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@ -9,6 +9,35 @@ class CustomLR1110 : public LR1110 { |
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public: |
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CustomLR1110(Module *mod) : LR1110(mod) { } |
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RadioLibTime_t getTimeOnAir(size_t len) override { |
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uint32_t symbolLength_us = ((uint32_t)(1000 * 10) << this->spreadingFactor) / (this->bandwidthKhz * 10) ; |
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uint8_t sfCoeff1_x4 = 17; // (4.25 * 4)
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uint8_t sfCoeff2 = 8; |
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if(this->spreadingFactor == 5 || this->spreadingFactor == 6) { |
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sfCoeff1_x4 = 25; // 6.25 * 4
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sfCoeff2 = 0; |
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} |
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uint8_t sfDivisor = 4*this->spreadingFactor; |
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if(symbolLength_us >= 16000) { |
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sfDivisor = 4*(this->spreadingFactor - 2); |
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} |
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const int8_t bitsPerCrc = 16; |
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const int8_t N_symbol_header = this->headerType == RADIOLIB_SX126X_LORA_HEADER_EXPLICIT ? 20 : 0; |
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// numerator of equation in section 6.1.4 of SX1268 datasheet v1.1 (might not actually be bitcount, but it has len * 8)
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int16_t bitCount = (int16_t) 8 * len + this->crcTypeLoRa * bitsPerCrc - 4 * this->spreadingFactor + sfCoeff2 + N_symbol_header; |
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if(bitCount < 0) { |
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bitCount = 0; |
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} |
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// add (sfDivisor) - 1 to the numerator to give integer CEIL(...)
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uint16_t nPreCodedSymbols = (bitCount + (sfDivisor - 1)) / (sfDivisor); |
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// preamble can be 65k, therefore nSymbol_x4 needs to be 32 bit
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uint32_t nSymbol_x4 = (this->preambleLengthLoRa + 8) * 4 + sfCoeff1_x4 + nPreCodedSymbols * (this->codingRate + 4) * 4; |
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return((symbolLength_us * nSymbol_x4) / 4); |
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} |
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bool isReceiving() { |
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uint16_t irq = getIrqStatus(); |
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bool detected = ((irq & LR1110_IRQ_HEADER_VALID) || (irq & LR1110_IRQ_HAS_PREAMBLE)); |
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