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#include <Arduino.h>
#include <WiFi.h>
#include <PubSubClient.h>
#include <Wire.h>

#include <OneWire.h>
#include <DallasTemperature.h>
const uint8_t wire_bus = 1;
OneWire oneWire(wire_bus);

DallasTemperature DS18B20(&oneWire);

#include <Adafruit_BME280.h>
TwoWire i2cBME280 = TwoWire(0);
Adafruit_BME280 bme;

#include "setenv.h"

const uint8_t i2c_SDA = 0;
const uint8_t i2c_SCL = 1;

const uint8_t pinBMEminus = 3; //  питание датчика -
const uint8_t pinBMEplus = 19; //  питание датчика +
const uint8_t pinVcc = 4;      //  напряжение батареи

WiFiClient espClient;
PubSubClient client(espClient);

//------------------------------------------------
const char *ssid = WiFi_SSID;
const char *pass = WiFi_PASS;

const char *mqtt_client = MQTT_CLIENT_N;
const char *mqtt_client2 = MQTT_CLIENT_T;
const char *mqtt_user = MQTT_USER;
const char *mqtt_pass = MQTT_PASS;
const char *mqtt_server = MQTT_SERVER;
const char *mqtt_port = MQTT_PORT;

const char *outTopicData = "/t;p;h;v;";        //  для BME280
// const char *outTopicData = "/t;";               //  для DS18B20
// const char *outTopicData_v = "/v;";             //  для всех

//------------------------------------------------
uint8_t countConnect = 20;        //  кол-во попыток соединения
uint16_t countPause = 500;        //  пауза между попытками
uint32_t timeSleep = 60000000;    //  время сна (60s)
uint16_t TimeBeforeBedtime = 500; //  время до засыпания
uint8_t countMaxSleep = 120;      //  не передавать данные не более
                                  //      countMaxSleep х timeSleep (60мин)

RTC_DATA_ATTR struct
{
  float t = 0;
  uint16_t p = 0;
  uint16_t h = 0;
  float v = 0;
  uint8_t countSleep = 0;
} data;

float diffTemp = 0.25; //  разница температур
int8_t diffPres = 3;      //  разница давлений
int8_t diffHum = 5;       //  разница влажностей
float diffVcc = 0.1;   //  разница зарядки акб

RTC_DATA_ATTR bool flagNotWork = false;

//-----------------------------------
inline bool mqtt_subscribe(PubSubClient &client, const String &topic)
{
  Serial.print("Subscribing to: ");
  Serial.println(topic);
  return client.subscribe(topic.c_str());
}

//-----------------------------------
inline bool mqtt_publish(PubSubClient &client, const String &topic, const String &value)
{
  Serial.print(topic);
  Serial.print(" = ");
  Serial.println(value);
  return client.publish(topic.c_str(), value.c_str());
}

//-----------------------------------
void mqttDataOut()
{
  String topic, topicValue;

  topic = "/";
  topic += mqtt_client2;
  topic += outTopicData;
  topicValue = "";
  topicValue += data.t;
  topicValue += ";";
  topicValue += data.p;
  topicValue += ";";
  topicValue += data.h;
  topicValue += ";";
  topicValue += data.v;
  topicValue += ";";

  while (!mqtt_publish(client, topic, topicValue))
  {
    mqtt_publish(client, topic, topicValue);
  }

  // topic = "/";
  // topic += mqtt_client2;
  // topic += outTopicData_v;

  // topicValue = "";
  // topicValue += data.v;
  // topicValue += ";";

  //   while (!mqtt_publish(client, topic, topicValue))
  // {
  //   mqtt_publish(client, topic, topicValue);
  // }
}

//-----------------------------------
bool reconnect()
{
  client.setServer(mqtt_server, String(mqtt_port).toInt());

  Serial.print("MQTT connect : ");
  Serial.println(mqtt_server);

  while (!(client.connect(mqtt_client, mqtt_user, mqtt_pass)) && countConnect--)
  {
    Serial.print(countConnect);
    Serial.print('>');
    delay(countPause);
  }

  if (client.connected())
  {
    Serial.println("MQTT connected - OK !");
    return true;
  }
  else
  {
    return false;
  }
}

//-----------------------------------
bool setupWiFi(const char *wifi_ssid, const char *wifi_pass)
{
  WiFi.begin(wifi_ssid, wifi_pass);

  Serial.print("Setup WiFi: ");
  Serial.println(ssid);

  while ((WiFi.status() != WL_CONNECTED) && countConnect--)
  {
    Serial.print(countConnect);
    Serial.print('>');
    delay(countPause);
  }

  if (WiFi.status() == WL_CONNECTED)
  {
    // индикация IP
    Serial.print("\nWiFi connected - OK !\n");
    Serial.println(WiFi.localIP());
    // индикация силы сигнала
    int8_t dBm = WiFi.RSSI();
    Serial.print("RSSI dBm = ");
    Serial.println(dBm);
    uint8_t quality_RSSI = 2 * (dBm + 100);
    if (quality_RSSI >= 100)
      quality_RSSI = 100;
    Serial.print("RSSI % = ");
    Serial.println(quality_RSSI);
    Serial.println("=================");
    return true;
  }
  else
  {
    return false;
  }
}

//-----------------------------------
// медиана на 3 значения со своим буфером
uint16_t medianRoom(uint16_t newValRoom)
{
  RTC_DATA_ATTR static uint16_t bufRoom[3] = {0, 0, 0};
  RTC_DATA_ATTR static byte countRoom = 0;

  Serial.println();
  Serial.print(countRoom);
  Serial.print(" - ");
  Serial.print(bufRoom[0]);
  Serial.print("...");
  Serial.print(bufRoom[1]);
  Serial.print("...");
  Serial.print(bufRoom[2]);
  Serial.println();

  if (!(bufRoom[0] + bufRoom[1] + bufRoom[2]))
    bufRoom[0] = bufRoom[1] = bufRoom[2] = newValRoom;

  bufRoom[countRoom] = newValRoom;
  if (countRoom++ >= 2)
    countRoom = 0;
  uint16_t dataRoom = (max(bufRoom[0], bufRoom[1]) == max(bufRoom[1], bufRoom[2]))
                          ? max(bufRoom[0], bufRoom[2])
                          : max(bufRoom[1], min(bufRoom[0], bufRoom[2]));
  // return expRunningAverage(data);
  return dataRoom;
}

//-----------------------------------
bool readData()
{
  //============================================================
  //  BME280
  i2cBME280.begin(i2c_SDA, i2c_SCL, 100000);

  if (!bme.begin(0x76, &i2cBME280))
  {
    Serial.println("Could not find a valid BME280 sensor !");
    flagNotWork = true;
    return false;
  }

  float temp = bme.readTemperature();
  int16_t pres = (bme.readPressure() * 0.7500637554192 / 100);
  int16_t hum = bme.readHumidity();
  float vcc = 0;
  Serial.println("\n=================");

  uint16_t dataVcc = 0;
  for (uint8_t i = 0; i < 3; ++i)
  {
    uint16_t temp = analogRead(pinVcc);
    Serial.print(temp);
    if (i < 2)
      Serial.print("...");
    dataVcc += temp;
  }

  Serial.print(" = ");
  Serial.print(dataVcc / 3);
  vcc = 2.8 / 4095 * medianRoom(dataVcc / 3) * 3.6 / 2.8;
  Serial.println();

  Serial.print("Temperature = ");
  Serial.print(temp);
  Serial.println(" *C");

  Serial.print("Pressure = ");
  Serial.print(pres);
  Serial.println(" mm");

  Serial.print("Humidity = ");
  Serial.print(hum);
  Serial.println(" %");

  Serial.print("Vcc = ");
  Serial.print(vcc);
  Serial.println(" v");

  Serial.println("=================\n");

  if (abs(data.t - temp) >= diffTemp || abs(data.p - pres) >= diffPres ||
      abs(data.h - hum) >= diffHum || abs(data.v - vcc) >= diffVcc || flagNotWork)
  {
    data.t = temp;
    data.p = pres;
    data.h = hum;
    data.v = vcc;

    data.countSleep = countMaxSleep;
    return true;
  }
  else
  {
    if (--data.countSleep)
    {
      return false;
    }
    else
    {
      return true;
    }
    Serial.print("\ncountSleep = ");
    Serial.println(data.countSleep);
  }

  //============================================================
  //  DS18b20
//   DS18B20.begin();               // Инициализация DS18B20
//   DS18B20.requestTemperatures(); // Запрос на считывание температуры

//   float temp = DS18B20.getTempCByIndex(0);
//   float vcc = 0;
//   Serial.println("\n=================");

//   uint16_t dataVcc = 0;
//   for (uint8_t i = 0; i < 3; ++i)
//   {
//     uint16_t temp = analogRead(pinVcc);
//     Serial.print(temp);
//     if (i < 2)
//       Serial.print("...");
//     dataVcc += temp;
//   }

//   Serial.print(" = ");
//   Serial.print(dataVcc / 3);
//   vcc = 2.8 / 4095 * medianRoom(dataVcc / 3) * 3.6 / 2.8;
//   Serial.println();

//   Serial.print("Temperature = ");
//   Serial.print(temp);
//   Serial.println(" *C");

//   Serial.print("Vcc = ");
//   Serial.print(vcc);
//   Serial.println(" v");

//   Serial.println("=================\n");

//   if (abs(data.t - temp) >= diffTemp || abs(data.v - vcc) >= diffVcc || flagNotWork)
//   {
//     data.t = temp;
//     data.v = vcc;

//     data.countSleep = countMaxSleep;
//     return true;
//   }
//   else
//   {
//     if (--data.countSleep)
//     {
//       return false;
//     }
//     else
//     {
//       return true;
//     }
//     Serial.print("\ncountSleep = ");
//     Serial.println(data.countSleep);
//   }
}

//============================================================
void setup()
{
  Serial.begin(115200);
  pinMode(pinBMEplus, OUTPUT);
  digitalWrite(pinBMEplus, HIGH);
  pinMode(pinBMEminus, OUTPUT);
  digitalWrite(pinBMEminus, LOW);
  delay(20);

  if (!readData())
  {
    esp_deep_sleep(timeSleep);
  }

  if (!setupWiFi(ssid, pass))
  {
    flagNotWork = true;
    esp_deep_sleep(timeSleep);
  }
  else
  {
    flagNotWork = false;
  }

  if (!reconnect())
  {
    flagNotWork = true;
    esp_deep_sleep(timeSleep);
  }
  else
  {
    flagNotWork = false;
  }

  mqttDataOut();

  Serial.println("=================");
  Serial.flush();

  delay(TimeBeforeBedtime);
  esp_deep_sleep(timeSleep);
}

void loop() {}