mirror of
https://github.com/mpv-player/mpv
synced 2024-12-27 17:42:17 +00:00
1ed6e96cfb
common functions for channel reordering. This fixes these modules by adding channel reordering code for 5.0/5.1 audio: ao: pcm ad: dmo, faad, ffmpeg(ac3, dca, libfaad, liba52), pcm ae: faac, lavc(ac3, libfaac), pcm git-svn-id: svn://svn.mplayerhq.hu/mplayer/trunk@25343 b3059339-0415-0410-9bf9-f77b7e298cf2
198 lines
6.1 KiB
C
198 lines
6.1 KiB
C
#include <stdio.h>
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#include <stdlib.h>
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#include <inttypes.h>
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#include <unistd.h>
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#include <string.h>
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#include <sys/types.h>
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#include "m_option.h"
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#include "mp_msg.h"
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#include "libmpdemux/aviheader.h"
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#include "libaf/af_format.h"
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#include "libaf/reorder_ch.h"
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#include "libmpdemux/ms_hdr.h"
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#include "stream/stream.h"
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#include "libmpdemux/muxer.h"
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#include <faac.h>
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#include "ae.h"
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static faacEncHandle faac;
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static faacEncConfigurationPtr config = NULL;
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static int
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param_bitrate = 128,
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param_quality = 0,
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param_object_type = 1,
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param_mpeg = 2,
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param_tns = 0,
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param_raw = 0,
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param_cutoff = 0,
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param_format = 16,
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param_debug = 0;
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static int enc_frame_size = 0, divisor;
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static unsigned long samples_input, max_bytes_output;
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static unsigned char *decoder_specific_buffer = NULL;
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static unsigned long decoder_specific_len = 0;
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m_option_t faacopts_conf[] = {
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{"br", ¶m_bitrate, CONF_TYPE_INT, 0, 0, 0, NULL},
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{"quality", ¶m_quality, CONF_TYPE_INT, CONF_RANGE, 0, 1000, NULL},
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{"object", ¶m_object_type, CONF_TYPE_INT, CONF_RANGE, 1, 4, NULL},
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{"mpeg", ¶m_mpeg, CONF_TYPE_INT, CONF_RANGE, 2, 4, NULL},
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{"tns", ¶m_tns, CONF_TYPE_FLAG, 0, 0, 1, NULL},
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{"cutoff", ¶m_cutoff, CONF_TYPE_INT, 0, 0, 0, NULL},
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{"format", ¶m_format, CONF_TYPE_INT, 0, 0, 0, NULL},
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{"raw", ¶m_raw, CONF_TYPE_FLAG, 0, 0, 1, NULL},
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{"debug", ¶m_debug, CONF_TYPE_INT, CONF_RANGE, 0, 100000000, NULL},
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{NULL, NULL, 0, 0, 0, 0, NULL}
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};
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static int bind_faac(audio_encoder_t *encoder, muxer_stream_t *mux_a)
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{
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mux_a->wf = calloc(1, sizeof(WAVEFORMATEX) + decoder_specific_len + 256);
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mux_a->wf->wFormatTag = 0x706D;
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mux_a->wf->nChannels = encoder->params.channels;
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mux_a->h.dwSampleSize=0; // VBR
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mux_a->h.dwRate=encoder->params.sample_rate;
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mux_a->h.dwScale=encoder->params.samples_per_frame;
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mux_a->wf->nSamplesPerSec=mux_a->h.dwRate;
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mux_a->wf->nAvgBytesPerSec = encoder->params.bitrate / 8;
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mux_a->wf->nBlockAlign = mux_a->h.dwScale;
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mux_a->h.dwSuggestedBufferSize = (encoder->params.audio_preload*mux_a->wf->nAvgBytesPerSec)/1000;
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mux_a->h.dwSuggestedBufferSize -= mux_a->h.dwSuggestedBufferSize % mux_a->wf->nBlockAlign;
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mux_a->wf->cbSize = decoder_specific_len;
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mux_a->wf->wBitsPerSample = 0; /* does not apply */
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((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->wID = 1;
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((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->fdwFlags = 2;
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((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->nBlockSize = mux_a->wf->nBlockAlign;
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((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->nFramesPerBlock = 1;
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((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->nCodecDelay = 0;
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// Fix allocation
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mux_a->wf = realloc(mux_a->wf, sizeof(WAVEFORMATEX)+mux_a->wf->cbSize);
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if(config->inputFormat == FAAC_INPUT_FLOAT)
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encoder->input_format = AF_FORMAT_FLOAT_NE;
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else if(config->inputFormat == FAAC_INPUT_32BIT)
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encoder->input_format = AF_FORMAT_S32_NE;
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else
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encoder->input_format = AF_FORMAT_S16_NE;
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encoder->min_buffer_size = mux_a->h.dwSuggestedBufferSize;
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encoder->max_buffer_size = mux_a->h.dwSuggestedBufferSize*2;
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if(decoder_specific_buffer && decoder_specific_len)
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memcpy(mux_a->wf + 1, decoder_specific_buffer, decoder_specific_len);
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return 1;
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}
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static int get_frame_size(audio_encoder_t *encoder)
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{
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int sz = enc_frame_size;
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enc_frame_size = 0;
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return sz;
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}
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static int encode_faac(audio_encoder_t *encoder, uint8_t *dest, void *src, int len, int max_size)
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{
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if (encoder->params.channels >= 5)
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reorder_channel_nch(src, AF_CHANNEL_LAYOUT_MPLAYER_DEFAULT,
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AF_CHANNEL_LAYOUT_AAC_DEFAULT,
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encoder->params.channels,
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len / divisor, divisor);
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// len is divided by the number of bytes per sample
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enc_frame_size = faacEncEncode(faac, (int32_t*) src, len / divisor, dest, max_size);
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return enc_frame_size;
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}
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int close_faac(audio_encoder_t *encoder)
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{
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return 1;
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}
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int mpae_init_faac(audio_encoder_t *encoder)
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{
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if(encoder->params.channels < 1 || encoder->params.channels > 6 || (param_mpeg != 2 && param_mpeg != 4))
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{
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mp_msg(MSGT_MENCODER, MSGL_FATAL, "AE_FAAC, unsupported number of channels: %d, or mpeg version: %d, exit\n", encoder->params.channels, param_mpeg);
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return 0;
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}
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faac = faacEncOpen(encoder->params.sample_rate, encoder->params.channels, &samples_input, &max_bytes_output);
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if(!faac)
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{
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mp_msg(MSGT_MENCODER, MSGL_FATAL, "AE_FAAC, couldn't init, exit\n");
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return 0;
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}
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mp_msg(MSGT_MENCODER, MSGL_V, "AE_FAAC, sample_input: %lu, max_bytes_output: %lu\n", samples_input, max_bytes_output);
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config = faacEncGetCurrentConfiguration(faac);
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if(!config)
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{
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mp_msg(MSGT_MENCODER, MSGL_FATAL, "AE_FAAC, couldn't get init configuration, exit\n");
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return 0;
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}
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param_bitrate *= 1000;
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if(param_quality)
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config->quantqual = param_quality;
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else
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config->bitRate = param_bitrate / encoder->params.channels;
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if(param_format==33)
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{
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config->inputFormat = FAAC_INPUT_FLOAT;
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divisor = 4;
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}
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else if(param_format==32)
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{
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config->inputFormat = FAAC_INPUT_32BIT;
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divisor = 4;
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}
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else
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{
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config->inputFormat = FAAC_INPUT_16BIT;
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divisor = 2;
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}
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config->outputFormat = param_raw ? 0 : 1; // 1 is ADTS
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config->aacObjectType = param_object_type;
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if(MAIN==0) config->aacObjectType--;
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config->mpegVersion = (param_mpeg == 4 ? MPEG4 : MPEG2);
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config->useTns = param_tns;
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config->allowMidside = 1;
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config->shortctl = SHORTCTL_NORMAL;
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param_cutoff = param_cutoff ? param_cutoff : encoder->params.sample_rate / 2;
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if(param_cutoff > encoder->params.sample_rate / 2)
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param_cutoff = encoder->params.sample_rate / 2;
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config->bandWidth = param_cutoff;
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if(encoder->params.channels == 6)
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config->useLfe = 1;
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if(!faacEncSetConfiguration(faac, config))
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{
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mp_msg(MSGT_MENCODER, MSGL_FATAL, "AE_FAAC, counldn't set specified parameters, exiting\n");
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return 0;
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}
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if(param_raw)
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faacEncGetDecoderSpecificInfo(faac, &decoder_specific_buffer, &decoder_specific_len);
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else
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decoder_specific_len = 0;
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encoder->params.bitrate = param_bitrate;
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encoder->params.samples_per_frame = 1024;
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encoder->decode_buffer_size = divisor * samples_input; //samples * 16 bits_per_sample
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encoder->bind = bind_faac;
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encoder->get_frame_size = get_frame_size;
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encoder->encode = encode_faac;
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encoder->close = close_faac;
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return 1;
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}
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