mirror of
https://github.com/videolan/vlc.git
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fbf4c8060d
* libvlc sources and plugins now define __LIBVLC__ and headers exported to plugins (ie, include/vlc_*.h) check for this * libvlc sources use the value of the "libvlc" component in vlc-config instead of vlc * Apply flags directly to "libvlc" in configure.ac - might temporarily break win32 :)
402 lines
15 KiB
C
402 lines
15 KiB
C
/*****************************************************************************
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* audio_output.h : audio output interface
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*****************************************************************************
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* Copyright (C) 2002-2005 the VideoLAN team
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* $Id$
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*
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* Authors: Christophe Massiot <massiot@via.ecp.fr>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston MA 02110-1301, USA.
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*****************************************************************************/
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#if !defined( __LIBVLC__ )
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#error You are not libvlc or one of its plugins. You cannot include this file
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#endif
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#ifndef _VLC_AOUT_H
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#define _VLC_AOUT_H 1
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# ifdef __cplusplus
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extern "C" {
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# endif
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#include "vlc_es.h"
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#define AOUT_FMTS_IDENTICAL( p_first, p_second ) ( \
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((p_first)->i_format == (p_second)->i_format) \
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&& ((p_first)->i_rate == (p_second)->i_rate) \
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&& ((p_first)->i_physical_channels == (p_second)->i_physical_channels)\
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&& ((p_first)->i_original_channels == (p_second)->i_original_channels) )
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/* Check if i_rate == i_rate and i_channels == i_channels */
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#define AOUT_FMTS_SIMILAR( p_first, p_second ) ( \
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((p_first)->i_rate == (p_second)->i_rate) \
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&& ((p_first)->i_physical_channels == (p_second)->i_physical_channels)\
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&& ((p_first)->i_original_channels == (p_second)->i_original_channels) )
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#ifdef WORDS_BIGENDIAN
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# define AOUT_FMT_S16_NE VLC_FOURCC('s','1','6','b')
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# define AOUT_FMT_U16_NE VLC_FOURCC('u','1','6','b')
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# define AOUT_FMT_S24_NE VLC_FOURCC('s','2','4','b')
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# define AOUT_FMT_SPDIF_NE VLC_FOURCC('s','p','d','b')
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#else
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# define AOUT_FMT_S16_NE VLC_FOURCC('s','1','6','l')
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# define AOUT_FMT_U16_NE VLC_FOURCC('u','1','6','l')
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# define AOUT_FMT_S24_NE VLC_FOURCC('s','2','4','l')
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# define AOUT_FMT_SPDIF_NE VLC_FOURCC('s','p','d','i')
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#endif
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#define AOUT_FMT_NON_LINEAR( p_format ) \
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( ((p_format)->i_format == VLC_FOURCC('s','p','d','i')) \
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|| ((p_format)->i_format == VLC_FOURCC('s','p','d','b')) \
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|| ((p_format)->i_format == VLC_FOURCC('a','5','2',' ')) \
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|| ((p_format)->i_format == VLC_FOURCC('d','t','s',' ')) )
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/* This is heavily borrowed from libmad, by Robert Leslie <rob@mars.org> */
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/*
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* Fixed-point format: 0xABBBBBBB
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* A == whole part (sign + 3 bits)
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* B == fractional part (28 bits)
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*
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* Values are signed two's complement, so the effective range is:
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* 0x80000000 to 0x7fffffff
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* -8.0 to +7.9999999962747097015380859375
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*
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* The smallest representable value is:
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* 0x00000001 == 0.0000000037252902984619140625 (i.e. about 3.725e-9)
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*
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* 28 bits of fractional accuracy represent about
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* 8.6 digits of decimal accuracy.
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*
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* Fixed-point numbers can be added or subtracted as normal
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* integers, but multiplication requires shifting the 64-bit result
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* from 56 fractional bits back to 28 (and rounding.)
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*/
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typedef int32_t vlc_fixed_t;
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#define FIXED32_FRACBITS 28
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#define FIXED32_MIN ((vlc_fixed_t) -0x80000000L)
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#define FIXED32_MAX ((vlc_fixed_t) +0x7fffffffL)
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#define FIXED32_ONE ((vlc_fixed_t) 0x10000000)
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/*
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* Channels descriptions
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*/
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/* Values available for physical and original channels */
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#define AOUT_CHAN_CENTER 0x1
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#define AOUT_CHAN_LEFT 0x2
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#define AOUT_CHAN_RIGHT 0x4
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#define AOUT_CHAN_REARCENTER 0x10
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#define AOUT_CHAN_REARLEFT 0x20
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#define AOUT_CHAN_REARRIGHT 0x40
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#define AOUT_CHAN_MIDDLELEFT 0x100
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#define AOUT_CHAN_MIDDLERIGHT 0x200
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#define AOUT_CHAN_LFE 0x1000
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/* Values available for original channels only */
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#define AOUT_CHAN_DOLBYSTEREO 0x10000
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#define AOUT_CHAN_DUALMONO 0x20000
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#define AOUT_CHAN_REVERSESTEREO 0x40000
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#define AOUT_CHAN_PHYSMASK 0xFFFF
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#define AOUT_CHAN_MAX 9
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/* Values used for the audio-device and audio-channels object variables */
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#define AOUT_VAR_MONO 1
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#define AOUT_VAR_STEREO 2
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#define AOUT_VAR_2F2R 4
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#define AOUT_VAR_3F2R 5
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#define AOUT_VAR_5_1 6
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#define AOUT_VAR_6_1 7
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#define AOUT_VAR_7_1 8
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#define AOUT_VAR_SPDIF 10
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#define AOUT_VAR_CHAN_STEREO 1
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#define AOUT_VAR_CHAN_RSTEREO 2
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#define AOUT_VAR_CHAN_LEFT 3
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#define AOUT_VAR_CHAN_RIGHT 4
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#define AOUT_VAR_CHAN_DOLBYS 5
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/*****************************************************************************
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* Main audio output structures
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*****************************************************************************/
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/** audio output buffer */
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struct aout_buffer_t
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{
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byte_t * p_buffer;
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int i_alloc_type;
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/* i_size is the real size of the buffer (used for debug ONLY), i_nb_bytes
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* is the number of significative bytes in it. */
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size_t i_size, i_nb_bytes;
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unsigned int i_nb_samples;
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mtime_t start_date, end_date;
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struct aout_buffer_t * p_next;
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/** Private data (aout_buffer_t will disappear soon so no need for an
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* aout_buffer_sys_t type) */
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void * p_sys;
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/** This way the release can be overloaded */
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void (*pf_release)( aout_buffer_t * );
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};
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#define aout_BufferFree( p_buffer ) \
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if( p_buffer != NULL && (p_buffer)->i_alloc_type == AOUT_ALLOC_HEAP ) \
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{ \
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free( p_buffer ); \
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} \
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p_buffer = NULL;
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/* Size of a frame for S/PDIF output. */
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#define AOUT_SPDIF_SIZE 6144
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/* Number of samples in an A/52 frame. */
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#define A52_FRAME_NB 1536
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/** date incrementation helper structure without long-term
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* rounding errors
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*/
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struct audio_date_t
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{
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mtime_t date;
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uint32_t i_divider;
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uint32_t i_remainder;
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};
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/** allocation of memory in the audio output */
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typedef struct aout_alloc_t
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{
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int i_alloc_type;
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int i_bytes_per_sec;
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} aout_alloc_t;
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#define AOUT_ALLOC_NONE 0
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#define AOUT_ALLOC_STACK 1
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#define AOUT_ALLOC_HEAP 2
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/** audio output mixer */
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typedef struct aout_mixer_t
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{
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audio_sample_format_t mixer;
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aout_alloc_t output_alloc;
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module_t * p_module;
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struct aout_mixer_sys_t * p_sys;
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void (* pf_do_work)( struct aout_instance_t *,
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struct aout_buffer_t * );
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/** If b_error == 1, there is no mixer. */
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vlc_bool_t b_error;
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/** Multiplier used to raise or lower the volume of the sound in
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* software. Beware, this creates sound distortion and should be avoided
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* as much as possible. This isn't available for non-float32 mixer. */
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float f_multiplier;
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} aout_mixer_t;
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/** audio output buffer FIFO */
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struct aout_fifo_t
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{
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aout_buffer_t * p_first;
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aout_buffer_t ** pp_last;
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audio_date_t end_date;
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};
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/** audio output filter */
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struct aout_filter_t
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{
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VLC_COMMON_MEMBERS
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audio_sample_format_t input;
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audio_sample_format_t output;
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aout_alloc_t output_alloc;
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module_t * p_module;
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struct aout_filter_sys_t * p_sys;
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void (* pf_do_work)( struct aout_instance_t *,
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struct aout_filter_t *,
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struct aout_buffer_t *,
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struct aout_buffer_t * );
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vlc_bool_t b_in_place;
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vlc_bool_t b_continuity;
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};
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#define AOUT_RESAMPLING_NONE 0
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#define AOUT_RESAMPLING_UP 1
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#define AOUT_RESAMPLING_DOWN 2
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/** an input stream for the audio output */
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struct aout_input_t
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{
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/* When this lock is taken, the pipeline cannot be changed by a
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* third-party. */
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vlc_mutex_t lock;
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/* The input thread that spawned this input */
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input_thread_t *p_input_thread;
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audio_sample_format_t input;
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aout_alloc_t input_alloc;
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/* pre-filters */
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aout_filter_t * pp_filters[AOUT_MAX_FILTERS];
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int i_nb_filters;
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/* resamplers */
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aout_filter_t * pp_resamplers[AOUT_MAX_FILTERS];
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int i_nb_resamplers;
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int i_resampling_type;
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mtime_t i_resamp_start_date;
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int i_resamp_start_drift;
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aout_fifo_t fifo;
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/* Mixer information */
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byte_t * p_first_byte_to_mix;
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/* If b_restart == 1, the input pipeline will be re-created. */
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vlc_bool_t b_restart;
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/* If b_error == 1, there is no input pipeline. */
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vlc_bool_t b_error;
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/* Did we just change the output format? (expect buffer inconsistencies) */
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vlc_bool_t b_changed;
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/* internal caching delay from input */
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int i_pts_delay;
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/* desynchronisation delay request by the user */
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int i_desync;
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};
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/** an output stream for the audio output */
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typedef struct aout_output_t
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{
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audio_sample_format_t output;
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/* Indicates whether the audio output is currently starving, to avoid
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* printing a 1,000 "output is starving" messages. */
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vlc_bool_t b_starving;
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/* post-filters */
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aout_filter_t * pp_filters[AOUT_MAX_FILTERS];
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int i_nb_filters;
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aout_fifo_t fifo;
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struct module_t * p_module;
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struct aout_sys_t * p_sys;
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void (* pf_play)( aout_instance_t * );
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int (* pf_volume_get )( aout_instance_t *, audio_volume_t * );
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int (* pf_volume_set )( aout_instance_t *, audio_volume_t );
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int (* pf_volume_infos )( aout_instance_t *, audio_volume_t * );
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int i_nb_samples;
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/* Current volume for the output - it's just a placeholder, the plug-in
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* may or may not use it. */
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audio_volume_t i_volume;
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/* If b_error == 1, there is no audio output pipeline. */
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vlc_bool_t b_error;
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} aout_output_t;
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/** audio output thread descriptor */
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struct aout_instance_t
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{
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VLC_COMMON_MEMBERS
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/* Locks : please note that if you need several of these locks, it is
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* mandatory (to avoid deadlocks) to take them in the following order :
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* mixer_lock, p_input->lock, output_fifo_lock, input_fifos_lock.
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* --Meuuh */
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/* When input_fifos_lock is taken, none of the p_input->fifo structures
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* can be read or modified by a third-party thread. */
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vlc_mutex_t input_fifos_lock;
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/* When mixer_lock is taken, all decoder threads willing to mix a
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* buffer must wait until it is released. The output pipeline cannot
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* be modified. No input stream can be added or removed. */
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vlc_mutex_t mixer_lock;
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/* When output_fifo_lock is taken, the p_aout->output.fifo structure
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* cannot be read or written by a third-party thread. */
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vlc_mutex_t output_fifo_lock;
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/* Input streams & pre-filters */
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aout_input_t * pp_inputs[AOUT_MAX_INPUTS];
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int i_nb_inputs;
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/* Mixer */
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aout_mixer_t mixer;
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/* Output plug-in */
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aout_output_t output;
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};
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/*****************************************************************************
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* Prototypes
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*****************************************************************************/
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/* From common.c : */
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VLC_EXPORT( void, aout_DateInit, ( audio_date_t *, uint32_t ) );
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VLC_EXPORT( void, aout_DateSet, ( audio_date_t *, mtime_t ) );
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VLC_EXPORT( void, aout_DateMove, ( audio_date_t *, mtime_t ) );
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VLC_EXPORT( mtime_t, aout_DateGet, ( const audio_date_t * ) );
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VLC_EXPORT( mtime_t, aout_DateIncrement, ( audio_date_t *, uint32_t ) );
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VLC_EXPORT( aout_buffer_t *, aout_OutputNextBuffer, ( aout_instance_t *, mtime_t, vlc_bool_t ) );
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VLC_EXPORT( int, aout_CheckChannelReorder, ( const uint32_t *, const uint32_t *, uint32_t, int, int * ) );
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VLC_EXPORT( void, aout_ChannelReorder, ( uint8_t *, int, int, const int *, int ) );
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VLC_EXPORT( unsigned int, aout_FormatNbChannels, ( const audio_sample_format_t * p_format ) );
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VLC_EXPORT( void, aout_FormatPrepare, ( audio_sample_format_t * p_format ) );
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VLC_EXPORT( void, aout_FormatPrint, ( aout_instance_t * p_aout, const char * psz_text, const audio_sample_format_t * p_format ) );
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VLC_EXPORT( const char *, aout_FormatPrintChannels, ( const audio_sample_format_t * ) );
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VLC_EXPORT( mtime_t, aout_FifoFirstDate, ( aout_instance_t *, aout_fifo_t * ) );
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VLC_EXPORT( aout_buffer_t *, aout_FifoPop, ( aout_instance_t * p_aout, aout_fifo_t * p_fifo ) );
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/* From intf.c : */
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VLC_EXPORT( void, aout_VolumeSoftInit, ( aout_instance_t * ) );
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VLC_EXPORT( void, aout_VolumeNoneInit, ( aout_instance_t * ) );
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#define aout_VolumeGet(a, b) __aout_VolumeGet(VLC_OBJECT(a), b)
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VLC_EXPORT( int, __aout_VolumeGet, ( vlc_object_t *, audio_volume_t * ) );
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#define aout_VolumeSet(a, b) __aout_VolumeSet(VLC_OBJECT(a), b)
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VLC_EXPORT( int, __aout_VolumeSet, ( vlc_object_t *, audio_volume_t ) );
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#define aout_VolumeInfos(a, b) __aout_VolumeInfos(VLC_OBJECT(a), b)
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VLC_EXPORT( int, __aout_VolumeInfos, ( vlc_object_t *, audio_volume_t * ) );
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#define aout_VolumeUp(a, b, c) __aout_VolumeUp(VLC_OBJECT(a), b, c)
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VLC_EXPORT( int, __aout_VolumeUp, ( vlc_object_t *, int, audio_volume_t * ) );
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#define aout_VolumeDown(a, b, c) __aout_VolumeDown(VLC_OBJECT(a), b, c)
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VLC_EXPORT( int, __aout_VolumeDown, ( vlc_object_t *, int, audio_volume_t * ) );
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#define aout_VolumeMute(a, b) __aout_VolumeMute(VLC_OBJECT(a), b)
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VLC_EXPORT( int, __aout_VolumeMute, ( vlc_object_t *, audio_volume_t * ) );
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VLC_EXPORT( int, aout_Restart, ( aout_instance_t * p_aout ) );
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VLC_EXPORT( int, aout_FindAndRestart, ( vlc_object_t *, const char *, vlc_value_t, vlc_value_t, void * ) );
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VLC_EXPORT( int, aout_ChannelsRestart, ( vlc_object_t *, const char *, vlc_value_t, vlc_value_t, void * ) );
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VLC_EXPORT( void, aout_EnableFilter, (vlc_object_t *, const char *, vlc_bool_t ));
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#define aout_VisualNext(a) aout_VisualChange( VLC_OBJECT(a),1 )
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#define aout_VisualPrev(a) aout_VisualChange( VLC_OBJECT(a),-1 )
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VLC_EXPORT( char *, aout_VisualChange, (vlc_object_t *, int ) );
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# ifdef __cplusplus
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}
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# endif
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#endif /* _VLC_AOUT_H */
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