445 lines
16 KiB
C
445 lines
16 KiB
C
/*
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* Asterisk -- An open source telephony toolkit.
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*
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* Copyright (C) 2011, Digium, Inc.
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*
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* Joshua Colp <jcolp@digium.com>
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* David Vossel <dvossel@digium.com>
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*
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* See http://www.asterisk.org for more information about
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* the Asterisk project. Please do not directly contact
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* any of the maintainers of this project for assistance;
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* the project provides a web site, mailing lists and IRC
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* channels for your use.
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*
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* This program is free software, distributed under the terms of
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* the GNU General Public License Version 2. See the LICENSE file
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* at the top of the source tree.
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*/
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/*! \file
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*
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* \brief Multi-party software based channel mixing (header)
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*
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* \author Joshua Colp <jcolp@digium.com>
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* \author David Vossel <dvossel@digium.com>
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*
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* \ingroup bridges
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*/
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#ifndef _ASTERISK_BRIDGE_SOFTMIX_INTERNAL_H
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#define _ASTERISK_BRIDGE_SOFTMIX_INTERNAL_H
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#include "asterisk.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/time.h>
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#include <signal.h>
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#include <errno.h>
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#include <unistd.h>
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#include "asterisk/module.h"
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#include "asterisk/channel.h"
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#include "asterisk/bridge.h"
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#include "asterisk/bridge_technology.h"
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#include "asterisk/frame.h"
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#include "asterisk/options.h"
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#include "asterisk/logger.h"
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#include "asterisk/slinfactory.h"
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#include "asterisk/astobj2.h"
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#include "asterisk/timing.h"
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#include "asterisk/translate.h"
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#include "asterisk/rtp_engine.h"
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#include "asterisk/vector.h"
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#ifdef BINAURAL_RENDERING
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#include <fftw3.h>
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#endif
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#if defined(__Darwin__) || defined(__OpenBSD__) || defined(__FreeBSD__) || defined(__DragonFly__) || defined(__NetBSD__) || defined(__CYGWIN__)
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#include <float.h>
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#else
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#include <values.h>
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#endif
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#define MAX_DATALEN 8096
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#define DEFAULT_ENERGY_HISTORY_LEN 150
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/*! Setting the sample rate to 48000 by default if binaural is activated. */
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#define SOFTMIX_BINAURAL_SAMPLE_RATE 48000
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/*! We only support 20 ms interval length with binaural data at the moment. */
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#define BINAURAL_MIXING_INTERVAL 20
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struct convolve_channel {
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/*! The head related transfer function used for convolving */
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double *hrtf;
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/*! Input signals for fftw */
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double *fftw_in;
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/*! Output signals from the fftw */
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double *fftw_out;
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/*! Signals for overlap add */
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float *overlap_add;
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/*! The resulting data after the convolution */
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int16_t *out_data;
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#ifdef BINAURAL_RENDERING
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/*! The fftw plan for binaural signaling */
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fftw_plan fftw_plan;
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/*! The inverse fftw plan for binaural signaling */
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fftw_plan fftw_plan_inverse;
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#endif
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};
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struct convolve_channel_pair {
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/*! The left channel of a stereo channel pair */
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struct convolve_channel chan_left;
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/*! The right channel of a stereo channel pair */
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struct convolve_channel chan_right;
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};
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struct convolve_data {
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/*! A count of all channels potentially having input data for the conference. */
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int number_channels;
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/*! Will set to true if there is at least one binaural output.
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* Only if set to true data will be convolved. */
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int binaural_active;
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/*! The length of the head related transfer function */
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unsigned int hrtf_length;
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/*! Number of channels available for convolving.
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* We do not delete a channel when a member leaves, cause we can reuse it for the next one. */
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int chan_size;
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/*! The positions of the single channels in the virtual room */
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int *pos_ids;
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/*! Each channel has a stereo pair of channels for the convolution */
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struct convolve_channel_pair **cchan_pair;
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};
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struct video_follow_talker_data {
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/*! audio energy history */
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int energy_history[DEFAULT_ENERGY_HISTORY_LEN];
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/*! The current slot being used in the history buffer, this
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* increments and wraps around */
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int energy_history_cur_slot;
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/*! The current energy sum used for averages. */
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int energy_accum;
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/*! The current energy average */
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int energy_average;
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};
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struct softmix_remb_collector;
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/*! \brief Structure which contains per-channel mixing information */
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struct softmix_channel {
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/*! Lock to protect this structure */
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ast_mutex_t lock;
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/*! Factory which contains audio read in from the channel */
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struct ast_slinfactory factory;
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/*! Frame that contains mixed audio to be written out to the channel */
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struct ast_frame write_frame;
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/*! Current expected read slinear format. */
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struct ast_format *read_slin_format;
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/*! DSP for detecting silence */
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struct ast_dsp *dsp;
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/*!
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* \brief TRUE if a channel is talking.
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*
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* \note This affects how the channel's audio is mixed back to
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* it.
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*/
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unsigned int talking:1;
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/*! TRUE if the channel provided audio for this mixing interval */
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unsigned int have_audio:1;
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/*! We set binaural also as channel data, to have better tracking.
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* It is also present in transpvt.
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*/
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unsigned int binaural:1;
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/*! TRUE if this is an announcement channel (data will not be convolved) */
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unsigned int is_announcement:1;
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/*! The position of the channel in the virtual room represented by an id
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* This ID has to be set even if the channel has no binaural output!
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*/
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unsigned int binaural_pos;
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/*! The channel pair for this channel */
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struct convolve_channel_pair *our_chan_pair;
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/*! Marks the channel for suspending all binaural activity on the output */
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unsigned int binaural_suspended:1;
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/*! Channel sample rate, stored to retrieve it after unsuspending the channel */
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int rate;
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/*! Buffer containing final mixed audio from all sources */
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short final_buf[MAX_DATALEN];
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/*! Buffer containing only the audio from the channel */
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short our_buf[MAX_DATALEN];
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/*! Data pertaining to talker mode for video conferencing */
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struct video_follow_talker_data video_talker;
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/*! The ideal stream topology for the channel */
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struct ast_stream_topology *topology;
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/*! The latest REMB report from this participant */
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struct ast_rtp_rtcp_feedback_remb remb;
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/*! The REMB collector for this channel, collects REMB from all video receivers */
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struct softmix_remb_collector *remb_collector;
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/*! The bridge streams which are feeding us video sources */
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AST_VECTOR(, int) video_sources;
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};
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struct softmix_bridge_data {
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struct ast_timer *timer;
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/*!
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* \brief Bridge pointer passed to the softmix mixing thread.
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*
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* \note Does not need a reference because the bridge will
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* always exist while the mixing thread exists even if the
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* bridge is no longer actively using the softmix technology.
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*/
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struct ast_bridge *bridge;
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/*! Lock for signaling the mixing thread. */
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ast_mutex_t lock;
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/*! Condition, used if we need to wake up the mixing thread. */
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ast_cond_t cond;
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/*! Thread handling the mixing */
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pthread_t thread;
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unsigned int internal_rate;
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unsigned int internal_mixing_interval;
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/*! TRUE if the mixing thread should stop */
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unsigned int stop:1;
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/*! The default sample size (e.g. using Opus at 48khz and 20 ms mixing
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* interval, sample size is 960) */
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unsigned int default_sample_size;
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/*! All data needed for binaural signaling */
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struct convolve_data convolve;
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/*! TRUE if the first attempt to init binaural rendering data was done
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* (does not guarantee success)
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*/
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unsigned int binaural_init;
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/*! The last time a video update was sent into the bridge */
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struct timeval last_video_update;
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/*! The last time a REMB frame was sent to each source of video */
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struct timeval last_remb_update;
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/*! Per-bridge stream REMB collectors, which flow back to video source */
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AST_VECTOR(, struct softmix_remb_collector *) remb_collectors;
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/*! Per-bridge REMB bitrate */
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float bitrate;
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};
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struct softmix_mixing_array {
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unsigned int max_num_entries;
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unsigned int used_entries;
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int16_t **buffers;
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/*! Stereo channel pairs used to store convolved binaural signals */
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struct convolve_channel_pair **chan_pairs;
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};
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/*!
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* \brief Deletes left over signals on a channel that it can be reused.
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*
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* \param channel_pair The channel pair which contains the left and right audio channel.
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* \param default_sample_size The sample size which the channel pair uses.
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*/
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void reset_channel_pair(struct convolve_channel_pair *channel_pair,
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unsigned int default_sample_size);
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/*!
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* \brief Randomly changes the virtual positions of conference participants.
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*
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* \param softmix_data The structure containing all position informations.
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*/
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void random_binaural_pos_change(struct softmix_bridge_data *softmix_data);
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/*!
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* \brief Binaural convolving of audio data for a channel.
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*
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* \param chan The channel that will contain the binaural audio data as result.
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* \param in_samples The audio data which will be convolved.
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* \param in_sample_size The size of the audio data.
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* \param hrtf_length The length of the head related transfer function used to convolve the audio.
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*
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* \retval 0 success
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* \retval -1 failure
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*/
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int do_convolve(struct convolve_channel *chan, int16_t *in_samples,
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unsigned int in_sample_size, unsigned int hrtf_length);
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/*!
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* \brief Binaural convolving of audio data for a channel pair (left and right channel).
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*
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* \param data Contains the left and right audio channel.
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* \param pos_id The position the channel has in the virtual enviroment.
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* \param in_samples The audio data which will be convolved for both channels.
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* \param in_sample_size The size of the audio data.
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* \param channel_name The name of the channel
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*
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* \retval The channel pair with convolved audio on success.
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* \retval NULL failure
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*/
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struct convolve_channel_pair *do_convolve_pair(struct convolve_data *data,
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unsigned int pos_id, int16_t *in_samples, unsigned int in_sample_size,
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const char *channel_name);
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/*!
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* \brief Provides a head related impulse response for the given position in the virtual
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* enviroment.
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*
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* \param chan_pos The position of the channel in the virtual enviroment.
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* \param chan_side 0 for the left audio channel, 1 for the right.
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*
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* \retval The hrir for the given position in the virtual room for either the left or right
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* channels.
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* \retval NULL on failure.
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*
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*/
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float *get_hrir(unsigned int chan_pos, unsigned int chan_side);
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/*!
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* \brief Initializes all data needed for binaural audio processing.
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*
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* \param channel The channel used for binaural audio processing.
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* \param hrtf_len The length of the head related impulse response used for binaural processing.
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* \param chan_pos The position of the channel in the virtual enviroment.
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* \param chan_side 0 for the left audio channel, 1 for the right.
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* \param default_sample_size The default size of audio samples.
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*
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* \retval 0 on success
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* \retval -1 on failure
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*/
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int init_convolve_channel(struct convolve_channel *channel, unsigned int hrtf_len,
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unsigned int chan_pos, unsigned int chan_side, unsigned int default_sample_size);
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/*!
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* \brief Initializes all data needed for binaural audio processing of a channel pair
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* (left and right).
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*
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* \param cchan_pair The channel pair used for binaural audio processing.
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* \param hrtf_len The length of the head related impulse response used for binaural processing.
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* \param chan_pos The position of the channel in the virtual enviroment.
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* \param default_sample_size The default size of audio samples.
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*
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* \retval 0 on success
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* \retval -1 on failure
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*/
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int init_convolve_channel_pair(struct convolve_channel_pair *cchan_pair,
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unsigned int hrtf_len, unsigned int chan_pos, unsigned int default_sample_size);
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/*!
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* \brief Preinits a specific number of channels (CONVOLVE_CHANNEL_PREALLOC)
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* at the beginning of a conference.
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*
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* \param data Contains all channels and data needed for binaural processing
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* (e.g. head related transfer functions).
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* \param default_sample_size The default size of audio samples.
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*
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* \retval 0 on success
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* \retval -1 on failure
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*/
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int init_convolve_data(struct convolve_data *data, unsigned int default_sample_size);
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/*!
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* \brief Frees all data needed for binaural processing by an audio channel.
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*
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* \param cchan The channel to clean up.
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*/
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void free_convolve_channel(struct convolve_channel *cchan);
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/*!
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* \brief Frees all data needed for binaural processing by a pair of audio channels
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* (left and right).
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*
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* \param cchan_pair The channel pair to clean up.
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*/
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void free_convolve_channel_pair(struct convolve_channel_pair *cchan_pair);
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/*!
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* \brief Frees all channels and data needed for binaural audio processing.
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*
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* \param data Contains all channels and data for the cleanup process.
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*/
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void free_convolve_data(struct convolve_data *data);
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/*!
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* \brief Joins a channel into a virtual enviroment build with the help of binaural synthesis.
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*
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* \param data Contains all channels and data needed for binaural processing
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* (e.g. head related transfer functions).
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* \param default_sample_size The default size of audio samples.
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*
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* \retval The position of the channel in the virtual enviroment.
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* \retval -1 on failure
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*/
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int set_binaural_data_join(struct convolve_data *data, unsigned int default_sample_size);
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/*!
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* \brief Removes a channel from the binaural conference bridge. Marks the position in
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* the virtual room as unused that it can be reused by the next channel which enters the
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* conference.
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*
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* \param data Contains all channels and data needed for binaural processing
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* (e.g. head related transfer functions).
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* \param pos The position of the channel in the virtual enviroment.
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* \param default_sample_size The default size of audio samples.
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*/
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void set_binaural_data_leave(struct convolve_data *data, unsigned int pos,
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unsigned int default_sample_size);
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/*!
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* \brief Writes the binaural audio to a channel.
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*
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* \param sc The softmix channel.
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* \param default_sample_size The default size of audio samples.
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*/
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void softmix_process_write_binaural_audio(struct softmix_channel *sc,
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unsigned int default_sample_size);
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/*!
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* \brief Checks if a position change in the virtual enviroment is requested by one of
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* the participants.
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*
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* \param bridge The conference bridge.
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* \param softmix_data The data used by the softmix bridge.
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*/
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void check_binaural_position_change(struct ast_bridge *bridge,
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struct softmix_bridge_data *softmix_data);
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/*!
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* \brief Processes audio data with the binaural synthesis and adds the result to the mixing array.
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*
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* \param bridge The conference bridge needed to check if binaural processing is active or not.
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* \param softmix_data Contains all data for the softmix bridge and for the binaural processing.
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* \param softmix_samples The sample size.
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* \param mixing_array The array which holds all audio data for mixing.
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* \param sc The channel which contains the audio data to process.
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* \param channel_name The name of the channel
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*/
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void add_binaural_mixing(struct ast_bridge *bridge, struct softmix_bridge_data *softmix_data,
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unsigned int softmix_samples, struct softmix_mixing_array *mixing_array,
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struct softmix_channel *sc, const char *channel_name);
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/*!
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* \brief Mixes all binaural audio data contained in the mixing array.
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*
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* \param bridge The conference bridge needed to check if binaural processing is active or not.
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* \param softmix_data Contains all data for the softmix bridge and for the binaural processing.
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* \param mixing_array The array which holds all audio data for mixing.
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* \param bin_buf The buffer that will contain the mixing results.
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* \param ann_buf The buffer that will contain mixed announcements in an interleaved format.
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*/
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void binaural_mixing(struct ast_bridge *bridge, struct softmix_bridge_data *softmix_data,
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struct softmix_mixing_array *mixing_array, int16_t *bin_buf, int16_t *ann_buf);
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/*!
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* \brief Creates a frame out of binaural audio data.
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*
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* \param bridge_channel Contains the information if binaural processing is active or not.
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* If active binaural audio data will be copied, if not mono data will be provided in an
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* interleaved format.
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* \param sc The softmix channel holding all informations for the process.
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* \param bin_buf The buffer that contains all mixing results.
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* \param ann_buf The buffer that contains mixed announcements in an interleaved format.
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* \param softmix_datalen The size of the audio data.
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* \param softmix_samples The number of audio samples.
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* \param buf The buffer that contains all mono mixing results, used if binaural processing is
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* inactive.
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*/
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void create_binaural_frame(struct ast_bridge_channel *bridge_channel,
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struct softmix_channel *sc, int16_t *bin_buf, int16_t *ann_buf,
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unsigned int softmix_datalen, unsigned int softmix_samples, int16_t *buf);
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#endif /* _ASTERISK_BRIDGE_SOFTMIX_INTERNAL_H */
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