/*
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ESPurna
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Copyright (C) 2016-2017 by Xose Pérez <xose dot perez at gmail dot com>
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "config/all.h"
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#include <EEPROM.h>
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// -----------------------------------------------------------------------------
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// METHODS
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// -----------------------------------------------------------------------------
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unsigned long _loopDelay = 0;
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void hardwareSetup() {
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EEPROM.begin(EEPROM_SIZE);
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#if DEBUG_SERIAL_SUPPORT
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DEBUG_PORT.begin(SERIAL_BAUDRATE);
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#if DEBUG_ESP_WIFI
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DEBUG_PORT.setDebugOutput(true);
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#endif
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#elif defined(SERIAL_BAUDRATE)
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Serial.begin(SERIAL_BAUDRATE);
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#endif
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#if SPIFFS_SUPPORT
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SPIFFS.begin();
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#endif
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#if defined(ESPLIVE)
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//The ESPLive has an ADC MUX which needs to be configured.
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pinMode(16, OUTPUT);
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digitalWrite(16, HIGH); //Defualt CT input (pin B, solder jumper B)
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#endif
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}
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void hardwareLoop() {
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// Heartbeat
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static unsigned long last_uptime = 0;
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static bool on_connect = true;
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bool send = (last_uptime == 0);
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send = send || (millis() - last_uptime > HEARTBEAT_INTERVAL);
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if (mqttConnected()) {
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send = send || on_connect;
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} else {
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on_connect = true;
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}
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if (send) {
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last_uptime = millis();
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if (mqttConnected()) on_connect = false;
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heartbeat();
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}
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}
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// -----------------------------------------------------------------------------
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// BOOTING
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// -----------------------------------------------------------------------------
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unsigned int sectors(size_t size) {
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return (int) (size + SPI_FLASH_SEC_SIZE - 1) / SPI_FLASH_SEC_SIZE;
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}
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void welcome() {
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DEBUG_MSG_P(PSTR("\n\n"));
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DEBUG_MSG_P(PSTR("[INIT] %s %s\n"), (char *) APP_NAME, (char *) APP_VERSION);
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DEBUG_MSG_P(PSTR("[INIT] %s\n"), (char *) APP_AUTHOR);
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DEBUG_MSG_P(PSTR("[INIT] %s\n\n"), (char *) APP_WEBSITE);
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DEBUG_MSG_P(PSTR("[INIT] CPU chip ID: 0x%06X\n"), ESP.getChipId());
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DEBUG_MSG_P(PSTR("[INIT] CPU frequency: %d MHz\n"), ESP.getCpuFreqMHz());
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DEBUG_MSG_P(PSTR("[INIT] SDK version: %s\n"), ESP.getSdkVersion());
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DEBUG_MSG_P(PSTR("[INIT] Core version: %s\n"), getCoreVersion().c_str());
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DEBUG_MSG_P(PSTR("[INIT] Core revision: %s\n"), getCoreRevision().c_str());
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DEBUG_MSG_P(PSTR("\n"));
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// -------------------------------------------------------------------------
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FlashMode_t mode = ESP.getFlashChipMode();
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DEBUG_MSG_P(PSTR("[INIT] Flash chip ID: 0x%06X\n"), ESP.getFlashChipId());
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DEBUG_MSG_P(PSTR("[INIT] Flash speed: %u Hz\n"), ESP.getFlashChipSpeed());
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DEBUG_MSG_P(PSTR("[INIT] Flash mode: %s\n"), mode == FM_QIO ? "QIO" : mode == FM_QOUT ? "QOUT" : mode == FM_DIO ? "DIO" : mode == FM_DOUT ? "DOUT" : "UNKNOWN");
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DEBUG_MSG_P(PSTR("\n"));
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DEBUG_MSG_P(PSTR("[INIT] Flash sector size: %8u bytes\n"), SPI_FLASH_SEC_SIZE);
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DEBUG_MSG_P(PSTR("[INIT] Flash size (CHIP): %8u bytes\n"), ESP.getFlashChipRealSize());
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DEBUG_MSG_P(PSTR("[INIT] Flash size (SDK): %8u bytes / %4d sectors\n"), ESP.getFlashChipSize(), sectors(ESP.getFlashChipSize()));
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DEBUG_MSG_P(PSTR("[INIT] Firmware size: %8u bytes / %4d sectors\n"), ESP.getSketchSize(), sectors(ESP.getSketchSize()));
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DEBUG_MSG_P(PSTR("[INIT] OTA size: %8u bytes / %4d sectors\n"), ESP.getFreeSketchSpace(), sectors(ESP.getFreeSketchSpace()));
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#if SPIFFS_SUPPORT
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FSInfo fs_info;
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bool fs = SPIFFS.info(fs_info);
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if (fs) {
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DEBUG_MSG_P(PSTR("[INIT] SPIFFS size: %8u bytes / %4d sectors\n"), fs_info.totalBytes, sectors(fs_info.totalBytes));
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}
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#else
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DEBUG_MSG_P(PSTR("[INIT] SPIFFS size: %8u bytes / %4d sectors\n"), 0, 0);
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#endif
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DEBUG_MSG_P(PSTR("[INIT] EEPROM size: %8u bytes / %4d sectors\n"), settingsMaxSize(), sectors(settingsMaxSize()));
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DEBUG_MSG_P(PSTR("[INIT] Empty space: %8u bytes / 4 sectors\n"), 4 * SPI_FLASH_SEC_SIZE);
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DEBUG_MSG_P(PSTR("\n"));
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// -------------------------------------------------------------------------
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#if SPIFFS_SUPPORT
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if (fs) {
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DEBUG_MSG_P(PSTR("[INIT] SPIFFS total size: %8u bytes\n"), fs_info.totalBytes);
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DEBUG_MSG_P(PSTR("[INIT] used size: %8u bytes\n"), fs_info.usedBytes);
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DEBUG_MSG_P(PSTR("[INIT] block size: %8u bytes\n"), fs_info.blockSize);
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DEBUG_MSG_P(PSTR("[INIT] page size: %8u bytes\n"), fs_info.pageSize);
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DEBUG_MSG_P(PSTR("[INIT] max files: %8u\n"), fs_info.maxOpenFiles);
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DEBUG_MSG_P(PSTR("[INIT] max length: %8u\n"), fs_info.maxPathLength);
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} else {
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DEBUG_MSG_P(PSTR("[INIT] No SPIFFS partition\n"));
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}
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DEBUG_MSG_P(PSTR("\n"));
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#endif
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// -------------------------------------------------------------------------
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DEBUG_MSG_P(PSTR("[INIT] MANUFACTURER: %s\n"), MANUFACTURER);
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DEBUG_MSG_P(PSTR("[INIT] DEVICE: %s\n"), DEVICE);
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DEBUG_MSG_P(PSTR("[INIT] SUPPORT:"));
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#if ALEXA_SUPPORT
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DEBUG_MSG_P(PSTR(" ALEXA"));
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#endif
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#if DEBUG_SERIAL_SUPPORT
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DEBUG_MSG_P(PSTR(" DEBUG_SERIAL"));
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#endif
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#if DEBUG_TELNET_SUPPORT
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DEBUG_MSG_P(PSTR(" DEBUG_TELNET"));
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#endif
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#if DEBUG_UDP_SUPPORT
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DEBUG_MSG_P(PSTR(" DEBUG_UDP"));
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#endif
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#if DOMOTICZ_SUPPORT
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DEBUG_MSG_P(PSTR(" DOMOTICZ"));
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#endif
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#if HOMEASSISTANT_SUPPORT
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DEBUG_MSG_P(PSTR(" HOMEASSISTANT"));
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#endif
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#if I2C_SUPPORT
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DEBUG_MSG_P(PSTR(" I2C"));
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#endif
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#if INFLUXDB_SUPPORT
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DEBUG_MSG_P(PSTR(" INFLUXDB"));
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#endif
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#if LLMNR_SUPPORT
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DEBUG_MSG_P(PSTR(" LLMNR"));
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#endif
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#if MDNS_SUPPORT
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DEBUG_MSG_P(PSTR(" MDNS"));
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#endif
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#if NETBIOS_SUPPORT
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DEBUG_MSG_P(PSTR(" NETBIOS"));
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#endif
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#if NOFUSS_SUPPORT
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DEBUG_MSG_P(PSTR(" NOFUSS"));
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#endif
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#if NTP_SUPPORT
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DEBUG_MSG_P(PSTR(" NTP"));
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#endif
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#if RF_SUPPORT
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DEBUG_MSG_P(PSTR(" RF"));
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#endif
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#if SENSOR_SUPPORT
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DEBUG_MSG_P(PSTR(" SENSOR"));
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#endif
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#if SPIFFS_SUPPORT
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DEBUG_MSG_P(PSTR(" SPIFFS"));
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#endif
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#if SSDP_SUPPORT
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DEBUG_MSG_P(PSTR(" SSDP"));
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#endif
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#if TELNET_SUPPORT
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DEBUG_MSG_P(PSTR(" TELNET"));
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#endif
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#if TERMINAL_SUPPORT
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DEBUG_MSG_P(PSTR(" TERMINAL"));
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#endif
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#if WEB_SUPPORT
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DEBUG_MSG_P(PSTR(" WEB"));
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#endif
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DEBUG_MSG_P(PSTR("\n[INIT] SENSORS:"));
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#if ANALOG_SUPPORT
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DEBUG_MSG_P(PSTR(" ANALOG"));
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#endif
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#if BMX280_SUPPORT
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DEBUG_MSG_P(PSTR(" BMX280"));
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#endif
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#if DALLAS_SUPPORT
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DEBUG_MSG_P(PSTR(" DALLAS"));
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#endif
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#if DHT_SUPPORT
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DEBUG_MSG_P(PSTR(" DHTXX"));
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#endif
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#if DIGITAL_SUPPORT
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DEBUG_MSG_P(PSTR(" DIGITAL"));
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#endif
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#if ECH1560_SUPPORT
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DEBUG_MSG_P(PSTR(" ECH1560"));
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#endif
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#if EMON_ADC121_SUPPORT
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DEBUG_MSG_P(PSTR(" EMON_ADC121"));
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#endif
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#if EMON_ADS1X15_SUPPORT
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DEBUG_MSG_P(PSTR(" EMON_ADX1X15"));
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#endif
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#if EMON_ANALOG_SUPPORT
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DEBUG_MSG_P(PSTR(" EMON_ANALOG"));
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#endif
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#if EVENTS_SUPPORT
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DEBUG_MSG_P(PSTR(" EVENTS"));
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#endif
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#if HLW8012_SUPPORT
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DEBUG_MSG_P(PSTR(" HLW8012"));
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#endif
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#if MHZ19_SUPPORT
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DEBUG_MSG_P(PSTR(" MHZ19"));
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#endif
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#if PMSX003_SUPPORT
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DEBUG_MSG_P(PSTR(" PMSX003"));
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#endif
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#if SHT3X_I2C_SUPPORT
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DEBUG_MSG_P(PSTR(" SHT3X_I2C"));
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#endif
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#if SI7021_SUPPORT
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DEBUG_MSG_P(PSTR(" SI7021"));
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#endif
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#if V9261F_SUPPORT
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DEBUG_MSG_P(PSTR(" V9261F"));
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#endif
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DEBUG_MSG_P(PSTR("\n\n"));
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// -------------------------------------------------------------------------
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unsigned char reason = resetReason();
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if (reason > 0) {
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char buffer[32];
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strcpy_P(buffer, custom_reset_string[reason-1]);
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DEBUG_MSG_P(PSTR("[INIT] Last reset reason: %s\n"), buffer);
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} else {
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DEBUG_MSG_P(PSTR("[INIT] Last reset reason: %s\n"), (char *) ESP.getResetReason().c_str());
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}
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DEBUG_MSG_P(PSTR("[INIT] Free heap: %u bytes\n"), getFreeHeap());
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#if ADC_VCC_ENABLED
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DEBUG_MSG_P(PSTR("[INIT] Power: %d mV\n"), ESP.getVcc());
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#endif
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DEBUG_MSG_P(PSTR("[INIT] Power saving delay value: %lu ms\n"), _loopDelay);
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DEBUG_MSG_P(PSTR("\n"));
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}
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void setup() {
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// Init EEPROM, Serial and SPIFFS
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hardwareSetup();
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// Question system stability
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#if SYSTEM_CHECK_ENABLED
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systemCheck(false);
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#endif
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// Init persistance and terminal features
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settingsSetup();
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if (getSetting("hostname").length() == 0) {
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setSetting("hostname", getIdentifier());
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}
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// Cache loop delay value to speed things (recommended max 250ms)
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_loopDelay = atol(getSetting("loopDelay", LOOP_DELAY_TIME).c_str());
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// Show welcome message and system configuration
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welcome();
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// Basic modules, will always run
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wifiSetup();
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otaSetup();
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#if TELNET_SUPPORT
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telnetSetup();
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#endif
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// Do not run the next services if system is flagged stable
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#if SYSTEM_CHECK_ENABLED
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if (!systemCheck()) return;
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#endif
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// Init webserver required before any module that uses API
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#if WEB_SUPPORT
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webSetup();
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wsSetup();
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apiSetup();
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#endif
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#if LIGHT_PROVIDER != LIGHT_PROVIDER_NONE
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lightSetup();
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#endif
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relaySetup();
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buttonSetup();
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ledSetup();
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#if MQTT_SUPPORT
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mqttSetup();
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#endif
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#if MDNS_SUPPORT
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mdnsSetup();
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#endif
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#if LLMNR_SUPPORT
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llmnrSetup();
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#endif
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#if NETBIOS_SUPPORT
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netbiosSetup();
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#endif
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#if SSDP_SUPPORT
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ssdpSetup();
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#endif
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#if NTP_SUPPORT
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ntpSetup();
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#endif
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#if I2C_SUPPORT
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i2cSetup();
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#if I2C_CLEAR_BUS
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i2cClearBus();
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#endif
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i2cScan();
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#endif
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#ifdef ITEAD_SONOFF_RFBRIDGE
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rfbSetup();
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#endif
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#if ALEXA_SUPPORT
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alexaSetup();
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#endif
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#if NOFUSS_SUPPORT
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nofussSetup();
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#endif
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#if INFLUXDB_SUPPORT
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idbSetup();
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#endif
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#if RF_SUPPORT
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rfSetup();
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#endif
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#if IR_SUPPORT
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irSetup();
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#endif
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#if DOMOTICZ_SUPPORT
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domoticzSetup();
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#endif
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#if HOMEASSISTANT_SUPPORT
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haSetup();
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#endif
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#if SENSOR_SUPPORT
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sensorSetup();
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#endif
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// Prepare configuration for version 2.0
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migrate();
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saveSettings();
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}
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void loop() {
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hardwareLoop();
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settingsLoop();
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wifiLoop();
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otaLoop();
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#if SYSTEM_CHECK_ENABLED
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systemCheckLoop();
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// Do not run the next services if system is flagged stable
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if (!systemCheck()) return;
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#endif
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#if LIGHT_PROVIDER != LIGHT_PROVIDER_NONE
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lightLoop();
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#endif
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relayLoop();
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buttonLoop();
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ledLoop();
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#if MQTT_SUPPORT
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mqttLoop();
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#endif
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#ifdef ITEAD_SONOFF_RFBRIDGE
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rfbLoop();
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#endif
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#if SSDP_SUPPORT
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ssdpLoop();
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#endif
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#if NTP_SUPPORT
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ntpLoop();
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#endif
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#if ALEXA_SUPPORT
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alexaLoop();
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#endif
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#if NOFUSS_SUPPORT
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nofussLoop();
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#endif
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#if RF_SUPPORT
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rfLoop();
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#endif
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#if IR_SUPPORT
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irLoop();
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#endif
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#if SENSOR_SUPPORT
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sensorLoop();
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#endif
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// Power saving delay
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delay(_loopDelay);
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}
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