优化
This commit is contained in:
309
ws/ws.py
309
ws/ws.py
@ -4,6 +4,9 @@ import json
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import os
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from contextlib import asynccontextmanager
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from typing import Dict, Optional, AsyncGenerator
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from service.device_service import update_online_status_by_ip, increment_alarm_count_by_ip
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from service.device_action_service import add_device_action
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from schema.device_action_schema import DeviceActionCreate
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import cv2
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import numpy as np
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@ -11,7 +14,7 @@ from fastapi import WebSocket, APIRouter, WebSocketDisconnect, FastAPI
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from ocr.model_violation_detector import MultiModelViolationDetector
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# 配置文件相对路径(根据实际目录结构调整)
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# 配置文件路径(建议实际部署时改为相对路径或环境变量)
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YOLO_MODEL_PATH = r"D:\Git\bin\video\ocr\models\best.pt"
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FORBIDDEN_WORDS_PATH = r"D:\Git\bin\video\ocr\forbidden_words.txt"
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OCR_CONFIG_PATH = r"D:\Git\bin\video\ocr\config\1.yaml"
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@ -26,265 +29,287 @@ detector = MultiModelViolationDetector(
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ocr_confidence_threshold=0.5
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)
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# -------------------------- 配置常量 --------------------------
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# 配置常量
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HEARTBEAT_INTERVAL = 30 # 心跳检查间隔(秒)
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HEARTBEAT_TIMEOUT = 600 # 客户端超时阈值(秒)
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WS_ENDPOINT = "/ws" # WebSocket端点路径
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FRAME_QUEUE_SIZE = 1 # 帧队列大小限制(保持1,确保单帧处理)
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# -------------------------- 核心数据结构与全局变量 --------------------------
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ws_router = APIRouter()
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FRAME_QUEUE_SIZE = 1 # 帧队列大小限制
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# 客户端连接封装(包含帧队列)
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# 工具函数:获取格式化时间字符串(统一时间戳格式)
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def get_current_time_str() -> str:
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return datetime.datetime.now().strftime("%Y-%m-%d %H:%M:%S")
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def get_current_time_file_str() -> str:
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return datetime.datetime.now().strftime("%Y%m%d_%H%M%S_%f")
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# 客户端连接封装
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class ClientConnection:
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def __init__(self, websocket: WebSocket, client_ip: str):
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self.websocket = websocket
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self.client_ip = client_ip
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self.last_heartbeat = datetime.datetime.now()
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self.frame_queue = asyncio.Queue(maxsize=FRAME_QUEUE_SIZE) # 帧队列,长度为1
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self.consumer_task: Optional[asyncio.Task] = None # 消费者任务
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self.frame_queue = asyncio.Queue(maxsize=FRAME_QUEUE_SIZE)
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self.consumer_task: Optional[asyncio.Task] = None
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# 更新心跳时间
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def update_heartbeat(self):
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"""更新心跳时间(客户端发送心跳时调用)"""
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self.last_heartbeat = datetime.datetime.now()
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# 检查是否存活(超时返回False)
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def is_alive(self) -> bool:
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"""判断客户端是否存活(心跳超时检查)"""
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timeout = (datetime.datetime.now() - self.last_heartbeat).total_seconds()
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return timeout < HEARTBEAT_TIMEOUT
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# 启动帧消费任务
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def start_consumer(self):
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"""启动帧消费任务"""
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self.consumer_task = asyncio.create_task(self.consume_frames())
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return self.consumer_task
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# ---------- 新增:发送“允许发送二进制帧”的信号给客户端 ----------
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async def send_allow_send_frame(self):
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"""向客户端发送JSON信号,通知其可发送下一帧二进制数据"""
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async def send_frame_permit(self):
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"""
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发送「帧发送许可信号」
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通知客户端可发送下一帧图像
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"""
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try:
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allow_msg = {
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"type": "allow_send_frame", # 信号类型,与客户端约定
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"timestamp": datetime.datetime.now().strftime("%Y-%m-%d %H:%M:%S"),
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"status": "ready", # 表示服务器已准备好接收下一帧
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"client_ip": self.client_ip # 可选:便于客户端确认自身身份
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frame_permit_msg = {
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"type": "frame",
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"timestamp": get_current_time_str(),
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"client_ip": self.client_ip
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}
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await self.websocket.send_json(allow_msg)
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:已发送「允许发送帧」信号")
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await self.websocket.send_json(frame_permit_msg)
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:已发送帧发送许可信号(取帧后立即通知)")
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except Exception as e:
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# 发送失败大概率是客户端已断开,不影响主流程,仅日志记录
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:发送「允许发送帧」信号失败 - {str(e)}")
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:帧许可信号发送失败 - {str(e)}")
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# 帧消费协程
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async def consume_frames(self) -> None:
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"""从队列中获取帧并进行处理,处理完后通知客户端可发送下一帧"""
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"""消费队列中的帧并处理(核心调整:取帧后立即发许可,再处理帧)"""
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try:
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while True:
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# 从队列获取帧数据(队列空时会阻塞,等待客户端发送)
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# 1. 从队列取出帧(阻塞直到有帧可用)
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frame_data = await self.frame_queue.get()
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# -------------------------- 核心修改:取出帧后立即发送下一帧许可 --------------------------
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await self.send_frame_permit() # 取帧即通知客户端发下一帧,无需等处理完成
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# -----------------------------------------------------------------------------------------
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try:
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# 处理帧数据
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# 2. 处理取出的帧(即使处理慢,客户端也已收到许可,可提前准备下一帧)
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await self.process_frame(frame_data)
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finally:
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# 标记任务完成(队列计数-1,此时队列回到空状态)
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# 3. 标记帧任务完成(无论处理成功/失败,都需清理队列)
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self.frame_queue.task_done()
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# ---------- 修改:处理完当前帧后,立即通知客户端可发送下一帧 ----------
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await self.send_allow_send_frame()
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except asyncio.CancelledError:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:帧消费任务已取消")
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:帧消费任务已取消")
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except Exception as e:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:帧处理错误 - {str(e)}")
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:帧消费逻辑错误 - {str(e)}")
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async def process_frame(self, frame_data: bytes) -> None:
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"""处理单帧图像数据(原有逻辑不变)"""
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# 将二进制数据转换为NumPy数组(uint8类型)
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"""处理单帧图像数据(检测违规后发送危险通知 + 调用违规次数加一方法)"""
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# 二进制数据转OpenCV图像
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nparr = np.frombuffer(frame_data, np.uint8)
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# 解码为图像,返回与cv2.imread相同的格式(BGR通道的ndarray)
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img = cv2.imdecode(nparr, cv2.IMREAD_COLOR)
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if img is None:
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:无法解析图像数据")
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return
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# 确保images文件夹存在
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if not os.path.exists('images'):
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os.makedirs('images')
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# 生成唯一的文件名,包含时间戳和客户端IP,避免文件名冲突
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timestamp = datetime.datetime.now().strftime("%Y%m%d_%H%M%S_%f")
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filename = f"images/{self.client_ip.replace('.', '_')}_{timestamp}.jpg"
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# 确保图像保存目录存在
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os.makedirs('images', exist_ok=True)
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# 保存图像(按IP+时间戳命名,避免冲突)
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filename = f"images/{self.client_ip.replace('.', '_')}_{get_current_time_file_str()}.jpg"
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try:
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# 保存图像到本地
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cv2.imwrite(filename, img)
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print(f"[{datetime.datetime.now():%H:%M:%S}] 图像已保存至:{filename}")
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print(f"[{get_current_time_str()}] 图像已保存至:{filename}")
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# 进行检测
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if img is not None:
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has_violation, violation_type, details = detector.detect_violations(img)
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if has_violation:
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print(f"检测到违规 - 类型: {violation_type}, 详情: {details}")
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# 发送检测结果回客户端(原有逻辑不变)
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await self.websocket.send_json({
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"type": "detection_result",
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"has_violation": has_violation,
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"violation_type": violation_type,
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"details": details,
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"timestamp": datetime.datetime.now().strftime("%Y-%m-%d %H:%M:%S")
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})
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else:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:未检测到任何违规内容")
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# 执行违规检测
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has_violation, violation_type, details = detector.detect_violations(img)
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if has_violation:
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print(
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f"[{get_current_time_str()}] 客户端{self.client_ip}:检测到违规 - 类型: {violation_type}, 详情: {details}")
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# 调用违规次数加一方法
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try:
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await asyncio.to_thread(increment_alarm_count_by_ip, self.client_ip)
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:违规次数已+1")
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except Exception as e:
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:违规次数更新失败 - {str(e)}")
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# 发送「危险通知」
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danger_msg = {
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"type": "danger",
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"timestamp": get_current_time_str(),
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"client_ip": self.client_ip
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}
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await self.websocket.send_json(danger_msg)
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else:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:无法解析图像数据")
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:未检测到违规")
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except Exception as e:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{self.client_ip}:图像处理错误 - {str(e)}")
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print(f"[{get_current_time_str()}] 客户端{self.client_ip}:图像处理错误 - {str(e)}")
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# 全局连接管理(IP -> 连接实例)
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# 全局状态管理
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connected_clients: Dict[str, ClientConnection] = {}
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# 心跳任务(全局引用,用于关闭时清理)
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heartbeat_task: Optional[asyncio.Task] = None
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# -------------------------- 心跳检查逻辑(原有逻辑不变) --------------------------
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# 心跳检查(定时清理超时客户端 + 调用离线状态更新方法)
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async def heartbeat_checker():
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while True:
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now = datetime.datetime.now()
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# 1. 筛选超时客户端(避免遍历中修改字典)
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current_time = get_current_time_str()
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timeout_ips = [ip for ip, conn in connected_clients.items() if not conn.is_alive()]
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# 2. 处理超时连接(关闭+移除)
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if timeout_ips:
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print(f"[{now:%H:%M:%S}] 心跳检查:{len(timeout_ips)}个客户端超时({timeout_ips})")
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print(f"[{current_time}] 心跳检查:{len(timeout_ips)}个客户端超时(IP:{timeout_ips})")
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for ip in timeout_ips:
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try:
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# 取消消费者任务
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if connected_clients[ip].consumer_task and not connected_clients[ip].consumer_task.done():
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connected_clients[ip].consumer_task.cancel()
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await connected_clients[ip].websocket.close(code=1008, reason="心跳超时")
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conn = connected_clients[ip]
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if conn.consumer_task and not conn.consumer_task.done():
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conn.consumer_task.cancel()
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await conn.websocket.close(code=1008, reason="心跳超时")
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# 超时设为离线并记录
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try:
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await asyncio.to_thread(update_online_status_by_ip, ip, 0)
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action_data = DeviceActionCreate(client_ip=ip, action=0)
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await asyncio.to_thread(add_device_action, action_data)
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print(f"[{current_time}] 客户端{ip}:已标记为离线并记录操作")
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except Exception as e:
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print(f"[{current_time}] 客户端{ip}:离线状态更新失败 - {str(e)}")
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finally:
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connected_clients.pop(ip, None)
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else:
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print(f"[{now:%H:%M:%S}] 心跳检查:{len(connected_clients)}个客户端在线,无超时")
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print(f"[{current_time}] 心跳检查:{len(connected_clients)}个客户端在线")
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# 3. 等待下一轮检查
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await asyncio.sleep(HEARTBEAT_INTERVAL)
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# -------------------------- 应用生命周期(原有逻辑不变) --------------------------
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# 应用生命周期管理
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@asynccontextmanager
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async def lifespan(app: FastAPI):
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global heartbeat_task
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# 启动心跳任务
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heartbeat_task = asyncio.create_task(heartbeat_checker())
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print(f"[{datetime.datetime.now():%H:%M:%S}] 心跳任务启动(ID:{id(heartbeat_task)})")
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print(f"[{get_current_time_str()}] 全局心跳检查任务启动(任务ID:{id(heartbeat_task)})")
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yield
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# 关闭时取消心跳任务
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if heartbeat_task and not heartbeat_task.done():
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heartbeat_task.cancel()
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try:
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await heartbeat_task
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print(f"[{datetime.datetime.now():%H:%M:%S}] 心跳任务已取消")
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print(f"[{get_current_time_str()}] 全局心跳检查任务已取消")
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except asyncio.CancelledError:
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pass
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# -------------------------- 消息处理(文本/心跳逻辑不变,二进制逻辑保留) --------------------------
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async def send_heartbeat_ack(client_ip: str):
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"""回复心跳确认(原有逻辑不变)"""
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if client_ip not in connected_clients:
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return False
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# 消息处理工具函数
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async def send_heartbeat_ack(conn: ClientConnection):
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try:
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ack = {
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"timestamp": datetime.datetime.now().strftime("%Y-%m-%d %H:%M:%S"),
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"type": "heartbeat"
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heartbeat_ack_msg = {
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"type": "heart",
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"timestamp": get_current_time_str(),
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"client_ip": conn.client_ip
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}
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await connected_clients[client_ip].websocket.send_json(ack)
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await conn.websocket.send_json(heartbeat_ack_msg)
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print(f"[{get_current_time_str()}] 客户端{conn.client_ip}:已发送心跳确认")
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return True
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except Exception:
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connected_clients.pop(client_ip, None)
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except Exception as e:
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connected_clients.pop(conn.client_ip, None)
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print(f"[{get_current_time_str()}] 客户端{conn.client_ip}:心跳确认发送失败 - {str(e)}")
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return False
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async def handle_text_msg(client_ip: str, text: str, conn: ClientConnection):
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"""处理文本消息(核心:心跳+JSON解析,原有逻辑不变)"""
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async def handle_text_msg(conn: ClientConnection, text: str):
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try:
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msg = json.loads(text)
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# 仅处理心跳类型消息
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if msg.get("type") == "heartbeat":
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if msg.get("type") == "heart":
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conn.update_heartbeat()
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await send_heartbeat_ack(client_ip)
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await send_heartbeat_ack(conn)
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else:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:收到文本消息:{msg}")
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print(f"[{get_current_time_str()}] 客户端{conn.client_ip}:未知文本消息类型({msg.get('type')})")
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except json.JSONDecodeError:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:无效JSON消息")
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print(f"[{get_current_time_str()}] 客户端{conn.client_ip}:无效JSON文本消息")
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async def handle_binary_msg(client_ip: str, data: bytes):
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"""处理二进制消息(原有逻辑不变,因客户端仅在收到允许信号后发送,队列不会满)"""
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if client_ip not in connected_clients:
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print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:连接不存在,丢弃{len(data)}字节数据")
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return
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conn = connected_clients[client_ip]
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|
||||
# 检查队列是否已满(理论上不会触发,因客户端按信号发送)
|
||||
if conn.frame_queue.full():
|
||||
print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:队列已满,丢弃{len(data)}字节数据")
|
||||
return
|
||||
|
||||
# 队列未满,添加帧到队列
|
||||
async def handle_binary_msg(conn: ClientConnection, data: bytes):
|
||||
try:
|
||||
conn.frame_queue.put_nowait(data)
|
||||
print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:已接收{len(data)}字节二进制数据,加入队列")
|
||||
print(f"[{get_current_time_str()}] 客户端{conn.client_ip}:图像数据({len(data)}字节)已加入队列")
|
||||
except asyncio.QueueFull:
|
||||
print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:队列突然满了,丢弃{len(data)}字节数据")
|
||||
print(f"[{get_current_time_str()}] 客户端{conn.client_ip}:帧队列已满,丢弃当前图像数据")
|
||||
|
||||
|
||||
# WebSocket路由配置
|
||||
ws_router = APIRouter()
|
||||
|
||||
|
||||
# -------------------------- WebSocket核心端点(修改连接初始化逻辑) --------------------------
|
||||
@ws_router.websocket(WS_ENDPOINT)
|
||||
async def websocket_endpoint(websocket: WebSocket):
|
||||
# 接受连接 + 获取客户端IP
|
||||
await websocket.accept()
|
||||
client_ip = websocket.client.host if websocket.client else "unknown"
|
||||
now = datetime.datetime.now()
|
||||
print(f"[{now:%H:%M:%S}] 客户端{client_ip}:连接成功")
|
||||
client_ip = websocket.client.host if websocket.client else "unknown_ip"
|
||||
current_time = get_current_time_str()
|
||||
print(f"[{current_time}] 客户端{client_ip}:WebSocket连接已建立")
|
||||
|
||||
is_online_updated = False
|
||||
|
||||
consumer_task = None
|
||||
try:
|
||||
# 处理重复连接(关闭旧连接)
|
||||
# 处理重复连接
|
||||
if client_ip in connected_clients:
|
||||
# 取消旧连接的消费者任务
|
||||
if connected_clients[client_ip].consumer_task and not connected_clients[client_ip].consumer_task.done():
|
||||
connected_clients[client_ip].consumer_task.cancel()
|
||||
await connected_clients[client_ip].websocket.close(code=1008, reason="同一IP新连接")
|
||||
old_conn = connected_clients[client_ip]
|
||||
if old_conn.consumer_task and not old_conn.consumer_task.done():
|
||||
old_conn.consumer_task.cancel()
|
||||
await old_conn.websocket.close(code=1008, reason="同一IP新连接建立")
|
||||
connected_clients.pop(client_ip)
|
||||
print(f"[{now:%H:%M:%S}] 客户端{client_ip}:关闭旧连接")
|
||||
print(f"[{current_time}] 客户端{client_ip}:已关闭旧连接")
|
||||
|
||||
# 注册新连接
|
||||
new_conn = ClientConnection(websocket, client_ip)
|
||||
connected_clients[client_ip] = new_conn
|
||||
new_conn.start_consumer()
|
||||
# 初始许可:连接建立后立即发一次,让客户端知道可发第一帧(后续靠取帧后自动发)
|
||||
await new_conn.send_frame_permit()
|
||||
|
||||
# 启动帧消费任务
|
||||
consumer_task = new_conn.start_consumer()
|
||||
# ---------- 修改:客户端刚连接时,队列空,立即发送「允许发送帧」信号 ----------
|
||||
await new_conn.send_allow_send_frame()
|
||||
print(f"[{now:%H:%M:%S}] 客户端{client_ip}:注册成功,已启动帧消费任务,当前在线{len(connected_clients)}个")
|
||||
# 标记上线并记录
|
||||
try:
|
||||
await asyncio.to_thread(update_online_status_by_ip, client_ip, 1)
|
||||
action_data = DeviceActionCreate(client_ip=client_ip, action=1)
|
||||
await asyncio.to_thread(add_device_action, action_data)
|
||||
print(f"[{current_time}] 客户端{client_ip}:已标记为在线并记录操作")
|
||||
is_online_updated = True
|
||||
except Exception as e:
|
||||
print(f"[{current_time}] 客户端{client_ip}:上线状态更新失败 - {str(e)}")
|
||||
|
||||
# 循环接收消息(原有逻辑不变)
|
||||
print(f"[{current_time}] 客户端{client_ip}:新连接注册成功,在线数:{len(connected_clients)}")
|
||||
|
||||
# 消息循环
|
||||
while True:
|
||||
data = await websocket.receive()
|
||||
if "text" in data:
|
||||
await handle_text_msg(client_ip, data["text"], new_conn)
|
||||
await handle_text_msg(new_conn, data["text"])
|
||||
elif "bytes" in data:
|
||||
await handle_binary_msg(client_ip, data["bytes"])
|
||||
await handle_binary_msg(new_conn, data["bytes"])
|
||||
|
||||
# 异常处理(断开/错误)
|
||||
except WebSocketDisconnect as e:
|
||||
print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:主动断开(代码:{e.code})")
|
||||
print(f"[{get_current_time_str()}] 客户端{client_ip}:主动断开连接(代码:{e.code})")
|
||||
except Exception as e:
|
||||
print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:连接异常({str(e)[:50]})")
|
||||
print(f"[{get_current_time_str()}] 客户端{client_ip}:连接异常 - {str(e)[:50]}")
|
||||
finally:
|
||||
# 清理连接和任务
|
||||
# 清理资源并标记离线
|
||||
if client_ip in connected_clients:
|
||||
# 取消消费者任务
|
||||
if connected_clients[client_ip].consumer_task and not connected_clients[client_ip].consumer_task.done():
|
||||
connected_clients[client_ip].consumer_task.cancel()
|
||||
conn = connected_clients[client_ip]
|
||||
if conn.consumer_task and not conn.consumer_task.done():
|
||||
conn.consumer_task.cancel()
|
||||
|
||||
# 主动/异常断开时标记离线
|
||||
if is_online_updated:
|
||||
try:
|
||||
await asyncio.to_thread(update_online_status_by_ip, client_ip, 0)
|
||||
action_data = DeviceActionCreate(client_ip=client_ip, action=0)
|
||||
await asyncio.to_thread(add_device_action, action_data)
|
||||
print(f"[{get_current_time_str()}] 客户端{client_ip}:断开后已标记为离线")
|
||||
except Exception as e:
|
||||
print(f"[{get_current_time_str()}] 客户端{client_ip}:断开后离线更新失败 - {str(e)}")
|
||||
|
||||
connected_clients.pop(client_ip, None)
|
||||
print(f"[{datetime.datetime.now():%H:%M:%S}] 客户端{client_ip}:连接已清理,当前在线{len(connected_clients)}个")
|
||||
print(f"[{get_current_time_str()}] 客户端{client_ip}:资源已清理,在线数:{len(connected_clients)}")
|
||||
|
Reference in New Issue
Block a user