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367 lines
17 KiB
C++
367 lines
17 KiB
C++
#ifndef foochannelmaphfoo
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#define foochannelmaphfoo
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/***
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This file is part of PulseAudio.
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Copyright 2005-2006 Lennart Poettering
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Copyright 2006 Pierre Ossman <ossman@cendio.se> for Cendio AB
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PulseAudio is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published
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by the Free Software Foundation; either version 2.1 of the License,
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or (at your option) any later version.
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PulseAudio is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with PulseAudio; if not, see <http://www.gnu.org/licenses/>.
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***/
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#include <pulse/sample.h>
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#include <pulse/cdecl.h>
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#include <pulse/gccmacro.h>
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#include <pulse/version.h>
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/** \page channelmap Channel Maps
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*
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* \section overv_sec Overview
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*
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* Channel maps provide a way to associate channels in a stream with a
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* specific speaker position. This relieves applications of having to
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* make sure their channel order is identical to the final output.
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*
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* \section init_sec Initialisation
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*
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* A channel map consists of an array of \ref pa_channel_position values,
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* one for each channel. This array is stored together with a channel count
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* in a pa_channel_map structure.
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*
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* Before filling the structure, the application must initialise it using
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* pa_channel_map_init(). There are also a number of convenience functions
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* for standard channel mappings:
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*
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* \li pa_channel_map_init_mono() - Create a channel map with only mono audio.
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* \li pa_channel_map_init_stereo() - Create a standard stereo mapping.
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* \li pa_channel_map_init_auto() - Create a standard channel map for a specific number of channels
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* \li pa_channel_map_init_extend() - Similar to
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* pa_channel_map_init_auto() but synthesize a channel map if no
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* predefined one is known for the specified number of channels.
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*
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* \section conv_sec Convenience Functions
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*
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* The library contains a number of convenience functions for dealing with
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* channel maps:
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*
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* \li pa_channel_map_valid() - Tests if a channel map is valid.
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* \li pa_channel_map_equal() - Tests if two channel maps are identical.
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* \li pa_channel_map_snprint() - Creates a textual description of a channel
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* map.
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*/
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/** \file
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* Constants and routines for channel mapping handling
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*
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* See also \subpage channelmap
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*/
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PA_C_DECL_BEGIN
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/** A list of channel labels */
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typedef enum pa_channel_position {
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PA_CHANNEL_POSITION_INVALID = -1,
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PA_CHANNEL_POSITION_MONO = 0,
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PA_CHANNEL_POSITION_FRONT_LEFT, /**< Apple, Dolby call this 'Left' */
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PA_CHANNEL_POSITION_FRONT_RIGHT, /**< Apple, Dolby call this 'Right' */
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PA_CHANNEL_POSITION_FRONT_CENTER, /**< Apple, Dolby call this 'Center' */
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/** \cond fulldocs */
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PA_CHANNEL_POSITION_LEFT = PA_CHANNEL_POSITION_FRONT_LEFT,
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PA_CHANNEL_POSITION_RIGHT = PA_CHANNEL_POSITION_FRONT_RIGHT,
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PA_CHANNEL_POSITION_CENTER = PA_CHANNEL_POSITION_FRONT_CENTER,
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/** \endcond */
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PA_CHANNEL_POSITION_REAR_CENTER, /**< Microsoft calls this 'Back Center', Apple calls this 'Center Surround', Dolby calls this 'Surround Rear Center' */
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PA_CHANNEL_POSITION_REAR_LEFT, /**< Microsoft calls this 'Back Left', Apple calls this 'Left Surround' (!), Dolby calls this 'Surround Rear Left' */
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PA_CHANNEL_POSITION_REAR_RIGHT, /**< Microsoft calls this 'Back Right', Apple calls this 'Right Surround' (!), Dolby calls this 'Surround Rear Right' */
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PA_CHANNEL_POSITION_LFE, /**< Microsoft calls this 'Low Frequency', Apple calls this 'LFEScreen' */
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/** \cond fulldocs */
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PA_CHANNEL_POSITION_SUBWOOFER = PA_CHANNEL_POSITION_LFE,
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/** \endcond */
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PA_CHANNEL_POSITION_FRONT_LEFT_OF_CENTER, /**< Apple, Dolby call this 'Left Center' */
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PA_CHANNEL_POSITION_FRONT_RIGHT_OF_CENTER, /**< Apple, Dolby call this 'Right Center */
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PA_CHANNEL_POSITION_SIDE_LEFT, /**< Apple calls this 'Left Surround Direct', Dolby calls this 'Surround Left' (!) */
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PA_CHANNEL_POSITION_SIDE_RIGHT, /**< Apple calls this 'Right Surround Direct', Dolby calls this 'Surround Right' (!) */
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PA_CHANNEL_POSITION_AUX0,
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PA_CHANNEL_POSITION_AUX1,
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PA_CHANNEL_POSITION_AUX2,
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PA_CHANNEL_POSITION_AUX3,
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PA_CHANNEL_POSITION_AUX4,
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PA_CHANNEL_POSITION_AUX5,
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PA_CHANNEL_POSITION_AUX6,
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PA_CHANNEL_POSITION_AUX7,
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PA_CHANNEL_POSITION_AUX8,
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PA_CHANNEL_POSITION_AUX9,
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PA_CHANNEL_POSITION_AUX10,
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PA_CHANNEL_POSITION_AUX11,
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PA_CHANNEL_POSITION_AUX12,
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PA_CHANNEL_POSITION_AUX13,
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PA_CHANNEL_POSITION_AUX14,
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PA_CHANNEL_POSITION_AUX15,
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PA_CHANNEL_POSITION_AUX16,
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PA_CHANNEL_POSITION_AUX17,
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PA_CHANNEL_POSITION_AUX18,
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PA_CHANNEL_POSITION_AUX19,
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PA_CHANNEL_POSITION_AUX20,
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PA_CHANNEL_POSITION_AUX21,
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PA_CHANNEL_POSITION_AUX22,
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PA_CHANNEL_POSITION_AUX23,
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PA_CHANNEL_POSITION_AUX24,
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PA_CHANNEL_POSITION_AUX25,
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PA_CHANNEL_POSITION_AUX26,
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PA_CHANNEL_POSITION_AUX27,
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PA_CHANNEL_POSITION_AUX28,
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PA_CHANNEL_POSITION_AUX29,
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PA_CHANNEL_POSITION_AUX30,
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PA_CHANNEL_POSITION_AUX31,
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PA_CHANNEL_POSITION_TOP_CENTER, /**< Apple calls this 'Top Center Surround' */
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PA_CHANNEL_POSITION_TOP_FRONT_LEFT, /**< Apple calls this 'Vertical Height Left' */
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PA_CHANNEL_POSITION_TOP_FRONT_RIGHT, /**< Apple calls this 'Vertical Height Right' */
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PA_CHANNEL_POSITION_TOP_FRONT_CENTER, /**< Apple calls this 'Vertical Height Center' */
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PA_CHANNEL_POSITION_TOP_REAR_LEFT, /**< Microsoft and Apple call this 'Top Back Left' */
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PA_CHANNEL_POSITION_TOP_REAR_RIGHT, /**< Microsoft and Apple call this 'Top Back Right' */
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PA_CHANNEL_POSITION_TOP_REAR_CENTER, /**< Microsoft and Apple call this 'Top Back Center' */
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PA_CHANNEL_POSITION_MAX
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} pa_channel_position_t;
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/** \cond fulldocs */
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#define PA_CHANNEL_POSITION_INVALID PA_CHANNEL_POSITION_INVALID
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#define PA_CHANNEL_POSITION_MONO PA_CHANNEL_POSITION_MONO
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#define PA_CHANNEL_POSITION_LEFT PA_CHANNEL_POSITION_LEFT
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#define PA_CHANNEL_POSITION_RIGHT PA_CHANNEL_POSITION_RIGHT
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#define PA_CHANNEL_POSITION_CENTER PA_CHANNEL_POSITION_CENTER
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#define PA_CHANNEL_POSITION_FRONT_LEFT PA_CHANNEL_POSITION_FRONT_LEFT
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#define PA_CHANNEL_POSITION_FRONT_RIGHT PA_CHANNEL_POSITION_FRONT_RIGHT
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#define PA_CHANNEL_POSITION_FRONT_CENTER PA_CHANNEL_POSITION_FRONT_CENTER
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#define PA_CHANNEL_POSITION_REAR_CENTER PA_CHANNEL_POSITION_REAR_CENTER
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#define PA_CHANNEL_POSITION_REAR_LEFT PA_CHANNEL_POSITION_REAR_LEFT
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#define PA_CHANNEL_POSITION_REAR_RIGHT PA_CHANNEL_POSITION_REAR_RIGHT
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#define PA_CHANNEL_POSITION_LFE PA_CHANNEL_POSITION_LFE
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#define PA_CHANNEL_POSITION_SUBWOOFER PA_CHANNEL_POSITION_SUBWOOFER
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#define PA_CHANNEL_POSITION_FRONT_LEFT_OF_CENTER PA_CHANNEL_POSITION_FRONT_LEFT_OF_CENTER
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#define PA_CHANNEL_POSITION_FRONT_RIGHT_OF_CENTER PA_CHANNEL_POSITION_FRONT_RIGHT_OF_CENTER
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#define PA_CHANNEL_POSITION_SIDE_LEFT PA_CHANNEL_POSITION_SIDE_LEFT
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#define PA_CHANNEL_POSITION_SIDE_RIGHT PA_CHANNEL_POSITION_SIDE_RIGHT
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#define PA_CHANNEL_POSITION_AUX0 PA_CHANNEL_POSITION_AUX0
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#define PA_CHANNEL_POSITION_AUX1 PA_CHANNEL_POSITION_AUX1
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#define PA_CHANNEL_POSITION_AUX2 PA_CHANNEL_POSITION_AUX2
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#define PA_CHANNEL_POSITION_AUX3 PA_CHANNEL_POSITION_AUX3
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#define PA_CHANNEL_POSITION_AUX4 PA_CHANNEL_POSITION_AUX4
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#define PA_CHANNEL_POSITION_AUX5 PA_CHANNEL_POSITION_AUX5
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#define PA_CHANNEL_POSITION_AUX6 PA_CHANNEL_POSITION_AUX6
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#define PA_CHANNEL_POSITION_AUX7 PA_CHANNEL_POSITION_AUX7
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#define PA_CHANNEL_POSITION_AUX8 PA_CHANNEL_POSITION_AUX8
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#define PA_CHANNEL_POSITION_AUX9 PA_CHANNEL_POSITION_AUX9
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#define PA_CHANNEL_POSITION_AUX10 PA_CHANNEL_POSITION_AUX10
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#define PA_CHANNEL_POSITION_AUX11 PA_CHANNEL_POSITION_AUX11
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#define PA_CHANNEL_POSITION_AUX12 PA_CHANNEL_POSITION_AUX12
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#define PA_CHANNEL_POSITION_AUX13 PA_CHANNEL_POSITION_AUX13
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#define PA_CHANNEL_POSITION_AUX14 PA_CHANNEL_POSITION_AUX14
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#define PA_CHANNEL_POSITION_AUX15 PA_CHANNEL_POSITION_AUX15
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#define PA_CHANNEL_POSITION_AUX16 PA_CHANNEL_POSITION_AUX16
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#define PA_CHANNEL_POSITION_AUX17 PA_CHANNEL_POSITION_AUX17
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#define PA_CHANNEL_POSITION_AUX18 PA_CHANNEL_POSITION_AUX18
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#define PA_CHANNEL_POSITION_AUX19 PA_CHANNEL_POSITION_AUX19
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#define PA_CHANNEL_POSITION_AUX20 PA_CHANNEL_POSITION_AUX20
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#define PA_CHANNEL_POSITION_AUX21 PA_CHANNEL_POSITION_AUX21
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#define PA_CHANNEL_POSITION_AUX22 PA_CHANNEL_POSITION_AUX22
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#define PA_CHANNEL_POSITION_AUX23 PA_CHANNEL_POSITION_AUX23
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#define PA_CHANNEL_POSITION_AUX24 PA_CHANNEL_POSITION_AUX24
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#define PA_CHANNEL_POSITION_AUX25 PA_CHANNEL_POSITION_AUX25
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#define PA_CHANNEL_POSITION_AUX26 PA_CHANNEL_POSITION_AUX26
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#define PA_CHANNEL_POSITION_AUX27 PA_CHANNEL_POSITION_AUX27
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#define PA_CHANNEL_POSITION_AUX28 PA_CHANNEL_POSITION_AUX28
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#define PA_CHANNEL_POSITION_AUX29 PA_CHANNEL_POSITION_AUX29
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#define PA_CHANNEL_POSITION_AUX30 PA_CHANNEL_POSITION_AUX30
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#define PA_CHANNEL_POSITION_AUX31 PA_CHANNEL_POSITION_AUX31
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#define PA_CHANNEL_POSITION_TOP_CENTER PA_CHANNEL_POSITION_TOP_CENTER
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#define PA_CHANNEL_POSITION_TOP_FRONT_LEFT PA_CHANNEL_POSITION_TOP_FRONT_LEFT
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#define PA_CHANNEL_POSITION_TOP_FRONT_RIGHT PA_CHANNEL_POSITION_TOP_FRONT_RIGHT
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#define PA_CHANNEL_POSITION_TOP_FRONT_CENTER PA_CHANNEL_POSITION_TOP_FRONT_CENTER
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#define PA_CHANNEL_POSITION_TOP_REAR_LEFT PA_CHANNEL_POSITION_TOP_REAR_LEFT
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#define PA_CHANNEL_POSITION_TOP_REAR_RIGHT PA_CHANNEL_POSITION_TOP_REAR_RIGHT
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#define PA_CHANNEL_POSITION_TOP_REAR_CENTER PA_CHANNEL_POSITION_TOP_REAR_CENTER
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#define PA_CHANNEL_POSITION_MAX PA_CHANNEL_POSITION_MAX
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/** \endcond */
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/** A mask of channel positions. \since 0.9.16 */
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typedef uint64_t pa_channel_position_mask_t;
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/** Makes a bit mask from a channel position. \since 0.9.16 */
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#define PA_CHANNEL_POSITION_MASK(f) ((pa_channel_position_mask_t) (1ULL << (f)))
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/** A list of channel mapping definitions for pa_channel_map_init_auto() */
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typedef enum pa_channel_map_def {
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PA_CHANNEL_MAP_AIFF,
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/**< The mapping from RFC3551, which is based on AIFF-C */
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/** \cond fulldocs */
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PA_CHANNEL_MAP_ALSA,
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/**< The default mapping used by ALSA. This mapping is probably
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* not too useful since ALSA's default channel mapping depends on
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* the device string used. */
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/** \endcond */
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PA_CHANNEL_MAP_AUX,
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/**< Only aux channels */
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PA_CHANNEL_MAP_WAVEEX,
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/**< Microsoft's WAVEFORMATEXTENSIBLE mapping. This mapping works
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* as if all LSBs of dwChannelMask are set. */
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/** \cond fulldocs */
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PA_CHANNEL_MAP_OSS,
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/**< The default channel mapping used by OSS as defined in the OSS
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* 4.0 API specs. This mapping is probably not too useful since
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* the OSS API has changed in this respect and no longer knows a
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* default channel mapping based on the number of channels. */
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/** \endcond */
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/**< Upper limit of valid channel mapping definitions */
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PA_CHANNEL_MAP_DEF_MAX,
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PA_CHANNEL_MAP_DEFAULT = PA_CHANNEL_MAP_AIFF
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/**< The default channel map */
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} pa_channel_map_def_t;
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/** \cond fulldocs */
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#define PA_CHANNEL_MAP_AIFF PA_CHANNEL_MAP_AIFF
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#define PA_CHANNEL_MAP_ALSA PA_CHANNEL_MAP_ALSA
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#define PA_CHANNEL_MAP_AUX PA_CHANNEL_MAP_AUX
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#define PA_CHANNEL_MAP_WAVEEX PA_CHANNEL_MAP_WAVEEX
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#define PA_CHANNEL_MAP_OSS PA_CHANNEL_MAP_OSS
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#define PA_CHANNEL_MAP_DEF_MAX PA_CHANNEL_MAP_DEF_MAX
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#define PA_CHANNEL_MAP_DEFAULT PA_CHANNEL_MAP_DEFAULT
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/** \endcond */
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/** A channel map which can be used to attach labels to specific
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* channels of a stream. These values are relevant for conversion and
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* mixing of streams */
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typedef struct pa_channel_map {
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uint8_t channels;
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/**< Number of channels */
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pa_channel_position_t map[PA_CHANNELS_MAX];
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/**< Channel labels */
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} pa_channel_map;
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/** Initialize the specified channel map and return a pointer to
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* it. The channel map will have a defined state but
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* pa_channel_map_valid() will fail for it. */
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pa_channel_map* pa_channel_map_init(pa_channel_map *m);
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/** Initialize the specified channel map for monaural audio and return a pointer to it */
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pa_channel_map* pa_channel_map_init_mono(pa_channel_map *m);
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/** Initialize the specified channel map for stereophonic audio and return a pointer to it */
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pa_channel_map* pa_channel_map_init_stereo(pa_channel_map *m);
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/** Initialize the specified channel map for the specified number of
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* channels using default labels and return a pointer to it. This call
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* will fail (return NULL) if there is no default channel map known for this
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* specific number of channels and mapping. */
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pa_channel_map* pa_channel_map_init_auto(pa_channel_map *m, unsigned channels, pa_channel_map_def_t def);
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/** Similar to pa_channel_map_init_auto() but instead of failing if no
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* default mapping is known with the specified parameters it will
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* synthesize a mapping based on a known mapping with fewer channels
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* and fill up the rest with AUX0...AUX31 channels \since 0.9.11 */
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pa_channel_map* pa_channel_map_init_extend(pa_channel_map *m, unsigned channels, pa_channel_map_def_t def);
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/** Return a text label for the specified channel position */
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const char* pa_channel_position_to_string(pa_channel_position_t pos) PA_GCC_PURE;
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/** The inverse of pa_channel_position_to_string(). \since 0.9.16 */
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pa_channel_position_t pa_channel_position_from_string(const char *s) PA_GCC_PURE;
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/** Return a human readable text label for the specified channel position. \since 0.9.7 */
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const char* pa_channel_position_to_pretty_string(pa_channel_position_t pos);
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/** The maximum length of strings returned by
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* pa_channel_map_snprint(). Please note that this value can change
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* with any release without warning and without being considered API
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* or ABI breakage. You should not use this definition anywhere where
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* it might become part of an ABI. */
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#define PA_CHANNEL_MAP_SNPRINT_MAX 336
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/** Make a human readable string from the specified channel map */
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char* pa_channel_map_snprint(char *s, size_t l, const pa_channel_map *map);
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/** Parse a channel position list or well-known mapping name into a
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* channel map structure. This turns the output of
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* pa_channel_map_snprint() and pa_channel_map_to_name() back into a
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* pa_channel_map */
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pa_channel_map *pa_channel_map_parse(pa_channel_map *map, const char *s);
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/** Compare two channel maps. Return 1 if both match. */
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int pa_channel_map_equal(const pa_channel_map *a, const pa_channel_map *b) PA_GCC_PURE;
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/** Return non-zero if the specified channel map is considered valid */
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int pa_channel_map_valid(const pa_channel_map *map) PA_GCC_PURE;
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/** Return non-zero if the specified channel map is compatible with
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* the specified sample spec. \since 0.9.12 */
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int pa_channel_map_compatible(const pa_channel_map *map, const pa_sample_spec *ss) PA_GCC_PURE;
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/** Returns non-zero if every channel defined in b is also defined in a. \since 0.9.15 */
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int pa_channel_map_superset(const pa_channel_map *a, const pa_channel_map *b) PA_GCC_PURE;
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/** Returns non-zero if it makes sense to apply a volume 'balance'
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* with this mapping, i.e.\ if there are left/right channels
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* available. \since 0.9.15 */
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int pa_channel_map_can_balance(const pa_channel_map *map) PA_GCC_PURE;
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/** Returns non-zero if it makes sense to apply a volume 'fade'
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* (i.e.\ 'balance' between front and rear) with this mapping, i.e.\ if
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* there are front/rear channels available. \since 0.9.15 */
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int pa_channel_map_can_fade(const pa_channel_map *map) PA_GCC_PURE;
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/** Returns non-zero if it makes sense to apply a volume 'lfe balance'
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* (i.e.\ 'balance' between LFE and non-LFE channels) with this mapping,
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* i.e.\ if there are LFE and non-LFE channels available. \since 8.0 */
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int pa_channel_map_can_lfe_balance(const pa_channel_map *map) PA_GCC_PURE;
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/** Tries to find a well-known channel mapping name for this channel
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* mapping, i.e.\ "stereo", "surround-71" and so on. If the channel
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* mapping is unknown NULL will be returned. This name can be parsed
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* with pa_channel_map_parse() \since 0.9.15 */
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const char* pa_channel_map_to_name(const pa_channel_map *map) PA_GCC_PURE;
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/** Tries to find a human readable text label for this channel
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mapping, i.e.\ "Stereo", "Surround 7.1" and so on. If the channel
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mapping is unknown NULL will be returned. \since 0.9.15 */
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const char* pa_channel_map_to_pretty_name(const pa_channel_map *map) PA_GCC_PURE;
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/** Returns non-zero if the specified channel position is available at
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* least once in the channel map. \since 0.9.16 */
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int pa_channel_map_has_position(const pa_channel_map *map, pa_channel_position_t p) PA_GCC_PURE;
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/** Generates a bit mask from a channel map. \since 0.9.16 */
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pa_channel_position_mask_t pa_channel_map_mask(const pa_channel_map *map) PA_GCC_PURE;
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PA_C_DECL_END
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#endif
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