sercat usb
This commit is contained in:
parent
b0790f0068
commit
2e6594d3d4
2 changed files with 310 additions and 36 deletions
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@ -1,11 +1,12 @@
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"""
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A comprehensive Python library for controlling BenQ Smart Board via RS232-over-LAN.
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A comprehensive Python library for controlling BenQ Smart Board via RS232-over-LAN or USB Serial.
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Implements all protocol commands from the official specification.
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"""
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import socket
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import struct
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import logging # New import for logging
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from typing import Optional, Dict, Any
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import logging
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import serial # New import for USB Serial support
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from typing import Optional, Dict, Any, Union
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from enum import Enum, unique
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@ -166,57 +167,146 @@ def _log_packet(direction: str, data: bytes):
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class BenQSmartBoard:
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"""
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A client for controlling BenQ Smart Boards via LAN (RS232-over-TCP).
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A client for controlling BenQ Smart Boards via LAN (RS232-over-TCP) or USB Serial.
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Implements all commands from the official protocol specification.
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"""
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DEFAULT_PORT = 4660
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DEFAULT_BAUDRATE = 115200
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TV_ID = b'01'
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CR = b'\x0D'
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def __init__(self, ip: str, port: int = DEFAULT_PORT, timeout: float = 5.0):
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def __init__(self,
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ip: str = None,
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port: int = DEFAULT_PORT,
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timeout: float = 5.0,
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connection_type: ConnectionType = ConnectionType.TCP,
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serial_port: str = None,
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baudrate: int = DEFAULT_BAUDRATE):
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"""
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:param ip: IP address of the BenQ Smart Board
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:param ip: IP address of the BenQ Smart Board (required for TCP)
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:param port: TCP port, default 4660
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:param timeout: socket timeout in seconds
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:param timeout: socket/serial timeout in seconds
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:param connection_type: ConnectionType.TCP or ConnectionType.SERIAL
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:param serial_port: Serial port path (required for SERIAL, e.g., 'COM3', '/dev/ttyUSB0')
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:param baudrate: Serial baudrate, default 115200
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"""
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self.connection_type = connection_type
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self.timeout = timeout
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# TCP parameters
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self.ip = ip
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self.port = port
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self.timeout = timeout
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self.sock: Optional[socket.socket] = None
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# Serial parameters
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self.serial_port = serial_port
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self.baudrate = baudrate
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self.ser: Optional[serial.Serial] = None
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# -- Connection Management -------------------------------------------------
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def connect(self):
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"""Establish connection to the Smart Board (TCP or Serial)."""
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if self.connection_type == ConnectionType.TCP:
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self._connect_tcp()
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elif self.connection_type == ConnectionType.SERIAL:
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self._connect_serial()
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else:
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raise ValueError(f"Unsupported connection type: {self.connection_type}")
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def _connect_tcp(self):
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"""Establish a TCP connection to the Smart Board."""
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if self.sock is not None:
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return
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if not self.ip:
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raise ValueError("IP address is required for TCP connection")
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try:
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logging.debug(f"Connecting to Smart Board at {self.ip}:{self.port}") # New logging line
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logging.debug(f"Connecting to Smart Board at {self.ip}:{self.port}")
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self.sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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self.sock.settimeout(self.timeout)
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self.sock.connect((self.ip, self.port))
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logging.info("Connection established successfully.") # New logging line
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logging.info("TCP connection established successfully.")
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except socket.error as e:
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self.sock = None
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logging.exception("Failed to connect to Smart Board.") # New logging line
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raise ConnectionError(f"Failed to connect: {e}")
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logging.exception("Failed to connect to Smart Board via TCP.")
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raise ConnectionError(f"Failed to connect via TCP: {e}")
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def _connect_serial(self):
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"""Establish a Serial connection to the Smart Board."""
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if self.ser is not None and self.ser.is_open:
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return
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if not self.serial_port:
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raise ValueError("Serial port is required for Serial connection")
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try:
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logging.debug(f"Connecting to Smart Board at {self.serial_port}:{self.baudrate}")
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self.ser = serial.Serial(
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port=self.serial_port,
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baudrate=self.baudrate,
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bytesize=serial.EIGHTBITS,
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parity=serial.PARITY_NONE,
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stopbits=serial.STOPBITS_ONE,
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timeout=self.timeout
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)
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logging.info("Serial connection established successfully.")
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except serial.SerialException as e:
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self.ser = None
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logging.exception("Failed to connect to Smart Board via Serial.")
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raise ConnectionError(f"Failed to connect via Serial: {e}")
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def disconnect(self):
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"""Close the connection."""
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if self.connection_type == ConnectionType.TCP:
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self._disconnect_tcp()
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elif self.connection_type == ConnectionType.SERIAL:
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self._disconnect_serial()
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def _disconnect_tcp(self):
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"""Close the TCP connection."""
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if self.sock:
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try:
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logging.debug("Closing connection to Smart Board.") # New logging line
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logging.debug("Closing TCP connection to Smart Board.")
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self.sock.close()
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except socket.error:
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pass
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self.sock = None
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logging.info("Disconnected from Smart Board.") # New logging line
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logging.info("Disconnected from Smart Board via TCP.")
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def _disconnect_serial(self):
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"""Close the Serial connection."""
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if self.ser and self.ser.is_open:
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try:
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logging.debug("Closing Serial connection to Smart Board.")
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self.ser.close()
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except serial.SerialException:
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pass
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self.ser = None
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logging.info("Disconnected from Smart Board via Serial.")
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def _ensure_connection(self):
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"""Helper to ensure we are connected; reconnect if needed."""
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if not self.sock:
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if self.connection_type == ConnectionType.TCP and not self.sock:
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self.connect()
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elif self.connection_type == ConnectionType.SERIAL and (not self.ser or not self.ser.is_open):
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self.connect()
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def _send_data(self, data: bytes):
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"""Send data via the active connection."""
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if self.connection_type == ConnectionType.TCP:
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self.sock.sendall(data)
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elif self.connection_type == ConnectionType.SERIAL:
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self.ser.write(data)
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else:
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raise ValueError(f"Unsupported connection type: {self.connection_type}")
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def _receive_data(self, size: int) -> bytes:
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"""Receive data via the active connection."""
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if self.connection_type == ConnectionType.TCP:
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return self.sock.recv(size)
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elif self.connection_type == ConnectionType.SERIAL:
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return self.ser.read(size)
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else:
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raise ValueError(f"Unsupported connection type: {self.connection_type}")
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# -- Core Send/Receive -----------------------------------------------------
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value.encode(),
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self.CR
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)
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_log_packet("Sent", packet) # Log sent packet
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self.sock.sendall(packet)
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_log_packet("Sent", packet)
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self._send_data(packet)
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response = self._receive_response()
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logging.debug(f"Received response: {response}") # New logging line
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logging.debug(f"Received response: {response}")
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if response == b'+':
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return True
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elif response == b'-':
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else:
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# Unknown response type
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raise CommandError(f"Unknown response type: {response}")
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except socket.error as e:
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except (socket.error, serial.SerialException) as e:
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self.disconnect()
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logging.exception("Socket error during send_command.") # New logging line
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logging.exception("Communication error during send_command.")
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raise ConnectionError(f"Failed to send command: {e}")
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def get_command(self, command_code: str) -> str:
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length = 6
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try:
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logging.debug(f"Sending get command: code={command_code}") # New logging line
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logging.debug(f"Sending get command: code={command_code}")
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packet = struct.pack(
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">B2s1s2s1s",
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length,
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command_code.encode(),
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self.CR
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)
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_log_packet("Sent", packet) # Log sent packet
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self.sock.sendall(packet)
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_log_packet("Sent", packet)
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self._send_data(packet)
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response, value = self._receive_get_response()
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logging.debug(f"Received get response: {response}, value: {value}") # New logging line
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logging.debug(f"Received get response: {response}, value: {value}")
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if response == b'r':
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return value.decode()
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raise CommandError(f"Unexpected get response type: {response}")
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except socket.error as e:
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except (socket.error, serial.SerialException) as e:
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self.disconnect()
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logging.exception("Socket error during get_command.") # New logging line
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logging.exception("Communication error during get_command.")
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raise ConnectionError(f"Failed to send get command: {e}")
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def _receive_response(self):
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Receive the standard 5-byte response for a Set command:
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[ length(1) | ID(2) | command_type(1) | CR(1) ]
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command_type should be '+' or '-'.
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We interpret the protocol to have an additional 3 bytes for the value if command_type='r'.
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Return (command_type, value_bytes).
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"""
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try:
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resp = self.sock.recv(5)
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_log_packet("Received", resp) # Log received data
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resp = self._receive_data(5)
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_log_packet("Received", resp)
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if len(resp) < 5:
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raise CommandError("Incomplete response from Smart Board (set).")
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logging.debug(f"Raw set response data: {resp}") # New logging line
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logging.debug(f"Raw set response data: {resp}")
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# parse
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# >B2s1s1s
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# But effectively, we only need the command_type at index 3
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length = resp[0]
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command_type = resp[3:4]
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return command_type
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except socket.timeout:
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except (socket.timeout, serial.SerialTimeoutException):
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raise ConnectionError("Timed out waiting for response (set).")
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def _receive_get_response(self):
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Return (command_type, value_bytes).
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"""
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try:
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header = self.sock.recv(5)
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_log_packet("Received", header) # Log header
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header = self._receive_data(5)
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_log_packet("Received", header)
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if len(header) < 5:
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raise CommandError("Incomplete response from Smart Board (get header).")
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logging.debug(f"Raw get response header: {header}") # New logging line
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logging.debug(f"Raw get response header: {header}")
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length = header[0]
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command_type = header[3:4] # e.g. b'r'
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# Now read next 3 bytes if it's a valid get reply
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if command_type == b'r':
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value = self.sock.recv(3)
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_log_packet("Received", value) # Log value bytes
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value = self._receive_data(3)
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_log_packet("Received", value)
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if len(value) < 3:
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raise CommandError("Incomplete 3-byte value in get response.")
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return command_type, value
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else:
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# No further data expected if it's not 'r'
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return command_type, b''
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except socket.timeout:
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except (socket.timeout, serial.SerialTimeoutException):
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raise ConnectionError("Timed out waiting for response (get).")
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# -- Full Set of Commands (from your Protocol) -----------------------------
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181
custom_components/benq_smartboard/serial_test.py
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181
custom_components/benq_smartboard/serial_test.py
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#!/usr/bin/env python3
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"""
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Test script for BenQ Smart Board library using USB Serial connection.
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"""
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import logging
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import time
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from benq_smartboard_lib import (
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BenQSmartBoard,
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ConnectionType,
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PowerState,
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VideoSource,
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BenQSmartBoardError
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)
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# Configure logging
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logging.basicConfig(
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level=logging.DEBUG,
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format='%(asctime)s - %(levelname)s - %(message)s'
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)
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def test_serial_connection():
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"""Test the serial connection functionality."""
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# Configure your serial port here
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SERIAL_PORT = 'COM3' # Windows example, use '/dev/ttyUSB0' for Linux
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BAUDRATE = 115200
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print(f"Testing BenQ Smart Board via Serial: {SERIAL_PORT} @ {BAUDRATE}")
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# Create Smart Board instance with Serial connection
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board = BenQSmartBoard(
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connection_type=ConnectionType.SERIAL,
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serial_port=SERIAL_PORT,
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baudrate=BAUDRATE,
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timeout=5.0
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)
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try:
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# Connect to the Smart Board
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print("Connecting to Smart Board...")
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board.connect()
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print("Connected successfully!")
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# Test basic commands
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print("\n=== Testing Basic Commands ===")
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# Get current power state
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try:
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power_state = board.get_power()
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print(f"Current power state: {power_state}")
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except Exception as e:
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print(f"Failed to get power state: {e}")
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# Get current video source
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try:
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video_source = board.get_video_source()
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print(f"Current video source: {video_source}")
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except Exception as e:
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print(f"Failed to get video source: {e}")
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# Get current volume
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try:
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volume = board.get_volume()
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print(f"Current volume: {volume}")
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except Exception as e:
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print(f"Failed to get volume: {e}")
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# Get current brightness
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try:
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brightness = board.get_brightness()
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print(f"Current brightness: {brightness}")
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except Exception as e:
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print(f"Failed to get brightness: {e}")
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print("\n=== Testing Set Commands ===")
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# Test setting volume
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try:
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print("Setting volume to 50...")
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success = board.set_volume(50)
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print(f"Set volume result: {'Success' if success else 'Failed'}")
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time.sleep(1)
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# Verify the change
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new_volume = board.get_volume()
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print(f"New volume: {new_volume}")
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except Exception as e:
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print(f"Failed to set volume: {e}")
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# Test setting brightness
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try:
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print("Setting brightness to 80...")
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success = board.set_brightness(80)
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print(f"Set brightness result: {'Success' if success else 'Failed'}")
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time.sleep(1)
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# Verify the change
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new_brightness = board.get_brightness()
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print(f"New brightness: {new_brightness}")
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except Exception as e:
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print(f"Failed to set brightness: {e}")
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# Test video source switching
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try:
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print("Switching to HDMI1...")
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success = board.set_video_source(VideoSource.HDMI1)
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print(f"Set video source result: {'Success' if success else 'Failed'}")
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time.sleep(2)
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# Verify the change
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new_source = board.get_video_source()
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print(f"New video source: {new_source}")
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except Exception as e:
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print(f"Failed to set video source: {e}")
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print("\n=== Testing Advanced Commands ===")
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# Test RTC reading
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try:
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rtc_info = board.get_rtc()
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print(f"RTC Info: {rtc_info}")
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except Exception as e:
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print(f"Failed to get RTC info: {e}")
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# Test mute functionality
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try:
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print("Testing mute...")
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success = board.set_mute(True)
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print(f"Mute ON result: {'Success' if success else 'Failed'}")
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time.sleep(2)
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success = board.set_mute(False)
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print(f"Mute OFF result: {'Success' if success else 'Failed'}")
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except Exception as e:
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print(f"Failed to test mute: {e}")
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print("\n=== Test Completed Successfully ===")
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except BenQSmartBoardError as e:
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print(f"Smart Board Error: {e}")
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except Exception as e:
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print(f"Unexpected error: {e}")
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logging.exception("Unexpected error occurred")
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finally:
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# Always disconnect
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print("Disconnecting...")
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board.disconnect()
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print("Disconnected.")
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def list_serial_ports():
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"""List available serial ports."""
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try:
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import serial.tools.list_ports
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ports = serial.tools.list_ports.comports()
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print("Available serial ports:")
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for port in ports:
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print(f" {port.device} - {port.description}")
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return [port.device for port in ports]
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except ImportError:
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print("pyserial tools not available. Install with: pip install pyserial")
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return []
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if __name__ == "__main__":
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print("BenQ Smart Board Serial Test")
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print("=" * 40)
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# List available ports
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available_ports = list_serial_ports()
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if not available_ports:
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print("No serial ports found or pyserial not installed.")
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print("Make sure to:")
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print("1. Install pyserial: pip install pyserial")
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print("2. Connect your BenQ Smart Board via USB")
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print("3. Update the SERIAL_PORT variable in this script")
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else:
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print(f"\nFound {len(available_ports)} serial port(s)")
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print("\nStarting test...")
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test_serial_connection()
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