ov7670.c 34 KB

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  1. /*
  2. * A V4L2 driver for OmniVision OV7670 cameras.
  3. *
  4. * Copyright 2006 One Laptop Per Child Association, Inc. Written
  5. * by Jonathan Corbet with substantial inspiration from Mark
  6. * McClelland's ovcamchip code.
  7. *
  8. * Copyright 2006-7 Jonathan Corbet <corbet@lwn.net>
  9. *
  10. * This file may be distributed under the terms of the GNU General
  11. * Public License, version 2.
  12. */
  13. #include <linux/init.h>
  14. #include <linux/module.h>
  15. #include <linux/moduleparam.h>
  16. #include <linux/slab.h>
  17. #include <linux/delay.h>
  18. #include <linux/videodev.h>
  19. #include <media/v4l2-common.h>
  20. #include <media/v4l2-chip-ident.h>
  21. #include <linux/i2c.h>
  22. MODULE_AUTHOR("Jonathan Corbet <corbet@lwn.net>");
  23. MODULE_DESCRIPTION("A low-level driver for OmniVision ov7670 sensors");
  24. MODULE_LICENSE("GPL");
  25. /*
  26. * Basic window sizes. These probably belong somewhere more globally
  27. * useful.
  28. */
  29. #define VGA_WIDTH 640
  30. #define VGA_HEIGHT 480
  31. #define QVGA_WIDTH 320
  32. #define QVGA_HEIGHT 240
  33. #define CIF_WIDTH 352
  34. #define CIF_HEIGHT 288
  35. #define QCIF_WIDTH 176
  36. #define QCIF_HEIGHT 144
  37. /*
  38. * Our nominal (default) frame rate.
  39. */
  40. #define OV7670_FRAME_RATE 30
  41. /*
  42. * The 7670 sits on i2c with ID 0x42
  43. */
  44. #define OV7670_I2C_ADDR 0x42
  45. /* Registers */
  46. #define REG_GAIN 0x00 /* Gain lower 8 bits (rest in vref) */
  47. #define REG_BLUE 0x01 /* blue gain */
  48. #define REG_RED 0x02 /* red gain */
  49. #define REG_VREF 0x03 /* Pieces of GAIN, VSTART, VSTOP */
  50. #define REG_COM1 0x04 /* Control 1 */
  51. #define COM1_CCIR656 0x40 /* CCIR656 enable */
  52. #define REG_BAVE 0x05 /* U/B Average level */
  53. #define REG_GbAVE 0x06 /* Y/Gb Average level */
  54. #define REG_AECHH 0x07 /* AEC MS 5 bits */
  55. #define REG_RAVE 0x08 /* V/R Average level */
  56. #define REG_COM2 0x09 /* Control 2 */
  57. #define COM2_SSLEEP 0x10 /* Soft sleep mode */
  58. #define REG_PID 0x0a /* Product ID MSB */
  59. #define REG_VER 0x0b /* Product ID LSB */
  60. #define REG_COM3 0x0c /* Control 3 */
  61. #define COM3_SWAP 0x40 /* Byte swap */
  62. #define COM3_SCALEEN 0x08 /* Enable scaling */
  63. #define COM3_DCWEN 0x04 /* Enable downsamp/crop/window */
  64. #define REG_COM4 0x0d /* Control 4 */
  65. #define REG_COM5 0x0e /* All "reserved" */
  66. #define REG_COM6 0x0f /* Control 6 */
  67. #define REG_AECH 0x10 /* More bits of AEC value */
  68. #define REG_CLKRC 0x11 /* Clocl control */
  69. #define CLK_EXT 0x40 /* Use external clock directly */
  70. #define CLK_SCALE 0x3f /* Mask for internal clock scale */
  71. #define REG_COM7 0x12 /* Control 7 */
  72. #define COM7_RESET 0x80 /* Register reset */
  73. #define COM7_FMT_MASK 0x38
  74. #define COM7_FMT_VGA 0x00
  75. #define COM7_FMT_CIF 0x20 /* CIF format */
  76. #define COM7_FMT_QVGA 0x10 /* QVGA format */
  77. #define COM7_FMT_QCIF 0x08 /* QCIF format */
  78. #define COM7_RGB 0x04 /* bits 0 and 2 - RGB format */
  79. #define COM7_YUV 0x00 /* YUV */
  80. #define COM7_BAYER 0x01 /* Bayer format */
  81. #define COM7_PBAYER 0x05 /* "Processed bayer" */
  82. #define REG_COM8 0x13 /* Control 8 */
  83. #define COM8_FASTAEC 0x80 /* Enable fast AGC/AEC */
  84. #define COM8_AECSTEP 0x40 /* Unlimited AEC step size */
  85. #define COM8_BFILT 0x20 /* Band filter enable */
  86. #define COM8_AGC 0x04 /* Auto gain enable */
  87. #define COM8_AWB 0x02 /* White balance enable */
  88. #define COM8_AEC 0x01 /* Auto exposure enable */
  89. #define REG_COM9 0x14 /* Control 9 - gain ceiling */
  90. #define REG_COM10 0x15 /* Control 10 */
  91. #define COM10_HSYNC 0x40 /* HSYNC instead of HREF */
  92. #define COM10_PCLK_HB 0x20 /* Suppress PCLK on horiz blank */
  93. #define COM10_HREF_REV 0x08 /* Reverse HREF */
  94. #define COM10_VS_LEAD 0x04 /* VSYNC on clock leading edge */
  95. #define COM10_VS_NEG 0x02 /* VSYNC negative */
  96. #define COM10_HS_NEG 0x01 /* HSYNC negative */
  97. #define REG_HSTART 0x17 /* Horiz start high bits */
  98. #define REG_HSTOP 0x18 /* Horiz stop high bits */
  99. #define REG_VSTART 0x19 /* Vert start high bits */
  100. #define REG_VSTOP 0x1a /* Vert stop high bits */
  101. #define REG_PSHFT 0x1b /* Pixel delay after HREF */
  102. #define REG_MIDH 0x1c /* Manuf. ID high */
  103. #define REG_MIDL 0x1d /* Manuf. ID low */
  104. #define REG_MVFP 0x1e /* Mirror / vflip */
  105. #define MVFP_MIRROR 0x20 /* Mirror image */
  106. #define MVFP_FLIP 0x10 /* Vertical flip */
  107. #define REG_AEW 0x24 /* AGC upper limit */
  108. #define REG_AEB 0x25 /* AGC lower limit */
  109. #define REG_VPT 0x26 /* AGC/AEC fast mode op region */
  110. #define REG_HSYST 0x30 /* HSYNC rising edge delay */
  111. #define REG_HSYEN 0x31 /* HSYNC falling edge delay */
  112. #define REG_HREF 0x32 /* HREF pieces */
  113. #define REG_TSLB 0x3a /* lots of stuff */
  114. #define TSLB_YLAST 0x04 /* UYVY or VYUY - see com13 */
  115. #define REG_COM11 0x3b /* Control 11 */
  116. #define COM11_NIGHT 0x80 /* NIght mode enable */
  117. #define COM11_NMFR 0x60 /* Two bit NM frame rate */
  118. #define COM11_HZAUTO 0x10 /* Auto detect 50/60 Hz */
  119. #define COM11_50HZ 0x08 /* Manual 50Hz select */
  120. #define COM11_EXP 0x02
  121. #define REG_COM12 0x3c /* Control 12 */
  122. #define COM12_HREF 0x80 /* HREF always */
  123. #define REG_COM13 0x3d /* Control 13 */
  124. #define COM13_GAMMA 0x80 /* Gamma enable */
  125. #define COM13_UVSAT 0x40 /* UV saturation auto adjustment */
  126. #define COM13_UVSWAP 0x01 /* V before U - w/TSLB */
  127. #define REG_COM14 0x3e /* Control 14 */
  128. #define COM14_DCWEN 0x10 /* DCW/PCLK-scale enable */
  129. #define REG_EDGE 0x3f /* Edge enhancement factor */
  130. #define REG_COM15 0x40 /* Control 15 */
  131. #define COM15_R10F0 0x00 /* Data range 10 to F0 */
  132. #define COM15_R01FE 0x80 /* 01 to FE */
  133. #define COM15_R00FF 0xc0 /* 00 to FF */
  134. #define COM15_RGB565 0x10 /* RGB565 output */
  135. #define COM15_RGB555 0x30 /* RGB555 output */
  136. #define REG_COM16 0x41 /* Control 16 */
  137. #define COM16_AWBGAIN 0x08 /* AWB gain enable */
  138. #define REG_COM17 0x42 /* Control 17 */
  139. #define COM17_AECWIN 0xc0 /* AEC window - must match COM4 */
  140. #define COM17_CBAR 0x08 /* DSP Color bar */
  141. /*
  142. * This matrix defines how the colors are generated, must be
  143. * tweaked to adjust hue and saturation.
  144. *
  145. * Order: v-red, v-green, v-blue, u-red, u-green, u-blue
  146. *
  147. * They are nine-bit signed quantities, with the sign bit
  148. * stored in 0x58. Sign for v-red is bit 0, and up from there.
  149. */
  150. #define REG_CMATRIX_BASE 0x4f
  151. #define CMATRIX_LEN 6
  152. #define REG_CMATRIX_SIGN 0x58
  153. #define REG_BRIGHT 0x55 /* Brightness */
  154. #define REG_CONTRAS 0x56 /* Contrast control */
  155. #define REG_GFIX 0x69 /* Fix gain control */
  156. #define REG_RGB444 0x8c /* RGB 444 control */
  157. #define R444_ENABLE 0x02 /* Turn on RGB444, overrides 5x5 */
  158. #define R444_RGBX 0x01 /* Empty nibble at end */
  159. #define REG_HAECC1 0x9f /* Hist AEC/AGC control 1 */
  160. #define REG_HAECC2 0xa0 /* Hist AEC/AGC control 2 */
  161. #define REG_BD50MAX 0xa5 /* 50hz banding step limit */
  162. #define REG_HAECC3 0xa6 /* Hist AEC/AGC control 3 */
  163. #define REG_HAECC4 0xa7 /* Hist AEC/AGC control 4 */
  164. #define REG_HAECC5 0xa8 /* Hist AEC/AGC control 5 */
  165. #define REG_HAECC6 0xa9 /* Hist AEC/AGC control 6 */
  166. #define REG_HAECC7 0xaa /* Hist AEC/AGC control 7 */
  167. #define REG_BD60MAX 0xab /* 60hz banding step limit */
  168. /*
  169. * Information we maintain about a known sensor.
  170. */
  171. struct ov7670_format_struct; /* coming later */
  172. struct ov7670_info {
  173. struct ov7670_format_struct *fmt; /* Current format */
  174. unsigned char sat; /* Saturation value */
  175. int hue; /* Hue value */
  176. };
  177. /*
  178. * The default register settings, as obtained from OmniVision. There
  179. * is really no making sense of most of these - lots of "reserved" values
  180. * and such.
  181. *
  182. * These settings give VGA YUYV.
  183. */
  184. struct regval_list {
  185. unsigned char reg_num;
  186. unsigned char value;
  187. };
  188. static struct regval_list ov7670_default_regs[] = {
  189. { REG_COM7, COM7_RESET },
  190. /*
  191. * Clock scale: 3 = 15fps
  192. * 2 = 20fps
  193. * 1 = 30fps
  194. */
  195. { REG_CLKRC, 0x1 }, /* OV: clock scale (30 fps) */
  196. { REG_TSLB, 0x04 }, /* OV */
  197. { REG_COM7, 0 }, /* VGA */
  198. /*
  199. * Set the hardware window. These values from OV don't entirely
  200. * make sense - hstop is less than hstart. But they work...
  201. */
  202. { REG_HSTART, 0x13 }, { REG_HSTOP, 0x01 },
  203. { REG_HREF, 0xb6 }, { REG_VSTART, 0x02 },
  204. { REG_VSTOP, 0x7a }, { REG_VREF, 0x0a },
  205. { REG_COM3, 0 }, { REG_COM14, 0 },
  206. /* Mystery scaling numbers */
  207. { 0x70, 0x3a }, { 0x71, 0x35 },
  208. { 0x72, 0x11 }, { 0x73, 0xf0 },
  209. { 0xa2, 0x02 }, { REG_COM10, 0x0 },
  210. /* Gamma curve values */
  211. { 0x7a, 0x20 }, { 0x7b, 0x10 },
  212. { 0x7c, 0x1e }, { 0x7d, 0x35 },
  213. { 0x7e, 0x5a }, { 0x7f, 0x69 },
  214. { 0x80, 0x76 }, { 0x81, 0x80 },
  215. { 0x82, 0x88 }, { 0x83, 0x8f },
  216. { 0x84, 0x96 }, { 0x85, 0xa3 },
  217. { 0x86, 0xaf }, { 0x87, 0xc4 },
  218. { 0x88, 0xd7 }, { 0x89, 0xe8 },
  219. /* AGC and AEC parameters. Note we start by disabling those features,
  220. then turn them only after tweaking the values. */
  221. { REG_COM8, COM8_FASTAEC | COM8_AECSTEP | COM8_BFILT },
  222. { REG_GAIN, 0 }, { REG_AECH, 0 },
  223. { REG_COM4, 0x40 }, /* magic reserved bit */
  224. { REG_COM9, 0x18 }, /* 4x gain + magic rsvd bit */
  225. { REG_BD50MAX, 0x05 }, { REG_BD60MAX, 0x07 },
  226. { REG_AEW, 0x95 }, { REG_AEB, 0x33 },
  227. { REG_VPT, 0xe3 }, { REG_HAECC1, 0x78 },
  228. { REG_HAECC2, 0x68 }, { 0xa1, 0x03 }, /* magic */
  229. { REG_HAECC3, 0xd8 }, { REG_HAECC4, 0xd8 },
  230. { REG_HAECC5, 0xf0 }, { REG_HAECC6, 0x90 },
  231. { REG_HAECC7, 0x94 },
  232. { REG_COM8, COM8_FASTAEC|COM8_AECSTEP|COM8_BFILT|COM8_AGC|COM8_AEC },
  233. /* Almost all of these are magic "reserved" values. */
  234. { REG_COM5, 0x61 }, { REG_COM6, 0x4b },
  235. { 0x16, 0x02 }, { REG_MVFP, 0x07 },
  236. { 0x21, 0x02 }, { 0x22, 0x91 },
  237. { 0x29, 0x07 }, { 0x33, 0x0b },
  238. { 0x35, 0x0b }, { 0x37, 0x1d },
  239. { 0x38, 0x71 }, { 0x39, 0x2a },
  240. { REG_COM12, 0x78 }, { 0x4d, 0x40 },
  241. { 0x4e, 0x20 }, { REG_GFIX, 0 },
  242. { 0x6b, 0x4a }, { 0x74, 0x10 },
  243. { 0x8d, 0x4f }, { 0x8e, 0 },
  244. { 0x8f, 0 }, { 0x90, 0 },
  245. { 0x91, 0 }, { 0x96, 0 },
  246. { 0x9a, 0 }, { 0xb0, 0x84 },
  247. { 0xb1, 0x0c }, { 0xb2, 0x0e },
  248. { 0xb3, 0x82 }, { 0xb8, 0x0a },
  249. /* More reserved magic, some of which tweaks white balance */
  250. { 0x43, 0x0a }, { 0x44, 0xf0 },
  251. { 0x45, 0x34 }, { 0x46, 0x58 },
  252. { 0x47, 0x28 }, { 0x48, 0x3a },
  253. { 0x59, 0x88 }, { 0x5a, 0x88 },
  254. { 0x5b, 0x44 }, { 0x5c, 0x67 },
  255. { 0x5d, 0x49 }, { 0x5e, 0x0e },
  256. { 0x6c, 0x0a }, { 0x6d, 0x55 },
  257. { 0x6e, 0x11 }, { 0x6f, 0x9f }, /* "9e for advance AWB" */
  258. { 0x6a, 0x40 }, { REG_BLUE, 0x40 },
  259. { REG_RED, 0x60 },
  260. { REG_COM8, COM8_FASTAEC|COM8_AECSTEP|COM8_BFILT|COM8_AGC|COM8_AEC|COM8_AWB },
  261. /* Matrix coefficients */
  262. { 0x4f, 0x80 }, { 0x50, 0x80 },
  263. { 0x51, 0 }, { 0x52, 0x22 },
  264. { 0x53, 0x5e }, { 0x54, 0x80 },
  265. { 0x58, 0x9e },
  266. { REG_COM16, COM16_AWBGAIN }, { REG_EDGE, 0 },
  267. { 0x75, 0x05 }, { 0x76, 0xe1 },
  268. { 0x4c, 0 }, { 0x77, 0x01 },
  269. { REG_COM13, 0xc3 }, { 0x4b, 0x09 },
  270. { 0xc9, 0x60 }, { REG_COM16, 0x38 },
  271. { 0x56, 0x40 },
  272. { 0x34, 0x11 }, { REG_COM11, COM11_EXP|COM11_HZAUTO },
  273. { 0xa4, 0x88 }, { 0x96, 0 },
  274. { 0x97, 0x30 }, { 0x98, 0x20 },
  275. { 0x99, 0x30 }, { 0x9a, 0x84 },
  276. { 0x9b, 0x29 }, { 0x9c, 0x03 },
  277. { 0x9d, 0x4c }, { 0x9e, 0x3f },
  278. { 0x78, 0x04 },
  279. /* Extra-weird stuff. Some sort of multiplexor register */
  280. { 0x79, 0x01 }, { 0xc8, 0xf0 },
  281. { 0x79, 0x0f }, { 0xc8, 0x00 },
  282. { 0x79, 0x10 }, { 0xc8, 0x7e },
  283. { 0x79, 0x0a }, { 0xc8, 0x80 },
  284. { 0x79, 0x0b }, { 0xc8, 0x01 },
  285. { 0x79, 0x0c }, { 0xc8, 0x0f },
  286. { 0x79, 0x0d }, { 0xc8, 0x20 },
  287. { 0x79, 0x09 }, { 0xc8, 0x80 },
  288. { 0x79, 0x02 }, { 0xc8, 0xc0 },
  289. { 0x79, 0x03 }, { 0xc8, 0x40 },
  290. { 0x79, 0x05 }, { 0xc8, 0x30 },
  291. { 0x79, 0x26 },
  292. { 0xff, 0xff }, /* END MARKER */
  293. };
  294. /*
  295. * Here we'll try to encapsulate the changes for just the output
  296. * video format.
  297. *
  298. * RGB656 and YUV422 come from OV; RGB444 is homebrewed.
  299. *
  300. * IMPORTANT RULE: the first entry must be for COM7, see ov7670_s_fmt for why.
  301. */
  302. static struct regval_list ov7670_fmt_yuv422[] = {
  303. { REG_COM7, 0x0 }, /* Selects YUV mode */
  304. { REG_RGB444, 0 }, /* No RGB444 please */
  305. { REG_COM1, 0 },
  306. { REG_COM15, COM15_R00FF },
  307. { REG_COM9, 0x18 }, /* 4x gain ceiling; 0x8 is reserved bit */
  308. { 0x4f, 0x80 }, /* "matrix coefficient 1" */
  309. { 0x50, 0x80 }, /* "matrix coefficient 2" */
  310. { 0x51, 0 }, /* vb */
  311. { 0x52, 0x22 }, /* "matrix coefficient 4" */
  312. { 0x53, 0x5e }, /* "matrix coefficient 5" */
  313. { 0x54, 0x80 }, /* "matrix coefficient 6" */
  314. { REG_COM13, COM13_GAMMA|COM13_UVSAT },
  315. { 0xff, 0xff },
  316. };
  317. static struct regval_list ov7670_fmt_rgb565[] = {
  318. { REG_COM7, COM7_RGB }, /* Selects RGB mode */
  319. { REG_RGB444, 0 }, /* No RGB444 please */
  320. { REG_COM1, 0x0 },
  321. { REG_COM15, COM15_RGB565 },
  322. { REG_COM9, 0x38 }, /* 16x gain ceiling; 0x8 is reserved bit */
  323. { 0x4f, 0xb3 }, /* "matrix coefficient 1" */
  324. { 0x50, 0xb3 }, /* "matrix coefficient 2" */
  325. { 0x51, 0 }, /* vb */
  326. { 0x52, 0x3d }, /* "matrix coefficient 4" */
  327. { 0x53, 0xa7 }, /* "matrix coefficient 5" */
  328. { 0x54, 0xe4 }, /* "matrix coefficient 6" */
  329. { REG_COM13, COM13_GAMMA|COM13_UVSAT },
  330. { 0xff, 0xff },
  331. };
  332. static struct regval_list ov7670_fmt_rgb444[] = {
  333. { REG_COM7, COM7_RGB }, /* Selects RGB mode */
  334. { REG_RGB444, R444_ENABLE }, /* Enable xxxxrrrr ggggbbbb */
  335. { REG_COM1, 0x40 }, /* Magic reserved bit */
  336. { REG_COM15, COM15_R01FE|COM15_RGB565 }, /* Data range needed? */
  337. { REG_COM9, 0x38 }, /* 16x gain ceiling; 0x8 is reserved bit */
  338. { 0x4f, 0xb3 }, /* "matrix coefficient 1" */
  339. { 0x50, 0xb3 }, /* "matrix coefficient 2" */
  340. { 0x51, 0 }, /* vb */
  341. { 0x52, 0x3d }, /* "matrix coefficient 4" */
  342. { 0x53, 0xa7 }, /* "matrix coefficient 5" */
  343. { 0x54, 0xe4 }, /* "matrix coefficient 6" */
  344. { REG_COM13, COM13_GAMMA|COM13_UVSAT|0x2 }, /* Magic rsvd bit */
  345. { 0xff, 0xff },
  346. };
  347. /*
  348. * Low-level register I/O.
  349. */
  350. static int ov7670_read(struct i2c_client *c, unsigned char reg,
  351. unsigned char *value)
  352. {
  353. int ret;
  354. ret = i2c_smbus_read_byte_data(c, reg);
  355. if (ret >= 0)
  356. *value = (unsigned char) ret;
  357. return ret;
  358. }
  359. static int ov7670_write(struct i2c_client *c, unsigned char reg,
  360. unsigned char value)
  361. {
  362. return i2c_smbus_write_byte_data(c, reg, value);
  363. }
  364. /*
  365. * Write a list of register settings; ff/ff stops the process.
  366. */
  367. static int ov7670_write_array(struct i2c_client *c, struct regval_list *vals)
  368. {
  369. while (vals->reg_num != 0xff || vals->value != 0xff) {
  370. int ret = ov7670_write(c, vals->reg_num, vals->value);
  371. if (ret < 0)
  372. return ret;
  373. vals++;
  374. }
  375. return 0;
  376. }
  377. /*
  378. * Stuff that knows about the sensor.
  379. */
  380. static void ov7670_reset(struct i2c_client *client)
  381. {
  382. ov7670_write(client, REG_COM7, COM7_RESET);
  383. msleep(1);
  384. }
  385. static int ov7670_init(struct i2c_client *client)
  386. {
  387. return ov7670_write_array(client, ov7670_default_regs);
  388. }
  389. static int ov7670_detect(struct i2c_client *client)
  390. {
  391. unsigned char v;
  392. int ret;
  393. ret = ov7670_init(client);
  394. if (ret < 0)
  395. return ret;
  396. ret = ov7670_read(client, REG_MIDH, &v);
  397. if (ret < 0)
  398. return ret;
  399. if (v != 0x7f) /* OV manuf. id. */
  400. return -ENODEV;
  401. ret = ov7670_read(client, REG_MIDL, &v);
  402. if (ret < 0)
  403. return ret;
  404. if (v != 0xa2)
  405. return -ENODEV;
  406. /*
  407. * OK, we know we have an OmniVision chip...but which one?
  408. */
  409. ret = ov7670_read(client, REG_PID, &v);
  410. if (ret < 0)
  411. return ret;
  412. if (v != 0x76) /* PID + VER = 0x76 / 0x73 */
  413. return -ENODEV;
  414. ret = ov7670_read(client, REG_VER, &v);
  415. if (ret < 0)
  416. return ret;
  417. if (v != 0x73) /* PID + VER = 0x76 / 0x73 */
  418. return -ENODEV;
  419. return 0;
  420. }
  421. /*
  422. * Store information about the video data format. The color matrix
  423. * is deeply tied into the format, so keep the relevant values here.
  424. * The magic matrix nubmers come from OmniVision.
  425. */
  426. static struct ov7670_format_struct {
  427. __u8 *desc;
  428. __u32 pixelformat;
  429. struct regval_list *regs;
  430. int cmatrix[CMATRIX_LEN];
  431. } ov7670_formats[] = {
  432. {
  433. .desc = "YUYV 4:2:2",
  434. .pixelformat = V4L2_PIX_FMT_YUYV,
  435. .regs = ov7670_fmt_yuv422,
  436. .cmatrix = { 128, -128, 0, -34, -94, 128 },
  437. },
  438. {
  439. .desc = "RGB 444",
  440. .pixelformat = V4L2_PIX_FMT_RGB444,
  441. .regs = ov7670_fmt_rgb444,
  442. .cmatrix = { 179, -179, 0, -61, -176, 228 },
  443. },
  444. {
  445. .desc = "RGB 565",
  446. .pixelformat = V4L2_PIX_FMT_RGB565,
  447. .regs = ov7670_fmt_rgb565,
  448. .cmatrix = { 179, -179, 0, -61, -176, 228 },
  449. },
  450. };
  451. #define N_OV7670_FMTS (sizeof(ov7670_formats)/sizeof(ov7670_formats[0]))
  452. /*
  453. * All formats we support are 2 bytes/pixel.
  454. */
  455. #define BYTES_PER_PIXEL 2
  456. /*
  457. * Then there is the issue of window sizes. Try to capture the info here.
  458. */
  459. /*
  460. * QCIF mode is done (by OV) in a very strange way - it actually looks like
  461. * VGA with weird scaling options - they do *not* use the canned QCIF mode
  462. * which is allegedly provided by the sensor. So here's the weird register
  463. * settings.
  464. */
  465. static struct regval_list ov7670_qcif_regs[] = {
  466. { REG_COM3, COM3_SCALEEN|COM3_DCWEN },
  467. { REG_COM3, COM3_DCWEN },
  468. { REG_COM14, COM14_DCWEN | 0x01},
  469. { 0x73, 0xf1 },
  470. { 0xa2, 0x52 },
  471. { 0x7b, 0x1c },
  472. { 0x7c, 0x28 },
  473. { 0x7d, 0x3c },
  474. { 0x7f, 0x69 },
  475. { REG_COM9, 0x38 },
  476. { 0xa1, 0x0b },
  477. { 0x74, 0x19 },
  478. { 0x9a, 0x80 },
  479. { 0x43, 0x14 },
  480. { REG_COM13, 0xc0 },
  481. { 0xff, 0xff },
  482. };
  483. static struct ov7670_win_size {
  484. int width;
  485. int height;
  486. unsigned char com7_bit;
  487. int hstart; /* Start/stop values for the camera. Note */
  488. int hstop; /* that they do not always make complete */
  489. int vstart; /* sense to humans, but evidently the sensor */
  490. int vstop; /* will do the right thing... */
  491. struct regval_list *regs; /* Regs to tweak */
  492. /* h/vref stuff */
  493. } ov7670_win_sizes[] = {
  494. /* VGA */
  495. {
  496. .width = VGA_WIDTH,
  497. .height = VGA_HEIGHT,
  498. .com7_bit = COM7_FMT_VGA,
  499. .hstart = 158, /* These values from */
  500. .hstop = 14, /* Omnivision */
  501. .vstart = 10,
  502. .vstop = 490,
  503. .regs = NULL,
  504. },
  505. /* CIF */
  506. {
  507. .width = CIF_WIDTH,
  508. .height = CIF_HEIGHT,
  509. .com7_bit = COM7_FMT_CIF,
  510. .hstart = 170, /* Empirically determined */
  511. .hstop = 90,
  512. .vstart = 14,
  513. .vstop = 494,
  514. .regs = NULL,
  515. },
  516. /* QVGA */
  517. {
  518. .width = QVGA_WIDTH,
  519. .height = QVGA_HEIGHT,
  520. .com7_bit = COM7_FMT_QVGA,
  521. .hstart = 164, /* Empirically determined */
  522. .hstop = 20,
  523. .vstart = 14,
  524. .vstop = 494,
  525. .regs = NULL,
  526. },
  527. /* QCIF */
  528. {
  529. .width = QCIF_WIDTH,
  530. .height = QCIF_HEIGHT,
  531. .com7_bit = COM7_FMT_VGA, /* see comment above */
  532. .hstart = 456, /* Empirically determined */
  533. .hstop = 24,
  534. .vstart = 14,
  535. .vstop = 494,
  536. .regs = ov7670_qcif_regs,
  537. },
  538. };
  539. #define N_WIN_SIZES (sizeof(ov7670_win_sizes)/sizeof(ov7670_win_sizes[0]))
  540. /*
  541. * Store a set of start/stop values into the camera.
  542. */
  543. static int ov7670_set_hw(struct i2c_client *client, int hstart, int hstop,
  544. int vstart, int vstop)
  545. {
  546. int ret;
  547. unsigned char v;
  548. /*
  549. * Horizontal: 11 bits, top 8 live in hstart and hstop. Bottom 3 of
  550. * hstart are in href[2:0], bottom 3 of hstop in href[5:3]. There is
  551. * a mystery "edge offset" value in the top two bits of href.
  552. */
  553. ret = ov7670_write(client, REG_HSTART, (hstart >> 3) & 0xff);
  554. ret += ov7670_write(client, REG_HSTOP, (hstop >> 3) & 0xff);
  555. ret += ov7670_read(client, REG_HREF, &v);
  556. v = (v & 0xc0) | ((hstop & 0x7) << 3) | (hstart & 0x7);
  557. msleep(10);
  558. ret += ov7670_write(client, REG_HREF, v);
  559. /*
  560. * Vertical: similar arrangement, but only 10 bits.
  561. */
  562. ret += ov7670_write(client, REG_VSTART, (vstart >> 2) & 0xff);
  563. ret += ov7670_write(client, REG_VSTOP, (vstop >> 2) & 0xff);
  564. ret += ov7670_read(client, REG_VREF, &v);
  565. v = (v & 0xf0) | ((vstop & 0x3) << 2) | (vstart & 0x3);
  566. msleep(10);
  567. ret += ov7670_write(client, REG_VREF, v);
  568. return ret;
  569. }
  570. static int ov7670_enum_fmt(struct i2c_client *c, struct v4l2_fmtdesc *fmt)
  571. {
  572. struct ov7670_format_struct *ofmt;
  573. if (fmt->index >= N_OV7670_FMTS)
  574. return -EINVAL;
  575. ofmt = ov7670_formats + fmt->index;
  576. fmt->flags = 0;
  577. strcpy(fmt->description, ofmt->desc);
  578. fmt->pixelformat = ofmt->pixelformat;
  579. return 0;
  580. }
  581. static int ov7670_try_fmt(struct i2c_client *c, struct v4l2_format *fmt,
  582. struct ov7670_format_struct **ret_fmt,
  583. struct ov7670_win_size **ret_wsize)
  584. {
  585. int index;
  586. struct ov7670_win_size *wsize;
  587. struct v4l2_pix_format *pix = &fmt->fmt.pix;
  588. for (index = 0; index < N_OV7670_FMTS; index++)
  589. if (ov7670_formats[index].pixelformat == pix->pixelformat)
  590. break;
  591. if (index >= N_OV7670_FMTS)
  592. return -EINVAL;
  593. if (ret_fmt != NULL)
  594. *ret_fmt = ov7670_formats + index;
  595. /*
  596. * Fields: the OV devices claim to be progressive.
  597. */
  598. if (pix->field == V4L2_FIELD_ANY)
  599. pix->field = V4L2_FIELD_NONE;
  600. else if (pix->field != V4L2_FIELD_NONE)
  601. return -EINVAL;
  602. /*
  603. * Round requested image size down to the nearest
  604. * we support, but not below the smallest.
  605. */
  606. for (wsize = ov7670_win_sizes; wsize < ov7670_win_sizes + N_WIN_SIZES;
  607. wsize++)
  608. if (pix->width >= wsize->width && pix->height >= wsize->height)
  609. break;
  610. if (wsize >= ov7670_win_sizes + N_WIN_SIZES)
  611. wsize--; /* Take the smallest one */
  612. if (ret_wsize != NULL)
  613. *ret_wsize = wsize;
  614. /*
  615. * Note the size we'll actually handle.
  616. */
  617. pix->width = wsize->width;
  618. pix->height = wsize->height;
  619. pix->bytesperline = pix->width*BYTES_PER_PIXEL;
  620. pix->sizeimage = pix->height*pix->bytesperline;
  621. return 0;
  622. }
  623. /*
  624. * Set a format.
  625. */
  626. static int ov7670_s_fmt(struct i2c_client *c, struct v4l2_format *fmt)
  627. {
  628. int ret;
  629. struct ov7670_format_struct *ovfmt;
  630. struct ov7670_win_size *wsize;
  631. struct ov7670_info *info = i2c_get_clientdata(c);
  632. unsigned char com7;
  633. ret = ov7670_try_fmt(c, fmt, &ovfmt, &wsize);
  634. if (ret)
  635. return ret;
  636. /*
  637. * COM7 is a pain in the ass, it doesn't like to be read then
  638. * quickly written afterward. But we have everything we need
  639. * to set it absolutely here, as long as the format-specific
  640. * register sets list it first.
  641. */
  642. com7 = ovfmt->regs[0].value;
  643. com7 |= wsize->com7_bit;
  644. ov7670_write(c, REG_COM7, com7);
  645. /*
  646. * Now write the rest of the array. Also store start/stops
  647. */
  648. ov7670_write_array(c, ovfmt->regs + 1);
  649. ov7670_set_hw(c, wsize->hstart, wsize->hstop, wsize->vstart,
  650. wsize->vstop);
  651. ret = 0;
  652. if (wsize->regs)
  653. ret = ov7670_write_array(c, wsize->regs);
  654. info->fmt = ovfmt;
  655. return 0;
  656. }
  657. /*
  658. * Implement G/S_PARM. There is a "high quality" mode we could try
  659. * to do someday; for now, we just do the frame rate tweak.
  660. */
  661. static int ov7670_g_parm(struct i2c_client *c, struct v4l2_streamparm *parms)
  662. {
  663. struct v4l2_captureparm *cp = &parms->parm.capture;
  664. unsigned char clkrc;
  665. int ret;
  666. if (parms->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  667. return -EINVAL;
  668. ret = ov7670_read(c, REG_CLKRC, &clkrc);
  669. if (ret < 0)
  670. return ret;
  671. memset(cp, 0, sizeof(struct v4l2_captureparm));
  672. cp->capability = V4L2_CAP_TIMEPERFRAME;
  673. cp->timeperframe.numerator = 1;
  674. cp->timeperframe.denominator = OV7670_FRAME_RATE;
  675. if ((clkrc & CLK_EXT) == 0 && (clkrc & CLK_SCALE) > 1)
  676. cp->timeperframe.denominator /= (clkrc & CLK_SCALE);
  677. return 0;
  678. }
  679. static int ov7670_s_parm(struct i2c_client *c, struct v4l2_streamparm *parms)
  680. {
  681. struct v4l2_captureparm *cp = &parms->parm.capture;
  682. struct v4l2_fract *tpf = &cp->timeperframe;
  683. unsigned char clkrc;
  684. int ret, div;
  685. if (parms->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  686. return -EINVAL;
  687. if (cp->extendedmode != 0)
  688. return -EINVAL;
  689. /*
  690. * CLKRC has a reserved bit, so let's preserve it.
  691. */
  692. ret = ov7670_read(c, REG_CLKRC, &clkrc);
  693. if (ret < 0)
  694. return ret;
  695. if (tpf->numerator == 0 || tpf->denominator == 0)
  696. div = 1; /* Reset to full rate */
  697. else
  698. div = (tpf->numerator*OV7670_FRAME_RATE)/tpf->denominator;
  699. if (div == 0)
  700. div = 1;
  701. else if (div > CLK_SCALE)
  702. div = CLK_SCALE;
  703. clkrc = (clkrc & 0x80) | div;
  704. tpf->numerator = 1;
  705. tpf->denominator = OV7670_FRAME_RATE/div;
  706. return ov7670_write(c, REG_CLKRC, clkrc);
  707. }
  708. /*
  709. * Code for dealing with controls.
  710. */
  711. static int ov7670_store_cmatrix(struct i2c_client *client,
  712. int matrix[CMATRIX_LEN])
  713. {
  714. int i, ret;
  715. unsigned char signbits;
  716. /*
  717. * Weird crap seems to exist in the upper part of
  718. * the sign bits register, so let's preserve it.
  719. */
  720. ret = ov7670_read(client, REG_CMATRIX_SIGN, &signbits);
  721. signbits &= 0xc0;
  722. for (i = 0; i < CMATRIX_LEN; i++) {
  723. unsigned char raw;
  724. if (matrix[i] < 0) {
  725. signbits |= (1 << i);
  726. if (matrix[i] < -255)
  727. raw = 0xff;
  728. else
  729. raw = (-1 * matrix[i]) & 0xff;
  730. }
  731. else {
  732. if (matrix[i] > 255)
  733. raw = 0xff;
  734. else
  735. raw = matrix[i] & 0xff;
  736. }
  737. ret += ov7670_write(client, REG_CMATRIX_BASE + i, raw);
  738. }
  739. ret += ov7670_write(client, REG_CMATRIX_SIGN, signbits);
  740. return ret;
  741. }
  742. /*
  743. * Hue also requires messing with the color matrix. It also requires
  744. * trig functions, which tend not to be well supported in the kernel.
  745. * So here is a simple table of sine values, 0-90 degrees, in steps
  746. * of five degrees. Values are multiplied by 1000.
  747. *
  748. * The following naive approximate trig functions require an argument
  749. * carefully limited to -180 <= theta <= 180.
  750. */
  751. #define SIN_STEP 5
  752. static const int ov7670_sin_table[] = {
  753. 0, 87, 173, 258, 342, 422,
  754. 499, 573, 642, 707, 766, 819,
  755. 866, 906, 939, 965, 984, 996,
  756. 1000
  757. };
  758. static int ov7670_sine(int theta)
  759. {
  760. int chs = 1;
  761. int sine;
  762. if (theta < 0) {
  763. theta = -theta;
  764. chs = -1;
  765. }
  766. if (theta <= 90)
  767. sine = ov7670_sin_table[theta/SIN_STEP];
  768. else {
  769. theta -= 90;
  770. sine = 1000 - ov7670_sin_table[theta/SIN_STEP];
  771. }
  772. return sine*chs;
  773. }
  774. static int ov7670_cosine(int theta)
  775. {
  776. theta = 90 - theta;
  777. if (theta > 180)
  778. theta -= 360;
  779. else if (theta < -180)
  780. theta += 360;
  781. return ov7670_sine(theta);
  782. }
  783. static void ov7670_calc_cmatrix(struct ov7670_info *info,
  784. int matrix[CMATRIX_LEN])
  785. {
  786. int i;
  787. /*
  788. * Apply the current saturation setting first.
  789. */
  790. for (i = 0; i < CMATRIX_LEN; i++)
  791. matrix[i] = (info->fmt->cmatrix[i]*info->sat) >> 7;
  792. /*
  793. * Then, if need be, rotate the hue value.
  794. */
  795. if (info->hue != 0) {
  796. int sinth, costh, tmpmatrix[CMATRIX_LEN];
  797. memcpy(tmpmatrix, matrix, CMATRIX_LEN*sizeof(int));
  798. sinth = ov7670_sine(info->hue);
  799. costh = ov7670_cosine(info->hue);
  800. matrix[0] = (matrix[3]*sinth + matrix[0]*costh)/1000;
  801. matrix[1] = (matrix[4]*sinth + matrix[1]*costh)/1000;
  802. matrix[2] = (matrix[5]*sinth + matrix[2]*costh)/1000;
  803. matrix[3] = (matrix[3]*costh - matrix[0]*sinth)/1000;
  804. matrix[4] = (matrix[4]*costh - matrix[1]*sinth)/1000;
  805. matrix[5] = (matrix[5]*costh - matrix[2]*sinth)/1000;
  806. }
  807. }
  808. static int ov7670_t_sat(struct i2c_client *client, int value)
  809. {
  810. struct ov7670_info *info = i2c_get_clientdata(client);
  811. int matrix[CMATRIX_LEN];
  812. int ret;
  813. info->sat = value;
  814. ov7670_calc_cmatrix(info, matrix);
  815. ret = ov7670_store_cmatrix(client, matrix);
  816. return ret;
  817. }
  818. static int ov7670_q_sat(struct i2c_client *client, __s32 *value)
  819. {
  820. struct ov7670_info *info = i2c_get_clientdata(client);
  821. *value = info->sat;
  822. return 0;
  823. }
  824. static int ov7670_t_hue(struct i2c_client *client, int value)
  825. {
  826. struct ov7670_info *info = i2c_get_clientdata(client);
  827. int matrix[CMATRIX_LEN];
  828. int ret;
  829. if (value < -180 || value > 180)
  830. return -EINVAL;
  831. info->hue = value;
  832. ov7670_calc_cmatrix(info, matrix);
  833. ret = ov7670_store_cmatrix(client, matrix);
  834. return ret;
  835. }
  836. static int ov7670_q_hue(struct i2c_client *client, __s32 *value)
  837. {
  838. struct ov7670_info *info = i2c_get_clientdata(client);
  839. *value = info->hue;
  840. return 0;
  841. }
  842. /*
  843. * Some weird registers seem to store values in a sign/magnitude format!
  844. */
  845. static unsigned char ov7670_sm_to_abs(unsigned char v)
  846. {
  847. if ((v & 0x80) == 0)
  848. return v + 128;
  849. else
  850. return 128 - (v & 0x7f);
  851. }
  852. static unsigned char ov7670_abs_to_sm(unsigned char v)
  853. {
  854. if (v > 127)
  855. return v & 0x7f;
  856. else
  857. return (128 - v) | 0x80;
  858. }
  859. static int ov7670_t_brightness(struct i2c_client *client, int value)
  860. {
  861. unsigned char com8, v;
  862. int ret;
  863. ov7670_read(client, REG_COM8, &com8);
  864. com8 &= ~COM8_AEC;
  865. ov7670_write(client, REG_COM8, com8);
  866. v = ov7670_abs_to_sm(value);
  867. ret = ov7670_write(client, REG_BRIGHT, v);
  868. return ret;
  869. }
  870. static int ov7670_q_brightness(struct i2c_client *client, __s32 *value)
  871. {
  872. unsigned char v;
  873. int ret = ov7670_read(client, REG_BRIGHT, &v);
  874. *value = ov7670_sm_to_abs(v);
  875. return ret;
  876. }
  877. static int ov7670_t_contrast(struct i2c_client *client, int value)
  878. {
  879. return ov7670_write(client, REG_CONTRAS, (unsigned char) value);
  880. }
  881. static int ov7670_q_contrast(struct i2c_client *client, __s32 *value)
  882. {
  883. unsigned char v;
  884. int ret = ov7670_read(client, REG_CONTRAS, &v);
  885. *value = v;
  886. return ret;
  887. }
  888. static int ov7670_q_hflip(struct i2c_client *client, __s32 *value)
  889. {
  890. int ret;
  891. unsigned char v;
  892. ret = ov7670_read(client, REG_MVFP, &v);
  893. *value = (v & MVFP_MIRROR) == MVFP_MIRROR;
  894. return ret;
  895. }
  896. static int ov7670_t_hflip(struct i2c_client *client, int value)
  897. {
  898. unsigned char v;
  899. int ret;
  900. ret = ov7670_read(client, REG_MVFP, &v);
  901. if (value)
  902. v |= MVFP_MIRROR;
  903. else
  904. v &= ~MVFP_MIRROR;
  905. msleep(10); /* FIXME */
  906. ret += ov7670_write(client, REG_MVFP, v);
  907. return ret;
  908. }
  909. static int ov7670_q_vflip(struct i2c_client *client, __s32 *value)
  910. {
  911. int ret;
  912. unsigned char v;
  913. ret = ov7670_read(client, REG_MVFP, &v);
  914. *value = (v & MVFP_FLIP) == MVFP_FLIP;
  915. return ret;
  916. }
  917. static int ov7670_t_vflip(struct i2c_client *client, int value)
  918. {
  919. unsigned char v;
  920. int ret;
  921. ret = ov7670_read(client, REG_MVFP, &v);
  922. if (value)
  923. v |= MVFP_FLIP;
  924. else
  925. v &= ~MVFP_FLIP;
  926. msleep(10); /* FIXME */
  927. ret += ov7670_write(client, REG_MVFP, v);
  928. return ret;
  929. }
  930. static struct ov7670_control {
  931. struct v4l2_queryctrl qc;
  932. int (*query)(struct i2c_client *c, __s32 *value);
  933. int (*tweak)(struct i2c_client *c, int value);
  934. } ov7670_controls[] =
  935. {
  936. {
  937. .qc = {
  938. .id = V4L2_CID_BRIGHTNESS,
  939. .type = V4L2_CTRL_TYPE_INTEGER,
  940. .name = "Brightness",
  941. .minimum = 0,
  942. .maximum = 255,
  943. .step = 1,
  944. .default_value = 0x80,
  945. .flags = V4L2_CTRL_FLAG_SLIDER
  946. },
  947. .tweak = ov7670_t_brightness,
  948. .query = ov7670_q_brightness,
  949. },
  950. {
  951. .qc = {
  952. .id = V4L2_CID_CONTRAST,
  953. .type = V4L2_CTRL_TYPE_INTEGER,
  954. .name = "Contrast",
  955. .minimum = 0,
  956. .maximum = 127,
  957. .step = 1,
  958. .default_value = 0x40, /* XXX ov7670 spec */
  959. .flags = V4L2_CTRL_FLAG_SLIDER
  960. },
  961. .tweak = ov7670_t_contrast,
  962. .query = ov7670_q_contrast,
  963. },
  964. {
  965. .qc = {
  966. .id = V4L2_CID_SATURATION,
  967. .type = V4L2_CTRL_TYPE_INTEGER,
  968. .name = "Saturation",
  969. .minimum = 0,
  970. .maximum = 256,
  971. .step = 1,
  972. .default_value = 0x80,
  973. .flags = V4L2_CTRL_FLAG_SLIDER
  974. },
  975. .tweak = ov7670_t_sat,
  976. .query = ov7670_q_sat,
  977. },
  978. {
  979. .qc = {
  980. .id = V4L2_CID_HUE,
  981. .type = V4L2_CTRL_TYPE_INTEGER,
  982. .name = "HUE",
  983. .minimum = -180,
  984. .maximum = 180,
  985. .step = 5,
  986. .default_value = 0,
  987. .flags = V4L2_CTRL_FLAG_SLIDER
  988. },
  989. .tweak = ov7670_t_hue,
  990. .query = ov7670_q_hue,
  991. },
  992. {
  993. .qc = {
  994. .id = V4L2_CID_VFLIP,
  995. .type = V4L2_CTRL_TYPE_BOOLEAN,
  996. .name = "Vertical flip",
  997. .minimum = 0,
  998. .maximum = 1,
  999. .step = 1,
  1000. .default_value = 0,
  1001. },
  1002. .tweak = ov7670_t_vflip,
  1003. .query = ov7670_q_vflip,
  1004. },
  1005. {
  1006. .qc = {
  1007. .id = V4L2_CID_HFLIP,
  1008. .type = V4L2_CTRL_TYPE_BOOLEAN,
  1009. .name = "Horizontal mirror",
  1010. .minimum = 0,
  1011. .maximum = 1,
  1012. .step = 1,
  1013. .default_value = 0,
  1014. },
  1015. .tweak = ov7670_t_hflip,
  1016. .query = ov7670_q_hflip,
  1017. },
  1018. };
  1019. #define N_CONTROLS (sizeof(ov7670_controls)/sizeof(ov7670_controls[0]))
  1020. static struct ov7670_control *ov7670_find_control(__u32 id)
  1021. {
  1022. int i;
  1023. for (i = 0; i < N_CONTROLS; i++)
  1024. if (ov7670_controls[i].qc.id == id)
  1025. return ov7670_controls + i;
  1026. return NULL;
  1027. }
  1028. static int ov7670_queryctrl(struct i2c_client *client,
  1029. struct v4l2_queryctrl *qc)
  1030. {
  1031. struct ov7670_control *ctrl = ov7670_find_control(qc->id);
  1032. if (ctrl == NULL)
  1033. return -EINVAL;
  1034. *qc = ctrl->qc;
  1035. return 0;
  1036. }
  1037. static int ov7670_g_ctrl(struct i2c_client *client, struct v4l2_control *ctrl)
  1038. {
  1039. struct ov7670_control *octrl = ov7670_find_control(ctrl->id);
  1040. int ret;
  1041. if (octrl == NULL)
  1042. return -EINVAL;
  1043. ret = octrl->query(client, &ctrl->value);
  1044. if (ret >= 0)
  1045. return 0;
  1046. return ret;
  1047. }
  1048. static int ov7670_s_ctrl(struct i2c_client *client, struct v4l2_control *ctrl)
  1049. {
  1050. struct ov7670_control *octrl = ov7670_find_control(ctrl->id);
  1051. int ret;
  1052. if (octrl == NULL)
  1053. return -EINVAL;
  1054. ret = octrl->tweak(client, ctrl->value);
  1055. if (ret >= 0)
  1056. return 0;
  1057. return ret;
  1058. }
  1059. /*
  1060. * Basic i2c stuff.
  1061. */
  1062. static struct i2c_driver ov7670_driver;
  1063. static int ov7670_attach(struct i2c_adapter *adapter)
  1064. {
  1065. int ret;
  1066. struct i2c_client *client;
  1067. struct ov7670_info *info;
  1068. /*
  1069. * For now: only deal with adapters we recognize.
  1070. */
  1071. if (adapter->id != I2C_HW_SMBUS_CAFE)
  1072. return -ENODEV;
  1073. client = kzalloc(sizeof (struct i2c_client), GFP_KERNEL);
  1074. if (! client)
  1075. return -ENOMEM;
  1076. client->adapter = adapter;
  1077. client->addr = OV7670_I2C_ADDR;
  1078. client->driver = &ov7670_driver,
  1079. strcpy(client->name, "OV7670");
  1080. /*
  1081. * Set up our info structure.
  1082. */
  1083. info = kzalloc(sizeof (struct ov7670_info), GFP_KERNEL);
  1084. if (! info) {
  1085. ret = -ENOMEM;
  1086. goto out_free;
  1087. }
  1088. info->fmt = &ov7670_formats[0];
  1089. info->sat = 128; /* Review this */
  1090. i2c_set_clientdata(client, info);
  1091. /*
  1092. * Make sure it's an ov7670
  1093. */
  1094. ret = ov7670_detect(client);
  1095. if (ret)
  1096. goto out_free_info;
  1097. i2c_attach_client(client);
  1098. return 0;
  1099. out_free_info:
  1100. kfree(info);
  1101. out_free:
  1102. kfree(client);
  1103. return ret;
  1104. }
  1105. static int ov7670_detach(struct i2c_client *client)
  1106. {
  1107. i2c_detach_client(client);
  1108. kfree(i2c_get_clientdata(client));
  1109. kfree(client);
  1110. return 0;
  1111. }
  1112. static int ov7670_command(struct i2c_client *client, unsigned int cmd,
  1113. void *arg)
  1114. {
  1115. switch (cmd) {
  1116. case VIDIOC_G_CHIP_IDENT:
  1117. return v4l2_chip_ident_i2c_client(client, arg, V4L2_IDENT_OV7670, 0);
  1118. case VIDIOC_INT_RESET:
  1119. ov7670_reset(client);
  1120. return 0;
  1121. case VIDIOC_INT_INIT:
  1122. return ov7670_init(client);
  1123. case VIDIOC_ENUM_FMT:
  1124. return ov7670_enum_fmt(client, (struct v4l2_fmtdesc *) arg);
  1125. case VIDIOC_TRY_FMT:
  1126. return ov7670_try_fmt(client, (struct v4l2_format *) arg, NULL, NULL);
  1127. case VIDIOC_S_FMT:
  1128. return ov7670_s_fmt(client, (struct v4l2_format *) arg);
  1129. case VIDIOC_QUERYCTRL:
  1130. return ov7670_queryctrl(client, (struct v4l2_queryctrl *) arg);
  1131. case VIDIOC_S_CTRL:
  1132. return ov7670_s_ctrl(client, (struct v4l2_control *) arg);
  1133. case VIDIOC_G_CTRL:
  1134. return ov7670_g_ctrl(client, (struct v4l2_control *) arg);
  1135. case VIDIOC_S_PARM:
  1136. return ov7670_s_parm(client, (struct v4l2_streamparm *) arg);
  1137. case VIDIOC_G_PARM:
  1138. return ov7670_g_parm(client, (struct v4l2_streamparm *) arg);
  1139. }
  1140. return -EINVAL;
  1141. }
  1142. static struct i2c_driver ov7670_driver = {
  1143. .driver = {
  1144. .name = "ov7670",
  1145. },
  1146. .id = I2C_DRIVERID_OV7670,
  1147. .class = I2C_CLASS_CAM_DIGITAL,
  1148. .attach_adapter = ov7670_attach,
  1149. .detach_client = ov7670_detach,
  1150. .command = ov7670_command,
  1151. };
  1152. /*
  1153. * Module initialization
  1154. */
  1155. static int __init ov7670_mod_init(void)
  1156. {
  1157. printk(KERN_NOTICE "OmniVision ov7670 sensor driver, at your service\n");
  1158. return i2c_add_driver(&ov7670_driver);
  1159. }
  1160. static void __exit ov7670_mod_exit(void)
  1161. {
  1162. i2c_del_driver(&ov7670_driver);
  1163. }
  1164. module_init(ov7670_mod_init);
  1165. module_exit(ov7670_mod_exit);