322 lines
9.8 KiB
C++
Executable File
322 lines
9.8 KiB
C++
Executable File
/*
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* ebusd - daemon for communication with eBUS heating systems.
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* Copyright (C) 2015-2018 John Baier <ebusd@ebusd.eu>
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*
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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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*
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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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*
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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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#ifndef LIB_EBUS_DEVICE_H_
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#define LIB_EBUS_DEVICE_H_
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#include <unistd.h>
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#include <termios.h>
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#include <arpa/inet.h>
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#include <netdb.h>
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#include <iostream>
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#include <fstream>
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#include "lib/ebus/result.h"
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#include "lib/ebus/symbol.h"
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namespace ebusd {
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/** @file lib/ebus/device.h
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* Classes providing access to the eBUS.
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*
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* A @a Device is either a @a SerialDevice directly connected to a local tty
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* port or a remote @a NetworkDevice handled via a TCP socket. It allows to
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* send and receive bytes to/from the eBUS while optionally dumping the data
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* to a file and/or forwarding it to a logging function.
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*/
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/** the arbitration state handled by @a Device. */
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enum ArbitrationState {
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as_none, //!< no arbitration in process
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as_start, //!< arbitration start requested
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as_error, //!< error while sending master address
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as_running, //!< arbitration currently running (master address sent, waiting for reception)
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as_lost, //!< arbitration lost
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as_won, //!< arbitration won
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};
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/**
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* Interface for listening to data received on/sent to a device.
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*/
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class DeviceListener {
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public:
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/**
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* Destructor.
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*/
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virtual ~DeviceListener() {}
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/**
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* Listener method that is called when a symbol was received/sent.
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* @param symbol the received/sent symbol.
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* @param received @a true on reception, @a false on sending.
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*/
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virtual void notifyDeviceData(symbol_t symbol, bool received) = 0; // abstract
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};
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/**
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* The base class for accessing an eBUS.
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*/
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class Device {
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public:
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/**
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* Construct a new instance.
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* @param name the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network).
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* @param checkDevice whether to regularly check the device availability.
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* @param readOnly whether to allow read access to the device only.
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* @param initialSend whether to send an initial @a ESC symbol in @a open().
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* @param enhancedProto whether to use the ebusd enhanced protocol.
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*/
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Device(const char* name, bool checkDevice, bool readOnly, bool initialSend, bool enhancedProto=false);
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/**
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* Destructor.
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*/
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virtual ~Device();
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/**
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* Factory method for creating a new instance.
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* @param name the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network).
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* @param checkDevice whether to regularly check the device availability (only for serial devices).
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* @param readOnly whether to allow read access to the device only.
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* @param initialSend whether to send an initial @a ESC symbol in @a open().
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* @return the new @a Device, or nullptr on error.
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* Note: the caller needs to free the created instance.
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*/
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static Device* create(const char* name, bool checkDevice = true, bool readOnly = false,
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bool initialSend = false);
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/**
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* Get the transfer latency of this device.
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* @return the transfer latency in microseconds.
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*/
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virtual unsigned int getLatency() const { return 0; }
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/**
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* Open the file descriptor.
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* @return the @a result_t code.
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*/
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virtual result_t open();
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/**
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* Close the file descriptor if opened.
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*/
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virtual void close();
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/**
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* Write a single byte to the device.
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* @param value the byte value to write.
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* @return the @a result_t code.
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*/
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result_t send(symbol_t value);
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/**
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* Read a single byte from the device.
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* @param timeout maximum time to wait for the byte in microseconds, or 0 for infinite.
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* @param value the reference in which the received byte value is stored.
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* @param arbitrationState the reference in which the current @a ArbitrationState is stored on success. When set to
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* @a as_won, the received byte is the master address that was successfully arbitrated with.
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* @return the result_t code.
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*/
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result_t recv(unsigned int timeout, symbol_t* value, ArbitrationState* arbitrationState);
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/**
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* Start the arbitration with the specified master address. A subsequent request while an arbitration is currently in
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* checking state will always result in @a RESULT_ERR_DUPLICATE.
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* @param masterAddress the master address, or @a SYN to cancel a previous arbitration request.
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* @return the result_t code.
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*/
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result_t startArbitration(symbol_t masterAddress);
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bool isArbitrating() const { return m_arbitrationMaster != SYN; };
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/**
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* Return the device name.
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* @return the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network).
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*/
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const char* getName() { return m_name; }
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/**
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* Return whether the device is opened and available.
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* @return whether the device is opened and available.
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*/
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bool isValid();
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/**
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* Return whether to allow read access to the device only.
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* @return whether to allow read access to the device only.
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*/
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bool isReadOnly() const { return m_readOnly; }
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/**
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* Set the @a DeviceListener.
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* @param listener the @a DeviceListener.
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*/
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void setListener(DeviceListener* listener) { m_listener = listener; }
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protected:
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/**
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* Check if the device is still available and close it if not.
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*/
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virtual void checkDevice() = 0; // abstract
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/**
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* Write a single byte.
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* @param value the byte value to write.
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* @return true on success, false on error.
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*/
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virtual bool write(symbol_t value, bool startArbitration=false);
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/**
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* Check whether a symbol is available for reading immediately (without waiting).
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* @return true when a symbol is available for reading immediately.
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*/
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virtual bool available();
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/**
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* Read a single byte.
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* @param value the reference in which the read byte value is stored.
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* @param isAvailable the result of the immediately preceding call to @a available().
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* @param arbitrationState the variable in which to store the received arbitration state (mandatory for enhanced proto).
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* @return true on success, false on error.
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*/
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virtual bool read(symbol_t* value, bool isAvailable, ArbitrationState* arbitrationState=nullptr);
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/** the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network). */
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const char* m_name;
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/** whether to regularly check the device availability. */
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const bool m_checkDevice;
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/** whether to allow read access to the device only. */
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const bool m_readOnly;
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/** whether to send an initial @a ESC symbol in @a open(). */
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const bool m_initialSend;
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/** whether the device supports the ebusd enhanced protocol. */
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const bool m_enhancedProto;
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/** the opened file descriptor, or -1. */
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int m_fd;
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private:
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/** the @a DeviceListener, or nullptr. */
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public: DeviceListener* m_listener;
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/** the arbitration master address to send when in arbitration, or @a SYN. */
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symbol_t m_arbitrationMaster;
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/** true when in arbitration and the next received symbol needs to be checked against the sent master address. */
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bool m_arbitrationCheck;
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/** the read buffer. */
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symbol_t* m_buffer;
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/** the read buffer size (multiple of 4). */
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size_t m_bufSize;
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/** the read buffer fill length. */
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size_t m_bufLen;
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/** the read buffer read position. */
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size_t m_bufPos;
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};
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/**
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* The @a Device for directly connected serial interfaces (tty).
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*/
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class SerialDevice : public Device {
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public:
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/**
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* Construct a new instance.
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* @param name the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network).
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* @param checkDevice whether to regularly check the device availability.
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* @param readOnly whether to allow read access to the device only.
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* @param initialSend whether to send an initial @a ESC symbol in @a open().
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* @param enhancedProto whether to use the ebusd enhanced protocol.
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*/
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SerialDevice(const char* name, bool checkDevice, bool readOnly, bool initialSend, bool enhancedProto=false)
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: Device(name, checkDevice, readOnly, initialSend, enhancedProto) {}
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// @copydoc
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result_t open() override;
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// @copydoc
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void close() override;
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protected:
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// @copydoc
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void checkDevice() override;
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private:
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/** the previous settings of the device for restoring. */
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termios m_oldSettings;
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};
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/**
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* The @a Device for remote network interfaces.
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*/
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class NetworkDevice : public Device {
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public:
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/**
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* Construct a new instance.
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* @param name the device name (e.g. "/dev/ttyUSB0" for serial, "127.0.0.1:1234" for network).
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* @param address the socket address of the device.
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* @param readOnly whether to allow read access to the device only.
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* @param initialSend whether to send an initial @a ESC symbol in @a open().
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* @param udp true for UDP, false to TCP.
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* @param enhancedProto whether to use the ebusd enhanced protocol.
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*/
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NetworkDevice(const char* name, const struct sockaddr_in& address, bool readOnly, bool initialSend,
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bool udp, bool enhancedProto=false)
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: Device(name, true, readOnly, initialSend, enhancedProto), m_address(address), m_udp(udp) {}
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/**
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* Destructor.
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*/
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~NetworkDevice() override {}
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// @copydoc
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unsigned int getLatency() const override { return 10000; }
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// @copydoc
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result_t open() override;
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protected:
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// @copydoc
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void checkDevice() override;
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private:
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/** the socket address of the device. */
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const struct sockaddr_in m_address;
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/** true for UDP, false to TCP. */
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const bool m_udp;
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};
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} // namespace ebusd
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#endif // LIB_EBUS_DEVICE_H_
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