#include "logger.h" #include "core/module.h" #include "core/pipeline.h" #include #include #include "nlohmann/json.hpp" #include #include "init.h" #include "common/cli_utils.h" #include "common/dsp_sample_source/dsp_sample_source.h" #include "live_pipeline.h" int main(int argc, char *argv[]) { // Init logger initLogger(); if (argc < 5) // Check overall command { logger->error("Usage : " + std::string(argv[0]) + " [downlink] [input_level] [input_file] [output_file_or_directory] [additional options as required]"); logger->error("Extra options (examples. Any parameter used in modules can be used here) :"); logger->error(" --samplerate [baseband_samplerate] --baseband_format [f32/i16/i8/w8] --dc_block --iq_swap"); return 1; } // Init SatDump satdump::initSatdump(); if (std::string(argv[1]) == "live") { std::string downlink_pipeline = argv[2]; std::string output_file = argv[3]; // Parse flags nlohmann::json parameters = parse_common_flags(argc - 4, &argv[4]); uint64_t samplerate = parameters["samplerate"].get(); uint64_t frequency = parameters["frequency"].get(); uint64_t timeout = parameters.contains("timeout") ? parameters["timeout"].get() : 0; std::string handler_id = parameters["source"].get(); dsp::registerAllSources(); std::vector source_tr = dsp::getAllAvailableSources(); dsp::SourceDescriptor selected_src; for (dsp::SourceDescriptor src : source_tr) logger->debug("Device " + src.name); for (dsp::SourceDescriptor src : source_tr) { if (handler_id == src.source_type) selected_src = src; } std::shared_ptr source_ptr = getSourceFromDescriptor(selected_src); source_ptr->open(); source_ptr->set_frequency(frequency); source_ptr->set_samplerate(samplerate); source_ptr->set_settings(parameters); // Get pipeline std::optional pipeline = satdump::getPipelineFromName(downlink_pipeline); parameters["baseband_format"] = "f32"; parameters["buffer_size"] = STREAM_BUFFER_SIZE; // This is required, as we WILL go over the (usually) default 8192 size std::unique_ptr live_pipeline = std::make_unique(pipeline.value(), parameters, output_file); ctpl::thread_pool ui_thread_pool(8); source_ptr->start(); live_pipeline->start(source_ptr->output_stream, ui_thread_pool); uint64_t start_time = time(0); while (1) { if (timeout > 0) { int elapsed_time = time(0) - start_time; if (elapsed_time >= timeout) break; } } source_ptr->stop(); live_pipeline->stop(); } else { std::string downlink_pipeline = argv[1]; std::string input_level = argv[2]; std::string input_file = argv[3]; std::string output_file = argv[4]; // Parse flags nlohmann::json parameters = parse_common_flags(argc - 5, &argv[5]); // logger->warn("\n" + parameters.dump(4)); // exit(0); // Print some useful info logger->info("Starting processing pipeline " + downlink_pipeline + "..."); logger->debug("Input file (" + input_level + ") : " + input_file); logger->debug("Output file : " + output_file); // Create output dir if (!std::filesystem::exists(output_file)) std::filesystem::create_directories(output_file); // Get pipeline std::optional pipeline = satdump::getPipelineFromName(downlink_pipeline); if (pipeline.has_value()) { try { pipeline.value().run(input_file, output_file, parameters, input_level); } catch (std::exception &e) { logger->error("Fatal error running pipeline : " + std::string(e.what())); return 1; } } else logger->critical("Pipeline " + downlink_pipeline + " does not exist!"); } logger->info("Done! Goodbye"); }