ks0127.c 22 KB

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  1. /*
  2. * Video Capture Driver (Video for Linux 1/2)
  3. * for the Matrox Marvel G200,G400 and Rainbow Runner-G series
  4. *
  5. * This module is an interface to the KS0127 video decoder chip.
  6. *
  7. * Copyright (C) 1999 Ryan Drake <stiletto@mediaone.net>
  8. *
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License
  11. * as published by the Free Software Foundation; either version 2
  12. * of the License, or (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  22. *
  23. *****************************************************************************
  24. *
  25. * Modified and extended by
  26. * Mike Bernson <mike@mlb.org>
  27. * Gerard v.d. Horst
  28. * Leon van Stuivenberg <l.vanstuivenberg@chello.nl>
  29. * Gernot Ziegler <gz@lysator.liu.se>
  30. *
  31. * Version History:
  32. * V1.0 Ryan Drake Initial version by Ryan Drake
  33. * V1.1 Gerard v.d. Horst Added some debugoutput, reset the video-standard
  34. */
  35. #include <linux/init.h>
  36. #include <linux/module.h>
  37. #include <linux/delay.h>
  38. #include <linux/errno.h>
  39. #include <linux/kernel.h>
  40. #include <linux/i2c.h>
  41. #include <linux/video_decoder.h>
  42. #include <media/v4l2-common.h>
  43. #include <media/v4l2-i2c-drv-legacy.h>
  44. #include "ks0127.h"
  45. MODULE_DESCRIPTION("KS0127 video decoder driver");
  46. MODULE_AUTHOR("Ryan Drake");
  47. MODULE_LICENSE("GPL");
  48. #define KS_TYPE_UNKNOWN 0
  49. #define KS_TYPE_0122S 1
  50. #define KS_TYPE_0127 2
  51. #define KS_TYPE_0127B 3
  52. /* ks0127 control registers */
  53. #define KS_STAT 0x00
  54. #define KS_CMDA 0x01
  55. #define KS_CMDB 0x02
  56. #define KS_CMDC 0x03
  57. #define KS_CMDD 0x04
  58. #define KS_HAVB 0x05
  59. #define KS_HAVE 0x06
  60. #define KS_HS1B 0x07
  61. #define KS_HS1E 0x08
  62. #define KS_HS2B 0x09
  63. #define KS_HS2E 0x0a
  64. #define KS_AGC 0x0b
  65. #define KS_HXTRA 0x0c
  66. #define KS_CDEM 0x0d
  67. #define KS_PORTAB 0x0e
  68. #define KS_LUMA 0x0f
  69. #define KS_CON 0x10
  70. #define KS_BRT 0x11
  71. #define KS_CHROMA 0x12
  72. #define KS_CHROMB 0x13
  73. #define KS_DEMOD 0x14
  74. #define KS_SAT 0x15
  75. #define KS_HUE 0x16
  76. #define KS_VERTIA 0x17
  77. #define KS_VERTIB 0x18
  78. #define KS_VERTIC 0x19
  79. #define KS_HSCLL 0x1a
  80. #define KS_HSCLH 0x1b
  81. #define KS_VSCLL 0x1c
  82. #define KS_VSCLH 0x1d
  83. #define KS_OFMTA 0x1e
  84. #define KS_OFMTB 0x1f
  85. #define KS_VBICTL 0x20
  86. #define KS_CCDAT2 0x21
  87. #define KS_CCDAT1 0x22
  88. #define KS_VBIL30 0x23
  89. #define KS_VBIL74 0x24
  90. #define KS_VBIL118 0x25
  91. #define KS_VBIL1512 0x26
  92. #define KS_TTFRAM 0x27
  93. #define KS_TESTA 0x28
  94. #define KS_UVOFFH 0x29
  95. #define KS_UVOFFL 0x2a
  96. #define KS_UGAIN 0x2b
  97. #define KS_VGAIN 0x2c
  98. #define KS_VAVB 0x2d
  99. #define KS_VAVE 0x2e
  100. #define KS_CTRACK 0x2f
  101. #define KS_POLCTL 0x30
  102. #define KS_REFCOD 0x31
  103. #define KS_INVALY 0x32
  104. #define KS_INVALU 0x33
  105. #define KS_INVALV 0x34
  106. #define KS_UNUSEY 0x35
  107. #define KS_UNUSEU 0x36
  108. #define KS_UNUSEV 0x37
  109. #define KS_USRSAV 0x38
  110. #define KS_USREAV 0x39
  111. #define KS_SHS1A 0x3a
  112. #define KS_SHS1B 0x3b
  113. #define KS_SHS1C 0x3c
  114. #define KS_CMDE 0x3d
  115. #define KS_VSDEL 0x3e
  116. #define KS_CMDF 0x3f
  117. #define KS_GAMMA0 0x40
  118. #define KS_GAMMA1 0x41
  119. #define KS_GAMMA2 0x42
  120. #define KS_GAMMA3 0x43
  121. #define KS_GAMMA4 0x44
  122. #define KS_GAMMA5 0x45
  123. #define KS_GAMMA6 0x46
  124. #define KS_GAMMA7 0x47
  125. #define KS_GAMMA8 0x48
  126. #define KS_GAMMA9 0x49
  127. #define KS_GAMMA10 0x4a
  128. #define KS_GAMMA11 0x4b
  129. #define KS_GAMMA12 0x4c
  130. #define KS_GAMMA13 0x4d
  131. #define KS_GAMMA14 0x4e
  132. #define KS_GAMMA15 0x4f
  133. #define KS_GAMMA16 0x50
  134. #define KS_GAMMA17 0x51
  135. #define KS_GAMMA18 0x52
  136. #define KS_GAMMA19 0x53
  137. #define KS_GAMMA20 0x54
  138. #define KS_GAMMA21 0x55
  139. #define KS_GAMMA22 0x56
  140. #define KS_GAMMA23 0x57
  141. #define KS_GAMMA24 0x58
  142. #define KS_GAMMA25 0x59
  143. #define KS_GAMMA26 0x5a
  144. #define KS_GAMMA27 0x5b
  145. #define KS_GAMMA28 0x5c
  146. #define KS_GAMMA29 0x5d
  147. #define KS_GAMMA30 0x5e
  148. #define KS_GAMMA31 0x5f
  149. #define KS_GAMMAD0 0x60
  150. #define KS_GAMMAD1 0x61
  151. #define KS_GAMMAD2 0x62
  152. #define KS_GAMMAD3 0x63
  153. #define KS_GAMMAD4 0x64
  154. #define KS_GAMMAD5 0x65
  155. #define KS_GAMMAD6 0x66
  156. #define KS_GAMMAD7 0x67
  157. #define KS_GAMMAD8 0x68
  158. #define KS_GAMMAD9 0x69
  159. #define KS_GAMMAD10 0x6a
  160. #define KS_GAMMAD11 0x6b
  161. #define KS_GAMMAD12 0x6c
  162. #define KS_GAMMAD13 0x6d
  163. #define KS_GAMMAD14 0x6e
  164. #define KS_GAMMAD15 0x6f
  165. #define KS_GAMMAD16 0x70
  166. #define KS_GAMMAD17 0x71
  167. #define KS_GAMMAD18 0x72
  168. #define KS_GAMMAD19 0x73
  169. #define KS_GAMMAD20 0x74
  170. #define KS_GAMMAD21 0x75
  171. #define KS_GAMMAD22 0x76
  172. #define KS_GAMMAD23 0x77
  173. #define KS_GAMMAD24 0x78
  174. #define KS_GAMMAD25 0x79
  175. #define KS_GAMMAD26 0x7a
  176. #define KS_GAMMAD27 0x7b
  177. #define KS_GAMMAD28 0x7c
  178. #define KS_GAMMAD29 0x7d
  179. #define KS_GAMMAD30 0x7e
  180. #define KS_GAMMAD31 0x7f
  181. /****************************************************************************
  182. * mga_dev : represents one ks0127 chip.
  183. ****************************************************************************/
  184. struct adjust {
  185. int contrast;
  186. int bright;
  187. int hue;
  188. int ugain;
  189. int vgain;
  190. };
  191. struct ks0127 {
  192. int format_width;
  193. int format_height;
  194. int cap_width;
  195. int cap_height;
  196. v4l2_std_id norm;
  197. int ks_type;
  198. u8 regs[256];
  199. };
  200. static int debug; /* insmod parameter */
  201. module_param(debug, int, 0);
  202. MODULE_PARM_DESC(debug, "Debug output");
  203. static u8 reg_defaults[64];
  204. static void init_reg_defaults(void)
  205. {
  206. static int initialized;
  207. u8 *table = reg_defaults;
  208. if (initialized)
  209. return;
  210. initialized = 1;
  211. table[KS_CMDA] = 0x2c; /* VSE=0, CCIR 601, autodetect standard */
  212. table[KS_CMDB] = 0x12; /* VALIGN=0, AGC control and input */
  213. table[KS_CMDC] = 0x00; /* Test options */
  214. /* clock & input select, write 1 to PORTA */
  215. table[KS_CMDD] = 0x01;
  216. table[KS_HAVB] = 0x00; /* HAV Start Control */
  217. table[KS_HAVE] = 0x00; /* HAV End Control */
  218. table[KS_HS1B] = 0x10; /* HS1 Start Control */
  219. table[KS_HS1E] = 0x00; /* HS1 End Control */
  220. table[KS_HS2B] = 0x00; /* HS2 Start Control */
  221. table[KS_HS2E] = 0x00; /* HS2 End Control */
  222. table[KS_AGC] = 0x53; /* Manual setting for AGC */
  223. table[KS_HXTRA] = 0x00; /* Extra Bits for HAV and HS1/2 */
  224. table[KS_CDEM] = 0x00; /* Chroma Demodulation Control */
  225. table[KS_PORTAB] = 0x0f; /* port B is input, port A output GPPORT */
  226. table[KS_LUMA] = 0x01; /* Luma control */
  227. table[KS_CON] = 0x00; /* Contrast Control */
  228. table[KS_BRT] = 0x00; /* Brightness Control */
  229. table[KS_CHROMA] = 0x2a; /* Chroma control A */
  230. table[KS_CHROMB] = 0x90; /* Chroma control B */
  231. table[KS_DEMOD] = 0x00; /* Chroma Demodulation Control & Status */
  232. table[KS_SAT] = 0x00; /* Color Saturation Control*/
  233. table[KS_HUE] = 0x00; /* Hue Control */
  234. table[KS_VERTIA] = 0x00; /* Vertical Processing Control A */
  235. /* Vertical Processing Control B, luma 1 line delayed */
  236. table[KS_VERTIB] = 0x12;
  237. table[KS_VERTIC] = 0x0b; /* Vertical Processing Control C */
  238. table[KS_HSCLL] = 0x00; /* Horizontal Scaling Ratio Low */
  239. table[KS_HSCLH] = 0x00; /* Horizontal Scaling Ratio High */
  240. table[KS_VSCLL] = 0x00; /* Vertical Scaling Ratio Low */
  241. table[KS_VSCLH] = 0x00; /* Vertical Scaling Ratio High */
  242. /* 16 bit YCbCr 4:2:2 output; I can't make the bt866 like 8 bit /Sam */
  243. table[KS_OFMTA] = 0x30;
  244. table[KS_OFMTB] = 0x00; /* Output Control B */
  245. /* VBI Decoder Control; 4bit fmt: avoid Y overflow */
  246. table[KS_VBICTL] = 0x5d;
  247. table[KS_CCDAT2] = 0x00; /* Read Only register */
  248. table[KS_CCDAT1] = 0x00; /* Read Only register */
  249. table[KS_VBIL30] = 0xa8; /* VBI data decoding options */
  250. table[KS_VBIL74] = 0xaa; /* VBI data decoding options */
  251. table[KS_VBIL118] = 0x2a; /* VBI data decoding options */
  252. table[KS_VBIL1512] = 0x00; /* VBI data decoding options */
  253. table[KS_TTFRAM] = 0x00; /* Teletext frame alignment pattern */
  254. table[KS_TESTA] = 0x00; /* test register, shouldn't be written */
  255. table[KS_UVOFFH] = 0x00; /* UV Offset Adjustment High */
  256. table[KS_UVOFFL] = 0x00; /* UV Offset Adjustment Low */
  257. table[KS_UGAIN] = 0x00; /* U Component Gain Adjustment */
  258. table[KS_VGAIN] = 0x00; /* V Component Gain Adjustment */
  259. table[KS_VAVB] = 0x07; /* VAV Begin */
  260. table[KS_VAVE] = 0x00; /* VAV End */
  261. table[KS_CTRACK] = 0x00; /* Chroma Tracking Control */
  262. table[KS_POLCTL] = 0x41; /* Timing Signal Polarity Control */
  263. table[KS_REFCOD] = 0x80; /* Reference Code Insertion Control */
  264. table[KS_INVALY] = 0x10; /* Invalid Y Code */
  265. table[KS_INVALU] = 0x80; /* Invalid U Code */
  266. table[KS_INVALV] = 0x80; /* Invalid V Code */
  267. table[KS_UNUSEY] = 0x10; /* Unused Y Code */
  268. table[KS_UNUSEU] = 0x80; /* Unused U Code */
  269. table[KS_UNUSEV] = 0x80; /* Unused V Code */
  270. table[KS_USRSAV] = 0x00; /* reserved */
  271. table[KS_USREAV] = 0x00; /* reserved */
  272. table[KS_SHS1A] = 0x00; /* User Defined SHS1 A */
  273. /* User Defined SHS1 B, ALT656=1 on 0127B */
  274. table[KS_SHS1B] = 0x80;
  275. table[KS_SHS1C] = 0x00; /* User Defined SHS1 C */
  276. table[KS_CMDE] = 0x00; /* Command Register E */
  277. table[KS_VSDEL] = 0x00; /* VS Delay Control */
  278. /* Command Register F, update -immediately- */
  279. /* (there might come no vsync)*/
  280. table[KS_CMDF] = 0x02;
  281. }
  282. /* We need to manually read because of a bug in the KS0127 chip.
  283. *
  284. * An explanation from kayork@mail.utexas.edu:
  285. *
  286. * During I2C reads, the KS0127 only samples for a stop condition
  287. * during the place where the acknowledge bit should be. Any standard
  288. * I2C implementation (correctly) throws in another clock transition
  289. * at the 9th bit, and the KS0127 will not recognize the stop condition
  290. * and will continue to clock out data.
  291. *
  292. * So we have to do the read ourself. Big deal.
  293. * workaround in i2c-algo-bit
  294. */
  295. static u8 ks0127_read(struct i2c_client *c, u8 reg)
  296. {
  297. char val = 0;
  298. struct i2c_msg msgs[] = {
  299. { c->addr, 0, sizeof(reg), &reg },
  300. { c->addr, I2C_M_RD | I2C_M_NO_RD_ACK, sizeof(val), &val }
  301. };
  302. int ret;
  303. ret = i2c_transfer(c->adapter, msgs, ARRAY_SIZE(msgs));
  304. if (ret != ARRAY_SIZE(msgs))
  305. v4l_dbg(1, debug, c, "read error\n");
  306. return val;
  307. }
  308. static void ks0127_write(struct i2c_client *c, u8 reg, u8 val)
  309. {
  310. struct ks0127 *ks = i2c_get_clientdata(c);
  311. char msg[] = { reg, val };
  312. if (i2c_master_send(c, msg, sizeof(msg)) != sizeof(msg))
  313. v4l_dbg(1, debug, c, "write error\n");
  314. ks->regs[reg] = val;
  315. }
  316. /* generic bit-twiddling */
  317. static void ks0127_and_or(struct i2c_client *client, u8 reg, u8 and_v, u8 or_v)
  318. {
  319. struct ks0127 *ks = i2c_get_clientdata(client);
  320. u8 val = ks->regs[reg];
  321. val = (val & and_v) | or_v;
  322. ks0127_write(client, reg, val);
  323. }
  324. /****************************************************************************
  325. * ks0127 private api
  326. ****************************************************************************/
  327. static void ks0127_reset(struct i2c_client *c)
  328. {
  329. struct ks0127 *ks = i2c_get_clientdata(c);
  330. u8 *table = reg_defaults;
  331. int i;
  332. ks->ks_type = KS_TYPE_UNKNOWN;
  333. v4l_dbg(1, debug, c, "reset\n");
  334. msleep(1);
  335. /* initialize all registers to known values */
  336. /* (except STAT, 0x21, 0x22, TEST and 0x38,0x39) */
  337. for (i = 1; i < 33; i++)
  338. ks0127_write(c, i, table[i]);
  339. for (i = 35; i < 40; i++)
  340. ks0127_write(c, i, table[i]);
  341. for (i = 41; i < 56; i++)
  342. ks0127_write(c, i, table[i]);
  343. for (i = 58; i < 64; i++)
  344. ks0127_write(c, i, table[i]);
  345. if ((ks0127_read(c, KS_STAT) & 0x80) == 0) {
  346. ks->ks_type = KS_TYPE_0122S;
  347. v4l_dbg(1, debug, c, "ks0122s found\n");
  348. return;
  349. }
  350. switch (ks0127_read(c, KS_CMDE) & 0x0f) {
  351. case 0:
  352. ks->ks_type = KS_TYPE_0127;
  353. v4l_dbg(1, debug, c, "ks0127 found\n");
  354. break;
  355. case 9:
  356. ks->ks_type = KS_TYPE_0127B;
  357. v4l_dbg(1, debug, c, "ks0127B Revision A found\n");
  358. break;
  359. default:
  360. v4l_dbg(1, debug, c, "unknown revision\n");
  361. break;
  362. }
  363. }
  364. static int ks0127_command(struct i2c_client *c, unsigned cmd, void *arg)
  365. {
  366. struct ks0127 *ks = i2c_get_clientdata(c);
  367. struct v4l2_routing *route = arg;
  368. int *iarg = (int *)arg;
  369. v4l2_std_id *istd = arg;
  370. int status;
  371. if (!ks)
  372. return -ENODEV;
  373. switch (cmd) {
  374. case VIDIOC_INT_INIT:
  375. v4l_dbg(1, debug, c, "VIDIOC_INT_INIT\n");
  376. ks0127_reset(c);
  377. break;
  378. case VIDIOC_INT_S_VIDEO_ROUTING:
  379. switch (route->input) {
  380. case KS_INPUT_COMPOSITE_1:
  381. case KS_INPUT_COMPOSITE_2:
  382. case KS_INPUT_COMPOSITE_3:
  383. case KS_INPUT_COMPOSITE_4:
  384. case KS_INPUT_COMPOSITE_5:
  385. case KS_INPUT_COMPOSITE_6:
  386. v4l_dbg(1, debug, c,
  387. "VIDIOC_S_INPUT %d: Composite\n", *iarg);
  388. /* autodetect 50/60 Hz */
  389. ks0127_and_or(c, KS_CMDA, 0xfc, 0x00);
  390. /* VSE=0 */
  391. ks0127_and_or(c, KS_CMDA, ~0x40, 0x00);
  392. /* set input line */
  393. ks0127_and_or(c, KS_CMDB, 0xb0, *iarg);
  394. /* non-freerunning mode */
  395. ks0127_and_or(c, KS_CMDC, 0x70, 0x0a);
  396. /* analog input */
  397. ks0127_and_or(c, KS_CMDD, 0x03, 0x00);
  398. /* enable chroma demodulation */
  399. ks0127_and_or(c, KS_CTRACK, 0xcf, 0x00);
  400. /* chroma trap, HYBWR=1 */
  401. ks0127_and_or(c, KS_LUMA, 0x00,
  402. (reg_defaults[KS_LUMA])|0x0c);
  403. /* scaler fullbw, luma comb off */
  404. ks0127_and_or(c, KS_VERTIA, 0x08, 0x81);
  405. /* manual chroma comb .25 .5 .25 */
  406. ks0127_and_or(c, KS_VERTIC, 0x0f, 0x90);
  407. /* chroma path delay */
  408. ks0127_and_or(c, KS_CHROMB, 0x0f, 0x90);
  409. ks0127_write(c, KS_UGAIN, reg_defaults[KS_UGAIN]);
  410. ks0127_write(c, KS_VGAIN, reg_defaults[KS_VGAIN]);
  411. ks0127_write(c, KS_UVOFFH, reg_defaults[KS_UVOFFH]);
  412. ks0127_write(c, KS_UVOFFL, reg_defaults[KS_UVOFFL]);
  413. break;
  414. case KS_INPUT_SVIDEO_1:
  415. case KS_INPUT_SVIDEO_2:
  416. case KS_INPUT_SVIDEO_3:
  417. v4l_dbg(1, debug, c,
  418. "VIDIOC_S_INPUT %d: S-Video\n", *iarg);
  419. /* autodetect 50/60 Hz */
  420. ks0127_and_or(c, KS_CMDA, 0xfc, 0x00);
  421. /* VSE=0 */
  422. ks0127_and_or(c, KS_CMDA, ~0x40, 0x00);
  423. /* set input line */
  424. ks0127_and_or(c, KS_CMDB, 0xb0, *iarg);
  425. /* non-freerunning mode */
  426. ks0127_and_or(c, KS_CMDC, 0x70, 0x0a);
  427. /* analog input */
  428. ks0127_and_or(c, KS_CMDD, 0x03, 0x00);
  429. /* enable chroma demodulation */
  430. ks0127_and_or(c, KS_CTRACK, 0xcf, 0x00);
  431. ks0127_and_or(c, KS_LUMA, 0x00,
  432. reg_defaults[KS_LUMA]);
  433. /* disable luma comb */
  434. ks0127_and_or(c, KS_VERTIA, 0x08,
  435. (reg_defaults[KS_VERTIA]&0xf0)|0x01);
  436. ks0127_and_or(c, KS_VERTIC, 0x0f,
  437. reg_defaults[KS_VERTIC]&0xf0);
  438. ks0127_and_or(c, KS_CHROMB, 0x0f,
  439. reg_defaults[KS_CHROMB]&0xf0);
  440. ks0127_write(c, KS_UGAIN, reg_defaults[KS_UGAIN]);
  441. ks0127_write(c, KS_VGAIN, reg_defaults[KS_VGAIN]);
  442. ks0127_write(c, KS_UVOFFH, reg_defaults[KS_UVOFFH]);
  443. ks0127_write(c, KS_UVOFFL, reg_defaults[KS_UVOFFL]);
  444. break;
  445. case KS_INPUT_YUV656:
  446. v4l_dbg(1, debug, c,
  447. "VIDIOC_S_INPUT 15: YUV656\n");
  448. if (ks->norm & V4L2_STD_525_60)
  449. /* force 60 Hz */
  450. ks0127_and_or(c, KS_CMDA, 0xfc, 0x03);
  451. else
  452. /* force 50 Hz */
  453. ks0127_and_or(c, KS_CMDA, 0xfc, 0x02);
  454. ks0127_and_or(c, KS_CMDA, 0xff, 0x40); /* VSE=1 */
  455. /* set input line and VALIGN */
  456. ks0127_and_or(c, KS_CMDB, 0xb0, (*iarg | 0x40));
  457. /* freerunning mode, */
  458. /* TSTGEN = 1 TSTGFR=11 TSTGPH=0 TSTGPK=0 VMEM=1*/
  459. ks0127_and_or(c, KS_CMDC, 0x70, 0x87);
  460. /* digital input, SYNDIR = 0 INPSL=01 CLKDIR=0 EAV=0 */
  461. ks0127_and_or(c, KS_CMDD, 0x03, 0x08);
  462. /* disable chroma demodulation */
  463. ks0127_and_or(c, KS_CTRACK, 0xcf, 0x30);
  464. /* HYPK =01 CTRAP = 0 HYBWR=0 PED=1 RGBH=1 UNIT=1 */
  465. ks0127_and_or(c, KS_LUMA, 0x00, 0x71);
  466. ks0127_and_or(c, KS_VERTIC, 0x0f,
  467. reg_defaults[KS_VERTIC]&0xf0);
  468. /* scaler fullbw, luma comb off */
  469. ks0127_and_or(c, KS_VERTIA, 0x08, 0x81);
  470. ks0127_and_or(c, KS_CHROMB, 0x0f,
  471. reg_defaults[KS_CHROMB]&0xf0);
  472. ks0127_and_or(c, KS_CON, 0x00, 0x00);
  473. ks0127_and_or(c, KS_BRT, 0x00, 32); /* spec: 34 */
  474. /* spec: 229 (e5) */
  475. ks0127_and_or(c, KS_SAT, 0x00, 0xe8);
  476. ks0127_and_or(c, KS_HUE, 0x00, 0);
  477. ks0127_and_or(c, KS_UGAIN, 0x00, 238);
  478. ks0127_and_or(c, KS_VGAIN, 0x00, 0x00);
  479. /*UOFF:0x30, VOFF:0x30, TSTCGN=1 */
  480. ks0127_and_or(c, KS_UVOFFH, 0x00, 0x4f);
  481. ks0127_and_or(c, KS_UVOFFL, 0x00, 0x00);
  482. break;
  483. default:
  484. v4l_dbg(1, debug, c,
  485. "VIDIOC_INT_S_VIDEO_ROUTING: Unknown input %d\n", route->input);
  486. break;
  487. }
  488. /* hack: CDMLPF sometimes spontaneously switches on; */
  489. /* force back off */
  490. ks0127_write(c, KS_DEMOD, reg_defaults[KS_DEMOD]);
  491. break;
  492. case VIDIOC_S_STD: /* sam This block mixes old and new norm names... */
  493. /* Set to automatic SECAM/Fsc mode */
  494. ks0127_and_or(c, KS_DEMOD, 0xf0, 0x00);
  495. ks->norm = *istd;
  496. if (*istd & V4L2_STD_NTSC) {
  497. v4l_dbg(1, debug, c,
  498. "VIDIOC_S_STD: NTSC_M\n");
  499. ks0127_and_or(c, KS_CHROMA, 0x9f, 0x20);
  500. ks->format_height = 240;
  501. ks->format_width = 704;
  502. } else if (*istd & V4L2_STD_PAL_N) {
  503. v4l_dbg(1, debug, c,
  504. "KS0127_SET_NORM: NTSC_N (fixme)\n");
  505. ks0127_and_or(c, KS_CHROMA, 0x9f, 0x40);
  506. ks->format_height = 240;
  507. ks->format_width = 704;
  508. } else if (*istd & V4L2_STD_PAL) {
  509. v4l_dbg(1, debug, c,
  510. "VIDIOC_S_STD: PAL_N\n");
  511. ks0127_and_or(c, KS_CHROMA, 0x9f, 0x20);
  512. ks->format_height = 290;
  513. ks->format_width = 704;
  514. } else if (*istd & V4L2_STD_PAL_M) {
  515. v4l_dbg(1, debug, c,
  516. "KS0127_SET_NORM: PAL_M (fixme)\n");
  517. ks0127_and_or(c, KS_CHROMA, 0x9f, 0x40);
  518. ks->format_height = 290;
  519. ks->format_width = 704;
  520. } else if (*istd & V4L2_STD_SECAM) {
  521. v4l_dbg(1, debug, c,
  522. "KS0127_SET_NORM: SECAM\n");
  523. ks->format_height = 290;
  524. ks->format_width = 704;
  525. /* set to secam autodetection */
  526. ks0127_and_or(c, KS_CHROMA, 0xdf, 0x20);
  527. ks0127_and_or(c, KS_DEMOD, 0xf0, 0x00);
  528. schedule_timeout_interruptible(HZ/10+1);
  529. /* did it autodetect? */
  530. if (!(ks0127_read(c, KS_DEMOD) & 0x40))
  531. /* force to secam mode */
  532. ks0127_and_or(c, KS_DEMOD, 0xf0, 0x0f);
  533. } else {
  534. v4l_dbg(1, debug, c,
  535. "VIDIOC_S_STD: Unknown norm %llx\n", *istd);
  536. }
  537. break;
  538. case VIDIOC_QUERYCTRL:
  539. {
  540. return -EINVAL;
  541. }
  542. case VIDIOC_S_CTRL:
  543. v4l_dbg(1, debug, c,
  544. "VIDIOC_S_CTRL: not yet supported\n");
  545. return -EINVAL;
  546. case VIDIOC_G_CTRL:
  547. v4l_dbg(1, debug, c,
  548. "VIDIOC_G_CTRL: not yet supported\n");
  549. return -EINVAL;
  550. /* sam todo: KS0127_SET_BRIGHTNESS: Merge into VIDIOC_S_CTRL */
  551. /* sam todo: KS0127_SET_CONTRAST: Merge into VIDIOC_S_CTRL */
  552. /* sam todo: KS0127_SET_HUE: Merge into VIDIOC_S_CTRL? */
  553. /* sam todo: KS0127_SET_SATURATION: Merge into VIDIOC_S_CTRL */
  554. /* sam todo: KS0127_SET_AGC_MODE: */
  555. /* sam todo: KS0127_SET_AGC: */
  556. /* sam todo: KS0127_SET_CHROMA_MODE: */
  557. /* sam todo: KS0127_SET_PIXCLK_MODE: */
  558. /* sam todo: KS0127_SET_GAMMA_MODE: */
  559. /* sam todo: KS0127_SET_UGAIN: */
  560. /* sam todo: KS0127_SET_VGAIN: */
  561. /* sam todo: KS0127_SET_INVALY: */
  562. /* sam todo: KS0127_SET_INVALU: */
  563. /* sam todo: KS0127_SET_INVALV: */
  564. /* sam todo: KS0127_SET_UNUSEY: */
  565. /* sam todo: KS0127_SET_UNUSEU: */
  566. /* sam todo: KS0127_SET_UNUSEV: */
  567. /* sam todo: KS0127_SET_VSALIGN_MODE: */
  568. case VIDIOC_STREAMON:
  569. case VIDIOC_STREAMOFF:
  570. {
  571. int enable = cmd == VIDIOC_STREAMON;
  572. if (enable) {
  573. v4l_dbg(1, debug, c,
  574. "VIDIOC_STREAMON\n");
  575. /* All output pins on */
  576. ks0127_and_or(c, KS_OFMTA, 0xcf, 0x30);
  577. /* Obey the OEN pin */
  578. ks0127_and_or(c, KS_CDEM, 0x7f, 0x00);
  579. } else {
  580. v4l_dbg(1, debug, c,
  581. "VIDIOC_STREAMOFF\n");
  582. /* Video output pins off */
  583. ks0127_and_or(c, KS_OFMTA, 0xcf, 0x00);
  584. /* Ignore the OEN pin */
  585. ks0127_and_or(c, KS_CDEM, 0x7f, 0x80);
  586. }
  587. break;
  588. }
  589. /* sam todo: KS0127_SET_OUTPUT_MODE: */
  590. /* sam todo: KS0127_SET_WIDTH: */
  591. /* sam todo: KS0127_SET_HEIGHT: */
  592. /* sam todo: KS0127_SET_HSCALE: */
  593. case VIDIOC_QUERYSTD:
  594. case VIDIOC_INT_G_INPUT_STATUS: {
  595. int stat = V4L2_IN_ST_NO_SIGNAL;
  596. v4l2_std_id std = V4L2_STD_ALL;
  597. v4l_dbg(1, debug, c, "VIDIOC_QUERYSTD/VIDIOC_INT_G_INPUT_STATUS\n");
  598. status = ks0127_read(c, KS_STAT);
  599. if (!(status & 0x20)) /* NOVID not set */
  600. stat = 0;
  601. if (!(status & 0x01)) /* CLOCK set */
  602. stat |= V4L2_IN_ST_NO_COLOR;
  603. if ((status & 0x08)) /* PALDET set */
  604. std = V4L2_STD_PAL;
  605. else
  606. std = V4L2_STD_NTSC;
  607. if (cmd == VIDIOC_QUERYSTD)
  608. *istd = std;
  609. else
  610. *iarg = stat;
  611. break;
  612. }
  613. /* Catch any unknown command */
  614. default:
  615. v4l_dbg(1, debug, c, "unknown: 0x%08x\n", cmd);
  616. return -EINVAL;
  617. }
  618. return 0;
  619. }
  620. /* Addresses to scan */
  621. #define I2C_KS0127_ADDON 0xD8
  622. #define I2C_KS0127_ONBOARD 0xDA
  623. static unsigned short normal_i2c[] = {
  624. I2C_KS0127_ADDON >> 1,
  625. I2C_KS0127_ONBOARD >> 1,
  626. I2C_CLIENT_END
  627. };
  628. I2C_CLIENT_INSMOD;
  629. static int ks0127_probe(struct i2c_client *c, const struct i2c_device_id *id)
  630. {
  631. struct ks0127 *ks;
  632. v4l_info(c, "%s chip found @ 0x%x (%s)\n",
  633. c->addr == (I2C_KS0127_ADDON >> 1) ? "addon" : "on-board",
  634. c->addr << 1, c->adapter->name);
  635. ks = kzalloc(sizeof(*ks), GFP_KERNEL);
  636. if (ks == NULL)
  637. return -ENOMEM;
  638. i2c_set_clientdata(c, ks);
  639. ks->ks_type = KS_TYPE_UNKNOWN;
  640. /* power up */
  641. init_reg_defaults();
  642. ks0127_write(c, KS_CMDA, 0x2c);
  643. mdelay(10);
  644. /* reset the device */
  645. ks0127_reset(c);
  646. return 0;
  647. }
  648. static int ks0127_remove(struct i2c_client *c)
  649. {
  650. struct ks0127 *ks = i2c_get_clientdata(c);
  651. ks0127_write(c, KS_OFMTA, 0x20); /* tristate */
  652. ks0127_write(c, KS_CMDA, 0x2c | 0x80); /* power down */
  653. kfree(ks);
  654. return 0;
  655. }
  656. static int ks0127_legacy_probe(struct i2c_adapter *adapter)
  657. {
  658. return adapter->id == I2C_HW_B_ZR36067;
  659. }
  660. static const struct i2c_device_id ks0127_id[] = {
  661. { "ks0127", 0 },
  662. { }
  663. };
  664. MODULE_DEVICE_TABLE(i2c, ks0127_id);
  665. static struct v4l2_i2c_driver_data v4l2_i2c_data = {
  666. .name = "ks0127",
  667. .driverid = I2C_DRIVERID_KS0127,
  668. .command = ks0127_command,
  669. .probe = ks0127_probe,
  670. .remove = ks0127_remove,
  671. .legacy_probe = ks0127_legacy_probe,
  672. .id_table = ks0127_id,
  673. };