mirror of
https://github.com/markqvist/RNode_Firmware.git
synced 2024-10-01 03:15:39 -04:00
144 lines
3.3 KiB
C++
144 lines
3.3 KiB
C++
// Copyright (c) Sandeep Mistry. All rights reserved.
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// Licensed under the MIT license.
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// Modifications and additions copyright 2018 by Mark Qvist
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// Obviously still under the MIT license.
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#ifndef LORA_H
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#define LORA_H
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#include "Platform.h"
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#if LIBRARY_TYPE == LIBRARY_ARDUINO
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#include <Arduino.h>
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#include <SPI.h>
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#elif LIBRARY_TYPE == LIBRARY_C
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#include <cstdlib>
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#include <cstdint>
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#include <iostream>
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// Arduino Stream is not available, but not actually needed.
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class Stream {};
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typedef unsigned char byte;
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// Arduino SPI is not available, so make a Linux-ish version of SPISettings
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#define MSBFIRST 0
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#define LSBFIRST 1
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#define SPI_MODE0 SPI_MODE_0
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#define SPI_MODE1 SPI_MODE_1
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#define SPI_MODE2 SPI_MODE_2
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#define SPI_MODE3 SPI_MODE_3
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class SPISettings {
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public:
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inline SPISettings(uint32_t frequency, byte bitness, byte mode) : frequency(frequency), bitness(bitness), mode(mode) {};
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SPISettings& operator=(const SPISettings& other) = default;
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uint32_t frequency;
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byte bitness;
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byte mode;
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};
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#endif
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#define LORA_DEFAULT_SS_PIN 10
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#define LORA_DEFAULT_RESET_PIN 9
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#define LORA_DEFAULT_DIO0_PIN 2
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#define PA_OUTPUT_RFO_PIN 0
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#define PA_OUTPUT_PA_BOOST_PIN 1
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#define RSSI_OFFSET 157
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class LoRaClass : public Stream {
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public:
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LoRaClass();
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int begin(long frequency);
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void end();
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int beginPacket(int implicitHeader = false);
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int endPacket();
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int parsePacket(int size = 0);
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int packetRssi();
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uint8_t packetRssiRaw();
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uint8_t packetSnrRaw();
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float packetSnr();
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long packetFrequencyError();
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// from Print
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virtual size_t write(uint8_t byte);
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virtual size_t write(const uint8_t *buffer, size_t size);
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// from Stream
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virtual int available();
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virtual int read();
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virtual int peek();
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virtual void flush();
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void onReceive(void(*callback)(int));
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void receive(int size = 0);
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void idle();
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void sleep();
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void setTxPower(int level, int outputPin = PA_OUTPUT_PA_BOOST_PIN);
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uint32_t getFrequency();
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void setFrequency(long frequency);
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void setSpreadingFactor(int sf);
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long getSignalBandwidth();
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void setSignalBandwidth(long sbw);
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void setCodingRate4(int denominator);
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void setPreambleLength(long length);
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void setSyncWord(int sw);
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uint8_t modemStatus();
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void enableCrc();
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void disableCrc();
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// deprecated
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void crc() { enableCrc(); }
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void noCrc() { disableCrc(); }
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byte random();
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void setPins(int ss = LORA_DEFAULT_SS_PIN, int reset = LORA_DEFAULT_RESET_PIN, int dio0 = LORA_DEFAULT_DIO0_PIN);
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void setSPIFrequency(uint32_t frequency);
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#if LIBRARY_TYPE == LIBRARY_ARDUINO
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void dumpRegisters(Stream& out);
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#elif LIBRARY_TYPE == LIBRARY_C
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void dumpRegisters(std::ostream& out);
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#endif
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private:
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void explicitHeaderMode();
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void implicitHeaderMode();
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void handleDio0Rise();
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uint8_t readRegister(uint8_t address);
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void writeRegister(uint8_t address, uint8_t value);
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uint8_t singleTransfer(uint8_t address, uint8_t value);
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static void onDio0Rise();
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void handleLowDataRate();
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private:
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SPISettings _spiSettings;
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int _ss;
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int _reset;
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int _dio0;
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long _frequency;
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int _packetIndex;
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int _implicitHeaderMode;
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void (*_onReceive)(int);
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#if LIBRARY_TYPE == LIBRARY_C
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int _fd;
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#endif
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};
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extern LoRaClass LoRa;
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#endif
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