pwc-ctrl.c 39 KB

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  1. /* Driver for Philips webcam
  2. Functions that send various control messages to the webcam, including
  3. video modes.
  4. (C) 1999-2003 Nemosoft Unv.
  5. (C) 2004-2006 Luc Saillard (luc@saillard.org)
  6. NOTE: this version of pwc is an unofficial (modified) release of pwc & pcwx
  7. driver and thus may have bugs that are not present in the original version.
  8. Please send bug reports and support requests to <luc@saillard.org>.
  9. NOTE: this version of pwc is an unofficial (modified) release of pwc & pcwx
  10. driver and thus may have bugs that are not present in the original version.
  11. Please send bug reports and support requests to <luc@saillard.org>.
  12. The decompression routines have been implemented by reverse-engineering the
  13. Nemosoft binary pwcx module. Caveat emptor.
  14. This program is free software; you can redistribute it and/or modify
  15. it under the terms of the GNU General Public License as published by
  16. the Free Software Foundation; either version 2 of the License, or
  17. (at your option) any later version.
  18. This program is distributed in the hope that it will be useful,
  19. but WITHOUT ANY WARRANTY; without even the implied warranty of
  20. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  21. GNU General Public License for more details.
  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. */
  26. /*
  27. Changes
  28. 2001/08/03 Alvarado Added methods for changing white balance and
  29. red/green gains
  30. */
  31. /* Control functions for the cam; brightness, contrast, video mode, etc. */
  32. #ifdef __KERNEL__
  33. #include <asm/uaccess.h>
  34. #endif
  35. #include <asm/errno.h>
  36. #include "pwc.h"
  37. #include "pwc-uncompress.h"
  38. #include "pwc-kiara.h"
  39. #include "pwc-timon.h"
  40. #include "pwc-dec1.h"
  41. #include "pwc-dec23.h"
  42. /* Request types: video */
  43. #define SET_LUM_CTL 0x01
  44. #define GET_LUM_CTL 0x02
  45. #define SET_CHROM_CTL 0x03
  46. #define GET_CHROM_CTL 0x04
  47. #define SET_STATUS_CTL 0x05
  48. #define GET_STATUS_CTL 0x06
  49. #define SET_EP_STREAM_CTL 0x07
  50. #define GET_EP_STREAM_CTL 0x08
  51. #define GET_XX_CTL 0x09
  52. #define SET_XX_CTL 0x0A
  53. #define GET_XY_CTL 0x0B
  54. #define SET_XY_CTL 0x0C
  55. #define SET_MPT_CTL 0x0D
  56. #define GET_MPT_CTL 0x0E
  57. /* Selectors for the Luminance controls [GS]ET_LUM_CTL */
  58. #define AGC_MODE_FORMATTER 0x2000
  59. #define PRESET_AGC_FORMATTER 0x2100
  60. #define SHUTTER_MODE_FORMATTER 0x2200
  61. #define PRESET_SHUTTER_FORMATTER 0x2300
  62. #define PRESET_CONTOUR_FORMATTER 0x2400
  63. #define AUTO_CONTOUR_FORMATTER 0x2500
  64. #define BACK_LIGHT_COMPENSATION_FORMATTER 0x2600
  65. #define CONTRAST_FORMATTER 0x2700
  66. #define DYNAMIC_NOISE_CONTROL_FORMATTER 0x2800
  67. #define FLICKERLESS_MODE_FORMATTER 0x2900
  68. #define AE_CONTROL_SPEED 0x2A00
  69. #define BRIGHTNESS_FORMATTER 0x2B00
  70. #define GAMMA_FORMATTER 0x2C00
  71. /* Selectors for the Chrominance controls [GS]ET_CHROM_CTL */
  72. #define WB_MODE_FORMATTER 0x1000
  73. #define AWB_CONTROL_SPEED_FORMATTER 0x1100
  74. #define AWB_CONTROL_DELAY_FORMATTER 0x1200
  75. #define PRESET_MANUAL_RED_GAIN_FORMATTER 0x1300
  76. #define PRESET_MANUAL_BLUE_GAIN_FORMATTER 0x1400
  77. #define COLOUR_MODE_FORMATTER 0x1500
  78. #define SATURATION_MODE_FORMATTER1 0x1600
  79. #define SATURATION_MODE_FORMATTER2 0x1700
  80. /* Selectors for the Status controls [GS]ET_STATUS_CTL */
  81. #define SAVE_USER_DEFAULTS_FORMATTER 0x0200
  82. #define RESTORE_USER_DEFAULTS_FORMATTER 0x0300
  83. #define RESTORE_FACTORY_DEFAULTS_FORMATTER 0x0400
  84. #define READ_AGC_FORMATTER 0x0500
  85. #define READ_SHUTTER_FORMATTER 0x0600
  86. #define READ_RED_GAIN_FORMATTER 0x0700
  87. #define READ_BLUE_GAIN_FORMATTER 0x0800
  88. #define GET_STATUS_B00 0x0B00
  89. #define SENSOR_TYPE_FORMATTER1 0x0C00
  90. #define GET_STATUS_3000 0x3000
  91. #define READ_RAW_Y_MEAN_FORMATTER 0x3100
  92. #define SET_POWER_SAVE_MODE_FORMATTER 0x3200
  93. #define MIRROR_IMAGE_FORMATTER 0x3300
  94. #define LED_FORMATTER 0x3400
  95. #define LOWLIGHT 0x3500
  96. #define GET_STATUS_3600 0x3600
  97. #define SENSOR_TYPE_FORMATTER2 0x3700
  98. #define GET_STATUS_3800 0x3800
  99. #define GET_STATUS_4000 0x4000
  100. #define GET_STATUS_4100 0x4100 /* Get */
  101. #define CTL_STATUS_4200 0x4200 /* [GS] 1 */
  102. /* Formatters for the Video Endpoint controls [GS]ET_EP_STREAM_CTL */
  103. #define VIDEO_OUTPUT_CONTROL_FORMATTER 0x0100
  104. /* Formatters for the motorized pan & tilt [GS]ET_MPT_CTL */
  105. #define PT_RELATIVE_CONTROL_FORMATTER 0x01
  106. #define PT_RESET_CONTROL_FORMATTER 0x02
  107. #define PT_STATUS_FORMATTER 0x03
  108. static const char *size2name[PSZ_MAX] =
  109. {
  110. "subQCIF",
  111. "QSIF",
  112. "QCIF",
  113. "SIF",
  114. "CIF",
  115. "VGA",
  116. };
  117. /********/
  118. /* Entries for the Nala (645/646) camera; the Nala doesn't have compression
  119. preferences, so you either get compressed or non-compressed streams.
  120. An alternate value of 0 means this mode is not available at all.
  121. */
  122. #define PWC_FPS_MAX_NALA 8
  123. struct Nala_table_entry {
  124. char alternate; /* USB alternate setting */
  125. int compressed; /* Compressed yes/no */
  126. unsigned char mode[3]; /* precomputed mode table */
  127. };
  128. static unsigned int Nala_fps_vector[PWC_FPS_MAX_NALA] = { 4, 5, 7, 10, 12, 15, 20, 24 };
  129. static struct Nala_table_entry Nala_table[PSZ_MAX][PWC_FPS_MAX_NALA] =
  130. {
  131. #include "pwc-nala.h"
  132. };
  133. static void pwc_set_image_buffer_size(struct pwc_device *pdev);
  134. /****************************************************************************/
  135. static int _send_control_msg(struct pwc_device *pdev,
  136. u8 request, u16 value, int index, void *buf, int buflen, int timeout)
  137. {
  138. int rc;
  139. void *kbuf = NULL;
  140. if (buflen) {
  141. kbuf = kmalloc(buflen, GFP_KERNEL); /* not allowed on stack */
  142. if (kbuf == NULL)
  143. return -ENOMEM;
  144. memcpy(kbuf, buf, buflen);
  145. }
  146. rc = usb_control_msg(pdev->udev, usb_sndctrlpipe(pdev->udev, 0),
  147. request,
  148. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  149. value,
  150. index,
  151. kbuf, buflen, timeout);
  152. kfree(kbuf);
  153. return rc;
  154. }
  155. static int recv_control_msg(struct pwc_device *pdev,
  156. u8 request, u16 value, void *buf, int buflen)
  157. {
  158. int rc;
  159. void *kbuf = kmalloc(buflen, GFP_KERNEL); /* not allowed on stack */
  160. if (kbuf == NULL)
  161. return -ENOMEM;
  162. rc = usb_control_msg(pdev->udev, usb_rcvctrlpipe(pdev->udev, 0),
  163. request,
  164. USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  165. value,
  166. pdev->vcinterface,
  167. kbuf, buflen, 500);
  168. memcpy(buf, kbuf, buflen);
  169. kfree(kbuf);
  170. return rc;
  171. }
  172. static inline int send_video_command(struct pwc_device *pdev,
  173. int index, void *buf, int buflen)
  174. {
  175. return _send_control_msg(pdev,
  176. SET_EP_STREAM_CTL,
  177. VIDEO_OUTPUT_CONTROL_FORMATTER,
  178. index,
  179. buf, buflen, 1000);
  180. }
  181. static inline int send_control_msg(struct pwc_device *pdev,
  182. u8 request, u16 value, void *buf, int buflen)
  183. {
  184. return _send_control_msg(pdev,
  185. request, value, pdev->vcinterface, buf, buflen, 500);
  186. }
  187. static int set_video_mode_Nala(struct pwc_device *pdev, int size, int frames)
  188. {
  189. unsigned char buf[3];
  190. int ret, fps;
  191. struct Nala_table_entry *pEntry;
  192. int frames2frames[31] =
  193. { /* closest match of framerate */
  194. 0, 0, 0, 0, 4, /* 0-4 */
  195. 5, 5, 7, 7, 10, /* 5-9 */
  196. 10, 10, 12, 12, 15, /* 10-14 */
  197. 15, 15, 15, 20, 20, /* 15-19 */
  198. 20, 20, 20, 24, 24, /* 20-24 */
  199. 24, 24, 24, 24, 24, /* 25-29 */
  200. 24 /* 30 */
  201. };
  202. int frames2table[31] =
  203. { 0, 0, 0, 0, 0, /* 0-4 */
  204. 1, 1, 1, 2, 2, /* 5-9 */
  205. 3, 3, 4, 4, 4, /* 10-14 */
  206. 5, 5, 5, 5, 5, /* 15-19 */
  207. 6, 6, 6, 6, 7, /* 20-24 */
  208. 7, 7, 7, 7, 7, /* 25-29 */
  209. 7 /* 30 */
  210. };
  211. if (size < 0 || size > PSZ_CIF || frames < 4 || frames > 25)
  212. return -EINVAL;
  213. frames = frames2frames[frames];
  214. fps = frames2table[frames];
  215. pEntry = &Nala_table[size][fps];
  216. if (pEntry->alternate == 0)
  217. return -EINVAL;
  218. memcpy(buf, pEntry->mode, 3);
  219. ret = send_video_command(pdev, pdev->vendpoint, buf, 3);
  220. if (ret < 0) {
  221. PWC_DEBUG_MODULE("Failed to send video command... %d\n", ret);
  222. return ret;
  223. }
  224. if (pEntry->compressed && pdev->pixfmt == V4L2_PIX_FMT_YUV420)
  225. pwc_dec1_init(pdev->type, pdev->release, buf, pdev->decompress_data);
  226. pdev->cmd_len = 3;
  227. memcpy(pdev->cmd_buf, buf, 3);
  228. /* Set various parameters */
  229. pdev->vframes = frames;
  230. pdev->vsize = size;
  231. pdev->valternate = pEntry->alternate;
  232. pdev->image = pwc_image_sizes[size];
  233. pdev->frame_size = (pdev->image.x * pdev->image.y * 3) / 2;
  234. if (pEntry->compressed) {
  235. if (pdev->release < 5) { /* 4 fold compression */
  236. pdev->vbandlength = 528;
  237. pdev->frame_size /= 4;
  238. }
  239. else {
  240. pdev->vbandlength = 704;
  241. pdev->frame_size /= 3;
  242. }
  243. }
  244. else
  245. pdev->vbandlength = 0;
  246. return 0;
  247. }
  248. static int set_video_mode_Timon(struct pwc_device *pdev, int size, int frames, int compression, int snapshot)
  249. {
  250. unsigned char buf[13];
  251. const struct Timon_table_entry *pChoose;
  252. int ret, fps;
  253. if (size >= PSZ_MAX || frames < 5 || frames > 30 || compression < 0 || compression > 3)
  254. return -EINVAL;
  255. if (size == PSZ_VGA && frames > 15)
  256. return -EINVAL;
  257. fps = (frames / 5) - 1;
  258. /* Find a supported framerate with progressively higher compression ratios
  259. if the preferred ratio is not available.
  260. */
  261. pChoose = NULL;
  262. while (compression <= 3) {
  263. pChoose = &Timon_table[size][fps][compression];
  264. if (pChoose->alternate != 0)
  265. break;
  266. compression++;
  267. }
  268. if (pChoose == NULL || pChoose->alternate == 0)
  269. return -ENOENT; /* Not supported. */
  270. memcpy(buf, pChoose->mode, 13);
  271. if (snapshot)
  272. buf[0] |= 0x80;
  273. ret = send_video_command(pdev, pdev->vendpoint, buf, 13);
  274. if (ret < 0)
  275. return ret;
  276. if (pChoose->bandlength > 0 && pdev->pixfmt == V4L2_PIX_FMT_YUV420)
  277. pwc_dec23_init(pdev, pdev->type, buf);
  278. pdev->cmd_len = 13;
  279. memcpy(pdev->cmd_buf, buf, 13);
  280. /* Set various parameters */
  281. pdev->vframes = frames;
  282. pdev->vsize = size;
  283. pdev->vsnapshot = snapshot;
  284. pdev->valternate = pChoose->alternate;
  285. pdev->image = pwc_image_sizes[size];
  286. pdev->vbandlength = pChoose->bandlength;
  287. if (pChoose->bandlength > 0)
  288. pdev->frame_size = (pChoose->bandlength * pdev->image.y) / 4;
  289. else
  290. pdev->frame_size = (pdev->image.x * pdev->image.y * 12) / 8;
  291. return 0;
  292. }
  293. static int set_video_mode_Kiara(struct pwc_device *pdev, int size, int frames, int compression, int snapshot)
  294. {
  295. const struct Kiara_table_entry *pChoose = NULL;
  296. int fps, ret;
  297. unsigned char buf[12];
  298. struct Kiara_table_entry RawEntry = {6, 773, 1272, {0xAD, 0xF4, 0x10, 0x27, 0xB6, 0x24, 0x96, 0x02, 0x30, 0x05, 0x03, 0x80}};
  299. if (size >= PSZ_MAX || frames < 5 || frames > 30 || compression < 0 || compression > 3)
  300. return -EINVAL;
  301. if (size == PSZ_VGA && frames > 15)
  302. return -EINVAL;
  303. fps = (frames / 5) - 1;
  304. /* special case: VGA @ 5 fps and snapshot is raw bayer mode */
  305. if (size == PSZ_VGA && frames == 5 && snapshot && pdev->pixfmt != V4L2_PIX_FMT_YUV420)
  306. {
  307. /* Only available in case the raw palette is selected or
  308. we have the decompressor available. This mode is
  309. only available in compressed form
  310. */
  311. PWC_DEBUG_SIZE("Choosing VGA/5 BAYER mode.\n");
  312. pChoose = &RawEntry;
  313. }
  314. else
  315. {
  316. /* Find a supported framerate with progressively higher compression ratios
  317. if the preferred ratio is not available.
  318. Skip this step when using RAW modes.
  319. */
  320. snapshot = 0;
  321. while (compression <= 3) {
  322. pChoose = &Kiara_table[size][fps][compression];
  323. if (pChoose->alternate != 0)
  324. break;
  325. compression++;
  326. }
  327. }
  328. if (pChoose == NULL || pChoose->alternate == 0)
  329. return -ENOENT; /* Not supported. */
  330. PWC_TRACE("Using alternate setting %d.\n", pChoose->alternate);
  331. /* usb_control_msg won't take staticly allocated arrays as argument?? */
  332. memcpy(buf, pChoose->mode, 12);
  333. if (snapshot)
  334. buf[0] |= 0x80;
  335. /* Firmware bug: video endpoint is 5, but commands are sent to endpoint 4 */
  336. ret = send_video_command(pdev, 4 /* pdev->vendpoint */, buf, 12);
  337. if (ret < 0)
  338. return ret;
  339. if (pChoose->bandlength > 0 && pdev->pixfmt == V4L2_PIX_FMT_YUV420)
  340. pwc_dec23_init(pdev, pdev->type, buf);
  341. pdev->cmd_len = 12;
  342. memcpy(pdev->cmd_buf, buf, 12);
  343. /* All set and go */
  344. pdev->vframes = frames;
  345. pdev->vsize = size;
  346. pdev->vsnapshot = snapshot;
  347. pdev->valternate = pChoose->alternate;
  348. pdev->image = pwc_image_sizes[size];
  349. pdev->vbandlength = pChoose->bandlength;
  350. if (pdev->vbandlength > 0)
  351. pdev->frame_size = (pdev->vbandlength * pdev->image.y) / 4;
  352. else
  353. pdev->frame_size = (pdev->image.x * pdev->image.y * 12) / 8;
  354. PWC_TRACE("frame_size=%d, vframes=%d, vsize=%d, vsnapshot=%d, vbandlength=%d\n",
  355. pdev->frame_size,pdev->vframes,pdev->vsize,pdev->vsnapshot,pdev->vbandlength);
  356. return 0;
  357. }
  358. /**
  359. @pdev: device structure
  360. @width: viewport width
  361. @height: viewport height
  362. @frame: framerate, in fps
  363. @compression: preferred compression ratio
  364. @snapshot: snapshot mode or streaming
  365. */
  366. int pwc_set_video_mode(struct pwc_device *pdev, int width, int height, int frames, int compression, int snapshot)
  367. {
  368. int ret, size;
  369. PWC_DEBUG_FLOW("set_video_mode(%dx%d @ %d, pixfmt %08x).\n", width, height, frames, pdev->pixfmt);
  370. size = pwc_decode_size(pdev, width, height);
  371. if (size < 0) {
  372. PWC_DEBUG_MODULE("Could not find suitable size.\n");
  373. return -ERANGE;
  374. }
  375. PWC_TRACE("decode_size = %d.\n", size);
  376. if (DEVICE_USE_CODEC1(pdev->type)) {
  377. ret = set_video_mode_Nala(pdev, size, frames);
  378. } else if (DEVICE_USE_CODEC3(pdev->type)) {
  379. ret = set_video_mode_Kiara(pdev, size, frames, compression, snapshot);
  380. } else {
  381. ret = set_video_mode_Timon(pdev, size, frames, compression, snapshot);
  382. }
  383. if (ret < 0) {
  384. PWC_ERROR("Failed to set video mode %s@%d fps; return code = %d\n", size2name[size], frames, ret);
  385. return ret;
  386. }
  387. pdev->view.x = width;
  388. pdev->view.y = height;
  389. pdev->frame_total_size = pdev->frame_size + pdev->frame_header_size + pdev->frame_trailer_size;
  390. pwc_set_image_buffer_size(pdev);
  391. PWC_DEBUG_SIZE("Set viewport to %dx%d, image size is %dx%d.\n", width, height, pwc_image_sizes[size].x, pwc_image_sizes[size].y);
  392. return 0;
  393. }
  394. static unsigned int pwc_get_fps_Nala(struct pwc_device *pdev, unsigned int index, unsigned int size)
  395. {
  396. unsigned int i;
  397. for (i = 0; i < PWC_FPS_MAX_NALA; i++) {
  398. if (Nala_table[size][i].alternate) {
  399. if (index--==0) return Nala_fps_vector[i];
  400. }
  401. }
  402. return 0;
  403. }
  404. static unsigned int pwc_get_fps_Kiara(struct pwc_device *pdev, unsigned int index, unsigned int size)
  405. {
  406. unsigned int i;
  407. for (i = 0; i < PWC_FPS_MAX_KIARA; i++) {
  408. if (Kiara_table[size][i][3].alternate) {
  409. if (index--==0) return Kiara_fps_vector[i];
  410. }
  411. }
  412. return 0;
  413. }
  414. static unsigned int pwc_get_fps_Timon(struct pwc_device *pdev, unsigned int index, unsigned int size)
  415. {
  416. unsigned int i;
  417. for (i=0; i < PWC_FPS_MAX_TIMON; i++) {
  418. if (Timon_table[size][i][3].alternate) {
  419. if (index--==0) return Timon_fps_vector[i];
  420. }
  421. }
  422. return 0;
  423. }
  424. unsigned int pwc_get_fps(struct pwc_device *pdev, unsigned int index, unsigned int size)
  425. {
  426. unsigned int ret;
  427. if (DEVICE_USE_CODEC1(pdev->type)) {
  428. ret = pwc_get_fps_Nala(pdev, index, size);
  429. } else if (DEVICE_USE_CODEC3(pdev->type)) {
  430. ret = pwc_get_fps_Kiara(pdev, index, size);
  431. } else {
  432. ret = pwc_get_fps_Timon(pdev, index, size);
  433. }
  434. return ret;
  435. }
  436. static void pwc_set_image_buffer_size(struct pwc_device *pdev)
  437. {
  438. int factor = 0;
  439. /* for V4L2_PIX_FMT_YUV420 */
  440. switch (pdev->pixfmt) {
  441. case V4L2_PIX_FMT_YUV420:
  442. factor = 6;
  443. break;
  444. case V4L2_PIX_FMT_PWC1:
  445. case V4L2_PIX_FMT_PWC2:
  446. factor = 6; /* can be uncompressed YUV420P */
  447. break;
  448. }
  449. /* Set sizes in bytes */
  450. pdev->image.size = pdev->image.x * pdev->image.y * factor / 4;
  451. pdev->view.size = pdev->view.x * pdev->view.y * factor / 4;
  452. /* Align offset, or you'll get some very weird results in
  453. YUV420 mode... x must be multiple of 4 (to get the Y's in
  454. place), and y even (or you'll mixup U & V). This is less of a
  455. problem for YUV420P.
  456. */
  457. pdev->offset.x = ((pdev->view.x - pdev->image.x) / 2) & 0xFFFC;
  458. pdev->offset.y = ((pdev->view.y - pdev->image.y) / 2) & 0xFFFE;
  459. }
  460. /* BRIGHTNESS */
  461. int pwc_get_brightness(struct pwc_device *pdev)
  462. {
  463. char buf;
  464. int ret;
  465. ret = recv_control_msg(pdev,
  466. GET_LUM_CTL, BRIGHTNESS_FORMATTER, &buf, sizeof(buf));
  467. if (ret < 0)
  468. return ret;
  469. return buf;
  470. }
  471. int pwc_set_brightness(struct pwc_device *pdev, int value)
  472. {
  473. char buf;
  474. if (value < 0)
  475. value = 0;
  476. if (value > 0xffff)
  477. value = 0xffff;
  478. buf = (value >> 9) & 0x7f;
  479. return send_control_msg(pdev,
  480. SET_LUM_CTL, BRIGHTNESS_FORMATTER, &buf, sizeof(buf));
  481. }
  482. /* CONTRAST */
  483. int pwc_get_contrast(struct pwc_device *pdev)
  484. {
  485. char buf;
  486. int ret;
  487. ret = recv_control_msg(pdev,
  488. GET_LUM_CTL, CONTRAST_FORMATTER, &buf, sizeof(buf));
  489. if (ret < 0)
  490. return ret;
  491. return buf;
  492. }
  493. int pwc_set_contrast(struct pwc_device *pdev, int value)
  494. {
  495. char buf;
  496. if (value < 0)
  497. value = 0;
  498. if (value > 0xffff)
  499. value = 0xffff;
  500. buf = (value >> 10) & 0x3f;
  501. return send_control_msg(pdev,
  502. SET_LUM_CTL, CONTRAST_FORMATTER, &buf, sizeof(buf));
  503. }
  504. /* GAMMA */
  505. int pwc_get_gamma(struct pwc_device *pdev)
  506. {
  507. char buf;
  508. int ret;
  509. ret = recv_control_msg(pdev,
  510. GET_LUM_CTL, GAMMA_FORMATTER, &buf, sizeof(buf));
  511. if (ret < 0)
  512. return ret;
  513. return buf;
  514. }
  515. int pwc_set_gamma(struct pwc_device *pdev, int value)
  516. {
  517. char buf;
  518. if (value < 0)
  519. value = 0;
  520. if (value > 0xffff)
  521. value = 0xffff;
  522. buf = (value >> 11) & 0x1f;
  523. return send_control_msg(pdev,
  524. SET_LUM_CTL, GAMMA_FORMATTER, &buf, sizeof(buf));
  525. }
  526. /* SATURATION */
  527. /* return a value between [-100 , 100] */
  528. int pwc_get_saturation(struct pwc_device *pdev, int *value)
  529. {
  530. char buf;
  531. int ret, saturation_register;
  532. if (pdev->type < 675)
  533. return -EINVAL;
  534. if (pdev->type < 730)
  535. saturation_register = SATURATION_MODE_FORMATTER2;
  536. else
  537. saturation_register = SATURATION_MODE_FORMATTER1;
  538. ret = recv_control_msg(pdev,
  539. GET_CHROM_CTL, saturation_register, &buf, sizeof(buf));
  540. if (ret < 0)
  541. return ret;
  542. *value = (signed)buf;
  543. return 0;
  544. }
  545. /* @param value saturation color between [-100 , 100] */
  546. int pwc_set_saturation(struct pwc_device *pdev, int value)
  547. {
  548. char buf;
  549. int saturation_register;
  550. if (pdev->type < 675)
  551. return -EINVAL;
  552. if (value < -100)
  553. value = -100;
  554. if (value > 100)
  555. value = 100;
  556. if (pdev->type < 730)
  557. saturation_register = SATURATION_MODE_FORMATTER2;
  558. else
  559. saturation_register = SATURATION_MODE_FORMATTER1;
  560. return send_control_msg(pdev,
  561. SET_CHROM_CTL, saturation_register, &buf, sizeof(buf));
  562. }
  563. /* AGC */
  564. int pwc_set_agc(struct pwc_device *pdev, int mode, int value)
  565. {
  566. char buf;
  567. int ret;
  568. if (mode)
  569. buf = 0x0; /* auto */
  570. else
  571. buf = 0xff; /* fixed */
  572. ret = send_control_msg(pdev,
  573. SET_LUM_CTL, AGC_MODE_FORMATTER, &buf, sizeof(buf));
  574. if (!mode && ret >= 0) {
  575. if (value < 0)
  576. value = 0;
  577. if (value > 0xffff)
  578. value = 0xffff;
  579. buf = (value >> 10) & 0x3F;
  580. ret = send_control_msg(pdev,
  581. SET_LUM_CTL, PRESET_AGC_FORMATTER, &buf, sizeof(buf));
  582. }
  583. if (ret < 0)
  584. return ret;
  585. return 0;
  586. }
  587. int pwc_get_agc(struct pwc_device *pdev, int *value)
  588. {
  589. unsigned char buf;
  590. int ret;
  591. ret = recv_control_msg(pdev,
  592. GET_LUM_CTL, AGC_MODE_FORMATTER, &buf, sizeof(buf));
  593. if (ret < 0)
  594. return ret;
  595. if (buf != 0) { /* fixed */
  596. ret = recv_control_msg(pdev,
  597. GET_LUM_CTL, PRESET_AGC_FORMATTER, &buf, sizeof(buf));
  598. if (ret < 0)
  599. return ret;
  600. if (buf > 0x3F)
  601. buf = 0x3F;
  602. *value = (buf << 10);
  603. }
  604. else { /* auto */
  605. ret = recv_control_msg(pdev,
  606. GET_STATUS_CTL, READ_AGC_FORMATTER, &buf, sizeof(buf));
  607. if (ret < 0)
  608. return ret;
  609. /* Gah... this value ranges from 0x00 ... 0x9F */
  610. if (buf > 0x9F)
  611. buf = 0x9F;
  612. *value = -(48 + buf * 409);
  613. }
  614. return 0;
  615. }
  616. int pwc_set_shutter_speed(struct pwc_device *pdev, int mode, int value)
  617. {
  618. char buf[2];
  619. int speed, ret;
  620. if (mode)
  621. buf[0] = 0x0; /* auto */
  622. else
  623. buf[0] = 0xff; /* fixed */
  624. ret = send_control_msg(pdev,
  625. SET_LUM_CTL, SHUTTER_MODE_FORMATTER, &buf, 1);
  626. if (!mode && ret >= 0) {
  627. if (value < 0)
  628. value = 0;
  629. if (value > 0xffff)
  630. value = 0xffff;
  631. if (DEVICE_USE_CODEC2(pdev->type)) {
  632. /* speed ranges from 0x0 to 0x290 (656) */
  633. speed = (value / 100);
  634. buf[1] = speed >> 8;
  635. buf[0] = speed & 0xff;
  636. } else if (DEVICE_USE_CODEC3(pdev->type)) {
  637. /* speed seems to range from 0x0 to 0xff */
  638. buf[1] = 0;
  639. buf[0] = value >> 8;
  640. }
  641. ret = send_control_msg(pdev,
  642. SET_LUM_CTL, PRESET_SHUTTER_FORMATTER,
  643. &buf, sizeof(buf));
  644. }
  645. return ret;
  646. }
  647. /* This function is not exported to v4l1, so output values between 0 -> 256 */
  648. int pwc_get_shutter_speed(struct pwc_device *pdev, int *value)
  649. {
  650. unsigned char buf[2];
  651. int ret;
  652. ret = recv_control_msg(pdev,
  653. GET_STATUS_CTL, READ_SHUTTER_FORMATTER, &buf, sizeof(buf));
  654. if (ret < 0)
  655. return ret;
  656. *value = buf[0] + (buf[1] << 8);
  657. if (DEVICE_USE_CODEC2(pdev->type)) {
  658. /* speed ranges from 0x0 to 0x290 (656) */
  659. *value *= 256/656;
  660. } else if (DEVICE_USE_CODEC3(pdev->type)) {
  661. /* speed seems to range from 0x0 to 0xff */
  662. }
  663. return 0;
  664. }
  665. /* POWER */
  666. void pwc_camera_power(struct pwc_device *pdev, int power)
  667. {
  668. char buf;
  669. int r;
  670. if (!pdev->power_save)
  671. return;
  672. if (pdev->type < 675 || (pdev->type < 730 && pdev->release < 6))
  673. return; /* Not supported by Nala or Timon < release 6 */
  674. if (power)
  675. buf = 0x00; /* active */
  676. else
  677. buf = 0xFF; /* power save */
  678. r = send_control_msg(pdev,
  679. SET_STATUS_CTL, SET_POWER_SAVE_MODE_FORMATTER,
  680. &buf, sizeof(buf));
  681. if (r < 0)
  682. PWC_ERROR("Failed to power %s camera (%d)\n",
  683. power ? "on" : "off", r);
  684. }
  685. /* private calls */
  686. int pwc_restore_user(struct pwc_device *pdev)
  687. {
  688. return send_control_msg(pdev,
  689. SET_STATUS_CTL, RESTORE_USER_DEFAULTS_FORMATTER, NULL, 0);
  690. }
  691. int pwc_save_user(struct pwc_device *pdev)
  692. {
  693. return send_control_msg(pdev,
  694. SET_STATUS_CTL, SAVE_USER_DEFAULTS_FORMATTER, NULL, 0);
  695. }
  696. int pwc_restore_factory(struct pwc_device *pdev)
  697. {
  698. return send_control_msg(pdev,
  699. SET_STATUS_CTL, RESTORE_FACTORY_DEFAULTS_FORMATTER, NULL, 0);
  700. }
  701. /* ************************************************* */
  702. /* Patch by Alvarado: (not in the original version */
  703. /*
  704. * the camera recognizes modes from 0 to 4:
  705. *
  706. * 00: indoor (incandescant lighting)
  707. * 01: outdoor (sunlight)
  708. * 02: fluorescent lighting
  709. * 03: manual
  710. * 04: auto
  711. */
  712. int pwc_set_awb(struct pwc_device *pdev, int mode)
  713. {
  714. char buf;
  715. int ret;
  716. if (mode < 0)
  717. mode = 0;
  718. if (mode > 4)
  719. mode = 4;
  720. buf = mode & 0x07; /* just the lowest three bits */
  721. ret = send_control_msg(pdev,
  722. SET_CHROM_CTL, WB_MODE_FORMATTER, &buf, sizeof(buf));
  723. if (ret < 0)
  724. return ret;
  725. return 0;
  726. }
  727. int pwc_get_awb(struct pwc_device *pdev)
  728. {
  729. unsigned char buf;
  730. int ret;
  731. ret = recv_control_msg(pdev,
  732. GET_CHROM_CTL, WB_MODE_FORMATTER, &buf, sizeof(buf));
  733. if (ret < 0)
  734. return ret;
  735. return buf;
  736. }
  737. int pwc_set_red_gain(struct pwc_device *pdev, int value)
  738. {
  739. unsigned char buf;
  740. if (value < 0)
  741. value = 0;
  742. if (value > 0xffff)
  743. value = 0xffff;
  744. /* only the msb is considered */
  745. buf = value >> 8;
  746. return send_control_msg(pdev,
  747. SET_CHROM_CTL, PRESET_MANUAL_RED_GAIN_FORMATTER,
  748. &buf, sizeof(buf));
  749. }
  750. int pwc_get_red_gain(struct pwc_device *pdev, int *value)
  751. {
  752. unsigned char buf;
  753. int ret;
  754. ret = recv_control_msg(pdev,
  755. GET_CHROM_CTL, PRESET_MANUAL_RED_GAIN_FORMATTER,
  756. &buf, sizeof(buf));
  757. if (ret < 0)
  758. return ret;
  759. *value = buf << 8;
  760. return 0;
  761. }
  762. int pwc_set_blue_gain(struct pwc_device *pdev, int value)
  763. {
  764. unsigned char buf;
  765. if (value < 0)
  766. value = 0;
  767. if (value > 0xffff)
  768. value = 0xffff;
  769. /* only the msb is considered */
  770. buf = value >> 8;
  771. return send_control_msg(pdev,
  772. SET_CHROM_CTL, PRESET_MANUAL_BLUE_GAIN_FORMATTER,
  773. &buf, sizeof(buf));
  774. }
  775. int pwc_get_blue_gain(struct pwc_device *pdev, int *value)
  776. {
  777. unsigned char buf;
  778. int ret;
  779. ret = recv_control_msg(pdev,
  780. GET_CHROM_CTL, PRESET_MANUAL_BLUE_GAIN_FORMATTER,
  781. &buf, sizeof(buf));
  782. if (ret < 0)
  783. return ret;
  784. *value = buf << 8;
  785. return 0;
  786. }
  787. /* The following two functions are different, since they only read the
  788. internal red/blue gains, which may be different from the manual
  789. gains set or read above.
  790. */
  791. static int pwc_read_red_gain(struct pwc_device *pdev, int *value)
  792. {
  793. unsigned char buf;
  794. int ret;
  795. ret = recv_control_msg(pdev,
  796. GET_STATUS_CTL, READ_RED_GAIN_FORMATTER, &buf, sizeof(buf));
  797. if (ret < 0)
  798. return ret;
  799. *value = buf << 8;
  800. return 0;
  801. }
  802. static int pwc_read_blue_gain(struct pwc_device *pdev, int *value)
  803. {
  804. unsigned char buf;
  805. int ret;
  806. ret = recv_control_msg(pdev,
  807. GET_STATUS_CTL, READ_BLUE_GAIN_FORMATTER, &buf, sizeof(buf));
  808. if (ret < 0)
  809. return ret;
  810. *value = buf << 8;
  811. return 0;
  812. }
  813. static int pwc_set_wb_speed(struct pwc_device *pdev, int speed)
  814. {
  815. unsigned char buf;
  816. /* useful range is 0x01..0x20 */
  817. buf = speed / 0x7f0;
  818. return send_control_msg(pdev,
  819. SET_CHROM_CTL, AWB_CONTROL_SPEED_FORMATTER, &buf, sizeof(buf));
  820. }
  821. static int pwc_get_wb_speed(struct pwc_device *pdev, int *value)
  822. {
  823. unsigned char buf;
  824. int ret;
  825. ret = recv_control_msg(pdev,
  826. GET_CHROM_CTL, AWB_CONTROL_SPEED_FORMATTER, &buf, sizeof(buf));
  827. if (ret < 0)
  828. return ret;
  829. *value = buf * 0x7f0;
  830. return 0;
  831. }
  832. static int pwc_set_wb_delay(struct pwc_device *pdev, int delay)
  833. {
  834. unsigned char buf;
  835. /* useful range is 0x01..0x3F */
  836. buf = (delay >> 10);
  837. return send_control_msg(pdev,
  838. SET_CHROM_CTL, AWB_CONTROL_DELAY_FORMATTER, &buf, sizeof(buf));
  839. }
  840. static int pwc_get_wb_delay(struct pwc_device *pdev, int *value)
  841. {
  842. unsigned char buf;
  843. int ret;
  844. ret = recv_control_msg(pdev,
  845. GET_CHROM_CTL, AWB_CONTROL_DELAY_FORMATTER, &buf, sizeof(buf));
  846. if (ret < 0)
  847. return ret;
  848. *value = buf << 10;
  849. return 0;
  850. }
  851. int pwc_set_leds(struct pwc_device *pdev, int on_value, int off_value)
  852. {
  853. unsigned char buf[2];
  854. int r;
  855. if (pdev->type < 730)
  856. return 0;
  857. on_value /= 100;
  858. off_value /= 100;
  859. if (on_value < 0)
  860. on_value = 0;
  861. if (on_value > 0xff)
  862. on_value = 0xff;
  863. if (off_value < 0)
  864. off_value = 0;
  865. if (off_value > 0xff)
  866. off_value = 0xff;
  867. buf[0] = on_value;
  868. buf[1] = off_value;
  869. r = send_control_msg(pdev,
  870. SET_STATUS_CTL, LED_FORMATTER, &buf, sizeof(buf));
  871. if (r < 0)
  872. PWC_ERROR("Failed to set LED on/off time (%d)\n", r);
  873. return r;
  874. }
  875. static int pwc_get_leds(struct pwc_device *pdev, int *on_value, int *off_value)
  876. {
  877. unsigned char buf[2];
  878. int ret;
  879. if (pdev->type < 730) {
  880. *on_value = -1;
  881. *off_value = -1;
  882. return 0;
  883. }
  884. ret = recv_control_msg(pdev,
  885. GET_STATUS_CTL, LED_FORMATTER, &buf, sizeof(buf));
  886. if (ret < 0)
  887. return ret;
  888. *on_value = buf[0] * 100;
  889. *off_value = buf[1] * 100;
  890. return 0;
  891. }
  892. int pwc_set_contour(struct pwc_device *pdev, int contour)
  893. {
  894. unsigned char buf;
  895. int ret;
  896. if (contour < 0)
  897. buf = 0xff; /* auto contour on */
  898. else
  899. buf = 0x0; /* auto contour off */
  900. ret = send_control_msg(pdev,
  901. SET_LUM_CTL, AUTO_CONTOUR_FORMATTER, &buf, sizeof(buf));
  902. if (ret < 0)
  903. return ret;
  904. if (contour < 0)
  905. return 0;
  906. if (contour > 0xffff)
  907. contour = 0xffff;
  908. buf = (contour >> 10); /* contour preset is [0..3f] */
  909. ret = send_control_msg(pdev,
  910. SET_LUM_CTL, PRESET_CONTOUR_FORMATTER, &buf, sizeof(buf));
  911. if (ret < 0)
  912. return ret;
  913. return 0;
  914. }
  915. int pwc_get_contour(struct pwc_device *pdev, int *contour)
  916. {
  917. unsigned char buf;
  918. int ret;
  919. ret = recv_control_msg(pdev,
  920. GET_LUM_CTL, AUTO_CONTOUR_FORMATTER, &buf, sizeof(buf));
  921. if (ret < 0)
  922. return ret;
  923. if (buf == 0) {
  924. /* auto mode off, query current preset value */
  925. ret = recv_control_msg(pdev,
  926. GET_LUM_CTL, PRESET_CONTOUR_FORMATTER,
  927. &buf, sizeof(buf));
  928. if (ret < 0)
  929. return ret;
  930. *contour = buf << 10;
  931. }
  932. else
  933. *contour = -1;
  934. return 0;
  935. }
  936. int pwc_set_backlight(struct pwc_device *pdev, int backlight)
  937. {
  938. unsigned char buf;
  939. if (backlight)
  940. buf = 0xff;
  941. else
  942. buf = 0x0;
  943. return send_control_msg(pdev,
  944. SET_LUM_CTL, BACK_LIGHT_COMPENSATION_FORMATTER,
  945. &buf, sizeof(buf));
  946. }
  947. int pwc_get_backlight(struct pwc_device *pdev, int *backlight)
  948. {
  949. int ret;
  950. unsigned char buf;
  951. ret = recv_control_msg(pdev,
  952. GET_LUM_CTL, BACK_LIGHT_COMPENSATION_FORMATTER,
  953. &buf, sizeof(buf));
  954. if (ret < 0)
  955. return ret;
  956. *backlight = !!buf;
  957. return 0;
  958. }
  959. int pwc_set_colour_mode(struct pwc_device *pdev, int colour)
  960. {
  961. unsigned char buf;
  962. if (colour)
  963. buf = 0xff;
  964. else
  965. buf = 0x0;
  966. return send_control_msg(pdev,
  967. SET_CHROM_CTL, COLOUR_MODE_FORMATTER, &buf, sizeof(buf));
  968. }
  969. int pwc_get_colour_mode(struct pwc_device *pdev, int *colour)
  970. {
  971. int ret;
  972. unsigned char buf;
  973. ret = recv_control_msg(pdev,
  974. GET_CHROM_CTL, COLOUR_MODE_FORMATTER, &buf, sizeof(buf));
  975. if (ret < 0)
  976. return ret;
  977. *colour = !!buf;
  978. return 0;
  979. }
  980. int pwc_set_flicker(struct pwc_device *pdev, int flicker)
  981. {
  982. unsigned char buf;
  983. if (flicker)
  984. buf = 0xff;
  985. else
  986. buf = 0x0;
  987. return send_control_msg(pdev,
  988. SET_LUM_CTL, FLICKERLESS_MODE_FORMATTER, &buf, sizeof(buf));
  989. }
  990. int pwc_get_flicker(struct pwc_device *pdev, int *flicker)
  991. {
  992. int ret;
  993. unsigned char buf;
  994. ret = recv_control_msg(pdev,
  995. GET_LUM_CTL, FLICKERLESS_MODE_FORMATTER, &buf, sizeof(buf));
  996. if (ret < 0)
  997. return ret;
  998. *flicker = !!buf;
  999. return 0;
  1000. }
  1001. int pwc_set_dynamic_noise(struct pwc_device *pdev, int noise)
  1002. {
  1003. unsigned char buf;
  1004. if (noise < 0)
  1005. noise = 0;
  1006. if (noise > 3)
  1007. noise = 3;
  1008. buf = noise;
  1009. return send_control_msg(pdev,
  1010. SET_LUM_CTL, DYNAMIC_NOISE_CONTROL_FORMATTER,
  1011. &buf, sizeof(buf));
  1012. }
  1013. int pwc_get_dynamic_noise(struct pwc_device *pdev, int *noise)
  1014. {
  1015. int ret;
  1016. unsigned char buf;
  1017. ret = recv_control_msg(pdev,
  1018. GET_LUM_CTL, DYNAMIC_NOISE_CONTROL_FORMATTER,
  1019. &buf, sizeof(buf));
  1020. if (ret < 0)
  1021. return ret;
  1022. *noise = buf;
  1023. return 0;
  1024. }
  1025. static int _pwc_mpt_reset(struct pwc_device *pdev, int flags)
  1026. {
  1027. unsigned char buf;
  1028. buf = flags & 0x03; // only lower two bits are currently used
  1029. return send_control_msg(pdev,
  1030. SET_MPT_CTL, PT_RESET_CONTROL_FORMATTER, &buf, sizeof(buf));
  1031. }
  1032. int pwc_mpt_reset(struct pwc_device *pdev, int flags)
  1033. {
  1034. int ret;
  1035. ret = _pwc_mpt_reset(pdev, flags);
  1036. if (ret >= 0) {
  1037. pdev->pan_angle = 0;
  1038. pdev->tilt_angle = 0;
  1039. }
  1040. return ret;
  1041. }
  1042. static int _pwc_mpt_set_angle(struct pwc_device *pdev, int pan, int tilt)
  1043. {
  1044. unsigned char buf[4];
  1045. /* set new relative angle; angles are expressed in degrees * 100,
  1046. but cam as .5 degree resolution, hence divide by 200. Also
  1047. the angle must be multiplied by 64 before it's send to
  1048. the cam (??)
  1049. */
  1050. pan = 64 * pan / 100;
  1051. tilt = -64 * tilt / 100; /* positive tilt is down, which is not what the user would expect */
  1052. buf[0] = pan & 0xFF;
  1053. buf[1] = (pan >> 8) & 0xFF;
  1054. buf[2] = tilt & 0xFF;
  1055. buf[3] = (tilt >> 8) & 0xFF;
  1056. return send_control_msg(pdev,
  1057. SET_MPT_CTL, PT_RELATIVE_CONTROL_FORMATTER, &buf, sizeof(buf));
  1058. }
  1059. int pwc_mpt_set_angle(struct pwc_device *pdev, int pan, int tilt)
  1060. {
  1061. int ret;
  1062. /* check absolute ranges */
  1063. if (pan < pdev->angle_range.pan_min ||
  1064. pan > pdev->angle_range.pan_max ||
  1065. tilt < pdev->angle_range.tilt_min ||
  1066. tilt > pdev->angle_range.tilt_max)
  1067. return -ERANGE;
  1068. /* go to relative range, check again */
  1069. pan -= pdev->pan_angle;
  1070. tilt -= pdev->tilt_angle;
  1071. /* angles are specified in degrees * 100, thus the limit = 36000 */
  1072. if (pan < -36000 || pan > 36000 || tilt < -36000 || tilt > 36000)
  1073. return -ERANGE;
  1074. ret = _pwc_mpt_set_angle(pdev, pan, tilt);
  1075. if (ret >= 0) {
  1076. pdev->pan_angle += pan;
  1077. pdev->tilt_angle += tilt;
  1078. }
  1079. if (ret == -EPIPE) /* stall -> out of range */
  1080. ret = -ERANGE;
  1081. return ret;
  1082. }
  1083. static int pwc_mpt_get_status(struct pwc_device *pdev, struct pwc_mpt_status *status)
  1084. {
  1085. int ret;
  1086. unsigned char buf[5];
  1087. ret = recv_control_msg(pdev,
  1088. GET_MPT_CTL, PT_STATUS_FORMATTER, &buf, sizeof(buf));
  1089. if (ret < 0)
  1090. return ret;
  1091. status->status = buf[0] & 0x7; // 3 bits are used for reporting
  1092. status->time_pan = (buf[1] << 8) + buf[2];
  1093. status->time_tilt = (buf[3] << 8) + buf[4];
  1094. return 0;
  1095. }
  1096. int pwc_get_cmos_sensor(struct pwc_device *pdev, int *sensor)
  1097. {
  1098. unsigned char buf;
  1099. int ret = -1, request;
  1100. if (pdev->type < 675)
  1101. request = SENSOR_TYPE_FORMATTER1;
  1102. else if (pdev->type < 730)
  1103. return -1; /* The Vesta series doesn't have this call */
  1104. else
  1105. request = SENSOR_TYPE_FORMATTER2;
  1106. ret = recv_control_msg(pdev,
  1107. GET_STATUS_CTL, request, &buf, sizeof(buf));
  1108. if (ret < 0)
  1109. return ret;
  1110. if (pdev->type < 675)
  1111. *sensor = buf | 0x100;
  1112. else
  1113. *sensor = buf;
  1114. return 0;
  1115. }
  1116. /* End of Add-Ons */
  1117. /* ************************************************* */
  1118. /* Linux 2.5.something and 2.6 pass direct pointers to arguments of
  1119. ioctl() calls. With 2.4, you have to do tedious copy_from_user()
  1120. and copy_to_user() calls. With these macros we circumvent this,
  1121. and let me maintain only one source file. The functionality is
  1122. exactly the same otherwise.
  1123. */
  1124. /* define local variable for arg */
  1125. #define ARG_DEF(ARG_type, ARG_name)\
  1126. ARG_type *ARG_name = arg;
  1127. /* copy arg to local variable */
  1128. #define ARG_IN(ARG_name) /* nothing */
  1129. /* argument itself (referenced) */
  1130. #define ARGR(ARG_name) (*ARG_name)
  1131. /* argument address */
  1132. #define ARGA(ARG_name) ARG_name
  1133. /* copy local variable to arg */
  1134. #define ARG_OUT(ARG_name) /* nothing */
  1135. long pwc_ioctl(struct pwc_device *pdev, unsigned int cmd, void *arg)
  1136. {
  1137. long ret = 0;
  1138. switch(cmd) {
  1139. case VIDIOCPWCRUSER:
  1140. {
  1141. if (pwc_restore_user(pdev))
  1142. ret = -EINVAL;
  1143. break;
  1144. }
  1145. case VIDIOCPWCSUSER:
  1146. {
  1147. if (pwc_save_user(pdev))
  1148. ret = -EINVAL;
  1149. break;
  1150. }
  1151. case VIDIOCPWCFACTORY:
  1152. {
  1153. if (pwc_restore_factory(pdev))
  1154. ret = -EINVAL;
  1155. break;
  1156. }
  1157. case VIDIOCPWCSCQUAL:
  1158. {
  1159. ARG_DEF(int, qual)
  1160. if (pdev->iso_init) {
  1161. ret = -EBUSY;
  1162. break;
  1163. }
  1164. ARG_IN(qual)
  1165. if (ARGR(qual) < 0 || ARGR(qual) > 3)
  1166. ret = -EINVAL;
  1167. else
  1168. ret = pwc_set_video_mode(pdev, pdev->view.x, pdev->view.y, pdev->vframes, ARGR(qual), pdev->vsnapshot);
  1169. if (ret >= 0)
  1170. pdev->vcompression = ARGR(qual);
  1171. break;
  1172. }
  1173. case VIDIOCPWCGCQUAL:
  1174. {
  1175. ARG_DEF(int, qual)
  1176. ARGR(qual) = pdev->vcompression;
  1177. ARG_OUT(qual)
  1178. break;
  1179. }
  1180. case VIDIOCPWCPROBE:
  1181. {
  1182. ARG_DEF(struct pwc_probe, probe)
  1183. strcpy(ARGR(probe).name, pdev->vdev.name);
  1184. ARGR(probe).type = pdev->type;
  1185. ARG_OUT(probe)
  1186. break;
  1187. }
  1188. case VIDIOCPWCGSERIAL:
  1189. {
  1190. ARG_DEF(struct pwc_serial, serial)
  1191. strcpy(ARGR(serial).serial, pdev->serial);
  1192. ARG_OUT(serial)
  1193. break;
  1194. }
  1195. case VIDIOCPWCSAGC:
  1196. {
  1197. ARG_DEF(int, agc)
  1198. ARG_IN(agc)
  1199. if (pwc_set_agc(pdev, ARGR(agc) < 0 ? 1 : 0, ARGR(agc)))
  1200. ret = -EINVAL;
  1201. break;
  1202. }
  1203. case VIDIOCPWCGAGC:
  1204. {
  1205. ARG_DEF(int, agc)
  1206. if (pwc_get_agc(pdev, ARGA(agc)))
  1207. ret = -EINVAL;
  1208. ARG_OUT(agc)
  1209. break;
  1210. }
  1211. case VIDIOCPWCSSHUTTER:
  1212. {
  1213. ARG_DEF(int, shutter_speed)
  1214. ARG_IN(shutter_speed)
  1215. ret = pwc_set_shutter_speed(pdev, ARGR(shutter_speed) < 0 ? 1 : 0, ARGR(shutter_speed));
  1216. break;
  1217. }
  1218. case VIDIOCPWCSAWB:
  1219. {
  1220. ARG_DEF(struct pwc_whitebalance, wb)
  1221. ARG_IN(wb)
  1222. ret = pwc_set_awb(pdev, ARGR(wb).mode);
  1223. if (ret >= 0 && ARGR(wb).mode == PWC_WB_MANUAL) {
  1224. pwc_set_red_gain(pdev, ARGR(wb).manual_red);
  1225. pwc_set_blue_gain(pdev, ARGR(wb).manual_blue);
  1226. }
  1227. break;
  1228. }
  1229. case VIDIOCPWCGAWB:
  1230. {
  1231. ARG_DEF(struct pwc_whitebalance, wb)
  1232. memset(ARGA(wb), 0, sizeof(struct pwc_whitebalance));
  1233. ARGR(wb).mode = pwc_get_awb(pdev);
  1234. if (ARGR(wb).mode < 0)
  1235. ret = -EINVAL;
  1236. else {
  1237. if (ARGR(wb).mode == PWC_WB_MANUAL) {
  1238. ret = pwc_get_red_gain(pdev, &ARGR(wb).manual_red);
  1239. if (ret < 0)
  1240. break;
  1241. ret = pwc_get_blue_gain(pdev, &ARGR(wb).manual_blue);
  1242. if (ret < 0)
  1243. break;
  1244. }
  1245. if (ARGR(wb).mode == PWC_WB_AUTO) {
  1246. ret = pwc_read_red_gain(pdev, &ARGR(wb).read_red);
  1247. if (ret < 0)
  1248. break;
  1249. ret = pwc_read_blue_gain(pdev, &ARGR(wb).read_blue);
  1250. if (ret < 0)
  1251. break;
  1252. }
  1253. }
  1254. ARG_OUT(wb)
  1255. break;
  1256. }
  1257. case VIDIOCPWCSAWBSPEED:
  1258. {
  1259. ARG_DEF(struct pwc_wb_speed, wbs)
  1260. if (ARGR(wbs).control_speed > 0) {
  1261. ret = pwc_set_wb_speed(pdev, ARGR(wbs).control_speed);
  1262. }
  1263. if (ARGR(wbs).control_delay > 0) {
  1264. ret = pwc_set_wb_delay(pdev, ARGR(wbs).control_delay);
  1265. }
  1266. break;
  1267. }
  1268. case VIDIOCPWCGAWBSPEED:
  1269. {
  1270. ARG_DEF(struct pwc_wb_speed, wbs)
  1271. ret = pwc_get_wb_speed(pdev, &ARGR(wbs).control_speed);
  1272. if (ret < 0)
  1273. break;
  1274. ret = pwc_get_wb_delay(pdev, &ARGR(wbs).control_delay);
  1275. if (ret < 0)
  1276. break;
  1277. ARG_OUT(wbs)
  1278. break;
  1279. }
  1280. case VIDIOCPWCSLED:
  1281. {
  1282. ARG_DEF(struct pwc_leds, leds)
  1283. ARG_IN(leds)
  1284. ret = pwc_set_leds(pdev, ARGR(leds).led_on, ARGR(leds).led_off);
  1285. break;
  1286. }
  1287. case VIDIOCPWCGLED:
  1288. {
  1289. ARG_DEF(struct pwc_leds, leds)
  1290. ret = pwc_get_leds(pdev, &ARGR(leds).led_on, &ARGR(leds).led_off);
  1291. ARG_OUT(leds)
  1292. break;
  1293. }
  1294. case VIDIOCPWCSCONTOUR:
  1295. {
  1296. ARG_DEF(int, contour)
  1297. ARG_IN(contour)
  1298. ret = pwc_set_contour(pdev, ARGR(contour));
  1299. break;
  1300. }
  1301. case VIDIOCPWCGCONTOUR:
  1302. {
  1303. ARG_DEF(int, contour)
  1304. ret = pwc_get_contour(pdev, ARGA(contour));
  1305. ARG_OUT(contour)
  1306. break;
  1307. }
  1308. case VIDIOCPWCSBACKLIGHT:
  1309. {
  1310. ARG_DEF(int, backlight)
  1311. ARG_IN(backlight)
  1312. ret = pwc_set_backlight(pdev, ARGR(backlight));
  1313. break;
  1314. }
  1315. case VIDIOCPWCGBACKLIGHT:
  1316. {
  1317. ARG_DEF(int, backlight)
  1318. ret = pwc_get_backlight(pdev, ARGA(backlight));
  1319. ARG_OUT(backlight)
  1320. break;
  1321. }
  1322. case VIDIOCPWCSFLICKER:
  1323. {
  1324. ARG_DEF(int, flicker)
  1325. ARG_IN(flicker)
  1326. ret = pwc_set_flicker(pdev, ARGR(flicker));
  1327. break;
  1328. }
  1329. case VIDIOCPWCGFLICKER:
  1330. {
  1331. ARG_DEF(int, flicker)
  1332. ret = pwc_get_flicker(pdev, ARGA(flicker));
  1333. ARG_OUT(flicker)
  1334. break;
  1335. }
  1336. case VIDIOCPWCSDYNNOISE:
  1337. {
  1338. ARG_DEF(int, dynnoise)
  1339. ARG_IN(dynnoise)
  1340. ret = pwc_set_dynamic_noise(pdev, ARGR(dynnoise));
  1341. break;
  1342. }
  1343. case VIDIOCPWCGDYNNOISE:
  1344. {
  1345. ARG_DEF(int, dynnoise)
  1346. ret = pwc_get_dynamic_noise(pdev, ARGA(dynnoise));
  1347. ARG_OUT(dynnoise);
  1348. break;
  1349. }
  1350. case VIDIOCPWCGREALSIZE:
  1351. {
  1352. ARG_DEF(struct pwc_imagesize, size)
  1353. ARGR(size).width = pdev->image.x;
  1354. ARGR(size).height = pdev->image.y;
  1355. ARG_OUT(size)
  1356. break;
  1357. }
  1358. case VIDIOCPWCMPTRESET:
  1359. {
  1360. if (pdev->features & FEATURE_MOTOR_PANTILT)
  1361. {
  1362. ARG_DEF(int, flags)
  1363. ARG_IN(flags)
  1364. ret = pwc_mpt_reset(pdev, ARGR(flags));
  1365. }
  1366. else
  1367. {
  1368. ret = -ENXIO;
  1369. }
  1370. break;
  1371. }
  1372. case VIDIOCPWCMPTGRANGE:
  1373. {
  1374. if (pdev->features & FEATURE_MOTOR_PANTILT)
  1375. {
  1376. ARG_DEF(struct pwc_mpt_range, range)
  1377. ARGR(range) = pdev->angle_range;
  1378. ARG_OUT(range)
  1379. }
  1380. else
  1381. {
  1382. ret = -ENXIO;
  1383. }
  1384. break;
  1385. }
  1386. case VIDIOCPWCMPTSANGLE:
  1387. {
  1388. int new_pan, new_tilt;
  1389. if (pdev->features & FEATURE_MOTOR_PANTILT)
  1390. {
  1391. ARG_DEF(struct pwc_mpt_angles, angles)
  1392. ARG_IN(angles)
  1393. /* The camera can only set relative angles, so
  1394. do some calculations when getting an absolute angle .
  1395. */
  1396. if (ARGR(angles).absolute)
  1397. {
  1398. new_pan = ARGR(angles).pan;
  1399. new_tilt = ARGR(angles).tilt;
  1400. }
  1401. else
  1402. {
  1403. new_pan = pdev->pan_angle + ARGR(angles).pan;
  1404. new_tilt = pdev->tilt_angle + ARGR(angles).tilt;
  1405. }
  1406. ret = pwc_mpt_set_angle(pdev, new_pan, new_tilt);
  1407. }
  1408. else
  1409. {
  1410. ret = -ENXIO;
  1411. }
  1412. break;
  1413. }
  1414. case VIDIOCPWCMPTGANGLE:
  1415. {
  1416. if (pdev->features & FEATURE_MOTOR_PANTILT)
  1417. {
  1418. ARG_DEF(struct pwc_mpt_angles, angles)
  1419. ARGR(angles).absolute = 1;
  1420. ARGR(angles).pan = pdev->pan_angle;
  1421. ARGR(angles).tilt = pdev->tilt_angle;
  1422. ARG_OUT(angles)
  1423. }
  1424. else
  1425. {
  1426. ret = -ENXIO;
  1427. }
  1428. break;
  1429. }
  1430. case VIDIOCPWCMPTSTATUS:
  1431. {
  1432. if (pdev->features & FEATURE_MOTOR_PANTILT)
  1433. {
  1434. ARG_DEF(struct pwc_mpt_status, status)
  1435. ret = pwc_mpt_get_status(pdev, ARGA(status));
  1436. ARG_OUT(status)
  1437. }
  1438. else
  1439. {
  1440. ret = -ENXIO;
  1441. }
  1442. break;
  1443. }
  1444. case VIDIOCPWCGVIDCMD:
  1445. {
  1446. ARG_DEF(struct pwc_video_command, vcmd);
  1447. ARGR(vcmd).type = pdev->type;
  1448. ARGR(vcmd).release = pdev->release;
  1449. ARGR(vcmd).command_len = pdev->cmd_len;
  1450. memcpy(&ARGR(vcmd).command_buf, pdev->cmd_buf, pdev->cmd_len);
  1451. ARGR(vcmd).bandlength = pdev->vbandlength;
  1452. ARGR(vcmd).frame_size = pdev->frame_size;
  1453. ARG_OUT(vcmd)
  1454. break;
  1455. }
  1456. /*
  1457. case VIDIOCPWCGVIDTABLE:
  1458. {
  1459. ARG_DEF(struct pwc_table_init_buffer, table);
  1460. ARGR(table).len = pdev->cmd_len;
  1461. memcpy(&ARGR(table).buffer, pdev->decompress_data, pdev->decompressor->table_size);
  1462. ARG_OUT(table)
  1463. break;
  1464. }
  1465. */
  1466. default:
  1467. ret = -ENOIOCTLCMD;
  1468. break;
  1469. }
  1470. if (ret > 0)
  1471. return 0;
  1472. return ret;
  1473. }
  1474. /* vim: set cinoptions= formatoptions=croql cindent shiftwidth=8 tabstop=8: */