mirror of
https://github.com/ZLMediaKit/ZLMediaKit.git
synced 2024-11-22 10:40:05 +08:00
优化代码,去除编译警告,修复拼写错误
This commit is contained in:
parent
9c3b8a6a95
commit
35791aac89
@ -29,10 +29,12 @@ public:
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bool wait(bool block = true);
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int exit_code();
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private:
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int _exit_code = 0;
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pid_t _pid = -1;
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void *_handle = nullptr;
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void* _process_stack = nullptr;
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int _exit_code = 0;
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#if (defined(__linux) || defined(__linux__))
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void *_process_stack = nullptr;
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#endif
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};
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@ -386,7 +386,7 @@ FFmpegDecoder::FFmpegDecoder(const Track::Ptr &track, int thread_num) {
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if (thread_num <= 0) {
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av_dict_set(&dict, "threads", "auto", 0);
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} else {
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av_dict_set(&dict, "threads", to_string(MIN(thread_num, thread::hardware_concurrency())).data(), 0);
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av_dict_set(&dict, "threads", to_string(MIN((unsigned int)thread_num, thread::hardware_concurrency())).data(), 0);
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}
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av_dict_set(&dict, "zerolatency", "1", 0);
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av_dict_set(&dict, "strict", "-2", 0);
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@ -132,7 +132,8 @@ string makeAacConfig(const uint8_t *hex, size_t length){
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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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#else
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struct mpeg4_aac_t aac = {0};
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struct mpeg4_aac_t aac;
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memset(&aac, 0, sizeof(aac));
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if (mpeg4_aac_adts_load(hex, length, &aac) > 0) {
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char buf[32] = {0};
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int len = mpeg4_aac_audio_specific_config_save(&aac, (uint8_t *) buf, sizeof(buf));
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@ -153,7 +154,8 @@ int dumpAacConfig(const string &config, size_t length, uint8_t *out, size_t out_
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dumpAdtsHeader(header, out);
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return ADTS_HEADER_LEN;
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#else
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struct mpeg4_aac_t aac = {0};
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struct mpeg4_aac_t aac;
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memset(&aac, 0, sizeof(aac));
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int ret = mpeg4_aac_audio_specific_config_load((uint8_t *) config.data(), config.size(), &aac);
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if (ret > 0) {
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ret = mpeg4_aac_adts_save(&aac, length, out, out_size);
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@ -174,7 +176,8 @@ bool parseAacConfig(const string &config, int &samplerate, int &channels){
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channels = header.channel_configuration;
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return true;
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#else
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struct mpeg4_aac_t aac = {0};
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struct mpeg4_aac_t aac;
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memset(&aac, 0, sizeof(aac));
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int ret = mpeg4_aac_audio_specific_config_load((uint8_t *) config.data(), config.size(), &aac);
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if (ret > 0) {
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samplerate = aac.sampling_frequency;
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@ -284,7 +287,7 @@ bool AACTrack::inputFrame(const Frame::Ptr &frame) {
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if (frame_len < ADTS_HEADER_LEN) {
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break;
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}
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if (frame_len == frame->size()) {
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if (frame_len == (int)frame->size()) {
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return inputFrame_l(frame);
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}
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auto sub_frame = std::make_shared<FrameTSInternal<FrameFromPtr> >(frame, (char *) ptr, frame_len, ADTS_HEADER_LEN,dts,pts);
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@ -49,7 +49,8 @@ static bool getH265ConfigFrame(const RtmpPacket &thiz,string &frame) {
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auto extra = thiz.buffer.data() + 5;
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auto bytes = thiz.buffer.size() - 5;
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struct mpeg4_hevc_t hevc = {0};
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struct mpeg4_hevc_t hevc;
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memset(&hevc, 0, sizeof(hevc));
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if (mpeg4_hevc_decoder_configuration_record_load((uint8_t *) extra, bytes, &hevc) > 0) {
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uint8_t *config = new uint8_t[bytes * 2];
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int size = mpeg4_hevc_to_nalu(&hevc, config, bytes * 2);
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@ -207,7 +208,8 @@ void H265RtmpEncoder::makeVideoConfigPkt() {
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//cts
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rtmpPkt->buffer.append("\x0\x0\x0", 3);
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struct mpeg4_hevc_t hevc = {0};
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struct mpeg4_hevc_t hevc;
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memset(&hevc, 0, sizeof(hevc));
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string vps_sps_pps = string("\x00\x00\x00\x01", 4) + _vps +
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string("\x00\x00\x00\x01", 4) + _sps +
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string("\x00\x00\x00\x01", 4) + _pps;
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@ -67,7 +67,7 @@ void HttpServerCookie::setAttach(std::shared_ptr<void> attach) {
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string HttpServerCookie::cookieExpireTime() const {
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char buf[64];
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time_t tt = time(NULL) + _max_elapsed;
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time_t tt = time(nullptr) + _max_elapsed;
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strftime(buf, sizeof buf, "%a, %b %d %Y %H:%M:%S GMT", gmtime(&tt));
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return buf;
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}
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@ -105,8 +105,8 @@ void HttpCookieManager::onManager() {
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}
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if (it_name->second.empty()) {
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//该类型下没有任何cooki记录,移除之
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DebugL << "该path下没有任何cooki记录:" << it_name->first;
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//该类型下没有任何cookie记录,移除之
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DebugL << "该path下没有任何cookie记录:" << it_name->first;
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it_name = _map_cookie.erase(it_name);
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continue;
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}
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@ -117,7 +117,7 @@ void HttpCookieManager::onManager() {
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HttpServerCookie::Ptr HttpCookieManager::addCookie(const string &cookie_name, const string &uid_in,
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uint64_t max_elapsed, std::shared_ptr<void> attach, int max_client) {
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lock_guard<recursive_mutex> lck(_mtx_cookie);
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auto cookie = _geneator.obtain();
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auto cookie = _generator.obtain();
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auto uid = uid_in.empty() ? cookie : uid_in;
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auto oldCookie = getOldestCookie(cookie_name, uid, max_client);
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if (!oldCookie.empty()) {
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@ -159,13 +159,13 @@ HttpServerCookie::Ptr HttpCookieManager::getCookie(const string &cookie_name, co
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return nullptr;
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}
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auto cookie = FindField(it->second.data(), (cookie_name + "=").data(), ";");
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if (!cookie.size()) {
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if (cookie.empty()) {
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cookie = FindField(it->second.data(), (cookie_name + "=").data(), nullptr);
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}
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if (cookie.empty()) {
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return nullptr;
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}
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return HttpCookieManager::Instance().getCookie(cookie_name, cookie);
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return getCookie(cookie_name, cookie);
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}
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HttpServerCookie::Ptr HttpCookieManager::getCookieByUid(const string &cookie_name, const string &uid) {
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@ -205,7 +205,7 @@ void HttpCookieManager::onAddCookie(const string &cookie_name, const string &uid
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void HttpCookieManager::onDelCookie(const string &cookie_name, const string &uid, const string &cookie) {
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lock_guard<recursive_mutex> lck(_mtx_cookie);
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//回收随机字符串
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_geneator.release(cookie);
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_generator.release(cookie);
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auto it_name = _map_uid_to_cookie.find(cookie_name);
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if (it_name == _map_uid_to_cookie.end()) {
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@ -227,14 +227,14 @@ void HttpCookieManager::onDelCookie(const string &cookie_name, const string &uid
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//移除该用户名下的某个cookie,这个设备cookie将失效
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it_uid->second.erase(it_cookie);
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if (it_uid->second.size() != 0) {
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if (!it_uid->second.empty()) {
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break;
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}
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//该用户名下没有任何设备在线,移除之
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it_name->second.erase(it_uid);
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if (it_name->second.size() != 0) {
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if (!it_name->second.empty()) {
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break;
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}
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//该类型下未有任何用户在线,移除之
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@ -255,7 +255,7 @@ string HttpCookieManager::getOldestCookie(const string &cookie_name, const strin
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//该用户从未登录过
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return "";
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}
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if (it_uid->second.size() < MAX(1, max_client)) {
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if ((int)it_uid->second.size() < MAX(1, max_client)) {
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//同一名用户下,客户端个数还没达到限制个数
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return "";
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}
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@ -263,8 +263,8 @@ string HttpCookieManager::getOldestCookie(const string &cookie_name, const strin
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return it_uid->second.begin()->second;
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}
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/////////////////////////////////RandStrGeneator////////////////////////////////////
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string RandStrGeneator::obtain() {
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/////////////////////////////////RandStrGenerator////////////////////////////////////
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string RandStrGenerator::obtain() {
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//获取唯一的防膨胀的随机字符串
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while (true) {
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auto str = obtain_l();
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@ -276,12 +276,12 @@ string RandStrGeneator::obtain() {
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}
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}
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void RandStrGeneator::release(const string &str) {
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void RandStrGenerator::release(const string &str) {
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//从防膨胀库中移除
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_obtained.erase(str);
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}
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string RandStrGeneator::obtain_l() {
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string RandStrGenerator::obtain_l() {
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// 12个伪随机字节 + 4个递增的整形字节,然后md5即为随机字符串
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auto str = makeRandStr(12, false);
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str.append((char *)&_index, sizeof(_index));
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@ -111,10 +111,10 @@ private:
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/**
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* cookie随机字符串生成器
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*/
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class RandStrGeneator {
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class RandStrGenerator {
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public:
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RandStrGeneator() = default;
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~RandStrGeneator() = default;
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RandStrGenerator() = default;
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~RandStrGenerator() = default;
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/**
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* 获取不碰撞的随机字符串
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@ -244,7 +244,7 @@ private:
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_map_uid_to_cookie;
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std::recursive_mutex _mtx_cookie;
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toolkit::Timer::Ptr _timer;
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RandStrGeneator _geneator;
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RandStrGenerator _generator;
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};
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} // namespace mediakit
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@ -96,7 +96,8 @@ void MP4Demuxer::onVideoTrack(uint32_t track, uint8_t object, int width, int hei
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auto video = std::make_shared<H264Track>();
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_track_to_codec.emplace(track,video);
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struct mpeg4_avc_t avc = {0};
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struct mpeg4_avc_t avc;
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memset(&avc, 0, sizeof(avc));
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if (mpeg4_avc_decoder_configuration_record_load((uint8_t *) extra, bytes, &avc) > 0) {
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uint8_t config[1024 * 10] = {0};
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int size = mpeg4_avc_to_nalu(&avc, config, sizeof(config));
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@ -110,7 +111,8 @@ void MP4Demuxer::onVideoTrack(uint32_t track, uint8_t object, int width, int hei
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auto video = std::make_shared<H265Track>();
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_track_to_codec.emplace(track,video);
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struct mpeg4_hevc_t hevc = {0};
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struct mpeg4_hevc_t hevc;
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memset(&hevc, 0, sizeof(hevc));
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if (mpeg4_hevc_decoder_configuration_record_load((uint8_t *) extra, bytes, &hevc) > 0) {
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uint8_t config[1024 * 10] = {0};
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int size = mpeg4_hevc_to_nalu(&hevc, config, sizeof(config));
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@ -160,12 +162,13 @@ int64_t MP4Demuxer::seekTo(int64_t stamp_ms) {
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return stamp_ms;
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}
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struct Context{
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struct Context {
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Context(MP4Demuxer *ptr) : thiz(ptr) {}
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MP4Demuxer *thiz;
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int flags;
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int64_t pts;
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int64_t dts;
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uint32_t track_id;
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int flags = 0;
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int64_t pts = 0;
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int64_t dts = 0;
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uint32_t track_id = 0;
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BufferRaw::Ptr buffer;
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};
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@ -188,7 +191,7 @@ Frame::Ptr MP4Demuxer::readFrame(bool &keyFrame, bool &eof) {
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return ctx->buffer->data() + DATA_OFFSET;
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};
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Context ctx = {this, 0};
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Context ctx(this);
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auto ret = mov_reader_read2(_mov_reader.get(), mov_onalloc, &ctx);
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switch (ret) {
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case 0 : {
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@ -221,7 +221,8 @@ bool MP4MuxerInterface::addTrack(const Track::Ptr &track) {
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return false;
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}
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struct mpeg4_avc_t avc = {0};
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struct mpeg4_avc_t avc;
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memset(&avc, 0, sizeof(avc));
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string sps_pps = string("\x00\x00\x00\x01", 4) + h264_track->getSps() +
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string("\x00\x00\x00\x01", 4) + h264_track->getPps();
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h264_annexbtomp4(&avc, sps_pps.data(), (int) sps_pps.size(), NULL, 0, NULL, NULL);
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@ -256,7 +257,8 @@ bool MP4MuxerInterface::addTrack(const Track::Ptr &track) {
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return false;
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}
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struct mpeg4_hevc_t hevc = {0};
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struct mpeg4_hevc_t hevc;
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memset(&hevc, 0, sizeof(hevc));
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string vps_sps_pps = string("\x00\x00\x00\x01", 4) + h265_track->getVps() +
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string("\x00\x00\x00\x01", 4) + h265_track->getSps() +
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string("\x00\x00\x00\x01", 4) + h265_track->getPps();
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@ -237,12 +237,12 @@ std::string PacketQueue::dump() {
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//////////////////// PacketRecvQueue //////////////////////////////////
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PacketRecvQueue::PacketRecvQueue(uint32_t max_size, uint32_t init_seq, uint32_t latency,uint32_t flag)
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PacketRecvQueue::PacketRecvQueue(uint32_t max_size, uint32_t init_seq, uint32_t latency, uint32_t flag)
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: _pkt_cap(max_size)
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, _pkt_latency(latency)
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, _pkt_expected_seq(init_seq)
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, _pkt_buf(max_size)
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, _srt_flag(flag) {}
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, _srt_flag(flag)
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, _pkt_buf(max_size) {}
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bool PacketRecvQueue::TLPKTDrop(){
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return (_srt_flag&HSExtMessage::HS_EXT_MSG_TLPKTDROP) && (_srt_flag &HSExtMessage::HS_EXT_MSG_TSBPDRCV);
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@ -3,9 +3,9 @@
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namespace SRT {
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PacketSendQueue::PacketSendQueue(uint32_t max_size, uint32_t latency,uint32_t flag)
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: _pkt_cap(max_size)
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, _pkt_latency(latency)
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, _srt_flag(flag) {}
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: _srt_flag(flag)
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, _pkt_cap(max_size)
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, _pkt_latency(latency) {}
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bool PacketSendQueue::drop(uint32_t num) {
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decltype(_pkt_cache.begin()) it;
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@ -37,7 +37,8 @@ static bool loadFile(const char *path){
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uint64_t timeStamp_last = 0;
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uint16_t len;
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char rtp[0xFFFF];
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struct sockaddr_storage addr = {0};
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struct sockaddr_storage addr;
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memset(&addr, 0, sizeof(addr));
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addr.ss_family = AF_INET;
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auto sock = Socket::createSocket();
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size_t total_size = 0;
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