kernel.cpp 11 KB

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  1. // Copyright 2014 Citra Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <array>
  5. #include <atomic>
  6. #include <memory>
  7. #include <mutex>
  8. #include <utility>
  9. #include "common/assert.h"
  10. #include "common/logging/log.h"
  11. #include "core/core.h"
  12. #include "core/core_timing.h"
  13. #include "core/hle/kernel/client_port.h"
  14. #include "core/hle/kernel/handle_table.h"
  15. #include "core/hle/kernel/kernel.h"
  16. #include "core/hle/kernel/process.h"
  17. #include "core/hle/kernel/resource_limit.h"
  18. #include "core/hle/kernel/thread.h"
  19. #include "core/hle/kernel/timer.h"
  20. #include "core/hle/lock.h"
  21. #include "core/hle/result.h"
  22. namespace Kernel {
  23. /**
  24. * Callback that will wake up the thread it was scheduled for
  25. * @param thread_handle The handle of the thread that's been awoken
  26. * @param cycles_late The number of CPU cycles that have passed since the desired wakeup time
  27. */
  28. static void ThreadWakeupCallback(u64 thread_handle, [[maybe_unused]] int cycles_late) {
  29. const auto proper_handle = static_cast<Handle>(thread_handle);
  30. auto& system = Core::System::GetInstance();
  31. // Lock the global kernel mutex when we enter the kernel HLE.
  32. std::lock_guard<std::recursive_mutex> lock(HLE::g_hle_lock);
  33. SharedPtr<Thread> thread =
  34. system.Kernel().RetrieveThreadFromWakeupCallbackHandleTable(proper_handle);
  35. if (thread == nullptr) {
  36. LOG_CRITICAL(Kernel, "Callback fired for invalid thread {:08X}", proper_handle);
  37. return;
  38. }
  39. bool resume = true;
  40. if (thread->status == ThreadStatus::WaitSynchAny ||
  41. thread->status == ThreadStatus::WaitSynchAll ||
  42. thread->status == ThreadStatus::WaitHLEEvent) {
  43. // Remove the thread from each of its waiting objects' waitlists
  44. for (auto& object : thread->wait_objects) {
  45. object->RemoveWaitingThread(thread.get());
  46. }
  47. thread->wait_objects.clear();
  48. // Invoke the wakeup callback before clearing the wait objects
  49. if (thread->wakeup_callback) {
  50. resume = thread->wakeup_callback(ThreadWakeupReason::Timeout, thread, nullptr, 0);
  51. }
  52. }
  53. if (thread->mutex_wait_address != 0 || thread->condvar_wait_address != 0 ||
  54. thread->wait_handle) {
  55. ASSERT(thread->status == ThreadStatus::WaitMutex);
  56. thread->mutex_wait_address = 0;
  57. thread->condvar_wait_address = 0;
  58. thread->wait_handle = 0;
  59. auto lock_owner = thread->lock_owner;
  60. // Threads waking up by timeout from WaitProcessWideKey do not perform priority inheritance
  61. // and don't have a lock owner unless SignalProcessWideKey was called first and the thread
  62. // wasn't awakened due to the mutex already being acquired.
  63. if (lock_owner) {
  64. lock_owner->RemoveMutexWaiter(thread);
  65. }
  66. }
  67. if (thread->arb_wait_address != 0) {
  68. ASSERT(thread->status == ThreadStatus::WaitArb);
  69. thread->arb_wait_address = 0;
  70. }
  71. if (resume) {
  72. thread->ResumeFromWait();
  73. }
  74. }
  75. /// The timer callback event, called when a timer is fired
  76. static void TimerCallback(u64 timer_handle, int cycles_late) {
  77. const auto proper_handle = static_cast<Handle>(timer_handle);
  78. auto& system = Core::System::GetInstance();
  79. SharedPtr<Timer> timer = system.Kernel().RetrieveTimerFromCallbackHandleTable(proper_handle);
  80. if (timer == nullptr) {
  81. LOG_CRITICAL(Kernel, "Callback fired for invalid timer {:016X}", timer_handle);
  82. return;
  83. }
  84. timer->Signal(cycles_late);
  85. }
  86. struct KernelCore::Impl {
  87. void Initialize(KernelCore& kernel) {
  88. Shutdown();
  89. InitializeResourceLimits(kernel);
  90. InitializeThreads();
  91. InitializeTimers();
  92. }
  93. void Shutdown() {
  94. next_object_id = 0;
  95. next_process_id = 10;
  96. next_thread_id = 1;
  97. process_list.clear();
  98. handle_table.Clear();
  99. resource_limits.fill(nullptr);
  100. thread_wakeup_callback_handle_table.Clear();
  101. thread_wakeup_event_type = nullptr;
  102. timer_callback_handle_table.Clear();
  103. timer_callback_event_type = nullptr;
  104. named_ports.clear();
  105. }
  106. void InitializeResourceLimits(KernelCore& kernel) {
  107. // Create the four resource limits that the system uses
  108. // Create the APPLICATION resource limit
  109. SharedPtr<ResourceLimit> resource_limit = ResourceLimit::Create(kernel, "Applications");
  110. resource_limit->max_priority = 0x18;
  111. resource_limit->max_commit = 0x4000000;
  112. resource_limit->max_threads = 0x20;
  113. resource_limit->max_events = 0x20;
  114. resource_limit->max_mutexes = 0x20;
  115. resource_limit->max_semaphores = 0x8;
  116. resource_limit->max_timers = 0x8;
  117. resource_limit->max_shared_mems = 0x10;
  118. resource_limit->max_address_arbiters = 0x2;
  119. resource_limit->max_cpu_time = 0x1E;
  120. resource_limits[static_cast<u8>(ResourceLimitCategory::APPLICATION)] = resource_limit;
  121. // Create the SYS_APPLET resource limit
  122. resource_limit = ResourceLimit::Create(kernel, "System Applets");
  123. resource_limit->max_priority = 0x4;
  124. resource_limit->max_commit = 0x5E00000;
  125. resource_limit->max_threads = 0x1D;
  126. resource_limit->max_events = 0xB;
  127. resource_limit->max_mutexes = 0x8;
  128. resource_limit->max_semaphores = 0x4;
  129. resource_limit->max_timers = 0x4;
  130. resource_limit->max_shared_mems = 0x8;
  131. resource_limit->max_address_arbiters = 0x3;
  132. resource_limit->max_cpu_time = 0x2710;
  133. resource_limits[static_cast<u8>(ResourceLimitCategory::SYS_APPLET)] = resource_limit;
  134. // Create the LIB_APPLET resource limit
  135. resource_limit = ResourceLimit::Create(kernel, "Library Applets");
  136. resource_limit->max_priority = 0x4;
  137. resource_limit->max_commit = 0x600000;
  138. resource_limit->max_threads = 0xE;
  139. resource_limit->max_events = 0x8;
  140. resource_limit->max_mutexes = 0x8;
  141. resource_limit->max_semaphores = 0x4;
  142. resource_limit->max_timers = 0x4;
  143. resource_limit->max_shared_mems = 0x8;
  144. resource_limit->max_address_arbiters = 0x1;
  145. resource_limit->max_cpu_time = 0x2710;
  146. resource_limits[static_cast<u8>(ResourceLimitCategory::LIB_APPLET)] = resource_limit;
  147. // Create the OTHER resource limit
  148. resource_limit = ResourceLimit::Create(kernel, "Others");
  149. resource_limit->max_priority = 0x4;
  150. resource_limit->max_commit = 0x2180000;
  151. resource_limit->max_threads = 0xE1;
  152. resource_limit->max_events = 0x108;
  153. resource_limit->max_mutexes = 0x25;
  154. resource_limit->max_semaphores = 0x43;
  155. resource_limit->max_timers = 0x2C;
  156. resource_limit->max_shared_mems = 0x1F;
  157. resource_limit->max_address_arbiters = 0x2D;
  158. resource_limit->max_cpu_time = 0x3E8;
  159. resource_limits[static_cast<u8>(ResourceLimitCategory::OTHER)] = resource_limit;
  160. }
  161. void InitializeThreads() {
  162. thread_wakeup_event_type =
  163. CoreTiming::RegisterEvent("ThreadWakeupCallback", ThreadWakeupCallback);
  164. }
  165. void InitializeTimers() {
  166. timer_callback_handle_table.Clear();
  167. timer_callback_event_type = CoreTiming::RegisterEvent("TimerCallback", TimerCallback);
  168. }
  169. std::atomic<u32> next_object_id{0};
  170. // TODO(Subv): Start the process ids from 10 for now, as lower PIDs are
  171. // reserved for low-level services
  172. std::atomic<u32> next_process_id{10};
  173. std::atomic<u32> next_thread_id{1};
  174. // Lists all processes that exist in the current session.
  175. std::vector<SharedPtr<Process>> process_list;
  176. Kernel::HandleTable handle_table;
  177. std::array<SharedPtr<ResourceLimit>, 4> resource_limits;
  178. /// The event type of the generic timer callback event
  179. CoreTiming::EventType* timer_callback_event_type = nullptr;
  180. // TODO(yuriks): This can be removed if Timer objects are explicitly pooled in the future,
  181. // allowing us to simply use a pool index or similar.
  182. Kernel::HandleTable timer_callback_handle_table;
  183. CoreTiming::EventType* thread_wakeup_event_type = nullptr;
  184. // TODO(yuriks): This can be removed if Thread objects are explicitly pooled in the future,
  185. // allowing us to simply use a pool index or similar.
  186. Kernel::HandleTable thread_wakeup_callback_handle_table;
  187. /// Map of named ports managed by the kernel, which can be retrieved using
  188. /// the ConnectToPort SVC.
  189. NamedPortTable named_ports;
  190. };
  191. KernelCore::KernelCore() : impl{std::make_unique<Impl>()} {}
  192. KernelCore::~KernelCore() {
  193. Shutdown();
  194. }
  195. void KernelCore::Initialize() {
  196. impl->Initialize(*this);
  197. }
  198. void KernelCore::Shutdown() {
  199. impl->Shutdown();
  200. }
  201. Kernel::HandleTable& KernelCore::HandleTable() {
  202. return impl->handle_table;
  203. }
  204. const Kernel::HandleTable& KernelCore::HandleTable() const {
  205. return impl->handle_table;
  206. }
  207. SharedPtr<ResourceLimit> KernelCore::ResourceLimitForCategory(
  208. ResourceLimitCategory category) const {
  209. return impl->resource_limits.at(static_cast<std::size_t>(category));
  210. }
  211. SharedPtr<Thread> KernelCore::RetrieveThreadFromWakeupCallbackHandleTable(Handle handle) const {
  212. return impl->thread_wakeup_callback_handle_table.Get<Thread>(handle);
  213. }
  214. SharedPtr<Timer> KernelCore::RetrieveTimerFromCallbackHandleTable(Handle handle) const {
  215. return impl->timer_callback_handle_table.Get<Timer>(handle);
  216. }
  217. void KernelCore::AppendNewProcess(SharedPtr<Process> process) {
  218. impl->process_list.push_back(std::move(process));
  219. }
  220. void KernelCore::AddNamedPort(std::string name, SharedPtr<ClientPort> port) {
  221. impl->named_ports.emplace(std::move(name), std::move(port));
  222. }
  223. KernelCore::NamedPortTable::iterator KernelCore::FindNamedPort(const std::string& name) {
  224. return impl->named_ports.find(name);
  225. }
  226. KernelCore::NamedPortTable::const_iterator KernelCore::FindNamedPort(
  227. const std::string& name) const {
  228. return impl->named_ports.find(name);
  229. }
  230. bool KernelCore::IsValidNamedPort(NamedPortTable::const_iterator port) const {
  231. return port != impl->named_ports.cend();
  232. }
  233. u32 KernelCore::CreateNewObjectID() {
  234. return impl->next_object_id++;
  235. }
  236. u32 KernelCore::CreateNewThreadID() {
  237. return impl->next_thread_id++;
  238. }
  239. u32 KernelCore::CreateNewProcessID() {
  240. return impl->next_process_id++;
  241. }
  242. ResultVal<Handle> KernelCore::CreateTimerCallbackHandle(const SharedPtr<Timer>& timer) {
  243. return impl->timer_callback_handle_table.Create(timer);
  244. }
  245. CoreTiming::EventType* KernelCore::ThreadWakeupCallbackEventType() const {
  246. return impl->thread_wakeup_event_type;
  247. }
  248. CoreTiming::EventType* KernelCore::TimerCallbackEventType() const {
  249. return impl->timer_callback_event_type;
  250. }
  251. Kernel::HandleTable& KernelCore::ThreadWakeupCallbackHandleTable() {
  252. return impl->thread_wakeup_callback_handle_table;
  253. }
  254. const Kernel::HandleTable& KernelCore::ThreadWakeupCallbackHandleTable() const {
  255. return impl->thread_wakeup_callback_handle_table;
  256. }
  257. } // namespace Kernel