1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * CBC: Cipher Block Chaining mode
8 #include <crypto/internal/skcipher.h>
10 #include <linux/init.h>
11 #include <linux/kernel.h>
12 #include <linux/log2.h>
13 #include <linux/module.h>
15 static int crypto_cbc_encrypt_segment(struct crypto_lskcipher *tfm,
16 const u8 *src, u8 *dst, unsigned nbytes,
19 unsigned int bsize = crypto_lskcipher_blocksize(tfm);
21 for (; nbytes >= bsize; src += bsize, dst += bsize, nbytes -= bsize) {
22 crypto_xor(iv, src, bsize);
23 crypto_lskcipher_encrypt(tfm, iv, dst, bsize, NULL);
24 memcpy(iv, dst, bsize);
30 static int crypto_cbc_encrypt_inplace(struct crypto_lskcipher *tfm,
31 u8 *src, unsigned nbytes, u8 *oiv)
33 unsigned int bsize = crypto_lskcipher_blocksize(tfm);
40 crypto_xor(src, iv, bsize);
41 crypto_lskcipher_encrypt(tfm, src, src, bsize, NULL);
45 } while ((nbytes -= bsize) >= bsize);
47 memcpy(oiv, iv, bsize);
53 static int crypto_cbc_encrypt(struct crypto_lskcipher *tfm, const u8 *src,
54 u8 *dst, unsigned len, u8 *iv, u32 flags)
56 struct crypto_lskcipher **ctx = crypto_lskcipher_ctx(tfm);
57 bool final = flags & CRYPTO_LSKCIPHER_FLAG_FINAL;
58 struct crypto_lskcipher *cipher = *ctx;
62 rem = crypto_cbc_encrypt_inplace(cipher, dst, len, iv);
64 rem = crypto_cbc_encrypt_segment(cipher, src, dst, len, iv);
66 return rem && final ? -EINVAL : rem;
69 static int crypto_cbc_decrypt_segment(struct crypto_lskcipher *tfm,
70 const u8 *src, u8 *dst, unsigned nbytes,
73 unsigned int bsize = crypto_lskcipher_blocksize(tfm);
80 crypto_lskcipher_decrypt(tfm, src, dst, bsize, NULL);
81 crypto_xor(dst, iv, bsize);
86 } while ((nbytes -= bsize) >= bsize);
88 memcpy(oiv, iv, bsize);
94 static int crypto_cbc_decrypt_inplace(struct crypto_lskcipher *tfm,
95 u8 *src, unsigned nbytes, u8 *iv)
97 unsigned int bsize = crypto_lskcipher_blocksize(tfm);
98 u8 last_iv[MAX_CIPHER_BLOCKSIZE];
103 /* Start of the last block. */
104 src += nbytes - (nbytes & (bsize - 1)) - bsize;
105 memcpy(last_iv, src, bsize);
108 crypto_lskcipher_decrypt(tfm, src, src, bsize, NULL);
109 if ((nbytes -= bsize) < bsize)
111 crypto_xor(src, src - bsize, bsize);
115 crypto_xor(src, iv, bsize);
116 memcpy(iv, last_iv, bsize);
122 static int crypto_cbc_decrypt(struct crypto_lskcipher *tfm, const u8 *src,
123 u8 *dst, unsigned len, u8 *iv, u32 flags)
125 struct crypto_lskcipher **ctx = crypto_lskcipher_ctx(tfm);
126 bool final = flags & CRYPTO_LSKCIPHER_FLAG_FINAL;
127 struct crypto_lskcipher *cipher = *ctx;
131 rem = crypto_cbc_decrypt_inplace(cipher, dst, len, iv);
133 rem = crypto_cbc_decrypt_segment(cipher, src, dst, len, iv);
135 return rem && final ? -EINVAL : rem;
138 static int crypto_cbc_create(struct crypto_template *tmpl, struct rtattr **tb)
140 struct lskcipher_instance *inst;
143 inst = lskcipher_alloc_instance_simple(tmpl, tb);
145 return PTR_ERR(inst);
148 if (!is_power_of_2(inst->alg.co.base.cra_blocksize))
151 if (inst->alg.co.statesize)
154 inst->alg.encrypt = crypto_cbc_encrypt;
155 inst->alg.decrypt = crypto_cbc_decrypt;
157 err = lskcipher_register_instance(tmpl, inst);
166 static struct crypto_template crypto_cbc_tmpl = {
168 .create = crypto_cbc_create,
169 .module = THIS_MODULE,
172 static int __init crypto_cbc_module_init(void)
174 return crypto_register_template(&crypto_cbc_tmpl);
177 static void __exit crypto_cbc_module_exit(void)
179 crypto_unregister_template(&crypto_cbc_tmpl);
182 subsys_initcall(crypto_cbc_module_init);
183 module_exit(crypto_cbc_module_exit);
185 MODULE_LICENSE("GPL");
186 MODULE_DESCRIPTION("CBC block cipher mode of operation");
187 MODULE_ALIAS_CRYPTO("cbc");