#include "../nodes/vp_file_src_node.h" #include "../nodes/infers/vp_yunet_face_detector_node.h" #include "../nodes/infers/vp_sface_feature_encoder_node.h" #include "../nodes/osd/vp_face_osd_node_v2.h" #include "../nodes/vp_screen_des_node.h" #include "../nodes/vp_rtmp_des_node.h" #include "../nodes/vp_split_node.h" #include "../utils/analysis_board/vp_analysis_board.h" /* * ## 1-N-N sample ## * 1 video input and then split into 2 branches for different infer tasks, then 2 total outputs(no need to sync in such situations). */ int main() { VP_SET_LOG_LEVEL(vp_utils::vp_log_level::INFO); VP_LOGGER_INIT(); // create nodes auto file_src_0 = std::make_shared("file_src_0", 0, "./vp_data/test_video/face.mp4", 0.6); auto split = std::make_shared("split", false, true); // split by deep-copy not by channel! // branch a auto yunet_face_detector_a = std::make_shared("yunet_face_detector_a", "./vp_data/models/face/face_detection_yunet_2022mar.onnx"); auto sface_face_encoder_a = std::make_shared("sface_face_encoder_a", "./vp_data/models/face/face_recognition_sface_2021dec.onnx"); auto osd_a = std::make_shared("osd_a"); auto screen_des_a = std::make_shared("screen_des_a", 0); // branch b auto yunet_face_detector_b = std::make_shared("yunet_face_detector_b", "./vp_data/models/face/face_detection_yunet_2022mar.onnx"); auto sface_face_encoder_b = std::make_shared("sface_face_encoder_b", "./vp_data/models/face/face_recognition_sface_2021dec.onnx"); auto osd_b = std::make_shared("osd_b"); auto screen_des_b = std::make_shared("screen_des_b", 0); // construct pipeline split->attach_to({file_src_0}); // branch a yunet_face_detector_a->attach_to({split}); sface_face_encoder_a->attach_to({yunet_face_detector_a}); osd_a->attach_to({sface_face_encoder_a}); screen_des_a->attach_to({osd_a}); // branch b yunet_face_detector_b->attach_to({split}); sface_face_encoder_b->attach_to({yunet_face_detector_b}); osd_b->attach_to({sface_face_encoder_b}); screen_des_b->attach_to({osd_b}); file_src_0->start(); // for debug purpose vp_utils::vp_analysis_board board({file_src_0}); board.display(1, false); std::string wait; std::getline(std::cin, wait); file_src_0->detach_recursively(); }