456 lines
16 KiB
C++
456 lines
16 KiB
C++
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/*
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* Copyright (c) 2016-present The ZLMediaKit project authors. All Rights Reserved.
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*
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* This file is part of ZLMediaKit(https://github.com/ZLMediaKit/ZLMediaKit).
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*
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* Use of this source code is governed by MIT-like 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 "RtmpPlayer.h"
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#include "Rtmp/utils.h"
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#include "Util/util.h"
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#include "Util/onceToken.h"
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#include "Thread/ThreadPool.h"
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#include "Common/config.h"
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#include "Common/Parser.h"
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#include "RtmpDemuxer.h"
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#include "RtmpPlayerImp.h"
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using namespace toolkit;
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using namespace std;
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namespace mediakit {
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RtmpPlayer::RtmpPlayer(const EventPoller::Ptr &poller) : TcpClient(poller) {}
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RtmpPlayer::~RtmpPlayer() {
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DebugL;
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}
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void RtmpPlayer::teardown() {
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if (alive()) {
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shutdown(SockException(Err_shutdown,"teardown"));
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}
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_app.clear();
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_stream_id.clear();
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_tc_url.clear();
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_beat_timer.reset();
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_play_timer.reset();
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_rtmp_recv_timer.reset();
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_seek_ms = 0;
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RtmpProtocol::reset();
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CLEAR_ARR(_fist_stamp);
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CLEAR_ARR(_now_stamp);
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_map_on_result.clear();
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_deque_on_status.clear();
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}
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void RtmpPlayer::play(const string &url) {
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teardown();
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auto schema = findSubString(url.data(), nullptr, "://");
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auto host_url = findSubString(url.data(), "://", "/");
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_app = findSubString(url.data(), (host_url + "/").data(), "/");
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_stream_id = findSubString(url.data(), (host_url + "/" + _app + "/").data(), NULL);
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auto app_second = findSubString(_stream_id.data(), nullptr, "/");
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if (!app_second.empty() && app_second.find('?') == std::string::npos) {
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// _stream_id存在多级;不包含'?', 说明分割符'/'不是url参数的一部分 [AUTO-TRANSLATED:ef820905]
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// _stream_id exists at multiple levels; it does not contain '?', indicating that the delimiter '/' is not part of the url parameter
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_app += "/" + app_second;
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_stream_id.erase(0, app_second.size() + 1);
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}
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_tc_url = schema + "://" + host_url + "/" + _app;
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if (_app.empty() || _stream_id.empty()) {
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onPlayResult_l(SockException(Err_other, "rtmp url非法"), false);
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return;
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}
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DebugL << host_url << " " << _app << " " << _stream_id;
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uint16_t port = start_with(url, "rtmps") ? 443 : 1935;
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splitUrl(host_url, host_url, port);
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if (!(*this)[Client::kNetAdapter].empty()) {
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setNetAdapter((*this)[Client::kNetAdapter]);
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}
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weak_ptr<RtmpPlayer> weak_self = static_pointer_cast<RtmpPlayer>(shared_from_this());
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float play_timeout_sec = (*this)[Client::kTimeoutMS].as<int>() / 1000.0f;
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_play_timer.reset(new Timer(play_timeout_sec, [weak_self]() {
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auto strong_self = weak_self.lock();
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if (!strong_self) {
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return false;
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}
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strong_self->onPlayResult_l(SockException(Err_timeout, "play rtmp timeout"), false);
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return false;
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}, getPoller()));
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_metadata_got = false;
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startConnect(host_url, port, play_timeout_sec);
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}
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void RtmpPlayer::onError(const SockException &ex){
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// 定时器_pPlayTimer为空后表明握手结束了 [AUTO-TRANSLATED:6e2661f4]
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// The timer _pPlayTimer is empty after the handshake is finished
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onPlayResult_l(ex, !_play_timer);
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}
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void RtmpPlayer::onPlayResult_l(const SockException &ex, bool handshake_done) {
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if (ex.getErrCode() == Err_shutdown) {
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// 主动shutdown的,不触发回调 [AUTO-TRANSLATED:bd97b1c1]
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// Active shutdown does not trigger a callback
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return;
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}
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WarnL << ex.getErrCode() << " " << ex;
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if (!handshake_done) {
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// 开始播放阶段 [AUTO-TRANSLATED:a246c5ee]
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// Start playback stage
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_play_timer.reset();
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// 是否为性能测试模式 [AUTO-TRANSLATED:1fde8234]
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// Whether it is a performance test mode
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_benchmark_mode = (*this)[Client::kBenchmarkMode].as<int>();
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onPlayResult(ex);
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} else if (ex) {
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// 播放成功后异常断开回调 [AUTO-TRANSLATED:b5c5fa80]
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// Callback for abnormal disconnection after successful playback
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onShutdown(ex);
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} else {
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// 恢复播放 [AUTO-TRANSLATED:19a73f21]
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// Resume playback
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onResume();
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}
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if (!ex) {
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// 播放成功,恢复rtmp接收超时定时器 [AUTO-TRANSLATED:29b58110]
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// After successful playback, restore the rtmp receive timeout timer
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_rtmp_recv_ticker.resetTime();
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auto timeout_ms = (*this)[Client::kMediaTimeoutMS].as<uint64_t>();
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weak_ptr<RtmpPlayer> weak_self = static_pointer_cast<RtmpPlayer>(shared_from_this());
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auto lam = [weak_self, timeout_ms]() {
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auto strong_self = weak_self.lock();
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if (!strong_self) {
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return false;
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}
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if (strong_self->_rtmp_recv_ticker.elapsedTime() > timeout_ms) {
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// 接收rtmp媒体数据超时 [AUTO-TRANSLATED:e14bc1fe]
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// Receive rtmp media data timeout
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SockException ex(Err_timeout, "receive rtmp timeout");
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strong_self->onPlayResult_l(ex, true);
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return false;
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}
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return true;
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};
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// 创建rtmp数据接收超时检测定时器 [AUTO-TRANSLATED:d255312b]
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// Create an rtmp data receive timeout detection timer
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_rtmp_recv_timer = std::make_shared<Timer>(timeout_ms / 2000.0f, lam, getPoller());
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} else {
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shutdown(SockException(Err_shutdown,"teardown"));
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}
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}
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void RtmpPlayer::onConnect(const SockException &err) {
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if (err.getErrCode() != Err_success) {
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onPlayResult_l(err, false);
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return;
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}
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weak_ptr<RtmpPlayer> weak_self = static_pointer_cast<RtmpPlayer>(shared_from_this());
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startClientSession([weak_self]() {
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if (auto strong_self = weak_self.lock()) {
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strong_self->send_connect();
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}
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},_app.find("vod") != 0); // 实测发现vod点播时,使用复杂握手fms无响应:issue #2007
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}
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void RtmpPlayer::onRecv(const Buffer::Ptr &buf){
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try {
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if (_benchmark_mode && !_play_timer) {
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// 在性能测试模式下,如果rtmp握手完毕后,不再解析rtmp包 [AUTO-TRANSLATED:a39356cc]
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// In performance test mode, if the rtmp handshake is complete, the rtmp packet will no longer be parsed
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_rtmp_recv_ticker.resetTime();
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return;
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}
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onParseRtmp(buf->data(), buf->size());
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} catch (exception &e) {
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SockException ex(Err_other, e.what());
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// 定时器_pPlayTimer为空后表明握手结束了 [AUTO-TRANSLATED:6e2661f4]
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// The timer _pPlayTimer is empty after the handshake is finished
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onPlayResult_l(ex, !_play_timer);
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}
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}
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void RtmpPlayer::pause(bool bPause) {
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send_pause(bPause);
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}
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void RtmpPlayer::speed(float speed) {
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//todo
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}
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void RtmpPlayer::send_connect() {
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AMFValue obj(AMF_OBJECT);
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obj.set("app", _app);
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obj.set("tcUrl", _tc_url);
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// 未使用代理 [AUTO-TRANSLATED:fa1ef5d7]
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// No proxy used
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obj.set("fpad", false);
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// 参考librtmp,什么作用? [AUTO-TRANSLATED:c6e3349f]
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// Refer to librtmp, what is the role?
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obj.set("capabilities", 15);
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// SUPPORT_VID_CLIENT_SEEK 支持seek [AUTO-TRANSLATED:81d2bb06]
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// SUPPORT_VID_CLIENT_SEEK supports seek
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obj.set("videoFunction", 1);
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// 只支持aac [AUTO-TRANSLATED:ab086b5b]
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// Only supports aac
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obj.set("audioCodecs", (double) (0x0400));
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// 只支持H264 [AUTO-TRANSLATED:d8fb8696]
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// Only supports H264
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obj.set("videoCodecs", (double) (0x0080));
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AMFValue fourCcList(AMF_STRICT_ARRAY);
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fourCcList.add("av01");
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fourCcList.add("vp09");
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fourCcList.add("hvc1");
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obj.set("fourCcList", fourCcList);
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sendInvoke("connect", obj);
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addOnResultCB([this](AMFDecoder &dec) {
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//TraceL << "connect result";
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dec.load<AMFValue>();
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auto val = dec.load<AMFValue>();
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auto level = val["level"].as_string();
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auto code = val["code"].as_string();
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if (level != "status") {
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throw std::runtime_error(StrPrinter << "connect 失败:" << level << " " << code << endl);
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}
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send_createStream();
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});
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}
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void RtmpPlayer::send_createStream() {
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AMFValue obj(AMF_NULL);
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sendInvoke("createStream", obj);
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addOnResultCB([this](AMFDecoder &dec) {
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//TraceL << "createStream result";
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dec.load<AMFValue>();
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_stream_index = dec.load<int>();
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send_play();
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});
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}
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void RtmpPlayer::send_play() {
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AMFEncoder enc;
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enc << "play" << ++_send_req_id << nullptr << _stream_id << -2000;
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sendRequest(MSG_CMD, enc.data());
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auto fun = [](AMFValue &val) {
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//TraceL << "play onStatus";
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auto level = val["level"].as_string();
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auto code = val["code"].as_string();
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if (level != "status") {
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throw std::runtime_error(StrPrinter << "play 失败:" << level << " " << code << endl);
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}
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};
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addOnStatusCB(fun);
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addOnStatusCB(fun);
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}
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void RtmpPlayer::send_pause(bool pause) {
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AMFEncoder enc;
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enc << "pause" << ++_send_req_id << nullptr << pause;
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sendRequest(MSG_CMD, enc.data());
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auto fun = [this, pause](AMFValue &val) {
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//TraceL << "pause onStatus";
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auto level = val["level"].as_string();
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auto code = val["code"].as_string();
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if (level != "status") {
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if (!pause) {
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throw std::runtime_error(StrPrinter << "pause 恢复播放失败:" << level << " " << code << endl);
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}
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} else {
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_paused = pause;
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if (!pause) {
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onPlayResult_l(SockException(Err_success, "resum rtmp success"), true);
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} else {
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// 暂停播放 [AUTO-TRANSLATED:09cc521a]
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// Pause playback
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_rtmp_recv_timer.reset();
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}
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}
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};
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addOnStatusCB(fun);
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_beat_timer.reset();
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if (pause) {
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weak_ptr<RtmpPlayer> weak_self = static_pointer_cast<RtmpPlayer>(shared_from_this());
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_beat_timer.reset(new Timer((*this)[Client::kBeatIntervalMS].as<int>() / 1000.0f, [weak_self]() {
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auto strong_self = weak_self.lock();
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if (!strong_self) {
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return false;
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}
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uint32_t timeStamp = (uint32_t)::time(NULL);
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strong_self->sendUserControl(CONTROL_PING_REQUEST, timeStamp);
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return true;
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}, getPoller()));
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}
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}
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void RtmpPlayer::onCmd_result(AMFDecoder &dec){
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auto req_id = dec.load<int>();
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auto it = _map_on_result.find(req_id);
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if (it != _map_on_result.end()) {
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it->second(dec);
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_map_on_result.erase(it);
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} else {
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WarnL << "unhandled _result";
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}
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}
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void RtmpPlayer::onCmd_onStatus(AMFDecoder &dec) {
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AMFValue val;
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while (true) {
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val = dec.load<AMFValue>();
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if (val.type() == AMF_OBJECT) {
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break;
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}
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}
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if (val.type() != AMF_OBJECT) {
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throw std::runtime_error("onStatus:the result object was not found");
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}
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if (_deque_on_status.size()) {
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_deque_on_status.front()(val);
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_deque_on_status.pop_front();
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} else {
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auto level = val["level"];
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auto code = val["code"].as_string();
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if (level.type() == AMF_STRING) {
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// warning 不应该断开 [AUTO-TRANSLATED:6db13b98]
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// warning should not be disconnected
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if (level.as_string() != "status" && level.as_string() != "warning") {
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throw std::runtime_error(StrPrinter << "onStatus 失败:" << level.as_string() << " " << code << endl);
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}
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}
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//WarnL << "unhandled onStatus:" << code;
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}
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}
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void RtmpPlayer::onCmd_onMetaData(AMFDecoder &dec) {
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//TraceL;
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auto val = dec.load<AMFValue>();
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if (!onMetadata(val)) {
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throw std::runtime_error("onMetadata failed");
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}
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_metadata_got = true;
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}
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void RtmpPlayer::onStreamDry(uint32_t stream_index) {
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//TraceL << stream_index;
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onPlayResult_l(SockException(Err_other, "rtmp stream dry"), true);
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}
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void RtmpPlayer::onMediaData_l(RtmpPacket::Ptr chunk_data) {
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_rtmp_recv_ticker.resetTime();
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if (!_play_timer) {
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// 已经触发了onPlayResult事件,直接触发onMediaData事件 [AUTO-TRANSLATED:5c12bd46]
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// The onPlayResult event has been triggered, directly trigger the onMediaData event
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onRtmpPacket(chunk_data);
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return;
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}
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if (chunk_data->isConfigFrame()) {
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// 输入配置帧以便初始化完成各个track [AUTO-TRANSLATED:2f571d31]
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// Input configuration frame to initialize each track
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onRtmpPacket(chunk_data);
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} else {
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// 先触发onPlayResult事件,这个时候解码器才能初始化完毕 [AUTO-TRANSLATED:403c9195]
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// Trigger the onPlayResult event first, at this time the decoder can be initialized
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onPlayResult_l(SockException(Err_success, "play rtmp success"), false);
|
|||
|
// 触发onPlayResult事件后,再把帧数据输入到解码器 [AUTO-TRANSLATED:bf058334]
|
|||
|
// After triggering the onPlayResult event, input the frame data to the decoder
|
|||
|
onRtmpPacket(chunk_data);
|
|||
|
}
|
|||
|
}
|
|||
|
|
|||
|
void RtmpPlayer::onRtmpChunk(RtmpPacket::Ptr packet) {
|
|||
|
auto &chunk_data = *packet;
|
|||
|
typedef void (RtmpPlayer::*rtmp_func_ptr)(AMFDecoder &dec);
|
|||
|
static unordered_map<string, rtmp_func_ptr> s_func_map;
|
|||
|
static onceToken token([]() {
|
|||
|
s_func_map.emplace("_error", &RtmpPlayer::onCmd_result);
|
|||
|
s_func_map.emplace("_result", &RtmpPlayer::onCmd_result);
|
|||
|
s_func_map.emplace("onStatus", &RtmpPlayer::onCmd_onStatus);
|
|||
|
s_func_map.emplace("onMetaData", &RtmpPlayer::onCmd_onMetaData);
|
|||
|
});
|
|||
|
|
|||
|
switch (chunk_data.type_id) {
|
|||
|
case MSG_CMD:
|
|||
|
case MSG_CMD3:
|
|||
|
case MSG_DATA:
|
|||
|
case MSG_DATA3: {
|
|||
|
AMFDecoder dec(chunk_data.buffer, 0, (chunk_data.type_id == MSG_DATA3 || chunk_data.type_id == MSG_CMD3) ? 3 : 0);
|
|||
|
std::string type = dec.load<std::string>();
|
|||
|
auto it = s_func_map.find(type);
|
|||
|
if (it != s_func_map.end()) {
|
|||
|
auto fun = it->second;
|
|||
|
(this->*fun)(dec);
|
|||
|
} else {
|
|||
|
WarnL << "can not support cmd:" << type;
|
|||
|
}
|
|||
|
break;
|
|||
|
}
|
|||
|
|
|||
|
case MSG_AUDIO:
|
|||
|
case MSG_VIDEO: {
|
|||
|
auto idx = chunk_data.type_id % 2;
|
|||
|
if (_now_stamp_ticker[idx].elapsedTime() > 500) {
|
|||
|
// 计算播放进度时间轴用 [AUTO-TRANSLATED:383fd62c]
|
|||
|
// Used to calculate the playback progress timeline
|
|||
|
_now_stamp[idx] = chunk_data.time_stamp;
|
|||
|
}
|
|||
|
if (!_metadata_got) {
|
|||
|
if (!onMetadata(TitleMeta().getMetadata())) {
|
|||
|
throw std::runtime_error("onMetadata failed");
|
|||
|
}
|
|||
|
_metadata_got = true;
|
|||
|
}
|
|||
|
onMediaData_l(std::move(packet));
|
|||
|
break;
|
|||
|
}
|
|||
|
|
|||
|
default: break;
|
|||
|
}
|
|||
|
}
|
|||
|
|
|||
|
uint32_t RtmpPlayer::getProgressMilliSecond() const{
|
|||
|
uint32_t stamp[2] = {0, 0};
|
|||
|
for (auto i = 0; i < 2; i++) {
|
|||
|
stamp[i] = _now_stamp[i] - _fist_stamp[i];
|
|||
|
}
|
|||
|
return _seek_ms + MAX(stamp[0], stamp[1]);
|
|||
|
}
|
|||
|
|
|||
|
void RtmpPlayer::seekToMilliSecond(uint32_t seekMS){
|
|||
|
if (_paused) {
|
|||
|
pause(false);
|
|||
|
}
|
|||
|
AMFEncoder enc;
|
|||
|
enc << "seek" << ++_send_req_id << nullptr << seekMS * 1.0;
|
|||
|
sendRequest(MSG_CMD, enc.data());
|
|||
|
addOnStatusCB([this, seekMS](AMFValue &val) {
|
|||
|
//TraceL << "seek result";
|
|||
|
_now_stamp_ticker[0].resetTime();
|
|||
|
_now_stamp_ticker[1].resetTime();
|
|||
|
int iTimeInc = seekMS - getProgressMilliSecond();
|
|||
|
for (auto i = 0; i < 2; i++) {
|
|||
|
_fist_stamp[i] = _now_stamp[i] + iTimeInc;
|
|||
|
_now_stamp[i] = _fist_stamp[i];
|
|||
|
}
|
|||
|
_seek_ms = seekMS;
|
|||
|
});
|
|||
|
}
|
|||
|
|
|||
|
} /* namespace mediakit */
|