hdac_device.c 23 KB

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  1. /*
  2. * HD-audio codec core device
  3. */
  4. #include <linux/init.h>
  5. #include <linux/device.h>
  6. #include <linux/slab.h>
  7. #include <linux/module.h>
  8. #include <linux/export.h>
  9. #include <linux/pm_runtime.h>
  10. #include <sound/hdaudio.h>
  11. #include <sound/hda_regmap.h>
  12. #include <sound/pcm.h>
  13. #include "local.h"
  14. static void setup_fg_nodes(struct hdac_device *codec);
  15. static int get_codec_vendor_name(struct hdac_device *codec);
  16. static void default_release(struct device *dev)
  17. {
  18. snd_hdac_device_exit(container_of(dev, struct hdac_device, dev));
  19. }
  20. /**
  21. * snd_hdac_device_init - initialize the HD-audio codec base device
  22. * @codec: device to initialize
  23. * @bus: but to attach
  24. * @name: device name string
  25. * @addr: codec address
  26. *
  27. * Returns zero for success or a negative error code.
  28. *
  29. * This function increments the runtime PM counter and marks it active.
  30. * The caller needs to turn it off appropriately later.
  31. *
  32. * The caller needs to set the device's release op properly by itself.
  33. */
  34. int snd_hdac_device_init(struct hdac_device *codec, struct hdac_bus *bus,
  35. const char *name, unsigned int addr)
  36. {
  37. struct device *dev;
  38. hda_nid_t fg;
  39. int err;
  40. dev = &codec->dev;
  41. device_initialize(dev);
  42. dev->parent = bus->dev;
  43. dev->bus = &snd_hda_bus_type;
  44. dev->release = default_release;
  45. dev->groups = hdac_dev_attr_groups;
  46. dev_set_name(dev, "%s", name);
  47. device_enable_async_suspend(dev);
  48. codec->bus = bus;
  49. codec->addr = addr;
  50. codec->type = HDA_DEV_CORE;
  51. pm_runtime_set_active(&codec->dev);
  52. pm_runtime_get_noresume(&codec->dev);
  53. atomic_set(&codec->in_pm, 0);
  54. err = snd_hdac_bus_add_device(bus, codec);
  55. if (err < 0)
  56. goto error;
  57. /* fill parameters */
  58. codec->vendor_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
  59. AC_PAR_VENDOR_ID);
  60. if (codec->vendor_id == -1) {
  61. /* read again, hopefully the access method was corrected
  62. * in the last read...
  63. */
  64. codec->vendor_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
  65. AC_PAR_VENDOR_ID);
  66. }
  67. codec->subsystem_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
  68. AC_PAR_SUBSYSTEM_ID);
  69. codec->revision_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
  70. AC_PAR_REV_ID);
  71. setup_fg_nodes(codec);
  72. if (!codec->afg && !codec->mfg) {
  73. dev_err(dev, "no AFG or MFG node found\n");
  74. err = -ENODEV;
  75. goto error;
  76. }
  77. fg = codec->afg ? codec->afg : codec->mfg;
  78. err = snd_hdac_refresh_widgets(codec);
  79. if (err < 0)
  80. goto error;
  81. codec->power_caps = snd_hdac_read_parm(codec, fg, AC_PAR_POWER_STATE);
  82. /* reread ssid if not set by parameter */
  83. if (codec->subsystem_id == -1 || codec->subsystem_id == 0)
  84. snd_hdac_read(codec, fg, AC_VERB_GET_SUBSYSTEM_ID, 0,
  85. &codec->subsystem_id);
  86. err = get_codec_vendor_name(codec);
  87. if (err < 0)
  88. goto error;
  89. codec->chip_name = kasprintf(GFP_KERNEL, "ID %x",
  90. codec->vendor_id & 0xffff);
  91. if (!codec->chip_name) {
  92. err = -ENOMEM;
  93. goto error;
  94. }
  95. return 0;
  96. error:
  97. put_device(&codec->dev);
  98. return err;
  99. }
  100. EXPORT_SYMBOL_GPL(snd_hdac_device_init);
  101. /**
  102. * snd_hdac_device_exit - clean up the HD-audio codec base device
  103. * @codec: device to clean up
  104. */
  105. void snd_hdac_device_exit(struct hdac_device *codec)
  106. {
  107. pm_runtime_put_noidle(&codec->dev);
  108. snd_hdac_bus_remove_device(codec->bus, codec);
  109. kfree(codec->vendor_name);
  110. kfree(codec->chip_name);
  111. }
  112. EXPORT_SYMBOL_GPL(snd_hdac_device_exit);
  113. /**
  114. * snd_hdac_device_register - register the hd-audio codec base device
  115. * codec: the device to register
  116. */
  117. int snd_hdac_device_register(struct hdac_device *codec)
  118. {
  119. int err;
  120. err = device_add(&codec->dev);
  121. if (err < 0)
  122. return err;
  123. err = hda_widget_sysfs_init(codec);
  124. if (err < 0) {
  125. device_del(&codec->dev);
  126. return err;
  127. }
  128. return 0;
  129. }
  130. EXPORT_SYMBOL_GPL(snd_hdac_device_register);
  131. /**
  132. * snd_hdac_device_unregister - unregister the hd-audio codec base device
  133. * codec: the device to unregister
  134. */
  135. void snd_hdac_device_unregister(struct hdac_device *codec)
  136. {
  137. if (device_is_registered(&codec->dev)) {
  138. hda_widget_sysfs_exit(codec);
  139. device_del(&codec->dev);
  140. }
  141. }
  142. EXPORT_SYMBOL_GPL(snd_hdac_device_unregister);
  143. /**
  144. * snd_hdac_make_cmd - compose a 32bit command word to be sent to the
  145. * HD-audio controller
  146. * @codec: the codec object
  147. * @nid: NID to encode
  148. * @verb: verb to encode
  149. * @parm: parameter to encode
  150. *
  151. * Return an encoded command verb or -1 for error.
  152. */
  153. unsigned int snd_hdac_make_cmd(struct hdac_device *codec, hda_nid_t nid,
  154. unsigned int verb, unsigned int parm)
  155. {
  156. u32 val, addr;
  157. addr = codec->addr;
  158. if ((addr & ~0xf) || (nid & ~0x7f) ||
  159. (verb & ~0xfff) || (parm & ~0xffff)) {
  160. dev_err(&codec->dev, "out of range cmd %x:%x:%x:%x\n",
  161. addr, nid, verb, parm);
  162. return -1;
  163. }
  164. val = addr << 28;
  165. val |= (u32)nid << 20;
  166. val |= verb << 8;
  167. val |= parm;
  168. return val;
  169. }
  170. EXPORT_SYMBOL_GPL(snd_hdac_make_cmd);
  171. /**
  172. * snd_hdac_exec_verb - execute an encoded verb
  173. * @codec: the codec object
  174. * @cmd: encoded verb to execute
  175. * @flags: optional flags, pass zero for default
  176. * @res: the pointer to store the result, NULL if running async
  177. *
  178. * Returns zero if successful, or a negative error code.
  179. *
  180. * This calls the exec_verb op when set in hdac_codec. If not,
  181. * call the default snd_hdac_bus_exec_verb().
  182. */
  183. int snd_hdac_exec_verb(struct hdac_device *codec, unsigned int cmd,
  184. unsigned int flags, unsigned int *res)
  185. {
  186. if (codec->exec_verb)
  187. return codec->exec_verb(codec, cmd, flags, res);
  188. return snd_hdac_bus_exec_verb(codec->bus, codec->addr, cmd, res);
  189. }
  190. EXPORT_SYMBOL_GPL(snd_hdac_exec_verb);
  191. /**
  192. * snd_hdac_read - execute a verb
  193. * @codec: the codec object
  194. * @nid: NID to execute a verb
  195. * @verb: verb to execute
  196. * @parm: parameter for a verb
  197. * @res: the pointer to store the result, NULL if running async
  198. *
  199. * Returns zero if successful, or a negative error code.
  200. */
  201. int snd_hdac_read(struct hdac_device *codec, hda_nid_t nid,
  202. unsigned int verb, unsigned int parm, unsigned int *res)
  203. {
  204. unsigned int cmd = snd_hdac_make_cmd(codec, nid, verb, parm);
  205. return snd_hdac_exec_verb(codec, cmd, 0, res);
  206. }
  207. EXPORT_SYMBOL_GPL(snd_hdac_read);
  208. /**
  209. * _snd_hdac_read_parm - read a parmeter
  210. *
  211. * This function returns zero or an error unlike snd_hdac_read_parm().
  212. */
  213. int _snd_hdac_read_parm(struct hdac_device *codec, hda_nid_t nid, int parm,
  214. unsigned int *res)
  215. {
  216. unsigned int cmd;
  217. cmd = snd_hdac_regmap_encode_verb(nid, AC_VERB_PARAMETERS) | parm;
  218. return snd_hdac_regmap_read_raw(codec, cmd, res);
  219. }
  220. EXPORT_SYMBOL_GPL(_snd_hdac_read_parm);
  221. /**
  222. * snd_hdac_read_parm_uncached - read a codec parameter without caching
  223. * @codec: the codec object
  224. * @nid: NID to read a parameter
  225. * @parm: parameter to read
  226. *
  227. * Returns -1 for error. If you need to distinguish the error more
  228. * strictly, use snd_hdac_read() directly.
  229. */
  230. int snd_hdac_read_parm_uncached(struct hdac_device *codec, hda_nid_t nid,
  231. int parm)
  232. {
  233. int val;
  234. if (codec->regmap)
  235. regcache_cache_bypass(codec->regmap, true);
  236. val = snd_hdac_read_parm(codec, nid, parm);
  237. if (codec->regmap)
  238. regcache_cache_bypass(codec->regmap, false);
  239. return val;
  240. }
  241. EXPORT_SYMBOL_GPL(snd_hdac_read_parm_uncached);
  242. /**
  243. * snd_hdac_override_parm - override read-only parameters
  244. * @codec: the codec object
  245. * @nid: NID for the parameter
  246. * @parm: the parameter to change
  247. * @val: the parameter value to overwrite
  248. */
  249. int snd_hdac_override_parm(struct hdac_device *codec, hda_nid_t nid,
  250. unsigned int parm, unsigned int val)
  251. {
  252. unsigned int verb = (AC_VERB_PARAMETERS << 8) | (nid << 20) | parm;
  253. int err;
  254. if (!codec->regmap)
  255. return -EINVAL;
  256. codec->caps_overwriting = true;
  257. err = snd_hdac_regmap_write_raw(codec, verb, val);
  258. codec->caps_overwriting = false;
  259. return err;
  260. }
  261. EXPORT_SYMBOL_GPL(snd_hdac_override_parm);
  262. /**
  263. * snd_hdac_get_sub_nodes - get start NID and number of subtree nodes
  264. * @codec: the codec object
  265. * @nid: NID to inspect
  266. * @start_id: the pointer to store the starting NID
  267. *
  268. * Returns the number of subtree nodes or zero if not found.
  269. * This function reads parameters always without caching.
  270. */
  271. int snd_hdac_get_sub_nodes(struct hdac_device *codec, hda_nid_t nid,
  272. hda_nid_t *start_id)
  273. {
  274. unsigned int parm;
  275. parm = snd_hdac_read_parm_uncached(codec, nid, AC_PAR_NODE_COUNT);
  276. if (parm == -1) {
  277. *start_id = 0;
  278. return 0;
  279. }
  280. *start_id = (parm >> 16) & 0x7fff;
  281. return (int)(parm & 0x7fff);
  282. }
  283. EXPORT_SYMBOL_GPL(snd_hdac_get_sub_nodes);
  284. /*
  285. * look for an AFG and MFG nodes
  286. */
  287. static void setup_fg_nodes(struct hdac_device *codec)
  288. {
  289. int i, total_nodes, function_id;
  290. hda_nid_t nid;
  291. total_nodes = snd_hdac_get_sub_nodes(codec, AC_NODE_ROOT, &nid);
  292. for (i = 0; i < total_nodes; i++, nid++) {
  293. function_id = snd_hdac_read_parm(codec, nid,
  294. AC_PAR_FUNCTION_TYPE);
  295. switch (function_id & 0xff) {
  296. case AC_GRP_AUDIO_FUNCTION:
  297. codec->afg = nid;
  298. codec->afg_function_id = function_id & 0xff;
  299. codec->afg_unsol = (function_id >> 8) & 1;
  300. break;
  301. case AC_GRP_MODEM_FUNCTION:
  302. codec->mfg = nid;
  303. codec->mfg_function_id = function_id & 0xff;
  304. codec->mfg_unsol = (function_id >> 8) & 1;
  305. break;
  306. default:
  307. break;
  308. }
  309. }
  310. }
  311. /**
  312. * snd_hdac_refresh_widgets - Reset the widget start/end nodes
  313. * @codec: the codec object
  314. */
  315. int snd_hdac_refresh_widgets(struct hdac_device *codec)
  316. {
  317. hda_nid_t start_nid;
  318. int nums;
  319. nums = snd_hdac_get_sub_nodes(codec, codec->afg, &start_nid);
  320. if (!start_nid || nums <= 0 || nums >= 0xff) {
  321. dev_err(&codec->dev, "cannot read sub nodes for FG 0x%02x\n",
  322. codec->afg);
  323. return -EINVAL;
  324. }
  325. codec->num_nodes = nums;
  326. codec->start_nid = start_nid;
  327. codec->end_nid = start_nid + nums;
  328. return 0;
  329. }
  330. EXPORT_SYMBOL_GPL(snd_hdac_refresh_widgets);
  331. /**
  332. * snd_hdac_refresh_widget_sysfs - Reset the codec widgets and reinit the
  333. * codec sysfs
  334. * @codec: the codec object
  335. *
  336. * first we need to remove sysfs, then refresh widgets and lastly
  337. * recreate it
  338. */
  339. int snd_hdac_refresh_widget_sysfs(struct hdac_device *codec)
  340. {
  341. int ret;
  342. if (device_is_registered(&codec->dev))
  343. hda_widget_sysfs_exit(codec);
  344. ret = snd_hdac_refresh_widgets(codec);
  345. if (ret) {
  346. dev_err(&codec->dev, "failed to refresh widget: %d\n", ret);
  347. return ret;
  348. }
  349. if (device_is_registered(&codec->dev)) {
  350. ret = hda_widget_sysfs_init(codec);
  351. if (ret) {
  352. dev_err(&codec->dev, "failed to init sysfs: %d\n", ret);
  353. return ret;
  354. }
  355. }
  356. return ret;
  357. }
  358. EXPORT_SYMBOL_GPL(snd_hdac_refresh_widget_sysfs);
  359. /* return CONNLIST_LEN parameter of the given widget */
  360. static unsigned int get_num_conns(struct hdac_device *codec, hda_nid_t nid)
  361. {
  362. unsigned int wcaps = get_wcaps(codec, nid);
  363. unsigned int parm;
  364. if (!(wcaps & AC_WCAP_CONN_LIST) &&
  365. get_wcaps_type(wcaps) != AC_WID_VOL_KNB)
  366. return 0;
  367. parm = snd_hdac_read_parm(codec, nid, AC_PAR_CONNLIST_LEN);
  368. if (parm == -1)
  369. parm = 0;
  370. return parm;
  371. }
  372. /**
  373. * snd_hdac_get_connections - get a widget connection list
  374. * @codec: the codec object
  375. * @nid: NID
  376. * @conn_list: the array to store the results, can be NULL
  377. * @max_conns: the max size of the given array
  378. *
  379. * Returns the number of connected widgets, zero for no connection, or a
  380. * negative error code. When the number of elements don't fit with the
  381. * given array size, it returns -ENOSPC.
  382. *
  383. * When @conn_list is NULL, it just checks the number of connections.
  384. */
  385. int snd_hdac_get_connections(struct hdac_device *codec, hda_nid_t nid,
  386. hda_nid_t *conn_list, int max_conns)
  387. {
  388. unsigned int parm;
  389. int i, conn_len, conns, err;
  390. unsigned int shift, num_elems, mask;
  391. hda_nid_t prev_nid;
  392. int null_count = 0;
  393. parm = get_num_conns(codec, nid);
  394. if (!parm)
  395. return 0;
  396. if (parm & AC_CLIST_LONG) {
  397. /* long form */
  398. shift = 16;
  399. num_elems = 2;
  400. } else {
  401. /* short form */
  402. shift = 8;
  403. num_elems = 4;
  404. }
  405. conn_len = parm & AC_CLIST_LENGTH;
  406. mask = (1 << (shift-1)) - 1;
  407. if (!conn_len)
  408. return 0; /* no connection */
  409. if (conn_len == 1) {
  410. /* single connection */
  411. err = snd_hdac_read(codec, nid, AC_VERB_GET_CONNECT_LIST, 0,
  412. &parm);
  413. if (err < 0)
  414. return err;
  415. if (conn_list)
  416. conn_list[0] = parm & mask;
  417. return 1;
  418. }
  419. /* multi connection */
  420. conns = 0;
  421. prev_nid = 0;
  422. for (i = 0; i < conn_len; i++) {
  423. int range_val;
  424. hda_nid_t val, n;
  425. if (i % num_elems == 0) {
  426. err = snd_hdac_read(codec, nid,
  427. AC_VERB_GET_CONNECT_LIST, i,
  428. &parm);
  429. if (err < 0)
  430. return -EIO;
  431. }
  432. range_val = !!(parm & (1 << (shift-1))); /* ranges */
  433. val = parm & mask;
  434. if (val == 0 && null_count++) { /* no second chance */
  435. dev_dbg(&codec->dev,
  436. "invalid CONNECT_LIST verb %x[%i]:%x\n",
  437. nid, i, parm);
  438. return 0;
  439. }
  440. parm >>= shift;
  441. if (range_val) {
  442. /* ranges between the previous and this one */
  443. if (!prev_nid || prev_nid >= val) {
  444. dev_warn(&codec->dev,
  445. "invalid dep_range_val %x:%x\n",
  446. prev_nid, val);
  447. continue;
  448. }
  449. for (n = prev_nid + 1; n <= val; n++) {
  450. if (conn_list) {
  451. if (conns >= max_conns)
  452. return -ENOSPC;
  453. conn_list[conns] = n;
  454. }
  455. conns++;
  456. }
  457. } else {
  458. if (conn_list) {
  459. if (conns >= max_conns)
  460. return -ENOSPC;
  461. conn_list[conns] = val;
  462. }
  463. conns++;
  464. }
  465. prev_nid = val;
  466. }
  467. return conns;
  468. }
  469. EXPORT_SYMBOL_GPL(snd_hdac_get_connections);
  470. #ifdef CONFIG_PM
  471. /**
  472. * snd_hdac_power_up - power up the codec
  473. * @codec: the codec object
  474. *
  475. * This function calls the runtime PM helper to power up the given codec.
  476. * Unlike snd_hdac_power_up_pm(), you should call this only for the code
  477. * path that isn't included in PM path. Otherwise it gets stuck.
  478. *
  479. * Returns zero if successful, or a negative error code.
  480. */
  481. int snd_hdac_power_up(struct hdac_device *codec)
  482. {
  483. return pm_runtime_get_sync(&codec->dev);
  484. }
  485. EXPORT_SYMBOL_GPL(snd_hdac_power_up);
  486. /**
  487. * snd_hdac_power_down - power down the codec
  488. * @codec: the codec object
  489. *
  490. * Returns zero if successful, or a negative error code.
  491. */
  492. int snd_hdac_power_down(struct hdac_device *codec)
  493. {
  494. struct device *dev = &codec->dev;
  495. pm_runtime_mark_last_busy(dev);
  496. return pm_runtime_put_autosuspend(dev);
  497. }
  498. EXPORT_SYMBOL_GPL(snd_hdac_power_down);
  499. /**
  500. * snd_hdac_power_up_pm - power up the codec
  501. * @codec: the codec object
  502. *
  503. * This function can be called in a recursive code path like init code
  504. * which may be called by PM suspend/resume again. OTOH, if a power-up
  505. * call must wake up the sleeper (e.g. in a kctl callback), use
  506. * snd_hdac_power_up() instead.
  507. *
  508. * Returns zero if successful, or a negative error code.
  509. */
  510. int snd_hdac_power_up_pm(struct hdac_device *codec)
  511. {
  512. if (!atomic_inc_not_zero(&codec->in_pm))
  513. return snd_hdac_power_up(codec);
  514. return 0;
  515. }
  516. EXPORT_SYMBOL_GPL(snd_hdac_power_up_pm);
  517. /**
  518. * snd_hdac_power_down_pm - power down the codec
  519. * @codec: the codec object
  520. *
  521. * Like snd_hdac_power_up_pm(), this function is used in a recursive
  522. * code path like init code which may be called by PM suspend/resume again.
  523. *
  524. * Returns zero if successful, or a negative error code.
  525. */
  526. int snd_hdac_power_down_pm(struct hdac_device *codec)
  527. {
  528. if (atomic_dec_if_positive(&codec->in_pm) < 0)
  529. return snd_hdac_power_down(codec);
  530. return 0;
  531. }
  532. EXPORT_SYMBOL_GPL(snd_hdac_power_down_pm);
  533. #endif
  534. /*
  535. * Enable/disable the link power for a codec.
  536. */
  537. int snd_hdac_link_power(struct hdac_device *codec, bool enable)
  538. {
  539. if (!codec->link_power_control)
  540. return 0;
  541. if (codec->bus->ops->link_power)
  542. return codec->bus->ops->link_power(codec->bus, enable);
  543. else
  544. return -EINVAL;
  545. }
  546. EXPORT_SYMBOL_GPL(snd_hdac_link_power);
  547. /* codec vendor labels */
  548. struct hda_vendor_id {
  549. unsigned int id;
  550. const char *name;
  551. };
  552. static struct hda_vendor_id hda_vendor_ids[] = {
  553. { 0x1002, "ATI" },
  554. { 0x1013, "Cirrus Logic" },
  555. { 0x1057, "Motorola" },
  556. { 0x1095, "Silicon Image" },
  557. { 0x10de, "Nvidia" },
  558. { 0x10ec, "Realtek" },
  559. { 0x1102, "Creative" },
  560. { 0x1106, "VIA" },
  561. { 0x111d, "IDT" },
  562. { 0x11c1, "LSI" },
  563. { 0x11d4, "Analog Devices" },
  564. { 0x13f6, "C-Media" },
  565. { 0x14f1, "Conexant" },
  566. { 0x17e8, "Chrontel" },
  567. { 0x1854, "LG" },
  568. { 0x1aec, "Wolfson Microelectronics" },
  569. { 0x1af4, "QEMU" },
  570. { 0x434d, "C-Media" },
  571. { 0x8086, "Intel" },
  572. { 0x8384, "SigmaTel" },
  573. {} /* terminator */
  574. };
  575. /* store the codec vendor name */
  576. static int get_codec_vendor_name(struct hdac_device *codec)
  577. {
  578. const struct hda_vendor_id *c;
  579. u16 vendor_id = codec->vendor_id >> 16;
  580. for (c = hda_vendor_ids; c->id; c++) {
  581. if (c->id == vendor_id) {
  582. codec->vendor_name = kstrdup(c->name, GFP_KERNEL);
  583. return codec->vendor_name ? 0 : -ENOMEM;
  584. }
  585. }
  586. codec->vendor_name = kasprintf(GFP_KERNEL, "Generic %04x", vendor_id);
  587. return codec->vendor_name ? 0 : -ENOMEM;
  588. }
  589. /*
  590. * stream formats
  591. */
  592. struct hda_rate_tbl {
  593. unsigned int hz;
  594. unsigned int alsa_bits;
  595. unsigned int hda_fmt;
  596. };
  597. /* rate = base * mult / div */
  598. #define HDA_RATE(base, mult, div) \
  599. (AC_FMT_BASE_##base##K | (((mult) - 1) << AC_FMT_MULT_SHIFT) | \
  600. (((div) - 1) << AC_FMT_DIV_SHIFT))
  601. static struct hda_rate_tbl rate_bits[] = {
  602. /* rate in Hz, ALSA rate bitmask, HDA format value */
  603. /* autodetected value used in snd_hda_query_supported_pcm */
  604. { 8000, SNDRV_PCM_RATE_8000, HDA_RATE(48, 1, 6) },
  605. { 11025, SNDRV_PCM_RATE_11025, HDA_RATE(44, 1, 4) },
  606. { 16000, SNDRV_PCM_RATE_16000, HDA_RATE(48, 1, 3) },
  607. { 22050, SNDRV_PCM_RATE_22050, HDA_RATE(44, 1, 2) },
  608. { 32000, SNDRV_PCM_RATE_32000, HDA_RATE(48, 2, 3) },
  609. { 44100, SNDRV_PCM_RATE_44100, HDA_RATE(44, 1, 1) },
  610. { 48000, SNDRV_PCM_RATE_48000, HDA_RATE(48, 1, 1) },
  611. { 88200, SNDRV_PCM_RATE_88200, HDA_RATE(44, 2, 1) },
  612. { 96000, SNDRV_PCM_RATE_96000, HDA_RATE(48, 2, 1) },
  613. { 176400, SNDRV_PCM_RATE_176400, HDA_RATE(44, 4, 1) },
  614. { 192000, SNDRV_PCM_RATE_192000, HDA_RATE(48, 4, 1) },
  615. #define AC_PAR_PCM_RATE_BITS 11
  616. /* up to bits 10, 384kHZ isn't supported properly */
  617. /* not autodetected value */
  618. { 9600, SNDRV_PCM_RATE_KNOT, HDA_RATE(48, 1, 5) },
  619. { 0 } /* terminator */
  620. };
  621. /**
  622. * snd_hdac_calc_stream_format - calculate the format bitset
  623. * @rate: the sample rate
  624. * @channels: the number of channels
  625. * @format: the PCM format (SNDRV_PCM_FORMAT_XXX)
  626. * @maxbps: the max. bps
  627. * @spdif_ctls: HD-audio SPDIF status bits (0 if irrelevant)
  628. *
  629. * Calculate the format bitset from the given rate, channels and th PCM format.
  630. *
  631. * Return zero if invalid.
  632. */
  633. unsigned int snd_hdac_calc_stream_format(unsigned int rate,
  634. unsigned int channels,
  635. unsigned int format,
  636. unsigned int maxbps,
  637. unsigned short spdif_ctls)
  638. {
  639. int i;
  640. unsigned int val = 0;
  641. for (i = 0; rate_bits[i].hz; i++)
  642. if (rate_bits[i].hz == rate) {
  643. val = rate_bits[i].hda_fmt;
  644. break;
  645. }
  646. if (!rate_bits[i].hz)
  647. return 0;
  648. if (channels == 0 || channels > 8)
  649. return 0;
  650. val |= channels - 1;
  651. switch (snd_pcm_format_width(format)) {
  652. case 8:
  653. val |= AC_FMT_BITS_8;
  654. break;
  655. case 16:
  656. val |= AC_FMT_BITS_16;
  657. break;
  658. case 20:
  659. case 24:
  660. case 32:
  661. if (maxbps >= 32 || format == SNDRV_PCM_FORMAT_FLOAT_LE)
  662. val |= AC_FMT_BITS_32;
  663. else if (maxbps >= 24)
  664. val |= AC_FMT_BITS_24;
  665. else
  666. val |= AC_FMT_BITS_20;
  667. break;
  668. default:
  669. return 0;
  670. }
  671. if (spdif_ctls & AC_DIG1_NONAUDIO)
  672. val |= AC_FMT_TYPE_NON_PCM;
  673. return val;
  674. }
  675. EXPORT_SYMBOL_GPL(snd_hdac_calc_stream_format);
  676. static unsigned int query_pcm_param(struct hdac_device *codec, hda_nid_t nid)
  677. {
  678. unsigned int val = 0;
  679. if (nid != codec->afg &&
  680. (get_wcaps(codec, nid) & AC_WCAP_FORMAT_OVRD))
  681. val = snd_hdac_read_parm(codec, nid, AC_PAR_PCM);
  682. if (!val || val == -1)
  683. val = snd_hdac_read_parm(codec, codec->afg, AC_PAR_PCM);
  684. if (!val || val == -1)
  685. return 0;
  686. return val;
  687. }
  688. static unsigned int query_stream_param(struct hdac_device *codec, hda_nid_t nid)
  689. {
  690. unsigned int streams = snd_hdac_read_parm(codec, nid, AC_PAR_STREAM);
  691. if (!streams || streams == -1)
  692. streams = snd_hdac_read_parm(codec, codec->afg, AC_PAR_STREAM);
  693. if (!streams || streams == -1)
  694. return 0;
  695. return streams;
  696. }
  697. /**
  698. * snd_hdac_query_supported_pcm - query the supported PCM rates and formats
  699. * @codec: the codec object
  700. * @nid: NID to query
  701. * @ratesp: the pointer to store the detected rate bitflags
  702. * @formatsp: the pointer to store the detected formats
  703. * @bpsp: the pointer to store the detected format widths
  704. *
  705. * Queries the supported PCM rates and formats. The NULL @ratesp, @formatsp
  706. * or @bsps argument is ignored.
  707. *
  708. * Returns 0 if successful, otherwise a negative error code.
  709. */
  710. int snd_hdac_query_supported_pcm(struct hdac_device *codec, hda_nid_t nid,
  711. u32 *ratesp, u64 *formatsp, unsigned int *bpsp)
  712. {
  713. unsigned int i, val, wcaps;
  714. wcaps = get_wcaps(codec, nid);
  715. val = query_pcm_param(codec, nid);
  716. if (ratesp) {
  717. u32 rates = 0;
  718. for (i = 0; i < AC_PAR_PCM_RATE_BITS; i++) {
  719. if (val & (1 << i))
  720. rates |= rate_bits[i].alsa_bits;
  721. }
  722. if (rates == 0) {
  723. dev_err(&codec->dev,
  724. "rates == 0 (nid=0x%x, val=0x%x, ovrd=%i)\n",
  725. nid, val,
  726. (wcaps & AC_WCAP_FORMAT_OVRD) ? 1 : 0);
  727. return -EIO;
  728. }
  729. *ratesp = rates;
  730. }
  731. if (formatsp || bpsp) {
  732. u64 formats = 0;
  733. unsigned int streams, bps;
  734. streams = query_stream_param(codec, nid);
  735. if (!streams)
  736. return -EIO;
  737. bps = 0;
  738. if (streams & AC_SUPFMT_PCM) {
  739. if (val & AC_SUPPCM_BITS_8) {
  740. formats |= SNDRV_PCM_FMTBIT_U8;
  741. bps = 8;
  742. }
  743. if (val & AC_SUPPCM_BITS_16) {
  744. formats |= SNDRV_PCM_FMTBIT_S16_LE;
  745. bps = 16;
  746. }
  747. if (wcaps & AC_WCAP_DIGITAL) {
  748. if (val & AC_SUPPCM_BITS_32)
  749. formats |= SNDRV_PCM_FMTBIT_IEC958_SUBFRAME_LE;
  750. if (val & (AC_SUPPCM_BITS_20|AC_SUPPCM_BITS_24))
  751. formats |= SNDRV_PCM_FMTBIT_S32_LE;
  752. if (val & AC_SUPPCM_BITS_24)
  753. bps = 24;
  754. else if (val & AC_SUPPCM_BITS_20)
  755. bps = 20;
  756. } else if (val & (AC_SUPPCM_BITS_20|AC_SUPPCM_BITS_24|
  757. AC_SUPPCM_BITS_32)) {
  758. formats |= SNDRV_PCM_FMTBIT_S32_LE;
  759. if (val & AC_SUPPCM_BITS_32)
  760. bps = 32;
  761. else if (val & AC_SUPPCM_BITS_24)
  762. bps = 24;
  763. else if (val & AC_SUPPCM_BITS_20)
  764. bps = 20;
  765. }
  766. }
  767. #if 0 /* FIXME: CS4206 doesn't work, which is the only codec supporting float */
  768. if (streams & AC_SUPFMT_FLOAT32) {
  769. formats |= SNDRV_PCM_FMTBIT_FLOAT_LE;
  770. if (!bps)
  771. bps = 32;
  772. }
  773. #endif
  774. if (streams == AC_SUPFMT_AC3) {
  775. /* should be exclusive */
  776. /* temporary hack: we have still no proper support
  777. * for the direct AC3 stream...
  778. */
  779. formats |= SNDRV_PCM_FMTBIT_U8;
  780. bps = 8;
  781. }
  782. if (formats == 0) {
  783. dev_err(&codec->dev,
  784. "formats == 0 (nid=0x%x, val=0x%x, ovrd=%i, streams=0x%x)\n",
  785. nid, val,
  786. (wcaps & AC_WCAP_FORMAT_OVRD) ? 1 : 0,
  787. streams);
  788. return -EIO;
  789. }
  790. if (formatsp)
  791. *formatsp = formats;
  792. if (bpsp)
  793. *bpsp = bps;
  794. }
  795. return 0;
  796. }
  797. EXPORT_SYMBOL_GPL(snd_hdac_query_supported_pcm);
  798. /**
  799. * snd_hdac_is_supported_format - Check the validity of the format
  800. * @codec: the codec object
  801. * @nid: NID to check
  802. * @format: the HD-audio format value to check
  803. *
  804. * Check whether the given node supports the format value.
  805. *
  806. * Returns true if supported, false if not.
  807. */
  808. bool snd_hdac_is_supported_format(struct hdac_device *codec, hda_nid_t nid,
  809. unsigned int format)
  810. {
  811. int i;
  812. unsigned int val = 0, rate, stream;
  813. val = query_pcm_param(codec, nid);
  814. if (!val)
  815. return false;
  816. rate = format & 0xff00;
  817. for (i = 0; i < AC_PAR_PCM_RATE_BITS; i++)
  818. if (rate_bits[i].hda_fmt == rate) {
  819. if (val & (1 << i))
  820. break;
  821. return false;
  822. }
  823. if (i >= AC_PAR_PCM_RATE_BITS)
  824. return false;
  825. stream = query_stream_param(codec, nid);
  826. if (!stream)
  827. return false;
  828. if (stream & AC_SUPFMT_PCM) {
  829. switch (format & 0xf0) {
  830. case 0x00:
  831. if (!(val & AC_SUPPCM_BITS_8))
  832. return false;
  833. break;
  834. case 0x10:
  835. if (!(val & AC_SUPPCM_BITS_16))
  836. return false;
  837. break;
  838. case 0x20:
  839. if (!(val & AC_SUPPCM_BITS_20))
  840. return false;
  841. break;
  842. case 0x30:
  843. if (!(val & AC_SUPPCM_BITS_24))
  844. return false;
  845. break;
  846. case 0x40:
  847. if (!(val & AC_SUPPCM_BITS_32))
  848. return false;
  849. break;
  850. default:
  851. return false;
  852. }
  853. } else {
  854. /* FIXME: check for float32 and AC3? */
  855. }
  856. return true;
  857. }
  858. EXPORT_SYMBOL_GPL(snd_hdac_is_supported_format);