cx88-input.c 14 KB

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  1. /*
  2. *
  3. * Device driver for GPIO attached remote control interfaces
  4. * on Conexant 2388x based TV/DVB cards.
  5. *
  6. * Copyright (c) 2003 Pavel Machek
  7. * Copyright (c) 2004 Gerd Knorr
  8. * Copyright (c) 2004, 2005 Chris Pascoe
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License as published by
  12. * the Free Software Foundation; either version 2 of the License, or
  13. * (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  23. */
  24. #include <linux/init.h>
  25. #include <linux/delay.h>
  26. #include <linux/input.h>
  27. #include <linux/pci.h>
  28. #include <linux/module.h>
  29. #include "cx88.h"
  30. #include <media/ir-common.h>
  31. /* ---------------------------------------------------------------------- */
  32. struct cx88_IR {
  33. struct cx88_core *core;
  34. struct input_dev *input;
  35. struct ir_input_state ir;
  36. char name[32];
  37. char phys[32];
  38. /* sample from gpio pin 16 */
  39. u32 sampling;
  40. u32 samples[16];
  41. int scount;
  42. unsigned long release;
  43. /* poll external decoder */
  44. int polling;
  45. struct delayed_work work;
  46. u32 gpio_addr;
  47. u32 last_gpio;
  48. u32 mask_keycode;
  49. u32 mask_keydown;
  50. u32 mask_keyup;
  51. };
  52. static int ir_debug;
  53. module_param(ir_debug, int, 0644); /* debug level [IR] */
  54. MODULE_PARM_DESC(ir_debug, "enable debug messages [IR]");
  55. #define ir_dprintk(fmt, arg...) if (ir_debug) \
  56. printk(KERN_DEBUG "%s IR: " fmt , ir->core->name , ##arg)
  57. /* ---------------------------------------------------------------------- */
  58. static void cx88_ir_handle_key(struct cx88_IR *ir)
  59. {
  60. struct cx88_core *core = ir->core;
  61. u32 gpio, data, auxgpio;
  62. /* read gpio value */
  63. gpio = cx_read(ir->gpio_addr);
  64. switch (core->boardnr) {
  65. case CX88_BOARD_NPGTECH_REALTV_TOP10FM:
  66. /* This board apparently uses a combination of 2 GPIO
  67. to represent the keys. Additionally, the second GPIO
  68. can be used for parity.
  69. Example:
  70. for key "5"
  71. gpio = 0x758, auxgpio = 0xe5 or 0xf5
  72. for key "Power"
  73. gpio = 0x758, auxgpio = 0xed or 0xfd
  74. */
  75. auxgpio = cx_read(MO_GP1_IO);
  76. /* Take out the parity part */
  77. gpio=(gpio & 0x7fd) + (auxgpio & 0xef);
  78. break;
  79. case CX88_BOARD_WINFAST_DTV1000:
  80. case CX88_BOARD_WINFAST_DTV1800H:
  81. case CX88_BOARD_WINFAST_TV2000_XP_GLOBAL:
  82. gpio = (gpio & 0x6ff) | ((cx_read(MO_GP1_IO) << 8) & 0x900);
  83. auxgpio = gpio;
  84. break;
  85. default:
  86. auxgpio = gpio;
  87. }
  88. if (ir->polling) {
  89. if (ir->last_gpio == auxgpio)
  90. return;
  91. ir->last_gpio = auxgpio;
  92. }
  93. /* extract data */
  94. data = ir_extract_bits(gpio, ir->mask_keycode);
  95. ir_dprintk("irq gpio=0x%x code=%d | %s%s%s\n",
  96. gpio, data,
  97. ir->polling ? "poll" : "irq",
  98. (gpio & ir->mask_keydown) ? " down" : "",
  99. (gpio & ir->mask_keyup) ? " up" : "");
  100. if (ir->core->boardnr == CX88_BOARD_NORWOOD_MICRO) {
  101. u32 gpio_key = cx_read(MO_GP0_IO);
  102. data = (data << 4) | ((gpio_key & 0xf0) >> 4);
  103. ir_input_keydown(ir->input, &ir->ir, data, data);
  104. ir_input_nokey(ir->input, &ir->ir);
  105. } else if (ir->mask_keydown) {
  106. /* bit set on keydown */
  107. if (gpio & ir->mask_keydown) {
  108. ir_input_keydown(ir->input, &ir->ir, data, data);
  109. } else {
  110. ir_input_nokey(ir->input, &ir->ir);
  111. }
  112. } else if (ir->mask_keyup) {
  113. /* bit cleared on keydown */
  114. if (0 == (gpio & ir->mask_keyup)) {
  115. ir_input_keydown(ir->input, &ir->ir, data, data);
  116. } else {
  117. ir_input_nokey(ir->input, &ir->ir);
  118. }
  119. } else {
  120. /* can't distinguish keydown/up :-/ */
  121. ir_input_keydown(ir->input, &ir->ir, data, data);
  122. ir_input_nokey(ir->input, &ir->ir);
  123. }
  124. }
  125. static void cx88_ir_work(struct work_struct *work)
  126. {
  127. struct cx88_IR *ir = container_of(work, struct cx88_IR, work.work);
  128. cx88_ir_handle_key(ir);
  129. schedule_delayed_work(&ir->work, msecs_to_jiffies(ir->polling));
  130. }
  131. void cx88_ir_start(struct cx88_core *core, struct cx88_IR *ir)
  132. {
  133. if (ir->polling) {
  134. INIT_DELAYED_WORK(&ir->work, cx88_ir_work);
  135. schedule_delayed_work(&ir->work, 0);
  136. }
  137. if (ir->sampling) {
  138. core->pci_irqmask |= PCI_INT_IR_SMPINT;
  139. cx_write(MO_DDS_IO, 0xa80a80); /* 4 kHz sample rate */
  140. cx_write(MO_DDSCFG_IO, 0x5); /* enable */
  141. }
  142. }
  143. void cx88_ir_stop(struct cx88_core *core, struct cx88_IR *ir)
  144. {
  145. if (ir->sampling) {
  146. cx_write(MO_DDSCFG_IO, 0x0);
  147. core->pci_irqmask &= ~PCI_INT_IR_SMPINT;
  148. }
  149. if (ir->polling)
  150. cancel_delayed_work_sync(&ir->work);
  151. }
  152. /* ---------------------------------------------------------------------- */
  153. int cx88_ir_init(struct cx88_core *core, struct pci_dev *pci)
  154. {
  155. struct cx88_IR *ir;
  156. struct input_dev *input_dev;
  157. IR_KEYTAB_TYPE *ir_codes = NULL;
  158. int ir_type = IR_TYPE_OTHER;
  159. int err = -ENOMEM;
  160. ir = kzalloc(sizeof(*ir), GFP_KERNEL);
  161. input_dev = input_allocate_device();
  162. if (!ir || !input_dev)
  163. goto err_out_free;
  164. ir->input = input_dev;
  165. /* detect & configure */
  166. switch (core->boardnr) {
  167. case CX88_BOARD_DNTV_LIVE_DVB_T:
  168. case CX88_BOARD_KWORLD_DVB_T:
  169. case CX88_BOARD_KWORLD_DVB_T_CX22702:
  170. ir_codes = ir_codes_dntv_live_dvb_t;
  171. ir->gpio_addr = MO_GP1_IO;
  172. ir->mask_keycode = 0x1f;
  173. ir->mask_keyup = 0x60;
  174. ir->polling = 50; /* ms */
  175. break;
  176. case CX88_BOARD_TERRATEC_CINERGY_1400_DVB_T1:
  177. ir_codes = ir_codes_cinergy_1400;
  178. ir_type = IR_TYPE_PD;
  179. ir->sampling = 0xeb04; /* address */
  180. break;
  181. case CX88_BOARD_HAUPPAUGE:
  182. case CX88_BOARD_HAUPPAUGE_DVB_T1:
  183. case CX88_BOARD_HAUPPAUGE_NOVASE2_S1:
  184. case CX88_BOARD_HAUPPAUGE_NOVASPLUS_S1:
  185. case CX88_BOARD_HAUPPAUGE_HVR1100:
  186. case CX88_BOARD_HAUPPAUGE_HVR3000:
  187. case CX88_BOARD_HAUPPAUGE_HVR4000:
  188. case CX88_BOARD_HAUPPAUGE_HVR4000LITE:
  189. case CX88_BOARD_PCHDTV_HD3000:
  190. case CX88_BOARD_PCHDTV_HD5500:
  191. case CX88_BOARD_HAUPPAUGE_IRONLY:
  192. ir_codes = ir_codes_hauppauge_new;
  193. ir_type = IR_TYPE_RC5;
  194. ir->sampling = 1;
  195. break;
  196. case CX88_BOARD_WINFAST_DTV2000H:
  197. case CX88_BOARD_WINFAST_DTV2000H_J:
  198. case CX88_BOARD_WINFAST_DTV1800H:
  199. ir_codes = ir_codes_winfast;
  200. ir->gpio_addr = MO_GP0_IO;
  201. ir->mask_keycode = 0x8f8;
  202. ir->mask_keyup = 0x100;
  203. ir->polling = 50; /* ms */
  204. break;
  205. case CX88_BOARD_WINFAST2000XP_EXPERT:
  206. case CX88_BOARD_WINFAST_DTV1000:
  207. case CX88_BOARD_WINFAST_TV2000_XP_GLOBAL:
  208. ir_codes = ir_codes_winfast;
  209. ir->gpio_addr = MO_GP0_IO;
  210. ir->mask_keycode = 0x8f8;
  211. ir->mask_keyup = 0x100;
  212. ir->polling = 1; /* ms */
  213. break;
  214. case CX88_BOARD_IODATA_GVBCTV7E:
  215. ir_codes = ir_codes_iodata_bctv7e;
  216. ir->gpio_addr = MO_GP0_IO;
  217. ir->mask_keycode = 0xfd;
  218. ir->mask_keydown = 0x02;
  219. ir->polling = 5; /* ms */
  220. break;
  221. case CX88_BOARD_PROLINK_PLAYTVPVR:
  222. case CX88_BOARD_PIXELVIEW_PLAYTV_ULTRA_PRO:
  223. ir_codes = ir_codes_pixelview;
  224. ir->gpio_addr = MO_GP1_IO;
  225. ir->mask_keycode = 0x1f;
  226. ir->mask_keyup = 0x80;
  227. ir->polling = 1; /* ms */
  228. break;
  229. case CX88_BOARD_PROLINK_PV_8000GT:
  230. case CX88_BOARD_PROLINK_PV_GLOBAL_XTREME:
  231. ir_codes = ir_codes_pixelview_new;
  232. ir->gpio_addr = MO_GP1_IO;
  233. ir->mask_keycode = 0x3f;
  234. ir->mask_keyup = 0x80;
  235. ir->polling = 1; /* ms */
  236. break;
  237. case CX88_BOARD_KWORLD_LTV883:
  238. ir_codes = ir_codes_pixelview;
  239. ir->gpio_addr = MO_GP1_IO;
  240. ir->mask_keycode = 0x1f;
  241. ir->mask_keyup = 0x60;
  242. ir->polling = 1; /* ms */
  243. break;
  244. case CX88_BOARD_ADSTECH_DVB_T_PCI:
  245. ir_codes = ir_codes_adstech_dvb_t_pci;
  246. ir->gpio_addr = MO_GP1_IO;
  247. ir->mask_keycode = 0xbf;
  248. ir->mask_keyup = 0x40;
  249. ir->polling = 50; /* ms */
  250. break;
  251. case CX88_BOARD_MSI_TVANYWHERE_MASTER:
  252. ir_codes = ir_codes_msi_tvanywhere;
  253. ir->gpio_addr = MO_GP1_IO;
  254. ir->mask_keycode = 0x1f;
  255. ir->mask_keyup = 0x40;
  256. ir->polling = 1; /* ms */
  257. break;
  258. case CX88_BOARD_AVERTV_303:
  259. case CX88_BOARD_AVERTV_STUDIO_303:
  260. ir_codes = ir_codes_avertv_303;
  261. ir->gpio_addr = MO_GP2_IO;
  262. ir->mask_keycode = 0xfb;
  263. ir->mask_keydown = 0x02;
  264. ir->polling = 50; /* ms */
  265. break;
  266. case CX88_BOARD_DNTV_LIVE_DVB_T_PRO:
  267. ir_codes = ir_codes_dntv_live_dvbt_pro;
  268. ir_type = IR_TYPE_PD;
  269. ir->sampling = 0xff00; /* address */
  270. break;
  271. case CX88_BOARD_NORWOOD_MICRO:
  272. ir_codes = ir_codes_norwood;
  273. ir->gpio_addr = MO_GP1_IO;
  274. ir->mask_keycode = 0x0e;
  275. ir->mask_keyup = 0x80;
  276. ir->polling = 50; /* ms */
  277. break;
  278. case CX88_BOARD_NPGTECH_REALTV_TOP10FM:
  279. ir_codes = ir_codes_npgtech;
  280. ir->gpio_addr = MO_GP0_IO;
  281. ir->mask_keycode = 0xfa;
  282. ir->polling = 50; /* ms */
  283. break;
  284. case CX88_BOARD_PINNACLE_PCTV_HD_800i:
  285. ir_codes = ir_codes_pinnacle_pctv_hd;
  286. ir_type = IR_TYPE_RC5;
  287. ir->sampling = 1;
  288. break;
  289. case CX88_BOARD_POWERCOLOR_REAL_ANGEL:
  290. ir_codes = ir_codes_powercolor_real_angel;
  291. ir->gpio_addr = MO_GP2_IO;
  292. ir->mask_keycode = 0x7e;
  293. ir->polling = 100; /* ms */
  294. break;
  295. }
  296. if (NULL == ir_codes) {
  297. err = -ENODEV;
  298. goto err_out_free;
  299. }
  300. /* init input device */
  301. snprintf(ir->name, sizeof(ir->name), "cx88 IR (%s)", core->board.name);
  302. snprintf(ir->phys, sizeof(ir->phys), "pci-%s/ir0", pci_name(pci));
  303. ir_input_init(input_dev, &ir->ir, ir_type, ir_codes);
  304. input_dev->name = ir->name;
  305. input_dev->phys = ir->phys;
  306. input_dev->id.bustype = BUS_PCI;
  307. input_dev->id.version = 1;
  308. if (pci->subsystem_vendor) {
  309. input_dev->id.vendor = pci->subsystem_vendor;
  310. input_dev->id.product = pci->subsystem_device;
  311. } else {
  312. input_dev->id.vendor = pci->vendor;
  313. input_dev->id.product = pci->device;
  314. }
  315. input_dev->dev.parent = &pci->dev;
  316. /* record handles to ourself */
  317. ir->core = core;
  318. core->ir = ir;
  319. cx88_ir_start(core, ir);
  320. /* all done */
  321. err = input_register_device(ir->input);
  322. if (err)
  323. goto err_out_stop;
  324. return 0;
  325. err_out_stop:
  326. cx88_ir_stop(core, ir);
  327. core->ir = NULL;
  328. err_out_free:
  329. input_free_device(input_dev);
  330. kfree(ir);
  331. return err;
  332. }
  333. int cx88_ir_fini(struct cx88_core *core)
  334. {
  335. struct cx88_IR *ir = core->ir;
  336. /* skip detach on non attached boards */
  337. if (NULL == ir)
  338. return 0;
  339. cx88_ir_stop(core, ir);
  340. input_unregister_device(ir->input);
  341. kfree(ir);
  342. /* done */
  343. core->ir = NULL;
  344. return 0;
  345. }
  346. /* ---------------------------------------------------------------------- */
  347. void cx88_ir_irq(struct cx88_core *core)
  348. {
  349. struct cx88_IR *ir = core->ir;
  350. u32 samples, ircode;
  351. int i, start, range, toggle, dev, code;
  352. if (NULL == ir)
  353. return;
  354. if (!ir->sampling)
  355. return;
  356. samples = cx_read(MO_SAMPLE_IO);
  357. if (0 != samples && 0xffffffff != samples) {
  358. /* record sample data */
  359. if (ir->scount < ARRAY_SIZE(ir->samples))
  360. ir->samples[ir->scount++] = samples;
  361. return;
  362. }
  363. if (!ir->scount) {
  364. /* nothing to sample */
  365. if (ir->ir.keypressed && time_after(jiffies, ir->release))
  366. ir_input_nokey(ir->input, &ir->ir);
  367. return;
  368. }
  369. /* have a complete sample */
  370. if (ir->scount < ARRAY_SIZE(ir->samples))
  371. ir->samples[ir->scount++] = samples;
  372. for (i = 0; i < ir->scount; i++)
  373. ir->samples[i] = ~ir->samples[i];
  374. if (ir_debug)
  375. ir_dump_samples(ir->samples, ir->scount);
  376. /* decode it */
  377. switch (core->boardnr) {
  378. case CX88_BOARD_TERRATEC_CINERGY_1400_DVB_T1:
  379. case CX88_BOARD_DNTV_LIVE_DVB_T_PRO:
  380. ircode = ir_decode_pulsedistance(ir->samples, ir->scount, 1, 4);
  381. if (ircode == 0xffffffff) { /* decoding error */
  382. ir_dprintk("pulse distance decoding error\n");
  383. break;
  384. }
  385. ir_dprintk("pulse distance decoded: %x\n", ircode);
  386. if (ircode == 0) { /* key still pressed */
  387. ir_dprintk("pulse distance decoded repeat code\n");
  388. ir->release = jiffies + msecs_to_jiffies(120);
  389. break;
  390. }
  391. if ((ircode & 0xffff) != (ir->sampling & 0xffff)) { /* wrong address */
  392. ir_dprintk("pulse distance decoded wrong address\n");
  393. break;
  394. }
  395. if (((~ircode >> 24) & 0xff) != ((ircode >> 16) & 0xff)) { /* wrong checksum */
  396. ir_dprintk("pulse distance decoded wrong check sum\n");
  397. break;
  398. }
  399. ir_dprintk("Key Code: %x\n", (ircode >> 16) & 0x7f);
  400. ir_input_keydown(ir->input, &ir->ir, (ircode >> 16) & 0x7f, (ircode >> 16) & 0xff);
  401. ir->release = jiffies + msecs_to_jiffies(120);
  402. break;
  403. case CX88_BOARD_HAUPPAUGE:
  404. case CX88_BOARD_HAUPPAUGE_DVB_T1:
  405. case CX88_BOARD_HAUPPAUGE_NOVASE2_S1:
  406. case CX88_BOARD_HAUPPAUGE_NOVASPLUS_S1:
  407. case CX88_BOARD_HAUPPAUGE_HVR1100:
  408. case CX88_BOARD_HAUPPAUGE_HVR3000:
  409. case CX88_BOARD_HAUPPAUGE_HVR4000:
  410. case CX88_BOARD_HAUPPAUGE_HVR4000LITE:
  411. case CX88_BOARD_PCHDTV_HD3000:
  412. case CX88_BOARD_PCHDTV_HD5500:
  413. case CX88_BOARD_HAUPPAUGE_IRONLY:
  414. ircode = ir_decode_biphase(ir->samples, ir->scount, 5, 7);
  415. ir_dprintk("biphase decoded: %x\n", ircode);
  416. /*
  417. * RC5 has an extension bit which adds a new range
  418. * of available codes, this is detected here. Also
  419. * hauppauge remotes (black/silver) always use
  420. * specific device ids. If we do not filter the
  421. * device ids then messages destined for devices
  422. * such as TVs (id=0) will get through to the
  423. * device causing mis-fired events.
  424. */
  425. /* split rc5 data block ... */
  426. start = (ircode & 0x2000) >> 13;
  427. range = (ircode & 0x1000) >> 12;
  428. toggle= (ircode & 0x0800) >> 11;
  429. dev = (ircode & 0x07c0) >> 6;
  430. code = (ircode & 0x003f) | ((range << 6) ^ 0x0040);
  431. if( start != 1)
  432. /* no key pressed */
  433. break;
  434. if ( dev != 0x1e && dev != 0x1f )
  435. /* not a hauppauge remote */
  436. break;
  437. ir_input_keydown(ir->input, &ir->ir, code, ircode);
  438. ir->release = jiffies + msecs_to_jiffies(120);
  439. break;
  440. case CX88_BOARD_PINNACLE_PCTV_HD_800i:
  441. ircode = ir_decode_biphase(ir->samples, ir->scount, 5, 7);
  442. ir_dprintk("biphase decoded: %x\n", ircode);
  443. if ((ircode & 0xfffff000) != 0x3000)
  444. break;
  445. ir_input_keydown(ir->input, &ir->ir, ircode & 0x3f, ircode);
  446. ir->release = jiffies + msecs_to_jiffies(120);
  447. break;
  448. }
  449. ir->scount = 0;
  450. return;
  451. }
  452. /* ---------------------------------------------------------------------- */
  453. MODULE_AUTHOR("Gerd Knorr, Pavel Machek, Chris Pascoe");
  454. MODULE_DESCRIPTION("input driver for cx88 GPIO-based IR remote controls");
  455. MODULE_LICENSE("GPL");
  456. /*
  457. * Local variables:
  458. * c-basic-offset: 8
  459. * End:
  460. */