new payload encoder (experimental)
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@ -45,17 +45,13 @@ extern gpsStatus_t gps_status; // struct for storing gps data
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extern TinyGPSPlus gps; // Make TinyGPS++ instance globally availabe
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extern TinyGPSPlus gps; // Make TinyGPS++ instance globally availabe
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#endif
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#endif
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/*
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// payload encoder
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// payload encoder
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#if (PAYLOAD_ENCODER == 1)
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#if PAYLOAD_ENCODER == 1
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extern TTNplain payload;
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extern TTNplain payload;
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#elif (PAYLOAD_ENCODER == 2)
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#elif PAYLOAD_ENCODER == 2
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extern TTNserialized payload;
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extern TTNserialized payload;
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#elif (PAYLOAD_ENCODER == 3)
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#elif PAYLOAD_ENCODER == 3
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extern CayenneLPP payload;
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extern CayenneLPP payload;
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#else
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#else
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#error "No valid payload converter defined"
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#error "No valid payload converter defined"
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#endif
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#endif
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*/
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extern TTNplain payload;
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11
src/main.cpp
11
src/main.cpp
@ -70,21 +70,16 @@ portMUX_TYPE timerMux =
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std::set<uint16_t> macs; // associative container holds total of unique MAC
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std::set<uint16_t> macs; // associative container holds total of unique MAC
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// adress hashes (Wifi + BLE)
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// adress hashes (Wifi + BLE)
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/*
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// initialize payload encoder
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// initialize payload encoder
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#if (PAYLOAD_ENCODER == 1)
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#if PAYLOAD_ENCODER == 1
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TTNplain payload(PAYLOAD_BUFFER_SIZE);
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TTNplain payload(PAYLOAD_BUFFER_SIZE);
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#elif (PAYLOAD_ENCODER == 2)
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#elif PAYLOAD_ENCODER == 2
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TTNserialized payload(PAYLOAD_BUFFER_SIZE);
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TTNserialized payload(PAYLOAD_BUFFER_SIZE);
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#elif (PAYLOAD_ENCODER == 3)
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#elif PAYLOAD_ENCODER == 3
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CayenneLPP payload(PAYLOAD_BUFFER_SIZE);
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CayenneLPP payload(PAYLOAD_BUFFER_SIZE);
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#else
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#else
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#error "No valid payload converter defined"
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#error "No valid payload converter defined"
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#endif
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#endif
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*/
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TTNplain payload(PAYLOAD_BUFFER_SIZE);
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// this variables will be changed in the ISR, and read in main loop
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// this variables will be changed in the ISR, and read in main loop
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static volatile int ButtonPressedIRQ = 0, DisplayTimerIRQ = 0,
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static volatile int ButtonPressedIRQ = 0, DisplayTimerIRQ = 0,
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@ -43,7 +43,6 @@
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#define RETRANSMIT_RCMD 5 // [seconds] wait time before retransmitting rcommand results
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#define RETRANSMIT_RCMD 5 // [seconds] wait time before retransmitting rcommand results
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#define PAYLOAD_ENCODER 1 // select payload encoder: 1 = Plain [default], 2 = Lora-serialized, 3 = CayenneLPP
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#define PAYLOAD_ENCODER 1 // select payload encoder: 1 = Plain [default], 2 = Lora-serialized, 3 = CayenneLPP
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#define PAYLOAD_BUFFER_SIZE 51 // maximum size of payload block per transmit
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#define PAYLOAD_BUFFER_SIZE 51 // maximum size of payload block per transmit
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//#define CAYENNE_LPP 1 // uncomment this, if you need Cayenne LPP payload encoding
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// Default LoRa Spreadfactor
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// Default LoRa Spreadfactor
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#define LORASFDEFAULT 9 // 7 ... 12 SF, according to LoRaWAN specs
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#define LORASFDEFAULT 9 // 7 ... 12 SF, according to LoRaWAN specs
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@ -130,8 +130,6 @@ void TTNserialized::addStatus(uint16_t voltage, uint64_t uptime,
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/* ---------------- Cayenne LPP format ---------- */
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/* ---------------- Cayenne LPP format ---------- */
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#ifdef CAYENNE_LPP
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CayenneLPP::CayenneLPP(uint8_t size) {
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CayenneLPP::CayenneLPP(uint8_t size) {
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buffer = (uint8_t *)malloc(size);
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buffer = (uint8_t *)malloc(size);
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cursor = 0;
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cursor = 0;
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@ -190,6 +188,4 @@ void CayenneLPP::addStatus(uint16_t voltage, uint64_t uptime, float cputemp) {
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buffer[cursor++] = LPP_TEMPERATURE;
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buffer[cursor++] = LPP_TEMPERATURE;
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buffer[cursor++] = (uint16_t) cputemp >> 8;
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buffer[cursor++] = (uint16_t) cputemp >> 8;
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buffer[cursor++] = (uint16_t) cputemp;
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buffer[cursor++] = (uint16_t) cputemp;
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}
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}
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#endif // CAYENNE_LPP
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@ -5,6 +5,20 @@
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#include <Arduino.h>
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#include <Arduino.h>
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#include "LoraEncoder.h"
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#include "LoraEncoder.h"
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// MyDevices CayenneLPP channels
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#define LPP_GPS_CHANNEL 20
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#define LPP_COUNT_WIFI_CHANNEL 21
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#define LPP_COUNT_BLE_CHANNEL 22
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#define LPP_BATT_CHANNEL 23
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#define LPP_ADR_CHANNEL 25
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#define LPP_TEMP_CHANNEL 26
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// MyDevices CayenneLPP types
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#define LPP_GPS 136 // 3 byte lon/lat 0.0001 °, 3 bytes alt 0.01m
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#define LPP_TEMPERATURE 103 // 2 bytes, 0.1°C signed
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#define LPP_DIGITAL_INPUT 0 // 1 byte
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#define LPP_DIGITAL_OUTPUT 1 // 1 byte
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#define LPP_ANALOG_INPUT 2 // 2 bytes, 0.01 signed
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class TTNplain {
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class TTNplain {
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public:
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public:
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TTNplain(uint8_t size);
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TTNplain(uint8_t size);
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@ -44,21 +58,6 @@ private:
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LoraEncoder message(byte *buffer);
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LoraEncoder message(byte *buffer);
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};
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};
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#ifdef CAYENNE_LPP
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// LPP channels
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#define LPP_GPS_CHANNEL 20
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#define LPP_COUNT_WIFI_CHANNEL 21
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#define LPP_COUNT_BLE_CHANNEL 22
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#define LPP_BATT_CHANNEL 23
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#define LPP_ADR_CHANNEL 25
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#define LPP_TEMP_CHANNEL 26
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// LPP types
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#define LPP_GPS 136 // 3 byte lon/lat 0.0001 °, 3 bytes alt 0.01m
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#define LPP_TEMPERATURE 103 // 2 bytes, 0.1°C signed
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#define LPP_DIGITAL_INPUT 0 // 1 byte
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#define LPP_DIGITAL_OUTPUT 1 // 1 byte
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#define LPP_ANALOG_INPUT 2 // 2 bytes, 0.01 signed
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class CayenneLPP {
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class CayenneLPP {
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public:
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public:
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CayenneLPP(uint8_t size);
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CayenneLPP(uint8_t size);
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@ -79,6 +78,4 @@ private:
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uint8_t cursor;
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uint8_t cursor;
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};
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};
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#endif // CAYENNE_LPP
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#endif // _PAYLOAD_H_
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#endif // _PAYLOAD_H_
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