144 lines
6.4 KiB
C++
144 lines
6.4 KiB
C++
// **********************************************************************************
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// Driver definition for HopeRF RFM69W/RFM69HW/RFM69CW/RFM69HCW, Semtech SX1231/1231H
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// **********************************************************************************
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// Copyright Felix Rusu (2014), felix@lowpowerlab.com
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// http://lowpowerlab.com/
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// **********************************************************************************
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// License
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// **********************************************************************************
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// This program is free software; you can redistribute it
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// and/or modify it under the terms of the GNU General
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// Public License as published by the Free Software
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// Foundation; either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will
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// be useful, but WITHOUT ANY WARRANTY; without even the
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// implied warranty of MERCHANTABILITY or FITNESS FOR A
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// PARTICULAR PURPOSE. See the GNU General Public
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// License for more details.
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//
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// You should have received a copy of the GNU General
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// Public License along with this program.
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// If not, see <http://www.gnu.org/licenses/>.
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//
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// Licence can be viewed at
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// http://www.gnu.org/licenses/gpl-3.0.txt
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//
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// Please maintain this license information along with authorship
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// and copyright notices in any redistribution of this code
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// **********************************************************************************
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#ifndef RFM69_h
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#define RFM69_h
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#include <Arduino.h> // assumes Arduino IDE v1.0 or greater
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#define RF69_MAX_DATA_LEN 61 // to take advantage of the built in AES/CRC we want to limit the frame size to the internal FIFO size (66 bytes - 3 bytes overhead - 2 bytes crc)
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#define RF69_SPI_CS SS // SS is the SPI slave select pin, for instance D10 on ATmega328
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// INT0 on AVRs should be connected to RFM69's DIO0 (ex on ATmega328 it's D2, on ATmega644/1284 it's D2)
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#if defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) || defined(__AVR_ATmega88) || defined(__AVR_ATmega8__) || defined(__AVR_ATmega88__)
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#define RF69_IRQ_PIN 2
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#define RF69_IRQ_NUM 0
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#elif defined(__AVR_ATmega644P__) || defined(__AVR_ATmega1284P__)
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#define RF69_IRQ_PIN 2
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#define RF69_IRQ_NUM 2
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#elif defined(__AVR_ATmega32U4__)
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#define RF69_IRQ_PIN 3
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#define RF69_IRQ_NUM 0
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#endif
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#define CSMA_LIMIT -90 // upper RX signal sensitivity threshold in dBm for carrier sense access
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#define RF69_MODE_SLEEP 0 // XTAL OFF
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#define RF69_MODE_STANDBY 1 // XTAL ON
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#define RF69_MODE_SYNTH 2 // PLL ON
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#define RF69_MODE_RX 3 // RX MODE
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#define RF69_MODE_TX 4 // TX MODE
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// available frequency bands
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#define RF69_315MHZ 31 // non trivial values to avoid misconfiguration
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#define RF69_433MHZ 43
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#define RF69_868MHZ 86
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#define RF69_915MHZ 91
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#define null 0
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#define COURSE_TEMP_COEF -90 // puts the temperature reading in the ballpark, user can fine tune the returned value
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#define RF69_BROADCAST_ADDR 255
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#define RF69_CSMA_LIMIT_MS 1000
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#define RF69_TX_LIMIT_MS 1000
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#define RF69_FSTEP 61.03515625 // == FXOSC / 2^19 = 32MHz / 2^19 (p13 in datasheet)
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class RFM69 {
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public:
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static volatile uint8_t DATA[RF69_MAX_DATA_LEN]; // recv/xmit buf, including header & crc bytes
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static volatile uint8_t DATALEN;
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static volatile uint8_t SENDERID;
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static volatile uint8_t TARGETID; // should match _address
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static volatile uint8_t PAYLOADLEN;
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static volatile uint8_t ACK_REQUESTED;
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static volatile uint8_t ACK_RECEIVED; // should be polled immediately after sending a packet with ACK request
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static volatile int16_t RSSI; // most accurate RSSI during reception (closest to the reception)
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static volatile uint8_t _mode; // should be protected?
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RFM69(uint8_t slaveSelectPin=RF69_SPI_CS, uint8_t interruptPin=RF69_IRQ_PIN, bool isRFM69HW=false, uint8_t interruptNum=RF69_IRQ_NUM) {
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_slaveSelectPin = slaveSelectPin;
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_interruptPin = interruptPin;
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_interruptNum = interruptNum;
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_mode = RF69_MODE_STANDBY;
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_promiscuousMode = false;
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_powerLevel = 31;
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_isRFM69HW = isRFM69HW;
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}
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bool initialize(uint8_t freqBand, uint8_t ID, uint8_t networkID=1);
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void setAddress(uint8_t addr);
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void setNetwork(uint8_t networkID);
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bool canSend();
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void send(uint8_t toAddress, const void* buffer, uint8_t bufferSize, bool requestACK=false);
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bool sendWithRetry(uint8_t toAddress, const void* buffer, uint8_t bufferSize, uint8_t retries=2, uint8_t retryWaitTime=40); // 40ms roundtrip req for 61byte packets
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bool receiveDone();
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bool ACKReceived(uint8_t fromNodeID);
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bool ACKRequested();
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void sendACK(const void* buffer = "", uint8_t bufferSize=0);
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uint32_t getFrequency();
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void setFrequency(uint32_t freqHz);
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void encrypt(const char* key);
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void setCS(uint8_t newSPISlaveSelect);
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int16_t readRSSI(bool forceTrigger=false);
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void promiscuous(bool onOff=true);
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void setHighPower(bool onOFF=true); // has to be called after initialize() for RFM69HW
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void setPowerLevel(uint8_t level); // reduce/increase transmit power level
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void sleep();
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uint8_t readTemperature(uint8_t calFactor=0); // get CMOS temperature (8bit)
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void rcCalibration(); // calibrate the internal RC oscillator for use in wide temperature variations - see datasheet section [4.3.5. RC Timer Accuracy]
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// allow hacking registers by making these public
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uint8_t readReg(uint8_t addr);
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void writeReg(uint8_t addr, uint8_t val);
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void readAllRegs();
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protected:
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static void isr0();
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void virtual interruptHandler();
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void sendFrame(uint8_t toAddress, const void* buffer, uint8_t size, bool requestACK=false, bool sendACK=false);
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static RFM69* selfPointer;
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uint8_t _slaveSelectPin;
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uint8_t _interruptPin;
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uint8_t _interruptNum;
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uint8_t _address;
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bool _promiscuousMode;
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uint8_t _powerLevel;
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bool _isRFM69HW;
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uint8_t _SPCR;
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uint8_t _SPSR;
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void receiveBegin();
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void setMode(uint8_t mode);
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void setHighPowerRegs(bool onOff);
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void select();
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void unselect();
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};
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#endif
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