sweeper_video/src/mqtt_client_wrapper.cpp

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// mqtt_client_wrapper.cpp
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#include "mqtt_client_wrapper.hpp"
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#include <algorithm>
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#include <chrono>
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#include <condition_variable>
#include <mutex>
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#include <nlohmann/json.hpp>
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#include <queue>
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#include <thread>
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std::shared_ptr<MQTTClient> mqtt_client;
std::atomic<bool> mqtt_restart_required{false};
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extern std::atomic<bool> g_running;
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std::atomic<bool> g_streaming{false};
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std::string g_dispatch_id;
std::mutex g_dispatch_id_mutex;
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static void send_heartbeat()
{
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if (!mqtt_client || !mqtt_client->isConnected()) return;
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// 获取当前时间戳13位毫秒
auto now = std::chrono::system_clock::now();
auto ms = std::chrono::duration_cast<std::chrono::milliseconds>(now.time_since_epoch()).count();
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g_streaming.store(RTMPManager::is_any_streaming());
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nlohmann::json hb;
hb["timestamp"] = ms;
hb["status"] = g_streaming ? 1 : 0; // 0等待中1推流中
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mqtt_client->publish(g_app_config.mqtt.topics.heartbeat_up, hb.dump());
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}
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// MQTT 回调
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static void on_mqtt_connected()
{
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LOG_INFO("[MQTT] Connected to broker: " + g_app_config.mqtt.server_ip);
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const auto &topics = g_app_config.mqtt.topics;
mqtt_client->subscribe(topics.video_down);
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}
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static void on_mqtt_disconnected() { LOG_WARN("[MQTT] Disconnected from broker: " + g_app_config.mqtt.server_ip); }
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static void on_mqtt_message_received(const std::string &topic, const std::string &message)
{
try
{
auto j = nlohmann::json::parse(message);
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if (topic != g_app_config.mqtt.topics.video_down || j["type"] != "request") return;
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LOG_INFO("[MQTT] Received message on topic [" + topic + "], len = " + std::to_string(message.size()));
LOG_INFO("[MQTT] Message content: " + j.dump(-1));
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VideoPushRequest req;
req.seqNo = j.value("seqNo", "");
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auto data = j["data"];
if (data.is_object())
{
VideoPushRequest::DataItem item;
item.switchVal = data.value("switch", 0);
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item.streamType = data.value("streamType", 1); // ✅ 默认子码流
if (item.streamType == 0) item.streamType = 1; // ✅ 防止平台误发 main
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item.channels = data.value("channels", std::vector<int>{});
req.data.push_back(item);
}
else if (data.is_array())
{
for (auto &d : data)
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{
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VideoPushRequest::DataItem item;
item.switchVal = d.value("switch", 0);
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item.streamType = data.value("streamType", 1); // ✅ 默认子码流
if (item.streamType == 0) item.streamType = 1; // ✅ 防止平台误发 main
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item.channels = d.value("channels", std::vector<int>{});
req.data.push_back(item);
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}
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}
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// 异步执行推流任务
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std::thread(
[req]()
{
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try
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{
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auto results = RTMPManager::process_push_request(req);
// 组装 MQTT 回复
nlohmann::json reply;
reply["type"] = "response";
reply["seqNo"] = req.seqNo;
reply["data"] = nlohmann::json::array();
for (const auto &r : results)
{
nlohmann::json item;
item["loc"] = r.loc;
item["url"] = r.url;
item["result"] = r.result;
item["reason"] = r.reason;
reply["data"].push_back(item);
}
mqtt_client->publish(g_app_config.mqtt.topics.video_down, reply.dump(), 1);
LOG_INFO("[MQTT] Sent RTMP response: " + reply.dump());
}
catch (const std::exception &e)
{
LOG_ERROR(std::string("[MQTT] Exception in RTMP thread: ") + e.what());
}
catch (...)
{
LOG_ERROR("[MQTT] Unknown exception in RTMP thread");
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}
})
.detach();
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}
catch (const std::exception &e)
{
LOG_ERROR(std::string("[MQTT] Failed to process incoming JSON: ") + e.what());
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}
}
void mqtt_client_thread_func()
{
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const auto &cfg = g_app_config.mqtt;
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auto heartbeat_interval = std::chrono::milliseconds(static_cast<int>(cfg.keep_alive * 0.9));
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while (g_running)
{
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mqtt_client = std::make_unique<MQTTClient>(cfg);
mqtt_client->setConnectCallback(on_mqtt_connected);
mqtt_client->setDisconnectCallback(on_mqtt_disconnected);
mqtt_client->setMessageCallback(on_mqtt_message_received);
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// 等待连接
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while (g_running && !mqtt_client->isConnected())
{
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mqtt_client->connect();
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for (int i = 0; i < 10 && g_running && !mqtt_client->isConnected(); i++)
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std::this_thread::sleep_for(std::chrono::milliseconds(50));
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if (!g_running && !mqtt_client->isConnected()) mqtt_client->force_disconnect();
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}
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// 主循环:心跳
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while (g_running && mqtt_client->isConnected())
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{
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send_heartbeat();
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auto sleep_time = heartbeat_interval;
while (sleep_time.count() > 0 && g_running && mqtt_client->isConnected())
{
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auto chunk = std::min(sleep_time, std::chrono::milliseconds(50));
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std::this_thread::sleep_for(chunk);
sleep_time -= chunk;
}
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if (!g_running && mqtt_client->isConnected()) mqtt_client->force_disconnect();
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}
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// 清理
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if (mqtt_client)
{
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if (g_running)
mqtt_client->disconnect();
else
mqtt_client->force_disconnect();
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mqtt_client.reset();
}
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mqtt_restart_required = false;
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if (!g_running) break;
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// 短暂等待再重连
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for (int i = 0; i < 5 && g_running; i++) std::this_thread::sleep_for(std::chrono::milliseconds(200));
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}
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LOG_INFO("[MQTT] Client thread exiting.");
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}