m5602_s5k4aa.c 12 KB

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  1. /*
  2. * Driver for the s5k4aa sensor
  3. *
  4. * Copyright (C) 2008 Erik Andrén
  5. * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  6. * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  7. *
  8. * Portions of code to USB interface and ALi driver software,
  9. * Copyright (c) 2006 Willem Duinker
  10. * v4l2 interface modeled after the V4L2 driver
  11. * for SN9C10x PC Camera Controllers
  12. *
  13. * This program is free software; you can redistribute it and/or
  14. * modify it under the terms of the GNU General Public License as
  15. * published by the Free Software Foundation, version 2.
  16. *
  17. */
  18. #include "m5602_s5k4aa.h"
  19. static
  20. const
  21. struct dmi_system_id s5k4aa_vflip_dmi_table[] = {
  22. {
  23. .ident = "Fujitsu-Siemens Amilo Xa 2528",
  24. .matches = {
  25. DMI_MATCH(DMI_SYS_VENDOR, "FUJITSU SIEMENS"),
  26. DMI_MATCH(DMI_PRODUCT_NAME, "AMILO Xa 2528")
  27. }
  28. }, {
  29. .ident = "Fujitsu-Siemens Amilo Xi 2550",
  30. .matches = {
  31. DMI_MATCH(DMI_SYS_VENDOR, "FUJITSU SIEMENS"),
  32. DMI_MATCH(DMI_PRODUCT_NAME, "AMILO Xi 2550")
  33. }
  34. }, {
  35. .ident = "MSI GX700",
  36. .matches = {
  37. DMI_MATCH(DMI_SYS_VENDOR, "Micro-Star International"),
  38. DMI_MATCH(DMI_PRODUCT_NAME, "GX700"),
  39. DMI_MATCH(DMI_BIOS_DATE, "07/26/2007")
  40. }
  41. }, {
  42. .ident = "MSI GX700/GX705/EX700",
  43. .matches = {
  44. DMI_MATCH(DMI_SYS_VENDOR, "Micro-Star International"),
  45. DMI_MATCH(DMI_PRODUCT_NAME, "GX700/GX705/EX700")
  46. }
  47. },
  48. { }
  49. };
  50. static void s5k4aa_dump_registers(struct sd *sd);
  51. int s5k4aa_probe(struct sd *sd)
  52. {
  53. u8 prod_id[6] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  54. const u8 expected_prod_id[6] = {0x00, 0x10, 0x00, 0x4b, 0x33, 0x75};
  55. int i, err = 0;
  56. if (force_sensor) {
  57. if (force_sensor == S5K4AA_SENSOR) {
  58. info("Forcing a %s sensor", s5k4aa.name);
  59. goto sensor_found;
  60. }
  61. /* If we want to force another sensor, don't try to probe this
  62. * one */
  63. return -ENODEV;
  64. }
  65. info("Probing for a s5k4aa sensor");
  66. /* Preinit the sensor */
  67. for (i = 0; i < ARRAY_SIZE(preinit_s5k4aa) && !err; i++) {
  68. u8 data[2] = {0x00, 0x00};
  69. switch (preinit_s5k4aa[i][0]) {
  70. case BRIDGE:
  71. err = m5602_write_bridge(sd,
  72. preinit_s5k4aa[i][1],
  73. preinit_s5k4aa[i][2]);
  74. break;
  75. case SENSOR:
  76. data[0] = preinit_s5k4aa[i][2];
  77. err = m5602_write_sensor(sd,
  78. preinit_s5k4aa[i][1],
  79. data, 1);
  80. break;
  81. case SENSOR_LONG:
  82. data[0] = preinit_s5k4aa[i][2];
  83. data[1] = preinit_s5k4aa[i][3];
  84. err = m5602_write_sensor(sd,
  85. preinit_s5k4aa[i][1],
  86. data, 2);
  87. break;
  88. default:
  89. info("Invalid stream command, exiting init");
  90. return -EINVAL;
  91. }
  92. }
  93. /* Test some registers, but we don't know their exact meaning yet */
  94. if (s5k4aa_read_sensor(sd, 0x00, prod_id, sizeof(prod_id)))
  95. return -ENODEV;
  96. if (memcmp(prod_id, expected_prod_id, sizeof(prod_id)))
  97. return -ENODEV;
  98. else
  99. info("Detected a s5k4aa sensor");
  100. sensor_found:
  101. sd->gspca_dev.cam.cam_mode = s5k4aa.modes;
  102. sd->gspca_dev.cam.nmodes = s5k4aa.nmodes;
  103. sd->desc->ctrls = s5k4aa.ctrls;
  104. sd->desc->nctrls = s5k4aa.nctrls;
  105. return 0;
  106. }
  107. int s5k4aa_read_sensor(struct sd *sd, const u8 address,
  108. u8 *i2c_data, const u8 len)
  109. {
  110. int err, i;
  111. do {
  112. err = m5602_read_bridge(sd, M5602_XB_I2C_STATUS, i2c_data);
  113. } while ((*i2c_data & I2C_BUSY) && !err);
  114. if (err < 0)
  115. goto out;
  116. err = m5602_write_bridge(sd, M5602_XB_I2C_DEV_ADDR,
  117. sd->sensor->i2c_slave_id);
  118. if (err < 0)
  119. goto out;
  120. err = m5602_write_bridge(sd, M5602_XB_I2C_REG_ADDR, address);
  121. if (err < 0)
  122. goto out;
  123. err = m5602_write_bridge(sd, M5602_XB_I2C_CTRL, 0x18 + len);
  124. if (err < 0)
  125. goto out;
  126. do {
  127. err = m5602_read_bridge(sd, M5602_XB_I2C_STATUS, i2c_data);
  128. } while ((*i2c_data & I2C_BUSY) && !err);
  129. if (err < 0)
  130. goto out;
  131. for (i = 0; (i < len) && !err; i++) {
  132. err = m5602_read_bridge(sd, M5602_XB_I2C_DATA, &(i2c_data[i]));
  133. PDEBUG(D_CONF, "Reading sensor register "
  134. "0x%x containing 0x%x ", address, *i2c_data);
  135. }
  136. out:
  137. return err;
  138. }
  139. int s5k4aa_write_sensor(struct sd *sd, const u8 address,
  140. u8 *i2c_data, const u8 len)
  141. {
  142. int err, i;
  143. u8 *p;
  144. struct usb_device *udev = sd->gspca_dev.dev;
  145. __u8 *buf = sd->gspca_dev.usb_buf;
  146. /* No sensor with a data width larger than 16 bits has yet been seen */
  147. if (len > 2 || !len)
  148. return -EINVAL;
  149. memcpy(buf, sensor_urb_skeleton,
  150. sizeof(sensor_urb_skeleton));
  151. buf[11] = sd->sensor->i2c_slave_id;
  152. buf[15] = address;
  153. /* Special case larger sensor writes */
  154. p = buf + 16;
  155. /* Copy a four byte write sequence for each byte to be written to */
  156. for (i = 0; i < len; i++) {
  157. memcpy(p, sensor_urb_skeleton + 16, 4);
  158. p[3] = i2c_data[i];
  159. p += 4;
  160. PDEBUG(D_CONF, "Writing sensor register 0x%x with 0x%x",
  161. address, i2c_data[i]);
  162. }
  163. /* Copy the tailer */
  164. memcpy(p, sensor_urb_skeleton + 20, 4);
  165. /* Set the total length */
  166. p[3] = 0x10 + len;
  167. err = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  168. 0x04, 0x40, 0x19,
  169. 0x0000, buf,
  170. 20 + len * 4, M5602_URB_MSG_TIMEOUT);
  171. return (err < 0) ? err : 0;
  172. }
  173. int s5k4aa_init(struct sd *sd)
  174. {
  175. int i, err = 0;
  176. for (i = 0; i < ARRAY_SIZE(init_s5k4aa) && !err; i++) {
  177. u8 data[2] = {0x00, 0x00};
  178. switch (init_s5k4aa[i][0]) {
  179. case BRIDGE:
  180. err = m5602_write_bridge(sd,
  181. init_s5k4aa[i][1],
  182. init_s5k4aa[i][2]);
  183. break;
  184. case SENSOR:
  185. data[0] = init_s5k4aa[i][2];
  186. err = m5602_write_sensor(sd,
  187. init_s5k4aa[i][1], data, 1);
  188. break;
  189. case SENSOR_LONG:
  190. data[0] = init_s5k4aa[i][2];
  191. data[1] = init_s5k4aa[i][3];
  192. err = m5602_write_sensor(sd,
  193. init_s5k4aa[i][1], data, 2);
  194. break;
  195. default:
  196. info("Invalid stream command, exiting init");
  197. return -EINVAL;
  198. }
  199. }
  200. if (dump_sensor)
  201. s5k4aa_dump_registers(sd);
  202. if (!err && dmi_check_system(s5k4aa_vflip_dmi_table)) {
  203. u8 data = 0x02;
  204. info("vertical flip quirk active");
  205. m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  206. s5k4aa_read_sensor(sd, S5K4AA_READ_MODE, &data, 1);
  207. data |= S5K4AA_RM_V_FLIP;
  208. data &= ~S5K4AA_RM_H_FLIP;
  209. m5602_write_sensor(sd, S5K4AA_READ_MODE, &data, 1);
  210. /* Decrement COLSTART to preserve color order (BGGR) */
  211. s5k4aa_read_sensor(sd, S5K4AA_COLSTART_LO, &data, 1);
  212. data--;
  213. m5602_write_sensor(sd, S5K4AA_COLSTART_LO, &data, 1);
  214. /* Increment ROWSTART to preserve color order (BGGR) */
  215. s5k4aa_read_sensor(sd, S5K4AA_ROWSTART_LO, &data, 1);
  216. data++;
  217. m5602_write_sensor(sd, S5K4AA_ROWSTART_LO, &data, 1);
  218. }
  219. return (err < 0) ? err : 0;
  220. }
  221. int s5k4aa_power_down(struct sd *sd)
  222. {
  223. return 0;
  224. }
  225. int s5k4aa_get_exposure(struct gspca_dev *gspca_dev, __s32 *val)
  226. {
  227. struct sd *sd = (struct sd *) gspca_dev;
  228. u8 data = S5K4AA_PAGE_MAP_2;
  229. int err;
  230. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  231. if (err < 0)
  232. goto out;
  233. err = s5k4aa_read_sensor(sd, S5K4AA_EXPOSURE_HI, &data, 1);
  234. if (err < 0)
  235. goto out;
  236. *val = data << 8;
  237. err = s5k4aa_read_sensor(sd, S5K4AA_EXPOSURE_LO, &data, 1);
  238. *val |= data;
  239. PDEBUG(D_V4L2, "Read exposure %d", *val);
  240. out:
  241. return err;
  242. }
  243. int s5k4aa_set_exposure(struct gspca_dev *gspca_dev, __s32 val)
  244. {
  245. struct sd *sd = (struct sd *) gspca_dev;
  246. u8 data = S5K4AA_PAGE_MAP_2;
  247. int err;
  248. PDEBUG(D_V4L2, "Set exposure to %d", val);
  249. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  250. if (err < 0)
  251. goto out;
  252. data = (val >> 8) & 0xff;
  253. err = m5602_write_sensor(sd, S5K4AA_EXPOSURE_HI, &data, 1);
  254. if (err < 0)
  255. goto out;
  256. data = val & 0xff;
  257. err = m5602_write_sensor(sd, S5K4AA_EXPOSURE_LO, &data, 1);
  258. out:
  259. return err;
  260. }
  261. int s5k4aa_get_vflip(struct gspca_dev *gspca_dev, __s32 *val)
  262. {
  263. struct sd *sd = (struct sd *) gspca_dev;
  264. u8 data = S5K4AA_PAGE_MAP_2;
  265. int err;
  266. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  267. if (err < 0)
  268. goto out;
  269. err = s5k4aa_read_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  270. *val = (data & S5K4AA_RM_V_FLIP) >> 7;
  271. PDEBUG(D_V4L2, "Read vertical flip %d", *val);
  272. out:
  273. return err;
  274. }
  275. int s5k4aa_set_vflip(struct gspca_dev *gspca_dev, __s32 val)
  276. {
  277. struct sd *sd = (struct sd *) gspca_dev;
  278. u8 data = S5K4AA_PAGE_MAP_2;
  279. int err;
  280. PDEBUG(D_V4L2, "Set vertical flip to %d", val);
  281. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  282. if (err < 0)
  283. goto out;
  284. err = m5602_write_sensor(sd, S5K4AA_READ_MODE, &data, 1);
  285. if (err < 0)
  286. goto out;
  287. data = ((data & ~S5K4AA_RM_V_FLIP)
  288. | ((val & 0x01) << 7));
  289. err = m5602_write_sensor(sd, S5K4AA_READ_MODE, &data, 1);
  290. if (err < 0)
  291. goto out;
  292. if (val) {
  293. err = s5k4aa_read_sensor(sd, S5K4AA_ROWSTART_LO, &data, 1);
  294. if (err < 0)
  295. goto out;
  296. data++;
  297. err = m5602_write_sensor(sd, S5K4AA_ROWSTART_LO, &data, 1);
  298. } else {
  299. err = s5k4aa_read_sensor(sd, S5K4AA_ROWSTART_LO, &data, 1);
  300. if (err < 0)
  301. goto out;
  302. data--;
  303. err = m5602_write_sensor(sd, S5K4AA_ROWSTART_LO, &data, 1);
  304. }
  305. out:
  306. return err;
  307. }
  308. int s5k4aa_get_hflip(struct gspca_dev *gspca_dev, __s32 *val)
  309. {
  310. struct sd *sd = (struct sd *) gspca_dev;
  311. u8 data = S5K4AA_PAGE_MAP_2;
  312. int err;
  313. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  314. if (err < 0)
  315. goto out;
  316. err = s5k4aa_read_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  317. *val = (data & S5K4AA_RM_H_FLIP) >> 6;
  318. PDEBUG(D_V4L2, "Read horizontal flip %d", *val);
  319. out:
  320. return err;
  321. }
  322. int s5k4aa_set_hflip(struct gspca_dev *gspca_dev, __s32 val)
  323. {
  324. struct sd *sd = (struct sd *) gspca_dev;
  325. u8 data = S5K4AA_PAGE_MAP_2;
  326. int err;
  327. PDEBUG(D_V4L2, "Set horizontal flip to %d",
  328. val);
  329. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  330. if (err < 0)
  331. goto out;
  332. err = m5602_write_sensor(sd, S5K4AA_READ_MODE, &data, 1);
  333. if (err < 0)
  334. goto out;
  335. data = ((data & ~S5K4AA_RM_H_FLIP) | ((val & 0x01) << 6));
  336. err = m5602_write_sensor(sd, S5K4AA_READ_MODE, &data, 1);
  337. if (err < 0)
  338. goto out;
  339. if (val) {
  340. err = s5k4aa_read_sensor(sd, S5K4AA_COLSTART_LO, &data, 1);
  341. if (err < 0)
  342. goto out;
  343. data++;
  344. err = m5602_write_sensor(sd, S5K4AA_COLSTART_LO, &data, 1);
  345. if (err < 0)
  346. goto out;
  347. } else {
  348. err = s5k4aa_read_sensor(sd, S5K4AA_COLSTART_LO, &data, 1);
  349. if (err < 0)
  350. goto out;
  351. data--;
  352. err = m5602_write_sensor(sd, S5K4AA_COLSTART_LO, &data, 1);
  353. }
  354. out:
  355. return err;
  356. }
  357. int s5k4aa_get_gain(struct gspca_dev *gspca_dev, __s32 *val)
  358. {
  359. struct sd *sd = (struct sd *) gspca_dev;
  360. u8 data = S5K4AA_PAGE_MAP_2;
  361. int err;
  362. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  363. if (err < 0)
  364. goto out;
  365. err = s5k4aa_read_sensor(sd, S5K4AA_GAIN_2, &data, 1);
  366. *val = data;
  367. PDEBUG(D_V4L2, "Read gain %d", *val);
  368. out:
  369. return err;
  370. }
  371. int s5k4aa_set_gain(struct gspca_dev *gspca_dev, __s32 val)
  372. {
  373. struct sd *sd = (struct sd *) gspca_dev;
  374. u8 data = S5K4AA_PAGE_MAP_2;
  375. int err;
  376. PDEBUG(D_V4L2, "Set gain to %d", val);
  377. err = m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
  378. if (err < 0)
  379. goto out;
  380. data = val & 0xff;
  381. err = m5602_write_sensor(sd, S5K4AA_GAIN_2, &data, 1);
  382. out:
  383. return err;
  384. }
  385. static void s5k4aa_dump_registers(struct sd *sd)
  386. {
  387. int address;
  388. u8 page, old_page;
  389. s5k4aa_read_sensor(sd, S5K4AA_PAGE_MAP, &old_page, 1);
  390. for (page = 0; page < 16; page++) {
  391. m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &page, 1);
  392. info("Dumping the s5k4aa register state for page 0x%x", page);
  393. for (address = 0; address <= 0xff; address++) {
  394. u8 value = 0;
  395. s5k4aa_read_sensor(sd, address, &value, 1);
  396. info("register 0x%x contains 0x%x",
  397. address, value);
  398. }
  399. }
  400. info("s5k4aa register state dump complete");
  401. for (page = 0; page < 16; page++) {
  402. m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &page, 1);
  403. info("Probing for which registers that are "
  404. "read/write for page 0x%x", page);
  405. for (address = 0; address <= 0xff; address++) {
  406. u8 old_value, ctrl_value, test_value = 0xff;
  407. s5k4aa_read_sensor(sd, address, &old_value, 1);
  408. m5602_write_sensor(sd, address, &test_value, 1);
  409. s5k4aa_read_sensor(sd, address, &ctrl_value, 1);
  410. if (ctrl_value == test_value)
  411. info("register 0x%x is writeable", address);
  412. else
  413. info("register 0x%x is read only", address);
  414. /* Restore original value */
  415. m5602_write_sensor(sd, address, &old_value, 1);
  416. }
  417. }
  418. info("Read/write register probing complete");
  419. m5602_write_sensor(sd, S5K4AA_PAGE_MAP, &old_page, 1);
  420. }