~ [ source navigation ] ~ [ diff markup ] ~ [ identifier search ] ~

TOMOYO Linux Cross Reference
Linux/crypto/hmac.c

Version: ~ [ linux-6.11.5 ] ~ [ linux-6.10.14 ] ~ [ linux-6.9.12 ] ~ [ linux-6.8.12 ] ~ [ linux-6.7.12 ] ~ [ linux-6.6.58 ] ~ [ linux-6.5.13 ] ~ [ linux-6.4.16 ] ~ [ linux-6.3.13 ] ~ [ linux-6.2.16 ] ~ [ linux-6.1.114 ] ~ [ linux-6.0.19 ] ~ [ linux-5.19.17 ] ~ [ linux-5.18.19 ] ~ [ linux-5.17.15 ] ~ [ linux-5.16.20 ] ~ [ linux-5.15.169 ] ~ [ linux-5.14.21 ] ~ [ linux-5.13.19 ] ~ [ linux-5.12.19 ] ~ [ linux-5.11.22 ] ~ [ linux-5.10.228 ] ~ [ linux-5.9.16 ] ~ [ linux-5.8.18 ] ~ [ linux-5.7.19 ] ~ [ linux-5.6.19 ] ~ [ linux-5.5.19 ] ~ [ linux-5.4.284 ] ~ [ linux-5.3.18 ] ~ [ linux-5.2.21 ] ~ [ linux-5.1.21 ] ~ [ linux-5.0.21 ] ~ [ linux-4.20.17 ] ~ [ linux-4.19.322 ] ~ [ linux-4.18.20 ] ~ [ linux-4.17.19 ] ~ [ linux-4.16.18 ] ~ [ linux-4.15.18 ] ~ [ linux-4.14.336 ] ~ [ linux-4.13.16 ] ~ [ linux-4.12.14 ] ~ [ linux-4.11.12 ] ~ [ linux-4.10.17 ] ~ [ linux-4.9.337 ] ~ [ linux-4.4.302 ] ~ [ linux-3.10.108 ] ~ [ linux-2.6.32.71 ] ~ [ linux-2.6.0 ] ~ [ linux-2.4.37.11 ] ~ [ unix-v6-master ] ~ [ ccs-tools-1.8.9 ] ~ [ policy-sample ] ~
Architecture: ~ [ i386 ] ~ [ alpha ] ~ [ m68k ] ~ [ mips ] ~ [ ppc ] ~ [ sparc ] ~ [ sparc64 ] ~

Diff markup

Differences between /crypto/hmac.c (Version linux-6.11.5) and /crypto/hmac.c (Version linux-4.4.302)


  1 // SPDX-License-Identifier: GPL-2.0-or-later   << 
  2 /*                                                  1 /*
  3  * Cryptographic API.                               2  * Cryptographic API.
  4  *                                                  3  *
  5  * HMAC: Keyed-Hashing for Message Authenticat      4  * HMAC: Keyed-Hashing for Message Authentication (RFC2104).
  6  *                                                  5  *
  7  * Copyright (c) 2002 James Morris <jmorris@in      6  * Copyright (c) 2002 James Morris <jmorris@intercode.com.au>
  8  * Copyright (c) 2006 Herbert Xu <herbert@gond      7  * Copyright (c) 2006 Herbert Xu <herbert@gondor.apana.org.au>
  9  *                                                  8  *
 10  * The HMAC implementation is derived from USA      9  * The HMAC implementation is derived from USAGI.
 11  * Copyright (c) 2002 Kazunori Miyazawa <miyaz     10  * Copyright (c) 2002 Kazunori Miyazawa <miyazawa@linux-ipv6.org> / USAGI
                                                   >>  11  *
                                                   >>  12  * This program is free software; you can redistribute it and/or modify it
                                                   >>  13  * under the terms of the GNU General Public License as published by the Free
                                                   >>  14  * Software Foundation; either version 2 of the License, or (at your option)
                                                   >>  15  * any later version.
                                                   >>  16  *
 12  */                                                17  */
 13                                                    18 
 14 #include <crypto/hmac.h>                       << 
 15 #include <crypto/internal/hash.h>                  19 #include <crypto/internal/hash.h>
 16 #include <crypto/scatterwalk.h>                    20 #include <crypto/scatterwalk.h>
 17 #include <linux/err.h>                             21 #include <linux/err.h>
 18 #include <linux/fips.h>                        << 
 19 #include <linux/init.h>                            22 #include <linux/init.h>
 20 #include <linux/kernel.h>                          23 #include <linux/kernel.h>
 21 #include <linux/module.h>                          24 #include <linux/module.h>
 22 #include <linux/scatterlist.h>                     25 #include <linux/scatterlist.h>
 23 #include <linux/string.h>                          26 #include <linux/string.h>
 24                                                    27 
 25 struct hmac_ctx {                                  28 struct hmac_ctx {
 26         struct crypto_shash *hash;                 29         struct crypto_shash *hash;
 27         /* Contains 'u8 ipad[statesize];', the << 
 28         u8 pads[];                             << 
 29 };                                                 30 };
 30                                                    31 
                                                   >>  32 static inline void *align_ptr(void *p, unsigned int align)
                                                   >>  33 {
                                                   >>  34         return (void *)ALIGN((unsigned long)p, align);
                                                   >>  35 }
                                                   >>  36 
                                                   >>  37 static inline struct hmac_ctx *hmac_ctx(struct crypto_shash *tfm)
                                                   >>  38 {
                                                   >>  39         return align_ptr(crypto_shash_ctx_aligned(tfm) +
                                                   >>  40                          crypto_shash_statesize(tfm) * 2,
                                                   >>  41                          crypto_tfm_ctx_alignment());
                                                   >>  42 }
                                                   >>  43 
 31 static int hmac_setkey(struct crypto_shash *pa     44 static int hmac_setkey(struct crypto_shash *parent,
 32                        const u8 *inkey, unsign     45                        const u8 *inkey, unsigned int keylen)
 33 {                                                  46 {
 34         int bs = crypto_shash_blocksize(parent     47         int bs = crypto_shash_blocksize(parent);
 35         int ds = crypto_shash_digestsize(paren     48         int ds = crypto_shash_digestsize(parent);
 36         int ss = crypto_shash_statesize(parent     49         int ss = crypto_shash_statesize(parent);
 37         struct hmac_ctx *tctx = crypto_shash_c !!  50         char *ipad = crypto_shash_ctx_aligned(parent);
 38         struct crypto_shash *hash = tctx->hash !!  51         char *opad = ipad + ss;
 39         u8 *ipad = &tctx->pads[0];             !!  52         struct hmac_ctx *ctx = align_ptr(opad + ss,
 40         u8 *opad = &tctx->pads[ss];            !!  53                                          crypto_tfm_ctx_alignment());
                                                   >>  54         struct crypto_shash *hash = ctx->hash;
 41         SHASH_DESC_ON_STACK(shash, hash);          55         SHASH_DESC_ON_STACK(shash, hash);
 42         unsigned int i;                            56         unsigned int i;
 43                                                    57 
 44         if (fips_enabled && (keylen < 112 / 8) << 
 45                 return -EINVAL;                << 
 46                                                << 
 47         shash->tfm = hash;                         58         shash->tfm = hash;
                                                   >>  59         shash->flags = crypto_shash_get_flags(parent)
                                                   >>  60                 & CRYPTO_TFM_REQ_MAY_SLEEP;
 48                                                    61 
 49         if (keylen > bs) {                         62         if (keylen > bs) {
 50                 int err;                           63                 int err;
 51                                                    64 
 52                 err = crypto_shash_digest(shas     65                 err = crypto_shash_digest(shash, inkey, keylen, ipad);
 53                 if (err)                           66                 if (err)
 54                         return err;                67                         return err;
 55                                                    68 
 56                 keylen = ds;                       69                 keylen = ds;
 57         } else                                     70         } else
 58                 memcpy(ipad, inkey, keylen);       71                 memcpy(ipad, inkey, keylen);
 59                                                    72 
 60         memset(ipad + keylen, 0, bs - keylen);     73         memset(ipad + keylen, 0, bs - keylen);
 61         memcpy(opad, ipad, bs);                    74         memcpy(opad, ipad, bs);
 62                                                    75 
 63         for (i = 0; i < bs; i++) {                 76         for (i = 0; i < bs; i++) {
 64                 ipad[i] ^= HMAC_IPAD_VALUE;    !!  77                 ipad[i] ^= 0x36;
 65                 opad[i] ^= HMAC_OPAD_VALUE;    !!  78                 opad[i] ^= 0x5c;
 66         }                                          79         }
 67                                                    80 
 68         return crypto_shash_init(shash) ?:         81         return crypto_shash_init(shash) ?:
 69                crypto_shash_update(shash, ipad     82                crypto_shash_update(shash, ipad, bs) ?:
 70                crypto_shash_export(shash, ipad     83                crypto_shash_export(shash, ipad) ?:
 71                crypto_shash_init(shash) ?:         84                crypto_shash_init(shash) ?:
 72                crypto_shash_update(shash, opad     85                crypto_shash_update(shash, opad, bs) ?:
 73                crypto_shash_export(shash, opad     86                crypto_shash_export(shash, opad);
 74 }                                                  87 }
 75                                                    88 
 76 static int hmac_export(struct shash_desc *pdes     89 static int hmac_export(struct shash_desc *pdesc, void *out)
 77 {                                                  90 {
 78         struct shash_desc *desc = shash_desc_c     91         struct shash_desc *desc = shash_desc_ctx(pdesc);
 79                                                    92 
                                                   >>  93         desc->flags = pdesc->flags & CRYPTO_TFM_REQ_MAY_SLEEP;
                                                   >>  94 
 80         return crypto_shash_export(desc, out);     95         return crypto_shash_export(desc, out);
 81 }                                                  96 }
 82                                                    97 
 83 static int hmac_import(struct shash_desc *pdes     98 static int hmac_import(struct shash_desc *pdesc, const void *in)
 84 {                                                  99 {
 85         struct shash_desc *desc = shash_desc_c    100         struct shash_desc *desc = shash_desc_ctx(pdesc);
 86         const struct hmac_ctx *tctx = crypto_s !! 101         struct hmac_ctx *ctx = hmac_ctx(pdesc->tfm);
 87                                                   102 
 88         desc->tfm = tctx->hash;                !! 103         desc->tfm = ctx->hash;
                                                   >> 104         desc->flags = pdesc->flags & CRYPTO_TFM_REQ_MAY_SLEEP;
 89                                                   105 
 90         return crypto_shash_import(desc, in);     106         return crypto_shash_import(desc, in);
 91 }                                                 107 }
 92                                                   108 
 93 static int hmac_init(struct shash_desc *pdesc)    109 static int hmac_init(struct shash_desc *pdesc)
 94 {                                                 110 {
 95         const struct hmac_ctx *tctx = crypto_s !! 111         return hmac_import(pdesc, crypto_shash_ctx_aligned(pdesc->tfm));
 96                                                << 
 97         return hmac_import(pdesc, &tctx->pads[ << 
 98 }                                                 112 }
 99                                                   113 
100 static int hmac_update(struct shash_desc *pdes    114 static int hmac_update(struct shash_desc *pdesc,
101                        const u8 *data, unsigne    115                        const u8 *data, unsigned int nbytes)
102 {                                                 116 {
103         struct shash_desc *desc = shash_desc_c    117         struct shash_desc *desc = shash_desc_ctx(pdesc);
104                                                   118 
                                                   >> 119         desc->flags = pdesc->flags & CRYPTO_TFM_REQ_MAY_SLEEP;
                                                   >> 120 
105         return crypto_shash_update(desc, data,    121         return crypto_shash_update(desc, data, nbytes);
106 }                                                 122 }
107                                                   123 
108 static int hmac_final(struct shash_desc *pdesc    124 static int hmac_final(struct shash_desc *pdesc, u8 *out)
109 {                                                 125 {
110         struct crypto_shash *parent = pdesc->t    126         struct crypto_shash *parent = pdesc->tfm;
111         int ds = crypto_shash_digestsize(paren    127         int ds = crypto_shash_digestsize(parent);
112         int ss = crypto_shash_statesize(parent    128         int ss = crypto_shash_statesize(parent);
113         const struct hmac_ctx *tctx = crypto_s !! 129         char *opad = crypto_shash_ctx_aligned(parent) + ss;
114         const u8 *opad = &tctx->pads[ss];      << 
115         struct shash_desc *desc = shash_desc_c    130         struct shash_desc *desc = shash_desc_ctx(pdesc);
116                                                   131 
                                                   >> 132         desc->flags = pdesc->flags & CRYPTO_TFM_REQ_MAY_SLEEP;
                                                   >> 133 
117         return crypto_shash_final(desc, out) ?    134         return crypto_shash_final(desc, out) ?:
118                crypto_shash_import(desc, opad)    135                crypto_shash_import(desc, opad) ?:
119                crypto_shash_finup(desc, out, d    136                crypto_shash_finup(desc, out, ds, out);
120 }                                                 137 }
121                                                   138 
122 static int hmac_finup(struct shash_desc *pdesc    139 static int hmac_finup(struct shash_desc *pdesc, const u8 *data,
123                       unsigned int nbytes, u8     140                       unsigned int nbytes, u8 *out)
124 {                                                 141 {
125                                                   142 
126         struct crypto_shash *parent = pdesc->t    143         struct crypto_shash *parent = pdesc->tfm;
127         int ds = crypto_shash_digestsize(paren    144         int ds = crypto_shash_digestsize(parent);
128         int ss = crypto_shash_statesize(parent    145         int ss = crypto_shash_statesize(parent);
129         const struct hmac_ctx *tctx = crypto_s !! 146         char *opad = crypto_shash_ctx_aligned(parent) + ss;
130         const u8 *opad = &tctx->pads[ss];      << 
131         struct shash_desc *desc = shash_desc_c    147         struct shash_desc *desc = shash_desc_ctx(pdesc);
132                                                   148 
                                                   >> 149         desc->flags = pdesc->flags & CRYPTO_TFM_REQ_MAY_SLEEP;
                                                   >> 150 
133         return crypto_shash_finup(desc, data,     151         return crypto_shash_finup(desc, data, nbytes, out) ?:
134                crypto_shash_import(desc, opad)    152                crypto_shash_import(desc, opad) ?:
135                crypto_shash_finup(desc, out, d    153                crypto_shash_finup(desc, out, ds, out);
136 }                                                 154 }
137                                                   155 
138 static int hmac_init_tfm(struct crypto_shash * !! 156 static int hmac_init_tfm(struct crypto_tfm *tfm)
139 {                                                 157 {
                                                   >> 158         struct crypto_shash *parent = __crypto_shash_cast(tfm);
140         struct crypto_shash *hash;                159         struct crypto_shash *hash;
141         struct shash_instance *inst = shash_al !! 160         struct crypto_instance *inst = (void *)tfm->__crt_alg;
142         struct crypto_shash_spawn *spawn = sha !! 161         struct crypto_shash_spawn *spawn = crypto_instance_ctx(inst);
143         struct hmac_ctx *tctx = crypto_shash_c !! 162         struct hmac_ctx *ctx = hmac_ctx(parent);
144                                                   163 
145         hash = crypto_spawn_shash(spawn);         164         hash = crypto_spawn_shash(spawn);
146         if (IS_ERR(hash))                         165         if (IS_ERR(hash))
147                 return PTR_ERR(hash);             166                 return PTR_ERR(hash);
148                                                   167 
149         parent->descsize = sizeof(struct shash    168         parent->descsize = sizeof(struct shash_desc) +
150                            crypto_shash_descsi    169                            crypto_shash_descsize(hash);
151                                                   170 
152         tctx->hash = hash;                     !! 171         ctx->hash = hash;
153         return 0;                              << 
154 }                                              << 
155                                                << 
156 static int hmac_clone_tfm(struct crypto_shash  << 
157 {                                              << 
158         struct hmac_ctx *sctx = crypto_shash_c << 
159         struct hmac_ctx *dctx = crypto_shash_c << 
160         struct crypto_shash *hash;             << 
161                                                << 
162         hash = crypto_clone_shash(sctx->hash); << 
163         if (IS_ERR(hash))                      << 
164                 return PTR_ERR(hash);          << 
165                                                << 
166         dctx->hash = hash;                     << 
167         return 0;                                 172         return 0;
168 }                                                 173 }
169                                                   174 
170 static void hmac_exit_tfm(struct crypto_shash  !! 175 static void hmac_exit_tfm(struct crypto_tfm *tfm)
171 {                                                 176 {
172         struct hmac_ctx *tctx = crypto_shash_c !! 177         struct hmac_ctx *ctx = hmac_ctx(__crypto_shash_cast(tfm));
173                                                !! 178         crypto_free_shash(ctx->hash);
174         crypto_free_shash(tctx->hash);         << 
175 }                                                 179 }
176                                                   180 
177 static int hmac_create(struct crypto_template     181 static int hmac_create(struct crypto_template *tmpl, struct rtattr **tb)
178 {                                                 182 {
179         struct shash_instance *inst;              183         struct shash_instance *inst;
180         struct crypto_shash_spawn *spawn;      << 
181         struct crypto_alg *alg;                   184         struct crypto_alg *alg;
182         struct shash_alg *salg;                   185         struct shash_alg *salg;
183         u32 mask;                              << 
184         int err;                                  186         int err;
185         int ds;                                   187         int ds;
186         int ss;                                   188         int ss;
187                                                   189 
188         err = crypto_check_attr_type(tb, CRYPT !! 190         err = crypto_check_attr_type(tb, CRYPTO_ALG_TYPE_SHASH);
189         if (err)                                  191         if (err)
190                 return err;                       192                 return err;
191                                                   193 
192         inst = kzalloc(sizeof(*inst) + sizeof( !! 194         salg = shash_attr_alg(tb[1], 0, 0);
193         if (!inst)                             !! 195         if (IS_ERR(salg))
194                 return -ENOMEM;                !! 196                 return PTR_ERR(salg);
195         spawn = shash_instance_ctx(inst);      << 
196                                                << 
197         err = crypto_grab_shash(spawn, shash_c << 
198                                 crypto_attr_al << 
199         if (err)                               << 
200                 goto err_free_inst;            << 
201         salg = crypto_spawn_shash_alg(spawn);  << 
202         alg = &salg->base;                        197         alg = &salg->base;
203                                                   198 
204         /* The underlying hash algorithm must  !! 199         /* The underlying hash algorithm must be unkeyed */
205         err = -EINVAL;                            200         err = -EINVAL;
206         if (crypto_shash_alg_needs_key(salg))  !! 201         if (crypto_shash_alg_has_setkey(salg))
207                 goto err_free_inst;            !! 202                 goto out_put_alg;
208                                                   203 
209         ds = salg->digestsize;                    204         ds = salg->digestsize;
210         ss = salg->statesize;                     205         ss = salg->statesize;
211         if (ds > alg->cra_blocksize ||            206         if (ds > alg->cra_blocksize ||
212             ss < alg->cra_blocksize)              207             ss < alg->cra_blocksize)
213                 goto err_free_inst;            !! 208                 goto out_put_alg;
214                                                   209 
215         err = crypto_inst_setname(shash_crypto !! 210         inst = shash_alloc_instance("hmac", alg);
                                                   >> 211         err = PTR_ERR(inst);
                                                   >> 212         if (IS_ERR(inst))
                                                   >> 213                 goto out_put_alg;
                                                   >> 214 
                                                   >> 215         err = crypto_init_shash_spawn(shash_instance_ctx(inst), salg,
                                                   >> 216                                       shash_crypto_instance(inst));
216         if (err)                                  217         if (err)
217                 goto err_free_inst;            !! 218                 goto out_free_inst;
218                                                   219 
219         inst->alg.base.cra_priority = alg->cra    220         inst->alg.base.cra_priority = alg->cra_priority;
220         inst->alg.base.cra_blocksize = alg->cr    221         inst->alg.base.cra_blocksize = alg->cra_blocksize;
221         inst->alg.base.cra_ctxsize = sizeof(st !! 222         inst->alg.base.cra_alignmask = alg->cra_alignmask;
222                                                   223 
                                                   >> 224         ss = ALIGN(ss, alg->cra_alignmask + 1);
223         inst->alg.digestsize = ds;                225         inst->alg.digestsize = ds;
224         inst->alg.statesize = ss;                 226         inst->alg.statesize = ss;
                                                   >> 227 
                                                   >> 228         inst->alg.base.cra_ctxsize = sizeof(struct hmac_ctx) +
                                                   >> 229                                      ALIGN(ss * 2, crypto_tfm_ctx_alignment());
                                                   >> 230 
                                                   >> 231         inst->alg.base.cra_init = hmac_init_tfm;
                                                   >> 232         inst->alg.base.cra_exit = hmac_exit_tfm;
                                                   >> 233 
225         inst->alg.init = hmac_init;               234         inst->alg.init = hmac_init;
226         inst->alg.update = hmac_update;           235         inst->alg.update = hmac_update;
227         inst->alg.final = hmac_final;             236         inst->alg.final = hmac_final;
228         inst->alg.finup = hmac_finup;             237         inst->alg.finup = hmac_finup;
229         inst->alg.export = hmac_export;           238         inst->alg.export = hmac_export;
230         inst->alg.import = hmac_import;           239         inst->alg.import = hmac_import;
231         inst->alg.setkey = hmac_setkey;           240         inst->alg.setkey = hmac_setkey;
232         inst->alg.init_tfm = hmac_init_tfm;    << 
233         inst->alg.clone_tfm = hmac_clone_tfm;  << 
234         inst->alg.exit_tfm = hmac_exit_tfm;    << 
235                                                << 
236         inst->free = shash_free_singlespawn_in << 
237                                                   241 
238         err = shash_register_instance(tmpl, in    242         err = shash_register_instance(tmpl, inst);
239         if (err) {                                243         if (err) {
240 err_free_inst:                                 !! 244 out_free_inst:
241                 shash_free_singlespawn_instanc !! 245                 shash_free_instance(shash_crypto_instance(inst));
242         }                                         246         }
                                                   >> 247 
                                                   >> 248 out_put_alg:
                                                   >> 249         crypto_mod_put(alg);
243         return err;                               250         return err;
244 }                                                 251 }
245                                                   252 
246 static struct crypto_template hmac_tmpl = {       253 static struct crypto_template hmac_tmpl = {
247         .name = "hmac",                           254         .name = "hmac",
248         .create = hmac_create,                    255         .create = hmac_create,
                                                   >> 256         .free = shash_free_instance,
249         .module = THIS_MODULE,                    257         .module = THIS_MODULE,
250 };                                                258 };
251                                                   259 
252 static int __init hmac_module_init(void)          260 static int __init hmac_module_init(void)
253 {                                                 261 {
254         return crypto_register_template(&hmac_    262         return crypto_register_template(&hmac_tmpl);
255 }                                                 263 }
256                                                   264 
257 static void __exit hmac_module_exit(void)         265 static void __exit hmac_module_exit(void)
258 {                                                 266 {
259         crypto_unregister_template(&hmac_tmpl)    267         crypto_unregister_template(&hmac_tmpl);
260 }                                                 268 }
261                                                   269 
262 subsys_initcall(hmac_module_init);             !! 270 module_init(hmac_module_init);
263 module_exit(hmac_module_exit);                    271 module_exit(hmac_module_exit);
264                                                   272 
265 MODULE_LICENSE("GPL");                            273 MODULE_LICENSE("GPL");
266 MODULE_DESCRIPTION("HMAC hash algorithm");        274 MODULE_DESCRIPTION("HMAC hash algorithm");
267 MODULE_ALIAS_CRYPTO("hmac");                      275 MODULE_ALIAS_CRYPTO("hmac");
268                                                   276 

~ [ source navigation ] ~ [ diff markup ] ~ [ identifier search ] ~

kernel.org | git.kernel.org | LWN.net | Project Home | SVN repository | Mail admin

Linux® is a registered trademark of Linus Torvalds in the United States and other countries.
TOMOYO® is a registered trademark of NTT DATA CORPORATION.

sflogo.php