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https://github.com/UberGames/lilium-voyager.git
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504 lines
12 KiB
C
504 lines
12 KiB
C
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/*
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* libmad - MPEG audio decoder library
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* Copyright (C) 2000-2004 Underbit Technologies, Inc.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*
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* $Id: frame.c,v 1.29 2004/02/04 22:59:19 rob Exp $
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*/
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# if 1 //ifdef HAVE_CONFIG_H
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# include "config.h"
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# endif
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# include "global.h"
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# include <stdlib.h>
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# include "bit.h"
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# include "stream.h"
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# include "frame.h"
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# include "timer.h"
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# include "layer12.h"
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# include "layer3.h"
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static
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unsigned long const bitrate_table[5][15] = {
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/* MPEG-1 */
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{ 0, 32000, 64000, 96000, 128000, 160000, 192000, 224000, /* Layer I */
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256000, 288000, 320000, 352000, 384000, 416000, 448000 },
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{ 0, 32000, 48000, 56000, 64000, 80000, 96000, 112000, /* Layer II */
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128000, 160000, 192000, 224000, 256000, 320000, 384000 },
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{ 0, 32000, 40000, 48000, 56000, 64000, 80000, 96000, /* Layer III */
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112000, 128000, 160000, 192000, 224000, 256000, 320000 },
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/* MPEG-2 LSF */
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{ 0, 32000, 48000, 56000, 64000, 80000, 96000, 112000, /* Layer I */
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128000, 144000, 160000, 176000, 192000, 224000, 256000 },
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{ 0, 8000, 16000, 24000, 32000, 40000, 48000, 56000, /* Layers */
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64000, 80000, 96000, 112000, 128000, 144000, 160000 } /* II & III */
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};
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static
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unsigned int const samplerate_table[3] = { 44100, 48000, 32000 };
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static
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int (*const decoder_table[3])(struct mad_stream *, struct mad_frame *) = {
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mad_layer_I,
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mad_layer_II,
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mad_layer_III
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};
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/*
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* NAME: header->init()
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* DESCRIPTION: initialize header struct
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*/
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void mad_header_init(struct mad_header *header)
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{
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header->layer = 0;
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header->mode = 0;
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header->mode_extension = 0;
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header->emphasis = 0;
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header->bitrate = 0;
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header->samplerate = 0;
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header->crc_check = 0;
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header->crc_target = 0;
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header->flags = 0;
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header->private_bits = 0;
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header->duration = mad_timer_zero;
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}
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/*
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* NAME: frame->init()
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* DESCRIPTION: initialize frame struct
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*/
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void mad_frame_init(struct mad_frame *frame)
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{
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mad_header_init(&frame->header);
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frame->options = 0;
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frame->overlap = 0;
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mad_frame_mute(frame);
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}
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/*
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* NAME: frame->finish()
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* DESCRIPTION: deallocate any dynamic memory associated with frame
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*/
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void mad_frame_finish(struct mad_frame *frame)
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{
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mad_header_finish(&frame->header);
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if (frame->overlap) {
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free(frame->overlap);
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frame->overlap = 0;
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}
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}
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/*
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* NAME: decode_header()
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* DESCRIPTION: read header data and following CRC word
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*/
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static
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int decode_header(struct mad_header *header, struct mad_stream *stream)
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{
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unsigned int index;
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header->flags = 0;
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header->private_bits = 0;
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/* header() */
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/* syncword */
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mad_bit_skip(&stream->ptr, 11);
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/* MPEG 2.5 indicator (really part of syncword) */
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if (mad_bit_read(&stream->ptr, 1) == 0)
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header->flags |= MAD_FLAG_MPEG_2_5_EXT;
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/* ID */
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if (mad_bit_read(&stream->ptr, 1) == 0)
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header->flags |= MAD_FLAG_LSF_EXT;
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else if (header->flags & MAD_FLAG_MPEG_2_5_EXT) {
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stream->error = MAD_ERROR_LOSTSYNC;
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return -1;
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}
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/* layer */
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header->layer = 4 - mad_bit_read(&stream->ptr, 2);
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if (header->layer == 4) {
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stream->error = MAD_ERROR_BADLAYER;
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return -1;
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}
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/* protection_bit */
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if (mad_bit_read(&stream->ptr, 1) == 0) {
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header->flags |= MAD_FLAG_PROTECTION;
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header->crc_check = mad_bit_crc(stream->ptr, 16, 0xffff);
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}
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/* bitrate_index */
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index = mad_bit_read(&stream->ptr, 4);
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if (index == 15) {
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stream->error = MAD_ERROR_BADBITRATE;
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return -1;
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}
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if (header->flags & MAD_FLAG_LSF_EXT)
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header->bitrate = bitrate_table[3 + (header->layer >> 1)][index];
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else
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header->bitrate = bitrate_table[header->layer - 1][index];
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/* sampling_frequency */
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index = mad_bit_read(&stream->ptr, 2);
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if (index == 3) {
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stream->error = MAD_ERROR_BADSAMPLERATE;
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return -1;
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}
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header->samplerate = samplerate_table[index];
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if (header->flags & MAD_FLAG_LSF_EXT) {
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header->samplerate /= 2;
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if (header->flags & MAD_FLAG_MPEG_2_5_EXT)
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header->samplerate /= 2;
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}
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/* padding_bit */
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if (mad_bit_read(&stream->ptr, 1))
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header->flags |= MAD_FLAG_PADDING;
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/* private_bit */
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if (mad_bit_read(&stream->ptr, 1))
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header->private_bits |= MAD_PRIVATE_HEADER;
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/* mode */
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header->mode = 3 - mad_bit_read(&stream->ptr, 2);
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/* mode_extension */
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header->mode_extension = mad_bit_read(&stream->ptr, 2);
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/* copyright */
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if (mad_bit_read(&stream->ptr, 1))
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header->flags |= MAD_FLAG_COPYRIGHT;
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/* original/copy */
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if (mad_bit_read(&stream->ptr, 1))
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header->flags |= MAD_FLAG_ORIGINAL;
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/* emphasis */
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header->emphasis = mad_bit_read(&stream->ptr, 2);
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# if defined(OPT_STRICT)
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/*
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* ISO/IEC 11172-3 says this is a reserved emphasis value, but
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* streams exist which use it anyway. Since the value is not important
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* to the decoder proper, we allow it unless OPT_STRICT is defined.
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*/
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if (header->emphasis == MAD_EMPHASIS_RESERVED) {
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stream->error = MAD_ERROR_BADEMPHASIS;
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return -1;
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}
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# endif
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/* error_check() */
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/* crc_check */
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if (header->flags & MAD_FLAG_PROTECTION)
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header->crc_target = mad_bit_read(&stream->ptr, 16);
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return 0;
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}
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/*
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* NAME: free_bitrate()
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* DESCRIPTION: attempt to discover the bitstream's free bitrate
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*/
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static
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int free_bitrate(struct mad_stream *stream, struct mad_header const *header)
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{
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struct mad_bitptr keep_ptr;
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unsigned long rate = 0;
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unsigned int pad_slot, slots_per_frame;
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unsigned char const *ptr = 0;
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keep_ptr = stream->ptr;
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pad_slot = (header->flags & MAD_FLAG_PADDING) ? 1 : 0;
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slots_per_frame = (header->layer == MAD_LAYER_III &&
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(header->flags & MAD_FLAG_LSF_EXT)) ? 72 : 144;
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while (mad_stream_sync(stream) == 0) {
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struct mad_stream peek_stream;
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struct mad_header peek_header;
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peek_stream = *stream;
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peek_header = *header;
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if (decode_header(&peek_header, &peek_stream) == 0 &&
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peek_header.layer == header->layer &&
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peek_header.samplerate == header->samplerate) {
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unsigned int N;
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ptr = mad_bit_nextbyte(&stream->ptr);
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N = ptr - stream->this_frame;
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if (header->layer == MAD_LAYER_I) {
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rate = (unsigned long) header->samplerate *
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(N - 4 * pad_slot + 4) / 48 / 1000;
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}
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else {
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rate = (unsigned long) header->samplerate *
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(N - pad_slot + 1) / slots_per_frame / 1000;
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}
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if (rate >= 8)
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break;
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}
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mad_bit_skip(&stream->ptr, 8);
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}
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stream->ptr = keep_ptr;
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if (rate < 8 || (header->layer == MAD_LAYER_III && rate > 640)) {
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stream->error = MAD_ERROR_LOSTSYNC;
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return -1;
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}
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stream->freerate = rate * 1000;
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return 0;
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}
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/*
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* NAME: header->decode()
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* DESCRIPTION: read the next frame header from the stream
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*/
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int mad_header_decode(struct mad_header *header, struct mad_stream *stream)
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{
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register unsigned char const *ptr, *end;
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unsigned int pad_slot, N;
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ptr = stream->next_frame;
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end = stream->bufend;
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if (ptr == 0) {
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stream->error = MAD_ERROR_BUFPTR;
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goto fail;
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}
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/* stream skip */
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if (stream->skiplen) {
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if (!stream->sync)
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ptr = stream->this_frame;
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if (end - ptr < stream->skiplen) {
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stream->skiplen -= end - ptr;
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stream->next_frame = end;
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stream->error = MAD_ERROR_BUFLEN;
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goto fail;
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}
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ptr += stream->skiplen;
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stream->skiplen = 0;
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stream->sync = 1;
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}
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sync:
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/* synchronize */
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if (stream->sync) {
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if (end - ptr < MAD_BUFFER_GUARD) {
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stream->next_frame = ptr;
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stream->error = MAD_ERROR_BUFLEN;
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goto fail;
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}
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else if (!(ptr[0] == 0xff && (ptr[1] & 0xe0) == 0xe0)) {
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/* mark point where frame sync word was expected */
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stream->this_frame = ptr;
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stream->next_frame = ptr + 1;
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stream->error = MAD_ERROR_LOSTSYNC;
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goto fail;
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}
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}
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else {
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mad_bit_init(&stream->ptr, ptr);
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if (mad_stream_sync(stream) == -1) {
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if (end - stream->next_frame >= MAD_BUFFER_GUARD)
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stream->next_frame = end - MAD_BUFFER_GUARD;
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stream->error = MAD_ERROR_BUFLEN;
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goto fail;
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}
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ptr = mad_bit_nextbyte(&stream->ptr);
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}
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/* begin processing */
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stream->this_frame = ptr;
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stream->next_frame = ptr + 1; /* possibly bogus sync word */
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mad_bit_init(&stream->ptr, stream->this_frame);
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if (decode_header(header, stream) == -1)
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goto fail;
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/* calculate frame duration */
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mad_timer_set(&header->duration, 0,
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32 * MAD_NSBSAMPLES(header), header->samplerate);
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/* calculate free bit rate */
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if (header->bitrate == 0) {
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if ((stream->freerate == 0 || !stream->sync ||
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(header->layer == MAD_LAYER_III && stream->freerate > 640000)) &&
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free_bitrate(stream, header) == -1)
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goto fail;
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header->bitrate = stream->freerate;
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header->flags |= MAD_FLAG_FREEFORMAT;
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}
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/* calculate beginning of next frame */
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pad_slot = (header->flags & MAD_FLAG_PADDING) ? 1 : 0;
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if (header->layer == MAD_LAYER_I)
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N = ((12 * header->bitrate / header->samplerate) + pad_slot) * 4;
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else {
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unsigned int slots_per_frame;
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slots_per_frame = (header->layer == MAD_LAYER_III &&
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(header->flags & MAD_FLAG_LSF_EXT)) ? 72 : 144;
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N = (slots_per_frame * header->bitrate / header->samplerate) + pad_slot;
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}
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/* verify there is enough data left in buffer to decode this frame */
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if (N + MAD_BUFFER_GUARD > end - stream->this_frame) {
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stream->next_frame = stream->this_frame;
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stream->error = MAD_ERROR_BUFLEN;
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goto fail;
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}
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stream->next_frame = stream->this_frame + N;
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if (!stream->sync) {
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/* check that a valid frame header follows this frame */
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ptr = stream->next_frame;
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if (!(ptr[0] == 0xff && (ptr[1] & 0xe0) == 0xe0)) {
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ptr = stream->next_frame = stream->this_frame + 1;
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goto sync;
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}
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stream->sync = 1;
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}
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header->flags |= MAD_FLAG_INCOMPLETE;
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return 0;
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fail:
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stream->sync = 0;
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return -1;
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}
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/*
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* NAME: frame->decode()
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* DESCRIPTION: decode a single frame from a bitstream
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*/
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int mad_frame_decode(struct mad_frame *frame, struct mad_stream *stream)
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{
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frame->options = stream->options;
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/* header() */
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/* error_check() */
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if (!(frame->header.flags & MAD_FLAG_INCOMPLETE) &&
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mad_header_decode(&frame->header, stream) == -1)
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goto fail;
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/* audio_data() */
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frame->header.flags &= ~MAD_FLAG_INCOMPLETE;
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if (decoder_table[frame->header.layer - 1](stream, frame) == -1) {
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if (!MAD_RECOVERABLE(stream->error))
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stream->next_frame = stream->this_frame;
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goto fail;
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|
}
|
||
|
|
||
|
/* ancillary_data() */
|
||
|
|
||
|
if (frame->header.layer != MAD_LAYER_III) {
|
||
|
struct mad_bitptr next_frame;
|
||
|
|
||
|
mad_bit_init(&next_frame, stream->next_frame);
|
||
|
|
||
|
stream->anc_ptr = stream->ptr;
|
||
|
stream->anc_bitlen = mad_bit_length(&stream->ptr, &next_frame);
|
||
|
|
||
|
mad_bit_finish(&next_frame);
|
||
|
}
|
||
|
|
||
|
return 0;
|
||
|
|
||
|
fail:
|
||
|
stream->anc_bitlen = 0;
|
||
|
return -1;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* NAME: frame->mute()
|
||
|
* DESCRIPTION: zero all subband values so the frame becomes silent
|
||
|
*/
|
||
|
void mad_frame_mute(struct mad_frame *frame)
|
||
|
{
|
||
|
unsigned int s, sb;
|
||
|
|
||
|
for (s = 0; s < 36; ++s) {
|
||
|
for (sb = 0; sb < 32; ++sb) {
|
||
|
frame->sbsample[0][s][sb] =
|
||
|
frame->sbsample[1][s][sb] = 0;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
if (frame->overlap) {
|
||
|
for (s = 0; s < 18; ++s) {
|
||
|
for (sb = 0; sb < 32; ++sb) {
|
||
|
(*frame->overlap)[0][sb][s] =
|
||
|
(*frame->overlap)[1][sb][s] = 0;
|
||
|
}
|
||
|
}
|
||
|
}
|
||
|
}
|