1/*-
2 * Copyright (c) 2006 Stephane E. Potvin <sepotvin@videotron.ca>
3 * Copyright (c) 2006 Ariff Abdullah <ariff@FreeBSD.org>
4 * Copyright (c) 2008-2012 Alexander Motin <mav@FreeBSD.org>
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 *    notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 *    notice, this list of conditions and the following disclaimer in the
14 *    documentation and/or other materials provided with the distribution.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 * SUCH DAMAGE.
27 */
28
29/*
30 * Intel High Definition Audio (Audio function) driver for FreeBSD.
31 */
32
33#ifdef HAVE_KERNEL_OPTION_HEADERS
34#include "opt_snd.h"
35#endif
36
37#include <dev/sound/pcm/sound.h>
38
39#include <sys/ctype.h>
40#include <sys/taskqueue.h>
41
42#include <dev/sound/pci/hda/hdac.h>
43#include <dev/sound/pci/hda/hdaa.h>
44#include <dev/sound/pci/hda/hda_reg.h>
45
46#include "mixer_if.h"
47
48SND_DECLARE_FILE("$FreeBSD: stable/11/sys/dev/sound/pci/hda/hdaa.c 317010 2017-04-16 08:04:01Z mmel $");
49
50#define hdaa_lock(devinfo)	snd_mtxlock((devinfo)->lock)
51#define hdaa_unlock(devinfo)	snd_mtxunlock((devinfo)->lock)
52#define hdaa_lockassert(devinfo) snd_mtxassert((devinfo)->lock)
53#define hdaa_lockowned(devinfo)	mtx_owned((devinfo)->lock)
54
55static const struct {
56	const char *key;
57	uint32_t value;
58} hdaa_quirks_tab[] = {
59	{ "softpcmvol", HDAA_QUIRK_SOFTPCMVOL },
60	{ "fixedrate", HDAA_QUIRK_FIXEDRATE },
61	{ "forcestereo", HDAA_QUIRK_FORCESTEREO },
62	{ "eapdinv", HDAA_QUIRK_EAPDINV },
63	{ "senseinv", HDAA_QUIRK_SENSEINV },
64	{ "ivref50", HDAA_QUIRK_IVREF50 },
65	{ "ivref80", HDAA_QUIRK_IVREF80 },
66	{ "ivref100", HDAA_QUIRK_IVREF100 },
67	{ "ovref50", HDAA_QUIRK_OVREF50 },
68	{ "ovref80", HDAA_QUIRK_OVREF80 },
69	{ "ovref100", HDAA_QUIRK_OVREF100 },
70	{ "ivref", HDAA_QUIRK_IVREF },
71	{ "ovref", HDAA_QUIRK_OVREF },
72	{ "vref", HDAA_QUIRK_VREF },
73};
74
75#define HDA_PARSE_MAXDEPTH	10
76
77MALLOC_DEFINE(M_HDAA, "hdaa", "HDA Audio");
78
79static const char *HDA_COLORS[16] = {"Unknown", "Black", "Grey", "Blue",
80    "Green", "Red", "Orange", "Yellow", "Purple", "Pink", "Res.A", "Res.B",
81    "Res.C", "Res.D", "White", "Other"};
82
83static const char *HDA_DEVS[16] = {"Line-out", "Speaker", "Headphones", "CD",
84    "SPDIF-out", "Digital-out", "Modem-line", "Modem-handset", "Line-in",
85    "AUX", "Mic", "Telephony", "SPDIF-in", "Digital-in", "Res.E", "Other"};
86
87static const char *HDA_CONNS[4] = {"Jack", "None", "Fixed", "Both"};
88
89static const char *HDA_CONNECTORS[16] = {
90    "Unknown", "1/8", "1/4", "ATAPI", "RCA", "Optical", "Digital", "Analog",
91    "DIN", "XLR", "RJ-11", "Combo", "0xc", "0xd", "0xe", "Other" };
92
93static const char *HDA_LOCS[64] = {
94    "0x00", "Rear", "Front", "Left", "Right", "Top", "Bottom", "Rear-panel",
95	"Drive-bay", "0x09", "0x0a", "0x0b", "0x0c", "0x0d", "0x0e", "0x0f",
96    "Internal", "0x11", "0x12", "0x13", "0x14", "0x15", "0x16", "Riser",
97	"0x18", "Onboard", "0x1a", "0x1b", "0x1c", "0x1d", "0x1e", "0x1f",
98    "External", "Ext-Rear", "Ext-Front", "Ext-Left", "Ext-Right", "Ext-Top", "Ext-Bottom", "0x07",
99	"0x28", "0x29", "0x2a", "0x2b", "0x2c", "0x2d", "0x2e", "0x2f",
100    "Other", "0x31", "0x32", "0x33", "0x34", "0x35", "Other-Bott", "Lid-In",
101	"Lid-Out", "0x39", "0x3a", "0x3b", "0x3c", "0x3d", "0x3e", "0x3f" };
102
103static const char *HDA_GPIO_ACTIONS[8] = {
104    "keep", "set", "clear", "disable", "input", "0x05", "0x06", "0x07"};
105
106static const char *HDA_HDMI_CODING_TYPES[18] = {
107    "undefined", "LPCM", "AC-3", "MPEG1", "MP3", "MPEG2", "AAC-LC", "DTS",
108    "ATRAC", "DSD", "E-AC-3", "DTS-HD", "MLP", "DST", "WMAPro", "HE-AAC",
109    "HE-AACv2", "MPEG-Surround"
110};
111
112/* Default */
113static uint32_t hdaa_fmt[] = {
114	SND_FORMAT(AFMT_S16_LE, 2, 0),
115	0
116};
117
118static struct pcmchan_caps hdaa_caps = {48000, 48000, hdaa_fmt, 0};
119
120static const struct {
121	uint32_t	rate;
122	int		valid;
123	uint16_t	base;
124	uint16_t	mul;
125	uint16_t	div;
126} hda_rate_tab[] = {
127	{   8000, 1, 0x0000, 0x0000, 0x0500 },	/* (48000 * 1) / 6 */
128	{   9600, 0, 0x0000, 0x0000, 0x0400 },	/* (48000 * 1) / 5 */
129	{  12000, 0, 0x0000, 0x0000, 0x0300 },	/* (48000 * 1) / 4 */
130	{  16000, 1, 0x0000, 0x0000, 0x0200 },	/* (48000 * 1) / 3 */
131	{  18000, 0, 0x0000, 0x1000, 0x0700 },	/* (48000 * 3) / 8 */
132	{  19200, 0, 0x0000, 0x0800, 0x0400 },	/* (48000 * 2) / 5 */
133	{  24000, 0, 0x0000, 0x0000, 0x0100 },	/* (48000 * 1) / 2 */
134	{  28800, 0, 0x0000, 0x1000, 0x0400 },	/* (48000 * 3) / 5 */
135	{  32000, 1, 0x0000, 0x0800, 0x0200 },	/* (48000 * 2) / 3 */
136	{  36000, 0, 0x0000, 0x1000, 0x0300 },	/* (48000 * 3) / 4 */
137	{  38400, 0, 0x0000, 0x1800, 0x0400 },	/* (48000 * 4) / 5 */
138	{  48000, 1, 0x0000, 0x0000, 0x0000 },	/* (48000 * 1) / 1 */
139	{  64000, 0, 0x0000, 0x1800, 0x0200 },	/* (48000 * 4) / 3 */
140	{  72000, 0, 0x0000, 0x1000, 0x0100 },	/* (48000 * 3) / 2 */
141	{  96000, 1, 0x0000, 0x0800, 0x0000 },	/* (48000 * 2) / 1 */
142	{ 144000, 0, 0x0000, 0x1000, 0x0000 },	/* (48000 * 3) / 1 */
143	{ 192000, 1, 0x0000, 0x1800, 0x0000 },	/* (48000 * 4) / 1 */
144	{   8820, 0, 0x4000, 0x0000, 0x0400 },	/* (44100 * 1) / 5 */
145	{  11025, 1, 0x4000, 0x0000, 0x0300 },	/* (44100 * 1) / 4 */
146	{  12600, 0, 0x4000, 0x0800, 0x0600 },	/* (44100 * 2) / 7 */
147	{  14700, 0, 0x4000, 0x0000, 0x0200 },	/* (44100 * 1) / 3 */
148	{  17640, 0, 0x4000, 0x0800, 0x0400 },	/* (44100 * 2) / 5 */
149	{  18900, 0, 0x4000, 0x1000, 0x0600 },	/* (44100 * 3) / 7 */
150	{  22050, 1, 0x4000, 0x0000, 0x0100 },	/* (44100 * 1) / 2 */
151	{  25200, 0, 0x4000, 0x1800, 0x0600 },	/* (44100 * 4) / 7 */
152	{  26460, 0, 0x4000, 0x1000, 0x0400 },	/* (44100 * 3) / 5 */
153	{  29400, 0, 0x4000, 0x0800, 0x0200 },	/* (44100 * 2) / 3 */
154	{  33075, 0, 0x4000, 0x1000, 0x0300 },	/* (44100 * 3) / 4 */
155	{  35280, 0, 0x4000, 0x1800, 0x0400 },	/* (44100 * 4) / 5 */
156	{  44100, 1, 0x4000, 0x0000, 0x0000 },	/* (44100 * 1) / 1 */
157	{  58800, 0, 0x4000, 0x1800, 0x0200 },	/* (44100 * 4) / 3 */
158	{  66150, 0, 0x4000, 0x1000, 0x0100 },	/* (44100 * 3) / 2 */
159	{  88200, 1, 0x4000, 0x0800, 0x0000 },	/* (44100 * 2) / 1 */
160	{ 132300, 0, 0x4000, 0x1000, 0x0000 },	/* (44100 * 3) / 1 */
161	{ 176400, 1, 0x4000, 0x1800, 0x0000 },	/* (44100 * 4) / 1 */
162};
163#define HDA_RATE_TAB_LEN (sizeof(hda_rate_tab) / sizeof(hda_rate_tab[0]))
164
165const static char *ossnames[] = SOUND_DEVICE_NAMES;
166
167/****************************************************************************
168 * Function prototypes
169 ****************************************************************************/
170static int	hdaa_pcmchannel_setup(struct hdaa_chan *);
171
172static void	hdaa_widget_connection_select(struct hdaa_widget *, uint8_t);
173static void	hdaa_audio_ctl_amp_set(struct hdaa_audio_ctl *,
174						uint32_t, int, int);
175static struct	hdaa_audio_ctl *hdaa_audio_ctl_amp_get(struct hdaa_devinfo *,
176							nid_t, int, int, int);
177static void	hdaa_audio_ctl_amp_set_internal(struct hdaa_devinfo *,
178				nid_t, int, int, int, int, int, int);
179
180static void	hdaa_dump_pin_config(struct hdaa_widget *w, uint32_t conf);
181
182static char *
183hdaa_audio_ctl_ossmixer_mask2allname(uint32_t mask, char *buf, size_t len)
184{
185	int i, first = 1;
186
187	bzero(buf, len);
188	for (i = 0; i < SOUND_MIXER_NRDEVICES; i++) {
189		if (mask & (1 << i)) {
190			if (first == 0)
191				strlcat(buf, ", ", len);
192			strlcat(buf, ossnames[i], len);
193			first = 0;
194		}
195	}
196	return (buf);
197}
198
199static struct hdaa_audio_ctl *
200hdaa_audio_ctl_each(struct hdaa_devinfo *devinfo, int *index)
201{
202	if (devinfo == NULL ||
203	    index == NULL || devinfo->ctl == NULL ||
204	    devinfo->ctlcnt < 1 ||
205	    *index < 0 || *index >= devinfo->ctlcnt)
206		return (NULL);
207	return (&devinfo->ctl[(*index)++]);
208}
209
210static struct hdaa_audio_ctl *
211hdaa_audio_ctl_amp_get(struct hdaa_devinfo *devinfo, nid_t nid, int dir,
212						int index, int cnt)
213{
214	struct hdaa_audio_ctl *ctl;
215	int i, found = 0;
216
217	if (devinfo == NULL || devinfo->ctl == NULL)
218		return (NULL);
219
220	i = 0;
221	while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
222		if (ctl->enable == 0)
223			continue;
224		if (ctl->widget->nid != nid)
225			continue;
226		if (dir && ctl->ndir != dir)
227			continue;
228		if (index >= 0 && ctl->ndir == HDAA_CTL_IN &&
229		    ctl->dir == ctl->ndir && ctl->index != index)
230			continue;
231		found++;
232		if (found == cnt || cnt <= 0)
233			return (ctl);
234	}
235
236	return (NULL);
237}
238
239static const struct matrix {
240	struct pcmchan_matrix	m;
241	int			analog;
242} matrixes[]  = {
243    { SND_CHN_MATRIX_MAP_1_0,	1 },
244    { SND_CHN_MATRIX_MAP_2_0,	1 },
245    { SND_CHN_MATRIX_MAP_2_1,	0 },
246    { SND_CHN_MATRIX_MAP_3_0,	0 },
247    { SND_CHN_MATRIX_MAP_3_1,	0 },
248    { SND_CHN_MATRIX_MAP_4_0,	1 },
249    { SND_CHN_MATRIX_MAP_4_1,	0 },
250    { SND_CHN_MATRIX_MAP_5_0,	0 },
251    { SND_CHN_MATRIX_MAP_5_1,	1 },
252    { SND_CHN_MATRIX_MAP_6_0,	0 },
253    { SND_CHN_MATRIX_MAP_6_1,	0 },
254    { SND_CHN_MATRIX_MAP_7_0,	0 },
255    { SND_CHN_MATRIX_MAP_7_1,	1 },
256};
257
258static const char *channel_names[] = SND_CHN_T_NAMES;
259
260/*
261 * Connected channels change handler.
262 */
263static void
264hdaa_channels_handler(struct hdaa_audio_as *as)
265{
266	struct hdaa_pcm_devinfo *pdevinfo = as->pdevinfo;
267	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
268	struct hdaa_chan *ch = &devinfo->chans[as->chans[0]];
269	struct hdaa_widget *w;
270	uint8_t *eld;
271	int i, total, sub, assume, channels;
272	uint16_t cpins, upins, tpins;
273
274	cpins = upins = 0;
275	eld = NULL;
276	for (i = 0; i < 16; i++) {
277		if (as->pins[i] <= 0)
278			continue;
279		w = hdaa_widget_get(devinfo, as->pins[i]);
280		if (w == NULL)
281			continue;
282		if (w->wclass.pin.connected == 1)
283			cpins |= (1 << i);
284		else if (w->wclass.pin.connected != 0)
285			upins |= (1 << i);
286		if (w->eld != NULL && w->eld_len >= 8)
287			eld = w->eld;
288	}
289	tpins = cpins | upins;
290	if (as->hpredir >= 0)
291		tpins &= 0x7fff;
292	if (tpins == 0)
293		tpins = as->pinset;
294
295	total = sub = assume = channels = 0;
296	if (eld) {
297		/* Map CEA speakers to sound(4) channels. */
298		if (eld[7] & 0x01) /* Front Left/Right */
299			channels |= SND_CHN_T_MASK_FL | SND_CHN_T_MASK_FR;
300		if (eld[7] & 0x02) /* Low Frequency Effect */
301			channels |= SND_CHN_T_MASK_LF;
302		if (eld[7] & 0x04) /* Front Center */
303			channels |= SND_CHN_T_MASK_FC;
304		if (eld[7] & 0x08) { /* Rear Left/Right */
305			/* If we have both RLR and RLRC, report RLR as side. */
306			if (eld[7] & 0x40) /* Rear Left/Right Center */
307			    channels |= SND_CHN_T_MASK_SL | SND_CHN_T_MASK_SR;
308			else
309			    channels |= SND_CHN_T_MASK_BL | SND_CHN_T_MASK_BR;
310		}
311		if (eld[7] & 0x10) /* Rear center */
312			channels |= SND_CHN_T_MASK_BC;
313		if (eld[7] & 0x20) /* Front Left/Right Center */
314			channels |= SND_CHN_T_MASK_FLC | SND_CHN_T_MASK_FRC;
315		if (eld[7] & 0x40) /* Rear Left/Right Center */
316			channels |= SND_CHN_T_MASK_BL | SND_CHN_T_MASK_BR;
317	} else if (as->pinset != 0 && (tpins & 0xffe0) == 0) {
318		/* Map UAA speakers to sound(4) channels. */
319		if (tpins & 0x0001)
320			channels |= SND_CHN_T_MASK_FL | SND_CHN_T_MASK_FR;
321		if (tpins & 0x0002)
322			channels |= SND_CHN_T_MASK_FC | SND_CHN_T_MASK_LF;
323		if (tpins & 0x0004)
324			channels |= SND_CHN_T_MASK_BL | SND_CHN_T_MASK_BR;
325		if (tpins & 0x0008)
326			channels |= SND_CHN_T_MASK_FLC | SND_CHN_T_MASK_FRC;
327		if (tpins & 0x0010) {
328			/* If there is no back pin, report side as back. */
329			if ((as->pinset & 0x0004) == 0)
330			    channels |= SND_CHN_T_MASK_BL | SND_CHN_T_MASK_BR;
331			else
332			    channels |= SND_CHN_T_MASK_SL | SND_CHN_T_MASK_SR;
333		}
334	} else if (as->mixed) {
335		/* Mixed assoc can be only stereo or theoretically mono. */
336		if (ch->channels == 1)
337			channels |= SND_CHN_T_MASK_FC;
338		else
339			channels |= SND_CHN_T_MASK_FL | SND_CHN_T_MASK_FR;
340	}
341	if (channels) {	/* We have some usable channels info. */
342		HDA_BOOTVERBOSE(
343			device_printf(pdevinfo->dev, "%s channel set is: ",
344			    as->dir == HDAA_CTL_OUT ? "Playback" : "Recording");
345			for (i = 0; i < SND_CHN_T_MAX; i++)
346				if (channels & (1 << i))
347					printf("%s, ", channel_names[i]);
348			printf("\n");
349		);
350		/* Look for maximal fitting matrix. */
351		for (i = 0; i < sizeof(matrixes) / sizeof(struct matrix); i++) {
352			if (as->pinset != 0 && matrixes[i].analog == 0)
353				continue;
354			if ((matrixes[i].m.mask & ~channels) == 0) {
355				total = matrixes[i].m.channels;
356				sub = matrixes[i].m.ext;
357			}
358		}
359	}
360	if (total == 0) {
361		assume = 1;
362		total = ch->channels;
363		sub = (total == 6 || total == 8) ? 1 : 0;
364	}
365	HDA_BOOTVERBOSE(
366		device_printf(pdevinfo->dev,
367		    "%s channel matrix is: %s%d.%d (%s)\n",
368		    as->dir == HDAA_CTL_OUT ? "Playback" : "Recording",
369		    assume ? "unknown, assuming " : "", total - sub, sub,
370		    cpins != 0 ? "connected" :
371		    (upins != 0 ? "unknown" : "disconnected"));
372	);
373}
374
375/*
376 * Headphones redirection change handler.
377 */
378static void
379hdaa_hpredir_handler(struct hdaa_widget *w)
380{
381	struct hdaa_devinfo *devinfo = w->devinfo;
382	struct hdaa_audio_as *as = &devinfo->as[w->bindas];
383	struct hdaa_widget *w1;
384	struct hdaa_audio_ctl *ctl;
385	uint32_t val;
386	int j, connected = w->wclass.pin.connected;
387
388	HDA_BOOTVERBOSE(
389		device_printf((as->pdevinfo && as->pdevinfo->dev) ?
390		    as->pdevinfo->dev : devinfo->dev,
391		    "Redirect output to: %s\n",
392		    connected ? "headphones": "main");
393	);
394	/* (Un)Mute headphone pin. */
395	ctl = hdaa_audio_ctl_amp_get(devinfo,
396	    w->nid, HDAA_CTL_IN, -1, 1);
397	if (ctl != NULL && ctl->mute) {
398		/* If pin has muter - use it. */
399		val = connected ? 0 : 1;
400		if (val != ctl->forcemute) {
401			ctl->forcemute = val;
402			hdaa_audio_ctl_amp_set(ctl,
403			    HDAA_AMP_MUTE_DEFAULT,
404			    HDAA_AMP_VOL_DEFAULT, HDAA_AMP_VOL_DEFAULT);
405		}
406	} else {
407		/* If there is no muter - disable pin output. */
408		if (connected)
409			val = w->wclass.pin.ctrl |
410			    HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE;
411		else
412			val = w->wclass.pin.ctrl &
413			    ~HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE;
414		if (val != w->wclass.pin.ctrl) {
415			w->wclass.pin.ctrl = val;
416			hda_command(devinfo->dev,
417			    HDA_CMD_SET_PIN_WIDGET_CTRL(0,
418			    w->nid, w->wclass.pin.ctrl));
419		}
420	}
421	/* (Un)Mute other pins. */
422	for (j = 0; j < 15; j++) {
423		if (as->pins[j] <= 0)
424			continue;
425		ctl = hdaa_audio_ctl_amp_get(devinfo,
426		    as->pins[j], HDAA_CTL_IN, -1, 1);
427		if (ctl != NULL && ctl->mute) {
428			/* If pin has muter - use it. */
429			val = connected ? 1 : 0;
430			if (val == ctl->forcemute)
431				continue;
432			ctl->forcemute = val;
433			hdaa_audio_ctl_amp_set(ctl,
434			    HDAA_AMP_MUTE_DEFAULT,
435			    HDAA_AMP_VOL_DEFAULT, HDAA_AMP_VOL_DEFAULT);
436			continue;
437		}
438		/* If there is no muter - disable pin output. */
439		w1 = hdaa_widget_get(devinfo, as->pins[j]);
440		if (w1 != NULL) {
441			if (connected)
442				val = w1->wclass.pin.ctrl &
443				    ~HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE;
444			else
445				val = w1->wclass.pin.ctrl |
446				    HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE;
447			if (val != w1->wclass.pin.ctrl) {
448				w1->wclass.pin.ctrl = val;
449				hda_command(devinfo->dev,
450				    HDA_CMD_SET_PIN_WIDGET_CTRL(0,
451				    w1->nid, w1->wclass.pin.ctrl));
452			}
453		}
454	}
455}
456
457/*
458 * Recording source change handler.
459 */
460static void
461hdaa_autorecsrc_handler(struct hdaa_audio_as *as, struct hdaa_widget *w)
462{
463	struct hdaa_pcm_devinfo *pdevinfo = as->pdevinfo;
464	struct hdaa_devinfo *devinfo;
465	struct hdaa_widget *w1;
466	int i, mask, fullmask, prio, bestprio;
467	char buf[128];
468
469	if (!as->mixed || pdevinfo == NULL || pdevinfo->mixer == NULL)
470		return;
471	/* Don't touch anything if we asked not to. */
472	if (pdevinfo->autorecsrc == 0 ||
473	    (pdevinfo->autorecsrc == 1 && w != NULL))
474		return;
475	/* Don't touch anything if "mix" or "speaker" selected. */
476	if (pdevinfo->recsrc & (SOUND_MASK_IMIX | SOUND_MASK_SPEAKER))
477		return;
478	/* Don't touch anything if several selected. */
479	if (ffs(pdevinfo->recsrc) != fls(pdevinfo->recsrc))
480		return;
481	devinfo = pdevinfo->devinfo;
482	mask = fullmask = 0;
483	bestprio = 0;
484	for (i = 0; i < 16; i++) {
485		if (as->pins[i] <= 0)
486			continue;
487		w1 = hdaa_widget_get(devinfo, as->pins[i]);
488		if (w1 == NULL || w1->enable == 0)
489			continue;
490		if (w1->wclass.pin.connected == 0)
491			continue;
492		prio = (w1->wclass.pin.connected == 1) ? 2 : 1;
493		if (prio < bestprio)
494			continue;
495		if (prio > bestprio) {
496			mask = 0;
497			bestprio = prio;
498		}
499		mask |= (1 << w1->ossdev);
500		fullmask |= (1 << w1->ossdev);
501	}
502	if (mask == 0)
503		return;
504	/* Prefer newly connected input. */
505	if (w != NULL && (mask & (1 << w->ossdev)))
506		mask = (1 << w->ossdev);
507	/* Prefer previously selected input */
508	if (mask & pdevinfo->recsrc)
509		mask &= pdevinfo->recsrc;
510	/* Prefer mic. */
511	if (mask & SOUND_MASK_MIC)
512		mask = SOUND_MASK_MIC;
513	/* Prefer monitor (2nd mic). */
514	if (mask & SOUND_MASK_MONITOR)
515		mask = SOUND_MASK_MONITOR;
516	/* Just take first one. */
517	mask = (1 << (ffs(mask) - 1));
518	HDA_BOOTVERBOSE(
519		hdaa_audio_ctl_ossmixer_mask2allname(mask, buf, sizeof(buf));
520		device_printf(pdevinfo->dev,
521		    "Automatically set rec source to: %s\n", buf);
522	);
523	hdaa_unlock(devinfo);
524	mix_setrecsrc(pdevinfo->mixer, mask);
525	hdaa_lock(devinfo);
526}
527
528/*
529 * Jack presence detection event handler.
530 */
531static void
532hdaa_presence_handler(struct hdaa_widget *w)
533{
534	struct hdaa_devinfo *devinfo = w->devinfo;
535	struct hdaa_audio_as *as;
536	uint32_t res;
537	int connected, old;
538
539	if (w->enable == 0 || w->type !=
540	    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
541		return;
542
543	if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 ||
544	    (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0)
545		return;
546
547	res = hda_command(devinfo->dev, HDA_CMD_GET_PIN_SENSE(0, w->nid));
548	connected = (res & HDA_CMD_GET_PIN_SENSE_PRESENCE_DETECT) != 0;
549	if (devinfo->quirks & HDAA_QUIRK_SENSEINV)
550		connected = !connected;
551	old = w->wclass.pin.connected;
552	if (connected == old)
553		return;
554	w->wclass.pin.connected = connected;
555	HDA_BOOTVERBOSE(
556		if (connected || old != 2) {
557			device_printf(devinfo->dev,
558			    "Pin sense: nid=%d sense=0x%08x (%sconnected)\n",
559			    w->nid, res, !connected ? "dis" : "");
560		}
561	);
562
563	as = &devinfo->as[w->bindas];
564	if (as->hpredir >= 0 && as->pins[15] == w->nid)
565		hdaa_hpredir_handler(w);
566	if (as->dir == HDAA_CTL_IN && old != 2)
567		hdaa_autorecsrc_handler(as, w);
568	if (old != 2)
569		hdaa_channels_handler(as);
570}
571
572/*
573 * Callback for poll based presence detection.
574 */
575static void
576hdaa_jack_poll_callback(void *arg)
577{
578	struct hdaa_devinfo *devinfo = arg;
579	struct hdaa_widget *w;
580	int i;
581
582	hdaa_lock(devinfo);
583	if (devinfo->poll_ival == 0) {
584		hdaa_unlock(devinfo);
585		return;
586	}
587	for (i = 0; i < devinfo->ascnt; i++) {
588		if (devinfo->as[i].hpredir < 0)
589			continue;
590		w = hdaa_widget_get(devinfo, devinfo->as[i].pins[15]);
591		if (w == NULL || w->enable == 0 || w->type !=
592		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
593			continue;
594		hdaa_presence_handler(w);
595	}
596	callout_reset(&devinfo->poll_jack, devinfo->poll_ival,
597	    hdaa_jack_poll_callback, devinfo);
598	hdaa_unlock(devinfo);
599}
600
601static void
602hdaa_eld_dump(struct hdaa_widget *w)
603{
604	struct hdaa_devinfo *devinfo = w->devinfo;
605	device_t dev = devinfo->dev;
606	uint8_t *sad;
607	int len, mnl, i, sadc, fmt;
608
609	if (w->eld == NULL || w->eld_len < 4)
610		return;
611	device_printf(dev,
612	    "ELD nid=%d: ELD_Ver=%u Baseline_ELD_Len=%u\n",
613	    w->nid, w->eld[0] >> 3, w->eld[2]);
614	if ((w->eld[0] >> 3) != 0x02)
615		return;
616	len = min(w->eld_len, (u_int)w->eld[2] * 4);
617	mnl = w->eld[4] & 0x1f;
618	device_printf(dev,
619	    "ELD nid=%d: CEA_EDID_Ver=%u MNL=%u\n",
620	    w->nid, w->eld[4] >> 5, mnl);
621	sadc = w->eld[5] >> 4;
622	device_printf(dev,
623	    "ELD nid=%d: SAD_Count=%u Conn_Type=%u S_AI=%u HDCP=%u\n",
624	    w->nid, sadc, (w->eld[5] >> 2) & 0x3,
625	    (w->eld[5] >> 1) & 0x1, w->eld[5] & 0x1);
626	device_printf(dev,
627	    "ELD nid=%d: Aud_Synch_Delay=%ums\n",
628	    w->nid, w->eld[6] * 2);
629	device_printf(dev,
630	    "ELD nid=%d: Channels=0x%b\n",
631	    w->nid, w->eld[7],
632	    "\020\07RLRC\06FLRC\05RC\04RLR\03FC\02LFE\01FLR");
633	device_printf(dev,
634	    "ELD nid=%d: Port_ID=0x%02x%02x%02x%02x%02x%02x%02x%02x\n",
635	    w->nid, w->eld[8], w->eld[9], w->eld[10], w->eld[11],
636	    w->eld[12], w->eld[13], w->eld[14], w->eld[15]);
637	device_printf(dev,
638	    "ELD nid=%d: Manufacturer_Name=0x%02x%02x\n",
639	    w->nid, w->eld[16], w->eld[17]);
640	device_printf(dev,
641	    "ELD nid=%d: Product_Code=0x%02x%02x\n",
642	    w->nid, w->eld[18], w->eld[19]);
643	device_printf(dev,
644	    "ELD nid=%d: Monitor_Name_String='%.*s'\n",
645	    w->nid, mnl, &w->eld[20]);
646	for (i = 0; i < sadc; i++) {
647		sad = &w->eld[20 + mnl + i * 3];
648		fmt = (sad[0] >> 3) & 0x0f;
649		if (fmt == HDA_HDMI_CODING_TYPE_REF_CTX) {
650			fmt = (sad[2] >> 3) & 0x1f;
651			if (fmt < 1 || fmt > 3)
652				fmt = 0;
653			else
654				fmt += 14;
655		}
656		device_printf(dev,
657		    "ELD nid=%d: %s %dch freqs=0x%b",
658		    w->nid, HDA_HDMI_CODING_TYPES[fmt], (sad[0] & 0x07) + 1,
659		    sad[1], "\020\007192\006176\00596\00488\00348\00244\00132");
660		switch (fmt) {
661		case HDA_HDMI_CODING_TYPE_LPCM:
662			printf(" sizes=0x%b",
663			    sad[2] & 0x07, "\020\00324\00220\00116");
664			break;
665		case HDA_HDMI_CODING_TYPE_AC3:
666		case HDA_HDMI_CODING_TYPE_MPEG1:
667		case HDA_HDMI_CODING_TYPE_MP3:
668		case HDA_HDMI_CODING_TYPE_MPEG2:
669		case HDA_HDMI_CODING_TYPE_AACLC:
670		case HDA_HDMI_CODING_TYPE_DTS:
671		case HDA_HDMI_CODING_TYPE_ATRAC:
672			printf(" max_bitrate=%d", sad[2] * 8000);
673			break;
674		case HDA_HDMI_CODING_TYPE_WMAPRO:
675			printf(" profile=%d", sad[2] & 0x07);
676			break;
677		}
678		printf("\n");
679	}
680}
681
682static void
683hdaa_eld_handler(struct hdaa_widget *w)
684{
685	struct hdaa_devinfo *devinfo = w->devinfo;
686	uint32_t res;
687	int i;
688
689	if (w->enable == 0 || w->type !=
690	    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
691		return;
692
693	if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 ||
694	    (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0)
695		return;
696
697	res = hda_command(devinfo->dev, HDA_CMD_GET_PIN_SENSE(0, w->nid));
698	if ((w->eld != 0) == ((res & HDA_CMD_GET_PIN_SENSE_ELD_VALID) != 0))
699		return;
700	if (w->eld != NULL) {
701		w->eld_len = 0;
702		free(w->eld, M_HDAA);
703		w->eld = NULL;
704	}
705	HDA_BOOTVERBOSE(
706		device_printf(devinfo->dev,
707		    "Pin sense: nid=%d sense=0x%08x "
708		    "(%sconnected, ELD %svalid)\n",
709		    w->nid, res,
710		    (res & HDA_CMD_GET_PIN_SENSE_PRESENCE_DETECT) ? "" : "dis",
711		    (res & HDA_CMD_GET_PIN_SENSE_ELD_VALID) ? "" : "in");
712	);
713	if ((res & HDA_CMD_GET_PIN_SENSE_ELD_VALID) == 0)
714		return;
715
716	res = hda_command(devinfo->dev,
717	    HDA_CMD_GET_HDMI_DIP_SIZE(0, w->nid, 0x08));
718	if (res == HDA_INVALID)
719		return;
720	w->eld_len = res & 0xff;
721	if (w->eld_len != 0)
722		w->eld = malloc(w->eld_len, M_HDAA, M_ZERO | M_NOWAIT);
723	if (w->eld == NULL) {
724		w->eld_len = 0;
725		return;
726	}
727
728	for (i = 0; i < w->eld_len; i++) {
729		res = hda_command(devinfo->dev,
730		    HDA_CMD_GET_HDMI_ELDD(0, w->nid, i));
731		if (res & 0x80000000)
732			w->eld[i] = res & 0xff;
733	}
734	HDA_BOOTVERBOSE(
735		hdaa_eld_dump(w);
736	);
737	hdaa_channels_handler(&devinfo->as[w->bindas]);
738}
739
740/*
741 * Pin sense initializer.
742 */
743static void
744hdaa_sense_init(struct hdaa_devinfo *devinfo)
745{
746	struct hdaa_audio_as *as;
747	struct hdaa_widget *w;
748	int i, poll = 0;
749
750	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
751		w = hdaa_widget_get(devinfo, i);
752		if (w == NULL || w->enable == 0 || w->type !=
753		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
754			continue;
755		if (HDA_PARAM_AUDIO_WIDGET_CAP_UNSOL_CAP(w->param.widget_cap)) {
756			if (w->unsol < 0)
757				w->unsol = HDAC_UNSOL_ALLOC(
758				    device_get_parent(devinfo->dev),
759				    devinfo->dev, w->nid);
760			hda_command(devinfo->dev,
761			    HDA_CMD_SET_UNSOLICITED_RESPONSE(0, w->nid,
762			    HDA_CMD_SET_UNSOLICITED_RESPONSE_ENABLE | w->unsol));
763		}
764		as = &devinfo->as[w->bindas];
765		if (as->hpredir >= 0 && as->pins[15] == w->nid) {
766			if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(w->wclass.pin.cap) == 0 ||
767			    (HDA_CONFIG_DEFAULTCONF_MISC(w->wclass.pin.config) & 1) != 0) {
768				device_printf(devinfo->dev,
769				    "No presence detection support at nid %d\n",
770				    w->nid);
771			} else {
772				if (w->unsol < 0)
773					poll = 1;
774				HDA_BOOTVERBOSE(
775					device_printf(devinfo->dev,
776					    "Headphones redirection for "
777					    "association %d nid=%d using %s.\n",
778					    w->bindas, w->nid,
779					    (w->unsol < 0) ? "polling" :
780					    "unsolicited responses");
781				);
782			}
783		}
784		hdaa_presence_handler(w);
785		if (!HDA_PARAM_PIN_CAP_DP(w->wclass.pin.cap) &&
786		    !HDA_PARAM_PIN_CAP_HDMI(w->wclass.pin.cap))
787			continue;
788		hdaa_eld_handler(w);
789	}
790	if (poll) {
791		callout_reset(&devinfo->poll_jack, 1,
792		    hdaa_jack_poll_callback, devinfo);
793	}
794}
795
796static void
797hdaa_sense_deinit(struct hdaa_devinfo *devinfo)
798{
799	struct hdaa_widget *w;
800	int i;
801
802	callout_stop(&devinfo->poll_jack);
803	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
804		w = hdaa_widget_get(devinfo, i);
805		if (w == NULL || w->enable == 0 || w->type !=
806		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
807			continue;
808		if (w->unsol < 0)
809			continue;
810		hda_command(devinfo->dev,
811		    HDA_CMD_SET_UNSOLICITED_RESPONSE(0, w->nid, 0));
812		HDAC_UNSOL_FREE(
813		    device_get_parent(devinfo->dev), devinfo->dev,
814		    w->unsol);
815		w->unsol = -1;
816	}
817}
818
819uint32_t
820hdaa_widget_pin_patch(uint32_t config, const char *str)
821{
822	char buf[256];
823	char *key, *value, *rest, *bad;
824	int ival, i;
825
826	strlcpy(buf, str, sizeof(buf));
827	rest = buf;
828	while ((key = strsep(&rest, "=")) != NULL) {
829		value = strsep(&rest, " \t");
830		if (value == NULL)
831			break;
832		ival = strtol(value, &bad, 10);
833		if (strcmp(key, "seq") == 0) {
834			config &= ~HDA_CONFIG_DEFAULTCONF_SEQUENCE_MASK;
835			config |= ((ival << HDA_CONFIG_DEFAULTCONF_SEQUENCE_SHIFT) &
836			    HDA_CONFIG_DEFAULTCONF_SEQUENCE_MASK);
837		} else if (strcmp(key, "as") == 0) {
838			config &= ~HDA_CONFIG_DEFAULTCONF_ASSOCIATION_MASK;
839			config |= ((ival << HDA_CONFIG_DEFAULTCONF_ASSOCIATION_SHIFT) &
840			    HDA_CONFIG_DEFAULTCONF_ASSOCIATION_MASK);
841		} else if (strcmp(key, "misc") == 0) {
842			config &= ~HDA_CONFIG_DEFAULTCONF_MISC_MASK;
843			config |= ((ival << HDA_CONFIG_DEFAULTCONF_MISC_SHIFT) &
844			    HDA_CONFIG_DEFAULTCONF_MISC_MASK);
845		} else if (strcmp(key, "color") == 0) {
846			config &= ~HDA_CONFIG_DEFAULTCONF_COLOR_MASK;
847			if (bad[0] == 0) {
848				config |= ((ival << HDA_CONFIG_DEFAULTCONF_COLOR_SHIFT) &
849				    HDA_CONFIG_DEFAULTCONF_COLOR_MASK);
850			}
851			for (i = 0; i < 16; i++) {
852				if (strcasecmp(HDA_COLORS[i], value) == 0) {
853					config |= (i << HDA_CONFIG_DEFAULTCONF_COLOR_SHIFT);
854					break;
855				}
856			}
857		} else if (strcmp(key, "ctype") == 0) {
858			config &= ~HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_MASK;
859			if (bad[0] == 0) {
860			config |= ((ival << HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_SHIFT) &
861			    HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_MASK);
862			}
863			for (i = 0; i < 16; i++) {
864				if (strcasecmp(HDA_CONNECTORS[i], value) == 0) {
865					config |= (i << HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE_SHIFT);
866					break;
867				}
868			}
869		} else if (strcmp(key, "device") == 0) {
870			config &= ~HDA_CONFIG_DEFAULTCONF_DEVICE_MASK;
871			if (bad[0] == 0) {
872				config |= ((ival << HDA_CONFIG_DEFAULTCONF_DEVICE_SHIFT) &
873				    HDA_CONFIG_DEFAULTCONF_DEVICE_MASK);
874				continue;
875			}
876			for (i = 0; i < 16; i++) {
877				if (strcasecmp(HDA_DEVS[i], value) == 0) {
878					config |= (i << HDA_CONFIG_DEFAULTCONF_DEVICE_SHIFT);
879					break;
880				}
881			}
882		} else if (strcmp(key, "loc") == 0) {
883			config &= ~HDA_CONFIG_DEFAULTCONF_LOCATION_MASK;
884			if (bad[0] == 0) {
885				config |= ((ival << HDA_CONFIG_DEFAULTCONF_LOCATION_SHIFT) &
886				    HDA_CONFIG_DEFAULTCONF_LOCATION_MASK);
887				continue;
888			}
889			for (i = 0; i < 64; i++) {
890				if (strcasecmp(HDA_LOCS[i], value) == 0) {
891					config |= (i << HDA_CONFIG_DEFAULTCONF_LOCATION_SHIFT);
892					break;
893				}
894			}
895		} else if (strcmp(key, "conn") == 0) {
896			config &= ~HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK;
897			if (bad[0] == 0) {
898				config |= ((ival << HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_SHIFT) &
899				    HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK);
900				continue;
901			}
902			for (i = 0; i < 4; i++) {
903				if (strcasecmp(HDA_CONNS[i], value) == 0) {
904					config |= (i << HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_SHIFT);
905					break;
906				}
907			}
908		}
909	}
910	return (config);
911}
912
913uint32_t
914hdaa_gpio_patch(uint32_t gpio, const char *str)
915{
916	char buf[256];
917	char *key, *value, *rest;
918	int ikey, i;
919
920	strlcpy(buf, str, sizeof(buf));
921	rest = buf;
922	while ((key = strsep(&rest, "=")) != NULL) {
923		value = strsep(&rest, " \t");
924		if (value == NULL)
925			break;
926		ikey = strtol(key, NULL, 10);
927		if (ikey < 0 || ikey > 7)
928			continue;
929		for (i = 0; i < 7; i++) {
930			if (strcasecmp(HDA_GPIO_ACTIONS[i], value) == 0) {
931				gpio &= ~HDAA_GPIO_MASK(ikey);
932				gpio |= i << HDAA_GPIO_SHIFT(ikey);
933				break;
934			}
935		}
936	}
937	return (gpio);
938}
939
940static void
941hdaa_local_patch_pin(struct hdaa_widget *w)
942{
943	device_t dev = w->devinfo->dev;
944	const char *res = NULL;
945	uint32_t config, orig;
946	char buf[32];
947
948	config = orig = w->wclass.pin.config;
949	snprintf(buf, sizeof(buf), "cad%u.nid%u.config",
950	    hda_get_codec_id(dev), w->nid);
951	if (resource_string_value(device_get_name(
952	    device_get_parent(device_get_parent(dev))),
953	    device_get_unit(device_get_parent(device_get_parent(dev))),
954	    buf, &res) == 0) {
955		if (strncmp(res, "0x", 2) == 0) {
956			config = strtol(res + 2, NULL, 16);
957		} else {
958			config = hdaa_widget_pin_patch(config, res);
959		}
960	}
961	snprintf(buf, sizeof(buf), "nid%u.config", w->nid);
962	if (resource_string_value(device_get_name(dev), device_get_unit(dev),
963	    buf, &res) == 0) {
964		if (strncmp(res, "0x", 2) == 0) {
965			config = strtol(res + 2, NULL, 16);
966		} else {
967			config = hdaa_widget_pin_patch(config, res);
968		}
969	}
970	HDA_BOOTVERBOSE(
971		if (config != orig)
972			device_printf(w->devinfo->dev,
973			    "Patching pin config nid=%u 0x%08x -> 0x%08x\n",
974			    w->nid, orig, config);
975	);
976	w->wclass.pin.newconf = w->wclass.pin.config = config;
977}
978
979static void
980hdaa_dump_audio_formats_sb(struct sbuf *sb, uint32_t fcap, uint32_t pcmcap)
981{
982	uint32_t cap;
983
984	cap = fcap;
985	if (cap != 0) {
986		sbuf_printf(sb, "     Stream cap: 0x%08x", cap);
987		if (HDA_PARAM_SUPP_STREAM_FORMATS_AC3(cap))
988			sbuf_printf(sb, " AC3");
989		if (HDA_PARAM_SUPP_STREAM_FORMATS_FLOAT32(cap))
990			sbuf_printf(sb, " FLOAT32");
991		if (HDA_PARAM_SUPP_STREAM_FORMATS_PCM(cap))
992			sbuf_printf(sb, " PCM");
993		sbuf_printf(sb, "\n");
994	}
995	cap = pcmcap;
996	if (cap != 0) {
997		sbuf_printf(sb, "        PCM cap: 0x%08x", cap);
998		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8BIT(cap))
999			sbuf_printf(sb, " 8");
1000		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16BIT(cap))
1001			sbuf_printf(sb, " 16");
1002		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(cap))
1003			sbuf_printf(sb, " 20");
1004		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(cap))
1005			sbuf_printf(sb, " 24");
1006		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(cap))
1007			sbuf_printf(sb, " 32");
1008		sbuf_printf(sb, " bits,");
1009		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8KHZ(cap))
1010			sbuf_printf(sb, " 8");
1011		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_11KHZ(cap))
1012			sbuf_printf(sb, " 11");
1013		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16KHZ(cap))
1014			sbuf_printf(sb, " 16");
1015		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_22KHZ(cap))
1016			sbuf_printf(sb, " 22");
1017		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32KHZ(cap))
1018			sbuf_printf(sb, " 32");
1019		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_44KHZ(cap))
1020			sbuf_printf(sb, " 44");
1021		sbuf_printf(sb, " 48");
1022		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_88KHZ(cap))
1023			sbuf_printf(sb, " 88");
1024		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_96KHZ(cap))
1025			sbuf_printf(sb, " 96");
1026		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_176KHZ(cap))
1027			sbuf_printf(sb, " 176");
1028		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_192KHZ(cap))
1029			sbuf_printf(sb, " 192");
1030		sbuf_printf(sb, " KHz\n");
1031	}
1032}
1033
1034static void
1035hdaa_dump_pin_sb(struct sbuf *sb, struct hdaa_widget *w)
1036{
1037	uint32_t pincap, conf;
1038
1039	pincap = w->wclass.pin.cap;
1040
1041	sbuf_printf(sb, "        Pin cap: 0x%08x", pincap);
1042	if (HDA_PARAM_PIN_CAP_IMP_SENSE_CAP(pincap))
1043		sbuf_printf(sb, " ISC");
1044	if (HDA_PARAM_PIN_CAP_TRIGGER_REQD(pincap))
1045		sbuf_printf(sb, " TRQD");
1046	if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(pincap))
1047		sbuf_printf(sb, " PDC");
1048	if (HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap))
1049		sbuf_printf(sb, " HP");
1050	if (HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap))
1051		sbuf_printf(sb, " OUT");
1052	if (HDA_PARAM_PIN_CAP_INPUT_CAP(pincap))
1053		sbuf_printf(sb, " IN");
1054	if (HDA_PARAM_PIN_CAP_BALANCED_IO_PINS(pincap))
1055		sbuf_printf(sb, " BAL");
1056	if (HDA_PARAM_PIN_CAP_HDMI(pincap))
1057		sbuf_printf(sb, " HDMI");
1058	if (HDA_PARAM_PIN_CAP_VREF_CTRL(pincap)) {
1059		sbuf_printf(sb, " VREF[");
1060		if (HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap))
1061			sbuf_printf(sb, " 50");
1062		if (HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap))
1063			sbuf_printf(sb, " 80");
1064		if (HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap))
1065			sbuf_printf(sb, " 100");
1066		if (HDA_PARAM_PIN_CAP_VREF_CTRL_GROUND(pincap))
1067			sbuf_printf(sb, " GROUND");
1068		if (HDA_PARAM_PIN_CAP_VREF_CTRL_HIZ(pincap))
1069			sbuf_printf(sb, " HIZ");
1070		sbuf_printf(sb, " ]");
1071	}
1072	if (HDA_PARAM_PIN_CAP_EAPD_CAP(pincap))
1073		sbuf_printf(sb, " EAPD");
1074	if (HDA_PARAM_PIN_CAP_DP(pincap))
1075		sbuf_printf(sb, " DP");
1076	if (HDA_PARAM_PIN_CAP_HBR(pincap))
1077		sbuf_printf(sb, " HBR");
1078	sbuf_printf(sb, "\n");
1079	conf = w->wclass.pin.config;
1080	sbuf_printf(sb, "     Pin config: 0x%08x", conf);
1081	sbuf_printf(sb, " as=%d seq=%d "
1082	    "device=%s conn=%s ctype=%s loc=%s color=%s misc=%d\n",
1083	    HDA_CONFIG_DEFAULTCONF_ASSOCIATION(conf),
1084	    HDA_CONFIG_DEFAULTCONF_SEQUENCE(conf),
1085	    HDA_DEVS[HDA_CONFIG_DEFAULTCONF_DEVICE(conf)],
1086	    HDA_CONNS[HDA_CONFIG_DEFAULTCONF_CONNECTIVITY(conf)],
1087	    HDA_CONNECTORS[HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE(conf)],
1088	    HDA_LOCS[HDA_CONFIG_DEFAULTCONF_LOCATION(conf)],
1089	    HDA_COLORS[HDA_CONFIG_DEFAULTCONF_COLOR(conf)],
1090	    HDA_CONFIG_DEFAULTCONF_MISC(conf));
1091	sbuf_printf(sb, "    Pin control: 0x%08x", w->wclass.pin.ctrl);
1092	if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE)
1093		sbuf_printf(sb, " HP");
1094	if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE)
1095		sbuf_printf(sb, " IN");
1096	if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE)
1097		sbuf_printf(sb, " OUT");
1098	if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) {
1099		if ((w->wclass.pin.ctrl &
1100		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) == 0x03)
1101			sbuf_printf(sb, " HBR");
1102		else if ((w->wclass.pin.ctrl &
1103		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) != 0)
1104			sbuf_printf(sb, " EPTs");
1105	} else {
1106		if ((w->wclass.pin.ctrl &
1107		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) != 0)
1108			sbuf_printf(sb, " VREFs");
1109	}
1110	sbuf_printf(sb, "\n");
1111}
1112
1113static void
1114hdaa_dump_amp_sb(struct sbuf *sb, uint32_t cap, const char *banner)
1115{
1116	int offset, size, step;
1117
1118	offset = HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(cap);
1119	size = HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(cap);
1120	step = HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(cap);
1121	sbuf_printf(sb, "     %s amp: 0x%08x "
1122	    "mute=%d step=%d size=%d offset=%d (%+d/%+ddB)\n",
1123	    banner, cap,
1124	    HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(cap),
1125	    step, size, offset,
1126	    ((0 - offset) * (size + 1)) / 4,
1127	    ((step - offset) * (size + 1)) / 4);
1128}
1129
1130
1131static int
1132hdaa_sysctl_caps(SYSCTL_HANDLER_ARGS)
1133{
1134	struct hdaa_devinfo *devinfo;
1135	struct hdaa_widget *w, *cw;
1136	struct sbuf sb;
1137	char buf[64];
1138	int error, j;
1139
1140	w = (struct hdaa_widget *)oidp->oid_arg1;
1141	devinfo = w->devinfo;
1142	sbuf_new_for_sysctl(&sb, NULL, 256, req);
1143
1144	sbuf_printf(&sb, "%s%s\n", w->name,
1145	    (w->enable == 0) ? " [DISABLED]" : "");
1146	sbuf_printf(&sb, "     Widget cap: 0x%08x",
1147	    w->param.widget_cap);
1148	if (w->param.widget_cap & 0x0ee1) {
1149		if (HDA_PARAM_AUDIO_WIDGET_CAP_LR_SWAP(w->param.widget_cap))
1150		    sbuf_printf(&sb, " LRSWAP");
1151		if (HDA_PARAM_AUDIO_WIDGET_CAP_POWER_CTRL(w->param.widget_cap))
1152		    sbuf_printf(&sb, " PWR");
1153		if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap))
1154		    sbuf_printf(&sb, " DIGITAL");
1155		if (HDA_PARAM_AUDIO_WIDGET_CAP_UNSOL_CAP(w->param.widget_cap))
1156		    sbuf_printf(&sb, " UNSOL");
1157		if (HDA_PARAM_AUDIO_WIDGET_CAP_PROC_WIDGET(w->param.widget_cap))
1158		    sbuf_printf(&sb, " PROC");
1159		if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap))
1160		    sbuf_printf(&sb, " STRIPE(x%d)",
1161			1 << (fls(w->wclass.conv.stripecap) - 1));
1162		j = HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap);
1163		if (j == 1)
1164		    sbuf_printf(&sb, " STEREO");
1165		else if (j > 1)
1166		    sbuf_printf(&sb, " %dCH", j + 1);
1167	}
1168	sbuf_printf(&sb, "\n");
1169	if (w->bindas != -1) {
1170		sbuf_printf(&sb, "    Association: %d (0x%04x)\n",
1171		    w->bindas, w->bindseqmask);
1172	}
1173	if (w->ossmask != 0 || w->ossdev >= 0) {
1174		sbuf_printf(&sb, "            OSS: %s",
1175		    hdaa_audio_ctl_ossmixer_mask2allname(w->ossmask, buf, sizeof(buf)));
1176		if (w->ossdev >= 0)
1177		    sbuf_printf(&sb, " (%s)", ossnames[w->ossdev]);
1178		sbuf_printf(&sb, "\n");
1179	}
1180	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT ||
1181	    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) {
1182		hdaa_dump_audio_formats_sb(&sb,
1183		    w->param.supp_stream_formats,
1184		    w->param.supp_pcm_size_rate);
1185	} else if (w->type ==
1186	    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || w->waspin)
1187		hdaa_dump_pin_sb(&sb, w);
1188	if (w->param.eapdbtl != HDA_INVALID) {
1189		sbuf_printf(&sb, "           EAPD: 0x%08x%s%s%s\n",
1190		    w->param.eapdbtl,
1191		    (w->param.eapdbtl & HDA_CMD_SET_EAPD_BTL_ENABLE_LR_SWAP) ?
1192		     " LRSWAP" : "",
1193		    (w->param.eapdbtl & HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD) ?
1194		     " EAPD" : "",
1195		    (w->param.eapdbtl & HDA_CMD_SET_EAPD_BTL_ENABLE_BTL) ?
1196		     " BTL" : "");
1197	}
1198	if (HDA_PARAM_AUDIO_WIDGET_CAP_OUT_AMP(w->param.widget_cap) &&
1199	    w->param.outamp_cap != 0)
1200		hdaa_dump_amp_sb(&sb, w->param.outamp_cap, "Output");
1201	if (HDA_PARAM_AUDIO_WIDGET_CAP_IN_AMP(w->param.widget_cap) &&
1202	    w->param.inamp_cap != 0)
1203		hdaa_dump_amp_sb(&sb, w->param.inamp_cap, " Input");
1204	if (w->nconns > 0)
1205		sbuf_printf(&sb, "    Connections: %d\n", w->nconns);
1206	for (j = 0; j < w->nconns; j++) {
1207		cw = hdaa_widget_get(devinfo, w->conns[j]);
1208		sbuf_printf(&sb, "          + %s<- nid=%d [%s]",
1209		    (w->connsenable[j] == 0)?"[DISABLED] ":"",
1210		    w->conns[j], (cw == NULL) ? "GHOST!" : cw->name);
1211		if (cw == NULL)
1212			sbuf_printf(&sb, " [UNKNOWN]");
1213		else if (cw->enable == 0)
1214			sbuf_printf(&sb, " [DISABLED]");
1215		if (w->nconns > 1 && w->selconn == j && w->type !=
1216		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
1217			sbuf_printf(&sb, " (selected)");
1218		sbuf_printf(&sb, "\n");
1219	}
1220	error = sbuf_finish(&sb);
1221	sbuf_delete(&sb);
1222	return (error);
1223}
1224
1225static int
1226hdaa_sysctl_config(SYSCTL_HANDLER_ARGS)
1227{
1228	char buf[256];
1229	int error;
1230	uint32_t conf;
1231
1232	conf = *(uint32_t *)oidp->oid_arg1;
1233	snprintf(buf, sizeof(buf), "0x%08x as=%d seq=%d "
1234	    "device=%s conn=%s ctype=%s loc=%s color=%s misc=%d",
1235	    conf,
1236	    HDA_CONFIG_DEFAULTCONF_ASSOCIATION(conf),
1237	    HDA_CONFIG_DEFAULTCONF_SEQUENCE(conf),
1238	    HDA_DEVS[HDA_CONFIG_DEFAULTCONF_DEVICE(conf)],
1239	    HDA_CONNS[HDA_CONFIG_DEFAULTCONF_CONNECTIVITY(conf)],
1240	    HDA_CONNECTORS[HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE(conf)],
1241	    HDA_LOCS[HDA_CONFIG_DEFAULTCONF_LOCATION(conf)],
1242	    HDA_COLORS[HDA_CONFIG_DEFAULTCONF_COLOR(conf)],
1243	    HDA_CONFIG_DEFAULTCONF_MISC(conf));
1244	error = sysctl_handle_string(oidp, buf, sizeof(buf), req);
1245	if (error != 0 || req->newptr == NULL)
1246		return (error);
1247	if (strncmp(buf, "0x", 2) == 0)
1248		conf = strtol(buf + 2, NULL, 16);
1249	else
1250		conf = hdaa_widget_pin_patch(conf, buf);
1251	*(uint32_t *)oidp->oid_arg1 = conf;
1252	return (0);
1253}
1254
1255static void
1256hdaa_config_fetch(const char *str, uint32_t *on, uint32_t *off)
1257{
1258	int i = 0, j, k, len, inv;
1259
1260	for (;;) {
1261		while (str[i] != '\0' &&
1262		    (str[i] == ',' || isspace(str[i]) != 0))
1263			i++;
1264		if (str[i] == '\0')
1265			return;
1266		j = i;
1267		while (str[j] != '\0' &&
1268		    !(str[j] == ',' || isspace(str[j]) != 0))
1269			j++;
1270		len = j - i;
1271		if (len > 2 && strncmp(str + i, "no", 2) == 0)
1272			inv = 2;
1273		else
1274			inv = 0;
1275		for (k = 0; len > inv && k < nitems(hdaa_quirks_tab); k++) {
1276			if (strncmp(str + i + inv,
1277			    hdaa_quirks_tab[k].key, len - inv) != 0)
1278				continue;
1279			if (len - inv != strlen(hdaa_quirks_tab[k].key))
1280				continue;
1281			if (inv == 0) {
1282				*on |= hdaa_quirks_tab[k].value;
1283				*off &= ~hdaa_quirks_tab[k].value;
1284			} else {
1285				*off |= hdaa_quirks_tab[k].value;
1286				*on &= ~hdaa_quirks_tab[k].value;
1287			}
1288			break;
1289		}
1290		i = j;
1291	}
1292}
1293
1294static int
1295hdaa_sysctl_quirks(SYSCTL_HANDLER_ARGS)
1296{
1297	char buf[256];
1298	int error, n = 0, i;
1299	uint32_t quirks, quirks_off;
1300
1301	quirks = *(uint32_t *)oidp->oid_arg1;
1302	buf[0] = 0;
1303	for (i = 0; i < nitems(hdaa_quirks_tab); i++) {
1304		if ((quirks & hdaa_quirks_tab[i].value) != 0)
1305			n += snprintf(buf + n, sizeof(buf) - n, "%s%s",
1306			    n != 0 ? "," : "", hdaa_quirks_tab[i].key);
1307	}
1308	error = sysctl_handle_string(oidp, buf, sizeof(buf), req);
1309	if (error != 0 || req->newptr == NULL)
1310		return (error);
1311	if (strncmp(buf, "0x", 2) == 0)
1312		quirks = strtol(buf + 2, NULL, 16);
1313	else {
1314		quirks = 0;
1315		hdaa_config_fetch(buf, &quirks, &quirks_off);
1316	}
1317	*(uint32_t *)oidp->oid_arg1 = quirks;
1318	return (0);
1319}
1320
1321static void
1322hdaa_local_patch(struct hdaa_devinfo *devinfo)
1323{
1324	struct hdaa_widget *w;
1325	const char *res = NULL;
1326	uint32_t quirks_on = 0, quirks_off = 0, x;
1327	int i;
1328
1329	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
1330		w = hdaa_widget_get(devinfo, i);
1331		if (w == NULL)
1332			continue;
1333		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
1334			hdaa_local_patch_pin(w);
1335	}
1336
1337	if (resource_string_value(device_get_name(devinfo->dev),
1338	    device_get_unit(devinfo->dev), "config", &res) == 0) {
1339		if (res != NULL && strlen(res) > 0)
1340			hdaa_config_fetch(res, &quirks_on, &quirks_off);
1341		devinfo->quirks |= quirks_on;
1342		devinfo->quirks &= ~quirks_off;
1343	}
1344	if (devinfo->newquirks == -1)
1345		devinfo->newquirks = devinfo->quirks;
1346	else
1347		devinfo->quirks = devinfo->newquirks;
1348	HDA_BOOTHVERBOSE(
1349		device_printf(devinfo->dev,
1350		    "Config options: 0x%08x\n", devinfo->quirks);
1351	);
1352
1353	if (resource_string_value(device_get_name(devinfo->dev),
1354	    device_get_unit(devinfo->dev), "gpio_config", &res) == 0) {
1355		if (strncmp(res, "0x", 2) == 0) {
1356			devinfo->gpio = strtol(res + 2, NULL, 16);
1357		} else {
1358			devinfo->gpio = hdaa_gpio_patch(devinfo->gpio, res);
1359		}
1360	}
1361	if (devinfo->newgpio == -1)
1362		devinfo->newgpio = devinfo->gpio;
1363	else
1364		devinfo->gpio = devinfo->newgpio;
1365	if (devinfo->newgpo == -1)
1366		devinfo->newgpo = devinfo->gpo;
1367	else
1368		devinfo->gpo = devinfo->newgpo;
1369	HDA_BOOTHVERBOSE(
1370		device_printf(devinfo->dev, "GPIO config options:");
1371		for (i = 0; i < 7; i++) {
1372			x = (devinfo->gpio & HDAA_GPIO_MASK(i)) >> HDAA_GPIO_SHIFT(i);
1373			if (x != 0)
1374				printf(" %d=%s", i, HDA_GPIO_ACTIONS[x]);
1375		}
1376		printf("\n");
1377	);
1378}
1379
1380static void
1381hdaa_widget_connection_parse(struct hdaa_widget *w)
1382{
1383	uint32_t res;
1384	int i, j, max, ents, entnum;
1385	nid_t nid = w->nid;
1386	nid_t cnid, addcnid, prevcnid;
1387
1388	w->nconns = 0;
1389
1390	res = hda_command(w->devinfo->dev,
1391	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_CONN_LIST_LENGTH));
1392
1393	ents = HDA_PARAM_CONN_LIST_LENGTH_LIST_LENGTH(res);
1394
1395	if (ents < 1)
1396		return;
1397
1398	entnum = HDA_PARAM_CONN_LIST_LENGTH_LONG_FORM(res) ? 2 : 4;
1399	max = (sizeof(w->conns) / sizeof(w->conns[0])) - 1;
1400	prevcnid = 0;
1401
1402#define CONN_RMASK(e)		(1 << ((32 / (e)) - 1))
1403#define CONN_NMASK(e)		(CONN_RMASK(e) - 1)
1404#define CONN_RESVAL(r, e, n)	((r) >> ((32 / (e)) * (n)))
1405#define CONN_RANGE(r, e, n)	(CONN_RESVAL(r, e, n) & CONN_RMASK(e))
1406#define CONN_CNID(r, e, n)	(CONN_RESVAL(r, e, n) & CONN_NMASK(e))
1407
1408	for (i = 0; i < ents; i += entnum) {
1409		res = hda_command(w->devinfo->dev,
1410		    HDA_CMD_GET_CONN_LIST_ENTRY(0, nid, i));
1411		for (j = 0; j < entnum; j++) {
1412			cnid = CONN_CNID(res, entnum, j);
1413			if (cnid == 0) {
1414				if (w->nconns < ents)
1415					device_printf(w->devinfo->dev,
1416					    "WARNING: nid=%d has zero cnid "
1417					    "entnum=%d j=%d index=%d "
1418					    "entries=%d found=%d res=0x%08x\n",
1419					    nid, entnum, j, i,
1420					    ents, w->nconns, res);
1421				else
1422					goto getconns_out;
1423			}
1424			if (cnid < w->devinfo->startnode ||
1425			    cnid >= w->devinfo->endnode) {
1426				HDA_BOOTVERBOSE(
1427					device_printf(w->devinfo->dev,
1428					    "WARNING: nid=%d has cnid outside "
1429					    "of the AFG range j=%d "
1430					    "entnum=%d index=%d res=0x%08x\n",
1431					    nid, j, entnum, i, res);
1432				);
1433			}
1434			if (CONN_RANGE(res, entnum, j) == 0)
1435				addcnid = cnid;
1436			else if (prevcnid == 0 || prevcnid >= cnid) {
1437				device_printf(w->devinfo->dev,
1438				    "WARNING: Invalid child range "
1439				    "nid=%d index=%d j=%d entnum=%d "
1440				    "prevcnid=%d cnid=%d res=0x%08x\n",
1441				    nid, i, j, entnum, prevcnid,
1442				    cnid, res);
1443				addcnid = cnid;
1444			} else
1445				addcnid = prevcnid + 1;
1446			while (addcnid <= cnid) {
1447				if (w->nconns > max) {
1448					device_printf(w->devinfo->dev,
1449					    "Adding %d (nid=%d): "
1450					    "Max connection reached! max=%d\n",
1451					    addcnid, nid, max + 1);
1452					goto getconns_out;
1453				}
1454				w->connsenable[w->nconns] = 1;
1455				w->conns[w->nconns++] = addcnid++;
1456			}
1457			prevcnid = cnid;
1458		}
1459	}
1460
1461getconns_out:
1462	return;
1463}
1464
1465static void
1466hdaa_widget_parse(struct hdaa_widget *w)
1467{
1468	device_t dev = w->devinfo->dev;
1469	uint32_t wcap, cap;
1470	nid_t nid = w->nid;
1471	char buf[64];
1472
1473	w->param.widget_cap = wcap = hda_command(dev,
1474	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_AUDIO_WIDGET_CAP));
1475	w->type = HDA_PARAM_AUDIO_WIDGET_CAP_TYPE(wcap);
1476
1477	hdaa_widget_connection_parse(w);
1478
1479	if (HDA_PARAM_AUDIO_WIDGET_CAP_OUT_AMP(wcap)) {
1480		if (HDA_PARAM_AUDIO_WIDGET_CAP_AMP_OVR(wcap))
1481			w->param.outamp_cap =
1482			    hda_command(dev,
1483			    HDA_CMD_GET_PARAMETER(0, nid,
1484			    HDA_PARAM_OUTPUT_AMP_CAP));
1485		else
1486			w->param.outamp_cap =
1487			    w->devinfo->outamp_cap;
1488	} else
1489		w->param.outamp_cap = 0;
1490
1491	if (HDA_PARAM_AUDIO_WIDGET_CAP_IN_AMP(wcap)) {
1492		if (HDA_PARAM_AUDIO_WIDGET_CAP_AMP_OVR(wcap))
1493			w->param.inamp_cap =
1494			    hda_command(dev,
1495			    HDA_CMD_GET_PARAMETER(0, nid,
1496			    HDA_PARAM_INPUT_AMP_CAP));
1497		else
1498			w->param.inamp_cap =
1499			    w->devinfo->inamp_cap;
1500	} else
1501		w->param.inamp_cap = 0;
1502
1503	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT ||
1504	    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) {
1505		if (HDA_PARAM_AUDIO_WIDGET_CAP_FORMAT_OVR(wcap)) {
1506			cap = hda_command(dev,
1507			    HDA_CMD_GET_PARAMETER(0, nid,
1508			    HDA_PARAM_SUPP_STREAM_FORMATS));
1509			w->param.supp_stream_formats = (cap != 0) ? cap :
1510			    w->devinfo->supp_stream_formats;
1511			cap = hda_command(dev,
1512			    HDA_CMD_GET_PARAMETER(0, nid,
1513			    HDA_PARAM_SUPP_PCM_SIZE_RATE));
1514			w->param.supp_pcm_size_rate = (cap != 0) ? cap :
1515			    w->devinfo->supp_pcm_size_rate;
1516		} else {
1517			w->param.supp_stream_formats =
1518			    w->devinfo->supp_stream_formats;
1519			w->param.supp_pcm_size_rate =
1520			    w->devinfo->supp_pcm_size_rate;
1521		}
1522		if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap)) {
1523			w->wclass.conv.stripecap = hda_command(dev,
1524			    HDA_CMD_GET_STRIPE_CONTROL(0, w->nid)) >> 20;
1525		} else
1526			w->wclass.conv.stripecap = 1;
1527	} else {
1528		w->param.supp_stream_formats = 0;
1529		w->param.supp_pcm_size_rate = 0;
1530	}
1531
1532	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) {
1533		w->wclass.pin.original = w->wclass.pin.newconf =
1534		    w->wclass.pin.config = hda_command(dev,
1535			HDA_CMD_GET_CONFIGURATION_DEFAULT(0, w->nid));
1536		w->wclass.pin.cap = hda_command(dev,
1537		    HDA_CMD_GET_PARAMETER(0, w->nid, HDA_PARAM_PIN_CAP));
1538		w->wclass.pin.ctrl = hda_command(dev,
1539		    HDA_CMD_GET_PIN_WIDGET_CTRL(0, nid));
1540		w->wclass.pin.connected = 2;
1541		if (HDA_PARAM_PIN_CAP_EAPD_CAP(w->wclass.pin.cap)) {
1542			w->param.eapdbtl = hda_command(dev,
1543			    HDA_CMD_GET_EAPD_BTL_ENABLE(0, nid));
1544			w->param.eapdbtl &= 0x7;
1545			w->param.eapdbtl |= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD;
1546		} else
1547			w->param.eapdbtl = HDA_INVALID;
1548	}
1549	w->unsol = -1;
1550
1551	hdaa_unlock(w->devinfo);
1552	snprintf(buf, sizeof(buf), "nid%d", w->nid);
1553	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
1554	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
1555	    buf, CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
1556	    w, 0, hdaa_sysctl_caps, "A", "Node capabilities");
1557	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) {
1558		snprintf(buf, sizeof(buf), "nid%d_config", w->nid);
1559		SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
1560		    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
1561		    buf, CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE,
1562		    &w->wclass.pin.newconf, 0, hdaa_sysctl_config, "A",
1563		    "Current pin configuration");
1564		snprintf(buf, sizeof(buf), "nid%d_original", w->nid);
1565		SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
1566		    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
1567		    buf, CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
1568		    &w->wclass.pin.original, 0, hdaa_sysctl_config, "A",
1569		    "Original pin configuration");
1570	}
1571	hdaa_lock(w->devinfo);
1572}
1573
1574static void
1575hdaa_widget_postprocess(struct hdaa_widget *w)
1576{
1577	const char *typestr;
1578
1579	w->type = HDA_PARAM_AUDIO_WIDGET_CAP_TYPE(w->param.widget_cap);
1580	switch (w->type) {
1581	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT:
1582		typestr = "audio output";
1583		break;
1584	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT:
1585		typestr = "audio input";
1586		break;
1587	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER:
1588		typestr = "audio mixer";
1589		break;
1590	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR:
1591		typestr = "audio selector";
1592		break;
1593	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX:
1594		typestr = "pin";
1595		break;
1596	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_POWER_WIDGET:
1597		typestr = "power widget";
1598		break;
1599	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_VOLUME_WIDGET:
1600		typestr = "volume widget";
1601		break;
1602	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET:
1603		typestr = "beep widget";
1604		break;
1605	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_VENDOR_WIDGET:
1606		typestr = "vendor widget";
1607		break;
1608	default:
1609		typestr = "unknown type";
1610		break;
1611	}
1612	strlcpy(w->name, typestr, sizeof(w->name));
1613
1614	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) {
1615		uint32_t config;
1616		const char *devstr;
1617		int conn, color;
1618
1619		config = w->wclass.pin.config;
1620		devstr = HDA_DEVS[(config & HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) >>
1621		    HDA_CONFIG_DEFAULTCONF_DEVICE_SHIFT];
1622		conn = (config & HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK) >>
1623		    HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_SHIFT;
1624		color = (config & HDA_CONFIG_DEFAULTCONF_COLOR_MASK) >>
1625		    HDA_CONFIG_DEFAULTCONF_COLOR_SHIFT;
1626		strlcat(w->name, ": ", sizeof(w->name));
1627		strlcat(w->name, devstr, sizeof(w->name));
1628		strlcat(w->name, " (", sizeof(w->name));
1629		if (conn == 0 && color != 0 && color != 15) {
1630			strlcat(w->name, HDA_COLORS[color], sizeof(w->name));
1631			strlcat(w->name, " ", sizeof(w->name));
1632		}
1633		strlcat(w->name, HDA_CONNS[conn], sizeof(w->name));
1634		strlcat(w->name, ")", sizeof(w->name));
1635	}
1636}
1637
1638struct hdaa_widget *
1639hdaa_widget_get(struct hdaa_devinfo *devinfo, nid_t nid)
1640{
1641	if (devinfo == NULL || devinfo->widget == NULL ||
1642		    nid < devinfo->startnode || nid >= devinfo->endnode)
1643		return (NULL);
1644	return (&devinfo->widget[nid - devinfo->startnode]);
1645}
1646
1647static void
1648hdaa_audio_ctl_amp_set_internal(struct hdaa_devinfo *devinfo, nid_t nid,
1649					int index, int lmute, int rmute,
1650					int left, int right, int dir)
1651{
1652	uint16_t v = 0;
1653
1654	HDA_BOOTHVERBOSE(
1655		device_printf(devinfo->dev,
1656		    "Setting amplifier nid=%d index=%d %s mute=%d/%d vol=%d/%d\n",
1657		    nid,index,dir ? "in" : "out",lmute,rmute,left,right);
1658	);
1659	if (left != right || lmute != rmute) {
1660		v = (1 << (15 - dir)) | (1 << 13) | (index << 8) |
1661		    (lmute << 7) | left;
1662		hda_command(devinfo->dev,
1663		    HDA_CMD_SET_AMP_GAIN_MUTE(0, nid, v));
1664		v = (1 << (15 - dir)) | (1 << 12) | (index << 8) |
1665		    (rmute << 7) | right;
1666	} else
1667		v = (1 << (15 - dir)) | (3 << 12) | (index << 8) |
1668		    (lmute << 7) | left;
1669
1670	hda_command(devinfo->dev,
1671	    HDA_CMD_SET_AMP_GAIN_MUTE(0, nid, v));
1672}
1673
1674static void
1675hdaa_audio_ctl_amp_set(struct hdaa_audio_ctl *ctl, uint32_t mute,
1676						int left, int right)
1677{
1678	nid_t nid;
1679	int lmute, rmute;
1680
1681	nid = ctl->widget->nid;
1682
1683	/* Save new values if valid. */
1684	if (mute != HDAA_AMP_MUTE_DEFAULT)
1685		ctl->muted = mute;
1686	if (left != HDAA_AMP_VOL_DEFAULT)
1687		ctl->left = left;
1688	if (right != HDAA_AMP_VOL_DEFAULT)
1689		ctl->right = right;
1690	/* Prepare effective values */
1691	if (ctl->forcemute) {
1692		lmute = 1;
1693		rmute = 1;
1694		left = 0;
1695		right = 0;
1696	} else {
1697		lmute = HDAA_AMP_LEFT_MUTED(ctl->muted);
1698		rmute = HDAA_AMP_RIGHT_MUTED(ctl->muted);
1699		left = ctl->left;
1700		right = ctl->right;
1701	}
1702	/* Apply effective values */
1703	if (ctl->dir & HDAA_CTL_OUT)
1704		hdaa_audio_ctl_amp_set_internal(ctl->widget->devinfo, nid, ctl->index,
1705		    lmute, rmute, left, right, 0);
1706	if (ctl->dir & HDAA_CTL_IN)
1707		hdaa_audio_ctl_amp_set_internal(ctl->widget->devinfo, nid, ctl->index,
1708		    lmute, rmute, left, right, 1);
1709}
1710
1711static void
1712hdaa_widget_connection_select(struct hdaa_widget *w, uint8_t index)
1713{
1714	if (w == NULL || w->nconns < 1 || index > (w->nconns - 1))
1715		return;
1716	HDA_BOOTHVERBOSE(
1717		device_printf(w->devinfo->dev,
1718		    "Setting selector nid=%d index=%d\n", w->nid, index);
1719	);
1720	hda_command(w->devinfo->dev,
1721	    HDA_CMD_SET_CONNECTION_SELECT_CONTROL(0, w->nid, index));
1722	w->selconn = index;
1723}
1724
1725/****************************************************************************
1726 * Device Methods
1727 ****************************************************************************/
1728
1729static void *
1730hdaa_channel_init(kobj_t obj, void *data, struct snd_dbuf *b,
1731					struct pcm_channel *c, int dir)
1732{
1733	struct hdaa_chan *ch = data;
1734	struct hdaa_pcm_devinfo *pdevinfo = ch->pdevinfo;
1735	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
1736
1737	hdaa_lock(devinfo);
1738	if (devinfo->quirks & HDAA_QUIRK_FIXEDRATE) {
1739		ch->caps.minspeed = ch->caps.maxspeed = 48000;
1740		ch->pcmrates[0] = 48000;
1741		ch->pcmrates[1] = 0;
1742	}
1743	ch->dir = dir;
1744	ch->b = b;
1745	ch->c = c;
1746	ch->blksz = pdevinfo->chan_size / pdevinfo->chan_blkcnt;
1747	ch->blkcnt = pdevinfo->chan_blkcnt;
1748	hdaa_unlock(devinfo);
1749
1750	if (sndbuf_alloc(ch->b, bus_get_dma_tag(devinfo->dev),
1751	    hda_get_dma_nocache(devinfo->dev) ? BUS_DMA_NOCACHE : 0,
1752	    pdevinfo->chan_size) != 0)
1753		return (NULL);
1754
1755	return (ch);
1756}
1757
1758static int
1759hdaa_channel_setformat(kobj_t obj, void *data, uint32_t format)
1760{
1761	struct hdaa_chan *ch = data;
1762	int i;
1763
1764	for (i = 0; ch->caps.fmtlist[i] != 0; i++) {
1765		if (format == ch->caps.fmtlist[i]) {
1766			ch->fmt = format;
1767			return (0);
1768		}
1769	}
1770
1771	return (EINVAL);
1772}
1773
1774static uint32_t
1775hdaa_channel_setspeed(kobj_t obj, void *data, uint32_t speed)
1776{
1777	struct hdaa_chan *ch = data;
1778	uint32_t spd = 0, threshold;
1779	int i;
1780
1781	/* First look for equal or multiple frequency. */
1782	for (i = 0; ch->pcmrates[i] != 0; i++) {
1783		spd = ch->pcmrates[i];
1784		if (speed != 0 && spd / speed * speed == spd) {
1785			ch->spd = spd;
1786			return (spd);
1787		}
1788	}
1789	/* If no match, just find nearest. */
1790	for (i = 0; ch->pcmrates[i] != 0; i++) {
1791		spd = ch->pcmrates[i];
1792		threshold = spd + ((ch->pcmrates[i + 1] != 0) ?
1793		    ((ch->pcmrates[i + 1] - spd) >> 1) : 0);
1794		if (speed < threshold)
1795			break;
1796	}
1797	ch->spd = spd;
1798	return (spd);
1799}
1800
1801static uint16_t
1802hdaa_stream_format(struct hdaa_chan *ch)
1803{
1804	int i;
1805	uint16_t fmt;
1806
1807	fmt = 0;
1808	if (ch->fmt & AFMT_S16_LE)
1809		fmt |= ch->bit16 << 4;
1810	else if (ch->fmt & AFMT_S32_LE)
1811		fmt |= ch->bit32 << 4;
1812	else
1813		fmt |= 1 << 4;
1814	for (i = 0; i < HDA_RATE_TAB_LEN; i++) {
1815		if (hda_rate_tab[i].valid && ch->spd == hda_rate_tab[i].rate) {
1816			fmt |= hda_rate_tab[i].base;
1817			fmt |= hda_rate_tab[i].mul;
1818			fmt |= hda_rate_tab[i].div;
1819			break;
1820		}
1821	}
1822	fmt |= (AFMT_CHANNEL(ch->fmt) - 1);
1823
1824	return (fmt);
1825}
1826
1827static int
1828hdaa_allowed_stripes(uint16_t fmt)
1829{
1830	static const int bits[8] = { 8, 16, 20, 24, 32, 32, 32, 32 };
1831	int size;
1832
1833	size = bits[(fmt >> 4) & 0x03];
1834	size *= (fmt & 0x0f) + 1;
1835	size *= ((fmt >> 11) & 0x07) + 1;
1836	return (0xffffffffU >> (32 - fls(size / 8)));
1837}
1838
1839static void
1840hdaa_audio_setup(struct hdaa_chan *ch)
1841{
1842	struct hdaa_audio_as *as = &ch->devinfo->as[ch->as];
1843	struct hdaa_widget *w, *wp;
1844	int i, j, k, chn, cchn, totalchn, totalextchn, c;
1845	uint16_t fmt, dfmt;
1846	/* Mapping channel pairs to codec pins/converters. */
1847	const static uint16_t convmap[2][5] =
1848	    /*  1.0     2.0     4.0     5.1     7.1  */
1849	    {{ 0x0010, 0x0001, 0x0201, 0x0231, 0x4231 },	/* no dup. */
1850	     { 0x0010, 0x0001, 0x2201, 0x2231, 0x4231 }};	/* side dup. */
1851	/* Mapping formats to HDMI channel allocations. */
1852	const static uint8_t hdmica[2][8] =
1853	    /*  1     2     3     4     5     6     7     8  */
1854	    {{ 0x02, 0x00, 0x04, 0x08, 0x0a, 0x0e, 0x12, 0x12 }, /* x.0 */
1855	     { 0x01, 0x03, 0x01, 0x03, 0x09, 0x0b, 0x0f, 0x13 }}; /* x.1 */
1856	/* Mapping formats to HDMI channels order. */
1857	const static uint32_t hdmich[2][8] =
1858	    /*  1  /  5     2  /  6     3  /  7     4  /  8  */
1859	    {{ 0xFFFF0F00, 0xFFFFFF10, 0xFFF2FF10, 0xFF32FF10,
1860	       0xFF324F10, 0xF5324F10, 0x54326F10, 0x54326F10 }, /* x.0 */
1861	     { 0xFFFFF000, 0xFFFF0100, 0xFFFFF210, 0xFFFF2310,
1862	       0xFF32F410, 0xFF324510, 0xF6324510, 0x76325410 }}; /* x.1 */
1863	int convmapid = -1;
1864	nid_t nid;
1865	uint8_t csum;
1866
1867	totalchn = AFMT_CHANNEL(ch->fmt);
1868	totalextchn = AFMT_EXTCHANNEL(ch->fmt);
1869	HDA_BOOTHVERBOSE(
1870		device_printf(ch->pdevinfo->dev,
1871		    "PCMDIR_%s: Stream setup fmt=%08x (%d.%d) speed=%d\n",
1872		    (ch->dir == PCMDIR_PLAY) ? "PLAY" : "REC",
1873		    ch->fmt, totalchn - totalextchn, totalextchn, ch->spd);
1874	);
1875	fmt = hdaa_stream_format(ch);
1876
1877	/* Set channels to I/O converters mapping for known speaker setups. */
1878	if ((as->pinset == 0x0007 || as->pinset == 0x0013) || /* Standard 5.1 */
1879	    (as->pinset == 0x0017)) /* Standard 7.1 */
1880		convmapid = (ch->dir == PCMDIR_PLAY);
1881
1882	dfmt = HDA_CMD_SET_DIGITAL_CONV_FMT1_DIGEN;
1883	if (ch->fmt & AFMT_AC3)
1884		dfmt |= HDA_CMD_SET_DIGITAL_CONV_FMT1_NAUDIO;
1885
1886	chn = 0;
1887	for (i = 0; ch->io[i] != -1; i++) {
1888		w = hdaa_widget_get(ch->devinfo, ch->io[i]);
1889		if (w == NULL)
1890			continue;
1891
1892		/* If HP redirection is enabled, but failed to use same
1893		   DAC, make last DAC to duplicate first one. */
1894		if (as->fakeredir && i == (as->pincnt - 1)) {
1895			c = (ch->sid << 4);
1896		} else {
1897			/* Map channels to I/O converters, if set. */
1898			if (convmapid >= 0)
1899				chn = (((convmap[convmapid][totalchn / 2]
1900				    >> i * 4) & 0xf) - 1) * 2;
1901			if (chn < 0 || chn >= totalchn) {
1902				c = 0;
1903			} else {
1904				c = (ch->sid << 4) | chn;
1905			}
1906		}
1907		hda_command(ch->devinfo->dev,
1908		    HDA_CMD_SET_CONV_FMT(0, ch->io[i], fmt));
1909		if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) {
1910			hda_command(ch->devinfo->dev,
1911			    HDA_CMD_SET_DIGITAL_CONV_FMT1(0, ch->io[i], dfmt));
1912		}
1913		hda_command(ch->devinfo->dev,
1914		    HDA_CMD_SET_CONV_STREAM_CHAN(0, ch->io[i], c));
1915		if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap)) {
1916			hda_command(ch->devinfo->dev,
1917			    HDA_CMD_SET_STRIPE_CONTROL(0, w->nid, ch->stripectl));
1918		}
1919		cchn = HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap);
1920		if (cchn > 1 && chn < totalchn) {
1921			cchn = min(cchn, totalchn - chn - 1);
1922			hda_command(ch->devinfo->dev,
1923			    HDA_CMD_SET_CONV_CHAN_COUNT(0, ch->io[i], cchn));
1924		}
1925		HDA_BOOTHVERBOSE(
1926			device_printf(ch->pdevinfo->dev,
1927			    "PCMDIR_%s: Stream setup nid=%d: "
1928			    "fmt=0x%04x, dfmt=0x%04x, chan=0x%04x, "
1929			    "chan_count=0x%02x, stripe=%d\n",
1930			    (ch->dir == PCMDIR_PLAY) ? "PLAY" : "REC",
1931			    ch->io[i], fmt, dfmt, c, cchn, ch->stripectl);
1932		);
1933		for (j = 0; j < 16; j++) {
1934			if (as->dacs[ch->asindex][j] != ch->io[i])
1935				continue;
1936			nid = as->pins[j];
1937			wp = hdaa_widget_get(ch->devinfo, nid);
1938			if (wp == NULL)
1939				continue;
1940			if (!HDA_PARAM_PIN_CAP_DP(wp->wclass.pin.cap) &&
1941			    !HDA_PARAM_PIN_CAP_HDMI(wp->wclass.pin.cap))
1942				continue;
1943
1944			/* Set channel mapping. */
1945			for (k = 0; k < 8; k++) {
1946				hda_command(ch->devinfo->dev,
1947				    HDA_CMD_SET_HDMI_CHAN_SLOT(0, nid,
1948				    (((hdmich[totalextchn == 0 ? 0 : 1][totalchn - 1]
1949				     >> (k * 4)) & 0xf) << 4) | k));
1950			}
1951
1952			/*
1953			 * Enable High Bit Rate (HBR) Encoded Packet Type
1954			 * (EPT), if supported and needed (8ch data).
1955			 */
1956			if (HDA_PARAM_PIN_CAP_HDMI(wp->wclass.pin.cap) &&
1957			    HDA_PARAM_PIN_CAP_HBR(wp->wclass.pin.cap)) {
1958				wp->wclass.pin.ctrl &=
1959				    ~HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK;
1960				if ((ch->fmt & AFMT_AC3) && (cchn == 7))
1961					wp->wclass.pin.ctrl |= 0x03;
1962				hda_command(ch->devinfo->dev,
1963				    HDA_CMD_SET_PIN_WIDGET_CTRL(0, nid,
1964				    wp->wclass.pin.ctrl));
1965			}
1966
1967			/* Stop audio infoframe transmission. */
1968			hda_command(ch->devinfo->dev,
1969			    HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00));
1970			hda_command(ch->devinfo->dev,
1971			    HDA_CMD_SET_HDMI_DIP_XMIT(0, nid, 0x00));
1972
1973			/* Clear audio infoframe buffer. */
1974			hda_command(ch->devinfo->dev,
1975			    HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00));
1976			for (k = 0; k < 32; k++)
1977				hda_command(ch->devinfo->dev,
1978				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x00));
1979
1980			/* Write HDMI/DisplayPort audio infoframe. */
1981			hda_command(ch->devinfo->dev,
1982			    HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00));
1983			if (w->eld != NULL && w->eld_len >= 6 &&
1984			    ((w->eld[5] >> 2) & 0x3) == 1) { /* DisplayPort */
1985				hda_command(ch->devinfo->dev,
1986				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x84));
1987				hda_command(ch->devinfo->dev,
1988				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x1b));
1989				hda_command(ch->devinfo->dev,
1990				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x44));
1991			} else {	/* HDMI */
1992				hda_command(ch->devinfo->dev,
1993				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x84));
1994				hda_command(ch->devinfo->dev,
1995				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x01));
1996				hda_command(ch->devinfo->dev,
1997				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x0a));
1998				csum = 0;
1999				csum -= 0x84 + 0x01 + 0x0a + (totalchn - 1) +
2000				    hdmica[totalextchn == 0 ? 0 : 1][totalchn - 1];
2001				hda_command(ch->devinfo->dev,
2002				    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, csum));
2003			}
2004			hda_command(ch->devinfo->dev,
2005			    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, totalchn - 1));
2006			hda_command(ch->devinfo->dev,
2007			    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x00));
2008			hda_command(ch->devinfo->dev,
2009			    HDA_CMD_SET_HDMI_DIP_DATA(0, nid, 0x00));
2010			hda_command(ch->devinfo->dev,
2011			    HDA_CMD_SET_HDMI_DIP_DATA(0, nid,
2012			    hdmica[totalextchn == 0 ? 0 : 1][totalchn - 1]));
2013
2014			/* Start audio infoframe transmission. */
2015			hda_command(ch->devinfo->dev,
2016			    HDA_CMD_SET_HDMI_DIP_INDEX(0, nid, 0x00));
2017			hda_command(ch->devinfo->dev,
2018			    HDA_CMD_SET_HDMI_DIP_XMIT(0, nid, 0xc0));
2019		}
2020		chn += cchn + 1;
2021	}
2022}
2023
2024/*
2025 * Greatest Common Divisor.
2026 */
2027static unsigned
2028gcd(unsigned a, unsigned b)
2029{
2030	u_int c;
2031
2032	while (b != 0) {
2033		c = a;
2034		a = b;
2035		b = (c % b);
2036	}
2037	return (a);
2038}
2039
2040/*
2041 * Least Common Multiple.
2042 */
2043static unsigned
2044lcm(unsigned a, unsigned b)
2045{
2046
2047	return ((a * b) / gcd(a, b));
2048}
2049
2050static int
2051hdaa_channel_setfragments(kobj_t obj, void *data,
2052					uint32_t blksz, uint32_t blkcnt)
2053{
2054	struct hdaa_chan *ch = data;
2055
2056	blksz -= blksz % lcm(HDA_DMA_ALIGNMENT, sndbuf_getalign(ch->b));
2057
2058	if (blksz > (sndbuf_getmaxsize(ch->b) / HDA_BDL_MIN))
2059		blksz = sndbuf_getmaxsize(ch->b) / HDA_BDL_MIN;
2060	if (blksz < HDA_BLK_MIN)
2061		blksz = HDA_BLK_MIN;
2062	if (blkcnt > HDA_BDL_MAX)
2063		blkcnt = HDA_BDL_MAX;
2064	if (blkcnt < HDA_BDL_MIN)
2065		blkcnt = HDA_BDL_MIN;
2066
2067	while ((blksz * blkcnt) > sndbuf_getmaxsize(ch->b)) {
2068		if ((blkcnt >> 1) >= HDA_BDL_MIN)
2069			blkcnt >>= 1;
2070		else if ((blksz >> 1) >= HDA_BLK_MIN)
2071			blksz >>= 1;
2072		else
2073			break;
2074	}
2075
2076	if ((sndbuf_getblksz(ch->b) != blksz ||
2077	    sndbuf_getblkcnt(ch->b) != blkcnt) &&
2078	    sndbuf_resize(ch->b, blkcnt, blksz) != 0)
2079		device_printf(ch->devinfo->dev, "%s: failed blksz=%u blkcnt=%u\n",
2080		    __func__, blksz, blkcnt);
2081
2082	ch->blksz = sndbuf_getblksz(ch->b);
2083	ch->blkcnt = sndbuf_getblkcnt(ch->b);
2084
2085	return (0);
2086}
2087
2088static uint32_t
2089hdaa_channel_setblocksize(kobj_t obj, void *data, uint32_t blksz)
2090{
2091	struct hdaa_chan *ch = data;
2092
2093	hdaa_channel_setfragments(obj, data, blksz, ch->pdevinfo->chan_blkcnt);
2094
2095	return (ch->blksz);
2096}
2097
2098static void
2099hdaa_channel_stop(struct hdaa_chan *ch)
2100{
2101	struct hdaa_devinfo *devinfo = ch->devinfo;
2102	struct hdaa_widget *w;
2103	int i;
2104
2105	if ((ch->flags & HDAA_CHN_RUNNING) == 0)
2106		return;
2107	ch->flags &= ~HDAA_CHN_RUNNING;
2108	HDAC_STREAM_STOP(device_get_parent(devinfo->dev), devinfo->dev,
2109	    ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid);
2110	for (i = 0; ch->io[i] != -1; i++) {
2111		w = hdaa_widget_get(ch->devinfo, ch->io[i]);
2112		if (w == NULL)
2113			continue;
2114		if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) {
2115			hda_command(devinfo->dev,
2116			    HDA_CMD_SET_DIGITAL_CONV_FMT1(0, ch->io[i], 0));
2117		}
2118		hda_command(devinfo->dev,
2119		    HDA_CMD_SET_CONV_STREAM_CHAN(0, ch->io[i],
2120		    0));
2121	}
2122	HDAC_STREAM_FREE(device_get_parent(devinfo->dev), devinfo->dev,
2123	    ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid);
2124}
2125
2126static int
2127hdaa_channel_start(struct hdaa_chan *ch)
2128{
2129	struct hdaa_devinfo *devinfo = ch->devinfo;
2130	uint32_t fmt;
2131
2132	fmt = hdaa_stream_format(ch);
2133	ch->stripectl = fls(ch->stripecap & hdaa_allowed_stripes(fmt) &
2134	    hda_get_stripes_mask(devinfo->dev)) - 1;
2135	ch->sid = HDAC_STREAM_ALLOC(device_get_parent(devinfo->dev), devinfo->dev,
2136	    ch->dir == PCMDIR_PLAY ? 1 : 0, fmt, ch->stripectl, &ch->dmapos);
2137	if (ch->sid <= 0)
2138		return (EBUSY);
2139	hdaa_audio_setup(ch);
2140	HDAC_STREAM_RESET(device_get_parent(devinfo->dev), devinfo->dev,
2141	    ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid);
2142	HDAC_STREAM_START(device_get_parent(devinfo->dev), devinfo->dev,
2143	    ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid,
2144	    sndbuf_getbufaddr(ch->b), ch->blksz, ch->blkcnt);
2145	ch->flags |= HDAA_CHN_RUNNING;
2146	return (0);
2147}
2148
2149static int
2150hdaa_channel_trigger(kobj_t obj, void *data, int go)
2151{
2152	struct hdaa_chan *ch = data;
2153	int error = 0;
2154
2155	if (!PCMTRIG_COMMON(go))
2156		return (0);
2157
2158	hdaa_lock(ch->devinfo);
2159	switch (go) {
2160	case PCMTRIG_START:
2161		error = hdaa_channel_start(ch);
2162		break;
2163	case PCMTRIG_STOP:
2164	case PCMTRIG_ABORT:
2165		hdaa_channel_stop(ch);
2166		break;
2167	default:
2168		break;
2169	}
2170	hdaa_unlock(ch->devinfo);
2171
2172	return (error);
2173}
2174
2175static uint32_t
2176hdaa_channel_getptr(kobj_t obj, void *data)
2177{
2178	struct hdaa_chan *ch = data;
2179	struct hdaa_devinfo *devinfo = ch->devinfo;
2180	uint32_t ptr;
2181
2182	hdaa_lock(devinfo);
2183	if (ch->dmapos != NULL) {
2184		ptr = *(ch->dmapos);
2185	} else {
2186		ptr = HDAC_STREAM_GETPTR(
2187		    device_get_parent(devinfo->dev), devinfo->dev,
2188		    ch->dir == PCMDIR_PLAY ? 1 : 0, ch->sid);
2189	}
2190	hdaa_unlock(devinfo);
2191
2192	/*
2193	 * Round to available space and force 128 bytes aligment.
2194	 */
2195	ptr %= ch->blksz * ch->blkcnt;
2196	ptr &= HDA_BLK_ALIGN;
2197
2198	return (ptr);
2199}
2200
2201static struct pcmchan_caps *
2202hdaa_channel_getcaps(kobj_t obj, void *data)
2203{
2204	return (&((struct hdaa_chan *)data)->caps);
2205}
2206
2207static kobj_method_t hdaa_channel_methods[] = {
2208	KOBJMETHOD(channel_init,		hdaa_channel_init),
2209	KOBJMETHOD(channel_setformat,		hdaa_channel_setformat),
2210	KOBJMETHOD(channel_setspeed,		hdaa_channel_setspeed),
2211	KOBJMETHOD(channel_setblocksize,	hdaa_channel_setblocksize),
2212	KOBJMETHOD(channel_setfragments,	hdaa_channel_setfragments),
2213	KOBJMETHOD(channel_trigger,		hdaa_channel_trigger),
2214	KOBJMETHOD(channel_getptr,		hdaa_channel_getptr),
2215	KOBJMETHOD(channel_getcaps,		hdaa_channel_getcaps),
2216	KOBJMETHOD_END
2217};
2218CHANNEL_DECLARE(hdaa_channel);
2219
2220static int
2221hdaa_audio_ctl_ossmixer_init(struct snd_mixer *m)
2222{
2223	struct hdaa_pcm_devinfo *pdevinfo = mix_getdevinfo(m);
2224	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2225	struct hdaa_widget *w, *cw;
2226	uint32_t mask, recmask;
2227	int i, j;
2228
2229	hdaa_lock(devinfo);
2230	pdevinfo->mixer = m;
2231
2232	/* Make sure that in case of soft volume it won't stay muted. */
2233	for (i = 0; i < SOUND_MIXER_NRDEVICES; i++) {
2234		pdevinfo->left[i] = 100;
2235		pdevinfo->right[i] = 100;
2236	}
2237
2238	/* Declare volume controls assigned to this association. */
2239	mask = pdevinfo->ossmask;
2240	if (pdevinfo->playas >= 0) {
2241		/* Declate EAPD as ogain control. */
2242		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2243			w = hdaa_widget_get(devinfo, i);
2244			if (w == NULL || w->enable == 0)
2245				continue;
2246			if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX ||
2247			    w->param.eapdbtl == HDA_INVALID ||
2248			    w->bindas != pdevinfo->playas)
2249				continue;
2250			mask |= SOUND_MASK_OGAIN;
2251			break;
2252		}
2253
2254		/* Declare soft PCM volume if needed. */
2255		if ((mask & SOUND_MASK_PCM) == 0 ||
2256		    (devinfo->quirks & HDAA_QUIRK_SOFTPCMVOL) ||
2257		    pdevinfo->minamp[SOUND_MIXER_PCM] ==
2258		     pdevinfo->maxamp[SOUND_MIXER_PCM]) {
2259			mask |= SOUND_MASK_PCM;
2260			pcm_setflags(pdevinfo->dev, pcm_getflags(pdevinfo->dev) | SD_F_SOFTPCMVOL);
2261			HDA_BOOTHVERBOSE(
2262				device_printf(pdevinfo->dev,
2263				    "Forcing Soft PCM volume\n");
2264			);
2265		}
2266
2267		/* Declare master volume if needed. */
2268		if ((mask & SOUND_MASK_VOLUME) == 0) {
2269			mask |= SOUND_MASK_VOLUME;
2270			mix_setparentchild(m, SOUND_MIXER_VOLUME,
2271			    SOUND_MASK_PCM);
2272			mix_setrealdev(m, SOUND_MIXER_VOLUME,
2273			    SOUND_MIXER_NONE);
2274			HDA_BOOTHVERBOSE(
2275				device_printf(pdevinfo->dev,
2276				    "Forcing master volume with PCM\n");
2277			);
2278		}
2279	}
2280
2281	/* Declare record sources available to this association. */
2282	recmask = 0;
2283	if (pdevinfo->recas >= 0) {
2284		for (i = 0; i < 16; i++) {
2285			if (devinfo->as[pdevinfo->recas].dacs[0][i] < 0)
2286				continue;
2287			w = hdaa_widget_get(devinfo,
2288			    devinfo->as[pdevinfo->recas].dacs[0][i]);
2289			if (w == NULL || w->enable == 0)
2290				continue;
2291			for (j = 0; j < w->nconns; j++) {
2292				if (w->connsenable[j] == 0)
2293					continue;
2294				cw = hdaa_widget_get(devinfo, w->conns[j]);
2295				if (cw == NULL || cw->enable == 0)
2296					continue;
2297				if (cw->bindas != pdevinfo->recas &&
2298				    cw->bindas != -2)
2299					continue;
2300				recmask |= cw->ossmask;
2301			}
2302		}
2303	}
2304
2305	recmask &= (1 << SOUND_MIXER_NRDEVICES) - 1;
2306	mask &= (1 << SOUND_MIXER_NRDEVICES) - 1;
2307	pdevinfo->ossmask = mask;
2308
2309	mix_setrecdevs(m, recmask);
2310	mix_setdevs(m, mask);
2311
2312	hdaa_unlock(devinfo);
2313
2314	return (0);
2315}
2316
2317/*
2318 * Update amplification per pdevinfo per ossdev, calculate summary coefficient
2319 * and write it to codec, update *left and *right to reflect remaining error.
2320 */
2321static void
2322hdaa_audio_ctl_dev_set(struct hdaa_audio_ctl *ctl, int ossdev,
2323    int mute, int *left, int *right)
2324{
2325	int i, zleft, zright, sleft, sright, smute, lval, rval;
2326
2327	ctl->devleft[ossdev] = *left;
2328	ctl->devright[ossdev] = *right;
2329	ctl->devmute[ossdev] = mute;
2330	smute = sleft = sright = zleft = zright = 0;
2331	for (i = 0; i < SOUND_MIXER_NRDEVICES; i++) {
2332		sleft += ctl->devleft[i];
2333		sright += ctl->devright[i];
2334		smute |= ctl->devmute[i];
2335		if (i == ossdev)
2336			continue;
2337		zleft += ctl->devleft[i];
2338		zright += ctl->devright[i];
2339	}
2340	lval = QDB2VAL(ctl, sleft);
2341	rval = QDB2VAL(ctl, sright);
2342	hdaa_audio_ctl_amp_set(ctl, smute, lval, rval);
2343	*left -= VAL2QDB(ctl, lval) - VAL2QDB(ctl, QDB2VAL(ctl, zleft));
2344	*right -= VAL2QDB(ctl, rval) - VAL2QDB(ctl, QDB2VAL(ctl, zright));
2345}
2346
2347/*
2348 * Trace signal from source, setting volumes on the way.
2349 */
2350static void
2351hdaa_audio_ctl_source_volume(struct hdaa_pcm_devinfo *pdevinfo,
2352    int ossdev, nid_t nid, int index, int mute, int left, int right, int depth)
2353{
2354	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2355	struct hdaa_widget *w, *wc;
2356	struct hdaa_audio_ctl *ctl;
2357	int i, j, conns = 0;
2358
2359	if (depth > HDA_PARSE_MAXDEPTH)
2360		return;
2361
2362	w = hdaa_widget_get(devinfo, nid);
2363	if (w == NULL || w->enable == 0)
2364		return;
2365
2366	/* Count number of active inputs. */
2367	if (depth > 0) {
2368		for (j = 0; j < w->nconns; j++) {
2369			if (!w->connsenable[j])
2370				continue;
2371			conns++;
2372		}
2373	}
2374
2375	/* If this is not a first step - use input mixer.
2376	   Pins have common input ctl so care must be taken. */
2377	if (depth > 0 && (conns == 1 ||
2378	    w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)) {
2379		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_IN,
2380		    index, 1);
2381		if (ctl)
2382			hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &left, &right);
2383	}
2384
2385	/* If widget has own ossdev - not traverse it.
2386	   It will be traversed on it's own. */
2387	if (w->ossdev >= 0 && depth > 0)
2388		return;
2389
2390	/* We must not traverse pin */
2391	if ((w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT ||
2392	    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) &&
2393	    depth > 0)
2394		return;
2395
2396	/*
2397	 * If signals mixed, we can't assign controls farther.
2398	 * Ignore this on depth zero. Caller must knows why.
2399	 */
2400	if (conns > 1 &&
2401	    (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER ||
2402	     w->selconn != index))
2403		return;
2404
2405	ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_OUT, -1, 1);
2406	if (ctl)
2407		hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &left, &right);
2408
2409	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2410		wc = hdaa_widget_get(devinfo, i);
2411		if (wc == NULL || wc->enable == 0)
2412			continue;
2413		for (j = 0; j < wc->nconns; j++) {
2414			if (wc->connsenable[j] && wc->conns[j] == nid) {
2415				hdaa_audio_ctl_source_volume(pdevinfo, ossdev,
2416				    wc->nid, j, mute, left, right, depth + 1);
2417			}
2418		}
2419	}
2420	return;
2421}
2422
2423/*
2424 * Trace signal from destination, setting volumes on the way.
2425 */
2426static void
2427hdaa_audio_ctl_dest_volume(struct hdaa_pcm_devinfo *pdevinfo,
2428    int ossdev, nid_t nid, int index, int mute, int left, int right, int depth)
2429{
2430	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2431	struct hdaa_audio_as *as = devinfo->as;
2432	struct hdaa_widget *w, *wc;
2433	struct hdaa_audio_ctl *ctl;
2434	int i, j, consumers, cleft, cright;
2435
2436	if (depth > HDA_PARSE_MAXDEPTH)
2437		return;
2438
2439	w = hdaa_widget_get(devinfo, nid);
2440	if (w == NULL || w->enable == 0)
2441		return;
2442
2443	if (depth > 0) {
2444		/* If this node produce output for several consumers,
2445		   we can't touch it. */
2446		consumers = 0;
2447		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2448			wc = hdaa_widget_get(devinfo, i);
2449			if (wc == NULL || wc->enable == 0)
2450				continue;
2451			for (j = 0; j < wc->nconns; j++) {
2452				if (wc->connsenable[j] && wc->conns[j] == nid)
2453					consumers++;
2454			}
2455		}
2456		/* The only exception is if real HP redirection is configured
2457		   and this is a duplication point.
2458		   XXX: Actually exception is not completely correct.
2459		   XXX: Duplication point check is not perfect. */
2460		if ((consumers == 2 && (w->bindas < 0 ||
2461		    as[w->bindas].hpredir < 0 || as[w->bindas].fakeredir ||
2462		    (w->bindseqmask & (1 << 15)) == 0)) ||
2463		    consumers > 2)
2464			return;
2465
2466		/* Else use it's output mixer. */
2467		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid,
2468		    HDAA_CTL_OUT, -1, 1);
2469		if (ctl)
2470			hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &left, &right);
2471	}
2472
2473	/* We must not traverse pin */
2474	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
2475	    depth > 0)
2476		return;
2477
2478	for (i = 0; i < w->nconns; i++) {
2479		if (w->connsenable[i] == 0)
2480			continue;
2481		if (index >= 0 && i != index)
2482			continue;
2483		cleft = left;
2484		cright = right;
2485		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid,
2486		    HDAA_CTL_IN, i, 1);
2487		if (ctl)
2488			hdaa_audio_ctl_dev_set(ctl, ossdev, mute, &cleft, &cright);
2489		hdaa_audio_ctl_dest_volume(pdevinfo, ossdev, w->conns[i], -1,
2490		    mute, cleft, cright, depth + 1);
2491	}
2492}
2493
2494/*
2495 * Set volumes for the specified pdevinfo and ossdev.
2496 */
2497static void
2498hdaa_audio_ctl_dev_volume(struct hdaa_pcm_devinfo *pdevinfo, unsigned dev)
2499{
2500	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2501	struct hdaa_widget *w, *cw;
2502	uint32_t mute;
2503	int lvol, rvol;
2504	int i, j;
2505
2506	mute = 0;
2507	if (pdevinfo->left[dev] == 0) {
2508		mute |= HDAA_AMP_MUTE_LEFT;
2509		lvol = -4000;
2510	} else
2511		lvol = ((pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) *
2512		    pdevinfo->left[dev] + 50) / 100 + pdevinfo->minamp[dev];
2513	if (pdevinfo->right[dev] == 0) {
2514		mute |= HDAA_AMP_MUTE_RIGHT;
2515		rvol = -4000;
2516	} else
2517		rvol = ((pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) *
2518		    pdevinfo->right[dev] + 50) / 100 + pdevinfo->minamp[dev];
2519	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2520		w = hdaa_widget_get(devinfo, i);
2521		if (w == NULL || w->enable == 0)
2522			continue;
2523		if (w->bindas < 0) {
2524			if (pdevinfo->index != 0)
2525				continue;
2526		} else {
2527			if (w->bindas != pdevinfo->playas &&
2528			    w->bindas != pdevinfo->recas)
2529				continue;
2530		}
2531		if (dev == SOUND_MIXER_RECLEV &&
2532		    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) {
2533			hdaa_audio_ctl_dest_volume(pdevinfo, dev,
2534			    w->nid, -1, mute, lvol, rvol, 0);
2535			continue;
2536		}
2537		if (dev == SOUND_MIXER_VOLUME &&
2538		    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
2539		    devinfo->as[w->bindas].dir == HDAA_CTL_OUT) {
2540			hdaa_audio_ctl_dest_volume(pdevinfo, dev,
2541			    w->nid, -1, mute, lvol, rvol, 0);
2542			continue;
2543		}
2544		if (dev == SOUND_MIXER_IGAIN &&
2545		    w->pflags & HDAA_ADC_MONITOR) {
2546			for (j = 0; j < w->nconns; j++) {
2547				if (!w->connsenable[j])
2548				    continue;
2549				cw = hdaa_widget_get(devinfo, w->conns[j]);
2550				if (cw == NULL || cw->enable == 0)
2551				    continue;
2552				if (cw->bindas == -1)
2553				    continue;
2554				if (cw->bindas >= 0 &&
2555				    devinfo->as[cw->bindas].dir != HDAA_CTL_IN)
2556					continue;
2557				hdaa_audio_ctl_dest_volume(pdevinfo, dev,
2558				    w->nid, j, mute, lvol, rvol, 0);
2559			}
2560			continue;
2561		}
2562		if (w->ossdev != dev)
2563			continue;
2564		hdaa_audio_ctl_source_volume(pdevinfo, dev,
2565		    w->nid, -1, mute, lvol, rvol, 0);
2566		if (dev == SOUND_MIXER_IMIX && (w->pflags & HDAA_IMIX_AS_DST))
2567			hdaa_audio_ctl_dest_volume(pdevinfo, dev,
2568			    w->nid, -1, mute, lvol, rvol, 0);
2569	}
2570}
2571
2572/*
2573 * OSS Mixer set method.
2574 */
2575static int
2576hdaa_audio_ctl_ossmixer_set(struct snd_mixer *m, unsigned dev,
2577					unsigned left, unsigned right)
2578{
2579	struct hdaa_pcm_devinfo *pdevinfo = mix_getdevinfo(m);
2580	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2581	struct hdaa_widget *w;
2582	int i;
2583
2584	hdaa_lock(devinfo);
2585
2586	/* Save new values. */
2587	pdevinfo->left[dev] = left;
2588	pdevinfo->right[dev] = right;
2589
2590	/* 'ogain' is the special case implemented with EAPD. */
2591	if (dev == SOUND_MIXER_OGAIN) {
2592		uint32_t orig;
2593		w = NULL;
2594		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2595			w = hdaa_widget_get(devinfo, i);
2596			if (w == NULL || w->enable == 0)
2597				continue;
2598			if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX ||
2599			    w->param.eapdbtl == HDA_INVALID)
2600				continue;
2601			break;
2602		}
2603		if (i >= devinfo->endnode) {
2604			hdaa_unlock(devinfo);
2605			return (-1);
2606		}
2607		orig = w->param.eapdbtl;
2608		if (left == 0)
2609			w->param.eapdbtl &= ~HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD;
2610		else
2611			w->param.eapdbtl |= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD;
2612		if (orig != w->param.eapdbtl) {
2613			uint32_t val;
2614
2615			val = w->param.eapdbtl;
2616			if (devinfo->quirks & HDAA_QUIRK_EAPDINV)
2617				val ^= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD;
2618			hda_command(devinfo->dev,
2619			    HDA_CMD_SET_EAPD_BTL_ENABLE(0, w->nid, val));
2620		}
2621		hdaa_unlock(devinfo);
2622		return (left | (left << 8));
2623	}
2624
2625	/* Recalculate all controls related to this OSS device. */
2626	hdaa_audio_ctl_dev_volume(pdevinfo, dev);
2627
2628	hdaa_unlock(devinfo);
2629	return (left | (right << 8));
2630}
2631
2632/*
2633 * Set mixer settings to our own default values:
2634 * +20dB for mics, -10dB for analog vol, mute for igain, 0dB for others.
2635 */
2636static void
2637hdaa_audio_ctl_set_defaults(struct hdaa_pcm_devinfo *pdevinfo)
2638{
2639	int amp, vol, dev;
2640
2641	for (dev = 0; dev < SOUND_MIXER_NRDEVICES; dev++) {
2642		if ((pdevinfo->ossmask & (1 << dev)) == 0)
2643			continue;
2644
2645		/* If the value was overriden, leave it as is. */
2646		if (resource_int_value(device_get_name(pdevinfo->dev),
2647		    device_get_unit(pdevinfo->dev), ossnames[dev], &vol) == 0)
2648			continue;
2649
2650		vol = -1;
2651		if (dev == SOUND_MIXER_OGAIN)
2652			vol = 100;
2653		else if (dev == SOUND_MIXER_IGAIN)
2654			vol = 0;
2655		else if (dev == SOUND_MIXER_MIC ||
2656		    dev == SOUND_MIXER_MONITOR)
2657			amp = 20 * 4;	/* +20dB */
2658		else if (dev == SOUND_MIXER_VOLUME && !pdevinfo->digital)
2659			amp = -10 * 4;	/* -10dB */
2660		else
2661			amp = 0;
2662		if (vol < 0 &&
2663		    (pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) <= 0) {
2664			vol = 100;
2665		} else if (vol < 0) {
2666			vol = ((amp - pdevinfo->minamp[dev]) * 100 +
2667			    (pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]) / 2) /
2668			    (pdevinfo->maxamp[dev] - pdevinfo->minamp[dev]);
2669			vol = imin(imax(vol, 1), 100);
2670		}
2671		mix_set(pdevinfo->mixer, dev, vol, vol);
2672	}
2673}
2674
2675/*
2676 * Recursively commutate specified record source.
2677 */
2678static uint32_t
2679hdaa_audio_ctl_recsel_comm(struct hdaa_pcm_devinfo *pdevinfo, uint32_t src, nid_t nid, int depth)
2680{
2681	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2682	struct hdaa_widget *w, *cw;
2683	struct hdaa_audio_ctl *ctl;
2684	char buf[64];
2685	int i, muted;
2686	uint32_t res = 0;
2687
2688	if (depth > HDA_PARSE_MAXDEPTH)
2689		return (0);
2690
2691	w = hdaa_widget_get(devinfo, nid);
2692	if (w == NULL || w->enable == 0)
2693		return (0);
2694
2695	for (i = 0; i < w->nconns; i++) {
2696		if (w->connsenable[i] == 0)
2697			continue;
2698		cw = hdaa_widget_get(devinfo, w->conns[i]);
2699		if (cw == NULL || cw->enable == 0 || cw->bindas == -1)
2700			continue;
2701		/* Call recursively to trace signal to it's source if needed. */
2702		if ((src & cw->ossmask) != 0) {
2703			if (cw->ossdev < 0) {
2704				res |= hdaa_audio_ctl_recsel_comm(pdevinfo, src,
2705				    w->conns[i], depth + 1);
2706			} else {
2707				res |= cw->ossmask;
2708			}
2709		}
2710		/* We have two special cases: mixers and others (selectors). */
2711		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) {
2712			ctl = hdaa_audio_ctl_amp_get(devinfo,
2713			    w->nid, HDAA_CTL_IN, i, 1);
2714			if (ctl == NULL)
2715				continue;
2716			/* If we have input control on this node mute them
2717			 * according to requested sources. */
2718			muted = (src & cw->ossmask) ? 0 : 1;
2719			if (muted != ctl->forcemute) {
2720				ctl->forcemute = muted;
2721				hdaa_audio_ctl_amp_set(ctl,
2722				    HDAA_AMP_MUTE_DEFAULT,
2723				    HDAA_AMP_VOL_DEFAULT, HDAA_AMP_VOL_DEFAULT);
2724			}
2725			HDA_BOOTHVERBOSE(
2726				device_printf(pdevinfo->dev,
2727				    "Recsel (%s): nid %d source %d %s\n",
2728				    hdaa_audio_ctl_ossmixer_mask2allname(
2729				    src, buf, sizeof(buf)),
2730				    nid, i, muted?"mute":"unmute");
2731			);
2732		} else {
2733			if (w->nconns == 1)
2734				break;
2735			if ((src & cw->ossmask) == 0)
2736				continue;
2737			/* If we found requested source - select it and exit. */
2738			hdaa_widget_connection_select(w, i);
2739			HDA_BOOTHVERBOSE(
2740				device_printf(pdevinfo->dev,
2741				    "Recsel (%s): nid %d source %d select\n",
2742				    hdaa_audio_ctl_ossmixer_mask2allname(
2743				    src, buf, sizeof(buf)),
2744				    nid, i);
2745			);
2746			break;
2747		}
2748	}
2749	return (res);
2750}
2751
2752static uint32_t
2753hdaa_audio_ctl_ossmixer_setrecsrc(struct snd_mixer *m, uint32_t src)
2754{
2755	struct hdaa_pcm_devinfo *pdevinfo = mix_getdevinfo(m);
2756	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
2757	struct hdaa_widget *w;
2758	struct hdaa_audio_as *as;
2759	struct hdaa_audio_ctl *ctl;
2760	struct hdaa_chan *ch;
2761	int i, j;
2762	uint32_t ret = 0xffffffff;
2763
2764	hdaa_lock(devinfo);
2765	if (pdevinfo->recas < 0) {
2766		hdaa_unlock(devinfo);
2767		return (0);
2768	}
2769	as = &devinfo->as[pdevinfo->recas];
2770
2771	/* For non-mixed associations we always recording everything. */
2772	if (!as->mixed) {
2773		hdaa_unlock(devinfo);
2774		return (mix_getrecdevs(m));
2775	}
2776
2777	/* Commutate requested recsrc for each ADC. */
2778	for (j = 0; j < as->num_chans; j++) {
2779		ch = &devinfo->chans[as->chans[j]];
2780		for (i = 0; ch->io[i] >= 0; i++) {
2781			w = hdaa_widget_get(devinfo, ch->io[i]);
2782			if (w == NULL || w->enable == 0)
2783				continue;
2784			ret &= hdaa_audio_ctl_recsel_comm(pdevinfo, src,
2785			    ch->io[i], 0);
2786		}
2787	}
2788	if (ret == 0xffffffff)
2789		ret = 0;
2790
2791	/*
2792	 * Some controls could be shared. Reset volumes for controls
2793	 * related to previously chosen devices, as they may no longer
2794	 * affect the signal.
2795	 */
2796	i = 0;
2797	while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
2798		if (ctl->enable == 0 ||
2799		    !(ctl->ossmask & pdevinfo->recsrc))
2800			continue;
2801		if (!((pdevinfo->playas >= 0 &&
2802		    ctl->widget->bindas == pdevinfo->playas) ||
2803		    (pdevinfo->recas >= 0 &&
2804		    ctl->widget->bindas == pdevinfo->recas) ||
2805		    (pdevinfo->index == 0 &&
2806		    ctl->widget->bindas == -2)))
2807			continue;
2808		for (j = 0; j < SOUND_MIXER_NRDEVICES; j++) {
2809			if (pdevinfo->recsrc & (1 << j)) {
2810				ctl->devleft[j] = 0;
2811				ctl->devright[j] = 0;
2812				ctl->devmute[j] = 0;
2813			}
2814		}
2815	}
2816
2817	/*
2818	 * Some controls could be shared. Set volumes for controls
2819	 * related to devices selected both previously and now.
2820	 */
2821	for (j = 0; j < SOUND_MIXER_NRDEVICES; j++) {
2822		if ((ret | pdevinfo->recsrc) & (1 << j))
2823			hdaa_audio_ctl_dev_volume(pdevinfo, j);
2824	}
2825
2826	pdevinfo->recsrc = ret;
2827	hdaa_unlock(devinfo);
2828	return (ret);
2829}
2830
2831static kobj_method_t hdaa_audio_ctl_ossmixer_methods[] = {
2832	KOBJMETHOD(mixer_init,		hdaa_audio_ctl_ossmixer_init),
2833	KOBJMETHOD(mixer_set,		hdaa_audio_ctl_ossmixer_set),
2834	KOBJMETHOD(mixer_setrecsrc,	hdaa_audio_ctl_ossmixer_setrecsrc),
2835	KOBJMETHOD_END
2836};
2837MIXER_DECLARE(hdaa_audio_ctl_ossmixer);
2838
2839static void
2840hdaa_dump_gpi(struct hdaa_devinfo *devinfo)
2841{
2842	device_t dev = devinfo->dev;
2843	int i;
2844	uint32_t data, wake, unsol, sticky;
2845
2846	if (HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap) > 0) {
2847		data = hda_command(dev,
2848		    HDA_CMD_GET_GPI_DATA(0, devinfo->nid));
2849		wake = hda_command(dev,
2850		    HDA_CMD_GET_GPI_WAKE_ENABLE_MASK(0, devinfo->nid));
2851		unsol = hda_command(dev,
2852		    HDA_CMD_GET_GPI_UNSOLICITED_ENABLE_MASK(0, devinfo->nid));
2853		sticky = hda_command(dev,
2854		    HDA_CMD_GET_GPI_STICKY_MASK(0, devinfo->nid));
2855		for (i = 0; i < HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap); i++) {
2856			device_printf(dev, " GPI%d:%s%s%s state=%d", i,
2857				    (sticky & (1 << i)) ? " sticky" : "",
2858				    (unsol & (1 << i)) ? " unsol" : "",
2859				    (wake & (1 << i)) ? " wake" : "",
2860				    (data >> i) & 1);
2861		}
2862	}
2863}
2864
2865static void
2866hdaa_dump_gpio(struct hdaa_devinfo *devinfo)
2867{
2868	device_t dev = devinfo->dev;
2869	int i;
2870	uint32_t data, dir, enable, wake, unsol, sticky;
2871
2872	if (HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap) > 0) {
2873		data = hda_command(dev,
2874		    HDA_CMD_GET_GPIO_DATA(0, devinfo->nid));
2875		enable = hda_command(dev,
2876		    HDA_CMD_GET_GPIO_ENABLE_MASK(0, devinfo->nid));
2877		dir = hda_command(dev,
2878		    HDA_CMD_GET_GPIO_DIRECTION(0, devinfo->nid));
2879		wake = hda_command(dev,
2880		    HDA_CMD_GET_GPIO_WAKE_ENABLE_MASK(0, devinfo->nid));
2881		unsol = hda_command(dev,
2882		    HDA_CMD_GET_GPIO_UNSOLICITED_ENABLE_MASK(0, devinfo->nid));
2883		sticky = hda_command(dev,
2884		    HDA_CMD_GET_GPIO_STICKY_MASK(0, devinfo->nid));
2885		for (i = 0; i < HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap); i++) {
2886			device_printf(dev, " GPIO%d: ", i);
2887			if ((enable & (1 << i)) == 0) {
2888				printf("disabled\n");
2889				continue;
2890			}
2891			if ((dir & (1 << i)) == 0) {
2892				printf("input%s%s%s",
2893				    (sticky & (1 << i)) ? " sticky" : "",
2894				    (unsol & (1 << i)) ? " unsol" : "",
2895				    (wake & (1 << i)) ? " wake" : "");
2896			} else
2897				printf("output");
2898			printf(" state=%d\n", (data >> i) & 1);
2899		}
2900	}
2901}
2902
2903static void
2904hdaa_dump_gpo(struct hdaa_devinfo *devinfo)
2905{
2906	device_t dev = devinfo->dev;
2907	int i;
2908	uint32_t data;
2909
2910	if (HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap) > 0) {
2911		data = hda_command(dev,
2912		    HDA_CMD_GET_GPO_DATA(0, devinfo->nid));
2913		for (i = 0; i < HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap); i++) {
2914			device_printf(dev, " GPO%d: state=%d", i,
2915				    (data >> i) & 1);
2916		}
2917	}
2918}
2919
2920static void
2921hdaa_audio_parse(struct hdaa_devinfo *devinfo)
2922{
2923	struct hdaa_widget *w;
2924	uint32_t res;
2925	int i;
2926	nid_t nid;
2927
2928	nid = devinfo->nid;
2929
2930	res = hda_command(devinfo->dev,
2931	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_GPIO_COUNT));
2932	devinfo->gpio_cap = res;
2933
2934	HDA_BOOTVERBOSE(
2935		device_printf(devinfo->dev,
2936		    "NumGPIO=%d NumGPO=%d "
2937		    "NumGPI=%d GPIWake=%d GPIUnsol=%d\n",
2938		    HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap),
2939		    HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap),
2940		    HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap),
2941		    HDA_PARAM_GPIO_COUNT_GPI_WAKE(devinfo->gpio_cap),
2942		    HDA_PARAM_GPIO_COUNT_GPI_UNSOL(devinfo->gpio_cap));
2943		hdaa_dump_gpi(devinfo);
2944		hdaa_dump_gpio(devinfo);
2945		hdaa_dump_gpo(devinfo);
2946	);
2947
2948	res = hda_command(devinfo->dev,
2949	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_SUPP_STREAM_FORMATS));
2950	devinfo->supp_stream_formats = res;
2951
2952	res = hda_command(devinfo->dev,
2953	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_SUPP_PCM_SIZE_RATE));
2954	devinfo->supp_pcm_size_rate = res;
2955
2956	res = hda_command(devinfo->dev,
2957	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_OUTPUT_AMP_CAP));
2958	devinfo->outamp_cap = res;
2959
2960	res = hda_command(devinfo->dev,
2961	    HDA_CMD_GET_PARAMETER(0, nid, HDA_PARAM_INPUT_AMP_CAP));
2962	devinfo->inamp_cap = res;
2963
2964	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2965		w = hdaa_widget_get(devinfo, i);
2966		if (w == NULL)
2967			device_printf(devinfo->dev, "Ghost widget! nid=%d!\n", i);
2968		else {
2969			w->devinfo = devinfo;
2970			w->nid = i;
2971			w->enable = 1;
2972			w->selconn = -1;
2973			w->pflags = 0;
2974			w->ossdev = -1;
2975			w->bindas = -1;
2976			w->param.eapdbtl = HDA_INVALID;
2977			hdaa_widget_parse(w);
2978		}
2979	}
2980}
2981
2982static void
2983hdaa_audio_postprocess(struct hdaa_devinfo *devinfo)
2984{
2985	struct hdaa_widget *w;
2986	int i;
2987
2988	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
2989		w = hdaa_widget_get(devinfo, i);
2990		if (w == NULL)
2991			continue;
2992		hdaa_widget_postprocess(w);
2993	}
2994}
2995
2996static void
2997hdaa_audio_ctl_parse(struct hdaa_devinfo *devinfo)
2998{
2999	struct hdaa_audio_ctl *ctls;
3000	struct hdaa_widget *w, *cw;
3001	int i, j, cnt, max, ocap, icap;
3002	int mute, offset, step, size;
3003
3004	/* XXX This is redundant */
3005	max = 0;
3006	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
3007		w = hdaa_widget_get(devinfo, i);
3008		if (w == NULL || w->enable == 0)
3009			continue;
3010		if (w->param.outamp_cap != 0)
3011			max++;
3012		if (w->param.inamp_cap != 0) {
3013			switch (w->type) {
3014			case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR:
3015			case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER:
3016				for (j = 0; j < w->nconns; j++) {
3017					cw = hdaa_widget_get(devinfo,
3018					    w->conns[j]);
3019					if (cw == NULL || cw->enable == 0)
3020						continue;
3021					max++;
3022				}
3023				break;
3024			default:
3025				max++;
3026				break;
3027			}
3028		}
3029	}
3030	devinfo->ctlcnt = max;
3031
3032	if (max < 1)
3033		return;
3034
3035	ctls = (struct hdaa_audio_ctl *)malloc(
3036	    sizeof(*ctls) * max, M_HDAA, M_ZERO | M_NOWAIT);
3037
3038	if (ctls == NULL) {
3039		/* Blekh! */
3040		device_printf(devinfo->dev, "unable to allocate ctls!\n");
3041		devinfo->ctlcnt = 0;
3042		return;
3043	}
3044
3045	cnt = 0;
3046	for (i = devinfo->startnode; cnt < max && i < devinfo->endnode; i++) {
3047		if (cnt >= max) {
3048			device_printf(devinfo->dev, "%s: Ctl overflow!\n",
3049			    __func__);
3050			break;
3051		}
3052		w = hdaa_widget_get(devinfo, i);
3053		if (w == NULL || w->enable == 0)
3054			continue;
3055		ocap = w->param.outamp_cap;
3056		icap = w->param.inamp_cap;
3057		if (ocap != 0) {
3058			mute = HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(ocap);
3059			step = HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(ocap);
3060			size = HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(ocap);
3061			offset = HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(ocap);
3062			/*if (offset > step) {
3063				HDA_BOOTVERBOSE(
3064					device_printf(devinfo->dev,
3065					    "BUGGY outamp: nid=%d "
3066					    "[offset=%d > step=%d]\n",
3067					    w->nid, offset, step);
3068				);
3069				offset = step;
3070			}*/
3071			ctls[cnt].enable = 1;
3072			ctls[cnt].widget = w;
3073			ctls[cnt].mute = mute;
3074			ctls[cnt].step = step;
3075			ctls[cnt].size = size;
3076			ctls[cnt].offset = offset;
3077			ctls[cnt].left = offset;
3078			ctls[cnt].right = offset;
3079			if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX ||
3080			    w->waspin)
3081				ctls[cnt].ndir = HDAA_CTL_IN;
3082			else
3083				ctls[cnt].ndir = HDAA_CTL_OUT;
3084			ctls[cnt++].dir = HDAA_CTL_OUT;
3085		}
3086
3087		if (icap != 0) {
3088			mute = HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(icap);
3089			step = HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(icap);
3090			size = HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(icap);
3091			offset = HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(icap);
3092			/*if (offset > step) {
3093				HDA_BOOTVERBOSE(
3094					device_printf(devinfo->dev,
3095					    "BUGGY inamp: nid=%d "
3096					    "[offset=%d > step=%d]\n",
3097					    w->nid, offset, step);
3098				);
3099				offset = step;
3100			}*/
3101			switch (w->type) {
3102			case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR:
3103			case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER:
3104				for (j = 0; j < w->nconns; j++) {
3105					if (cnt >= max) {
3106						device_printf(devinfo->dev,
3107						    "%s: Ctl overflow!\n",
3108						    __func__);
3109						break;
3110					}
3111					cw = hdaa_widget_get(devinfo,
3112					    w->conns[j]);
3113					if (cw == NULL || cw->enable == 0)
3114						continue;
3115					ctls[cnt].enable = 1;
3116					ctls[cnt].widget = w;
3117					ctls[cnt].childwidget = cw;
3118					ctls[cnt].index = j;
3119					ctls[cnt].mute = mute;
3120					ctls[cnt].step = step;
3121					ctls[cnt].size = size;
3122					ctls[cnt].offset = offset;
3123					ctls[cnt].left = offset;
3124					ctls[cnt].right = offset;
3125				ctls[cnt].ndir = HDAA_CTL_IN;
3126					ctls[cnt++].dir = HDAA_CTL_IN;
3127				}
3128				break;
3129			default:
3130				if (cnt >= max) {
3131					device_printf(devinfo->dev,
3132					    "%s: Ctl overflow!\n",
3133					    __func__);
3134					break;
3135				}
3136				ctls[cnt].enable = 1;
3137				ctls[cnt].widget = w;
3138				ctls[cnt].mute = mute;
3139				ctls[cnt].step = step;
3140				ctls[cnt].size = size;
3141				ctls[cnt].offset = offset;
3142				ctls[cnt].left = offset;
3143				ctls[cnt].right = offset;
3144				if (w->type ==
3145				    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
3146					ctls[cnt].ndir = HDAA_CTL_OUT;
3147				else
3148					ctls[cnt].ndir = HDAA_CTL_IN;
3149				ctls[cnt++].dir = HDAA_CTL_IN;
3150				break;
3151			}
3152		}
3153	}
3154
3155	devinfo->ctl = ctls;
3156}
3157
3158static void
3159hdaa_audio_as_parse(struct hdaa_devinfo *devinfo)
3160{
3161	struct hdaa_audio_as *as;
3162	struct hdaa_widget *w;
3163	int i, j, cnt, max, type, dir, assoc, seq, first, hpredir;
3164
3165	/* Count present associations */
3166	max = 0;
3167	for (j = 1; j < 16; j++) {
3168		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
3169			w = hdaa_widget_get(devinfo, i);
3170			if (w == NULL || w->enable == 0)
3171				continue;
3172			if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
3173				continue;
3174			if (HDA_CONFIG_DEFAULTCONF_ASSOCIATION(w->wclass.pin.config)
3175			    != j)
3176				continue;
3177			max++;
3178			if (j != 15)  /* There could be many 1-pin assocs #15 */
3179				break;
3180		}
3181	}
3182
3183	devinfo->ascnt = max;
3184
3185	if (max < 1)
3186		return;
3187
3188	as = (struct hdaa_audio_as *)malloc(
3189	    sizeof(*as) * max, M_HDAA, M_ZERO | M_NOWAIT);
3190
3191	if (as == NULL) {
3192		/* Blekh! */
3193		device_printf(devinfo->dev, "unable to allocate assocs!\n");
3194		devinfo->ascnt = 0;
3195		return;
3196	}
3197
3198	for (i = 0; i < max; i++) {
3199		as[i].hpredir = -1;
3200		as[i].digital = 0;
3201		as[i].num_chans = 1;
3202		as[i].location = -1;
3203	}
3204
3205	/* Scan associations skipping as=0. */
3206	cnt = 0;
3207	for (j = 1; j < 16 && cnt < max; j++) {
3208		first = 16;
3209		hpredir = 0;
3210		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
3211			w = hdaa_widget_get(devinfo, i);
3212			if (w == NULL || w->enable == 0)
3213				continue;
3214			if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
3215				continue;
3216			assoc = HDA_CONFIG_DEFAULTCONF_ASSOCIATION(w->wclass.pin.config);
3217			seq = HDA_CONFIG_DEFAULTCONF_SEQUENCE(w->wclass.pin.config);
3218			if (assoc != j) {
3219				continue;
3220			}
3221			KASSERT(cnt < max,
3222			    ("%s: Associations owerflow (%d of %d)",
3223			    __func__, cnt, max));
3224			type = w->wclass.pin.config &
3225			    HDA_CONFIG_DEFAULTCONF_DEVICE_MASK;
3226			/* Get pin direction. */
3227			if (type == HDA_CONFIG_DEFAULTCONF_DEVICE_LINE_OUT ||
3228			    type == HDA_CONFIG_DEFAULTCONF_DEVICE_SPEAKER ||
3229			    type == HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT ||
3230			    type == HDA_CONFIG_DEFAULTCONF_DEVICE_SPDIF_OUT ||
3231			    type == HDA_CONFIG_DEFAULTCONF_DEVICE_DIGITAL_OTHER_OUT)
3232				dir = HDAA_CTL_OUT;
3233			else
3234				dir = HDAA_CTL_IN;
3235			/* If this is a first pin - create new association. */
3236			if (as[cnt].pincnt == 0) {
3237				as[cnt].enable = 1;
3238				as[cnt].index = j;
3239				as[cnt].dir = dir;
3240			}
3241			if (seq < first)
3242				first = seq;
3243			/* Check association correctness. */
3244			if (as[cnt].pins[seq] != 0) {
3245				device_printf(devinfo->dev, "%s: Duplicate pin %d (%d) "
3246				    "in association %d! Disabling association.\n",
3247				    __func__, seq, w->nid, j);
3248				as[cnt].enable = 0;
3249			}
3250			if (dir != as[cnt].dir) {
3251				device_printf(devinfo->dev, "%s: Pin %d has wrong "
3252				    "direction for association %d! Disabling "
3253				    "association.\n",
3254				    __func__, w->nid, j);
3255				as[cnt].enable = 0;
3256			}
3257			if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) {
3258				as[cnt].digital |= 0x1;
3259				if (HDA_PARAM_PIN_CAP_HDMI(w->wclass.pin.cap))
3260					as[cnt].digital |= 0x2;
3261				if (HDA_PARAM_PIN_CAP_DP(w->wclass.pin.cap))
3262					as[cnt].digital |= 0x4;
3263			}
3264			if (as[cnt].location == -1) {
3265				as[cnt].location =
3266				    HDA_CONFIG_DEFAULTCONF_LOCATION(w->wclass.pin.config);
3267			} else if (as[cnt].location !=
3268			    HDA_CONFIG_DEFAULTCONF_LOCATION(w->wclass.pin.config)) {
3269				as[cnt].location = -2;
3270			}
3271			/* Headphones with seq=15 may mean redirection. */
3272			if (type == HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT &&
3273			    seq == 15)
3274				hpredir = 1;
3275			as[cnt].pins[seq] = w->nid;
3276			as[cnt].pincnt++;
3277			/* Association 15 is a multiple unassociated pins. */
3278			if (j == 15)
3279				cnt++;
3280		}
3281		if (j != 15 && as[cnt].pincnt > 0) {
3282			if (hpredir && as[cnt].pincnt > 1)
3283				as[cnt].hpredir = first;
3284			cnt++;
3285		}
3286	}
3287	for (i = 0; i < max; i++) {
3288		if (as[i].dir == HDAA_CTL_IN && (as[i].pincnt == 1 ||
3289		    as[i].pins[14] > 0 || as[i].pins[15] > 0))
3290			as[i].mixed = 1;
3291	}
3292	HDA_BOOTVERBOSE(
3293		device_printf(devinfo->dev,
3294		    "%d associations found:\n", max);
3295		for (i = 0; i < max; i++) {
3296			device_printf(devinfo->dev,
3297			    "Association %d (%d) %s%s:\n",
3298			    i, as[i].index, (as[i].dir == HDAA_CTL_IN)?"in":"out",
3299			    as[i].enable?"":" (disabled)");
3300			for (j = 0; j < 16; j++) {
3301				if (as[i].pins[j] == 0)
3302					continue;
3303				device_printf(devinfo->dev,
3304				    " Pin nid=%d seq=%d\n",
3305				    as[i].pins[j], j);
3306			}
3307		}
3308	);
3309
3310	devinfo->as = as;
3311}
3312
3313/*
3314 * Trace path from DAC to pin.
3315 */
3316static nid_t
3317hdaa_audio_trace_dac(struct hdaa_devinfo *devinfo, int as, int seq, nid_t nid,
3318    int dupseq, int min, int only, int depth)
3319{
3320	struct hdaa_widget *w;
3321	int i, im = -1;
3322	nid_t m = 0, ret;
3323
3324	if (depth > HDA_PARSE_MAXDEPTH)
3325		return (0);
3326	w = hdaa_widget_get(devinfo, nid);
3327	if (w == NULL || w->enable == 0)
3328		return (0);
3329	HDA_BOOTHVERBOSE(
3330		if (!only) {
3331			device_printf(devinfo->dev,
3332			    " %*stracing via nid %d\n",
3333				depth + 1, "", w->nid);
3334		}
3335	);
3336	/* Use only unused widgets */
3337	if (w->bindas >= 0 && w->bindas != as) {
3338		HDA_BOOTHVERBOSE(
3339			if (!only) {
3340				device_printf(devinfo->dev,
3341				    " %*snid %d busy by association %d\n",
3342					depth + 1, "", w->nid, w->bindas);
3343			}
3344		);
3345		return (0);
3346	}
3347	if (dupseq < 0) {
3348		if (w->bindseqmask != 0) {
3349			HDA_BOOTHVERBOSE(
3350				if (!only) {
3351					device_printf(devinfo->dev,
3352					    " %*snid %d busy by seqmask %x\n",
3353						depth + 1, "", w->nid, w->bindseqmask);
3354				}
3355			);
3356			return (0);
3357		}
3358	} else {
3359		/* If this is headphones - allow duplicate first pin. */
3360		if (w->bindseqmask != 0 &&
3361		    (w->bindseqmask & (1 << dupseq)) == 0) {
3362			HDA_BOOTHVERBOSE(
3363				device_printf(devinfo->dev,
3364				    " %*snid %d busy by seqmask %x\n",
3365					depth + 1, "", w->nid, w->bindseqmask);
3366			);
3367			return (0);
3368		}
3369	}
3370
3371	switch (w->type) {
3372	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT:
3373		/* Do not traverse input. AD1988 has digital monitor
3374		for which we are not ready. */
3375		break;
3376	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT:
3377		/* If we are tracing HP take only dac of first pin. */
3378		if ((only == 0 || only == w->nid) &&
3379		    (w->nid >= min) && (dupseq < 0 || w->nid ==
3380		    devinfo->as[as].dacs[0][dupseq]))
3381			m = w->nid;
3382		break;
3383	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX:
3384		if (depth > 0)
3385			break;
3386		/* Fall */
3387	default:
3388		/* Find reachable DACs with smallest nid respecting constraints. */
3389		for (i = 0; i < w->nconns; i++) {
3390			if (w->connsenable[i] == 0)
3391				continue;
3392			if (w->selconn != -1 && w->selconn != i)
3393				continue;
3394			if ((ret = hdaa_audio_trace_dac(devinfo, as, seq,
3395			    w->conns[i], dupseq, min, only, depth + 1)) != 0) {
3396				if (m == 0 || ret < m) {
3397					m = ret;
3398					im = i;
3399				}
3400				if (only || dupseq >= 0)
3401					break;
3402			}
3403		}
3404		if (im >= 0 && only && ((w->nconns > 1 &&
3405		    w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) ||
3406		    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR))
3407			w->selconn = im;
3408		break;
3409	}
3410	if (m && only) {
3411		w->bindas = as;
3412		w->bindseqmask |= (1 << seq);
3413	}
3414	HDA_BOOTHVERBOSE(
3415		if (!only) {
3416			device_printf(devinfo->dev,
3417			    " %*snid %d returned %d\n",
3418				depth + 1, "", w->nid, m);
3419		}
3420	);
3421	return (m);
3422}
3423
3424/*
3425 * Trace path from widget to ADC.
3426 */
3427static nid_t
3428hdaa_audio_trace_adc(struct hdaa_devinfo *devinfo, int as, int seq, nid_t nid,
3429    int mixed, int min, int only, int depth, int *length, int onlylength)
3430{
3431	struct hdaa_widget *w, *wc;
3432	int i, j, im, lm = HDA_PARSE_MAXDEPTH;
3433	nid_t m = 0, ret;
3434
3435	if (depth > HDA_PARSE_MAXDEPTH)
3436		return (0);
3437	w = hdaa_widget_get(devinfo, nid);
3438	if (w == NULL || w->enable == 0)
3439		return (0);
3440	HDA_BOOTHVERBOSE(
3441		device_printf(devinfo->dev,
3442		    " %*stracing via nid %d\n",
3443			depth + 1, "", w->nid);
3444	);
3445	/* Use only unused widgets */
3446	if (w->bindas >= 0 && w->bindas != as) {
3447		HDA_BOOTHVERBOSE(
3448			device_printf(devinfo->dev,
3449			    " %*snid %d busy by association %d\n",
3450				depth + 1, "", w->nid, w->bindas);
3451		);
3452		return (0);
3453	}
3454	if (!mixed && w->bindseqmask != 0) {
3455		HDA_BOOTHVERBOSE(
3456			device_printf(devinfo->dev,
3457			    " %*snid %d busy by seqmask %x\n",
3458				depth + 1, "", w->nid, w->bindseqmask);
3459		);
3460		return (0);
3461	}
3462	switch (w->type) {
3463	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT:
3464		if ((only == 0 || only == w->nid) && (w->nid >= min) &&
3465		    (onlylength == 0 || onlylength == depth)) {
3466			m = w->nid;
3467			*length = depth;
3468		}
3469		break;
3470	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX:
3471		if (depth > 0)
3472			break;
3473		/* Fall */
3474	default:
3475		/* Try to find reachable ADCs with specified nid. */
3476		for (j = devinfo->startnode; j < devinfo->endnode; j++) {
3477			wc = hdaa_widget_get(devinfo, j);
3478			if (wc == NULL || wc->enable == 0)
3479				continue;
3480			im = -1;
3481			for (i = 0; i < wc->nconns; i++) {
3482				if (wc->connsenable[i] == 0)
3483					continue;
3484				if (wc->conns[i] != nid)
3485					continue;
3486				if ((ret = hdaa_audio_trace_adc(devinfo, as, seq,
3487				    j, mixed, min, only, depth + 1,
3488				    length, onlylength)) != 0) {
3489					if (m == 0 || ret < m ||
3490					    (ret == m && *length < lm)) {
3491						m = ret;
3492						im = i;
3493						lm = *length;
3494					} else
3495						*length = lm;
3496					if (only)
3497						break;
3498				}
3499			}
3500			if (im >= 0 && only && ((wc->nconns > 1 &&
3501			    wc->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER) ||
3502			    wc->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR))
3503				wc->selconn = im;
3504		}
3505		break;
3506	}
3507	if (m && only) {
3508		w->bindas = as;
3509		w->bindseqmask |= (1 << seq);
3510	}
3511	HDA_BOOTHVERBOSE(
3512		device_printf(devinfo->dev,
3513		    " %*snid %d returned %d\n",
3514			depth + 1, "", w->nid, m);
3515	);
3516	return (m);
3517}
3518
3519/*
3520 * Erase trace path of the specified association.
3521 */
3522static void
3523hdaa_audio_undo_trace(struct hdaa_devinfo *devinfo, int as, int seq)
3524{
3525	struct hdaa_widget *w;
3526	int i;
3527
3528	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
3529		w = hdaa_widget_get(devinfo, i);
3530		if (w == NULL || w->enable == 0)
3531			continue;
3532		if (w->bindas == as) {
3533			if (seq >= 0) {
3534				w->bindseqmask &= ~(1 << seq);
3535				if (w->bindseqmask == 0) {
3536					w->bindas = -1;
3537					w->selconn = -1;
3538				}
3539			} else {
3540				w->bindas = -1;
3541				w->bindseqmask = 0;
3542				w->selconn = -1;
3543			}
3544		}
3545	}
3546}
3547
3548/*
3549 * Trace association path from DAC to output
3550 */
3551static int
3552hdaa_audio_trace_as_out(struct hdaa_devinfo *devinfo, int as, int seq)
3553{
3554	struct hdaa_audio_as *ases = devinfo->as;
3555	int i, hpredir;
3556	nid_t min, res;
3557
3558	/* Find next pin */
3559	for (i = seq; i < 16 && ases[as].pins[i] == 0; i++)
3560		;
3561	/* Check if there is no any left. If so - we succeeded. */
3562	if (i == 16)
3563		return (1);
3564
3565	hpredir = (i == 15 && ases[as].fakeredir == 0)?ases[as].hpredir:-1;
3566	min = 0;
3567	do {
3568		HDA_BOOTHVERBOSE(
3569			device_printf(devinfo->dev,
3570			    " Tracing pin %d with min nid %d",
3571			    ases[as].pins[i], min);
3572			if (hpredir >= 0)
3573				printf(" and hpredir %d", hpredir);
3574			printf("\n");
3575		);
3576		/* Trace this pin taking min nid into account. */
3577		res = hdaa_audio_trace_dac(devinfo, as, i,
3578		    ases[as].pins[i], hpredir, min, 0, 0);
3579		if (res == 0) {
3580			/* If we failed - return to previous and redo it. */
3581			HDA_BOOTVERBOSE(
3582				device_printf(devinfo->dev,
3583				    " Unable to trace pin %d seq %d with min "
3584				    "nid %d",
3585				    ases[as].pins[i], i, min);
3586				if (hpredir >= 0)
3587					printf(" and hpredir %d", hpredir);
3588				printf("\n");
3589			);
3590			return (0);
3591		}
3592		HDA_BOOTVERBOSE(
3593			device_printf(devinfo->dev,
3594			    " Pin %d traced to DAC %d",
3595			    ases[as].pins[i], res);
3596			if (hpredir >= 0)
3597				printf(" and hpredir %d", hpredir);
3598			if (ases[as].fakeredir)
3599				printf(" with fake redirection");
3600			printf("\n");
3601		);
3602		/* Trace again to mark the path */
3603		hdaa_audio_trace_dac(devinfo, as, i,
3604		    ases[as].pins[i], hpredir, min, res, 0);
3605		ases[as].dacs[0][i] = res;
3606		/* We succeeded, so call next. */
3607		if (hdaa_audio_trace_as_out(devinfo, as, i + 1))
3608			return (1);
3609		/* If next failed, we should retry with next min */
3610		hdaa_audio_undo_trace(devinfo, as, i);
3611		ases[as].dacs[0][i] = 0;
3612		min = res + 1;
3613	} while (1);
3614}
3615
3616/*
3617 * Check equivalency of two DACs.
3618 */
3619static int
3620hdaa_audio_dacs_equal(struct hdaa_widget *w1, struct hdaa_widget *w2)
3621{
3622	struct hdaa_devinfo *devinfo = w1->devinfo;
3623	struct hdaa_widget *w3;
3624	int i, j, c1, c2;
3625
3626	if (memcmp(&w1->param, &w2->param, sizeof(w1->param)))
3627		return (0);
3628	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
3629		w3 = hdaa_widget_get(devinfo, i);
3630		if (w3 == NULL || w3->enable == 0)
3631			continue;
3632		if (w3->bindas != w1->bindas)
3633			continue;
3634		if (w3->nconns == 0)
3635			continue;
3636		c1 = c2 = -1;
3637		for (j = 0; j < w3->nconns; j++) {
3638			if (w3->connsenable[j] == 0)
3639				continue;
3640			if (w3->conns[j] == w1->nid)
3641				c1 = j;
3642			if (w3->conns[j] == w2->nid)
3643				c2 = j;
3644		}
3645		if (c1 < 0)
3646			continue;
3647		if (c2 < 0)
3648			return (0);
3649		if (w3->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
3650			return (0);
3651	}
3652	return (1);
3653}
3654
3655/*
3656 * Check equivalency of two ADCs.
3657 */
3658static int
3659hdaa_audio_adcs_equal(struct hdaa_widget *w1, struct hdaa_widget *w2)
3660{
3661	struct hdaa_devinfo *devinfo = w1->devinfo;
3662	struct hdaa_widget *w3, *w4;
3663	int i;
3664
3665	if (memcmp(&w1->param, &w2->param, sizeof(w1->param)))
3666		return (0);
3667	if (w1->nconns != 1 || w2->nconns != 1)
3668		return (0);
3669	if (w1->conns[0] == w2->conns[0])
3670		return (1);
3671	w3 = hdaa_widget_get(devinfo, w1->conns[0]);
3672	if (w3 == NULL || w3->enable == 0)
3673		return (0);
3674	w4 = hdaa_widget_get(devinfo, w2->conns[0]);
3675	if (w4 == NULL || w4->enable == 0)
3676		return (0);
3677	if (w3->bindas == w4->bindas && w3->bindseqmask == w4->bindseqmask)
3678		return (1);
3679	if (w4->bindas >= 0)
3680		return (0);
3681	if (w3->type != w4->type)
3682		return (0);
3683	if (memcmp(&w3->param, &w4->param, sizeof(w3->param)))
3684		return (0);
3685	if (w3->nconns != w4->nconns)
3686		return (0);
3687	for (i = 0; i < w3->nconns; i++) {
3688		if (w3->conns[i] != w4->conns[i])
3689			return (0);
3690	}
3691	return (1);
3692}
3693
3694/*
3695 * Look for equivalent DAC/ADC to implement second channel.
3696 */
3697static void
3698hdaa_audio_adddac(struct hdaa_devinfo *devinfo, int asid)
3699{
3700	struct hdaa_audio_as *as = &devinfo->as[asid];
3701	struct hdaa_widget *w1, *w2;
3702	int i, pos;
3703	nid_t nid1, nid2;
3704
3705	HDA_BOOTVERBOSE(
3706		device_printf(devinfo->dev,
3707		    "Looking for additional %sC "
3708		    "for association %d (%d)\n",
3709		    (as->dir == HDAA_CTL_OUT) ? "DA" : "AD",
3710		    asid, as->index);
3711	);
3712
3713	/* Find the exisitng DAC position and return if found more the one. */
3714	pos = -1;
3715	for (i = 0; i < 16; i++) {
3716		if (as->dacs[0][i] <= 0)
3717			continue;
3718		if (pos >= 0 && as->dacs[0][i] != as->dacs[0][pos])
3719			return;
3720		pos = i;
3721	}
3722
3723	nid1 = as->dacs[0][pos];
3724	w1 = hdaa_widget_get(devinfo, nid1);
3725	w2 = NULL;
3726	for (nid2 = devinfo->startnode; nid2 < devinfo->endnode; nid2++) {
3727		w2 = hdaa_widget_get(devinfo, nid2);
3728		if (w2 == NULL || w2->enable == 0)
3729			continue;
3730		if (w2->bindas >= 0)
3731			continue;
3732		if (w1->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT) {
3733			if (w2->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT)
3734				continue;
3735			if (hdaa_audio_dacs_equal(w1, w2))
3736				break;
3737		} else {
3738			if (w2->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT)
3739				continue;
3740			if (hdaa_audio_adcs_equal(w1, w2))
3741				break;
3742		}
3743	}
3744	if (nid2 >= devinfo->endnode)
3745		return;
3746	w2->bindas = w1->bindas;
3747	w2->bindseqmask = w1->bindseqmask;
3748	if (w1->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) {
3749		HDA_BOOTVERBOSE(
3750			device_printf(devinfo->dev,
3751			    " ADC %d considered equal to ADC %d\n", nid2, nid1);
3752		);
3753		w1 = hdaa_widget_get(devinfo, w1->conns[0]);
3754		w2 = hdaa_widget_get(devinfo, w2->conns[0]);
3755		w2->bindas = w1->bindas;
3756		w2->bindseqmask = w1->bindseqmask;
3757	} else {
3758		HDA_BOOTVERBOSE(
3759			device_printf(devinfo->dev,
3760			    " DAC %d considered equal to DAC %d\n", nid2, nid1);
3761		);
3762	}
3763	for (i = 0; i < 16; i++) {
3764		if (as->dacs[0][i] <= 0)
3765			continue;
3766		as->dacs[as->num_chans][i] = nid2;
3767	}
3768	as->num_chans++;
3769}
3770
3771/*
3772 * Trace association path from input to ADC
3773 */
3774static int
3775hdaa_audio_trace_as_in(struct hdaa_devinfo *devinfo, int as)
3776{
3777	struct hdaa_audio_as *ases = devinfo->as;
3778	struct hdaa_widget *w;
3779	int i, j, k, length;
3780
3781	for (j = devinfo->startnode; j < devinfo->endnode; j++) {
3782		w = hdaa_widget_get(devinfo, j);
3783		if (w == NULL || w->enable == 0)
3784			continue;
3785		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT)
3786			continue;
3787		if (w->bindas >= 0 && w->bindas != as)
3788			continue;
3789
3790		/* Find next pin */
3791		for (i = 0; i < 16; i++) {
3792			if (ases[as].pins[i] == 0)
3793				continue;
3794
3795			HDA_BOOTHVERBOSE(
3796				device_printf(devinfo->dev,
3797				    " Tracing pin %d to ADC %d\n",
3798				    ases[as].pins[i], j);
3799			);
3800			/* Trace this pin taking goal into account. */
3801			if (hdaa_audio_trace_adc(devinfo, as, i,
3802			    ases[as].pins[i], 1, 0, j, 0, &length, 0) == 0) {
3803				/* If we failed - return to previous and redo it. */
3804				HDA_BOOTVERBOSE(
3805					device_printf(devinfo->dev,
3806					    " Unable to trace pin %d to ADC %d, undo traces\n",
3807					    ases[as].pins[i], j);
3808				);
3809				hdaa_audio_undo_trace(devinfo, as, -1);
3810				for (k = 0; k < 16; k++)
3811					ases[as].dacs[0][k] = 0;
3812				break;
3813			}
3814			HDA_BOOTVERBOSE(
3815				device_printf(devinfo->dev,
3816				    " Pin %d traced to ADC %d\n",
3817				    ases[as].pins[i], j);
3818			);
3819			ases[as].dacs[0][i] = j;
3820		}
3821		if (i == 16)
3822			return (1);
3823	}
3824	return (0);
3825}
3826
3827/*
3828 * Trace association path from input to multiple ADCs
3829 */
3830static int
3831hdaa_audio_trace_as_in_mch(struct hdaa_devinfo *devinfo, int as, int seq)
3832{
3833	struct hdaa_audio_as *ases = devinfo->as;
3834	int i, length;
3835	nid_t min, res;
3836
3837	/* Find next pin */
3838	for (i = seq; i < 16 && ases[as].pins[i] == 0; i++)
3839		;
3840	/* Check if there is no any left. If so - we succeeded. */
3841	if (i == 16)
3842		return (1);
3843
3844	min = 0;
3845	do {
3846		HDA_BOOTHVERBOSE(
3847			device_printf(devinfo->dev,
3848			    " Tracing pin %d with min nid %d",
3849			    ases[as].pins[i], min);
3850			printf("\n");
3851		);
3852		/* Trace this pin taking min nid into account. */
3853		res = hdaa_audio_trace_adc(devinfo, as, i,
3854		    ases[as].pins[i], 0, min, 0, 0, &length, 0);
3855		if (res == 0) {
3856			/* If we failed - return to previous and redo it. */
3857			HDA_BOOTVERBOSE(
3858				device_printf(devinfo->dev,
3859				    " Unable to trace pin %d seq %d with min "
3860				    "nid %d",
3861				    ases[as].pins[i], i, min);
3862				printf("\n");
3863			);
3864			return (0);
3865		}
3866		HDA_BOOTVERBOSE(
3867			device_printf(devinfo->dev,
3868			    " Pin %d traced to ADC %d\n",
3869			    ases[as].pins[i], res);
3870		);
3871		/* Trace again to mark the path */
3872		hdaa_audio_trace_adc(devinfo, as, i,
3873		    ases[as].pins[i], 0, min, res, 0, &length, length);
3874		ases[as].dacs[0][i] = res;
3875		/* We succeeded, so call next. */
3876		if (hdaa_audio_trace_as_in_mch(devinfo, as, i + 1))
3877			return (1);
3878		/* If next failed, we should retry with next min */
3879		hdaa_audio_undo_trace(devinfo, as, i);
3880		ases[as].dacs[0][i] = 0;
3881		min = res + 1;
3882	} while (1);
3883}
3884
3885/*
3886 * Trace input monitor path from mixer to output association.
3887 */
3888static int
3889hdaa_audio_trace_to_out(struct hdaa_devinfo *devinfo, nid_t nid, int depth)
3890{
3891	struct hdaa_audio_as *ases = devinfo->as;
3892	struct hdaa_widget *w, *wc;
3893	int i, j;
3894	nid_t res = 0;
3895
3896	if (depth > HDA_PARSE_MAXDEPTH)
3897		return (0);
3898	w = hdaa_widget_get(devinfo, nid);
3899	if (w == NULL || w->enable == 0)
3900		return (0);
3901	HDA_BOOTHVERBOSE(
3902		device_printf(devinfo->dev,
3903		    " %*stracing via nid %d\n",
3904			depth + 1, "", w->nid);
3905	);
3906	/* Use only unused widgets */
3907	if (depth > 0 && w->bindas != -1) {
3908		if (w->bindas < 0 || ases[w->bindas].dir == HDAA_CTL_OUT) {
3909			HDA_BOOTHVERBOSE(
3910				device_printf(devinfo->dev,
3911				    " %*snid %d found output association %d\n",
3912					depth + 1, "", w->nid, w->bindas);
3913			);
3914			if (w->bindas >= 0)
3915				w->pflags |= HDAA_ADC_MONITOR;
3916			return (1);
3917		} else {
3918			HDA_BOOTHVERBOSE(
3919				device_printf(devinfo->dev,
3920				    " %*snid %d busy by input association %d\n",
3921					depth + 1, "", w->nid, w->bindas);
3922			);
3923			return (0);
3924		}
3925	}
3926
3927	switch (w->type) {
3928	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT:
3929		/* Do not traverse input. AD1988 has digital monitor
3930		for which we are not ready. */
3931		break;
3932	case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX:
3933		if (depth > 0)
3934			break;
3935		/* Fall */
3936	default:
3937		/* Try to find reachable ADCs with specified nid. */
3938		for (j = devinfo->startnode; j < devinfo->endnode; j++) {
3939			wc = hdaa_widget_get(devinfo, j);
3940			if (wc == NULL || wc->enable == 0)
3941				continue;
3942			for (i = 0; i < wc->nconns; i++) {
3943				if (wc->connsenable[i] == 0)
3944					continue;
3945				if (wc->conns[i] != nid)
3946					continue;
3947				if (hdaa_audio_trace_to_out(devinfo,
3948				    j, depth + 1) != 0) {
3949					res = 1;
3950					if (wc->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR &&
3951					    wc->selconn == -1)
3952						wc->selconn = i;
3953				}
3954			}
3955		}
3956		break;
3957	}
3958	if (res && w->bindas == -1)
3959		w->bindas = -2;
3960
3961	HDA_BOOTHVERBOSE(
3962		device_printf(devinfo->dev,
3963		    " %*snid %d returned %d\n",
3964			depth + 1, "", w->nid, res);
3965	);
3966	return (res);
3967}
3968
3969/*
3970 * Trace extra associations (beeper, monitor)
3971 */
3972static void
3973hdaa_audio_trace_as_extra(struct hdaa_devinfo *devinfo)
3974{
3975	struct hdaa_audio_as *as = devinfo->as;
3976	struct hdaa_widget *w;
3977	int j;
3978
3979	/* Input monitor */
3980	/* Find mixer associated with input, but supplying signal
3981	   for output associations. Hope it will be input monitor. */
3982	HDA_BOOTVERBOSE(
3983		device_printf(devinfo->dev,
3984		    "Tracing input monitor\n");
3985	);
3986	for (j = devinfo->startnode; j < devinfo->endnode; j++) {
3987		w = hdaa_widget_get(devinfo, j);
3988		if (w == NULL || w->enable == 0)
3989			continue;
3990		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
3991			continue;
3992		if (w->bindas < 0 || as[w->bindas].dir != HDAA_CTL_IN)
3993			continue;
3994		HDA_BOOTVERBOSE(
3995			device_printf(devinfo->dev,
3996			    " Tracing nid %d to out\n",
3997			    j);
3998		);
3999		if (hdaa_audio_trace_to_out(devinfo, w->nid, 0)) {
4000			HDA_BOOTVERBOSE(
4001				device_printf(devinfo->dev,
4002				    " nid %d is input monitor\n",
4003					w->nid);
4004			);
4005			w->ossdev = SOUND_MIXER_IMIX;
4006		}
4007	}
4008
4009	/* Other inputs monitor */
4010	/* Find input pins supplying signal for output associations.
4011	   Hope it will be input monitoring. */
4012	HDA_BOOTVERBOSE(
4013		device_printf(devinfo->dev,
4014		    "Tracing other input monitors\n");
4015	);
4016	for (j = devinfo->startnode; j < devinfo->endnode; j++) {
4017		w = hdaa_widget_get(devinfo, j);
4018		if (w == NULL || w->enable == 0)
4019			continue;
4020		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
4021			continue;
4022		if (w->bindas < 0 || as[w->bindas].dir != HDAA_CTL_IN)
4023			continue;
4024		HDA_BOOTVERBOSE(
4025			device_printf(devinfo->dev,
4026			    " Tracing nid %d to out\n",
4027			    j);
4028		);
4029		if (hdaa_audio_trace_to_out(devinfo, w->nid, 0)) {
4030			HDA_BOOTVERBOSE(
4031				device_printf(devinfo->dev,
4032				    " nid %d is input monitor\n",
4033					w->nid);
4034			);
4035		}
4036	}
4037
4038	/* Beeper */
4039	HDA_BOOTVERBOSE(
4040		device_printf(devinfo->dev,
4041		    "Tracing beeper\n");
4042	);
4043	for (j = devinfo->startnode; j < devinfo->endnode; j++) {
4044		w = hdaa_widget_get(devinfo, j);
4045		if (w == NULL || w->enable == 0)
4046			continue;
4047		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET)
4048			continue;
4049		HDA_BOOTHVERBOSE(
4050			device_printf(devinfo->dev,
4051			    " Tracing nid %d to out\n",
4052			    j);
4053		);
4054		if (hdaa_audio_trace_to_out(devinfo, w->nid, 0)) {
4055			HDA_BOOTVERBOSE(
4056				device_printf(devinfo->dev,
4057				    " nid %d traced to out\n",
4058				    j);
4059			);
4060		}
4061		w->bindas = -2;
4062	}
4063}
4064
4065/*
4066 * Bind assotiations to PCM channels
4067 */
4068static void
4069hdaa_audio_bind_as(struct hdaa_devinfo *devinfo)
4070{
4071	struct hdaa_audio_as *as = devinfo->as;
4072	int i, j, cnt = 0, free;
4073
4074	for (j = 0; j < devinfo->ascnt; j++) {
4075		if (as[j].enable)
4076			cnt += as[j].num_chans;
4077	}
4078	if (devinfo->num_chans == 0) {
4079		devinfo->chans = (struct hdaa_chan *)malloc(
4080		    sizeof(struct hdaa_chan) * cnt,
4081		    M_HDAA, M_ZERO | M_NOWAIT);
4082		if (devinfo->chans == NULL) {
4083			device_printf(devinfo->dev,
4084			    "Channels memory allocation failed!\n");
4085			return;
4086		}
4087	} else {
4088		devinfo->chans = (struct hdaa_chan *)realloc(devinfo->chans,
4089		    sizeof(struct hdaa_chan) * (devinfo->num_chans + cnt),
4090		    M_HDAA, M_ZERO | M_NOWAIT);
4091		if (devinfo->chans == NULL) {
4092			devinfo->num_chans = 0;
4093			device_printf(devinfo->dev,
4094			    "Channels memory allocation failed!\n");
4095			return;
4096		}
4097		/* Fixup relative pointers after realloc */
4098		for (j = 0; j < devinfo->num_chans; j++)
4099			devinfo->chans[j].caps.fmtlist = devinfo->chans[j].fmtlist;
4100	}
4101	free = devinfo->num_chans;
4102	devinfo->num_chans += cnt;
4103
4104	for (j = free; j < free + cnt; j++) {
4105		devinfo->chans[j].devinfo = devinfo;
4106		devinfo->chans[j].as = -1;
4107	}
4108
4109	/* Assign associations in order of their numbers, */
4110	for (j = 0; j < devinfo->ascnt; j++) {
4111		if (as[j].enable == 0)
4112			continue;
4113		for (i = 0; i < as[j].num_chans; i++) {
4114			devinfo->chans[free].as = j;
4115			devinfo->chans[free].asindex = i;
4116			devinfo->chans[free].dir =
4117			    (as[j].dir == HDAA_CTL_IN) ? PCMDIR_REC : PCMDIR_PLAY;
4118			hdaa_pcmchannel_setup(&devinfo->chans[free]);
4119			as[j].chans[i] = free;
4120			free++;
4121		}
4122	}
4123}
4124
4125static void
4126hdaa_audio_disable_nonaudio(struct hdaa_devinfo *devinfo)
4127{
4128	struct hdaa_widget *w;
4129	int i;
4130
4131	/* Disable power and volume widgets. */
4132	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4133		w = hdaa_widget_get(devinfo, i);
4134		if (w == NULL || w->enable == 0)
4135			continue;
4136		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_POWER_WIDGET ||
4137		    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_VOLUME_WIDGET) {
4138			w->enable = 0;
4139			HDA_BOOTHVERBOSE(
4140				device_printf(devinfo->dev,
4141				    " Disabling nid %d due to it's"
4142				    " non-audio type.\n",
4143				    w->nid);
4144			);
4145		}
4146	}
4147}
4148
4149static void
4150hdaa_audio_disable_useless(struct hdaa_devinfo *devinfo)
4151{
4152	struct hdaa_widget *w, *cw;
4153	struct hdaa_audio_ctl *ctl;
4154	int done, found, i, j, k;
4155
4156	/* Disable useless pins. */
4157	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4158		w = hdaa_widget_get(devinfo, i);
4159		if (w == NULL || w->enable == 0)
4160			continue;
4161		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) {
4162			if ((w->wclass.pin.config &
4163			    HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK) ==
4164			    HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_NONE) {
4165				w->enable = 0;
4166				HDA_BOOTHVERBOSE(
4167					device_printf(devinfo->dev,
4168					    " Disabling pin nid %d due"
4169					    " to None connectivity.\n",
4170					    w->nid);
4171				);
4172			} else if ((w->wclass.pin.config &
4173			    HDA_CONFIG_DEFAULTCONF_ASSOCIATION_MASK) == 0) {
4174				w->enable = 0;
4175				HDA_BOOTHVERBOSE(
4176					device_printf(devinfo->dev,
4177					    " Disabling unassociated"
4178					    " pin nid %d.\n",
4179					    w->nid);
4180				);
4181			}
4182		}
4183	}
4184	do {
4185		done = 1;
4186		/* Disable and mute controls for disabled widgets. */
4187		i = 0;
4188		while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
4189			if (ctl->enable == 0)
4190				continue;
4191			if (ctl->widget->enable == 0 ||
4192			    (ctl->childwidget != NULL &&
4193			    ctl->childwidget->enable == 0)) {
4194				ctl->forcemute = 1;
4195				ctl->muted = HDAA_AMP_MUTE_ALL;
4196				ctl->left = 0;
4197				ctl->right = 0;
4198				ctl->enable = 0;
4199				if (ctl->ndir == HDAA_CTL_IN)
4200					ctl->widget->connsenable[ctl->index] = 0;
4201				done = 0;
4202				HDA_BOOTHVERBOSE(
4203					device_printf(devinfo->dev,
4204					    " Disabling ctl %d nid %d cnid %d due"
4205					    " to disabled widget.\n", i,
4206					    ctl->widget->nid,
4207					    (ctl->childwidget != NULL)?
4208					    ctl->childwidget->nid:-1);
4209				);
4210			}
4211		}
4212		/* Disable useless widgets. */
4213		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4214			w = hdaa_widget_get(devinfo, i);
4215			if (w == NULL || w->enable == 0)
4216				continue;
4217			/* Disable inputs with disabled child widgets. */
4218			for (j = 0; j < w->nconns; j++) {
4219				if (w->connsenable[j]) {
4220					cw = hdaa_widget_get(devinfo, w->conns[j]);
4221					if (cw == NULL || cw->enable == 0) {
4222						w->connsenable[j] = 0;
4223						HDA_BOOTHVERBOSE(
4224							device_printf(devinfo->dev,
4225							    " Disabling nid %d connection %d due"
4226							    " to disabled child widget.\n",
4227							    i, j);
4228						);
4229					}
4230				}
4231			}
4232			if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR &&
4233			    w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
4234				continue;
4235			/* Disable mixers and selectors without inputs. */
4236			found = 0;
4237			for (j = 0; j < w->nconns; j++) {
4238				if (w->connsenable[j]) {
4239					found = 1;
4240					break;
4241				}
4242			}
4243			if (found == 0) {
4244				w->enable = 0;
4245				done = 0;
4246				HDA_BOOTHVERBOSE(
4247					device_printf(devinfo->dev,
4248					    " Disabling nid %d due to all it's"
4249					    " inputs disabled.\n", w->nid);
4250				);
4251			}
4252			/* Disable nodes without consumers. */
4253			if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_SELECTOR &&
4254			    w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
4255				continue;
4256			found = 0;
4257			for (k = devinfo->startnode; k < devinfo->endnode; k++) {
4258				cw = hdaa_widget_get(devinfo, k);
4259				if (cw == NULL || cw->enable == 0)
4260					continue;
4261				for (j = 0; j < cw->nconns; j++) {
4262					if (cw->connsenable[j] && cw->conns[j] == i) {
4263						found = 1;
4264						break;
4265					}
4266				}
4267			}
4268			if (found == 0) {
4269				w->enable = 0;
4270				done = 0;
4271				HDA_BOOTHVERBOSE(
4272					device_printf(devinfo->dev,
4273					    " Disabling nid %d due to all it's"
4274					    " consumers disabled.\n", w->nid);
4275				);
4276			}
4277		}
4278	} while (done == 0);
4279
4280}
4281
4282static void
4283hdaa_audio_disable_unas(struct hdaa_devinfo *devinfo)
4284{
4285	struct hdaa_audio_as *as = devinfo->as;
4286	struct hdaa_widget *w, *cw;
4287	struct hdaa_audio_ctl *ctl;
4288	int i, j, k;
4289
4290	/* Disable unassosiated widgets. */
4291	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4292		w = hdaa_widget_get(devinfo, i);
4293		if (w == NULL || w->enable == 0)
4294			continue;
4295		if (w->bindas == -1) {
4296			w->enable = 0;
4297			HDA_BOOTHVERBOSE(
4298				device_printf(devinfo->dev,
4299				    " Disabling unassociated nid %d.\n",
4300				    w->nid);
4301			);
4302		}
4303	}
4304	/* Disable input connections on input pin and
4305	 * output on output. */
4306	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4307		w = hdaa_widget_get(devinfo, i);
4308		if (w == NULL || w->enable == 0)
4309			continue;
4310		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
4311			continue;
4312		if (w->bindas < 0)
4313			continue;
4314		if (as[w->bindas].dir == HDAA_CTL_IN) {
4315			for (j = 0; j < w->nconns; j++) {
4316				if (w->connsenable[j] == 0)
4317					continue;
4318				w->connsenable[j] = 0;
4319				HDA_BOOTHVERBOSE(
4320					device_printf(devinfo->dev,
4321					    " Disabling connection to input pin "
4322					    "nid %d conn %d.\n",
4323					    i, j);
4324				);
4325			}
4326			ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid,
4327			    HDAA_CTL_IN, -1, 1);
4328			if (ctl && ctl->enable) {
4329				ctl->forcemute = 1;
4330				ctl->muted = HDAA_AMP_MUTE_ALL;
4331				ctl->left = 0;
4332				ctl->right = 0;
4333				ctl->enable = 0;
4334			}
4335		} else {
4336			ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid,
4337			    HDAA_CTL_OUT, -1, 1);
4338			if (ctl && ctl->enable) {
4339				ctl->forcemute = 1;
4340				ctl->muted = HDAA_AMP_MUTE_ALL;
4341				ctl->left = 0;
4342				ctl->right = 0;
4343				ctl->enable = 0;
4344			}
4345			for (k = devinfo->startnode; k < devinfo->endnode; k++) {
4346				cw = hdaa_widget_get(devinfo, k);
4347				if (cw == NULL || cw->enable == 0)
4348					continue;
4349				for (j = 0; j < cw->nconns; j++) {
4350					if (cw->connsenable[j] && cw->conns[j] == i) {
4351						cw->connsenable[j] = 0;
4352						HDA_BOOTHVERBOSE(
4353							device_printf(devinfo->dev,
4354							    " Disabling connection from output pin "
4355							    "nid %d conn %d cnid %d.\n",
4356							    k, j, i);
4357						);
4358						if (cw->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
4359						    cw->nconns > 1)
4360							continue;
4361						ctl = hdaa_audio_ctl_amp_get(devinfo, k,
4362					    HDAA_CTL_IN, j, 1);
4363						if (ctl && ctl->enable) {
4364							ctl->forcemute = 1;
4365							ctl->muted = HDAA_AMP_MUTE_ALL;
4366							ctl->left = 0;
4367							ctl->right = 0;
4368							ctl->enable = 0;
4369						}
4370					}
4371				}
4372			}
4373		}
4374	}
4375}
4376
4377static void
4378hdaa_audio_disable_notselected(struct hdaa_devinfo *devinfo)
4379{
4380	struct hdaa_audio_as *as = devinfo->as;
4381	struct hdaa_widget *w;
4382	int i, j;
4383
4384	/* On playback path we can safely disable all unseleted inputs. */
4385	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4386		w = hdaa_widget_get(devinfo, i);
4387		if (w == NULL || w->enable == 0)
4388			continue;
4389		if (w->nconns <= 1)
4390			continue;
4391		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
4392			continue;
4393		if (w->bindas < 0 || as[w->bindas].dir == HDAA_CTL_IN)
4394			continue;
4395		for (j = 0; j < w->nconns; j++) {
4396			if (w->connsenable[j] == 0)
4397				continue;
4398			if (w->selconn < 0 || w->selconn == j)
4399				continue;
4400			w->connsenable[j] = 0;
4401			HDA_BOOTHVERBOSE(
4402				device_printf(devinfo->dev,
4403				    " Disabling unselected connection "
4404				    "nid %d conn %d.\n",
4405				    i, j);
4406			);
4407		}
4408	}
4409}
4410
4411static void
4412hdaa_audio_disable_crossas(struct hdaa_devinfo *devinfo)
4413{
4414	struct hdaa_audio_as *ases = devinfo->as;
4415	struct hdaa_widget *w, *cw;
4416	struct hdaa_audio_ctl *ctl;
4417	int i, j;
4418
4419	/* Disable crossassociatement and unwanted crosschannel connections. */
4420	/* ... using selectors */
4421	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4422		w = hdaa_widget_get(devinfo, i);
4423		if (w == NULL || w->enable == 0)
4424			continue;
4425		if (w->nconns <= 1)
4426			continue;
4427		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
4428			continue;
4429		/* Allow any -> mix */
4430		if (w->bindas == -2)
4431			continue;
4432		for (j = 0; j < w->nconns; j++) {
4433			if (w->connsenable[j] == 0)
4434				continue;
4435			cw = hdaa_widget_get(devinfo, w->conns[j]);
4436			if (cw == NULL || w->enable == 0)
4437				continue;
4438			/* Allow mix -> out. */
4439			if (cw->bindas == -2 && w->bindas >= 0 &&
4440			    ases[w->bindas].dir == HDAA_CTL_OUT)
4441				continue;
4442			/* Allow mix -> mixed-in. */
4443			if (cw->bindas == -2 && w->bindas >= 0 &&
4444			    ases[w->bindas].mixed)
4445				continue;
4446			/* Allow in -> mix. */
4447			if ((w->pflags & HDAA_ADC_MONITOR) &&
4448			     cw->bindas >= 0 &&
4449			     ases[cw->bindas].dir == HDAA_CTL_IN)
4450				continue;
4451			/* Allow if have common as/seqs. */
4452			if (w->bindas == cw->bindas &&
4453			    (w->bindseqmask & cw->bindseqmask) != 0)
4454				continue;
4455			w->connsenable[j] = 0;
4456			HDA_BOOTHVERBOSE(
4457				device_printf(devinfo->dev,
4458				    " Disabling crossassociatement connection "
4459				    "nid %d conn %d cnid %d.\n",
4460				    i, j, cw->nid);
4461			);
4462		}
4463	}
4464	/* ... using controls */
4465	i = 0;
4466	while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
4467		if (ctl->enable == 0 || ctl->childwidget == NULL)
4468			continue;
4469		/* Allow any -> mix */
4470		if (ctl->widget->bindas == -2)
4471			continue;
4472		/* Allow mix -> out. */
4473		if (ctl->childwidget->bindas == -2 &&
4474		    ctl->widget->bindas >= 0 &&
4475		    ases[ctl->widget->bindas].dir == HDAA_CTL_OUT)
4476			continue;
4477		/* Allow mix -> mixed-in. */
4478		if (ctl->childwidget->bindas == -2 &&
4479		    ctl->widget->bindas >= 0 &&
4480		    ases[ctl->widget->bindas].mixed)
4481			continue;
4482		/* Allow in -> mix. */
4483		if ((ctl->widget->pflags & HDAA_ADC_MONITOR) &&
4484		    ctl->childwidget->bindas >= 0 &&
4485		    ases[ctl->childwidget->bindas].dir == HDAA_CTL_IN)
4486			continue;
4487		/* Allow if have common as/seqs. */
4488		if (ctl->widget->bindas == ctl->childwidget->bindas &&
4489		    (ctl->widget->bindseqmask & ctl->childwidget->bindseqmask) != 0)
4490			continue;
4491		ctl->forcemute = 1;
4492		ctl->muted = HDAA_AMP_MUTE_ALL;
4493		ctl->left = 0;
4494		ctl->right = 0;
4495		ctl->enable = 0;
4496		if (ctl->ndir == HDAA_CTL_IN)
4497			ctl->widget->connsenable[ctl->index] = 0;
4498		HDA_BOOTHVERBOSE(
4499			device_printf(devinfo->dev,
4500			    " Disabling crossassociatement connection "
4501			    "ctl %d nid %d cnid %d.\n", i,
4502			    ctl->widget->nid,
4503			    ctl->childwidget->nid);
4504		);
4505	}
4506
4507}
4508
4509/*
4510 * Find controls to control amplification for source and calculate possible
4511 * amplification range.
4512 */
4513static int
4514hdaa_audio_ctl_source_amp(struct hdaa_devinfo *devinfo, nid_t nid, int index,
4515    int ossdev, int ctlable, int depth, int *minamp, int *maxamp)
4516{
4517	struct hdaa_widget *w, *wc;
4518	struct hdaa_audio_ctl *ctl;
4519	int i, j, conns = 0, tminamp, tmaxamp, cminamp, cmaxamp, found = 0;
4520
4521	if (depth > HDA_PARSE_MAXDEPTH)
4522		return (found);
4523
4524	w = hdaa_widget_get(devinfo, nid);
4525	if (w == NULL || w->enable == 0)
4526		return (found);
4527
4528	/* Count number of active inputs. */
4529	if (depth > 0) {
4530		for (j = 0; j < w->nconns; j++) {
4531			if (!w->connsenable[j])
4532				continue;
4533			conns++;
4534		}
4535	}
4536
4537	/* If this is not a first step - use input mixer.
4538	   Pins have common input ctl so care must be taken. */
4539	if (depth > 0 && ctlable && (conns == 1 ||
4540	    w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)) {
4541		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_IN,
4542		    index, 1);
4543		if (ctl) {
4544			ctl->ossmask |= (1 << ossdev);
4545			found++;
4546			if (*minamp == *maxamp) {
4547				*minamp += MINQDB(ctl);
4548				*maxamp += MAXQDB(ctl);
4549			}
4550		}
4551	}
4552
4553	/* If widget has own ossdev - not traverse it.
4554	   It will be traversed on it's own. */
4555	if (w->ossdev >= 0 && depth > 0)
4556		return (found);
4557
4558	/* We must not traverse pin */
4559	if ((w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT ||
4560	    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX) &&
4561	    depth > 0)
4562		return (found);
4563
4564	/* record that this widget exports such signal, */
4565	w->ossmask |= (1 << ossdev);
4566
4567	/*
4568	 * If signals mixed, we can't assign controls farther.
4569	 * Ignore this on depth zero. Caller must knows why.
4570	 */
4571	if (conns > 1 &&
4572	    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
4573		ctlable = 0;
4574
4575	if (ctlable) {
4576		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid, HDAA_CTL_OUT, -1, 1);
4577		if (ctl) {
4578			ctl->ossmask |= (1 << ossdev);
4579			found++;
4580			if (*minamp == *maxamp) {
4581				*minamp += MINQDB(ctl);
4582				*maxamp += MAXQDB(ctl);
4583			}
4584		}
4585	}
4586
4587	cminamp = cmaxamp = 0;
4588	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4589		wc = hdaa_widget_get(devinfo, i);
4590		if (wc == NULL || wc->enable == 0)
4591			continue;
4592		for (j = 0; j < wc->nconns; j++) {
4593			if (wc->connsenable[j] && wc->conns[j] == nid) {
4594				tminamp = tmaxamp = 0;
4595				found += hdaa_audio_ctl_source_amp(devinfo,
4596				    wc->nid, j, ossdev, ctlable, depth + 1,
4597				    &tminamp, &tmaxamp);
4598				if (cminamp == 0 && cmaxamp == 0) {
4599					cminamp = tminamp;
4600					cmaxamp = tmaxamp;
4601				} else if (tminamp != tmaxamp) {
4602					cminamp = imax(cminamp, tminamp);
4603					cmaxamp = imin(cmaxamp, tmaxamp);
4604				}
4605			}
4606		}
4607	}
4608	if (*minamp == *maxamp && cminamp < cmaxamp) {
4609		*minamp += cminamp;
4610		*maxamp += cmaxamp;
4611	}
4612	return (found);
4613}
4614
4615/*
4616 * Find controls to control amplification for destination and calculate
4617 * possible amplification range.
4618 */
4619static int
4620hdaa_audio_ctl_dest_amp(struct hdaa_devinfo *devinfo, nid_t nid, int index,
4621    int ossdev, int depth, int *minamp, int *maxamp)
4622{
4623	struct hdaa_audio_as *as = devinfo->as;
4624	struct hdaa_widget *w, *wc;
4625	struct hdaa_audio_ctl *ctl;
4626	int i, j, consumers, tminamp, tmaxamp, cminamp, cmaxamp, found = 0;
4627
4628	if (depth > HDA_PARSE_MAXDEPTH)
4629		return (found);
4630
4631	w = hdaa_widget_get(devinfo, nid);
4632	if (w == NULL || w->enable == 0)
4633		return (found);
4634
4635	if (depth > 0) {
4636		/* If this node produce output for several consumers,
4637		   we can't touch it. */
4638		consumers = 0;
4639		for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4640			wc = hdaa_widget_get(devinfo, i);
4641			if (wc == NULL || wc->enable == 0)
4642				continue;
4643			for (j = 0; j < wc->nconns; j++) {
4644				if (wc->connsenable[j] && wc->conns[j] == nid)
4645					consumers++;
4646			}
4647		}
4648		/* The only exception is if real HP redirection is configured
4649		   and this is a duplication point.
4650		   XXX: Actually exception is not completely correct.
4651		   XXX: Duplication point check is not perfect. */
4652		if ((consumers == 2 && (w->bindas < 0 ||
4653		    as[w->bindas].hpredir < 0 || as[w->bindas].fakeredir ||
4654		    (w->bindseqmask & (1 << 15)) == 0)) ||
4655		    consumers > 2)
4656			return (found);
4657
4658		/* Else use it's output mixer. */
4659		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid,
4660		    HDAA_CTL_OUT, -1, 1);
4661		if (ctl) {
4662			ctl->ossmask |= (1 << ossdev);
4663			found++;
4664			if (*minamp == *maxamp) {
4665				*minamp += MINQDB(ctl);
4666				*maxamp += MAXQDB(ctl);
4667			}
4668		}
4669	}
4670
4671	/* We must not traverse pin */
4672	if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
4673	    depth > 0)
4674		return (found);
4675
4676	cminamp = cmaxamp = 0;
4677	for (i = 0; i < w->nconns; i++) {
4678		if (w->connsenable[i] == 0)
4679			continue;
4680		if (index >= 0 && i != index)
4681			continue;
4682		tminamp = tmaxamp = 0;
4683		ctl = hdaa_audio_ctl_amp_get(devinfo, w->nid,
4684		    HDAA_CTL_IN, i, 1);
4685		if (ctl) {
4686			ctl->ossmask |= (1 << ossdev);
4687			found++;
4688			if (*minamp == *maxamp) {
4689				tminamp += MINQDB(ctl);
4690				tmaxamp += MAXQDB(ctl);
4691			}
4692		}
4693		found += hdaa_audio_ctl_dest_amp(devinfo, w->conns[i], -1, ossdev,
4694		    depth + 1, &tminamp, &tmaxamp);
4695		if (cminamp == 0 && cmaxamp == 0) {
4696			cminamp = tminamp;
4697			cmaxamp = tmaxamp;
4698		} else if (tminamp != tmaxamp) {
4699			cminamp = imax(cminamp, tminamp);
4700			cmaxamp = imin(cmaxamp, tmaxamp);
4701		}
4702	}
4703	if (*minamp == *maxamp && cminamp < cmaxamp) {
4704		*minamp += cminamp;
4705		*maxamp += cmaxamp;
4706	}
4707	return (found);
4708}
4709
4710/*
4711 * Assign OSS names to sound sources
4712 */
4713static void
4714hdaa_audio_assign_names(struct hdaa_devinfo *devinfo)
4715{
4716	struct hdaa_audio_as *as = devinfo->as;
4717	struct hdaa_widget *w;
4718	int i, j;
4719	int type = -1, use, used = 0;
4720	static const int types[7][13] = {
4721	    { SOUND_MIXER_LINE, SOUND_MIXER_LINE1, SOUND_MIXER_LINE2,
4722	      SOUND_MIXER_LINE3, -1 },	/* line */
4723	    { SOUND_MIXER_MONITOR, SOUND_MIXER_MIC, -1 }, /* int mic */
4724	    { SOUND_MIXER_MIC, SOUND_MIXER_MONITOR, -1 }, /* ext mic */
4725	    { SOUND_MIXER_CD, -1 },	/* cd */
4726	    { SOUND_MIXER_SPEAKER, -1 },	/* speaker */
4727	    { SOUND_MIXER_DIGITAL1, SOUND_MIXER_DIGITAL2, SOUND_MIXER_DIGITAL3,
4728	      -1 },	/* digital */
4729	    { SOUND_MIXER_LINE, SOUND_MIXER_LINE1, SOUND_MIXER_LINE2,
4730	      SOUND_MIXER_LINE3, SOUND_MIXER_PHONEIN, SOUND_MIXER_PHONEOUT,
4731	      SOUND_MIXER_VIDEO, SOUND_MIXER_RADIO, SOUND_MIXER_DIGITAL1,
4732	      SOUND_MIXER_DIGITAL2, SOUND_MIXER_DIGITAL3, SOUND_MIXER_MONITOR,
4733	      -1 }	/* others */
4734	};
4735
4736	/* Surely known names */
4737	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4738		w = hdaa_widget_get(devinfo, i);
4739		if (w == NULL || w->enable == 0)
4740			continue;
4741		if (w->bindas == -1)
4742			continue;
4743		use = -1;
4744		switch (w->type) {
4745		case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX:
4746			if (as[w->bindas].dir == HDAA_CTL_OUT)
4747				break;
4748			type = -1;
4749			switch (w->wclass.pin.config & HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) {
4750			case HDA_CONFIG_DEFAULTCONF_DEVICE_LINE_IN:
4751				type = 0;
4752				break;
4753			case HDA_CONFIG_DEFAULTCONF_DEVICE_MIC_IN:
4754				if ((w->wclass.pin.config & HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_MASK)
4755				    == HDA_CONFIG_DEFAULTCONF_CONNECTIVITY_JACK)
4756					break;
4757				type = 1;
4758				break;
4759			case HDA_CONFIG_DEFAULTCONF_DEVICE_CD:
4760				type = 3;
4761				break;
4762			case HDA_CONFIG_DEFAULTCONF_DEVICE_SPEAKER:
4763				type = 4;
4764				break;
4765			case HDA_CONFIG_DEFAULTCONF_DEVICE_SPDIF_IN:
4766			case HDA_CONFIG_DEFAULTCONF_DEVICE_DIGITAL_OTHER_IN:
4767				type = 5;
4768				break;
4769			}
4770			if (type == -1)
4771				break;
4772			j = 0;
4773			while (types[type][j] >= 0 &&
4774			    (used & (1 << types[type][j])) != 0) {
4775				j++;
4776			}
4777			if (types[type][j] >= 0)
4778				use = types[type][j];
4779			break;
4780		case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT:
4781			use = SOUND_MIXER_PCM;
4782			break;
4783		case HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET:
4784			use = SOUND_MIXER_SPEAKER;
4785			break;
4786		default:
4787			break;
4788		}
4789		if (use >= 0) {
4790			w->ossdev = use;
4791			used |= (1 << use);
4792		}
4793	}
4794	/* Semi-known names */
4795	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4796		w = hdaa_widget_get(devinfo, i);
4797		if (w == NULL || w->enable == 0)
4798			continue;
4799		if (w->ossdev >= 0)
4800			continue;
4801		if (w->bindas == -1)
4802			continue;
4803		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
4804			continue;
4805		if (as[w->bindas].dir == HDAA_CTL_OUT)
4806			continue;
4807		type = -1;
4808		switch (w->wclass.pin.config & HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) {
4809		case HDA_CONFIG_DEFAULTCONF_DEVICE_LINE_OUT:
4810		case HDA_CONFIG_DEFAULTCONF_DEVICE_SPEAKER:
4811		case HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT:
4812		case HDA_CONFIG_DEFAULTCONF_DEVICE_AUX:
4813			type = 0;
4814			break;
4815		case HDA_CONFIG_DEFAULTCONF_DEVICE_MIC_IN:
4816			type = 2;
4817			break;
4818		case HDA_CONFIG_DEFAULTCONF_DEVICE_SPDIF_OUT:
4819		case HDA_CONFIG_DEFAULTCONF_DEVICE_DIGITAL_OTHER_OUT:
4820			type = 5;
4821			break;
4822		}
4823		if (type == -1)
4824			break;
4825		j = 0;
4826		while (types[type][j] >= 0 &&
4827		    (used & (1 << types[type][j])) != 0) {
4828			j++;
4829		}
4830		if (types[type][j] >= 0) {
4831			w->ossdev = types[type][j];
4832			used |= (1 << types[type][j]);
4833		}
4834	}
4835	/* Others */
4836	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4837		w = hdaa_widget_get(devinfo, i);
4838		if (w == NULL || w->enable == 0)
4839			continue;
4840		if (w->ossdev >= 0)
4841			continue;
4842		if (w->bindas == -1)
4843			continue;
4844		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
4845			continue;
4846		if (as[w->bindas].dir == HDAA_CTL_OUT)
4847			continue;
4848		j = 0;
4849		while (types[6][j] >= 0 &&
4850		    (used & (1 << types[6][j])) != 0) {
4851			j++;
4852		}
4853		if (types[6][j] >= 0) {
4854			w->ossdev = types[6][j];
4855			used |= (1 << types[6][j]);
4856		}
4857	}
4858}
4859
4860static void
4861hdaa_audio_build_tree(struct hdaa_devinfo *devinfo)
4862{
4863	struct hdaa_audio_as *as = devinfo->as;
4864	int j, res;
4865
4866	/* Trace all associations in order of their numbers. */
4867	for (j = 0; j < devinfo->ascnt; j++) {
4868		if (as[j].enable == 0)
4869			continue;
4870		HDA_BOOTVERBOSE(
4871			device_printf(devinfo->dev,
4872			    "Tracing association %d (%d)\n", j, as[j].index);
4873		);
4874		if (as[j].dir == HDAA_CTL_OUT) {
4875retry:
4876			res = hdaa_audio_trace_as_out(devinfo, j, 0);
4877			if (res == 0 && as[j].hpredir >= 0 &&
4878			    as[j].fakeredir == 0) {
4879				/* If CODEC can't do analog HP redirection
4880				   try to make it using one more DAC. */
4881				as[j].fakeredir = 1;
4882				goto retry;
4883			}
4884		} else if (as[j].mixed)
4885			res = hdaa_audio_trace_as_in(devinfo, j);
4886		else
4887			res = hdaa_audio_trace_as_in_mch(devinfo, j, 0);
4888		if (res) {
4889			HDA_BOOTVERBOSE(
4890				device_printf(devinfo->dev,
4891				    "Association %d (%d) trace succeeded\n",
4892				    j, as[j].index);
4893			);
4894		} else {
4895			HDA_BOOTVERBOSE(
4896				device_printf(devinfo->dev,
4897				    "Association %d (%d) trace failed\n",
4898				    j, as[j].index);
4899			);
4900			as[j].enable = 0;
4901		}
4902	}
4903
4904	/* Look for additional DACs/ADCs. */
4905	for (j = 0; j < devinfo->ascnt; j++) {
4906		if (as[j].enable == 0)
4907			continue;
4908		hdaa_audio_adddac(devinfo, j);
4909	}
4910
4911	/* Trace mixer and beeper pseudo associations. */
4912	hdaa_audio_trace_as_extra(devinfo);
4913}
4914
4915/*
4916 * Store in pdevinfo new data about whether and how we can control signal
4917 * for OSS device to/from specified widget.
4918 */
4919static void
4920hdaa_adjust_amp(struct hdaa_widget *w, int ossdev,
4921    int found, int minamp, int maxamp)
4922{
4923	struct hdaa_devinfo *devinfo = w->devinfo;
4924	struct hdaa_pcm_devinfo *pdevinfo;
4925
4926	if (w->bindas >= 0)
4927		pdevinfo = devinfo->as[w->bindas].pdevinfo;
4928	else
4929		pdevinfo = &devinfo->devs[0];
4930	if (found)
4931		pdevinfo->ossmask |= (1 << ossdev);
4932	if (minamp == 0 && maxamp == 0)
4933		return;
4934	if (pdevinfo->minamp[ossdev] == 0 && pdevinfo->maxamp[ossdev] == 0) {
4935		pdevinfo->minamp[ossdev] = minamp;
4936		pdevinfo->maxamp[ossdev] = maxamp;
4937	} else {
4938		pdevinfo->minamp[ossdev] = imax(pdevinfo->minamp[ossdev], minamp);
4939		pdevinfo->maxamp[ossdev] = imin(pdevinfo->maxamp[ossdev], maxamp);
4940	}
4941}
4942
4943/*
4944 * Trace signals from/to all possible sources/destionstions to find possible
4945 * recording sources, OSS device control ranges and to assign controls.
4946 */
4947static void
4948hdaa_audio_assign_mixers(struct hdaa_devinfo *devinfo)
4949{
4950	struct hdaa_audio_as *as = devinfo->as;
4951	struct hdaa_widget *w, *cw;
4952	int i, j, minamp, maxamp, found;
4953
4954	/* Assign mixers to the tree. */
4955	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
4956		w = hdaa_widget_get(devinfo, i);
4957		if (w == NULL || w->enable == 0)
4958			continue;
4959		minamp = maxamp = 0;
4960		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT ||
4961		    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_BEEP_WIDGET ||
4962		    (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
4963		    as[w->bindas].dir == HDAA_CTL_IN)) {
4964			if (w->ossdev < 0)
4965				continue;
4966			found = hdaa_audio_ctl_source_amp(devinfo, w->nid, -1,
4967			    w->ossdev, 1, 0, &minamp, &maxamp);
4968			hdaa_adjust_amp(w, w->ossdev, found, minamp, maxamp);
4969		} else if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) {
4970			found = hdaa_audio_ctl_dest_amp(devinfo, w->nid, -1,
4971			    SOUND_MIXER_RECLEV, 0, &minamp, &maxamp);
4972			hdaa_adjust_amp(w, SOUND_MIXER_RECLEV, found, minamp, maxamp);
4973		} else if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
4974		    as[w->bindas].dir == HDAA_CTL_OUT) {
4975			found = hdaa_audio_ctl_dest_amp(devinfo, w->nid, -1,
4976			    SOUND_MIXER_VOLUME, 0, &minamp, &maxamp);
4977			hdaa_adjust_amp(w, SOUND_MIXER_VOLUME, found, minamp, maxamp);
4978		}
4979		if (w->ossdev == SOUND_MIXER_IMIX) {
4980			minamp = maxamp = 0;
4981			found = hdaa_audio_ctl_source_amp(devinfo, w->nid, -1,
4982			    w->ossdev, 1, 0, &minamp, &maxamp);
4983			if (minamp == maxamp) {
4984				/* If we are unable to control input monitor
4985				   as source - try to control it as destination. */
4986				found += hdaa_audio_ctl_dest_amp(devinfo, w->nid, -1,
4987				    w->ossdev, 0, &minamp, &maxamp);
4988				w->pflags |= HDAA_IMIX_AS_DST;
4989			}
4990			hdaa_adjust_amp(w, w->ossdev, found, minamp, maxamp);
4991		}
4992		if (w->pflags & HDAA_ADC_MONITOR) {
4993			for (j = 0; j < w->nconns; j++) {
4994				if (!w->connsenable[j])
4995				    continue;
4996				cw = hdaa_widget_get(devinfo, w->conns[j]);
4997				if (cw == NULL || cw->enable == 0)
4998				    continue;
4999				if (cw->bindas == -1)
5000				    continue;
5001				if (cw->bindas >= 0 &&
5002				    as[cw->bindas].dir != HDAA_CTL_IN)
5003					continue;
5004				minamp = maxamp = 0;
5005				found = hdaa_audio_ctl_dest_amp(devinfo,
5006				    w->nid, j, SOUND_MIXER_IGAIN, 0,
5007				    &minamp, &maxamp);
5008				hdaa_adjust_amp(w, SOUND_MIXER_IGAIN,
5009				    found, minamp, maxamp);
5010			}
5011		}
5012	}
5013}
5014
5015static void
5016hdaa_audio_prepare_pin_ctrl(struct hdaa_devinfo *devinfo)
5017{
5018	struct hdaa_audio_as *as = devinfo->as;
5019	struct hdaa_widget *w;
5020	uint32_t pincap;
5021	int i;
5022
5023	for (i = 0; i < devinfo->nodecnt; i++) {
5024		w = &devinfo->widget[i];
5025		if (w == NULL)
5026			continue;
5027		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX &&
5028		    w->waspin == 0)
5029			continue;
5030
5031		pincap = w->wclass.pin.cap;
5032
5033		/* Disable everything. */
5034		w->wclass.pin.ctrl &= ~(
5035		    HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE |
5036		    HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE |
5037		    HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE |
5038		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK);
5039
5040		if (w->enable == 0) {
5041			/* Pin is unused so left it disabled. */
5042			continue;
5043		} else if (w->waspin) {
5044			/* Enable input for beeper input. */
5045			w->wclass.pin.ctrl |=
5046			    HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE;
5047		} else if (w->bindas < 0 || as[w->bindas].enable == 0) {
5048			/* Pin is unused so left it disabled. */
5049			continue;
5050		} else if (as[w->bindas].dir == HDAA_CTL_IN) {
5051			/* Input pin, configure for input. */
5052			if (HDA_PARAM_PIN_CAP_INPUT_CAP(pincap))
5053				w->wclass.pin.ctrl |=
5054				    HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE;
5055
5056			if ((devinfo->quirks & HDAA_QUIRK_IVREF100) &&
5057			    HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap))
5058				w->wclass.pin.ctrl |=
5059				    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE(
5060				    HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_100);
5061			else if ((devinfo->quirks & HDAA_QUIRK_IVREF80) &&
5062			    HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap))
5063				w->wclass.pin.ctrl |=
5064				    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE(
5065				    HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_80);
5066			else if ((devinfo->quirks & HDAA_QUIRK_IVREF50) &&
5067			    HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap))
5068				w->wclass.pin.ctrl |=
5069				    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE(
5070				    HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_50);
5071		} else {
5072			/* Output pin, configure for output. */
5073			if (HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap))
5074				w->wclass.pin.ctrl |=
5075				    HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE;
5076
5077			if (HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap) &&
5078			    (w->wclass.pin.config &
5079			    HDA_CONFIG_DEFAULTCONF_DEVICE_MASK) ==
5080			    HDA_CONFIG_DEFAULTCONF_DEVICE_HP_OUT)
5081				w->wclass.pin.ctrl |=
5082				    HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE;
5083
5084			if ((devinfo->quirks & HDAA_QUIRK_OVREF100) &&
5085			    HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap))
5086				w->wclass.pin.ctrl |=
5087				    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE(
5088				    HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_100);
5089			else if ((devinfo->quirks & HDAA_QUIRK_OVREF80) &&
5090			    HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap))
5091				w->wclass.pin.ctrl |=
5092				    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE(
5093				    HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_80);
5094			else if ((devinfo->quirks & HDAA_QUIRK_OVREF50) &&
5095			    HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap))
5096				w->wclass.pin.ctrl |=
5097				    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE(
5098				    HDA_CMD_PIN_WIDGET_CTRL_VREF_ENABLE_50);
5099		}
5100	}
5101}
5102
5103static void
5104hdaa_audio_ctl_commit(struct hdaa_devinfo *devinfo)
5105{
5106	struct hdaa_audio_ctl *ctl;
5107	int i, z;
5108
5109	i = 0;
5110	while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
5111		if (ctl->enable == 0 || ctl->ossmask != 0) {
5112			/* Mute disabled and mixer controllable controls.
5113			 * Last will be initialized by mixer_init().
5114			 * This expected to reduce click on startup. */
5115			hdaa_audio_ctl_amp_set(ctl, HDAA_AMP_MUTE_ALL, 0, 0);
5116			continue;
5117		}
5118		/* Init fixed controls to 0dB amplification. */
5119		z = ctl->offset;
5120		if (z > ctl->step)
5121			z = ctl->step;
5122		hdaa_audio_ctl_amp_set(ctl, HDAA_AMP_MUTE_NONE, z, z);
5123	}
5124}
5125
5126static void
5127hdaa_gpio_commit(struct hdaa_devinfo *devinfo)
5128{
5129	uint32_t gdata, gmask, gdir;
5130	int i, numgpio;
5131
5132	numgpio = HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap);
5133	if (devinfo->gpio != 0 && numgpio != 0) {
5134		gdata = hda_command(devinfo->dev,
5135		    HDA_CMD_GET_GPIO_DATA(0, devinfo->nid));
5136		gmask = hda_command(devinfo->dev,
5137		    HDA_CMD_GET_GPIO_ENABLE_MASK(0, devinfo->nid));
5138		gdir = hda_command(devinfo->dev,
5139		    HDA_CMD_GET_GPIO_DIRECTION(0, devinfo->nid));
5140		for (i = 0; i < numgpio; i++) {
5141			if ((devinfo->gpio & HDAA_GPIO_MASK(i)) ==
5142			    HDAA_GPIO_SET(i)) {
5143				gdata |= (1 << i);
5144				gmask |= (1 << i);
5145				gdir |= (1 << i);
5146			} else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) ==
5147			    HDAA_GPIO_CLEAR(i)) {
5148				gdata &= ~(1 << i);
5149				gmask |= (1 << i);
5150				gdir |= (1 << i);
5151			} else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) ==
5152			    HDAA_GPIO_DISABLE(i)) {
5153				gmask &= ~(1 << i);
5154			} else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) ==
5155			    HDAA_GPIO_INPUT(i)) {
5156				gmask |= (1 << i);
5157				gdir &= ~(1 << i);
5158			}
5159		}
5160		HDA_BOOTVERBOSE(
5161			device_printf(devinfo->dev, "GPIO commit\n");
5162		);
5163		hda_command(devinfo->dev,
5164		    HDA_CMD_SET_GPIO_ENABLE_MASK(0, devinfo->nid, gmask));
5165		hda_command(devinfo->dev,
5166		    HDA_CMD_SET_GPIO_DIRECTION(0, devinfo->nid, gdir));
5167		hda_command(devinfo->dev,
5168		    HDA_CMD_SET_GPIO_DATA(0, devinfo->nid, gdata));
5169		HDA_BOOTVERBOSE(
5170			hdaa_dump_gpio(devinfo);
5171		);
5172	}
5173}
5174
5175static void
5176hdaa_gpo_commit(struct hdaa_devinfo *devinfo)
5177{
5178	uint32_t gdata;
5179	int i, numgpo;
5180
5181	numgpo = HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap);
5182	if (devinfo->gpo != 0 && numgpo != 0) {
5183		gdata = hda_command(devinfo->dev,
5184		    HDA_CMD_GET_GPO_DATA(0, devinfo->nid));
5185		for (i = 0; i < numgpo; i++) {
5186			if ((devinfo->gpio & HDAA_GPIO_MASK(i)) ==
5187			    HDAA_GPIO_SET(i)) {
5188				gdata |= (1 << i);
5189			} else if ((devinfo->gpio & HDAA_GPIO_MASK(i)) ==
5190			    HDAA_GPIO_CLEAR(i)) {
5191				gdata &= ~(1 << i);
5192			}
5193		}
5194		HDA_BOOTVERBOSE(
5195			device_printf(devinfo->dev, "GPO commit\n");
5196		);
5197		hda_command(devinfo->dev,
5198		    HDA_CMD_SET_GPO_DATA(0, devinfo->nid, gdata));
5199		HDA_BOOTVERBOSE(
5200			hdaa_dump_gpo(devinfo);
5201		);
5202	}
5203}
5204
5205static void
5206hdaa_audio_commit(struct hdaa_devinfo *devinfo)
5207{
5208	struct hdaa_widget *w;
5209	int i;
5210
5211	/* Commit controls. */
5212	hdaa_audio_ctl_commit(devinfo);
5213
5214	/* Commit selectors, pins and EAPD. */
5215	for (i = 0; i < devinfo->nodecnt; i++) {
5216		w = &devinfo->widget[i];
5217		if (w == NULL)
5218			continue;
5219		if (w->selconn == -1)
5220			w->selconn = 0;
5221		if (w->nconns > 0)
5222			hdaa_widget_connection_select(w, w->selconn);
5223		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX ||
5224		    w->waspin) {
5225			hda_command(devinfo->dev,
5226			    HDA_CMD_SET_PIN_WIDGET_CTRL(0, w->nid,
5227			    w->wclass.pin.ctrl));
5228		}
5229		if (w->param.eapdbtl != HDA_INVALID) {
5230			uint32_t val;
5231
5232			val = w->param.eapdbtl;
5233			if (devinfo->quirks &
5234			    HDAA_QUIRK_EAPDINV)
5235				val ^= HDA_CMD_SET_EAPD_BTL_ENABLE_EAPD;
5236			hda_command(devinfo->dev,
5237			    HDA_CMD_SET_EAPD_BTL_ENABLE(0, w->nid,
5238			    val));
5239		}
5240	}
5241
5242	hdaa_gpio_commit(devinfo);
5243	hdaa_gpo_commit(devinfo);
5244}
5245
5246static void
5247hdaa_powerup(struct hdaa_devinfo *devinfo)
5248{
5249	int i;
5250
5251	hda_command(devinfo->dev,
5252	    HDA_CMD_SET_POWER_STATE(0,
5253	    devinfo->nid, HDA_CMD_POWER_STATE_D0));
5254	DELAY(100);
5255
5256	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
5257		hda_command(devinfo->dev,
5258		    HDA_CMD_SET_POWER_STATE(0,
5259		    i, HDA_CMD_POWER_STATE_D0));
5260	}
5261	DELAY(1000);
5262}
5263
5264static int
5265hdaa_pcmchannel_setup(struct hdaa_chan *ch)
5266{
5267	struct hdaa_devinfo *devinfo = ch->devinfo;
5268	struct hdaa_audio_as *as = devinfo->as;
5269	struct hdaa_widget *w;
5270	uint32_t cap, fmtcap, pcmcap;
5271	int i, j, ret, channels, onlystereo;
5272	uint16_t pinset;
5273
5274	ch->caps = hdaa_caps;
5275	ch->caps.fmtlist = ch->fmtlist;
5276	ch->bit16 = 1;
5277	ch->bit32 = 0;
5278	ch->pcmrates[0] = 48000;
5279	ch->pcmrates[1] = 0;
5280	ch->stripecap = 0xff;
5281
5282	ret = 0;
5283	channels = 0;
5284	onlystereo = 1;
5285	pinset = 0;
5286	fmtcap = devinfo->supp_stream_formats;
5287	pcmcap = devinfo->supp_pcm_size_rate;
5288
5289	for (i = 0; i < 16; i++) {
5290		/* Check as is correct */
5291		if (ch->as < 0)
5292			break;
5293		/* Cound only present DACs */
5294		if (as[ch->as].dacs[ch->asindex][i] <= 0)
5295			continue;
5296		/* Ignore duplicates */
5297		for (j = 0; j < ret; j++) {
5298			if (ch->io[j] == as[ch->as].dacs[ch->asindex][i])
5299				break;
5300		}
5301		if (j < ret)
5302			continue;
5303
5304		w = hdaa_widget_get(devinfo, as[ch->as].dacs[ch->asindex][i]);
5305		if (w == NULL || w->enable == 0)
5306			continue;
5307		cap = w->param.supp_stream_formats;
5308		if (!HDA_PARAM_SUPP_STREAM_FORMATS_PCM(cap) &&
5309		    !HDA_PARAM_SUPP_STREAM_FORMATS_AC3(cap))
5310			continue;
5311		/* Many CODECs does not declare AC3 support on SPDIF.
5312		   I don't beleave that they doesn't support it! */
5313		if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap))
5314			cap |= HDA_PARAM_SUPP_STREAM_FORMATS_AC3_MASK;
5315		if (ret == 0) {
5316			fmtcap = cap;
5317			pcmcap = w->param.supp_pcm_size_rate;
5318		} else {
5319			fmtcap &= cap;
5320			pcmcap &= w->param.supp_pcm_size_rate;
5321		}
5322		ch->io[ret++] = as[ch->as].dacs[ch->asindex][i];
5323		ch->stripecap &= w->wclass.conv.stripecap;
5324		/* Do not count redirection pin/dac channels. */
5325		if (i == 15 && as[ch->as].hpredir >= 0)
5326			continue;
5327		channels += HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap) + 1;
5328		if (HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap) != 1)
5329			onlystereo = 0;
5330		pinset |= (1 << i);
5331	}
5332	ch->io[ret] = -1;
5333	ch->channels = channels;
5334
5335	if (as[ch->as].fakeredir)
5336		ret--;
5337	/* Standard speaks only about stereo pins and playback, ... */
5338	if ((!onlystereo) || as[ch->as].mixed)
5339		pinset = 0;
5340	/* ..., but there it gives us info about speakers layout. */
5341	as[ch->as].pinset = pinset;
5342
5343	ch->supp_stream_formats = fmtcap;
5344	ch->supp_pcm_size_rate = pcmcap;
5345
5346	/*
5347	 *  8bit = 0
5348	 * 16bit = 1
5349	 * 20bit = 2
5350	 * 24bit = 3
5351	 * 32bit = 4
5352	 */
5353	if (ret > 0) {
5354		i = 0;
5355		if (HDA_PARAM_SUPP_STREAM_FORMATS_PCM(fmtcap)) {
5356			if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16BIT(pcmcap))
5357				ch->bit16 = 1;
5358			else if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8BIT(pcmcap))
5359				ch->bit16 = 0;
5360			if (HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(pcmcap))
5361				ch->bit32 = 3;
5362			else if (HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(pcmcap))
5363				ch->bit32 = 2;
5364			else if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(pcmcap))
5365				ch->bit32 = 4;
5366			if (!(devinfo->quirks & HDAA_QUIRK_FORCESTEREO)) {
5367				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 1, 0);
5368				if (ch->bit32)
5369					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 1, 0);
5370			}
5371			if (channels >= 2) {
5372				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 2, 0);
5373				if (ch->bit32)
5374					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 2, 0);
5375			}
5376			if (channels >= 3 && !onlystereo) {
5377				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 3, 0);
5378				if (ch->bit32)
5379					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 3, 0);
5380				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 3, 1);
5381				if (ch->bit32)
5382					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 3, 1);
5383			}
5384			if (channels >= 4) {
5385				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 4, 0);
5386				if (ch->bit32)
5387					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 4, 0);
5388				if (!onlystereo) {
5389					ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 4, 1);
5390					if (ch->bit32)
5391						ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 4, 1);
5392				}
5393			}
5394			if (channels >= 5 && !onlystereo) {
5395				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 5, 0);
5396				if (ch->bit32)
5397					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 5, 0);
5398				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 5, 1);
5399				if (ch->bit32)
5400					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 5, 1);
5401			}
5402			if (channels >= 6) {
5403				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 6, 1);
5404				if (ch->bit32)
5405					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 6, 1);
5406				if (!onlystereo) {
5407					ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 6, 0);
5408					if (ch->bit32)
5409						ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 6, 0);
5410				}
5411			}
5412			if (channels >= 7 && !onlystereo) {
5413				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 7, 0);
5414				if (ch->bit32)
5415					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 7, 0);
5416				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 7, 1);
5417				if (ch->bit32)
5418					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 7, 1);
5419			}
5420			if (channels >= 8) {
5421				ch->fmtlist[i++] = SND_FORMAT(AFMT_S16_LE, 8, 1);
5422				if (ch->bit32)
5423					ch->fmtlist[i++] = SND_FORMAT(AFMT_S32_LE, 8, 1);
5424			}
5425		}
5426		if (HDA_PARAM_SUPP_STREAM_FORMATS_AC3(fmtcap)) {
5427			ch->fmtlist[i++] = SND_FORMAT(AFMT_AC3, 2, 0);
5428			if (channels >= 8) {
5429				ch->fmtlist[i++] = SND_FORMAT(AFMT_AC3, 8, 0);
5430				ch->fmtlist[i++] = SND_FORMAT(AFMT_AC3, 8, 1);
5431			}
5432		}
5433		ch->fmtlist[i] = 0;
5434		i = 0;
5435		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8KHZ(pcmcap))
5436			ch->pcmrates[i++] = 8000;
5437		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_11KHZ(pcmcap))
5438			ch->pcmrates[i++] = 11025;
5439		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16KHZ(pcmcap))
5440			ch->pcmrates[i++] = 16000;
5441		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_22KHZ(pcmcap))
5442			ch->pcmrates[i++] = 22050;
5443		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32KHZ(pcmcap))
5444			ch->pcmrates[i++] = 32000;
5445		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_44KHZ(pcmcap))
5446			ch->pcmrates[i++] = 44100;
5447		/* if (HDA_PARAM_SUPP_PCM_SIZE_RATE_48KHZ(pcmcap)) */
5448		ch->pcmrates[i++] = 48000;
5449		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_88KHZ(pcmcap))
5450			ch->pcmrates[i++] = 88200;
5451		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_96KHZ(pcmcap))
5452			ch->pcmrates[i++] = 96000;
5453		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_176KHZ(pcmcap))
5454			ch->pcmrates[i++] = 176400;
5455		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_192KHZ(pcmcap))
5456			ch->pcmrates[i++] = 192000;
5457		/* if (HDA_PARAM_SUPP_PCM_SIZE_RATE_384KHZ(pcmcap)) */
5458		ch->pcmrates[i] = 0;
5459		if (i > 0) {
5460			ch->caps.minspeed = ch->pcmrates[0];
5461			ch->caps.maxspeed = ch->pcmrates[i - 1];
5462		}
5463	}
5464
5465	return (ret);
5466}
5467
5468static void
5469hdaa_prepare_pcms(struct hdaa_devinfo *devinfo)
5470{
5471	struct hdaa_audio_as *as = devinfo->as;
5472	int i, j, k, apdev = 0, ardev = 0, dpdev = 0, drdev = 0;
5473
5474	for (i = 0; i < devinfo->ascnt; i++) {
5475		if (as[i].enable == 0)
5476			continue;
5477		if (as[i].dir == HDAA_CTL_IN) {
5478			if (as[i].digital)
5479				drdev++;
5480			else
5481				ardev++;
5482		} else {
5483			if (as[i].digital)
5484				dpdev++;
5485			else
5486				apdev++;
5487		}
5488	}
5489	devinfo->num_devs =
5490	    max(ardev, apdev) + max(drdev, dpdev);
5491	devinfo->devs =
5492	    (struct hdaa_pcm_devinfo *)malloc(
5493	    devinfo->num_devs * sizeof(struct hdaa_pcm_devinfo),
5494	    M_HDAA, M_ZERO | M_NOWAIT);
5495	if (devinfo->devs == NULL) {
5496		device_printf(devinfo->dev,
5497		    "Unable to allocate memory for devices\n");
5498		return;
5499	}
5500	for (i = 0; i < devinfo->num_devs; i++) {
5501		devinfo->devs[i].index = i;
5502		devinfo->devs[i].devinfo = devinfo;
5503		devinfo->devs[i].playas = -1;
5504		devinfo->devs[i].recas = -1;
5505		devinfo->devs[i].digital = 255;
5506	}
5507	for (i = 0; i < devinfo->ascnt; i++) {
5508		if (as[i].enable == 0)
5509			continue;
5510		for (j = 0; j < devinfo->num_devs; j++) {
5511			if (devinfo->devs[j].digital != 255 &&
5512			    (!devinfo->devs[j].digital) !=
5513			    (!as[i].digital))
5514				continue;
5515			if (as[i].dir == HDAA_CTL_IN) {
5516				if (devinfo->devs[j].recas >= 0)
5517					continue;
5518				devinfo->devs[j].recas = i;
5519			} else {
5520				if (devinfo->devs[j].playas >= 0)
5521					continue;
5522				devinfo->devs[j].playas = i;
5523			}
5524			as[i].pdevinfo = &devinfo->devs[j];
5525			for (k = 0; k < as[i].num_chans; k++) {
5526				devinfo->chans[as[i].chans[k]].pdevinfo =
5527				    &devinfo->devs[j];
5528			}
5529			devinfo->devs[j].digital = as[i].digital;
5530			break;
5531		}
5532	}
5533}
5534
5535static void
5536hdaa_create_pcms(struct hdaa_devinfo *devinfo)
5537{
5538	int i;
5539
5540	for (i = 0; i < devinfo->num_devs; i++) {
5541		struct hdaa_pcm_devinfo *pdevinfo = &devinfo->devs[i];
5542
5543		pdevinfo->dev = device_add_child(devinfo->dev, "pcm", -1);
5544		device_set_ivars(pdevinfo->dev, (void *)pdevinfo);
5545	}
5546}
5547
5548static void
5549hdaa_dump_ctls(struct hdaa_pcm_devinfo *pdevinfo, const char *banner, uint32_t flag)
5550{
5551	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
5552	struct hdaa_audio_ctl *ctl;
5553	char buf[64];
5554	int i, j, printed = 0;
5555
5556	if (flag == 0) {
5557		flag = ~(SOUND_MASK_VOLUME | SOUND_MASK_PCM |
5558		    SOUND_MASK_CD | SOUND_MASK_LINE | SOUND_MASK_RECLEV |
5559		    SOUND_MASK_MIC | SOUND_MASK_SPEAKER | SOUND_MASK_IGAIN |
5560		    SOUND_MASK_OGAIN | SOUND_MASK_IMIX | SOUND_MASK_MONITOR);
5561	}
5562
5563	for (j = 0; j < SOUND_MIXER_NRDEVICES; j++) {
5564		if ((flag & (1 << j)) == 0)
5565			continue;
5566		i = 0;
5567		printed = 0;
5568		while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
5569			if (ctl->enable == 0 ||
5570			    ctl->widget->enable == 0)
5571				continue;
5572			if (!((pdevinfo->playas >= 0 &&
5573			    ctl->widget->bindas == pdevinfo->playas) ||
5574			    (pdevinfo->recas >= 0 &&
5575			    ctl->widget->bindas == pdevinfo->recas) ||
5576			    (ctl->widget->bindas == -2 && pdevinfo->index == 0)))
5577				continue;
5578			if ((ctl->ossmask & (1 << j)) == 0)
5579				continue;
5580
5581			if (printed == 0) {
5582				if (banner != NULL) {
5583					device_printf(pdevinfo->dev, "%s", banner);
5584				} else {
5585					device_printf(pdevinfo->dev, "Unknown Ctl");
5586				}
5587				printf(" (OSS: %s)",
5588				    hdaa_audio_ctl_ossmixer_mask2allname(1 << j,
5589				    buf, sizeof(buf)));
5590				if (pdevinfo->ossmask & (1 << j)) {
5591					printf(": %+d/%+ddB\n",
5592					    pdevinfo->minamp[j] / 4,
5593					    pdevinfo->maxamp[j] / 4);
5594				} else
5595					printf("\n");
5596				printed = 1;
5597			}
5598			device_printf(pdevinfo->dev, "   +- ctl %2d (nid %3d %s", i,
5599				ctl->widget->nid,
5600				(ctl->ndir == HDAA_CTL_IN)?"in ":"out");
5601			if (ctl->ndir == HDAA_CTL_IN && ctl->ndir == ctl->dir)
5602				printf(" %2d): ", ctl->index);
5603			else
5604				printf("):    ");
5605			if (ctl->step > 0) {
5606				printf("%+d/%+ddB (%d steps)%s\n",
5607				    MINQDB(ctl) / 4,
5608				    MAXQDB(ctl) / 4,
5609				    ctl->step + 1,
5610				    ctl->mute?" + mute":"");
5611			} else
5612				printf("%s\n", ctl->mute?"mute":"");
5613		}
5614	}
5615	if (printed)
5616		device_printf(pdevinfo->dev, "\n");
5617}
5618
5619static void
5620hdaa_dump_audio_formats(device_t dev, uint32_t fcap, uint32_t pcmcap)
5621{
5622	uint32_t cap;
5623
5624	cap = fcap;
5625	if (cap != 0) {
5626		device_printf(dev, "     Stream cap: 0x%08x", cap);
5627		if (HDA_PARAM_SUPP_STREAM_FORMATS_AC3(cap))
5628			printf(" AC3");
5629		if (HDA_PARAM_SUPP_STREAM_FORMATS_FLOAT32(cap))
5630			printf(" FLOAT32");
5631		if (HDA_PARAM_SUPP_STREAM_FORMATS_PCM(cap))
5632			printf(" PCM");
5633		printf("\n");
5634	}
5635	cap = pcmcap;
5636	if (cap != 0) {
5637		device_printf(dev, "        PCM cap: 0x%08x", cap);
5638		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8BIT(cap))
5639			printf(" 8");
5640		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16BIT(cap))
5641			printf(" 16");
5642		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(cap))
5643			printf(" 20");
5644		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(cap))
5645			printf(" 24");
5646		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(cap))
5647			printf(" 32");
5648		printf(" bits,");
5649		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_8KHZ(cap))
5650			printf(" 8");
5651		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_11KHZ(cap))
5652			printf(" 11");
5653		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_16KHZ(cap))
5654			printf(" 16");
5655		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_22KHZ(cap))
5656			printf(" 22");
5657		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_32KHZ(cap))
5658			printf(" 32");
5659		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_44KHZ(cap))
5660			printf(" 44");
5661		printf(" 48");
5662		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_88KHZ(cap))
5663			printf(" 88");
5664		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_96KHZ(cap))
5665			printf(" 96");
5666		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_176KHZ(cap))
5667			printf(" 176");
5668		if (HDA_PARAM_SUPP_PCM_SIZE_RATE_192KHZ(cap))
5669			printf(" 192");
5670		printf(" KHz\n");
5671	}
5672}
5673
5674static void
5675hdaa_dump_pin(struct hdaa_widget *w)
5676{
5677	uint32_t pincap;
5678
5679	pincap = w->wclass.pin.cap;
5680
5681	device_printf(w->devinfo->dev, "        Pin cap: 0x%08x", pincap);
5682	if (HDA_PARAM_PIN_CAP_IMP_SENSE_CAP(pincap))
5683		printf(" ISC");
5684	if (HDA_PARAM_PIN_CAP_TRIGGER_REQD(pincap))
5685		printf(" TRQD");
5686	if (HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(pincap))
5687		printf(" PDC");
5688	if (HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap))
5689		printf(" HP");
5690	if (HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap))
5691		printf(" OUT");
5692	if (HDA_PARAM_PIN_CAP_INPUT_CAP(pincap))
5693		printf(" IN");
5694	if (HDA_PARAM_PIN_CAP_BALANCED_IO_PINS(pincap))
5695		printf(" BAL");
5696	if (HDA_PARAM_PIN_CAP_HDMI(pincap))
5697		printf(" HDMI");
5698	if (HDA_PARAM_PIN_CAP_VREF_CTRL(pincap)) {
5699		printf(" VREF[");
5700		if (HDA_PARAM_PIN_CAP_VREF_CTRL_50(pincap))
5701			printf(" 50");
5702		if (HDA_PARAM_PIN_CAP_VREF_CTRL_80(pincap))
5703			printf(" 80");
5704		if (HDA_PARAM_PIN_CAP_VREF_CTRL_100(pincap))
5705			printf(" 100");
5706		if (HDA_PARAM_PIN_CAP_VREF_CTRL_GROUND(pincap))
5707			printf(" GROUND");
5708		if (HDA_PARAM_PIN_CAP_VREF_CTRL_HIZ(pincap))
5709			printf(" HIZ");
5710		printf(" ]");
5711	}
5712	if (HDA_PARAM_PIN_CAP_EAPD_CAP(pincap))
5713		printf(" EAPD");
5714	if (HDA_PARAM_PIN_CAP_DP(pincap))
5715		printf(" DP");
5716	if (HDA_PARAM_PIN_CAP_HBR(pincap))
5717		printf(" HBR");
5718	printf("\n");
5719	device_printf(w->devinfo->dev, "     Pin config: 0x%08x\n",
5720	    w->wclass.pin.config);
5721	device_printf(w->devinfo->dev, "    Pin control: 0x%08x", w->wclass.pin.ctrl);
5722	if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_HPHN_ENABLE)
5723		printf(" HP");
5724	if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_IN_ENABLE)
5725		printf(" IN");
5726	if (w->wclass.pin.ctrl & HDA_CMD_SET_PIN_WIDGET_CTRL_OUT_ENABLE)
5727		printf(" OUT");
5728	if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap)) {
5729		if ((w->wclass.pin.ctrl &
5730		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) == 0x03)
5731			printf(" HBR");
5732		else if ((w->wclass.pin.ctrl &
5733		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) != 0)
5734			printf(" EPTs");
5735	} else {
5736		if ((w->wclass.pin.ctrl &
5737		    HDA_CMD_SET_PIN_WIDGET_CTRL_VREF_ENABLE_MASK) != 0)
5738			printf(" VREFs");
5739	}
5740	printf("\n");
5741}
5742
5743static void
5744hdaa_dump_pin_config(struct hdaa_widget *w, uint32_t conf)
5745{
5746
5747	device_printf(w->devinfo->dev, "%2d %08x %-2d %-2d "
5748	    "%-13s %-5s %-7s %-10s %-7s %d%s\n",
5749	    w->nid, conf,
5750	    HDA_CONFIG_DEFAULTCONF_ASSOCIATION(conf),
5751	    HDA_CONFIG_DEFAULTCONF_SEQUENCE(conf),
5752	    HDA_DEVS[HDA_CONFIG_DEFAULTCONF_DEVICE(conf)],
5753	    HDA_CONNS[HDA_CONFIG_DEFAULTCONF_CONNECTIVITY(conf)],
5754	    HDA_CONNECTORS[HDA_CONFIG_DEFAULTCONF_CONNECTION_TYPE(conf)],
5755	    HDA_LOCS[HDA_CONFIG_DEFAULTCONF_LOCATION(conf)],
5756	    HDA_COLORS[HDA_CONFIG_DEFAULTCONF_COLOR(conf)],
5757	    HDA_CONFIG_DEFAULTCONF_MISC(conf),
5758	    (w->enable == 0)?" DISA":"");
5759}
5760
5761static void
5762hdaa_dump_pin_configs(struct hdaa_devinfo *devinfo)
5763{
5764	struct hdaa_widget *w;
5765	int i;
5766
5767	device_printf(devinfo->dev, "nid   0x    as seq "
5768	    "device       conn  jack    loc        color   misc\n");
5769	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
5770		w = hdaa_widget_get(devinfo, i);
5771		if (w == NULL)
5772			continue;
5773		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
5774			continue;
5775		hdaa_dump_pin_config(w, w->wclass.pin.config);
5776	}
5777}
5778
5779static void
5780hdaa_dump_amp(device_t dev, uint32_t cap, const char *banner)
5781{
5782	int offset, size, step;
5783
5784	offset = HDA_PARAM_OUTPUT_AMP_CAP_OFFSET(cap);
5785	size = HDA_PARAM_OUTPUT_AMP_CAP_STEPSIZE(cap);
5786	step = HDA_PARAM_OUTPUT_AMP_CAP_NUMSTEPS(cap);
5787	device_printf(dev, "     %s amp: 0x%08x "
5788	    "mute=%d step=%d size=%d offset=%d (%+d/%+ddB)\n",
5789	    banner, cap,
5790	    HDA_PARAM_OUTPUT_AMP_CAP_MUTE_CAP(cap),
5791	    step, size, offset,
5792	    ((0 - offset) * (size + 1)) / 4,
5793	    ((step - offset) * (size + 1)) / 4);
5794}
5795
5796static void
5797hdaa_dump_nodes(struct hdaa_devinfo *devinfo)
5798{
5799	struct hdaa_widget *w, *cw;
5800	char buf[64];
5801	int i, j;
5802
5803	device_printf(devinfo->dev, "\n");
5804	device_printf(devinfo->dev, "Default parameters:\n");
5805	hdaa_dump_audio_formats(devinfo->dev,
5806	    devinfo->supp_stream_formats,
5807	    devinfo->supp_pcm_size_rate);
5808	hdaa_dump_amp(devinfo->dev, devinfo->inamp_cap, " Input");
5809	hdaa_dump_amp(devinfo->dev, devinfo->outamp_cap, "Output");
5810	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
5811		w = hdaa_widget_get(devinfo, i);
5812		if (w == NULL) {
5813			device_printf(devinfo->dev, "Ghost widget nid=%d\n", i);
5814			continue;
5815		}
5816		device_printf(devinfo->dev, "\n");
5817		device_printf(devinfo->dev, "            nid: %d%s\n", w->nid,
5818		    (w->enable == 0) ? " [DISABLED]" : "");
5819		device_printf(devinfo->dev, "           Name: %s\n", w->name);
5820		device_printf(devinfo->dev, "     Widget cap: 0x%08x",
5821		    w->param.widget_cap);
5822		if (w->param.widget_cap & 0x0ee1) {
5823			if (HDA_PARAM_AUDIO_WIDGET_CAP_LR_SWAP(w->param.widget_cap))
5824			    printf(" LRSWAP");
5825			if (HDA_PARAM_AUDIO_WIDGET_CAP_POWER_CTRL(w->param.widget_cap))
5826			    printf(" PWR");
5827			if (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap))
5828			    printf(" DIGITAL");
5829			if (HDA_PARAM_AUDIO_WIDGET_CAP_UNSOL_CAP(w->param.widget_cap))
5830			    printf(" UNSOL");
5831			if (HDA_PARAM_AUDIO_WIDGET_CAP_PROC_WIDGET(w->param.widget_cap))
5832			    printf(" PROC");
5833			if (HDA_PARAM_AUDIO_WIDGET_CAP_STRIPE(w->param.widget_cap))
5834			    printf(" STRIPE(x%d)",
5835				1 << (fls(w->wclass.conv.stripecap) - 1));
5836			j = HDA_PARAM_AUDIO_WIDGET_CAP_CC(w->param.widget_cap);
5837			if (j == 1)
5838			    printf(" STEREO");
5839			else if (j > 1)
5840			    printf(" %dCH", j + 1);
5841		}
5842		printf("\n");
5843		if (w->bindas != -1) {
5844			device_printf(devinfo->dev, "    Association: %d (0x%04x)\n",
5845			    w->bindas, w->bindseqmask);
5846		}
5847		if (w->ossmask != 0 || w->ossdev >= 0) {
5848			device_printf(devinfo->dev, "            OSS: %s",
5849			    hdaa_audio_ctl_ossmixer_mask2allname(w->ossmask, buf, sizeof(buf)));
5850			if (w->ossdev >= 0)
5851			    printf(" (%s)", ossnames[w->ossdev]);
5852			printf("\n");
5853		}
5854		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_OUTPUT ||
5855		    w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT) {
5856			hdaa_dump_audio_formats(devinfo->dev,
5857			    w->param.supp_stream_formats,
5858			    w->param.supp_pcm_size_rate);
5859		} else if (w->type ==
5860		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX || w->waspin)
5861			hdaa_dump_pin(w);
5862		if (w->param.eapdbtl != HDA_INVALID)
5863			device_printf(devinfo->dev, "           EAPD: 0x%08x\n",
5864			    w->param.eapdbtl);
5865		if (HDA_PARAM_AUDIO_WIDGET_CAP_OUT_AMP(w->param.widget_cap) &&
5866		    w->param.outamp_cap != 0)
5867			hdaa_dump_amp(devinfo->dev, w->param.outamp_cap, "Output");
5868		if (HDA_PARAM_AUDIO_WIDGET_CAP_IN_AMP(w->param.widget_cap) &&
5869		    w->param.inamp_cap != 0)
5870			hdaa_dump_amp(devinfo->dev, w->param.inamp_cap, " Input");
5871		if (w->nconns > 0)
5872			device_printf(devinfo->dev, "    Connections: %d\n", w->nconns);
5873		for (j = 0; j < w->nconns; j++) {
5874			cw = hdaa_widget_get(devinfo, w->conns[j]);
5875			device_printf(devinfo->dev, "          + %s<- nid=%d [%s]",
5876			    (w->connsenable[j] == 0)?"[DISABLED] ":"",
5877			    w->conns[j], (cw == NULL) ? "GHOST!" : cw->name);
5878			if (cw == NULL)
5879				printf(" [UNKNOWN]");
5880			else if (cw->enable == 0)
5881				printf(" [DISABLED]");
5882			if (w->nconns > 1 && w->selconn == j && w->type !=
5883			    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_MIXER)
5884				printf(" (selected)");
5885			printf("\n");
5886		}
5887	}
5888
5889}
5890
5891static void
5892hdaa_dump_dst_nid(struct hdaa_pcm_devinfo *pdevinfo, nid_t nid, int depth)
5893{
5894	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
5895	struct hdaa_widget *w, *cw;
5896	char buf[64];
5897	int i;
5898
5899	if (depth > HDA_PARSE_MAXDEPTH)
5900		return;
5901
5902	w = hdaa_widget_get(devinfo, nid);
5903	if (w == NULL || w->enable == 0)
5904		return;
5905
5906	if (depth == 0)
5907		device_printf(pdevinfo->dev, "%*s", 4, "");
5908	else
5909		device_printf(pdevinfo->dev, "%*s  + <- ", 4 + (depth - 1) * 7, "");
5910	printf("nid=%d [%s]", w->nid, w->name);
5911
5912	if (depth > 0) {
5913		if (w->ossmask == 0) {
5914			printf("\n");
5915			return;
5916		}
5917		printf(" [src: %s]",
5918		    hdaa_audio_ctl_ossmixer_mask2allname(
5919			w->ossmask, buf, sizeof(buf)));
5920		if (w->ossdev >= 0) {
5921			printf("\n");
5922			return;
5923		}
5924	}
5925	printf("\n");
5926
5927	for (i = 0; i < w->nconns; i++) {
5928		if (w->connsenable[i] == 0)
5929			continue;
5930		cw = hdaa_widget_get(devinfo, w->conns[i]);
5931		if (cw == NULL || cw->enable == 0 || cw->bindas == -1)
5932			continue;
5933		hdaa_dump_dst_nid(pdevinfo, w->conns[i], depth + 1);
5934	}
5935
5936}
5937
5938static void
5939hdaa_dump_dac(struct hdaa_pcm_devinfo *pdevinfo)
5940{
5941	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
5942	struct hdaa_audio_as *as;
5943	struct hdaa_widget *w;
5944	nid_t *nids;
5945	int chid, i;
5946
5947	if (pdevinfo->playas < 0)
5948		return;
5949
5950	device_printf(pdevinfo->dev, "Playback:\n");
5951
5952	chid = devinfo->as[pdevinfo->playas].chans[0];
5953	hdaa_dump_audio_formats(pdevinfo->dev,
5954	    devinfo->chans[chid].supp_stream_formats,
5955	    devinfo->chans[chid].supp_pcm_size_rate);
5956	for (i = 0; i < devinfo->as[pdevinfo->playas].num_chans; i++) {
5957		chid = devinfo->as[pdevinfo->playas].chans[i];
5958		device_printf(pdevinfo->dev, "            DAC:");
5959		for (nids = devinfo->chans[chid].io; *nids != -1; nids++)
5960			printf(" %d", *nids);
5961		printf("\n");
5962	}
5963
5964	as = &devinfo->as[pdevinfo->playas];
5965	for (i = 0; i < 16; i++) {
5966		if (as->pins[i] <= 0)
5967			continue;
5968		w = hdaa_widget_get(devinfo, as->pins[i]);
5969		if (w == NULL || w->enable == 0)
5970			continue;
5971		device_printf(pdevinfo->dev, "\n");
5972		hdaa_dump_dst_nid(pdevinfo, as->pins[i], 0);
5973	}
5974	device_printf(pdevinfo->dev, "\n");
5975}
5976
5977static void
5978hdaa_dump_adc(struct hdaa_pcm_devinfo *pdevinfo)
5979{
5980	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
5981	struct hdaa_widget *w;
5982	nid_t *nids;
5983	int chid, i;
5984
5985	if (pdevinfo->recas < 0)
5986		return;
5987
5988	device_printf(pdevinfo->dev, "Record:\n");
5989
5990	chid = devinfo->as[pdevinfo->recas].chans[0];
5991	hdaa_dump_audio_formats(pdevinfo->dev,
5992	    devinfo->chans[chid].supp_stream_formats,
5993	    devinfo->chans[chid].supp_pcm_size_rate);
5994	for (i = 0; i < devinfo->as[pdevinfo->recas].num_chans; i++) {
5995		chid = devinfo->as[pdevinfo->recas].chans[i];
5996		device_printf(pdevinfo->dev, "            ADC:");
5997		for (nids = devinfo->chans[chid].io; *nids != -1; nids++)
5998			printf(" %d", *nids);
5999		printf("\n");
6000	}
6001
6002	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
6003		w = hdaa_widget_get(devinfo, i);
6004		if (w == NULL || w->enable == 0)
6005			continue;
6006		if (w->type != HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_AUDIO_INPUT)
6007			continue;
6008		if (w->bindas != pdevinfo->recas)
6009			continue;
6010		device_printf(pdevinfo->dev, "\n");
6011		hdaa_dump_dst_nid(pdevinfo, i, 0);
6012	}
6013	device_printf(pdevinfo->dev, "\n");
6014}
6015
6016static void
6017hdaa_dump_mix(struct hdaa_pcm_devinfo *pdevinfo)
6018{
6019	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
6020	struct hdaa_widget *w;
6021	int i;
6022	int printed = 0;
6023
6024	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
6025		w = hdaa_widget_get(devinfo, i);
6026		if (w == NULL || w->enable == 0)
6027			continue;
6028		if (w->ossdev != SOUND_MIXER_IMIX)
6029			continue;
6030		if (w->bindas != pdevinfo->recas)
6031			continue;
6032		if (printed == 0) {
6033			printed = 1;
6034			device_printf(pdevinfo->dev, "Input Mix:\n");
6035		}
6036		device_printf(pdevinfo->dev, "\n");
6037		hdaa_dump_dst_nid(pdevinfo, i, 0);
6038	}
6039	if (printed)
6040		device_printf(pdevinfo->dev, "\n");
6041}
6042
6043static void
6044hdaa_pindump(device_t dev)
6045{
6046	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6047	struct hdaa_widget *w;
6048	uint32_t res, pincap, delay;
6049	int i;
6050
6051	device_printf(dev, "Dumping AFG pins:\n");
6052	device_printf(dev, "nid   0x    as seq "
6053	    "device       conn  jack    loc        color   misc\n");
6054	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
6055		w = hdaa_widget_get(devinfo, i);
6056		if (w == NULL || w->type !=
6057		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
6058			continue;
6059		hdaa_dump_pin_config(w, w->wclass.pin.config);
6060		pincap = w->wclass.pin.cap;
6061		device_printf(dev, "    Caps: %2s %3s %2s %4s %4s",
6062		    HDA_PARAM_PIN_CAP_INPUT_CAP(pincap)?"IN":"",
6063		    HDA_PARAM_PIN_CAP_OUTPUT_CAP(pincap)?"OUT":"",
6064		    HDA_PARAM_PIN_CAP_HEADPHONE_CAP(pincap)?"HP":"",
6065		    HDA_PARAM_PIN_CAP_EAPD_CAP(pincap)?"EAPD":"",
6066		    HDA_PARAM_PIN_CAP_VREF_CTRL(pincap)?"VREF":"");
6067		if (HDA_PARAM_PIN_CAP_IMP_SENSE_CAP(pincap) ||
6068		    HDA_PARAM_PIN_CAP_PRESENCE_DETECT_CAP(pincap)) {
6069			if (HDA_PARAM_PIN_CAP_TRIGGER_REQD(pincap)) {
6070				delay = 0;
6071				hda_command(dev,
6072				    HDA_CMD_SET_PIN_SENSE(0, w->nid, 0));
6073				do {
6074					res = hda_command(dev,
6075					    HDA_CMD_GET_PIN_SENSE(0, w->nid));
6076					if (res != 0x7fffffff && res != 0xffffffff)
6077						break;
6078					DELAY(10);
6079				} while (++delay < 10000);
6080			} else {
6081				delay = 0;
6082				res = hda_command(dev, HDA_CMD_GET_PIN_SENSE(0,
6083				    w->nid));
6084			}
6085			printf(" Sense: 0x%08x (%sconnected%s)", res,
6086			    (res & HDA_CMD_GET_PIN_SENSE_PRESENCE_DETECT) ?
6087			     "" : "dis",
6088			    (HDA_PARAM_AUDIO_WIDGET_CAP_DIGITAL(w->param.widget_cap) &&
6089			     (res & HDA_CMD_GET_PIN_SENSE_ELD_VALID)) ?
6090			      ", ELD valid" : "");
6091			if (delay > 0)
6092				printf(" delay %dus", delay * 10);
6093		}
6094		printf("\n");
6095	}
6096	device_printf(dev,
6097	    "NumGPIO=%d NumGPO=%d NumGPI=%d GPIWake=%d GPIUnsol=%d\n",
6098	    HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap),
6099	    HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap),
6100	    HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap),
6101	    HDA_PARAM_GPIO_COUNT_GPI_WAKE(devinfo->gpio_cap),
6102	    HDA_PARAM_GPIO_COUNT_GPI_UNSOL(devinfo->gpio_cap));
6103	hdaa_dump_gpi(devinfo);
6104	hdaa_dump_gpio(devinfo);
6105	hdaa_dump_gpo(devinfo);
6106}
6107
6108static void
6109hdaa_configure(device_t dev)
6110{
6111	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6112	struct hdaa_audio_ctl *ctl;
6113	int i;
6114
6115	HDA_BOOTHVERBOSE(
6116		device_printf(dev, "Applying built-in patches...\n");
6117	);
6118	hdaa_patch(devinfo);
6119	HDA_BOOTHVERBOSE(
6120		device_printf(dev, "Applying local patches...\n");
6121	);
6122	hdaa_local_patch(devinfo);
6123	hdaa_audio_postprocess(devinfo);
6124	HDA_BOOTHVERBOSE(
6125		device_printf(dev, "Parsing Ctls...\n");
6126	);
6127	hdaa_audio_ctl_parse(devinfo);
6128	HDA_BOOTHVERBOSE(
6129		device_printf(dev, "Disabling nonaudio...\n");
6130	);
6131	hdaa_audio_disable_nonaudio(devinfo);
6132	HDA_BOOTHVERBOSE(
6133		device_printf(dev, "Disabling useless...\n");
6134	);
6135	hdaa_audio_disable_useless(devinfo);
6136	HDA_BOOTVERBOSE(
6137		device_printf(dev, "Patched pins configuration:\n");
6138		hdaa_dump_pin_configs(devinfo);
6139	);
6140	HDA_BOOTHVERBOSE(
6141		device_printf(dev, "Parsing pin associations...\n");
6142	);
6143	hdaa_audio_as_parse(devinfo);
6144	HDA_BOOTHVERBOSE(
6145		device_printf(dev, "Building AFG tree...\n");
6146	);
6147	hdaa_audio_build_tree(devinfo);
6148	HDA_BOOTHVERBOSE(
6149		device_printf(dev, "Disabling unassociated "
6150		    "widgets...\n");
6151	);
6152	hdaa_audio_disable_unas(devinfo);
6153	HDA_BOOTHVERBOSE(
6154		device_printf(dev, "Disabling nonselected "
6155		    "inputs...\n");
6156	);
6157	hdaa_audio_disable_notselected(devinfo);
6158	HDA_BOOTHVERBOSE(
6159		device_printf(dev, "Disabling useless...\n");
6160	);
6161	hdaa_audio_disable_useless(devinfo);
6162	HDA_BOOTHVERBOSE(
6163		device_printf(dev, "Disabling "
6164		    "crossassociatement connections...\n");
6165	);
6166	hdaa_audio_disable_crossas(devinfo);
6167	HDA_BOOTHVERBOSE(
6168		device_printf(dev, "Disabling useless...\n");
6169	);
6170	hdaa_audio_disable_useless(devinfo);
6171	HDA_BOOTHVERBOSE(
6172		device_printf(dev, "Binding associations to channels...\n");
6173	);
6174	hdaa_audio_bind_as(devinfo);
6175	HDA_BOOTHVERBOSE(
6176		device_printf(dev, "Assigning names to signal sources...\n");
6177	);
6178	hdaa_audio_assign_names(devinfo);
6179	HDA_BOOTHVERBOSE(
6180		device_printf(dev, "Preparing PCM devices...\n");
6181	);
6182	hdaa_prepare_pcms(devinfo);
6183	HDA_BOOTHVERBOSE(
6184		device_printf(dev, "Assigning mixers to the tree...\n");
6185	);
6186	hdaa_audio_assign_mixers(devinfo);
6187	HDA_BOOTHVERBOSE(
6188		device_printf(dev, "Preparing pin controls...\n");
6189	);
6190	hdaa_audio_prepare_pin_ctrl(devinfo);
6191	HDA_BOOTHVERBOSE(
6192		device_printf(dev, "AFG commit...\n");
6193	);
6194	hdaa_audio_commit(devinfo);
6195	HDA_BOOTHVERBOSE(
6196		device_printf(dev, "Applying direct built-in patches...\n");
6197	);
6198	hdaa_patch_direct(devinfo);
6199	HDA_BOOTHVERBOSE(
6200		device_printf(dev, "Pin sense init...\n");
6201	);
6202	hdaa_sense_init(devinfo);
6203	HDA_BOOTHVERBOSE(
6204		device_printf(dev, "Creating PCM devices...\n");
6205	);
6206	hdaa_create_pcms(devinfo);
6207
6208	HDA_BOOTVERBOSE(
6209		if (devinfo->quirks != 0) {
6210			device_printf(dev, "FG config/quirks:");
6211			for (i = 0; i < nitems(hdaa_quirks_tab); i++) {
6212				if ((devinfo->quirks &
6213				    hdaa_quirks_tab[i].value) ==
6214				    hdaa_quirks_tab[i].value)
6215					printf(" %s", hdaa_quirks_tab[i].key);
6216			}
6217			printf("\n");
6218		}
6219	);
6220
6221	HDA_BOOTHVERBOSE(
6222		device_printf(dev, "\n");
6223		device_printf(dev, "+-----------+\n");
6224		device_printf(dev, "| HDA NODES |\n");
6225		device_printf(dev, "+-----------+\n");
6226		hdaa_dump_nodes(devinfo);
6227
6228		device_printf(dev, "\n");
6229		device_printf(dev, "+----------------+\n");
6230		device_printf(dev, "| HDA AMPLIFIERS |\n");
6231		device_printf(dev, "+----------------+\n");
6232		device_printf(dev, "\n");
6233		i = 0;
6234		while ((ctl = hdaa_audio_ctl_each(devinfo, &i)) != NULL) {
6235			device_printf(dev, "%3d: nid %3d %s (%s) index %d", i,
6236			    (ctl->widget != NULL) ? ctl->widget->nid : -1,
6237			    (ctl->ndir == HDAA_CTL_IN)?"in ":"out",
6238			    (ctl->dir == HDAA_CTL_IN)?"in ":"out",
6239			    ctl->index);
6240			if (ctl->childwidget != NULL)
6241				printf(" cnid %3d", ctl->childwidget->nid);
6242			else
6243				printf("         ");
6244			printf(" ossmask=0x%08x\n",
6245			    ctl->ossmask);
6246			device_printf(dev,
6247			    "       mute: %d step: %3d size: %3d off: %3d%s\n",
6248			    ctl->mute, ctl->step, ctl->size, ctl->offset,
6249			    (ctl->enable == 0) ? " [DISABLED]" :
6250			    ((ctl->ossmask == 0) ? " [UNUSED]" : ""));
6251		}
6252		device_printf(dev, "\n");
6253	);
6254}
6255
6256static void
6257hdaa_unconfigure(device_t dev)
6258{
6259	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6260	struct hdaa_widget *w;
6261	int i, j;
6262
6263	HDA_BOOTHVERBOSE(
6264		device_printf(dev, "Pin sense deinit...\n");
6265	);
6266	hdaa_sense_deinit(devinfo);
6267	free(devinfo->ctl, M_HDAA);
6268	devinfo->ctl = NULL;
6269	devinfo->ctlcnt = 0;
6270	free(devinfo->as, M_HDAA);
6271	devinfo->as = NULL;
6272	devinfo->ascnt = 0;
6273	free(devinfo->devs, M_HDAA);
6274	devinfo->devs = NULL;
6275	devinfo->num_devs = 0;
6276	free(devinfo->chans, M_HDAA);
6277	devinfo->chans = NULL;
6278	devinfo->num_chans = 0;
6279	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
6280		w = hdaa_widget_get(devinfo, i);
6281		if (w == NULL)
6282			continue;
6283		w->enable = 1;
6284		w->selconn = -1;
6285		w->pflags = 0;
6286		w->bindas = -1;
6287		w->bindseqmask = 0;
6288		w->ossdev = -1;
6289		w->ossmask = 0;
6290		for (j = 0; j < w->nconns; j++)
6291			w->connsenable[j] = 1;
6292		if (w->type == HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
6293			w->wclass.pin.config = w->wclass.pin.newconf;
6294		if (w->eld != NULL) {
6295			w->eld_len = 0;
6296			free(w->eld, M_HDAA);
6297			w->eld = NULL;
6298		}
6299	}
6300}
6301
6302static int
6303hdaa_sysctl_gpi_state(SYSCTL_HANDLER_ARGS)
6304{
6305	struct hdaa_devinfo *devinfo = oidp->oid_arg1;
6306	device_t dev = devinfo->dev;
6307	char buf[256];
6308	int n = 0, i, numgpi;
6309	uint32_t data = 0;
6310
6311	buf[0] = 0;
6312	hdaa_lock(devinfo);
6313	numgpi = HDA_PARAM_GPIO_COUNT_NUM_GPI(devinfo->gpio_cap);
6314	if (numgpi > 0) {
6315		data = hda_command(dev,
6316		    HDA_CMD_GET_GPI_DATA(0, devinfo->nid));
6317	}
6318	hdaa_unlock(devinfo);
6319	for (i = 0; i < numgpi; i++) {
6320		n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%d",
6321		    n != 0 ? " " : "", i, ((data >> i) & 1));
6322	}
6323	return (sysctl_handle_string(oidp, buf, sizeof(buf), req));
6324}
6325
6326static int
6327hdaa_sysctl_gpio_state(SYSCTL_HANDLER_ARGS)
6328{
6329	struct hdaa_devinfo *devinfo = oidp->oid_arg1;
6330	device_t dev = devinfo->dev;
6331	char buf[256];
6332	int n = 0, i, numgpio;
6333	uint32_t data = 0, enable = 0, dir = 0;
6334
6335	buf[0] = 0;
6336	hdaa_lock(devinfo);
6337	numgpio = HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap);
6338	if (numgpio > 0) {
6339		data = hda_command(dev,
6340		    HDA_CMD_GET_GPIO_DATA(0, devinfo->nid));
6341		enable = hda_command(dev,
6342		    HDA_CMD_GET_GPIO_ENABLE_MASK(0, devinfo->nid));
6343		dir = hda_command(dev,
6344		    HDA_CMD_GET_GPIO_DIRECTION(0, devinfo->nid));
6345	}
6346	hdaa_unlock(devinfo);
6347	for (i = 0; i < numgpio; i++) {
6348		n += snprintf(buf + n, sizeof(buf) - n, "%s%d=",
6349		    n != 0 ? " " : "", i);
6350		if ((enable & (1 << i)) == 0) {
6351			n += snprintf(buf + n, sizeof(buf) - n, "disabled");
6352			continue;
6353		}
6354		n += snprintf(buf + n, sizeof(buf) - n, "%sput(%d)",
6355		    ((dir >> i) & 1) ? "out" : "in", ((data >> i) & 1));
6356	}
6357	return (sysctl_handle_string(oidp, buf, sizeof(buf), req));
6358}
6359
6360static int
6361hdaa_sysctl_gpio_config(SYSCTL_HANDLER_ARGS)
6362{
6363	struct hdaa_devinfo *devinfo = oidp->oid_arg1;
6364	char buf[256];
6365	int error, n = 0, i, numgpio;
6366	uint32_t gpio, x;
6367
6368	gpio = devinfo->newgpio;
6369	numgpio = HDA_PARAM_GPIO_COUNT_NUM_GPIO(devinfo->gpio_cap);
6370	buf[0] = 0;
6371	for (i = 0; i < numgpio; i++) {
6372		x = (gpio & HDAA_GPIO_MASK(i)) >> HDAA_GPIO_SHIFT(i);
6373		n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%s",
6374		    n != 0 ? " " : "", i, HDA_GPIO_ACTIONS[x]);
6375	}
6376	error = sysctl_handle_string(oidp, buf, sizeof(buf), req);
6377	if (error != 0 || req->newptr == NULL)
6378		return (error);
6379	if (strncmp(buf, "0x", 2) == 0)
6380		gpio = strtol(buf + 2, NULL, 16);
6381	else
6382		gpio = hdaa_gpio_patch(gpio, buf);
6383	hdaa_lock(devinfo);
6384	devinfo->newgpio = devinfo->gpio = gpio;
6385	hdaa_gpio_commit(devinfo);
6386	hdaa_unlock(devinfo);
6387	return (0);
6388}
6389
6390static int
6391hdaa_sysctl_gpo_state(SYSCTL_HANDLER_ARGS)
6392{
6393	struct hdaa_devinfo *devinfo = oidp->oid_arg1;
6394	device_t dev = devinfo->dev;
6395	char buf[256];
6396	int n = 0, i, numgpo;
6397	uint32_t data = 0;
6398
6399	buf[0] = 0;
6400	hdaa_lock(devinfo);
6401	numgpo = HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap);
6402	if (numgpo > 0) {
6403		data = hda_command(dev,
6404		    HDA_CMD_GET_GPO_DATA(0, devinfo->nid));
6405	}
6406	hdaa_unlock(devinfo);
6407	for (i = 0; i < numgpo; i++) {
6408		n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%d",
6409		    n != 0 ? " " : "", i, ((data >> i) & 1));
6410	}
6411	return (sysctl_handle_string(oidp, buf, sizeof(buf), req));
6412}
6413
6414static int
6415hdaa_sysctl_gpo_config(SYSCTL_HANDLER_ARGS)
6416{
6417	struct hdaa_devinfo *devinfo = oidp->oid_arg1;
6418	char buf[256];
6419	int error, n = 0, i, numgpo;
6420	uint32_t gpo, x;
6421
6422	gpo = devinfo->newgpo;
6423	numgpo = HDA_PARAM_GPIO_COUNT_NUM_GPO(devinfo->gpio_cap);
6424	buf[0] = 0;
6425	for (i = 0; i < numgpo; i++) {
6426		x = (gpo & HDAA_GPIO_MASK(i)) >> HDAA_GPIO_SHIFT(i);
6427		n += snprintf(buf + n, sizeof(buf) - n, "%s%d=%s",
6428		    n != 0 ? " " : "", i, HDA_GPIO_ACTIONS[x]);
6429	}
6430	error = sysctl_handle_string(oidp, buf, sizeof(buf), req);
6431	if (error != 0 || req->newptr == NULL)
6432		return (error);
6433	if (strncmp(buf, "0x", 2) == 0)
6434		gpo = strtol(buf + 2, NULL, 16);
6435	else
6436		gpo = hdaa_gpio_patch(gpo, buf);
6437	hdaa_lock(devinfo);
6438	devinfo->newgpo = devinfo->gpo = gpo;
6439	hdaa_gpo_commit(devinfo);
6440	hdaa_unlock(devinfo);
6441	return (0);
6442}
6443
6444static int
6445hdaa_sysctl_reconfig(SYSCTL_HANDLER_ARGS)
6446{
6447	device_t dev;
6448	struct hdaa_devinfo *devinfo;
6449	int error, val;
6450
6451	dev = oidp->oid_arg1;
6452	devinfo = device_get_softc(dev);
6453	if (devinfo == NULL)
6454		return (EINVAL);
6455	val = 0;
6456	error = sysctl_handle_int(oidp, &val, 0, req);
6457	if (error != 0 || req->newptr == NULL || val == 0)
6458		return (error);
6459
6460	HDA_BOOTHVERBOSE(
6461		device_printf(dev, "Reconfiguration...\n");
6462	);
6463	if ((error = device_delete_children(dev)) != 0)
6464		return (error);
6465	hdaa_lock(devinfo);
6466	hdaa_unconfigure(dev);
6467	hdaa_configure(dev);
6468	hdaa_unlock(devinfo);
6469	bus_generic_attach(dev);
6470	HDA_BOOTHVERBOSE(
6471		device_printf(dev, "Reconfiguration done\n");
6472	);
6473	return (0);
6474}
6475
6476static int
6477hdaa_suspend(device_t dev)
6478{
6479	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6480	int i;
6481
6482	HDA_BOOTHVERBOSE(
6483		device_printf(dev, "Suspend...\n");
6484	);
6485	hdaa_lock(devinfo);
6486	HDA_BOOTHVERBOSE(
6487		device_printf(dev, "Stop streams...\n");
6488	);
6489	for (i = 0; i < devinfo->num_chans; i++) {
6490		if (devinfo->chans[i].flags & HDAA_CHN_RUNNING) {
6491			devinfo->chans[i].flags |= HDAA_CHN_SUSPEND;
6492			hdaa_channel_stop(&devinfo->chans[i]);
6493		}
6494	}
6495	HDA_BOOTHVERBOSE(
6496		device_printf(dev, "Power down FG"
6497		    " nid=%d to the D3 state...\n",
6498		    devinfo->nid);
6499	);
6500	hda_command(devinfo->dev,
6501	    HDA_CMD_SET_POWER_STATE(0,
6502	    devinfo->nid, HDA_CMD_POWER_STATE_D3));
6503	callout_stop(&devinfo->poll_jack);
6504	hdaa_unlock(devinfo);
6505	callout_drain(&devinfo->poll_jack);
6506	HDA_BOOTHVERBOSE(
6507		device_printf(dev, "Suspend done\n");
6508	);
6509	return (0);
6510}
6511
6512static int
6513hdaa_resume(device_t dev)
6514{
6515	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6516	int i;
6517
6518	HDA_BOOTHVERBOSE(
6519		device_printf(dev, "Resume...\n");
6520	);
6521	hdaa_lock(devinfo);
6522	HDA_BOOTHVERBOSE(
6523		device_printf(dev, "Power up audio FG nid=%d...\n",
6524		    devinfo->nid);
6525	);
6526	hdaa_powerup(devinfo);
6527	HDA_BOOTHVERBOSE(
6528		device_printf(dev, "AFG commit...\n");
6529	);
6530	hdaa_audio_commit(devinfo);
6531	HDA_BOOTHVERBOSE(
6532		device_printf(dev, "Applying direct built-in patches...\n");
6533	);
6534	hdaa_patch_direct(devinfo);
6535	HDA_BOOTHVERBOSE(
6536		device_printf(dev, "Pin sense init...\n");
6537	);
6538	hdaa_sense_init(devinfo);
6539
6540	hdaa_unlock(devinfo);
6541	for (i = 0; i < devinfo->num_devs; i++) {
6542		struct hdaa_pcm_devinfo *pdevinfo = &devinfo->devs[i];
6543		HDA_BOOTHVERBOSE(
6544			device_printf(pdevinfo->dev,
6545			    "OSS mixer reinitialization...\n");
6546		);
6547		if (mixer_reinit(pdevinfo->dev) == -1)
6548			device_printf(pdevinfo->dev,
6549			    "unable to reinitialize the mixer\n");
6550	}
6551	hdaa_lock(devinfo);
6552	HDA_BOOTHVERBOSE(
6553		device_printf(dev, "Start streams...\n");
6554	);
6555	for (i = 0; i < devinfo->num_chans; i++) {
6556		if (devinfo->chans[i].flags & HDAA_CHN_SUSPEND) {
6557			devinfo->chans[i].flags &= ~HDAA_CHN_SUSPEND;
6558			hdaa_channel_start(&devinfo->chans[i]);
6559		}
6560	}
6561	hdaa_unlock(devinfo);
6562	HDA_BOOTHVERBOSE(
6563		device_printf(dev, "Resume done\n");
6564	);
6565	return (0);
6566}
6567
6568static int
6569hdaa_probe(device_t dev)
6570{
6571	const char *pdesc;
6572	char buf[128];
6573
6574	if (hda_get_node_type(dev) != HDA_PARAM_FCT_GRP_TYPE_NODE_TYPE_AUDIO)
6575		return (ENXIO);
6576	pdesc = device_get_desc(device_get_parent(dev));
6577	snprintf(buf, sizeof(buf), "%.*s Audio Function Group",
6578	    (int)(strlen(pdesc) - 10), pdesc);
6579	device_set_desc_copy(dev, buf);
6580	return (BUS_PROBE_DEFAULT);
6581}
6582
6583static int
6584hdaa_attach(device_t dev)
6585{
6586	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6587	uint32_t res;
6588	nid_t nid = hda_get_node_id(dev);
6589
6590	devinfo->dev = dev;
6591	devinfo->lock = HDAC_GET_MTX(device_get_parent(dev), dev);
6592	devinfo->nid = nid;
6593	devinfo->newquirks = -1;
6594	devinfo->newgpio = -1;
6595	devinfo->newgpo = -1;
6596	callout_init(&devinfo->poll_jack, 1);
6597	devinfo->poll_ival = hz;
6598
6599	hdaa_lock(devinfo);
6600	res = hda_command(dev,
6601	    HDA_CMD_GET_PARAMETER(0 , nid, HDA_PARAM_SUB_NODE_COUNT));
6602	hdaa_unlock(devinfo);
6603
6604	devinfo->nodecnt = HDA_PARAM_SUB_NODE_COUNT_TOTAL(res);
6605	devinfo->startnode = HDA_PARAM_SUB_NODE_COUNT_START(res);
6606	devinfo->endnode = devinfo->startnode + devinfo->nodecnt;
6607
6608	HDA_BOOTVERBOSE(
6609		device_printf(dev, "Subsystem ID: 0x%08x\n",
6610		    hda_get_subsystem_id(dev));
6611	);
6612	HDA_BOOTHVERBOSE(
6613		device_printf(dev,
6614		    "Audio Function Group at nid=%d: %d subnodes %d-%d\n",
6615		    nid, devinfo->nodecnt,
6616		    devinfo->startnode, devinfo->endnode - 1);
6617	);
6618
6619	if (devinfo->nodecnt > 0)
6620		devinfo->widget = (struct hdaa_widget *)malloc(
6621		    sizeof(*(devinfo->widget)) * devinfo->nodecnt, M_HDAA,
6622		    M_WAITOK | M_ZERO);
6623	else
6624		devinfo->widget = NULL;
6625
6626	hdaa_lock(devinfo);
6627	HDA_BOOTHVERBOSE(
6628		device_printf(dev, "Powering up...\n");
6629	);
6630	hdaa_powerup(devinfo);
6631	HDA_BOOTHVERBOSE(
6632		device_printf(dev, "Parsing audio FG...\n");
6633	);
6634	hdaa_audio_parse(devinfo);
6635	HDA_BOOTVERBOSE(
6636		device_printf(dev, "Original pins configuration:\n");
6637		hdaa_dump_pin_configs(devinfo);
6638	);
6639	hdaa_configure(dev);
6640	hdaa_unlock(devinfo);
6641
6642	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6643	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6644	    "config", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE,
6645	    &devinfo->newquirks, 0, hdaa_sysctl_quirks, "A",
6646	    "Configuration options");
6647	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6648	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6649	    "gpi_state", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
6650	    devinfo, 0, hdaa_sysctl_gpi_state, "A", "GPI state");
6651	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6652	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6653	    "gpio_state", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
6654	    devinfo, 0, hdaa_sysctl_gpio_state, "A", "GPIO state");
6655	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6656	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6657	    "gpio_config", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE,
6658	    devinfo, 0, hdaa_sysctl_gpio_config, "A", "GPIO configuration");
6659	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6660	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6661	    "gpo_state", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
6662	    devinfo, 0, hdaa_sysctl_gpo_state, "A", "GPO state");
6663	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6664	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6665	    "gpo_config", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE,
6666	    devinfo, 0, hdaa_sysctl_gpo_config, "A", "GPO configuration");
6667	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
6668	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)), OID_AUTO,
6669	    "reconfig", CTLTYPE_INT | CTLFLAG_RW,
6670	    dev, 0, hdaa_sysctl_reconfig, "I", "Reprocess configuration");
6671	bus_generic_attach(dev);
6672	return (0);
6673}
6674
6675static int
6676hdaa_detach(device_t dev)
6677{
6678	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6679	int error;
6680
6681	if ((error = device_delete_children(dev)) != 0)
6682		return (error);
6683
6684	hdaa_lock(devinfo);
6685	hdaa_unconfigure(dev);
6686	devinfo->poll_ival = 0;
6687	callout_stop(&devinfo->poll_jack);
6688	hdaa_unlock(devinfo);
6689	callout_drain(&devinfo->poll_jack);
6690
6691	free(devinfo->widget, M_HDAA);
6692	return (0);
6693}
6694
6695static int
6696hdaa_print_child(device_t dev, device_t child)
6697{
6698	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6699	struct hdaa_pcm_devinfo *pdevinfo =
6700	    (struct hdaa_pcm_devinfo *)device_get_ivars(child);
6701	struct hdaa_audio_as *as;
6702	int retval, first = 1, i;
6703
6704	retval = bus_print_child_header(dev, child);
6705	retval += printf(" at nid ");
6706	if (pdevinfo->playas >= 0) {
6707		as = &devinfo->as[pdevinfo->playas];
6708		for (i = 0; i < 16; i++) {
6709			if (as->pins[i] <= 0)
6710				continue;
6711			retval += printf("%s%d", first ? "" : ",", as->pins[i]);
6712			first = 0;
6713		}
6714	}
6715	if (pdevinfo->recas >= 0) {
6716		if (pdevinfo->playas >= 0) {
6717			retval += printf(" and ");
6718			first = 1;
6719		}
6720		as = &devinfo->as[pdevinfo->recas];
6721		for (i = 0; i < 16; i++) {
6722			if (as->pins[i] <= 0)
6723				continue;
6724			retval += printf("%s%d", first ? "" : ",", as->pins[i]);
6725			first = 0;
6726		}
6727	}
6728	retval += bus_print_child_footer(dev, child);
6729
6730	return (retval);
6731}
6732
6733static int
6734hdaa_child_location_str(device_t dev, device_t child, char *buf,
6735    size_t buflen)
6736{
6737	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6738	struct hdaa_pcm_devinfo *pdevinfo =
6739	    (struct hdaa_pcm_devinfo *)device_get_ivars(child);
6740	struct hdaa_audio_as *as;
6741	int first = 1, i, len = 0;
6742
6743	len += snprintf(buf + len, buflen - len, "nid=");
6744	if (pdevinfo->playas >= 0) {
6745		as = &devinfo->as[pdevinfo->playas];
6746		for (i = 0; i < 16; i++) {
6747			if (as->pins[i] <= 0)
6748				continue;
6749			len += snprintf(buf + len, buflen - len,
6750			    "%s%d", first ? "" : ",", as->pins[i]);
6751			first = 0;
6752		}
6753	}
6754	if (pdevinfo->recas >= 0) {
6755		as = &devinfo->as[pdevinfo->recas];
6756		for (i = 0; i < 16; i++) {
6757			if (as->pins[i] <= 0)
6758				continue;
6759			len += snprintf(buf + len, buflen - len,
6760			    "%s%d", first ? "" : ",", as->pins[i]);
6761			first = 0;
6762		}
6763	}
6764	return (0);
6765}
6766
6767static void
6768hdaa_stream_intr(device_t dev, int dir, int stream)
6769{
6770	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6771	struct hdaa_chan *ch;
6772	int i;
6773
6774	for (i = 0; i < devinfo->num_chans; i++) {
6775		ch = &devinfo->chans[i];
6776		if (!(ch->flags & HDAA_CHN_RUNNING))
6777			continue;
6778		if (ch->dir == ((dir == 1) ? PCMDIR_PLAY : PCMDIR_REC) &&
6779		    ch->sid == stream) {
6780			hdaa_unlock(devinfo);
6781			chn_intr(ch->c);
6782			hdaa_lock(devinfo);
6783		}
6784	}
6785}
6786
6787static void
6788hdaa_unsol_intr(device_t dev, uint32_t resp)
6789{
6790	struct hdaa_devinfo *devinfo = device_get_softc(dev);
6791	struct hdaa_widget *w;
6792	int i, tag, flags;
6793
6794	HDA_BOOTHVERBOSE(
6795		device_printf(dev, "Unsolicited response %08x\n", resp);
6796	);
6797	tag = resp >> 26;
6798	for (i = devinfo->startnode; i < devinfo->endnode; i++) {
6799		w = hdaa_widget_get(devinfo, i);
6800		if (w == NULL || w->enable == 0 || w->type !=
6801		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
6802			continue;
6803		if (w->unsol != tag)
6804			continue;
6805		if (HDA_PARAM_PIN_CAP_DP(w->wclass.pin.cap) ||
6806		    HDA_PARAM_PIN_CAP_HDMI(w->wclass.pin.cap))
6807			flags = resp & 0x03;
6808		else
6809			flags = 0x01;
6810		if (flags & 0x01)
6811			hdaa_presence_handler(w);
6812		if (flags & 0x02)
6813			hdaa_eld_handler(w);
6814	}
6815}
6816
6817static device_method_t hdaa_methods[] = {
6818	/* device interface */
6819	DEVMETHOD(device_probe,		hdaa_probe),
6820	DEVMETHOD(device_attach,	hdaa_attach),
6821	DEVMETHOD(device_detach,	hdaa_detach),
6822	DEVMETHOD(device_suspend,	hdaa_suspend),
6823	DEVMETHOD(device_resume,	hdaa_resume),
6824	/* Bus interface */
6825	DEVMETHOD(bus_print_child,	hdaa_print_child),
6826	DEVMETHOD(bus_child_location_str, hdaa_child_location_str),
6827	DEVMETHOD(hdac_stream_intr,	hdaa_stream_intr),
6828	DEVMETHOD(hdac_unsol_intr,	hdaa_unsol_intr),
6829	DEVMETHOD(hdac_pindump,		hdaa_pindump),
6830	DEVMETHOD_END
6831};
6832
6833static driver_t hdaa_driver = {
6834	"hdaa",
6835	hdaa_methods,
6836	sizeof(struct hdaa_devinfo),
6837};
6838
6839static devclass_t hdaa_devclass;
6840
6841DRIVER_MODULE(snd_hda, hdacc, hdaa_driver, hdaa_devclass, NULL, NULL);
6842
6843static void
6844hdaa_chan_formula(struct hdaa_devinfo *devinfo, int asid,
6845    char *buf, int buflen)
6846{
6847	struct hdaa_audio_as *as;
6848	int c;
6849
6850	as = &devinfo->as[asid];
6851	c = devinfo->chans[as->chans[0]].channels;
6852	if (c == 1)
6853		snprintf(buf, buflen, "mono");
6854	else if (c == 2) {
6855		if (as->hpredir < 0)
6856			buf[0] = 0;
6857		else
6858			snprintf(buf, buflen, "2.0");
6859	} else if (as->pinset == 0x0003)
6860		snprintf(buf, buflen, "3.1");
6861	else if (as->pinset == 0x0005 || as->pinset == 0x0011)
6862		snprintf(buf, buflen, "4.0");
6863	else if (as->pinset == 0x0007 || as->pinset == 0x0013)
6864		snprintf(buf, buflen, "5.1");
6865	else if (as->pinset == 0x0017)
6866		snprintf(buf, buflen, "7.1");
6867	else
6868		snprintf(buf, buflen, "%dch", c);
6869	if (as->hpredir >= 0)
6870		strlcat(buf, "+HP", buflen);
6871}
6872
6873static int
6874hdaa_chan_type(struct hdaa_devinfo *devinfo, int asid)
6875{
6876	struct hdaa_audio_as *as;
6877	struct hdaa_widget *w;
6878	int i, t = -1, t1;
6879
6880	as = &devinfo->as[asid];
6881	for (i = 0; i < 16; i++) {
6882		w = hdaa_widget_get(devinfo, as->pins[i]);
6883		if (w == NULL || w->enable == 0 || w->type !=
6884		    HDA_PARAM_AUDIO_WIDGET_CAP_TYPE_PIN_COMPLEX)
6885			continue;
6886		t1 = HDA_CONFIG_DEFAULTCONF_DEVICE(w->wclass.pin.config);
6887		if (t == -1)
6888			t = t1;
6889		else if (t != t1) {
6890			t = -2;
6891			break;
6892		}
6893	}
6894	return (t);
6895}
6896
6897static int
6898hdaa_sysctl_32bit(SYSCTL_HANDLER_ARGS)
6899{
6900	struct hdaa_audio_as *as = (struct hdaa_audio_as *)oidp->oid_arg1;
6901	struct hdaa_pcm_devinfo *pdevinfo = as->pdevinfo;
6902	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
6903	struct hdaa_chan *ch;
6904	int error, val, i;
6905	uint32_t pcmcap;
6906
6907	ch = &devinfo->chans[as->chans[0]];
6908	val = (ch->bit32 == 4) ? 32 : ((ch->bit32 == 3) ? 24 :
6909	    ((ch->bit32 == 2) ? 20 : 0));
6910	error = sysctl_handle_int(oidp, &val, 0, req);
6911	if (error != 0 || req->newptr == NULL)
6912		return (error);
6913	pcmcap = ch->supp_pcm_size_rate;
6914	if (val == 32 && HDA_PARAM_SUPP_PCM_SIZE_RATE_32BIT(pcmcap))
6915		ch->bit32 = 4;
6916	else if (val == 24 && HDA_PARAM_SUPP_PCM_SIZE_RATE_24BIT(pcmcap))
6917		ch->bit32 = 3;
6918	else if (val == 20 && HDA_PARAM_SUPP_PCM_SIZE_RATE_20BIT(pcmcap))
6919		ch->bit32 = 2;
6920	else
6921		return (EINVAL);
6922	for (i = 1; i < as->num_chans; i++)
6923		devinfo->chans[as->chans[i]].bit32 = ch->bit32;
6924	return (0);
6925}
6926
6927static int
6928hdaa_pcm_probe(device_t dev)
6929{
6930	struct hdaa_pcm_devinfo *pdevinfo =
6931	    (struct hdaa_pcm_devinfo *)device_get_ivars(dev);
6932	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
6933	const char *pdesc;
6934	char chans1[8], chans2[8];
6935	char buf[128];
6936	int loc1, loc2, t1, t2;
6937
6938	if (pdevinfo->playas >= 0)
6939		loc1 = devinfo->as[pdevinfo->playas].location;
6940	else
6941		loc1 = devinfo->as[pdevinfo->recas].location;
6942	if (pdevinfo->recas >= 0)
6943		loc2 = devinfo->as[pdevinfo->recas].location;
6944	else
6945		loc2 = loc1;
6946	if (loc1 != loc2)
6947		loc1 = -2;
6948	if (loc1 >= 0 && HDA_LOCS[loc1][0] == '0')
6949		loc1 = -2;
6950	chans1[0] = 0;
6951	chans2[0] = 0;
6952	t1 = t2 = -1;
6953	if (pdevinfo->playas >= 0) {
6954		hdaa_chan_formula(devinfo, pdevinfo->playas,
6955		    chans1, sizeof(chans1));
6956		t1 = hdaa_chan_type(devinfo, pdevinfo->playas);
6957	}
6958	if (pdevinfo->recas >= 0) {
6959		hdaa_chan_formula(devinfo, pdevinfo->recas,
6960		    chans2, sizeof(chans2));
6961		t2 = hdaa_chan_type(devinfo, pdevinfo->recas);
6962	}
6963	if (chans1[0] != 0 || chans2[0] != 0) {
6964		if (chans1[0] == 0 && pdevinfo->playas >= 0)
6965			snprintf(chans1, sizeof(chans1), "2.0");
6966		else if (chans2[0] == 0 && pdevinfo->recas >= 0)
6967			snprintf(chans2, sizeof(chans2), "2.0");
6968		if (strcmp(chans1, chans2) == 0)
6969			chans2[0] = 0;
6970	}
6971	if (t1 == -1)
6972		t1 = t2;
6973	else if (t2 == -1)
6974		t2 = t1;
6975	if (t1 != t2)
6976		t1 = -2;
6977	if (pdevinfo->digital)
6978		t1 = -2;
6979	pdesc = device_get_desc(device_get_parent(dev));
6980	snprintf(buf, sizeof(buf), "%.*s (%s%s%s%s%s%s%s%s%s)",
6981	    (int)(strlen(pdesc) - 21), pdesc,
6982	    loc1 >= 0 ? HDA_LOCS[loc1] : "", loc1 >= 0 ? " " : "",
6983	    (pdevinfo->digital == 0x7)?"HDMI/DP":
6984	    ((pdevinfo->digital == 0x5)?"DisplayPort":
6985	    ((pdevinfo->digital == 0x3)?"HDMI":
6986	    ((pdevinfo->digital)?"Digital":"Analog"))),
6987	    chans1[0] ? " " : "", chans1,
6988	    chans2[0] ? "/" : "", chans2,
6989	    t1 >= 0 ? " " : "", t1 >= 0 ? HDA_DEVS[t1] : "");
6990	device_set_desc_copy(dev, buf);
6991	return (BUS_PROBE_SPECIFIC);
6992}
6993
6994static int
6995hdaa_pcm_attach(device_t dev)
6996{
6997	struct hdaa_pcm_devinfo *pdevinfo =
6998	    (struct hdaa_pcm_devinfo *)device_get_ivars(dev);
6999	struct hdaa_devinfo *devinfo = pdevinfo->devinfo;
7000	struct hdaa_audio_as *as;
7001	struct snddev_info *d;
7002	char status[SND_STATUSLEN];
7003	int i;
7004
7005	pdevinfo->chan_size = pcm_getbuffersize(dev,
7006	    HDA_BUFSZ_MIN, HDA_BUFSZ_DEFAULT, HDA_BUFSZ_MAX);
7007
7008	HDA_BOOTVERBOSE(
7009		hdaa_dump_dac(pdevinfo);
7010		hdaa_dump_adc(pdevinfo);
7011		hdaa_dump_mix(pdevinfo);
7012		hdaa_dump_ctls(pdevinfo, "Master Volume", SOUND_MASK_VOLUME);
7013		hdaa_dump_ctls(pdevinfo, "PCM Volume", SOUND_MASK_PCM);
7014		hdaa_dump_ctls(pdevinfo, "CD Volume", SOUND_MASK_CD);
7015		hdaa_dump_ctls(pdevinfo, "Microphone Volume", SOUND_MASK_MIC);
7016		hdaa_dump_ctls(pdevinfo, "Microphone2 Volume", SOUND_MASK_MONITOR);
7017		hdaa_dump_ctls(pdevinfo, "Line-in Volume", SOUND_MASK_LINE);
7018		hdaa_dump_ctls(pdevinfo, "Speaker/Beep Volume", SOUND_MASK_SPEAKER);
7019		hdaa_dump_ctls(pdevinfo, "Recording Level", SOUND_MASK_RECLEV);
7020		hdaa_dump_ctls(pdevinfo, "Input Mix Level", SOUND_MASK_IMIX);
7021		hdaa_dump_ctls(pdevinfo, "Input Monitoring Level", SOUND_MASK_IGAIN);
7022		hdaa_dump_ctls(pdevinfo, NULL, 0);
7023	);
7024
7025	if (resource_int_value(device_get_name(dev),
7026	    device_get_unit(dev), "blocksize", &i) == 0 && i > 0) {
7027		i &= HDA_BLK_ALIGN;
7028		if (i < HDA_BLK_MIN)
7029			i = HDA_BLK_MIN;
7030		pdevinfo->chan_blkcnt = pdevinfo->chan_size / i;
7031		i = 0;
7032		while (pdevinfo->chan_blkcnt >> i)
7033			i++;
7034		pdevinfo->chan_blkcnt = 1 << (i - 1);
7035		if (pdevinfo->chan_blkcnt < HDA_BDL_MIN)
7036			pdevinfo->chan_blkcnt = HDA_BDL_MIN;
7037		else if (pdevinfo->chan_blkcnt > HDA_BDL_MAX)
7038			pdevinfo->chan_blkcnt = HDA_BDL_MAX;
7039	} else
7040		pdevinfo->chan_blkcnt = HDA_BDL_DEFAULT;
7041
7042	/*
7043	 * We don't register interrupt handler with snd_setup_intr
7044	 * in pcm device. Mark pcm device as MPSAFE manually.
7045	 */
7046	pcm_setflags(dev, pcm_getflags(dev) | SD_F_MPSAFE);
7047
7048	HDA_BOOTHVERBOSE(
7049		device_printf(dev, "OSS mixer initialization...\n");
7050	);
7051	if (mixer_init(dev, &hdaa_audio_ctl_ossmixer_class, pdevinfo) != 0)
7052		device_printf(dev, "Can't register mixer\n");
7053
7054	HDA_BOOTHVERBOSE(
7055		device_printf(dev, "Registering PCM channels...\n");
7056	);
7057	if (pcm_register(dev, pdevinfo, (pdevinfo->playas >= 0)?1:0,
7058	    (pdevinfo->recas >= 0)?1:0) != 0)
7059		device_printf(dev, "Can't register PCM\n");
7060
7061	pdevinfo->registered++;
7062
7063	d = device_get_softc(dev);
7064	if (pdevinfo->playas >= 0) {
7065		as = &devinfo->as[pdevinfo->playas];
7066		for (i = 0; i < as->num_chans; i++)
7067			pcm_addchan(dev, PCMDIR_PLAY, &hdaa_channel_class,
7068			    &devinfo->chans[as->chans[i]]);
7069		SYSCTL_ADD_PROC(&d->play_sysctl_ctx,
7070		    SYSCTL_CHILDREN(d->play_sysctl_tree), OID_AUTO,
7071		    "32bit", CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE,
7072		    as, sizeof(as), hdaa_sysctl_32bit, "I",
7073		    "Resolution of 32bit samples (20/24/32bit)");
7074	}
7075	if (pdevinfo->recas >= 0) {
7076		as = &devinfo->as[pdevinfo->recas];
7077		for (i = 0; i < as->num_chans; i++)
7078			pcm_addchan(dev, PCMDIR_REC, &hdaa_channel_class,
7079			    &devinfo->chans[as->chans[i]]);
7080		SYSCTL_ADD_PROC(&d->rec_sysctl_ctx,
7081		    SYSCTL_CHILDREN(d->rec_sysctl_tree), OID_AUTO,
7082		    "32bit", CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE,
7083		    as, sizeof(as), hdaa_sysctl_32bit, "I",
7084		    "Resolution of 32bit samples (20/24/32bit)");
7085		pdevinfo->autorecsrc = 2;
7086		resource_int_value(device_get_name(dev), device_get_unit(dev),
7087		    "rec.autosrc", &pdevinfo->autorecsrc);
7088		SYSCTL_ADD_INT(&d->rec_sysctl_ctx,
7089		    SYSCTL_CHILDREN(d->rec_sysctl_tree), OID_AUTO,
7090		    "autosrc", CTLFLAG_RW,
7091		    &pdevinfo->autorecsrc, 0,
7092		    "Automatic recording source selection");
7093	}
7094
7095	if (pdevinfo->mixer != NULL) {
7096		hdaa_audio_ctl_set_defaults(pdevinfo);
7097		hdaa_lock(devinfo);
7098		if (pdevinfo->playas >= 0) {
7099			as = &devinfo->as[pdevinfo->playas];
7100			hdaa_channels_handler(as);
7101		}
7102		if (pdevinfo->recas >= 0) {
7103			as = &devinfo->as[pdevinfo->recas];
7104			hdaa_autorecsrc_handler(as, NULL);
7105			hdaa_channels_handler(as);
7106		}
7107		hdaa_unlock(devinfo);
7108	}
7109
7110	snprintf(status, SND_STATUSLEN, "on %s %s",
7111	    device_get_nameunit(device_get_parent(dev)),
7112	    PCM_KLDSTRING(snd_hda));
7113	pcm_setstatus(dev, status);
7114
7115	return (0);
7116}
7117
7118static int
7119hdaa_pcm_detach(device_t dev)
7120{
7121	struct hdaa_pcm_devinfo *pdevinfo =
7122	    (struct hdaa_pcm_devinfo *)device_get_ivars(dev);
7123	int err;
7124
7125	if (pdevinfo->registered > 0) {
7126		err = pcm_unregister(dev);
7127		if (err != 0)
7128			return (err);
7129	}
7130
7131	return (0);
7132}
7133
7134static device_method_t hdaa_pcm_methods[] = {
7135	/* device interface */
7136	DEVMETHOD(device_probe,		hdaa_pcm_probe),
7137	DEVMETHOD(device_attach,	hdaa_pcm_attach),
7138	DEVMETHOD(device_detach,	hdaa_pcm_detach),
7139	DEVMETHOD_END
7140};
7141
7142static driver_t hdaa_pcm_driver = {
7143	"pcm",
7144	hdaa_pcm_methods,
7145	PCM_SOFTC_SIZE,
7146};
7147
7148DRIVER_MODULE(snd_hda_pcm, hdaa, hdaa_pcm_driver, pcm_devclass, NULL, NULL);
7149MODULE_DEPEND(snd_hda, sound, SOUND_MINVER, SOUND_PREFVER, SOUND_MAXVER);
7150MODULE_VERSION(snd_hda, 1);
7151