mirror of
https://github.com/ZLMediaKit/ZLMediaKit.git
synced 2024-11-30 07:26:53 +08:00
137 lines
5.6 KiB
C++
137 lines
5.6 KiB
C++
/*
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* Copyright (c) 2016 The ZLMediaKit project authors. All Rights Reserved.
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*
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* This file is part of ZLMediaKit(https://github.com/xiongziliang/ZLMediaKit).
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*
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* Use of this source code is governed by MIT license that can be found in the
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* LICENSE file in the root of the source tree. All contributing project authors
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* may be found in the AUTHORS file in the root of the source tree.
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*/
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#include "AAC.h"
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namespace mediakit{
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class AdtsHeader{
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public:
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unsigned int syncword = 0; //12 bslbf 同步字The bit string ‘1111 1111 1111’,说明一个ADTS帧的开始
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unsigned int id; //1 bslbf MPEG 标示符, 设置为1
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unsigned int layer; //2 uimsbf Indicates which layer is used. Set to ‘00’
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unsigned int protection_absent; //1 bslbf 表示是否误码校验
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unsigned int profile; //2 uimsbf 表示使用哪个级别的AAC,如01 Low Complexity(LC)--- AACLC
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unsigned int sf_index; //4 uimsbf 表示使用的采样率下标
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unsigned int private_bit; //1 bslbf
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unsigned int channel_configuration; //3 uimsbf 表示声道数
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unsigned int original; //1 bslbf
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unsigned int home; //1 bslbf
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//下面的为改变的参数即每一帧都不同
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unsigned int copyright_identification_bit; //1 bslbf
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unsigned int copyright_identification_start; //1 bslbf
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unsigned int aac_frame_length; // 13 bslbf 一个ADTS帧的长度包括ADTS头和raw data block
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unsigned int adts_buffer_fullness; //11 bslbf 0x7FF 说明是码率可变的码流
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//no_raw_data_blocks_in_frame 表示ADTS帧中有number_of_raw_data_blocks_in_frame + 1个AAC原始帧.
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//所以说number_of_raw_data_blocks_in_frame == 0
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//表示说ADTS帧中有一个AAC数据块并不是说没有。(一个AAC原始帧包含一段时间内1024个采样及相关数据)
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unsigned int no_raw_data_blocks_in_frame; //2 uimsfb
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};
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static void dumpAdtsHeader(const AdtsHeader &hed, uint8_t *out) {
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out[0] = (hed.syncword >> 4 & 0xFF); //8bit
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out[1] = (hed.syncword << 4 & 0xF0); //4 bit
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out[1] |= (hed.id << 3 & 0x08); //1 bit
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out[1] |= (hed.layer << 1 & 0x06); //2bit
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out[1] |= (hed.protection_absent & 0x01); //1 bit
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out[2] = (hed.profile << 6 & 0xC0); // 2 bit
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out[2] |= (hed.sf_index << 2 & 0x3C); //4bit
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out[2] |= (hed.private_bit << 1 & 0x02); //1 bit
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out[2] |= (hed.channel_configuration >> 2 & 0x03); //1 bit
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out[3] = (hed.channel_configuration << 6 & 0xC0); // 2 bit
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out[3] |= (hed.original << 5 & 0x20); //1 bit
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out[3] |= (hed.home << 4 & 0x10); //1 bit
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out[3] |= (hed.copyright_identification_bit << 3 & 0x08); //1 bit
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out[3] |= (hed.copyright_identification_start << 2 & 0x04); //1 bit
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out[3] |= (hed.aac_frame_length >> 11 & 0x03); //2 bit
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out[4] = (hed.aac_frame_length >> 3 & 0xFF); //8 bit
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out[5] = (hed.aac_frame_length << 5 & 0xE0); //3 bit
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out[5] |= (hed.adts_buffer_fullness >> 6 & 0x1F); //5 bit
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out[6] = (hed.adts_buffer_fullness << 2 & 0xFC); //6 bit
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out[6] |= (hed.no_raw_data_blocks_in_frame & 0x03); //2 bit
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}
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static void parseAacConfig(const string &config, AdtsHeader &adts) {
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uint8_t cfg1 = config[0];
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uint8_t cfg2 = config[1];
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int audioObjectType;
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int sampling_frequency_index;
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int channel_configuration;
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audioObjectType = cfg1 >> 3;
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sampling_frequency_index = ((cfg1 & 0x07) << 1) | (cfg2 >> 7);
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channel_configuration = (cfg2 & 0x7F) >> 3;
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adts.syncword = 0x0FFF;
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adts.id = 0;
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adts.layer = 0;
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adts.protection_absent = 1;
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adts.profile = audioObjectType - 1;
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adts.sf_index = sampling_frequency_index;
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adts.private_bit = 0;
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adts.channel_configuration = channel_configuration;
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adts.original = 0;
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adts.home = 0;
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adts.copyright_identification_bit = 0;
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adts.copyright_identification_start = 0;
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adts.aac_frame_length = 7;
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adts.adts_buffer_fullness = 2047;
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adts.no_raw_data_blocks_in_frame = 0;
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}
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string makeAacConfig(const uint8_t *hex){
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if (!(hex[0] == 0xFF && (hex[1] & 0xF0) == 0xF0)) {
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return "";
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}
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// Get and check the 'profile':
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unsigned char profile = (hex[2] & 0xC0) >> 6; // 2 bits
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if (profile == 3) {
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return "";
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}
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// Get and check the 'sampling_frequency_index':
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unsigned char sampling_frequency_index = (hex[2] & 0x3C) >> 2; // 4 bits
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if (samplingFrequencyTable[sampling_frequency_index] == 0) {
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return "";
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}
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// Get and check the 'channel_configuration':
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unsigned char channel_configuration = ((hex[2] & 0x01) << 2) | ((hex[3] & 0xC0) >> 6); // 3 bits
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unsigned char audioSpecificConfig[2];
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unsigned char const audioObjectType = profile + 1;
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audioSpecificConfig[0] = (audioObjectType << 3) | (sampling_frequency_index >> 1);
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audioSpecificConfig[1] = (sampling_frequency_index << 7) | (channel_configuration << 3);
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return string((char *)audioSpecificConfig,2);
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}
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void dumpAacConfig(const string &config, int length, uint8_t *out){
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AdtsHeader header;
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parseAacConfig(config, header);
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header.aac_frame_length = length;
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dumpAdtsHeader(header, out);
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}
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void parseAacConfig(const string &config, int &samplerate, int &channels){
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AdtsHeader header;
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parseAacConfig(config, header);
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samplerate = samplingFrequencyTable[header.sf_index];
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channels = header.channel_configuration;
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}
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Sdp::Ptr AACTrack::getSdp() {
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if(!ready()){
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WarnL << getCodecName() << " Track未准备好";
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return nullptr;
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}
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return std::make_shared<AACSdp>(getAacCfg(),getAudioSampleRate(), getAudioChannel());
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}
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}//namespace mediakit
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