dvb_frontend.c 26 KB

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  1. /*
  2. * dvb_frontend.c: DVB frontend tuning interface/thread
  3. *
  4. *
  5. * Copyright (C) 1999-2001 Ralph Metzler
  6. * Marcus Metzler
  7. * Holger Waechtler
  8. * for convergence integrated media GmbH
  9. *
  10. * Copyright (C) 2004 Andrew de Quincey (tuning thread cleanup)
  11. *
  12. * This program is free software; you can redistribute it and/or
  13. * modify it under the terms of the GNU General Public License
  14. * as published by the Free Software Foundation; either version 2
  15. * of the License, or (at your option) any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  25. * Or, point your browser to http://www.gnu.org/copyleft/gpl.html
  26. */
  27. #include <linux/string.h>
  28. #include <linux/kernel.h>
  29. #include <linux/sched.h>
  30. #include <linux/wait.h>
  31. #include <linux/slab.h>
  32. #include <linux/poll.h>
  33. #include <linux/module.h>
  34. #include <linux/moduleparam.h>
  35. #include <linux/list.h>
  36. #include <linux/suspend.h>
  37. #include <linux/jiffies.h>
  38. #include <asm/processor.h>
  39. #include <asm/semaphore.h>
  40. #include "dvb_frontend.h"
  41. #include "dvbdev.h"
  42. // #define DEBUG_LOCKLOSS 1
  43. static int dvb_frontend_debug;
  44. static int dvb_shutdown_timeout = 5;
  45. static int dvb_force_auto_inversion;
  46. static int dvb_override_tune_delay;
  47. static int dvb_powerdown_on_sleep = 1;
  48. module_param_named(frontend_debug, dvb_frontend_debug, int, 0644);
  49. MODULE_PARM_DESC(frontend_debug, "Turn on/off frontend core debugging (default:off).");
  50. module_param(dvb_shutdown_timeout, int, 0444);
  51. MODULE_PARM_DESC(dvb_shutdown_timeout, "wait <shutdown_timeout> seconds after close() before suspending hardware");
  52. module_param(dvb_force_auto_inversion, int, 0444);
  53. MODULE_PARM_DESC(dvb_force_auto_inversion, "0: normal (default), 1: INVERSION_AUTO forced always");
  54. module_param(dvb_override_tune_delay, int, 0444);
  55. MODULE_PARM_DESC(dvb_override_tune_delay, "0: normal (default), >0 => delay in milliseconds to wait for lock after a tune attempt");
  56. module_param(dvb_powerdown_on_sleep, int, 0444);
  57. MODULE_PARM_DESC(dvb_powerdown_on_sleep, "0: do not power down, 1: turn LNB volatage off on sleep (default)");
  58. #define dprintk if (dvb_frontend_debug) printk
  59. #define FESTATE_IDLE 1
  60. #define FESTATE_RETUNE 2
  61. #define FESTATE_TUNING_FAST 4
  62. #define FESTATE_TUNING_SLOW 8
  63. #define FESTATE_TUNED 16
  64. #define FESTATE_ZIGZAG_FAST 32
  65. #define FESTATE_ZIGZAG_SLOW 64
  66. #define FESTATE_DISEQC 128
  67. #define FESTATE_WAITFORLOCK (FESTATE_TUNING_FAST | FESTATE_TUNING_SLOW | FESTATE_ZIGZAG_FAST | FESTATE_ZIGZAG_SLOW | FESTATE_DISEQC)
  68. #define FESTATE_SEARCHING_FAST (FESTATE_TUNING_FAST | FESTATE_ZIGZAG_FAST)
  69. #define FESTATE_SEARCHING_SLOW (FESTATE_TUNING_SLOW | FESTATE_ZIGZAG_SLOW)
  70. #define FESTATE_LOSTLOCK (FESTATE_ZIGZAG_FAST | FESTATE_ZIGZAG_SLOW)
  71. /*
  72. * FESTATE_IDLE. No tuning parameters have been supplied and the loop is idling.
  73. * FESTATE_RETUNE. Parameters have been supplied, but we have not yet performed the first tune.
  74. * FESTATE_TUNING_FAST. Tuning parameters have been supplied and fast zigzag scan is in progress.
  75. * FESTATE_TUNING_SLOW. Tuning parameters have been supplied. Fast zigzag failed, so we're trying again, but slower.
  76. * FESTATE_TUNED. The frontend has successfully locked on.
  77. * FESTATE_ZIGZAG_FAST. The lock has been lost, and a fast zigzag has been initiated to try and regain it.
  78. * FESTATE_ZIGZAG_SLOW. The lock has been lost. Fast zigzag has been failed, so we're trying again, but slower.
  79. * FESTATE_DISEQC. A DISEQC command has just been issued.
  80. * FESTATE_WAITFORLOCK. When we're waiting for a lock.
  81. * FESTATE_SEARCHING_FAST. When we're searching for a signal using a fast zigzag scan.
  82. * FESTATE_SEARCHING_SLOW. When we're searching for a signal using a slow zigzag scan.
  83. * FESTATE_LOSTLOCK. When the lock has been lost, and we're searching it again.
  84. */
  85. static DECLARE_MUTEX(frontend_mutex);
  86. struct dvb_frontend_private {
  87. struct dvb_device *dvbdev;
  88. struct dvb_frontend_parameters parameters;
  89. struct dvb_fe_events events;
  90. struct semaphore sem;
  91. struct list_head list_head;
  92. wait_queue_head_t wait_queue;
  93. pid_t thread_pid;
  94. unsigned long release_jiffies;
  95. int state;
  96. int bending;
  97. int lnb_drift;
  98. int inversion;
  99. int auto_step;
  100. int auto_sub_step;
  101. int started_auto_step;
  102. int min_delay;
  103. int max_drift;
  104. int step_size;
  105. int exit;
  106. int wakeup;
  107. fe_status_t status;
  108. fe_sec_tone_mode_t tone;
  109. };
  110. static void dvb_frontend_add_event(struct dvb_frontend *fe, fe_status_t status)
  111. {
  112. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  113. struct dvb_fe_events *events = &fepriv->events;
  114. struct dvb_frontend_event *e;
  115. int wp;
  116. dprintk ("%s\n", __FUNCTION__);
  117. if (down_interruptible (&events->sem))
  118. return;
  119. wp = (events->eventw + 1) % MAX_EVENT;
  120. if (wp == events->eventr) {
  121. events->overflow = 1;
  122. events->eventr = (events->eventr + 1) % MAX_EVENT;
  123. }
  124. e = &events->events[events->eventw];
  125. memcpy (&e->parameters, &fepriv->parameters,
  126. sizeof (struct dvb_frontend_parameters));
  127. if (status & FE_HAS_LOCK)
  128. if (fe->ops->get_frontend)
  129. fe->ops->get_frontend(fe, &e->parameters);
  130. events->eventw = wp;
  131. up (&events->sem);
  132. e->status = status;
  133. wake_up_interruptible (&events->wait_queue);
  134. }
  135. static int dvb_frontend_get_event(struct dvb_frontend *fe,
  136. struct dvb_frontend_event *event, int flags)
  137. {
  138. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  139. struct dvb_fe_events *events = &fepriv->events;
  140. dprintk ("%s\n", __FUNCTION__);
  141. if (events->overflow) {
  142. events->overflow = 0;
  143. return -EOVERFLOW;
  144. }
  145. if (events->eventw == events->eventr) {
  146. int ret;
  147. if (flags & O_NONBLOCK)
  148. return -EWOULDBLOCK;
  149. up(&fepriv->sem);
  150. ret = wait_event_interruptible (events->wait_queue,
  151. events->eventw != events->eventr);
  152. if (down_interruptible (&fepriv->sem))
  153. return -ERESTARTSYS;
  154. if (ret < 0)
  155. return ret;
  156. }
  157. if (down_interruptible (&events->sem))
  158. return -ERESTARTSYS;
  159. memcpy (event, &events->events[events->eventr],
  160. sizeof(struct dvb_frontend_event));
  161. events->eventr = (events->eventr + 1) % MAX_EVENT;
  162. up (&events->sem);
  163. return 0;
  164. }
  165. static void dvb_frontend_init(struct dvb_frontend *fe)
  166. {
  167. dprintk ("DVB: initialising frontend %i (%s)...\n",
  168. fe->dvb->num,
  169. fe->ops->info.name);
  170. if (fe->ops->init)
  171. fe->ops->init(fe);
  172. }
  173. static void update_delay(int *quality, int *delay, int min_delay, int locked)
  174. {
  175. int q2;
  176. dprintk ("%s\n", __FUNCTION__);
  177. if (locked)
  178. (*quality) = (*quality * 220 + 36*256) / 256;
  179. else
  180. (*quality) = (*quality * 220 + 0) / 256;
  181. q2 = *quality - 128;
  182. q2 *= q2;
  183. *delay = min_delay + q2 * HZ / (128*128);
  184. }
  185. /**
  186. * Performs automatic twiddling of frontend parameters.
  187. *
  188. * @param fe The frontend concerned.
  189. * @param check_wrapped Checks if an iteration has completed. DO NOT SET ON THE FIRST ATTEMPT
  190. * @returns Number of complete iterations that have been performed.
  191. */
  192. static int dvb_frontend_autotune(struct dvb_frontend *fe, int check_wrapped)
  193. {
  194. int autoinversion;
  195. int ready = 0;
  196. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  197. int original_inversion = fepriv->parameters.inversion;
  198. u32 original_frequency = fepriv->parameters.frequency;
  199. /* are we using autoinversion? */
  200. autoinversion = ((!(fe->ops->info.caps & FE_CAN_INVERSION_AUTO)) &&
  201. (fepriv->parameters.inversion == INVERSION_AUTO));
  202. /* setup parameters correctly */
  203. while(!ready) {
  204. /* calculate the lnb_drift */
  205. fepriv->lnb_drift = fepriv->auto_step * fepriv->step_size;
  206. /* wrap the auto_step if we've exceeded the maximum drift */
  207. if (fepriv->lnb_drift > fepriv->max_drift) {
  208. fepriv->auto_step = 0;
  209. fepriv->auto_sub_step = 0;
  210. fepriv->lnb_drift = 0;
  211. }
  212. /* perform inversion and +/- zigzag */
  213. switch(fepriv->auto_sub_step) {
  214. case 0:
  215. /* try with the current inversion and current drift setting */
  216. ready = 1;
  217. break;
  218. case 1:
  219. if (!autoinversion) break;
  220. fepriv->inversion = (fepriv->inversion == INVERSION_OFF) ? INVERSION_ON : INVERSION_OFF;
  221. ready = 1;
  222. break;
  223. case 2:
  224. if (fepriv->lnb_drift == 0) break;
  225. fepriv->lnb_drift = -fepriv->lnb_drift;
  226. ready = 1;
  227. break;
  228. case 3:
  229. if (fepriv->lnb_drift == 0) break;
  230. if (!autoinversion) break;
  231. fepriv->inversion = (fepriv->inversion == INVERSION_OFF) ? INVERSION_ON : INVERSION_OFF;
  232. fepriv->lnb_drift = -fepriv->lnb_drift;
  233. ready = 1;
  234. break;
  235. default:
  236. fepriv->auto_step++;
  237. fepriv->auto_sub_step = -1; /* it'll be incremented to 0 in a moment */
  238. break;
  239. }
  240. if (!ready) fepriv->auto_sub_step++;
  241. }
  242. /* if this attempt would hit where we started, indicate a complete
  243. * iteration has occurred */
  244. if ((fepriv->auto_step == fepriv->started_auto_step) &&
  245. (fepriv->auto_sub_step == 0) && check_wrapped) {
  246. return 1;
  247. }
  248. dprintk("%s: drift:%i inversion:%i auto_step:%i "
  249. "auto_sub_step:%i started_auto_step:%i\n",
  250. __FUNCTION__, fepriv->lnb_drift, fepriv->inversion,
  251. fepriv->auto_step, fepriv->auto_sub_step, fepriv->started_auto_step);
  252. /* set the frontend itself */
  253. fepriv->parameters.frequency += fepriv->lnb_drift;
  254. if (autoinversion)
  255. fepriv->parameters.inversion = fepriv->inversion;
  256. if (fe->ops->set_frontend)
  257. fe->ops->set_frontend(fe, &fepriv->parameters);
  258. fepriv->parameters.frequency = original_frequency;
  259. fepriv->parameters.inversion = original_inversion;
  260. fepriv->auto_sub_step++;
  261. return 0;
  262. }
  263. static int dvb_frontend_is_exiting(struct dvb_frontend *fe)
  264. {
  265. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  266. if (fepriv->exit)
  267. return 1;
  268. if (fepriv->dvbdev->writers == 1)
  269. if (time_after(jiffies, fepriv->release_jiffies +
  270. dvb_shutdown_timeout * HZ))
  271. return 1;
  272. return 0;
  273. }
  274. static int dvb_frontend_should_wakeup(struct dvb_frontend *fe)
  275. {
  276. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  277. if (fepriv->wakeup) {
  278. fepriv->wakeup = 0;
  279. return 1;
  280. }
  281. return dvb_frontend_is_exiting(fe);
  282. }
  283. static void dvb_frontend_wakeup(struct dvb_frontend *fe)
  284. {
  285. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  286. fepriv->wakeup = 1;
  287. wake_up_interruptible(&fepriv->wait_queue);
  288. }
  289. /*
  290. * FIXME: use linux/kthread.h
  291. */
  292. static int dvb_frontend_thread(void *data)
  293. {
  294. struct dvb_frontend *fe = data;
  295. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  296. unsigned long timeout;
  297. char name [15];
  298. int quality = 0, delay = 3*HZ;
  299. fe_status_t s;
  300. int check_wrapped = 0;
  301. dprintk("%s\n", __FUNCTION__);
  302. snprintf (name, sizeof(name), "kdvb-fe-%i", fe->dvb->num);
  303. lock_kernel();
  304. daemonize(name);
  305. sigfillset(&current->blocked);
  306. unlock_kernel();
  307. fepriv->status = 0;
  308. dvb_frontend_init(fe);
  309. fepriv->wakeup = 0;
  310. while (1) {
  311. up(&fepriv->sem); /* is locked when we enter the thread... */
  312. timeout = wait_event_interruptible_timeout(fepriv->wait_queue,
  313. dvb_frontend_should_wakeup(fe),
  314. delay);
  315. if (0 != dvb_frontend_is_exiting(fe)) {
  316. /* got signal or quitting */
  317. break;
  318. }
  319. try_to_freeze();
  320. if (down_interruptible(&fepriv->sem))
  321. break;
  322. /* if we've got no parameters, just keep idling */
  323. if (fepriv->state & FESTATE_IDLE) {
  324. delay = 3*HZ;
  325. quality = 0;
  326. continue;
  327. }
  328. /* get the frontend status */
  329. if (fepriv->state & FESTATE_RETUNE) {
  330. s = 0;
  331. } else {
  332. if (fe->ops->read_status)
  333. fe->ops->read_status(fe, &s);
  334. if (s != fepriv->status) {
  335. dvb_frontend_add_event(fe, s);
  336. fepriv->status = s;
  337. }
  338. }
  339. /* if we're not tuned, and we have a lock, move to the TUNED state */
  340. if ((fepriv->state & FESTATE_WAITFORLOCK) && (s & FE_HAS_LOCK)) {
  341. update_delay(&quality, &delay, fepriv->min_delay, s & FE_HAS_LOCK);
  342. fepriv->state = FESTATE_TUNED;
  343. /* if we're tuned, then we have determined the correct inversion */
  344. if ((!(fe->ops->info.caps & FE_CAN_INVERSION_AUTO)) &&
  345. (fepriv->parameters.inversion == INVERSION_AUTO)) {
  346. fepriv->parameters.inversion = fepriv->inversion;
  347. }
  348. continue;
  349. }
  350. /* if we are tuned already, check we're still locked */
  351. if (fepriv->state & FESTATE_TUNED) {
  352. update_delay(&quality, &delay, fepriv->min_delay, s & FE_HAS_LOCK);
  353. /* we're tuned, and the lock is still good... */
  354. if (s & FE_HAS_LOCK)
  355. continue;
  356. else { /* if we _WERE_ tuned, but now don't have a lock */
  357. #ifdef DEBUG_LOCKLOSS
  358. /* first of all try setting the tone again if it was on - this
  359. * sometimes works around problems with noisy power supplies */
  360. if (fe->ops->set_tone && (fepriv->tone == SEC_TONE_ON)) {
  361. fe->ops->set_tone(fe, fepriv->tone);
  362. mdelay(100);
  363. s = 0;
  364. fe->ops->read_status(fe, &s);
  365. if (s & FE_HAS_LOCK) {
  366. printk("DVB%i: Lock was lost, but regained by setting "
  367. "the tone. This may indicate your power supply "
  368. "is noisy/slightly incompatable with this DVB-S "
  369. "adapter\n", fe->dvb->num);
  370. fepriv->state = FESTATE_TUNED;
  371. continue;
  372. }
  373. }
  374. #endif
  375. /* some other reason for losing the lock - start zigzagging */
  376. fepriv->state = FESTATE_ZIGZAG_FAST;
  377. fepriv->started_auto_step = fepriv->auto_step;
  378. check_wrapped = 0;
  379. }
  380. }
  381. /* don't actually do anything if we're in the LOSTLOCK state,
  382. * the frontend is set to FE_CAN_RECOVER, and the max_drift is 0 */
  383. if ((fepriv->state & FESTATE_LOSTLOCK) &&
  384. (fe->ops->info.caps & FE_CAN_RECOVER) && (fepriv->max_drift == 0)) {
  385. update_delay(&quality, &delay, fepriv->min_delay, s & FE_HAS_LOCK);
  386. continue;
  387. }
  388. /* don't do anything if we're in the DISEQC state, since this
  389. * might be someone with a motorized dish controlled by DISEQC.
  390. * If its actually a re-tune, there will be a SET_FRONTEND soon enough. */
  391. if (fepriv->state & FESTATE_DISEQC) {
  392. update_delay(&quality, &delay, fepriv->min_delay, s & FE_HAS_LOCK);
  393. continue;
  394. }
  395. /* if we're in the RETUNE state, set everything up for a brand
  396. * new scan, keeping the current inversion setting, as the next
  397. * tune is _very_ likely to require the same */
  398. if (fepriv->state & FESTATE_RETUNE) {
  399. fepriv->lnb_drift = 0;
  400. fepriv->auto_step = 0;
  401. fepriv->auto_sub_step = 0;
  402. fepriv->started_auto_step = 0;
  403. check_wrapped = 0;
  404. }
  405. /* fast zigzag. */
  406. if ((fepriv->state & FESTATE_SEARCHING_FAST) || (fepriv->state & FESTATE_RETUNE)) {
  407. delay = fepriv->min_delay;
  408. /* peform a tune */
  409. if (dvb_frontend_autotune(fe, check_wrapped)) {
  410. /* OK, if we've run out of trials at the fast speed.
  411. * Drop back to slow for the _next_ attempt */
  412. fepriv->state = FESTATE_SEARCHING_SLOW;
  413. fepriv->started_auto_step = fepriv->auto_step;
  414. continue;
  415. }
  416. check_wrapped = 1;
  417. /* if we've just retuned, enter the ZIGZAG_FAST state.
  418. * This ensures we cannot return from an
  419. * FE_SET_FRONTEND ioctl before the first frontend tune
  420. * occurs */
  421. if (fepriv->state & FESTATE_RETUNE) {
  422. fepriv->state = FESTATE_TUNING_FAST;
  423. }
  424. }
  425. /* slow zigzag */
  426. if (fepriv->state & FESTATE_SEARCHING_SLOW) {
  427. update_delay(&quality, &delay, fepriv->min_delay, s & FE_HAS_LOCK);
  428. /* Note: don't bother checking for wrapping; we stay in this
  429. * state until we get a lock */
  430. dvb_frontend_autotune(fe, 0);
  431. }
  432. }
  433. if (dvb_shutdown_timeout) {
  434. if (dvb_powerdown_on_sleep)
  435. if (fe->ops->set_voltage)
  436. fe->ops->set_voltage(fe, SEC_VOLTAGE_OFF);
  437. if (fe->ops->sleep)
  438. fe->ops->sleep(fe);
  439. }
  440. fepriv->thread_pid = 0;
  441. mb();
  442. dvb_frontend_wakeup(fe);
  443. return 0;
  444. }
  445. static void dvb_frontend_stop(struct dvb_frontend *fe)
  446. {
  447. unsigned long ret;
  448. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  449. dprintk ("%s\n", __FUNCTION__);
  450. fepriv->exit = 1;
  451. mb();
  452. if (!fepriv->thread_pid)
  453. return;
  454. /* check if the thread is really alive */
  455. if (kill_proc(fepriv->thread_pid, 0, 1) == -ESRCH) {
  456. printk("dvb_frontend_stop: thread PID %d already died\n",
  457. fepriv->thread_pid);
  458. /* make sure the mutex was not held by the thread */
  459. init_MUTEX (&fepriv->sem);
  460. return;
  461. }
  462. /* wake up the frontend thread, so it notices that fe->exit == 1 */
  463. dvb_frontend_wakeup(fe);
  464. /* wait until the frontend thread has exited */
  465. ret = wait_event_interruptible(fepriv->wait_queue,0 == fepriv->thread_pid);
  466. if (-ERESTARTSYS != ret) {
  467. fepriv->state = FESTATE_IDLE;
  468. return;
  469. }
  470. fepriv->state = FESTATE_IDLE;
  471. /* paranoia check in case a signal arrived */
  472. if (fepriv->thread_pid)
  473. printk("dvb_frontend_stop: warning: thread PID %d won't exit\n",
  474. fepriv->thread_pid);
  475. }
  476. static int dvb_frontend_start(struct dvb_frontend *fe)
  477. {
  478. int ret;
  479. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  480. dprintk ("%s\n", __FUNCTION__);
  481. if (fepriv->thread_pid) {
  482. if (!fepriv->exit)
  483. return 0;
  484. else
  485. dvb_frontend_stop (fe);
  486. }
  487. if (signal_pending(current))
  488. return -EINTR;
  489. if (down_interruptible (&fepriv->sem))
  490. return -EINTR;
  491. fepriv->state = FESTATE_IDLE;
  492. fepriv->exit = 0;
  493. fepriv->thread_pid = 0;
  494. mb();
  495. ret = kernel_thread (dvb_frontend_thread, fe, 0);
  496. if (ret < 0) {
  497. printk("dvb_frontend_start: failed to start kernel_thread (%d)\n", ret);
  498. up(&fepriv->sem);
  499. return ret;
  500. }
  501. fepriv->thread_pid = ret;
  502. return 0;
  503. }
  504. static int dvb_frontend_ioctl(struct inode *inode, struct file *file,
  505. unsigned int cmd, void *parg)
  506. {
  507. struct dvb_device *dvbdev = file->private_data;
  508. struct dvb_frontend *fe = dvbdev->priv;
  509. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  510. int err = -EOPNOTSUPP;
  511. dprintk ("%s\n", __FUNCTION__);
  512. if (!fe || fepriv->exit)
  513. return -ENODEV;
  514. if ((file->f_flags & O_ACCMODE) == O_RDONLY &&
  515. (_IOC_DIR(cmd) != _IOC_READ || cmd == FE_GET_EVENT ||
  516. cmd == FE_DISEQC_RECV_SLAVE_REPLY))
  517. return -EPERM;
  518. if (down_interruptible (&fepriv->sem))
  519. return -ERESTARTSYS;
  520. switch (cmd) {
  521. case FE_GET_INFO: {
  522. struct dvb_frontend_info* info = parg;
  523. memcpy(info, &fe->ops->info, sizeof(struct dvb_frontend_info));
  524. /* Force the CAN_INVERSION_AUTO bit on. If the frontend doesn't
  525. * do it, it is done for it. */
  526. info->caps |= FE_CAN_INVERSION_AUTO;
  527. err = 0;
  528. break;
  529. }
  530. case FE_READ_STATUS: {
  531. fe_status_t* status = parg;
  532. /* if retune was requested but hasn't occured yet, prevent
  533. * that user get signal state from previous tuning */
  534. if(fepriv->state == FESTATE_RETUNE) {
  535. err=0;
  536. *status = 0;
  537. break;
  538. }
  539. if (fe->ops->read_status)
  540. err = fe->ops->read_status(fe, status);
  541. break;
  542. }
  543. case FE_READ_BER:
  544. if (fe->ops->read_ber)
  545. err = fe->ops->read_ber(fe, (__u32*) parg);
  546. break;
  547. case FE_READ_SIGNAL_STRENGTH:
  548. if (fe->ops->read_signal_strength)
  549. err = fe->ops->read_signal_strength(fe, (__u16*) parg);
  550. break;
  551. case FE_READ_SNR:
  552. if (fe->ops->read_snr)
  553. err = fe->ops->read_snr(fe, (__u16*) parg);
  554. break;
  555. case FE_READ_UNCORRECTED_BLOCKS:
  556. if (fe->ops->read_ucblocks)
  557. err = fe->ops->read_ucblocks(fe, (__u32*) parg);
  558. break;
  559. case FE_DISEQC_RESET_OVERLOAD:
  560. if (fe->ops->diseqc_reset_overload) {
  561. err = fe->ops->diseqc_reset_overload(fe);
  562. fepriv->state = FESTATE_DISEQC;
  563. fepriv->status = 0;
  564. }
  565. break;
  566. case FE_DISEQC_SEND_MASTER_CMD:
  567. if (fe->ops->diseqc_send_master_cmd) {
  568. err = fe->ops->diseqc_send_master_cmd(fe, (struct dvb_diseqc_master_cmd*) parg);
  569. fepriv->state = FESTATE_DISEQC;
  570. fepriv->status = 0;
  571. }
  572. break;
  573. case FE_DISEQC_SEND_BURST:
  574. if (fe->ops->diseqc_send_burst) {
  575. err = fe->ops->diseqc_send_burst(fe, (fe_sec_mini_cmd_t) parg);
  576. fepriv->state = FESTATE_DISEQC;
  577. fepriv->status = 0;
  578. }
  579. break;
  580. case FE_SET_TONE:
  581. if (fe->ops->set_tone) {
  582. err = fe->ops->set_tone(fe, (fe_sec_tone_mode_t) parg);
  583. fepriv->state = FESTATE_DISEQC;
  584. fepriv->status = 0;
  585. fepriv->tone = (fe_sec_tone_mode_t) parg;
  586. }
  587. break;
  588. case FE_SET_VOLTAGE:
  589. if (fe->ops->set_voltage) {
  590. err = fe->ops->set_voltage(fe, (fe_sec_voltage_t) parg);
  591. fepriv->state = FESTATE_DISEQC;
  592. fepriv->status = 0;
  593. }
  594. break;
  595. case FE_DISHNETWORK_SEND_LEGACY_CMD:
  596. if (fe->ops->dishnetwork_send_legacy_command) {
  597. err = fe->ops->dishnetwork_send_legacy_command(fe, (unsigned int) parg);
  598. fepriv->state = FESTATE_DISEQC;
  599. fepriv->status = 0;
  600. }
  601. break;
  602. case FE_DISEQC_RECV_SLAVE_REPLY:
  603. if (fe->ops->diseqc_recv_slave_reply)
  604. err = fe->ops->diseqc_recv_slave_reply(fe, (struct dvb_diseqc_slave_reply*) parg);
  605. break;
  606. case FE_ENABLE_HIGH_LNB_VOLTAGE:
  607. if (fe->ops->enable_high_lnb_voltage)
  608. err = fe->ops->enable_high_lnb_voltage(fe, (int) parg);
  609. break;
  610. case FE_SET_FRONTEND: {
  611. struct dvb_frontend_tune_settings fetunesettings;
  612. memcpy (&fepriv->parameters, parg,
  613. sizeof (struct dvb_frontend_parameters));
  614. memset(&fetunesettings, 0, sizeof(struct dvb_frontend_tune_settings));
  615. memcpy(&fetunesettings.parameters, parg,
  616. sizeof (struct dvb_frontend_parameters));
  617. /* force auto frequency inversion if requested */
  618. if (dvb_force_auto_inversion) {
  619. fepriv->parameters.inversion = INVERSION_AUTO;
  620. fetunesettings.parameters.inversion = INVERSION_AUTO;
  621. }
  622. if (fe->ops->info.type == FE_OFDM) {
  623. /* without hierachical coding code_rate_LP is irrelevant,
  624. * so we tolerate the otherwise invalid FEC_NONE setting */
  625. if (fepriv->parameters.u.ofdm.hierarchy_information == HIERARCHY_NONE &&
  626. fepriv->parameters.u.ofdm.code_rate_LP == FEC_NONE)
  627. fepriv->parameters.u.ofdm.code_rate_LP = FEC_AUTO;
  628. }
  629. /* get frontend-specific tuning settings */
  630. if (fe->ops->get_tune_settings && (fe->ops->get_tune_settings(fe, &fetunesettings) == 0)) {
  631. fepriv->min_delay = (fetunesettings.min_delay_ms * HZ) / 1000;
  632. fepriv->max_drift = fetunesettings.max_drift;
  633. fepriv->step_size = fetunesettings.step_size;
  634. } else {
  635. /* default values */
  636. switch(fe->ops->info.type) {
  637. case FE_QPSK:
  638. fepriv->min_delay = HZ/20;
  639. fepriv->step_size = fepriv->parameters.u.qpsk.symbol_rate / 16000;
  640. fepriv->max_drift = fepriv->parameters.u.qpsk.symbol_rate / 2000;
  641. break;
  642. case FE_QAM:
  643. fepriv->min_delay = HZ/20;
  644. fepriv->step_size = 0; /* no zigzag */
  645. fepriv->max_drift = 0;
  646. break;
  647. case FE_OFDM:
  648. fepriv->min_delay = HZ/20;
  649. fepriv->step_size = fe->ops->info.frequency_stepsize * 2;
  650. fepriv->max_drift = (fe->ops->info.frequency_stepsize * 2) + 1;
  651. break;
  652. case FE_ATSC:
  653. printk("dvb-core: FE_ATSC not handled yet.\n");
  654. break;
  655. }
  656. }
  657. if (dvb_override_tune_delay > 0)
  658. fepriv->min_delay = (dvb_override_tune_delay * HZ) / 1000;
  659. fepriv->state = FESTATE_RETUNE;
  660. dvb_frontend_wakeup(fe);
  661. dvb_frontend_add_event(fe, 0);
  662. fepriv->status = 0;
  663. err = 0;
  664. break;
  665. }
  666. case FE_GET_EVENT:
  667. err = dvb_frontend_get_event (fe, parg, file->f_flags);
  668. break;
  669. case FE_GET_FRONTEND:
  670. if (fe->ops->get_frontend) {
  671. memcpy (parg, &fepriv->parameters, sizeof (struct dvb_frontend_parameters));
  672. err = fe->ops->get_frontend(fe, (struct dvb_frontend_parameters*) parg);
  673. }
  674. break;
  675. };
  676. up (&fepriv->sem);
  677. return err;
  678. }
  679. static unsigned int dvb_frontend_poll(struct file *file, struct poll_table_struct *wait)
  680. {
  681. struct dvb_device *dvbdev = file->private_data;
  682. struct dvb_frontend *fe = dvbdev->priv;
  683. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  684. dprintk ("%s\n", __FUNCTION__);
  685. poll_wait (file, &fepriv->events.wait_queue, wait);
  686. if (fepriv->events.eventw != fepriv->events.eventr)
  687. return (POLLIN | POLLRDNORM | POLLPRI);
  688. return 0;
  689. }
  690. static int dvb_frontend_open(struct inode *inode, struct file *file)
  691. {
  692. struct dvb_device *dvbdev = file->private_data;
  693. struct dvb_frontend *fe = dvbdev->priv;
  694. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  695. int ret;
  696. dprintk ("%s\n", __FUNCTION__);
  697. if ((ret = dvb_generic_open (inode, file)) < 0)
  698. return ret;
  699. if ((file->f_flags & O_ACCMODE) != O_RDONLY) {
  700. ret = dvb_frontend_start (fe);
  701. if (ret)
  702. dvb_generic_release (inode, file);
  703. /* empty event queue */
  704. fepriv->events.eventr = fepriv->events.eventw = 0;
  705. }
  706. return ret;
  707. }
  708. static int dvb_frontend_release(struct inode *inode, struct file *file)
  709. {
  710. struct dvb_device *dvbdev = file->private_data;
  711. struct dvb_frontend *fe = dvbdev->priv;
  712. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  713. dprintk ("%s\n", __FUNCTION__);
  714. if ((file->f_flags & O_ACCMODE) != O_RDONLY)
  715. fepriv->release_jiffies = jiffies;
  716. return dvb_generic_release (inode, file);
  717. }
  718. static struct file_operations dvb_frontend_fops = {
  719. .owner = THIS_MODULE,
  720. .ioctl = dvb_generic_ioctl,
  721. .poll = dvb_frontend_poll,
  722. .open = dvb_frontend_open,
  723. .release = dvb_frontend_release
  724. };
  725. int dvb_register_frontend(struct dvb_adapter* dvb,
  726. struct dvb_frontend* fe)
  727. {
  728. struct dvb_frontend_private *fepriv;
  729. static const struct dvb_device dvbdev_template = {
  730. .users = ~0,
  731. .writers = 1,
  732. .readers = (~0)-1,
  733. .fops = &dvb_frontend_fops,
  734. .kernel_ioctl = dvb_frontend_ioctl
  735. };
  736. dprintk ("%s\n", __FUNCTION__);
  737. if (down_interruptible (&frontend_mutex))
  738. return -ERESTARTSYS;
  739. fe->frontend_priv = kmalloc(sizeof(struct dvb_frontend_private), GFP_KERNEL);
  740. if (fe->frontend_priv == NULL) {
  741. up(&frontend_mutex);
  742. return -ENOMEM;
  743. }
  744. fepriv = fe->frontend_priv;
  745. memset(fe->frontend_priv, 0, sizeof(struct dvb_frontend_private));
  746. init_MUTEX (&fepriv->sem);
  747. init_waitqueue_head (&fepriv->wait_queue);
  748. init_waitqueue_head (&fepriv->events.wait_queue);
  749. init_MUTEX (&fepriv->events.sem);
  750. fe->dvb = dvb;
  751. fepriv->inversion = INVERSION_OFF;
  752. fepriv->tone = SEC_TONE_OFF;
  753. printk ("DVB: registering frontend %i (%s)...\n",
  754. fe->dvb->num,
  755. fe->ops->info.name);
  756. dvb_register_device (fe->dvb, &fepriv->dvbdev, &dvbdev_template,
  757. fe, DVB_DEVICE_FRONTEND);
  758. up (&frontend_mutex);
  759. return 0;
  760. }
  761. EXPORT_SYMBOL(dvb_register_frontend);
  762. int dvb_unregister_frontend(struct dvb_frontend* fe)
  763. {
  764. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  765. dprintk ("%s\n", __FUNCTION__);
  766. down (&frontend_mutex);
  767. dvb_unregister_device (fepriv->dvbdev);
  768. dvb_frontend_stop (fe);
  769. if (fe->ops->release)
  770. fe->ops->release(fe);
  771. else
  772. printk("dvb_frontend: Demodulator (%s) does not have a release callback!\n", fe->ops->info.name);
  773. /* fe is invalid now */
  774. kfree(fepriv);
  775. up (&frontend_mutex);
  776. return 0;
  777. }
  778. EXPORT_SYMBOL(dvb_unregister_frontend);