#include "module_mats_instruments.h" #include "common/ccsds/ccsds_tm/demuxer.h" #include "common/ccsds/ccsds_tm/vcdu.h" #include "imgui/imgui.h" #include "logger.h" #include "products/dataset.h" #include "products/image_product.h" #include #include namespace mats { namespace instruments { MATSInstrumentsDecoderModule::MATSInstrumentsDecoderModule(std::string input_file, std::string output_file_hint, nlohmann::json parameters) : satdump::pipeline::base::FileStreamToFileStreamModule(input_file, output_file_hint, parameters) { fsfsm_enable_output = false; } void MATSInstrumentsDecoderModule::process() { uint8_t cadu[1279]; // Demuxers ccsds::ccsds_tm::Demuxer demuxer_vcid1(1103, false); // std::ofstream output("file.ccsds"); std::string mats_directory = d_output_file_hint.substr(0, d_output_file_hint.rfind('/')); while (should_run()) { // Read buffer read_data((uint8_t *)&cadu, 1279); // Parse this transport frame ccsds::ccsds_tm::VCDU vcdu = ccsds::ccsds_tm::parseVCDU(cadu); // logger->info(pkt.header.apid); // logger->info(vcdu.vcid); if (vcdu.vcid == 1) // Replay VCID { std::vector ccsdsFrames = demuxer_vcid1.work(cadu); for (ccsds::CCSDSPacket &pkt : ccsdsFrames) { if (pkt.header.apid == 100) mats_reader.work(pkt, mats_directory); } } } cleanup(); // Products dataset satdump::products::DataSet dataset; dataset.satellite_name = "MATS"; dataset.timestamp = time(0); // avg_overflowless(avhrr_reader.timestamps); // NADIR Imager { mats_status = SAVING; std::string directory = d_output_file_hint.substr(0, d_output_file_hint.rfind('/')) + "/Nadir"; if (!std::filesystem::exists(directory)) std::filesystem::create_directory(directory); logger->info("----------- MATS Nadir"); logger->info("Lines : " + std::to_string(mats_reader.nadir_lines)); satdump::products::ImageProduct mats_nadir_products; mats_nadir_products.instrument_name = "mats_nadir"; // mats_nadir_products.set_tle(satellite_tle); // mats_nadir_products.set_timestamps(mhs_reader.timestamps); // mats_nadir_products.set_proj_cfg(loadJsonFile(resources::getResourcePath("projections_settings/metop_abc_mhs.json"))); mats_nadir_products.images.push_back({0, "MATS-Nadir", "1", mats_reader.getNadirImage(), 12}); mats_nadir_products.set_channel_wavenumber(0, 1311.99); mats_nadir_products.save(directory); dataset.products_list.push_back("Nadir"); mats_status = DONE; } dataset.save(d_output_file_hint.substr(0, d_output_file_hint.rfind('/'))); } void MATSInstrumentsDecoderModule::drawUI(bool window) { ImGui::Begin("MATS Instruments Decoder", NULL, window ? 0 : NOWINDOW_FLAGS); if (ImGui::BeginTable("##matsinstrumentstable", 3, ImGuiTableFlags_Borders | ImGuiTableFlags_RowBg)) { ImGui::TableNextRow(); ImGui::TableSetColumnIndex(0); ImGui::Text("Instrument"); ImGui::TableSetColumnIndex(1); ImGui::Text("Images / Frames"); ImGui::TableSetColumnIndex(2); ImGui::Text("Status"); for (int i = 0; i < 7; i++) { ImGui::TableNextRow(); ImGui::TableSetColumnIndex(0); ImGui::Text("MATS %s", mats::channel_names[i].c_str()); ImGui::TableSetColumnIndex(1); ImGui::TextColored(style::theme.green, "%d", mats_reader.img_cnts[i]); ImGui::TableSetColumnIndex(2); drawStatus(mats_status); } ImGui::EndTable(); } drawProgressBar(); ImGui::End(); } std::string MATSInstrumentsDecoderModule::getID() { return "mats_instruments"; } std::shared_ptr MATSInstrumentsDecoderModule::getInstance(std::string input_file, std::string output_file_hint, nlohmann::json parameters) { return std::make_shared(input_file, output_file_hint, parameters); } } // namespace instruments } // namespace mats