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eb0026ae08
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#pragma once
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#include <vector>
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#include <queue>
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#include <mutex>
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#include <thread>
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#define UWS_NO_ZLIB
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#include "App.h"
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void Logger(const char* format, ...) {
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time_t now = time(0);
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tm* ltm = localtime(&now);
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char buffer[32];
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strftime(buffer, 32, "[%H:%M:%S] ", ltm);
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printf("%s", buffer);
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va_list args;
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va_start(args, format);
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vprintf(format, args);
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va_end(args);
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}
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enum StreamType {
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ST_ORIGINAL,
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ST_MASKED,
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ST_MAX
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};
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struct FrameQueue {
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std::queue<cv::Mat> frameQueue;
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std::mutex frameMutex;
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};
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std::vector<FrameQueue> frameQueues(ST_MAX);
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struct FrameHolder {
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cv::Mat frame;
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std::mutex frameMutex;
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};
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std::array<FrameHolder, ST_MAX> frameHolders;
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// Convert cv::Mat to JPEG buffer
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std::vector<uchar> matToBytes(const cv::Mat& img)
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{
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std::vector<uchar> buf;
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cv::imencode(".jpg", img, buf);
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return buf;
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}
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std::vector<uchar> matToJpeg(const cv::Mat& img)
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{
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std::vector<uchar> buf;
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cv::imencode(".jpg", img, buf);
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return buf;
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}
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void updateFrame(int type, const cv::Mat& frame)
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{
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std::lock_guard<std::mutex> lock(frameHolders[type].frameMutex);
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frameHolders[type].frame = frame.clone();
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}
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cv::Mat compressFrame(const cv::Mat& frame, int quality = 80)
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{
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std::vector<uchar> buf;
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std::vector<int> params = { cv::IMWRITE_JPEG_QUALITY, quality };
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cv::imencode(".jpg", frame, buf, params);
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return cv::imdecode(buf, cv::IMREAD_COLOR);
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}
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void pushToFrameQueue(int type, const cv::Mat& frame) {
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//cv::Mat compressedFrame = compressFrame(frame, 50);
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// clear the queue
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std::queue<cv::Mat> empty;
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std::swap(frameQueues[type].frameQueue, empty);
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frameQueues[type].frameQueue.push(frame.clone());
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}
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struct PerSocketData {
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};
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std::mutex wsMutex;
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std::vector<uWS::WebSocket<false, true, PerSocketData>*> activeWebSockets;
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void SendFramesToAllClients() {
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std::lock_guard<std::mutex> lock(wsMutex);
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for (auto ws : activeWebSockets) {
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for (int type = 0; type < ST_MAX; ++type) {
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cv::Mat frame;
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{
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std::lock_guard<std::mutex> lock(frameQueues[type].frameMutex);
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if (!frameQueues[type].frameQueue.empty()) {
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frame = frameQueues[type].frameQueue.front();
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frameQueues[type].frameQueue.pop();
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}
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}
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if (!frame.empty()) {
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std::vector<uchar> jpeg = matToJpeg(frame);
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uint32_t size = jpeg.size();
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// Prepare the message: type (1 byte) + size (4 bytes) + image data
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std::string message(1, static_cast<char>(type));
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message.append(reinterpret_cast<char*>(&size), 4);
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message.append(jpeg.begin(), jpeg.end());
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ws->send(message, uWS::OpCode::BINARY);
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}
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}
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}
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}
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void RunWebSocketServer(int websocketPort) {
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auto loop = uWS::Loop::get();
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struct us_timer_t* frameTimer = us_create_timer((struct us_loop_t*)loop, 0, 0);
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us_timer_set(frameTimer, [](struct us_timer_t*) {
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SendFramesToAllClients();
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}, 33, 33); // 33ms interval for approximately 30 FPS
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uWS::App().ws<PerSocketData>("/*", {
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.compression = uWS::SHARED_COMPRESSOR,
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.maxPayloadLength = 100 * 1024 * 1024,
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.idleTimeout = 120,
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.maxBackpressure = 1 * 1024 * 1024,
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.closeOnBackpressureLimit = false,
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.resetIdleTimeoutOnSend = false,
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.sendPingsAutomatically = true,
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.open = [](auto* ws) {
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Logger("WebSocket connection opened\n");
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std::lock_guard<std::mutex> lock(wsMutex);
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activeWebSockets.push_back(ws);
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},
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.message = [](auto* ws, std::string_view message, uWS::OpCode opCode) {
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// Handle incoming messages if needed
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},
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.close = [](auto* ws, int code, std::string_view message) {
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Logger("WebSocket connection closed, current connections: %d\n", activeWebSockets.size() - 1);
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std::lock_guard<std::mutex> lock(wsMutex);
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activeWebSockets.erase(std::remove(activeWebSockets.begin(), activeWebSockets.end(), ws), activeWebSockets.end());
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}
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}).listen(websocketPort, [websocketPort](auto* listen_socket) {
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if (listen_socket) {
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Logger("WebSocket listening on port %i\n", websocketPort);
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}
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}).run();
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}
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