SyscallTable.cs 21 KB

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  1. using ARMeilleure.State;
  2. using Ryujinx.Common.Logging;
  3. using Ryujinx.HLE.HOS.Kernel.Common;
  4. using System;
  5. using System.Collections.Generic;
  6. using System.Reflection;
  7. using System.Reflection.Emit;
  8. namespace Ryujinx.HLE.HOS.Kernel.SupervisorCall
  9. {
  10. static class SyscallTable
  11. {
  12. private const int SvcFuncMaxArguments64 = 8;
  13. private const int SvcFuncMaxArguments32 = 4;
  14. private const int SvcMax = 0x80;
  15. public static Action<Syscall32, ExecutionContext>[] SvcTable32 { get; }
  16. public static Action<Syscall64, ExecutionContext>[] SvcTable64 { get; }
  17. static SyscallTable()
  18. {
  19. SvcTable32 = new Action<Syscall32, ExecutionContext>[SvcMax];
  20. SvcTable64 = new Action<Syscall64, ExecutionContext>[SvcMax];
  21. Dictionary<int, string> svcFuncs64 = new Dictionary<int, string>
  22. {
  23. { 0x01, nameof(Syscall64.SetHeapSize64) },
  24. { 0x03, nameof(Syscall64.SetMemoryAttribute64) },
  25. { 0x04, nameof(Syscall64.MapMemory64) },
  26. { 0x05, nameof(Syscall64.UnmapMemory64) },
  27. { 0x06, nameof(Syscall64.QueryMemory64) },
  28. { 0x07, nameof(Syscall64.ExitProcess64) },
  29. { 0x08, nameof(Syscall64.CreateThread64) },
  30. { 0x09, nameof(Syscall64.StartThread64) },
  31. { 0x0a, nameof(Syscall64.ExitThread64) },
  32. { 0x0b, nameof(Syscall64.SleepThread64) },
  33. { 0x0c, nameof(Syscall64.GetThreadPriority64) },
  34. { 0x0d, nameof(Syscall64.SetThreadPriority64) },
  35. { 0x0e, nameof(Syscall64.GetThreadCoreMask64) },
  36. { 0x0f, nameof(Syscall64.SetThreadCoreMask64) },
  37. { 0x10, nameof(Syscall64.GetCurrentProcessorNumber64) },
  38. { 0x11, nameof(Syscall64.SignalEvent64) },
  39. { 0x12, nameof(Syscall64.ClearEvent64) },
  40. { 0x13, nameof(Syscall64.MapSharedMemory64) },
  41. { 0x14, nameof(Syscall64.UnmapSharedMemory64) },
  42. { 0x15, nameof(Syscall64.CreateTransferMemory64) },
  43. { 0x16, nameof(Syscall64.CloseHandle64) },
  44. { 0x17, nameof(Syscall64.ResetSignal64) },
  45. { 0x18, nameof(Syscall64.WaitSynchronization64) },
  46. { 0x19, nameof(Syscall64.CancelSynchronization64) },
  47. { 0x1a, nameof(Syscall64.ArbitrateLock64) },
  48. { 0x1b, nameof(Syscall64.ArbitrateUnlock64) },
  49. { 0x1c, nameof(Syscall64.WaitProcessWideKeyAtomic64) },
  50. { 0x1d, nameof(Syscall64.SignalProcessWideKey64) },
  51. { 0x1e, nameof(Syscall64.GetSystemTick64) },
  52. { 0x1f, nameof(Syscall64.ConnectToNamedPort64) },
  53. { 0x21, nameof(Syscall64.SendSyncRequest64) },
  54. { 0x22, nameof(Syscall64.SendSyncRequestWithUserBuffer64) },
  55. { 0x23, nameof(Syscall64.SendAsyncRequestWithUserBuffer64) },
  56. { 0x24, nameof(Syscall64.GetProcessId64) },
  57. { 0x25, nameof(Syscall64.GetThreadId64) },
  58. { 0x26, nameof(Syscall64.Break64) },
  59. { 0x27, nameof(Syscall64.OutputDebugString64) },
  60. { 0x29, nameof(Syscall64.GetInfo64) },
  61. { 0x2c, nameof(Syscall64.MapPhysicalMemory64) },
  62. { 0x2d, nameof(Syscall64.UnmapPhysicalMemory64) },
  63. { 0x32, nameof(Syscall64.SetThreadActivity64) },
  64. { 0x33, nameof(Syscall64.GetThreadContext364) },
  65. { 0x34, nameof(Syscall64.WaitForAddress64) },
  66. { 0x35, nameof(Syscall64.SignalToAddress64) },
  67. { 0x40, nameof(Syscall64.CreateSession64) },
  68. { 0x41, nameof(Syscall64.AcceptSession64) },
  69. { 0x43, nameof(Syscall64.ReplyAndReceive64) },
  70. { 0x44, nameof(Syscall64.ReplyAndReceiveWithUserBuffer64) },
  71. { 0x45, nameof(Syscall64.CreateEvent64) },
  72. { 0x51, nameof(Syscall64.MapTransferMemory64) },
  73. { 0x52, nameof(Syscall64.UnmapTransferMemory64) },
  74. { 0x65, nameof(Syscall64.GetProcessList64) },
  75. { 0x6f, nameof(Syscall64.GetSystemInfo64) },
  76. { 0x70, nameof(Syscall64.CreatePort64) },
  77. { 0x71, nameof(Syscall64.ManageNamedPort64) },
  78. { 0x72, nameof(Syscall64.ConnectToPort64) },
  79. { 0x73, nameof(Syscall64.SetProcessMemoryPermission64) },
  80. { 0x77, nameof(Syscall64.MapProcessCodeMemory64) },
  81. { 0x78, nameof(Syscall64.UnmapProcessCodeMemory64) },
  82. { 0x7B, nameof(Syscall64.TerminateProcess64) }
  83. };
  84. foreach (KeyValuePair<int, string> value in svcFuncs64)
  85. {
  86. SvcTable64[value.Key] = GenerateMethod<Syscall64>(value.Value, SvcFuncMaxArguments64);
  87. }
  88. Dictionary<int, string> svcFuncs32 = new Dictionary<int, string>
  89. {
  90. { 0x01, nameof(Syscall32.SetHeapSize32) },
  91. { 0x03, nameof(Syscall32.SetMemoryAttribute32) },
  92. { 0x04, nameof(Syscall32.MapMemory32) },
  93. { 0x05, nameof(Syscall32.UnmapMemory32) },
  94. { 0x06, nameof(Syscall32.QueryMemory32) },
  95. { 0x07, nameof(Syscall32.ExitProcess32) },
  96. { 0x08, nameof(Syscall32.CreateThread32) },
  97. { 0x09, nameof(Syscall32.StartThread32) },
  98. { 0x0a, nameof(Syscall32.ExitThread32) },
  99. { 0x0b, nameof(Syscall32.SleepThread32) },
  100. { 0x0c, nameof(Syscall32.GetThreadPriority32) },
  101. { 0x0d, nameof(Syscall32.SetThreadPriority32) },
  102. { 0x0e, nameof(Syscall32.GetThreadCoreMask32) },
  103. { 0x0f, nameof(Syscall32.SetThreadCoreMask32) },
  104. { 0x10, nameof(Syscall32.GetCurrentProcessorNumber32) },
  105. { 0x11, nameof(Syscall32.SignalEvent32) },
  106. { 0x12, nameof(Syscall32.ClearEvent32) },
  107. { 0x13, nameof(Syscall32.MapSharedMemory32) },
  108. { 0x14, nameof(Syscall32.UnmapSharedMemory32) },
  109. { 0x15, nameof(Syscall32.CreateTransferMemory32) },
  110. { 0x16, nameof(Syscall32.CloseHandle32) },
  111. { 0x17, nameof(Syscall32.ResetSignal32) },
  112. { 0x18, nameof(Syscall32.WaitSynchronization32) },
  113. { 0x19, nameof(Syscall32.CancelSynchronization32) },
  114. { 0x1a, nameof(Syscall32.ArbitrateLock32) },
  115. { 0x1b, nameof(Syscall32.ArbitrateUnlock32) },
  116. { 0x1c, nameof(Syscall32.WaitProcessWideKeyAtomic32) },
  117. { 0x1d, nameof(Syscall32.SignalProcessWideKey32) },
  118. { 0x1e, nameof(Syscall32.GetSystemTick32) },
  119. { 0x1f, nameof(Syscall32.ConnectToNamedPort32) },
  120. { 0x21, nameof(Syscall32.SendSyncRequest32) },
  121. { 0x22, nameof(Syscall32.SendSyncRequestWithUserBuffer32) },
  122. { 0x24, nameof(Syscall32.GetProcessId32) },
  123. { 0x25, nameof(Syscall32.GetThreadId32) },
  124. { 0x26, nameof(Syscall32.Break32) },
  125. { 0x27, nameof(Syscall32.OutputDebugString32) },
  126. { 0x29, nameof(Syscall32.GetInfo32) },
  127. { 0x2c, nameof(Syscall32.MapPhysicalMemory32) },
  128. { 0x2d, nameof(Syscall32.UnmapPhysicalMemory32) },
  129. { 0x32, nameof(Syscall32.SetThreadActivity32) },
  130. { 0x33, nameof(Syscall32.GetThreadContext332) },
  131. { 0x34, nameof(Syscall32.WaitForAddress32) },
  132. { 0x35, nameof(Syscall32.SignalToAddress32) },
  133. { 0x40, nameof(Syscall32.CreateSession32) },
  134. { 0x41, nameof(Syscall32.AcceptSession32) },
  135. { 0x43, nameof(Syscall32.ReplyAndReceive32) },
  136. { 0x45, nameof(Syscall32.CreateEvent32) },
  137. { 0x51, nameof(Syscall32.MapTransferMemory32) },
  138. { 0x52, nameof(Syscall32.UnmapTransferMemory32) },
  139. { 0x5F, nameof(Syscall32.FlushProcessDataCache32) },
  140. { 0x65, nameof(Syscall32.GetProcessList32) },
  141. { 0x6f, nameof(Syscall32.GetSystemInfo32) },
  142. { 0x70, nameof(Syscall32.CreatePort32) },
  143. { 0x71, nameof(Syscall32.ManageNamedPort32) },
  144. { 0x72, nameof(Syscall32.ConnectToPort32) },
  145. { 0x73, nameof(Syscall32.SetProcessMemoryPermission32) },
  146. { 0x77, nameof(Syscall32.MapProcessCodeMemory32) },
  147. { 0x78, nameof(Syscall32.UnmapProcessCodeMemory32) },
  148. { 0x7B, nameof(Syscall32.TerminateProcess32) }
  149. };
  150. foreach (KeyValuePair<int, string> value in svcFuncs32)
  151. {
  152. SvcTable32[value.Key] = GenerateMethod<Syscall32>(value.Value, SvcFuncMaxArguments32);
  153. }
  154. }
  155. private static Action<T, ExecutionContext> GenerateMethod<T>(string svcName, int registerCleanCount)
  156. {
  157. Type[] argTypes = new Type[] { typeof(T), typeof(ExecutionContext) };
  158. DynamicMethod method = new DynamicMethod(svcName, null, argTypes);
  159. MethodInfo methodInfo = typeof(T).GetMethod(svcName);
  160. ParameterInfo[] methodArgs = methodInfo.GetParameters();
  161. ILGenerator generator = method.GetILGenerator();
  162. void ConvertToArgType(Type sourceType)
  163. {
  164. CheckIfTypeIsSupported(sourceType, svcName);
  165. switch (Type.GetTypeCode(sourceType))
  166. {
  167. case TypeCode.UInt32: generator.Emit(OpCodes.Conv_U4); break;
  168. case TypeCode.Int32: generator.Emit(OpCodes.Conv_I4); break;
  169. case TypeCode.UInt16: generator.Emit(OpCodes.Conv_U2); break;
  170. case TypeCode.Int16: generator.Emit(OpCodes.Conv_I2); break;
  171. case TypeCode.Byte: generator.Emit(OpCodes.Conv_U1); break;
  172. case TypeCode.SByte: generator.Emit(OpCodes.Conv_I1); break;
  173. case TypeCode.Boolean:
  174. generator.Emit(OpCodes.Conv_I4);
  175. generator.Emit(OpCodes.Ldc_I4_1);
  176. generator.Emit(OpCodes.And);
  177. break;
  178. }
  179. }
  180. void ConvertToFieldType(Type sourceType)
  181. {
  182. CheckIfTypeIsSupported(sourceType, svcName);
  183. switch (Type.GetTypeCode(sourceType))
  184. {
  185. case TypeCode.UInt32:
  186. case TypeCode.Int32:
  187. case TypeCode.UInt16:
  188. case TypeCode.Int16:
  189. case TypeCode.Byte:
  190. case TypeCode.SByte:
  191. case TypeCode.Boolean:
  192. generator.Emit(OpCodes.Conv_U8);
  193. break;
  194. }
  195. }
  196. RAttribute GetRegisterAttribute(ParameterInfo parameterInfo)
  197. {
  198. RAttribute argumentAttribute = (RAttribute)parameterInfo.GetCustomAttribute(typeof(RAttribute));
  199. if (argumentAttribute == null)
  200. {
  201. throw new InvalidOperationException($"Method \"{svcName}\" is missing a {typeof(RAttribute).Name} attribute on parameter \"{parameterInfo.Name}\"");
  202. }
  203. return argumentAttribute;
  204. }
  205. // For functions returning output values, the first registers
  206. // are used to hold pointers where the value will be stored,
  207. // so they can't be used to pass argument and we must
  208. // skip them.
  209. int byRefArgsCount = 0;
  210. for (int index = 0; index < methodArgs.Length; index++)
  211. {
  212. if (methodArgs[index].ParameterType.IsByRef)
  213. {
  214. byRefArgsCount++;
  215. }
  216. }
  217. BindingFlags staticNonPublic = BindingFlags.NonPublic | BindingFlags.Static;
  218. // Print all the arguments for debugging purposes.
  219. int inputArgsCount = methodArgs.Length - byRefArgsCount;
  220. if (inputArgsCount != 0)
  221. {
  222. generator.Emit(OpCodes.Ldc_I4, inputArgsCount);
  223. generator.Emit(OpCodes.Newarr, typeof(object));
  224. string argsFormat = svcName;
  225. for (int index = 0; index < methodArgs.Length; index++)
  226. {
  227. Type argType = methodArgs[index].ParameterType;
  228. // Ignore out argument for printing
  229. if (argType.IsByRef)
  230. {
  231. continue;
  232. }
  233. RAttribute registerAttribute = GetRegisterAttribute(methodArgs[index]);
  234. argsFormat += $" {methodArgs[index].Name}: 0x{{{index}:X8}},";
  235. generator.Emit(OpCodes.Dup);
  236. generator.Emit(OpCodes.Ldc_I4, index);
  237. generator.Emit(OpCodes.Ldarg_1);
  238. generator.Emit(OpCodes.Ldc_I4, registerAttribute.Index);
  239. MethodInfo info = typeof(ExecutionContext).GetMethod(nameof(ExecutionContext.GetX));
  240. generator.Emit(OpCodes.Call, info);
  241. generator.Emit(OpCodes.Box, typeof(ulong));
  242. generator.Emit(OpCodes.Stelem_Ref);
  243. }
  244. argsFormat = argsFormat.Substring(0, argsFormat.Length - 1);
  245. generator.Emit(OpCodes.Ldstr, argsFormat);
  246. }
  247. else
  248. {
  249. generator.Emit(OpCodes.Ldnull);
  250. generator.Emit(OpCodes.Ldstr, svcName);
  251. }
  252. MethodInfo printArgsMethod = typeof(SyscallTable).GetMethod(nameof(PrintArguments), staticNonPublic);
  253. generator.Emit(OpCodes.Call, printArgsMethod);
  254. // Call the SVC function handler.
  255. generator.Emit(OpCodes.Ldarg_0);
  256. List<(LocalBuilder, RAttribute)> locals = new List<(LocalBuilder, RAttribute)>();
  257. for (int index = 0; index < methodArgs.Length; index++)
  258. {
  259. Type argType = methodArgs[index].ParameterType;
  260. RAttribute registerAttribute = GetRegisterAttribute(methodArgs[index]);
  261. if (argType.IsByRef)
  262. {
  263. argType = argType.GetElementType();
  264. LocalBuilder local = generator.DeclareLocal(argType);
  265. locals.Add((local, registerAttribute));
  266. if (!methodArgs[index].IsOut)
  267. {
  268. generator.Emit(OpCodes.Ldarg_1);
  269. generator.Emit(OpCodes.Ldc_I4, registerAttribute.Index);
  270. MethodInfo info = typeof(ExecutionContext).GetMethod(nameof(ExecutionContext.GetX));
  271. generator.Emit(OpCodes.Call, info);
  272. ConvertToArgType(argType);
  273. generator.Emit(OpCodes.Stloc, local);
  274. }
  275. generator.Emit(OpCodes.Ldloca, local);
  276. }
  277. else
  278. {
  279. generator.Emit(OpCodes.Ldarg_1);
  280. generator.Emit(OpCodes.Ldc_I4, registerAttribute.Index);
  281. MethodInfo info = typeof(ExecutionContext).GetMethod(nameof(ExecutionContext.GetX));
  282. generator.Emit(OpCodes.Call, info);
  283. ConvertToArgType(argType);
  284. }
  285. }
  286. generator.Emit(OpCodes.Call, methodInfo);
  287. Type retType = methodInfo.ReturnType;
  288. // Print result code.
  289. if (retType == typeof(KernelResult))
  290. {
  291. MethodInfo printResultMethod = typeof(SyscallTable).GetMethod(nameof(PrintResult), staticNonPublic);
  292. generator.Emit(OpCodes.Dup);
  293. generator.Emit(OpCodes.Ldstr, svcName);
  294. generator.Emit(OpCodes.Call, printResultMethod);
  295. }
  296. uint registerInUse = 0;
  297. // Save return value into register X0 (when the method has a return value).
  298. if (retType != typeof(void))
  299. {
  300. CheckIfTypeIsSupported(retType, svcName);
  301. LocalBuilder tempLocal = generator.DeclareLocal(retType);
  302. generator.Emit(OpCodes.Stloc, tempLocal);
  303. generator.Emit(OpCodes.Ldarg_1);
  304. generator.Emit(OpCodes.Ldc_I4, 0);
  305. generator.Emit(OpCodes.Ldloc, tempLocal);
  306. ConvertToFieldType(retType);
  307. MethodInfo info = typeof(ExecutionContext).GetMethod(nameof(ExecutionContext.SetX));
  308. generator.Emit(OpCodes.Call, info);
  309. registerInUse |= 1u << 0;
  310. }
  311. for (int index = 0; index < locals.Count; index++)
  312. {
  313. (LocalBuilder local, RAttribute attribute) = locals[index];
  314. if ((registerInUse & (1u << attribute.Index)) != 0)
  315. {
  316. throw new InvalidSvcException($"Method \"{svcName}\" has conflicting output values at register index \"{attribute.Index}\".");
  317. }
  318. generator.Emit(OpCodes.Ldarg_1);
  319. generator.Emit(OpCodes.Ldc_I4, attribute.Index);
  320. generator.Emit(OpCodes.Ldloc, local);
  321. ConvertToFieldType(local.LocalType);
  322. MethodInfo info = typeof(ExecutionContext).GetMethod(nameof(ExecutionContext.SetX));
  323. generator.Emit(OpCodes.Call, info);
  324. registerInUse |= 1u << attribute.Index;
  325. }
  326. // Zero out the remaining unused registers.
  327. for (int i = 0; i < registerCleanCount; i++)
  328. {
  329. if ((registerInUse & (1u << i)) != 0)
  330. {
  331. continue;
  332. }
  333. generator.Emit(OpCodes.Ldarg_1);
  334. generator.Emit(OpCodes.Ldc_I4, i);
  335. generator.Emit(OpCodes.Ldc_I8, 0L);
  336. MethodInfo info = typeof(ExecutionContext).GetMethod(nameof(ExecutionContext.SetX));
  337. generator.Emit(OpCodes.Call, info);
  338. }
  339. generator.Emit(OpCodes.Ret);
  340. return (Action<T, ExecutionContext>)method.CreateDelegate(typeof(Action<T, ExecutionContext>));
  341. }
  342. private static void CheckIfTypeIsSupported(Type type, string svcName)
  343. {
  344. switch (Type.GetTypeCode(type))
  345. {
  346. case TypeCode.UInt64:
  347. case TypeCode.Int64:
  348. case TypeCode.UInt32:
  349. case TypeCode.Int32:
  350. case TypeCode.UInt16:
  351. case TypeCode.Int16:
  352. case TypeCode.Byte:
  353. case TypeCode.SByte:
  354. case TypeCode.Boolean:
  355. return;
  356. }
  357. throw new InvalidSvcException($"Method \"{svcName}\" has a invalid ref type \"{type.Name}\".");
  358. }
  359. private static void PrintArguments(object[] argValues, string formatOrSvcName)
  360. {
  361. if (argValues != null)
  362. {
  363. Logger.Debug?.Print(LogClass.KernelSvc, string.Format(formatOrSvcName, argValues));
  364. }
  365. else
  366. {
  367. Logger.Debug?.Print(LogClass.KernelSvc, formatOrSvcName);
  368. }
  369. }
  370. private static void PrintResult(KernelResult result, string svcName)
  371. {
  372. if (result != KernelResult.Success &&
  373. result != KernelResult.TimedOut &&
  374. result != KernelResult.Cancelled &&
  375. result != KernelResult.InvalidState)
  376. {
  377. Logger.Warning?.Print(LogClass.KernelSvc, $"{svcName} returned error {result}.");
  378. }
  379. else
  380. {
  381. Logger.Debug?.Print(LogClass.KernelSvc, $"{svcName} returned result {result}.");
  382. }
  383. }
  384. }
  385. }