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mpv/libmpcodecs/ae_lavc.c
Uoti Urpala b0986b3760 Merge svn changes up to r30463
Note that r30455 is wrong, that commit does not in fact change the
default behavior as claimed in the commit message. It only breaks
"-af-adv force=0", which was already pretty much useless though.
2010-03-09 18:59:15 +02:00

246 lines
7.8 KiB
C

/*
* This file is part of MPlayer.
*
* MPlayer is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* MPlayer is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along
* with MPlayer; if not, write to the Free Software Foundation, Inc.,
* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/
#include <stdio.h>
#include <stdlib.h>
#include <inttypes.h>
#include <unistd.h>
#include <string.h>
#include <sys/types.h>
#include "config.h"
#include "m_option.h"
#include "mp_msg.h"
#include "libmpdemux/aviheader.h"
#include "libmpdemux/ms_hdr.h"
#include "stream/stream.h"
#include "libmpdemux/muxer.h"
#include "ae_lavc.h"
#include "help_mp.h"
#include "libaf/af_format.h"
#include "libaf/reorder_ch.h"
#include "libavcodec/avcodec.h"
#include "ffmpeg_files/intreadwrite.h"
static AVCodec *lavc_acodec;
static AVCodecContext *lavc_actx;
extern char *lavc_param_acodec;
extern int lavc_param_abitrate;
extern int lavc_param_atag;
extern int lavc_param_audio_global_header;
extern int avcodec_initialized;
static int compressed_frame_size = 0;
#include "libmpdemux/mp_taglists.h"
static int bind_lavc(audio_encoder_t *encoder, muxer_stream_t *mux_a)
{
mux_a->wf = malloc(sizeof(WAVEFORMATEX)+lavc_actx->extradata_size+256);
mux_a->wf->wFormatTag = lavc_param_atag;
mux_a->wf->nChannels = lavc_actx->channels;
mux_a->wf->nSamplesPerSec = lavc_actx->sample_rate;
mux_a->wf->nAvgBytesPerSec = (lavc_actx->bit_rate / 8);
mux_a->avg_rate= lavc_actx->bit_rate;
mux_a->h.dwRate = mux_a->wf->nAvgBytesPerSec;
if(lavc_actx->block_align)
mux_a->h.dwSampleSize = mux_a->h.dwScale = lavc_actx->block_align;
else
{
mux_a->h.dwScale = (mux_a->wf->nAvgBytesPerSec * lavc_actx->frame_size)/ mux_a->wf->nSamplesPerSec; /* for cbr */
if ((mux_a->wf->nAvgBytesPerSec *
lavc_actx->frame_size) % mux_a->wf->nSamplesPerSec)
{
mux_a->h.dwScale = lavc_actx->frame_size;
mux_a->h.dwRate = lavc_actx->sample_rate;
mux_a->h.dwSampleSize = 0; // Blocksize not constant
}
else
mux_a->h.dwSampleSize = 0;
}
if(mux_a->h.dwSampleSize)
mux_a->wf->nBlockAlign = mux_a->h.dwSampleSize;
else
mux_a->wf->nBlockAlign = 1;
mux_a->h.dwSuggestedBufferSize = (encoder->params.audio_preload*mux_a->wf->nAvgBytesPerSec)/1000;
mux_a->h.dwSuggestedBufferSize -= mux_a->h.dwSuggestedBufferSize % mux_a->wf->nBlockAlign;
switch(lavc_param_atag)
{
case 0x11: /* imaadpcm */
mux_a->wf->wBitsPerSample = 4;
mux_a->wf->cbSize = 2;
AV_WL16(mux_a->wf+1, lavc_actx->frame_size);
break;
case 0x55: /* mp3 */
mux_a->wf->cbSize = 12;
mux_a->wf->wBitsPerSample = 0; /* does not apply */
((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->wID = 1;
((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->fdwFlags = 2;
((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->nBlockSize = mux_a->wf->nBlockAlign;
((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->nFramesPerBlock = 1;
((MPEGLAYER3WAVEFORMAT *) (mux_a->wf))->nCodecDelay = 0;
break;
default:
mux_a->wf->wBitsPerSample = 0; /* Unknown */
if (lavc_actx->extradata && (lavc_actx->extradata_size > 0))
{
memcpy(mux_a->wf+1, lavc_actx->extradata, lavc_actx->extradata_size);
mux_a->wf->cbSize = lavc_actx->extradata_size;
}
else
mux_a->wf->cbSize = 0;
break;
}
// Fix allocation
mux_a->wf = realloc(mux_a->wf, sizeof(WAVEFORMATEX)+mux_a->wf->cbSize);
encoder->input_format = AF_FORMAT_S16_NE;
encoder->min_buffer_size = mux_a->h.dwSuggestedBufferSize;
encoder->max_buffer_size = mux_a->h.dwSuggestedBufferSize*2;
return 1;
}
static int encode_lavc(audio_encoder_t *encoder, uint8_t *dest, void *src, int size, int max_size)
{
int n;
if ((encoder->params.channels == 6 || encoder->params.channels == 5) &&
(!strcmp(lavc_acodec->name,"ac3") ||
!strcmp(lavc_acodec->name,"libfaac"))) {
int isac3 = !strcmp(lavc_acodec->name,"ac3");
reorder_channel_nch(src, AF_CHANNEL_LAYOUT_MPLAYER_DEFAULT,
isac3 ? AF_CHANNEL_LAYOUT_LAVC_DEFAULT
: AF_CHANNEL_LAYOUT_AAC_DEFAULT,
encoder->params.channels,
size / 2, 2);
}
n = avcodec_encode_audio(lavc_actx, dest, size, src);
compressed_frame_size = n;
return n;
}
static int close_lavc(audio_encoder_t *encoder)
{
compressed_frame_size = 0;
return 1;
}
static int get_frame_size(audio_encoder_t *encoder)
{
int sz = compressed_frame_size;
compressed_frame_size = 0;
return sz;
}
int mpae_init_lavc(audio_encoder_t *encoder)
{
encoder->params.samples_per_frame = encoder->params.sample_rate;
encoder->params.bitrate = encoder->params.sample_rate * encoder->params.channels * 2 * 8;
if(!lavc_param_acodec)
{
mp_tmsg(MSGT_MENCODER, MSGL_FATAL, "Audio LAVC, Missing codec name!\n");
return 0;
}
if(!avcodec_initialized){
avcodec_init();
avcodec_register_all();
avcodec_initialized=1;
}
lavc_acodec = avcodec_find_encoder_by_name(lavc_param_acodec);
if (!lavc_acodec)
{
mp_tmsg(MSGT_MENCODER, MSGL_FATAL, "Audio LAVC, couldn't find encoder for codec %s.\n", lavc_param_acodec);
return 0;
}
if(lavc_param_atag == 0)
{
lavc_param_atag = mp_av_codec_get_tag(mp_wav_taglists, lavc_acodec->id);
if(!lavc_param_atag)
{
mp_msg(MSGT_MENCODER, MSGL_FATAL, "Couldn't find wav tag for specified codec, exit\n");
return 0;
}
}
lavc_actx = avcodec_alloc_context();
if(lavc_actx == NULL)
{
mp_tmsg(MSGT_MENCODER, MSGL_FATAL, "Audio LAVC, couldn't allocate context!\n");
return 0;
}
lavc_actx->codec_type = CODEC_TYPE_AUDIO;
lavc_actx->codec_id = lavc_acodec->id;
// put sample parameters
lavc_actx->channels = encoder->params.channels;
lavc_actx->sample_rate = encoder->params.sample_rate;
lavc_actx->time_base.num = 1;
lavc_actx->time_base.den = encoder->params.sample_rate;
if(lavc_param_abitrate<1000)
lavc_actx->bit_rate = encoder->params.bitrate = lavc_param_abitrate * 1000;
else
lavc_actx->bit_rate = encoder->params.bitrate = lavc_param_abitrate;
/*
* Special case for adpcm_ima_wav.
* The bitrate is only dependent on samplerate.
* We have to known frame_size and block_align in advance,
* so I just copied the code from libavcodec/adpcm.c
*
* However, ms adpcm_ima_wav uses a block_align of 2048,
* lavc defaults to 1024
*/
if(lavc_param_atag == 0x11) {
int blkalign = 2048;
int framesize = (blkalign - 4 * lavc_actx->channels) * 8 / (4 * lavc_actx->channels) + 1;
lavc_actx->bit_rate = lavc_actx->sample_rate*8*blkalign/framesize;
}
if((lavc_param_audio_global_header&1)
/*|| (video_global_header==0 && (oc->oformat->flags & AVFMT_GLOBALHEADER))*/){
lavc_actx->flags |= CODEC_FLAG_GLOBAL_HEADER;
}
if(lavc_param_audio_global_header&2){
lavc_actx->flags2 |= CODEC_FLAG2_LOCAL_HEADER;
}
if(avcodec_open(lavc_actx, lavc_acodec) < 0)
{
mp_tmsg(MSGT_MENCODER, MSGL_FATAL, "Couldn't open codec %s, br=%d.\n", lavc_param_acodec, lavc_param_abitrate);
return 0;
}
if(lavc_param_atag == 0x11) {
lavc_actx->block_align = 2048;
lavc_actx->frame_size = (lavc_actx->block_align - 4 * lavc_actx->channels) * 8 / (4 * lavc_actx->channels) + 1;
}
encoder->decode_buffer_size = lavc_actx->frame_size * 2 * encoder->params.channels;
while (encoder->decode_buffer_size < 1024) encoder->decode_buffer_size *= 2;
encoder->bind = bind_lavc;
encoder->get_frame_size = get_frame_size;
encoder->encode = encode_lavc;
encoder->close = close_lavc;
return 1;
}