AES加解密
AES 只是个基本算法,实现 AES 有几种模式,主要有 ECB、CBC、CFB 和 OFB CTR,直接上代码,此处为AES加密中的CBC模式,EBC模式与CBC模式相比,不需要iv。
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
|
import base64from Crypto.Cipher import AES
from binascii import b2a_hex, a2b_hex
unpad = lambda s: s[: - ord (s[ len (s) - 1 :])]
class AES3:
def __init__( self , key):
self .key = key
self .mode = AES.MODE_CBC
self .iv = self .key
def _pad( self , text):
key_len = len ( self .key)
pad = text + (key_len - len (text) % key_len) * chr (key_len - len (text) % key_len)
return pad
def _unpad( self , text):
pad = ord (text[ - 1 :])
return text[ 0 : - pad]
# 加密函数
def encrypt( self , text):
length = 16
count = len (text)
if count % length ! = 0 :
add = length - (count % length)
else :
add = 0
text = text + ( '\0' * add)
cryptor = AES.new( self .key.encode( "utf8" ), self .mode, self .iv.encode( "utf8" ))
self .ciphertext = cryptor.encrypt(bytes(text, encoding = "utf8" ))
# AES加密时候得到的字符串不一定是ascii字符集的,输出到终端或者保存时候可能存在问题,使用base64编码
return base64.b64encode(b2a_hex( self .ciphertext)).decode( 'utf-8' )
# 解密函数
def decrypt( self , text):
decode = base64.b64decode(text)
cryptor = AES.new( self .key.encode( "utf8" ), self .mode, self .iv.encode( "utf8" ))
plain_text = unpad(cryptor.decrypt(decode))
return a2b_hex(plain_text) .decode( 'utf8' )
|
RSA公钥加密,私钥解密
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
|
from Crypto.PublicKey import RSA
from Crypto.Cipher import PKCS1_v1_5 as Cipher_pkcs1_v1_5
from Crypto.Signature import PKCS1_v1_5 as Signature_pkcs1_v1_5
import base64
# 私钥
private_key = '''-----BEGIN RSA PRIVATE KEY-----
5353dfggd
-----END RSA PRIVATE KEY-----
'''
# 公钥
public_key = '''-----BEGIN PUBLIC KEY-----
hfgghftetet
-----END PUBLIC KEY-----'''
def rsa_encrypt(message):
"""校验RSA加密 使用公钥进行加密"""
cipher = Cipher_pkcs1_v1_5.new(RSA.importKey(public_key))
cipher_text = base64.b64encode(cipher.encrypt(message.encode())).decode()
return cipher_text
def rsa_decrypt(text):
"""校验RSA加密 使用私钥进行解密"""
cipher = Cipher_pkcs1_v1_5.new(RSA.importKey(private_key))
retval = cipher.decrypt(base64.b64decode(text), 'ERROR' ).decode( 'utf-8' )
return retval
|
DES加解密
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
|
from pyDes import *
import base64
class Des3( object ):
def __init__( self , key, iv):
# 这里密钥key长度必须为16/24, ,偏移量ivs
self .key = key
self .mode = CBC
self .iv = iv
# 加密函数,如果text不是16的倍数【加密文本text必须为16的倍数!】,那就补足为16的倍数
def encrypt( self , text):
des3 = triple_des( self .key, self .mode, self .iv, pad = None , padmode = PAD_PKCS5)
data = des3.encrypt(text)
data = base64.b64encode(data)
return data.decode( 'utf-8' )
# 解密后,去掉补足的空格用strip() 去掉
def decrypt( self , data):
des3 = triple_des( self .key, self .mode, self .iv, pad = None , padmode = PAD_PKCS5)
data = base64.b64decode(data)
text = des3.decrypt(data)
return text.decode( 'hex' )
|
以上就是python des,aes,rsa加解密的实现的详细内容,更多关于python des,aes,rsa加解密的资料请关注服务器之家其它相关文章!
原文链接:https://www.cnblogs.com/mian-1122/category/1672359.html