matroxfb_maven.c 29 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. *
  4. * Hardware accelerated Matrox Millennium I, II, Mystique, G100, G200, G400 and G450.
  5. *
  6. * (c) 1998-2002 Petr Vandrovec <[email protected]>
  7. *
  8. * Portions Copyright (c) 2001 Matrox Graphics Inc.
  9. *
  10. * Version: 1.65 2002/08/14
  11. *
  12. * See matroxfb_base.c for contributors.
  13. *
  14. */
  15. #include "matroxfb_maven.h"
  16. #include "matroxfb_misc.h"
  17. #include "matroxfb_DAC1064.h"
  18. #include <linux/i2c.h>
  19. #include <linux/matroxfb.h>
  20. #include <linux/slab.h>
  21. #include <asm/div64.h>
  22. #define MGATVO_B 1
  23. #define MGATVO_C 2
  24. static const struct maven_gamma {
  25. unsigned char reg83;
  26. unsigned char reg84;
  27. unsigned char reg85;
  28. unsigned char reg86;
  29. unsigned char reg87;
  30. unsigned char reg88;
  31. unsigned char reg89;
  32. unsigned char reg8a;
  33. unsigned char reg8b;
  34. } maven_gamma[] = {
  35. { 131, 57, 223, 15, 117, 212, 251, 91, 156},
  36. { 133, 61, 128, 63, 180, 147, 195, 100, 180},
  37. { 131, 19, 63, 31, 50, 66, 171, 64, 176},
  38. { 0, 0, 0, 31, 16, 16, 16, 100, 200},
  39. { 8, 23, 47, 73, 147, 244, 220, 80, 195},
  40. { 22, 43, 64, 80, 147, 115, 58, 85, 168},
  41. { 34, 60, 80, 214, 147, 212, 188, 85, 167},
  42. { 45, 77, 96, 216, 147, 99, 91, 85, 159},
  43. { 56, 76, 112, 107, 147, 212, 148, 64, 144},
  44. { 65, 91, 128, 137, 147, 196, 17, 69, 148},
  45. { 72, 104, 136, 138, 147, 180, 245, 73, 147},
  46. { 87, 116, 143, 126, 16, 83, 229, 77, 144},
  47. { 95, 119, 152, 254, 244, 83, 221, 77, 151},
  48. { 100, 129, 159, 156, 244, 148, 197, 77, 160},
  49. { 105, 141, 167, 247, 244, 132, 181, 84, 166},
  50. { 105, 147, 168, 247, 244, 245, 181, 90, 170},
  51. { 120, 153, 175, 248, 212, 229, 165, 90, 180},
  52. { 119, 156, 176, 248, 244, 229, 84, 74, 160},
  53. { 119, 158, 183, 248, 244, 229, 149, 78, 165}
  54. };
  55. /* Definition of the various controls */
  56. struct mctl {
  57. struct v4l2_queryctrl desc;
  58. size_t control;
  59. };
  60. #define BLMIN 0x0FF
  61. #define WLMAX 0x3FF
  62. static const struct mctl maven_controls[] =
  63. { { { V4L2_CID_BRIGHTNESS, V4L2_CTRL_TYPE_INTEGER,
  64. "brightness",
  65. 0, WLMAX - BLMIN, 1, 379 - BLMIN,
  66. 0,
  67. }, offsetof(struct matrox_fb_info, altout.tvo_params.brightness) },
  68. { { V4L2_CID_CONTRAST, V4L2_CTRL_TYPE_INTEGER,
  69. "contrast",
  70. 0, 1023, 1, 127,
  71. 0,
  72. }, offsetof(struct matrox_fb_info, altout.tvo_params.contrast) },
  73. { { V4L2_CID_SATURATION, V4L2_CTRL_TYPE_INTEGER,
  74. "saturation",
  75. 0, 255, 1, 155,
  76. 0,
  77. }, offsetof(struct matrox_fb_info, altout.tvo_params.saturation) },
  78. { { V4L2_CID_HUE, V4L2_CTRL_TYPE_INTEGER,
  79. "hue",
  80. 0, 255, 1, 0,
  81. 0,
  82. }, offsetof(struct matrox_fb_info, altout.tvo_params.hue) },
  83. { { V4L2_CID_GAMMA, V4L2_CTRL_TYPE_INTEGER,
  84. "gamma",
  85. 0, ARRAY_SIZE(maven_gamma) - 1, 1, 3,
  86. 0,
  87. }, offsetof(struct matrox_fb_info, altout.tvo_params.gamma) },
  88. { { MATROXFB_CID_TESTOUT, V4L2_CTRL_TYPE_BOOLEAN,
  89. "test output",
  90. 0, 1, 1, 0,
  91. 0,
  92. }, offsetof(struct matrox_fb_info, altout.tvo_params.testout) },
  93. { { MATROXFB_CID_DEFLICKER, V4L2_CTRL_TYPE_INTEGER,
  94. "deflicker mode",
  95. 0, 2, 1, 0,
  96. 0,
  97. }, offsetof(struct matrox_fb_info, altout.tvo_params.deflicker) },
  98. };
  99. #define MAVCTRLS ARRAY_SIZE(maven_controls)
  100. /* Return: positive number: id found
  101. -EINVAL: id not found, return failure
  102. -ENOENT: id not found, create fake disabled control */
  103. static int get_ctrl_id(__u32 v4l2_id) {
  104. int i;
  105. for (i = 0; i < MAVCTRLS; i++) {
  106. if (v4l2_id < maven_controls[i].desc.id) {
  107. if (maven_controls[i].desc.id == 0x08000000) {
  108. return -EINVAL;
  109. }
  110. return -ENOENT;
  111. }
  112. if (v4l2_id == maven_controls[i].desc.id) {
  113. return i;
  114. }
  115. }
  116. return -EINVAL;
  117. }
  118. struct maven_data {
  119. struct matrox_fb_info* primary_head;
  120. struct i2c_client *client;
  121. int version;
  122. };
  123. static int* get_ctrl_ptr(struct maven_data* md, int idx) {
  124. return (int*)((char*)(md->primary_head) + maven_controls[idx].control);
  125. }
  126. static int maven_get_reg(struct i2c_client* c, char reg) {
  127. char dst;
  128. struct i2c_msg msgs[] = {
  129. {
  130. .addr = c->addr,
  131. .flags = I2C_M_REV_DIR_ADDR,
  132. .len = sizeof(reg),
  133. .buf = &reg
  134. },
  135. {
  136. .addr = c->addr,
  137. .flags = I2C_M_RD | I2C_M_NOSTART,
  138. .len = sizeof(dst),
  139. .buf = &dst
  140. }
  141. };
  142. s32 err;
  143. err = i2c_transfer(c->adapter, msgs, 2);
  144. if (err < 0)
  145. printk(KERN_INFO "ReadReg(%d) failed\n", reg);
  146. return dst & 0xFF;
  147. }
  148. static int maven_set_reg(struct i2c_client* c, int reg, int val) {
  149. s32 err;
  150. err = i2c_smbus_write_byte_data(c, reg, val);
  151. if (err)
  152. printk(KERN_INFO "WriteReg(%d) failed\n", reg);
  153. return err;
  154. }
  155. static int maven_set_reg_pair(struct i2c_client* c, int reg, int val) {
  156. s32 err;
  157. err = i2c_smbus_write_word_data(c, reg, val);
  158. if (err)
  159. printk(KERN_INFO "WriteRegPair(%d) failed\n", reg);
  160. return err;
  161. }
  162. static const struct matrox_pll_features maven_pll = {
  163. 50000,
  164. 27000,
  165. 4, 127,
  166. 2, 31,
  167. 3
  168. };
  169. struct matrox_pll_features2 {
  170. unsigned int vco_freq_min;
  171. unsigned int vco_freq_max;
  172. unsigned int feed_div_min;
  173. unsigned int feed_div_max;
  174. unsigned int in_div_min;
  175. unsigned int in_div_max;
  176. unsigned int post_shift_max;
  177. };
  178. struct matrox_pll_ctl {
  179. unsigned int ref_freq;
  180. unsigned int den;
  181. };
  182. static const struct matrox_pll_features2 maven1000_pll = {
  183. .vco_freq_min = 50000000,
  184. .vco_freq_max = 300000000,
  185. .feed_div_min = 5,
  186. .feed_div_max = 128,
  187. .in_div_min = 3,
  188. .in_div_max = 32,
  189. .post_shift_max = 3
  190. };
  191. static const struct matrox_pll_ctl maven_PAL = {
  192. .ref_freq = 540000,
  193. .den = 50
  194. };
  195. static const struct matrox_pll_ctl maven_NTSC = {
  196. .ref_freq = 450450, /* 27027000/60 == 27000000/59.94005994 */
  197. .den = 60
  198. };
  199. static int matroxfb_PLL_mavenclock(const struct matrox_pll_features2* pll,
  200. const struct matrox_pll_ctl* ctl,
  201. unsigned int htotal, unsigned int vtotal,
  202. unsigned int* in, unsigned int* feed, unsigned int* post,
  203. unsigned int* h2) {
  204. unsigned int besth2 = 0;
  205. unsigned int fxtal = ctl->ref_freq;
  206. unsigned int fmin = pll->vco_freq_min / ctl->den;
  207. unsigned int fwant;
  208. unsigned int p;
  209. unsigned int scrlen;
  210. unsigned int fmax;
  211. DBG(__func__)
  212. scrlen = htotal * (vtotal - 1);
  213. fwant = htotal * vtotal;
  214. fmax = pll->vco_freq_max / ctl->den;
  215. dprintk(KERN_DEBUG "want: %u, xtal: %u, h: %u, v: %u, fmax: %u\n",
  216. fwant, fxtal, htotal, vtotal, fmax);
  217. for (p = 1; p <= pll->post_shift_max; p++) {
  218. if (fwant * 2 > fmax)
  219. break;
  220. fwant *= 2;
  221. }
  222. if (fwant > fmax)
  223. return 0;
  224. for (; p-- > 0; fwant >>= 1) {
  225. unsigned int m;
  226. if (fwant < fmin) break;
  227. for (m = pll->in_div_min; m <= pll->in_div_max; m++) {
  228. unsigned int n;
  229. unsigned int dvd;
  230. unsigned int ln;
  231. n = (fwant * m) / fxtal;
  232. if (n < pll->feed_div_min)
  233. continue;
  234. if (n > pll->feed_div_max)
  235. break;
  236. ln = fxtal * n;
  237. dvd = m << p;
  238. if (ln % dvd)
  239. continue;
  240. ln = ln / dvd;
  241. if (ln < scrlen + 2)
  242. continue;
  243. ln = ln - scrlen;
  244. if (ln > htotal)
  245. continue;
  246. dprintk(KERN_DEBUG "Match: %u / %u / %u / %u\n", n, m, p, ln);
  247. if (ln > besth2) {
  248. dprintk(KERN_DEBUG "Better...\n");
  249. *h2 = besth2 = ln;
  250. *post = p;
  251. *in = m;
  252. *feed = n;
  253. }
  254. }
  255. }
  256. /* if h2/post/in/feed have not been assigned, return zero (error) */
  257. if (besth2 < 2)
  258. return 0;
  259. dprintk(KERN_ERR "clk: %02X %02X %02X %d %d\n", *in, *feed, *post, fxtal, fwant);
  260. return fxtal * (*feed) / (*in) * ctl->den;
  261. }
  262. static int matroxfb_mavenclock(const struct matrox_pll_ctl *ctl,
  263. unsigned int htotal, unsigned int vtotal,
  264. unsigned int* in, unsigned int* feed, unsigned int* post,
  265. unsigned int* htotal2) {
  266. unsigned int fvco;
  267. unsigned int p;
  268. fvco = matroxfb_PLL_mavenclock(&maven1000_pll, ctl, htotal, vtotal, in, feed, &p, htotal2);
  269. if (!fvco)
  270. return -EINVAL;
  271. p = (1 << p) - 1;
  272. if (fvco <= 100000000)
  273. ;
  274. else if (fvco <= 140000000)
  275. p |= 0x08;
  276. else if (fvco <= 180000000)
  277. p |= 0x10;
  278. else
  279. p |= 0x18;
  280. *post = p;
  281. return 0;
  282. }
  283. static void DAC1064_calcclock(unsigned int freq, unsigned int fmax,
  284. unsigned int* in, unsigned int* feed, unsigned int* post) {
  285. unsigned int fvco;
  286. unsigned int p;
  287. fvco = matroxfb_PLL_calcclock(&maven_pll, freq, fmax, in, feed, &p);
  288. p = (1 << p) - 1;
  289. if (fvco <= 100000)
  290. ;
  291. else if (fvco <= 140000)
  292. p |= 0x08;
  293. else if (fvco <= 180000)
  294. p |= 0x10;
  295. else
  296. p |= 0x18;
  297. *post = p;
  298. return;
  299. }
  300. static unsigned char maven_compute_deflicker (const struct maven_data* md) {
  301. unsigned char df;
  302. df = (md->version == MGATVO_B?0x40:0x00);
  303. switch (md->primary_head->altout.tvo_params.deflicker) {
  304. case 0:
  305. /* df |= 0x00; */
  306. break;
  307. case 1:
  308. df |= 0xB1;
  309. break;
  310. case 2:
  311. df |= 0xA2;
  312. break;
  313. }
  314. return df;
  315. }
  316. static void maven_compute_bwlevel (const struct maven_data* md,
  317. int *bl, int *wl) {
  318. const int b = md->primary_head->altout.tvo_params.brightness + BLMIN;
  319. const int c = md->primary_head->altout.tvo_params.contrast;
  320. *bl = max(b - c, BLMIN);
  321. *wl = min(b + c, WLMAX);
  322. }
  323. static const struct maven_gamma* maven_compute_gamma (const struct maven_data* md) {
  324. return maven_gamma + md->primary_head->altout.tvo_params.gamma;
  325. }
  326. static void maven_init_TVdata(const struct maven_data* md, struct mavenregs* data) {
  327. static struct mavenregs palregs = { {
  328. 0x2A, 0x09, 0x8A, 0xCB, /* 00: chroma subcarrier */
  329. 0x00,
  330. 0x00, /* ? not written */
  331. 0x00, /* modified by code (F9 written...) */
  332. 0x00, /* ? not written */
  333. 0x7E, /* 08 */
  334. 0x44, /* 09 */
  335. 0x9C, /* 0A */
  336. 0x2E, /* 0B */
  337. 0x21, /* 0C */
  338. 0x00, /* ? not written */
  339. 0x3F, 0x03, /* 0E-0F */
  340. 0x3F, 0x03, /* 10-11 */
  341. 0x1A, /* 12 */
  342. 0x2A, /* 13 */
  343. 0x1C, 0x3D, 0x14, /* 14-16 */
  344. 0x9C, 0x01, /* 17-18 */
  345. 0x00, /* 19 */
  346. 0xFE, /* 1A */
  347. 0x7E, /* 1B */
  348. 0x60, /* 1C */
  349. 0x05, /* 1D */
  350. 0x89, 0x03, /* 1E-1F */
  351. 0x72, /* 20 */
  352. 0x07, /* 21 */
  353. 0x72, /* 22 */
  354. 0x00, /* 23 */
  355. 0x00, /* 24 */
  356. 0x00, /* 25 */
  357. 0x08, /* 26 */
  358. 0x04, /* 27 */
  359. 0x00, /* 28 */
  360. 0x1A, /* 29 */
  361. 0x55, 0x01, /* 2A-2B */
  362. 0x26, /* 2C */
  363. 0x07, 0x7E, /* 2D-2E */
  364. 0x02, 0x54, /* 2F-30 */
  365. 0xB0, 0x00, /* 31-32 */
  366. 0x14, /* 33 */
  367. 0x49, /* 34 */
  368. 0x00, /* 35 written multiple times */
  369. 0x00, /* 36 not written */
  370. 0xA3, /* 37 */
  371. 0xC8, /* 38 */
  372. 0x22, /* 39 */
  373. 0x02, /* 3A */
  374. 0x22, /* 3B */
  375. 0x3F, 0x03, /* 3C-3D */
  376. 0x00, /* 3E written multiple times */
  377. 0x00, /* 3F not written */
  378. }, MATROXFB_OUTPUT_MODE_PAL, 625, 50 };
  379. static struct mavenregs ntscregs = { {
  380. 0x21, 0xF0, 0x7C, 0x1F, /* 00: chroma subcarrier */
  381. 0x00,
  382. 0x00, /* ? not written */
  383. 0x00, /* modified by code (F9 written...) */
  384. 0x00, /* ? not written */
  385. 0x7E, /* 08 */
  386. 0x43, /* 09 */
  387. 0x7E, /* 0A */
  388. 0x3D, /* 0B */
  389. 0x00, /* 0C */
  390. 0x00, /* ? not written */
  391. 0x41, 0x00, /* 0E-0F */
  392. 0x3C, 0x00, /* 10-11 */
  393. 0x17, /* 12 */
  394. 0x21, /* 13 */
  395. 0x1B, 0x1B, 0x24, /* 14-16 */
  396. 0x83, 0x01, /* 17-18 */
  397. 0x00, /* 19 */
  398. 0x0F, /* 1A */
  399. 0x0F, /* 1B */
  400. 0x60, /* 1C */
  401. 0x05, /* 1D */
  402. 0x89, 0x02, /* 1E-1F */
  403. 0x5F, /* 20 */
  404. 0x04, /* 21 */
  405. 0x5F, /* 22 */
  406. 0x01, /* 23 */
  407. 0x02, /* 24 */
  408. 0x00, /* 25 */
  409. 0x0A, /* 26 */
  410. 0x05, /* 27 */
  411. 0x00, /* 28 */
  412. 0x10, /* 29 */
  413. 0xFF, 0x03, /* 2A-2B */
  414. 0x24, /* 2C */
  415. 0x0F, 0x78, /* 2D-2E */
  416. 0x00, 0x00, /* 2F-30 */
  417. 0xB2, 0x04, /* 31-32 */
  418. 0x14, /* 33 */
  419. 0x02, /* 34 */
  420. 0x00, /* 35 written multiple times */
  421. 0x00, /* 36 not written */
  422. 0xA3, /* 37 */
  423. 0xC8, /* 38 */
  424. 0x15, /* 39 */
  425. 0x05, /* 3A */
  426. 0x3B, /* 3B */
  427. 0x3C, 0x00, /* 3C-3D */
  428. 0x00, /* 3E written multiple times */
  429. 0x00, /* never written */
  430. }, MATROXFB_OUTPUT_MODE_NTSC, 525, 60 };
  431. struct matrox_fb_info *minfo = md->primary_head;
  432. if (minfo->outputs[1].mode == MATROXFB_OUTPUT_MODE_PAL)
  433. *data = palregs;
  434. else
  435. *data = ntscregs;
  436. /* Set deflicker */
  437. data->regs[0x93] = maven_compute_deflicker(md);
  438. /* set gamma */
  439. {
  440. const struct maven_gamma* g;
  441. g = maven_compute_gamma(md);
  442. data->regs[0x83] = g->reg83;
  443. data->regs[0x84] = g->reg84;
  444. data->regs[0x85] = g->reg85;
  445. data->regs[0x86] = g->reg86;
  446. data->regs[0x87] = g->reg87;
  447. data->regs[0x88] = g->reg88;
  448. data->regs[0x89] = g->reg89;
  449. data->regs[0x8A] = g->reg8a;
  450. data->regs[0x8B] = g->reg8b;
  451. }
  452. /* Set contrast / brightness */
  453. {
  454. int bl, wl;
  455. maven_compute_bwlevel (md, &bl, &wl);
  456. data->regs[0x0e] = bl >> 2;
  457. data->regs[0x0f] = bl & 3;
  458. data->regs[0x1e] = wl >> 2;
  459. data->regs[0x1f] = wl & 3;
  460. }
  461. /* Set saturation */
  462. {
  463. data->regs[0x20] =
  464. data->regs[0x22] = minfo->altout.tvo_params.saturation;
  465. }
  466. /* Set HUE */
  467. data->regs[0x25] = minfo->altout.tvo_params.hue;
  468. return;
  469. }
  470. #define LR(x) maven_set_reg(c, (x), m->regs[(x)])
  471. #define LRP(x) maven_set_reg_pair(c, (x), m->regs[(x)] | (m->regs[(x)+1] << 8))
  472. static void maven_init_TV(struct i2c_client* c, const struct mavenregs* m) {
  473. int val;
  474. maven_set_reg(c, 0x3E, 0x01);
  475. maven_get_reg(c, 0x82); /* fetch oscillator state? */
  476. maven_set_reg(c, 0x8C, 0x00);
  477. maven_get_reg(c, 0x94); /* get 0x82 */
  478. maven_set_reg(c, 0x94, 0xA2);
  479. /* xmiscctrl */
  480. maven_set_reg_pair(c, 0x8E, 0x1EFF);
  481. maven_set_reg(c, 0xC6, 0x01);
  482. /* removed code... */
  483. maven_get_reg(c, 0x06);
  484. maven_set_reg(c, 0x06, 0xF9); /* or read |= 0xF0 ? */
  485. /* removed code here... */
  486. /* real code begins here? */
  487. /* chroma subcarrier */
  488. LR(0x00); LR(0x01); LR(0x02); LR(0x03);
  489. LR(0x04);
  490. LR(0x2C);
  491. LR(0x08);
  492. LR(0x0A);
  493. LR(0x09);
  494. LR(0x29);
  495. LRP(0x31);
  496. LRP(0x17);
  497. LR(0x0B);
  498. LR(0x0C);
  499. if (m->mode == MATROXFB_OUTPUT_MODE_PAL) {
  500. maven_set_reg(c, 0x35, 0x10); /* ... */
  501. } else {
  502. maven_set_reg(c, 0x35, 0x0F); /* ... */
  503. }
  504. LRP(0x10);
  505. LRP(0x0E);
  506. LRP(0x1E);
  507. LR(0x20); /* saturation #1 */
  508. LR(0x22); /* saturation #2 */
  509. LR(0x25); /* hue */
  510. LR(0x34);
  511. LR(0x33);
  512. LR(0x19);
  513. LR(0x12);
  514. LR(0x3B);
  515. LR(0x13);
  516. LR(0x39);
  517. LR(0x1D);
  518. LR(0x3A);
  519. LR(0x24);
  520. LR(0x14);
  521. LR(0x15);
  522. LR(0x16);
  523. LRP(0x2D);
  524. LRP(0x2F);
  525. LR(0x1A);
  526. LR(0x1B);
  527. LR(0x1C);
  528. LR(0x23);
  529. LR(0x26);
  530. LR(0x28);
  531. LR(0x27);
  532. LR(0x21);
  533. LRP(0x2A);
  534. if (m->mode == MATROXFB_OUTPUT_MODE_PAL)
  535. maven_set_reg(c, 0x35, 0x1D); /* ... */
  536. else
  537. maven_set_reg(c, 0x35, 0x1C);
  538. LRP(0x3C);
  539. LR(0x37);
  540. LR(0x38);
  541. maven_set_reg(c, 0xB3, 0x01);
  542. maven_get_reg(c, 0xB0); /* read 0x80 */
  543. maven_set_reg(c, 0xB0, 0x08); /* ugh... */
  544. maven_get_reg(c, 0xB9); /* read 0x7C */
  545. maven_set_reg(c, 0xB9, 0x78);
  546. maven_get_reg(c, 0xBF); /* read 0x00 */
  547. maven_set_reg(c, 0xBF, 0x02);
  548. maven_get_reg(c, 0x94); /* read 0x82 */
  549. maven_set_reg(c, 0x94, 0xB3);
  550. LR(0x80); /* 04 1A 91 or 05 21 91 */
  551. LR(0x81);
  552. LR(0x82);
  553. maven_set_reg(c, 0x8C, 0x20);
  554. maven_get_reg(c, 0x8D);
  555. maven_set_reg(c, 0x8D, 0x10);
  556. LR(0x90); /* 4D 50 52 or 4E 05 45 */
  557. LR(0x91);
  558. LR(0x92);
  559. LRP(0x9A); /* 0049 or 004F */
  560. LRP(0x9C); /* 0004 or 0004 */
  561. LRP(0x9E); /* 0458 or 045E */
  562. LRP(0xA0); /* 05DA or 051B */
  563. LRP(0xA2); /* 00CC or 00CF */
  564. LRP(0xA4); /* 007D or 007F */
  565. LRP(0xA6); /* 007C or 007E */
  566. LRP(0xA8); /* 03CB or 03CE */
  567. LRP(0x98); /* 0000 or 0000 */
  568. LRP(0xAE); /* 0044 or 003A */
  569. LRP(0x96); /* 05DA or 051B */
  570. LRP(0xAA); /* 04BC or 046A */
  571. LRP(0xAC); /* 004D or 004E */
  572. LR(0xBE);
  573. LR(0xC2);
  574. maven_get_reg(c, 0x8D);
  575. maven_set_reg(c, 0x8D, 0x04);
  576. LR(0x20); /* saturation #1 */
  577. LR(0x22); /* saturation #2 */
  578. LR(0x93); /* whoops */
  579. LR(0x20); /* oh, saturation #1 again */
  580. LR(0x22); /* oh, saturation #2 again */
  581. LR(0x25); /* hue */
  582. LRP(0x0E);
  583. LRP(0x1E);
  584. LRP(0x0E); /* problems with memory? */
  585. LRP(0x1E); /* yes, matrox must have problems in memory area... */
  586. /* load gamma correction stuff */
  587. LR(0x83);
  588. LR(0x84);
  589. LR(0x85);
  590. LR(0x86);
  591. LR(0x87);
  592. LR(0x88);
  593. LR(0x89);
  594. LR(0x8A);
  595. LR(0x8B);
  596. val = maven_get_reg(c, 0x8D);
  597. val &= 0x14; /* 0x10 or anything ored with it */
  598. maven_set_reg(c, 0x8D, val);
  599. LR(0x33);
  600. LR(0x19);
  601. LR(0x12);
  602. LR(0x3B);
  603. LR(0x13);
  604. LR(0x39);
  605. LR(0x1D);
  606. LR(0x3A);
  607. LR(0x24);
  608. LR(0x14);
  609. LR(0x15);
  610. LR(0x16);
  611. LRP(0x2D);
  612. LRP(0x2F);
  613. LR(0x1A);
  614. LR(0x1B);
  615. LR(0x1C);
  616. LR(0x23);
  617. LR(0x26);
  618. LR(0x28);
  619. LR(0x27);
  620. LR(0x21);
  621. LRP(0x2A);
  622. if (m->mode == MATROXFB_OUTPUT_MODE_PAL)
  623. maven_set_reg(c, 0x35, 0x1D);
  624. else
  625. maven_set_reg(c, 0x35, 0x1C);
  626. LRP(0x3C);
  627. LR(0x37);
  628. LR(0x38);
  629. maven_get_reg(c, 0xB0);
  630. LR(0xB0); /* output mode */
  631. LR(0x90);
  632. LR(0xBE);
  633. LR(0xC2);
  634. LRP(0x9A);
  635. LRP(0xA2);
  636. LRP(0x9E);
  637. LRP(0xA6);
  638. LRP(0xAA);
  639. LRP(0xAC);
  640. maven_set_reg(c, 0x3E, 0x00);
  641. maven_set_reg(c, 0x95, 0x20);
  642. }
  643. static int maven_find_exact_clocks(unsigned int ht, unsigned int vt,
  644. struct mavenregs* m) {
  645. unsigned int x;
  646. unsigned int err = ~0;
  647. /* 1:1 */
  648. m->regs[0x80] = 0x0F;
  649. m->regs[0x81] = 0x07;
  650. m->regs[0x82] = 0x81;
  651. for (x = 0; x < 8; x++) {
  652. unsigned int c;
  653. unsigned int a, b,
  654. h2;
  655. unsigned int h = ht + 2 + x;
  656. if (!matroxfb_mavenclock((m->mode == MATROXFB_OUTPUT_MODE_PAL) ? &maven_PAL : &maven_NTSC, h, vt, &a, &b, &c, &h2)) {
  657. unsigned int diff = h - h2;
  658. if (diff < err) {
  659. err = diff;
  660. m->regs[0x80] = a - 1;
  661. m->regs[0x81] = b - 1;
  662. m->regs[0x82] = c | 0x80;
  663. m->hcorr = h2 - 2;
  664. m->htotal = h - 2;
  665. }
  666. }
  667. }
  668. return err != ~0U;
  669. }
  670. static inline int maven_compute_timming(struct maven_data* md,
  671. struct my_timming* mt,
  672. struct mavenregs* m) {
  673. unsigned int tmpi;
  674. unsigned int a, bv, c;
  675. struct matrox_fb_info *minfo = md->primary_head;
  676. m->mode = minfo->outputs[1].mode;
  677. if (m->mode != MATROXFB_OUTPUT_MODE_MONITOR) {
  678. unsigned int lmargin;
  679. unsigned int umargin;
  680. unsigned int vslen;
  681. unsigned int hcrt;
  682. unsigned int slen;
  683. maven_init_TVdata(md, m);
  684. if (maven_find_exact_clocks(mt->HTotal, mt->VTotal, m) == 0)
  685. return -EINVAL;
  686. lmargin = mt->HTotal - mt->HSyncEnd;
  687. slen = mt->HSyncEnd - mt->HSyncStart;
  688. hcrt = mt->HTotal - slen - mt->delay;
  689. umargin = mt->VTotal - mt->VSyncEnd;
  690. vslen = mt->VSyncEnd - mt->VSyncStart;
  691. if (m->hcorr < mt->HTotal)
  692. hcrt += m->hcorr;
  693. if (hcrt > mt->HTotal)
  694. hcrt -= mt->HTotal;
  695. if (hcrt + 2 > mt->HTotal)
  696. hcrt = 0; /* or issue warning? */
  697. /* last (first? middle?) line in picture can have different length */
  698. /* hlen - 2 */
  699. m->regs[0x96] = m->hcorr;
  700. m->regs[0x97] = m->hcorr >> 8;
  701. /* ... */
  702. m->regs[0x98] = 0x00; m->regs[0x99] = 0x00;
  703. /* hblanking end */
  704. m->regs[0x9A] = lmargin; /* 100% */
  705. m->regs[0x9B] = lmargin >> 8; /* 100% */
  706. /* who knows */
  707. m->regs[0x9C] = 0x04;
  708. m->regs[0x9D] = 0x00;
  709. /* htotal - 2 */
  710. m->regs[0xA0] = m->htotal;
  711. m->regs[0xA1] = m->htotal >> 8;
  712. /* vblanking end */
  713. m->regs[0xA2] = mt->VTotal - mt->VSyncStart - 1; /* stop vblanking */
  714. m->regs[0xA3] = (mt->VTotal - mt->VSyncStart - 1) >> 8;
  715. /* something end... [A6]+1..[A8] */
  716. if (md->version == MGATVO_B) {
  717. m->regs[0xA4] = 0x04;
  718. m->regs[0xA5] = 0x00;
  719. } else {
  720. m->regs[0xA4] = 0x01;
  721. m->regs[0xA5] = 0x00;
  722. }
  723. /* something start... 0..[A4]-1 */
  724. m->regs[0xA6] = 0x00;
  725. m->regs[0xA7] = 0x00;
  726. /* vertical line count - 1 */
  727. m->regs[0xA8] = mt->VTotal - 1;
  728. m->regs[0xA9] = (mt->VTotal - 1) >> 8;
  729. /* horizontal vidrst pos */
  730. m->regs[0xAA] = hcrt; /* 0 <= hcrt <= htotal - 2 */
  731. m->regs[0xAB] = hcrt >> 8;
  732. /* vertical vidrst pos */
  733. m->regs[0xAC] = mt->VTotal - 2;
  734. m->regs[0xAD] = (mt->VTotal - 2) >> 8;
  735. /* moves picture up/down and so on... */
  736. m->regs[0xAE] = 0x01; /* Fix this... 0..VTotal */
  737. m->regs[0xAF] = 0x00;
  738. {
  739. int hdec;
  740. int hlen;
  741. unsigned int ibmin = 4 + lmargin + mt->HDisplay;
  742. unsigned int ib;
  743. int i;
  744. /* Verify! */
  745. /* Where 94208 came from? */
  746. if (mt->HTotal)
  747. hdec = 94208 / (mt->HTotal);
  748. else
  749. hdec = 0x81;
  750. if (hdec > 0x81)
  751. hdec = 0x81;
  752. if (hdec < 0x41)
  753. hdec = 0x41;
  754. hdec--;
  755. hlen = 98304 - 128 - ((lmargin + mt->HDisplay - 8) * hdec);
  756. if (hlen < 0)
  757. hlen = 0;
  758. hlen = hlen >> 8;
  759. if (hlen > 0xFF)
  760. hlen = 0xFF;
  761. /* Now we have to compute input buffer length.
  762. If you want any picture, it must be between
  763. 4 + lmargin + xres
  764. and
  765. 94208 / hdec
  766. If you want perfect picture even on the top
  767. of screen, it must be also
  768. 0x3C0000 * i / hdec + Q - R / hdec
  769. where
  770. R Qmin Qmax
  771. 0x07000 0x5AE 0x5BF
  772. 0x08000 0x5CF 0x5FF
  773. 0x0C000 0x653 0x67F
  774. 0x10000 0x6F8 0x6FF
  775. */
  776. i = 1;
  777. do {
  778. ib = ((0x3C0000 * i - 0x8000)/ hdec + 0x05E7) >> 8;
  779. i++;
  780. } while (ib < ibmin);
  781. if (ib >= m->htotal + 2) {
  782. ib = ibmin;
  783. }
  784. m->regs[0x90] = hdec; /* < 0x40 || > 0x80 is bad... 0x80 is questionable */
  785. m->regs[0xC2] = hlen;
  786. /* 'valid' input line length */
  787. m->regs[0x9E] = ib;
  788. m->regs[0x9F] = ib >> 8;
  789. }
  790. {
  791. int vdec;
  792. int vlen;
  793. #define MATROX_USE64BIT_DIVIDE
  794. if (mt->VTotal) {
  795. #ifdef MATROX_USE64BIT_DIVIDE
  796. u64 f1;
  797. u32 a;
  798. u32 b;
  799. a = m->vlines * (m->htotal + 2);
  800. b = (mt->VTotal - 1) * (m->htotal + 2) + m->hcorr + 2;
  801. f1 = ((u64)a) << 15; /* *32768 */
  802. do_div(f1, b);
  803. vdec = f1;
  804. #else
  805. vdec = m->vlines * 32768 / mt->VTotal;
  806. #endif
  807. } else
  808. vdec = 0x8000;
  809. if (vdec > 0x8000)
  810. vdec = 0x8000;
  811. vlen = (vslen + umargin + mt->VDisplay) * vdec;
  812. vlen = (vlen >> 16) - 146; /* FIXME: 146?! */
  813. if (vlen < 0)
  814. vlen = 0;
  815. if (vlen > 0xFF)
  816. vlen = 0xFF;
  817. vdec--;
  818. m->regs[0x91] = vdec;
  819. m->regs[0x92] = vdec >> 8;
  820. m->regs[0xBE] = vlen;
  821. }
  822. m->regs[0xB0] = 0x08; /* output: SVideo/Composite */
  823. return 0;
  824. }
  825. DAC1064_calcclock(mt->pixclock, 450000, &a, &bv, &c);
  826. m->regs[0x80] = a;
  827. m->regs[0x81] = bv;
  828. m->regs[0x82] = c | 0x80;
  829. m->regs[0xB3] = 0x01;
  830. m->regs[0x94] = 0xB2;
  831. /* htotal... */
  832. m->regs[0x96] = mt->HTotal;
  833. m->regs[0x97] = mt->HTotal >> 8;
  834. /* ?? */
  835. m->regs[0x98] = 0x00;
  836. m->regs[0x99] = 0x00;
  837. /* hsync len */
  838. tmpi = mt->HSyncEnd - mt->HSyncStart;
  839. m->regs[0x9A] = tmpi;
  840. m->regs[0x9B] = tmpi >> 8;
  841. /* hblank end */
  842. tmpi = mt->HTotal - mt->HSyncStart;
  843. m->regs[0x9C] = tmpi;
  844. m->regs[0x9D] = tmpi >> 8;
  845. /* hblank start */
  846. tmpi += mt->HDisplay;
  847. m->regs[0x9E] = tmpi;
  848. m->regs[0x9F] = tmpi >> 8;
  849. /* htotal + 1 */
  850. tmpi = mt->HTotal + 1;
  851. m->regs[0xA0] = tmpi;
  852. m->regs[0xA1] = tmpi >> 8;
  853. /* vsync?! */
  854. tmpi = mt->VSyncEnd - mt->VSyncStart - 1;
  855. m->regs[0xA2] = tmpi;
  856. m->regs[0xA3] = tmpi >> 8;
  857. /* ignored? */
  858. tmpi = mt->VTotal - mt->VSyncStart;
  859. m->regs[0xA4] = tmpi;
  860. m->regs[0xA5] = tmpi >> 8;
  861. /* ignored? */
  862. tmpi = mt->VTotal - 1;
  863. m->regs[0xA6] = tmpi;
  864. m->regs[0xA7] = tmpi >> 8;
  865. /* vtotal - 1 */
  866. m->regs[0xA8] = tmpi;
  867. m->regs[0xA9] = tmpi >> 8;
  868. /* hor vidrst */
  869. tmpi = mt->HTotal - mt->delay;
  870. m->regs[0xAA] = tmpi;
  871. m->regs[0xAB] = tmpi >> 8;
  872. /* vert vidrst */
  873. tmpi = mt->VTotal - 2;
  874. m->regs[0xAC] = tmpi;
  875. m->regs[0xAD] = tmpi >> 8;
  876. /* ignored? */
  877. m->regs[0xAE] = 0x00;
  878. m->regs[0xAF] = 0x00;
  879. m->regs[0xB0] = 0x03; /* output: monitor */
  880. m->regs[0xB1] = 0xA0; /* ??? */
  881. m->regs[0x8C] = 0x20; /* must be set... */
  882. m->regs[0x8D] = 0x04; /* defaults to 0x10: test signal */
  883. m->regs[0xB9] = 0x1A; /* defaults to 0x2C: too bright */
  884. m->regs[0xBF] = 0x22; /* makes picture stable */
  885. return 0;
  886. }
  887. static int maven_program_timming(struct maven_data* md,
  888. const struct mavenregs* m) {
  889. struct i2c_client *c = md->client;
  890. if (m->mode == MATROXFB_OUTPUT_MODE_MONITOR) {
  891. LR(0x80);
  892. LR(0x81);
  893. LR(0x82);
  894. LR(0xB3);
  895. LR(0x94);
  896. LRP(0x96);
  897. LRP(0x98);
  898. LRP(0x9A);
  899. LRP(0x9C);
  900. LRP(0x9E);
  901. LRP(0xA0);
  902. LRP(0xA2);
  903. LRP(0xA4);
  904. LRP(0xA6);
  905. LRP(0xA8);
  906. LRP(0xAA);
  907. LRP(0xAC);
  908. LRP(0xAE);
  909. LR(0xB0); /* output: monitor */
  910. LR(0xB1); /* ??? */
  911. LR(0x8C); /* must be set... */
  912. LR(0x8D); /* defaults to 0x10: test signal */
  913. LR(0xB9); /* defaults to 0x2C: too bright */
  914. LR(0xBF); /* makes picture stable */
  915. } else {
  916. maven_init_TV(c, m);
  917. }
  918. return 0;
  919. }
  920. static inline int maven_resync(struct maven_data* md) {
  921. struct i2c_client *c = md->client;
  922. maven_set_reg(c, 0x95, 0x20); /* start whole thing */
  923. return 0;
  924. }
  925. static int maven_get_queryctrl (struct maven_data* md,
  926. struct v4l2_queryctrl *p) {
  927. int i;
  928. i = get_ctrl_id(p->id);
  929. if (i >= 0) {
  930. *p = maven_controls[i].desc;
  931. return 0;
  932. }
  933. if (i == -ENOENT) {
  934. static const struct v4l2_queryctrl disctrl =
  935. { .flags = V4L2_CTRL_FLAG_DISABLED };
  936. i = p->id;
  937. *p = disctrl;
  938. p->id = i;
  939. sprintf(p->name, "Ctrl #%08X", i);
  940. return 0;
  941. }
  942. return -EINVAL;
  943. }
  944. static int maven_set_control (struct maven_data* md,
  945. struct v4l2_control *p) {
  946. int i;
  947. i = get_ctrl_id(p->id);
  948. if (i < 0) return -EINVAL;
  949. /*
  950. * Check if changed.
  951. */
  952. if (p->value == *get_ctrl_ptr(md, i)) return 0;
  953. /*
  954. * Check limits.
  955. */
  956. if (p->value > maven_controls[i].desc.maximum) return -EINVAL;
  957. if (p->value < maven_controls[i].desc.minimum) return -EINVAL;
  958. /*
  959. * Store new value.
  960. */
  961. *get_ctrl_ptr(md, i) = p->value;
  962. switch (p->id) {
  963. case V4L2_CID_BRIGHTNESS:
  964. case V4L2_CID_CONTRAST:
  965. {
  966. int blacklevel, whitelevel;
  967. maven_compute_bwlevel(md, &blacklevel, &whitelevel);
  968. blacklevel = (blacklevel >> 2) | ((blacklevel & 3) << 8);
  969. whitelevel = (whitelevel >> 2) | ((whitelevel & 3) << 8);
  970. maven_set_reg_pair(md->client, 0x0e, blacklevel);
  971. maven_set_reg_pair(md->client, 0x1e, whitelevel);
  972. }
  973. break;
  974. case V4L2_CID_SATURATION:
  975. {
  976. maven_set_reg(md->client, 0x20, p->value);
  977. maven_set_reg(md->client, 0x22, p->value);
  978. }
  979. break;
  980. case V4L2_CID_HUE:
  981. {
  982. maven_set_reg(md->client, 0x25, p->value);
  983. }
  984. break;
  985. case V4L2_CID_GAMMA:
  986. {
  987. const struct maven_gamma* g;
  988. g = maven_compute_gamma(md);
  989. maven_set_reg(md->client, 0x83, g->reg83);
  990. maven_set_reg(md->client, 0x84, g->reg84);
  991. maven_set_reg(md->client, 0x85, g->reg85);
  992. maven_set_reg(md->client, 0x86, g->reg86);
  993. maven_set_reg(md->client, 0x87, g->reg87);
  994. maven_set_reg(md->client, 0x88, g->reg88);
  995. maven_set_reg(md->client, 0x89, g->reg89);
  996. maven_set_reg(md->client, 0x8a, g->reg8a);
  997. maven_set_reg(md->client, 0x8b, g->reg8b);
  998. }
  999. break;
  1000. case MATROXFB_CID_TESTOUT:
  1001. {
  1002. unsigned char val
  1003. = maven_get_reg(md->client, 0x8d);
  1004. if (p->value) val |= 0x10;
  1005. else val &= ~0x10;
  1006. maven_set_reg(md->client, 0x8d, val);
  1007. }
  1008. break;
  1009. case MATROXFB_CID_DEFLICKER:
  1010. {
  1011. maven_set_reg(md->client, 0x93, maven_compute_deflicker(md));
  1012. }
  1013. break;
  1014. }
  1015. return 0;
  1016. }
  1017. static int maven_get_control (struct maven_data* md,
  1018. struct v4l2_control *p) {
  1019. int i;
  1020. i = get_ctrl_id(p->id);
  1021. if (i < 0) return -EINVAL;
  1022. p->value = *get_ctrl_ptr(md, i);
  1023. return 0;
  1024. }
  1025. /******************************************************/
  1026. static int maven_out_compute(void* md, struct my_timming* mt) {
  1027. #define mdinfo ((struct maven_data*)md)
  1028. #define minfo (mdinfo->primary_head)
  1029. return maven_compute_timming(md, mt, &minfo->hw.maven);
  1030. #undef minfo
  1031. #undef mdinfo
  1032. }
  1033. static int maven_out_program(void* md) {
  1034. #define mdinfo ((struct maven_data*)md)
  1035. #define minfo (mdinfo->primary_head)
  1036. return maven_program_timming(md, &minfo->hw.maven);
  1037. #undef minfo
  1038. #undef mdinfo
  1039. }
  1040. static int maven_out_start(void* md) {
  1041. return maven_resync(md);
  1042. }
  1043. static int maven_out_verify_mode(void* md, u_int32_t arg) {
  1044. switch (arg) {
  1045. case MATROXFB_OUTPUT_MODE_PAL:
  1046. case MATROXFB_OUTPUT_MODE_NTSC:
  1047. case MATROXFB_OUTPUT_MODE_MONITOR:
  1048. return 0;
  1049. }
  1050. return -EINVAL;
  1051. }
  1052. static int maven_out_get_queryctrl(void* md, struct v4l2_queryctrl* p) {
  1053. return maven_get_queryctrl(md, p);
  1054. }
  1055. static int maven_out_get_ctrl(void* md, struct v4l2_control* p) {
  1056. return maven_get_control(md, p);
  1057. }
  1058. static int maven_out_set_ctrl(void* md, struct v4l2_control* p) {
  1059. return maven_set_control(md, p);
  1060. }
  1061. static struct matrox_altout maven_altout = {
  1062. .name = "Secondary output",
  1063. .compute = maven_out_compute,
  1064. .program = maven_out_program,
  1065. .start = maven_out_start,
  1066. .verifymode = maven_out_verify_mode,
  1067. .getqueryctrl = maven_out_get_queryctrl,
  1068. .getctrl = maven_out_get_ctrl,
  1069. .setctrl = maven_out_set_ctrl,
  1070. };
  1071. static int maven_init_client(struct i2c_client* clnt) {
  1072. struct maven_data* md = i2c_get_clientdata(clnt);
  1073. struct matrox_fb_info *minfo = container_of(clnt->adapter,
  1074. struct i2c_bit_adapter,
  1075. adapter)->minfo;
  1076. md->primary_head = minfo;
  1077. md->client = clnt;
  1078. down_write(&minfo->altout.lock);
  1079. minfo->outputs[1].output = &maven_altout;
  1080. minfo->outputs[1].src = minfo->outputs[1].default_src;
  1081. minfo->outputs[1].data = md;
  1082. minfo->outputs[1].mode = MATROXFB_OUTPUT_MODE_MONITOR;
  1083. up_write(&minfo->altout.lock);
  1084. if (maven_get_reg(clnt, 0xB2) < 0x14) {
  1085. md->version = MGATVO_B;
  1086. /* Tweak some things for this old chip */
  1087. } else {
  1088. md->version = MGATVO_C;
  1089. }
  1090. /*
  1091. * Set all parameters to its initial values.
  1092. */
  1093. {
  1094. unsigned int i;
  1095. for (i = 0; i < MAVCTRLS; ++i) {
  1096. *get_ctrl_ptr(md, i) = maven_controls[i].desc.default_value;
  1097. }
  1098. }
  1099. return 0;
  1100. }
  1101. static int maven_shutdown_client(struct i2c_client* clnt) {
  1102. struct maven_data* md = i2c_get_clientdata(clnt);
  1103. if (md->primary_head) {
  1104. struct matrox_fb_info *minfo = md->primary_head;
  1105. down_write(&minfo->altout.lock);
  1106. minfo->outputs[1].src = MATROXFB_SRC_NONE;
  1107. minfo->outputs[1].output = NULL;
  1108. minfo->outputs[1].data = NULL;
  1109. minfo->outputs[1].mode = MATROXFB_OUTPUT_MODE_MONITOR;
  1110. up_write(&minfo->altout.lock);
  1111. md->primary_head = NULL;
  1112. }
  1113. return 0;
  1114. }
  1115. static int maven_probe(struct i2c_client *client,
  1116. const struct i2c_device_id *id)
  1117. {
  1118. struct i2c_adapter *adapter = client->adapter;
  1119. int err = -ENODEV;
  1120. struct maven_data* data;
  1121. if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_WRITE_WORD_DATA |
  1122. I2C_FUNC_SMBUS_BYTE_DATA |
  1123. I2C_FUNC_NOSTART |
  1124. I2C_FUNC_PROTOCOL_MANGLING))
  1125. goto ERROR0;
  1126. if (!(data = kzalloc(sizeof(*data), GFP_KERNEL))) {
  1127. err = -ENOMEM;
  1128. goto ERROR0;
  1129. }
  1130. i2c_set_clientdata(client, data);
  1131. err = maven_init_client(client);
  1132. if (err)
  1133. goto ERROR4;
  1134. return 0;
  1135. ERROR4:;
  1136. kfree(data);
  1137. ERROR0:;
  1138. return err;
  1139. }
  1140. static void maven_remove(struct i2c_client *client)
  1141. {
  1142. maven_shutdown_client(client);
  1143. kfree(i2c_get_clientdata(client));
  1144. }
  1145. static const struct i2c_device_id maven_id[] = {
  1146. { "maven", 0 },
  1147. { }
  1148. };
  1149. MODULE_DEVICE_TABLE(i2c, maven_id);
  1150. static struct i2c_driver maven_driver={
  1151. .driver = {
  1152. .name = "maven",
  1153. },
  1154. .probe = maven_probe,
  1155. .remove = maven_remove,
  1156. .id_table = maven_id,
  1157. };
  1158. module_i2c_driver(maven_driver);
  1159. MODULE_AUTHOR("(c) 1999-2002 Petr Vandrovec <[email protected]>");
  1160. MODULE_DESCRIPTION("Matrox G200/G400 Matrox MGA-TVO driver");
  1161. MODULE_LICENSE("GPL");