udp_client.cpp 25 KB

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  1. // Copyright 2018 Citra Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <random>
  5. #include <boost/asio.hpp>
  6. #include <fmt/format.h>
  7. #include "common/logging/log.h"
  8. #include "common/param_package.h"
  9. #include "common/settings.h"
  10. #include "input_common/drivers/udp_client.h"
  11. #include "input_common/helpers/udp_protocol.h"
  12. using boost::asio::ip::udp;
  13. namespace InputCommon::CemuhookUDP {
  14. struct SocketCallback {
  15. std::function<void(Response::Version)> version;
  16. std::function<void(Response::PortInfo)> port_info;
  17. std::function<void(Response::PadData)> pad_data;
  18. };
  19. class Socket {
  20. public:
  21. using clock = std::chrono::system_clock;
  22. explicit Socket(const std::string& host, u16 port, SocketCallback callback_)
  23. : callback(std::move(callback_)), timer(io_service),
  24. socket(io_service, udp::endpoint(udp::v4(), 0)), client_id(GenerateRandomClientId()) {
  25. boost::system::error_code ec{};
  26. auto ipv4 = boost::asio::ip::make_address_v4(host, ec);
  27. if (ec.value() != boost::system::errc::success) {
  28. LOG_ERROR(Input, "Invalid IPv4 address \"{}\" provided to socket", host);
  29. ipv4 = boost::asio::ip::address_v4{};
  30. }
  31. send_endpoint = {udp::endpoint(ipv4, port)};
  32. }
  33. void Stop() {
  34. io_service.stop();
  35. }
  36. void Loop() {
  37. io_service.run();
  38. }
  39. void StartSend(const clock::time_point& from) {
  40. timer.expires_at(from + std::chrono::seconds(3));
  41. timer.async_wait([this](const boost::system::error_code& error) { HandleSend(error); });
  42. }
  43. void StartReceive() {
  44. socket.async_receive_from(
  45. boost::asio::buffer(receive_buffer), receive_endpoint,
  46. [this](const boost::system::error_code& error, std::size_t bytes_transferred) {
  47. HandleReceive(error, bytes_transferred);
  48. });
  49. }
  50. private:
  51. u32 GenerateRandomClientId() const {
  52. std::random_device device;
  53. return device();
  54. }
  55. void HandleReceive(const boost::system::error_code&, std::size_t bytes_transferred) {
  56. if (auto type = Response::Validate(receive_buffer.data(), bytes_transferred)) {
  57. switch (*type) {
  58. case Type::Version: {
  59. Response::Version version;
  60. std::memcpy(&version, &receive_buffer[sizeof(Header)], sizeof(Response::Version));
  61. callback.version(std::move(version));
  62. break;
  63. }
  64. case Type::PortInfo: {
  65. Response::PortInfo port_info;
  66. std::memcpy(&port_info, &receive_buffer[sizeof(Header)],
  67. sizeof(Response::PortInfo));
  68. callback.port_info(std::move(port_info));
  69. break;
  70. }
  71. case Type::PadData: {
  72. Response::PadData pad_data;
  73. std::memcpy(&pad_data, &receive_buffer[sizeof(Header)], sizeof(Response::PadData));
  74. callback.pad_data(std::move(pad_data));
  75. break;
  76. }
  77. }
  78. }
  79. StartReceive();
  80. }
  81. void HandleSend(const boost::system::error_code&) {
  82. boost::system::error_code _ignored{};
  83. // Send a request for getting port info for the pad
  84. const Request::PortInfo port_info{4, {0, 1, 2, 3}};
  85. const auto port_message = Request::Create(port_info, client_id);
  86. std::memcpy(&send_buffer1, &port_message, PORT_INFO_SIZE);
  87. socket.send_to(boost::asio::buffer(send_buffer1), send_endpoint, {}, _ignored);
  88. // Send a request for getting pad data for the pad
  89. const Request::PadData pad_data{
  90. Request::RegisterFlags::AllPads,
  91. 0,
  92. EMPTY_MAC_ADDRESS,
  93. };
  94. const auto pad_message = Request::Create(pad_data, client_id);
  95. std::memcpy(send_buffer2.data(), &pad_message, PAD_DATA_SIZE);
  96. socket.send_to(boost::asio::buffer(send_buffer2), send_endpoint, {}, _ignored);
  97. StartSend(timer.expiry());
  98. }
  99. SocketCallback callback;
  100. boost::asio::io_service io_service;
  101. boost::asio::basic_waitable_timer<clock> timer;
  102. udp::socket socket;
  103. const u32 client_id;
  104. static constexpr std::size_t PORT_INFO_SIZE = sizeof(Message<Request::PortInfo>);
  105. static constexpr std::size_t PAD_DATA_SIZE = sizeof(Message<Request::PadData>);
  106. std::array<u8, PORT_INFO_SIZE> send_buffer1;
  107. std::array<u8, PAD_DATA_SIZE> send_buffer2;
  108. udp::endpoint send_endpoint;
  109. std::array<u8, MAX_PACKET_SIZE> receive_buffer;
  110. udp::endpoint receive_endpoint;
  111. };
  112. static void SocketLoop(Socket* socket) {
  113. socket->StartReceive();
  114. socket->StartSend(Socket::clock::now());
  115. socket->Loop();
  116. }
  117. UDPClient::UDPClient(std::string input_engine_) : InputEngine(std::move(input_engine_)) {
  118. LOG_INFO(Input, "Udp Initialization started");
  119. ReloadSockets();
  120. }
  121. UDPClient::~UDPClient() {
  122. Reset();
  123. }
  124. UDPClient::ClientConnection::ClientConnection() = default;
  125. UDPClient::ClientConnection::~ClientConnection() = default;
  126. void UDPClient::ReloadSockets() {
  127. Reset();
  128. std::stringstream servers_ss(Settings::values.udp_input_servers.GetValue());
  129. std::string server_token;
  130. std::size_t client = 0;
  131. while (std::getline(servers_ss, server_token, ',')) {
  132. if (client == MAX_UDP_CLIENTS) {
  133. break;
  134. }
  135. std::stringstream server_ss(server_token);
  136. std::string token;
  137. std::getline(server_ss, token, ':');
  138. std::string udp_input_address = token;
  139. std::getline(server_ss, token, ':');
  140. char* temp;
  141. const u16 udp_input_port = static_cast<u16>(std::strtol(token.c_str(), &temp, 0));
  142. if (*temp != '\0') {
  143. LOG_ERROR(Input, "Port number is not valid {}", token);
  144. continue;
  145. }
  146. const std::size_t client_number = GetClientNumber(udp_input_address, udp_input_port);
  147. if (client_number != MAX_UDP_CLIENTS) {
  148. LOG_ERROR(Input, "Duplicated UDP servers found");
  149. continue;
  150. }
  151. StartCommunication(client++, udp_input_address, udp_input_port);
  152. }
  153. }
  154. std::size_t UDPClient::GetClientNumber(std::string_view host, u16 port) const {
  155. for (std::size_t client = 0; client < clients.size(); client++) {
  156. if (clients[client].active == -1) {
  157. continue;
  158. }
  159. if (clients[client].host == host && clients[client].port == port) {
  160. return client;
  161. }
  162. }
  163. return MAX_UDP_CLIENTS;
  164. }
  165. BatteryLevel UDPClient::GetBatteryLevel(Response::Battery battery) const {
  166. switch (battery) {
  167. case Response::Battery::Dying:
  168. return BatteryLevel::Empty;
  169. case Response::Battery::Low:
  170. return BatteryLevel::Critical;
  171. case Response::Battery::Medium:
  172. return BatteryLevel::Low;
  173. case Response::Battery::High:
  174. return BatteryLevel::Medium;
  175. case Response::Battery::Full:
  176. case Response::Battery::Charged:
  177. return BatteryLevel::Full;
  178. case Response::Battery::Charging:
  179. default:
  180. return BatteryLevel::Charging;
  181. }
  182. }
  183. void UDPClient::OnVersion([[maybe_unused]] Response::Version data) {
  184. LOG_TRACE(Input, "Version packet received: {}", data.version);
  185. }
  186. void UDPClient::OnPortInfo([[maybe_unused]] Response::PortInfo data) {
  187. LOG_TRACE(Input, "PortInfo packet received: {}", data.model);
  188. }
  189. void UDPClient::OnPadData(Response::PadData data, std::size_t client) {
  190. const std::size_t pad_index = (client * PADS_PER_CLIENT) + data.info.id;
  191. if (pad_index >= pads.size()) {
  192. LOG_ERROR(Input, "Invalid pad id {}", data.info.id);
  193. return;
  194. }
  195. LOG_TRACE(Input, "PadData packet received");
  196. if (data.packet_counter == pads[pad_index].packet_sequence) {
  197. LOG_WARNING(
  198. Input,
  199. "PadData packet dropped because its stale info. Current count: {} Packet count: {}",
  200. pads[pad_index].packet_sequence, data.packet_counter);
  201. pads[pad_index].connected = false;
  202. return;
  203. }
  204. clients[client].active = 1;
  205. pads[pad_index].connected = true;
  206. pads[pad_index].packet_sequence = data.packet_counter;
  207. const auto now = std::chrono::steady_clock::now();
  208. const auto time_difference = static_cast<u64>(
  209. std::chrono::duration_cast<std::chrono::microseconds>(now - pads[pad_index].last_update)
  210. .count());
  211. pads[pad_index].last_update = now;
  212. // Gyroscope values are not it the correct scale from better joy.
  213. // Dividing by 312 allows us to make one full turn = 1 turn
  214. // This must be a configurable valued called sensitivity
  215. const float gyro_scale = 1.0f / 312.0f;
  216. const BasicMotion motion{
  217. .gyro_x = data.gyro.pitch * gyro_scale,
  218. .gyro_y = data.gyro.roll * gyro_scale,
  219. .gyro_z = -data.gyro.yaw * gyro_scale,
  220. .accel_x = data.accel.x,
  221. .accel_y = -data.accel.z,
  222. .accel_z = data.accel.y,
  223. .delta_timestamp = time_difference,
  224. };
  225. const PadIdentifier identifier = GetPadIdentifier(pad_index);
  226. SetMotion(identifier, 0, motion);
  227. for (std::size_t id = 0; id < data.touch.size(); ++id) {
  228. const auto touch_pad = data.touch[id];
  229. const auto touch_axis_x_id =
  230. static_cast<int>(id == 0 ? PadAxes::Touch1X : PadAxes::Touch2X);
  231. const auto touch_axis_y_id =
  232. static_cast<int>(id == 0 ? PadAxes::Touch1Y : PadAxes::Touch2Y);
  233. const auto touch_button_id =
  234. static_cast<int>(id == 0 ? PadButton::Touch1 : PadButton::Touch2);
  235. // TODO: Use custom calibration per device
  236. const Common::ParamPackage touch_param(Settings::values.touch_device.GetValue());
  237. const u16 min_x = static_cast<u16>(touch_param.Get("min_x", 100));
  238. const u16 min_y = static_cast<u16>(touch_param.Get("min_y", 50));
  239. const u16 max_x = static_cast<u16>(touch_param.Get("max_x", 1800));
  240. const u16 max_y = static_cast<u16>(touch_param.Get("max_y", 850));
  241. const f32 x =
  242. static_cast<f32>(std::clamp(static_cast<u16>(touch_pad.x), min_x, max_x) - min_x) /
  243. static_cast<f32>(max_x - min_x);
  244. const f32 y =
  245. static_cast<f32>(std::clamp(static_cast<u16>(touch_pad.y), min_y, max_y) - min_y) /
  246. static_cast<f32>(max_y - min_y);
  247. if (touch_pad.is_active) {
  248. SetAxis(identifier, touch_axis_x_id, x);
  249. SetAxis(identifier, touch_axis_y_id, y);
  250. SetButton(identifier, touch_button_id, true);
  251. continue;
  252. }
  253. SetAxis(identifier, touch_axis_x_id, 0);
  254. SetAxis(identifier, touch_axis_y_id, 0);
  255. SetButton(identifier, touch_button_id, false);
  256. }
  257. SetAxis(identifier, static_cast<int>(PadAxes::LeftStickX),
  258. (data.left_stick_x - 127.0f) / 127.0f);
  259. SetAxis(identifier, static_cast<int>(PadAxes::LeftStickY),
  260. (data.left_stick_y - 127.0f) / 127.0f);
  261. SetAxis(identifier, static_cast<int>(PadAxes::RightStickX),
  262. (data.right_stick_x - 127.0f) / 127.0f);
  263. SetAxis(identifier, static_cast<int>(PadAxes::RightStickY),
  264. (data.right_stick_y - 127.0f) / 127.0f);
  265. static constexpr std::array<PadButton, 16> buttons{
  266. PadButton::Share, PadButton::L3, PadButton::R3, PadButton::Options,
  267. PadButton::Up, PadButton::Right, PadButton::Down, PadButton::Left,
  268. PadButton::L2, PadButton::R2, PadButton::L1, PadButton::R1,
  269. PadButton::Triangle, PadButton::Circle, PadButton::Cross, PadButton::Square};
  270. for (std::size_t i = 0; i < buttons.size(); ++i) {
  271. const bool button_status = (data.digital_button & (1U << i)) != 0;
  272. const int button = static_cast<int>(buttons[i]);
  273. SetButton(identifier, button, button_status);
  274. }
  275. SetButton(identifier, static_cast<int>(PadButton::Home), data.home != 0);
  276. SetButton(identifier, static_cast<int>(PadButton::TouchHardPress), data.touch_hard_press != 0);
  277. SetBattery(identifier, GetBatteryLevel(data.info.battery));
  278. }
  279. void UDPClient::StartCommunication(std::size_t client, const std::string& host, u16 port) {
  280. SocketCallback callback{[this](Response::Version version) { OnVersion(version); },
  281. [this](Response::PortInfo info) { OnPortInfo(info); },
  282. [this, client](Response::PadData data) { OnPadData(data, client); }};
  283. LOG_INFO(Input, "Starting communication with UDP input server on {}:{}", host, port);
  284. clients[client].uuid = GetHostUUID(host);
  285. clients[client].host = host;
  286. clients[client].port = port;
  287. clients[client].active = 0;
  288. clients[client].socket = std::make_unique<Socket>(host, port, callback);
  289. clients[client].thread = std::thread{SocketLoop, clients[client].socket.get()};
  290. for (std::size_t index = 0; index < PADS_PER_CLIENT; ++index) {
  291. const PadIdentifier identifier = GetPadIdentifier(client * PADS_PER_CLIENT + index);
  292. PreSetController(identifier);
  293. }
  294. }
  295. PadIdentifier UDPClient::GetPadIdentifier(std::size_t pad_index) const {
  296. const std::size_t client = pad_index / PADS_PER_CLIENT;
  297. return {
  298. .guid = clients[client].uuid,
  299. .port = static_cast<std::size_t>(clients[client].port),
  300. .pad = pad_index,
  301. };
  302. }
  303. Common::UUID UDPClient::GetHostUUID(const std::string& host) const {
  304. const auto ip = boost::asio::ip::make_address_v4(host);
  305. const auto hex_host = fmt::format("00000000-0000-0000-0000-0000{:06x}", ip.to_uint());
  306. return Common::UUID{hex_host};
  307. }
  308. void UDPClient::Reset() {
  309. for (auto& client : clients) {
  310. if (client.thread.joinable()) {
  311. client.active = -1;
  312. client.socket->Stop();
  313. client.thread.join();
  314. }
  315. }
  316. }
  317. std::vector<Common::ParamPackage> UDPClient::GetInputDevices() const {
  318. std::vector<Common::ParamPackage> devices;
  319. if (!Settings::values.enable_udp_controller) {
  320. return devices;
  321. }
  322. for (std::size_t client = 0; client < clients.size(); client++) {
  323. if (clients[client].active != 1) {
  324. continue;
  325. }
  326. for (std::size_t index = 0; index < PADS_PER_CLIENT; ++index) {
  327. const std::size_t pad_index = client * PADS_PER_CLIENT + index;
  328. if (!pads[pad_index].connected) {
  329. continue;
  330. }
  331. const auto pad_identifier = GetPadIdentifier(pad_index);
  332. Common::ParamPackage identifier{};
  333. identifier.Set("engine", GetEngineName());
  334. identifier.Set("display", fmt::format("UDP Controller {}", pad_identifier.pad));
  335. identifier.Set("guid", pad_identifier.guid.RawString());
  336. identifier.Set("port", static_cast<int>(pad_identifier.port));
  337. identifier.Set("pad", static_cast<int>(pad_identifier.pad));
  338. devices.emplace_back(identifier);
  339. }
  340. }
  341. return devices;
  342. }
  343. ButtonMapping UDPClient::GetButtonMappingForDevice(const Common::ParamPackage& params) {
  344. // This list excludes any button that can't be really mapped
  345. static constexpr std::array<std::pair<Settings::NativeButton::Values, PadButton>, 20>
  346. switch_to_dsu_button = {
  347. std::pair{Settings::NativeButton::A, PadButton::Circle},
  348. {Settings::NativeButton::B, PadButton::Cross},
  349. {Settings::NativeButton::X, PadButton::Triangle},
  350. {Settings::NativeButton::Y, PadButton::Square},
  351. {Settings::NativeButton::Plus, PadButton::Options},
  352. {Settings::NativeButton::Minus, PadButton::Share},
  353. {Settings::NativeButton::DLeft, PadButton::Left},
  354. {Settings::NativeButton::DUp, PadButton::Up},
  355. {Settings::NativeButton::DRight, PadButton::Right},
  356. {Settings::NativeButton::DDown, PadButton::Down},
  357. {Settings::NativeButton::L, PadButton::L1},
  358. {Settings::NativeButton::R, PadButton::R1},
  359. {Settings::NativeButton::ZL, PadButton::L2},
  360. {Settings::NativeButton::ZR, PadButton::R2},
  361. {Settings::NativeButton::SL, PadButton::L2},
  362. {Settings::NativeButton::SR, PadButton::R2},
  363. {Settings::NativeButton::LStick, PadButton::L3},
  364. {Settings::NativeButton::RStick, PadButton::R3},
  365. {Settings::NativeButton::Home, PadButton::Home},
  366. {Settings::NativeButton::Screenshot, PadButton::TouchHardPress},
  367. };
  368. if (!params.Has("guid") || !params.Has("port") || !params.Has("pad")) {
  369. return {};
  370. }
  371. ButtonMapping mapping{};
  372. for (const auto& [switch_button, dsu_button] : switch_to_dsu_button) {
  373. Common::ParamPackage button_params{};
  374. button_params.Set("engine", GetEngineName());
  375. button_params.Set("guid", params.Get("guid", ""));
  376. button_params.Set("port", params.Get("port", 0));
  377. button_params.Set("pad", params.Get("pad", 0));
  378. button_params.Set("button", static_cast<int>(dsu_button));
  379. mapping.insert_or_assign(switch_button, std::move(button_params));
  380. }
  381. return mapping;
  382. }
  383. AnalogMapping UDPClient::GetAnalogMappingForDevice(const Common::ParamPackage& params) {
  384. if (!params.Has("guid") || !params.Has("port") || !params.Has("pad")) {
  385. return {};
  386. }
  387. AnalogMapping mapping = {};
  388. Common::ParamPackage left_analog_params;
  389. left_analog_params.Set("engine", GetEngineName());
  390. left_analog_params.Set("guid", params.Get("guid", ""));
  391. left_analog_params.Set("port", params.Get("port", 0));
  392. left_analog_params.Set("pad", params.Get("pad", 0));
  393. left_analog_params.Set("axis_x", static_cast<int>(PadAxes::LeftStickX));
  394. left_analog_params.Set("axis_y", static_cast<int>(PadAxes::LeftStickY));
  395. mapping.insert_or_assign(Settings::NativeAnalog::LStick, std::move(left_analog_params));
  396. Common::ParamPackage right_analog_params;
  397. right_analog_params.Set("engine", GetEngineName());
  398. right_analog_params.Set("guid", params.Get("guid", ""));
  399. right_analog_params.Set("port", params.Get("port", 0));
  400. right_analog_params.Set("pad", params.Get("pad", 0));
  401. right_analog_params.Set("axis_x", static_cast<int>(PadAxes::RightStickX));
  402. right_analog_params.Set("axis_y", static_cast<int>(PadAxes::RightStickY));
  403. mapping.insert_or_assign(Settings::NativeAnalog::RStick, std::move(right_analog_params));
  404. return mapping;
  405. }
  406. MotionMapping UDPClient::GetMotionMappingForDevice(const Common::ParamPackage& params) {
  407. if (!params.Has("guid") || !params.Has("port") || !params.Has("pad")) {
  408. return {};
  409. }
  410. MotionMapping mapping = {};
  411. Common::ParamPackage left_motion_params;
  412. left_motion_params.Set("engine", GetEngineName());
  413. left_motion_params.Set("guid", params.Get("guid", ""));
  414. left_motion_params.Set("port", params.Get("port", 0));
  415. left_motion_params.Set("pad", params.Get("pad", 0));
  416. left_motion_params.Set("motion", 0);
  417. Common::ParamPackage right_motion_params;
  418. right_motion_params.Set("engine", GetEngineName());
  419. right_motion_params.Set("guid", params.Get("guid", ""));
  420. right_motion_params.Set("port", params.Get("port", 0));
  421. right_motion_params.Set("pad", params.Get("pad", 0));
  422. right_motion_params.Set("motion", 0);
  423. mapping.insert_or_assign(Settings::NativeMotion::MotionLeft, std::move(left_motion_params));
  424. mapping.insert_or_assign(Settings::NativeMotion::MotionRight, std::move(right_motion_params));
  425. return mapping;
  426. }
  427. Common::Input::ButtonNames UDPClient::GetUIButtonName(const Common::ParamPackage& params) const {
  428. PadButton button = static_cast<PadButton>(params.Get("button", 0));
  429. switch (button) {
  430. case PadButton::Left:
  431. return Common::Input::ButtonNames::ButtonLeft;
  432. case PadButton::Right:
  433. return Common::Input::ButtonNames::ButtonRight;
  434. case PadButton::Down:
  435. return Common::Input::ButtonNames::ButtonDown;
  436. case PadButton::Up:
  437. return Common::Input::ButtonNames::ButtonUp;
  438. case PadButton::L1:
  439. return Common::Input::ButtonNames::L1;
  440. case PadButton::L2:
  441. return Common::Input::ButtonNames::L2;
  442. case PadButton::L3:
  443. return Common::Input::ButtonNames::L3;
  444. case PadButton::R1:
  445. return Common::Input::ButtonNames::R1;
  446. case PadButton::R2:
  447. return Common::Input::ButtonNames::R2;
  448. case PadButton::R3:
  449. return Common::Input::ButtonNames::R3;
  450. case PadButton::Circle:
  451. return Common::Input::ButtonNames::Circle;
  452. case PadButton::Cross:
  453. return Common::Input::ButtonNames::Cross;
  454. case PadButton::Square:
  455. return Common::Input::ButtonNames::Square;
  456. case PadButton::Triangle:
  457. return Common::Input::ButtonNames::Triangle;
  458. case PadButton::Share:
  459. return Common::Input::ButtonNames::Share;
  460. case PadButton::Options:
  461. return Common::Input::ButtonNames::Options;
  462. case PadButton::Home:
  463. return Common::Input::ButtonNames::Home;
  464. case PadButton::Touch1:
  465. case PadButton::Touch2:
  466. case PadButton::TouchHardPress:
  467. return Common::Input::ButtonNames::Touch;
  468. default:
  469. return Common::Input::ButtonNames::Undefined;
  470. }
  471. }
  472. Common::Input::ButtonNames UDPClient::GetUIName(const Common::ParamPackage& params) const {
  473. if (params.Has("button")) {
  474. return GetUIButtonName(params);
  475. }
  476. if (params.Has("axis")) {
  477. return Common::Input::ButtonNames::Value;
  478. }
  479. if (params.Has("motion")) {
  480. return Common::Input::ButtonNames::Engine;
  481. }
  482. return Common::Input::ButtonNames::Invalid;
  483. }
  484. void TestCommunication(const std::string& host, u16 port,
  485. const std::function<void()>& success_callback,
  486. const std::function<void()>& failure_callback) {
  487. std::thread([=] {
  488. Common::Event success_event;
  489. SocketCallback callback{
  490. .version = [](Response::Version) {},
  491. .port_info = [](Response::PortInfo) {},
  492. .pad_data = [&](Response::PadData) { success_event.Set(); },
  493. };
  494. Socket socket{host, port, std::move(callback)};
  495. std::thread worker_thread{SocketLoop, &socket};
  496. const bool result =
  497. success_event.WaitUntil(std::chrono::steady_clock::now() + std::chrono::seconds(10));
  498. socket.Stop();
  499. worker_thread.join();
  500. if (result) {
  501. success_callback();
  502. } else {
  503. failure_callback();
  504. }
  505. }).detach();
  506. }
  507. CalibrationConfigurationJob::CalibrationConfigurationJob(
  508. const std::string& host, u16 port, std::function<void(Status)> status_callback,
  509. std::function<void(u16, u16, u16, u16)> data_callback) {
  510. std::thread([=, this] {
  511. u16 min_x{UINT16_MAX};
  512. u16 min_y{UINT16_MAX};
  513. u16 max_x{};
  514. u16 max_y{};
  515. Status current_status{Status::Initialized};
  516. SocketCallback callback{[](Response::Version) {}, [](Response::PortInfo) {},
  517. [&](Response::PadData data) {
  518. constexpr u16 CALIBRATION_THRESHOLD = 100;
  519. if (current_status == Status::Initialized) {
  520. // Receiving data means the communication is ready now
  521. current_status = Status::Ready;
  522. status_callback(current_status);
  523. }
  524. if (data.touch[0].is_active == 0) {
  525. return;
  526. }
  527. LOG_DEBUG(Input, "Current touch: {} {}", data.touch[0].x,
  528. data.touch[0].y);
  529. min_x = std::min(min_x, static_cast<u16>(data.touch[0].x));
  530. min_y = std::min(min_y, static_cast<u16>(data.touch[0].y));
  531. if (current_status == Status::Ready) {
  532. // First touch - min data (min_x/min_y)
  533. current_status = Status::Stage1Completed;
  534. status_callback(current_status);
  535. }
  536. if (data.touch[0].x - min_x > CALIBRATION_THRESHOLD &&
  537. data.touch[0].y - min_y > CALIBRATION_THRESHOLD) {
  538. // Set the current position as max value and finishes
  539. // configuration
  540. max_x = data.touch[0].x;
  541. max_y = data.touch[0].y;
  542. current_status = Status::Completed;
  543. data_callback(min_x, min_y, max_x, max_y);
  544. status_callback(current_status);
  545. complete_event.Set();
  546. }
  547. }};
  548. Socket socket{host, port, std::move(callback)};
  549. std::thread worker_thread{SocketLoop, &socket};
  550. complete_event.Wait();
  551. socket.Stop();
  552. worker_thread.join();
  553. }).detach();
  554. }
  555. CalibrationConfigurationJob::~CalibrationConfigurationJob() {
  556. Stop();
  557. }
  558. void CalibrationConfigurationJob::Stop() {
  559. complete_event.Set();
  560. }
  561. } // namespace InputCommon::CemuhookUDP