• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * HD-audio codec core device
3  */
4 
5 #include <linux/init.h>
6 #include <linux/device.h>
7 #include <linux/slab.h>
8 #include <linux/module.h>
9 #include <linux/export.h>
10 #include <linux/pm_runtime.h>
11 #include <sound/hdaudio.h>
12 #include <sound/hda_regmap.h>
13 #include <sound/pcm.h>
14 #include "local.h"
15 
16 static void setup_fg_nodes(struct hdac_device *codec);
17 static int get_codec_vendor_name(struct hdac_device *codec);
18 
default_release(struct device * dev)19 static void default_release(struct device *dev)
20 {
21 	snd_hdac_device_exit(container_of(dev, struct hdac_device, dev));
22 }
23 
24 /**
25  * snd_hdac_device_init - initialize the HD-audio codec base device
26  * @codec: device to initialize
27  * @bus: but to attach
28  * @name: device name string
29  * @addr: codec address
30  *
31  * Returns zero for success or a negative error code.
32  *
33  * This function increments the runtime PM counter and marks it active.
34  * The caller needs to turn it off appropriately later.
35  *
36  * The caller needs to set the device's release op properly by itself.
37  */
snd_hdac_device_init(struct hdac_device * codec,struct hdac_bus * bus,const char * name,unsigned int addr)38 int snd_hdac_device_init(struct hdac_device *codec, struct hdac_bus *bus,
39 			 const char *name, unsigned int addr)
40 {
41 	struct device *dev;
42 	hda_nid_t fg;
43 	int err;
44 
45 	dev = &codec->dev;
46 	device_initialize(dev);
47 	dev->parent = bus->dev;
48 	dev->bus = &snd_hda_bus_type;
49 	dev->release = default_release;
50 	dev->groups = hdac_dev_attr_groups;
51 	dev_set_name(dev, "%s", name);
52 	device_enable_async_suspend(dev);
53 
54 	codec->bus = bus;
55 	codec->addr = addr;
56 	codec->type = HDA_DEV_CORE;
57 	pm_runtime_set_active(&codec->dev);
58 	pm_runtime_get_noresume(&codec->dev);
59 	atomic_set(&codec->in_pm, 0);
60 
61 	err = snd_hdac_bus_add_device(bus, codec);
62 	if (err < 0)
63 		goto error;
64 
65 	/* fill parameters */
66 	codec->vendor_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
67 					      AC_PAR_VENDOR_ID);
68 	if (codec->vendor_id == -1) {
69 		/* read again, hopefully the access method was corrected
70 		 * in the last read...
71 		 */
72 		codec->vendor_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
73 						      AC_PAR_VENDOR_ID);
74 	}
75 
76 	codec->subsystem_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
77 						 AC_PAR_SUBSYSTEM_ID);
78 	codec->revision_id = snd_hdac_read_parm(codec, AC_NODE_ROOT,
79 						AC_PAR_REV_ID);
80 
81 	setup_fg_nodes(codec);
82 	if (!codec->afg && !codec->mfg) {
83 		dev_err(dev, "no AFG or MFG node found\n");
84 		err = -ENODEV;
85 		goto error;
86 	}
87 
88 	fg = codec->afg ? codec->afg : codec->mfg;
89 
90 	err = snd_hdac_refresh_widgets(codec);
91 	if (err < 0)
92 		goto error;
93 
94 	codec->power_caps = snd_hdac_read_parm(codec, fg, AC_PAR_POWER_STATE);
95 	/* reread ssid if not set by parameter */
96 	if (codec->subsystem_id == -1 || codec->subsystem_id == 0)
97 		snd_hdac_read(codec, fg, AC_VERB_GET_SUBSYSTEM_ID, 0,
98 			      &codec->subsystem_id);
99 
100 	err = get_codec_vendor_name(codec);
101 	if (err < 0)
102 		goto error;
103 
104 	codec->chip_name = kasprintf(GFP_KERNEL, "ID %x",
105 				     codec->vendor_id & 0xffff);
106 	if (!codec->chip_name) {
107 		err = -ENOMEM;
108 		goto error;
109 	}
110 
111 	return 0;
112 
113  error:
114 	put_device(&codec->dev);
115 	return err;
116 }
117 EXPORT_SYMBOL_GPL(snd_hdac_device_init);
118 
119 /**
120  * snd_hdac_device_exit - clean up the HD-audio codec base device
121  * @codec: device to clean up
122  */
snd_hdac_device_exit(struct hdac_device * codec)123 void snd_hdac_device_exit(struct hdac_device *codec)
124 {
125 	pm_runtime_put_noidle(&codec->dev);
126 	snd_hdac_bus_remove_device(codec->bus, codec);
127 	kfree(codec->vendor_name);
128 	kfree(codec->chip_name);
129 }
130 EXPORT_SYMBOL_GPL(snd_hdac_device_exit);
131 
132 /**
133  * snd_hdac_device_register - register the hd-audio codec base device
134  * codec: the device to register
135  */
snd_hdac_device_register(struct hdac_device * codec)136 int snd_hdac_device_register(struct hdac_device *codec)
137 {
138 	int err;
139 
140 	err = device_add(&codec->dev);
141 	if (err < 0)
142 		return err;
143 	err = hda_widget_sysfs_init(codec);
144 	if (err < 0) {
145 		device_del(&codec->dev);
146 		return err;
147 	}
148 
149 	return 0;
150 }
151 EXPORT_SYMBOL_GPL(snd_hdac_device_register);
152 
153 /**
154  * snd_hdac_device_unregister - unregister the hd-audio codec base device
155  * codec: the device to unregister
156  */
snd_hdac_device_unregister(struct hdac_device * codec)157 void snd_hdac_device_unregister(struct hdac_device *codec)
158 {
159 	if (device_is_registered(&codec->dev)) {
160 		hda_widget_sysfs_exit(codec);
161 		device_del(&codec->dev);
162 		snd_hdac_bus_remove_device(codec->bus, codec);
163 	}
164 }
165 EXPORT_SYMBOL_GPL(snd_hdac_device_unregister);
166 
167 /**
168  * snd_hdac_device_set_chip_name - set/update the codec name
169  * @codec: the HDAC device
170  * @name: name string to set
171  *
172  * Returns 0 if the name is set or updated, or a negative error code.
173  */
snd_hdac_device_set_chip_name(struct hdac_device * codec,const char * name)174 int snd_hdac_device_set_chip_name(struct hdac_device *codec, const char *name)
175 {
176 	char *newname;
177 
178 	if (!name)
179 		return 0;
180 	newname = kstrdup(name, GFP_KERNEL);
181 	if (!newname)
182 		return -ENOMEM;
183 	kfree(codec->chip_name);
184 	codec->chip_name = newname;
185 	return 0;
186 }
187 EXPORT_SYMBOL_GPL(snd_hdac_device_set_chip_name);
188 
189 /**
190  * snd_hdac_codec_modalias - give the module alias name
191  * @codec: HDAC device
192  * @buf: string buffer to store
193  * @size: string buffer size
194  *
195  * Returns the size of string, like snprintf(), or a negative error code.
196  */
snd_hdac_codec_modalias(struct hdac_device * codec,char * buf,size_t size)197 int snd_hdac_codec_modalias(struct hdac_device *codec, char *buf, size_t size)
198 {
199 	return snprintf(buf, size, "hdaudio:v%08Xr%08Xa%02X\n",
200 			codec->vendor_id, codec->revision_id, codec->type);
201 }
202 EXPORT_SYMBOL_GPL(snd_hdac_codec_modalias);
203 
204 /**
205  * snd_hdac_make_cmd - compose a 32bit command word to be sent to the
206  *	HD-audio controller
207  * @codec: the codec object
208  * @nid: NID to encode
209  * @verb: verb to encode
210  * @parm: parameter to encode
211  *
212  * Return an encoded command verb or -1 for error.
213  */
snd_hdac_make_cmd(struct hdac_device * codec,hda_nid_t nid,unsigned int verb,unsigned int parm)214 unsigned int snd_hdac_make_cmd(struct hdac_device *codec, hda_nid_t nid,
215 			       unsigned int verb, unsigned int parm)
216 {
217 	u32 val, addr;
218 
219 	addr = codec->addr;
220 	if ((addr & ~0xf) || (nid & ~0x7f) ||
221 	    (verb & ~0xfff) || (parm & ~0xffff)) {
222 		dev_err(&codec->dev, "out of range cmd %x:%x:%x:%x\n",
223 			addr, nid, verb, parm);
224 		return -1;
225 	}
226 
227 	val = addr << 28;
228 	val |= (u32)nid << 20;
229 	val |= verb << 8;
230 	val |= parm;
231 	return val;
232 }
233 EXPORT_SYMBOL_GPL(snd_hdac_make_cmd);
234 
235 /**
236  * snd_hdac_exec_verb - execute an encoded verb
237  * @codec: the codec object
238  * @cmd: encoded verb to execute
239  * @flags: optional flags, pass zero for default
240  * @res: the pointer to store the result, NULL if running async
241  *
242  * Returns zero if successful, or a negative error code.
243  *
244  * This calls the exec_verb op when set in hdac_codec.  If not,
245  * call the default snd_hdac_bus_exec_verb().
246  */
snd_hdac_exec_verb(struct hdac_device * codec,unsigned int cmd,unsigned int flags,unsigned int * res)247 int snd_hdac_exec_verb(struct hdac_device *codec, unsigned int cmd,
248 		       unsigned int flags, unsigned int *res)
249 {
250 	if (codec->exec_verb)
251 		return codec->exec_verb(codec, cmd, flags, res);
252 	return snd_hdac_bus_exec_verb(codec->bus, codec->addr, cmd, res);
253 }
254 EXPORT_SYMBOL_GPL(snd_hdac_exec_verb);
255 
256 
257 /**
258  * snd_hdac_read - execute a verb
259  * @codec: the codec object
260  * @nid: NID to execute a verb
261  * @verb: verb to execute
262  * @parm: parameter for a verb
263  * @res: the pointer to store the result, NULL if running async
264  *
265  * Returns zero if successful, or a negative error code.
266  */
snd_hdac_read(struct hdac_device * codec,hda_nid_t nid,unsigned int verb,unsigned int parm,unsigned int * res)267 int snd_hdac_read(struct hdac_device *codec, hda_nid_t nid,
268 		  unsigned int verb, unsigned int parm, unsigned int *res)
269 {
270 	unsigned int cmd = snd_hdac_make_cmd(codec, nid, verb, parm);
271 
272 	return snd_hdac_exec_verb(codec, cmd, 0, res);
273 }
274 EXPORT_SYMBOL_GPL(snd_hdac_read);
275 
276 /**
277  * _snd_hdac_read_parm - read a parmeter
278  *
279  * This function returns zero or an error unlike snd_hdac_read_parm().
280  */
_snd_hdac_read_parm(struct hdac_device * codec,hda_nid_t nid,int parm,unsigned int * res)281 int _snd_hdac_read_parm(struct hdac_device *codec, hda_nid_t nid, int parm,
282 			unsigned int *res)
283 {
284 	unsigned int cmd;
285 
286 	cmd = snd_hdac_regmap_encode_verb(nid, AC_VERB_PARAMETERS) | parm;
287 	return snd_hdac_regmap_read_raw(codec, cmd, res);
288 }
289 EXPORT_SYMBOL_GPL(_snd_hdac_read_parm);
290 
291 /**
292  * snd_hdac_read_parm_uncached - read a codec parameter without caching
293  * @codec: the codec object
294  * @nid: NID to read a parameter
295  * @parm: parameter to read
296  *
297  * Returns -1 for error.  If you need to distinguish the error more
298  * strictly, use snd_hdac_read() directly.
299  */
snd_hdac_read_parm_uncached(struct hdac_device * codec,hda_nid_t nid,int parm)300 int snd_hdac_read_parm_uncached(struct hdac_device *codec, hda_nid_t nid,
301 				int parm)
302 {
303 	unsigned int cmd, val;
304 
305 	cmd = snd_hdac_regmap_encode_verb(nid, AC_VERB_PARAMETERS) | parm;
306 	if (snd_hdac_regmap_read_raw_uncached(codec, cmd, &val) < 0)
307 		return -1;
308 	return val;
309 }
310 EXPORT_SYMBOL_GPL(snd_hdac_read_parm_uncached);
311 
312 /**
313  * snd_hdac_override_parm - override read-only parameters
314  * @codec: the codec object
315  * @nid: NID for the parameter
316  * @parm: the parameter to change
317  * @val: the parameter value to overwrite
318  */
snd_hdac_override_parm(struct hdac_device * codec,hda_nid_t nid,unsigned int parm,unsigned int val)319 int snd_hdac_override_parm(struct hdac_device *codec, hda_nid_t nid,
320 			   unsigned int parm, unsigned int val)
321 {
322 	unsigned int verb = (AC_VERB_PARAMETERS << 8) | (nid << 20) | parm;
323 	int err;
324 
325 	if (!codec->regmap)
326 		return -EINVAL;
327 
328 	codec->caps_overwriting = true;
329 	err = snd_hdac_regmap_write_raw(codec, verb, val);
330 	codec->caps_overwriting = false;
331 	return err;
332 }
333 EXPORT_SYMBOL_GPL(snd_hdac_override_parm);
334 
335 /**
336  * snd_hdac_get_sub_nodes - get start NID and number of subtree nodes
337  * @codec: the codec object
338  * @nid: NID to inspect
339  * @start_id: the pointer to store the starting NID
340  *
341  * Returns the number of subtree nodes or zero if not found.
342  * This function reads parameters always without caching.
343  */
snd_hdac_get_sub_nodes(struct hdac_device * codec,hda_nid_t nid,hda_nid_t * start_id)344 int snd_hdac_get_sub_nodes(struct hdac_device *codec, hda_nid_t nid,
345 			   hda_nid_t *start_id)
346 {
347 	unsigned int parm;
348 
349 	parm = snd_hdac_read_parm_uncached(codec, nid, AC_PAR_NODE_COUNT);
350 	if (parm == -1) {
351 		*start_id = 0;
352 		return 0;
353 	}
354 	*start_id = (parm >> 16) & 0x7fff;
355 	return (int)(parm & 0x7fff);
356 }
357 EXPORT_SYMBOL_GPL(snd_hdac_get_sub_nodes);
358 
359 /*
360  * look for an AFG and MFG nodes
361  */
setup_fg_nodes(struct hdac_device * codec)362 static void setup_fg_nodes(struct hdac_device *codec)
363 {
364 	int i, total_nodes, function_id;
365 	hda_nid_t nid;
366 
367 	total_nodes = snd_hdac_get_sub_nodes(codec, AC_NODE_ROOT, &nid);
368 	for (i = 0; i < total_nodes; i++, nid++) {
369 		function_id = snd_hdac_read_parm(codec, nid,
370 						 AC_PAR_FUNCTION_TYPE);
371 		switch (function_id & 0xff) {
372 		case AC_GRP_AUDIO_FUNCTION:
373 			codec->afg = nid;
374 			codec->afg_function_id = function_id & 0xff;
375 			codec->afg_unsol = (function_id >> 8) & 1;
376 			break;
377 		case AC_GRP_MODEM_FUNCTION:
378 			codec->mfg = nid;
379 			codec->mfg_function_id = function_id & 0xff;
380 			codec->mfg_unsol = (function_id >> 8) & 1;
381 			break;
382 		default:
383 			break;
384 		}
385 	}
386 }
387 
388 /**
389  * snd_hdac_refresh_widgets - Reset the widget start/end nodes
390  * @codec: the codec object
391  */
snd_hdac_refresh_widgets(struct hdac_device * codec)392 int snd_hdac_refresh_widgets(struct hdac_device *codec)
393 {
394 	hda_nid_t start_nid;
395 	int nums;
396 
397 	nums = snd_hdac_get_sub_nodes(codec, codec->afg, &start_nid);
398 	if (!start_nid || nums <= 0 || nums >= 0xff) {
399 		dev_err(&codec->dev, "cannot read sub nodes for FG 0x%02x\n",
400 			codec->afg);
401 		return -EINVAL;
402 	}
403 
404 	codec->num_nodes = nums;
405 	codec->start_nid = start_nid;
406 	codec->end_nid = start_nid + nums;
407 	return 0;
408 }
409 EXPORT_SYMBOL_GPL(snd_hdac_refresh_widgets);
410 
411 /**
412  * snd_hdac_refresh_widget_sysfs - Reset the codec widgets and reinit the
413  * codec sysfs
414  * @codec: the codec object
415  *
416  * first we need to remove sysfs, then refresh widgets and lastly
417  * recreate it
418  */
snd_hdac_refresh_widget_sysfs(struct hdac_device * codec)419 int snd_hdac_refresh_widget_sysfs(struct hdac_device *codec)
420 {
421 	int ret;
422 
423 	if (device_is_registered(&codec->dev))
424 		hda_widget_sysfs_exit(codec);
425 	ret = snd_hdac_refresh_widgets(codec);
426 	if (ret) {
427 		dev_err(&codec->dev, "failed to refresh widget: %d\n", ret);
428 		return ret;
429 	}
430 	if (device_is_registered(&codec->dev)) {
431 		ret = hda_widget_sysfs_init(codec);
432 		if (ret) {
433 			dev_err(&codec->dev, "failed to init sysfs: %d\n", ret);
434 			return ret;
435 		}
436 	}
437 	return ret;
438 }
439 EXPORT_SYMBOL_GPL(snd_hdac_refresh_widget_sysfs);
440 
441 /* return CONNLIST_LEN parameter of the given widget */
get_num_conns(struct hdac_device * codec,hda_nid_t nid)442 static unsigned int get_num_conns(struct hdac_device *codec, hda_nid_t nid)
443 {
444 	unsigned int wcaps = get_wcaps(codec, nid);
445 	unsigned int parm;
446 
447 	if (!(wcaps & AC_WCAP_CONN_LIST) &&
448 	    get_wcaps_type(wcaps) != AC_WID_VOL_KNB)
449 		return 0;
450 
451 	parm = snd_hdac_read_parm(codec, nid, AC_PAR_CONNLIST_LEN);
452 	if (parm == -1)
453 		parm = 0;
454 	return parm;
455 }
456 
457 /**
458  * snd_hdac_get_connections - get a widget connection list
459  * @codec: the codec object
460  * @nid: NID
461  * @conn_list: the array to store the results, can be NULL
462  * @max_conns: the max size of the given array
463  *
464  * Returns the number of connected widgets, zero for no connection, or a
465  * negative error code.  When the number of elements don't fit with the
466  * given array size, it returns -ENOSPC.
467  *
468  * When @conn_list is NULL, it just checks the number of connections.
469  */
snd_hdac_get_connections(struct hdac_device * codec,hda_nid_t nid,hda_nid_t * conn_list,int max_conns)470 int snd_hdac_get_connections(struct hdac_device *codec, hda_nid_t nid,
471 			     hda_nid_t *conn_list, int max_conns)
472 {
473 	unsigned int parm;
474 	int i, conn_len, conns, err;
475 	unsigned int shift, num_elems, mask;
476 	hda_nid_t prev_nid;
477 	int null_count = 0;
478 
479 	parm = get_num_conns(codec, nid);
480 	if (!parm)
481 		return 0;
482 
483 	if (parm & AC_CLIST_LONG) {
484 		/* long form */
485 		shift = 16;
486 		num_elems = 2;
487 	} else {
488 		/* short form */
489 		shift = 8;
490 		num_elems = 4;
491 	}
492 	conn_len = parm & AC_CLIST_LENGTH;
493 	mask = (1 << (shift-1)) - 1;
494 
495 	if (!conn_len)
496 		return 0; /* no connection */
497 
498 	if (conn_len == 1) {
499 		/* single connection */
500 		err = snd_hdac_read(codec, nid, AC_VERB_GET_CONNECT_LIST, 0,
501 				    &parm);
502 		if (err < 0)
503 			return err;
504 		if (conn_list)
505 			conn_list[0] = parm & mask;
506 		return 1;
507 	}
508 
509 	/* multi connection */
510 	conns = 0;
511 	prev_nid = 0;
512 	for (i = 0; i < conn_len; i++) {
513 		int range_val;
514 		hda_nid_t val, n;
515 
516 		if (i % num_elems == 0) {
517 			err = snd_hdac_read(codec, nid,
518 					    AC_VERB_GET_CONNECT_LIST, i,
519 					    &parm);
520 			if (err < 0)
521 				return -EIO;
522 		}
523 		range_val = !!(parm & (1 << (shift-1))); /* ranges */
524 		val = parm & mask;
525 		if (val == 0 && null_count++) {  /* no second chance */
526 			dev_dbg(&codec->dev,
527 				"invalid CONNECT_LIST verb %x[%i]:%x\n",
528 				nid, i, parm);
529 			return 0;
530 		}
531 		parm >>= shift;
532 		if (range_val) {
533 			/* ranges between the previous and this one */
534 			if (!prev_nid || prev_nid >= val) {
535 				dev_warn(&codec->dev,
536 					 "invalid dep_range_val %x:%x\n",
537 					 prev_nid, val);
538 				continue;
539 			}
540 			for (n = prev_nid + 1; n <= val; n++) {
541 				if (conn_list) {
542 					if (conns >= max_conns)
543 						return -ENOSPC;
544 					conn_list[conns] = n;
545 				}
546 				conns++;
547 			}
548 		} else {
549 			if (conn_list) {
550 				if (conns >= max_conns)
551 					return -ENOSPC;
552 				conn_list[conns] = val;
553 			}
554 			conns++;
555 		}
556 		prev_nid = val;
557 	}
558 	return conns;
559 }
560 EXPORT_SYMBOL_GPL(snd_hdac_get_connections);
561 
562 #ifdef CONFIG_PM
563 /**
564  * snd_hdac_power_up - power up the codec
565  * @codec: the codec object
566  *
567  * This function calls the runtime PM helper to power up the given codec.
568  * Unlike snd_hdac_power_up_pm(), you should call this only for the code
569  * path that isn't included in PM path.  Otherwise it gets stuck.
570  *
571  * Returns zero if successful, or a negative error code.
572  */
snd_hdac_power_up(struct hdac_device * codec)573 int snd_hdac_power_up(struct hdac_device *codec)
574 {
575 	return pm_runtime_get_sync(&codec->dev);
576 }
577 EXPORT_SYMBOL_GPL(snd_hdac_power_up);
578 
579 /**
580  * snd_hdac_power_down - power down the codec
581  * @codec: the codec object
582  *
583  * Returns zero if successful, or a negative error code.
584  */
snd_hdac_power_down(struct hdac_device * codec)585 int snd_hdac_power_down(struct hdac_device *codec)
586 {
587 	struct device *dev = &codec->dev;
588 
589 	pm_runtime_mark_last_busy(dev);
590 	return pm_runtime_put_autosuspend(dev);
591 }
592 EXPORT_SYMBOL_GPL(snd_hdac_power_down);
593 
594 /**
595  * snd_hdac_power_up_pm - power up the codec
596  * @codec: the codec object
597  *
598  * This function can be called in a recursive code path like init code
599  * which may be called by PM suspend/resume again.  OTOH, if a power-up
600  * call must wake up the sleeper (e.g. in a kctl callback), use
601  * snd_hdac_power_up() instead.
602  *
603  * Returns zero if successful, or a negative error code.
604  */
snd_hdac_power_up_pm(struct hdac_device * codec)605 int snd_hdac_power_up_pm(struct hdac_device *codec)
606 {
607 	if (!atomic_inc_not_zero(&codec->in_pm))
608 		return snd_hdac_power_up(codec);
609 	return 0;
610 }
611 EXPORT_SYMBOL_GPL(snd_hdac_power_up_pm);
612 
613 /* like snd_hdac_power_up_pm(), but only increment the pm count when
614  * already powered up.  Returns -1 if not powered up, 1 if incremented
615  * or 0 if unchanged.  Only used in hdac_regmap.c
616  */
snd_hdac_keep_power_up(struct hdac_device * codec)617 int snd_hdac_keep_power_up(struct hdac_device *codec)
618 {
619 	if (!atomic_inc_not_zero(&codec->in_pm)) {
620 		int ret = pm_runtime_get_if_in_use(&codec->dev);
621 		if (!ret)
622 			return -1;
623 		if (ret < 0)
624 			return 0;
625 	}
626 	return 1;
627 }
628 
629 /**
630  * snd_hdac_power_down_pm - power down the codec
631  * @codec: the codec object
632  *
633  * Like snd_hdac_power_up_pm(), this function is used in a recursive
634  * code path like init code which may be called by PM suspend/resume again.
635  *
636  * Returns zero if successful, or a negative error code.
637  */
snd_hdac_power_down_pm(struct hdac_device * codec)638 int snd_hdac_power_down_pm(struct hdac_device *codec)
639 {
640 	if (atomic_dec_if_positive(&codec->in_pm) < 0)
641 		return snd_hdac_power_down(codec);
642 	return 0;
643 }
644 EXPORT_SYMBOL_GPL(snd_hdac_power_down_pm);
645 #endif
646 
647 /**
648  * snd_hdac_link_power - Enable/disable the link power for a codec
649  * @codec: the codec object
650  * @bool: enable or disable the link power
651  */
snd_hdac_link_power(struct hdac_device * codec,bool enable)652 int snd_hdac_link_power(struct hdac_device *codec, bool enable)
653 {
654 	if  (!codec->link_power_control)
655 		return 0;
656 
657 	if  (codec->bus->ops->link_power)
658 		return codec->bus->ops->link_power(codec->bus, enable);
659 	else
660 		return -EINVAL;
661 }
662 EXPORT_SYMBOL_GPL(snd_hdac_link_power);
663 
664 /* codec vendor labels */
665 struct hda_vendor_id {
666 	unsigned int id;
667 	const char *name;
668 };
669 
670 static struct hda_vendor_id hda_vendor_ids[] = {
671 	{ 0x1002, "ATI" },
672 	{ 0x1013, "Cirrus Logic" },
673 	{ 0x1057, "Motorola" },
674 	{ 0x1095, "Silicon Image" },
675 	{ 0x10de, "Nvidia" },
676 	{ 0x10ec, "Realtek" },
677 	{ 0x1102, "Creative" },
678 	{ 0x1106, "VIA" },
679 	{ 0x111d, "IDT" },
680 	{ 0x11c1, "LSI" },
681 	{ 0x11d4, "Analog Devices" },
682 	{ 0x13f6, "C-Media" },
683 	{ 0x14f1, "Conexant" },
684 	{ 0x17e8, "Chrontel" },
685 	{ 0x1854, "LG" },
686 	{ 0x1aec, "Wolfson Microelectronics" },
687 	{ 0x1af4, "QEMU" },
688 	{ 0x434d, "C-Media" },
689 	{ 0x8086, "Intel" },
690 	{ 0x8384, "SigmaTel" },
691 	{} /* terminator */
692 };
693 
694 /* store the codec vendor name */
get_codec_vendor_name(struct hdac_device * codec)695 static int get_codec_vendor_name(struct hdac_device *codec)
696 {
697 	const struct hda_vendor_id *c;
698 	u16 vendor_id = codec->vendor_id >> 16;
699 
700 	for (c = hda_vendor_ids; c->id; c++) {
701 		if (c->id == vendor_id) {
702 			codec->vendor_name = kstrdup(c->name, GFP_KERNEL);
703 			return codec->vendor_name ? 0 : -ENOMEM;
704 		}
705 	}
706 
707 	codec->vendor_name = kasprintf(GFP_KERNEL, "Generic %04x", vendor_id);
708 	return codec->vendor_name ? 0 : -ENOMEM;
709 }
710 
711 /*
712  * stream formats
713  */
714 struct hda_rate_tbl {
715 	unsigned int hz;
716 	unsigned int alsa_bits;
717 	unsigned int hda_fmt;
718 };
719 
720 /* rate = base * mult / div */
721 #define HDA_RATE(base, mult, div) \
722 	(AC_FMT_BASE_##base##K | (((mult) - 1) << AC_FMT_MULT_SHIFT) | \
723 	 (((div) - 1) << AC_FMT_DIV_SHIFT))
724 
725 static struct hda_rate_tbl rate_bits[] = {
726 	/* rate in Hz, ALSA rate bitmask, HDA format value */
727 
728 	/* autodetected value used in snd_hda_query_supported_pcm */
729 	{ 8000, SNDRV_PCM_RATE_8000, HDA_RATE(48, 1, 6) },
730 	{ 11025, SNDRV_PCM_RATE_11025, HDA_RATE(44, 1, 4) },
731 	{ 16000, SNDRV_PCM_RATE_16000, HDA_RATE(48, 1, 3) },
732 	{ 22050, SNDRV_PCM_RATE_22050, HDA_RATE(44, 1, 2) },
733 	{ 32000, SNDRV_PCM_RATE_32000, HDA_RATE(48, 2, 3) },
734 	{ 44100, SNDRV_PCM_RATE_44100, HDA_RATE(44, 1, 1) },
735 	{ 48000, SNDRV_PCM_RATE_48000, HDA_RATE(48, 1, 1) },
736 	{ 88200, SNDRV_PCM_RATE_88200, HDA_RATE(44, 2, 1) },
737 	{ 96000, SNDRV_PCM_RATE_96000, HDA_RATE(48, 2, 1) },
738 	{ 176400, SNDRV_PCM_RATE_176400, HDA_RATE(44, 4, 1) },
739 	{ 192000, SNDRV_PCM_RATE_192000, HDA_RATE(48, 4, 1) },
740 #define AC_PAR_PCM_RATE_BITS	11
741 	/* up to bits 10, 384kHZ isn't supported properly */
742 
743 	/* not autodetected value */
744 	{ 9600, SNDRV_PCM_RATE_KNOT, HDA_RATE(48, 1, 5) },
745 
746 	{ 0 } /* terminator */
747 };
748 
749 /**
750  * snd_hdac_calc_stream_format - calculate the format bitset
751  * @rate: the sample rate
752  * @channels: the number of channels
753  * @format: the PCM format (SNDRV_PCM_FORMAT_XXX)
754  * @maxbps: the max. bps
755  * @spdif_ctls: HD-audio SPDIF status bits (0 if irrelevant)
756  *
757  * Calculate the format bitset from the given rate, channels and th PCM format.
758  *
759  * Return zero if invalid.
760  */
snd_hdac_calc_stream_format(unsigned int rate,unsigned int channels,unsigned int format,unsigned int maxbps,unsigned short spdif_ctls)761 unsigned int snd_hdac_calc_stream_format(unsigned int rate,
762 					 unsigned int channels,
763 					 unsigned int format,
764 					 unsigned int maxbps,
765 					 unsigned short spdif_ctls)
766 {
767 	int i;
768 	unsigned int val = 0;
769 
770 	for (i = 0; rate_bits[i].hz; i++)
771 		if (rate_bits[i].hz == rate) {
772 			val = rate_bits[i].hda_fmt;
773 			break;
774 		}
775 	if (!rate_bits[i].hz)
776 		return 0;
777 
778 	if (channels == 0 || channels > 8)
779 		return 0;
780 	val |= channels - 1;
781 
782 	switch (snd_pcm_format_width(format)) {
783 	case 8:
784 		val |= AC_FMT_BITS_8;
785 		break;
786 	case 16:
787 		val |= AC_FMT_BITS_16;
788 		break;
789 	case 20:
790 	case 24:
791 	case 32:
792 		if (maxbps >= 32 || format == SNDRV_PCM_FORMAT_FLOAT_LE)
793 			val |= AC_FMT_BITS_32;
794 		else if (maxbps >= 24)
795 			val |= AC_FMT_BITS_24;
796 		else
797 			val |= AC_FMT_BITS_20;
798 		break;
799 	default:
800 		return 0;
801 	}
802 
803 	if (spdif_ctls & AC_DIG1_NONAUDIO)
804 		val |= AC_FMT_TYPE_NON_PCM;
805 
806 	return val;
807 }
808 EXPORT_SYMBOL_GPL(snd_hdac_calc_stream_format);
809 
query_pcm_param(struct hdac_device * codec,hda_nid_t nid)810 static unsigned int query_pcm_param(struct hdac_device *codec, hda_nid_t nid)
811 {
812 	unsigned int val = 0;
813 
814 	if (nid != codec->afg &&
815 	    (get_wcaps(codec, nid) & AC_WCAP_FORMAT_OVRD))
816 		val = snd_hdac_read_parm(codec, nid, AC_PAR_PCM);
817 	if (!val || val == -1)
818 		val = snd_hdac_read_parm(codec, codec->afg, AC_PAR_PCM);
819 	if (!val || val == -1)
820 		return 0;
821 	return val;
822 }
823 
query_stream_param(struct hdac_device * codec,hda_nid_t nid)824 static unsigned int query_stream_param(struct hdac_device *codec, hda_nid_t nid)
825 {
826 	unsigned int streams = snd_hdac_read_parm(codec, nid, AC_PAR_STREAM);
827 
828 	if (!streams || streams == -1)
829 		streams = snd_hdac_read_parm(codec, codec->afg, AC_PAR_STREAM);
830 	if (!streams || streams == -1)
831 		return 0;
832 	return streams;
833 }
834 
835 /**
836  * snd_hdac_query_supported_pcm - query the supported PCM rates and formats
837  * @codec: the codec object
838  * @nid: NID to query
839  * @ratesp: the pointer to store the detected rate bitflags
840  * @formatsp: the pointer to store the detected formats
841  * @bpsp: the pointer to store the detected format widths
842  *
843  * Queries the supported PCM rates and formats.  The NULL @ratesp, @formatsp
844  * or @bsps argument is ignored.
845  *
846  * Returns 0 if successful, otherwise a negative error code.
847  */
snd_hdac_query_supported_pcm(struct hdac_device * codec,hda_nid_t nid,u32 * ratesp,u64 * formatsp,unsigned int * bpsp)848 int snd_hdac_query_supported_pcm(struct hdac_device *codec, hda_nid_t nid,
849 				 u32 *ratesp, u64 *formatsp, unsigned int *bpsp)
850 {
851 	unsigned int i, val, wcaps;
852 
853 	wcaps = get_wcaps(codec, nid);
854 	val = query_pcm_param(codec, nid);
855 
856 	if (ratesp) {
857 		u32 rates = 0;
858 		for (i = 0; i < AC_PAR_PCM_RATE_BITS; i++) {
859 			if (val & (1 << i))
860 				rates |= rate_bits[i].alsa_bits;
861 		}
862 		if (rates == 0) {
863 			dev_err(&codec->dev,
864 				"rates == 0 (nid=0x%x, val=0x%x, ovrd=%i)\n",
865 				nid, val,
866 				(wcaps & AC_WCAP_FORMAT_OVRD) ? 1 : 0);
867 			return -EIO;
868 		}
869 		*ratesp = rates;
870 	}
871 
872 	if (formatsp || bpsp) {
873 		u64 formats = 0;
874 		unsigned int streams, bps;
875 
876 		streams = query_stream_param(codec, nid);
877 		if (!streams)
878 			return -EIO;
879 
880 		bps = 0;
881 		if (streams & AC_SUPFMT_PCM) {
882 			if (val & AC_SUPPCM_BITS_8) {
883 				formats |= SNDRV_PCM_FMTBIT_U8;
884 				bps = 8;
885 			}
886 			if (val & AC_SUPPCM_BITS_16) {
887 				formats |= SNDRV_PCM_FMTBIT_S16_LE;
888 				bps = 16;
889 			}
890 			if (wcaps & AC_WCAP_DIGITAL) {
891 				if (val & AC_SUPPCM_BITS_32)
892 					formats |= SNDRV_PCM_FMTBIT_IEC958_SUBFRAME_LE;
893 				if (val & (AC_SUPPCM_BITS_20|AC_SUPPCM_BITS_24))
894 					formats |= SNDRV_PCM_FMTBIT_S32_LE;
895 				if (val & AC_SUPPCM_BITS_24)
896 					bps = 24;
897 				else if (val & AC_SUPPCM_BITS_20)
898 					bps = 20;
899 			} else if (val & (AC_SUPPCM_BITS_20|AC_SUPPCM_BITS_24|
900 					  AC_SUPPCM_BITS_32)) {
901 				formats |= SNDRV_PCM_FMTBIT_S32_LE;
902 				if (val & AC_SUPPCM_BITS_32)
903 					bps = 32;
904 				else if (val & AC_SUPPCM_BITS_24)
905 					bps = 24;
906 				else if (val & AC_SUPPCM_BITS_20)
907 					bps = 20;
908 			}
909 		}
910 #if 0 /* FIXME: CS4206 doesn't work, which is the only codec supporting float */
911 		if (streams & AC_SUPFMT_FLOAT32) {
912 			formats |= SNDRV_PCM_FMTBIT_FLOAT_LE;
913 			if (!bps)
914 				bps = 32;
915 		}
916 #endif
917 		if (streams == AC_SUPFMT_AC3) {
918 			/* should be exclusive */
919 			/* temporary hack: we have still no proper support
920 			 * for the direct AC3 stream...
921 			 */
922 			formats |= SNDRV_PCM_FMTBIT_U8;
923 			bps = 8;
924 		}
925 		if (formats == 0) {
926 			dev_err(&codec->dev,
927 				"formats == 0 (nid=0x%x, val=0x%x, ovrd=%i, streams=0x%x)\n",
928 				nid, val,
929 				(wcaps & AC_WCAP_FORMAT_OVRD) ? 1 : 0,
930 				streams);
931 			return -EIO;
932 		}
933 		if (formatsp)
934 			*formatsp = formats;
935 		if (bpsp)
936 			*bpsp = bps;
937 	}
938 
939 	return 0;
940 }
941 EXPORT_SYMBOL_GPL(snd_hdac_query_supported_pcm);
942 
943 /**
944  * snd_hdac_is_supported_format - Check the validity of the format
945  * @codec: the codec object
946  * @nid: NID to check
947  * @format: the HD-audio format value to check
948  *
949  * Check whether the given node supports the format value.
950  *
951  * Returns true if supported, false if not.
952  */
snd_hdac_is_supported_format(struct hdac_device * codec,hda_nid_t nid,unsigned int format)953 bool snd_hdac_is_supported_format(struct hdac_device *codec, hda_nid_t nid,
954 				  unsigned int format)
955 {
956 	int i;
957 	unsigned int val = 0, rate, stream;
958 
959 	val = query_pcm_param(codec, nid);
960 	if (!val)
961 		return false;
962 
963 	rate = format & 0xff00;
964 	for (i = 0; i < AC_PAR_PCM_RATE_BITS; i++)
965 		if (rate_bits[i].hda_fmt == rate) {
966 			if (val & (1 << i))
967 				break;
968 			return false;
969 		}
970 	if (i >= AC_PAR_PCM_RATE_BITS)
971 		return false;
972 
973 	stream = query_stream_param(codec, nid);
974 	if (!stream)
975 		return false;
976 
977 	if (stream & AC_SUPFMT_PCM) {
978 		switch (format & 0xf0) {
979 		case 0x00:
980 			if (!(val & AC_SUPPCM_BITS_8))
981 				return false;
982 			break;
983 		case 0x10:
984 			if (!(val & AC_SUPPCM_BITS_16))
985 				return false;
986 			break;
987 		case 0x20:
988 			if (!(val & AC_SUPPCM_BITS_20))
989 				return false;
990 			break;
991 		case 0x30:
992 			if (!(val & AC_SUPPCM_BITS_24))
993 				return false;
994 			break;
995 		case 0x40:
996 			if (!(val & AC_SUPPCM_BITS_32))
997 				return false;
998 			break;
999 		default:
1000 			return false;
1001 		}
1002 	} else {
1003 		/* FIXME: check for float32 and AC3? */
1004 	}
1005 
1006 	return true;
1007 }
1008 EXPORT_SYMBOL_GPL(snd_hdac_is_supported_format);
1009 
codec_read(struct hdac_device * hdac,hda_nid_t nid,int flags,unsigned int verb,unsigned int parm)1010 static unsigned int codec_read(struct hdac_device *hdac, hda_nid_t nid,
1011 			int flags, unsigned int verb, unsigned int parm)
1012 {
1013 	unsigned int cmd = snd_hdac_make_cmd(hdac, nid, verb, parm);
1014 	unsigned int res;
1015 
1016 	if (snd_hdac_exec_verb(hdac, cmd, flags, &res))
1017 		return -1;
1018 
1019 	return res;
1020 }
1021 
codec_write(struct hdac_device * hdac,hda_nid_t nid,int flags,unsigned int verb,unsigned int parm)1022 static int codec_write(struct hdac_device *hdac, hda_nid_t nid,
1023 			int flags, unsigned int verb, unsigned int parm)
1024 {
1025 	unsigned int cmd = snd_hdac_make_cmd(hdac, nid, verb, parm);
1026 
1027 	return snd_hdac_exec_verb(hdac, cmd, flags, NULL);
1028 }
1029 
1030 /**
1031  * snd_hdac_codec_read - send a command and get the response
1032  * @hdac: the HDAC device
1033  * @nid: NID to send the command
1034  * @flags: optional bit flags
1035  * @verb: the verb to send
1036  * @parm: the parameter for the verb
1037  *
1038  * Send a single command and read the corresponding response.
1039  *
1040  * Returns the obtained response value, or -1 for an error.
1041  */
snd_hdac_codec_read(struct hdac_device * hdac,hda_nid_t nid,int flags,unsigned int verb,unsigned int parm)1042 int snd_hdac_codec_read(struct hdac_device *hdac, hda_nid_t nid,
1043 			int flags, unsigned int verb, unsigned int parm)
1044 {
1045 	return codec_read(hdac, nid, flags, verb, parm);
1046 }
1047 EXPORT_SYMBOL_GPL(snd_hdac_codec_read);
1048 
1049 /**
1050  * snd_hdac_codec_write - send a single command without waiting for response
1051  * @hdac: the HDAC device
1052  * @nid: NID to send the command
1053  * @flags: optional bit flags
1054  * @verb: the verb to send
1055  * @parm: the parameter for the verb
1056  *
1057  * Send a single command without waiting for response.
1058  *
1059  * Returns 0 if successful, or a negative error code.
1060  */
snd_hdac_codec_write(struct hdac_device * hdac,hda_nid_t nid,int flags,unsigned int verb,unsigned int parm)1061 int snd_hdac_codec_write(struct hdac_device *hdac, hda_nid_t nid,
1062 			int flags, unsigned int verb, unsigned int parm)
1063 {
1064 	return codec_write(hdac, nid, flags, verb, parm);
1065 }
1066 EXPORT_SYMBOL_GPL(snd_hdac_codec_write);
1067 
1068 /**
1069  * snd_hdac_check_power_state - check whether the actual power state matches
1070  * with the target state
1071  *
1072  * @hdac: the HDAC device
1073  * @nid: NID to send the command
1074  * @target_state: target state to check for
1075  *
1076  * Return true if state matches, false if not
1077  */
snd_hdac_check_power_state(struct hdac_device * hdac,hda_nid_t nid,unsigned int target_state)1078 bool snd_hdac_check_power_state(struct hdac_device *hdac,
1079 		hda_nid_t nid, unsigned int target_state)
1080 {
1081 	unsigned int state = codec_read(hdac, nid, 0,
1082 				AC_VERB_GET_POWER_STATE, 0);
1083 
1084 	if (state & AC_PWRST_ERROR)
1085 		return true;
1086 	state = (state >> 4) & 0x0f;
1087 	return (state == target_state);
1088 }
1089 EXPORT_SYMBOL_GPL(snd_hdac_check_power_state);
1090