cx25840-vbi.c 10 KB

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  1. /* cx25840 VBI functions
  2. *
  3. * This program is free software; you can redistribute it and/or
  4. * modify it under the terms of the GNU General Public License
  5. * as published by the Free Software Foundation; either version 2
  6. * of the License, or (at your option) any later version.
  7. *
  8. * This program is distributed in the hope that it will be useful,
  9. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. * GNU General Public License for more details.
  12. *
  13. * You should have received a copy of the GNU General Public License
  14. * along with this program; if not, write to the Free Software
  15. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
  16. */
  17. #include <linux/videodev2.h>
  18. #include <linux/i2c.h>
  19. #include <media/v4l2-common.h>
  20. #include <media/cx25840.h>
  21. #include "cx25840-core.h"
  22. static int odd_parity(u8 c)
  23. {
  24. c ^= (c >> 4);
  25. c ^= (c >> 2);
  26. c ^= (c >> 1);
  27. return c & 1;
  28. }
  29. static int decode_vps(u8 * dst, u8 * p)
  30. {
  31. static const u8 biphase_tbl[] = {
  32. 0xf0, 0x78, 0x70, 0xf0, 0xb4, 0x3c, 0x34, 0xb4,
  33. 0xb0, 0x38, 0x30, 0xb0, 0xf0, 0x78, 0x70, 0xf0,
  34. 0xd2, 0x5a, 0x52, 0xd2, 0x96, 0x1e, 0x16, 0x96,
  35. 0x92, 0x1a, 0x12, 0x92, 0xd2, 0x5a, 0x52, 0xd2,
  36. 0xd0, 0x58, 0x50, 0xd0, 0x94, 0x1c, 0x14, 0x94,
  37. 0x90, 0x18, 0x10, 0x90, 0xd0, 0x58, 0x50, 0xd0,
  38. 0xf0, 0x78, 0x70, 0xf0, 0xb4, 0x3c, 0x34, 0xb4,
  39. 0xb0, 0x38, 0x30, 0xb0, 0xf0, 0x78, 0x70, 0xf0,
  40. 0xe1, 0x69, 0x61, 0xe1, 0xa5, 0x2d, 0x25, 0xa5,
  41. 0xa1, 0x29, 0x21, 0xa1, 0xe1, 0x69, 0x61, 0xe1,
  42. 0xc3, 0x4b, 0x43, 0xc3, 0x87, 0x0f, 0x07, 0x87,
  43. 0x83, 0x0b, 0x03, 0x83, 0xc3, 0x4b, 0x43, 0xc3,
  44. 0xc1, 0x49, 0x41, 0xc1, 0x85, 0x0d, 0x05, 0x85,
  45. 0x81, 0x09, 0x01, 0x81, 0xc1, 0x49, 0x41, 0xc1,
  46. 0xe1, 0x69, 0x61, 0xe1, 0xa5, 0x2d, 0x25, 0xa5,
  47. 0xa1, 0x29, 0x21, 0xa1, 0xe1, 0x69, 0x61, 0xe1,
  48. 0xe0, 0x68, 0x60, 0xe0, 0xa4, 0x2c, 0x24, 0xa4,
  49. 0xa0, 0x28, 0x20, 0xa0, 0xe0, 0x68, 0x60, 0xe0,
  50. 0xc2, 0x4a, 0x42, 0xc2, 0x86, 0x0e, 0x06, 0x86,
  51. 0x82, 0x0a, 0x02, 0x82, 0xc2, 0x4a, 0x42, 0xc2,
  52. 0xc0, 0x48, 0x40, 0xc0, 0x84, 0x0c, 0x04, 0x84,
  53. 0x80, 0x08, 0x00, 0x80, 0xc0, 0x48, 0x40, 0xc0,
  54. 0xe0, 0x68, 0x60, 0xe0, 0xa4, 0x2c, 0x24, 0xa4,
  55. 0xa0, 0x28, 0x20, 0xa0, 0xe0, 0x68, 0x60, 0xe0,
  56. 0xf0, 0x78, 0x70, 0xf0, 0xb4, 0x3c, 0x34, 0xb4,
  57. 0xb0, 0x38, 0x30, 0xb0, 0xf0, 0x78, 0x70, 0xf0,
  58. 0xd2, 0x5a, 0x52, 0xd2, 0x96, 0x1e, 0x16, 0x96,
  59. 0x92, 0x1a, 0x12, 0x92, 0xd2, 0x5a, 0x52, 0xd2,
  60. 0xd0, 0x58, 0x50, 0xd0, 0x94, 0x1c, 0x14, 0x94,
  61. 0x90, 0x18, 0x10, 0x90, 0xd0, 0x58, 0x50, 0xd0,
  62. 0xf0, 0x78, 0x70, 0xf0, 0xb4, 0x3c, 0x34, 0xb4,
  63. 0xb0, 0x38, 0x30, 0xb0, 0xf0, 0x78, 0x70, 0xf0,
  64. };
  65. u8 c, err = 0;
  66. int i;
  67. for (i = 0; i < 2 * 13; i += 2) {
  68. err |= biphase_tbl[p[i]] | biphase_tbl[p[i + 1]];
  69. c = (biphase_tbl[p[i + 1]] & 0xf) |
  70. ((biphase_tbl[p[i]] & 0xf) << 4);
  71. dst[i / 2] = c;
  72. }
  73. return err & 0xf0;
  74. }
  75. void cx25840_vbi_setup(struct i2c_client *client)
  76. {
  77. struct cx25840_state *state = i2c_get_clientdata(client);
  78. v4l2_std_id std = cx25840_get_v4lstd(client);
  79. int hblank,hactive,burst,vblank,vactive,sc,vblank656,src_decimation;
  80. int luma_lpf,uv_lpf, comb;
  81. u32 pll_int,pll_frac,pll_post;
  82. /* datasheet startup, step 8d */
  83. if (std & ~V4L2_STD_NTSC) {
  84. cx25840_write(client, 0x49f, 0x11);
  85. } else {
  86. cx25840_write(client, 0x49f, 0x14);
  87. }
  88. if (std & V4L2_STD_625_50) {
  89. hblank=0x084;
  90. hactive=0x2d0;
  91. burst=0x5d;
  92. vblank=0x024;
  93. vactive=0x244;
  94. vblank656=0x28;
  95. src_decimation=0x21f;
  96. luma_lpf=2;
  97. if (std & V4L2_STD_SECAM) {
  98. uv_lpf=0;
  99. comb=0;
  100. sc=0x0a425f;
  101. } else if (std == V4L2_STD_PAL_Nc) {
  102. uv_lpf=1;
  103. comb=0x20;
  104. sc=556453;
  105. } else {
  106. uv_lpf=1;
  107. comb=0x20;
  108. sc=0x0a8263;
  109. }
  110. } else {
  111. hactive=720;
  112. hblank=122;
  113. vactive=487;
  114. luma_lpf=1;
  115. uv_lpf=1;
  116. src_decimation=0x21f;
  117. if (std == V4L2_STD_PAL_M) {
  118. vblank=20;
  119. vblank656=24;
  120. burst=0x61;
  121. comb=0x20;
  122. sc=555452;
  123. } else {
  124. vblank=26;
  125. vblank656=26;
  126. burst=0x5b;
  127. comb=0x66;
  128. sc=556063;
  129. }
  130. }
  131. /* DEBUG: Displays configured PLL frequency */
  132. pll_int=cx25840_read(client, 0x108);
  133. pll_frac=cx25840_read4(client, 0x10c)&0x1ffffff;
  134. pll_post=cx25840_read(client, 0x109);
  135. v4l_dbg(1, cx25840_debug, client,
  136. "PLL regs = int: %u, frac: %u, post: %u\n",
  137. pll_int,pll_frac,pll_post);
  138. if (pll_post) {
  139. int fin, fsc;
  140. int pll= (28636363L*((((u64)pll_int)<<25L)+pll_frac)) >>25L;
  141. pll/=pll_post;
  142. v4l_dbg(1, cx25840_debug, client, "PLL = %d.%06d MHz\n",
  143. pll/1000000, pll%1000000);
  144. v4l_dbg(1, cx25840_debug, client, "PLL/8 = %d.%06d MHz\n",
  145. pll/8000000, (pll/8)%1000000);
  146. fin=((u64)src_decimation*pll)>>12;
  147. v4l_dbg(1, cx25840_debug, client, "ADC Sampling freq = "
  148. "%d.%06d MHz\n",
  149. fin/1000000,fin%1000000);
  150. fsc= (((u64)sc)*pll) >> 24L;
  151. v4l_dbg(1, cx25840_debug, client, "Chroma sub-carrier freq = "
  152. "%d.%06d MHz\n",
  153. fsc/1000000,fsc%1000000);
  154. v4l_dbg(1, cx25840_debug, client, "hblank %i, hactive %i, "
  155. "vblank %i , vactive %i, vblank656 %i, src_dec %i,"
  156. "burst 0x%02x, luma_lpf %i, uv_lpf %i, comb 0x%02x,"
  157. " sc 0x%06x\n",
  158. hblank, hactive, vblank, vactive, vblank656,
  159. src_decimation, burst, luma_lpf, uv_lpf, comb, sc);
  160. }
  161. /* Sets horizontal blanking delay and active lines */
  162. cx25840_write(client, 0x470, hblank);
  163. cx25840_write(client, 0x471, 0xff&(((hblank>>8)&0x3)|(hactive <<4)));
  164. cx25840_write(client, 0x472, hactive>>4);
  165. /* Sets burst gate delay */
  166. cx25840_write(client, 0x473, burst);
  167. /* Sets vertical blanking delay and active duration */
  168. cx25840_write(client, 0x474, vblank);
  169. cx25840_write(client, 0x475, 0xff&(((vblank>>8)&0x3)|(vactive <<4)));
  170. cx25840_write(client, 0x476, vactive>>4);
  171. cx25840_write(client, 0x477, vblank656);
  172. /* Sets src decimation rate */
  173. cx25840_write(client, 0x478, 0xff&src_decimation);
  174. cx25840_write(client, 0x479, 0xff&(src_decimation>>8));
  175. /* Sets Luma and UV Low pass filters */
  176. cx25840_write(client, 0x47a, luma_lpf<<6|((uv_lpf<<4)&0x30));
  177. /* Enables comb filters */
  178. cx25840_write(client, 0x47b, comb);
  179. /* Sets SC Step*/
  180. cx25840_write(client, 0x47c, sc);
  181. cx25840_write(client, 0x47d, 0xff&sc>>8);
  182. cx25840_write(client, 0x47e, 0xff&sc>>16);
  183. /* Sets VBI parameters */
  184. if (std & V4L2_STD_625_50) {
  185. cx25840_write(client, 0x47f, 0x01);
  186. state->vbi_line_offset = 5;
  187. } else {
  188. cx25840_write(client, 0x47f, 0x00);
  189. state->vbi_line_offset = 8;
  190. }
  191. }
  192. int cx25840_vbi(struct i2c_client *client, unsigned int cmd, void *arg)
  193. {
  194. struct cx25840_state *state = i2c_get_clientdata(client);
  195. struct v4l2_format *fmt;
  196. struct v4l2_sliced_vbi_format *svbi;
  197. switch (cmd) {
  198. case VIDIOC_G_FMT:
  199. {
  200. static u16 lcr2vbi[] = {
  201. 0, V4L2_SLICED_TELETEXT_B, 0, /* 1 */
  202. 0, V4L2_SLICED_WSS_625, 0, /* 4 */
  203. V4L2_SLICED_CAPTION_525, /* 6 */
  204. 0, 0, V4L2_SLICED_VPS, 0, 0, /* 9 */
  205. 0, 0, 0, 0
  206. };
  207. int is_pal = !(cx25840_get_v4lstd(client) & V4L2_STD_525_60);
  208. int i;
  209. fmt = arg;
  210. if (fmt->type != V4L2_BUF_TYPE_SLICED_VBI_CAPTURE)
  211. return -EINVAL;
  212. svbi = &fmt->fmt.sliced;
  213. memset(svbi, 0, sizeof(*svbi));
  214. /* we're done if raw VBI is active */
  215. if ((cx25840_read(client, 0x404) & 0x10) == 0)
  216. break;
  217. if (is_pal) {
  218. for (i = 7; i <= 23; i++) {
  219. u8 v = cx25840_read(client, 0x424 + i - 7);
  220. svbi->service_lines[0][i] = lcr2vbi[v >> 4];
  221. svbi->service_lines[1][i] = lcr2vbi[v & 0xf];
  222. svbi->service_set |=
  223. svbi->service_lines[0][i] | svbi->service_lines[1][i];
  224. }
  225. }
  226. else {
  227. for (i = 10; i <= 21; i++) {
  228. u8 v = cx25840_read(client, 0x424 + i - 10);
  229. svbi->service_lines[0][i] = lcr2vbi[v >> 4];
  230. svbi->service_lines[1][i] = lcr2vbi[v & 0xf];
  231. svbi->service_set |=
  232. svbi->service_lines[0][i] | svbi->service_lines[1][i];
  233. }
  234. }
  235. break;
  236. }
  237. case VIDIOC_S_FMT:
  238. {
  239. int is_pal = !(cx25840_get_v4lstd(client) & V4L2_STD_525_60);
  240. int vbi_offset = is_pal ? 1 : 0;
  241. int i, x;
  242. u8 lcr[24];
  243. fmt = arg;
  244. if (fmt->type != V4L2_BUF_TYPE_SLICED_VBI_CAPTURE)
  245. return -EINVAL;
  246. svbi = &fmt->fmt.sliced;
  247. if (svbi->service_set == 0) {
  248. /* raw VBI */
  249. memset(svbi, 0, sizeof(*svbi));
  250. /* Setup VBI */
  251. cx25840_vbi_setup(client);
  252. /* VBI Offset */
  253. cx25840_write(client, 0x47f, vbi_offset);
  254. cx25840_write(client, 0x404, 0x2e);
  255. break;
  256. }
  257. for (x = 0; x <= 23; x++)
  258. lcr[x] = 0x00;
  259. /* Setup VBI */
  260. cx25840_vbi_setup(client);
  261. /* Sliced VBI */
  262. cx25840_write(client, 0x404, 0x32); /* Ancillary data */
  263. cx25840_write(client, 0x406, 0x13);
  264. cx25840_write(client, 0x47f, vbi_offset);
  265. if (is_pal) {
  266. for (i = 0; i <= 6; i++)
  267. svbi->service_lines[0][i] =
  268. svbi->service_lines[1][i] = 0;
  269. } else {
  270. for (i = 0; i <= 9; i++)
  271. svbi->service_lines[0][i] =
  272. svbi->service_lines[1][i] = 0;
  273. for (i = 22; i <= 23; i++)
  274. svbi->service_lines[0][i] =
  275. svbi->service_lines[1][i] = 0;
  276. }
  277. for (i = 7; i <= 23; i++) {
  278. for (x = 0; x <= 1; x++) {
  279. switch (svbi->service_lines[1-x][i]) {
  280. case V4L2_SLICED_TELETEXT_B:
  281. lcr[i] |= 1 << (4 * x);
  282. break;
  283. case V4L2_SLICED_WSS_625:
  284. lcr[i] |= 4 << (4 * x);
  285. break;
  286. case V4L2_SLICED_CAPTION_525:
  287. lcr[i] |= 6 << (4 * x);
  288. break;
  289. case V4L2_SLICED_VPS:
  290. lcr[i] |= 9 << (4 * x);
  291. break;
  292. }
  293. }
  294. }
  295. if (is_pal) {
  296. for (x = 1, i = 0x424; i <= 0x434; i++, x++) {
  297. cx25840_write(client, i, lcr[6 + x]);
  298. }
  299. }
  300. else {
  301. for (x = 1, i = 0x424; i <= 0x430; i++, x++) {
  302. cx25840_write(client, i, lcr[9 + x]);
  303. }
  304. for (i = 0x431; i <= 0x434; i++) {
  305. cx25840_write(client, i, 0);
  306. }
  307. }
  308. cx25840_write(client, 0x43c, 0x16);
  309. if (is_pal) {
  310. cx25840_write(client, 0x474, 0x2a);
  311. } else {
  312. cx25840_write(client, 0x474, 0x22);
  313. }
  314. break;
  315. }
  316. case VIDIOC_INT_DECODE_VBI_LINE:
  317. {
  318. struct v4l2_decode_vbi_line *vbi = arg;
  319. u8 *p = vbi->p;
  320. int id1, id2, l, err = 0;
  321. if (p[0] || p[1] != 0xff || p[2] != 0xff ||
  322. (p[3] != 0x55 && p[3] != 0x91)) {
  323. vbi->line = vbi->type = 0;
  324. break;
  325. }
  326. p += 4;
  327. id1 = p[-1];
  328. id2 = p[0] & 0xf;
  329. l = p[2] & 0x3f;
  330. l += state->vbi_line_offset;
  331. p += 4;
  332. switch (id2) {
  333. case 1:
  334. id2 = V4L2_SLICED_TELETEXT_B;
  335. break;
  336. case 4:
  337. id2 = V4L2_SLICED_WSS_625;
  338. break;
  339. case 6:
  340. id2 = V4L2_SLICED_CAPTION_525;
  341. err = !odd_parity(p[0]) || !odd_parity(p[1]);
  342. break;
  343. case 9:
  344. id2 = V4L2_SLICED_VPS;
  345. if (decode_vps(p, p) != 0) {
  346. err = 1;
  347. }
  348. break;
  349. default:
  350. id2 = 0;
  351. err = 1;
  352. break;
  353. }
  354. vbi->type = err ? 0 : id2;
  355. vbi->line = err ? 0 : l;
  356. vbi->is_second_field = err ? 0 : (id1 == 0x55);
  357. vbi->p = p;
  358. break;
  359. }
  360. }
  361. return 0;
  362. }