svc.cpp 20 KB

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  1. // Copyright 2014 Citra Emulator Project
  2. // Licensed under GPLv2
  3. // Refer to the license.txt file included.
  4. #include <map>
  5. #include "common/string_util.h"
  6. #include "common/symbols.h"
  7. #include "core/mem_map.h"
  8. #include "core/hle/kernel/address_arbiter.h"
  9. #include "core/hle/kernel/event.h"
  10. #include "core/hle/kernel/mutex.h"
  11. #include "core/hle/kernel/shared_memory.h"
  12. #include "core/hle/kernel/thread.h"
  13. #include "core/hle/function_wrappers.h"
  14. #include "core/hle/result.h"
  15. #include "core/hle/service/service.h"
  16. ////////////////////////////////////////////////////////////////////////////////////////////////////
  17. // Namespace SVC
  18. namespace SVC {
  19. enum ControlMemoryOperation {
  20. MEMORY_OPERATION_HEAP = 0x00000003,
  21. MEMORY_OPERATION_GSP_HEAP = 0x00010003,
  22. };
  23. /// Map application or GSP heap memory
  24. static Result ControlMemory(u32* out_addr, u32 operation, u32 addr0, u32 addr1, u32 size, u32 permissions) {
  25. DEBUG_LOG(SVC,"called operation=0x%08X, addr0=0x%08X, addr1=0x%08X, size=%08X, permissions=0x%08X",
  26. operation, addr0, addr1, size, permissions);
  27. switch (operation) {
  28. // Map normal heap memory
  29. case MEMORY_OPERATION_HEAP:
  30. *out_addr = Memory::MapBlock_Heap(size, operation, permissions);
  31. break;
  32. // Map GSP heap memory
  33. case MEMORY_OPERATION_GSP_HEAP:
  34. *out_addr = Memory::MapBlock_HeapGSP(size, operation, permissions);
  35. break;
  36. // Unknown ControlMemory operation
  37. default:
  38. ERROR_LOG(SVC, "unknown operation=0x%08X", operation);
  39. }
  40. return 0;
  41. }
  42. /// Maps a memory block to specified address
  43. static Result MapMemoryBlock(Handle handle, u32 addr, u32 permissions, u32 other_permissions) {
  44. DEBUG_LOG(SVC, "called memblock=0x%08X, addr=0x%08X, mypermissions=0x%08X, otherpermission=%d",
  45. handle, addr, permissions, other_permissions);
  46. Kernel::MemoryPermission permissions_type = static_cast<Kernel::MemoryPermission>(permissions);
  47. switch (permissions_type) {
  48. case Kernel::MemoryPermission::Read:
  49. case Kernel::MemoryPermission::Write:
  50. case Kernel::MemoryPermission::ReadWrite:
  51. case Kernel::MemoryPermission::DontCare:
  52. Kernel::MapSharedMemory(handle, addr, permissions_type,
  53. static_cast<Kernel::MemoryPermission>(other_permissions));
  54. break;
  55. default:
  56. ERROR_LOG(OSHLE, "unknown permissions=0x%08X", permissions);
  57. }
  58. return 0;
  59. }
  60. /// Connect to an OS service given the port name, returns the handle to the port to out
  61. static Result ConnectToPort(Handle* out, const char* port_name) {
  62. Service::Interface* service = Service::g_manager->FetchFromPortName(port_name);
  63. DEBUG_LOG(SVC, "called port_name=%s", port_name);
  64. _assert_msg_(KERNEL, (service != nullptr), "called, but service is not implemented!");
  65. *out = service->GetHandle();
  66. return 0;
  67. }
  68. /// Synchronize to an OS service
  69. static Result SendSyncRequest(Handle handle) {
  70. // TODO(yuriks): ObjectPool::Get tries to check the Object type, which fails since this is a generic base Object,
  71. // so we are forced to use GetFast and manually verify the handle.
  72. if (!Kernel::g_object_pool.IsValid(handle)) {
  73. return InvalidHandle(ErrorModule::Kernel).raw;
  74. }
  75. Kernel::Object* object = Kernel::g_object_pool.GetFast<Kernel::Object>(handle);
  76. _assert_msg_(KERNEL, (object != nullptr), "called, but kernel object is nullptr!");
  77. DEBUG_LOG(SVC, "called handle=0x%08X(%s)", handle, object->GetTypeName().c_str());
  78. ResultVal<bool> wait = object->SyncRequest();
  79. if (wait.Succeeded() && *wait) {
  80. Kernel::WaitCurrentThread(WAITTYPE_SYNCH); // TODO(bunnei): Is this correct?
  81. }
  82. return wait.Code().raw;
  83. }
  84. /// Close a handle
  85. static Result CloseHandle(Handle handle) {
  86. // ImplementMe
  87. ERROR_LOG(SVC, "(UNIMPLEMENTED) called handle=0x%08X", handle);
  88. return 0;
  89. }
  90. /// Wait for a handle to synchronize, timeout after the specified nanoseconds
  91. static Result WaitSynchronization1(Handle handle, s64 nano_seconds) {
  92. // TODO(bunnei): Do something with nano_seconds, currently ignoring this
  93. bool wait_infinite = (nano_seconds == -1); // Used to wait until a thread has terminated
  94. if (!Kernel::g_object_pool.IsValid(handle)) {
  95. return InvalidHandle(ErrorModule::Kernel).raw;
  96. }
  97. Kernel::Object* object = Kernel::g_object_pool.GetFast<Kernel::Object>(handle);
  98. _dbg_assert_(KERNEL, object != nullptr);
  99. DEBUG_LOG(SVC, "called handle=0x%08X(%s:%s), nanoseconds=%lld", handle, object->GetTypeName().c_str(),
  100. object->GetName().c_str(), nano_seconds);
  101. ResultVal<bool> wait = object->WaitSynchronization();
  102. // Check for next thread to schedule
  103. if (wait.Succeeded() && *wait) {
  104. HLE::Reschedule(__func__);
  105. }
  106. return wait.Code().raw;
  107. }
  108. /// Wait for the given handles to synchronize, timeout after the specified nanoseconds
  109. static Result WaitSynchronizationN(s32* out, Handle* handles, s32 handle_count, bool wait_all,
  110. s64 nano_seconds) {
  111. // TODO(bunnei): Do something with nano_seconds, currently ignoring this
  112. bool unlock_all = true;
  113. bool wait_infinite = (nano_seconds == -1); // Used to wait until a thread has terminated
  114. DEBUG_LOG(SVC, "called handle_count=%d, wait_all=%s, nanoseconds=%lld",
  115. handle_count, (wait_all ? "true" : "false"), nano_seconds);
  116. // Iterate through each handle, synchronize kernel object
  117. for (s32 i = 0; i < handle_count; i++) {
  118. if (!Kernel::g_object_pool.IsValid(handles[i])) {
  119. return InvalidHandle(ErrorModule::Kernel).raw;
  120. }
  121. Kernel::Object* object = Kernel::g_object_pool.GetFast<Kernel::Object>(handles[i]);
  122. DEBUG_LOG(SVC, "\thandle[%d] = 0x%08X(%s:%s)", i, handles[i], object->GetTypeName().c_str(),
  123. object->GetName().c_str());
  124. // TODO(yuriks): Verify how the real function behaves when an error happens here
  125. ResultVal<bool> wait_result = object->WaitSynchronization();
  126. bool wait = wait_result.Succeeded() && *wait_result;
  127. if (!wait && !wait_all) {
  128. *out = i;
  129. return RESULT_SUCCESS.raw;
  130. } else {
  131. unlock_all = false;
  132. }
  133. }
  134. if (wait_all && unlock_all) {
  135. *out = handle_count;
  136. return RESULT_SUCCESS.raw;
  137. }
  138. // Check for next thread to schedule
  139. HLE::Reschedule(__func__);
  140. return RESULT_SUCCESS.raw;
  141. }
  142. /// Create an address arbiter (to allocate access to shared resources)
  143. static Result CreateAddressArbiter(u32* arbiter) {
  144. DEBUG_LOG(SVC, "called");
  145. Handle handle = Kernel::CreateAddressArbiter();
  146. *arbiter = handle;
  147. return 0;
  148. }
  149. /// Arbitrate address
  150. static Result ArbitrateAddress(Handle arbiter, u32 address, u32 type, u32 value, s64 nanoseconds) {
  151. DEBUG_LOG(SVC, "called handle=0x%08X, address=0x%08X, type=0x%08X, value=0x%08X", arbiter,
  152. address, type, value);
  153. return Kernel::ArbitrateAddress(arbiter, static_cast<Kernel::ArbitrationType>(type),
  154. address, value).raw;
  155. }
  156. /// Used to output a message on a debug hardware unit - does nothing on a retail unit
  157. static void OutputDebugString(const char* string) {
  158. OS_LOG(SVC, "%s", string);
  159. }
  160. /// Get resource limit
  161. static Result GetResourceLimit(Handle* resource_limit, Handle process) {
  162. // With regards to proceess values:
  163. // 0xFFFF8001 is a handle alias for the current KProcess, and 0xFFFF8000 is a handle alias for
  164. // the current KThread.
  165. *resource_limit = 0xDEADBEEF;
  166. ERROR_LOG(SVC, "(UNIMPLEMENTED) called process=0x%08X", process);
  167. return 0;
  168. }
  169. /// Get resource limit current values
  170. static Result GetResourceLimitCurrentValues(s64* values, Handle resource_limit, void* names,
  171. s32 name_count) {
  172. ERROR_LOG(SVC, "(UNIMPLEMENTED) called resource_limit=%08X, names=%s, name_count=%d",
  173. resource_limit, names, name_count);
  174. Memory::Write32(Core::g_app_core->GetReg(0), 0); // Normmatt: Set used memory to 0 for now
  175. return 0;
  176. }
  177. /// Creates a new thread
  178. static Result CreateThread(u32 priority, u32 entry_point, u32 arg, u32 stack_top, u32 processor_id) {
  179. std::string name;
  180. if (Symbols::HasSymbol(entry_point)) {
  181. TSymbol symbol = Symbols::GetSymbol(entry_point);
  182. name = symbol.name;
  183. } else {
  184. name = Common::StringFromFormat("unknown-%08x", entry_point);
  185. }
  186. Handle thread = Kernel::CreateThread(name.c_str(), entry_point, priority, arg, processor_id,
  187. stack_top);
  188. Core::g_app_core->SetReg(1, thread);
  189. DEBUG_LOG(SVC, "called entrypoint=0x%08X (%s), arg=0x%08X, stacktop=0x%08X, "
  190. "threadpriority=0x%08X, processorid=0x%08X : created handle=0x%08X", entry_point,
  191. name.c_str(), arg, stack_top, priority, processor_id, thread);
  192. return 0;
  193. }
  194. /// Called when a thread exits
  195. static u32 ExitThread() {
  196. Handle thread = Kernel::GetCurrentThreadHandle();
  197. DEBUG_LOG(SVC, "called, pc=0x%08X", Core::g_app_core->GetPC()); // PC = 0x0010545C
  198. Kernel::StopThread(thread, __func__);
  199. HLE::Reschedule(__func__);
  200. return 0;
  201. }
  202. /// Gets the priority for the specified thread
  203. static Result GetThreadPriority(s32* priority, Handle handle) {
  204. ResultVal<u32> priority_result = Kernel::GetThreadPriority(handle);
  205. if (priority_result.Succeeded()) {
  206. *priority = *priority_result;
  207. }
  208. return priority_result.Code().raw;
  209. }
  210. /// Sets the priority for the specified thread
  211. static Result SetThreadPriority(Handle handle, s32 priority) {
  212. return Kernel::SetThreadPriority(handle, priority).raw;
  213. }
  214. /// Create a mutex
  215. static Result CreateMutex(Handle* mutex, u32 initial_locked) {
  216. *mutex = Kernel::CreateMutex((initial_locked != 0));
  217. DEBUG_LOG(SVC, "called initial_locked=%s : created handle=0x%08X",
  218. initial_locked ? "true" : "false", *mutex);
  219. return 0;
  220. }
  221. /// Release a mutex
  222. static Result ReleaseMutex(Handle handle) {
  223. DEBUG_LOG(SVC, "called handle=0x%08X", handle);
  224. ResultCode res = Kernel::ReleaseMutex(handle);
  225. return res.raw;
  226. }
  227. /// Get the ID for the specified thread.
  228. static Result GetThreadId(u32* thread_id, Handle handle) {
  229. DEBUG_LOG(SVC, "called thread=0x%08X", handle);
  230. ResultCode result = Kernel::GetThreadId(thread_id, handle);
  231. return result.raw;
  232. }
  233. /// Query memory
  234. static Result QueryMemory(void* info, void* out, u32 addr) {
  235. ERROR_LOG(SVC, "(UNIMPLEMENTED) called addr=0x%08X", addr);
  236. return 0;
  237. }
  238. /// Create an event
  239. static Result CreateEvent(Handle* evt, u32 reset_type) {
  240. *evt = Kernel::CreateEvent((ResetType)reset_type);
  241. DEBUG_LOG(SVC, "called reset_type=0x%08X : created handle=0x%08X",
  242. reset_type, *evt);
  243. return 0;
  244. }
  245. /// Duplicates a kernel handle
  246. static Result DuplicateHandle(Handle* out, Handle handle) {
  247. DEBUG_LOG(SVC, "called handle=0x%08X", handle);
  248. // Translate kernel handles -> real handles
  249. if (handle == Kernel::CurrentThread) {
  250. handle = Kernel::GetCurrentThreadHandle();
  251. }
  252. _assert_msg_(KERNEL, (handle != Kernel::CurrentProcess),
  253. "(UNIMPLEMENTED) process handle duplication!");
  254. // TODO(bunnei): FixMe - This is a hack to return the handle that we were asked to duplicate.
  255. *out = handle;
  256. return 0;
  257. }
  258. /// Signals an event
  259. static Result SignalEvent(Handle evt) {
  260. DEBUG_LOG(SVC, "called event=0x%08X", evt);
  261. return Kernel::SignalEvent(evt).raw;
  262. }
  263. /// Clears an event
  264. static Result ClearEvent(Handle evt) {
  265. DEBUG_LOG(SVC, "called event=0x%08X", evt);
  266. return Kernel::ClearEvent(evt).raw;
  267. }
  268. /// Sleep the current thread
  269. static void SleepThread(s64 nanoseconds) {
  270. DEBUG_LOG(SVC, "called nanoseconds=%lld", nanoseconds);
  271. // Check for next thread to schedule
  272. HLE::Reschedule(__func__);
  273. }
  274. /// This returns the total CPU ticks elapsed since the CPU was powered-on
  275. static s64 GetSystemTick() {
  276. return (s64)Core::g_app_core->GetTicks();
  277. }
  278. const HLE::FunctionDef SVC_Table[] = {
  279. {0x00, nullptr, "Unknown"},
  280. {0x01, HLE::Wrap<ControlMemory>, "ControlMemory"},
  281. {0x02, HLE::Wrap<QueryMemory>, "QueryMemory"},
  282. {0x03, nullptr, "ExitProcess"},
  283. {0x04, nullptr, "GetProcessAffinityMask"},
  284. {0x05, nullptr, "SetProcessAffinityMask"},
  285. {0x06, nullptr, "GetProcessIdealProcessor"},
  286. {0x07, nullptr, "SetProcessIdealProcessor"},
  287. {0x08, HLE::Wrap<CreateThread>, "CreateThread"},
  288. {0x09, HLE::Wrap<ExitThread>, "ExitThread"},
  289. {0x0A, HLE::Wrap<SleepThread>, "SleepThread"},
  290. {0x0B, HLE::Wrap<GetThreadPriority>, "GetThreadPriority"},
  291. {0x0C, HLE::Wrap<SetThreadPriority>, "SetThreadPriority"},
  292. {0x0D, nullptr, "GetThreadAffinityMask"},
  293. {0x0E, nullptr, "SetThreadAffinityMask"},
  294. {0x0F, nullptr, "GetThreadIdealProcessor"},
  295. {0x10, nullptr, "SetThreadIdealProcessor"},
  296. {0x11, nullptr, "GetCurrentProcessorNumber"},
  297. {0x12, nullptr, "Run"},
  298. {0x13, HLE::Wrap<CreateMutex>, "CreateMutex"},
  299. {0x14, HLE::Wrap<ReleaseMutex>, "ReleaseMutex"},
  300. {0x15, nullptr, "CreateSemaphore"},
  301. {0x16, nullptr, "ReleaseSemaphore"},
  302. {0x17, HLE::Wrap<CreateEvent>, "CreateEvent"},
  303. {0x18, HLE::Wrap<SignalEvent>, "SignalEvent"},
  304. {0x19, HLE::Wrap<ClearEvent>, "ClearEvent"},
  305. {0x1A, nullptr, "CreateTimer"},
  306. {0x1B, nullptr, "SetTimer"},
  307. {0x1C, nullptr, "CancelTimer"},
  308. {0x1D, nullptr, "ClearTimer"},
  309. {0x1E, nullptr, "CreateMemoryBlock"},
  310. {0x1F, HLE::Wrap<MapMemoryBlock>, "MapMemoryBlock"},
  311. {0x20, nullptr, "UnmapMemoryBlock"},
  312. {0x21, HLE::Wrap<CreateAddressArbiter>, "CreateAddressArbiter"},
  313. {0x22, HLE::Wrap<ArbitrateAddress>, "ArbitrateAddress"},
  314. {0x23, HLE::Wrap<CloseHandle>, "CloseHandle"},
  315. {0x24, HLE::Wrap<WaitSynchronization1>, "WaitSynchronization1"},
  316. {0x25, HLE::Wrap<WaitSynchronizationN>, "WaitSynchronizationN"},
  317. {0x26, nullptr, "SignalAndWait"},
  318. {0x27, HLE::Wrap<DuplicateHandle>, "DuplicateHandle"},
  319. {0x28, HLE::Wrap<GetSystemTick>, "GetSystemTick"},
  320. {0x29, nullptr, "GetHandleInfo"},
  321. {0x2A, nullptr, "GetSystemInfo"},
  322. {0x2B, nullptr, "GetProcessInfo"},
  323. {0x2C, nullptr, "GetThreadInfo"},
  324. {0x2D, HLE::Wrap<ConnectToPort>, "ConnectToPort"},
  325. {0x2E, nullptr, "SendSyncRequest1"},
  326. {0x2F, nullptr, "SendSyncRequest2"},
  327. {0x30, nullptr, "SendSyncRequest3"},
  328. {0x31, nullptr, "SendSyncRequest4"},
  329. {0x32, HLE::Wrap<SendSyncRequest>, "SendSyncRequest"},
  330. {0x33, nullptr, "OpenProcess"},
  331. {0x34, nullptr, "OpenThread"},
  332. {0x35, nullptr, "GetProcessId"},
  333. {0x36, nullptr, "GetProcessIdOfThread"},
  334. {0x37, HLE::Wrap<GetThreadId>, "GetThreadId"},
  335. {0x38, HLE::Wrap<GetResourceLimit>, "GetResourceLimit"},
  336. {0x39, nullptr, "GetResourceLimitLimitValues"},
  337. {0x3A, HLE::Wrap<GetResourceLimitCurrentValues>, "GetResourceLimitCurrentValues"},
  338. {0x3B, nullptr, "GetThreadContext"},
  339. {0x3C, nullptr, "Break"},
  340. {0x3D, HLE::Wrap<OutputDebugString>, "OutputDebugString"},
  341. {0x3E, nullptr, "ControlPerformanceCounter"},
  342. {0x3F, nullptr, "Unknown"},
  343. {0x40, nullptr, "Unknown"},
  344. {0x41, nullptr, "Unknown"},
  345. {0x42, nullptr, "Unknown"},
  346. {0x43, nullptr, "Unknown"},
  347. {0x44, nullptr, "Unknown"},
  348. {0x45, nullptr, "Unknown"},
  349. {0x46, nullptr, "Unknown"},
  350. {0x47, nullptr, "CreatePort"},
  351. {0x48, nullptr, "CreateSessionToPort"},
  352. {0x49, nullptr, "CreateSession"},
  353. {0x4A, nullptr, "AcceptSession"},
  354. {0x4B, nullptr, "ReplyAndReceive1"},
  355. {0x4C, nullptr, "ReplyAndReceive2"},
  356. {0x4D, nullptr, "ReplyAndReceive3"},
  357. {0x4E, nullptr, "ReplyAndReceive4"},
  358. {0x4F, nullptr, "ReplyAndReceive"},
  359. {0x50, nullptr, "BindInterrupt"},
  360. {0x51, nullptr, "UnbindInterrupt"},
  361. {0x52, nullptr, "InvalidateProcessDataCache"},
  362. {0x53, nullptr, "StoreProcessDataCache"},
  363. {0x54, nullptr, "FlushProcessDataCache"},
  364. {0x55, nullptr, "StartInterProcessDma"},
  365. {0x56, nullptr, "StopDma"},
  366. {0x57, nullptr, "GetDmaState"},
  367. {0x58, nullptr, "RestartDma"},
  368. {0x59, nullptr, "Unknown"},
  369. {0x5A, nullptr, "Unknown"},
  370. {0x5B, nullptr, "Unknown"},
  371. {0x5C, nullptr, "Unknown"},
  372. {0x5D, nullptr, "Unknown"},
  373. {0x5E, nullptr, "Unknown"},
  374. {0x5F, nullptr, "Unknown"},
  375. {0x60, nullptr, "DebugActiveProcess"},
  376. {0x61, nullptr, "BreakDebugProcess"},
  377. {0x62, nullptr, "TerminateDebugProcess"},
  378. {0x63, nullptr, "GetProcessDebugEvent"},
  379. {0x64, nullptr, "ContinueDebugEvent"},
  380. {0x65, nullptr, "GetProcessList"},
  381. {0x66, nullptr, "GetThreadList"},
  382. {0x67, nullptr, "GetDebugThreadContext"},
  383. {0x68, nullptr, "SetDebugThreadContext"},
  384. {0x69, nullptr, "QueryDebugProcessMemory"},
  385. {0x6A, nullptr, "ReadProcessMemory"},
  386. {0x6B, nullptr, "WriteProcessMemory"},
  387. {0x6C, nullptr, "SetHardwareBreakPoint"},
  388. {0x6D, nullptr, "GetDebugThreadParam"},
  389. {0x6E, nullptr, "Unknown"},
  390. {0x6F, nullptr, "Unknown"},
  391. {0x70, nullptr, "ControlProcessMemory"},
  392. {0x71, nullptr, "MapProcessMemory"},
  393. {0x72, nullptr, "UnmapProcessMemory"},
  394. {0x73, nullptr, "Unknown"},
  395. {0x74, nullptr, "Unknown"},
  396. {0x75, nullptr, "Unknown"},
  397. {0x76, nullptr, "TerminateProcess"},
  398. {0x77, nullptr, "Unknown"},
  399. {0x78, nullptr, "CreateResourceLimit"},
  400. {0x79, nullptr, "Unknown"},
  401. {0x7A, nullptr, "Unknown"},
  402. {0x7B, nullptr, "Unknown"},
  403. {0x7C, nullptr, "KernelSetState"},
  404. {0x7D, nullptr, "QueryProcessMemory"},
  405. };
  406. void Register() {
  407. HLE::RegisterModule("SVC_Table", ARRAY_SIZE(SVC_Table), SVC_Table);
  408. }
  409. } // namespace