Files
ZFScoresCheck/main.py
T
2024-01-30 23:51:00 +08:00

156 lines
4.8 KiB
Python

import base64
import hashlib
import os
import sys
from pprint import pprint
from zfn_api import Client
from pushplus import send_message
# 从环境变量获取教务系统的URL、用户名和密码
url = os.environ.get("URL")
username = os.environ.get("USERNAME")
password = os.environ.get("PASSWORD")
token = os.environ.get("TOKEN")
# 定义一个md5加密的封装函数
def md5_encrypt(string):
byte_string = string.encode()
md5_object = hashlib.md5(byte_string)
return md5_object.hexdigest()
# 初始化相关变量
cookies = {}
base_url = url
raspisanie = []
ignore_type = []
detail_category_type = []
timeout = 5
# 创建教务系统客户端对象
stu = Client(
cookies=cookies,
base_url=base_url,
raspisanie=raspisanie,
ignore_type=ignore_type,
detail_category_type=detail_category_type,
timeout=timeout,
)
# 如果cookies为空字典,则进行登录
if not cookies:
login_result = stu.login(username, password)
if login_result["code"] == 1001:
# 如果需要验证码,获取验证码并进行登录
verify_data = login_result["data"]
with open(os.path.abspath("kaptcha.png"), "wb") as pic:
pic.write(base64.b64decode(verify_data.pop("kaptcha_pic")))
verify_data["kaptcha"] = input("输入验证码:")
login_result = stu.login_with_kaptcha(**verify_data)
if login_result["code"] != 1000:
pprint(login_result)
sys.exit()
pprint(login_result)
elif login_result["code"] != 1000:
pprint(login_result)
sys.exit()
# 获取个人信息
info = stu.get_info()["data"]
# 整合个人信息
integrate_info = (
f"个人信息:\n" f"学号:{info['sid']}\n" f"班级:{info['class_name']}\n" f"姓名:{info['name']}"
)
# 定义firstrun.txt文件变量
firstrun_file_path = "firstrun.txt"
# 如果firstrun.txt文件不存在,创建并写入true
if not os.path.exists(firstrun_file_path):
with open(firstrun_file_path, "w") as firstrun_file:
firstrun_file.write("true")
# 第一次运行则运行两遍,否则运行一遍
run_count = 2 if open(firstrun_file_path).read() == "true" else 1
for _ in range(run_count):
# 如果grade.txt文件不存在,创建文件
if not os.path.exists("grade.txt"):
open("grade.txt", "w").close()
# 清空old_grade.txt文件内容
with open("old_grade.txt", "w") as old_grade_file:
old_grade_file.truncate()
# 将grade.txt文件中的内容写入到old_grade.txt文件内。
with open("grade.txt", "r") as grade_file, open(
"old_grade.txt", "w"
) as old_grade_file:
old_grade_file.write(grade_file.read())
# 清空grade.txt文件内容
with open("grade.txt", "w") as grade_file:
grade_file.truncate()
# 获取成绩信息
grade = stu.get_grade("")["data"]["courses"]
# 按照提交时间降序排序
sorted_grade = sorted(grade, key=lambda x: x["submission_time"], reverse=True)
# 初始化输出成绩信息字符串
integrated_grade_info = "成绩信息:"
# 遍历前8条按时间降序排序后的成绩列表
for i, course in enumerate(sorted_grade[:8]):
# 整合成绩信息
integrated_grade_info += (
f"\n课程ID: {course['course_id']}\n"
f"课程名称: {course['title']}\n"
f"任课教师: {course['teacher']}\n"
f"成绩: {course['grade']}\n"
f"提交时间: {course['submission_time']}\n"
f"提交人姓名: {course['name_of_submitter']}\n"
f"------"
)
# 加密保存成绩
encrypt_integrated_grade_info = md5_encrypt(integrated_grade_info)
# 将加密后的成绩信息写入grade.txt文件
with open("grade.txt", "w") as grade_file:
grade_file.write(encrypt_integrated_grade_info)
# 对grade.txt和old_grade.txt两个文件的内容进行比对
with open("grade.txt", "r") as grade_file, open("old_grade.txt", "r") as old_grade_file:
# 读取grade.txt和old_grade.txt文件的内容
grade_content = grade_file.read()
old_grade_content = old_grade_file.read()
# 输出成绩信息
print(f"新成绩:{encrypt_integrated_grade_info}")
print(f"旧成绩:{old_grade_content}")
print("------")
# 整合所有信息
integrate_send_info = f"{integrate_info}\n------\n{integrated_grade_info}"
# 输出成绩是否更新
if grade_content == old_grade_content:
print("成绩未更新")
else:
print("成绩已更新")
response_text = send_message("教务成绩已更新", integrate_send_info)
print(response_text)
# 更新firstrun.txt文件内容为false
if open(firstrun_file_path).read() == "true":
with open(firstrun_file_path, "w") as firstrun_file:
# 将firstrun.txt文件内容更新为false
firstrun_file.write("false")