2018-10-18 23:48:00 +08:00
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//
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// Created by xzl on 2018/10/18.
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//
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2018-10-21 21:21:14 +08:00
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#include "AACRtpCodec.h"
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2018-10-18 23:48:00 +08:00
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2018-10-21 21:21:14 +08:00
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void AACRtpCodec::inputFame(const Frame::Ptr &frame, bool key_pos) {
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2018-10-18 23:48:00 +08:00
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RtpCodec::inputFame(frame, key_pos);
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GET_CONFIG_AND_REGISTER(uint32_t,cycleMS,Config::Rtp::kCycleMS);
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auto uiStamp = frame->stamp();
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auto pcData = frame->data();
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auto iLen = frame->size();
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uiStamp %= cycleMS;
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char *ptr = (char *) pcData;
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int iSize = iLen;
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while (iSize > 0 ) {
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if (iSize <= m_ui32MtuSize - 20) {
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m_aucSectionBuf[0] = 0;
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m_aucSectionBuf[1] = 16;
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m_aucSectionBuf[2] = iLen >> 5;
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m_aucSectionBuf[3] = (iLen & 0x1F) << 3;
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memcpy(m_aucSectionBuf + 4, ptr, iSize);
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makeAACRtp(m_aucSectionBuf, iSize + 4, true, uiStamp);
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break;
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}
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m_aucSectionBuf[0] = 0;
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m_aucSectionBuf[1] = 16;
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m_aucSectionBuf[2] = (iLen) >> 5;
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m_aucSectionBuf[3] = (iLen & 0x1F) << 3;
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memcpy(m_aucSectionBuf + 4, ptr, m_ui32MtuSize - 20);
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makeAACRtp(m_aucSectionBuf, m_ui32MtuSize - 16, false, uiStamp);
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ptr += (m_ui32MtuSize - 20);
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iSize -= (m_ui32MtuSize - 20);
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}
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}
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2018-10-21 21:21:14 +08:00
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void AACRtpCodec::makeAACRtp(const void *pData, unsigned int uiLen, bool bMark, uint32_t uiStamp) {
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2018-10-18 23:48:00 +08:00
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uint16_t u16RtpLen = uiLen + 12;
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m_ui32TimeStamp = (m_ui32SampleRate / 1000) * uiStamp;
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uint32_t ts = htonl(m_ui32TimeStamp);
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uint16_t sq = htons(m_ui16Sequence);
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uint32_t sc = htonl(m_ui32Ssrc);
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auto pRtppkt = obtainRtp();
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auto &rtppkt = *(pRtppkt.get());
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unsigned char *pucRtp = rtppkt.payload;
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pucRtp[0] = '$';
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pucRtp[1] = m_ui8Interleaved;
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pucRtp[2] = u16RtpLen >> 8;
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pucRtp[3] = u16RtpLen & 0x00FF;
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pucRtp[4] = 0x80;
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pucRtp[5] = (bMark << 7) | m_ui8PlayloadType;
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memcpy(&pucRtp[6], &sq, 2);
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memcpy(&pucRtp[8], &ts, 4);
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//ssrc
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memcpy(&pucRtp[12], &sc, 4);
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//playload
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memcpy(&pucRtp[16], pData, uiLen);
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rtppkt.PT = m_ui8PlayloadType;
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rtppkt.interleaved = m_ui8Interleaved;
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rtppkt.mark = bMark;
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rtppkt.length = uiLen + 16;
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rtppkt.sequence = m_ui16Sequence;
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rtppkt.timeStamp = m_ui32TimeStamp;
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rtppkt.ssrc = m_ui32Ssrc;
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rtppkt.type = TrackAudio;
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rtppkt.offset = 16;
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RtpCodec::inputRtp(pRtppkt, false);
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m_ui16Sequence++;
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}
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/////////////////////////////////////////////////////////////////////////////////////
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2018-10-21 21:21:14 +08:00
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void AACRtpCodec::inputRtp(const RtpPacket::Ptr &rtppack, bool key_pos) {
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RtpCodec::inputRtp(rtppack, key_pos);
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2018-10-18 23:48:00 +08:00
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2018-10-21 21:21:14 +08:00
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char *frame = (char *) rtppack->payload + rtppack->offset;
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int length = rtppack->length - rtppack->offset;
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2018-10-18 23:48:00 +08:00
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if (m_adts->aac_frame_length + length - 4 > sizeof(AdtsFrame::buffer)) {
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m_adts->aac_frame_length = 7;
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2018-10-21 21:21:14 +08:00
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WarnL << "aac负载数据太长";
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2018-10-18 23:48:00 +08:00
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return ;
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}
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memcpy(m_adts->buffer + m_adts->aac_frame_length, frame + 4, length - 4);
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m_adts->aac_frame_length += (length - 4);
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2018-10-21 21:21:14 +08:00
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if (rtppack->mark == true) {
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m_adts->sequence = rtppack->sequence;
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//todo(xzl) 此处完成时间戳转换
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// m_adts->timeStamp = rtppack->timeStamp * (1000.0 / m_iSampleRate);
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2018-10-18 23:48:00 +08:00
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writeAdtsHeader(*m_adts, m_adts->buffer);
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2018-10-21 21:21:14 +08:00
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onGetAdts(m_adts);
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2018-10-18 23:48:00 +08:00
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}
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2018-10-21 21:21:14 +08:00
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return ;
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2018-10-18 23:48:00 +08:00
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}
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2018-10-21 21:21:14 +08:00
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void AACRtpCodec::onGetAdts(const AdtsFrame::Ptr &frame) {
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RtpCodec::inputFame(frame, false);
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m_adts = m_framePool.obtain();
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m_adts->aac_frame_length = 7;
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2018-10-18 23:48:00 +08:00
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}
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2018-10-21 21:21:14 +08:00
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