cx231xx-core.c 44 KB

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  1. /*
  2. cx231xx-core.c - driver for Conexant Cx23100/101/102
  3. USB video capture devices
  4. Copyright (C) 2008 <srinivasa.deevi at conexant dot com>
  5. Based on em28xx driver
  6. This program is free software; you can redistribute it and/or modify
  7. it under the terms of the GNU General Public License as published by
  8. the Free Software Foundation; either version 2 of the License, or
  9. (at your option) any later version.
  10. This program is distributed in the hope that it will be useful,
  11. but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. GNU General Public License for more details.
  14. You should have received a copy of the GNU General Public License
  15. along with this program; if not, write to the Free Software
  16. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  17. */
  18. #include <linux/init.h>
  19. #include <linux/list.h>
  20. #include <linux/module.h>
  21. #include <linux/slab.h>
  22. #include <linux/usb.h>
  23. #include <linux/vmalloc.h>
  24. #include <media/v4l2-common.h>
  25. #include <media/tuner.h>
  26. #include "cx231xx.h"
  27. #include "cx231xx-reg.h"
  28. /* #define ENABLE_DEBUG_ISOC_FRAMES */
  29. static unsigned int core_debug;
  30. module_param(core_debug, int, 0644);
  31. MODULE_PARM_DESC(core_debug, "enable debug messages [core]");
  32. #define cx231xx_coredbg(fmt, arg...) do {\
  33. if (core_debug) \
  34. printk(KERN_INFO "%s %s :"fmt, \
  35. dev->name, __func__ , ##arg); } while (0)
  36. static unsigned int reg_debug;
  37. module_param(reg_debug, int, 0644);
  38. MODULE_PARM_DESC(reg_debug, "enable debug messages [URB reg]");
  39. static int alt = CX231XX_PINOUT;
  40. module_param(alt, int, 0644);
  41. MODULE_PARM_DESC(alt, "alternate setting to use for video endpoint");
  42. #define cx231xx_isocdbg(fmt, arg...) do {\
  43. if (core_debug) \
  44. printk(KERN_INFO "%s %s :"fmt, \
  45. dev->name, __func__ , ##arg); } while (0)
  46. /*****************************************************************
  47. * Device control list functions *
  48. ******************************************************************/
  49. LIST_HEAD(cx231xx_devlist);
  50. static DEFINE_MUTEX(cx231xx_devlist_mutex);
  51. /*
  52. * cx231xx_realease_resources()
  53. * unregisters the v4l2,i2c and usb devices
  54. * called when the device gets disconected or at module unload
  55. */
  56. void cx231xx_remove_from_devlist(struct cx231xx *dev)
  57. {
  58. if (dev == NULL)
  59. return;
  60. if (dev->udev == NULL)
  61. return;
  62. if (atomic_read(&dev->devlist_count) > 0) {
  63. mutex_lock(&cx231xx_devlist_mutex);
  64. list_del(&dev->devlist);
  65. atomic_dec(&dev->devlist_count);
  66. mutex_unlock(&cx231xx_devlist_mutex);
  67. }
  68. };
  69. void cx231xx_add_into_devlist(struct cx231xx *dev)
  70. {
  71. mutex_lock(&cx231xx_devlist_mutex);
  72. list_add_tail(&dev->devlist, &cx231xx_devlist);
  73. atomic_inc(&dev->devlist_count);
  74. mutex_unlock(&cx231xx_devlist_mutex);
  75. };
  76. static LIST_HEAD(cx231xx_extension_devlist);
  77. int cx231xx_register_extension(struct cx231xx_ops *ops)
  78. {
  79. struct cx231xx *dev = NULL;
  80. mutex_lock(&cx231xx_devlist_mutex);
  81. list_add_tail(&ops->next, &cx231xx_extension_devlist);
  82. list_for_each_entry(dev, &cx231xx_devlist, devlist)
  83. ops->init(dev);
  84. printk(KERN_INFO DRIVER_NAME ": %s initialized\n", ops->name);
  85. mutex_unlock(&cx231xx_devlist_mutex);
  86. return 0;
  87. }
  88. EXPORT_SYMBOL(cx231xx_register_extension);
  89. void cx231xx_unregister_extension(struct cx231xx_ops *ops)
  90. {
  91. struct cx231xx *dev = NULL;
  92. mutex_lock(&cx231xx_devlist_mutex);
  93. list_for_each_entry(dev, &cx231xx_devlist, devlist)
  94. ops->fini(dev);
  95. printk(KERN_INFO DRIVER_NAME ": %s removed\n", ops->name);
  96. list_del(&ops->next);
  97. mutex_unlock(&cx231xx_devlist_mutex);
  98. }
  99. EXPORT_SYMBOL(cx231xx_unregister_extension);
  100. void cx231xx_init_extension(struct cx231xx *dev)
  101. {
  102. struct cx231xx_ops *ops = NULL;
  103. mutex_lock(&cx231xx_devlist_mutex);
  104. if (!list_empty(&cx231xx_extension_devlist)) {
  105. list_for_each_entry(ops, &cx231xx_extension_devlist, next) {
  106. if (ops->init)
  107. ops->init(dev);
  108. }
  109. }
  110. mutex_unlock(&cx231xx_devlist_mutex);
  111. }
  112. void cx231xx_close_extension(struct cx231xx *dev)
  113. {
  114. struct cx231xx_ops *ops = NULL;
  115. mutex_lock(&cx231xx_devlist_mutex);
  116. if (!list_empty(&cx231xx_extension_devlist)) {
  117. list_for_each_entry(ops, &cx231xx_extension_devlist, next) {
  118. if (ops->fini)
  119. ops->fini(dev);
  120. }
  121. }
  122. mutex_unlock(&cx231xx_devlist_mutex);
  123. }
  124. /****************************************************************
  125. * U S B related functions *
  126. *****************************************************************/
  127. int cx231xx_send_usb_command(struct cx231xx_i2c *i2c_bus,
  128. struct cx231xx_i2c_xfer_data *req_data)
  129. {
  130. int status = 0;
  131. struct cx231xx *dev = i2c_bus->dev;
  132. struct VENDOR_REQUEST_IN ven_req;
  133. u8 saddr_len = 0;
  134. u8 _i2c_period = 0;
  135. u8 _i2c_nostop = 0;
  136. u8 _i2c_reserve = 0;
  137. if (dev->state & DEV_DISCONNECTED)
  138. return -ENODEV;
  139. /* Get the I2C period, nostop and reserve parameters */
  140. _i2c_period = i2c_bus->i2c_period;
  141. _i2c_nostop = i2c_bus->i2c_nostop;
  142. _i2c_reserve = i2c_bus->i2c_reserve;
  143. saddr_len = req_data->saddr_len;
  144. /* Set wValue */
  145. if (saddr_len == 1) /* need check saddr_len == 0 */
  146. ven_req.wValue =
  147. req_data->
  148. dev_addr << 9 | _i2c_period << 4 | saddr_len << 2 |
  149. _i2c_nostop << 1 | I2C_SYNC | _i2c_reserve << 6;
  150. else
  151. ven_req.wValue =
  152. req_data->
  153. dev_addr << 9 | _i2c_period << 4 | saddr_len << 2 |
  154. _i2c_nostop << 1 | I2C_SYNC | _i2c_reserve << 6;
  155. /* set channel number */
  156. if (req_data->direction & I2C_M_RD) {
  157. /* channel number, for read,spec required channel_num +4 */
  158. ven_req.bRequest = i2c_bus->nr + 4;
  159. } else
  160. ven_req.bRequest = i2c_bus->nr; /* channel number, */
  161. /* set index value */
  162. switch (saddr_len) {
  163. case 0:
  164. ven_req.wIndex = 0; /* need check */
  165. break;
  166. case 1:
  167. ven_req.wIndex = (req_data->saddr_dat & 0xff);
  168. break;
  169. case 2:
  170. ven_req.wIndex = req_data->saddr_dat;
  171. break;
  172. }
  173. /* set wLength value */
  174. ven_req.wLength = req_data->buf_size;
  175. /* set bData value */
  176. ven_req.bData = 0;
  177. /* set the direction */
  178. if (req_data->direction) {
  179. ven_req.direction = USB_DIR_IN;
  180. memset(req_data->p_buffer, 0x00, ven_req.wLength);
  181. } else
  182. ven_req.direction = USB_DIR_OUT;
  183. /* set the buffer for read / write */
  184. ven_req.pBuff = req_data->p_buffer;
  185. /* call common vendor command request */
  186. status = cx231xx_send_vendor_cmd(dev, &ven_req);
  187. if (status < 0) {
  188. cx231xx_info
  189. ("UsbInterface::sendCommand, failed with status -%d\n",
  190. status);
  191. }
  192. return status;
  193. }
  194. EXPORT_SYMBOL_GPL(cx231xx_send_usb_command);
  195. /*
  196. * Sends/Receives URB control messages, assuring to use a kalloced buffer
  197. * for all operations (dev->urb_buf), to avoid using stacked buffers, as
  198. * they aren't safe for usage with USB, due to DMA restrictions.
  199. * Also implements the debug code for control URB's.
  200. */
  201. static int __usb_control_msg(struct cx231xx *dev, unsigned int pipe,
  202. __u8 request, __u8 requesttype, __u16 value, __u16 index,
  203. void *data, __u16 size, int timeout)
  204. {
  205. int rc, i;
  206. if (reg_debug) {
  207. printk(KERN_DEBUG "%s: (pipe 0x%08x): "
  208. "%s: %02x %02x %02x %02x %02x %02x %02x %02x ",
  209. dev->name,
  210. pipe,
  211. (requesttype & USB_DIR_IN) ? "IN" : "OUT",
  212. requesttype,
  213. request,
  214. value & 0xff, value >> 8,
  215. index & 0xff, index >> 8,
  216. size & 0xff, size >> 8);
  217. if (!(requesttype & USB_DIR_IN)) {
  218. printk(KERN_CONT ">>>");
  219. for (i = 0; i < size; i++)
  220. printk(KERN_CONT " %02x",
  221. ((unsigned char *)data)[i]);
  222. }
  223. }
  224. /* Do the real call to usb_control_msg */
  225. mutex_lock(&dev->ctrl_urb_lock);
  226. if (!(requesttype & USB_DIR_IN) && size)
  227. memcpy(dev->urb_buf, data, size);
  228. rc = usb_control_msg(dev->udev, pipe, request, requesttype, value,
  229. index, dev->urb_buf, size, timeout);
  230. if ((requesttype & USB_DIR_IN) && size)
  231. memcpy(data, dev->urb_buf, size);
  232. mutex_unlock(&dev->ctrl_urb_lock);
  233. if (reg_debug) {
  234. if (unlikely(rc < 0)) {
  235. printk(KERN_CONT "FAILED!\n");
  236. return rc;
  237. }
  238. if ((requesttype & USB_DIR_IN)) {
  239. printk(KERN_CONT "<<<");
  240. for (i = 0; i < size; i++)
  241. printk(KERN_CONT " %02x",
  242. ((unsigned char *)data)[i]);
  243. }
  244. printk(KERN_CONT "\n");
  245. }
  246. return rc;
  247. }
  248. /*
  249. * cx231xx_read_ctrl_reg()
  250. * reads data from the usb device specifying bRequest and wValue
  251. */
  252. int cx231xx_read_ctrl_reg(struct cx231xx *dev, u8 req, u16 reg,
  253. char *buf, int len)
  254. {
  255. u8 val = 0;
  256. int ret;
  257. int pipe = usb_rcvctrlpipe(dev->udev, 0);
  258. if (dev->state & DEV_DISCONNECTED)
  259. return -ENODEV;
  260. if (len > URB_MAX_CTRL_SIZE)
  261. return -EINVAL;
  262. switch (len) {
  263. case 1:
  264. val = ENABLE_ONE_BYTE;
  265. break;
  266. case 2:
  267. val = ENABLE_TWE_BYTE;
  268. break;
  269. case 3:
  270. val = ENABLE_THREE_BYTE;
  271. break;
  272. case 4:
  273. val = ENABLE_FOUR_BYTE;
  274. break;
  275. default:
  276. val = 0xFF; /* invalid option */
  277. }
  278. if (val == 0xFF)
  279. return -EINVAL;
  280. ret = __usb_control_msg(dev, pipe, req,
  281. USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  282. val, reg, buf, len, HZ);
  283. return ret;
  284. }
  285. int cx231xx_send_vendor_cmd(struct cx231xx *dev,
  286. struct VENDOR_REQUEST_IN *ven_req)
  287. {
  288. int ret;
  289. int pipe = 0;
  290. int unsend_size = 0;
  291. u8 *pdata;
  292. if (dev->state & DEV_DISCONNECTED)
  293. return -ENODEV;
  294. if ((ven_req->wLength > URB_MAX_CTRL_SIZE))
  295. return -EINVAL;
  296. if (ven_req->direction)
  297. pipe = usb_rcvctrlpipe(dev->udev, 0);
  298. else
  299. pipe = usb_sndctrlpipe(dev->udev, 0);
  300. /*
  301. * If the cx23102 read more than 4 bytes with i2c bus,
  302. * need chop to 4 byte per request
  303. */
  304. if ((ven_req->wLength > 4) && ((ven_req->bRequest == 0x4) ||
  305. (ven_req->bRequest == 0x5) ||
  306. (ven_req->bRequest == 0x6))) {
  307. unsend_size = 0;
  308. pdata = ven_req->pBuff;
  309. unsend_size = ven_req->wLength;
  310. /* the first package */
  311. ven_req->wValue = ven_req->wValue & 0xFFFB;
  312. ven_req->wValue = (ven_req->wValue & 0xFFBD) | 0x2;
  313. ret = __usb_control_msg(dev, pipe, ven_req->bRequest,
  314. ven_req->direction | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  315. ven_req->wValue, ven_req->wIndex, pdata,
  316. 0x0004, HZ);
  317. unsend_size = unsend_size - 4;
  318. /* the middle package */
  319. ven_req->wValue = (ven_req->wValue & 0xFFBD) | 0x42;
  320. while (unsend_size - 4 > 0) {
  321. pdata = pdata + 4;
  322. ret = __usb_control_msg(dev, pipe,
  323. ven_req->bRequest,
  324. ven_req->direction | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  325. ven_req->wValue, ven_req->wIndex, pdata,
  326. 0x0004, HZ);
  327. unsend_size = unsend_size - 4;
  328. }
  329. /* the last package */
  330. ven_req->wValue = (ven_req->wValue & 0xFFBD) | 0x40;
  331. pdata = pdata + 4;
  332. ret = __usb_control_msg(dev, pipe, ven_req->bRequest,
  333. ven_req->direction | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  334. ven_req->wValue, ven_req->wIndex, pdata,
  335. unsend_size, HZ);
  336. } else {
  337. ret = __usb_control_msg(dev, pipe, ven_req->bRequest,
  338. ven_req->direction | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  339. ven_req->wValue, ven_req->wIndex,
  340. ven_req->pBuff, ven_req->wLength, HZ);
  341. }
  342. return ret;
  343. }
  344. /*
  345. * cx231xx_write_ctrl_reg()
  346. * sends data to the usb device, specifying bRequest
  347. */
  348. int cx231xx_write_ctrl_reg(struct cx231xx *dev, u8 req, u16 reg, char *buf,
  349. int len)
  350. {
  351. u8 val = 0;
  352. int ret;
  353. int pipe = usb_sndctrlpipe(dev->udev, 0);
  354. if (dev->state & DEV_DISCONNECTED)
  355. return -ENODEV;
  356. if ((len < 1) || (len > URB_MAX_CTRL_SIZE))
  357. return -EINVAL;
  358. switch (len) {
  359. case 1:
  360. val = ENABLE_ONE_BYTE;
  361. break;
  362. case 2:
  363. val = ENABLE_TWE_BYTE;
  364. break;
  365. case 3:
  366. val = ENABLE_THREE_BYTE;
  367. break;
  368. case 4:
  369. val = ENABLE_FOUR_BYTE;
  370. break;
  371. default:
  372. val = 0xFF; /* invalid option */
  373. }
  374. if (val == 0xFF)
  375. return -EINVAL;
  376. if (reg_debug) {
  377. int byte;
  378. cx231xx_isocdbg("(pipe 0x%08x): "
  379. "OUT: %02x %02x %02x %02x %02x %02x %02x %02x >>>",
  380. pipe,
  381. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  382. req, 0, val, reg & 0xff,
  383. reg >> 8, len & 0xff, len >> 8);
  384. for (byte = 0; byte < len; byte++)
  385. cx231xx_isocdbg(" %02x", (unsigned char)buf[byte]);
  386. cx231xx_isocdbg("\n");
  387. }
  388. ret = __usb_control_msg(dev, pipe, req,
  389. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  390. val, reg, buf, len, HZ);
  391. return ret;
  392. }
  393. /****************************************************************
  394. * USB Alternate Setting functions *
  395. *****************************************************************/
  396. int cx231xx_set_video_alternate(struct cx231xx *dev)
  397. {
  398. int errCode, prev_alt = dev->video_mode.alt;
  399. unsigned int min_pkt_size = dev->width * 2 + 4;
  400. u32 usb_interface_index = 0;
  401. /* When image size is bigger than a certain value,
  402. the frame size should be increased, otherwise, only
  403. green screen will be received.
  404. */
  405. if (dev->width * 2 * dev->height > 720 * 240 * 2)
  406. min_pkt_size *= 2;
  407. if (dev->width > 360) {
  408. /* resolutions: 720,704,640 */
  409. dev->video_mode.alt = 3;
  410. } else if (dev->width > 180) {
  411. /* resolutions: 360,352,320,240 */
  412. dev->video_mode.alt = 2;
  413. } else if (dev->width > 0) {
  414. /* resolutions: 180,176,160,128,88 */
  415. dev->video_mode.alt = 1;
  416. } else {
  417. /* Change to alt0 BULK to release USB bandwidth */
  418. dev->video_mode.alt = 0;
  419. }
  420. if (dev->USE_ISO == 0)
  421. dev->video_mode.alt = 0;
  422. cx231xx_coredbg("dev->video_mode.alt= %d\n", dev->video_mode.alt);
  423. /* Get the correct video interface Index */
  424. usb_interface_index =
  425. dev->current_pcb_config.hs_config_info[0].interface_info.
  426. video_index + 1;
  427. if (dev->video_mode.alt != prev_alt) {
  428. cx231xx_coredbg("minimum isoc packet size: %u (alt=%d)\n",
  429. min_pkt_size, dev->video_mode.alt);
  430. if (dev->video_mode.alt_max_pkt_size != NULL)
  431. dev->video_mode.max_pkt_size =
  432. dev->video_mode.alt_max_pkt_size[dev->video_mode.alt];
  433. cx231xx_coredbg("setting alternate %d with wMaxPacketSize=%u\n",
  434. dev->video_mode.alt,
  435. dev->video_mode.max_pkt_size);
  436. errCode =
  437. usb_set_interface(dev->udev, usb_interface_index,
  438. dev->video_mode.alt);
  439. if (errCode < 0) {
  440. cx231xx_errdev
  441. ("cannot change alt number to %d (error=%i)\n",
  442. dev->video_mode.alt, errCode);
  443. return errCode;
  444. }
  445. }
  446. return 0;
  447. }
  448. int cx231xx_set_alt_setting(struct cx231xx *dev, u8 index, u8 alt)
  449. {
  450. int status = 0;
  451. u32 usb_interface_index = 0;
  452. u32 max_pkt_size = 0;
  453. switch (index) {
  454. case INDEX_TS1:
  455. usb_interface_index =
  456. dev->current_pcb_config.hs_config_info[0].interface_info.
  457. ts1_index + 1;
  458. dev->ts1_mode.alt = alt;
  459. if (dev->ts1_mode.alt_max_pkt_size != NULL)
  460. max_pkt_size = dev->ts1_mode.max_pkt_size =
  461. dev->ts1_mode.alt_max_pkt_size[dev->ts1_mode.alt];
  462. break;
  463. case INDEX_TS2:
  464. usb_interface_index =
  465. dev->current_pcb_config.hs_config_info[0].interface_info.
  466. ts2_index + 1;
  467. break;
  468. case INDEX_AUDIO:
  469. usb_interface_index =
  470. dev->current_pcb_config.hs_config_info[0].interface_info.
  471. audio_index + 1;
  472. dev->adev.alt = alt;
  473. if (dev->adev.alt_max_pkt_size != NULL)
  474. max_pkt_size = dev->adev.max_pkt_size =
  475. dev->adev.alt_max_pkt_size[dev->adev.alt];
  476. break;
  477. case INDEX_VIDEO:
  478. usb_interface_index =
  479. dev->current_pcb_config.hs_config_info[0].interface_info.
  480. video_index + 1;
  481. dev->video_mode.alt = alt;
  482. if (dev->video_mode.alt_max_pkt_size != NULL)
  483. max_pkt_size = dev->video_mode.max_pkt_size =
  484. dev->video_mode.alt_max_pkt_size[dev->video_mode.
  485. alt];
  486. break;
  487. case INDEX_VANC:
  488. if (dev->board.no_alt_vanc)
  489. return 0;
  490. usb_interface_index =
  491. dev->current_pcb_config.hs_config_info[0].interface_info.
  492. vanc_index + 1;
  493. dev->vbi_mode.alt = alt;
  494. if (dev->vbi_mode.alt_max_pkt_size != NULL)
  495. max_pkt_size = dev->vbi_mode.max_pkt_size =
  496. dev->vbi_mode.alt_max_pkt_size[dev->vbi_mode.alt];
  497. break;
  498. case INDEX_HANC:
  499. usb_interface_index =
  500. dev->current_pcb_config.hs_config_info[0].interface_info.
  501. hanc_index + 1;
  502. dev->sliced_cc_mode.alt = alt;
  503. if (dev->sliced_cc_mode.alt_max_pkt_size != NULL)
  504. max_pkt_size = dev->sliced_cc_mode.max_pkt_size =
  505. dev->sliced_cc_mode.alt_max_pkt_size[dev->
  506. sliced_cc_mode.
  507. alt];
  508. break;
  509. default:
  510. break;
  511. }
  512. if (alt > 0 && max_pkt_size == 0) {
  513. cx231xx_errdev
  514. ("can't change interface %d alt no. to %d: Max. Pkt size = 0\n",
  515. usb_interface_index, alt);
  516. /*To workaround error number=-71 on EP0 for videograbber,
  517. need add following codes.*/
  518. if (dev->board.no_alt_vanc)
  519. return -1;
  520. }
  521. cx231xx_coredbg("setting alternate %d with wMaxPacketSize=%u,"
  522. "Interface = %d\n", alt, max_pkt_size,
  523. usb_interface_index);
  524. if (usb_interface_index > 0) {
  525. status = usb_set_interface(dev->udev, usb_interface_index, alt);
  526. if (status < 0) {
  527. cx231xx_errdev
  528. ("can't change interface %d alt no. to %d (err=%i)\n",
  529. usb_interface_index, alt, status);
  530. return status;
  531. }
  532. }
  533. return status;
  534. }
  535. EXPORT_SYMBOL_GPL(cx231xx_set_alt_setting);
  536. int cx231xx_gpio_set(struct cx231xx *dev, struct cx231xx_reg_seq *gpio)
  537. {
  538. int rc = 0;
  539. if (!gpio)
  540. return rc;
  541. /* Send GPIO reset sequences specified at board entry */
  542. while (gpio->sleep >= 0) {
  543. rc = cx231xx_set_gpio_value(dev, gpio->bit, gpio->val);
  544. if (rc < 0)
  545. return rc;
  546. if (gpio->sleep > 0)
  547. msleep(gpio->sleep);
  548. gpio++;
  549. }
  550. return rc;
  551. }
  552. int cx231xx_demod_reset(struct cx231xx *dev)
  553. {
  554. u8 status = 0;
  555. u8 value[4] = { 0, 0, 0, 0 };
  556. status = cx231xx_read_ctrl_reg(dev, VRT_GET_REGISTER, PWR_CTL_EN,
  557. value, 4);
  558. cx231xx_coredbg("reg0x%x=0x%x 0x%x 0x%x 0x%x\n", PWR_CTL_EN,
  559. value[0], value[1], value[2], value[3]);
  560. cx231xx_coredbg("Enter cx231xx_demod_reset()\n");
  561. value[1] = (u8) 0x3;
  562. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  563. PWR_CTL_EN, value, 4);
  564. msleep(10);
  565. value[1] = (u8) 0x0;
  566. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  567. PWR_CTL_EN, value, 4);
  568. msleep(10);
  569. value[1] = (u8) 0x3;
  570. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  571. PWR_CTL_EN, value, 4);
  572. msleep(10);
  573. status = cx231xx_read_ctrl_reg(dev, VRT_GET_REGISTER, PWR_CTL_EN,
  574. value, 4);
  575. cx231xx_coredbg("reg0x%x=0x%x 0x%x 0x%x 0x%x\n", PWR_CTL_EN,
  576. value[0], value[1], value[2], value[3]);
  577. return status;
  578. }
  579. EXPORT_SYMBOL_GPL(cx231xx_demod_reset);
  580. int is_fw_load(struct cx231xx *dev)
  581. {
  582. return cx231xx_check_fw(dev);
  583. }
  584. EXPORT_SYMBOL_GPL(is_fw_load);
  585. int cx231xx_set_mode(struct cx231xx *dev, enum cx231xx_mode set_mode)
  586. {
  587. int errCode = 0;
  588. if (dev->mode == set_mode)
  589. return 0;
  590. if (set_mode == CX231XX_SUSPEND) {
  591. /* Set the chip in power saving mode */
  592. dev->mode = set_mode;
  593. }
  594. /* Resource is locked */
  595. if (dev->mode != CX231XX_SUSPEND)
  596. return -EINVAL;
  597. dev->mode = set_mode;
  598. if (dev->mode == CX231XX_DIGITAL_MODE)/* Set Digital power mode */ {
  599. /* set AGC mode to Digital */
  600. switch (dev->model) {
  601. case CX231XX_BOARD_CNXT_CARRAERA:
  602. case CX231XX_BOARD_CNXT_RDE_250:
  603. case CX231XX_BOARD_CNXT_SHELBY:
  604. case CX231XX_BOARD_CNXT_RDU_250:
  605. errCode = cx231xx_set_agc_analog_digital_mux_select(dev, 0);
  606. break;
  607. case CX231XX_BOARD_CNXT_RDE_253S:
  608. case CX231XX_BOARD_CNXT_RDU_253S:
  609. errCode = cx231xx_set_agc_analog_digital_mux_select(dev, 1);
  610. break;
  611. case CX231XX_BOARD_HAUPPAUGE_EXETER:
  612. errCode = cx231xx_set_power_mode(dev,
  613. POLARIS_AVMODE_DIGITAL);
  614. break;
  615. default:
  616. break;
  617. }
  618. } else/* Set Analog Power mode */ {
  619. /* set AGC mode to Analog */
  620. switch (dev->model) {
  621. case CX231XX_BOARD_CNXT_CARRAERA:
  622. case CX231XX_BOARD_CNXT_RDE_250:
  623. case CX231XX_BOARD_CNXT_SHELBY:
  624. case CX231XX_BOARD_CNXT_RDU_250:
  625. errCode = cx231xx_set_agc_analog_digital_mux_select(dev, 1);
  626. break;
  627. case CX231XX_BOARD_CNXT_RDE_253S:
  628. case CX231XX_BOARD_CNXT_RDU_253S:
  629. case CX231XX_BOARD_HAUPPAUGE_EXETER:
  630. case CX231XX_BOARD_PV_PLAYTV_USB_HYBRID:
  631. case CX231XX_BOARD_HAUPPAUGE_USB2_FM_PAL:
  632. case CX231XX_BOARD_HAUPPAUGE_USB2_FM_NTSC:
  633. errCode = cx231xx_set_agc_analog_digital_mux_select(dev, 0);
  634. break;
  635. default:
  636. break;
  637. }
  638. }
  639. return 0;
  640. }
  641. EXPORT_SYMBOL_GPL(cx231xx_set_mode);
  642. int cx231xx_ep5_bulkout(struct cx231xx *dev, u8 *firmware, u16 size)
  643. {
  644. int errCode = 0;
  645. int actlen, ret = -ENOMEM;
  646. u32 *buffer;
  647. buffer = kzalloc(4096, GFP_KERNEL);
  648. if (buffer == NULL) {
  649. cx231xx_info("out of mem\n");
  650. return -ENOMEM;
  651. }
  652. memcpy(&buffer[0], firmware, 4096);
  653. ret = usb_bulk_msg(dev->udev, usb_sndbulkpipe(dev->udev, 5),
  654. buffer, 4096, &actlen, 2000);
  655. if (ret)
  656. cx231xx_info("bulk message failed: %d (%d/%d)", ret,
  657. size, actlen);
  658. else {
  659. errCode = actlen != size ? -1 : 0;
  660. }
  661. kfree(buffer);
  662. return 0;
  663. }
  664. /*****************************************************************
  665. * URB Streaming functions *
  666. ******************************************************************/
  667. /*
  668. * IRQ callback, called by URB callback
  669. */
  670. static void cx231xx_isoc_irq_callback(struct urb *urb)
  671. {
  672. struct cx231xx_dmaqueue *dma_q = urb->context;
  673. struct cx231xx_video_mode *vmode =
  674. container_of(dma_q, struct cx231xx_video_mode, vidq);
  675. struct cx231xx *dev = container_of(vmode, struct cx231xx, video_mode);
  676. int rc, i;
  677. switch (urb->status) {
  678. case 0: /* success */
  679. case -ETIMEDOUT: /* NAK */
  680. break;
  681. case -ECONNRESET: /* kill */
  682. case -ENOENT:
  683. case -ESHUTDOWN:
  684. return;
  685. default: /* error */
  686. cx231xx_isocdbg("urb completition error %d.\n", urb->status);
  687. break;
  688. }
  689. /* Copy data from URB */
  690. spin_lock(&dev->video_mode.slock);
  691. rc = dev->video_mode.isoc_ctl.isoc_copy(dev, urb);
  692. spin_unlock(&dev->video_mode.slock);
  693. /* Reset urb buffers */
  694. for (i = 0; i < urb->number_of_packets; i++) {
  695. urb->iso_frame_desc[i].status = 0;
  696. urb->iso_frame_desc[i].actual_length = 0;
  697. }
  698. urb->status = 0;
  699. urb->status = usb_submit_urb(urb, GFP_ATOMIC);
  700. if (urb->status) {
  701. cx231xx_isocdbg("urb resubmit failed (error=%i)\n",
  702. urb->status);
  703. }
  704. }
  705. /*****************************************************************
  706. * URB Streaming functions *
  707. ******************************************************************/
  708. /*
  709. * IRQ callback, called by URB callback
  710. */
  711. static void cx231xx_bulk_irq_callback(struct urb *urb)
  712. {
  713. struct cx231xx_dmaqueue *dma_q = urb->context;
  714. struct cx231xx_video_mode *vmode =
  715. container_of(dma_q, struct cx231xx_video_mode, vidq);
  716. struct cx231xx *dev = container_of(vmode, struct cx231xx, video_mode);
  717. int rc;
  718. switch (urb->status) {
  719. case 0: /* success */
  720. case -ETIMEDOUT: /* NAK */
  721. break;
  722. case -ECONNRESET: /* kill */
  723. case -ENOENT:
  724. case -ESHUTDOWN:
  725. return;
  726. default: /* error */
  727. cx231xx_isocdbg("urb completition error %d.\n", urb->status);
  728. break;
  729. }
  730. /* Copy data from URB */
  731. spin_lock(&dev->video_mode.slock);
  732. rc = dev->video_mode.bulk_ctl.bulk_copy(dev, urb);
  733. spin_unlock(&dev->video_mode.slock);
  734. /* Reset urb buffers */
  735. urb->status = 0;
  736. urb->status = usb_submit_urb(urb, GFP_ATOMIC);
  737. if (urb->status) {
  738. cx231xx_isocdbg("urb resubmit failed (error=%i)\n",
  739. urb->status);
  740. }
  741. }
  742. /*
  743. * Stop and Deallocate URBs
  744. */
  745. void cx231xx_uninit_isoc(struct cx231xx *dev)
  746. {
  747. struct cx231xx_dmaqueue *dma_q = &dev->video_mode.vidq;
  748. struct urb *urb;
  749. int i;
  750. cx231xx_isocdbg("cx231xx: called cx231xx_uninit_isoc\n");
  751. dev->video_mode.isoc_ctl.nfields = -1;
  752. for (i = 0; i < dev->video_mode.isoc_ctl.num_bufs; i++) {
  753. urb = dev->video_mode.isoc_ctl.urb[i];
  754. if (urb) {
  755. if (!irqs_disabled())
  756. usb_kill_urb(urb);
  757. else
  758. usb_unlink_urb(urb);
  759. if (dev->video_mode.isoc_ctl.transfer_buffer[i]) {
  760. usb_free_coherent(dev->udev,
  761. urb->transfer_buffer_length,
  762. dev->video_mode.isoc_ctl.
  763. transfer_buffer[i],
  764. urb->transfer_dma);
  765. }
  766. usb_free_urb(urb);
  767. dev->video_mode.isoc_ctl.urb[i] = NULL;
  768. }
  769. dev->video_mode.isoc_ctl.transfer_buffer[i] = NULL;
  770. }
  771. kfree(dev->video_mode.isoc_ctl.urb);
  772. kfree(dev->video_mode.isoc_ctl.transfer_buffer);
  773. kfree(dma_q->p_left_data);
  774. dev->video_mode.isoc_ctl.urb = NULL;
  775. dev->video_mode.isoc_ctl.transfer_buffer = NULL;
  776. dev->video_mode.isoc_ctl.num_bufs = 0;
  777. dma_q->p_left_data = NULL;
  778. if (dev->mode_tv == 0)
  779. cx231xx_capture_start(dev, 0, Raw_Video);
  780. else
  781. cx231xx_capture_start(dev, 0, TS1_serial_mode);
  782. }
  783. EXPORT_SYMBOL_GPL(cx231xx_uninit_isoc);
  784. /*
  785. * Stop and Deallocate URBs
  786. */
  787. void cx231xx_uninit_bulk(struct cx231xx *dev)
  788. {
  789. struct urb *urb;
  790. int i;
  791. cx231xx_isocdbg("cx231xx: called cx231xx_uninit_bulk\n");
  792. dev->video_mode.bulk_ctl.nfields = -1;
  793. for (i = 0; i < dev->video_mode.bulk_ctl.num_bufs; i++) {
  794. urb = dev->video_mode.bulk_ctl.urb[i];
  795. if (urb) {
  796. if (!irqs_disabled())
  797. usb_kill_urb(urb);
  798. else
  799. usb_unlink_urb(urb);
  800. if (dev->video_mode.bulk_ctl.transfer_buffer[i]) {
  801. usb_free_coherent(dev->udev,
  802. urb->transfer_buffer_length,
  803. dev->video_mode.isoc_ctl.
  804. transfer_buffer[i],
  805. urb->transfer_dma);
  806. }
  807. usb_free_urb(urb);
  808. dev->video_mode.bulk_ctl.urb[i] = NULL;
  809. }
  810. dev->video_mode.bulk_ctl.transfer_buffer[i] = NULL;
  811. }
  812. kfree(dev->video_mode.bulk_ctl.urb);
  813. kfree(dev->video_mode.bulk_ctl.transfer_buffer);
  814. dev->video_mode.bulk_ctl.urb = NULL;
  815. dev->video_mode.bulk_ctl.transfer_buffer = NULL;
  816. dev->video_mode.bulk_ctl.num_bufs = 0;
  817. if (dev->mode_tv == 0)
  818. cx231xx_capture_start(dev, 0, Raw_Video);
  819. else
  820. cx231xx_capture_start(dev, 0, TS1_serial_mode);
  821. }
  822. EXPORT_SYMBOL_GPL(cx231xx_uninit_bulk);
  823. /*
  824. * Allocate URBs and start IRQ
  825. */
  826. int cx231xx_init_isoc(struct cx231xx *dev, int max_packets,
  827. int num_bufs, int max_pkt_size,
  828. int (*isoc_copy) (struct cx231xx *dev, struct urb *urb))
  829. {
  830. struct cx231xx_dmaqueue *dma_q = &dev->video_mode.vidq;
  831. int i;
  832. int sb_size, pipe;
  833. struct urb *urb;
  834. int j, k;
  835. int rc;
  836. /* De-allocates all pending stuff */
  837. cx231xx_uninit_isoc(dev);
  838. dma_q->p_left_data = kzalloc(4096, GFP_KERNEL);
  839. if (dma_q->p_left_data == NULL) {
  840. cx231xx_info("out of mem\n");
  841. return -ENOMEM;
  842. }
  843. dev->video_mode.isoc_ctl.isoc_copy = isoc_copy;
  844. dev->video_mode.isoc_ctl.num_bufs = num_bufs;
  845. dma_q->pos = 0;
  846. dma_q->is_partial_line = 0;
  847. dma_q->last_sav = 0;
  848. dma_q->current_field = -1;
  849. dma_q->field1_done = 0;
  850. dma_q->lines_per_field = dev->height / 2;
  851. dma_q->bytes_left_in_line = dev->width << 1;
  852. dma_q->lines_completed = 0;
  853. dma_q->mpeg_buffer_done = 0;
  854. dma_q->left_data_count = 0;
  855. dma_q->mpeg_buffer_completed = 0;
  856. dma_q->add_ps_package_head = CX231XX_NEED_ADD_PS_PACKAGE_HEAD;
  857. dma_q->ps_head[0] = 0x00;
  858. dma_q->ps_head[1] = 0x00;
  859. dma_q->ps_head[2] = 0x01;
  860. dma_q->ps_head[3] = 0xBA;
  861. for (i = 0; i < 8; i++)
  862. dma_q->partial_buf[i] = 0;
  863. dev->video_mode.isoc_ctl.urb =
  864. kzalloc(sizeof(void *) * num_bufs, GFP_KERNEL);
  865. if (!dev->video_mode.isoc_ctl.urb) {
  866. cx231xx_errdev("cannot alloc memory for usb buffers\n");
  867. return -ENOMEM;
  868. }
  869. dev->video_mode.isoc_ctl.transfer_buffer =
  870. kzalloc(sizeof(void *) * num_bufs, GFP_KERNEL);
  871. if (!dev->video_mode.isoc_ctl.transfer_buffer) {
  872. cx231xx_errdev("cannot allocate memory for usbtransfer\n");
  873. kfree(dev->video_mode.isoc_ctl.urb);
  874. return -ENOMEM;
  875. }
  876. dev->video_mode.isoc_ctl.max_pkt_size = max_pkt_size;
  877. dev->video_mode.isoc_ctl.buf = NULL;
  878. sb_size = max_packets * dev->video_mode.isoc_ctl.max_pkt_size;
  879. if (dev->mode_tv == 1)
  880. dev->video_mode.end_point_addr = 0x81;
  881. else
  882. dev->video_mode.end_point_addr = 0x84;
  883. /* allocate urbs and transfer buffers */
  884. for (i = 0; i < dev->video_mode.isoc_ctl.num_bufs; i++) {
  885. urb = usb_alloc_urb(max_packets, GFP_KERNEL);
  886. if (!urb) {
  887. cx231xx_err("cannot alloc isoc_ctl.urb %i\n", i);
  888. cx231xx_uninit_isoc(dev);
  889. return -ENOMEM;
  890. }
  891. dev->video_mode.isoc_ctl.urb[i] = urb;
  892. dev->video_mode.isoc_ctl.transfer_buffer[i] =
  893. usb_alloc_coherent(dev->udev, sb_size, GFP_KERNEL,
  894. &urb->transfer_dma);
  895. if (!dev->video_mode.isoc_ctl.transfer_buffer[i]) {
  896. cx231xx_err("unable to allocate %i bytes for transfer"
  897. " buffer %i%s\n",
  898. sb_size, i,
  899. in_interrupt() ? " while in int" : "");
  900. cx231xx_uninit_isoc(dev);
  901. return -ENOMEM;
  902. }
  903. memset(dev->video_mode.isoc_ctl.transfer_buffer[i], 0, sb_size);
  904. pipe =
  905. usb_rcvisocpipe(dev->udev, dev->video_mode.end_point_addr);
  906. usb_fill_int_urb(urb, dev->udev, pipe,
  907. dev->video_mode.isoc_ctl.transfer_buffer[i],
  908. sb_size, cx231xx_isoc_irq_callback, dma_q, 1);
  909. urb->number_of_packets = max_packets;
  910. urb->transfer_flags = URB_ISO_ASAP | URB_NO_TRANSFER_DMA_MAP;
  911. k = 0;
  912. for (j = 0; j < max_packets; j++) {
  913. urb->iso_frame_desc[j].offset = k;
  914. urb->iso_frame_desc[j].length =
  915. dev->video_mode.isoc_ctl.max_pkt_size;
  916. k += dev->video_mode.isoc_ctl.max_pkt_size;
  917. }
  918. }
  919. init_waitqueue_head(&dma_q->wq);
  920. /* submit urbs and enables IRQ */
  921. for (i = 0; i < dev->video_mode.isoc_ctl.num_bufs; i++) {
  922. rc = usb_submit_urb(dev->video_mode.isoc_ctl.urb[i],
  923. GFP_ATOMIC);
  924. if (rc) {
  925. cx231xx_err("submit of urb %i failed (error=%i)\n", i,
  926. rc);
  927. cx231xx_uninit_isoc(dev);
  928. return rc;
  929. }
  930. }
  931. if (dev->mode_tv == 0)
  932. cx231xx_capture_start(dev, 1, Raw_Video);
  933. else
  934. cx231xx_capture_start(dev, 1, TS1_serial_mode);
  935. return 0;
  936. }
  937. EXPORT_SYMBOL_GPL(cx231xx_init_isoc);
  938. /*
  939. * Allocate URBs and start IRQ
  940. */
  941. int cx231xx_init_bulk(struct cx231xx *dev, int max_packets,
  942. int num_bufs, int max_pkt_size,
  943. int (*bulk_copy) (struct cx231xx *dev, struct urb *urb))
  944. {
  945. struct cx231xx_dmaqueue *dma_q = &dev->video_mode.vidq;
  946. int i;
  947. int sb_size, pipe;
  948. struct urb *urb;
  949. int rc;
  950. dev->video_input = dev->video_input > 2 ? 2 : dev->video_input;
  951. cx231xx_coredbg("Setting Video mux to %d\n", dev->video_input);
  952. video_mux(dev, dev->video_input);
  953. /* De-allocates all pending stuff */
  954. cx231xx_uninit_bulk(dev);
  955. dev->video_mode.bulk_ctl.bulk_copy = bulk_copy;
  956. dev->video_mode.bulk_ctl.num_bufs = num_bufs;
  957. dma_q->pos = 0;
  958. dma_q->is_partial_line = 0;
  959. dma_q->last_sav = 0;
  960. dma_q->current_field = -1;
  961. dma_q->field1_done = 0;
  962. dma_q->lines_per_field = dev->height / 2;
  963. dma_q->bytes_left_in_line = dev->width << 1;
  964. dma_q->lines_completed = 0;
  965. dma_q->mpeg_buffer_done = 0;
  966. dma_q->left_data_count = 0;
  967. dma_q->mpeg_buffer_completed = 0;
  968. dma_q->ps_head[0] = 0x00;
  969. dma_q->ps_head[1] = 0x00;
  970. dma_q->ps_head[2] = 0x01;
  971. dma_q->ps_head[3] = 0xBA;
  972. for (i = 0; i < 8; i++)
  973. dma_q->partial_buf[i] = 0;
  974. dev->video_mode.bulk_ctl.urb =
  975. kzalloc(sizeof(void *) * num_bufs, GFP_KERNEL);
  976. if (!dev->video_mode.bulk_ctl.urb) {
  977. cx231xx_errdev("cannot alloc memory for usb buffers\n");
  978. return -ENOMEM;
  979. }
  980. dev->video_mode.bulk_ctl.transfer_buffer =
  981. kzalloc(sizeof(void *) * num_bufs, GFP_KERNEL);
  982. if (!dev->video_mode.bulk_ctl.transfer_buffer) {
  983. cx231xx_errdev("cannot allocate memory for usbtransfer\n");
  984. kfree(dev->video_mode.bulk_ctl.urb);
  985. return -ENOMEM;
  986. }
  987. dev->video_mode.bulk_ctl.max_pkt_size = max_pkt_size;
  988. dev->video_mode.bulk_ctl.buf = NULL;
  989. sb_size = max_packets * dev->video_mode.bulk_ctl.max_pkt_size;
  990. if (dev->mode_tv == 1)
  991. dev->video_mode.end_point_addr = 0x81;
  992. else
  993. dev->video_mode.end_point_addr = 0x84;
  994. /* allocate urbs and transfer buffers */
  995. for (i = 0; i < dev->video_mode.bulk_ctl.num_bufs; i++) {
  996. urb = usb_alloc_urb(0, GFP_KERNEL);
  997. if (!urb) {
  998. cx231xx_err("cannot alloc bulk_ctl.urb %i\n", i);
  999. cx231xx_uninit_bulk(dev);
  1000. return -ENOMEM;
  1001. }
  1002. dev->video_mode.bulk_ctl.urb[i] = urb;
  1003. urb->transfer_flags = URB_NO_TRANSFER_DMA_MAP;
  1004. dev->video_mode.bulk_ctl.transfer_buffer[i] =
  1005. usb_alloc_coherent(dev->udev, sb_size, GFP_KERNEL,
  1006. &urb->transfer_dma);
  1007. if (!dev->video_mode.bulk_ctl.transfer_buffer[i]) {
  1008. cx231xx_err("unable to allocate %i bytes for transfer"
  1009. " buffer %i%s\n",
  1010. sb_size, i,
  1011. in_interrupt() ? " while in int" : "");
  1012. cx231xx_uninit_bulk(dev);
  1013. return -ENOMEM;
  1014. }
  1015. memset(dev->video_mode.bulk_ctl.transfer_buffer[i], 0, sb_size);
  1016. pipe = usb_rcvbulkpipe(dev->udev,
  1017. dev->video_mode.end_point_addr);
  1018. usb_fill_bulk_urb(urb, dev->udev, pipe,
  1019. dev->video_mode.bulk_ctl.transfer_buffer[i],
  1020. sb_size, cx231xx_bulk_irq_callback, dma_q);
  1021. }
  1022. init_waitqueue_head(&dma_q->wq);
  1023. /* submit urbs and enables IRQ */
  1024. for (i = 0; i < dev->video_mode.bulk_ctl.num_bufs; i++) {
  1025. rc = usb_submit_urb(dev->video_mode.bulk_ctl.urb[i],
  1026. GFP_ATOMIC);
  1027. if (rc) {
  1028. cx231xx_err("submit of urb %i failed (error=%i)\n", i,
  1029. rc);
  1030. cx231xx_uninit_bulk(dev);
  1031. return rc;
  1032. }
  1033. }
  1034. if (dev->mode_tv == 0)
  1035. cx231xx_capture_start(dev, 1, Raw_Video);
  1036. else
  1037. cx231xx_capture_start(dev, 1, TS1_serial_mode);
  1038. return 0;
  1039. }
  1040. EXPORT_SYMBOL_GPL(cx231xx_init_bulk);
  1041. void cx231xx_stop_TS1(struct cx231xx *dev)
  1042. {
  1043. int status = 0;
  1044. u8 val[4] = { 0, 0, 0, 0 };
  1045. val[0] = 0x00;
  1046. val[1] = 0x03;
  1047. val[2] = 0x00;
  1048. val[3] = 0x00;
  1049. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  1050. TS_MODE_REG, val, 4);
  1051. val[0] = 0x00;
  1052. val[1] = 0x70;
  1053. val[2] = 0x04;
  1054. val[3] = 0x00;
  1055. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  1056. TS1_CFG_REG, val, 4);
  1057. }
  1058. /* EXPORT_SYMBOL_GPL(cx231xx_stop_TS1); */
  1059. void cx231xx_start_TS1(struct cx231xx *dev)
  1060. {
  1061. int status = 0;
  1062. u8 val[4] = { 0, 0, 0, 0 };
  1063. val[0] = 0x03;
  1064. val[1] = 0x03;
  1065. val[2] = 0x00;
  1066. val[3] = 0x00;
  1067. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  1068. TS_MODE_REG, val, 4);
  1069. val[0] = 0x04;
  1070. val[1] = 0xA3;
  1071. val[2] = 0x3B;
  1072. val[3] = 0x00;
  1073. status = cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER,
  1074. TS1_CFG_REG, val, 4);
  1075. }
  1076. /* EXPORT_SYMBOL_GPL(cx231xx_start_TS1); */
  1077. /*****************************************************************
  1078. * Device Init/UnInit functions *
  1079. ******************************************************************/
  1080. int cx231xx_dev_init(struct cx231xx *dev)
  1081. {
  1082. int errCode = 0;
  1083. /* Initialize I2C bus */
  1084. /* External Master 1 Bus */
  1085. dev->i2c_bus[0].nr = 0;
  1086. dev->i2c_bus[0].dev = dev;
  1087. dev->i2c_bus[0].i2c_period = I2C_SPEED_100K; /* 100 KHz */
  1088. dev->i2c_bus[0].i2c_nostop = 0;
  1089. dev->i2c_bus[0].i2c_reserve = 0;
  1090. /* External Master 2 Bus */
  1091. dev->i2c_bus[1].nr = 1;
  1092. dev->i2c_bus[1].dev = dev;
  1093. dev->i2c_bus[1].i2c_period = I2C_SPEED_100K; /* 100 KHz */
  1094. dev->i2c_bus[1].i2c_nostop = 0;
  1095. dev->i2c_bus[1].i2c_reserve = 0;
  1096. /* Internal Master 3 Bus */
  1097. dev->i2c_bus[2].nr = 2;
  1098. dev->i2c_bus[2].dev = dev;
  1099. dev->i2c_bus[2].i2c_period = I2C_SPEED_100K; /* 100kHz */
  1100. dev->i2c_bus[2].i2c_nostop = 0;
  1101. dev->i2c_bus[2].i2c_reserve = 0;
  1102. /* register I2C buses */
  1103. cx231xx_i2c_register(&dev->i2c_bus[0]);
  1104. cx231xx_i2c_register(&dev->i2c_bus[1]);
  1105. cx231xx_i2c_register(&dev->i2c_bus[2]);
  1106. /* init hardware */
  1107. /* Note : with out calling set power mode function,
  1108. afe can not be set up correctly */
  1109. if (dev->board.external_av) {
  1110. errCode = cx231xx_set_power_mode(dev,
  1111. POLARIS_AVMODE_ENXTERNAL_AV);
  1112. if (errCode < 0) {
  1113. cx231xx_errdev
  1114. ("%s: Failed to set Power - errCode [%d]!\n",
  1115. __func__, errCode);
  1116. return errCode;
  1117. }
  1118. } else {
  1119. errCode = cx231xx_set_power_mode(dev,
  1120. POLARIS_AVMODE_ANALOGT_TV);
  1121. if (errCode < 0) {
  1122. cx231xx_errdev
  1123. ("%s: Failed to set Power - errCode [%d]!\n",
  1124. __func__, errCode);
  1125. return errCode;
  1126. }
  1127. }
  1128. /* reset the Tuner, if it is a Xceive tuner */
  1129. if ((dev->board.tuner_type == TUNER_XC5000) ||
  1130. (dev->board.tuner_type == TUNER_XC2028))
  1131. cx231xx_gpio_set(dev, dev->board.tuner_gpio);
  1132. /* initialize Colibri block */
  1133. errCode = cx231xx_afe_init_super_block(dev, 0x23c);
  1134. if (errCode < 0) {
  1135. cx231xx_errdev
  1136. ("%s: cx231xx_afe init super block - errCode [%d]!\n",
  1137. __func__, errCode);
  1138. return errCode;
  1139. }
  1140. errCode = cx231xx_afe_init_channels(dev);
  1141. if (errCode < 0) {
  1142. cx231xx_errdev
  1143. ("%s: cx231xx_afe init channels - errCode [%d]!\n",
  1144. __func__, errCode);
  1145. return errCode;
  1146. }
  1147. /* Set DIF in By pass mode */
  1148. errCode = cx231xx_dif_set_standard(dev, DIF_USE_BASEBAND);
  1149. if (errCode < 0) {
  1150. cx231xx_errdev
  1151. ("%s: cx231xx_dif set to By pass mode - errCode [%d]!\n",
  1152. __func__, errCode);
  1153. return errCode;
  1154. }
  1155. /* I2S block related functions */
  1156. errCode = cx231xx_i2s_blk_initialize(dev);
  1157. if (errCode < 0) {
  1158. cx231xx_errdev
  1159. ("%s: cx231xx_i2s block initialize - errCode [%d]!\n",
  1160. __func__, errCode);
  1161. return errCode;
  1162. }
  1163. /* init control pins */
  1164. errCode = cx231xx_init_ctrl_pin_status(dev);
  1165. if (errCode < 0) {
  1166. cx231xx_errdev("%s: cx231xx_init ctrl pins - errCode [%d]!\n",
  1167. __func__, errCode);
  1168. return errCode;
  1169. }
  1170. /* set AGC mode to Analog */
  1171. switch (dev->model) {
  1172. case CX231XX_BOARD_CNXT_CARRAERA:
  1173. case CX231XX_BOARD_CNXT_RDE_250:
  1174. case CX231XX_BOARD_CNXT_SHELBY:
  1175. case CX231XX_BOARD_CNXT_RDU_250:
  1176. errCode = cx231xx_set_agc_analog_digital_mux_select(dev, 1);
  1177. break;
  1178. case CX231XX_BOARD_CNXT_RDE_253S:
  1179. case CX231XX_BOARD_CNXT_RDU_253S:
  1180. case CX231XX_BOARD_HAUPPAUGE_EXETER:
  1181. case CX231XX_BOARD_PV_PLAYTV_USB_HYBRID:
  1182. case CX231XX_BOARD_HAUPPAUGE_USB2_FM_PAL:
  1183. case CX231XX_BOARD_HAUPPAUGE_USB2_FM_NTSC:
  1184. errCode = cx231xx_set_agc_analog_digital_mux_select(dev, 0);
  1185. break;
  1186. default:
  1187. break;
  1188. }
  1189. if (errCode < 0) {
  1190. cx231xx_errdev
  1191. ("%s: cx231xx_AGC mode to Analog - errCode [%d]!\n",
  1192. __func__, errCode);
  1193. return errCode;
  1194. }
  1195. /* set all alternate settings to zero initially */
  1196. cx231xx_set_alt_setting(dev, INDEX_VIDEO, 0);
  1197. cx231xx_set_alt_setting(dev, INDEX_VANC, 0);
  1198. cx231xx_set_alt_setting(dev, INDEX_HANC, 0);
  1199. if (dev->board.has_dvb)
  1200. cx231xx_set_alt_setting(dev, INDEX_TS1, 0);
  1201. /* set the I2C master port to 3 on channel 1 */
  1202. errCode = cx231xx_enable_i2c_port_3(dev, true);
  1203. return errCode;
  1204. }
  1205. EXPORT_SYMBOL_GPL(cx231xx_dev_init);
  1206. void cx231xx_dev_uninit(struct cx231xx *dev)
  1207. {
  1208. /* Un Initialize I2C bus */
  1209. cx231xx_i2c_unregister(&dev->i2c_bus[2]);
  1210. cx231xx_i2c_unregister(&dev->i2c_bus[1]);
  1211. cx231xx_i2c_unregister(&dev->i2c_bus[0]);
  1212. }
  1213. EXPORT_SYMBOL_GPL(cx231xx_dev_uninit);
  1214. /*****************************************************************
  1215. * G P I O related functions *
  1216. ******************************************************************/
  1217. int cx231xx_send_gpio_cmd(struct cx231xx *dev, u32 gpio_bit, u8 *gpio_val,
  1218. u8 len, u8 request, u8 direction)
  1219. {
  1220. int status = 0;
  1221. struct VENDOR_REQUEST_IN ven_req;
  1222. /* Set wValue */
  1223. ven_req.wValue = (u16) (gpio_bit >> 16 & 0xffff);
  1224. /* set request */
  1225. if (!request) {
  1226. if (direction)
  1227. ven_req.bRequest = VRT_GET_GPIO; /* 0x8 gpio */
  1228. else
  1229. ven_req.bRequest = VRT_SET_GPIO; /* 0x9 gpio */
  1230. } else {
  1231. if (direction)
  1232. ven_req.bRequest = VRT_GET_GPIE; /* 0xa gpie */
  1233. else
  1234. ven_req.bRequest = VRT_SET_GPIE; /* 0xb gpie */
  1235. }
  1236. /* set index value */
  1237. ven_req.wIndex = (u16) (gpio_bit & 0xffff);
  1238. /* set wLength value */
  1239. ven_req.wLength = len;
  1240. /* set bData value */
  1241. ven_req.bData = 0;
  1242. /* set the buffer for read / write */
  1243. ven_req.pBuff = gpio_val;
  1244. /* set the direction */
  1245. if (direction) {
  1246. ven_req.direction = USB_DIR_IN;
  1247. memset(ven_req.pBuff, 0x00, ven_req.wLength);
  1248. } else
  1249. ven_req.direction = USB_DIR_OUT;
  1250. /* call common vendor command request */
  1251. status = cx231xx_send_vendor_cmd(dev, &ven_req);
  1252. if (status < 0) {
  1253. cx231xx_info
  1254. ("UsbInterface::sendCommand, failed with status -%d\n",
  1255. status);
  1256. }
  1257. return status;
  1258. }
  1259. EXPORT_SYMBOL_GPL(cx231xx_send_gpio_cmd);
  1260. /*****************************************************************
  1261. * C O N T R O L - Register R E A D / W R I T E functions *
  1262. *****************************************************************/
  1263. int cx231xx_mode_register(struct cx231xx *dev, u16 address, u32 mode)
  1264. {
  1265. u8 value[4] = { 0x0, 0x0, 0x0, 0x0 };
  1266. u32 tmp = 0;
  1267. int status = 0;
  1268. status =
  1269. cx231xx_read_ctrl_reg(dev, VRT_GET_REGISTER, address, value, 4);
  1270. if (status < 0)
  1271. return status;
  1272. tmp = *((u32 *) value);
  1273. tmp |= mode;
  1274. value[0] = (u8) tmp;
  1275. value[1] = (u8) (tmp >> 8);
  1276. value[2] = (u8) (tmp >> 16);
  1277. value[3] = (u8) (tmp >> 24);
  1278. status =
  1279. cx231xx_write_ctrl_reg(dev, VRT_SET_REGISTER, address, value, 4);
  1280. return status;
  1281. }
  1282. /*****************************************************************
  1283. * I 2 C Internal C O N T R O L functions *
  1284. *****************************************************************/
  1285. int cx231xx_read_i2c_master(struct cx231xx *dev, u8 dev_addr, u16 saddr,
  1286. u8 saddr_len, u32 *data, u8 data_len, int master)
  1287. {
  1288. int status = 0;
  1289. struct cx231xx_i2c_xfer_data req_data;
  1290. u8 value[64] = "0";
  1291. if (saddr_len == 0)
  1292. saddr = 0;
  1293. else if (saddr_len == 1)
  1294. saddr &= 0xff;
  1295. /* prepare xfer_data struct */
  1296. req_data.dev_addr = dev_addr >> 1;
  1297. req_data.direction = I2C_M_RD;
  1298. req_data.saddr_len = saddr_len;
  1299. req_data.saddr_dat = saddr;
  1300. req_data.buf_size = data_len;
  1301. req_data.p_buffer = (u8 *) value;
  1302. /* usb send command */
  1303. if (master == 0)
  1304. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[0],
  1305. &req_data);
  1306. else if (master == 1)
  1307. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[1],
  1308. &req_data);
  1309. else if (master == 2)
  1310. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[2],
  1311. &req_data);
  1312. if (status >= 0) {
  1313. /* Copy the data read back to main buffer */
  1314. if (data_len == 1)
  1315. *data = value[0];
  1316. else if (data_len == 4)
  1317. *data =
  1318. value[0] | value[1] << 8 | value[2] << 16 | value[3]
  1319. << 24;
  1320. else if (data_len > 4)
  1321. *data = value[saddr];
  1322. }
  1323. return status;
  1324. }
  1325. int cx231xx_write_i2c_master(struct cx231xx *dev, u8 dev_addr, u16 saddr,
  1326. u8 saddr_len, u32 data, u8 data_len, int master)
  1327. {
  1328. int status = 0;
  1329. u8 value[4] = { 0, 0, 0, 0 };
  1330. struct cx231xx_i2c_xfer_data req_data;
  1331. value[0] = (u8) data;
  1332. value[1] = (u8) (data >> 8);
  1333. value[2] = (u8) (data >> 16);
  1334. value[3] = (u8) (data >> 24);
  1335. if (saddr_len == 0)
  1336. saddr = 0;
  1337. else if (saddr_len == 1)
  1338. saddr &= 0xff;
  1339. /* prepare xfer_data struct */
  1340. req_data.dev_addr = dev_addr >> 1;
  1341. req_data.direction = 0;
  1342. req_data.saddr_len = saddr_len;
  1343. req_data.saddr_dat = saddr;
  1344. req_data.buf_size = data_len;
  1345. req_data.p_buffer = value;
  1346. /* usb send command */
  1347. if (master == 0)
  1348. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[0],
  1349. &req_data);
  1350. else if (master == 1)
  1351. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[1],
  1352. &req_data);
  1353. else if (master == 2)
  1354. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[2],
  1355. &req_data);
  1356. return status;
  1357. }
  1358. int cx231xx_read_i2c_data(struct cx231xx *dev, u8 dev_addr, u16 saddr,
  1359. u8 saddr_len, u32 *data, u8 data_len)
  1360. {
  1361. int status = 0;
  1362. struct cx231xx_i2c_xfer_data req_data;
  1363. u8 value[4] = { 0, 0, 0, 0 };
  1364. if (saddr_len == 0)
  1365. saddr = 0;
  1366. else if (saddr_len == 1)
  1367. saddr &= 0xff;
  1368. /* prepare xfer_data struct */
  1369. req_data.dev_addr = dev_addr >> 1;
  1370. req_data.direction = I2C_M_RD;
  1371. req_data.saddr_len = saddr_len;
  1372. req_data.saddr_dat = saddr;
  1373. req_data.buf_size = data_len;
  1374. req_data.p_buffer = (u8 *) value;
  1375. /* usb send command */
  1376. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[0], &req_data);
  1377. if (status >= 0) {
  1378. /* Copy the data read back to main buffer */
  1379. if (data_len == 1)
  1380. *data = value[0];
  1381. else
  1382. *data =
  1383. value[0] | value[1] << 8 | value[2] << 16 | value[3]
  1384. << 24;
  1385. }
  1386. return status;
  1387. }
  1388. int cx231xx_write_i2c_data(struct cx231xx *dev, u8 dev_addr, u16 saddr,
  1389. u8 saddr_len, u32 data, u8 data_len)
  1390. {
  1391. int status = 0;
  1392. u8 value[4] = { 0, 0, 0, 0 };
  1393. struct cx231xx_i2c_xfer_data req_data;
  1394. value[0] = (u8) data;
  1395. value[1] = (u8) (data >> 8);
  1396. value[2] = (u8) (data >> 16);
  1397. value[3] = (u8) (data >> 24);
  1398. if (saddr_len == 0)
  1399. saddr = 0;
  1400. else if (saddr_len == 1)
  1401. saddr &= 0xff;
  1402. /* prepare xfer_data struct */
  1403. req_data.dev_addr = dev_addr >> 1;
  1404. req_data.direction = 0;
  1405. req_data.saddr_len = saddr_len;
  1406. req_data.saddr_dat = saddr;
  1407. req_data.buf_size = data_len;
  1408. req_data.p_buffer = value;
  1409. /* usb send command */
  1410. status = dev->cx231xx_send_usb_command(&dev->i2c_bus[0], &req_data);
  1411. return status;
  1412. }
  1413. int cx231xx_reg_mask_write(struct cx231xx *dev, u8 dev_addr, u8 size,
  1414. u16 register_address, u8 bit_start, u8 bit_end,
  1415. u32 value)
  1416. {
  1417. int status = 0;
  1418. u32 tmp;
  1419. u32 mask = 0;
  1420. int i;
  1421. if (bit_start > (size - 1) || bit_end > (size - 1))
  1422. return -1;
  1423. if (size == 8) {
  1424. status =
  1425. cx231xx_read_i2c_data(dev, dev_addr, register_address, 2,
  1426. &tmp, 1);
  1427. } else {
  1428. status =
  1429. cx231xx_read_i2c_data(dev, dev_addr, register_address, 2,
  1430. &tmp, 4);
  1431. }
  1432. if (status < 0)
  1433. return status;
  1434. mask = 1 << bit_end;
  1435. for (i = bit_end; i > bit_start && i > 0; i--)
  1436. mask = mask + (1 << (i - 1));
  1437. value <<= bit_start;
  1438. if (size == 8) {
  1439. tmp &= ~mask;
  1440. tmp |= value;
  1441. tmp &= 0xff;
  1442. status =
  1443. cx231xx_write_i2c_data(dev, dev_addr, register_address, 2,
  1444. tmp, 1);
  1445. } else {
  1446. tmp &= ~mask;
  1447. tmp |= value;
  1448. status =
  1449. cx231xx_write_i2c_data(dev, dev_addr, register_address, 2,
  1450. tmp, 4);
  1451. }
  1452. return status;
  1453. }
  1454. int cx231xx_read_modify_write_i2c_dword(struct cx231xx *dev, u8 dev_addr,
  1455. u16 saddr, u32 mask, u32 value)
  1456. {
  1457. u32 temp;
  1458. int status = 0;
  1459. status = cx231xx_read_i2c_data(dev, dev_addr, saddr, 2, &temp, 4);
  1460. if (status < 0)
  1461. return status;
  1462. temp &= ~mask;
  1463. temp |= value;
  1464. status = cx231xx_write_i2c_data(dev, dev_addr, saddr, 2, temp, 4);
  1465. return status;
  1466. }
  1467. u32 cx231xx_set_field(u32 field_mask, u32 data)
  1468. {
  1469. u32 temp;
  1470. for (temp = field_mask; (temp & 1) == 0; temp >>= 1)
  1471. data <<= 1;
  1472. return data;
  1473. }