199 lines
6.8 KiB
Python
199 lines
6.8 KiB
Python
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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"""
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LoRa协议处理模块
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处理LoRa物理层通信相关功能
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支持四级结构:平台->中继->区域主控->普通设备
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"""
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import logging
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import time
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import random
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import os
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from ..base import ProtocolHandler
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# 配置日志
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logging.basicConfig(level=logging.INFO)
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logger = logging.getLogger(__name__)
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class LoRaHandler(ProtocolHandler):
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"""LoRa协议处理器"""
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def __init__(self, config):
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"""
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初始化LoRa协议处理器
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Args:
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config: 配置对象
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"""
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super().__init__(config)
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self.initialized = False
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self.last_config_mtime = None # 上次配置文件修改时间
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logger.info("初始化LoRa协议处理器")
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def initialize(self):
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"""初始化LoRa协议处理器"""
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logger.info("开始初始化LoRa通信")
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# 模拟LoRa硬件初始化
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time.sleep(0.5)
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self.initialized = True
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# 如果启用模拟模式,初始化设备管理器
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if self.config.simulation_enabled:
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self._initialize_simulation()
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else:
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logger.info("真实模式,需要连接LoRa硬件")
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logger.info("LoRa协议处理器初始化完成")
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def _initialize_simulation(self):
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"""初始化模拟模式"""
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from internal.simulation import DeviceManager, AreaController, NormalDevice
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# 如果设备管理器尚未创建,则创建它
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if not hasattr(self, 'device_manager') or self.device_manager is None:
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self.device_manager = DeviceManager()
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# 检查是否需要重新加载配置(在模拟模式下)
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self._check_and_reload_config()
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# 重新初始化设备(根据最新的配置)
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self.device_manager.reinitialize_devices(
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self.config.simulation_controllers,
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self.config.simulation_devices
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)
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def _check_and_reload_config(self):
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"""检查并重新加载配置文件(仅在模拟模式下)"""
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if not self.config.simulation_enabled:
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return
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try:
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# 获取配置文件的修改时间
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current_mtime = os.path.getmtime(self.config.config_path)
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# 如果是第一次检查或者文件已被修改,则重新加载配置
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if self.last_config_mtime is None or current_mtime > self.last_config_mtime:
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logger.info("检测到配置文件发生变化,重新加载配置")
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self.config.reload_config()
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self.last_config_mtime = current_mtime
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except Exception as e:
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logger.error(f"检查配置文件修改时间时发生错误: {e}")
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def send_command(self, command, data):
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"""
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通过LoRa发送命令到设备
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Args:
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command (str): 命令类型
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data (dict): 命令数据
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Returns:
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dict: 命令执行结果
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"""
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if not self.initialized:
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logger.error("LoRa协议处理器未初始化")
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return {
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"status": "failed",
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"message": "LoRa协议处理器未初始化"
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}
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logger.info(f"通过LoRa发送命令: {command}, 数据: {data}")
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# 如果启用模拟模式,直接处理命令
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if self.config.simulation_enabled and self.device_manager:
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# 在模拟模式下,每次都检查配置文件是否有更新
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self._check_and_reload_config()
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result = self._handle_simulated_command(command, data)
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logger.info(f"模拟命令处理结果: {result}")
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return result
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# 真实模式下需要实际发送命令到LoRa设备
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logger.info("真实模式下发送命令到LoRa设备")
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# 这里应该是实际的LoRa通信代码
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# 暂时返回模拟响应
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time.sleep(0.1) # 模拟通信延迟
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return {
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"status": "success" if random.choice([True, False]) else "failed",
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"message": "命令发送成功" if random.choice([True, False]) else "命令发送失败",
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"data": {
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"device_id": data.get("device_id", "unknown"),
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"timestamp": time.time()
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}
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}
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def receive_response(self):
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"""
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从LoRa接收设备响应
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Returns:
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dict: 设备响应数据
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"""
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if not self.initialized:
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logger.error("LoRa协议处理器未初始化")
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return {
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"status": "failed",
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"message": "LoRa协议处理器未初始化"
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}
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logger.info("从LoRa接收设备响应")
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# 如果启用模拟模式,返回模拟响应
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if self.config.simulation_enabled and self.device_manager:
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# 在模拟模式下,我们假设命令已经直接处理完成,不需要单独接收响应
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logger.info("模拟模式下命令已直接处理完成")
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return {
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"status": "success",
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"message": "模拟响应",
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"data": {}
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}
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# 真实模式下需要实际从LoRa设备接收响应
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logger.info("真实模式下从LoRa设备接收响应")
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# 这里应该是实际的LoRa通信代码
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# 暂时返回模拟响应
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time.sleep(0.1) # 模拟通信延迟
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return {
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"status": "success",
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"message": "接收响应成功",
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"data": {
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"response_data": "sample_data",
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"timestamp": time.time()
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}
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}
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def _handle_simulated_command(self, command, data):
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"""
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处理模拟命令
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Args:
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command (str): 命令类型
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data (dict): 命令数据
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Returns:
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dict: 命令执行结果
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"""
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logger.info(f"处理模拟命令: {command}")
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if command == "control_device":
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device_id = data.get("device_id")
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action = data.get("action")
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return self.device_manager.control_device(device_id, action)
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elif command == "query_device_status":
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device_id = data.get("device_id")
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return self.device_manager.query_device_status(device_id)
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elif command == "query_all_device_status":
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statuses = self.device_manager.query_all_device_status()
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return {
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"status": "success",
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"message": "查询所有设备状态成功",
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"data": statuses
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}
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else:
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return {
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"status": "failed",
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"message": f"不支持的命令: {command}"
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} |