#include "SX1231.h" #if !defined(RADIOLIB_EXCLUDE_SX1231) SX1231::SX1231(Module* mod) : RF69(mod) { } int16_t SX1231::begin(float freq, float br, float freqDev, float rxBw, int8_t power, uint8_t preambleLen) { // set module properties _mod->init(); _mod->hal->pinMode(_mod->getIrq(), _mod->hal->GpioModeInput); _mod->hal->pinMode(_mod->getRst(), _mod->hal->GpioModeOutput); // try to find the SX1231 chip uint8_t i = 0; bool flagFound = false; while((i < 10) && !flagFound) { int16_t version = getChipVersion(); if((version == 0x21) || (version == 0x22) || (version == 0x23)) { flagFound = true; _chipRevision = version; } else { RADIOLIB_DEBUG_PRINTLN("SX1231 not found! (%d of 10 tries) RF69_REG_VERSION == 0x%04X, expected 0x0021 / 0x0022 / 0x0023", i + 1, version); _mod->hal->delay(10); i++; } } if(!flagFound) { RADIOLIB_DEBUG_PRINTLN("No SX1231 found!"); _mod->term(); return(RADIOLIB_ERR_CHIP_NOT_FOUND); } RADIOLIB_DEBUG_PRINTLN("M\tSX1231"); // configure settings not accessible by API int16_t state = config(); RADIOLIB_ASSERT(state); RADIOLIB_DEBUG_PRINTLN("M\tRF69"); // configure publicly accessible settings state = setFrequency(freq); RADIOLIB_ASSERT(state); // configure bitrate _rxBw = 125.0; state = setBitRate(br); RADIOLIB_ASSERT(state); // configure default RX bandwidth state = setRxBandwidth(rxBw); RADIOLIB_ASSERT(state); // configure default frequency deviation state = setFrequencyDeviation(freqDev); RADIOLIB_ASSERT(state); // configure default TX output power state = setOutputPower(power); RADIOLIB_ASSERT(state); // configure default preamble length state = setPreambleLength(preambleLen); RADIOLIB_ASSERT(state); // default sync word values 0x2D01 is the same as the default in LowPowerLab RFM69 library uint8_t syncWord[] = {0x2D, 0x01}; state = setSyncWord(syncWord, 2); RADIOLIB_ASSERT(state); // set default packet length mode state = variablePacketLengthMode(); if (state != RADIOLIB_ERR_NONE) { return(state); } // SX1231 V2a only if(_chipRevision == RADIOLIB_SX1231_CHIP_REVISION_2_A) { // modify default OOK threshold value state = _mod->SPIsetRegValue(RADIOLIB_SX1231_REG_TEST_OOK, RADIOLIB_SX1231_OOK_DELTA_THRESHOLD); RADIOLIB_ASSERT(state); // enable OCP with 95 mA limit state = _mod->SPIsetRegValue(RADIOLIB_RF69_REG_OCP, RADIOLIB_RF69_OCP_ON | RADIOLIB_RF69_OCP_TRIM, 4, 0); RADIOLIB_ASSERT(state); } return(RADIOLIB_ERR_NONE); } #endif