Read sensor data code replaced by separate function.
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7770f83ef7
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1 changed files with 94 additions and 55 deletions
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@ -30,7 +30,6 @@ const uint8_t VALUES = 8; // see constants.h file - count of number of SENSOR_ d
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float currentSensorData[VALUES] = { nanf("no value"), nanf("no value"), nanf("no value"),
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nanf("no value"), nanf("no value"), nanf("no value"),
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nanf("no value"), nanf("no value") };
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float (*sensors[VALUES])() = {};
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uint32_t update_sensor_cnt = 0;
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uint32_t update_webserver_cnt = 0;
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@ -47,6 +46,8 @@ uint8_t sensor_cnt = 0;
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boolean validData = false;
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boolean do_not_read_windsensor = false;
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//*************************************************************************//
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void debug(String x)
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@ -138,35 +139,84 @@ void initSensors()
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{
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// Initialize and configure the sensors
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#ifdef SENSOR_APDS9930
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if (sensor_apds9930_begin()) {
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sensors[SENSOR_LIGHT] = &apds9930_light;
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}
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if (sensor_apds9930_begin();
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#endif
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#ifdef SENSOR_APDS9960
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if (sensor_apds9960_begin()) {
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sensors[SENSOR_LIGHT] = &apds9960_light;
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}
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sensor_apds9960_begin();
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#endif
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#ifdef SENSOR_BME280
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//Temperature + pressure
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if (sensor_bme280_begin(BME_ADDRESS)) {
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sensors[SENSOR_TEMPERATURE] = &bme280_temperature;
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sensors[SENSOR_HUMIDITY] = &bme280_humidity;
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sensors[SENSOR_PRESSURE] = &bme280_pressure;
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}
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sensor_bme280_begin(BME_ADDRESS);
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#endif
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}
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float readSensors(uint8_t s)
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{
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float ret = nan("no value");
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switch(s)
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{
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case SENSOR_LIGHT: // Initialize and configure the sensors
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#ifdef SENSOR_APDS9930
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ret = apds9930_light();
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#endif
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#ifdef SENSOR_APDS9960
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ret = apds9960_light();
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#endif
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break;
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case SENSOR_TEMPERATURE:
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#ifdef SENSOR_BME280
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ret = bme280_temperature();
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#endif
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break;
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case SENSOR_HUMIDITY:
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#ifdef SENSOR_BME280
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ret = bme280_humidity();
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#endif
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break;
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case SENSOR_PRESSURE:
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#ifdef SENSOR_BME280
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ret = bme280_pressure();
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#endif
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break;
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case SENSOR_WINDSPEED:
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#ifdef SENSOR_WIND
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sensors[SENSOR_WINDSPEED] = &wind_speed;
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if (do_not_read_windsensor == false)
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{
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ret = wind_speed();
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}
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#endif
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break;
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case SENSOR_BAT_VOLTAGE:
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#ifdef SENSOR_BATTERY
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sensors[SENSOR_BAT_VOLTAGE] = &battery_voltage;
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sensors[SENSOR_BATCHARGESTATE] = &battery_charging;
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sensors[SENSOR_ESAVEMODE] = &isEnergySavingMode;
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ret = battery_voltage();
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#endif
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break;
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case SENSOR_ESAVEMODE:
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#ifdef SENSOR_BATTERY
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ret = battery_charging();
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#endif
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break;
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case SENSOR_BATCHARGESTATE:
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#ifdef SENSOR_BATTERY
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ret = isEnergySavingMode();
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#endif
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break;
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default:
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break;
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}
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return ret;
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}
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//*************************************************************************//
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@ -323,12 +373,14 @@ void _loop()
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#ifdef defined(BATTERY_POWERED) && defined(SENSOR_WIND)
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if (energySavingMode() == 1) {
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// Disable expensive tasks
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sensors[SENSOR_WINDSPEED] = 0;
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//sensors[SENSOR_WINDSPEED] = 0;
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//debug("read of wind sensor because of low battery disabled");
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do_not_read_windsensor = true;
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} else {
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sensors[SENSOR_WINDSPEED] = &wind_speed;
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//sensors[SENSOR_WINDSPEED] = &wind_speed;
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//debug("read of wind sensor because of high battery enabled");
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do_not_read_windsensor = false;
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}
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#endif
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sensor_cnt = 0;
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@ -340,17 +392,8 @@ void _loop()
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if ((update_sensor_cnt + (UPDATE_SENSOR_INTERVAL_S * 1000)) <= millis())
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{
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debug("read sensor data " + String(sensor_cnt));
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if (sensors[sensor_cnt])
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{
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debug("sensors[sensor_ids[" + String(sensor_cnt) + "]]=" + String((int)sensors[sensor_cnt]));
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//currentSensorData[sensor_cnt] = sensors[sensor_cnt]();
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currentSensorData[sensor_cnt] = sensor_cnt;
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} else {
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debug("sensors[" + String(sensor_cnt) + "]=nan");
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currentSensorData[sensor_cnt] = nan("no value");
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}
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currentSensorData[sensor_cnt] = readSensors(sensor_cnt);
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if (sensor_cnt < VALUES)
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{
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@ -426,43 +469,39 @@ void _loop()
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void readWindSpeedExceed()
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{
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if (sensors[SENSOR_WINDSPEED])
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// read from windspeed sensorSTATUS_LED_PIN
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digitalWrite(STATUS_LED_PIN, HIGH);
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currentSensorData[SENSOR_WINDSPEED] = readSensors(SENSOR_WINDSPEED);
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digitalWrite(STATUS_LED_PIN, LOW);
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if (currentSensorData[SENSOR_WINDSPEED] >= HTTP_CALL_ON_WINDSPEED_EXCEED_MPS)
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{
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// read from windspeed sensorSTATUS_LED_PIN
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digitalWrite(STATUS_LED_PIN, HIGH);
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currentSensorData[SENSOR_WINDSPEED] = sensors[SENSOR_WINDSPEED]();
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digitalWrite(STATUS_LED_PIN, LOW);
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if (currentSensorData[SENSOR_WINDSPEED] >= HTTP_CALL_ON_WINDSPEED_EXCEED_MPS)
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{
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digitalWrite(STATUS_LED_PIN, HIGH);
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// call the url HTTP_CALL_ON_WINDSPEED_URL
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WiFiClient client;
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HTTPClient http;
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// call the url HTTP_CALL_ON_WINDSPEED_URL
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WiFiClient client;
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HTTPClient http;
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http.begin(client, String(HTTP_CALL_ON_WINDSPEED_URL).c_str());
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// Send HTTP GET request
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int httpResponseCode = http.GET();
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http.begin(client, String(HTTP_CALL_ON_WINDSPEED_URL).c_str());
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// Send HTTP GET request
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int httpResponseCode = http.GET();
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if (httpResponseCode > 0) {
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String response = http.getString();
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debug("http response code: " + String(httpResponseCode) + " = " + response);
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// TODO handle response
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}
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http.end();
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debug("Called windspeed exceed callout");
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digitalWrite(STATUS_LED_PIN, LOW);
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if (httpResponseCode > 0) {
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String response = http.getString();
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debug("http response code: " + String(httpResponseCode) + " = " + response);
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// TODO handle response
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}
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http.end();
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debug("Called windspeed exceed callout");
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digitalWrite(STATUS_LED_PIN, LOW);
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}
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#ifdef WEBUPDATER_FEATURE
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setSensorData(currentSensorData);
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setSensorData(currentSensorData);
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#endif
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} else {
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currentSensorData[SENSOR_WINDSPEED] = nan("no value");
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}
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}
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//*************************************************************************//
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