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https://github.com/IoTManagerProject/IoTManager.git
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удаляем библиотеку
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@@ -1,99 +0,0 @@
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/*
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* The MySensors Arduino library handles the wireless radio link and protocol
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* between your home built sensors/actuators and HA controller of choice.
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* The sensors forms a self healing radio network with optional repeaters. Each
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* repeater and gateway builds a routing tables in EEPROM which keeps track of the
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* network topology allowing messages to be routed to nodes.
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*
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* Created by Henrik Ekblad <henrik.ekblad@mysensors.org>
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* Copyright (C) 2013-2019 Sensnology AB
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* Full contributor list: https://github.com/mysensors/MySensors/graphs/contributors
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*
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* Documentation: http://www.mysensors.org
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* Support Forum: http://forum.mysensors.org
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* version 2 as published by the Free Software Foundation.
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*
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*******************************
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*
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* REVISION HISTORY
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* Version 1.0 - tekka
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*
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* DESCRIPTION
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* ATC mode settings and signal report functions, on RFM69 and RFM95 nodes
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*
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*/
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// Enable debug prints
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#define MY_DEBUG
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// Enable and select radio type attached
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// RFM69
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//#define MY_RADIO_RFM69
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//#define MY_RFM69_NEW_DRIVER // ATC on RFM69 works only with the new driver (not compatible with old=default driver)
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//#define MY_RFM69_ATC_TARGET_RSSI_DBM (-70) // target RSSI -70dBm
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//#define MY_RFM69_MAX_POWER_LEVEL_DBM (10) // max. TX power 10dBm = 10mW
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// RFM95
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#define MY_RADIO_RFM95
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#define MY_RFM95_ATC_TARGET_RSSI_DBM (-70) // target RSSI -70dBm
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#define MY_RFM95_MAX_POWER_LEVEL_DBM (10) // max. TX power 10dBm = 10mW
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#include <MySensors.h>
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// ID of the sensor child
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#define CHILD_ID_UPLINK_QUALITY (0)
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#define CHILD_ID_TX_LEVEL (1)
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#define CHILD_ID_TX_PERCENT (2)
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#define CHILD_ID_TX_RSSI (3)
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#define CHILD_ID_RX_RSSI (4)
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#define CHILD_ID_TX_SNR (5)
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#define CHILD_ID_RX_SNR (6)
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// Initialize general message
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MyMessage msgTxRSSI(CHILD_ID_TX_RSSI, V_CUSTOM);
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MyMessage msgRxRSSI(CHILD_ID_RX_RSSI, V_CUSTOM);
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MyMessage msgTxSNR(CHILD_ID_TX_SNR, V_CUSTOM);
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MyMessage msgRxSNR(CHILD_ID_RX_SNR, V_CUSTOM);
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MyMessage msgTxLevel(CHILD_ID_TX_LEVEL, V_CUSTOM);
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MyMessage msgTxPercent(CHILD_ID_TX_PERCENT, V_CUSTOM);
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MyMessage msgUplinkQuality(CHILD_ID_UPLINK_QUALITY, V_CUSTOM);
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void setup()
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{
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}
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void presentation()
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{
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// Send the sketch version information to the gateway and controller
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sendSketchInfo("ATC", "1.0");
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// Register all sensors to gw (they will be created as child devices)
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present(CHILD_ID_UPLINK_QUALITY, S_CUSTOM, "UPLINK QUALITY RSSI");
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present(CHILD_ID_TX_LEVEL, S_CUSTOM, "TX LEVEL DBM");
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present(CHILD_ID_TX_PERCENT, S_CUSTOM, "TX LEVEL PERCENT");
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present(CHILD_ID_TX_RSSI, S_CUSTOM, "TX RSSI");
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present(CHILD_ID_RX_RSSI, S_CUSTOM, "RX RSSI");
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present(CHILD_ID_TX_SNR, S_CUSTOM, "TX SNR");
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present(CHILD_ID_RX_SNR, S_CUSTOM, "RX SNR");
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}
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void loop()
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{
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// send messages to GW
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send(msgUplinkQuality.set(transportGetSignalReport(SR_UPLINK_QUALITY)));
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send(msgTxLevel.set(transportGetSignalReport(SR_TX_POWER_LEVEL)));
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send(msgTxPercent.set(transportGetSignalReport(SR_TX_POWER_PERCENT)));
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// retrieve RSSI / SNR reports from incoming ACK
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send(msgTxRSSI.set(transportGetSignalReport(SR_TX_RSSI)));
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send(msgRxRSSI.set(transportGetSignalReport(SR_RX_RSSI)));
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send(msgTxSNR.set(transportGetSignalReport(SR_TX_SNR)));
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send(msgRxSNR.set(transportGetSignalReport(SR_RX_SNR)));
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// wait a bit
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wait(5000);
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}
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