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  • /*
     * AC3 parser
     * Copyright (c) 2003 Fabrice Bellard.
     * Copyright (c) 2003 Michael Niedermayer.
     *
     * This file is part of FFmpeg.
     *
     * FFmpeg is free software; you can redistribute it and/or
     * modify it under the terms of the GNU Lesser General Public
     * License as published by the Free Software Foundation; either
     * version 2.1 of the License, or (at your option) any later version.
     *
     * FFmpeg 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
     * Lesser General Public License for more details.
     *
     * You should have received a copy of the GNU Lesser General Public
     * License along with FFmpeg; if not, write to the Free Software
     * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
     */
    
    #include "parser.h"
    #include "ac3_parser.h"
    #include "aac_ac3_parser.h"
    #include "bitstream.h"
    
    
    #define AC3_HEADER_SIZE 7
    
    
    static const uint8_t eac3_blocks[4] = {
        1, 2, 3, 6
    };
    
    
    int ff_ac3_parse_header(const uint8_t buf[7], AC3HeaderInfo *hdr)
    {
        GetBitContext gbc;
    
        memset(hdr, 0, sizeof(*hdr));
    
        init_get_bits(&gbc, buf, 54);
    
        hdr->sync_word = get_bits(&gbc, 16);
        if(hdr->sync_word != 0x0B77)
            return -1;
    
        /* read ahead to bsid to make sure this is AC-3, not E-AC-3 */
        hdr->bsid = show_bits_long(&gbc, 29) & 0x1F;
        if(hdr->bsid > 10)
            return -2;
    
        hdr->crc1 = get_bits(&gbc, 16);
        hdr->fscod = get_bits(&gbc, 2);
        if(hdr->fscod == 3)
            return -3;
    
        hdr->frmsizecod = get_bits(&gbc, 6);
        if(hdr->frmsizecod > 37)
            return -4;
    
        skip_bits(&gbc, 5); // skip bsid, already got it
    
        hdr->bsmod = get_bits(&gbc, 3);
        hdr->acmod = get_bits(&gbc, 3);
        if((hdr->acmod & 1) && hdr->acmod != 1) {
            hdr->cmixlev = get_bits(&gbc, 2);
        }
        if(hdr->acmod & 4) {
            hdr->surmixlev = get_bits(&gbc, 2);
        }
        if(hdr->acmod == 2) {
            hdr->dsurmod = get_bits(&gbc, 2);
        }
        hdr->lfeon = get_bits1(&gbc);
    
        hdr->halfratecod = FFMAX(hdr->bsid, 8) - 8;
        hdr->sample_rate = ff_ac3_freqs[hdr->fscod] >> hdr->halfratecod;
        hdr->bit_rate = (ff_ac3_bitratetab[hdr->frmsizecod>>1] * 1000) >> hdr->halfratecod;
        hdr->channels = ff_ac3_channels[hdr->acmod] + hdr->lfeon;
        hdr->frame_size = ff_ac3_frame_sizes[hdr->frmsizecod][hdr->fscod] * 2;
    
        return 0;
    }
    
    static int ac3_sync(const uint8_t *buf, int *channels, int *sample_rate,
                        int *bit_rate, int *samples)
    {
        int err;
        unsigned int fscod, acmod, bsid, lfeon;
        unsigned int strmtyp, substreamid, frmsiz, fscod2, numblkscod;
        GetBitContext bits;
        AC3HeaderInfo hdr;
    
        err = ff_ac3_parse_header(buf, &hdr);
    
        if(err < 0 && err != -2)
            return 0;
    
        bsid = hdr.bsid;
        if(bsid <= 10) {             /* Normal AC-3 */
            *sample_rate = hdr.sample_rate;
            *bit_rate = hdr.bit_rate;
            *channels = hdr.channels;
            *samples = AC3_FRAME_SIZE;
            return hdr.frame_size;
        } else if (bsid > 10 && bsid <= 16) { /* Enhanced AC-3 */
            init_get_bits(&bits, &buf[2], (AC3_HEADER_SIZE-2) * 8);
            strmtyp = get_bits(&bits, 2);
            substreamid = get_bits(&bits, 3);
    
            if (strmtyp != 0 || substreamid != 0)
                return 0;   /* Currently don't support additional streams */
    
            frmsiz = get_bits(&bits, 11) + 1;
            fscod = get_bits(&bits, 2);
            if (fscod == 3) {
                fscod2 = get_bits(&bits, 2);
                numblkscod = 3;
    
                if(fscod2 == 3)
                    return 0;
    
                *sample_rate = ff_ac3_freqs[fscod2] / 2;
            } else {
                numblkscod = get_bits(&bits, 2);
    
                *sample_rate = ff_ac3_freqs[fscod];
            }
    
            acmod = get_bits(&bits, 3);
            lfeon = get_bits1(&bits);
    
            *samples = eac3_blocks[numblkscod] * 256;
            *bit_rate = frmsiz * (*sample_rate) * 16 / (*samples);
            *channels = ff_ac3_channels[acmod] + lfeon;
    
            return frmsiz * 2;
        }
    
        /* Unsupported bitstream version */
        return 0;
    }
    
    static int ac3_parse_init(AVCodecParserContext *s1)
    {
        AC3ParseContext *s = s1->priv_data;
        s->inbuf_ptr = s->inbuf;
        s->header_size = AC3_HEADER_SIZE;
        s->sync = ac3_sync;
        return 0;
    }
    
    
    AVCodecParser ac3_parser = {
        { CODEC_ID_AC3 },
        sizeof(AC3ParseContext),
        ac3_parse_init,
        ac3_parse,
        NULL,
    };