npad.h 17 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473
  1. // Copyright 2018 yuzu emulator team
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #pragma once
  5. #include <array>
  6. #include <atomic>
  7. #include <mutex>
  8. #include "common/bit_field.h"
  9. #include "common/common_types.h"
  10. #include "common/quaternion.h"
  11. #include "common/settings.h"
  12. #include "core/hid/hid_core.h"
  13. #include "core/hid/hid_types.h"
  14. #include "core/hle/service/hid/controllers/controller_base.h"
  15. #include "core/hle/service/hid/ring_lifo.h"
  16. namespace Kernel {
  17. class KEvent;
  18. class KReadableEvent;
  19. } // namespace Kernel
  20. namespace Service::KernelHelpers {
  21. class ServiceContext;
  22. }
  23. namespace Service::HID {
  24. constexpr u32 NPAD_HANDHELD = 32;
  25. constexpr u32 NPAD_UNKNOWN = 16; // TODO(ogniK): What is this?
  26. class Controller_NPad final : public ControllerBase {
  27. public:
  28. explicit Controller_NPad(Core::System& system_,
  29. KernelHelpers::ServiceContext& service_context_);
  30. ~Controller_NPad() override;
  31. // Called when the controller is initialized
  32. void OnInit() override;
  33. // When the controller is released
  34. void OnRelease() override;
  35. // When the controller is requesting an update for the shared memory
  36. void OnUpdate(const Core::Timing::CoreTiming& core_timing, u8* data, std::size_t size) override;
  37. // When the controller is requesting a motion update for the shared memory
  38. void OnMotionUpdate(const Core::Timing::CoreTiming& core_timing, u8* data,
  39. std::size_t size) override;
  40. enum class DeviceIndex : u8 {
  41. Left = 0,
  42. Right = 1,
  43. None = 2,
  44. MaxDeviceIndex = 3,
  45. };
  46. // This is nn::hid::GyroscopeZeroDriftMode
  47. enum class GyroscopeZeroDriftMode : u32 {
  48. Loose = 0,
  49. Standard = 1,
  50. Tight = 2,
  51. };
  52. // This is nn::hid::NpadJoyHoldType
  53. enum class NpadJoyHoldType : u64 {
  54. Vertical = 0,
  55. Horizontal = 1,
  56. };
  57. // This is nn::hid::NpadJoyAssignmentMode
  58. enum class NpadJoyAssignmentMode : u32 {
  59. Dual = 0,
  60. Single = 1,
  61. };
  62. // This is nn::hid::NpadHandheldActivationMode
  63. enum class NpadHandheldActivationMode : u64 {
  64. Dual = 0,
  65. Single = 1,
  66. None = 2,
  67. };
  68. // This is nn::hid::NpadCommunicationMode
  69. enum class NpadCommunicationMode : u64 {
  70. Mode_5ms = 0,
  71. Mode_10ms = 1,
  72. Mode_15ms = 2,
  73. Default = 3,
  74. };
  75. struct DeviceHandle {
  76. Core::HID::NpadType npad_type;
  77. u8 npad_id;
  78. DeviceIndex device_index;
  79. INSERT_PADDING_BYTES_NOINIT(1);
  80. };
  81. static_assert(sizeof(DeviceHandle) == 4, "DeviceHandle is an invalid size");
  82. // This is nn::hid::VibrationValue
  83. struct VibrationValue {
  84. f32 amp_low;
  85. f32 freq_low;
  86. f32 amp_high;
  87. f32 freq_high;
  88. };
  89. static_assert(sizeof(VibrationValue) == 0x10, "Vibration is an invalid size");
  90. static constexpr VibrationValue DEFAULT_VIBRATION_VALUE{
  91. .amp_low = 0.0f,
  92. .freq_low = 160.0f,
  93. .amp_high = 0.0f,
  94. .freq_high = 320.0f,
  95. };
  96. struct LedPattern {
  97. explicit LedPattern(u64 light1, u64 light2, u64 light3, u64 light4) {
  98. position1.Assign(light1);
  99. position2.Assign(light2);
  100. position3.Assign(light3);
  101. position4.Assign(light4);
  102. }
  103. union {
  104. u64 raw{};
  105. BitField<0, 1, u64> position1;
  106. BitField<1, 1, u64> position2;
  107. BitField<2, 1, u64> position3;
  108. BitField<3, 1, u64> position4;
  109. };
  110. };
  111. void SetSupportedStyleSet(Core::HID::NpadStyleTag style_set);
  112. Core::HID::NpadStyleTag GetSupportedStyleSet() const;
  113. void SetSupportedNpadIdTypes(u8* data, std::size_t length);
  114. void GetSupportedNpadIdTypes(u32* data, std::size_t max_length);
  115. std::size_t GetSupportedNpadIdTypesSize() const;
  116. void SetHoldType(NpadJoyHoldType joy_hold_type);
  117. NpadJoyHoldType GetHoldType() const;
  118. void SetNpadHandheldActivationMode(NpadHandheldActivationMode activation_mode);
  119. NpadHandheldActivationMode GetNpadHandheldActivationMode() const;
  120. void SetNpadCommunicationMode(NpadCommunicationMode communication_mode_);
  121. NpadCommunicationMode GetNpadCommunicationMode() const;
  122. void SetNpadMode(u32 npad_id, NpadJoyAssignmentMode assignment_mode);
  123. bool VibrateControllerAtIndex(std::size_t npad_index, std::size_t device_index,
  124. const VibrationValue& vibration_value);
  125. void VibrateController(const DeviceHandle& vibration_device_handle,
  126. const VibrationValue& vibration_value);
  127. void VibrateControllers(const std::vector<DeviceHandle>& vibration_device_handles,
  128. const std::vector<VibrationValue>& vibration_values);
  129. VibrationValue GetLastVibration(const DeviceHandle& vibration_device_handle) const;
  130. void InitializeVibrationDevice(const DeviceHandle& vibration_device_handle);
  131. void InitializeVibrationDeviceAtIndex(std::size_t npad_index, std::size_t device_index);
  132. void SetPermitVibrationSession(bool permit_vibration_session);
  133. bool IsVibrationDeviceMounted(const DeviceHandle& vibration_device_handle) const;
  134. Kernel::KReadableEvent& GetStyleSetChangedEvent(u32 npad_id);
  135. void SignalStyleSetChangedEvent(u32 npad_id) const;
  136. // Adds a new controller at an index.
  137. void AddNewControllerAt(Core::HID::NpadType controller, std::size_t npad_index);
  138. // Adds a new controller at an index with connection status.
  139. void UpdateControllerAt(Core::HID::NpadType controller, std::size_t npad_index, bool connected);
  140. void DisconnectNpad(u32 npad_id);
  141. void DisconnectNpadAtIndex(std::size_t index);
  142. void SetGyroscopeZeroDriftMode(GyroscopeZeroDriftMode drift_mode);
  143. GyroscopeZeroDriftMode GetGyroscopeZeroDriftMode() const;
  144. bool IsSixAxisSensorAtRest() const;
  145. void SetSixAxisEnabled(bool six_axis_status);
  146. void SetSixAxisFusionParameters(f32 parameter1, f32 parameter2);
  147. std::pair<f32, f32> GetSixAxisFusionParameters();
  148. void ResetSixAxisFusionParameters();
  149. LedPattern GetLedPattern(u32 npad_id);
  150. bool IsUnintendedHomeButtonInputProtectionEnabled(u32 npad_id) const;
  151. void SetUnintendedHomeButtonInputProtectionEnabled(bool is_protection_enabled, u32 npad_id);
  152. void SetAnalogStickUseCenterClamp(bool use_center_clamp);
  153. void ClearAllConnectedControllers();
  154. void DisconnectAllConnectedControllers();
  155. void ConnectAllDisconnectedControllers();
  156. void ClearAllControllers();
  157. void MergeSingleJoyAsDualJoy(u32 npad_id_1, u32 npad_id_2);
  158. void StartLRAssignmentMode();
  159. void StopLRAssignmentMode();
  160. bool SwapNpadAssignment(u32 npad_id_1, u32 npad_id_2);
  161. // Logical OR for all buttons presses on all controllers
  162. // Specifically for cheat engine and other features.
  163. u32 GetAndResetPressState();
  164. static std::size_t NPadIdToIndex(u32 npad_id);
  165. static u32 IndexToNPad(std::size_t index);
  166. static bool IsNpadIdValid(u32 npad_id);
  167. static bool IsDeviceHandleValid(const DeviceHandle& device_handle);
  168. private:
  169. // This is nn::hid::detail::ColorAttribute
  170. enum class ColorAttribute : u32_le {
  171. Ok = 0,
  172. ReadError = 1,
  173. NoController = 2,
  174. };
  175. static_assert(sizeof(ColorAttribute) == 4, "ColorAttribute is an invalid size");
  176. // This is nn::hid::detail::NpadFullKeyColorState
  177. struct NpadFullKeyColorState {
  178. ColorAttribute attribute;
  179. Core::HID::NpadControllerColor fullkey;
  180. };
  181. static_assert(sizeof(NpadFullKeyColorState) == 0xC, "NpadFullKeyColorState is an invalid size");
  182. // This is nn::hid::detail::NpadJoyColorState
  183. struct NpadJoyColorState {
  184. ColorAttribute attribute;
  185. Core::HID::NpadControllerColor left;
  186. Core::HID::NpadControllerColor right;
  187. };
  188. static_assert(sizeof(NpadJoyColorState) == 0x14, "NpadJoyColorState is an invalid size");
  189. // This is nn::hid::NpadAttribute
  190. struct NpadAttribute {
  191. union {
  192. u32_le raw{};
  193. BitField<0, 1, u32> is_connected;
  194. BitField<1, 1, u32> is_wired;
  195. BitField<2, 1, u32> is_left_connected;
  196. BitField<3, 1, u32> is_left_wired;
  197. BitField<4, 1, u32> is_right_connected;
  198. BitField<5, 1, u32> is_right_wired;
  199. };
  200. };
  201. static_assert(sizeof(NpadAttribute) == 4, "NpadAttribute is an invalid size");
  202. // This is nn::hid::NpadFullKeyState
  203. // This is nn::hid::NpadHandheldState
  204. // This is nn::hid::NpadJoyDualState
  205. // This is nn::hid::NpadJoyLeftState
  206. // This is nn::hid::NpadJoyRightState
  207. // This is nn::hid::NpadPalmaState
  208. // This is nn::hid::NpadSystemExtState
  209. struct NPadGenericState {
  210. s64_le sampling_number;
  211. Core::HID::NpadButtonState npad_buttons;
  212. Core::HID::AnalogStickState l_stick;
  213. Core::HID::AnalogStickState r_stick;
  214. NpadAttribute connection_status;
  215. INSERT_PADDING_BYTES(4); // Reserved
  216. };
  217. static_assert(sizeof(NPadGenericState) == 0x28, "NPadGenericState is an invalid size");
  218. // This is nn::hid::SixAxisSensorAttribute
  219. struct SixAxisSensorAttribute {
  220. union {
  221. u32_le raw{};
  222. BitField<0, 1, u32> is_connected;
  223. BitField<1, 1, u32> is_interpolated;
  224. };
  225. };
  226. static_assert(sizeof(SixAxisSensorAttribute) == 4, "SixAxisSensorAttribute is an invalid size");
  227. // This is nn::hid::SixAxisSensorState
  228. struct SixAxisSensorState {
  229. s64_le delta_time{};
  230. s64_le sampling_number{};
  231. Common::Vec3f accel{};
  232. Common::Vec3f gyro{};
  233. Common::Vec3f rotation{};
  234. std::array<Common::Vec3f, 3> orientation{};
  235. SixAxisSensorAttribute attribute;
  236. INSERT_PADDING_BYTES(4); // Reserved
  237. };
  238. static_assert(sizeof(SixAxisSensorState) == 0x60, "SixAxisSensorState is an invalid size");
  239. // This is nn::hid::server::NpadGcTriggerState
  240. struct NpadGcTriggerState {
  241. s64_le sampling_number{};
  242. s32_le l_analog{};
  243. s32_le r_analog{};
  244. };
  245. static_assert(sizeof(NpadGcTriggerState) == 0x10, "NpadGcTriggerState is an invalid size");
  246. // This is nn::hid::NpadSystemProperties
  247. struct NPadSystemProperties {
  248. union {
  249. s64_le raw{};
  250. BitField<0, 1, s64> is_charging_joy_dual;
  251. BitField<1, 1, s64> is_charging_joy_left;
  252. BitField<2, 1, s64> is_charging_joy_right;
  253. BitField<3, 1, s64> is_powered_joy_dual;
  254. BitField<4, 1, s64> is_powered_joy_left;
  255. BitField<5, 1, s64> is_powered_joy_right;
  256. BitField<9, 1, s64> is_system_unsupported_button;
  257. BitField<10, 1, s64> is_system_ext_unsupported_button;
  258. BitField<11, 1, s64> is_vertical;
  259. BitField<12, 1, s64> is_horizontal;
  260. BitField<13, 1, s64> use_plus;
  261. BitField<14, 1, s64> use_minus;
  262. BitField<15, 1, s64> use_directional_buttons;
  263. };
  264. };
  265. static_assert(sizeof(NPadSystemProperties) == 0x8, "NPadSystemProperties is an invalid size");
  266. // This is nn::hid::NpadSystemButtonProperties
  267. struct NpadSystemButtonProperties {
  268. union {
  269. s32_le raw{};
  270. BitField<0, 1, s32> is_home_button_protection_enabled;
  271. };
  272. };
  273. static_assert(sizeof(NpadSystemButtonProperties) == 0x4,
  274. "NPadButtonProperties is an invalid size");
  275. // This is nn::hid::system::DeviceType
  276. struct DeviceType {
  277. union {
  278. u32_le raw{};
  279. BitField<0, 1, s32> fullkey;
  280. BitField<1, 1, s32> debug_pad;
  281. BitField<2, 1, s32> handheld_left;
  282. BitField<3, 1, s32> handheld_right;
  283. BitField<4, 1, s32> joycon_left;
  284. BitField<5, 1, s32> joycon_right;
  285. BitField<6, 1, s32> palma;
  286. BitField<7, 1, s32> lark_hvc_left;
  287. BitField<8, 1, s32> lark_hvc_right;
  288. BitField<9, 1, s32> lark_nes_left;
  289. BitField<10, 1, s32> lark_nes_right;
  290. BitField<11, 1, s32> handheld_lark_hvc_left;
  291. BitField<12, 1, s32> handheld_lark_hvc_right;
  292. BitField<13, 1, s32> handheld_lark_nes_left;
  293. BitField<14, 1, s32> handheld_lark_nes_right;
  294. BitField<15, 1, s32> lucia;
  295. BitField<31, 1, s32> system;
  296. };
  297. };
  298. struct NfcXcdHandle {
  299. INSERT_PADDING_BYTES(0x60);
  300. };
  301. struct AppletFooterUiAttributes {
  302. INSERT_PADDING_BYTES(0x4);
  303. };
  304. // This is nn::hid::server::NpadGcTriggerState
  305. enum class AppletFooterUiType : u8 {
  306. None = 0,
  307. HandheldNone = 1,
  308. HandheldJoyConLeftOnly = 1,
  309. HandheldJoyConRightOnly = 3,
  310. HandheldJoyConLeftJoyConRight = 4,
  311. JoyDual = 5,
  312. JoyDualLeftOnly = 6,
  313. JoyDualRightOnly = 7,
  314. JoyLeftHorizontal = 8,
  315. JoyLeftVertical = 9,
  316. JoyRightHorizontal = 10,
  317. JoyRightVertical = 11,
  318. SwitchProController = 12,
  319. CompatibleProController = 13,
  320. CompatibleJoyCon = 14,
  321. LarkHvc1 = 15,
  322. LarkHvc2 = 16,
  323. LarkNesLeft = 17,
  324. LarkNesRight = 18,
  325. Lucia = 19,
  326. Verification = 20,
  327. Lagon = 21,
  328. };
  329. // This is nn::hid::detail::NpadInternalState
  330. struct NpadInternalState {
  331. Core::HID::NpadStyleTag style_set;
  332. NpadJoyAssignmentMode assignment_mode;
  333. NpadFullKeyColorState fullkey_color;
  334. NpadJoyColorState joycon_color;
  335. Lifo<NPadGenericState> fullkey_lifo;
  336. Lifo<NPadGenericState> handheld_lifo;
  337. Lifo<NPadGenericState> joy_dual_lifo;
  338. Lifo<NPadGenericState> joy_left_lifo;
  339. Lifo<NPadGenericState> joy_right_lifo;
  340. Lifo<NPadGenericState> palma_lifo;
  341. Lifo<NPadGenericState> system_ext_lifo;
  342. Lifo<SixAxisSensorState> sixaxis_fullkey_lifo;
  343. Lifo<SixAxisSensorState> sixaxis_handheld_lifo;
  344. Lifo<SixAxisSensorState> sixaxis_dual_left_lifo;
  345. Lifo<SixAxisSensorState> sixaxis_dual_right_lifo;
  346. Lifo<SixAxisSensorState> sixaxis_left_lifo;
  347. Lifo<SixAxisSensorState> sixaxis_right_lifo;
  348. DeviceType device_type;
  349. INSERT_PADDING_BYTES(0x4); // Reserved
  350. NPadSystemProperties system_properties;
  351. NpadSystemButtonProperties button_properties;
  352. Core::HID::BatteryLevel battery_level_dual;
  353. Core::HID::BatteryLevel battery_level_left;
  354. Core::HID::BatteryLevel battery_level_right;
  355. AppletFooterUiAttributes footer_attributes;
  356. AppletFooterUiType footer_type;
  357. // nfc_states needs to be checked switchbrew doesn't match with HW
  358. NfcXcdHandle nfc_states;
  359. INSERT_PADDING_BYTES(0x18); // Unknown
  360. Lifo<NpadGcTriggerState> gc_trigger_lifo;
  361. INSERT_PADDING_BYTES(0xc1f); // Unknown
  362. };
  363. static_assert(sizeof(NpadInternalState) == 0x5000, "NpadInternalState is an invalid size");
  364. struct VibrationData {
  365. bool device_mounted{};
  366. VibrationValue latest_vibration_value{};
  367. std::chrono::steady_clock::time_point last_vibration_timepoint{};
  368. };
  369. struct ControllerData {
  370. Core::HID::EmulatedController* device;
  371. Kernel::KEvent* styleset_changed_event{};
  372. NpadInternalState shared_memory_entry{};
  373. std::array<VibrationData, 2> vibration{};
  374. bool unintended_home_button_input_protection{};
  375. // Current pad state
  376. NPadGenericState npad_pad_state{};
  377. NPadGenericState npad_libnx_state{};
  378. NpadGcTriggerState npad_trigger_state{};
  379. SixAxisSensorState sixaxis_fullkey_state{};
  380. SixAxisSensorState sixaxis_handheld_state{};
  381. SixAxisSensorState sixaxis_dual_left_state{};
  382. SixAxisSensorState sixaxis_dual_right_state{};
  383. SixAxisSensorState sixaxis_left_lifo_state{};
  384. SixAxisSensorState sixaxis_right_lifo_state{};
  385. int callback_key;
  386. };
  387. void ControllerUpdate(Core::HID::ControllerTriggerType type, std::size_t controller_idx);
  388. void InitNewlyAddedController(std::size_t controller_idx);
  389. bool IsControllerSupported(Core::HID::NpadType controller) const;
  390. void RequestPadStateUpdate(u32 npad_id);
  391. std::atomic<u32> press_state{};
  392. std::array<ControllerData, 10> controller_data{};
  393. KernelHelpers::ServiceContext& service_context;
  394. std::mutex mutex;
  395. std::vector<u32> supported_npad_id_types{};
  396. NpadJoyHoldType hold_type{NpadJoyHoldType::Vertical};
  397. NpadHandheldActivationMode handheld_activation_mode{NpadHandheldActivationMode::Dual};
  398. NpadCommunicationMode communication_mode{NpadCommunicationMode::Default};
  399. bool permit_vibration_session_enabled{false};
  400. bool analog_stick_use_center_clamp{};
  401. GyroscopeZeroDriftMode gyroscope_zero_drift_mode{GyroscopeZeroDriftMode::Standard};
  402. bool sixaxis_sensors_enabled{true};
  403. f32 sixaxis_fusion_parameter1{};
  404. f32 sixaxis_fusion_parameter2{};
  405. bool sixaxis_at_rest{true};
  406. bool is_in_lr_assignment_mode{false};
  407. };
  408. } // namespace Service::HID