ZLMediaKit/api/source/mk_common.cpp

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/*
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* Copyright (c) 2016 The ZLMediaKit project authors. All Rights Reserved.
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*
* This file is part of ZLMediaKit(https://github.com/xia-chu/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
* LICENSE file in the root of the source tree. All contributing project authors
* may be found in the AUTHORS file in the root of the source tree.
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*/
#include "mk_common.h"
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#include <stdarg.h>
#include <unordered_map>
#include "Util/logger.h"
#include "Util/SSLBox.h"
#include "Network/TcpServer.h"
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#include "Network/UdpServer.h"
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#include "Thread/WorkThreadPool.h"
#include "Rtsp/RtspSession.h"
#include "Rtmp/RtmpSession.h"
#include "Http/HttpSession.h"
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#include "Shell/ShellSession.h"
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using namespace std;
using namespace toolkit;
using namespace mediakit;
static TcpServer::Ptr rtsp_server[2];
static TcpServer::Ptr rtmp_server[2];
static TcpServer::Ptr http_server[2];
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static TcpServer::Ptr shell_server;
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#ifdef ENABLE_RTPPROXY
#include "Rtp/RtpServer.h"
static std::shared_ptr<RtpServer> rtpServer;
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#endif
#ifdef ENABLE_WEBRTC
#include "../webrtc/WebRtcSession.h"
static std::shared_ptr<UdpServer> rtcServer;
#endif
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#if defined(ENABLE_SRT)
#include "../srt/SrtSession.hpp"
static std::shared_ptr<UdpServer> srtServer;
#endif
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//////////////////////////environment init///////////////////////////
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API_EXPORT void API_CALL mk_env_init(const mk_config *cfg) {
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assert(cfg);
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mk_env_init1(cfg->thread_num,
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cfg->log_level,
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cfg->log_mask,
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cfg->log_file_path,
cfg->log_file_days,
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cfg->ini_is_path,
cfg->ini,
cfg->ssl_is_path,
cfg->ssl,
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cfg->ssl_pwd);
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}
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extern void stopAllTcpServer();
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API_EXPORT void API_CALL mk_stop_all_server(){
CLEAR_ARR(rtsp_server);
CLEAR_ARR(rtmp_server);
CLEAR_ARR(http_server);
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shell_server = nullptr;
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#ifdef ENABLE_RTPPROXY
rtpServer = nullptr;
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#endif
#ifdef ENABLE_WEBRTC
rtcServer = nullptr;
#endif
#ifdef ENABLE_SRT
srtServer = nullptr;
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#endif
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stopAllTcpServer();
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}
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API_EXPORT void API_CALL mk_env_init1(int thread_num,
int log_level,
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int log_mask,
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const char *log_file_path,
int log_file_days,
int ini_is_path,
const char *ini,
int ssl_is_path,
const char *ssl,
const char *ssl_pwd) {
//确保只初始化一次
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static onceToken token([&]() {
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if (log_mask & LOG_CONSOLE) {
//控制台日志
Logger::Instance().add(std::make_shared<ConsoleChannel>("ConsoleChannel", (LogLevel) log_level));
}
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if (log_mask & LOG_CALLBACK) {
//广播日志
Logger::Instance().add(std::make_shared<EventChannel>("EventChannel", (LogLevel) log_level));
}
if (log_mask & LOG_FILE) {
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//日志文件
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auto channel = std::make_shared<FileChannel>("FileChannel",
log_file_path ? File::absolutePath("", log_file_path) :
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exeDir() + "log/", (LogLevel) log_level);
channel->setMaxDay(log_file_days ? log_file_days : 1);
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Logger::Instance().add(channel);
}
//异步日志线程
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Logger::Instance().setWriter(std::make_shared<AsyncLogWriter>());
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//设置线程数
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EventPollerPool::setPoolSize(thread_num);
WorkThreadPool::setPoolSize(thread_num);
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if (ini && ini[0]) {
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//设置配置文件
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if (ini_is_path) {
try {
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mINI::Instance().parseFile(ini);
} catch (std::exception &) {
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InfoL << "dump ini file to:" << ini;
mINI::Instance().dumpFile(ini);
}
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} else {
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mINI::Instance().parse(ini);
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}
}
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if (ssl && ssl[0]) {
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//设置ssl证书
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SSL_Initor::Instance().loadCertificate(ssl, true, ssl_pwd ? ssl_pwd : "", ssl_is_path);
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}
});
}
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API_EXPORT void API_CALL mk_set_log(int file_max_size, int file_max_count) {
auto channel = dynamic_pointer_cast<FileChannel>(Logger::Instance().get("FileChannel"));
if (channel) {
channel->setFileMaxSize(file_max_size);
channel->setFileMaxCount(file_max_count);
}
}
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API_EXPORT void API_CALL mk_set_option(const char *key, const char *val) {
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assert(key && val);
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if (mINI::Instance().find(key) == mINI::Instance().end()) {
WarnL << "key:" << key << " not existed!";
return;
}
mINI::Instance()[key] = val;
}
API_EXPORT const char * API_CALL mk_get_option(const char *key)
{
assert(key);
if (mINI::Instance().find(key) == mINI::Instance().end()) {
WarnL << "key:" << key << " not existed!";
return nullptr;
}
return mINI::Instance()[key].data();
}
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API_EXPORT uint16_t API_CALL mk_http_server_start(uint16_t port, int ssl) {
ssl = MAX(0,MIN(ssl,1));
try {
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http_server[ssl] = std::make_shared<TcpServer>();
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if(ssl){
http_server[ssl]->start<TcpSessionWithSSL<HttpSession> >(port);
} else{
http_server[ssl]->start<HttpSession>(port);
}
return http_server[ssl]->getPort();
} catch (std::exception &ex) {
http_server[ssl].reset();
WarnL << ex.what();
return 0;
}
}
API_EXPORT uint16_t API_CALL mk_rtsp_server_start(uint16_t port, int ssl) {
ssl = MAX(0,MIN(ssl,1));
try {
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rtsp_server[ssl] = std::make_shared<TcpServer>();
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if(ssl){
rtsp_server[ssl]->start<TcpSessionWithSSL<RtspSession> >(port);
}else{
rtsp_server[ssl]->start<RtspSession>(port);
}
return rtsp_server[ssl]->getPort();
} catch (std::exception &ex) {
rtsp_server[ssl].reset();
WarnL << ex.what();
return 0;
}
}
API_EXPORT uint16_t API_CALL mk_rtmp_server_start(uint16_t port, int ssl) {
ssl = MAX(0,MIN(ssl,1));
try {
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rtmp_server[ssl] = std::make_shared<TcpServer>();
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if(ssl){
rtmp_server[ssl]->start<TcpSessionWithSSL<RtmpSession> >(port);
}else{
rtmp_server[ssl]->start<RtmpSession>(port);
}
return rtmp_server[ssl]->getPort();
} catch (std::exception &ex) {
rtmp_server[ssl].reset();
WarnL << ex.what();
return 0;
}
}
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API_EXPORT uint16_t API_CALL mk_rtp_server_start(uint16_t port){
#ifdef ENABLE_RTPPROXY
try {
//创建rtp 服务器
rtpServer = std::make_shared<RtpServer>();
rtpServer->start(port);
return rtpServer->getPort();
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} catch (std::exception &ex) {
rtpServer.reset();
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WarnL << ex.what();
return 0;
}
#else
WarnL << "未启用该功能!";
return 0;
#endif
}
API_EXPORT uint16_t API_CALL mk_rtc_server_start(uint16_t port) {
#ifdef ENABLE_WEBRTC
try {
//创建rtc服务器
rtcServer = std::make_shared<UdpServer>();
rtcServer->setOnCreateSocket([](const EventPoller::Ptr &poller, const Buffer::Ptr &buf, struct sockaddr *, int) {
if (!buf) {
return Socket::createSocket(poller, false);
}
auto new_poller = WebRtcSession::queryPoller(buf);
if (!new_poller) {
//该数据对应的webrtc对象未找到丢弃之
return Socket::Ptr();
}
return Socket::createSocket(new_poller, false);
});
rtcServer->start<WebRtcSession>(port);
return rtcServer->getPort();
} catch (std::exception &ex) {
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rtcServer.reset();
WarnL << ex.what();
return 0;
}
#else
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WarnL << "未启用webrtc功能, 编译时请开启ENABLE_WEBRTC";
return 0;
#endif
}
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#ifdef ENABLE_WEBRTC
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class WebRtcArgsUrl : public mediakit::WebRtcArgs {
public:
WebRtcArgsUrl(std::string url) { _url = std::move(url); }
~WebRtcArgsUrl() = default;
toolkit::variant operator[](const std::string &key) const override {
if (key == "url") {
return _url;
}
return "";
}
private:
std::string _url;
};
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#endif
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API_EXPORT void API_CALL mk_webrtc_get_answer_sdp(void *user_data, on_mk_webrtc_get_answer_sdp cb, const char *type,
const char *offer, const char *url) {
#ifdef ENABLE_WEBRTC
assert(type && offer && url && cb);
auto session = std::make_shared<HttpSession>(Socket::createSocket());
std::string offer_str = offer;
WebRtcPluginManager::Instance().getAnswerSdp(*session, type, WebRtcArgsUrl(url),
[offer_str, session, user_data, cb](const WebRtcInterface &exchanger) mutable {
try {
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auto sdp_answer = const_cast<WebRtcInterface &>(exchanger).getAnswerSdp(offer_str);
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cb(user_data, sdp_answer.data(), nullptr);
} catch (std::exception &ex) {
cb(user_data, nullptr, ex.what());
}
});
#else
WarnL << "未启用webrtc功能, 编译时请开启ENABLE_WEBRTC";
#endif
}
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API_EXPORT uint16_t API_CALL mk_srt_server_start(uint16_t port) {
#ifdef ENABLE_SRT
try {
srtServer = std::make_shared<UdpServer>();
srtServer->setOnCreateSocket([](const EventPoller::Ptr &poller, const Buffer::Ptr &buf, struct sockaddr *, int) {
if (!buf) {
return Socket::createSocket(poller, false);
}
auto new_poller = SRT::SrtSession::queryPoller(buf);
if (!new_poller) {
//握手第一阶段
return Socket::createSocket(poller, false);
}
return Socket::createSocket(new_poller, false);
});
srtServer->start<SRT::SrtSession>(port);
return srtServer->getPort();
} catch (std::exception &ex) {
srtServer.reset();
WarnL << ex.what();
return 0;
}
#else
WarnL << "未启用该功能!";
return 0;
#endif
}
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API_EXPORT uint16_t API_CALL mk_shell_server_start(uint16_t port){
try {
shell_server = std::make_shared<TcpServer>();
shell_server->start<ShellSession>(port);
return shell_server->getPort();
} catch (std::exception &ex) {
shell_server.reset();
WarnL << ex.what();
return 0;
}
}