joypad_linux.cpp 14 KB

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  1. /*************************************************************************/
  2. /* joypad_linux.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2019 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2019 Godot Engine contributors (cf. AUTHORS.md) */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
  23. /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
  24. /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
  25. /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
  26. /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
  27. /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
  28. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /*************************************************************************/
  30. #ifdef JOYDEV_ENABLED
  31. #include "joypad_linux.h"
  32. #include <errno.h>
  33. #include <fcntl.h>
  34. #include <linux/input.h>
  35. #include <unistd.h>
  36. #ifdef UDEV_ENABLED
  37. #include <libudev.h>
  38. #endif
  39. #define LONG_BITS (sizeof(long) * 8)
  40. #define test_bit(nr, addr) (((1UL << ((nr) % LONG_BITS)) & ((addr)[(nr) / LONG_BITS])) != 0)
  41. #define NBITS(x) ((((x)-1) / LONG_BITS) + 1)
  42. #ifdef UDEV_ENABLED
  43. static const char *ignore_str = "/dev/input/js";
  44. #endif
  45. JoypadLinux::Joypad::Joypad() {
  46. fd = -1;
  47. dpad = 0;
  48. devpath = "";
  49. for (int i = 0; i < MAX_ABS; i++) {
  50. abs_info[i] = NULL;
  51. }
  52. }
  53. JoypadLinux::Joypad::~Joypad() {
  54. for (int i = 0; i < MAX_ABS; i++) {
  55. if (abs_info[i]) {
  56. memdelete(abs_info[i]);
  57. }
  58. }
  59. }
  60. void JoypadLinux::Joypad::reset() {
  61. dpad = 0;
  62. fd = -1;
  63. InputDefault::JoyAxis jx;
  64. jx.min = -1;
  65. jx.value = 0.0f;
  66. for (int i = 0; i < MAX_ABS; i++) {
  67. abs_map[i] = -1;
  68. curr_axis[i] = jx;
  69. }
  70. }
  71. JoypadLinux::JoypadLinux(InputDefault *in) {
  72. exit_udev = false;
  73. input = in;
  74. joy_mutex = Mutex::create();
  75. joy_thread = Thread::create(joy_thread_func, this);
  76. }
  77. JoypadLinux::~JoypadLinux() {
  78. exit_udev = true;
  79. Thread::wait_to_finish(joy_thread);
  80. memdelete(joy_thread);
  81. memdelete(joy_mutex);
  82. close_joypad();
  83. }
  84. void JoypadLinux::joy_thread_func(void *p_user) {
  85. if (p_user) {
  86. JoypadLinux *joy = (JoypadLinux *)p_user;
  87. joy->run_joypad_thread();
  88. }
  89. return;
  90. }
  91. void JoypadLinux::run_joypad_thread() {
  92. #ifdef UDEV_ENABLED
  93. udev *_udev = udev_new();
  94. ERR_FAIL_COND(!_udev);
  95. enumerate_joypads(_udev);
  96. monitor_joypads(_udev);
  97. udev_unref(_udev);
  98. #else
  99. monitor_joypads();
  100. #endif
  101. }
  102. #ifdef UDEV_ENABLED
  103. void JoypadLinux::enumerate_joypads(udev *p_udev) {
  104. udev_enumerate *enumerate;
  105. udev_list_entry *devices, *dev_list_entry;
  106. udev_device *dev;
  107. enumerate = udev_enumerate_new(p_udev);
  108. udev_enumerate_add_match_subsystem(enumerate, "input");
  109. udev_enumerate_scan_devices(enumerate);
  110. devices = udev_enumerate_get_list_entry(enumerate);
  111. udev_list_entry_foreach(dev_list_entry, devices) {
  112. const char *path = udev_list_entry_get_name(dev_list_entry);
  113. dev = udev_device_new_from_syspath(p_udev, path);
  114. const char *devnode = udev_device_get_devnode(dev);
  115. if (devnode) {
  116. String devnode_str = devnode;
  117. if (devnode_str.find(ignore_str) == -1) {
  118. joy_mutex->lock();
  119. open_joypad(devnode);
  120. joy_mutex->unlock();
  121. }
  122. }
  123. udev_device_unref(dev);
  124. }
  125. udev_enumerate_unref(enumerate);
  126. }
  127. void JoypadLinux::monitor_joypads(udev *p_udev) {
  128. udev_device *dev = NULL;
  129. udev_monitor *mon = udev_monitor_new_from_netlink(p_udev, "udev");
  130. udev_monitor_filter_add_match_subsystem_devtype(mon, "input", NULL);
  131. udev_monitor_enable_receiving(mon);
  132. int fd = udev_monitor_get_fd(mon);
  133. while (!exit_udev) {
  134. fd_set fds;
  135. struct timeval tv;
  136. int ret;
  137. FD_ZERO(&fds);
  138. FD_SET(fd, &fds);
  139. tv.tv_sec = 0;
  140. tv.tv_usec = 0;
  141. ret = select(fd + 1, &fds, NULL, NULL, &tv);
  142. /* Check if our file descriptor has received data. */
  143. if (ret > 0 && FD_ISSET(fd, &fds)) {
  144. /* Make the call to receive the device.
  145. select() ensured that this will not block. */
  146. dev = udev_monitor_receive_device(mon);
  147. if (dev && udev_device_get_devnode(dev) != 0) {
  148. joy_mutex->lock();
  149. String action = udev_device_get_action(dev);
  150. const char *devnode = udev_device_get_devnode(dev);
  151. if (devnode) {
  152. String devnode_str = devnode;
  153. if (devnode_str.find(ignore_str) == -1) {
  154. if (action == "add")
  155. open_joypad(devnode);
  156. else if (String(action) == "remove")
  157. close_joypad(get_joy_from_path(devnode));
  158. }
  159. }
  160. udev_device_unref(dev);
  161. joy_mutex->unlock();
  162. }
  163. }
  164. usleep(50000);
  165. }
  166. udev_monitor_unref(mon);
  167. }
  168. #endif
  169. void JoypadLinux::monitor_joypads() {
  170. while (!exit_udev) {
  171. joy_mutex->lock();
  172. for (int i = 0; i < 32; i++) {
  173. char fname[64];
  174. sprintf(fname, "/dev/input/event%d", i);
  175. if (attached_devices.find(fname) == -1) {
  176. open_joypad(fname);
  177. }
  178. }
  179. joy_mutex->unlock();
  180. usleep(1000000); // 1s
  181. }
  182. }
  183. int JoypadLinux::get_joy_from_path(String p_path) const {
  184. for (int i = 0; i < JOYPADS_MAX; i++) {
  185. if (joypads[i].devpath == p_path) {
  186. return i;
  187. }
  188. }
  189. return -2;
  190. }
  191. void JoypadLinux::close_joypad(int p_id) {
  192. if (p_id == -1) {
  193. for (int i = 0; i < JOYPADS_MAX; i++) {
  194. close_joypad(i);
  195. };
  196. return;
  197. } else if (p_id < 0)
  198. return;
  199. Joypad &joy = joypads[p_id];
  200. if (joy.fd != -1) {
  201. close(joy.fd);
  202. joy.fd = -1;
  203. attached_devices.remove(attached_devices.find(joy.devpath));
  204. input->joy_connection_changed(p_id, false, "");
  205. };
  206. }
  207. static String _hex_str(uint8_t p_byte) {
  208. static const char *dict = "0123456789abcdef";
  209. char ret[3];
  210. ret[2] = 0;
  211. ret[0] = dict[p_byte >> 4];
  212. ret[1] = dict[p_byte & 0xF];
  213. return ret;
  214. }
  215. void JoypadLinux::setup_joypad_properties(int p_id) {
  216. Joypad *joy = &joypads[p_id];
  217. unsigned long keybit[NBITS(KEY_MAX)] = { 0 };
  218. unsigned long absbit[NBITS(ABS_MAX)] = { 0 };
  219. int num_buttons = 0;
  220. int num_axes = 0;
  221. if ((ioctl(joy->fd, EVIOCGBIT(EV_KEY, sizeof(keybit)), keybit) < 0) ||
  222. (ioctl(joy->fd, EVIOCGBIT(EV_ABS, sizeof(absbit)), absbit) < 0)) {
  223. return;
  224. }
  225. for (int i = BTN_JOYSTICK; i < KEY_MAX; ++i) {
  226. if (test_bit(i, keybit)) {
  227. joy->key_map[i] = num_buttons++;
  228. }
  229. }
  230. for (int i = BTN_MISC; i < BTN_JOYSTICK; ++i) {
  231. if (test_bit(i, keybit)) {
  232. joy->key_map[i] = num_buttons++;
  233. }
  234. }
  235. for (int i = 0; i < ABS_MISC; ++i) {
  236. /* Skip hats */
  237. if (i == ABS_HAT0X) {
  238. i = ABS_HAT3Y;
  239. continue;
  240. }
  241. if (test_bit(i, absbit)) {
  242. joy->abs_map[i] = num_axes++;
  243. joy->abs_info[i] = memnew(input_absinfo);
  244. if (ioctl(joy->fd, EVIOCGABS(i), joy->abs_info[i]) < 0) {
  245. memdelete(joy->abs_info[i]);
  246. joy->abs_info[i] = NULL;
  247. }
  248. }
  249. }
  250. joy->force_feedback = false;
  251. joy->ff_effect_timestamp = 0;
  252. unsigned long ffbit[NBITS(FF_CNT)];
  253. if (ioctl(joy->fd, EVIOCGBIT(EV_FF, sizeof(ffbit)), ffbit) != -1) {
  254. if (test_bit(FF_RUMBLE, ffbit)) {
  255. joy->force_feedback = true;
  256. }
  257. }
  258. }
  259. void JoypadLinux::open_joypad(const char *p_path) {
  260. int joy_num = input->get_unused_joy_id();
  261. int fd = open(p_path, O_RDWR | O_NONBLOCK);
  262. if (fd != -1 && joy_num != -1) {
  263. unsigned long evbit[NBITS(EV_MAX)] = { 0 };
  264. unsigned long keybit[NBITS(KEY_MAX)] = { 0 };
  265. unsigned long absbit[NBITS(ABS_MAX)] = { 0 };
  266. // add to attached devices so we don't try to open it again
  267. attached_devices.push_back(String(p_path));
  268. if ((ioctl(fd, EVIOCGBIT(0, sizeof(evbit)), evbit) < 0) ||
  269. (ioctl(fd, EVIOCGBIT(EV_KEY, sizeof(keybit)), keybit) < 0) ||
  270. (ioctl(fd, EVIOCGBIT(EV_ABS, sizeof(absbit)), absbit) < 0)) {
  271. close(fd);
  272. return;
  273. }
  274. //check if the device supports basic gamepad events, prevents certain keyboards from
  275. //being detected as joypads
  276. if (!(test_bit(EV_KEY, evbit) && test_bit(EV_ABS, evbit) &&
  277. (test_bit(ABS_X, absbit) || test_bit(ABS_Y, absbit) || test_bit(ABS_HAT0X, absbit) ||
  278. test_bit(ABS_GAS, absbit) || test_bit(ABS_RUDDER, absbit)) &&
  279. (test_bit(BTN_A, keybit) || test_bit(BTN_THUMBL, keybit) ||
  280. test_bit(BTN_TRIGGER, keybit) || test_bit(BTN_1, keybit)))) {
  281. close(fd);
  282. return;
  283. }
  284. char uid[128];
  285. char namebuf[128];
  286. String name = "";
  287. input_id inpid;
  288. if (ioctl(fd, EVIOCGNAME(sizeof(namebuf)), namebuf) >= 0) {
  289. name = namebuf;
  290. }
  291. if (ioctl(fd, EVIOCGID, &inpid) < 0) {
  292. close(fd);
  293. return;
  294. }
  295. joypads[joy_num].reset();
  296. Joypad &joy = joypads[joy_num];
  297. joy.fd = fd;
  298. joy.devpath = String(p_path);
  299. setup_joypad_properties(joy_num);
  300. sprintf(uid, "%04x%04x", __bswap_16(inpid.bustype), 0);
  301. if (inpid.vendor && inpid.product && inpid.version) {
  302. uint16_t vendor = __bswap_16(inpid.vendor);
  303. uint16_t product = __bswap_16(inpid.product);
  304. uint16_t version = __bswap_16(inpid.version);
  305. sprintf(uid + String(uid).length(), "%04x%04x%04x%04x%04x%04x", vendor, 0, product, 0, version, 0);
  306. input->joy_connection_changed(joy_num, true, name, uid);
  307. } else {
  308. String uidname = uid;
  309. int uidlen = MIN(name.length(), 11);
  310. for (int i = 0; i < uidlen; i++) {
  311. uidname = uidname + _hex_str(name[i]);
  312. }
  313. uidname += "00";
  314. input->joy_connection_changed(joy_num, true, name, uidname);
  315. }
  316. }
  317. }
  318. void JoypadLinux::joypad_vibration_start(int p_id, float p_weak_magnitude, float p_strong_magnitude, float p_duration, uint64_t p_timestamp) {
  319. Joypad &joy = joypads[p_id];
  320. if (!joy.force_feedback || joy.fd == -1 || p_weak_magnitude < 0.f || p_weak_magnitude > 1.f || p_strong_magnitude < 0.f || p_strong_magnitude > 1.f) {
  321. return;
  322. }
  323. if (joy.ff_effect_id != -1) {
  324. joypad_vibration_stop(p_id, p_timestamp);
  325. }
  326. struct ff_effect effect;
  327. effect.type = FF_RUMBLE;
  328. effect.id = -1;
  329. effect.u.rumble.weak_magnitude = floor(p_weak_magnitude * (float)0xffff);
  330. effect.u.rumble.strong_magnitude = floor(p_strong_magnitude * (float)0xffff);
  331. effect.replay.length = floor(p_duration * 1000);
  332. effect.replay.delay = 0;
  333. if (ioctl(joy.fd, EVIOCSFF, &effect) < 0) {
  334. return;
  335. }
  336. struct input_event play;
  337. play.type = EV_FF;
  338. play.code = effect.id;
  339. play.value = 1;
  340. write(joy.fd, (const void *)&play, sizeof(play));
  341. joy.ff_effect_id = effect.id;
  342. joy.ff_effect_timestamp = p_timestamp;
  343. }
  344. void JoypadLinux::joypad_vibration_stop(int p_id, uint64_t p_timestamp) {
  345. Joypad &joy = joypads[p_id];
  346. if (!joy.force_feedback || joy.fd == -1 || joy.ff_effect_id == -1) {
  347. return;
  348. }
  349. if (ioctl(joy.fd, EVIOCRMFF, joy.ff_effect_id) < 0) {
  350. return;
  351. }
  352. joy.ff_effect_id = -1;
  353. joy.ff_effect_timestamp = p_timestamp;
  354. }
  355. InputDefault::JoyAxis JoypadLinux::axis_correct(const input_absinfo *p_abs, int p_value) const {
  356. int min = p_abs->minimum;
  357. int max = p_abs->maximum;
  358. InputDefault::JoyAxis jx;
  359. if (min < 0) {
  360. jx.min = -1;
  361. if (p_value < 0) {
  362. jx.value = (float)-p_value / min;
  363. }
  364. jx.value = (float)p_value / max;
  365. }
  366. if (min == 0) {
  367. jx.min = 0;
  368. jx.value = 0.0f + (float)p_value / max;
  369. }
  370. return jx;
  371. }
  372. void JoypadLinux::process_joypads() {
  373. if (joy_mutex->try_lock() != OK) {
  374. return;
  375. }
  376. for (int i = 0; i < JOYPADS_MAX; i++) {
  377. if (joypads[i].fd == -1) continue;
  378. input_event events[32];
  379. Joypad *joy = &joypads[i];
  380. int len;
  381. while ((len = read(joy->fd, events, (sizeof events))) > 0) {
  382. len /= sizeof(events[0]);
  383. for (int j = 0; j < len; j++) {
  384. input_event &ev = events[j];
  385. // ev may be tainted and out of MAX_KEY range, which will cause
  386. // joy->key_map[ev.code] to crash
  387. if (ev.code < 0 || ev.code >= MAX_KEY)
  388. return;
  389. switch (ev.type) {
  390. case EV_KEY:
  391. input->joy_button(i, joy->key_map[ev.code], ev.value);
  392. break;
  393. case EV_ABS:
  394. switch (ev.code) {
  395. case ABS_HAT0X:
  396. if (ev.value != 0) {
  397. if (ev.value < 0)
  398. joy->dpad |= InputDefault::HAT_MASK_LEFT;
  399. else
  400. joy->dpad |= InputDefault::HAT_MASK_RIGHT;
  401. } else
  402. joy->dpad &= ~(InputDefault::HAT_MASK_LEFT | InputDefault::HAT_MASK_RIGHT);
  403. input->joy_hat(i, joy->dpad);
  404. break;
  405. case ABS_HAT0Y:
  406. if (ev.value != 0) {
  407. if (ev.value < 0)
  408. joy->dpad |= InputDefault::HAT_MASK_UP;
  409. else
  410. joy->dpad |= InputDefault::HAT_MASK_DOWN;
  411. } else
  412. joy->dpad &= ~(InputDefault::HAT_MASK_UP | InputDefault::HAT_MASK_DOWN);
  413. input->joy_hat(i, joy->dpad);
  414. break;
  415. default:
  416. if (joy->abs_map[ev.code] != -1 && joy->abs_info[ev.code]) {
  417. InputDefault::JoyAxis value = axis_correct(joy->abs_info[ev.code], ev.value);
  418. joy->curr_axis[joy->abs_map[ev.code]] = value;
  419. }
  420. break;
  421. }
  422. break;
  423. }
  424. }
  425. }
  426. for (int j = 0; j < MAX_ABS; j++) {
  427. int index = joy->abs_map[j];
  428. if (index != -1) {
  429. input->joy_axis(i, index, joy->curr_axis[index]);
  430. }
  431. }
  432. if (len == 0 || (len < 0 && errno != EAGAIN)) {
  433. close_joypad(i);
  434. };
  435. if (joy->force_feedback) {
  436. uint64_t timestamp = input->get_joy_vibration_timestamp(i);
  437. if (timestamp > joy->ff_effect_timestamp) {
  438. Vector2 strength = input->get_joy_vibration_strength(i);
  439. float duration = input->get_joy_vibration_duration(i);
  440. if (strength.x == 0 && strength.y == 0) {
  441. joypad_vibration_stop(i, timestamp);
  442. } else {
  443. joypad_vibration_start(i, strength.x, strength.y, duration, timestamp);
  444. }
  445. }
  446. }
  447. }
  448. joy_mutex->unlock();
  449. }
  450. #endif