gl860-ov2640.c 18 KB

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  1. /* Subdriver for the GL860 chip with the OV2640 sensor
  2. * Author Olivier LORIN, from Malmostoso's logs
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  16. */
  17. /* Sensor : OV2640 */
  18. #include "gl860.h"
  19. static u8 dat_init1[] = "\x00\x41\x07\x6a\x06\x61\x0d\x6a" "\x10\x10\xc1\x01";
  20. static u8 c61[] = {0x61}; /* expected */
  21. static u8 c51[] = {0x51}; /* expected */
  22. static u8 c50[] = {0x50}; /* expected */
  23. static u8 c28[] = {0x28}; /* expected */
  24. static u8 ca8[] = {0xa8}; /* expected */
  25. static u8 dat_post[] =
  26. "\x00\x41\x07\x6a\x06\xef\x0d\x6a" "\x10\x10\xc1\x01";
  27. static u8 dat_640[] = "\xd0\x01\xd1\x08\xd2\xe0\xd3\x02\xd4\x10\xd5\x81";
  28. static u8 dat_800[] = "\xd0\x01\xd1\x10\xd2\x58\xd3\x02\xd4\x18\xd5\x21";
  29. static u8 dat_1280[] = "\xd0\x01\xd1\x18\xd2\xc0\xd3\x02\xd4\x28\xd5\x01";
  30. static u8 dat_1600[] = "\xd0\x01\xd1\x20\xd2\xb0\xd3\x02\xd4\x30\xd5\x41";
  31. static struct validx tbl_init_at_startup[] = {
  32. {0x0000, 0x0000}, {0x0010, 0x0010}, {0x0008, 0x00c0}, {0x0001, 0x00c1},
  33. {0x0001, 0x00c2}, {0x0020, 0x0006}, {0x006a, 0x000d},
  34. {0x0050, 0x0000}, {0x0041, 0x0000}, {0x006a, 0x0007}, {0x0061, 0x0006},
  35. {0x006a, 0x000d}, {0x0000, 0x00c0}, {0x0010, 0x0010}, {0x0001, 0x00c1},
  36. {0x0041, 0x00c2}, {0x0004, 0x00d8}, {0x0012, 0x0004}, {0x0000, 0x0058},
  37. {0x0041, 0x0000}, {0x0061, 0x0000},
  38. };
  39. static struct validx tbl_common[] = {
  40. {0x6000, 0x00ff}, {0x60ff, 0x002c}, {0x60df, 0x002e}, {0x6001, 0x00ff},
  41. {0x6080, 0x0012}, {0x6000, 0x0000}, {0x6000, 0x0045}, {0x6000, 0x0010},
  42. {0x6035, 0x003c}, {0x6000, 0x0011}, {0x6028, 0x0004}, {0x60e5, 0x0013},
  43. {0x6088, 0x0014}, {0x600c, 0x002c}, {0x6078, 0x0033}, {0x60f7, 0x003b},
  44. {0x6000, 0x003e}, {0x6011, 0x0043}, {0x6010, 0x0016}, {0x6082, 0x0039},
  45. {0x6088, 0x0035}, {0x600a, 0x0022}, {0x6040, 0x0037}, {0x6000, 0x0023},
  46. {0x60a0, 0x0034}, {0x601a, 0x0036}, {0x6002, 0x0006}, {0x60c0, 0x0007},
  47. {0x60b7, 0x000d}, {0x6001, 0x000e}, {0x6000, 0x004c}, {0x6081, 0x004a},
  48. {0x6099, 0x0021}, {0x6002, 0x0009}, {0x603e, 0x0024}, {0x6034, 0x0025},
  49. {0x6081, 0x0026}, {0x6000, 0x0000}, {0x6000, 0x0045}, {0x6000, 0x0010},
  50. {0x6000, 0x005c}, {0x6000, 0x0063}, {0x6000, 0x007c}, {0x6070, 0x0061},
  51. {0x6080, 0x0062}, {0x6080, 0x0020}, {0x6030, 0x0028}, {0x6000, 0x006c},
  52. {0x6000, 0x006e}, {0x6002, 0x0070}, {0x6094, 0x0071}, {0x60c1, 0x0073},
  53. {0x6034, 0x003d}, {0x6057, 0x005a}, {0x60bb, 0x004f}, {0x609c, 0x0050},
  54. {0x6080, 0x006d}, {0x6002, 0x0039}, {0x6033, 0x003a}, {0x60f1, 0x003b},
  55. {0x6031, 0x003c}, {0x6000, 0x00ff}, {0x6014, 0x00e0}, {0x60ff, 0x0076},
  56. {0x60a0, 0x0033}, {0x6020, 0x0042}, {0x6018, 0x0043}, {0x6000, 0x004c},
  57. {0x60d0, 0x0087}, {0x600f, 0x0088}, {0x6003, 0x00d7}, {0x6010, 0x00d9},
  58. {0x6005, 0x00da}, {0x6082, 0x00d3}, {0x60c0, 0x00f9}, {0x6006, 0x0044},
  59. {0x6007, 0x00d1}, {0x6002, 0x00d2}, {0x6000, 0x00d2}, {0x6011, 0x00d8},
  60. {0x6008, 0x00c8}, {0x6080, 0x00c9}, {0x6008, 0x007c}, {0x6020, 0x007d},
  61. {0x6020, 0x007d}, {0x6000, 0x0090}, {0x600e, 0x0091}, {0x601a, 0x0091},
  62. {0x6031, 0x0091}, {0x605a, 0x0091}, {0x6069, 0x0091}, {0x6075, 0x0091},
  63. {0x607e, 0x0091}, {0x6088, 0x0091}, {0x608f, 0x0091}, {0x6096, 0x0091},
  64. {0x60a3, 0x0091}, {0x60af, 0x0091}, {0x60c4, 0x0091}, {0x60d7, 0x0091},
  65. {0x60e8, 0x0091}, {0x6020, 0x0091}, {0x6000, 0x0092}, {0x6006, 0x0093},
  66. {0x60e3, 0x0093}, {0x6005, 0x0093}, {0x6005, 0x0093}, {0x6000, 0x0093},
  67. {0x6004, 0x0093}, {0x6000, 0x0093}, {0x6000, 0x0093}, {0x6000, 0x0093},
  68. {0x6000, 0x0093}, {0x6000, 0x0093}, {0x6000, 0x0093}, {0x6000, 0x0093},
  69. {0x6000, 0x0096}, {0x6008, 0x0097}, {0x6019, 0x0097}, {0x6002, 0x0097},
  70. {0x600c, 0x0097}, {0x6024, 0x0097}, {0x6030, 0x0097}, {0x6028, 0x0097},
  71. {0x6026, 0x0097}, {0x6002, 0x0097}, {0x6098, 0x0097}, {0x6080, 0x0097},
  72. {0x6000, 0x0097}, {0x6000, 0x0097}, {0x60ed, 0x00c3}, {0x609a, 0x00c4},
  73. {0x6000, 0x00a4}, {0x6011, 0x00c5}, {0x6051, 0x00c6}, {0x6010, 0x00c7},
  74. {0x6066, 0x00b6}, {0x60a5, 0x00b8}, {0x6064, 0x00b7}, {0x607c, 0x00b9},
  75. {0x60af, 0x00b3}, {0x6097, 0x00b4}, {0x60ff, 0x00b5}, {0x60c5, 0x00b0},
  76. {0x6094, 0x00b1}, {0x600f, 0x00b2}, {0x605c, 0x00c4}, {0x6000, 0x00a8},
  77. {0x60c8, 0x00c0}, {0x6096, 0x00c1}, {0x601d, 0x0086}, {0x6000, 0x0050},
  78. {0x6090, 0x0051}, {0x6018, 0x0052}, {0x6000, 0x0053}, {0x6000, 0x0054},
  79. {0x6088, 0x0055}, {0x6000, 0x0057}, {0x6090, 0x005a}, {0x6018, 0x005b},
  80. {0x6005, 0x005c}, {0x60ed, 0x00c3}, {0x6000, 0x007f}, {0x6005, 0x00da},
  81. {0x601f, 0x00e5}, {0x6067, 0x00e1}, {0x6000, 0x00e0}, {0x60ff, 0x00dd},
  82. {0x6000, 0x0005}, {0x6001, 0x00ff}, {0x6000, 0x0000}, {0x6000, 0x0045},
  83. {0x6000, 0x0010},
  84. };
  85. static struct validx tbl_sensor_settings_common1[] = {
  86. {0x0041, 0x0000}, {0x006a, 0x0007}, {0x00ef, 0x0006}, {0x006a, 0x000d},
  87. {0x0000, 0x00c0}, {0x0010, 0x0010}, {0x0001, 0x00c1}, {0x0041, 0x00c2},
  88. {0x0004, 0x00d8}, {0x0012, 0x0004}, {0x0000, 0x0058}, {0x0041, 0x0000},
  89. {50, 0xffff},
  90. {0x0061, 0x0000},
  91. {0xffff, 0xffff},
  92. {0x6000, 0x00ff}, {0x6000, 0x007c}, {0x6007, 0x007d},
  93. {30, 0xffff},
  94. {0x0040, 0x0000},
  95. };
  96. static struct validx tbl_sensor_settings_common2[] = {
  97. {0x6001, 0x00ff}, {0x6038, 0x000c},
  98. {10, 0xffff},
  99. {0x6000, 0x0011},
  100. };
  101. static struct validx tbl_640[] = {
  102. {0x6000, 0x00ff}, {0x60f1, 0x00dd}, {0x6004, 0x00e0}, {0x6067, 0x00e1},
  103. {0x6004, 0x00da}, {0x6000, 0x00ff}, {0x60f1, 0x00dd}, {0x6004, 0x00e0},
  104. {0x6001, 0x00ff}, {0x6000, 0x0012}, {0x6000, 0x0011}, {0x6011, 0x0017},
  105. {0x6075, 0x0018}, {0x6001, 0x0019}, {0x6097, 0x001a}, {0x6036, 0x0032},
  106. {0x60bb, 0x004f}, {0x6057, 0x005a}, {0x609c, 0x0050}, {0x6080, 0x006d},
  107. {0x6092, 0x0026}, {0x60ff, 0x0020}, {0x6000, 0x0027}, {0x6000, 0x00ff},
  108. {0x60c8, 0x00c0}, {0x6096, 0x00c1}, {0x6000, 0x008c}, {0x603d, 0x0086},
  109. {0x6089, 0x0050}, {0x6090, 0x0051}, {0x602c, 0x0052}, {0x6000, 0x0053},
  110. {0x6000, 0x0054}, {0x6088, 0x0055}, {0x6000, 0x0057}, {0x60a0, 0x005a},
  111. {0x6078, 0x005b}, {0x6000, 0x005c}, {0x6004, 0x00d3}, {0x6000, 0x00e0},
  112. {0x60ff, 0x00dd}, {0x60a1, 0x005a},
  113. };
  114. static struct validx tbl_800[] = {
  115. {0x6000, 0x00ff}, {0x60f1, 0x00dd}, {0x6004, 0x00e0}, {0x6067, 0x00e1},
  116. {0x6004, 0x00da}, {0x6000, 0x00ff}, {0x60f1, 0x00dd}, {0x6004, 0x00e0},
  117. {0x6001, 0x00ff}, {0x6040, 0x0012}, {0x6000, 0x0011}, {0x6011, 0x0017},
  118. {0x6043, 0x0018}, {0x6000, 0x0019}, {0x604b, 0x001a}, {0x6009, 0x0032},
  119. {0x60ca, 0x004f}, {0x60a8, 0x0050}, {0x6000, 0x006d}, {0x6038, 0x003d},
  120. {0x60c8, 0x0035}, {0x6000, 0x0022}, {0x6092, 0x0026}, {0x60ff, 0x0020},
  121. {0x6000, 0x0027}, {0x6000, 0x00ff}, {0x6064, 0x00c0}, {0x604b, 0x00c1},
  122. {0x6000, 0x008c}, {0x601d, 0x0086}, {0x6082, 0x00d3}, {0x6000, 0x00e0},
  123. {0x60ff, 0x00dd}, {0x6020, 0x008c}, {0x6001, 0x00ff}, {0x6044, 0x0018},
  124. };
  125. static struct validx tbl_big1[] = {
  126. {0x0002, 0x00c1}, {0x6000, 0x00ff}, {0x60f1, 0x00dd}, {0x6004, 0x00e0},
  127. {0x6001, 0x00ff}, {0x6000, 0x0012}, {0x6000, 0x0000}, {0x6000, 0x0045},
  128. {0x6000, 0x0010}, {0x6000, 0x0011}, {0x6011, 0x0017}, {0x6075, 0x0018},
  129. {0x6001, 0x0019}, {0x6097, 0x001a}, {0x6036, 0x0032}, {0x60bb, 0x004f},
  130. {0x609c, 0x0050}, {0x6057, 0x005a}, {0x6080, 0x006d}, {0x6043, 0x000f},
  131. {0x608f, 0x0003}, {0x6005, 0x007c}, {0x6081, 0x0026}, {0x6000, 0x00ff},
  132. {0x60c8, 0x00c0}, {0x6096, 0x00c1}, {0x6000, 0x008c},
  133. };
  134. static struct validx tbl_big2[] = {
  135. {0x603d, 0x0086}, {0x6000, 0x0050}, {0x6090, 0x0051}, {0x602c, 0x0052},
  136. {0x6000, 0x0053}, {0x6000, 0x0054}, {0x6088, 0x0055}, {0x6000, 0x0057},
  137. {0x6040, 0x005a}, {0x60f0, 0x005b}, {0x6001, 0x005c}, {0x6082, 0x00d3},
  138. {0x6000, 0x008e},
  139. };
  140. static struct validx tbl_big3[] = {
  141. {0x6004, 0x00da}, {0x6000, 0x00e0}, {0x6067, 0x00e1}, {0x60ff, 0x00dd},
  142. {0x6001, 0x00ff}, {0x6000, 0x00ff}, {0x60f1, 0x00dd}, {0x6004, 0x00e0},
  143. {0x6001, 0x00ff}, {0x6000, 0x0011}, {0x6000, 0x00ff}, {0x6010, 0x00c7},
  144. {0x6000, 0x0092}, {0x6006, 0x0093}, {0x60e3, 0x0093}, {0x6005, 0x0093},
  145. {0x6005, 0x0093}, {0x60ed, 0x00c3}, {0x6000, 0x00a4}, {0x60d0, 0x0087},
  146. {0x6003, 0x0096}, {0x600c, 0x0097}, {0x6024, 0x0097}, {0x6030, 0x0097},
  147. {0x6028, 0x0097}, {0x6026, 0x0097}, {0x6002, 0x0097}, {0x6001, 0x00ff},
  148. {0x6043, 0x000f}, {0x608f, 0x0003}, {0x6000, 0x002d}, {0x6000, 0x002e},
  149. {0x600a, 0x0022}, {0x6002, 0x0070}, {0x6008, 0x0014}, {0x6048, 0x0014},
  150. {0x6000, 0x00ff}, {0x6000, 0x00e0}, {0x60ff, 0x00dd},
  151. };
  152. static struct validx tbl_post_unset_alt[] = {
  153. {0x006a, 0x000d}, {0x6001, 0x00ff}, {0x6081, 0x0026}, {0x6000, 0x0000},
  154. {0x6000, 0x0045}, {0x6000, 0x0010}, {0x6068, 0x000d},
  155. {50, 0xffff},
  156. {0x0021, 0x0000},
  157. };
  158. static int ov2640_init_at_startup(struct gspca_dev *gspca_dev);
  159. static int ov2640_configure_alt(struct gspca_dev *gspca_dev);
  160. static int ov2640_init_pre_alt(struct gspca_dev *gspca_dev);
  161. static int ov2640_init_post_alt(struct gspca_dev *gspca_dev);
  162. static void ov2640_post_unset_alt(struct gspca_dev *gspca_dev);
  163. static int ov2640_camera_settings(struct gspca_dev *gspca_dev);
  164. /*==========================================================================*/
  165. void ov2640_init_settings(struct gspca_dev *gspca_dev)
  166. {
  167. struct sd *sd = (struct sd *) gspca_dev;
  168. sd->vcur.backlight = 32;
  169. sd->vcur.brightness = 0;
  170. sd->vcur.sharpness = 6;
  171. sd->vcur.contrast = 0;
  172. sd->vcur.gamma = 32;
  173. sd->vcur.hue = 0;
  174. sd->vcur.saturation = 128;
  175. sd->vcur.whitebal = 64;
  176. sd->vcur.mirror = 0;
  177. sd->vcur.flip = 0;
  178. sd->vmax.backlight = 64;
  179. sd->vmax.brightness = 255;
  180. sd->vmax.sharpness = 31;
  181. sd->vmax.contrast = 255;
  182. sd->vmax.gamma = 64;
  183. sd->vmax.hue = 254 + 2;
  184. sd->vmax.saturation = 255;
  185. sd->vmax.whitebal = 128;
  186. sd->vmax.mirror = 1;
  187. sd->vmax.flip = 1;
  188. sd->vmax.AC50Hz = 0;
  189. sd->dev_camera_settings = ov2640_camera_settings;
  190. sd->dev_init_at_startup = ov2640_init_at_startup;
  191. sd->dev_configure_alt = ov2640_configure_alt;
  192. sd->dev_init_pre_alt = ov2640_init_pre_alt;
  193. sd->dev_post_unset_alt = ov2640_post_unset_alt;
  194. }
  195. /*==========================================================================*/
  196. static void common(struct gspca_dev *gspca_dev)
  197. {
  198. fetch_validx(gspca_dev, tbl_common, ARRAY_SIZE(tbl_common));
  199. }
  200. static int ov2640_init_at_startup(struct gspca_dev *gspca_dev)
  201. {
  202. fetch_validx(gspca_dev, tbl_init_at_startup,
  203. ARRAY_SIZE(tbl_init_at_startup));
  204. ctrl_out(gspca_dev, 0x40, 3, 0x0000, 0x0200, 12, dat_init1);
  205. common(gspca_dev);
  206. ctrl_in(gspca_dev, 0xc0, 2, 0x0000, 0x0006, 1, c61);
  207. ctrl_out(gspca_dev, 0x40, 1, 0x00ef, 0x0006, 0, NULL);
  208. ctrl_in(gspca_dev, 0xc0, 2, 0x0000, 0x0000, 1, c51);
  209. ctrl_out(gspca_dev, 0x40, 1, 0x0051, 0x0000, 0, NULL);
  210. /* ctrl_out(gspca_dev, 0x40, 11, 0x0000, 0x0000, 0, NULL); */
  211. return 0;
  212. }
  213. static int ov2640_init_pre_alt(struct gspca_dev *gspca_dev)
  214. {
  215. struct sd *sd = (struct sd *) gspca_dev;
  216. sd->mirrorMask = 0;
  217. sd->vold.backlight = -1;
  218. sd->vold.brightness = -1;
  219. sd->vold.sharpness = -1;
  220. sd->vold.contrast = -1;
  221. sd->vold.saturation = -1;
  222. sd->vold.gamma = -1;
  223. sd->vold.hue = -1;
  224. sd->vold.whitebal = -1;
  225. sd->vold.mirror = -1;
  226. sd->vold.flip = -1;
  227. ov2640_init_post_alt(gspca_dev);
  228. return 0;
  229. }
  230. static int ov2640_init_post_alt(struct gspca_dev *gspca_dev)
  231. {
  232. s32 reso = gspca_dev->cam.cam_mode[(s32) gspca_dev->curr_mode].priv;
  233. s32 n; /* reserved for FETCH functions */
  234. ctrl_out(gspca_dev, 0x40, 5, 0x0001, 0x0000, 0, NULL);
  235. n = fetch_validx(gspca_dev, tbl_sensor_settings_common1,
  236. ARRAY_SIZE(tbl_sensor_settings_common1));
  237. ctrl_out(gspca_dev, 0x40, 3, 0x0000, 0x0200, 12, dat_post);
  238. common(gspca_dev);
  239. keep_on_fetching_validx(gspca_dev, tbl_sensor_settings_common1,
  240. ARRAY_SIZE(tbl_sensor_settings_common1), n);
  241. switch (reso) {
  242. case IMAGE_640:
  243. n = fetch_validx(gspca_dev, tbl_640, ARRAY_SIZE(tbl_640));
  244. ctrl_out(gspca_dev, 0x40, 3, 0x0000, 0x0200, 12, dat_640);
  245. break;
  246. case IMAGE_800:
  247. n = fetch_validx(gspca_dev, tbl_800, ARRAY_SIZE(tbl_800));
  248. ctrl_out(gspca_dev, 0x40, 3, 0x0000, 0x0200, 12, dat_800);
  249. break;
  250. case IMAGE_1600:
  251. case IMAGE_1280:
  252. n = fetch_validx(gspca_dev, tbl_big1, ARRAY_SIZE(tbl_big1));
  253. if (reso == IMAGE_1280) {
  254. n = fetch_validx(gspca_dev, tbl_big2,
  255. ARRAY_SIZE(tbl_big2));
  256. } else {
  257. ctrl_out(gspca_dev, 0x40, 1, 0x601d, 0x0086, 0, NULL);
  258. ctrl_out(gspca_dev, 0x40, 1, 0x6001, 0x00d7, 0, NULL);
  259. ctrl_out(gspca_dev, 0x40, 1, 0x6082, 0x00d3, 0, NULL);
  260. }
  261. n = fetch_validx(gspca_dev, tbl_big3, ARRAY_SIZE(tbl_big3));
  262. if (reso == IMAGE_1280) {
  263. ctrl_out(gspca_dev, 0x40, 1, 0x6001, 0x00ff, 0, NULL);
  264. ctrl_out(gspca_dev, 0x40, 3, 0x0000, 0x0200,
  265. 12, dat_1280);
  266. } else {
  267. ctrl_out(gspca_dev, 0x40, 1, 0x6020, 0x008c, 0, NULL);
  268. ctrl_out(gspca_dev, 0x40, 1, 0x6001, 0x00ff, 0, NULL);
  269. ctrl_out(gspca_dev, 0x40, 1, 0x6076, 0x0018, 0, NULL);
  270. ctrl_out(gspca_dev, 0x40, 3, 0x0000, 0x0200,
  271. 12, dat_1600);
  272. }
  273. break;
  274. }
  275. n = fetch_validx(gspca_dev, tbl_sensor_settings_common2,
  276. ARRAY_SIZE(tbl_sensor_settings_common2));
  277. ov2640_camera_settings(gspca_dev);
  278. return 0;
  279. }
  280. static int ov2640_configure_alt(struct gspca_dev *gspca_dev)
  281. {
  282. s32 reso = gspca_dev->cam.cam_mode[(s32) gspca_dev->curr_mode].priv;
  283. switch (reso) {
  284. case IMAGE_640:
  285. gspca_dev->alt = 3 + 1;
  286. break;
  287. case IMAGE_800:
  288. case IMAGE_1280:
  289. case IMAGE_1600:
  290. gspca_dev->alt = 1 + 1;
  291. break;
  292. }
  293. return 0;
  294. }
  295. static int ov2640_camera_settings(struct gspca_dev *gspca_dev)
  296. {
  297. struct sd *sd = (struct sd *) gspca_dev;
  298. s32 backlight = sd->vcur.backlight;
  299. s32 bright = sd->vcur.brightness;
  300. s32 sharp = sd->vcur.sharpness;
  301. s32 gam = sd->vcur.gamma;
  302. s32 cntr = sd->vcur.contrast;
  303. s32 sat = sd->vcur.saturation;
  304. s32 hue = sd->vcur.hue;
  305. s32 wbal = sd->vcur.whitebal;
  306. s32 mirror = (((sd->vcur.mirror > 0) ^ sd->mirrorMask) == 0);
  307. s32 flip = (((sd->vcur.flip > 0) ^ sd->mirrorMask) == 0);
  308. if (backlight != sd->vold.backlight) {
  309. /* No sd->vold.backlight=backlight; (to be done again later) */
  310. if (backlight < 0 || backlight > sd->vmax.backlight)
  311. backlight = 0;
  312. ctrl_out(gspca_dev, 0x40, 1, 0x6001 , 0x00ff,
  313. 0, NULL);
  314. ctrl_out(gspca_dev, 0x40, 1, 0x601e + backlight , 0x0024,
  315. 0, NULL);
  316. ctrl_out(gspca_dev, 0x40, 1, 0x601e + backlight - 10, 0x0025,
  317. 0, NULL);
  318. }
  319. if (bright != sd->vold.brightness) {
  320. sd->vold.brightness = bright;
  321. if (bright < 0 || bright > sd->vmax.brightness)
  322. bright = 0;
  323. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  324. ctrl_out(gspca_dev, 0x40, 1, 0x6009 , 0x007c, 0, NULL);
  325. ctrl_out(gspca_dev, 0x40, 1, 0x6000 + bright, 0x007d, 0, NULL);
  326. }
  327. if (wbal != sd->vold.whitebal) {
  328. sd->vold.whitebal = wbal;
  329. if (wbal < 0 || wbal > sd->vmax.whitebal)
  330. wbal = 0;
  331. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  332. ctrl_out(gspca_dev, 0x40, 1, 0x6003 , 0x007c, 0, NULL);
  333. ctrl_out(gspca_dev, 0x40, 1, 0x6000 + wbal, 0x007d, 0, NULL);
  334. }
  335. if (cntr != sd->vold.contrast) {
  336. sd->vold.contrast = cntr;
  337. if (cntr < 0 || cntr > sd->vmax.contrast)
  338. cntr = 0;
  339. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  340. ctrl_out(gspca_dev, 0x40, 1, 0x6007 , 0x007c, 0, NULL);
  341. ctrl_out(gspca_dev, 0x40, 1, 0x6000 + cntr, 0x007d, 0, NULL);
  342. }
  343. if (sat != sd->vold.saturation) {
  344. sd->vold.saturation = sat;
  345. if (sat < 0 || sat > sd->vmax.saturation)
  346. sat = 0;
  347. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  348. ctrl_out(gspca_dev, 0x40, 1, 0x6001 , 0x007c, 0, NULL);
  349. ctrl_out(gspca_dev, 0x40, 1, 0x6000 + sat, 0x007d, 0, NULL);
  350. }
  351. if (sharp != sd->vold.sharpness) {
  352. sd->vold.sharpness = sharp;
  353. if (sharp < 0 || sharp > sd->vmax.sharpness)
  354. sharp = 0;
  355. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  356. ctrl_out(gspca_dev, 0x40, 1, 0x6001 , 0x0092, 0, NULL);
  357. ctrl_out(gspca_dev, 0x40, 1, 0x60c0 + sharp, 0x0093, 0, NULL);
  358. }
  359. if (hue != sd->vold.hue) {
  360. sd->vold.hue = hue;
  361. if (hue < 0 || hue > sd->vmax.hue)
  362. hue = 0;
  363. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  364. ctrl_out(gspca_dev, 0x40, 1, 0x6002 , 0x007c, 0, NULL);
  365. ctrl_out(gspca_dev, 0x40, 1, 0x6000 + hue * (hue < 255), 0x007d,
  366. 0, NULL);
  367. if (hue >= 255)
  368. sd->swapRB = 1;
  369. else
  370. sd->swapRB = 0;
  371. }
  372. if (gam != sd->vold.gamma) {
  373. sd->vold.gamma = gam;
  374. if (gam < 0 || gam > sd->vmax.gamma)
  375. gam = 0;
  376. ctrl_out(gspca_dev, 0x40, 1, 0x6000 , 0x00ff, 0, NULL);
  377. ctrl_out(gspca_dev, 0x40, 1, 0x6008 , 0x007c, 0, NULL);
  378. ctrl_out(gspca_dev, 0x40, 1, 0x6000 + gam, 0x007d, 0, NULL);
  379. }
  380. if (mirror != sd->vold.mirror || flip != sd->vold.flip) {
  381. sd->vold.mirror = mirror;
  382. sd->vold.flip = flip;
  383. mirror = 0x80 * mirror;
  384. ctrl_out(gspca_dev, 0x40, 1, 0x6001, 0x00ff, 0, NULL);
  385. ctrl_out(gspca_dev, 0x40, 1, 0x6000, 0x8004, 0, NULL);
  386. ctrl_in(gspca_dev, 0xc0, 2, 0x6000, 0x8004, 1, c28);
  387. ctrl_out(gspca_dev, 0x40, 1, 0x6028 + mirror, 0x0004, 0, NULL);
  388. flip = 0x50 * flip + mirror;
  389. ctrl_out(gspca_dev, 0x40, 1, 0x6001, 0x00ff, 0, NULL);
  390. ctrl_out(gspca_dev, 0x40, 1, 0x6000, 0x8004, 0, NULL);
  391. ctrl_in(gspca_dev, 0xc0, 2, 0x6000, 0x8004, 1, ca8);
  392. ctrl_out(gspca_dev, 0x40, 1, 0x6028 + flip, 0x0004, 0, NULL);
  393. ctrl_in(gspca_dev, 0xc0, 2, 0x0000, 0x0000, 1, c50);
  394. }
  395. if (backlight != sd->vold.backlight) {
  396. sd->vold.backlight = backlight;
  397. ctrl_out(gspca_dev, 0x40, 1, 0x6001 , 0x00ff,
  398. 0, NULL);
  399. ctrl_out(gspca_dev, 0x40, 1, 0x601e + backlight , 0x0024,
  400. 0, NULL);
  401. ctrl_out(gspca_dev, 0x40, 1, 0x601e + backlight - 10, 0x0025,
  402. 0, NULL);
  403. }
  404. return 0;
  405. }
  406. static void ov2640_post_unset_alt(struct gspca_dev *gspca_dev)
  407. {
  408. ctrl_out(gspca_dev, 0x40, 5, 0x0000, 0x0000, 0, NULL);
  409. msleep(20);
  410. fetch_validx(gspca_dev, tbl_post_unset_alt,
  411. ARRAY_SIZE(tbl_post_unset_alt));
  412. }