Update 收集.py
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@@ -287,68 +287,6 @@ with open('2.txt', 'r', encoding='utf-8') as file:
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import re
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from pypinyin import lazy_pinyin
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# 打开一个utf-8编码的文本文件
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with open("2.txt", "r", encoding="utf-8") as file:
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# 读取所有行并存储到列表中
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lines = file.readlines()
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# 定义一个函数,用于提取每行的第一个数字
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def extract_first_number(line):
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match = re.search(r'\d+', line)
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return int(match.group()) if match else float('inf')
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# 对列表中的行进行排序,按照第一个数字的大小排列,其余行按中文排序
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sorted_lines = sorted(lines, key=lambda x: (not 'CCTV' in x, extract_first_number(x) if 'CCTV' in x else lazy_pinyin(x.strip())))
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# 将排序后的行写入新的utf-8编码的文本文件
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with open("2.txt", "w", encoding="utf-8") as file:
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for line in sorted_lines:
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file.write(line)
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import re
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def parse_file(input_file_path, output_file_name):
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# 正则表达式匹配从'//'开始到第一个'/'或第一个'::'结束的部分
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ip_or_domain_pattern = re.compile(r'//([^/:]*:[^/:]*::[^/:]*|[^/]*)')
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# 用于存储每个IP或域名及其对应的行列表
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ip_or_domain_to_lines = {}
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# 读取原始文件内容
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with open(input_file_path, 'r', encoding='utf-8') as file:
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for line in file:
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line = line.strip()
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# 如果行是分类标签行,则跳过
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if ",#genre#" in line:
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continue
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# 检查行是否包含IP或域名
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match = ip_or_domain_pattern.search(line)
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if match:
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# 提取匹配到的IP或域名
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matched_text = match.group(1)
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# 去除IP或域名后的剩余部分,只保留匹配到的IP或域名
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ip_or_domain = matched_text.split('://')[-1].split('/')[0].split('::')[0]
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# 将行添加到对应的IP或域名列表中
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if ip_or_domain not in ip_or_domain_to_lines:
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ip_or_domain_to_lines[ip_or_domain] = []
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ip_or_domain_to_lines[ip_or_domain].append(line)
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# 过滤掉小于5000字节的IP或域名段
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filtered_ip_or_domain_to_lines = {ip_or_domain: lines for ip_or_domain, lines in ip_or_domain_to_lines.items()
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if sum(len(line) for line in lines) >= 2000}
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# 如果没有满足条件的IP或域名段,则不生成文件
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if not filtered_ip_or_domain_to_lines:
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print("没有满足条件的IP或域名段,不生成文件。")
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return
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# 合并所有满足条件的IP或域名的行到一个文件
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with open(output_file_name, 'w', encoding='utf-8') as output_file:
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for ip_or_domain, lines in filtered_ip_or_domain_to_lines.items():
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# 写入IP或域名及其对应的行到输出文件
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output_file.write(f"{ip_or_domain},#genre#\n")
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for line in lines:
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output_file.write(line + '\n')
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output_file.write('\n') # 在每个小段后添加一个空行作为分隔
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# 调用函数并传入文件路径和输出文件名
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parse_file('2.txt', '网络收集.txt')
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import cv2
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import time
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@@ -419,66 +357,137 @@ for ip_key, result in detected_ips.items():
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print(f"IP Key: {ip_key}, Status: {result['status']}")
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#########################################################################
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import cv2
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import time
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from tqdm import tqdm
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# 初始化字典来存储检测结果
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detected_ips = {}
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# 存储文件路径
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file_path = "网络收集.txt"
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output_file_path = "网络收集.txt"
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def get_ip_key(url):
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"""从URL中提取IP地址,并构造一个唯一的键"""
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start = url.find('://') + 3
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end = start
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while end < len(url) and url[end] != '/' and url[end] != '.':
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end += 1
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return url[start:end]
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# 打开输入文件和输出文件
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with open(file_path, 'r', encoding='utf-8') as file:
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lines = file.readlines()
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# 获取总行数用于进度条
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total_lines = len(lines)
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# 写入通过检测的行到新文件
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with open(output_file_path, 'w', encoding='utf-8') as output_file:
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# 使用tqdm显示进度条
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for i, line in tqdm(enumerate(lines), total=total_lines, desc="Processing", unit='line'):
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# 检查是否包含 'genre',如果包含则直接写入并继续
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if 'genre' in line:
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# 函数:获取视频分辨率
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def get_video_resolution(video_path, timeout=0.8):
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cap = cv2.VideoCapture(video_path)
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if not cap.isOpened():
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return None
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width = int(cap.get(cv2.CAP_PROP_FRAME_WIDTH))
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height = int(cap.get(cv2.CAP_PROP_FRAME_HEIGHT))
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cap.release()
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return (width, height)
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# 函数:处理每一行
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def process_line(line, output_file, order_list, valid_count, invalid_count, total_lines):
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parts = line.strip().split(',')
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if '#genre#' in line:
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# 如果行包含 '#genre#',直接写入新文件
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with threading.Lock():
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output_file.write(line)
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continue
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# 分割频道名称和URL,并去除空白字符
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parts = line.split(',', 1)
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if len(parts) == 2:
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channel_name, url = parts
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channel_name = channel_name.strip()
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url = url.strip()
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# 构造IP键
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ip_key = get_ip_key(url)
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try:
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# 设置超时时间为2秒
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cap = cv2.VideoCapture(url)
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cap.set(cv2.CAP_PROP_TIMEOUT, 2000) # 设置超时参数
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# 进行链接有效性检测
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ret, frame = cap.read()
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# 释放资源
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cap.release()
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# 写入检测结果到字典
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detected_ips[ip_key] = {'status': 'ok' if ret else 'fail'}
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# 如果链接有效,则写入到输出文件
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if ret:
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output_file.write(line)
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except cv2.error as e:
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# 捕获OpenCV的错误
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print(f"OpenCV error: {e}")
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detected_ips[ip_key] = {'status': 'fail'}
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except Exception as ex:
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# 捕获其他所有未预料到的异常
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print(f"An unexpected error occurred: {ex}")
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detected_ips[ip_key] = {'status': 'fail'}
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# 打印每个IP的检测结果
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for ip_key, result in detected_ips.items():
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print(f"IP Key: {ip_key}, Status: {result['status']}")
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print(f"已写入genre行:{line.strip()}")
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elif len(parts) == 2:
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channel_name, channel_url = parts
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resolution = get_video_resolution(channel_url, timeout=8)
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if resolution and resolution[1] >= 720: # 检查分辨率是否大于等于720p
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with threading.Lock():
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output_file.write(f"{channel_name}[{resolution[1]}p],{channel_url}\n")
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order_list.append((channel_name, resolution[1], channel_url))
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valid_count[0] += 1
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print(f"Channel '{channel_name}' accepted with resolution {resolution[1]}p at URL {channel_url}.")
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else:
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invalid_count[0] += 1
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with threading.Lock():
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print(f"有效: {valid_count[0]}, 无效: {invalid_count[0]}, 总数: {total_lines}, 进度: {(valid_count[0] + invalid_count[0]) / total_lines * 100:.2f}%")
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# 函数:多线程工作
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def worker(task_queue, output_file, order_list, valid_count, invalid_count, total_lines):
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while True:
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try:
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line = task_queue.get(timeout=1)
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process_line(line, output_file, order_list, valid_count, invalid_count, total_lines)
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except Queue.Empty:
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break
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finally:
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task_queue.task_done()
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# 主函数
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def main(source_file_path, output_file_path):
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order_list = []
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valid_count = [0]
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invalid_count = [0]
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task_queue = Queue()
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# 读取源文件
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with open(source_file_path, 'r', encoding='utf-8') as source_file:
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lines = source_file.readlines()
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with open(output_file_path + '.txt', 'w', encoding='utf-8') as output_file:
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# 创建线程池
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with ThreadPoolExecutor(max_workers=64) as executor:
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# 创建并启动工作线程
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for _ in range(64):
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executor.submit(worker, task_queue, output_file, order_list, valid_count, invalid_count, len(lines))
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# 将所有行放入队列
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for line in lines:
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task_queue.put(line)
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# 等待队列中的所有任务完成
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task_queue.join()
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print(f"任务完成,有效频道数:{valid_count[0]}, 无效频道数:{invalid_count[0]}, 总频道数:{len(lines)}")
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if __name__ == "__main__":
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source_file_path = '网络收集.txt' # 替换为你的源文件路径
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output_file_path = '网络收集' # 替换为你的输出文件路径,不要后缀名
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main(source_file_path, output_file_path)
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import re
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from pypinyin import lazy_pinyin
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# 打开一个utf-8编码的文本文件
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with open("网络收集.txt", "r", encoding="utf-8") as file:
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# 读取所有行并存储到列表中
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lines = file.readlines()
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# 定义一个函数,用于提取每行的第一个数字
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def extract_first_number(line):
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match = re.search(r'\d+', line)
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return int(match.group()) if match else float('inf')
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# 对列表中的行进行排序,按照第一个数字的大小排列,其余行按中文排序
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sorted_lines = sorted(lines, key=lambda x: (not 'CCTV' in x, extract_first_number(x) if 'CCTV' in x else lazy_pinyin(x.strip())))
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# 将排序后的行写入新的utf-8编码的文本文件
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with open("网络收集.txt", "w", encoding="utf-8") as file:
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for line in sorted_lines:
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file.write(line)
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import re
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def parse_file(input_file_path, output_file_name):
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# 正则表达式匹配从'//'开始到第一个'/'或第一个'::'结束的部分
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ip_or_domain_pattern = re.compile(r'//([^/:]*:[^/:]*::[^/:]*|[^/]*)')
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# 用于存储每个IP或域名及其对应的行列表
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ip_or_domain_to_lines = {}
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# 读取原始文件内容
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with open(input_file_path, 'r', encoding='utf-8') as file:
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for line in file:
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line = line.strip()
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# 如果行是分类标签行,则跳过
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if ",#genre#" in line:
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continue
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# 检查行是否包含IP或域名
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match = ip_or_domain_pattern.search(line)
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if match:
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# 提取匹配到的IP或域名
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matched_text = match.group(1)
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# 去除IP或域名后的剩余部分,只保留匹配到的IP或域名
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ip_or_domain = matched_text.split('://')[-1].split('/')[0].split('::')[0]
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# 将行添加到对应的IP或域名列表中
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if ip_or_domain not in ip_or_domain_to_lines:
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ip_or_domain_to_lines[ip_or_domain] = []
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ip_or_domain_to_lines[ip_or_domain].append(line)
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# 过滤掉小于5000字节的IP或域名段
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filtered_ip_or_domain_to_lines = {ip_or_domain: lines for ip_or_domain, lines in ip_or_domain_to_lines.items()
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if sum(len(line) for line in lines) >= 2000}
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# 如果没有满足条件的IP或域名段,则不生成文件
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if not filtered_ip_or_domain_to_lines:
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print("没有满足条件的IP或域名段,不生成文件。")
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return
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# 合并所有满足条件的IP或域名的行到一个文件
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with open(output_file_name, 'w', encoding='utf-8') as output_file:
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for ip_or_domain, lines in filtered_ip_or_domain_to_lines.items():
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# 写入IP或域名及其对应的行到输出文件
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output_file.write(f"{ip_or_domain},#genre#\n")
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for line in lines:
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output_file.write(line + '\n')
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output_file.write('\n') # 在每个小段后添加一个空行作为分隔
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# 调用函数并传入文件路径和输出文件名
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parse_file('网络收集.txt', '网络收集.txt')
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################################################################################################任务结束,删除不必要的过程文件
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files_to_remove = ["2.txt", "汇总.txt"]
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