1use cipher::{
2 AlgorithmName, Block, BlockCipherDecrypt, BlockCipherEncBackend, BlockCipherEncClosure,
3 BlockCipherEncrypt, BlockModeEncBackend, BlockModeEncClosure, BlockModeEncrypt, BlockSizeUser,
4 InnerIvInit, Iv, IvSizeUser, IvState, ParBlocksSizeUser,
5 array::{Array, ArraySize},
6 common::InnerUser,
7 consts::U1,
8 inout::{InOut, InOutBuf, NotEqualError},
9};
10use core::fmt;
11
12#[cfg(feature = "zeroize")]
13use cipher::zeroize::{Zeroize, ZeroizeOnDrop};
14
15mod buf;
16pub use buf::BufEncryptor;
17
18pub struct Encryptor<C>
20where
21 C: BlockCipherEncrypt,
22{
23 cipher: C,
24 iv: Block<C>,
25}
26
27impl<C> BlockSizeUser for Encryptor<C>
28where
29 C: BlockCipherEncrypt,
30{
31 type BlockSize = C::BlockSize;
32}
33
34impl<C> BlockModeEncrypt for Encryptor<C>
35where
36 C: BlockCipherEncrypt,
37{
38 fn encrypt_with_backend(&mut self, f: impl BlockModeEncClosure<BlockSize = Self::BlockSize>) {
39 struct Closure<'a, BS, BC>
42 where
43 BS: ArraySize,
44 BC: BlockModeEncClosure<BlockSize = BS>,
45 {
46 iv: &'a mut Array<u8, BS>,
47 f: BC,
48 }
49
50 impl<BS, BC> BlockSizeUser for Closure<'_, BS, BC>
51 where
52 BS: ArraySize,
53 BC: BlockModeEncClosure<BlockSize = BS>,
54 {
55 type BlockSize = BS;
56 }
57
58 impl<BS, BC> BlockCipherEncClosure for Closure<'_, BS, BC>
59 where
60 BS: ArraySize,
61 BC: BlockModeEncClosure<BlockSize = BS>,
62 {
63 #[inline(always)]
64 fn call<B: BlockCipherEncBackend<BlockSize = Self::BlockSize>>(
65 self,
66 cipher_backend: &B,
67 ) {
68 let Self { iv, f } = self;
69 f.call(&mut CbcEncryptBackend { iv, cipher_backend });
70 }
71 }
72
73 let Self { cipher, iv } = self;
74 cipher.encrypt_with_backend(Closure { iv, f });
75 }
76}
77
78impl<C> Encryptor<C>
79where
80 C: BlockCipherEncrypt,
81{
82 pub fn encrypt_inout(mut self, data: InOutBuf<'_, '_, u8>) {
84 let (blocks, mut tail) = data.into_chunks();
85 self.encrypt_blocks_inout(blocks);
86 let n = tail.len();
87 if n != 0 {
88 let mut block = Block::<Self>::default();
89 block[..n].copy_from_slice(tail.get_in());
90 self.encrypt_block(&mut block);
91 tail.get_out().copy_from_slice(&block[..n]);
92 }
93 }
94
95 pub fn encrypt(self, buf: &mut [u8]) {
97 self.encrypt_inout(buf.into());
98 }
99
100 pub fn encrypt_b2b(self, in_buf: &[u8], out_buf: &mut [u8]) -> Result<(), NotEqualError> {
105 InOutBuf::new(in_buf, out_buf).map(|b| self.encrypt_inout(b))
106 }
107}
108
109impl<C> InnerUser for Encryptor<C>
110where
111 C: BlockCipherEncrypt,
112{
113 type Inner = C;
114}
115
116impl<C> IvSizeUser for Encryptor<C>
117where
118 C: BlockCipherEncrypt,
119{
120 type IvSize = C::BlockSize;
121}
122
123impl<C> InnerIvInit for Encryptor<C>
124where
125 C: BlockCipherEncrypt,
126{
127 #[inline]
128 fn inner_iv_init(cipher: C, iv: &Iv<Self>) -> Self {
129 let mut iv = iv.clone();
130 cipher.encrypt_block(&mut iv);
131 Self { cipher, iv }
132 }
133}
134
135impl<C> IvState for Encryptor<C>
136where
137 C: BlockCipherEncrypt + BlockCipherDecrypt,
138{
139 #[inline]
140 fn iv_state(&self) -> Iv<Self> {
141 let mut res = self.iv.clone();
142 self.cipher.decrypt_block(&mut res);
143 res
144 }
145}
146
147impl<C> AlgorithmName for Encryptor<C>
148where
149 C: BlockCipherEncrypt + AlgorithmName,
150{
151 fn write_alg_name(f: &mut fmt::Formatter<'_>) -> fmt::Result {
152 f.write_str("cfb::Encryptor<")?;
153 <C as AlgorithmName>::write_alg_name(f)?;
154 f.write_str(">")
155 }
156}
157
158impl<C> fmt::Debug for Encryptor<C>
159where
160 C: BlockCipherEncrypt + AlgorithmName,
161{
162 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
163 f.write_str("cfb::Encryptor<")?;
164 <C as AlgorithmName>::write_alg_name(f)?;
165 f.write_str("> { ... }")
166 }
167}
168
169impl<C: BlockCipherEncrypt> Drop for Encryptor<C> {
170 fn drop(&mut self) {
171 #[cfg(feature = "zeroize")]
172 self.iv.zeroize();
173 }
174}
175
176#[cfg(feature = "zeroize")]
177impl<C: BlockCipherEncrypt + ZeroizeOnDrop> ZeroizeOnDrop for Encryptor<C> {}
178
179struct CbcEncryptBackend<'a, BS, BK>
180where
181 BS: ArraySize,
182 BK: BlockCipherEncBackend<BlockSize = BS>,
183{
184 iv: &'a mut Array<u8, BS>,
185 cipher_backend: &'a BK,
186}
187
188impl<BS, BK> BlockSizeUser for CbcEncryptBackend<'_, BS, BK>
189where
190 BS: ArraySize,
191 BK: BlockCipherEncBackend<BlockSize = BS>,
192{
193 type BlockSize = BS;
194}
195
196impl<BS, BK> ParBlocksSizeUser for CbcEncryptBackend<'_, BS, BK>
197where
198 BS: ArraySize,
199 BK: BlockCipherEncBackend<BlockSize = BS>,
200{
201 type ParBlocksSize = U1;
202}
203
204impl<BS, BK> BlockModeEncBackend for CbcEncryptBackend<'_, BS, BK>
205where
206 BS: ArraySize,
207 BK: BlockCipherEncBackend<BlockSize = BS>,
208{
209 #[inline(always)]
210 fn encrypt_block(&mut self, mut block: InOut<'_, '_, Block<Self>>) {
211 block.xor_in2out(self.iv);
212 let mut t = block.get_out().clone();
213 self.cipher_backend.encrypt_block((&mut t).into());
214 *self.iv = t;
215 }
216}
217
218#[inline(always)]
219fn xor_set1(buf1: &mut [u8], buf2: &mut [u8]) {
220 for (a, b) in buf1.iter_mut().zip(buf2) {
221 let t = *a ^ *b;
222 *a = t;
223 *b = t;
224 }
225}