budget-av.c 27 KB

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  1. /*
  2. * budget-av.c: driver for the SAA7146 based Budget DVB cards
  3. * with analog video in
  4. *
  5. * Compiled from various sources by Michael Hunold <michael@mihu.de>
  6. *
  7. * CI interface support (c) 2004 Olivier Gournet <ogournet@anevia.com> &
  8. * Andrew de Quincey <adq_dvb@lidskialf.net>
  9. *
  10. * Copyright (C) 2002 Ralph Metzler <rjkm@metzlerbros.de>
  11. *
  12. * Copyright (C) 1999-2002 Ralph Metzler
  13. * & Marcus Metzler for convergence integrated media GmbH
  14. *
  15. * This program is free software; you can redistribute it and/or
  16. * modify it under the terms of the GNU General Public License
  17. * as published by the Free Software Foundation; either version 2
  18. * of the License, or (at your option) any later version.
  19. *
  20. *
  21. * This program is distributed in the hope that it will be useful,
  22. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  23. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  24. * GNU General Public License for more details.
  25. *
  26. *
  27. * You should have received a copy of the GNU General Public License
  28. * along with this program; if not, write to the Free Software
  29. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  30. * Or, point your browser to http://www.gnu.org/copyleft/gpl.html
  31. *
  32. *
  33. * the project's page is at http://www.linuxtv.org/dvb/
  34. */
  35. #include "budget.h"
  36. #include "stv0299.h"
  37. #include "tda10021.h"
  38. #include "tda1004x.h"
  39. #include <media/saa7146_vv.h>
  40. #include <linux/module.h>
  41. #include <linux/errno.h>
  42. #include <linux/slab.h>
  43. #include <linux/interrupt.h>
  44. #include <linux/input.h>
  45. #include <linux/spinlock.h>
  46. #include "dvb_ca_en50221.h"
  47. #define DEBICICAM 0x02420000
  48. struct budget_av {
  49. struct budget budget;
  50. struct video_device *vd;
  51. int cur_input;
  52. int has_saa7113;
  53. struct tasklet_struct ciintf_irq_tasklet;
  54. int slot_status;
  55. struct dvb_ca_en50221 ca;
  56. };
  57. static int enable_ci = 0;
  58. /****************************************************************************
  59. * INITIALIZATION
  60. ****************************************************************************/
  61. static u8 i2c_readreg(struct i2c_adapter *i2c, u8 id, u8 reg)
  62. {
  63. u8 mm1[] = { 0x00 };
  64. u8 mm2[] = { 0x00 };
  65. struct i2c_msg msgs[2];
  66. msgs[0].flags = 0;
  67. msgs[1].flags = I2C_M_RD;
  68. msgs[0].addr = msgs[1].addr = id / 2;
  69. mm1[0] = reg;
  70. msgs[0].len = 1;
  71. msgs[1].len = 1;
  72. msgs[0].buf = mm1;
  73. msgs[1].buf = mm2;
  74. i2c_transfer(i2c, msgs, 2);
  75. return mm2[0];
  76. }
  77. static int i2c_readregs(struct i2c_adapter *i2c, u8 id, u8 reg, u8 * buf, u8 len)
  78. {
  79. u8 mm1[] = { reg };
  80. struct i2c_msg msgs[2] = {
  81. {.addr = id / 2,.flags = 0,.buf = mm1,.len = 1},
  82. {.addr = id / 2,.flags = I2C_M_RD,.buf = buf,.len = len}
  83. };
  84. if (i2c_transfer(i2c, msgs, 2) != 2)
  85. return -EIO;
  86. return 0;
  87. }
  88. static int i2c_writereg(struct i2c_adapter *i2c, u8 id, u8 reg, u8 val)
  89. {
  90. u8 msg[2] = { reg, val };
  91. struct i2c_msg msgs;
  92. msgs.flags = 0;
  93. msgs.addr = id / 2;
  94. msgs.len = 2;
  95. msgs.buf = msg;
  96. return i2c_transfer(i2c, &msgs, 1);
  97. }
  98. static int ciintf_read_attribute_mem(struct dvb_ca_en50221 *ca, int slot, int address)
  99. {
  100. struct budget_av *budget_av = (struct budget_av *) ca->data;
  101. int result;
  102. if (slot != 0)
  103. return -EINVAL;
  104. saa7146_setgpio(budget_av->budget.dev, 1, SAA7146_GPIO_OUTHI);
  105. udelay(1);
  106. result = ttpci_budget_debiread(&budget_av->budget, DEBICICAM, address & 0xfff, 1, 0, 0);
  107. if (result == -ETIMEDOUT)
  108. budget_av->slot_status = 0;
  109. return result;
  110. }
  111. static int ciintf_write_attribute_mem(struct dvb_ca_en50221 *ca, int slot, int address, u8 value)
  112. {
  113. struct budget_av *budget_av = (struct budget_av *) ca->data;
  114. int result;
  115. if (slot != 0)
  116. return -EINVAL;
  117. saa7146_setgpio(budget_av->budget.dev, 1, SAA7146_GPIO_OUTHI);
  118. udelay(1);
  119. result = ttpci_budget_debiwrite(&budget_av->budget, DEBICICAM, address & 0xfff, 1, value, 0, 0);
  120. if (result == -ETIMEDOUT)
  121. budget_av->slot_status = 0;
  122. return result;
  123. }
  124. static int ciintf_read_cam_control(struct dvb_ca_en50221 *ca, int slot, u8 address)
  125. {
  126. struct budget_av *budget_av = (struct budget_av *) ca->data;
  127. int result;
  128. if (slot != 0)
  129. return -EINVAL;
  130. saa7146_setgpio(budget_av->budget.dev, 1, SAA7146_GPIO_OUTLO);
  131. udelay(1);
  132. result = ttpci_budget_debiread(&budget_av->budget, DEBICICAM, address & 3, 1, 0, 0);
  133. if (result == -ETIMEDOUT)
  134. budget_av->slot_status = 0;
  135. return result;
  136. }
  137. static int ciintf_write_cam_control(struct dvb_ca_en50221 *ca, int slot, u8 address, u8 value)
  138. {
  139. struct budget_av *budget_av = (struct budget_av *) ca->data;
  140. int result;
  141. if (slot != 0)
  142. return -EINVAL;
  143. saa7146_setgpio(budget_av->budget.dev, 1, SAA7146_GPIO_OUTLO);
  144. udelay(1);
  145. result = ttpci_budget_debiwrite(&budget_av->budget, DEBICICAM, address & 3, 1, value, 0, 0);
  146. if (result == -ETIMEDOUT)
  147. budget_av->slot_status = 0;
  148. return result;
  149. }
  150. static int ciintf_slot_reset(struct dvb_ca_en50221 *ca, int slot)
  151. {
  152. struct budget_av *budget_av = (struct budget_av *) ca->data;
  153. struct saa7146_dev *saa = budget_av->budget.dev;
  154. int max = 20;
  155. if (slot != 0)
  156. return -EINVAL;
  157. dprintk(1, "ciintf_slot_reset\n");
  158. /* reset the card */
  159. saa7146_setgpio(saa, 0, SAA7146_GPIO_OUTHI);
  160. msleep(100);
  161. saa7146_setgpio(saa, 0, SAA7146_GPIO_OUTLO);
  162. while (--max > 0 && ciintf_read_attribute_mem(ca, slot, 0) != 0x1d)
  163. msleep(100);
  164. ttpci_budget_set_video_port(saa, BUDGET_VIDEO_PORTB);
  165. return 0;
  166. }
  167. static int ciintf_slot_shutdown(struct dvb_ca_en50221 *ca, int slot)
  168. {
  169. struct budget_av *budget_av = (struct budget_av *) ca->data;
  170. struct saa7146_dev *saa = budget_av->budget.dev;
  171. if (slot != 0)
  172. return -EINVAL;
  173. dprintk(1, "ciintf_slot_shutdown\n");
  174. ttpci_budget_set_video_port(saa, BUDGET_VIDEO_PORTB);
  175. budget_av->slot_status = 0;
  176. return 0;
  177. }
  178. static int ciintf_slot_ts_enable(struct dvb_ca_en50221 *ca, int slot)
  179. {
  180. struct budget_av *budget_av = (struct budget_av *) ca->data;
  181. struct saa7146_dev *saa = budget_av->budget.dev;
  182. if (slot != 0)
  183. return -EINVAL;
  184. dprintk(1, "ciintf_slot_ts_enable: %d\n", budget_av->slot_status);
  185. ttpci_budget_set_video_port(saa, BUDGET_VIDEO_PORTA);
  186. return 0;
  187. }
  188. static int ciintf_poll_slot_status(struct dvb_ca_en50221 *ca, int slot, int open)
  189. {
  190. struct budget_av *budget_av = (struct budget_av *) ca->data;
  191. struct saa7146_dev *saa = budget_av->budget.dev;
  192. int cam = 0;
  193. if (slot != 0)
  194. return -EINVAL;
  195. if (!budget_av->slot_status) {
  196. saa7146_setgpio(saa, 3, SAA7146_GPIO_INPUT);
  197. udelay(1);
  198. cam = saa7146_read(saa, PSR) & MASK_06;
  199. saa7146_setgpio(saa, 3, SAA7146_GPIO_OUTLO);
  200. if (cam)
  201. budget_av->slot_status = 1;
  202. } else if (!open) {
  203. saa7146_setgpio(budget_av->budget.dev, 1, SAA7146_GPIO_OUTLO);
  204. if (ttpci_budget_debiread(&budget_av->budget, DEBICICAM, 0, 1, 0, 1) == -ETIMEDOUT)
  205. budget_av->slot_status = 0;
  206. }
  207. if (budget_av->slot_status == 1)
  208. return DVB_CA_EN50221_POLL_CAM_PRESENT | DVB_CA_EN50221_POLL_CAM_READY;
  209. return 0;
  210. }
  211. static int ciintf_init(struct budget_av *budget_av)
  212. {
  213. struct saa7146_dev *saa = budget_av->budget.dev;
  214. int result;
  215. memset(&budget_av->ca, 0, sizeof(struct dvb_ca_en50221));
  216. /* setup GPIOs */
  217. saa7146_setgpio(saa, 1, SAA7146_GPIO_OUTHI);
  218. saa7146_setgpio(saa, 2, SAA7146_GPIO_OUTLO);
  219. saa7146_setgpio(saa, 3, SAA7146_GPIO_OUTLO);
  220. /* Reset the card */
  221. saa7146_setgpio(saa, 0, SAA7146_GPIO_OUTHI);
  222. msleep(50);
  223. saa7146_setgpio(saa, 0, SAA7146_GPIO_OUTLO);
  224. msleep(100);
  225. /* Enable DEBI pins */
  226. saa7146_write(saa, MC1, saa7146_read(saa, MC1) | (0x800 << 16) | 0x800);
  227. /* register CI interface */
  228. budget_av->ca.owner = THIS_MODULE;
  229. budget_av->ca.read_attribute_mem = ciintf_read_attribute_mem;
  230. budget_av->ca.write_attribute_mem = ciintf_write_attribute_mem;
  231. budget_av->ca.read_cam_control = ciintf_read_cam_control;
  232. budget_av->ca.write_cam_control = ciintf_write_cam_control;
  233. budget_av->ca.slot_reset = ciintf_slot_reset;
  234. budget_av->ca.slot_shutdown = ciintf_slot_shutdown;
  235. budget_av->ca.slot_ts_enable = ciintf_slot_ts_enable;
  236. budget_av->ca.poll_slot_status = ciintf_poll_slot_status;
  237. budget_av->ca.data = budget_av;
  238. if ((result = dvb_ca_en50221_init(&budget_av->budget.dvb_adapter,
  239. &budget_av->ca, 0, 1)) != 0) {
  240. printk("budget_av: CI interface detected, but initialisation failed.\n");
  241. goto error;
  242. }
  243. // success!
  244. printk("ciintf_init: CI interface initialised\n");
  245. budget_av->budget.ci_present = 1;
  246. return 0;
  247. error:
  248. saa7146_write(saa, MC1, saa7146_read(saa, MC1) | (0x800 << 16));
  249. return result;
  250. }
  251. static void ciintf_deinit(struct budget_av *budget_av)
  252. {
  253. struct saa7146_dev *saa = budget_av->budget.dev;
  254. saa7146_setgpio(saa, 0, SAA7146_GPIO_INPUT);
  255. saa7146_setgpio(saa, 1, SAA7146_GPIO_INPUT);
  256. saa7146_setgpio(saa, 2, SAA7146_GPIO_INPUT);
  257. saa7146_setgpio(saa, 3, SAA7146_GPIO_INPUT);
  258. /* release the CA device */
  259. dvb_ca_en50221_release(&budget_av->ca);
  260. /* disable DEBI pins */
  261. saa7146_write(saa, MC1, saa7146_read(saa, MC1) | (0x800 << 16));
  262. }
  263. static const u8 saa7113_tab[] = {
  264. 0x01, 0x08,
  265. 0x02, 0xc0,
  266. 0x03, 0x33,
  267. 0x04, 0x00,
  268. 0x05, 0x00,
  269. 0x06, 0xeb,
  270. 0x07, 0xe0,
  271. 0x08, 0x28,
  272. 0x09, 0x00,
  273. 0x0a, 0x80,
  274. 0x0b, 0x47,
  275. 0x0c, 0x40,
  276. 0x0d, 0x00,
  277. 0x0e, 0x01,
  278. 0x0f, 0x44,
  279. 0x10, 0x08,
  280. 0x11, 0x0c,
  281. 0x12, 0x7b,
  282. 0x13, 0x00,
  283. 0x15, 0x00, 0x16, 0x00, 0x17, 0x00,
  284. 0x57, 0xff,
  285. 0x40, 0x82, 0x58, 0x00, 0x59, 0x54, 0x5a, 0x07,
  286. 0x5b, 0x83, 0x5e, 0x00,
  287. 0xff
  288. };
  289. static int saa7113_init(struct budget_av *budget_av)
  290. {
  291. struct budget *budget = &budget_av->budget;
  292. const u8 *data = saa7113_tab;
  293. if (i2c_writereg(&budget->i2c_adap, 0x4a, 0x01, 0x08) != 1) {
  294. dprintk(1, "saa7113 not found on KNC card\n");
  295. return -ENODEV;
  296. }
  297. dprintk(1, "saa7113 detected and initializing\n");
  298. while (*data != 0xff) {
  299. i2c_writereg(&budget->i2c_adap, 0x4a, *data, *(data + 1));
  300. data += 2;
  301. }
  302. dprintk(1, "saa7113 status=%02x\n", i2c_readreg(&budget->i2c_adap, 0x4a, 0x1f));
  303. return 0;
  304. }
  305. static int saa7113_setinput(struct budget_av *budget_av, int input)
  306. {
  307. struct budget *budget = &budget_av->budget;
  308. if (1 != budget_av->has_saa7113)
  309. return -ENODEV;
  310. if (input == 1) {
  311. i2c_writereg(&budget->i2c_adap, 0x4a, 0x02, 0xc7);
  312. i2c_writereg(&budget->i2c_adap, 0x4a, 0x09, 0x80);
  313. } else if (input == 0) {
  314. i2c_writereg(&budget->i2c_adap, 0x4a, 0x02, 0xc0);
  315. i2c_writereg(&budget->i2c_adap, 0x4a, 0x09, 0x00);
  316. } else
  317. return -EINVAL;
  318. budget_av->cur_input = input;
  319. return 0;
  320. }
  321. static int philips_su1278_ty_ci_set_symbol_rate(struct dvb_frontend *fe, u32 srate, u32 ratio)
  322. {
  323. u8 aclk = 0;
  324. u8 bclk = 0;
  325. u8 m1;
  326. aclk = 0xb5;
  327. if (srate < 2000000)
  328. bclk = 0x86;
  329. else if (srate < 5000000)
  330. bclk = 0x89;
  331. else if (srate < 15000000)
  332. bclk = 0x8f;
  333. else if (srate < 45000000)
  334. bclk = 0x95;
  335. m1 = 0x14;
  336. if (srate < 4000000)
  337. m1 = 0x10;
  338. stv0299_writereg(fe, 0x13, aclk);
  339. stv0299_writereg(fe, 0x14, bclk);
  340. stv0299_writereg(fe, 0x1f, (ratio >> 16) & 0xff);
  341. stv0299_writereg(fe, 0x20, (ratio >> 8) & 0xff);
  342. stv0299_writereg(fe, 0x21, (ratio) & 0xf0);
  343. stv0299_writereg(fe, 0x0f, 0x80 | m1);
  344. return 0;
  345. }
  346. static int philips_su1278_ty_ci_pll_set(struct dvb_frontend *fe,
  347. struct dvb_frontend_parameters *params)
  348. {
  349. struct budget_av *budget_av = (struct budget_av *) fe->dvb->priv;
  350. u32 div;
  351. u8 buf[4];
  352. struct i2c_msg msg = {.addr = 0x61,.flags = 0,.buf = buf,.len = sizeof(buf) };
  353. if ((params->frequency < 950000) || (params->frequency > 2150000))
  354. return -EINVAL;
  355. div = (params->frequency + (125 - 1)) / 125; // round correctly
  356. buf[0] = (div >> 8) & 0x7f;
  357. buf[1] = div & 0xff;
  358. buf[2] = 0x80 | ((div & 0x18000) >> 10) | 4;
  359. buf[3] = 0x20;
  360. if (params->u.qpsk.symbol_rate < 4000000)
  361. buf[3] |= 1;
  362. if (params->frequency < 1250000)
  363. buf[3] |= 0;
  364. else if (params->frequency < 1550000)
  365. buf[3] |= 0x40;
  366. else if (params->frequency < 2050000)
  367. buf[3] |= 0x80;
  368. else if (params->frequency < 2150000)
  369. buf[3] |= 0xC0;
  370. if (i2c_transfer(&budget_av->budget.i2c_adap, &msg, 1) != 1)
  371. return -EIO;
  372. return 0;
  373. }
  374. static u8 typhoon_cinergy1200s_inittab[] = {
  375. 0x01, 0x15,
  376. 0x02, 0x30,
  377. 0x03, 0x00,
  378. 0x04, 0x7d, /* F22FR = 0x7d, F22 = f_VCO / 128 / 0x7d = 22 kHz */
  379. 0x05, 0x35, /* I2CT = 0, SCLT = 1, SDAT = 1 */
  380. 0x06, 0x40, /* DAC not used, set to high impendance mode */
  381. 0x07, 0x00, /* DAC LSB */
  382. 0x08, 0x40, /* DiSEqC off */
  383. 0x09, 0x00, /* FIFO */
  384. 0x0c, 0x51, /* OP1 ctl = Normal, OP1 val = 1 (LNB Power ON) */
  385. 0x0d, 0x82, /* DC offset compensation = ON, beta_agc1 = 2 */
  386. 0x0e, 0x23, /* alpha_tmg = 2, beta_tmg = 3 */
  387. 0x10, 0x3f, // AGC2 0x3d
  388. 0x11, 0x84,
  389. 0x12, 0xb5, // Lock detect: -64 Carrier freq detect:on
  390. 0x15, 0xc9, // lock detector threshold
  391. 0x16, 0x00,
  392. 0x17, 0x00,
  393. 0x18, 0x00,
  394. 0x19, 0x00,
  395. 0x1a, 0x00,
  396. 0x1f, 0x50,
  397. 0x20, 0x00,
  398. 0x21, 0x00,
  399. 0x22, 0x00,
  400. 0x23, 0x00,
  401. 0x28, 0x00, // out imp: normal out type: parallel FEC mode:0
  402. 0x29, 0x1e, // 1/2 threshold
  403. 0x2a, 0x14, // 2/3 threshold
  404. 0x2b, 0x0f, // 3/4 threshold
  405. 0x2c, 0x09, // 5/6 threshold
  406. 0x2d, 0x05, // 7/8 threshold
  407. 0x2e, 0x01,
  408. 0x31, 0x1f, // test all FECs
  409. 0x32, 0x19, // viterbi and synchro search
  410. 0x33, 0xfc, // rs control
  411. 0x34, 0x93, // error control
  412. 0x0f, 0x92,
  413. 0xff, 0xff
  414. };
  415. static struct stv0299_config typhoon_config = {
  416. .demod_address = 0x68,
  417. .inittab = typhoon_cinergy1200s_inittab,
  418. .mclk = 88000000UL,
  419. .invert = 0,
  420. .enhanced_tuning = 0,
  421. .skip_reinit = 0,
  422. .lock_output = STV0229_LOCKOUTPUT_1,
  423. .volt13_op0_op1 = STV0299_VOLT13_OP0,
  424. .min_delay_ms = 100,
  425. .set_symbol_rate = philips_su1278_ty_ci_set_symbol_rate,
  426. .pll_set = philips_su1278_ty_ci_pll_set,
  427. };
  428. static struct stv0299_config cinergy_1200s_config = {
  429. .demod_address = 0x68,
  430. .inittab = typhoon_cinergy1200s_inittab,
  431. .mclk = 88000000UL,
  432. .invert = 0,
  433. .enhanced_tuning = 0,
  434. .skip_reinit = 0,
  435. .lock_output = STV0229_LOCKOUTPUT_0,
  436. .volt13_op0_op1 = STV0299_VOLT13_OP0,
  437. .min_delay_ms = 100,
  438. .set_symbol_rate = philips_su1278_ty_ci_set_symbol_rate,
  439. .pll_set = philips_su1278_ty_ci_pll_set,
  440. };
  441. static int philips_cu1216_pll_set(struct dvb_frontend *fe, struct dvb_frontend_parameters *params)
  442. {
  443. struct budget *budget = (struct budget *) fe->dvb->priv;
  444. u8 buf[4];
  445. struct i2c_msg msg = {.addr = 0x60,.flags = 0,.buf = buf,.len = sizeof(buf) };
  446. #define TUNER_MUL 62500
  447. u32 div = (params->frequency + 36125000 + TUNER_MUL / 2) / TUNER_MUL;
  448. buf[0] = (div >> 8) & 0x7f;
  449. buf[1] = div & 0xff;
  450. buf[2] = 0x8e;
  451. buf[3] = (params->frequency < 174500000 ? 0xa1 :
  452. params->frequency < 454000000 ? 0x92 : 0x34);
  453. if (i2c_transfer(&budget->i2c_adap, &msg, 1) != 1)
  454. return -EIO;
  455. return 0;
  456. }
  457. static struct tda10021_config philips_cu1216_config = {
  458. .demod_address = 0x0c,
  459. .pll_set = philips_cu1216_pll_set,
  460. };
  461. static int philips_tu1216_pll_init(struct dvb_frontend *fe)
  462. {
  463. struct budget *budget = (struct budget *) fe->dvb->priv;
  464. static u8 tu1216_init[] = { 0x0b, 0xf5, 0x85, 0xab };
  465. struct i2c_msg tuner_msg = {.addr = 0x60,.flags = 0,.buf = tu1216_init,.len = sizeof(tu1216_init) };
  466. // setup PLL configuration
  467. if (i2c_transfer(&budget->i2c_adap, &tuner_msg, 1) != 1)
  468. return -EIO;
  469. msleep(1);
  470. return 0;
  471. }
  472. static int philips_tu1216_pll_set(struct dvb_frontend *fe, struct dvb_frontend_parameters *params)
  473. {
  474. struct budget *budget = (struct budget *) fe->dvb->priv;
  475. u8 tuner_buf[4];
  476. struct i2c_msg tuner_msg = {.addr = 0x60,.flags = 0,.buf = tuner_buf,.len =
  477. sizeof(tuner_buf) };
  478. int tuner_frequency = 0;
  479. u8 band, cp, filter;
  480. // determine charge pump
  481. tuner_frequency = params->frequency + 36166000;
  482. if (tuner_frequency < 87000000)
  483. return -EINVAL;
  484. else if (tuner_frequency < 130000000)
  485. cp = 3;
  486. else if (tuner_frequency < 160000000)
  487. cp = 5;
  488. else if (tuner_frequency < 200000000)
  489. cp = 6;
  490. else if (tuner_frequency < 290000000)
  491. cp = 3;
  492. else if (tuner_frequency < 420000000)
  493. cp = 5;
  494. else if (tuner_frequency < 480000000)
  495. cp = 6;
  496. else if (tuner_frequency < 620000000)
  497. cp = 3;
  498. else if (tuner_frequency < 830000000)
  499. cp = 5;
  500. else if (tuner_frequency < 895000000)
  501. cp = 7;
  502. else
  503. return -EINVAL;
  504. // determine band
  505. if (params->frequency < 49000000)
  506. return -EINVAL;
  507. else if (params->frequency < 161000000)
  508. band = 1;
  509. else if (params->frequency < 444000000)
  510. band = 2;
  511. else if (params->frequency < 861000000)
  512. band = 4;
  513. else
  514. return -EINVAL;
  515. // setup PLL filter
  516. switch (params->u.ofdm.bandwidth) {
  517. case BANDWIDTH_6_MHZ:
  518. filter = 0;
  519. break;
  520. case BANDWIDTH_7_MHZ:
  521. filter = 0;
  522. break;
  523. case BANDWIDTH_8_MHZ:
  524. filter = 1;
  525. break;
  526. default:
  527. return -EINVAL;
  528. }
  529. // calculate divisor
  530. // ((36166000+((1000000/6)/2)) + Finput)/(1000000/6)
  531. tuner_frequency = (((params->frequency / 1000) * 6) + 217496) / 1000;
  532. // setup tuner buffer
  533. tuner_buf[0] = (tuner_frequency >> 8) & 0x7f;
  534. tuner_buf[1] = tuner_frequency & 0xff;
  535. tuner_buf[2] = 0xca;
  536. tuner_buf[3] = (cp << 5) | (filter << 3) | band;
  537. if (i2c_transfer(&budget->i2c_adap, &tuner_msg, 1) != 1)
  538. return -EIO;
  539. msleep(1);
  540. return 0;
  541. }
  542. static int philips_tu1216_request_firmware(struct dvb_frontend *fe,
  543. const struct firmware **fw, char *name)
  544. {
  545. struct budget *budget = (struct budget *) fe->dvb->priv;
  546. return request_firmware(fw, name, &budget->dev->pci->dev);
  547. }
  548. static struct tda1004x_config philips_tu1216_config = {
  549. .demod_address = 0x8,
  550. .invert = 1,
  551. .invert_oclk = 1,
  552. .pll_init = philips_tu1216_pll_init,
  553. .pll_set = philips_tu1216_pll_set,
  554. .request_firmware = philips_tu1216_request_firmware,
  555. };
  556. static u8 read_pwm(struct budget_av *budget_av)
  557. {
  558. u8 b = 0xff;
  559. u8 pwm;
  560. struct i2c_msg msg[] = { {.addr = 0x50,.flags = 0,.buf = &b,.len = 1},
  561. {.addr = 0x50,.flags = I2C_M_RD,.buf = &pwm,.len = 1}
  562. };
  563. if ((i2c_transfer(&budget_av->budget.i2c_adap, msg, 2) != 2)
  564. || (pwm == 0xff))
  565. pwm = 0x48;
  566. return pwm;
  567. }
  568. static void frontend_init(struct budget_av *budget_av)
  569. {
  570. switch (budget_av->budget.dev->pci->subsystem_device) {
  571. case 0x0011: // KNC1 DVB-S Plus budget with AV IN (stv0299/Philips SU1278(tsa5059))
  572. saa7146_write(budget_av->budget.dev, GPIO_CTRL, 0x50000000); // Enable / PowerON Frontend
  573. case 0x4f56: // Typhoon/KNC1 DVB-S budget (stv0299/Philips SU1278(tsa5059))
  574. case 0x0010: // KNC1 DVB-S budget (stv0299/Philips SU1278(tsa5059))
  575. budget_av->budget.dvb_frontend =
  576. stv0299_attach(&typhoon_config, &budget_av->budget.i2c_adap);
  577. if (budget_av->budget.dvb_frontend != NULL) {
  578. break;
  579. }
  580. break;
  581. case 0x0021: // KNC1 DVB-C Plus budget with AV IN (tda10021/Philips CU1216(tua6034))
  582. saa7146_write(budget_av->budget.dev, GPIO_CTRL, 0x50000000); // Enable / PowerON Frontend
  583. case 0x0020: // KNC1 DVB-C budget (tda10021/Philips CU1216(tua6034))
  584. budget_av->budget.dvb_frontend =
  585. tda10021_attach(&philips_cu1216_config,
  586. &budget_av->budget.i2c_adap, read_pwm(budget_av));
  587. if (budget_av->budget.dvb_frontend != NULL) {
  588. break;
  589. }
  590. break;
  591. case 0x0031: // KNC1 DVB-T Plus budget with AV IN (tda10046/Philips TU1216(tda6651tt))
  592. saa7146_write(budget_av->budget.dev, GPIO_CTRL, 0x50000000); // Enable / PowerON Frontend
  593. case 0x0030: // KNC1 DVB-T budget (tda10046/Philips TU1216(tda6651tt))
  594. budget_av->budget.dvb_frontend =
  595. tda10046_attach(&philips_tu1216_config, &budget_av->budget.i2c_adap);
  596. if (budget_av->budget.dvb_frontend != NULL) {
  597. break;
  598. }
  599. break;
  600. case 0x1154: // TerraTec Cinergy 1200 DVB-S (stv0299/Philips SU1278(tsa5059))
  601. budget_av->budget.dvb_frontend =
  602. stv0299_attach(&cinergy_1200s_config, &budget_av->budget.i2c_adap);
  603. if (budget_av->budget.dvb_frontend != NULL) {
  604. break;
  605. }
  606. break;
  607. case 0x1156: // Terratec Cinergy 1200 DVB-C (tda10021/Philips CU1216(tua6034))
  608. budget_av->budget.dvb_frontend =
  609. tda10021_attach(&philips_cu1216_config,
  610. &budget_av->budget.i2c_adap, read_pwm(budget_av));
  611. if (budget_av->budget.dvb_frontend) {
  612. break;
  613. }
  614. break;
  615. case 0x1157: // Terratec Cinergy 1200 DVB-T (tda10046/Philips TU1216(tda6651tt))
  616. budget_av->budget.dvb_frontend =
  617. tda10046_attach(&philips_tu1216_config, &budget_av->budget.i2c_adap);
  618. if (budget_av->budget.dvb_frontend) {
  619. break;
  620. }
  621. break;
  622. }
  623. if (budget_av->budget.dvb_frontend == NULL) {
  624. printk("budget_av: A frontend driver was not found for device %04x/%04x subsystem %04x/%04x\n",
  625. budget_av->budget.dev->pci->vendor,
  626. budget_av->budget.dev->pci->device,
  627. budget_av->budget.dev->pci->subsystem_vendor,
  628. budget_av->budget.dev->pci->subsystem_device);
  629. } else {
  630. if (dvb_register_frontend
  631. (&budget_av->budget.dvb_adapter, budget_av->budget.dvb_frontend)) {
  632. printk("budget-av: Frontend registration failed!\n");
  633. if (budget_av->budget.dvb_frontend->ops->release)
  634. budget_av->budget.dvb_frontend->ops->release(budget_av->budget.dvb_frontend);
  635. budget_av->budget.dvb_frontend = NULL;
  636. }
  637. }
  638. }
  639. static void budget_av_irq(struct saa7146_dev *dev, u32 * isr)
  640. {
  641. struct budget_av *budget_av = (struct budget_av *) dev->ext_priv;
  642. dprintk(8, "dev: %p, budget_av: %p\n", dev, budget_av);
  643. if (*isr & MASK_10)
  644. ttpci_budget_irq10_handler(dev, isr);
  645. }
  646. static int budget_av_detach(struct saa7146_dev *dev)
  647. {
  648. struct budget_av *budget_av = (struct budget_av *) dev->ext_priv;
  649. int err;
  650. dprintk(2, "dev: %p\n", dev);
  651. if (1 == budget_av->has_saa7113) {
  652. saa7146_setgpio(dev, 0, SAA7146_GPIO_OUTLO);
  653. msleep(200);
  654. saa7146_unregister_device(&budget_av->vd, dev);
  655. }
  656. if (budget_av->budget.ci_present)
  657. ciintf_deinit(budget_av);
  658. if (budget_av->budget.dvb_frontend != NULL)
  659. dvb_unregister_frontend(budget_av->budget.dvb_frontend);
  660. err = ttpci_budget_deinit(&budget_av->budget);
  661. kfree(budget_av);
  662. return err;
  663. }
  664. static struct saa7146_ext_vv vv_data;
  665. static int budget_av_attach(struct saa7146_dev *dev, struct saa7146_pci_extension_data *info)
  666. {
  667. struct budget_av *budget_av;
  668. u8 *mac;
  669. int err;
  670. dprintk(2, "dev: %p\n", dev);
  671. if (!(budget_av = kmalloc(sizeof(struct budget_av), GFP_KERNEL)))
  672. return -ENOMEM;
  673. memset(budget_av, 0, sizeof(struct budget_av));
  674. budget_av->budget.ci_present = 0;
  675. dev->ext_priv = budget_av;
  676. if ((err = ttpci_budget_init(&budget_av->budget, dev, info, THIS_MODULE))) {
  677. kfree(budget_av);
  678. return err;
  679. }
  680. /* knc1 initialization */
  681. saa7146_write(dev, DD1_STREAM_B, 0x04000000);
  682. saa7146_write(dev, DD1_INIT, 0x07000600);
  683. saa7146_write(dev, MC2, MASK_09 | MASK_25 | MASK_10 | MASK_26);
  684. saa7146_setgpio(dev, 0, SAA7146_GPIO_OUTHI);
  685. msleep(500);
  686. if (0 == saa7113_init(budget_av)) {
  687. budget_av->has_saa7113 = 1;
  688. if (0 != saa7146_vv_init(dev, &vv_data)) {
  689. /* fixme: proper cleanup here */
  690. ERR(("cannot init vv subsystem.\n"));
  691. return err;
  692. }
  693. if ((err = saa7146_register_device(&budget_av->vd, dev, "knc1", VFL_TYPE_GRABBER))) {
  694. /* fixme: proper cleanup here */
  695. ERR(("cannot register capture v4l2 device.\n"));
  696. return err;
  697. }
  698. /* beware: this modifies dev->vv ... */
  699. saa7146_set_hps_source_and_sync(dev, SAA7146_HPS_SOURCE_PORT_A,
  700. SAA7146_HPS_SYNC_PORT_A);
  701. saa7113_setinput(budget_av, 0);
  702. } else {
  703. budget_av->has_saa7113 = 0;
  704. saa7146_setgpio(dev, 0, SAA7146_GPIO_OUTLO);
  705. }
  706. /* fixme: find some sane values here... */
  707. saa7146_write(dev, PCI_BT_V1, 0x1c00101f);
  708. mac = budget_av->budget.dvb_adapter.proposed_mac;
  709. if (i2c_readregs(&budget_av->budget.i2c_adap, 0xa0, 0x30, mac, 6)) {
  710. printk("KNC1-%d: Could not read MAC from KNC1 card\n",
  711. budget_av->budget.dvb_adapter.num);
  712. memset(mac, 0, 6);
  713. } else {
  714. printk("KNC1-%d: MAC addr = %.2x:%.2x:%.2x:%.2x:%.2x:%.2x\n",
  715. budget_av->budget.dvb_adapter.num,
  716. mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
  717. }
  718. budget_av->budget.dvb_adapter.priv = budget_av;
  719. frontend_init(budget_av);
  720. if (enable_ci)
  721. ciintf_init(budget_av);
  722. return 0;
  723. }
  724. #define KNC1_INPUTS 2
  725. static struct v4l2_input knc1_inputs[KNC1_INPUTS] = {
  726. {0, "Composite", V4L2_INPUT_TYPE_TUNER, 1, 0, V4L2_STD_PAL_BG | V4L2_STD_NTSC_M, 0},
  727. {1, "S-Video", V4L2_INPUT_TYPE_CAMERA, 2, 0, V4L2_STD_PAL_BG | V4L2_STD_NTSC_M, 0},
  728. };
  729. static struct saa7146_extension_ioctls ioctls[] = {
  730. {VIDIOC_ENUMINPUT, SAA7146_EXCLUSIVE},
  731. {VIDIOC_G_INPUT, SAA7146_EXCLUSIVE},
  732. {VIDIOC_S_INPUT, SAA7146_EXCLUSIVE},
  733. {0, 0}
  734. };
  735. static int av_ioctl(struct saa7146_fh *fh, unsigned int cmd, void *arg)
  736. {
  737. struct saa7146_dev *dev = fh->dev;
  738. struct budget_av *budget_av = (struct budget_av *) dev->ext_priv;
  739. switch (cmd) {
  740. case VIDIOC_ENUMINPUT:{
  741. struct v4l2_input *i = arg;
  742. dprintk(1, "VIDIOC_ENUMINPUT %d.\n", i->index);
  743. if (i->index < 0 || i->index >= KNC1_INPUTS) {
  744. return -EINVAL;
  745. }
  746. memcpy(i, &knc1_inputs[i->index], sizeof(struct v4l2_input));
  747. return 0;
  748. }
  749. case VIDIOC_G_INPUT:{
  750. int *input = (int *) arg;
  751. *input = budget_av->cur_input;
  752. dprintk(1, "VIDIOC_G_INPUT %d.\n", *input);
  753. return 0;
  754. }
  755. case VIDIOC_S_INPUT:{
  756. int input = *(int *) arg;
  757. dprintk(1, "VIDIOC_S_INPUT %d.\n", input);
  758. return saa7113_setinput(budget_av, input);
  759. }
  760. default:
  761. return -ENOIOCTLCMD;
  762. }
  763. return 0;
  764. }
  765. static struct saa7146_standard standard[] = {
  766. {.name = "PAL",.id = V4L2_STD_PAL,
  767. .v_offset = 0x17,.v_field = 288,
  768. .h_offset = 0x14,.h_pixels = 680,
  769. .v_max_out = 576,.h_max_out = 768 },
  770. {.name = "NTSC",.id = V4L2_STD_NTSC,
  771. .v_offset = 0x16,.v_field = 240,
  772. .h_offset = 0x06,.h_pixels = 708,
  773. .v_max_out = 480,.h_max_out = 640, },
  774. };
  775. static struct saa7146_ext_vv vv_data = {
  776. .inputs = 2,
  777. .capabilities = 0, // perhaps later: V4L2_CAP_VBI_CAPTURE, but that need tweaking with the saa7113
  778. .flags = 0,
  779. .stds = &standard[0],
  780. .num_stds = sizeof(standard) / sizeof(struct saa7146_standard),
  781. .ioctls = &ioctls[0],
  782. .ioctl = av_ioctl,
  783. };
  784. static struct saa7146_extension budget_extension;
  785. MAKE_BUDGET_INFO(knc1s, "KNC1 DVB-S", BUDGET_KNC1S);
  786. MAKE_BUDGET_INFO(knc1c, "KNC1 DVB-C", BUDGET_KNC1C);
  787. MAKE_BUDGET_INFO(knc1t, "KNC1 DVB-T", BUDGET_KNC1T);
  788. MAKE_BUDGET_INFO(knc1sp, "KNC1 DVB-S Plus", BUDGET_KNC1SP);
  789. MAKE_BUDGET_INFO(knc1cp, "KNC1 DVB-C Plus", BUDGET_KNC1CP);
  790. MAKE_BUDGET_INFO(knc1tp, "KNC1 DVB-T Plus", BUDGET_KNC1TP);
  791. MAKE_BUDGET_INFO(cin1200s, "TerraTec Cinergy 1200 DVB-S", BUDGET_CIN1200S);
  792. MAKE_BUDGET_INFO(cin1200c, "Terratec Cinergy 1200 DVB-C", BUDGET_CIN1200C);
  793. MAKE_BUDGET_INFO(cin1200t, "Terratec Cinergy 1200 DVB-T", BUDGET_CIN1200T);
  794. static struct pci_device_id pci_tbl[] = {
  795. MAKE_EXTENSION_PCI(knc1s, 0x1131, 0x4f56),
  796. MAKE_EXTENSION_PCI(knc1s, 0x1131, 0x0010),
  797. MAKE_EXTENSION_PCI(knc1sp, 0x1131, 0x0011),
  798. MAKE_EXTENSION_PCI(knc1c, 0x1894, 0x0020),
  799. MAKE_EXTENSION_PCI(knc1cp, 0x1894, 0x0021),
  800. MAKE_EXTENSION_PCI(knc1t, 0x1894, 0x0030),
  801. MAKE_EXTENSION_PCI(knc1tp, 0x1894, 0x0031),
  802. MAKE_EXTENSION_PCI(cin1200s, 0x153b, 0x1154),
  803. MAKE_EXTENSION_PCI(cin1200c, 0x153b, 0x1156),
  804. MAKE_EXTENSION_PCI(cin1200t, 0x153b, 0x1157),
  805. {
  806. .vendor = 0,
  807. }
  808. };
  809. MODULE_DEVICE_TABLE(pci, pci_tbl);
  810. static struct saa7146_extension budget_extension = {
  811. .name = "budget dvb /w video in\0",
  812. .pci_tbl = pci_tbl,
  813. .module = THIS_MODULE,
  814. .attach = budget_av_attach,
  815. .detach = budget_av_detach,
  816. .irq_mask = MASK_10,
  817. .irq_func = budget_av_irq,
  818. };
  819. static int __init budget_av_init(void)
  820. {
  821. return saa7146_register_extension(&budget_extension);
  822. }
  823. static void __exit budget_av_exit(void)
  824. {
  825. saa7146_unregister_extension(&budget_extension);
  826. }
  827. module_init(budget_av_init);
  828. module_exit(budget_av_exit);
  829. MODULE_LICENSE("GPL");
  830. MODULE_AUTHOR("Ralph Metzler, Marcus Metzler, Michael Hunold, others");
  831. MODULE_DESCRIPTION("driver for the SAA7146 based so-called "
  832. "budget PCI DVB w/ analog input and CI-module (e.g. the KNC cards)");
  833. module_param_named(enable_ci, enable_ci, int, 0644);
  834. MODULE_PARM_DESC(enable_ci, "Turn on/off CI module (default:off).");