dvb_frontend.c 53 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/list.h>
  35. #include <linux/freezer.h>
  36. #include <linux/jiffies.h>
  37. #include <linux/kthread.h>
  38. #include <asm/processor.h>
  39. #include "dvb_frontend.h"
  40. #include "dvbdev.h"
  41. #include <linux/dvb/version.h>
  42. static int dvb_frontend_debug;
  43. static int dvb_shutdown_timeout;
  44. static int dvb_force_auto_inversion;
  45. static int dvb_override_tune_delay;
  46. static int dvb_powerdown_on_sleep = 1;
  47. static int dvb_mfe_wait_time = 5;
  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, 0644);
  51. MODULE_PARM_DESC(dvb_shutdown_timeout, "wait <shutdown_timeout> seconds after close() before suspending hardware");
  52. module_param(dvb_force_auto_inversion, int, 0644);
  53. MODULE_PARM_DESC(dvb_force_auto_inversion, "0: normal (default), 1: INVERSION_AUTO forced always");
  54. module_param(dvb_override_tune_delay, int, 0644);
  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, 0644);
  57. MODULE_PARM_DESC(dvb_powerdown_on_sleep, "0: do not power down, 1: turn LNB voltage off on sleep (default)");
  58. module_param(dvb_mfe_wait_time, int, 0644);
  59. MODULE_PARM_DESC(dvb_mfe_wait_time, "Wait up to <mfe_wait_time> seconds on open() for multi-frontend to become available (default:5 seconds)");
  60. #define dprintk if (dvb_frontend_debug) printk
  61. #define FESTATE_IDLE 1
  62. #define FESTATE_RETUNE 2
  63. #define FESTATE_TUNING_FAST 4
  64. #define FESTATE_TUNING_SLOW 8
  65. #define FESTATE_TUNED 16
  66. #define FESTATE_ZIGZAG_FAST 32
  67. #define FESTATE_ZIGZAG_SLOW 64
  68. #define FESTATE_DISEQC 128
  69. #define FESTATE_WAITFORLOCK (FESTATE_TUNING_FAST | FESTATE_TUNING_SLOW | FESTATE_ZIGZAG_FAST | FESTATE_ZIGZAG_SLOW | FESTATE_DISEQC)
  70. #define FESTATE_SEARCHING_FAST (FESTATE_TUNING_FAST | FESTATE_ZIGZAG_FAST)
  71. #define FESTATE_SEARCHING_SLOW (FESTATE_TUNING_SLOW | FESTATE_ZIGZAG_SLOW)
  72. #define FESTATE_LOSTLOCK (FESTATE_ZIGZAG_FAST | FESTATE_ZIGZAG_SLOW)
  73. #define FE_ALGO_HW 1
  74. /*
  75. * FESTATE_IDLE. No tuning parameters have been supplied and the loop is idling.
  76. * FESTATE_RETUNE. Parameters have been supplied, but we have not yet performed the first tune.
  77. * FESTATE_TUNING_FAST. Tuning parameters have been supplied and fast zigzag scan is in progress.
  78. * FESTATE_TUNING_SLOW. Tuning parameters have been supplied. Fast zigzag failed, so we're trying again, but slower.
  79. * FESTATE_TUNED. The frontend has successfully locked on.
  80. * FESTATE_ZIGZAG_FAST. The lock has been lost, and a fast zigzag has been initiated to try and regain it.
  81. * FESTATE_ZIGZAG_SLOW. The lock has been lost. Fast zigzag has been failed, so we're trying again, but slower.
  82. * FESTATE_DISEQC. A DISEQC command has just been issued.
  83. * FESTATE_WAITFORLOCK. When we're waiting for a lock.
  84. * FESTATE_SEARCHING_FAST. When we're searching for a signal using a fast zigzag scan.
  85. * FESTATE_SEARCHING_SLOW. When we're searching for a signal using a slow zigzag scan.
  86. * FESTATE_LOSTLOCK. When the lock has been lost, and we're searching it again.
  87. */
  88. static DEFINE_MUTEX(frontend_mutex);
  89. struct dvb_frontend_private {
  90. /* thread/frontend values */
  91. struct dvb_device *dvbdev;
  92. struct dvb_frontend_parameters parameters;
  93. struct dvb_fe_events events;
  94. struct semaphore sem;
  95. struct list_head list_head;
  96. wait_queue_head_t wait_queue;
  97. struct task_struct *thread;
  98. unsigned long release_jiffies;
  99. unsigned int exit;
  100. unsigned int wakeup;
  101. fe_status_t status;
  102. unsigned long tune_mode_flags;
  103. unsigned int delay;
  104. unsigned int reinitialise;
  105. int tone;
  106. int voltage;
  107. /* swzigzag values */
  108. unsigned int state;
  109. unsigned int bending;
  110. int lnb_drift;
  111. unsigned int inversion;
  112. unsigned int auto_step;
  113. unsigned int auto_sub_step;
  114. unsigned int started_auto_step;
  115. unsigned int min_delay;
  116. unsigned int max_drift;
  117. unsigned int step_size;
  118. int quality;
  119. unsigned int check_wrapped;
  120. enum dvbfe_search algo_status;
  121. };
  122. static void dvb_frontend_wakeup(struct dvb_frontend *fe);
  123. static void dvb_frontend_add_event(struct dvb_frontend *fe, fe_status_t status)
  124. {
  125. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  126. struct dvb_fe_events *events = &fepriv->events;
  127. struct dvb_frontend_event *e;
  128. int wp;
  129. dprintk ("%s\n", __func__);
  130. if (mutex_lock_interruptible (&events->mtx))
  131. return;
  132. wp = (events->eventw + 1) % MAX_EVENT;
  133. if (wp == events->eventr) {
  134. events->overflow = 1;
  135. events->eventr = (events->eventr + 1) % MAX_EVENT;
  136. }
  137. e = &events->events[events->eventw];
  138. memcpy (&e->parameters, &fepriv->parameters,
  139. sizeof (struct dvb_frontend_parameters));
  140. if (status & FE_HAS_LOCK)
  141. if (fe->ops.get_frontend)
  142. fe->ops.get_frontend(fe, &e->parameters);
  143. events->eventw = wp;
  144. mutex_unlock(&events->mtx);
  145. e->status = status;
  146. wake_up_interruptible (&events->wait_queue);
  147. }
  148. static int dvb_frontend_get_event(struct dvb_frontend *fe,
  149. struct dvb_frontend_event *event, int flags)
  150. {
  151. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  152. struct dvb_fe_events *events = &fepriv->events;
  153. dprintk ("%s\n", __func__);
  154. if (events->overflow) {
  155. events->overflow = 0;
  156. return -EOVERFLOW;
  157. }
  158. if (events->eventw == events->eventr) {
  159. int ret;
  160. if (flags & O_NONBLOCK)
  161. return -EWOULDBLOCK;
  162. up(&fepriv->sem);
  163. ret = wait_event_interruptible (events->wait_queue,
  164. events->eventw != events->eventr);
  165. if (down_interruptible (&fepriv->sem))
  166. return -ERESTARTSYS;
  167. if (ret < 0)
  168. return ret;
  169. }
  170. if (mutex_lock_interruptible (&events->mtx))
  171. return -ERESTARTSYS;
  172. memcpy (event, &events->events[events->eventr],
  173. sizeof(struct dvb_frontend_event));
  174. events->eventr = (events->eventr + 1) % MAX_EVENT;
  175. mutex_unlock(&events->mtx);
  176. return 0;
  177. }
  178. static void dvb_frontend_init(struct dvb_frontend *fe)
  179. {
  180. dprintk ("DVB: initialising adapter %i frontend %i (%s)...\n",
  181. fe->dvb->num,
  182. fe->id,
  183. fe->ops.info.name);
  184. if (fe->ops.init)
  185. fe->ops.init(fe);
  186. if (fe->ops.tuner_ops.init) {
  187. if (fe->ops.i2c_gate_ctrl)
  188. fe->ops.i2c_gate_ctrl(fe, 1);
  189. fe->ops.tuner_ops.init(fe);
  190. if (fe->ops.i2c_gate_ctrl)
  191. fe->ops.i2c_gate_ctrl(fe, 0);
  192. }
  193. }
  194. void dvb_frontend_reinitialise(struct dvb_frontend *fe)
  195. {
  196. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  197. fepriv->reinitialise = 1;
  198. dvb_frontend_wakeup(fe);
  199. }
  200. EXPORT_SYMBOL(dvb_frontend_reinitialise);
  201. static void dvb_frontend_swzigzag_update_delay(struct dvb_frontend_private *fepriv, int locked)
  202. {
  203. int q2;
  204. dprintk ("%s\n", __func__);
  205. if (locked)
  206. (fepriv->quality) = (fepriv->quality * 220 + 36*256) / 256;
  207. else
  208. (fepriv->quality) = (fepriv->quality * 220 + 0) / 256;
  209. q2 = fepriv->quality - 128;
  210. q2 *= q2;
  211. fepriv->delay = fepriv->min_delay + q2 * HZ / (128*128);
  212. }
  213. /**
  214. * Performs automatic twiddling of frontend parameters.
  215. *
  216. * @param fe The frontend concerned.
  217. * @param check_wrapped Checks if an iteration has completed. DO NOT SET ON THE FIRST ATTEMPT
  218. * @returns Number of complete iterations that have been performed.
  219. */
  220. static int dvb_frontend_swzigzag_autotune(struct dvb_frontend *fe, int check_wrapped)
  221. {
  222. int autoinversion;
  223. int ready = 0;
  224. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  225. int original_inversion = fepriv->parameters.inversion;
  226. u32 original_frequency = fepriv->parameters.frequency;
  227. /* are we using autoinversion? */
  228. autoinversion = ((!(fe->ops.info.caps & FE_CAN_INVERSION_AUTO)) &&
  229. (fepriv->parameters.inversion == INVERSION_AUTO));
  230. /* setup parameters correctly */
  231. while(!ready) {
  232. /* calculate the lnb_drift */
  233. fepriv->lnb_drift = fepriv->auto_step * fepriv->step_size;
  234. /* wrap the auto_step if we've exceeded the maximum drift */
  235. if (fepriv->lnb_drift > fepriv->max_drift) {
  236. fepriv->auto_step = 0;
  237. fepriv->auto_sub_step = 0;
  238. fepriv->lnb_drift = 0;
  239. }
  240. /* perform inversion and +/- zigzag */
  241. switch(fepriv->auto_sub_step) {
  242. case 0:
  243. /* try with the current inversion and current drift setting */
  244. ready = 1;
  245. break;
  246. case 1:
  247. if (!autoinversion) break;
  248. fepriv->inversion = (fepriv->inversion == INVERSION_OFF) ? INVERSION_ON : INVERSION_OFF;
  249. ready = 1;
  250. break;
  251. case 2:
  252. if (fepriv->lnb_drift == 0) break;
  253. fepriv->lnb_drift = -fepriv->lnb_drift;
  254. ready = 1;
  255. break;
  256. case 3:
  257. if (fepriv->lnb_drift == 0) break;
  258. if (!autoinversion) break;
  259. fepriv->inversion = (fepriv->inversion == INVERSION_OFF) ? INVERSION_ON : INVERSION_OFF;
  260. fepriv->lnb_drift = -fepriv->lnb_drift;
  261. ready = 1;
  262. break;
  263. default:
  264. fepriv->auto_step++;
  265. fepriv->auto_sub_step = -1; /* it'll be incremented to 0 in a moment */
  266. break;
  267. }
  268. if (!ready) fepriv->auto_sub_step++;
  269. }
  270. /* if this attempt would hit where we started, indicate a complete
  271. * iteration has occurred */
  272. if ((fepriv->auto_step == fepriv->started_auto_step) &&
  273. (fepriv->auto_sub_step == 0) && check_wrapped) {
  274. return 1;
  275. }
  276. dprintk("%s: drift:%i inversion:%i auto_step:%i "
  277. "auto_sub_step:%i started_auto_step:%i\n",
  278. __func__, fepriv->lnb_drift, fepriv->inversion,
  279. fepriv->auto_step, fepriv->auto_sub_step, fepriv->started_auto_step);
  280. /* set the frontend itself */
  281. fepriv->parameters.frequency += fepriv->lnb_drift;
  282. if (autoinversion)
  283. fepriv->parameters.inversion = fepriv->inversion;
  284. if (fe->ops.set_frontend)
  285. fe->ops.set_frontend(fe, &fepriv->parameters);
  286. fepriv->parameters.frequency = original_frequency;
  287. fepriv->parameters.inversion = original_inversion;
  288. fepriv->auto_sub_step++;
  289. return 0;
  290. }
  291. static void dvb_frontend_swzigzag(struct dvb_frontend *fe)
  292. {
  293. fe_status_t s = 0;
  294. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  295. /* if we've got no parameters, just keep idling */
  296. if (fepriv->state & FESTATE_IDLE) {
  297. fepriv->delay = 3*HZ;
  298. fepriv->quality = 0;
  299. return;
  300. }
  301. /* in SCAN mode, we just set the frontend when asked and leave it alone */
  302. if (fepriv->tune_mode_flags & FE_TUNE_MODE_ONESHOT) {
  303. if (fepriv->state & FESTATE_RETUNE) {
  304. if (fe->ops.set_frontend)
  305. fe->ops.set_frontend(fe, &fepriv->parameters);
  306. fepriv->state = FESTATE_TUNED;
  307. }
  308. fepriv->delay = 3*HZ;
  309. fepriv->quality = 0;
  310. return;
  311. }
  312. /* get the frontend status */
  313. if (fepriv->state & FESTATE_RETUNE) {
  314. s = 0;
  315. } else {
  316. if (fe->ops.read_status)
  317. fe->ops.read_status(fe, &s);
  318. if (s != fepriv->status) {
  319. dvb_frontend_add_event(fe, s);
  320. fepriv->status = s;
  321. }
  322. }
  323. /* if we're not tuned, and we have a lock, move to the TUNED state */
  324. if ((fepriv->state & FESTATE_WAITFORLOCK) && (s & FE_HAS_LOCK)) {
  325. dvb_frontend_swzigzag_update_delay(fepriv, s & FE_HAS_LOCK);
  326. fepriv->state = FESTATE_TUNED;
  327. /* if we're tuned, then we have determined the correct inversion */
  328. if ((!(fe->ops.info.caps & FE_CAN_INVERSION_AUTO)) &&
  329. (fepriv->parameters.inversion == INVERSION_AUTO)) {
  330. fepriv->parameters.inversion = fepriv->inversion;
  331. }
  332. return;
  333. }
  334. /* if we are tuned already, check we're still locked */
  335. if (fepriv->state & FESTATE_TUNED) {
  336. dvb_frontend_swzigzag_update_delay(fepriv, s & FE_HAS_LOCK);
  337. /* we're tuned, and the lock is still good... */
  338. if (s & FE_HAS_LOCK) {
  339. return;
  340. } else { /* if we _WERE_ tuned, but now don't have a lock */
  341. fepriv->state = FESTATE_ZIGZAG_FAST;
  342. fepriv->started_auto_step = fepriv->auto_step;
  343. fepriv->check_wrapped = 0;
  344. }
  345. }
  346. /* don't actually do anything if we're in the LOSTLOCK state,
  347. * the frontend is set to FE_CAN_RECOVER, and the max_drift is 0 */
  348. if ((fepriv->state & FESTATE_LOSTLOCK) &&
  349. (fe->ops.info.caps & FE_CAN_RECOVER) && (fepriv->max_drift == 0)) {
  350. dvb_frontend_swzigzag_update_delay(fepriv, s & FE_HAS_LOCK);
  351. return;
  352. }
  353. /* don't do anything if we're in the DISEQC state, since this
  354. * might be someone with a motorized dish controlled by DISEQC.
  355. * If its actually a re-tune, there will be a SET_FRONTEND soon enough. */
  356. if (fepriv->state & FESTATE_DISEQC) {
  357. dvb_frontend_swzigzag_update_delay(fepriv, s & FE_HAS_LOCK);
  358. return;
  359. }
  360. /* if we're in the RETUNE state, set everything up for a brand
  361. * new scan, keeping the current inversion setting, as the next
  362. * tune is _very_ likely to require the same */
  363. if (fepriv->state & FESTATE_RETUNE) {
  364. fepriv->lnb_drift = 0;
  365. fepriv->auto_step = 0;
  366. fepriv->auto_sub_step = 0;
  367. fepriv->started_auto_step = 0;
  368. fepriv->check_wrapped = 0;
  369. }
  370. /* fast zigzag. */
  371. if ((fepriv->state & FESTATE_SEARCHING_FAST) || (fepriv->state & FESTATE_RETUNE)) {
  372. fepriv->delay = fepriv->min_delay;
  373. /* peform a tune */
  374. if (dvb_frontend_swzigzag_autotune(fe, fepriv->check_wrapped)) {
  375. /* OK, if we've run out of trials at the fast speed.
  376. * Drop back to slow for the _next_ attempt */
  377. fepriv->state = FESTATE_SEARCHING_SLOW;
  378. fepriv->started_auto_step = fepriv->auto_step;
  379. return;
  380. }
  381. fepriv->check_wrapped = 1;
  382. /* if we've just retuned, enter the ZIGZAG_FAST state.
  383. * This ensures we cannot return from an
  384. * FE_SET_FRONTEND ioctl before the first frontend tune
  385. * occurs */
  386. if (fepriv->state & FESTATE_RETUNE) {
  387. fepriv->state = FESTATE_TUNING_FAST;
  388. }
  389. }
  390. /* slow zigzag */
  391. if (fepriv->state & FESTATE_SEARCHING_SLOW) {
  392. dvb_frontend_swzigzag_update_delay(fepriv, s & FE_HAS_LOCK);
  393. /* Note: don't bother checking for wrapping; we stay in this
  394. * state until we get a lock */
  395. dvb_frontend_swzigzag_autotune(fe, 0);
  396. }
  397. }
  398. static int dvb_frontend_is_exiting(struct dvb_frontend *fe)
  399. {
  400. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  401. if (fepriv->exit)
  402. return 1;
  403. if (fepriv->dvbdev->writers == 1)
  404. if (time_after(jiffies, fepriv->release_jiffies +
  405. dvb_shutdown_timeout * HZ))
  406. return 1;
  407. return 0;
  408. }
  409. static int dvb_frontend_should_wakeup(struct dvb_frontend *fe)
  410. {
  411. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  412. if (fepriv->wakeup) {
  413. fepriv->wakeup = 0;
  414. return 1;
  415. }
  416. return dvb_frontend_is_exiting(fe);
  417. }
  418. static void dvb_frontend_wakeup(struct dvb_frontend *fe)
  419. {
  420. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  421. fepriv->wakeup = 1;
  422. wake_up_interruptible(&fepriv->wait_queue);
  423. }
  424. static int dvb_frontend_thread(void *data)
  425. {
  426. struct dvb_frontend *fe = data;
  427. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  428. unsigned long timeout;
  429. fe_status_t s;
  430. enum dvbfe_algo algo;
  431. struct dvb_frontend_parameters *params;
  432. dprintk("%s\n", __func__);
  433. fepriv->check_wrapped = 0;
  434. fepriv->quality = 0;
  435. fepriv->delay = 3*HZ;
  436. fepriv->status = 0;
  437. fepriv->wakeup = 0;
  438. fepriv->reinitialise = 0;
  439. dvb_frontend_init(fe);
  440. set_freezable();
  441. while (1) {
  442. up(&fepriv->sem); /* is locked when we enter the thread... */
  443. restart:
  444. timeout = wait_event_interruptible_timeout(fepriv->wait_queue,
  445. dvb_frontend_should_wakeup(fe) || kthread_should_stop()
  446. || freezing(current),
  447. fepriv->delay);
  448. if (kthread_should_stop() || dvb_frontend_is_exiting(fe)) {
  449. /* got signal or quitting */
  450. break;
  451. }
  452. if (try_to_freeze())
  453. goto restart;
  454. if (down_interruptible(&fepriv->sem))
  455. break;
  456. if (fepriv->reinitialise) {
  457. dvb_frontend_init(fe);
  458. if (fepriv->tone != -1) {
  459. fe->ops.set_tone(fe, fepriv->tone);
  460. }
  461. if (fepriv->voltage != -1) {
  462. fe->ops.set_voltage(fe, fepriv->voltage);
  463. }
  464. fepriv->reinitialise = 0;
  465. }
  466. /* do an iteration of the tuning loop */
  467. if (fe->ops.get_frontend_algo) {
  468. algo = fe->ops.get_frontend_algo(fe);
  469. switch (algo) {
  470. case DVBFE_ALGO_HW:
  471. dprintk("%s: Frontend ALGO = DVBFE_ALGO_HW\n", __func__);
  472. params = NULL; /* have we been asked to RETUNE ? */
  473. if (fepriv->state & FESTATE_RETUNE) {
  474. dprintk("%s: Retune requested, FESTATE_RETUNE\n", __func__);
  475. params = &fepriv->parameters;
  476. fepriv->state = FESTATE_TUNED;
  477. }
  478. if (fe->ops.tune)
  479. fe->ops.tune(fe, params, fepriv->tune_mode_flags, &fepriv->delay, &s);
  480. if (s != fepriv->status && !(fepriv->tune_mode_flags & FE_TUNE_MODE_ONESHOT)) {
  481. dprintk("%s: state changed, adding current state\n", __func__);
  482. dvb_frontend_add_event(fe, s);
  483. fepriv->status = s;
  484. }
  485. break;
  486. case DVBFE_ALGO_SW:
  487. dprintk("%s: Frontend ALGO = DVBFE_ALGO_SW\n", __func__);
  488. dvb_frontend_swzigzag(fe);
  489. break;
  490. case DVBFE_ALGO_CUSTOM:
  491. params = NULL; /* have we been asked to RETUNE ? */
  492. dprintk("%s: Frontend ALGO = DVBFE_ALGO_CUSTOM, state=%d\n", __func__, fepriv->state);
  493. if (fepriv->state & FESTATE_RETUNE) {
  494. dprintk("%s: Retune requested, FESTAT_RETUNE\n", __func__);
  495. params = &fepriv->parameters;
  496. fepriv->state = FESTATE_TUNED;
  497. }
  498. /* Case where we are going to search for a carrier
  499. * User asked us to retune again for some reason, possibly
  500. * requesting a search with a new set of parameters
  501. */
  502. if (fepriv->algo_status & DVBFE_ALGO_SEARCH_AGAIN) {
  503. if (fe->ops.search) {
  504. fepriv->algo_status = fe->ops.search(fe, &fepriv->parameters);
  505. /* We did do a search as was requested, the flags are
  506. * now unset as well and has the flags wrt to search.
  507. */
  508. } else {
  509. fepriv->algo_status &= ~DVBFE_ALGO_SEARCH_AGAIN;
  510. }
  511. }
  512. /* Track the carrier if the search was successful */
  513. if (fepriv->algo_status == DVBFE_ALGO_SEARCH_SUCCESS) {
  514. if (fe->ops.track)
  515. fe->ops.track(fe, &fepriv->parameters);
  516. } else {
  517. fepriv->algo_status |= DVBFE_ALGO_SEARCH_AGAIN;
  518. fepriv->delay = HZ / 2;
  519. }
  520. fe->ops.read_status(fe, &s);
  521. if (s != fepriv->status) {
  522. dvb_frontend_add_event(fe, s); /* update event list */
  523. fepriv->status = s;
  524. if (!(s & FE_HAS_LOCK)) {
  525. fepriv->delay = HZ / 10;
  526. fepriv->algo_status |= DVBFE_ALGO_SEARCH_AGAIN;
  527. } else {
  528. fepriv->delay = 60 * HZ;
  529. }
  530. }
  531. break;
  532. default:
  533. dprintk("%s: UNDEFINED ALGO !\n", __func__);
  534. break;
  535. }
  536. } else {
  537. dvb_frontend_swzigzag(fe);
  538. }
  539. }
  540. if (dvb_powerdown_on_sleep) {
  541. if (fe->ops.set_voltage)
  542. fe->ops.set_voltage(fe, SEC_VOLTAGE_OFF);
  543. if (fe->ops.tuner_ops.sleep) {
  544. if (fe->ops.i2c_gate_ctrl)
  545. fe->ops.i2c_gate_ctrl(fe, 1);
  546. fe->ops.tuner_ops.sleep(fe);
  547. if (fe->ops.i2c_gate_ctrl)
  548. fe->ops.i2c_gate_ctrl(fe, 0);
  549. }
  550. if (fe->ops.sleep)
  551. fe->ops.sleep(fe);
  552. }
  553. fepriv->thread = NULL;
  554. mb();
  555. dvb_frontend_wakeup(fe);
  556. return 0;
  557. }
  558. static void dvb_frontend_stop(struct dvb_frontend *fe)
  559. {
  560. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  561. dprintk ("%s\n", __func__);
  562. fepriv->exit = 1;
  563. mb();
  564. if (!fepriv->thread)
  565. return;
  566. kthread_stop(fepriv->thread);
  567. init_MUTEX (&fepriv->sem);
  568. fepriv->state = FESTATE_IDLE;
  569. /* paranoia check in case a signal arrived */
  570. if (fepriv->thread)
  571. printk("dvb_frontend_stop: warning: thread %p won't exit\n",
  572. fepriv->thread);
  573. }
  574. s32 timeval_usec_diff(struct timeval lasttime, struct timeval curtime)
  575. {
  576. return ((curtime.tv_usec < lasttime.tv_usec) ?
  577. 1000000 - lasttime.tv_usec + curtime.tv_usec :
  578. curtime.tv_usec - lasttime.tv_usec);
  579. }
  580. EXPORT_SYMBOL(timeval_usec_diff);
  581. static inline void timeval_usec_add(struct timeval *curtime, u32 add_usec)
  582. {
  583. curtime->tv_usec += add_usec;
  584. if (curtime->tv_usec >= 1000000) {
  585. curtime->tv_usec -= 1000000;
  586. curtime->tv_sec++;
  587. }
  588. }
  589. /*
  590. * Sleep until gettimeofday() > waketime + add_usec
  591. * This needs to be as precise as possible, but as the delay is
  592. * usually between 2ms and 32ms, it is done using a scheduled msleep
  593. * followed by usleep (normally a busy-wait loop) for the remainder
  594. */
  595. void dvb_frontend_sleep_until(struct timeval *waketime, u32 add_usec)
  596. {
  597. struct timeval lasttime;
  598. s32 delta, newdelta;
  599. timeval_usec_add(waketime, add_usec);
  600. do_gettimeofday(&lasttime);
  601. delta = timeval_usec_diff(lasttime, *waketime);
  602. if (delta > 2500) {
  603. msleep((delta - 1500) / 1000);
  604. do_gettimeofday(&lasttime);
  605. newdelta = timeval_usec_diff(lasttime, *waketime);
  606. delta = (newdelta > delta) ? 0 : newdelta;
  607. }
  608. if (delta > 0)
  609. udelay(delta);
  610. }
  611. EXPORT_SYMBOL(dvb_frontend_sleep_until);
  612. static int dvb_frontend_start(struct dvb_frontend *fe)
  613. {
  614. int ret;
  615. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  616. struct task_struct *fe_thread;
  617. dprintk ("%s\n", __func__);
  618. if (fepriv->thread) {
  619. if (!fepriv->exit)
  620. return 0;
  621. else
  622. dvb_frontend_stop (fe);
  623. }
  624. if (signal_pending(current))
  625. return -EINTR;
  626. if (down_interruptible (&fepriv->sem))
  627. return -EINTR;
  628. fepriv->state = FESTATE_IDLE;
  629. fepriv->exit = 0;
  630. fepriv->thread = NULL;
  631. mb();
  632. fe_thread = kthread_run(dvb_frontend_thread, fe,
  633. "kdvb-ad-%i-fe-%i", fe->dvb->num,fe->id);
  634. if (IS_ERR(fe_thread)) {
  635. ret = PTR_ERR(fe_thread);
  636. printk("dvb_frontend_start: failed to start kthread (%d)\n", ret);
  637. up(&fepriv->sem);
  638. return ret;
  639. }
  640. fepriv->thread = fe_thread;
  641. return 0;
  642. }
  643. static void dvb_frontend_get_frequeny_limits(struct dvb_frontend *fe,
  644. u32 *freq_min, u32 *freq_max)
  645. {
  646. *freq_min = max(fe->ops.info.frequency_min, fe->ops.tuner_ops.info.frequency_min);
  647. if (fe->ops.info.frequency_max == 0)
  648. *freq_max = fe->ops.tuner_ops.info.frequency_max;
  649. else if (fe->ops.tuner_ops.info.frequency_max == 0)
  650. *freq_max = fe->ops.info.frequency_max;
  651. else
  652. *freq_max = min(fe->ops.info.frequency_max, fe->ops.tuner_ops.info.frequency_max);
  653. if (*freq_min == 0 || *freq_max == 0)
  654. printk(KERN_WARNING "DVB: adapter %i frontend %u frequency limits undefined - fix the driver\n",
  655. fe->dvb->num,fe->id);
  656. }
  657. static int dvb_frontend_check_parameters(struct dvb_frontend *fe,
  658. struct dvb_frontend_parameters *parms)
  659. {
  660. u32 freq_min;
  661. u32 freq_max;
  662. /* range check: frequency */
  663. dvb_frontend_get_frequeny_limits(fe, &freq_min, &freq_max);
  664. if ((freq_min && parms->frequency < freq_min) ||
  665. (freq_max && parms->frequency > freq_max)) {
  666. printk(KERN_WARNING "DVB: adapter %i frontend %i frequency %u out of range (%u..%u)\n",
  667. fe->dvb->num, fe->id, parms->frequency, freq_min, freq_max);
  668. return -EINVAL;
  669. }
  670. /* range check: symbol rate */
  671. if (fe->ops.info.type == FE_QPSK) {
  672. if ((fe->ops.info.symbol_rate_min &&
  673. parms->u.qpsk.symbol_rate < fe->ops.info.symbol_rate_min) ||
  674. (fe->ops.info.symbol_rate_max &&
  675. parms->u.qpsk.symbol_rate > fe->ops.info.symbol_rate_max)) {
  676. printk(KERN_WARNING "DVB: adapter %i frontend %i symbol rate %u out of range (%u..%u)\n",
  677. fe->dvb->num, fe->id, parms->u.qpsk.symbol_rate,
  678. fe->ops.info.symbol_rate_min, fe->ops.info.symbol_rate_max);
  679. return -EINVAL;
  680. }
  681. } else if (fe->ops.info.type == FE_QAM) {
  682. if ((fe->ops.info.symbol_rate_min &&
  683. parms->u.qam.symbol_rate < fe->ops.info.symbol_rate_min) ||
  684. (fe->ops.info.symbol_rate_max &&
  685. parms->u.qam.symbol_rate > fe->ops.info.symbol_rate_max)) {
  686. printk(KERN_WARNING "DVB: adapter %i frontend %i symbol rate %u out of range (%u..%u)\n",
  687. fe->dvb->num, fe->id, parms->u.qam.symbol_rate,
  688. fe->ops.info.symbol_rate_min, fe->ops.info.symbol_rate_max);
  689. return -EINVAL;
  690. }
  691. }
  692. return 0;
  693. }
  694. struct dtv_cmds_h dtv_cmds[] = {
  695. [DTV_TUNE] = {
  696. .name = "DTV_TUNE",
  697. .cmd = DTV_TUNE,
  698. .set = 1,
  699. },
  700. [DTV_CLEAR] = {
  701. .name = "DTV_CLEAR",
  702. .cmd = DTV_CLEAR,
  703. .set = 1,
  704. },
  705. /* Set */
  706. [DTV_FREQUENCY] = {
  707. .name = "DTV_FREQUENCY",
  708. .cmd = DTV_FREQUENCY,
  709. .set = 1,
  710. },
  711. [DTV_BANDWIDTH_HZ] = {
  712. .name = "DTV_BANDWIDTH_HZ",
  713. .cmd = DTV_BANDWIDTH_HZ,
  714. .set = 1,
  715. },
  716. [DTV_MODULATION] = {
  717. .name = "DTV_MODULATION",
  718. .cmd = DTV_MODULATION,
  719. .set = 1,
  720. },
  721. [DTV_INVERSION] = {
  722. .name = "DTV_INVERSION",
  723. .cmd = DTV_INVERSION,
  724. .set = 1,
  725. },
  726. [DTV_DISEQC_MASTER] = {
  727. .name = "DTV_DISEQC_MASTER",
  728. .cmd = DTV_DISEQC_MASTER,
  729. .set = 1,
  730. .buffer = 1,
  731. },
  732. [DTV_SYMBOL_RATE] = {
  733. .name = "DTV_SYMBOL_RATE",
  734. .cmd = DTV_SYMBOL_RATE,
  735. .set = 1,
  736. },
  737. [DTV_INNER_FEC] = {
  738. .name = "DTV_INNER_FEC",
  739. .cmd = DTV_INNER_FEC,
  740. .set = 1,
  741. },
  742. [DTV_VOLTAGE] = {
  743. .name = "DTV_VOLTAGE",
  744. .cmd = DTV_VOLTAGE,
  745. .set = 1,
  746. },
  747. [DTV_TONE] = {
  748. .name = "DTV_TONE",
  749. .cmd = DTV_TONE,
  750. .set = 1,
  751. },
  752. [DTV_PILOT] = {
  753. .name = "DTV_PILOT",
  754. .cmd = DTV_PILOT,
  755. .set = 1,
  756. },
  757. [DTV_ROLLOFF] = {
  758. .name = "DTV_ROLLOFF",
  759. .cmd = DTV_ROLLOFF,
  760. .set = 1,
  761. },
  762. [DTV_DELIVERY_SYSTEM] = {
  763. .name = "DTV_DELIVERY_SYSTEM",
  764. .cmd = DTV_DELIVERY_SYSTEM,
  765. .set = 1,
  766. },
  767. [DTV_HIERARCHY] = {
  768. .name = "DTV_HIERARCHY",
  769. .cmd = DTV_HIERARCHY,
  770. .set = 1,
  771. },
  772. [DTV_CODE_RATE_HP] = {
  773. .name = "DTV_CODE_RATE_HP",
  774. .cmd = DTV_CODE_RATE_HP,
  775. .set = 1,
  776. },
  777. [DTV_CODE_RATE_LP] = {
  778. .name = "DTV_CODE_RATE_LP",
  779. .cmd = DTV_CODE_RATE_LP,
  780. .set = 1,
  781. },
  782. [DTV_GUARD_INTERVAL] = {
  783. .name = "DTV_GUARD_INTERVAL",
  784. .cmd = DTV_GUARD_INTERVAL,
  785. .set = 1,
  786. },
  787. [DTV_TRANSMISSION_MODE] = {
  788. .name = "DTV_TRANSMISSION_MODE",
  789. .cmd = DTV_TRANSMISSION_MODE,
  790. .set = 1,
  791. },
  792. /* Get */
  793. [DTV_DISEQC_SLAVE_REPLY] = {
  794. .name = "DTV_DISEQC_SLAVE_REPLY",
  795. .cmd = DTV_DISEQC_SLAVE_REPLY,
  796. .set = 0,
  797. .buffer = 1,
  798. },
  799. [DTV_API_VERSION] = {
  800. .name = "DTV_API_VERSION",
  801. .cmd = DTV_API_VERSION,
  802. .set = 0,
  803. },
  804. [DTV_CODE_RATE_HP] = {
  805. .name = "DTV_CODE_RATE_HP",
  806. .cmd = DTV_CODE_RATE_HP,
  807. .set = 0,
  808. },
  809. [DTV_CODE_RATE_LP] = {
  810. .name = "DTV_CODE_RATE_LP",
  811. .cmd = DTV_CODE_RATE_LP,
  812. .set = 0,
  813. },
  814. [DTV_GUARD_INTERVAL] = {
  815. .name = "DTV_GUARD_INTERVAL",
  816. .cmd = DTV_GUARD_INTERVAL,
  817. .set = 0,
  818. },
  819. [DTV_TRANSMISSION_MODE] = {
  820. .name = "DTV_TRANSMISSION_MODE",
  821. .cmd = DTV_TRANSMISSION_MODE,
  822. .set = 0,
  823. },
  824. [DTV_HIERARCHY] = {
  825. .name = "DTV_HIERARCHY",
  826. .cmd = DTV_HIERARCHY,
  827. .set = 0,
  828. },
  829. };
  830. void dtv_property_dump(struct dtv_property *tvp)
  831. {
  832. int i;
  833. if (tvp->cmd <= 0 || tvp->cmd > DTV_MAX_COMMAND) {
  834. printk(KERN_WARNING "%s: tvp.cmd = 0x%08x undefined\n",
  835. __func__, tvp->cmd);
  836. return;
  837. }
  838. dprintk("%s() tvp.cmd = 0x%08x (%s)\n"
  839. ,__func__
  840. ,tvp->cmd
  841. ,dtv_cmds[ tvp->cmd ].name);
  842. if(dtv_cmds[ tvp->cmd ].buffer) {
  843. dprintk("%s() tvp.u.buffer.len = 0x%02x\n"
  844. ,__func__
  845. ,tvp->u.buffer.len);
  846. for(i = 0; i < tvp->u.buffer.len; i++)
  847. dprintk("%s() tvp.u.buffer.data[0x%02x] = 0x%02x\n"
  848. ,__func__
  849. ,i
  850. ,tvp->u.buffer.data[i]);
  851. } else
  852. dprintk("%s() tvp.u.data = 0x%08x\n", __func__, tvp->u.data);
  853. }
  854. int is_legacy_delivery_system(fe_delivery_system_t s)
  855. {
  856. if((s == SYS_UNDEFINED) || (s == SYS_DVBC_ANNEX_AC) ||
  857. (s == SYS_DVBC_ANNEX_B) || (s == SYS_DVBT) || (s == SYS_DVBS) ||
  858. (s == SYS_ATSC))
  859. return 1;
  860. return 0;
  861. }
  862. /* Synchronise the legacy tuning parameters into the cache, so that demodulator
  863. * drivers can use a single set_frontend tuning function, regardless of whether
  864. * it's being used for the legacy or new API, reducing code and complexity.
  865. */
  866. void dtv_property_cache_sync(struct dvb_frontend *fe, struct dvb_frontend_parameters *p)
  867. {
  868. struct dtv_frontend_properties *c = &fe->dtv_property_cache;
  869. c->frequency = p->frequency;
  870. c->inversion = p->inversion;
  871. switch (fe->ops.info.type) {
  872. case FE_QPSK:
  873. c->modulation = QPSK; /* implied for DVB-S in legacy API */
  874. c->rolloff = ROLLOFF_35;/* implied for DVB-S */
  875. c->symbol_rate = p->u.qpsk.symbol_rate;
  876. c->fec_inner = p->u.qpsk.fec_inner;
  877. c->delivery_system = SYS_DVBS;
  878. break;
  879. case FE_QAM:
  880. c->symbol_rate = p->u.qam.symbol_rate;
  881. c->fec_inner = p->u.qam.fec_inner;
  882. c->modulation = p->u.qam.modulation;
  883. c->delivery_system = SYS_DVBC_ANNEX_AC;
  884. break;
  885. case FE_OFDM:
  886. if (p->u.ofdm.bandwidth == BANDWIDTH_6_MHZ)
  887. c->bandwidth_hz = 6000000;
  888. else if (p->u.ofdm.bandwidth == BANDWIDTH_7_MHZ)
  889. c->bandwidth_hz = 7000000;
  890. else if (p->u.ofdm.bandwidth == BANDWIDTH_8_MHZ)
  891. c->bandwidth_hz = 8000000;
  892. else
  893. /* Including BANDWIDTH_AUTO */
  894. c->bandwidth_hz = 0;
  895. c->code_rate_HP = p->u.ofdm.code_rate_HP;
  896. c->code_rate_LP = p->u.ofdm.code_rate_LP;
  897. c->modulation = p->u.ofdm.constellation;
  898. c->transmission_mode = p->u.ofdm.transmission_mode;
  899. c->guard_interval = p->u.ofdm.guard_interval;
  900. c->hierarchy = p->u.ofdm.hierarchy_information;
  901. c->delivery_system = SYS_DVBT;
  902. break;
  903. case FE_ATSC:
  904. c->modulation = p->u.vsb.modulation;
  905. if ((c->modulation == VSB_8) || (c->modulation == VSB_16))
  906. c->delivery_system = SYS_ATSC;
  907. else
  908. c->delivery_system = SYS_DVBC_ANNEX_B;
  909. break;
  910. }
  911. }
  912. /* Ensure the cached values are set correctly in the frontend
  913. * legacy tuning structures, for the advanced tuning API.
  914. */
  915. void dtv_property_legacy_params_sync(struct dvb_frontend *fe)
  916. {
  917. struct dtv_frontend_properties *c = &fe->dtv_property_cache;
  918. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  919. struct dvb_frontend_parameters *p = &fepriv->parameters;
  920. p->frequency = c->frequency;
  921. p->inversion = c->inversion;
  922. switch (fe->ops.info.type) {
  923. case FE_QPSK:
  924. dprintk("%s() Preparing QPSK req\n", __func__);
  925. p->u.qpsk.symbol_rate = c->symbol_rate;
  926. p->u.qpsk.fec_inner = c->fec_inner;
  927. c->delivery_system = SYS_DVBS;
  928. break;
  929. case FE_QAM:
  930. dprintk("%s() Preparing QAM req\n", __func__);
  931. p->u.qam.symbol_rate = c->symbol_rate;
  932. p->u.qam.fec_inner = c->fec_inner;
  933. p->u.qam.modulation = c->modulation;
  934. c->delivery_system = SYS_DVBC_ANNEX_AC;
  935. break;
  936. case FE_OFDM:
  937. dprintk("%s() Preparing OFDM req\n", __func__);
  938. if (c->bandwidth_hz == 6000000)
  939. p->u.ofdm.bandwidth = BANDWIDTH_6_MHZ;
  940. else if (c->bandwidth_hz == 7000000)
  941. p->u.ofdm.bandwidth = BANDWIDTH_7_MHZ;
  942. else if (c->bandwidth_hz == 8000000)
  943. p->u.ofdm.bandwidth = BANDWIDTH_8_MHZ;
  944. else
  945. p->u.ofdm.bandwidth = BANDWIDTH_AUTO;
  946. p->u.ofdm.code_rate_HP = c->code_rate_HP;
  947. p->u.ofdm.code_rate_LP = c->code_rate_LP;
  948. p->u.ofdm.constellation = c->modulation;
  949. p->u.ofdm.transmission_mode = c->transmission_mode;
  950. p->u.ofdm.guard_interval = c->guard_interval;
  951. p->u.ofdm.hierarchy_information = c->hierarchy;
  952. c->delivery_system = SYS_DVBT;
  953. break;
  954. case FE_ATSC:
  955. dprintk("%s() Preparing VSB req\n", __func__);
  956. p->u.vsb.modulation = c->modulation;
  957. if ((c->modulation == VSB_8) || (c->modulation == VSB_16))
  958. c->delivery_system = SYS_ATSC;
  959. else
  960. c->delivery_system = SYS_DVBC_ANNEX_B;
  961. break;
  962. }
  963. }
  964. /* Ensure the cached values are set correctly in the frontend
  965. * legacy tuning structures, for the legacy tuning API.
  966. */
  967. void dtv_property_adv_params_sync(struct dvb_frontend *fe)
  968. {
  969. struct dtv_frontend_properties *c = &fe->dtv_property_cache;
  970. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  971. struct dvb_frontend_parameters *p = &fepriv->parameters;
  972. p->frequency = c->frequency;
  973. p->inversion = c->inversion;
  974. switch(c->modulation) {
  975. case PSK_8:
  976. case APSK_16:
  977. case APSK_32:
  978. case QPSK:
  979. p->u.qpsk.symbol_rate = c->symbol_rate;
  980. p->u.qpsk.fec_inner = c->fec_inner;
  981. break;
  982. default:
  983. break;
  984. }
  985. if(c->delivery_system == SYS_ISDBT) {
  986. /* Fake out a generic DVB-T request so we pass validation in the ioctl */
  987. p->frequency = c->frequency;
  988. p->inversion = INVERSION_AUTO;
  989. p->u.ofdm.constellation = QAM_AUTO;
  990. p->u.ofdm.code_rate_HP = FEC_AUTO;
  991. p->u.ofdm.code_rate_LP = FEC_AUTO;
  992. p->u.ofdm.bandwidth = BANDWIDTH_AUTO;
  993. p->u.ofdm.transmission_mode = TRANSMISSION_MODE_AUTO;
  994. p->u.ofdm.guard_interval = GUARD_INTERVAL_AUTO;
  995. p->u.ofdm.hierarchy_information = HIERARCHY_AUTO;
  996. }
  997. }
  998. void dtv_property_cache_submit(struct dvb_frontend *fe)
  999. {
  1000. struct dtv_frontend_properties *c = &fe->dtv_property_cache;
  1001. /* For legacy delivery systems we don't need the delivery_system to
  1002. * be specified, but we populate the older structures from the cache
  1003. * so we can call set_frontend on older drivers.
  1004. */
  1005. if(is_legacy_delivery_system(c->delivery_system)) {
  1006. dprintk("%s() legacy, modulation = %d\n", __func__, c->modulation);
  1007. dtv_property_legacy_params_sync(fe);
  1008. } else {
  1009. dprintk("%s() adv, modulation = %d\n", __func__, c->modulation);
  1010. /* For advanced delivery systems / modulation types ...
  1011. * we seed the lecacy dvb_frontend_parameters structure
  1012. * so that the sanity checking code later in the IOCTL processing
  1013. * can validate our basic frequency ranges, symbolrates, modulation
  1014. * etc.
  1015. */
  1016. dtv_property_adv_params_sync(fe);
  1017. }
  1018. }
  1019. static int dvb_frontend_ioctl_legacy(struct inode *inode, struct file *file,
  1020. unsigned int cmd, void *parg);
  1021. static int dvb_frontend_ioctl_properties(struct inode *inode, struct file *file,
  1022. unsigned int cmd, void *parg);
  1023. int dtv_property_process_get(struct dvb_frontend *fe, struct dtv_property *tvp,
  1024. struct inode *inode, struct file *file)
  1025. {
  1026. int r = 0;
  1027. dtv_property_dump(tvp);
  1028. /* Allow the frontend to validate incoming properties */
  1029. if (fe->ops.get_property)
  1030. r = fe->ops.get_property(fe, tvp);
  1031. if (r < 0)
  1032. return r;
  1033. switch(tvp->cmd) {
  1034. case DTV_FREQUENCY:
  1035. tvp->u.data = fe->dtv_property_cache.frequency;
  1036. break;
  1037. case DTV_MODULATION:
  1038. tvp->u.data = fe->dtv_property_cache.modulation;
  1039. break;
  1040. case DTV_BANDWIDTH_HZ:
  1041. tvp->u.data = fe->dtv_property_cache.bandwidth_hz;
  1042. break;
  1043. case DTV_INVERSION:
  1044. tvp->u.data = fe->dtv_property_cache.inversion;
  1045. break;
  1046. case DTV_SYMBOL_RATE:
  1047. tvp->u.data = fe->dtv_property_cache.symbol_rate;
  1048. break;
  1049. case DTV_INNER_FEC:
  1050. tvp->u.data = fe->dtv_property_cache.fec_inner;
  1051. break;
  1052. case DTV_PILOT:
  1053. tvp->u.data = fe->dtv_property_cache.pilot;
  1054. break;
  1055. case DTV_ROLLOFF:
  1056. tvp->u.data = fe->dtv_property_cache.rolloff;
  1057. break;
  1058. case DTV_DELIVERY_SYSTEM:
  1059. tvp->u.data = fe->dtv_property_cache.delivery_system;
  1060. break;
  1061. case DTV_VOLTAGE:
  1062. tvp->u.data = fe->dtv_property_cache.voltage;
  1063. break;
  1064. case DTV_TONE:
  1065. tvp->u.data = fe->dtv_property_cache.sectone;
  1066. break;
  1067. case DTV_API_VERSION:
  1068. tvp->u.data = (DVB_API_VERSION << 8) | DVB_API_VERSION_MINOR;
  1069. break;
  1070. case DTV_CODE_RATE_HP:
  1071. tvp->u.data = fe->dtv_property_cache.code_rate_HP;
  1072. break;
  1073. case DTV_CODE_RATE_LP:
  1074. tvp->u.data = fe->dtv_property_cache.code_rate_LP;
  1075. break;
  1076. case DTV_GUARD_INTERVAL:
  1077. tvp->u.data = fe->dtv_property_cache.guard_interval;
  1078. break;
  1079. case DTV_TRANSMISSION_MODE:
  1080. tvp->u.data = fe->dtv_property_cache.transmission_mode;
  1081. break;
  1082. case DTV_HIERARCHY:
  1083. tvp->u.data = fe->dtv_property_cache.hierarchy;
  1084. break;
  1085. default:
  1086. r = -1;
  1087. }
  1088. return r;
  1089. }
  1090. int dtv_property_process_set(struct dvb_frontend *fe, struct dtv_property *tvp,
  1091. struct inode *inode, struct file *file)
  1092. {
  1093. int r = 0;
  1094. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1095. dtv_property_dump(tvp);
  1096. /* Allow the frontend to validate incoming properties */
  1097. if (fe->ops.set_property)
  1098. r = fe->ops.set_property(fe, tvp);
  1099. if (r < 0)
  1100. return r;
  1101. switch(tvp->cmd) {
  1102. case DTV_CLEAR:
  1103. /* Reset a cache of data specific to the frontend here. This does
  1104. * not effect hardware.
  1105. */
  1106. dprintk("%s() Flushing property cache\n", __func__);
  1107. memset(&fe->dtv_property_cache, 0, sizeof(struct dtv_frontend_properties));
  1108. fe->dtv_property_cache.state = tvp->cmd;
  1109. fe->dtv_property_cache.delivery_system = SYS_UNDEFINED;
  1110. break;
  1111. case DTV_TUNE:
  1112. /* interpret the cache of data, build either a traditional frontend
  1113. * tunerequest so we can pass validation in the FE_SET_FRONTEND
  1114. * ioctl.
  1115. */
  1116. fe->dtv_property_cache.state = tvp->cmd;
  1117. dprintk("%s() Finalised property cache\n", __func__);
  1118. dtv_property_cache_submit(fe);
  1119. /* Request the search algorithm to search */
  1120. fepriv->algo_status |= DVBFE_ALGO_SEARCH_AGAIN;
  1121. r |= dvb_frontend_ioctl_legacy(inode, file, FE_SET_FRONTEND,
  1122. &fepriv->parameters);
  1123. break;
  1124. case DTV_FREQUENCY:
  1125. fe->dtv_property_cache.frequency = tvp->u.data;
  1126. break;
  1127. case DTV_MODULATION:
  1128. fe->dtv_property_cache.modulation = tvp->u.data;
  1129. break;
  1130. case DTV_BANDWIDTH_HZ:
  1131. fe->dtv_property_cache.bandwidth_hz = tvp->u.data;
  1132. break;
  1133. case DTV_INVERSION:
  1134. fe->dtv_property_cache.inversion = tvp->u.data;
  1135. break;
  1136. case DTV_SYMBOL_RATE:
  1137. fe->dtv_property_cache.symbol_rate = tvp->u.data;
  1138. break;
  1139. case DTV_INNER_FEC:
  1140. fe->dtv_property_cache.fec_inner = tvp->u.data;
  1141. break;
  1142. case DTV_PILOT:
  1143. fe->dtv_property_cache.pilot = tvp->u.data;
  1144. break;
  1145. case DTV_ROLLOFF:
  1146. fe->dtv_property_cache.rolloff = tvp->u.data;
  1147. break;
  1148. case DTV_DELIVERY_SYSTEM:
  1149. fe->dtv_property_cache.delivery_system = tvp->u.data;
  1150. break;
  1151. case DTV_VOLTAGE:
  1152. fe->dtv_property_cache.voltage = tvp->u.data;
  1153. r = dvb_frontend_ioctl_legacy(inode, file, FE_SET_VOLTAGE,
  1154. (void *)fe->dtv_property_cache.voltage);
  1155. break;
  1156. case DTV_TONE:
  1157. fe->dtv_property_cache.sectone = tvp->u.data;
  1158. r = dvb_frontend_ioctl_legacy(inode, file, FE_SET_TONE,
  1159. (void *)fe->dtv_property_cache.sectone);
  1160. break;
  1161. case DTV_CODE_RATE_HP:
  1162. fe->dtv_property_cache.code_rate_HP = tvp->u.data;
  1163. break;
  1164. case DTV_CODE_RATE_LP:
  1165. fe->dtv_property_cache.code_rate_LP = tvp->u.data;
  1166. break;
  1167. case DTV_GUARD_INTERVAL:
  1168. fe->dtv_property_cache.guard_interval = tvp->u.data;
  1169. break;
  1170. case DTV_TRANSMISSION_MODE:
  1171. fe->dtv_property_cache.transmission_mode = tvp->u.data;
  1172. break;
  1173. case DTV_HIERARCHY:
  1174. fe->dtv_property_cache.hierarchy = tvp->u.data;
  1175. break;
  1176. default:
  1177. r = -1;
  1178. }
  1179. return r;
  1180. }
  1181. static int dvb_frontend_ioctl(struct inode *inode, struct file *file,
  1182. unsigned int cmd, void *parg)
  1183. {
  1184. struct dvb_device *dvbdev = file->private_data;
  1185. struct dvb_frontend *fe = dvbdev->priv;
  1186. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1187. int err = -EOPNOTSUPP;
  1188. dprintk ("%s\n", __func__);
  1189. if (fepriv->exit)
  1190. return -ENODEV;
  1191. if ((file->f_flags & O_ACCMODE) == O_RDONLY &&
  1192. (_IOC_DIR(cmd) != _IOC_READ || cmd == FE_GET_EVENT ||
  1193. cmd == FE_DISEQC_RECV_SLAVE_REPLY))
  1194. return -EPERM;
  1195. if (down_interruptible (&fepriv->sem))
  1196. return -ERESTARTSYS;
  1197. if ((cmd == FE_SET_PROPERTY) || (cmd == FE_GET_PROPERTY))
  1198. err = dvb_frontend_ioctl_properties(inode, file, cmd, parg);
  1199. else {
  1200. fe->dtv_property_cache.state = DTV_UNDEFINED;
  1201. err = dvb_frontend_ioctl_legacy(inode, file, cmd, parg);
  1202. }
  1203. up(&fepriv->sem);
  1204. return err;
  1205. }
  1206. static int dvb_frontend_ioctl_properties(struct inode *inode, struct file *file,
  1207. unsigned int cmd, void *parg)
  1208. {
  1209. struct dvb_device *dvbdev = file->private_data;
  1210. struct dvb_frontend *fe = dvbdev->priv;
  1211. int err = 0;
  1212. struct dtv_properties *tvps = NULL;
  1213. struct dtv_property *tvp = NULL;
  1214. int i;
  1215. dprintk("%s\n", __func__);
  1216. if(cmd == FE_SET_PROPERTY) {
  1217. tvps = (struct dtv_properties __user *)parg;
  1218. dprintk("%s() properties.num = %d\n", __func__, tvps->num);
  1219. dprintk("%s() properties.props = %p\n", __func__, tvps->props);
  1220. /* Put an arbitrary limit on the number of messages that can
  1221. * be sent at once */
  1222. if ((tvps->num == 0) || (tvps->num > DTV_IOCTL_MAX_MSGS))
  1223. return -EINVAL;
  1224. tvp = (struct dtv_property *) kmalloc(tvps->num *
  1225. sizeof(struct dtv_property), GFP_KERNEL);
  1226. if (!tvp) {
  1227. err = -ENOMEM;
  1228. goto out;
  1229. }
  1230. if (copy_from_user(tvp, tvps->props, tvps->num * sizeof(struct dtv_property))) {
  1231. err = -EFAULT;
  1232. goto out;
  1233. }
  1234. for (i = 0; i < tvps->num; i++) {
  1235. (tvp + i)->result = dtv_property_process_set(fe, tvp + i, inode, file);
  1236. err |= (tvp + i)->result;
  1237. }
  1238. if(fe->dtv_property_cache.state == DTV_TUNE)
  1239. dprintk("%s() Property cache is full, tuning\n", __func__);
  1240. } else
  1241. if(cmd == FE_GET_PROPERTY) {
  1242. tvps = (struct dtv_properties __user *)parg;
  1243. dprintk("%s() properties.num = %d\n", __func__, tvps->num);
  1244. dprintk("%s() properties.props = %p\n", __func__, tvps->props);
  1245. /* Put an arbitrary limit on the number of messages that can
  1246. * be sent at once */
  1247. if ((tvps->num == 0) || (tvps->num > DTV_IOCTL_MAX_MSGS))
  1248. return -EINVAL;
  1249. tvp = (struct dtv_property *) kmalloc(tvps->num *
  1250. sizeof(struct dtv_property), GFP_KERNEL);
  1251. if (!tvp) {
  1252. err = -ENOMEM;
  1253. goto out;
  1254. }
  1255. if (copy_from_user(tvp, tvps->props, tvps->num * sizeof(struct dtv_property))) {
  1256. err = -EFAULT;
  1257. goto out;
  1258. }
  1259. for (i = 0; i < tvps->num; i++) {
  1260. (tvp + i)->result = dtv_property_process_get(fe, tvp + i, inode, file);
  1261. err |= (tvp + i)->result;
  1262. }
  1263. if (copy_to_user(tvps->props, tvp, tvps->num * sizeof(struct dtv_property))) {
  1264. err = -EFAULT;
  1265. goto out;
  1266. }
  1267. } else
  1268. err = -EOPNOTSUPP;
  1269. out:
  1270. kfree(tvp);
  1271. return err;
  1272. }
  1273. static int dvb_frontend_ioctl_legacy(struct inode *inode, struct file *file,
  1274. unsigned int cmd, void *parg)
  1275. {
  1276. struct dvb_device *dvbdev = file->private_data;
  1277. struct dvb_frontend *fe = dvbdev->priv;
  1278. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1279. int err = -EOPNOTSUPP;
  1280. switch (cmd) {
  1281. case FE_GET_INFO: {
  1282. struct dvb_frontend_info* info = parg;
  1283. memcpy(info, &fe->ops.info, sizeof(struct dvb_frontend_info));
  1284. dvb_frontend_get_frequeny_limits(fe, &info->frequency_min, &info->frequency_max);
  1285. /* Force the CAN_INVERSION_AUTO bit on. If the frontend doesn't
  1286. * do it, it is done for it. */
  1287. info->caps |= FE_CAN_INVERSION_AUTO;
  1288. err = 0;
  1289. break;
  1290. }
  1291. case FE_READ_STATUS: {
  1292. fe_status_t* status = parg;
  1293. /* if retune was requested but hasn't occured yet, prevent
  1294. * that user get signal state from previous tuning */
  1295. if(fepriv->state == FESTATE_RETUNE) {
  1296. err=0;
  1297. *status = 0;
  1298. break;
  1299. }
  1300. if (fe->ops.read_status)
  1301. err = fe->ops.read_status(fe, status);
  1302. break;
  1303. }
  1304. case FE_READ_BER:
  1305. if (fe->ops.read_ber)
  1306. err = fe->ops.read_ber(fe, (__u32*) parg);
  1307. break;
  1308. case FE_READ_SIGNAL_STRENGTH:
  1309. if (fe->ops.read_signal_strength)
  1310. err = fe->ops.read_signal_strength(fe, (__u16*) parg);
  1311. break;
  1312. case FE_READ_SNR:
  1313. if (fe->ops.read_snr)
  1314. err = fe->ops.read_snr(fe, (__u16*) parg);
  1315. break;
  1316. case FE_READ_UNCORRECTED_BLOCKS:
  1317. if (fe->ops.read_ucblocks)
  1318. err = fe->ops.read_ucblocks(fe, (__u32*) parg);
  1319. break;
  1320. case FE_DISEQC_RESET_OVERLOAD:
  1321. if (fe->ops.diseqc_reset_overload) {
  1322. err = fe->ops.diseqc_reset_overload(fe);
  1323. fepriv->state = FESTATE_DISEQC;
  1324. fepriv->status = 0;
  1325. }
  1326. break;
  1327. case FE_DISEQC_SEND_MASTER_CMD:
  1328. if (fe->ops.diseqc_send_master_cmd) {
  1329. err = fe->ops.diseqc_send_master_cmd(fe, (struct dvb_diseqc_master_cmd*) parg);
  1330. fepriv->state = FESTATE_DISEQC;
  1331. fepriv->status = 0;
  1332. }
  1333. break;
  1334. case FE_DISEQC_SEND_BURST:
  1335. if (fe->ops.diseqc_send_burst) {
  1336. err = fe->ops.diseqc_send_burst(fe, (fe_sec_mini_cmd_t) parg);
  1337. fepriv->state = FESTATE_DISEQC;
  1338. fepriv->status = 0;
  1339. }
  1340. break;
  1341. case FE_SET_TONE:
  1342. if (fe->ops.set_tone) {
  1343. err = fe->ops.set_tone(fe, (fe_sec_tone_mode_t) parg);
  1344. fepriv->tone = (fe_sec_tone_mode_t) parg;
  1345. fepriv->state = FESTATE_DISEQC;
  1346. fepriv->status = 0;
  1347. }
  1348. break;
  1349. case FE_SET_VOLTAGE:
  1350. if (fe->ops.set_voltage) {
  1351. err = fe->ops.set_voltage(fe, (fe_sec_voltage_t) parg);
  1352. fepriv->voltage = (fe_sec_voltage_t) parg;
  1353. fepriv->state = FESTATE_DISEQC;
  1354. fepriv->status = 0;
  1355. }
  1356. break;
  1357. case FE_DISHNETWORK_SEND_LEGACY_CMD:
  1358. if (fe->ops.dishnetwork_send_legacy_command) {
  1359. err = fe->ops.dishnetwork_send_legacy_command(fe, (unsigned long) parg);
  1360. fepriv->state = FESTATE_DISEQC;
  1361. fepriv->status = 0;
  1362. } else if (fe->ops.set_voltage) {
  1363. /*
  1364. * NOTE: This is a fallback condition. Some frontends
  1365. * (stv0299 for instance) take longer than 8msec to
  1366. * respond to a set_voltage command. Those switches
  1367. * need custom routines to switch properly. For all
  1368. * other frontends, the following shoule work ok.
  1369. * Dish network legacy switches (as used by Dish500)
  1370. * are controlled by sending 9-bit command words
  1371. * spaced 8msec apart.
  1372. * the actual command word is switch/port dependant
  1373. * so it is up to the userspace application to send
  1374. * the right command.
  1375. * The command must always start with a '0' after
  1376. * initialization, so parg is 8 bits and does not
  1377. * include the initialization or start bit
  1378. */
  1379. unsigned long swcmd = ((unsigned long) parg) << 1;
  1380. struct timeval nexttime;
  1381. struct timeval tv[10];
  1382. int i;
  1383. u8 last = 1;
  1384. if (dvb_frontend_debug)
  1385. printk("%s switch command: 0x%04lx\n", __func__, swcmd);
  1386. do_gettimeofday(&nexttime);
  1387. if (dvb_frontend_debug)
  1388. memcpy(&tv[0], &nexttime, sizeof(struct timeval));
  1389. /* before sending a command, initialize by sending
  1390. * a 32ms 18V to the switch
  1391. */
  1392. fe->ops.set_voltage(fe, SEC_VOLTAGE_18);
  1393. dvb_frontend_sleep_until(&nexttime, 32000);
  1394. for (i = 0; i < 9; i++) {
  1395. if (dvb_frontend_debug)
  1396. do_gettimeofday(&tv[i + 1]);
  1397. if ((swcmd & 0x01) != last) {
  1398. /* set voltage to (last ? 13V : 18V) */
  1399. fe->ops.set_voltage(fe, (last) ? SEC_VOLTAGE_13 : SEC_VOLTAGE_18);
  1400. last = (last) ? 0 : 1;
  1401. }
  1402. swcmd = swcmd >> 1;
  1403. if (i != 8)
  1404. dvb_frontend_sleep_until(&nexttime, 8000);
  1405. }
  1406. if (dvb_frontend_debug) {
  1407. printk("%s(%d): switch delay (should be 32k followed by all 8k\n",
  1408. __func__, fe->dvb->num);
  1409. for (i = 1; i < 10; i++)
  1410. printk("%d: %d\n", i, timeval_usec_diff(tv[i-1] , tv[i]));
  1411. }
  1412. err = 0;
  1413. fepriv->state = FESTATE_DISEQC;
  1414. fepriv->status = 0;
  1415. }
  1416. break;
  1417. case FE_DISEQC_RECV_SLAVE_REPLY:
  1418. if (fe->ops.diseqc_recv_slave_reply)
  1419. err = fe->ops.diseqc_recv_slave_reply(fe, (struct dvb_diseqc_slave_reply*) parg);
  1420. break;
  1421. case FE_ENABLE_HIGH_LNB_VOLTAGE:
  1422. if (fe->ops.enable_high_lnb_voltage)
  1423. err = fe->ops.enable_high_lnb_voltage(fe, (long) parg);
  1424. break;
  1425. case FE_SET_FRONTEND: {
  1426. struct dvb_frontend_tune_settings fetunesettings;
  1427. if(fe->dtv_property_cache.state == DTV_TUNE) {
  1428. if (dvb_frontend_check_parameters(fe, &fepriv->parameters) < 0) {
  1429. err = -EINVAL;
  1430. break;
  1431. }
  1432. } else {
  1433. if (dvb_frontend_check_parameters(fe, parg) < 0) {
  1434. err = -EINVAL;
  1435. break;
  1436. }
  1437. memcpy (&fepriv->parameters, parg,
  1438. sizeof (struct dvb_frontend_parameters));
  1439. dtv_property_cache_sync(fe, &fepriv->parameters);
  1440. }
  1441. memset(&fetunesettings, 0, sizeof(struct dvb_frontend_tune_settings));
  1442. memcpy(&fetunesettings.parameters, parg,
  1443. sizeof (struct dvb_frontend_parameters));
  1444. /* force auto frequency inversion if requested */
  1445. if (dvb_force_auto_inversion) {
  1446. fepriv->parameters.inversion = INVERSION_AUTO;
  1447. fetunesettings.parameters.inversion = INVERSION_AUTO;
  1448. }
  1449. if (fe->ops.info.type == FE_OFDM) {
  1450. /* without hierarchical coding code_rate_LP is irrelevant,
  1451. * so we tolerate the otherwise invalid FEC_NONE setting */
  1452. if (fepriv->parameters.u.ofdm.hierarchy_information == HIERARCHY_NONE &&
  1453. fepriv->parameters.u.ofdm.code_rate_LP == FEC_NONE)
  1454. fepriv->parameters.u.ofdm.code_rate_LP = FEC_AUTO;
  1455. }
  1456. /* get frontend-specific tuning settings */
  1457. if (fe->ops.get_tune_settings && (fe->ops.get_tune_settings(fe, &fetunesettings) == 0)) {
  1458. fepriv->min_delay = (fetunesettings.min_delay_ms * HZ) / 1000;
  1459. fepriv->max_drift = fetunesettings.max_drift;
  1460. fepriv->step_size = fetunesettings.step_size;
  1461. } else {
  1462. /* default values */
  1463. switch(fe->ops.info.type) {
  1464. case FE_QPSK:
  1465. fepriv->min_delay = HZ/20;
  1466. fepriv->step_size = fepriv->parameters.u.qpsk.symbol_rate / 16000;
  1467. fepriv->max_drift = fepriv->parameters.u.qpsk.symbol_rate / 2000;
  1468. break;
  1469. case FE_QAM:
  1470. fepriv->min_delay = HZ/20;
  1471. fepriv->step_size = 0; /* no zigzag */
  1472. fepriv->max_drift = 0;
  1473. break;
  1474. case FE_OFDM:
  1475. fepriv->min_delay = HZ/20;
  1476. fepriv->step_size = fe->ops.info.frequency_stepsize * 2;
  1477. fepriv->max_drift = (fe->ops.info.frequency_stepsize * 2) + 1;
  1478. break;
  1479. case FE_ATSC:
  1480. fepriv->min_delay = HZ/20;
  1481. fepriv->step_size = 0;
  1482. fepriv->max_drift = 0;
  1483. break;
  1484. }
  1485. }
  1486. if (dvb_override_tune_delay > 0)
  1487. fepriv->min_delay = (dvb_override_tune_delay * HZ) / 1000;
  1488. fepriv->state = FESTATE_RETUNE;
  1489. dvb_frontend_wakeup(fe);
  1490. dvb_frontend_add_event(fe, 0);
  1491. fepriv->status = 0;
  1492. err = 0;
  1493. break;
  1494. }
  1495. case FE_GET_EVENT:
  1496. err = dvb_frontend_get_event (fe, parg, file->f_flags);
  1497. break;
  1498. case FE_GET_FRONTEND:
  1499. if (fe->ops.get_frontend) {
  1500. memcpy (parg, &fepriv->parameters, sizeof (struct dvb_frontend_parameters));
  1501. err = fe->ops.get_frontend(fe, (struct dvb_frontend_parameters*) parg);
  1502. }
  1503. break;
  1504. case FE_SET_FRONTEND_TUNE_MODE:
  1505. fepriv->tune_mode_flags = (unsigned long) parg;
  1506. err = 0;
  1507. break;
  1508. };
  1509. return err;
  1510. }
  1511. static unsigned int dvb_frontend_poll(struct file *file, struct poll_table_struct *wait)
  1512. {
  1513. struct dvb_device *dvbdev = file->private_data;
  1514. struct dvb_frontend *fe = dvbdev->priv;
  1515. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1516. dprintk ("%s\n", __func__);
  1517. poll_wait (file, &fepriv->events.wait_queue, wait);
  1518. if (fepriv->events.eventw != fepriv->events.eventr)
  1519. return (POLLIN | POLLRDNORM | POLLPRI);
  1520. return 0;
  1521. }
  1522. static int dvb_frontend_open(struct inode *inode, struct file *file)
  1523. {
  1524. struct dvb_device *dvbdev = file->private_data;
  1525. struct dvb_frontend *fe = dvbdev->priv;
  1526. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1527. struct dvb_adapter *adapter = fe->dvb;
  1528. int ret;
  1529. dprintk ("%s\n", __func__);
  1530. if (adapter->mfe_shared) {
  1531. mutex_lock (&adapter->mfe_lock);
  1532. if (adapter->mfe_dvbdev == NULL)
  1533. adapter->mfe_dvbdev = dvbdev;
  1534. else if (adapter->mfe_dvbdev != dvbdev) {
  1535. struct dvb_device
  1536. *mfedev = adapter->mfe_dvbdev;
  1537. struct dvb_frontend
  1538. *mfe = mfedev->priv;
  1539. struct dvb_frontend_private
  1540. *mfepriv = mfe->frontend_priv;
  1541. int mferetry = (dvb_mfe_wait_time << 1);
  1542. mutex_unlock (&adapter->mfe_lock);
  1543. while (mferetry-- && (mfedev->users != -1 ||
  1544. mfepriv->thread != NULL)) {
  1545. if(msleep_interruptible(500)) {
  1546. if(signal_pending(current))
  1547. return -EINTR;
  1548. }
  1549. }
  1550. mutex_lock (&adapter->mfe_lock);
  1551. if(adapter->mfe_dvbdev != dvbdev) {
  1552. mfedev = adapter->mfe_dvbdev;
  1553. mfe = mfedev->priv;
  1554. mfepriv = mfe->frontend_priv;
  1555. if (mfedev->users != -1 ||
  1556. mfepriv->thread != NULL) {
  1557. mutex_unlock (&adapter->mfe_lock);
  1558. return -EBUSY;
  1559. }
  1560. adapter->mfe_dvbdev = dvbdev;
  1561. }
  1562. }
  1563. }
  1564. if (dvbdev->users == -1 && fe->ops.ts_bus_ctrl) {
  1565. if ((ret = fe->ops.ts_bus_ctrl(fe, 1)) < 0)
  1566. goto err0;
  1567. }
  1568. if ((ret = dvb_generic_open (inode, file)) < 0)
  1569. goto err1;
  1570. if ((file->f_flags & O_ACCMODE) != O_RDONLY) {
  1571. /* normal tune mode when opened R/W */
  1572. fepriv->tune_mode_flags &= ~FE_TUNE_MODE_ONESHOT;
  1573. fepriv->tone = -1;
  1574. fepriv->voltage = -1;
  1575. ret = dvb_frontend_start (fe);
  1576. if (ret)
  1577. goto err2;
  1578. /* empty event queue */
  1579. fepriv->events.eventr = fepriv->events.eventw = 0;
  1580. }
  1581. if (adapter->mfe_shared)
  1582. mutex_unlock (&adapter->mfe_lock);
  1583. return ret;
  1584. err2:
  1585. dvb_generic_release(inode, file);
  1586. err1:
  1587. if (dvbdev->users == -1 && fe->ops.ts_bus_ctrl)
  1588. fe->ops.ts_bus_ctrl(fe, 0);
  1589. err0:
  1590. if (adapter->mfe_shared)
  1591. mutex_unlock (&adapter->mfe_lock);
  1592. return ret;
  1593. }
  1594. static int dvb_frontend_release(struct inode *inode, struct file *file)
  1595. {
  1596. struct dvb_device *dvbdev = file->private_data;
  1597. struct dvb_frontend *fe = dvbdev->priv;
  1598. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1599. int ret;
  1600. dprintk ("%s\n", __func__);
  1601. if ((file->f_flags & O_ACCMODE) != O_RDONLY)
  1602. fepriv->release_jiffies = jiffies;
  1603. ret = dvb_generic_release (inode, file);
  1604. if (dvbdev->users == -1) {
  1605. if (fepriv->exit == 1) {
  1606. fops_put(file->f_op);
  1607. file->f_op = NULL;
  1608. wake_up(&dvbdev->wait_queue);
  1609. }
  1610. if (fe->ops.ts_bus_ctrl)
  1611. fe->ops.ts_bus_ctrl(fe, 0);
  1612. }
  1613. return ret;
  1614. }
  1615. static struct file_operations dvb_frontend_fops = {
  1616. .owner = THIS_MODULE,
  1617. .ioctl = dvb_generic_ioctl,
  1618. .poll = dvb_frontend_poll,
  1619. .open = dvb_frontend_open,
  1620. .release = dvb_frontend_release
  1621. };
  1622. int dvb_register_frontend(struct dvb_adapter* dvb,
  1623. struct dvb_frontend* fe)
  1624. {
  1625. struct dvb_frontend_private *fepriv;
  1626. static const struct dvb_device dvbdev_template = {
  1627. .users = ~0,
  1628. .writers = 1,
  1629. .readers = (~0)-1,
  1630. .fops = &dvb_frontend_fops,
  1631. .kernel_ioctl = dvb_frontend_ioctl
  1632. };
  1633. dprintk ("%s\n", __func__);
  1634. if (mutex_lock_interruptible(&frontend_mutex))
  1635. return -ERESTARTSYS;
  1636. fe->frontend_priv = kzalloc(sizeof(struct dvb_frontend_private), GFP_KERNEL);
  1637. if (fe->frontend_priv == NULL) {
  1638. mutex_unlock(&frontend_mutex);
  1639. return -ENOMEM;
  1640. }
  1641. fepriv = fe->frontend_priv;
  1642. init_MUTEX (&fepriv->sem);
  1643. init_waitqueue_head (&fepriv->wait_queue);
  1644. init_waitqueue_head (&fepriv->events.wait_queue);
  1645. mutex_init(&fepriv->events.mtx);
  1646. fe->dvb = dvb;
  1647. fepriv->inversion = INVERSION_OFF;
  1648. printk ("DVB: registering adapter %i frontend %i (%s)...\n",
  1649. fe->dvb->num,
  1650. fe->id,
  1651. fe->ops.info.name);
  1652. dvb_register_device (fe->dvb, &fepriv->dvbdev, &dvbdev_template,
  1653. fe, DVB_DEVICE_FRONTEND);
  1654. mutex_unlock(&frontend_mutex);
  1655. return 0;
  1656. }
  1657. EXPORT_SYMBOL(dvb_register_frontend);
  1658. int dvb_unregister_frontend(struct dvb_frontend* fe)
  1659. {
  1660. struct dvb_frontend_private *fepriv = fe->frontend_priv;
  1661. dprintk ("%s\n", __func__);
  1662. mutex_lock(&frontend_mutex);
  1663. dvb_frontend_stop (fe);
  1664. mutex_unlock(&frontend_mutex);
  1665. if (fepriv->dvbdev->users < -1)
  1666. wait_event(fepriv->dvbdev->wait_queue,
  1667. fepriv->dvbdev->users==-1);
  1668. mutex_lock(&frontend_mutex);
  1669. dvb_unregister_device (fepriv->dvbdev);
  1670. /* fe is invalid now */
  1671. kfree(fepriv);
  1672. mutex_unlock(&frontend_mutex);
  1673. return 0;
  1674. }
  1675. EXPORT_SYMBOL(dvb_unregister_frontend);
  1676. #ifdef CONFIG_MEDIA_ATTACH
  1677. void dvb_frontend_detach(struct dvb_frontend* fe)
  1678. {
  1679. void *ptr;
  1680. if (fe->ops.release_sec) {
  1681. fe->ops.release_sec(fe);
  1682. symbol_put_addr(fe->ops.release_sec);
  1683. }
  1684. if (fe->ops.tuner_ops.release) {
  1685. fe->ops.tuner_ops.release(fe);
  1686. symbol_put_addr(fe->ops.tuner_ops.release);
  1687. }
  1688. if (fe->ops.analog_ops.release) {
  1689. fe->ops.analog_ops.release(fe);
  1690. symbol_put_addr(fe->ops.analog_ops.release);
  1691. }
  1692. ptr = (void*)fe->ops.release;
  1693. if (ptr) {
  1694. fe->ops.release(fe);
  1695. symbol_put_addr(ptr);
  1696. }
  1697. }
  1698. #else
  1699. void dvb_frontend_detach(struct dvb_frontend* fe)
  1700. {
  1701. if (fe->ops.release_sec)
  1702. fe->ops.release_sec(fe);
  1703. if (fe->ops.tuner_ops.release)
  1704. fe->ops.tuner_ops.release(fe);
  1705. if (fe->ops.analog_ops.release)
  1706. fe->ops.analog_ops.release(fe);
  1707. if (fe->ops.release)
  1708. fe->ops.release(fe);
  1709. }
  1710. #endif
  1711. EXPORT_SYMBOL(dvb_frontend_detach);