target.cpp 1.3 KB

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  1. #include <Arduino.h>
  2. #include "target.h"
  3. LilyGoTLoraBoard board;
  4. static SPIClass spi;
  5. RADIO_CLASS radio = new Module(P_LORA_NSS, P_LORA_DIO_0, P_LORA_RESET, P_LORA_DIO_1, spi);
  6. WRAPPER_CLASS radio_driver(radio, board);
  7. ESP32RTCClock fallback_clock;
  8. AutoDiscoverRTCClock rtc_clock(fallback_clock);
  9. SensorManager sensors;
  10. #ifndef LORA_CR
  11. #define LORA_CR 5
  12. #endif
  13. bool radio_init() {
  14. fallback_clock.begin();
  15. rtc_clock.begin(Wire);
  16. spi.begin(P_LORA_SCLK, P_LORA_MISO, P_LORA_MOSI);
  17. int status = radio.begin(LORA_FREQ, LORA_BW, LORA_SF, LORA_CR, RADIOLIB_SX126X_SYNC_WORD_PRIVATE, LORA_TX_POWER, 8);
  18. if (status != RADIOLIB_ERR_NONE) {
  19. Serial.print("ERROR: radio init failed: ");
  20. Serial.println(status);
  21. return false; // fail
  22. }
  23. #ifdef SX127X_CURRENT_LIMIT
  24. radio.setCurrentLimit(SX127X_CURRENT_LIMIT);
  25. #endif
  26. radio.setCRC(1);
  27. return true; // success
  28. }
  29. uint32_t radio_get_rng_seed() {
  30. return radio.random(0x7FFFFFFF);
  31. }
  32. void radio_set_params(float freq, float bw, uint8_t sf, uint8_t cr) {
  33. radio.setFrequency(freq);
  34. radio.setSpreadingFactor(sf);
  35. radio.setBandwidth(bw);
  36. radio.setCodingRate(cr);
  37. }
  38. void radio_set_tx_power(uint8_t dbm) {
  39. radio.setOutputPower(dbm);
  40. }
  41. mesh::LocalIdentity radio_new_identity() {
  42. RadioNoiseListener rng(radio);
  43. return mesh::LocalIdentity(&rng); // create new random identity
  44. }