#include #include "target.h" WioTrackerL2Board board; static SPIClass spi; RADIO_CLASS radio = new Module(P_LORA_NSS, P_LORA_DIO_1, P_LORA_RESET, P_LORA_BUSY, spi); WRAPPER_CLASS radio_driver(radio, board); ESP32RTCClock fallback_clock; AutoDiscoverRTCClock rtc_clock(fallback_clock); L2GpsProvider gps(Serial1, &rtc_clock); EnvironmentSensorManager sensors(gps); #ifdef DISPLAY_CLASS DISPLAY_CLASS display; MomentaryButton user_btn(PIN_USER_BTN, 1000, true, true, false); // no multi-click: back answers at once #endif #ifdef BUZZER_I2S void buzzerAmpPower(bool on) { board.setSpeakerAmp(on); } #endif void L2GpsProvider::begin() { board.setGnssPower(true); // with the power-up reset if (_uart_off) { // back from stop(): the UART again Serial1.setRxBufferSize(1024); Serial1.begin(GPS_BAUD_RATE, SERIAL_8N1, PIN_GPS_TX, PIN_GPS_RX); _uart_off = false; } MicroNMEALocationProvider::begin(); } void L2GpsProvider::stop() { MicroNMEALocationProvider::stop(); // The UART's TX idling high would feed the unpowered module through its pin. Serial1.end(); pinMode(PIN_GPS_RX, INPUT); // PIN_GPS_RX: the module's RX, our TX _uart_off = true; board.setGnssPower(false); } void L2GpsProvider::reset() { board.gnssReset(); } bool L2GpsProvider::isEnabled() { return board.gnssPowered(); } bool radio_init() { MESH_DEBUG_PRINTLN("radio_init: rtc + sx1262 init"); fallback_clock.begin(); rtc_clock.begin(Wire); // Wire already running on 47/48 from board.begin() bool ok = radio.std_init(&spi); MESH_DEBUG_PRINTLN("radio_init: SX1262 %s", ok ? "OK" : "FAILED"); return ok; } mesh::LocalIdentity radio_new_identity() { RadioNoiseListener rng(radio); return mesh::LocalIdentity(&rng); // create new random identity }