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Detailed introduction to making DingTalk encryption/decryption tool using Python

高洛峰
Release: 2017-03-23 16:59:29
Original
2102 people have browsed it

It’s been a long time since I wrote a technical blog. I have been studying knowledge recently and haven’t summarized anything worth sharing, so I have stopped writing until now. The recent work has been handed over to the development of DingTalk, and the official has not provided any Python SDK, so I can only write it all by myself. Now I will share the "encryption/decryption/signature" part that is relatively time-consuming to implement. I hope it can help some people. You can refer to the specific mechanism of encryption/decryption. Official document.
To install
this extension in your project, you can use:

To use it, you can refer to the following test code:

# -*- coding: utf-8 -*-
import json
from dingtalk_crypto import DingTalkCrypto
# 这个是钉钉官方给的测试数据
# @see https://open-doc.dingtalk.com/doc2/detail.htm?treeId=175&articleId=104945&docType=1#s14 encrypt_text = '1a3NBxmCFwkCJvfoQ7WhJHB+iX3qHPsc9JbaDznE1i03peOk1LaOQoRz3+nlyGNhwmwJ3vDMG' \
        '+OzrHMeiZI7gTRWVdUBmfxjZ8Ej23JVYa9VrYeJ5as7XM/ZpulX8NEQis44w53h1qAgnC3PRzM7Zc' \
        '/D6Ibr0rgUathB6zRHP8PYrfgnNOS9PhSBdHlegK+AGGanfwjXuQ9+0pZcy0w9lQ=='
crypto = DingTalkCrypto(
  '4g5j64qlyl3zvetqxz5jiocdr586fn2zvjpa8zls3ij',
  '123456',
  'suite4xxxxxxxxxxxxxxx'
)
signature = '5a65ceeef9aab2d149439f82dc191dd6c5cbe2c0'
timestamp = '1445827045067'
nonce = 'nEXhMP4r'
class TestCrypto:
  def test_decrypt(self):
    randstr, length, msg, suite_key = crypto.decrypt(encrypt_text)
    msg = json.loads(msg)
    assert msg['EventType'] == 'check_create_suite_url'
    assert msg['Random'] == 'LPIdSnlF'
    assert suite_key == 'suite4xxxxxxxxxxxxxxx'
  def test_encode(self):
    encrypt_msg = crypto.encrypt('hello world')
    randstr, length, msg, suite_key = crypto.decrypt(encrypt_msg)
    assert msg == 'hello world'
  def test_check_signature(self):
    assert crypto.check_signature(encrypt_text, timestamp, nonce, signature)
  def test_sign(self):
    msg = crypto.encrypt('hello world')
    actual_sig, actual_time, actual_nonce = crypto.sign(msg)
    assert True
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