549344d38a
git-svn-id: https://svn.musicpd.org/mpd/trunk@750 09075e82-0dd4-0310-85a5-a0d7c8717e4f
573 lines
14 KiB
C
573 lines
14 KiB
C
/* the Music Player Daemon (MPD)
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* (c)2003-2004 by Warren Dukes (shank@mercury.chem.pitt.edu)
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* This project's homepage is: http://www.musicpd.org
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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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* 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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include "mp3_decode.h"
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#ifdef HAVE_MAD
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#include "pcm_utils.h"
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#ifdef USE_MPD_MAD
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#include "libmad/mad.h"
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#else
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#include <mad.h>
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#endif
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#ifdef HAVE_ID3TAG
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#ifdef USE_MPD_ID3TAG
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#include "libid3tag/id3tag.h"
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#else
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#include <id3tag.h>
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#endif
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#endif
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#include "playerData.h"
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#include "log.h"
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#include "utils.h"
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#include <stdio.h>
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#include <string.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <errno.h>
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#define FRAMES_CUSHION 2000
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#define READ_BUFFER_SIZE 40960
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#define DECODE_SKIP -3
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#define DECODE_BREAK -2
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#define DECODE_CONT -1
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#define DECODE_OK 0
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/* this is stolen from mpg321! */
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struct audio_dither {
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mad_fixed_t error[3];
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mad_fixed_t random;
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};
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unsigned long prng(unsigned long state) {
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return (state * 0x0019660dL + 0x3c6ef35fL) & 0xffffffffL;
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}
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signed long audio_linear_dither(unsigned int bits, mad_fixed_t sample, struct audio_dither *dither) {
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unsigned int scalebits;
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mad_fixed_t output, mask, random;
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enum {
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MIN = -MAD_F_ONE,
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MAX = MAD_F_ONE - 1
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};
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sample += dither->error[0] - dither->error[1] + dither->error[2];
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dither->error[2] = dither->error[1];
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dither->error[1] = dither->error[0] / 2;
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output = sample + (1L << (MAD_F_FRACBITS + 1 - bits - 1));
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scalebits = MAD_F_FRACBITS + 1 - bits;
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mask = (1L << scalebits) - 1;
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random = prng(dither->random);
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output += (random & mask) - (dither->random & mask);
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dither->random = random;
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if (output > MAX) {
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output = MAX;
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if (sample > MAX)
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sample = MAX;
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}
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else if (output < MIN) {
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output = MIN;
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if (sample < MIN)
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sample = MIN;
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}
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output &= ~mask;
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dither->error[0] = sample - output;
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return output >> scalebits;
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}
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/* end of stolen stuff from mpg321 */
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/* decoder stuff is based on madlld */
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typedef struct _mp3DecodeData {
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FILE * fp;
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struct mad_stream stream;
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struct mad_frame frame;
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struct mad_synth synth;
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mad_timer_t timer;
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unsigned char readBuffer[READ_BUFFER_SIZE];
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char outputBuffer[CHUNK_SIZE];
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char * outputPtr;
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char * outputBufferEnd;
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float totalTime;
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float elapsedTime;
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int muteFrame;
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long * frameOffset;
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mad_timer_t * times;
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long highestFrame;
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long currentOffset;
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long maxFrames;
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long currentFrame;
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int flush;
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unsigned long bitRate;
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} mp3DecodeData;
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void initMp3DecodeData(mp3DecodeData * data) {
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data->outputPtr = data->outputBuffer;
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data->outputBufferEnd = data->outputBuffer+CHUNK_SIZE;
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data->muteFrame = 0;
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data->currentOffset = 0;
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data->highestFrame = 0;
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data->maxFrames = 0;
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data->frameOffset = NULL;
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data->times = NULL;
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data->currentFrame = 0;
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data->flush = 1;
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mad_stream_init(&data->stream);
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mad_frame_init(&data->frame);
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mad_synth_init(&data->synth);
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mad_timer_reset(&data->timer);
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}
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int fillMp3InputBuffer(mp3DecodeData * data, long offset) {
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size_t readSize;
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size_t remaining;
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unsigned char * readStart;
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if(offset>=0) {
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if(fseek(data->fp,offset,SEEK_SET)==0) {
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data->currentOffset = offset;
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}
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}
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if(offset==-1 && (data->stream).next_frame!=NULL) {
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remaining = (data->stream).bufend-(data->stream).next_frame;
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memmove(data->readBuffer,(data->stream).next_frame,remaining);
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readStart = (data->readBuffer)+remaining;
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readSize = READ_BUFFER_SIZE-remaining;
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}
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else {
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readSize = READ_BUFFER_SIZE;
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readStart = data->readBuffer,
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remaining = 0;
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}
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readSize = fread(readStart,1,readSize,data->fp);
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if(readSize<=0) return -1;
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data->currentOffset+=readSize;
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mad_stream_buffer(&data->stream,data->readBuffer,readSize+remaining);
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(data->stream).error = 0;
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return 0;
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}
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int decodeNextFrameHeader(mp3DecodeData * data) {
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if((data->stream).buffer==NULL || (data->stream).error==MAD_ERROR_BUFLEN) {
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if(fillMp3InputBuffer(data,/*data->currentOffset*/-1) < 0) {
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return DECODE_BREAK;
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}
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}
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if(mad_header_decode(&data->frame.header,&data->stream)) {
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#ifdef HAVE_ID3TAG
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if((data->stream).error==MAD_ERROR_LOSTSYNC &&
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(data->stream).this_frame)
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{
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signed long tagsize = id3_tag_query(
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(data->stream).this_frame,
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(data->stream).bufend-
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(data->stream).this_frame);
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if(tagsize>0) {
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mad_stream_skip(&(data->stream),tagsize);
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return DECODE_CONT;
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}
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}
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#endif
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if(MAD_RECOVERABLE((data->stream).error)) return DECODE_SKIP;
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else {
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if((data->stream).error==MAD_ERROR_BUFLEN) return DECODE_CONT;
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else
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{
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ERROR("unrecoverable frame level error "
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"(%s).\n",
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mad_stream_errorstr(&data->stream));
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data->flush = 0;
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return DECODE_BREAK;
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}
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}
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}
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return DECODE_OK;
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}
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int decodeNextFrame(mp3DecodeData * data) {
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if((data->stream).buffer==NULL || (data->stream).error==MAD_ERROR_BUFLEN) {
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if(fillMp3InputBuffer(data,/*data->currentOffset*/-1) < 0) {
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return DECODE_BREAK;
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}
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}
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#ifdef HAVE_ID3TAG
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if(mad_frame_decode(&data->frame,&data->stream)) {
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if((data->stream).error==MAD_ERROR_LOSTSYNC) {
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signed long tagsize = id3_tag_query(
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(data->stream).this_frame,
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(data->stream).bufend-
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(data->stream).this_frame);
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if(tagsize>0) {
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mad_stream_skip(&(data->stream),tagsize);
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return DECODE_CONT;
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}
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}
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#endif
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if(MAD_RECOVERABLE((data->stream).error)) return DECODE_SKIP;
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else {
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if((data->stream).error==MAD_ERROR_BUFLEN) return DECODE_CONT;
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else
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{
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ERROR("unrecoverable frame level error "
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"(%s).\n",
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mad_stream_errorstr(&data->stream));
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data->flush = 0;
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return DECODE_BREAK;
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}
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}
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}
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return DECODE_OK;
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}
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/* xing stuff stolen from alsaplayer */
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# define XING_MAGIC (('X' << 24) | ('i' << 16) | ('n' << 8) | 'g')
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struct xing {
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long flags; /* valid fields (see below) */
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unsigned long frames; /* total number of frames */
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unsigned long bytes; /* total number of bytes */
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unsigned char toc[100]; /* 100-point seek table */
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long scale; /* ?? */
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};
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enum {
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XING_FRAMES = 0x00000001L,
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XING_BYTES = 0x00000002L,
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XING_TOC = 0x00000004L,
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XING_SCALE = 0x00000008L
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};
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int parse_xing(struct xing *xing, struct mad_bitptr ptr, unsigned int bitlen)
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{
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if (bitlen < 64 || mad_bit_read(&ptr, 32) != XING_MAGIC) goto fail;
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xing->flags = mad_bit_read(&ptr, 32);
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bitlen -= 64;
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if (xing->flags & XING_FRAMES) {
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if (bitlen < 32) goto fail;
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xing->frames = mad_bit_read(&ptr, 32);
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bitlen -= 32;
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}
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if (xing->flags & XING_BYTES) {
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if (bitlen < 32) goto fail;
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xing->bytes = mad_bit_read(&ptr, 32);
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bitlen -= 32;
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}
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if (xing->flags & XING_TOC) {
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int i;
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if (bitlen < 800) goto fail;
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for (i = 0; i < 100; ++i) xing->toc[i] = mad_bit_read(&ptr, 8);
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bitlen -= 800;
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}
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if (xing->flags & XING_SCALE) {
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if (bitlen < 32) goto fail;
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xing->scale = mad_bit_read(&ptr, 32);
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bitlen -= 32;
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}
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return 1;
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fail:
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xing->flags = 0;
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return 0;
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}
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int decodeFirstFrame(mp3DecodeData * data) {
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struct stat filestat;
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struct xing xing;
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int ret;
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int skip;
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memset(&xing,0,sizeof(struct xing));
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xing.flags = 0;
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while(1) {
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skip = 0;
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while((ret = decodeNextFrameHeader(data))==DECODE_CONT);
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if(ret==DECODE_SKIP) skip = 1;
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else if(ret==DECODE_BREAK) return -1;
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while((ret = decodeNextFrame(data))==DECODE_CONT);
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if(ret==DECODE_BREAK) return -1;
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if(!skip && ret==DECODE_OK) break;
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}
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if(parse_xing(&xing,data->stream.anc_ptr,data->stream.anc_bitlen)) {
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if(xing.flags & XING_FRAMES) {
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mad_timer_t duration = data->frame.header.duration;
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mad_timer_multiply(&duration,xing.frames);
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data->muteFrame = 1;
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data->totalTime = ((float)mad_timer_count(duration,
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MAD_UNITS_MILLISECONDS))/1000;
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data->maxFrames = xing.frames;
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}
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}
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else {
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size_t offset = data->currentOffset;
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mad_timer_t duration = data->frame.header.duration;
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float frameTime = ((float)mad_timer_count(duration,
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MAD_UNITS_MILLISECONDS))/1000;
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fstat(fileno(data->fp),&filestat);
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if(data->stream.this_frame!=NULL) {
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offset-= data->stream.bufend-data->stream.this_frame;
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}
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else {
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offset-= data->stream.bufend-data->stream.buffer;
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}
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data->totalTime = ((filestat.st_size-offset)*8.0)/
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(data->frame).header.bitrate;
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data->maxFrames = data->totalTime/frameTime+FRAMES_CUSHION;
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}
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data->frameOffset = malloc(sizeof(long)*data->maxFrames);
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data->times = malloc(sizeof(mad_timer_t)*data->maxFrames);
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return 0;
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}
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void mp3DecodeDataFinalize(mp3DecodeData * data) {
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mad_synth_finish(&data->synth);
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mad_frame_finish(&data->frame);
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mad_stream_finish(&data->stream);
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if(data->fp) fclose(data->fp);
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if(data->frameOffset) free(data->frameOffset);
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if(data->times) free(data->times);
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}
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/* this is primarily used for getting total time for tags */
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int getMp3TotalTime(char * file) {
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mp3DecodeData data;
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int ret;
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while(!(data.fp = fopen(file,"r")) && errno==EINTR);
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if(!data.fp) return -1;
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initMp3DecodeData(&data);
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if(decodeFirstFrame(&data)<0) ret = -1;
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else ret = data.totalTime+0.5;
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mp3DecodeDataFinalize(&data);
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return ret;
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}
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int openMp3(char * file, mp3DecodeData * data) {
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if((data->fp = fopen(file,"r"))<=0) {
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ERROR("problems opening \"%s\"\n",file);
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return -1;
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}
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initMp3DecodeData(data);
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if(decodeFirstFrame(data)<0) {
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mp3DecodeDataFinalize(data);
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return -1;
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}
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return 0;
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}
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int mp3ChildSendData(mp3DecodeData * data, Buffer * cb, DecoderControl * dc) {
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while(cb->begin==cb->end && cb->wrap && !dc->stop && !dc->seek)
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my_usleep(10000);
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if(dc->stop) return -1;
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/* just for now, so it doesn't hang */
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if(dc->seek) return 0;
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/* be sure to remove this! */
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memcpy(cb->chunks+cb->end*CHUNK_SIZE,data->outputBuffer,CHUNK_SIZE);
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cb->chunkSize[cb->end] = data->outputPtr-data->outputBuffer;
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cb->bitRate[cb->end] = data->bitRate/1000;
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cb->times[cb->end] = data->elapsedTime;
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cb->end++;
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if(cb->end>=buffered_chunks) {
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cb->end = 0;
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cb->wrap = 1;
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}
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return 0;
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}
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int mp3Read(mp3DecodeData * data, Buffer * cb, DecoderControl * dc) {
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static int i;
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static int ret;
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static struct audio_dither dither;
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static int skip;
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if(data->currentFrame>=data->highestFrame &&
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data->highestFrame<data->maxFrames)
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{
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mad_timer_add(&data->timer,(data->frame).header.duration);
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data->bitRate = (data->frame).header.bitrate;
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data->frameOffset[data->currentFrame] =
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data->currentOffset;
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if(data->stream.this_frame!=NULL) {
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data->frameOffset[data->currentFrame]-=
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data->stream.bufend-
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data->stream.this_frame;
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}
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else {
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data->frameOffset[data->currentFrame]-=
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data->stream.bufend-data->stream.buffer;
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}
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data->times[data->currentFrame] = data->timer;
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data->highestFrame++;
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}
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else data->timer = data->times[data->currentFrame];
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data->currentFrame++;
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data->elapsedTime = ((float)mad_timer_count(data->timer,MAD_UNITS_MILLISECONDS))/1000;
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if(data->muteFrame) {
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if(!dc->seek) data->muteFrame = 0;
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else if(dc->seekWhere<=data->elapsedTime) {
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data->muteFrame = 0;
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dc->seek = 0;
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}
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}
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else {
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mad_synth_frame(&data->synth,&data->frame);
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for(i=0;i<(data->synth).pcm.length;i++) {
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mpd_sint16 * sample;
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sample = (mpd_sint16 *)data->outputPtr;
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*sample = (mpd_sint16) audio_linear_dither(16,
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(data->synth).pcm.samples[0][i],
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&dither);
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data->outputPtr+=2;
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if(MAD_NCHANNELS(&(data->frame).header)==2) {
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sample = (mpd_sint16 *)data->outputPtr;
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*sample = (mpd_sint16) audio_linear_dither(16,
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(data->synth).pcm.samples[1][i],
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&dither);
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data->outputPtr+=2;
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}
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if(data->outputPtr==data->outputBufferEnd) {
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if(mp3ChildSendData(data,cb,dc)<0) {
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data->flush = 0;
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return DECODE_BREAK;
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}
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data->outputPtr = data->outputBuffer;
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if(dc->seek) break;
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}
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}
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if(dc->seek) {
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long i = 0;
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cb->wrap = 0;
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cb->end = cb->begin;
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data->muteFrame = 1;
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while(i<data->highestFrame && dc->seekWhere >
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((float)mad_timer_count(data->times[i],
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MAD_UNITS_MILLISECONDS))/1000)
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{
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i++;
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}
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if(i<data->highestFrame) {
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data->currentFrame = i;
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fillMp3InputBuffer(data,data->frameOffset[i]);
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data->muteFrame = 0;
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dc->seek = 0;
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}
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}
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}
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while(1) {
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skip = 0;
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while((ret = decodeNextFrameHeader(data))==DECODE_CONT);
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if(ret==DECODE_SKIP) skip = 1;
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else if(ret==DECODE_BREAK) break;
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if(!data->muteFrame) {
|
|
while((ret = decodeNextFrame(data))==DECODE_CONT);
|
|
if(ret==DECODE_BREAK) break;
|
|
}
|
|
if(!skip && ret==DECODE_OK) break;
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
void initAudioFormatFromMp3DecodeData(mp3DecodeData * data, AudioFormat * af) {
|
|
af->bits = 16;
|
|
af->sampleRate = (data->frame).header.samplerate;
|
|
af->channels = MAD_NCHANNELS(&(data->frame).header);
|
|
}
|
|
|
|
int mp3_decode(Buffer * cb, AudioFormat * af, DecoderControl * dc) {
|
|
mp3DecodeData data;
|
|
|
|
if(openMp3(dc->file,&data) < 0) {
|
|
ERROR("Input does not appear to be a mp3 bit stream.\n");
|
|
return -1;
|
|
}
|
|
|
|
initAudioFormatFromMp3DecodeData(&data,af);
|
|
cb->totalTime = data.totalTime;
|
|
dc->start = 0;
|
|
dc->state = DECODE_STATE_DECODE;
|
|
|
|
while(mp3Read(&data,cb,dc)!=DECODE_BREAK);
|
|
/* send last little bit if not dc->stop */
|
|
if(data.outputPtr!=data.outputBuffer && data.flush) {
|
|
mp3ChildSendData(&data,cb,dc);
|
|
}
|
|
|
|
mp3DecodeDataFinalize(&data);
|
|
|
|
if(dc->seek) dc->seek = 0;
|
|
|
|
if(dc->stop) {
|
|
dc->state = DECODE_STATE_STOP;
|
|
dc->stop = 0;
|
|
}
|
|
else dc->state = DECODE_STATE_STOP;
|
|
|
|
return 0;
|
|
}
|
|
|
|
#endif
|
|
/* vim:set shiftwidth=4 tabstop=8 expandtab: */
|