WaitOne();
  72. _selfProcess.HandleTable.GenerateHandle(serverSession, out int serverSessionHandle);
  73. AddSessionObj(serverSessionHandle, obj);
  74. }
  75. public void AddSessionObj(int serverSessionHandle, IpcService obj)
  76. {
  77. _sessionHandles.Add(serverSessionHandle);
  78. _sessions.Add(serverSessionHandle, obj);
  79. }
  80. private void Main()
  81. {
  82. ServerLoop();
  83. }
  84. private void ServerLoop()
  85. {
  86. _selfProcess = KernelStatic.GetCurrentProcess();
  87. if (SmObjectFactory != null)
  88. {
  89. _context.Syscall.ManageNamedPort(out int serverPortHandle, "sm:", 50);
  90. AddPort(serverPortHandle, SmObjectFactory);
  91. }
  92. InitDone.Set();
  93. KThread thread = KernelStatic.GetCurrentThread();
  94. ulong messagePtr = thread.TlsAddress;
  95. _context.Syscall.SetHeapSize(out ulong heapAddr, 0x200000);
  96. _selfProcess.CpuMemory.Write(messagePtr + 0x0, 0);
  97. _selfProcess.CpuMemory.Write(messagePtr + 0x4, 2 << 10);
  98. _selfProcess.CpuMemory.Write(messagePtr + 0x8, heapAddr | ((ulong)PointerBufferSize << 48));
  99. int replyTargetHandle = 0;
  100. while (true)
  101. {
  102. int handleCount = _portHandles.Count + _sessionHandles.Count;
  103. int[] handles = ArrayPool<int>.Shared.Rent(handleCount);
  104. _portHandles.CopyTo(handles, 0);
  105. _sessionHandles.CopyTo(handles, _portHandles.Count);
  106. // We still need a timeout here to allow the service to pick up and listen new sessions...
  107. var rc = _context.Syscall.ReplyAndReceive(out int signaledIndex, handles.AsSpan(0, handleCount), replyTargetHandle, 1000000L);
  108. thread.HandlePostSyscall();
  109. if (!thread.Context.Running)
  110. {
  111. break;
  112. }
  113. replyTargetHandle = 0;
  114. if (rc == Result.Success && signaledIndex >= _portHandles.Count)
  115. {
  116. // We got a IPC request, process it, pass to the appropriate service if needed.
  117. int signaledHandle = handles[signaledIndex];
  118. if (Process(signaledHandle, heapAddr))
  119. {
  120. replyTargetHandle = signaledHandle;
  121. }
  122. }
  123. else
  124. {
  125. if (rc == Result.Success)
  126. {
  127. // We got a new connection, accept the session to allow servicing future requests.
  128. if (_context.Syscall.AcceptSession(out int serverSessionHandle, handles[signaledIndex]) == Result.Success)
  129. {
  130. IpcService obj = _ports[handles[signaledIndex]].Invoke();
  131. AddSessionObj(serverSessionHandle, obj);
  132. }
  133. }
  134. _selfProcess.CpuMemory.Write(messagePtr + 0x0, 0);
  135. _selfProcess.CpuMemory.Write(messagePtr + 0x4, 2 << 10);
  136. _selfProcess.CpuMemory.Write(messagePtr + 0x8, heapAddr | ((ulong)PointerBufferSize << 48));
  137. }
  138. ArrayPool<int>.Shared.Return(handles);
  139. }
  140. Dispose();
  141. }
  142. private bool Process(int serverSessionHandle, ulong recvListAddr)
  143. {
  144. KProcess process = KernelStatic.GetCurrentProcess();
  145. KThread thread = KernelStatic.GetCurrentThread();
  146. ulong messagePtr = thread.TlsAddress;
  147. IpcMessage request = ReadRequest(process, messagePtr);
  148. IpcMessage response = new IpcMessage();
  149. ulong tempAddr = recvListAddr;
  150. int sizesOffset = request.RawData.Length - ((request.RecvListBuff.Count * 2 + 3) & ~3);
  151. bool noReceive = true;
  152. for (int i = 0; i < request.ReceiveBuff.Count; i++)
  153. {
  154. noReceive &= (request.ReceiveBuff[i].Position == 0);
  155. }
  156. if (noReceive)
  157. {
  158. for (int i = 0; i < request.RecvListBuff.Count; i++)
  159. {
  160. ulong size = (ulong)BinaryPrimitives.ReadInt16LittleEndian(request.RawData.AsSpan(sizesOffset + i * 2, 2));
  161. response.PtrBuff.Add(new IpcPtrBuffDesc(tempAddr, (uint)i, size));
  162. request.RecvListBuff[i] = new IpcRecvListBuffDesc(tempAddr, size);
  163. tempAddr += size;
  164. }
  165. }
  166. bool shouldReply = true;
  167. bool isTipcCommunication = false;
  168. _requestDataStream.SetLength(0);
  169. _requestDataStream.Write(request.RawData);
  170. _requestDataStream.Position = 0;
  171. if (request.Type == IpcMessageType.HipcRequest ||
  172. request.Type == IpcMessageType.HipcRequestWithContext)
  173. {
  174. response.Type = IpcMessageType.HipcResponse;
  175. _responseDataStream.SetLength(0);
  176. ServiceCtx context = new ServiceCtx(
  177. _context.Device,
  178. process,
  179. process.CpuMemory,
  180. thread,
  181. request,
  182. response,
  183. _requestDataReader,
  184. _responseDataWriter);
  185. _sessions[serverSessionHandle].CallHipcMethod(context);
  186. response.RawData = _responseDataStream.ToArray();
  187. }
  188. else if (request.Type == IpcMessageType.HipcControl ||
  189. request.Type == IpcMessageType.HipcControlWithContext)
  190. {
  191. uint magic = (uint)_requestDataReader.ReadUInt64();
  192. uint cmdId = (uint)_requestDataReader.ReadUInt64();
  193. switch (cmdId)
  194. {
  195. case 0:
  196. FillHipcResponse(response, 0, _sessions[serverSessionHandle].ConvertToDomain());
  197. break;
  198. case 3:
  199. FillHipcResponse(response, 0, PointerBufferSize);
  200. break;
  201. // TODO: Whats the difference between IpcDuplicateSession/Ex?
  202. case 2:
  203. case 4:
  204. int unknown = _requestDataReader.ReadInt32();
  205. _context.Syscall.CreateSession(out int dupServerSessionHandle, out int dupClientSessionHandle, false, 0);
  206. AddSessionObj(dupServerSessionHandle, _sessions[serverSessionHandle]);
  207. response.HandleDesc = IpcHandleDesc.MakeMove(dupClientSessionHandle);
  208. FillHipcResponse(response, 0);
  209. break;
  210. default: throw new NotImplementedException(cmdId.ToString());
  211. }
  212. }
  213. else if (request.Type == IpcMessageType.HipcCloseSession || request.Type == IpcMessageType.TipcCloseSession)
  214. {
  215. _context.Syscall.CloseHandle(serverSessionHandle);
  216. _sessionHandles.Remove(serverSessionHandle);
  217. IpcService service = _sessions[serverSessionHandle];
  218. (service as IDisposable)?.Dispose();
  219. _sessions.Remove(serverSessionHandle);
  220. shouldReply = false;
  221. }
  222. // If the type is past 0xF, we are using TIPC
  223. else if (request.Type > IpcMessageType.TipcCloseSession)
  224. {
  225. isTipcCommunication = true;
  226. // Response type is always the same as request on TIPC.
  227. response.Type = request.Type;
  228. _responseDataStream.SetLength(0);
  229. ServiceCtx context = new ServiceCtx(
  230. _context.Device,
  231. process,
  232. process.CpuMemory,
  233. thread,
  234. request,
  235. response,
  236. _requestDataReader,
  237. _responseDataWriter);
  238. _sessions[serverSessionHandle].CallTipcMethod(context);
  239. response.RawData = _responseDataStream.ToArray();
  240. using var responseStream = response.GetStreamTipc();
  241. process.CpuMemory.Write(messagePtr, responseStream.GetReadOnlySequence());
  242. }
  243. else
  244. {
  245. throw new NotImplementedException(request.Type.ToString());
  246. }
  247. if (!isTipcCommunication)
  248. {
  249. using var responseStream = response.GetStream((long)messagePtr, recvListAddr | ((ulong)PointerBufferSize << 48));
  250. process.CpuMemory.Write(messagePtr, responseStream.GetReadOnlySequence());
  251. }
  252. return shouldReply;
  253. }
  254. private static IpcMessage ReadRequest(KProcess process, ulong messagePtr)
  255. {
  256. const int messageSize = 0x100;
  257. byte[] reqData = ArrayPool<byte>.Shared.Rent(messageSize);
  258. Span<byte> reqDataSpan = reqData.AsSpan(0, messageSize);
  259. reqDataSpan.Clear();
  260. process.CpuMemory.Read(messagePtr, reqDataSpan);
  261. IpcMessage request = new IpcMessage(reqDataSpan, (long)messagePtr);
  262. ArrayPool<byte>.Shared.Return(reqData);
  263. return request;
  264. }
  265. private void FillHipcResponse(IpcMessage response, long result)
  266. {
  267. FillHipcResponse(response, result, ReadOnlySpan<byte>.Empty);
  268. }
  269. private void FillHipcResponse(IpcMessage response, long result, int value)
  270. {
  271. Span<byte> span = stackalloc byte[sizeof(int)];
  272. BinaryPrimitives.WriteInt32LittleEndian(span, value);
  273. FillHipcResponse(response, result, span);
  274. }
  275. private void FillHipcResponse(IpcMessage response, long result, ReadOnlySpan<byte> data)
  276. {
  277. response.Type = IpcMessageType.HipcResponse;
  278. _responseDataStream.SetLength(0);
  279. _responseDataStream.Write(IpcMagic.Sfco);
  280. _responseDataStream.Write(result);
  281. _responseDataStream.Write(data);
  282. response.RawData = _responseDataStream.ToArray();
  283. }
  284. protected virtual void Dispose(bool disposing)
  285. {
  286. if (disposing)
  287. {
  288. foreach (IpcService service in _sessions.Values)
  289. {
  290. if (service is IDisposable disposableObj)
  291. {
  292. disposableObj.Dispose();
  293. }
  294. service.DestroyAtExit();
  295. }
  296. _sessions.Clear();
  297. _requestDataReader.Dispose();
  298. _requestDataStream.Dispose();
  299. _responseDataWriter.Dispose();
  300. _responseDataStream.Dispose();
  301. InitDone.Dispose();
  302. }
  303. }
  304. public void Dispose()
  305. {
  306. Dispose(true);
  307. }
  308. }
  309. }