103 lines
3.6 KiB
C++
103 lines
3.6 KiB
C++
/**
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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) 2013-2015 Sensnology AB
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* Full contributor list: https://github.com/mysensors/Arduino/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 - Henrik EKblad
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* Contribution by a-lurker and Anticimex,
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* Contribution by Norbert Truchsess <norbert.truchsess@t-online.de>
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* Contribution by Tomas Hozza <thozza@gmail.com>
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*
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*
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* DESCRIPTION
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* The EthernetGateway sends data received from sensors to the ethernet link.
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* The gateway also accepts input on ethernet interface, which is then sent out to the radio network.
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*
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* The GW code is designed for Arduino 328p / 16MHz. ATmega168 does not have enough memory to run this program.
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*
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* LED purposes:
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* - To use the feature, uncomment WITH_LEDS_BLINKING in MyConfig.h
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* - RX (green) - blink fast on radio message recieved. In inclusion mode will blink fast only on presentation recieved
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* - TX (yellow) - blink fast on radio message transmitted. In inclusion mode will blink slowly
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* - ERR (red) - fast blink on error during transmission error or recieve crc error
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*
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* See http://www.mysensors.org/build/ethernet_gateway for wiring instructions.
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*
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*/
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// Enable debug prints to serial monitor
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#define MY_DEBUG
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// Enable and select radio type attached
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#define MY_RADIO_NRF24
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//#define MY_RADIO_RFM69
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// When ENC28J60 is connected we have to move CE/CSN pins for NRF radio
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#define MY_RF24_CE_PIN 5
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#define MY_RF24_CS_PIN 6
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// Enable gateway ethernet module type
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#define MY_GATEWAY_ENC28J60
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// Gateway IP address
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#define MY_IP_ADDRESS 192,168,178,66
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// The port to keep open on node server mode / or port to contact in client mode
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#define MY_PORT 5003
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// Controller ip address. Enables client mode (default is "server" mode).
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// Also enable this if MY_USE_UDP is used and you want sensor data sent somewhere.
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//#define MY_CONTROLLER_IP_ADDRESS 192, 168, 178, 254
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// The MAC address can be anything you want but should be unique on your network.
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// Newer boards have a MAC address printed on the underside of the PCB, which you can (optionally) use.
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// Note that most of the Ardunio examples use "DEAD BEEF FEED" for the MAC address.
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#define MY_MAC_ADDRESS 0xDE, 0xAD, 0xBE, 0xEF, 0xFE, 0xED
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// Flash leds on rx/tx/err
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#define MY_LEDS_BLINKING_FEATURE
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// Set blinking period
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#define MY_DEFAULT_LED_BLINK_PERIOD 300
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// Enable inclusion mode
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#define MY_INCLUSION_MODE_FEATURE
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// Enable Inclusion mode button on gateway
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#define MY_INCLUSION_BUTTON_FEATURE
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// Set inclusion mode duration (in seconds)
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#define MY_INCLUSION_MODE_DURATION 60
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// Digital pin used for inclusion mode button
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#define MY_INCLUSION_MODE_BUTTON_PIN 3
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#define MY_DEFAULT_ERR_LED_PIN 7 // Error led pin
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#define MY_DEFAULT_RX_LED_PIN 8 // Receive led pin
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#define MY_DEFAULT_TX_LED_PIN 9 // the PCB, on board LED
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#include <SPI.h>
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#include <UIPEthernet.h>
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#include <MySensors.h>
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void setup()
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{
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}
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void loop() {
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}
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