mirror of
https://github.com/timmbogner/Farm-Data-Relay-System
synced 2024-10-30 09:20:15 +00:00
06036e54e4
This needs to be checked, especially in the new class-based model of sensors and gateways: First the global settings must be checked and the corresponding local settings for a sensor / gateway commented out. Then either the one or other is saved in a FDRS_prefix variable. After that checks must soley be done against FDRS_variables.
158 lines
3.7 KiB
C
158 lines
3.7 KiB
C
// FARM DATA RELAY SYSTEM
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//
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// "fdrs_sensor.h"
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//
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// Developed by Timm Bogner (timmbogner@gmail.com) for Sola Gratia Farm in Urbana, Illinois, USA.
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//
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#include <fdrs_datatypes.h>
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#if defined(ESP8266)
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#include <ESP8266WiFi.h>
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#include <espnow.h>
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#elif defined(ESP32)
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#include <esp_now.h>
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#include <WiFi.h>
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#include <esp_wifi.h>
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#endif
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#ifdef USE_LORA
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#include <LoRa.h>
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#endif
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#ifdef FDRS_GLOBALS
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#define FDRS_BAND GLOBAL_LORA_BAND
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#define FDRS_SF GLOBAL_LORA_SF
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#else
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#define FDRS_BAND LORA_BAND
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#define FDRS_SF LORA_SF
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#endif
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#ifdef FDRS_DEBUG
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#define DBG(a) (Serial.println(a))
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#else
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#define DBG(a)
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#endif
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#define MAC_PREFIX 0xAA, 0xBB, 0xCC, 0xDD, 0xEE // Should only be changed if implementing multiple FDRS systems.
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typedef struct __attribute__((packed)) DataReading {
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float d;
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uint16_t id;
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uint8_t t;
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} DataReading;
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const uint16_t espnow_size = 250 / sizeof(DataReading);
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uint8_t gatewayAddress[] = {MAC_PREFIX, GTWY_MAC};
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uint8_t gtwyAddress[] = {gatewayAddress[3], gatewayAddress[4], GTWY_MAC};
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uint8_t LoRaAddress[] = {0x42, 0x00};
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uint32_t wait_time = 0;
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DataReading fdrsData[espnow_size];
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uint8_t data_count = 0;
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void beginFDRS() {
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#ifdef FDRS_DEBUG
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Serial.begin(115200);
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#endif
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DBG("FDRS Sensor ID " + String(READING_ID) + " initializing...");
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DBG(" Gateway: " + String (GTWY_MAC, HEX));
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#ifdef POWER_CTRL
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DBG("Powering up the sensor array!");
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pinMode(POWER_CTRL, OUTPUT);
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digitalWrite(POWER_CTRL, 1);
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#endif
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// Init ESP-NOW for either ESP8266 or ESP32 and set MAC address
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#ifdef USE_ESPNOW
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DBG("Initializing ESP-NOW!");
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WiFi.mode(WIFI_STA);
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WiFi.disconnect();
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#if defined(ESP8266)
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if (esp_now_init() != 0) {
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return;
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}
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esp_now_set_self_role(ESP_NOW_ROLE_COMBO);
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// Register peers
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esp_now_add_peer(gatewayAddress, ESP_NOW_ROLE_COMBO, 0, NULL, 0);
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#elif defined(ESP32)
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if (esp_now_init() != ESP_OK) {
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DBG("Error initializing ESP-NOW");
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return;
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}
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esp_now_peer_info_t peerInfo;
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peerInfo.ifidx = WIFI_IF_STA;
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peerInfo.channel = 0;
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peerInfo.encrypt = false;
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// Register first peer
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memcpy(peerInfo.peer_addr, gatewayAddress, 6);
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if (esp_now_add_peer(&peerInfo) != ESP_OK) {
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DBG("Failed to add peer");
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return;
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}
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#endif
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DBG(" ESP-NOW Initialized.");
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#endif
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#ifdef USE_LORA
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DBG("Initializing LoRa!");
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DBG(FDRS_BAND);
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DBG(FDRS_SF);
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#ifdef ESP32
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SPI.begin(SPI_SCK, SPI_MISO, SPI_MOSI);
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#endif
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LoRa.setPins(LORA_SS, LORA_RST, LORA_DIO0);
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if (!LoRa.begin(FDRS_BAND)) {
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DBG("Unable to initialize LoRa!");
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while (1);
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}
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LoRa.setSpreadingFactor(FDRS_SF);
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DBG(" LoRa Initialized.");
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#endif
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}
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void transmitLoRa(uint8_t* mac, DataReading * packet, uint8_t len) {
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#ifdef USE_LORA
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uint8_t pkt[5 + (len * sizeof(DataReading))];
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memcpy(&pkt, mac, 3); //
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memcpy(&pkt[3], &LoRaAddress, 2);
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memcpy(&pkt[5], packet, len * sizeof(DataReading));
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LoRa.beginPacket();
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LoRa.write((uint8_t*)&pkt, sizeof(pkt));
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LoRa.endPacket();
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#endif
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}
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void sendFDRS() {
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DBG("Sending FDRS Packet!");
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#ifdef USE_ESPNOW
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esp_now_send(gatewayAddress, (uint8_t *) &fdrsData, data_count * sizeof(DataReading));
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delay(5);
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DBG(" ESP-NOW sent.");
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#endif
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#ifdef USE_LORA
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transmitLoRa(gtwyAddress, fdrsData, data_count);
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DBG(" LoRa sent.");
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#endif
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data_count = 0;
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}
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void loadFDRS(float d, uint8_t t) {
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DBG("Data loaded. Type: " + String(t));
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if (data_count > espnow_size) sendFDRS();
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DataReading dr;
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dr.id = READING_ID;
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dr.t = t;
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dr.d = d;
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fdrsData[data_count] = dr;
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data_count++;
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}
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void sleepFDRS(int sleep_time) {
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DBG("Sleepytime!");
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#ifdef DEEP_SLEEP
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DBG(" Deep sleeping.");
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#ifdef ESP32
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esp_sleep_enable_timer_wakeup(sleep_time * 1000000);
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esp_deep_sleep_start();
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#endif
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#ifdef ESP8266
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ESP.deepSleep(sleep_time * 1000000);
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#endif
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#endif
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DBG(" Delaying.");
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delay(sleep_time * 1000);
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}
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