bttv-i2c.c 12 KB

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  1. /*
  2. bttv-i2c.c -- all the i2c code is here
  3. bttv - Bt848 frame grabber driver
  4. Copyright (C) 1996,97,98 Ralph Metzler (rjkm@thp.uni-koeln.de)
  5. & Marcus Metzler (mocm@thp.uni-koeln.de)
  6. (c) 1999-2003 Gerd Knorr <kraxel@bytesex.org>
  7. (c) 2005 Mauro Carvalho Chehab <mchehab@infradead.org>
  8. - Multituner support and i2c address binding
  9. This program is free software; you can redistribute it and/or modify
  10. it under the terms of the GNU General Public License as published by
  11. the Free Software Foundation; either version 2 of the License, or
  12. (at your option) any later version.
  13. This program is distributed in the hope that it will be useful,
  14. but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. GNU General Public License for more details.
  17. You should have received a copy of the GNU General Public License
  18. along with this program; if not, write to the Free Software
  19. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  20. */
  21. #include <linux/module.h>
  22. #include <linux/init.h>
  23. #include <linux/delay.h>
  24. #include "bttvp.h"
  25. #include <media/v4l2-common.h>
  26. #include <linux/jiffies.h>
  27. #include <asm/io.h>
  28. static struct i2c_algo_bit_data bttv_i2c_algo_bit_template;
  29. static struct i2c_adapter bttv_i2c_adap_sw_template;
  30. static struct i2c_adapter bttv_i2c_adap_hw_template;
  31. static struct i2c_client bttv_i2c_client_template;
  32. static int attach_inform(struct i2c_client *client);
  33. static int i2c_debug;
  34. static int i2c_hw;
  35. static int i2c_scan;
  36. module_param(i2c_debug, int, 0644);
  37. MODULE_PARM_DESC(i2c_hw,"configure i2c debug level");
  38. module_param(i2c_hw, int, 0444);
  39. MODULE_PARM_DESC(i2c_hw,"force use of hardware i2c support, "
  40. "instead of software bitbang");
  41. module_param(i2c_scan, int, 0444);
  42. MODULE_PARM_DESC(i2c_scan,"scan i2c bus at insmod time");
  43. static unsigned int i2c_udelay = 5;
  44. module_param(i2c_udelay, int, 0444);
  45. MODULE_PARM_DESC(i2c_udelay,"soft i2c delay at insmod time, in usecs "
  46. "(should be 5 or higher). Lower value means higher bus speed.");
  47. /* ----------------------------------------------------------------------- */
  48. /* I2C functions - bitbanging adapter (software i2c) */
  49. static void bttv_bit_setscl(void *data, int state)
  50. {
  51. struct bttv *btv = (struct bttv*)data;
  52. if (state)
  53. btv->i2c_state |= 0x02;
  54. else
  55. btv->i2c_state &= ~0x02;
  56. btwrite(btv->i2c_state, BT848_I2C);
  57. btread(BT848_I2C);
  58. }
  59. static void bttv_bit_setsda(void *data, int state)
  60. {
  61. struct bttv *btv = (struct bttv*)data;
  62. if (state)
  63. btv->i2c_state |= 0x01;
  64. else
  65. btv->i2c_state &= ~0x01;
  66. btwrite(btv->i2c_state, BT848_I2C);
  67. btread(BT848_I2C);
  68. }
  69. static int bttv_bit_getscl(void *data)
  70. {
  71. struct bttv *btv = (struct bttv*)data;
  72. int state;
  73. state = btread(BT848_I2C) & 0x02 ? 1 : 0;
  74. return state;
  75. }
  76. static int bttv_bit_getsda(void *data)
  77. {
  78. struct bttv *btv = (struct bttv*)data;
  79. int state;
  80. state = btread(BT848_I2C) & 0x01;
  81. return state;
  82. }
  83. static struct i2c_algo_bit_data bttv_i2c_algo_bit_template = {
  84. .setsda = bttv_bit_setsda,
  85. .setscl = bttv_bit_setscl,
  86. .getsda = bttv_bit_getsda,
  87. .getscl = bttv_bit_getscl,
  88. .udelay = 16,
  89. .timeout = 200,
  90. };
  91. static struct i2c_adapter bttv_i2c_adap_sw_template = {
  92. .owner = THIS_MODULE,
  93. .class = I2C_CLASS_TV_ANALOG,
  94. .name = "bttv",
  95. .id = I2C_HW_B_BT848,
  96. .client_register = attach_inform,
  97. };
  98. /* ----------------------------------------------------------------------- */
  99. /* I2C functions - hardware i2c */
  100. static int algo_control(struct i2c_adapter *adapter,
  101. unsigned int cmd, unsigned long arg)
  102. {
  103. return 0;
  104. }
  105. static u32 functionality(struct i2c_adapter *adap)
  106. {
  107. return I2C_FUNC_SMBUS_EMUL;
  108. }
  109. static int
  110. bttv_i2c_wait_done(struct bttv *btv)
  111. {
  112. int rc = 0;
  113. /* timeout */
  114. if (wait_event_interruptible_timeout(btv->i2c_queue,
  115. btv->i2c_done, msecs_to_jiffies(85)) == -ERESTARTSYS)
  116. rc = -EIO;
  117. if (btv->i2c_done & BT848_INT_RACK)
  118. rc = 1;
  119. btv->i2c_done = 0;
  120. return rc;
  121. }
  122. #define I2C_HW (BT878_I2C_MODE | BT848_I2C_SYNC |\
  123. BT848_I2C_SCL | BT848_I2C_SDA)
  124. static int
  125. bttv_i2c_sendbytes(struct bttv *btv, const struct i2c_msg *msg, int last)
  126. {
  127. u32 xmit;
  128. int retval,cnt;
  129. /* sanity checks */
  130. if (0 == msg->len)
  131. return -EINVAL;
  132. /* start, address + first byte */
  133. xmit = (msg->addr << 25) | (msg->buf[0] << 16) | I2C_HW;
  134. if (msg->len > 1 || !last)
  135. xmit |= BT878_I2C_NOSTOP;
  136. btwrite(xmit, BT848_I2C);
  137. retval = bttv_i2c_wait_done(btv);
  138. if (retval < 0)
  139. goto err;
  140. if (retval == 0)
  141. goto eio;
  142. if (i2c_debug) {
  143. printk(" <W %02x %02x", msg->addr << 1, msg->buf[0]);
  144. if (!(xmit & BT878_I2C_NOSTOP))
  145. printk(" >\n");
  146. }
  147. for (cnt = 1; cnt < msg->len; cnt++ ) {
  148. /* following bytes */
  149. xmit = (msg->buf[cnt] << 24) | I2C_HW | BT878_I2C_NOSTART;
  150. if (cnt < msg->len-1 || !last)
  151. xmit |= BT878_I2C_NOSTOP;
  152. btwrite(xmit, BT848_I2C);
  153. retval = bttv_i2c_wait_done(btv);
  154. if (retval < 0)
  155. goto err;
  156. if (retval == 0)
  157. goto eio;
  158. if (i2c_debug) {
  159. printk(" %02x", msg->buf[cnt]);
  160. if (!(xmit & BT878_I2C_NOSTOP))
  161. printk(" >\n");
  162. }
  163. }
  164. return msg->len;
  165. eio:
  166. retval = -EIO;
  167. err:
  168. if (i2c_debug)
  169. printk(" ERR: %d\n",retval);
  170. return retval;
  171. }
  172. static int
  173. bttv_i2c_readbytes(struct bttv *btv, const struct i2c_msg *msg, int last)
  174. {
  175. u32 xmit;
  176. u32 cnt;
  177. int retval;
  178. for(cnt = 0; cnt < msg->len; cnt++) {
  179. xmit = (msg->addr << 25) | (1 << 24) | I2C_HW;
  180. if (cnt < msg->len-1)
  181. xmit |= BT848_I2C_W3B;
  182. if (cnt < msg->len-1 || !last)
  183. xmit |= BT878_I2C_NOSTOP;
  184. if (cnt)
  185. xmit |= BT878_I2C_NOSTART;
  186. btwrite(xmit, BT848_I2C);
  187. retval = bttv_i2c_wait_done(btv);
  188. if (retval < 0)
  189. goto err;
  190. if (retval == 0)
  191. goto eio;
  192. msg->buf[cnt] = ((u32)btread(BT848_I2C) >> 8) & 0xff;
  193. if (i2c_debug) {
  194. if (!(xmit & BT878_I2C_NOSTART))
  195. printk(" <R %02x", (msg->addr << 1) +1);
  196. printk(" =%02x", msg->buf[cnt]);
  197. if (!(xmit & BT878_I2C_NOSTOP))
  198. printk(" >\n");
  199. }
  200. }
  201. return msg->len;
  202. eio:
  203. retval = -EIO;
  204. err:
  205. if (i2c_debug)
  206. printk(" ERR: %d\n",retval);
  207. return retval;
  208. }
  209. static int bttv_i2c_xfer(struct i2c_adapter *i2c_adap, struct i2c_msg *msgs, int num)
  210. {
  211. struct bttv *btv = i2c_get_adapdata(i2c_adap);
  212. int retval = 0;
  213. int i;
  214. if (i2c_debug)
  215. printk("bt-i2c:");
  216. btwrite(BT848_INT_I2CDONE|BT848_INT_RACK, BT848_INT_STAT);
  217. for (i = 0 ; i < num; i++) {
  218. if (msgs[i].flags & I2C_M_RD) {
  219. /* read */
  220. retval = bttv_i2c_readbytes(btv, &msgs[i], i+1 == num);
  221. if (retval < 0)
  222. goto err;
  223. } else {
  224. /* write */
  225. retval = bttv_i2c_sendbytes(btv, &msgs[i], i+1 == num);
  226. if (retval < 0)
  227. goto err;
  228. }
  229. }
  230. return num;
  231. err:
  232. return retval;
  233. }
  234. static struct i2c_algorithm bttv_algo = {
  235. .master_xfer = bttv_i2c_xfer,
  236. .algo_control = algo_control,
  237. .functionality = functionality,
  238. };
  239. static struct i2c_adapter bttv_i2c_adap_hw_template = {
  240. .owner = THIS_MODULE,
  241. .class = I2C_CLASS_TV_ANALOG,
  242. .name = "bt878",
  243. .id = I2C_HW_B_BT848 /* FIXME */,
  244. .algo = &bttv_algo,
  245. .client_register = attach_inform,
  246. };
  247. /* ----------------------------------------------------------------------- */
  248. /* I2C functions - common stuff */
  249. static int attach_inform(struct i2c_client *client)
  250. {
  251. struct bttv *btv = i2c_get_adapdata(client->adapter);
  252. int addr=ADDR_UNSET;
  253. if (ADDR_UNSET != bttv_tvcards[btv->c.type].tuner_addr)
  254. addr = bttv_tvcards[btv->c.type].tuner_addr;
  255. if (bttv_debug)
  256. printk(KERN_DEBUG "bttv%d: %s i2c attach [addr=0x%x,client=%s]\n",
  257. btv->c.nr, client->driver->driver.name, client->addr,
  258. client->name);
  259. if (!client->driver->command)
  260. return 0;
  261. if (client->driver->id == I2C_DRIVERID_MSP3400)
  262. btv->i2c_msp34xx_client = client;
  263. if (client->driver->id == I2C_DRIVERID_TVAUDIO)
  264. btv->i2c_tvaudio_client = client;
  265. if (btv->tuner_type != UNSET) {
  266. struct tuner_setup tun_setup;
  267. if ((addr==ADDR_UNSET) ||
  268. (addr==client->addr)) {
  269. tun_setup.mode_mask = T_ANALOG_TV | T_DIGITAL_TV | T_RADIO;
  270. tun_setup.type = btv->tuner_type;
  271. tun_setup.addr = addr;
  272. bttv_call_i2c_clients(btv, TUNER_SET_TYPE_ADDR, &tun_setup);
  273. }
  274. }
  275. return 0;
  276. }
  277. void bttv_call_i2c_clients(struct bttv *btv, unsigned int cmd, void *arg)
  278. {
  279. if (0 != btv->i2c_rc)
  280. return;
  281. i2c_clients_command(&btv->c.i2c_adap, cmd, arg);
  282. }
  283. static struct i2c_client bttv_i2c_client_template = {
  284. .name = "bttv internal",
  285. };
  286. /* read I2C */
  287. int bttv_I2CRead(struct bttv *btv, unsigned char addr, char *probe_for)
  288. {
  289. unsigned char buffer = 0;
  290. if (0 != btv->i2c_rc)
  291. return -1;
  292. if (bttv_verbose && NULL != probe_for)
  293. printk(KERN_INFO "bttv%d: i2c: checking for %s @ 0x%02x... ",
  294. btv->c.nr,probe_for,addr);
  295. btv->i2c_client.addr = addr >> 1;
  296. if (1 != i2c_master_recv(&btv->i2c_client, &buffer, 1)) {
  297. if (NULL != probe_for) {
  298. if (bttv_verbose)
  299. printk("not found\n");
  300. } else
  301. printk(KERN_WARNING "bttv%d: i2c read 0x%x: error\n",
  302. btv->c.nr,addr);
  303. return -1;
  304. }
  305. if (bttv_verbose && NULL != probe_for)
  306. printk("found\n");
  307. return buffer;
  308. }
  309. /* write I2C */
  310. int bttv_I2CWrite(struct bttv *btv, unsigned char addr, unsigned char b1,
  311. unsigned char b2, int both)
  312. {
  313. unsigned char buffer[2];
  314. int bytes = both ? 2 : 1;
  315. if (0 != btv->i2c_rc)
  316. return -1;
  317. btv->i2c_client.addr = addr >> 1;
  318. buffer[0] = b1;
  319. buffer[1] = b2;
  320. if (bytes != i2c_master_send(&btv->i2c_client, buffer, bytes))
  321. return -1;
  322. return 0;
  323. }
  324. /* read EEPROM content */
  325. void __devinit bttv_readee(struct bttv *btv, unsigned char *eedata, int addr)
  326. {
  327. memset(eedata, 0, 256);
  328. if (0 != btv->i2c_rc)
  329. return;
  330. btv->i2c_client.addr = addr >> 1;
  331. tveeprom_read(&btv->i2c_client, eedata, 256);
  332. }
  333. static char *i2c_devs[128] = {
  334. [ 0x1c >> 1 ] = "lgdt330x",
  335. [ 0x30 >> 1 ] = "IR (hauppauge)",
  336. [ 0x80 >> 1 ] = "msp34xx",
  337. [ 0x86 >> 1 ] = "tda9887",
  338. [ 0xa0 >> 1 ] = "eeprom",
  339. [ 0xc0 >> 1 ] = "tuner (analog)",
  340. [ 0xc2 >> 1 ] = "tuner (analog)",
  341. };
  342. static void do_i2c_scan(char *name, struct i2c_client *c)
  343. {
  344. unsigned char buf;
  345. int i,rc;
  346. for (i = 0; i < ARRAY_SIZE(i2c_devs); i++) {
  347. c->addr = i;
  348. rc = i2c_master_recv(c,&buf,0);
  349. if (rc < 0)
  350. continue;
  351. printk("%s: i2c scan: found device @ 0x%x [%s]\n",
  352. name, i << 1, i2c_devs[i] ? i2c_devs[i] : "???");
  353. }
  354. }
  355. /* init + register i2c algo-bit adapter */
  356. int __devinit init_bttv_i2c(struct bttv *btv)
  357. {
  358. memcpy(&btv->i2c_client, &bttv_i2c_client_template,
  359. sizeof(bttv_i2c_client_template));
  360. if (i2c_hw)
  361. btv->use_i2c_hw = 1;
  362. if (btv->use_i2c_hw) {
  363. /* bt878 */
  364. memcpy(&btv->c.i2c_adap, &bttv_i2c_adap_hw_template,
  365. sizeof(bttv_i2c_adap_hw_template));
  366. } else {
  367. /* bt848 */
  368. /* Prevents usage of invalid delay values */
  369. if (i2c_udelay<5)
  370. i2c_udelay=5;
  371. bttv_i2c_algo_bit_template.udelay=i2c_udelay;
  372. memcpy(&btv->c.i2c_adap, &bttv_i2c_adap_sw_template,
  373. sizeof(bttv_i2c_adap_sw_template));
  374. memcpy(&btv->i2c_algo, &bttv_i2c_algo_bit_template,
  375. sizeof(bttv_i2c_algo_bit_template));
  376. btv->i2c_algo.data = btv;
  377. btv->c.i2c_adap.algo_data = &btv->i2c_algo;
  378. }
  379. btv->c.i2c_adap.dev.parent = &btv->c.pci->dev;
  380. snprintf(btv->c.i2c_adap.name, sizeof(btv->c.i2c_adap.name),
  381. "bt%d #%d [%s]", btv->id, btv->c.nr,
  382. btv->use_i2c_hw ? "hw" : "sw");
  383. i2c_set_adapdata(&btv->c.i2c_adap, btv);
  384. btv->i2c_client.adapter = &btv->c.i2c_adap;
  385. if (bttv_tvcards[btv->c.type].no_video)
  386. btv->c.i2c_adap.class &= ~I2C_CLASS_TV_ANALOG;
  387. if (bttv_tvcards[btv->c.type].has_dvb)
  388. btv->c.i2c_adap.class |= I2C_CLASS_TV_DIGITAL;
  389. if (btv->use_i2c_hw) {
  390. btv->i2c_rc = i2c_add_adapter(&btv->c.i2c_adap);
  391. } else {
  392. bttv_bit_setscl(btv,1);
  393. bttv_bit_setsda(btv,1);
  394. btv->i2c_rc = i2c_bit_add_bus(&btv->c.i2c_adap);
  395. }
  396. if (0 == btv->i2c_rc && i2c_scan)
  397. do_i2c_scan(btv->c.name,&btv->i2c_client);
  398. return btv->i2c_rc;
  399. }
  400. int __devexit fini_bttv_i2c(struct bttv *btv)
  401. {
  402. if (0 != btv->i2c_rc)
  403. return 0;
  404. return i2c_del_adapter(&btv->c.i2c_adap);
  405. }
  406. /*
  407. * Local variables:
  408. * c-basic-offset: 8
  409. * End:
  410. */