feature/http_call_send_json #3
4 changed files with 201 additions and 149 deletions
20
firmware/.vscode/c_cpp_properties.json
vendored
Normal file
20
firmware/.vscode/c_cpp_properties.json
vendored
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@ -0,0 +1,20 @@
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{
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"configurations": [
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{
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"name": "Mac",
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"includePath": [
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"${workspaceFolder}/**",
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"/Users/klaute/Documents/Arduino/libraries"
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],
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"defines": [],
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"macFrameworkPath": [
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"/Applications/Xcode.app/Contents/Developer/Platforms/MacOSX.platform/Developer/SDKs/MacOSX.sdk/System/Library/Frameworks"
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],
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"compilerPath": "/usr/bin/clang",
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"cStandard": "c17",
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"cppStandard": "c++17",
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"intelliSenseMode": "macos-clang-arm64"
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}
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],
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"version": 4
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}
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@ -31,4 +31,14 @@
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#define FSM_STATE_11 10
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#define FSM_STATE_12 11
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const String hb_ws_msg_start = "{";
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const String hb_ws_msg_temp = "\"temperature\": ";
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const String hb_ws_msg_humi = "\"humidity\": ";
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const String hb_ws_msg_light = "\"lightlevel\": ";
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const String hb_ws_msg_windspeed = "\"windspeed\": ";
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const String hb_ws_msg_pressure = "\"pressure\": ";
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const String hb_ws_msg_timestamp = "\"timestamp\": ";
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const String hb_ws_msg_valid = "\"valid\": ";
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const String hb_ws_msg_end = "}";
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#endif
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@ -10,7 +10,7 @@
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#include "config_user.h"
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#ifndef DISABLE_WIFIMANAGER
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#include <WiFiManager.h> // WiFiManager from bib manager
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#include <WiFiManager.h> // WiFiManager from bib manager
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#endif
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#ifdef HTTP_CALL_ON_WINDSPEED_EXCEED
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@ -19,6 +19,7 @@
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#ifdef HTTP_CALL_SEND_JSON_DATA
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#include <ESP8266HTTPClient.h>
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#include <UrlEncode.h>
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#endif
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//*************************************************************************//
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@ -33,15 +34,16 @@
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//*************************************************************************//
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// constant variables
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const uint8_t VALUES = 8; // see constants.h file - count of number of SENSOR_ defines
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const uint8_t VALUES = 8; // see constants.h file - count of number of SENSOR_ defines
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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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uint32_t update_sensor_cnt = 0;
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uint32_t update_webserver_cnt = 0;
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uint32_t update_sensor_cnt = 0;
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uint32_t update_webserver_cnt = 0;
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uint32_t update_windspeed_exceed_cnt = 0;
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uint32_t wifi_check_interval_counter = 0;
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uint32_t http_call_send_json_data_cnt = 0;
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#ifndef DISABLE_WIFIMANAGER
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const String wifiName = "oko-weather-" + DEVICE_NAME;
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@ -61,8 +63,7 @@ uint32_t wifi_reconnect_cnt = 0;
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//*************************************************************************//
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void debug(String x)
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{
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void debug(String x) {
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#ifdef DEBUG
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Serial.println(x);
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#endif
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@ -74,19 +75,18 @@ void debug(String x)
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//*************************************************************************//
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void setup()
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{
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void setup() {
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#if defined(DEBUG) || defined(SERIAL_FEATURE)
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Serial.begin(SERIAL_BAUD_RATE);
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#endif
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// Pin settings
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pinMode(BAT_CHARGED_PIN, INPUT);
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pinMode(BAT_CHARGING_PIN, INPUT);
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pinMode(STATUS_LED_PIN, OUTPUT);
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pinMode(ANEMOMETER_PIN, INPUT_PULLUP);
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pinMode(A0, INPUT);
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pinMode(BAT_CHARGED_PIN, INPUT);
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pinMode(BAT_CHARGING_PIN, INPUT);
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pinMode(STATUS_LED_PIN, OUTPUT);
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pinMode(ANEMOMETER_PIN, INPUT_PULLUP);
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pinMode(A0, INPUT);
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digitalWrite(STATUS_LED_PIN, HIGH);
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@ -129,21 +129,19 @@ void setup()
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ESP.deepSleep(POWERSAVING_SLEEP_S * 1000000, WAKE_RF_DEFAULT);
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delay(100);
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#else // not in battery mode
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#else // not in battery mode
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#ifdef ENABLE_WATCHDOG
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// Enable the internal watchdog
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ESP.wdtEnable(WATCHDOG_TIMEOUT_MS);
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#endif
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#endif
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}
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//*************************************************************************//
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void initWifiBasedSW()
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{
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void initWifiBasedSW() {
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#ifdef INFLUXDB_FEATURE
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influxdb_begin();
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#endif
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@ -153,13 +151,11 @@ void initWifiBasedSW()
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setupWebUpdater(DEVICE_NAME, WiFi.localIP().toString());
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#endif
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#endif
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}
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//*************************************************************************//
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void initSensors()
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{
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void initSensors() {
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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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@ -182,13 +178,11 @@ void initSensors()
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//*************************************************************************//
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float readSensors(uint8_t s)
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{
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float readSensors(uint8_t s) {
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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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switch (s) {
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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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@ -223,8 +217,7 @@ float readSensors(uint8_t s)
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case SENSOR_WINDSPEED:
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#ifdef SENSOR_WIND
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if (do_not_read_windsensor == false)
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{
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if (do_not_read_windsensor == false) {
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ret = wind_speed();
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}
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#endif
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@ -257,19 +250,16 @@ float readSensors(uint8_t s)
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//*************************************************************************//
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void wifiConnectionCheck()
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{
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void wifiConnectionCheck() {
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if ((wifi_check_interval_counter + WIFI_CHECK_INTERVAL_MS) > millis())
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{
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if ((wifi_check_interval_counter + WIFI_CHECK_INTERVAL_MS) > millis()) {
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// if check interval is not exceeded abort check
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return;
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}
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wifi_check_interval_counter = millis();
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if (WiFi.status() == WL_CONNECTED)
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{
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if (WiFi.status() == WL_CONNECTED) {
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// if we are connected
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return;
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}
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@ -286,23 +276,20 @@ void wifiConnectionCheck()
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setWifiReconnectCnt(wifi_reconnect_cnt);
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#endif
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if (wifi_reconnect_cnt >= 5)
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{
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debug("\nReboot");
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ESP.restart();
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if (wifi_reconnect_cnt >= 5) {
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debug("\nReboot");
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ESP.restart();
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} else {
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wifiConnect();
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wifiConnect();
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//initWifiBasedSW();
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//initWifiBasedSW();
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}
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}
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//*************************************************************************//
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void wifiConnect()
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{
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void wifiConnect() {
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// Establish WiFi connection if not already applied
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@ -314,8 +301,7 @@ void wifiConnect()
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// the time in seconds to wait for the user to configure the device
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wifiManager.setTimeout(WIFI_CONFIG_PORTAL_TIMEOUT_S);
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while (!wifiManager.autoConnect(wifiName.c_str(), "DEADBEEF"))
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{
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while (!wifiManager.autoConnect(wifiName.c_str(), "DEADBEEF")) {
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#ifdef SLEEP_IF_NO_WLAN_CONNECTION
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// If autoconnect to WLAN failed and no client connected, go to deep sleep
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@ -328,13 +314,11 @@ void wifiConnect()
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debug("WiFi connection failed, try again in 5 seconds...");
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delay(5000);
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#endif
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}
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#else // DISABLE_WIFIMANAGER
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#else // DISABLE_WIFIMANAGER
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if (!WiFi.config(local_IP, gateway, subnet))
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{
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if (!WiFi.config(local_IP, gateway, subnet)) {
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debug("Failed to set IP configuration");
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} else {
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debug("Successful set IP configuration");
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@ -344,27 +328,23 @@ void wifiConnect()
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debug("Connecting to WLAN");
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while (WiFi.status() != WL_CONNECTED)
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{
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while (WiFi.status() != WL_CONNECTED) {
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delay(100);
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}
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#endif // DISABLE_WIFIMANAGER
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#endif // DISABLE_WIFIMANAGER
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}
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//*************************************************************************//
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#ifdef BATTERY_POWERED
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void criticalBatCheck()
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{
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void criticalBatCheck() {
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float volt = battery_voltage();
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if (volt <= BAT_EMERGENCY_DEEPSLEEP_VOLTAGE)
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{
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if (volt <= BAT_EMERGENCY_DEEPSLEEP_VOLTAGE) {
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debug("Bat Voltage: " + String(volt) + " V");
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debug("Low battery, going into deep sleep.");
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// Casting to an unsigned int, so it fits into the integer range
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ESP.deepSleep(1U * EMERGENCY_SLEEP_S * 1000000u); // battery low, shutting down
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ESP.deepSleep(1U * EMERGENCY_SLEEP_S * 1000000u); // battery low, shutting down
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delay(100);
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}
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}
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@ -372,8 +352,7 @@ void criticalBatCheck()
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//*************************************************************************//
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void loop()
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{
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void loop() {
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#ifdef ENABLE_WATCHDOG
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ESP.wdtFeed();
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@ -392,33 +371,38 @@ void loop()
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delay(DELAY_LOOP_MS);
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#endif
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}
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//*************************************************************************//
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#ifndef BATTERY_POWERED
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void _fsm_loop()
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{
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void _fsm_loop() {
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#ifdef WEBUPDATER_FEATURE
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if ((update_webserver_cnt + (UPDATE_WEBSERVER_INTVERVAL_MS)) <= millis())
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{
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if ((update_webserver_cnt + (UPDATE_WEBSERVER_INTVERVAL_MS)) <= millis()) {
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//debug("web updater call");
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update_webserver_cnt = millis();
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doWebUpdater();
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}
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#endif
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switch (fsm_state)
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#ifdef HTTP_CALL_SEND_JSON_DATA
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if ((http_call_send_json_data_cnt + (HTTP_CALL_SEND_JSON_DATA_INTERVAL_S * 1000)) <= millis() and validData == true)
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{
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// send the data to the server
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debug("Sending weather json data to http webserver");
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http_call_send_json_data_cnt = millis();
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http_call_send_json_data();
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}
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#endif
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switch (fsm_state) {
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/* -------------------------------------------------------------------------------- */
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case FSM_STATE_1:
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//debug("wind speed exceeded check if required");
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#ifdef HTTP_CALL_ON_WINDSPEED_EXCEED
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if ((update_windspeed_exceed_cnt + (HTTP_CALL_ON_WINDSPEED_INTERVAL_S * 1000)) <= millis())
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{
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if ((update_windspeed_exceed_cnt + (HTTP_CALL_ON_WINDSPEED_INTERVAL_S * 1000)) <= millis()) {
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debug("reading wind sensor exceed");
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// reset the wait timer to get a value every HTTP_CALL_ON_WINDSPEED_INTERVAL_S independently to the runtime of the measurement
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@ -427,9 +411,8 @@ void _fsm_loop()
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// start measurement of wind speed
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start_measure_wind();
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fsm_state = FSM_STATE_11; // wait untile the wind meas time exceeded
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break; // abort case here to prevent read of next sensor in list
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fsm_state = FSM_STATE_11; // wait untile the wind meas time exceeded
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break; // abort case here to prevent read of next sensor in list
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}
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#endif
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fsm_state = FSM_STATE_2;
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@ -440,8 +423,7 @@ void _fsm_loop()
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//debug("reset time check if required");
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#ifdef RESET_ESP_TIME_INTERVAL
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// if millis() reached interval restart ESP
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if (RESET_ESP_TIME_INTERVAL_MS <= millis())
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{
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if (RESET_ESP_TIME_INTERVAL_MS <= millis()) {
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debug("resetting firmware intentionally");
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// Push reset button after flashing once or do a manual power cycle to get the functionality working.
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ESP.restart();
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@ -460,8 +442,7 @@ void _fsm_loop()
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case FSM_STATE_4:
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//debug("disable measure of wind speed if required");
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#ifdef defined(BATTERY_POWERED) && defined(SENSOR_WIND)
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if (energySavingMode() == 1)
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{
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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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//debug("read of wind sensor because of low battery disabled");
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@ -480,39 +461,36 @@ void _fsm_loop()
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/* -------------------------------------------------------------------------------- */
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case FSM_STATE_5:
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//debug("read sensor data check");
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if ((update_sensor_cnt + (UPDATE_SENSOR_INTERVAL_S * 1000)) <= millis() or validData == false)
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{
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if ((update_sensor_cnt + (UPDATE_SENSOR_INTERVAL_S * 1000)) <= millis() or validData == false) {
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debug("read sensor data " + String(sensor_cnt));
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if (sensor_cnt != SENSOR_WINDSPEED)
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{
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if (sensor_cnt != SENSOR_WINDSPEED) {
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// read data from sensor
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currentSensorData[sensor_cnt] = readSensors(sensor_cnt);
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//debug(String(sensor_cnt) + "=" + String(currentSensorData[sensor_cnt]));
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} else {
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start_measure_wind(); // start measurement of wind speed
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fsm_state = FSM_STATE_9; // wait untile the wind meas time exceeded
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break; // abort case here to prevent read of next sensor in list
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start_measure_wind(); // start measurement of wind speed
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fsm_state = FSM_STATE_9; // wait untile the wind meas time exceeded
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break; // abort case here to prevent read of next sensor in list
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}
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if (sensor_cnt < VALUES-1)
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{
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if (sensor_cnt < VALUES - 1) {
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sensor_cnt++;
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fsm_state = FSM_STATE_5; // jump to same state again, more sensors to read
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fsm_state = FSM_STATE_5; // jump to same state again, more sensors to read
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} else {
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update_sensor_cnt = millis(); // reset the update interval counter
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update_sensor_cnt = millis(); // reset the update interval counter
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sensor_cnt = 0;
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fsm_state = FSM_STATE_6; // next state
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fsm_state = FSM_STATE_6; // next state
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}
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} else {
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//debug("skip read sensor data");
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fsm_state = FSM_STATE_1; // no new data, reset FSM
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fsm_state = FSM_STATE_1; // no new data, reset FSM
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}
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break;
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|
@ -529,16 +507,13 @@ void _fsm_loop()
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case FSM_STATE_7:
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//debug("send data to influxdb if required");
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#ifdef INFLUXDB_FEATURE
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for (uint8_t i = 0; i < 5 and validData == false; i++)
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{ // only check sensor data 0 to 4 -> SENSOR_TEMPERATURE, SENSOR_HUMIDITY, SENSOR_LIGHT, SENSOR_WINDSPEED, SENSOR_PRESSURE
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if (currentSensorData[i] != 0 and currentSensorData[i] != nanf("no value") and (not isnan(currentSensorData[i])))
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{
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for (uint8_t i = 0; i < 5 and validData == false; i++) { // only check sensor data 0 to 4 -> SENSOR_TEMPERATURE, SENSOR_HUMIDITY, SENSOR_LIGHT, SENSOR_WINDSPEED, SENSOR_PRESSURE
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if (currentSensorData[i] != 0 and currentSensorData[i] != nanf("no value") and (not isnan(currentSensorData[i]))) {
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validData = true;
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}
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}
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if (validData == true)
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{
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if (validData == true) {
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// send data only if valid data is available
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pushToInfluxDB(DEVICE_NAME, currentSensorData);
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}
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|
@ -552,16 +527,16 @@ void _fsm_loop()
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#ifdef WEBUPDATER_FEATURE
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setSensorData(currentSensorData);
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#endif
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fsm_state = FSM_STATE_1;
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break;
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/* -------------------------------------------------------------------------------- */
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case FSM_STATE_9:
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#ifdef SENSOR_WIND
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if (check_measure_wind_done() == false)
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{
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if (check_measure_wind_done() == false) {
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//debug("wait for wind sensor finish");
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fsm_state = FSM_STATE_9; // stay here until the wind measurement is done
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||||
fsm_state = FSM_STATE_9; // stay here until the wind measurement is done
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} else {
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//debug("wind sensor read finish");
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fsm_state = FSM_STATE_10;
|
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|
@ -587,10 +562,9 @@ void _fsm_loop()
|
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/* -------------------------------------------------------------------------------- */
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||||
case FSM_STATE_11:
|
||||
#ifdef SENSOR_WIND
|
||||
if (check_measure_wind_done() == false)
|
||||
{
|
||||
if (check_measure_wind_done() == false) {
|
||||
//debug("wait for wind sensor finish");
|
||||
fsm_state = FSM_STATE_11; // stay here until the wind measurement is done
|
||||
fsm_state = FSM_STATE_11; // stay here until the wind measurement is done
|
||||
} else {
|
||||
//debug("wind sensor read finish");
|
||||
fsm_state = FSM_STATE_12;
|
||||
|
@ -608,26 +582,24 @@ void _fsm_loop()
|
|||
currentSensorData[sensor_cnt] = measure_wind_result();
|
||||
debug("wind sensor value " + String(currentSensorData[sensor_cnt]));
|
||||
|
||||
if (currentSensorData[SENSOR_WINDSPEED] >= HTTP_CALL_ON_WINDSPEED_EXCEED_MPS)
|
||||
{
|
||||
if (currentSensorData[SENSOR_WINDSPEED] >= HTTP_CALL_ON_WINDSPEED_EXCEED_MPS) {
|
||||
// windspeed exceeded send http call
|
||||
digitalWrite(STATUS_LED_PIN, LOW);
|
||||
|
||||
|
||||
// call the url HTTP_CALL_ON_WINDSPEED_URL
|
||||
WiFiClient client;
|
||||
HTTPClient http;
|
||||
|
||||
|
||||
http.begin(client, String(HTTP_CALL_ON_WINDSPEED_URL).c_str());
|
||||
// Send HTTP GET request
|
||||
int httpResponseCode = http.GET();
|
||||
|
||||
if (httpResponseCode > 0)
|
||||
{
|
||||
|
||||
if (httpResponseCode > 0) {
|
||||
String response = http.getString();
|
||||
debug("http response code: " + String(httpResponseCode) + " = " + response);
|
||||
// TODO handle response
|
||||
}
|
||||
|
||||
|
||||
http.end();
|
||||
debug("Called windspeed exceed callout");
|
||||
digitalWrite(STATUS_LED_PIN, HIGH);
|
||||
|
@ -647,7 +619,7 @@ void _fsm_loop()
|
|||
fsm_state = FSM_STATE_1;
|
||||
break;
|
||||
|
||||
} // close of switch
|
||||
} // close of switch
|
||||
|
||||
//debug("FSM state = " + String(fsm_state));
|
||||
/*if (fsm_state == FSM_STATE_1)
|
||||
|
@ -659,11 +631,9 @@ void _fsm_loop()
|
|||
|
||||
//*************************************************************************//
|
||||
|
||||
void _battery_mode_main()
|
||||
{
|
||||
void _battery_mode_main() {
|
||||
|
||||
if (energySavingMode() == 1)
|
||||
{
|
||||
if (energySavingMode() == 1) {
|
||||
// Disable expensive tasks
|
||||
//debug("read of wind sensor because of low battery disabled");
|
||||
do_not_read_windsensor = true;
|
||||
|
@ -673,8 +643,7 @@ void _battery_mode_main()
|
|||
do_not_read_windsensor = false;
|
||||
}
|
||||
|
||||
for (uint8_t i = 0; i < VALUES; i++)
|
||||
{
|
||||
for (uint8_t i = 0; i < VALUES; i++) {
|
||||
currentSensorData[i] = readSensors(i);
|
||||
}
|
||||
|
||||
|
@ -694,8 +663,7 @@ void _battery_mode_main()
|
|||
//*************************************************************************//
|
||||
|
||||
#ifdef SERIAL_FEATURE
|
||||
void logToSerial(float sensorValues[])
|
||||
{
|
||||
void logToSerial(float sensorValues[]) {
|
||||
Serial.println("");
|
||||
Serial.println("Current readings:");
|
||||
Serial.println("Temperature: " + String(sensorValues[SENSOR_TEMPERATURE]) + " °C");
|
||||
|
@ -710,3 +678,66 @@ void logToSerial(float sensorValues[])
|
|||
#endif
|
||||
|
||||
//*************************************************************************//
|
||||
|
||||
#ifdef HTTP_CALL_SEND_JSON_DATA
|
||||
|
||||
String getJsonData()
|
||||
{
|
||||
String msg = hb_ws_msg_start +
|
||||
hb_ws_msg_temp +
|
||||
String(currentSensorData[SENSOR_TEMPERATURE], 2) +
|
||||
", " +
|
||||
hb_ws_msg_humi +
|
||||
String(currentSensorData[SENSOR_HUMIDITY], 2) +
|
||||
", " +
|
||||
hb_ws_msg_light +
|
||||
String(currentSensorData[SENSOR_LIGHT], 0) + // The light level for the homebridge-http-lux2 plugin is only able to parse integer values
|
||||
", " +
|
||||
hb_ws_msg_windspeed +
|
||||
String(currentSensorData[SENSOR_WINDSPEED], 2) +
|
||||
", " +
|
||||
hb_ws_msg_pressure +
|
||||
String(currentSensorData[SENSOR_PRESSURE], 2) +
|
||||
", " +
|
||||
hb_ws_msg_timestamp +
|
||||
String(millis()) +
|
||||
", " +
|
||||
hb_ws_msg_valid +
|
||||
String(validData) +
|
||||
hb_ws_msg_end;
|
||||
|
||||
return msg;
|
||||
}
|
||||
|
||||
void http_call_send_json_data()
|
||||
{
|
||||
|
||||
currentSensorData[sensor_cnt] = measure_wind_result();
|
||||
debug("http call to " + String(currentSensorData[sensor_cnt]));
|
||||
|
||||
// windspeed exceeded send http call
|
||||
digitalWrite(STATUS_LED_PIN, LOW);
|
||||
|
||||
// call the url HTTP_CALL_SEND_JSON_DATA_URL
|
||||
WiFiClient client;
|
||||
HTTPClient http;
|
||||
|
||||
String tmp_str = HTTP_CALL_SEND_JSON_DATA_URL + urlEncode(getJsonData());
|
||||
|
||||
debug("send: " + tmp_str);
|
||||
|
||||
http.begin(client, String(tmp_str).c_str());
|
||||
// Send HTTP GET request
|
||||
int httpResponseCode = http.GET();
|
||||
|
||||
if (httpResponseCode > 0) {
|
||||
String response = http.getString();
|
||||
debug("http response code: " + String(httpResponseCode) + " = " + response);
|
||||
// TODO handle response
|
||||
}
|
||||
|
||||
http.end();
|
||||
digitalWrite(STATUS_LED_PIN, HIGH);
|
||||
}
|
||||
|
||||
#endif
|
||||
|
|
|
@ -25,16 +25,6 @@ String _webUpdater_ip = "127.0.0.1";
|
|||
String _webUpdater_dev = "unknown";
|
||||
float _webUpdater_sensValues[VALUES];
|
||||
|
||||
const String hb_ws_msg_start = "{";
|
||||
const String hb_ws_msg_temp = "\"temperature\": ";
|
||||
const String hb_ws_msg_humi = "\"humidity\": ";
|
||||
const String hb_ws_msg_light = "\"lightlevel\": ";
|
||||
const String hb_ws_msg_windspeed = "\"windspeed\": ";
|
||||
const String hb_ws_msg_pressure = "\"pressure\": ";
|
||||
const String hb_ws_msg_timestamp = "\"timestamp\": ";
|
||||
const String hb_ws_msg_valid = "\"valid\": ";
|
||||
const String hb_ws_msg_end = "}";
|
||||
|
||||
#define TR_TD_START_STR "<tr><td>"
|
||||
#define TR_TD_END_STR "</td></tr>"
|
||||
#define TD_TD_MID_STR "</td><td>"
|
||||
|
@ -152,28 +142,29 @@ void showHTMLMain(void)
|
|||
#ifdef HOMEBRIDGE_WEBSTAT
|
||||
void hb_webstat_send(void)
|
||||
{
|
||||
|
||||
String msg = hb_ws_msg_start +
|
||||
hb_ws_msg_temp +
|
||||
String(_webUpdater_sensValues[SENSOR_TEMPERATURE], 2) +
|
||||
", " +
|
||||
hb_ws_msg_humi +
|
||||
String(_webUpdater_sensValues[SENSOR_HUMIDITY], 2) +
|
||||
", " +
|
||||
hb_ws_msg_light +
|
||||
String(_webUpdater_sensValues[SENSOR_LIGHT], 0) + // The light level for the homebridge-http-lux2 plugin is only able to parse integer values
|
||||
", " +
|
||||
hb_ws_msg_windspeed +
|
||||
String(_webUpdater_sensValues[SENSOR_WINDSPEED], 2) +
|
||||
", " +
|
||||
hb_ws_msg_pressure +
|
||||
String(_webUpdater_sensValues[SENSOR_PRESSURE], 2) +
|
||||
", " +
|
||||
hb_ws_msg_timestamp +
|
||||
String(millis()) +
|
||||
", " +
|
||||
hb_ws_msg_valid +
|
||||
String(wuValidData) +
|
||||
hb_ws_msg_end;
|
||||
hb_ws_msg_temp +
|
||||
String(_webUpdater_sensValues[SENSOR_TEMPERATURE], 2) +
|
||||
", " +
|
||||
hb_ws_msg_humi +
|
||||
String(_webUpdater_sensValues[SENSOR_HUMIDITY], 2) +
|
||||
", " +
|
||||
hb_ws_msg_light +
|
||||
String(_webUpdater_sensValues[SENSOR_LIGHT], 0) + // The light level for the homebridge-http-lux2 plugin is only able to parse integer values
|
||||
", " +
|
||||
hb_ws_msg_windspeed +
|
||||
String(_webUpdater_sensValues[SENSOR_WINDSPEED], 2) +
|
||||
", " +
|
||||
hb_ws_msg_pressure +
|
||||
String(_webUpdater_sensValues[SENSOR_PRESSURE], 2) +
|
||||
", " +
|
||||
hb_ws_msg_timestamp +
|
||||
String(millis()) +
|
||||
", " +
|
||||
hb_ws_msg_valid +
|
||||
String(wuValidData) +
|
||||
hb_ws_msg_end;
|
||||
|
||||
httpServer.send(200, "text/html", msg);
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue