mixer.c 70.2 KB
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/*
 *   (Tentative) USB Audio Driver for ALSA
 *
 *   Mixer control part
 *
 *   Copyright (c) 2002 by Takashi Iwai <tiwai@suse.de>
 *
 *   Many codes borrowed from audio.c by
 *	    Alan Cox (alan@lxorguk.ukuu.org.uk)
 *	    Thomas Sailer (sailer@ife.ee.ethz.ch)
 *
 *
 *   This program is free software; you can redistribute it and/or modify
 *   it under the terms of the GNU General Public License as published by
 *   the Free Software Foundation; either version 2 of the License, or
 *   (at your option) any later version.
 *
 *   This program is distributed in the hope that it will be useful,
 *   but WITHOUT ANY WARRANTY; without even the implied warranty of
 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 *   GNU General Public License for more details.
 *
 *   You should have received a copy of the GNU General Public License
 *   along with this program; if not, write to the Free Software
 *   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
 *
 */

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/*
 * TODOs, for both the mixer and the streaming interfaces:
 *
 *  - support for UAC2 effect units
 *  - support for graphical equalizers
 *  - RANGE and MEM set commands (UAC2)
 *  - RANGE and MEM interrupt dispatchers (UAC2)
 *  - audio channel clustering (UAC2)
 *  - audio sample rate converter units (UAC2)
 *  - proper handling of clock multipliers (UAC2)
 *  - dispatch clock change notifications (UAC2)
 *  	- stop PCM streams which use a clock that became invalid
 *  	- stop PCM streams which use a clock selector that has changed
 *  	- parse available sample rates again when clock sources changed
 */

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#include <linux/bitops.h>
#include <linux/init.h>
#include <linux/list.h>
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#include <linux/log2.h>
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#include <linux/slab.h>
#include <linux/string.h>
#include <linux/usb.h>
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#include <linux/usb/audio.h>
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#include <linux/usb/audio-v2.h>
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#include <sound/core.h>
#include <sound/control.h>
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#include <sound/hwdep.h>
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#include <sound/info.h>
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#include <sound/tlv.h>
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#include "usbaudio.h"
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#include "mixer.h"
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#include "helper.h"
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#include "mixer_quirks.h"
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#include "power.h"
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#define MAX_ID_ELEMS	256

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struct usb_audio_term {
	int id;
	int type;
	int channels;
	unsigned int chconfig;
	int name;
};

struct usbmix_name_map;

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struct mixer_build {
	struct snd_usb_audio *chip;
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	struct usb_mixer_interface *mixer;
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	unsigned char *buffer;
	unsigned int buflen;
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	DECLARE_BITMAP(unitbitmap, MAX_ID_ELEMS);
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	struct usb_audio_term oterm;
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	const struct usbmix_name_map *map;
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	const struct usbmix_selector_map *selector_map;
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};

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/*E-mu 0202/0404/0204 eXtension Unit(XU) control*/
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enum {
	USB_XU_CLOCK_RATE 		= 0xe301,
	USB_XU_CLOCK_SOURCE		= 0xe302,
	USB_XU_DIGITAL_IO_STATUS	= 0xe303,
	USB_XU_DEVICE_OPTIONS		= 0xe304,
	USB_XU_DIRECT_MONITORING	= 0xe305,
	USB_XU_METERING			= 0xe306
};
enum {
	USB_XU_CLOCK_SOURCE_SELECTOR = 0x02,	/* clock source*/
	USB_XU_CLOCK_RATE_SELECTOR = 0x03,	/* clock rate */
	USB_XU_DIGITAL_FORMAT_SELECTOR = 0x01,	/* the spdif format */
	USB_XU_SOFT_LIMIT_SELECTOR = 0x03	/* soft limiter */
};
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/*
 * manual mapping of mixer names
 * if the mixer topology is too complicated and the parsed names are
 * ambiguous, add the entries in usbmixer_maps.c.
 */
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#include "mixer_maps.c"
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static const struct usbmix_name_map *
find_map(struct mixer_build *state, int unitid, int control)
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{
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	const struct usbmix_name_map *p = state->map;
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	if (!p)
		return NULL;
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	for (p = state->map; p->id; p++) {
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		if (p->id == unitid &&
		    (!control || !p->control || control == p->control))
			return p;
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	}
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	return NULL;
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}

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/* get the mapped name if the unit matches */
static int
check_mapped_name(const struct usbmix_name_map *p, char *buf, int buflen)
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{
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	if (!p || !p->name)
		return 0;
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	buflen--;
	return strlcpy(buf, p->name, buflen);
}

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/* ignore the error value if ignore_ctl_error flag is set */
#define filter_error(cval, err) \
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	((cval)->head.mixer->ignore_ctl_error ? 0 : (err))
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/* check whether the control should be ignored */
static inline int
check_ignored_ctl(const struct usbmix_name_map *p)
{
	if (!p || p->name || p->dB)
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		return 0;
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	return 1;
}

/* dB mapping */
static inline void check_mapped_dB(const struct usbmix_name_map *p,
				   struct usb_mixer_elem_info *cval)
{
	if (p && p->dB) {
		cval->dBmin = p->dB->min;
		cval->dBmax = p->dB->max;
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		cval->initialized = 1;
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	}
}

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/* get the mapped selector source name */
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static int check_mapped_selector_name(struct mixer_build *state, int unitid,
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				      int index, char *buf, int buflen)
{
	const struct usbmix_selector_map *p;

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	if (!state->selector_map)
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		return 0;
	for (p = state->selector_map; p->id; p++) {
		if (p->id == unitid && index < p->count)
			return strlcpy(buf, p->names[index], buflen);
	}
	return 0;
}

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/*
 * find an audio control unit with the given unit id
 */
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static void *find_audio_control_unit(struct mixer_build *state,
				     unsigned char unit)
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{
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	/* we just parse the header */
	struct uac_feature_unit_descriptor *hdr = NULL;

	while ((hdr = snd_usb_find_desc(state->buffer, state->buflen, hdr,
					USB_DT_CS_INTERFACE)) != NULL) {
		if (hdr->bLength >= 4 &&
		    hdr->bDescriptorSubtype >= UAC_INPUT_TERMINAL &&
		    hdr->bDescriptorSubtype <= UAC2_SAMPLE_RATE_CONVERTER &&
		    hdr->bUnitID == unit)
			return hdr;
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	}
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	return NULL;
}

/*
 * copy a string with the given id
 */
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static int snd_usb_copy_string_desc(struct mixer_build *state,
				    int index, char *buf, int maxlen)
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{
	int len = usb_string(state->chip->dev, index, buf, maxlen - 1);
	buf[len] = 0;
	return len;
}

/*
 * convert from the byte/word on usb descriptor to the zero-based integer
 */
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static int convert_signed_value(struct usb_mixer_elem_info *cval, int val)
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{
	switch (cval->val_type) {
	case USB_MIXER_BOOLEAN:
		return !!val;
	case USB_MIXER_INV_BOOLEAN:
		return !val;
	case USB_MIXER_U8:
		val &= 0xff;
		break;
	case USB_MIXER_S8:
		val &= 0xff;
		if (val >= 0x80)
			val -= 0x100;
		break;
	case USB_MIXER_U16:
		val &= 0xffff;
		break;
	case USB_MIXER_S16:
		val &= 0xffff;
		if (val >= 0x8000)
			val -= 0x10000;
		break;
	}
	return val;
}

/*
 * convert from the zero-based int to the byte/word for usb descriptor
 */
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static int convert_bytes_value(struct usb_mixer_elem_info *cval, int val)
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{
	switch (cval->val_type) {
	case USB_MIXER_BOOLEAN:
		return !!val;
	case USB_MIXER_INV_BOOLEAN:
		return !val;
	case USB_MIXER_S8:
	case USB_MIXER_U8:
		return val & 0xff;
	case USB_MIXER_S16:
	case USB_MIXER_U16:
		return val & 0xffff;
	}
	return 0; /* not reached */
}

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static int get_relative_value(struct usb_mixer_elem_info *cval, int val)
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{
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	if (!cval->res)
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		cval->res = 1;
	if (val < cval->min)
		return 0;
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	else if (val >= cval->max)
		return (cval->max - cval->min + cval->res - 1) / cval->res;
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	else
		return (val - cval->min) / cval->res;
}

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static int get_abs_value(struct usb_mixer_elem_info *cval, int val)
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{
	if (val < 0)
		return cval->min;
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	if (!cval->res)
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		cval->res = 1;
	val *= cval->res;
	val += cval->min;
	if (val > cval->max)
		return cval->max;
	return val;
}

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static int uac2_ctl_value_size(int val_type)
{
	switch (val_type) {
	case USB_MIXER_S32:
	case USB_MIXER_U32:
		return 4;
	case USB_MIXER_S16:
	case USB_MIXER_U16:
		return 2;
	default:
		return 1;
	}
	return 0; /* unreachable */
}

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/*
 * retrieve a mixer value
 */

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static int get_ctl_value_v1(struct usb_mixer_elem_info *cval, int request,
			    int validx, int *value_ret)
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{
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	struct snd_usb_audio *chip = cval->head.mixer->chip;
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	unsigned char buf[2];
	int val_len = cval->val_type >= USB_MIXER_S16 ? 2 : 1;
	int timeout = 10;
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	int idx = 0, err;
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	err = snd_usb_lock_shutdown(chip);
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	if (err < 0)
		return -EIO;
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	while (timeout-- > 0) {
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		idx = snd_usb_ctrl_intf(chip) | (cval->head.id << 8);
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		if (snd_usb_ctl_msg(chip->dev, usb_rcvctrlpipe(chip->dev, 0), request,
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				    USB_RECIP_INTERFACE | USB_TYPE_CLASS | USB_DIR_IN,
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				    validx, idx, buf, val_len) >= val_len) {
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			*value_ret = convert_signed_value(cval, snd_usb_combine_bytes(buf, val_len));
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			err = 0;
			goto out;
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		}
	}
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	usb_audio_dbg(chip,
		"cannot get ctl value: req = %#x, wValue = %#x, wIndex = %#x, type = %d\n",
		request, validx, idx, cval->val_type);
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	err = -EINVAL;

 out:
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	snd_usb_unlock_shutdown(chip);
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	return err;
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}

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static int get_ctl_value_v2(struct usb_mixer_elem_info *cval, int request,
			    int validx, int *value_ret)
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{
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	struct snd_usb_audio *chip = cval->head.mixer->chip;
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	unsigned char buf[4 + 3 * sizeof(__u32)]; /* enough space for one range */
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	unsigned char *val;
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	int idx = 0, ret, size;
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	__u8 bRequest;

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	if (request == UAC_GET_CUR) {
		bRequest = UAC2_CS_CUR;
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		size = uac2_ctl_value_size(cval->val_type);
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	} else {
		bRequest = UAC2_CS_RANGE;
		size = sizeof(buf);
	}

	memset(buf, 0, sizeof(buf));
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	ret = snd_usb_lock_shutdown(chip) ? -EIO : 0;
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	if (ret)
		goto error;

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	idx = snd_usb_ctrl_intf(chip) | (cval->head.id << 8);
	ret = snd_usb_ctl_msg(chip->dev, usb_rcvctrlpipe(chip->dev, 0), bRequest,
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			      USB_RECIP_INTERFACE | USB_TYPE_CLASS | USB_DIR_IN,
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			      validx, idx, buf, size);
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	snd_usb_unlock_shutdown(chip);
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	if (ret < 0) {
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error:
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		usb_audio_err(chip,
			"cannot get ctl value: req = %#x, wValue = %#x, wIndex = %#x, type = %d\n",
			request, validx, idx, cval->val_type);
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		return ret;
	}

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	/* FIXME: how should we handle multiple triplets here? */

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	switch (request) {
	case UAC_GET_CUR:
		val = buf;
		break;
	case UAC_GET_MIN:
		val = buf + sizeof(__u16);
		break;
	case UAC_GET_MAX:
		val = buf + sizeof(__u16) * 2;
		break;
	case UAC_GET_RES:
		val = buf + sizeof(__u16) * 3;
		break;
	default:
		return -EINVAL;
	}

	*value_ret = convert_signed_value(cval, snd_usb_combine_bytes(val, sizeof(__u16)));

	return 0;
}

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static int get_ctl_value(struct usb_mixer_elem_info *cval, int request,
			 int validx, int *value_ret)
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{
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	validx += cval->idx_off;

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	return (cval->head.mixer->protocol == UAC_VERSION_1) ?
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		get_ctl_value_v1(cval, request, validx, value_ret) :
		get_ctl_value_v2(cval, request, validx, value_ret);
}

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static int get_cur_ctl_value(struct usb_mixer_elem_info *cval,
			     int validx, int *value)
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{
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	return get_ctl_value(cval, UAC_GET_CUR, validx, value);
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}

/* channel = 0: master, 1 = first channel */
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static inline int get_cur_mix_raw(struct usb_mixer_elem_info *cval,
				  int channel, int *value)
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{
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	return get_ctl_value(cval, UAC_GET_CUR,
			     (cval->control << 8) | channel,
			     value);
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}

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int snd_usb_get_cur_mix_value(struct usb_mixer_elem_info *cval,
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			     int channel, int index, int *value)
{
	int err;

	if (cval->cached & (1 << channel)) {
		*value = cval->cache_val[index];
		return 0;
	}
	err = get_cur_mix_raw(cval, channel, value);
	if (err < 0) {
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		if (!cval->head.mixer->ignore_ctl_error)
			usb_audio_dbg(cval->head.mixer->chip,
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				"cannot get current value for control %d ch %d: err = %d\n",
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				      cval->control, channel, err);
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		return err;
	}
	cval->cached |= 1 << channel;
	cval->cache_val[index] = *value;
	return 0;
}

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/*
 * set a mixer value
 */

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int snd_usb_mixer_set_ctl_value(struct usb_mixer_elem_info *cval,
				int request, int validx, int value_set)
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{
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	struct snd_usb_audio *chip = cval->head.mixer->chip;
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	unsigned char buf[4];
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	int idx = 0, val_len, err, timeout = 10;
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	validx += cval->idx_off;

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	if (cval->head.mixer->protocol == UAC_VERSION_1) {
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		val_len = cval->val_type >= USB_MIXER_S16 ? 2 : 1;
	} else { /* UAC_VERSION_2 */
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		val_len = uac2_ctl_value_size(cval->val_type);
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		/* FIXME */
		if (request != UAC_SET_CUR) {
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			usb_audio_dbg(chip, "RANGE setting not yet supported\n");
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			return -EINVAL;
		}

		request = UAC2_CS_CUR;
	}
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	value_set = convert_bytes_value(cval, value_set);
	buf[0] = value_set & 0xff;
	buf[1] = (value_set >> 8) & 0xff;
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	buf[2] = (value_set >> 16) & 0xff;
	buf[3] = (value_set >> 24) & 0xff;
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	err = snd_usb_lock_shutdown(chip);
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	if (err < 0)
		return -EIO;
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	while (timeout-- > 0) {
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		idx = snd_usb_ctrl_intf(chip) | (cval->head.id << 8);
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		if (snd_usb_ctl_msg(chip->dev,
				    usb_sndctrlpipe(chip->dev, 0), request,
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				    USB_RECIP_INTERFACE | USB_TYPE_CLASS | USB_DIR_OUT,
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				    validx, idx, buf, val_len) >= 0) {
			err = 0;
			goto out;
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		}
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	}
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	usb_audio_dbg(chip, "cannot set ctl value: req = %#x, wValue = %#x, wIndex = %#x, type = %d, data = %#x/%#x\n",
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		      request, validx, idx, cval->val_type, buf[0], buf[1]);
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	err = -EINVAL;

 out:
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	snd_usb_unlock_shutdown(chip);
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	return err;
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}

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static int set_cur_ctl_value(struct usb_mixer_elem_info *cval,
			     int validx, int value)
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{
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	return snd_usb_mixer_set_ctl_value(cval, UAC_SET_CUR, validx, value);
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}

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int snd_usb_set_cur_mix_value(struct usb_mixer_elem_info *cval, int channel,
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			     int index, int value)
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{
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	int err;
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	unsigned int read_only = (channel == 0) ?
		cval->master_readonly :
		cval->ch_readonly & (1 << (channel - 1));

	if (read_only) {
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		usb_audio_dbg(cval->head.mixer->chip,
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			      "%s(): channel %d of control %d is read_only\n",
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			    __func__, channel, cval->control);
		return 0;
	}

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	err = snd_usb_mixer_set_ctl_value(cval,
					  UAC_SET_CUR, (cval->control << 8) | channel,
					  value);
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	if (err < 0)
		return err;
	cval->cached |= 1 << channel;
	cval->cache_val[index] = value;
	return 0;
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}

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/*
 * TLV callback for mixer volume controls
 */
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int snd_usb_mixer_vol_tlv(struct snd_kcontrol *kcontrol, int op_flag,
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			 unsigned int size, unsigned int __user *_tlv)
{
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	DECLARE_TLV_DB_MINMAX(scale, 0, 0);
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	if (size < sizeof(scale))
		return -ENOMEM;
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	scale[2] = cval->dBmin;
	scale[3] = cval->dBmax;
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	if (copy_to_user(_tlv, scale, sizeof(scale)))
		return -EFAULT;
	return 0;
}
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/*
 * parser routines begin here...
 */

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static int parse_audio_unit(struct mixer_build *state, int unitid);
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/*
 * check if the input/output channel routing is enabled on the given bitmap.
 * used for mixer unit parser
 */
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static int check_matrix_bitmap(unsigned char *bmap,
			       int ich, int och, int num_outs)
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{
	int idx = ich * num_outs + och;
	return bmap[idx >> 3] & (0x80 >> (idx & 7));
}

/*
 * add an alsa control element
 * search and increment the index until an empty slot is found.
 *
 * if failed, give up and free the control instance.
 */

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int snd_usb_mixer_add_control(struct usb_mixer_elem_list *list,
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			      struct snd_kcontrol *kctl)
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{
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	struct usb_mixer_interface *mixer = list->mixer;
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	int err;
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	while (snd_ctl_find_id(mixer->chip->card, &kctl->id))
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		kctl->id.index++;
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	if ((err = snd_ctl_add(mixer->chip->card, kctl)) < 0) {
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		usb_audio_dbg(mixer->chip, "cannot add control (err = %d)\n",
			      err);
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		return err;
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	}
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	list->kctl = kctl;
	list->next_id_elem = mixer->id_elems[list->id];
	mixer->id_elems[list->id] = list;
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	return 0;
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}

/*
 * get a terminal name string
 */

static struct iterm_name_combo {
	int type;
	char *name;
} iterm_names[] = {
	{ 0x0300, "Output" },
	{ 0x0301, "Speaker" },
	{ 0x0302, "Headphone" },
	{ 0x0303, "HMD Audio" },
	{ 0x0304, "Desktop Speaker" },
	{ 0x0305, "Room Speaker" },
	{ 0x0306, "Com Speaker" },
	{ 0x0307, "LFE" },
	{ 0x0600, "External In" },
	{ 0x0601, "Analog In" },
	{ 0x0602, "Digital In" },
	{ 0x0603, "Line" },
	{ 0x0604, "Legacy In" },
	{ 0x0605, "IEC958 In" },
	{ 0x0606, "1394 DA Stream" },
	{ 0x0607, "1394 DV Stream" },
	{ 0x0700, "Embedded" },
	{ 0x0701, "Noise Source" },
	{ 0x0702, "Equalization Noise" },
	{ 0x0703, "CD" },
	{ 0x0704, "DAT" },
	{ 0x0705, "DCC" },
	{ 0x0706, "MiniDisk" },
	{ 0x0707, "Analog Tape" },
	{ 0x0708, "Phonograph" },
	{ 0x0709, "VCR Audio" },
	{ 0x070a, "Video Disk Audio" },
	{ 0x070b, "DVD Audio" },
	{ 0x070c, "TV Tuner Audio" },
	{ 0x070d, "Satellite Rec Audio" },
	{ 0x070e, "Cable Tuner Audio" },
	{ 0x070f, "DSS Audio" },
	{ 0x0710, "Radio Receiver" },
	{ 0x0711, "Radio Transmitter" },
	{ 0x0712, "Multi-Track Recorder" },
	{ 0x0713, "Synthesizer" },
	{ 0 },
};

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static int get_term_name(struct mixer_build *state, struct usb_audio_term *iterm,
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			 unsigned char *name, int maxlen, int term_only)
{
	struct iterm_name_combo *names;

	if (iterm->name)
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		return snd_usb_copy_string_desc(state, iterm->name,
						name, maxlen);
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	/* virtual type - not a real terminal */
	if (iterm->type >> 16) {
		if (term_only)
			return 0;
		switch (iterm->type >> 16) {
657
		case UAC_SELECTOR_UNIT:
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			strcpy(name, "Selector");
			return 8;
660
		case UAC1_PROCESSING_UNIT:
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			strcpy(name, "Process Unit");
			return 12;
663
		case UAC1_EXTENSION_UNIT:
664 665
			strcpy(name, "Ext Unit");
			return 8;
666
		case UAC_MIXER_UNIT:
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			strcpy(name, "Mixer");
			return 5;
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		default:
			return sprintf(name, "Unit %d", iterm->id);
		}
	}

	switch (iterm->type & 0xff00) {
	case 0x0100:
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		strcpy(name, "PCM");
		return 3;
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	case 0x0200:
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		strcpy(name, "Mic");
		return 3;
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	case 0x0400:
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		strcpy(name, "Headset");
		return 7;
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	case 0x0500:
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		strcpy(name, "Phone");
		return 5;
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	}

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	for (names = iterm_names; names->type; names++) {
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		if (names->type == iterm->type) {
			strcpy(name, names->name);
			return strlen(names->name);
		}
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	}

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	return 0;
}

/*
 * parse the source unit recursively until it reaches to a terminal
 * or a branched unit.
 */
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static int check_input_term(struct mixer_build *state, int id,
			    struct usb_audio_term *term)
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{
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	int err;
707
	void *p1;
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	memset(term, 0, sizeof(*term));
	while ((p1 = find_audio_control_unit(state, id)) != NULL) {
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		unsigned char *hdr = p1;
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		term->id = id;
713
		switch (hdr[2]) {
714
		case UAC_INPUT_TERMINAL:
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			if (state->mixer->protocol == UAC_VERSION_1) {
				struct uac_input_terminal_descriptor *d = p1;
				term->type = le16_to_cpu(d->wTerminalType);
				term->channels = d->bNrChannels;
				term->chconfig = le16_to_cpu(d->wChannelConfig);
				term->name = d->iTerminal;
			} else { /* UAC_VERSION_2 */
				struct uac2_input_terminal_descriptor *d = p1;
723

724 725
				/* call recursively to verify that the
				 * referenced clock entity is valid */
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				err = check_input_term(state, d->bCSourceID, term);
				if (err < 0)
					return err;
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				/* save input term properties after recursion,
				 * to ensure they are not overriden by the
				 * recursion calls */
				term->id = id;
				term->type = le16_to_cpu(d->wTerminalType);
				term->channels = d->bNrChannels;
				term->chconfig = le32_to_cpu(d->bmChannelConfig);
				term->name = d->iTerminal;
738
			}
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			return 0;
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		case UAC_FEATURE_UNIT: {
			/* the header is the same for v1 and v2 */
			struct uac_feature_unit_descriptor *d = p1;
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			id = d->bSourceID;
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			break; /* continue to parse */
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		}
		case UAC_MIXER_UNIT: {
			struct uac_mixer_unit_descriptor *d = p1;
			term->type = d->bDescriptorSubtype << 16; /* virtual type */
			term->channels = uac_mixer_unit_bNrChannels(d);
			term->chconfig = uac_mixer_unit_wChannelConfig(d, state->mixer->protocol);
			term->name = uac_mixer_unit_iMixer(d);
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			return 0;
753
		}
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		case UAC_SELECTOR_UNIT:
		case UAC2_CLOCK_SELECTOR: {
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			struct uac_selector_unit_descriptor *d = p1;
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			/* call recursively to retrieve the channel info */
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			err = check_input_term(state, d->baSourceID[0], term);
			if (err < 0)
				return err;
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			term->type = d->bDescriptorSubtype << 16; /* virtual type */
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			term->id = id;
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			term->name = uac_selector_unit_iSelector(d);
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			return 0;
765
		}
766
		case UAC1_PROCESSING_UNIT:
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		case UAC1_EXTENSION_UNIT:
		/* UAC2_PROCESSING_UNIT_V2 */
769 770
		/* UAC2_EFFECT_UNIT */
		case UAC2_EXTENSION_UNIT_V2: {
771
			struct uac_processing_unit_descriptor *d = p1;
772 773 774 775 776 777 778 779 780

			if (state->mixer->protocol == UAC_VERSION_2 &&
				hdr[2] == UAC2_EFFECT_UNIT) {
				/* UAC2/UAC1 unit IDs overlap here in an
				 * uncompatible way. Ignore this unit for now.
				 */
				return 0;
			}

781 782
			if (d->bNrInPins) {
				id = d->baSourceID[0];
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				break; /* continue to parse */
			}
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			term->type = d->bDescriptorSubtype << 16; /* virtual type */
			term->channels = uac_processing_unit_bNrChannels(d);
			term->chconfig = uac_processing_unit_wChannelConfig(d, state->mixer->protocol);
			term->name = uac_processing_unit_iProcessing(d, state->mixer->protocol);
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			return 0;
790
		}
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		case UAC2_CLOCK_SOURCE: {
			struct uac_clock_source_descriptor *d = p1;
			term->type = d->bDescriptorSubtype << 16; /* virtual type */
			term->id = id;
			term->name = d->iClockSource;
			return 0;
		}
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		default:
			return -ENODEV;
		}
	}
	return -ENODEV;
}

/*
 * Feature Unit
 */

/* feature unit control information */
struct usb_feature_control_info {
	const char *name;
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	int type;	/* data type for uac1 */
	int type_uac2;	/* data type for uac2 if different from uac1, else -1 */
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};

static struct usb_feature_control_info audio_feature_info[] = {
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	{ "Mute",			USB_MIXER_INV_BOOLEAN, -1 },
	{ "Volume",			USB_MIXER_S16, -1 },
	{ "Tone Control - Bass",	USB_MIXER_S8, -1 },
	{ "Tone Control - Mid",		USB_MIXER_S8, -1 },
	{ "Tone Control - Treble",	USB_MIXER_S8, -1 },
	{ "Graphic Equalizer",		USB_MIXER_S8, -1 }, /* FIXME: not implemeted yet */
	{ "Auto Gain Control",		USB_MIXER_BOOLEAN, -1 },
	{ "Delay Control",		USB_MIXER_U16, USB_MIXER_U32 },
	{ "Bass Boost",			USB_MIXER_BOOLEAN, -1 },
	{ "Loudness",			USB_MIXER_BOOLEAN, -1 },
827
	/* UAC2 specific */
828 829 830
	{ "Input Gain Control",		USB_MIXER_S16, -1 },
	{ "Input Gain Pad Control",	USB_MIXER_S16, -1 },
	{ "Phase Inverter Control",	USB_MIXER_BOOLEAN, -1 },
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};

/* private_free callback */
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void snd_usb_mixer_elem_free(struct snd_kcontrol *kctl)
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{
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	kfree(kctl->private_data);
	kctl->private_data = NULL;
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}

/*
 * interface to ALSA control for feature/mixer units
 */

844 845 846 847
/* volume control quirks */
static void volume_control_quirks(struct usb_mixer_elem_info *cval,
				  struct snd_kcontrol *kctl)
{
848
	struct snd_usb_audio *chip = cval->head.mixer->chip;
849
	switch (chip->usb_id) {
850
	case USB_ID(0x0763, 0x2030): /* M-Audio Fast Track C400 */
851
	case USB_ID(0x0763, 0x2031): /* M-Audio Fast Track C600 */
852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877
		if (strcmp(kctl->id.name, "Effect Duration") == 0) {
			cval->min = 0x0000;
			cval->max = 0xffff;
			cval->res = 0x00e6;
			break;
		}
		if (strcmp(kctl->id.name, "Effect Volume") == 0 ||
		    strcmp(kctl->id.name, "Effect Feedback Volume") == 0) {
			cval->min = 0x00;
			cval->max = 0xff;
			break;
		}
		if (strstr(kctl->id.name, "Effect Return") != NULL) {
			cval->min = 0xb706;
			cval->max = 0xff7b;
			cval->res = 0x0073;
			break;
		}
		if ((strstr(kctl->id.name, "Playback Volume") != NULL) ||
			(strstr(kctl->id.name, "Effect Send") != NULL)) {
			cval->min = 0xb5fb; /* -73 dB = 0xb6ff */
			cval->max = 0xfcfe;
			cval->res = 0x0073;
		}
		break;

878 879 880
	case USB_ID(0x0763, 0x2081): /* M-Audio Fast Track Ultra 8R */
	case USB_ID(0x0763, 0x2080): /* M-Audio Fast Track Ultra */
		if (strcmp(kctl->id.name, "Effect Duration") == 0) {
881 882
			usb_audio_info(chip,
				       "set quirk for FTU Effect Duration\n");
883 884 885 886 887 888 889
			cval->min = 0x0000;
			cval->max = 0x7f00;
			cval->res = 0x0100;
			break;
		}
		if (strcmp(kctl->id.name, "Effect Volume") == 0 ||
		    strcmp(kctl->id.name, "Effect Feedback Volume") == 0) {
890 891
			usb_audio_info(chip,
				       "set quirks for FTU Effect Feedback/Volume\n");
892 893 894 895 896 897
			cval->min = 0x00;
			cval->max = 0x7f;
			break;
		}
		break;

898 899 900 901 902 903 904 905 906 907 908
	case USB_ID(0x0471, 0x0101):
	case USB_ID(0x0471, 0x0104):
	case USB_ID(0x0471, 0x0105):
	case USB_ID(0x0672, 0x1041):
	/* quirk for UDA1321/N101.
	 * note that detection between firmware 2.1.1.7 (N101)
	 * and later 2.1.1.21 is not very clear from datasheets.
	 * I hope that the min value is -15360 for newer firmware --jk
	 */
		if (!strcmp(kctl->id.name, "PCM Playback Volume") &&
		    cval->min == -15616) {
909
			usb_audio_info(chip,
910 911 912 913 914 915 916
				 "set volume quirk for UDA1321/N101 chip\n");
			cval->max = -256;
		}
		break;

	case USB_ID(0x046d, 0x09a4):
		if (!strcmp(kctl->id.name, "Mic Capture Volume")) {
917
			usb_audio_info(chip,
918 919 920 921 922 923 924
				"set volume quirk for QuickCam E3500\n");
			cval->min = 6080;
			cval->max = 8768;
			cval->res = 192;
		}
		break;

925
	case USB_ID(0x046d, 0x0807): /* Logitech Webcam C500 */
926 927
	case USB_ID(0x046d, 0x0808):
	case USB_ID(0x046d, 0x0809):
928
	case USB_ID(0x046d, 0x0819): /* Logitech Webcam C210 */
929
	case USB_ID(0x046d, 0x081b): /* HD Webcam c310 */
930
	case USB_ID(0x046d, 0x081d): /* HD Webcam c510 */
931
	case USB_ID(0x046d, 0x0825): /* HD Webcam c270 */
932
	case USB_ID(0x046d, 0x0826): /* HD Webcam c525 */
933
	case USB_ID(0x046d, 0x08ca): /* Logitech Quickcam Fusion */
934
	case USB_ID(0x046d, 0x0991):
935
	case USB_ID(0x046d, 0x09a2): /* QuickCam Communicate Deluxe/S7500 */
936 937
	/* Most audio usb devices lie about volume resolution.
	 * Most Logitech webcams have res = 384.
938
	 * Probably there is some logitech magic behind this number --fishor
939 940
	 */
		if (!strcmp(kctl->id.name, "Mic Capture Volume")) {
941
			usb_audio_info(chip,
942 943 944 945 946 947 948
				"set resolution quirk: cval->res = 384\n");
			cval->res = 384;
		}
		break;
	}
}

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/*
 * retrieve the minimum and maximum values for the specified control
 */
952 953
static int get_min_max_with_quirks(struct usb_mixer_elem_info *cval,
				   int default_min, struct snd_kcontrol *kctl)
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{
	/* for failsafe */
	cval->min = default_min;
	cval->max = cval->min + 1;
	cval->res = 1;
959
	cval->dBmin = cval->dBmax = 0;
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	if (cval->val_type == USB_MIXER_BOOLEAN ||
	    cval->val_type == USB_MIXER_INV_BOOLEAN) {
		cval->initialized = 1;
	} else {
		int minchn = 0;
		if (cval->cmask) {
			int i;
			for (i = 0; i < MAX_CHANNELS; i++)
				if (cval->cmask & (1 << i)) {
					minchn = i + 1;
					break;
				}
		}
974 975
		if (get_ctl_value(cval, UAC_GET_MAX, (cval->control << 8) | minchn, &cval->max) < 0 ||
		    get_ctl_value(cval, UAC_GET_MIN, (cval->control << 8) | minchn, &cval->min) < 0) {
976
			usb_audio_err(cval->head.mixer->chip,
977
				      "%d:%d: cannot get min/max values for control %d (id %d)\n",
978 979
				   cval->head.id, snd_usb_ctrl_intf(cval->head.mixer->chip),
							       cval->control, cval->head.id);
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			return -EINVAL;
		}
982 983 984
		if (get_ctl_value(cval, UAC_GET_RES,
				  (cval->control << 8) | minchn,
				  &cval->res) < 0) {
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			cval->res = 1;
		} else {
			int last_valid_res = cval->res;

			while (cval->res > 1) {
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				if (snd_usb_mixer_set_ctl_value(cval, UAC_SET_RES,
991 992
								(cval->control << 8) | minchn,
								cval->res / 2) < 0)
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					break;
				cval->res /= 2;
			}
996 997
			if (get_ctl_value(cval, UAC_GET_RES,
					  (cval->control << 8) | minchn, &cval->res) < 0)
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				cval->res = last_valid_res;
		}
		if (cval->res == 0)
			cval->res = 1;
1002 1003 1004 1005 1006 1007 1008 1009 1010 1011

		/* Additional checks for the proper resolution
		 *
		 * Some devices report smaller resolutions than actually
		 * reacting.  They don't return errors but simply clip
		 * to the lower aligned value.
		 */
		if (cval->min + cval->res < cval->max) {
			int last_valid_res = cval->res;
			int saved, test, check;
1012
			get_cur_mix_raw(cval, minchn, &saved);
1013 1014 1015 1016 1017 1018 1019
			for (;;) {
				test = saved;
				if (test < cval->max)
					test += cval->res;
				else
					test -= cval->res;
				if (test < cval->min || test > cval->max ||
1020
				    snd_usb_set_cur_mix_value(cval, minchn, 0, test) ||
1021
				    get_cur_mix_raw(cval, minchn, &check)) {
1022 1023 1024 1025 1026 1027 1028
					cval->res = last_valid_res;
					break;
				}
				if (test == check)
					break;
				cval->res *= 2;
			}
1029
			snd_usb_set_cur_mix_value(cval, minchn, 0, saved);
1030 1031
		}

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		cval->initialized = 1;
	}
1034

1035 1036 1037
	if (kctl)
		volume_control_quirks(cval, kctl);

1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
	/* USB descriptions contain the dB scale in 1/256 dB unit
	 * while ALSA TLV contains in 1/100 dB unit
	 */
	cval->dBmin = (convert_signed_value(cval, cval->min) * 100) / 256;
	cval->dBmax = (convert_signed_value(cval, cval->max) * 100) / 256;
	if (cval->dBmin > cval->dBmax) {
		/* something is wrong; assume it's either from/to 0dB */
		if (cval->dBmin < 0)
			cval->dBmax = 0;
		else if (cval->dBmin > 0)
			cval->dBmin = 0;
		if (cval->dBmin > cval->dBmax) {
			/* totally crap, return an error */
			return -EINVAL;
		}
	}

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	return 0;
}

1058
#define get_min_max(cval, def)	get_min_max_with_quirks(cval, def, NULL)
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/* get a feature/mixer unit info */
1061 1062
static int mixer_ctl_feature_info(struct snd_kcontrol *kcontrol,
				  struct snd_ctl_elem_info *uinfo)
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{
1064
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	if (cval->val_type == USB_MIXER_BOOLEAN ||
	    cval->val_type == USB_MIXER_INV_BOOLEAN)
		uinfo->type = SNDRV_CTL_ELEM_TYPE_BOOLEAN;
	else
		uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
	uinfo->count = cval->channels;
	if (cval->val_type == USB_MIXER_BOOLEAN ||
	    cval->val_type == USB_MIXER_INV_BOOLEAN) {
		uinfo->value.integer.min = 0;
		uinfo->value.integer.max = 1;
	} else {
1077
		if (!cval->initialized) {
1078
			get_min_max_with_quirks(cval, 0, kcontrol);
1079 1080 1081 1082
			if (cval->initialized && cval->dBmin >= cval->dBmax) {
				kcontrol->vd[0].access &= 
					~(SNDRV_CTL_ELEM_ACCESS_TLV_READ |
					  SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK);
1083
				snd_ctl_notify(cval->head.mixer->chip->card,
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					       SNDRV_CTL_EVENT_MASK_INFO,
					       &kcontrol->id);
			}
		}
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		uinfo->value.integer.min = 0;
1089 1090
		uinfo->value.integer.max =
			(cval->max - cval->min + cval->res - 1) / cval->res;
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	}
	return 0;
}

/* get the current value from feature/mixer unit */
1096 1097
static int mixer_ctl_feature_get(struct snd_kcontrol *kcontrol,
				 struct snd_ctl_elem_value *ucontrol)
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{
1099
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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1100 1101
	int c, cnt, val, err;

1102
	ucontrol->value.integer.value[0] = cval->min;
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	if (cval->cmask) {
		cnt = 0;
		for (c = 0; c < MAX_CHANNELS; c++) {
1106 1107
			if (!(cval->cmask & (1 << c)))
				continue;
1108
			err = snd_usb_get_cur_mix_value(cval, c + 1, cnt, &val);
1109
			if (err < 0)
1110
				return filter_error(cval, err);
1111 1112 1113
			val = get_relative_value(cval, val);
			ucontrol->value.integer.value[cnt] = val;
			cnt++;
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		}
1115
		return 0;
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	} else {
		/* master channel */
1118
		err = snd_usb_get_cur_mix_value(cval, 0, 0, &val);
1119
		if (err < 0)
1120
			return filter_error(cval, err);
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		val = get_relative_value(cval, val);
		ucontrol->value.integer.value[0] = val;
	}
	return 0;
}

/* put the current value to feature/mixer unit */
1128 1129
static int mixer_ctl_feature_put(struct snd_kcontrol *kcontrol,
				 struct snd_ctl_elem_value *ucontrol)
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{
1131
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	int c, cnt, val, oval, err;
	int changed = 0;

	if (cval->cmask) {
		cnt = 0;
		for (c = 0; c < MAX_CHANNELS; c++) {
1138 1139
			if (!(cval->cmask & (1 << c)))
				continue;
1140
			err = snd_usb_get_cur_mix_value(cval, c + 1, cnt, &oval);
1141
			if (err < 0)
1142
				return filter_error(cval, err);
1143 1144 1145
			val = ucontrol->value.integer.value[cnt];
			val = get_abs_value(cval, val);
			if (oval != val) {
1146
				snd_usb_set_cur_mix_value(cval, c + 1, cnt, val);
1147
				changed = 1;
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			}
1149
			cnt++;
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		}
	} else {
		/* master channel */
1153
		err = snd_usb_get_cur_mix_value(cval, 0, 0, &oval);
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		if (err < 0)
1155
			return filter_error(cval, err);
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		val = ucontrol->value.integer.value[0];
		val = get_abs_value(cval, val);
		if (val != oval) {
1159
			snd_usb_set_cur_mix_value(cval, 0, 0, val);
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			changed = 1;
		}
	}
	return changed;
}

1166
static struct snd_kcontrol_new usb_feature_unit_ctl = {
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	.iface = SNDRV_CTL_ELEM_IFACE_MIXER,
	.name = "", /* will be filled later manually */
	.info = mixer_ctl_feature_info,
	.get = mixer_ctl_feature_get,
	.put = mixer_ctl_feature_put,
};

1174
/* the read-only variant */
1175
static const struct snd_kcontrol_new usb_feature_unit_ctl_ro = {
1176 1177 1178 1179 1180 1181 1182
	.iface = SNDRV_CTL_ELEM_IFACE_MIXER,
	.name = "", /* will be filled later manually */
	.info = mixer_ctl_feature_info,
	.get = mixer_ctl_feature_get,
	.put = NULL,
};

1183 1184 1185 1186
/*
 * This symbol is exported in order to allow the mixer quirks to
 * hook up to the standard feature unit control mechanism
 */
1187
struct snd_kcontrol_new *snd_usb_feature_unit_ctl = &usb_feature_unit_ctl;
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/*
 * build a feature control
 */
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static size_t append_ctl_name(struct snd_kcontrol *kctl, const char *str)
{
	return strlcat(kctl->id.name, str, sizeof(kctl->id.name));
}

1197 1198 1199 1200 1201
/*
 * A lot of headsets/headphones have a "Speaker" mixer. Make sure we
 * rename it to "Headphone". We determine if something is a headphone
 * similar to how udev determines form factor.
 */
1202 1203 1204 1205 1206 1207
static void check_no_speaker_on_headset(struct snd_kcontrol *kctl,
					struct snd_card *card)
{
	const char *names_to_check[] = {
		"Headset", "headset", "Headphone", "headphone", NULL};
	const char **s;
1208
	bool found = false;
1209 1210 1211 1212 1213 1214

	if (strcmp("Speaker", kctl->id.name))
		return;

	for (s = names_to_check; *s; s++)
		if (strstr(card->shortname, *s)) {
1215
			found = true;
1216 1217 1218 1219 1220 1221 1222 1223 1224
			break;
		}

	if (!found)
		return;

	strlcpy(kctl->id.name, "Headphone", sizeof(kctl->id.name));
}

1225
static void build_feature_ctl(struct mixer_build *state, void *raw_desc,
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			      unsigned int ctl_mask, int control,
1227
			      struct usb_audio_term *iterm, int unitid,
1228
			      int readonly_mask)
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{
1230
	struct uac_feature_unit_descriptor *desc = raw_desc;
1231
	struct usb_feature_control_info *ctl_info;
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	unsigned int len = 0;
	int mapped_name = 0;
1234
	int nameid = uac_feature_unit_iFeature(desc);
1235 1236
	struct snd_kcontrol *kctl;
	struct usb_mixer_elem_info *cval;
1237
	const struct usbmix_name_map *map;
1238
	unsigned int range;
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	control++; /* change from zero-based to 1-based value */

1242
	if (control == UAC_FU_GRAPHIC_EQUALIZER) {
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		/* FIXME: not supported yet */
		return;
	}

1247 1248
	map = find_map(state, unitid, control);
	if (check_ignored_ctl(map))
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		return;

1251
	cval = kzalloc(sizeof(*cval), GFP_KERNEL);
1252
	if (!cval)
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		return;
1254
	snd_usb_mixer_elem_init_std(&cval->head, state->mixer, unitid);
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	cval->control = control;
	cval->cmask = ctl_mask;
1257 1258 1259 1260 1261 1262 1263
	ctl_info = &audio_feature_info[control-1];
	if (state->mixer->protocol == UAC_VERSION_1)
		cval->val_type = ctl_info->type;
	else /* UAC_VERSION_2 */
		cval->val_type = ctl_info->type_uac2 >= 0 ?
			ctl_info->type_uac2 : ctl_info->type;

1264
	if (ctl_mask == 0) {
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		cval->channels = 1;	/* master channel */
1266 1267
		cval->master_readonly = readonly_mask;
	} else {
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		int i, c = 0;
		for (i = 0; i < 16; i++)
			if (ctl_mask & (1 << i))
				c++;
		cval->channels = c;
1273
		cval->ch_readonly = readonly_mask;
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	}

1276 1277
	/*
	 * If all channels in the mask are marked read-only, make the control
1278
	 * read-only. snd_usb_set_cur_mix_value() will check the mask again and won't
1279 1280
	 * issue write commands to read-only channels.
	 */
1281
	if (cval->channels == readonly_mask)
1282 1283 1284 1285
		kctl = snd_ctl_new1(&usb_feature_unit_ctl_ro, cval);
	else
		kctl = snd_ctl_new1(&usb_feature_unit_ctl, cval);

1286
	if (!kctl) {
1287
		usb_audio_err(state->chip, "cannot malloc kcontrol\n");
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		kfree(cval);
		return;
	}
1291
	kctl->private_free = snd_usb_mixer_elem_free;
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1293
	len = check_mapped_name(map, kctl->id.name, sizeof(kctl->id.name));
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	mapped_name = len != 0;
1295
	if (!len && nameid)
1296 1297
		len = snd_usb_copy_string_desc(state, nameid,
				kctl->id.name, sizeof(kctl->id.name));
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	switch (control) {
1300 1301
	case UAC_FU_MUTE:
	case UAC_FU_VOLUME:
1302 1303
		/*
		 * determine the control name.  the rule is:
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		 * - if a name id is given in descriptor, use it.
		 * - if the connected input can be determined, then use the name
		 *   of terminal type.
		 * - if the connected output can be determined, use it.
		 * - otherwise, anonymous name.
		 */
1310 1311 1312 1313 1314 1315 1316 1317
		if (!len) {
			len = get_term_name(state, iterm, kctl->id.name,
					    sizeof(kctl->id.name), 1);
			if (!len)
				len = get_term_name(state, &state->oterm,
						    kctl->id.name,
						    sizeof(kctl->id.name), 1);
			if (!len)
1318 1319
				snprintf(kctl->id.name, sizeof(kctl->id.name),
					 "Feature %d", unitid);
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		}
1321 1322 1323 1324

		if (!mapped_name)
			check_no_speaker_on_headset(kctl, state->mixer->chip->card);

1325 1326
		/*
		 * determine the stream direction:
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		 * if the connected output is USB stream, then it's likely a
		 * capture stream.  otherwise it should be playback (hopefully :)
		 */
1330 1331
		if (!mapped_name && !(state->oterm.type >> 16)) {
			if ((state->oterm.type & 0xff00) == 0x0100)
1332
				append_ctl_name(kctl, " Capture");
1333
			else
1334
				append_ctl_name(kctl, " Playback");
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		}
1336
		append_ctl_name(kctl, control == UAC_FU_MUTE ?
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				" Switch" : " Volume");
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		break;
	default:
1340
		if (!len)
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			strlcpy(kctl->id.name, audio_feature_info[control-1].name,
				sizeof(kctl->id.name));
		break;
	}

1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358
	/* get min/max values */
	get_min_max_with_quirks(cval, 0, kctl);

	if (control == UAC_FU_VOLUME) {
		check_mapped_dB(map, cval);
		if (cval->dBmin < cval->dBmax || !cval->initialized) {
			kctl->tlv.c = snd_usb_mixer_vol_tlv;
			kctl->vd[0].access |=
				SNDRV_CTL_ELEM_ACCESS_TLV_READ |
				SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK;
		}
	}

1359 1360
	snd_usb_mixer_fu_apply_quirk(state->mixer, cval, unitid, kctl);

1361
	range = (cval->max - cval->min) / cval->res;
1362 1363
	/*
	 * Are there devices with volume range more than 255? I use a bit more
1364 1365 1366 1367
	 * to be sure. 384 is a resolution magic number found on Logitech
	 * devices. It will definitively catch all buggy Logitech devices.
	 */
	if (range > 384) {
1368
		usb_audio_warn(state->chip,
1369
			       "Warning! Unlikely big volume range (=%u), cval->res is probably wrong.",
1370
			       range);
1371 1372
		usb_audio_warn(state->chip,
			       "[%d] FU [%s] ch = %d, val = %d/%d/%d",
1373
			       cval->head.id, kctl->id.name, cval->channels,
1374
			       cval->min, cval->max, cval->res);
1375 1376
	}

1377
	usb_audio_dbg(state->chip, "[%d] FU [%s] ch = %d, val = %d/%d/%d\n",
1378
		      cval->head.id, kctl->id.name, cval->channels,
1379
		      cval->min, cval->max, cval->res);
1380
	snd_usb_mixer_add_control(&cval->head, kctl);
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}

1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447
static int parse_clock_source_unit(struct mixer_build *state, int unitid,
				   void *_ftr)
{
	struct uac_clock_source_descriptor *hdr = _ftr;
	struct usb_mixer_elem_info *cval;
	struct snd_kcontrol *kctl;
	char name[SNDRV_CTL_ELEM_ID_NAME_MAXLEN];
	int ret;

	if (state->mixer->protocol != UAC_VERSION_2)
		return -EINVAL;

	if (hdr->bLength != sizeof(*hdr)) {
		usb_audio_dbg(state->chip,
			      "Bogus clock source descriptor length of %d, ignoring.\n",
			      hdr->bLength);
		return 0;
	}

	/*
	 * The only property of this unit we are interested in is the
	 * clock source validity. If that isn't readable, just bail out.
	 */
	if (!uac2_control_is_readable(hdr->bmControls,
				      ilog2(UAC2_CS_CONTROL_CLOCK_VALID)))
		return 0;

	cval = kzalloc(sizeof(*cval), GFP_KERNEL);
	if (!cval)
		return -ENOMEM;

	snd_usb_mixer_elem_init_std(&cval->head, state->mixer, hdr->bClockID);

	cval->min = 0;
	cval->max = 1;
	cval->channels = 1;
	cval->val_type = USB_MIXER_BOOLEAN;
	cval->control = UAC2_CS_CONTROL_CLOCK_VALID;

	if (uac2_control_is_writeable(hdr->bmControls,
				      ilog2(UAC2_CS_CONTROL_CLOCK_VALID)))
		kctl = snd_ctl_new1(&usb_feature_unit_ctl, cval);
	else {
		cval->master_readonly = 1;
		kctl = snd_ctl_new1(&usb_feature_unit_ctl_ro, cval);
	}

	if (!kctl) {
		kfree(cval);
		return -ENOMEM;
	}

	kctl->private_free = snd_usb_mixer_elem_free;
	ret = snd_usb_copy_string_desc(state, hdr->iClockSource,
				       name, sizeof(name));
	if (ret > 0)
		snprintf(kctl->id.name, sizeof(kctl->id.name),
			 "%s Validity", name);
	else
		snprintf(kctl->id.name, sizeof(kctl->id.name),
			 "Clock Source %d Validity", hdr->bClockID);

	return snd_usb_mixer_add_control(&cval->head, kctl);
}

L
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1448 1449 1450
/*
 * parse a feature unit
 *
L
Lucas De Marchi 已提交
1451
 * most of controls are defined here.
L
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1452
 */
1453 1454
static int parse_audio_feature_unit(struct mixer_build *state, int unitid,
				    void *_ftr)
L
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1455 1456
{
	int channels, i, j;
1457
	struct usb_audio_term iterm;
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	unsigned int master_bits, first_ch_bits;
	int err, csize;
1460 1461 1462 1463 1464
	struct uac_feature_unit_descriptor *hdr = _ftr;
	__u8 *bmaControls;

	if (state->mixer->protocol == UAC_VERSION_1) {
		csize = hdr->bControlSize;
1465
		if (!csize) {
1466 1467 1468
			usb_audio_dbg(state->chip,
				      "unit %u: invalid bControlSize == 0\n",
				      unitid);
1469 1470
			return -EINVAL;
		}
1471 1472
		channels = (hdr->bLength - 7) / csize - 1;
		bmaControls = hdr->bmaControls;
1473
		if (hdr->bLength < 7 + csize) {
1474 1475 1476
			usb_audio_err(state->chip,
				      "unit %u: invalid UAC_FEATURE_UNIT descriptor\n",
				      unitid);
1477 1478
			return -EINVAL;
		}
1479 1480 1481
	} else {
		struct uac2_feature_unit_descriptor *ftr = _ftr;
		csize = 4;
1482
		channels = (hdr->bLength - 6) / 4 - 1;
1483
		bmaControls = ftr->bmaControls;
1484
		if (hdr->bLength < 6 + csize) {
1485 1486 1487
			usb_audio_err(state->chip,
				      "unit %u: invalid UAC_FEATURE_UNIT descriptor\n",
				      unitid);
1488 1489
			return -EINVAL;
		}
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1490 1491 1492
	}

	/* parse the source unit */
1493
	if ((err = parse_audio_unit(state, hdr->bSourceID)) < 0)
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1494 1495 1496
		return err;

	/* determine the input source type and name */
1497 1498 1499
	err = check_input_term(state, hdr->bSourceID, &iterm);
	if (err < 0)
		return err;
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1501
	master_bits = snd_usb_combine_bytes(bmaControls, csize);
1502 1503 1504
	/* master configuration quirks */
	switch (state->chip->usb_id) {
	case USB_ID(0x08bb, 0x2702):
1505 1506
		usb_audio_info(state->chip,
			       "usbmixer: master volume quirk for PCM2702 chip\n");
1507
		/* disable non-functional volume control */
1508
		master_bits &= ~UAC_CONTROL_BIT(UAC_FU_VOLUME);
1509
		break;
1510
	case USB_ID(0x1130, 0xf211):
1511 1512
		usb_audio_info(state->chip,
			       "usbmixer: volume control quirk for Tenx TP6911 Audio Headset\n");
1513 1514 1515 1516
		/* disable non-functional volume control */
		channels = 0;
		break;

1517
	}
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	if (channels > 0)
1519
		first_ch_bits = snd_usb_combine_bytes(bmaControls + csize, csize);
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	else
		first_ch_bits = 0;
1522 1523 1524 1525 1526 1527

	if (state->mixer->protocol == UAC_VERSION_1) {
		/* check all control types */
		for (i = 0; i < 10; i++) {
			unsigned int ch_bits = 0;
			for (j = 0; j < channels; j++) {
1528 1529 1530 1531
				unsigned int mask;

				mask = snd_usb_combine_bytes(bmaControls +
							     csize * (j+1), csize);
1532 1533 1534 1535
				if (mask & (1 << i))
					ch_bits |= (1 << j);
			}
			/* audio class v1 controls are never read-only */
1536 1537 1538 1539 1540 1541 1542 1543

			/*
			 * The first channel must be set
			 * (for ease of programming).
			 */
			if (ch_bits & 1)
				build_feature_ctl(state, _ftr, ch_bits, i,
						  &iterm, unitid, 0);
1544
			if (master_bits & (1 << i))
1545 1546
				build_feature_ctl(state, _ftr, 0, i, &iterm,
						  unitid, 0);
1547 1548
		}
	} else { /* UAC_VERSION_2 */
1549
		for (i = 0; i < ARRAY_SIZE(audio_feature_info); i++) {
1550 1551 1552 1553
			unsigned int ch_bits = 0;
			unsigned int ch_read_only = 0;

			for (j = 0; j < channels; j++) {
1554 1555 1556 1557
				unsigned int mask;

				mask = snd_usb_combine_bytes(bmaControls +
							     csize * (j+1), csize);
1558
				if (uac2_control_is_readable(mask, i)) {
1559
					ch_bits |= (1 << j);
1560
					if (!uac2_control_is_writeable(mask, i))
1561 1562 1563 1564
						ch_read_only |= (1 << j);
				}
			}

1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580
			/*
			 * NOTE: build_feature_ctl() will mark the control
			 * read-only if all channels are marked read-only in
			 * the descriptors. Otherwise, the control will be
			 * reported as writeable, but the driver will not
			 * actually issue a write command for read-only
			 * channels.
			 */

			/*
			 * The first channel must be set
			 * (for ease of programming).
			 */
			if (ch_bits & 1)
				build_feature_ctl(state, _ftr, ch_bits, i,
						  &iterm, unitid, ch_read_only);
1581
			if (uac2_control_is_readable(master_bits, i))
1582
				build_feature_ctl(state, _ftr, 0, i, &iterm, unitid,
1583
						  !uac2_control_is_writeable(master_bits, i));
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		}
	}

	return 0;
}

/*
 * Mixer Unit
 */

/*
 * build a mixer unit control
 *
 * the callbacks are identical with feature unit.
 * input channel number (zero based) is given in control field instead.
 */
1600 1601
static void build_mixer_unit_ctl(struct mixer_build *state,
				 struct uac_mixer_unit_descriptor *desc,
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				 int in_pin, int in_ch, int unitid,
1603
				 struct usb_audio_term *iterm)
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{
1605
	struct usb_mixer_elem_info *cval;
1606
	unsigned int num_outs = uac_mixer_unit_bNrChannels(desc);
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	unsigned int i, len;
1608
	struct snd_kcontrol *kctl;
1609
	const struct usbmix_name_map *map;
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1611 1612
	map = find_map(state, unitid, 0);
	if (check_ignored_ctl(map))
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		return;

1615
	cval = kzalloc(sizeof(*cval), GFP_KERNEL);
1616
	if (!cval)
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		return;

1619
	snd_usb_mixer_elem_init_std(&cval->head, state->mixer, unitid);
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	cval->control = in_ch + 1; /* based on 1 */
	cval->val_type = USB_MIXER_S16;
	for (i = 0; i < num_outs; i++) {
1623 1624 1625
		__u8 *c = uac_mixer_unit_bmControls(desc, state->mixer->protocol);

		if (check_matrix_bitmap(c, in_ch, i, num_outs)) {
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			cval->cmask |= (1 << i);
			cval->channels++;
		}
	}

	/* get min/max values */
	get_min_max(cval, 0);

	kctl = snd_ctl_new1(&usb_feature_unit_ctl, cval);
1635
	if (!kctl) {
1636
		usb_audio_err(state->chip, "cannot malloc kcontrol\n");
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		kfree(cval);
		return;
	}
1640
	kctl->private_free = snd_usb_mixer_elem_free;
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1642
	len = check_mapped_name(map, kctl->id.name, sizeof(kctl->id.name));
1643 1644 1645 1646
	if (!len)
		len = get_term_name(state, iterm, kctl->id.name,
				    sizeof(kctl->id.name), 0);
	if (!len)
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		len = sprintf(kctl->id.name, "Mixer Source %d", in_ch + 1);
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	append_ctl_name(kctl, " Volume");
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1650
	usb_audio_dbg(state->chip, "[%d] MU [%s] ch = %d, val = %d/%d\n",
1651 1652
		    cval->head.id, kctl->id.name, cval->channels, cval->min, cval->max);
	snd_usb_mixer_add_control(&cval->head, kctl);
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}

/*
 * parse a mixer unit
 */
1658 1659
static int parse_audio_mixer_unit(struct mixer_build *state, int unitid,
				  void *raw_desc)
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{
1661
	struct uac_mixer_unit_descriptor *desc = raw_desc;
1662
	struct usb_audio_term iterm;
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	int input_pins, num_ins, num_outs;
	int pin, ich, err;

1666 1667 1668 1669 1670
	if (desc->bLength < 11 || !(input_pins = desc->bNrInPins) ||
	    !(num_outs = uac_mixer_unit_bNrChannels(desc))) {
		usb_audio_err(state->chip,
			      "invalid MIXER UNIT descriptor %d\n",
			      unitid);
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		return -EINVAL;
	}

	num_ins = 0;
	ich = 0;
	for (pin = 0; pin < input_pins; pin++) {
1677
		err = parse_audio_unit(state, desc->baSourceID[pin]);
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		if (err < 0)
1679
			continue;
1680 1681 1682
		/* no bmControls field (e.g. Maya44) -> ignore */
		if (desc->bLength <= 10 + input_pins)
			continue;
1683
		err = check_input_term(state, desc->baSourceID[pin], &iterm);
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		if (err < 0)
			return err;
		num_ins += iterm.channels;
1687
		for (; ich < num_ins; ich++) {
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			int och, ich_has_controls = 0;

1690 1691 1692 1693 1694
			for (och = 0; och < num_outs; och++) {
				__u8 *c = uac_mixer_unit_bmControls(desc,
						state->mixer->protocol);

				if (check_matrix_bitmap(c, ich, och, num_outs)) {
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					ich_has_controls = 1;
					break;
				}
			}
			if (ich_has_controls)
				build_mixer_unit_ctl(state, desc, pin, ich,
						     unitid, &iterm);
		}
	}
	return 0;
}

/*
 * Processing Unit / Extension Unit
 */

/* get callback for processing/extension unit */
1712 1713
static int mixer_ctl_procunit_get(struct snd_kcontrol *kcontrol,
				  struct snd_ctl_elem_value *ucontrol)
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{
1715
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	int err, val;

	err = get_cur_ctl_value(cval, cval->control << 8, &val);
1719
	if (err < 0) {
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		ucontrol->value.integer.value[0] = cval->min;
1721
		return filter_error(cval, err);
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	}
	val = get_relative_value(cval, val);
	ucontrol->value.integer.value[0] = val;
	return 0;
}

/* put callback for processing/extension unit */
1729 1730
static int mixer_ctl_procunit_put(struct snd_kcontrol *kcontrol,
				  struct snd_ctl_elem_value *ucontrol)
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{
1732
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	int val, oval, err;

	err = get_cur_ctl_value(cval, cval->control << 8, &oval);
1736 1737
	if (err < 0)
		return filter_error(cval, err);
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	val = ucontrol->value.integer.value[0];
	val = get_abs_value(cval, val);
	if (val != oval) {
		set_cur_ctl_value(cval, cval->control << 8, val);
		return 1;
	}
	return 0;
}

/* alsa control interface for processing/extension unit */
1748
static const struct snd_kcontrol_new mixer_procunit_ctl = {
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	.iface = SNDRV_CTL_ELEM_IFACE_MIXER,
	.name = "", /* will be filled later */
	.info = mixer_ctl_feature_info,
	.get = mixer_ctl_procunit_get,
	.put = mixer_ctl_procunit_put,
};

/*
 * predefined data for processing units
 */
struct procunit_value_info {
	int control;
	char *suffix;
	int val_type;
	int min_value;
};

struct procunit_info {
	int type;
	char *name;
	struct procunit_value_info *values;
};

static struct procunit_value_info updown_proc_info[] = {
1773 1774
	{ UAC_UD_ENABLE, "Switch", USB_MIXER_BOOLEAN },
	{ UAC_UD_MODE_SELECT, "Mode Select", USB_MIXER_U8, 1 },
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	{ 0 }
};
static struct procunit_value_info prologic_proc_info[] = {
1778 1779
	{ UAC_DP_ENABLE, "Switch", USB_MIXER_BOOLEAN },
	{ UAC_DP_MODE_SELECT, "Mode Select", USB_MIXER_U8, 1 },
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	{ 0 }
};
static struct procunit_value_info threed_enh_proc_info[] = {
1783 1784
	{ UAC_3D_ENABLE, "Switch", USB_MIXER_BOOLEAN },
	{ UAC_3D_SPACE, "Spaciousness", USB_MIXER_U8 },
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	{ 0 }
};
static struct procunit_value_info reverb_proc_info[] = {
1788 1789 1790 1791
	{ UAC_REVERB_ENABLE, "Switch", USB_MIXER_BOOLEAN },
	{ UAC_REVERB_LEVEL, "Level", USB_MIXER_U8 },
	{ UAC_REVERB_TIME, "Time", USB_MIXER_U16 },
	{ UAC_REVERB_FEEDBACK, "Feedback", USB_MIXER_U8 },
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	{ 0 }
};
static struct procunit_value_info chorus_proc_info[] = {
1795 1796 1797 1798
	{ UAC_CHORUS_ENABLE, "Switch", USB_MIXER_BOOLEAN },
	{ UAC_CHORUS_LEVEL, "Level", USB_MIXER_U8 },
	{ UAC_CHORUS_RATE, "Rate", USB_MIXER_U16 },
	{ UAC_CHORUS_DEPTH, "Depth", USB_MIXER_U16 },
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	{ 0 }
};
static struct procunit_value_info dcr_proc_info[] = {
1802 1803 1804 1805 1806 1807
	{ UAC_DCR_ENABLE, "Switch", USB_MIXER_BOOLEAN },
	{ UAC_DCR_RATE, "Ratio", USB_MIXER_U16 },
	{ UAC_DCR_MAXAMPL, "Max Amp", USB_MIXER_S16 },
	{ UAC_DCR_THRESHOLD, "Threshold", USB_MIXER_S16 },
	{ UAC_DCR_ATTACK_TIME, "Attack Time", USB_MIXER_U16 },
	{ UAC_DCR_RELEASE_TIME, "Release Time", USB_MIXER_U16 },
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	{ 0 }
};

static struct procunit_info procunits[] = {
1812 1813 1814 1815 1816 1817
	{ UAC_PROCESS_UP_DOWNMIX, "Up Down", updown_proc_info },
	{ UAC_PROCESS_DOLBY_PROLOGIC, "Dolby Prologic", prologic_proc_info },
	{ UAC_PROCESS_STEREO_EXTENDER, "3D Stereo Extender", threed_enh_proc_info },
	{ UAC_PROCESS_REVERB, "Reverb", reverb_proc_info },
	{ UAC_PROCESS_CHORUS, "Chorus", chorus_proc_info },
	{ UAC_PROCESS_DYN_RANGE_COMP, "DCR", dcr_proc_info },
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	{ 0 },
};
1820 1821 1822 1823
/*
 * predefined data for extension units
 */
static struct procunit_value_info clock_rate_xu_info[] = {
1824 1825
	{ USB_XU_CLOCK_RATE_SELECTOR, "Selector", USB_MIXER_U8, 0 },
	{ 0 }
1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845
};
static struct procunit_value_info clock_source_xu_info[] = {
	{ USB_XU_CLOCK_SOURCE_SELECTOR, "External", USB_MIXER_BOOLEAN },
	{ 0 }
};
static struct procunit_value_info spdif_format_xu_info[] = {
	{ USB_XU_DIGITAL_FORMAT_SELECTOR, "SPDIF/AC3", USB_MIXER_BOOLEAN },
	{ 0 }
};
static struct procunit_value_info soft_limit_xu_info[] = {
	{ USB_XU_SOFT_LIMIT_SELECTOR, " ", USB_MIXER_BOOLEAN },
	{ 0 }
};
static struct procunit_info extunits[] = {
	{ USB_XU_CLOCK_RATE, "Clock rate", clock_rate_xu_info },
	{ USB_XU_CLOCK_SOURCE, "DigitalIn CLK source", clock_source_xu_info },
	{ USB_XU_DIGITAL_IO_STATUS, "DigitalOut format:", spdif_format_xu_info },
	{ USB_XU_DEVICE_OPTIONS, "AnalogueIn Soft Limit", soft_limit_xu_info },
	{ 0 }
};
1846

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/*
 * build a processing/extension unit
 */
1850 1851 1852
static int build_audio_procunit(struct mixer_build *state, int unitid,
				void *raw_desc, struct procunit_info *list,
				char *name)
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{
1854 1855
	struct uac_processing_unit_descriptor *desc = raw_desc;
	int num_ins = desc->bNrInPins;
1856 1857
	struct usb_mixer_elem_info *cval;
	struct snd_kcontrol *kctl;
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	int i, err, nameid, type, len;
	struct procunit_info *info;
	struct procunit_value_info *valinfo;
1861
	const struct usbmix_name_map *map;
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	static struct procunit_value_info default_value_info[] = {
		{ 0x01, "Switch", USB_MIXER_BOOLEAN },
		{ 0 }
	};
	static struct procunit_info default_info = {
		0, NULL, default_value_info
	};

1870 1871
	if (desc->bLength < 13 || desc->bLength < 13 + num_ins ||
	    desc->bLength < num_ins + uac_processing_unit_bControlSize(desc, state->mixer->protocol)) {
1872
		usb_audio_err(state->chip, "invalid %s descriptor (id %d)\n", name, unitid);
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		return -EINVAL;
	}

	for (i = 0; i < num_ins; i++) {
1877
		if ((err = parse_audio_unit(state, desc->baSourceID[i])) < 0)
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			return err;
	}

1881
	type = le16_to_cpu(desc->wProcessType);
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	for (info = list; info && info->type; info++)
		if (info->type == type)
			break;
1885
	if (!info || !info->type)
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		info = &default_info;

	for (valinfo = info->values; valinfo->control; valinfo++) {
1889
		__u8 *controls = uac_processing_unit_bmControls(desc, state->mixer->protocol);
1890

1891
		if (!(controls[valinfo->control / 8] & (1 << ((valinfo->control % 8) - 1))))
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			continue;
1893 1894
		map = find_map(state, unitid, valinfo->control);
		if (check_ignored_ctl(map))
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1895
			continue;
1896
		cval = kzalloc(sizeof(*cval), GFP_KERNEL);
1897
		if (!cval)
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			return -ENOMEM;
1899
		snd_usb_mixer_elem_init_std(&cval->head, state->mixer, unitid);
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		cval->control = valinfo->control;
		cval->val_type = valinfo->val_type;
		cval->channels = 1;

		/* get min/max values */
1905
		if (type == UAC_PROCESS_UP_DOWNMIX && cval->control == UAC_UD_MODE_SELECT) {
1906
			__u8 *control_spec = uac_processing_unit_specific(desc, state->mixer->protocol);
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1907 1908
			/* FIXME: hard-coded */
			cval->min = 1;
1909
			cval->max = control_spec[0];
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1910 1911
			cval->res = 1;
			cval->initialized = 1;
1912 1913
		} else {
			if (type == USB_XU_CLOCK_RATE) {
1914 1915
				/*
				 * E-Mu USB 0404/0202/TrackerPre/0204
1916 1917 1918 1919 1920 1921 1922 1923 1924
				 * samplerate control quirk
				 */
				cval->min = 0;
				cval->max = 5;
				cval->res = 1;
				cval->initialized = 1;
			} else
				get_min_max(cval, valinfo->min_value);
		}
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1925 1926

		kctl = snd_ctl_new1(&mixer_procunit_ctl, cval);
1927
		if (!kctl) {
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			kfree(cval);
			return -ENOMEM;
		}
1931
		kctl->private_free = snd_usb_mixer_elem_free;
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1933
		if (check_mapped_name(map, kctl->id.name, sizeof(kctl->id.name))) {
1934
			/* nothing */ ;
1935
		} else if (info->name) {
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			strlcpy(kctl->id.name, info->name, sizeof(kctl->id.name));
1937
		} else {
1938
			nameid = uac_processing_unit_iProcessing(desc, state->mixer->protocol);
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			len = 0;
			if (nameid)
1941 1942 1943 1944
				len = snd_usb_copy_string_desc(state, nameid,
							       kctl->id.name,
							       sizeof(kctl->id.name));
			if (!len)
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				strlcpy(kctl->id.name, name, sizeof(kctl->id.name));
		}
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		append_ctl_name(kctl, " ");
		append_ctl_name(kctl, valinfo->suffix);
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1950
		usb_audio_dbg(state->chip,
1951
			      "[%d] PU [%s] ch = %d, val = %d/%d\n",
1952
			      cval->head.id, kctl->id.name, cval->channels,
1953 1954
			      cval->min, cval->max);

1955
		err = snd_usb_mixer_add_control(&cval->head, kctl);
1956
		if (err < 0)
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			return err;
	}
	return 0;
}

1962 1963
static int parse_audio_processing_unit(struct mixer_build *state, int unitid,
				       void *raw_desc)
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{
1965 1966
	return build_audio_procunit(state, unitid, raw_desc,
				    procunits, "Processing Unit");
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}

1969 1970
static int parse_audio_extension_unit(struct mixer_build *state, int unitid,
				      void *raw_desc)
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{
1972 1973 1974 1975 1976 1977
	/*
	 * Note that we parse extension units with processing unit descriptors.
	 * That's ok as the layout is the same.
	 */
	return build_audio_procunit(state, unitid, raw_desc,
				    extunits, "Extension Unit");
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}

/*
 * Selector Unit
 */

1984 1985
/*
 * info callback for selector unit
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 * use an enumerator type for routing
 */
1988 1989
static int mixer_ctl_selector_info(struct snd_kcontrol *kcontrol,
				   struct snd_ctl_elem_info *uinfo)
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{
1991
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
1992
	const char **itemlist = (const char **)kcontrol->private_value;
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1994 1995
	if (snd_BUG_ON(!itemlist))
		return -EINVAL;
1996
	return snd_ctl_enum_info(uinfo, 1, cval->max, itemlist);
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}

/* get callback for selector unit */
2000 2001
static int mixer_ctl_selector_get(struct snd_kcontrol *kcontrol,
				  struct snd_ctl_elem_value *ucontrol)
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{
2003
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	int val, err;

2006
	err = get_cur_ctl_value(cval, cval->control << 8, &val);
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	if (err < 0) {
2008 2009
		ucontrol->value.enumerated.item[0] = 0;
		return filter_error(cval, err);
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	}
	val = get_relative_value(cval, val);
	ucontrol->value.enumerated.item[0] = val;
	return 0;
}

/* put callback for selector unit */
2017 2018
static int mixer_ctl_selector_put(struct snd_kcontrol *kcontrol,
				  struct snd_ctl_elem_value *ucontrol)
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{
2020
	struct usb_mixer_elem_info *cval = kcontrol->private_data;
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	int val, oval, err;

2023
	err = get_cur_ctl_value(cval, cval->control << 8, &oval);
2024 2025
	if (err < 0)
		return filter_error(cval, err);
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	val = ucontrol->value.enumerated.item[0];
	val = get_abs_value(cval, val);
	if (val != oval) {
2029
		set_cur_ctl_value(cval, cval->control << 8, val);
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		return 1;
	}
	return 0;
}

/* alsa control interface for selector unit */
2036
static const struct snd_kcontrol_new mixer_selectunit_ctl = {
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	.iface = SNDRV_CTL_ELEM_IFACE_MIXER,
	.name = "", /* will be filled later */
	.info = mixer_ctl_selector_info,
	.get = mixer_ctl_selector_get,
	.put = mixer_ctl_selector_put,
};

2044 2045
/*
 * private free callback.
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 * free both private_data and private_value
 */
2048
static void usb_mixer_selector_elem_free(struct snd_kcontrol *kctl)
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{
	int i, num_ins = 0;

	if (kctl->private_data) {
2053
		struct usb_mixer_elem_info *cval = kctl->private_data;
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		num_ins = cval->max;
		kfree(cval);
		kctl->private_data = NULL;
	}
	if (kctl->private_value) {
		char **itemlist = (char **)kctl->private_value;
		for (i = 0; i < num_ins; i++)
			kfree(itemlist[i]);
		kfree(itemlist);
		kctl->private_value = 0;
	}
}

/*
 * parse a selector unit
 */
2070 2071
static int parse_audio_selector_unit(struct mixer_build *state, int unitid,
				     void *raw_desc)
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{
2073
	struct uac_selector_unit_descriptor *desc = raw_desc;
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	unsigned int i, nameid, len;
	int err;
2076 2077
	struct usb_mixer_elem_info *cval;
	struct snd_kcontrol *kctl;
2078
	const struct usbmix_name_map *map;
L
Linus Torvalds 已提交
2079 2080
	char **namelist;

2081
	if (!desc->bNrInPins || desc->bLength < 5 + desc->bNrInPins) {
2082 2083
		usb_audio_err(state->chip,
			"invalid SELECTOR UNIT descriptor %d\n", unitid);
L
Linus Torvalds 已提交
2084 2085 2086
		return -EINVAL;
	}

2087 2088
	for (i = 0; i < desc->bNrInPins; i++) {
		if ((err = parse_audio_unit(state, desc->baSourceID[i])) < 0)
L
Linus Torvalds 已提交
2089 2090 2091
			return err;
	}

2092
	if (desc->bNrInPins == 1) /* only one ? nonsense! */
L
Linus Torvalds 已提交
2093 2094
		return 0;

2095 2096
	map = find_map(state, unitid, 0);
	if (check_ignored_ctl(map))
L
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2097 2098
		return 0;

2099
	cval = kzalloc(sizeof(*cval), GFP_KERNEL);
2100
	if (!cval)
L
Linus Torvalds 已提交
2101
		return -ENOMEM;
2102
	snd_usb_mixer_elem_init_std(&cval->head, state->mixer, unitid);
L
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2103 2104 2105
	cval->val_type = USB_MIXER_U8;
	cval->channels = 1;
	cval->min = 1;
2106
	cval->max = desc->bNrInPins;
L
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2107 2108 2109
	cval->res = 1;
	cval->initialized = 1;

2110
	if (state->mixer->protocol == UAC_VERSION_1)
2111
		cval->control = 0;
2112 2113 2114
	else /* UAC_VERSION_2 */
		cval->control = (desc->bDescriptorSubtype == UAC2_CLOCK_SELECTOR) ?
			UAC2_CX_CLOCK_SELECTOR : UAC2_SU_SELECTOR;
2115

2116
	namelist = kmalloc(sizeof(char *) * desc->bNrInPins, GFP_KERNEL);
2117
	if (!namelist) {
L
Linus Torvalds 已提交
2118 2119 2120 2121
		kfree(cval);
		return -ENOMEM;
	}
#define MAX_ITEM_NAME_LEN	64
2122
	for (i = 0; i < desc->bNrInPins; i++) {
2123
		struct usb_audio_term iterm;
L
Linus Torvalds 已提交
2124 2125
		len = 0;
		namelist[i] = kmalloc(MAX_ITEM_NAME_LEN, GFP_KERNEL);
2126
		if (!namelist[i]) {
2127
			while (i--)
L
Linus Torvalds 已提交
2128 2129 2130 2131 2132
				kfree(namelist[i]);
			kfree(namelist);
			kfree(cval);
			return -ENOMEM;
		}
2133 2134
		len = check_mapped_selector_name(state, unitid, i, namelist[i],
						 MAX_ITEM_NAME_LEN);
2135
		if (! len && check_input_term(state, desc->baSourceID[i], &iterm) >= 0)
L
Linus Torvalds 已提交
2136 2137
			len = get_term_name(state, &iterm, namelist[i], MAX_ITEM_NAME_LEN, 0);
		if (! len)
2138
			sprintf(namelist[i], "Input %u", i);
L
Linus Torvalds 已提交
2139 2140 2141 2142
	}

	kctl = snd_ctl_new1(&mixer_selectunit_ctl, cval);
	if (! kctl) {
2143
		usb_audio_err(state->chip, "cannot malloc kcontrol\n");
2144
		kfree(namelist);
L
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2145 2146 2147 2148 2149 2150
		kfree(cval);
		return -ENOMEM;
	}
	kctl->private_value = (unsigned long)namelist;
	kctl->private_free = usb_mixer_selector_elem_free;

2151
	nameid = uac_selector_unit_iSelector(desc);
2152
	len = check_mapped_name(map, kctl->id.name, sizeof(kctl->id.name));
L
Linus Torvalds 已提交
2153 2154 2155
	if (len)
		;
	else if (nameid)
2156 2157
		snd_usb_copy_string_desc(state, nameid, kctl->id.name,
					 sizeof(kctl->id.name));
L
Linus Torvalds 已提交
2158 2159 2160
	else {
		len = get_term_name(state, &state->oterm,
				    kctl->id.name, sizeof(kctl->id.name), 0);
2161
		if (!len)
L
Linus Torvalds 已提交
2162 2163
			strlcpy(kctl->id.name, "USB", sizeof(kctl->id.name));

2164 2165 2166
		if (desc->bDescriptorSubtype == UAC2_CLOCK_SELECTOR)
			append_ctl_name(kctl, " Clock Source");
		else if ((state->oterm.type & 0xff00) == 0x0100)
T
Takashi Iwai 已提交
2167
			append_ctl_name(kctl, " Capture Source");
L
Linus Torvalds 已提交
2168
		else
T
Takashi Iwai 已提交
2169
			append_ctl_name(kctl, " Playback Source");
L
Linus Torvalds 已提交
2170 2171
	}

2172
	usb_audio_dbg(state->chip, "[%d] SU [%s] items = %d\n",
2173 2174
		    cval->head.id, kctl->id.name, desc->bNrInPins);
	return snd_usb_mixer_add_control(&cval->head, kctl);
L
Linus Torvalds 已提交
2175 2176 2177 2178 2179 2180
}

/*
 * parse an audio unit recursively
 */

2181
static int parse_audio_unit(struct mixer_build *state, int unitid)
L
Linus Torvalds 已提交
2182 2183 2184 2185 2186 2187 2188 2189
{
	unsigned char *p1;

	if (test_and_set_bit(unitid, state->unitbitmap))
		return 0; /* the unit already visited */

	p1 = find_audio_control_unit(state, unitid);
	if (!p1) {
2190
		usb_audio_err(state->chip, "unit %d not found!\n", unitid);
L
Linus Torvalds 已提交
2191 2192 2193 2194
		return -EINVAL;
	}

	switch (p1[2]) {
2195
	case UAC_INPUT_TERMINAL:
L
Linus Torvalds 已提交
2196
		return 0; /* NOP */
2197
	case UAC_MIXER_UNIT:
L
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2198
		return parse_audio_mixer_unit(state, unitid, p1);
2199 2200
	case UAC2_CLOCK_SOURCE:
		return parse_clock_source_unit(state, unitid, p1);
2201
	case UAC_SELECTOR_UNIT:
2202
	case UAC2_CLOCK_SELECTOR:
L
Linus Torvalds 已提交
2203
		return parse_audio_selector_unit(state, unitid, p1);
2204
	case UAC_FEATURE_UNIT:
L
Linus Torvalds 已提交
2205
		return parse_audio_feature_unit(state, unitid, p1);
2206
	case UAC1_PROCESSING_UNIT:
2207 2208 2209 2210 2211
	/*   UAC2_EFFECT_UNIT has the same value */
		if (state->mixer->protocol == UAC_VERSION_1)
			return parse_audio_processing_unit(state, unitid, p1);
		else
			return 0; /* FIXME - effect units not implemented yet */
2212
	case UAC1_EXTENSION_UNIT:
2213 2214 2215 2216 2217
	/*   UAC2_PROCESSING_UNIT_V2 has the same value */
		if (state->mixer->protocol == UAC_VERSION_1)
			return parse_audio_extension_unit(state, unitid, p1);
		else /* UAC_VERSION_2 */
			return parse_audio_processing_unit(state, unitid, p1);
2218 2219
	case UAC2_EXTENSION_UNIT_V2:
		return parse_audio_extension_unit(state, unitid, p1);
L
Linus Torvalds 已提交
2220
	default:
2221 2222
		usb_audio_err(state->chip,
			"unit %u: unexpected type 0x%02x\n", unitid, p1[2]);
L
Linus Torvalds 已提交
2223 2224 2225 2226
		return -EINVAL;
	}
}

2227 2228
static void snd_usb_mixer_free(struct usb_mixer_interface *mixer)
{
2229 2230 2231 2232 2233
	kfree(mixer->id_elems);
	if (mixer->urb) {
		kfree(mixer->urb->transfer_buffer);
		usb_free_urb(mixer->urb);
	}
2234
	usb_free_urb(mixer->rc_urb);
2235
	kfree(mixer->rc_setup_packet);
2236 2237 2238
	kfree(mixer);
}

2239
static int snd_usb_mixer_dev_free(struct snd_device *device)
2240 2241 2242 2243 2244 2245
{
	struct usb_mixer_interface *mixer = device->device_data;
	snd_usb_mixer_free(mixer);
	return 0;
}

L
Linus Torvalds 已提交
2246 2247 2248
/*
 * create mixer controls
 *
2249
 * walk through all UAC_OUTPUT_TERMINAL descriptors to search for mixers
L
Linus Torvalds 已提交
2250
 */
2251
static int snd_usb_mixer_controls(struct usb_mixer_interface *mixer)
L
Linus Torvalds 已提交
2252
{
2253
	struct mixer_build state;
L
Linus Torvalds 已提交
2254 2255
	int err;
	const struct usbmix_ctl_map *map;
2256
	void *p;
L
Linus Torvalds 已提交
2257 2258

	memset(&state, 0, sizeof(state));
2259 2260
	state.chip = mixer->chip;
	state.mixer = mixer;
2261 2262
	state.buffer = mixer->hostif->extra;
	state.buflen = mixer->hostif->extralen;
L
Linus Torvalds 已提交
2263 2264

	/* check the mapping table */
2265 2266
	for (map = usbmix_ctl_maps; map->id; map++) {
		if (map->id == state.chip->usb_id) {
L
Linus Torvalds 已提交
2267
			state.map = map->map;
2268
			state.selector_map = map->selector_map;
2269
			mixer->ignore_ctl_error = map->ignore_ctl_error;
L
Linus Torvalds 已提交
2270 2271 2272 2273
			break;
		}
	}

2274
	p = NULL;
2275 2276
	while ((p = snd_usb_find_csint_desc(mixer->hostif->extra,
					    mixer->hostif->extralen,
2277
					    p, UAC_OUTPUT_TERMINAL)) != NULL) {
2278
		if (mixer->protocol == UAC_VERSION_1) {
2279
			struct uac1_output_terminal_descriptor *desc = p;
2280 2281 2282

			if (desc->bLength < sizeof(*desc))
				continue; /* invalid descriptor? */
2283 2284
			/* mark terminal ID as visited */
			set_bit(desc->bTerminalID, state.unitbitmap);
2285 2286 2287 2288
			state.oterm.id = desc->bTerminalID;
			state.oterm.type = le16_to_cpu(desc->wTerminalType);
			state.oterm.name = desc->iTerminal;
			err = parse_audio_unit(&state, desc->bSourceID);
2289
			if (err < 0 && err != -EINVAL)
2290 2291 2292 2293 2294 2295
				return err;
		} else { /* UAC_VERSION_2 */
			struct uac2_output_terminal_descriptor *desc = p;

			if (desc->bLength < sizeof(*desc))
				continue; /* invalid descriptor? */
2296 2297
			/* mark terminal ID as visited */
			set_bit(desc->bTerminalID, state.unitbitmap);
2298 2299 2300 2301
			state.oterm.id = desc->bTerminalID;
			state.oterm.type = le16_to_cpu(desc->wTerminalType);
			state.oterm.name = desc->iTerminal;
			err = parse_audio_unit(&state, desc->bSourceID);
2302
			if (err < 0 && err != -EINVAL)
2303
				return err;
2304

2305 2306 2307 2308
			/*
			 * For UAC2, use the same approach to also add the
			 * clock selectors
			 */
2309
			err = parse_audio_unit(&state, desc->bCSourceID);
2310
			if (err < 0 && err != -EINVAL)
2311
				return err;
2312
		}
L
Linus Torvalds 已提交
2313
	}
2314

L
Linus Torvalds 已提交
2315 2316
	return 0;
}
2317

D
Daniel Mack 已提交
2318
void snd_usb_mixer_notify_id(struct usb_mixer_interface *mixer, int unitid)
2319
{
2320
	struct usb_mixer_elem_list *list;
2321

2322
	for (list = mixer->id_elems[unitid]; list; list = list->next_id_elem)
2323
		snd_ctl_notify(mixer->chip->card, SNDRV_CTL_EVENT_MASK_VALUE,
2324
			       &list->kctl->id);
2325 2326
}

2327
static void snd_usb_mixer_dump_cval(struct snd_info_buffer *buffer,
2328
				    struct usb_mixer_elem_list *list)
2329
{
2330
	struct usb_mixer_elem_info *cval = (struct usb_mixer_elem_info *)list;
2331 2332 2333
	static char *val_types[] = {"BOOLEAN", "INV_BOOLEAN",
				    "S8", "U8", "S16", "U16"};
	snd_iprintf(buffer, "    Info: id=%i, control=%i, cmask=0x%x, "
2334
			    "channels=%i, type=\"%s\"\n", cval->head.id,
2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345
			    cval->control, cval->cmask, cval->channels,
			    val_types[cval->val_type]);
	snd_iprintf(buffer, "    Volume: min=%i, max=%i, dBmin=%i, dBmax=%i\n",
			    cval->min, cval->max, cval->dBmin, cval->dBmax);
}

static void snd_usb_mixer_proc_read(struct snd_info_entry *entry,
				    struct snd_info_buffer *buffer)
{
	struct snd_usb_audio *chip = entry->private_data;
	struct usb_mixer_interface *mixer;
2346
	struct usb_mixer_elem_list *list;
2347 2348 2349 2350
	int unitid;

	list_for_each_entry(mixer, &chip->mixer_list, list) {
		snd_iprintf(buffer,
2351
			"USB Mixer: usb_id=0x%08x, ctrlif=%i, ctlerr=%i\n",
2352
				chip->usb_id, snd_usb_ctrl_intf(chip),
2353
				mixer->ignore_ctl_error);
2354 2355
		snd_iprintf(buffer, "Card: %s\n", chip->card->longname);
		for (unitid = 0; unitid < MAX_ID_ELEMS; unitid++) {
2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366
			for (list = mixer->id_elems[unitid]; list;
			     list = list->next_id_elem) {
				snd_iprintf(buffer, "  Unit: %i\n", list->id);
				if (list->kctl)
					snd_iprintf(buffer,
						    "    Control: name=\"%s\", index=%i\n",
						    list->kctl->id.name,
						    list->kctl->id.index);
				if (list->dump)
					list->dump(buffer, list);
			}
2367 2368 2369 2370
		}
	}
}

2371 2372 2373
static void snd_usb_mixer_interrupt_v2(struct usb_mixer_interface *mixer,
				       int attribute, int value, int index)
{
2374
	struct usb_mixer_elem_list *list;
2375 2376 2377
	__u8 unitid = (index >> 8) & 0xff;
	__u8 control = (value >> 8) & 0xff;
	__u8 channel = value & 0xff;
2378
	unsigned int count = 0;
2379 2380

	if (channel >= MAX_CHANNELS) {
2381 2382 2383
		usb_audio_dbg(mixer->chip,
			"%s(): bogus channel number %d\n",
			__func__, channel);
2384 2385 2386
		return;
	}

2387 2388 2389 2390 2391 2392
	for (list = mixer->id_elems[unitid]; list; list = list->next_id_elem)
		count++;

	if (count == 0)
		return;

2393 2394 2395 2396 2397 2398 2399
	for (list = mixer->id_elems[unitid]; list; list = list->next_id_elem) {
		struct usb_mixer_elem_info *info;

		if (!list->kctl)
			continue;

		info = (struct usb_mixer_elem_info *)list;
2400
		if (count > 1 && info->control != control)
2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411
			continue;

		switch (attribute) {
		case UAC2_CS_CUR:
			/* invalidate cache, so the value is read from the device */
			if (channel)
				info->cached &= ~(1 << channel);
			else /* master channel */
				info->cached = 0;

			snd_ctl_notify(mixer->chip->card, SNDRV_CTL_EVENT_MASK_VALUE,
2412
				       &info->head.kctl->id);
2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423
			break;

		case UAC2_CS_RANGE:
			/* TODO */
			break;

		case UAC2_CS_MEM:
			/* TODO */
			break;

		default:
2424 2425 2426
			usb_audio_dbg(mixer->chip,
				"unknown attribute %d in interrupt\n",
				attribute);
2427 2428 2429 2430 2431 2432
			break;
		} /* switch */
	}
}

static void snd_usb_mixer_interrupt(struct urb *urb)
2433 2434
{
	struct usb_mixer_interface *mixer = urb->context;
2435
	int len = urb->actual_length;
2436
	int ustatus = urb->status;
2437

2438
	if (ustatus != 0)
2439
		goto requeue;
2440

2441 2442
	if (mixer->protocol == UAC_VERSION_1) {
		struct uac1_status_word *status;
2443

2444 2445 2446
		for (status = urb->transfer_buffer;
		     len >= sizeof(*status);
		     len -= sizeof(*status), status++) {
2447
			dev_dbg(&urb->dev->dev, "status interrupt: %02x %02x\n",
2448 2449 2450
						status->bStatusType,
						status->bOriginator);

2451
			/* ignore any notifications not from the control interface */
2452 2453
			if ((status->bStatusType & UAC1_STATUS_TYPE_ORIG_MASK) !=
				UAC1_STATUS_TYPE_ORIG_AUDIO_CONTROL_IF)
2454
				continue;
2455 2456 2457

			if (status->bStatusType & UAC1_STATUS_TYPE_MEM_CHANGED)
				snd_usb_mixer_rc_memory_change(mixer, status->bOriginator);
2458
			else
2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474
				snd_usb_mixer_notify_id(mixer, status->bOriginator);
		}
	} else { /* UAC_VERSION_2 */
		struct uac2_interrupt_data_msg *msg;

		for (msg = urb->transfer_buffer;
		     len >= sizeof(*msg);
		     len -= sizeof(*msg), msg++) {
			/* drop vendor specific and endpoint requests */
			if ((msg->bInfo & UAC2_INTERRUPT_DATA_MSG_VENDOR) ||
			    (msg->bInfo & UAC2_INTERRUPT_DATA_MSG_EP))
				continue;

			snd_usb_mixer_interrupt_v2(mixer, msg->bAttribute,
						   le16_to_cpu(msg->wValue),
						   le16_to_cpu(msg->wIndex));
2475 2476
		}
	}
2477 2478

requeue:
2479 2480 2481
	if (ustatus != -ENOENT &&
	    ustatus != -ECONNRESET &&
	    ustatus != -ESHUTDOWN) {
2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495
		urb->dev = mixer->chip->dev;
		usb_submit_urb(urb, GFP_ATOMIC);
	}
}

/* create the handler for the optional status interrupt endpoint */
static int snd_usb_mixer_status_create(struct usb_mixer_interface *mixer)
{
	struct usb_endpoint_descriptor *ep;
	void *transfer_buffer;
	int buffer_length;
	unsigned int epnum;

	/* we need one interrupt input endpoint */
2496
	if (get_iface_desc(mixer->hostif)->bNumEndpoints < 1)
2497
		return 0;
2498
	ep = get_endpoint(mixer->hostif, 0);
2499
	if (!usb_endpoint_dir_in(ep) || !usb_endpoint_xfer_int(ep))
2500 2501
		return 0;

2502
	epnum = usb_endpoint_num(ep);
2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514
	buffer_length = le16_to_cpu(ep->wMaxPacketSize);
	transfer_buffer = kmalloc(buffer_length, GFP_KERNEL);
	if (!transfer_buffer)
		return -ENOMEM;
	mixer->urb = usb_alloc_urb(0, GFP_KERNEL);
	if (!mixer->urb) {
		kfree(transfer_buffer);
		return -ENOMEM;
	}
	usb_fill_int_urb(mixer->urb, mixer->chip->dev,
			 usb_rcvintpipe(mixer->chip->dev, epnum),
			 transfer_buffer, buffer_length,
2515
			 snd_usb_mixer_interrupt, mixer, ep->bInterval);
2516 2517 2518 2519
	usb_submit_urb(mixer->urb, GFP_KERNEL);
	return 0;
}

2520 2521
int snd_usb_create_mixer(struct snd_usb_audio *chip, int ctrlif,
			 int ignore_error)
2522
{
2523
	static struct snd_device_ops dev_ops = {
2524 2525 2526
		.dev_free = snd_usb_mixer_dev_free
	};
	struct usb_mixer_interface *mixer;
2527
	struct snd_info_entry *entry;
2528
	int err;
2529 2530 2531

	strcpy(chip->card->mixername, "USB Mixer");

2532
	mixer = kzalloc(sizeof(*mixer), GFP_KERNEL);
2533 2534 2535
	if (!mixer)
		return -ENOMEM;
	mixer->chip = chip;
2536
	mixer->ignore_ctl_error = ignore_error;
2537 2538
	mixer->id_elems = kcalloc(MAX_ID_ELEMS, sizeof(*mixer->id_elems),
				  GFP_KERNEL);
2539 2540 2541 2542
	if (!mixer->id_elems) {
		kfree(mixer);
		return -ENOMEM;
	}
2543

2544 2545
	mixer->hostif = &usb_ifnum_to_if(chip->dev, ctrlif)->altsetting[0];
	switch (get_iface_desc(mixer->hostif)->bInterfaceProtocol) {
2546 2547 2548 2549 2550 2551 2552 2553
	case UAC_VERSION_1:
	default:
		mixer->protocol = UAC_VERSION_1;
		break;
	case UAC_VERSION_2:
		mixer->protocol = UAC_VERSION_2;
		break;
	}
2554

2555
	if ((err = snd_usb_mixer_controls(mixer)) < 0 ||
2556 2557
	    (err = snd_usb_mixer_status_create(mixer)) < 0)
		goto _error;
2558

D
Daniel Mack 已提交
2559
	snd_usb_mixer_apply_create_quirk(mixer);
2560

2561
	err = snd_device_new(chip->card, SNDRV_DEV_CODEC, mixer, &dev_ops);
2562 2563
	if (err < 0)
		goto _error;
2564 2565 2566 2567 2568

	if (list_empty(&chip->mixer_list) &&
	    !snd_card_proc_new(chip->card, "usbmixer", &entry))
		snd_info_set_text_ops(entry, chip, snd_usb_mixer_proc_read);

2569 2570
	list_add(&mixer->list, &chip->mixer_list);
	return 0;
2571 2572 2573 2574

_error:
	snd_usb_mixer_free(mixer);
	return err;
2575 2576
}

2577
void snd_usb_mixer_disconnect(struct usb_mixer_interface *mixer)
2578
{
2579 2580
	usb_kill_urb(mixer->urb);
	usb_kill_urb(mixer->rc_urb);
2581
}
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#ifdef CONFIG_PM
/* stop any bus activity of a mixer */
static void snd_usb_mixer_inactivate(struct usb_mixer_interface *mixer)
{
	usb_kill_urb(mixer->urb);
	usb_kill_urb(mixer->rc_urb);
}

static int snd_usb_mixer_activate(struct usb_mixer_interface *mixer)
{
	int err;

	if (mixer->urb) {
		err = usb_submit_urb(mixer->urb, GFP_NOIO);
		if (err < 0)
			return err;
	}

	return 0;
}

int snd_usb_mixer_suspend(struct usb_mixer_interface *mixer)
{
	snd_usb_mixer_inactivate(mixer);
	return 0;
}

2610
static int restore_mixer_value(struct usb_mixer_elem_list *list)
2611
{
2612
	struct usb_mixer_elem_info *cval = (struct usb_mixer_elem_info *)list;
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	int c, err, idx;

	if (cval->cmask) {
		idx = 0;
		for (c = 0; c < MAX_CHANNELS; c++) {
			if (!(cval->cmask & (1 << c)))
				continue;
2620
			if (cval->cached & (1 << (c + 1))) {
2621
				err = snd_usb_set_cur_mix_value(cval, c + 1, idx,
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							cval->cache_val[idx]);
				if (err < 0)
					return err;
			}
			idx++;
		}
	} else {
		/* master */
		if (cval->cached) {
2631
			err = snd_usb_set_cur_mix_value(cval, 0, 0, *cval->cache_val);
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			if (err < 0)
				return err;
		}
	}

	return 0;
}

int snd_usb_mixer_resume(struct usb_mixer_interface *mixer, bool reset_resume)
{
2642
	struct usb_mixer_elem_list *list;
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	int id, err;

	if (reset_resume) {
		/* restore cached mixer values */
		for (id = 0; id < MAX_ID_ELEMS; id++) {
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			for (list = mixer->id_elems[id]; list;
			     list = list->next_id_elem) {
				if (list->resume) {
					err = list->resume(list);
					if (err < 0)
						return err;
				}
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			}
		}
	}

	return snd_usb_mixer_activate(mixer);
}
#endif
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void snd_usb_mixer_elem_init_std(struct usb_mixer_elem_list *list,
				 struct usb_mixer_interface *mixer,
				 int unitid)
{
	list->mixer = mixer;
	list->id = unitid;
	list->dump = snd_usb_mixer_dump_cval;
#ifdef CONFIG_PM
	list->resume = restore_mixer_value;
#endif
}