cinergyT2.c 29 KB

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  1. /*
  2. * TerraTec Cinergy T²/qanu USB2 DVB-T adapter.
  3. *
  4. * Copyright (C) 2004 Daniel Mack <daniel@qanu.de> and
  5. * Holger Waechtler <holger@qanu.de>
  6. *
  7. * Protocol Spec published on http://qanu.de/specs/terratec_cinergyT2.pdf
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation; either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  22. *
  23. */
  24. #include <linux/init.h>
  25. #include <linux/module.h>
  26. #include <linux/slab.h>
  27. #include <linux/usb.h>
  28. #include <linux/input.h>
  29. #include <linux/dvb/frontend.h>
  30. #include <linux/mutex.h>
  31. #include <linux/mm.h>
  32. #include <asm/io.h>
  33. #include "dmxdev.h"
  34. #include "dvb_demux.h"
  35. #include "dvb_net.h"
  36. #ifdef CONFIG_DVB_CINERGYT2_TUNING
  37. #define STREAM_URB_COUNT (CONFIG_DVB_CINERGYT2_STREAM_URB_COUNT)
  38. #define STREAM_BUF_SIZE (CONFIG_DVB_CINERGYT2_STREAM_BUF_SIZE)
  39. #define QUERY_INTERVAL (CONFIG_DVB_CINERGYT2_QUERY_INTERVAL)
  40. #ifdef CONFIG_DVB_CINERGYT2_ENABLE_RC_INPUT_DEVICE
  41. #define RC_QUERY_INTERVAL (CONFIG_DVB_CINERGYT2_RC_QUERY_INTERVAL)
  42. #define ENABLE_RC (1)
  43. #endif
  44. #else
  45. #define STREAM_URB_COUNT (32)
  46. #define STREAM_BUF_SIZE (512) /* bytes */
  47. #define ENABLE_RC (1)
  48. #define RC_QUERY_INTERVAL (50) /* milliseconds */
  49. #define QUERY_INTERVAL (333) /* milliseconds */
  50. #endif
  51. #define DRIVER_NAME "TerraTec/qanu USB2.0 Highspeed DVB-T Receiver"
  52. static int debug;
  53. module_param_named(debug, debug, int, 0644);
  54. MODULE_PARM_DESC(debug, "Turn on/off debugging (default:off).");
  55. DVB_DEFINE_MOD_OPT_ADAPTER_NR(adapter_nr);
  56. #define dprintk(level, args...) \
  57. do { \
  58. if ((debug & level)) { \
  59. printk("%s: %s(): ", KBUILD_MODNAME, \
  60. __func__); \
  61. printk(args); } \
  62. } while (0)
  63. enum cinergyt2_ep1_cmd {
  64. CINERGYT2_EP1_PID_TABLE_RESET = 0x01,
  65. CINERGYT2_EP1_PID_SETUP = 0x02,
  66. CINERGYT2_EP1_CONTROL_STREAM_TRANSFER = 0x03,
  67. CINERGYT2_EP1_SET_TUNER_PARAMETERS = 0x04,
  68. CINERGYT2_EP1_GET_TUNER_STATUS = 0x05,
  69. CINERGYT2_EP1_START_SCAN = 0x06,
  70. CINERGYT2_EP1_CONTINUE_SCAN = 0x07,
  71. CINERGYT2_EP1_GET_RC_EVENTS = 0x08,
  72. CINERGYT2_EP1_SLEEP_MODE = 0x09
  73. };
  74. struct dvbt_set_parameters_msg {
  75. uint8_t cmd;
  76. uint32_t freq;
  77. uint8_t bandwidth;
  78. uint16_t tps;
  79. uint8_t flags;
  80. } __attribute__((packed));
  81. struct dvbt_get_status_msg {
  82. uint32_t freq;
  83. uint8_t bandwidth;
  84. uint16_t tps;
  85. uint8_t flags;
  86. uint16_t gain;
  87. uint8_t snr;
  88. uint32_t viterbi_error_rate;
  89. uint32_t rs_error_rate;
  90. uint32_t uncorrected_block_count;
  91. uint8_t lock_bits;
  92. uint8_t prev_lock_bits;
  93. } __attribute__((packed));
  94. static struct dvb_frontend_info cinergyt2_fe_info = {
  95. .name = DRIVER_NAME,
  96. .type = FE_OFDM,
  97. .frequency_min = 174000000,
  98. .frequency_max = 862000000,
  99. .frequency_stepsize = 166667,
  100. .caps = FE_CAN_INVERSION_AUTO | FE_CAN_FEC_1_2 | FE_CAN_FEC_2_3 |
  101. FE_CAN_FEC_3_4 | FE_CAN_FEC_5_6 | FE_CAN_FEC_7_8 |
  102. FE_CAN_FEC_AUTO |
  103. FE_CAN_QPSK | FE_CAN_QAM_16 | FE_CAN_QAM_64 | FE_CAN_QAM_AUTO |
  104. FE_CAN_TRANSMISSION_MODE_AUTO | FE_CAN_GUARD_INTERVAL_AUTO |
  105. FE_CAN_HIERARCHY_AUTO | FE_CAN_RECOVER | FE_CAN_MUTE_TS
  106. };
  107. struct cinergyt2 {
  108. struct dvb_demux demux;
  109. struct usb_device *udev;
  110. struct mutex sem;
  111. struct mutex wq_sem;
  112. struct dvb_adapter adapter;
  113. struct dvb_device *fedev;
  114. struct dmxdev dmxdev;
  115. struct dvb_net dvbnet;
  116. int streaming;
  117. int sleeping;
  118. struct dvbt_set_parameters_msg param;
  119. struct dvbt_get_status_msg status;
  120. struct delayed_work query_work;
  121. wait_queue_head_t poll_wq;
  122. int pending_fe_events;
  123. int disconnect_pending;
  124. atomic_t inuse;
  125. void *streambuf;
  126. dma_addr_t streambuf_dmahandle;
  127. struct urb *stream_urb [STREAM_URB_COUNT];
  128. #ifdef ENABLE_RC
  129. struct input_dev *rc_input_dev;
  130. char phys[64];
  131. struct delayed_work rc_query_work;
  132. int rc_input_event;
  133. u32 rc_last_code;
  134. unsigned long last_event_jiffies;
  135. #endif
  136. };
  137. enum {
  138. CINERGYT2_RC_EVENT_TYPE_NONE = 0x00,
  139. CINERGYT2_RC_EVENT_TYPE_NEC = 0x01,
  140. CINERGYT2_RC_EVENT_TYPE_RC5 = 0x02
  141. };
  142. struct cinergyt2_rc_event {
  143. char type;
  144. uint32_t value;
  145. } __attribute__((packed));
  146. static const uint32_t rc_keys[] = {
  147. CINERGYT2_RC_EVENT_TYPE_NEC, 0xfe01eb04, KEY_POWER,
  148. CINERGYT2_RC_EVENT_TYPE_NEC, 0xfd02eb04, KEY_1,
  149. CINERGYT2_RC_EVENT_TYPE_NEC, 0xfc03eb04, KEY_2,
  150. CINERGYT2_RC_EVENT_TYPE_NEC, 0xfb04eb04, KEY_3,
  151. CINERGYT2_RC_EVENT_TYPE_NEC, 0xfa05eb04, KEY_4,
  152. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf906eb04, KEY_5,
  153. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf807eb04, KEY_6,
  154. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf708eb04, KEY_7,
  155. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf609eb04, KEY_8,
  156. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf50aeb04, KEY_9,
  157. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf30ceb04, KEY_0,
  158. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf40beb04, KEY_VIDEO,
  159. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf20deb04, KEY_REFRESH,
  160. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf10eeb04, KEY_SELECT,
  161. CINERGYT2_RC_EVENT_TYPE_NEC, 0xf00feb04, KEY_EPG,
  162. CINERGYT2_RC_EVENT_TYPE_NEC, 0xef10eb04, KEY_UP,
  163. CINERGYT2_RC_EVENT_TYPE_NEC, 0xeb14eb04, KEY_DOWN,
  164. CINERGYT2_RC_EVENT_TYPE_NEC, 0xee11eb04, KEY_LEFT,
  165. CINERGYT2_RC_EVENT_TYPE_NEC, 0xec13eb04, KEY_RIGHT,
  166. CINERGYT2_RC_EVENT_TYPE_NEC, 0xed12eb04, KEY_OK,
  167. CINERGYT2_RC_EVENT_TYPE_NEC, 0xea15eb04, KEY_TEXT,
  168. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe916eb04, KEY_INFO,
  169. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe817eb04, KEY_RED,
  170. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe718eb04, KEY_GREEN,
  171. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe619eb04, KEY_YELLOW,
  172. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe51aeb04, KEY_BLUE,
  173. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe31ceb04, KEY_VOLUMEUP,
  174. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe11eeb04, KEY_VOLUMEDOWN,
  175. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe21deb04, KEY_MUTE,
  176. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe41beb04, KEY_CHANNELUP,
  177. CINERGYT2_RC_EVENT_TYPE_NEC, 0xe01feb04, KEY_CHANNELDOWN,
  178. CINERGYT2_RC_EVENT_TYPE_NEC, 0xbf40eb04, KEY_PAUSE,
  179. CINERGYT2_RC_EVENT_TYPE_NEC, 0xb34ceb04, KEY_PLAY,
  180. CINERGYT2_RC_EVENT_TYPE_NEC, 0xa758eb04, KEY_RECORD,
  181. CINERGYT2_RC_EVENT_TYPE_NEC, 0xab54eb04, KEY_PREVIOUS,
  182. CINERGYT2_RC_EVENT_TYPE_NEC, 0xb748eb04, KEY_STOP,
  183. CINERGYT2_RC_EVENT_TYPE_NEC, 0xa35ceb04, KEY_NEXT
  184. };
  185. static int cinergyt2_command (struct cinergyt2 *cinergyt2,
  186. char *send_buf, int send_buf_len,
  187. char *recv_buf, int recv_buf_len)
  188. {
  189. int actual_len;
  190. char dummy;
  191. int ret;
  192. ret = usb_bulk_msg(cinergyt2->udev, usb_sndbulkpipe(cinergyt2->udev, 1),
  193. send_buf, send_buf_len, &actual_len, 1000);
  194. if (ret)
  195. dprintk(1, "usb_bulk_msg (send) failed, err %i\n", ret);
  196. if (!recv_buf)
  197. recv_buf = &dummy;
  198. ret = usb_bulk_msg(cinergyt2->udev, usb_rcvbulkpipe(cinergyt2->udev, 1),
  199. recv_buf, recv_buf_len, &actual_len, 1000);
  200. if (ret)
  201. dprintk(1, "usb_bulk_msg (read) failed, err %i\n", ret);
  202. return ret ? ret : actual_len;
  203. }
  204. static void cinergyt2_control_stream_transfer (struct cinergyt2 *cinergyt2, int enable)
  205. {
  206. char buf [] = { CINERGYT2_EP1_CONTROL_STREAM_TRANSFER, enable ? 1 : 0 };
  207. cinergyt2_command(cinergyt2, buf, sizeof(buf), NULL, 0);
  208. }
  209. static void cinergyt2_sleep (struct cinergyt2 *cinergyt2, int sleep)
  210. {
  211. char buf [] = { CINERGYT2_EP1_SLEEP_MODE, sleep ? 1 : 0 };
  212. cinergyt2_command(cinergyt2, buf, sizeof(buf), NULL, 0);
  213. cinergyt2->sleeping = sleep;
  214. }
  215. static void cinergyt2_stream_irq (struct urb *urb);
  216. static int cinergyt2_submit_stream_urb (struct cinergyt2 *cinergyt2, struct urb *urb)
  217. {
  218. int err;
  219. usb_fill_bulk_urb(urb,
  220. cinergyt2->udev,
  221. usb_rcvbulkpipe(cinergyt2->udev, 0x2),
  222. urb->transfer_buffer,
  223. STREAM_BUF_SIZE,
  224. cinergyt2_stream_irq,
  225. cinergyt2);
  226. if ((err = usb_submit_urb(urb, GFP_ATOMIC)))
  227. dprintk(1, "urb submission failed (err = %i)!\n", err);
  228. return err;
  229. }
  230. static void cinergyt2_stream_irq (struct urb *urb)
  231. {
  232. struct cinergyt2 *cinergyt2 = urb->context;
  233. if (urb->actual_length > 0)
  234. dvb_dmx_swfilter(&cinergyt2->demux,
  235. urb->transfer_buffer, urb->actual_length);
  236. if (cinergyt2->streaming)
  237. cinergyt2_submit_stream_urb(cinergyt2, urb);
  238. }
  239. static void cinergyt2_free_stream_urbs (struct cinergyt2 *cinergyt2)
  240. {
  241. int i;
  242. for (i=0; i<STREAM_URB_COUNT; i++)
  243. usb_free_urb(cinergyt2->stream_urb[i]);
  244. usb_buffer_free(cinergyt2->udev, STREAM_URB_COUNT*STREAM_BUF_SIZE,
  245. cinergyt2->streambuf, cinergyt2->streambuf_dmahandle);
  246. }
  247. static int cinergyt2_alloc_stream_urbs (struct cinergyt2 *cinergyt2)
  248. {
  249. int i;
  250. cinergyt2->streambuf = usb_buffer_alloc(cinergyt2->udev, STREAM_URB_COUNT*STREAM_BUF_SIZE,
  251. GFP_KERNEL, &cinergyt2->streambuf_dmahandle);
  252. if (!cinergyt2->streambuf) {
  253. dprintk(1, "failed to alloc consistent stream memory area, bailing out!\n");
  254. return -ENOMEM;
  255. }
  256. memset(cinergyt2->streambuf, 0, STREAM_URB_COUNT*STREAM_BUF_SIZE);
  257. for (i=0; i<STREAM_URB_COUNT; i++) {
  258. struct urb *urb;
  259. if (!(urb = usb_alloc_urb(0, GFP_ATOMIC))) {
  260. dprintk(1, "failed to alloc consistent stream urbs, bailing out!\n");
  261. cinergyt2_free_stream_urbs(cinergyt2);
  262. return -ENOMEM;
  263. }
  264. urb->transfer_buffer = cinergyt2->streambuf + i * STREAM_BUF_SIZE;
  265. urb->transfer_buffer_length = STREAM_BUF_SIZE;
  266. cinergyt2->stream_urb[i] = urb;
  267. }
  268. return 0;
  269. }
  270. static void cinergyt2_stop_stream_xfer (struct cinergyt2 *cinergyt2)
  271. {
  272. int i;
  273. cinergyt2_control_stream_transfer(cinergyt2, 0);
  274. for (i=0; i<STREAM_URB_COUNT; i++)
  275. usb_kill_urb(cinergyt2->stream_urb[i]);
  276. }
  277. static int cinergyt2_start_stream_xfer (struct cinergyt2 *cinergyt2)
  278. {
  279. int i, err;
  280. for (i=0; i<STREAM_URB_COUNT; i++) {
  281. if ((err = cinergyt2_submit_stream_urb(cinergyt2, cinergyt2->stream_urb[i]))) {
  282. cinergyt2_stop_stream_xfer(cinergyt2);
  283. dprintk(1, "failed urb submission (%i: err = %i)!\n", i, err);
  284. return err;
  285. }
  286. }
  287. cinergyt2_control_stream_transfer(cinergyt2, 1);
  288. return 0;
  289. }
  290. static int cinergyt2_start_feed(struct dvb_demux_feed *dvbdmxfeed)
  291. {
  292. struct dvb_demux *demux = dvbdmxfeed->demux;
  293. struct cinergyt2 *cinergyt2 = demux->priv;
  294. if (cinergyt2->disconnect_pending)
  295. return -EAGAIN;
  296. if (mutex_lock_interruptible(&cinergyt2->sem))
  297. return -ERESTARTSYS;
  298. if (cinergyt2->streaming == 0)
  299. cinergyt2_start_stream_xfer(cinergyt2);
  300. cinergyt2->streaming++;
  301. mutex_unlock(&cinergyt2->sem);
  302. return 0;
  303. }
  304. static int cinergyt2_stop_feed(struct dvb_demux_feed *dvbdmxfeed)
  305. {
  306. struct dvb_demux *demux = dvbdmxfeed->demux;
  307. struct cinergyt2 *cinergyt2 = demux->priv;
  308. if (cinergyt2->disconnect_pending)
  309. return -EAGAIN;
  310. if (mutex_lock_interruptible(&cinergyt2->sem))
  311. return -ERESTARTSYS;
  312. if (--cinergyt2->streaming == 0)
  313. cinergyt2_stop_stream_xfer(cinergyt2);
  314. mutex_unlock(&cinergyt2->sem);
  315. return 0;
  316. }
  317. /**
  318. * convert linux-dvb frontend parameter set into TPS.
  319. * See ETSI ETS-300744, section 4.6.2, table 9 for details.
  320. *
  321. * This function is probably reusable and may better get placed in a support
  322. * library.
  323. *
  324. * We replace errornous fields by default TPS fields (the ones with value 0).
  325. */
  326. static uint16_t compute_tps (struct dvb_frontend_parameters *p)
  327. {
  328. struct dvb_ofdm_parameters *op = &p->u.ofdm;
  329. uint16_t tps = 0;
  330. switch (op->code_rate_HP) {
  331. case FEC_2_3:
  332. tps |= (1 << 7);
  333. break;
  334. case FEC_3_4:
  335. tps |= (2 << 7);
  336. break;
  337. case FEC_5_6:
  338. tps |= (3 << 7);
  339. break;
  340. case FEC_7_8:
  341. tps |= (4 << 7);
  342. break;
  343. case FEC_1_2:
  344. case FEC_AUTO:
  345. default:
  346. /* tps |= (0 << 7) */;
  347. }
  348. switch (op->code_rate_LP) {
  349. case FEC_2_3:
  350. tps |= (1 << 4);
  351. break;
  352. case FEC_3_4:
  353. tps |= (2 << 4);
  354. break;
  355. case FEC_5_6:
  356. tps |= (3 << 4);
  357. break;
  358. case FEC_7_8:
  359. tps |= (4 << 4);
  360. break;
  361. case FEC_1_2:
  362. case FEC_AUTO:
  363. default:
  364. /* tps |= (0 << 4) */;
  365. }
  366. switch (op->constellation) {
  367. case QAM_16:
  368. tps |= (1 << 13);
  369. break;
  370. case QAM_64:
  371. tps |= (2 << 13);
  372. break;
  373. case QPSK:
  374. default:
  375. /* tps |= (0 << 13) */;
  376. }
  377. switch (op->transmission_mode) {
  378. case TRANSMISSION_MODE_8K:
  379. tps |= (1 << 0);
  380. break;
  381. case TRANSMISSION_MODE_2K:
  382. default:
  383. /* tps |= (0 << 0) */;
  384. }
  385. switch (op->guard_interval) {
  386. case GUARD_INTERVAL_1_16:
  387. tps |= (1 << 2);
  388. break;
  389. case GUARD_INTERVAL_1_8:
  390. tps |= (2 << 2);
  391. break;
  392. case GUARD_INTERVAL_1_4:
  393. tps |= (3 << 2);
  394. break;
  395. case GUARD_INTERVAL_1_32:
  396. default:
  397. /* tps |= (0 << 2) */;
  398. }
  399. switch (op->hierarchy_information) {
  400. case HIERARCHY_1:
  401. tps |= (1 << 10);
  402. break;
  403. case HIERARCHY_2:
  404. tps |= (2 << 10);
  405. break;
  406. case HIERARCHY_4:
  407. tps |= (3 << 10);
  408. break;
  409. case HIERARCHY_NONE:
  410. default:
  411. /* tps |= (0 << 10) */;
  412. }
  413. return tps;
  414. }
  415. static int cinergyt2_open (struct inode *inode, struct file *file)
  416. {
  417. struct dvb_device *dvbdev = file->private_data;
  418. struct cinergyt2 *cinergyt2 = dvbdev->priv;
  419. int err = -EAGAIN;
  420. if (cinergyt2->disconnect_pending)
  421. goto out;
  422. err = mutex_lock_interruptible(&cinergyt2->wq_sem);
  423. if (err)
  424. goto out;
  425. err = mutex_lock_interruptible(&cinergyt2->sem);
  426. if (err)
  427. goto out_unlock1;
  428. if ((err = dvb_generic_open(inode, file)))
  429. goto out_unlock2;
  430. if ((file->f_flags & O_ACCMODE) != O_RDONLY) {
  431. cinergyt2_sleep(cinergyt2, 0);
  432. schedule_delayed_work(&cinergyt2->query_work, HZ/2);
  433. }
  434. atomic_inc(&cinergyt2->inuse);
  435. out_unlock2:
  436. mutex_unlock(&cinergyt2->sem);
  437. out_unlock1:
  438. mutex_unlock(&cinergyt2->wq_sem);
  439. out:
  440. return err;
  441. }
  442. static void cinergyt2_unregister(struct cinergyt2 *cinergyt2)
  443. {
  444. dvb_net_release(&cinergyt2->dvbnet);
  445. dvb_dmxdev_release(&cinergyt2->dmxdev);
  446. dvb_dmx_release(&cinergyt2->demux);
  447. dvb_unregister_device(cinergyt2->fedev);
  448. dvb_unregister_adapter(&cinergyt2->adapter);
  449. cinergyt2_free_stream_urbs(cinergyt2);
  450. kfree(cinergyt2);
  451. }
  452. static int cinergyt2_release (struct inode *inode, struct file *file)
  453. {
  454. struct dvb_device *dvbdev = file->private_data;
  455. struct cinergyt2 *cinergyt2 = dvbdev->priv;
  456. mutex_lock(&cinergyt2->wq_sem);
  457. if (!cinergyt2->disconnect_pending && (file->f_flags & O_ACCMODE) != O_RDONLY) {
  458. cancel_rearming_delayed_work(&cinergyt2->query_work);
  459. mutex_lock(&cinergyt2->sem);
  460. cinergyt2_sleep(cinergyt2, 1);
  461. mutex_unlock(&cinergyt2->sem);
  462. }
  463. mutex_unlock(&cinergyt2->wq_sem);
  464. if (atomic_dec_and_test(&cinergyt2->inuse) && cinergyt2->disconnect_pending) {
  465. warn("delayed unregister in release");
  466. cinergyt2_unregister(cinergyt2);
  467. }
  468. return dvb_generic_release(inode, file);
  469. }
  470. static unsigned int cinergyt2_poll (struct file *file, struct poll_table_struct *wait)
  471. {
  472. struct dvb_device *dvbdev = file->private_data;
  473. struct cinergyt2 *cinergyt2 = dvbdev->priv;
  474. unsigned int mask = 0;
  475. if (cinergyt2->disconnect_pending)
  476. return -EAGAIN;
  477. if (mutex_lock_interruptible(&cinergyt2->sem))
  478. return -ERESTARTSYS;
  479. poll_wait(file, &cinergyt2->poll_wq, wait);
  480. if (cinergyt2->pending_fe_events != 0)
  481. mask |= (POLLIN | POLLRDNORM | POLLPRI);
  482. mutex_unlock(&cinergyt2->sem);
  483. return mask;
  484. }
  485. static int cinergyt2_ioctl (struct inode *inode, struct file *file,
  486. unsigned cmd, unsigned long arg)
  487. {
  488. struct dvb_device *dvbdev = file->private_data;
  489. struct cinergyt2 *cinergyt2 = dvbdev->priv;
  490. struct dvbt_get_status_msg *stat = &cinergyt2->status;
  491. fe_status_t status = 0;
  492. switch (cmd) {
  493. case FE_GET_INFO:
  494. return copy_to_user((void __user*) arg, &cinergyt2_fe_info,
  495. sizeof(struct dvb_frontend_info));
  496. case FE_READ_STATUS:
  497. if (0xffff - le16_to_cpu(stat->gain) > 30)
  498. status |= FE_HAS_SIGNAL;
  499. if (stat->lock_bits & (1 << 6))
  500. status |= FE_HAS_LOCK;
  501. if (stat->lock_bits & (1 << 5))
  502. status |= FE_HAS_SYNC;
  503. if (stat->lock_bits & (1 << 4))
  504. status |= FE_HAS_CARRIER;
  505. if (stat->lock_bits & (1 << 1))
  506. status |= FE_HAS_VITERBI;
  507. return copy_to_user((void __user*) arg, &status, sizeof(status));
  508. case FE_READ_BER:
  509. return put_user(le32_to_cpu(stat->viterbi_error_rate),
  510. (__u32 __user *) arg);
  511. case FE_READ_SIGNAL_STRENGTH:
  512. return put_user(0xffff - le16_to_cpu(stat->gain),
  513. (__u16 __user *) arg);
  514. case FE_READ_SNR:
  515. return put_user((stat->snr << 8) | stat->snr,
  516. (__u16 __user *) arg);
  517. case FE_READ_UNCORRECTED_BLOCKS:
  518. {
  519. uint32_t unc_count;
  520. unc_count = stat->uncorrected_block_count;
  521. stat->uncorrected_block_count = 0;
  522. /* UNC are already converted to host byte order... */
  523. return put_user(unc_count,(__u32 __user *) arg);
  524. }
  525. case FE_SET_FRONTEND:
  526. {
  527. struct dvbt_set_parameters_msg *param = &cinergyt2->param;
  528. struct dvb_frontend_parameters p;
  529. int err;
  530. if ((file->f_flags & O_ACCMODE) == O_RDONLY)
  531. return -EPERM;
  532. if (copy_from_user(&p, (void __user*) arg, sizeof(p)))
  533. return -EFAULT;
  534. if (cinergyt2->disconnect_pending)
  535. return -EAGAIN;
  536. if (mutex_lock_interruptible(&cinergyt2->sem))
  537. return -ERESTARTSYS;
  538. param->cmd = CINERGYT2_EP1_SET_TUNER_PARAMETERS;
  539. param->tps = cpu_to_le16(compute_tps(&p));
  540. param->freq = cpu_to_le32(p.frequency / 1000);
  541. param->bandwidth = 8 - p.u.ofdm.bandwidth - BANDWIDTH_8_MHZ;
  542. stat->lock_bits = 0;
  543. cinergyt2->pending_fe_events++;
  544. wake_up_interruptible(&cinergyt2->poll_wq);
  545. err = cinergyt2_command(cinergyt2,
  546. (char *) param, sizeof(*param),
  547. NULL, 0);
  548. mutex_unlock(&cinergyt2->sem);
  549. return (err < 0) ? err : 0;
  550. }
  551. case FE_GET_FRONTEND:
  552. /**
  553. * trivial to implement (see struct dvbt_get_status_msg).
  554. * equivalent to FE_READ ioctls, but needs
  555. * TPS -> linux-dvb parameter set conversion. Feel free
  556. * to implement this and send us a patch if you need this
  557. * functionality.
  558. */
  559. break;
  560. case FE_GET_EVENT:
  561. {
  562. /**
  563. * for now we only fill the status field. the parameters
  564. * are trivial to fill as soon FE_GET_FRONTEND is done.
  565. */
  566. struct dvb_frontend_event __user *e = (void __user *) arg;
  567. if (cinergyt2->pending_fe_events == 0) {
  568. if (file->f_flags & O_NONBLOCK)
  569. return -EWOULDBLOCK;
  570. wait_event_interruptible(cinergyt2->poll_wq,
  571. cinergyt2->pending_fe_events > 0);
  572. }
  573. cinergyt2->pending_fe_events = 0;
  574. return cinergyt2_ioctl(inode, file, FE_READ_STATUS,
  575. (unsigned long) &e->status);
  576. }
  577. default:
  578. ;
  579. }
  580. return -EINVAL;
  581. }
  582. static int cinergyt2_mmap(struct file *file, struct vm_area_struct *vma)
  583. {
  584. struct dvb_device *dvbdev = file->private_data;
  585. struct cinergyt2 *cinergyt2 = dvbdev->priv;
  586. int ret = 0;
  587. lock_kernel();
  588. if (vma->vm_flags & (VM_WRITE | VM_EXEC)) {
  589. ret = -EPERM;
  590. goto bailout;
  591. }
  592. if (vma->vm_end > vma->vm_start + STREAM_URB_COUNT * STREAM_BUF_SIZE) {
  593. ret = -EINVAL;
  594. goto bailout;
  595. }
  596. vma->vm_flags |= (VM_IO | VM_DONTCOPY);
  597. vma->vm_file = file;
  598. ret = remap_pfn_range(vma, vma->vm_start,
  599. virt_to_phys(cinergyt2->streambuf) >> PAGE_SHIFT,
  600. vma->vm_end - vma->vm_start,
  601. vma->vm_page_prot) ? -EAGAIN : 0;
  602. bailout:
  603. unlock_kernel();
  604. return ret;
  605. }
  606. static struct file_operations cinergyt2_fops = {
  607. .owner = THIS_MODULE,
  608. .ioctl = cinergyt2_ioctl,
  609. .poll = cinergyt2_poll,
  610. .open = cinergyt2_open,
  611. .release = cinergyt2_release,
  612. .mmap = cinergyt2_mmap
  613. };
  614. static struct dvb_device cinergyt2_fe_template = {
  615. .users = ~0,
  616. .writers = 1,
  617. .readers = (~0)-1,
  618. .fops = &cinergyt2_fops
  619. };
  620. #ifdef ENABLE_RC
  621. static void cinergyt2_query_rc (struct work_struct *work)
  622. {
  623. struct cinergyt2 *cinergyt2 =
  624. container_of(work, struct cinergyt2, rc_query_work.work);
  625. char buf[1] = { CINERGYT2_EP1_GET_RC_EVENTS };
  626. struct cinergyt2_rc_event rc_events[12];
  627. int n, len, i;
  628. if (cinergyt2->disconnect_pending || mutex_lock_interruptible(&cinergyt2->sem))
  629. return;
  630. len = cinergyt2_command(cinergyt2, buf, sizeof(buf),
  631. (char *) rc_events, sizeof(rc_events));
  632. if (len < 0)
  633. goto out;
  634. if (len == 0) {
  635. if (time_after(jiffies, cinergyt2->last_event_jiffies +
  636. msecs_to_jiffies(150))) {
  637. /* stop key repeat */
  638. if (cinergyt2->rc_input_event != KEY_MAX) {
  639. dprintk(1, "rc_input_event=%d Up\n", cinergyt2->rc_input_event);
  640. input_report_key(cinergyt2->rc_input_dev,
  641. cinergyt2->rc_input_event, 0);
  642. input_sync(cinergyt2->rc_input_dev);
  643. cinergyt2->rc_input_event = KEY_MAX;
  644. }
  645. cinergyt2->rc_last_code = ~0;
  646. }
  647. goto out;
  648. }
  649. cinergyt2->last_event_jiffies = jiffies;
  650. for (n = 0; n < (len / sizeof(rc_events[0])); n++) {
  651. dprintk(1, "rc_events[%d].value = %x, type=%x\n",
  652. n, le32_to_cpu(rc_events[n].value), rc_events[n].type);
  653. if (rc_events[n].type == CINERGYT2_RC_EVENT_TYPE_NEC &&
  654. rc_events[n].value == ~0) {
  655. /* keyrepeat bit -> just repeat last rc_input_event */
  656. } else {
  657. cinergyt2->rc_input_event = KEY_MAX;
  658. for (i = 0; i < ARRAY_SIZE(rc_keys); i += 3) {
  659. if (rc_keys[i + 0] == rc_events[n].type &&
  660. rc_keys[i + 1] == le32_to_cpu(rc_events[n].value)) {
  661. cinergyt2->rc_input_event = rc_keys[i + 2];
  662. break;
  663. }
  664. }
  665. }
  666. if (cinergyt2->rc_input_event != KEY_MAX) {
  667. if (rc_events[n].value == cinergyt2->rc_last_code &&
  668. cinergyt2->rc_last_code != ~0) {
  669. /* emit a key-up so the double event is recognized */
  670. dprintk(1, "rc_input_event=%d UP\n", cinergyt2->rc_input_event);
  671. input_report_key(cinergyt2->rc_input_dev,
  672. cinergyt2->rc_input_event, 0);
  673. }
  674. dprintk(1, "rc_input_event=%d\n", cinergyt2->rc_input_event);
  675. input_report_key(cinergyt2->rc_input_dev,
  676. cinergyt2->rc_input_event, 1);
  677. input_sync(cinergyt2->rc_input_dev);
  678. cinergyt2->rc_last_code = rc_events[n].value;
  679. }
  680. }
  681. out:
  682. schedule_delayed_work(&cinergyt2->rc_query_work,
  683. msecs_to_jiffies(RC_QUERY_INTERVAL));
  684. mutex_unlock(&cinergyt2->sem);
  685. }
  686. static int cinergyt2_register_rc(struct cinergyt2 *cinergyt2)
  687. {
  688. struct input_dev *input_dev;
  689. int i;
  690. int err;
  691. input_dev = input_allocate_device();
  692. if (!input_dev)
  693. return -ENOMEM;
  694. usb_make_path(cinergyt2->udev, cinergyt2->phys, sizeof(cinergyt2->phys));
  695. strlcat(cinergyt2->phys, "/input0", sizeof(cinergyt2->phys));
  696. cinergyt2->rc_input_event = KEY_MAX;
  697. cinergyt2->rc_last_code = ~0;
  698. INIT_DELAYED_WORK(&cinergyt2->rc_query_work, cinergyt2_query_rc);
  699. input_dev->name = DRIVER_NAME " remote control";
  700. input_dev->phys = cinergyt2->phys;
  701. input_dev->evbit[0] = BIT_MASK(EV_KEY) | BIT_MASK(EV_REP);
  702. for (i = 0; i < ARRAY_SIZE(rc_keys); i += 3)
  703. set_bit(rc_keys[i + 2], input_dev->keybit);
  704. input_dev->keycodesize = 0;
  705. input_dev->keycodemax = 0;
  706. input_dev->id.bustype = BUS_USB;
  707. input_dev->id.vendor = cinergyt2->udev->descriptor.idVendor;
  708. input_dev->id.product = cinergyt2->udev->descriptor.idProduct;
  709. input_dev->id.version = 1;
  710. input_dev->dev.parent = &cinergyt2->udev->dev;
  711. err = input_register_device(input_dev);
  712. if (err) {
  713. input_free_device(input_dev);
  714. return err;
  715. }
  716. cinergyt2->rc_input_dev = input_dev;
  717. schedule_delayed_work(&cinergyt2->rc_query_work, HZ/2);
  718. return 0;
  719. }
  720. static void cinergyt2_unregister_rc(struct cinergyt2 *cinergyt2)
  721. {
  722. cancel_rearming_delayed_work(&cinergyt2->rc_query_work);
  723. input_unregister_device(cinergyt2->rc_input_dev);
  724. }
  725. static inline void cinergyt2_suspend_rc(struct cinergyt2 *cinergyt2)
  726. {
  727. cancel_rearming_delayed_work(&cinergyt2->rc_query_work);
  728. }
  729. static inline void cinergyt2_resume_rc(struct cinergyt2 *cinergyt2)
  730. {
  731. schedule_delayed_work(&cinergyt2->rc_query_work, HZ/2);
  732. }
  733. #else
  734. static inline int cinergyt2_register_rc(struct cinergyt2 *cinergyt2) { return 0; }
  735. static inline void cinergyt2_unregister_rc(struct cinergyt2 *cinergyt2) { }
  736. static inline void cinergyt2_suspend_rc(struct cinergyt2 *cinergyt2) { }
  737. static inline void cinergyt2_resume_rc(struct cinergyt2 *cinergyt2) { }
  738. #endif /* ENABLE_RC */
  739. static void cinergyt2_query (struct work_struct *work)
  740. {
  741. struct cinergyt2 *cinergyt2 =
  742. container_of(work, struct cinergyt2, query_work.work);
  743. char cmd [] = { CINERGYT2_EP1_GET_TUNER_STATUS };
  744. struct dvbt_get_status_msg *s = &cinergyt2->status;
  745. uint8_t lock_bits;
  746. uint32_t unc;
  747. if (cinergyt2->disconnect_pending || mutex_lock_interruptible(&cinergyt2->sem))
  748. return;
  749. unc = s->uncorrected_block_count;
  750. lock_bits = s->lock_bits;
  751. cinergyt2_command(cinergyt2, cmd, sizeof(cmd), (char *) s, sizeof(*s));
  752. unc += le32_to_cpu(s->uncorrected_block_count);
  753. s->uncorrected_block_count = unc;
  754. if (lock_bits != s->lock_bits) {
  755. wake_up_interruptible(&cinergyt2->poll_wq);
  756. cinergyt2->pending_fe_events++;
  757. }
  758. schedule_delayed_work(&cinergyt2->query_work,
  759. msecs_to_jiffies(QUERY_INTERVAL));
  760. mutex_unlock(&cinergyt2->sem);
  761. }
  762. static int cinergyt2_probe (struct usb_interface *intf,
  763. const struct usb_device_id *id)
  764. {
  765. struct cinergyt2 *cinergyt2;
  766. int err;
  767. if (!(cinergyt2 = kzalloc (sizeof(struct cinergyt2), GFP_KERNEL))) {
  768. dprintk(1, "out of memory?!?\n");
  769. return -ENOMEM;
  770. }
  771. usb_set_intfdata (intf, (void *) cinergyt2);
  772. mutex_init(&cinergyt2->sem);
  773. mutex_init(&cinergyt2->wq_sem);
  774. init_waitqueue_head (&cinergyt2->poll_wq);
  775. INIT_DELAYED_WORK(&cinergyt2->query_work, cinergyt2_query);
  776. cinergyt2->udev = interface_to_usbdev(intf);
  777. cinergyt2->param.cmd = CINERGYT2_EP1_SET_TUNER_PARAMETERS;
  778. if (cinergyt2_alloc_stream_urbs (cinergyt2) < 0) {
  779. dprintk(1, "unable to allocate stream urbs\n");
  780. kfree(cinergyt2);
  781. return -ENOMEM;
  782. }
  783. err = dvb_register_adapter(&cinergyt2->adapter, DRIVER_NAME,
  784. THIS_MODULE, &cinergyt2->udev->dev,
  785. adapter_nr);
  786. if (err < 0) {
  787. kfree(cinergyt2);
  788. return err;
  789. }
  790. cinergyt2->demux.priv = cinergyt2;
  791. cinergyt2->demux.filternum = 256;
  792. cinergyt2->demux.feednum = 256;
  793. cinergyt2->demux.start_feed = cinergyt2_start_feed;
  794. cinergyt2->demux.stop_feed = cinergyt2_stop_feed;
  795. cinergyt2->demux.dmx.capabilities = DMX_TS_FILTERING |
  796. DMX_SECTION_FILTERING |
  797. DMX_MEMORY_BASED_FILTERING;
  798. if ((err = dvb_dmx_init(&cinergyt2->demux)) < 0) {
  799. dprintk(1, "dvb_dmx_init() failed (err = %d)\n", err);
  800. goto bailout;
  801. }
  802. cinergyt2->dmxdev.filternum = cinergyt2->demux.filternum;
  803. cinergyt2->dmxdev.demux = &cinergyt2->demux.dmx;
  804. cinergyt2->dmxdev.capabilities = 0;
  805. if ((err = dvb_dmxdev_init(&cinergyt2->dmxdev, &cinergyt2->adapter)) < 0) {
  806. dprintk(1, "dvb_dmxdev_init() failed (err = %d)\n", err);
  807. goto bailout;
  808. }
  809. if (dvb_net_init(&cinergyt2->adapter, &cinergyt2->dvbnet, &cinergyt2->demux.dmx))
  810. dprintk(1, "dvb_net_init() failed!\n");
  811. dvb_register_device(&cinergyt2->adapter, &cinergyt2->fedev,
  812. &cinergyt2_fe_template, cinergyt2,
  813. DVB_DEVICE_FRONTEND);
  814. err = cinergyt2_register_rc(cinergyt2);
  815. if (err)
  816. goto bailout;
  817. return 0;
  818. bailout:
  819. dvb_net_release(&cinergyt2->dvbnet);
  820. dvb_dmxdev_release(&cinergyt2->dmxdev);
  821. dvb_dmx_release(&cinergyt2->demux);
  822. dvb_unregister_adapter(&cinergyt2->adapter);
  823. cinergyt2_free_stream_urbs(cinergyt2);
  824. kfree(cinergyt2);
  825. return -ENOMEM;
  826. }
  827. static void cinergyt2_disconnect (struct usb_interface *intf)
  828. {
  829. struct cinergyt2 *cinergyt2 = usb_get_intfdata (intf);
  830. cinergyt2_unregister_rc(cinergyt2);
  831. cancel_rearming_delayed_work(&cinergyt2->query_work);
  832. wake_up_interruptible(&cinergyt2->poll_wq);
  833. cinergyt2->demux.dmx.close(&cinergyt2->demux.dmx);
  834. cinergyt2->disconnect_pending = 1;
  835. if (!atomic_read(&cinergyt2->inuse))
  836. cinergyt2_unregister(cinergyt2);
  837. }
  838. static int cinergyt2_suspend (struct usb_interface *intf, pm_message_t state)
  839. {
  840. struct cinergyt2 *cinergyt2 = usb_get_intfdata (intf);
  841. if (cinergyt2->disconnect_pending)
  842. return -EAGAIN;
  843. if (mutex_lock_interruptible(&cinergyt2->wq_sem))
  844. return -ERESTARTSYS;
  845. cinergyt2_suspend_rc(cinergyt2);
  846. cancel_rearming_delayed_work(&cinergyt2->query_work);
  847. mutex_lock(&cinergyt2->sem);
  848. if (cinergyt2->streaming)
  849. cinergyt2_stop_stream_xfer(cinergyt2);
  850. cinergyt2_sleep(cinergyt2, 1);
  851. mutex_unlock(&cinergyt2->sem);
  852. mutex_unlock(&cinergyt2->wq_sem);
  853. return 0;
  854. }
  855. static int cinergyt2_resume (struct usb_interface *intf)
  856. {
  857. struct cinergyt2 *cinergyt2 = usb_get_intfdata (intf);
  858. struct dvbt_set_parameters_msg *param = &cinergyt2->param;
  859. int err = -EAGAIN;
  860. if (cinergyt2->disconnect_pending)
  861. goto out;
  862. err = mutex_lock_interruptible(&cinergyt2->wq_sem);
  863. if (err)
  864. goto out;
  865. err = mutex_lock_interruptible(&cinergyt2->sem);
  866. if (err)
  867. goto out_unlock1;
  868. if (!cinergyt2->sleeping) {
  869. cinergyt2_sleep(cinergyt2, 0);
  870. cinergyt2_command(cinergyt2, (char *) param, sizeof(*param), NULL, 0);
  871. if (cinergyt2->streaming)
  872. cinergyt2_start_stream_xfer(cinergyt2);
  873. schedule_delayed_work(&cinergyt2->query_work, HZ/2);
  874. }
  875. cinergyt2_resume_rc(cinergyt2);
  876. mutex_unlock(&cinergyt2->sem);
  877. out_unlock1:
  878. mutex_unlock(&cinergyt2->wq_sem);
  879. out:
  880. return err;
  881. }
  882. static const struct usb_device_id cinergyt2_table [] __devinitdata = {
  883. { USB_DEVICE(0x0ccd, 0x0038) },
  884. { 0 }
  885. };
  886. MODULE_DEVICE_TABLE(usb, cinergyt2_table);
  887. static struct usb_driver cinergyt2_driver = {
  888. .name = "cinergyT2",
  889. .probe = cinergyt2_probe,
  890. .disconnect = cinergyt2_disconnect,
  891. .suspend = cinergyt2_suspend,
  892. .resume = cinergyt2_resume,
  893. .id_table = cinergyt2_table
  894. };
  895. static int __init cinergyt2_init (void)
  896. {
  897. int err;
  898. if ((err = usb_register(&cinergyt2_driver)) < 0)
  899. dprintk(1, "usb_register() failed! (err %i)\n", err);
  900. return err;
  901. }
  902. static void __exit cinergyt2_exit (void)
  903. {
  904. usb_deregister(&cinergyt2_driver);
  905. }
  906. module_init (cinergyt2_init);
  907. module_exit (cinergyt2_exit);
  908. MODULE_LICENSE("GPL");
  909. MODULE_AUTHOR("Holger Waechtler, Daniel Mack");