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1 /*
2 * Cryptographic API for algorithms (i.e., low-level API).
3 *
4 * Copyright (c) 2006 Herbert Xu <herbert@gondor.apana.org.au>
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the Free
8 * Software Foundation; either version 2 of the License, or (at your option)
9 * any later version.
10 *
11 */
12 #ifndef _CRYPTO_ALGAPI_H
13 #define _CRYPTO_ALGAPI_H
14
15 #include <linux/crypto.h>
16 #include <linux/list.h>
17 #include <linux/kernel.h>
18
19 struct module;
20 struct rtattr;
21 struct seq_file;
22
23 struct crypto_type {
24 unsigned int (*ctxsize)(struct crypto_alg *alg, u32 type, u32 mask);
25 unsigned int (*extsize)(struct crypto_alg *alg,
26 const struct crypto_type *frontend);
27 int (*init)(struct crypto_tfm *tfm, u32 type, u32 mask);
28 int (*init_tfm)(struct crypto_tfm *tfm,
29 const struct crypto_type *frontend);
30 void (*show)(struct seq_file *m, struct crypto_alg *alg);
31 struct crypto_alg *(*lookup)(const char *name, u32 type, u32 mask);
32
33 unsigned int type;
34 unsigned int maskclear;
35 unsigned int maskset;
36 unsigned int tfmsize;
37 };
38
39 struct crypto_instance {
40 struct crypto_alg alg;
41
42 struct crypto_template *tmpl;
43 struct hlist_node list;
44
45 void *__ctx[] CRYPTO_MINALIGN_ATTR;
46 };
47
48 struct crypto_template {
49 struct list_head list;
50 struct hlist_head instances;
51 struct module *module;
52
53 struct crypto_instance *(*alloc)(struct rtattr **tb);
54 void (*free)(struct crypto_instance *inst);
55 int (*create)(struct crypto_template *tmpl, struct rtattr **tb);
56
57 char name[CRYPTO_MAX_ALG_NAME];
58 };
59
60 struct crypto_spawn {
61 struct list_head list;
62 struct crypto_alg *alg;
63 struct crypto_instance *inst;
64 const struct crypto_type *frontend;
65 u32 mask;
66 };
67
68 struct crypto_queue {
69 struct list_head list;
70 struct list_head *backlog;
71
72 unsigned int qlen;
73 unsigned int max_qlen;
74 };
75
76 struct scatter_walk {
77 struct scatterlist *sg;
78 unsigned int offset;
79 };
80
81 struct blkcipher_walk {
82 union {
83 struct {
84 struct page *page;
85 unsigned long offset;
86 } phys;
87
88 struct {
89 u8 *page;
90 u8 *addr;
91 } virt;
92 } src, dst;
93
94 struct scatter_walk in;
95 unsigned int nbytes;
96
97 struct scatter_walk out;
98 unsigned int total;
99
100 void *page;
101 u8 *buffer;
102 u8 *iv;
103
104 int flags;
105 unsigned int blocksize;
106 };
107
108 extern const struct crypto_type crypto_ablkcipher_type;
109 extern const struct crypto_type crypto_aead_type;
110 extern const struct crypto_type crypto_blkcipher_type;
111 extern const struct crypto_type crypto_hash_type;
112
113 void crypto_mod_put(struct crypto_alg *alg);
114
115 int crypto_register_template(struct crypto_template *tmpl);
116 void crypto_unregister_template(struct crypto_template *tmpl);
117 struct crypto_template *crypto_lookup_template(const char *name);
118
119 int crypto_init_spawn(struct crypto_spawn *spawn, struct crypto_alg *alg,
120 struct crypto_instance *inst, u32 mask);
121 int crypto_init_spawn2(struct crypto_spawn *spawn, struct crypto_alg *alg,
122 struct crypto_instance *inst,
123 const struct crypto_type *frontend);
124
125 void crypto_drop_spawn(struct crypto_spawn *spawn);
126 struct crypto_tfm *crypto_spawn_tfm(struct crypto_spawn *spawn, u32 type,
127 u32 mask);
128 void *crypto_spawn_tfm2(struct crypto_spawn *spawn);
129
130 static inline void crypto_set_spawn(struct crypto_spawn *spawn,
131 struct crypto_instance *inst)
132 {
133 spawn->inst = inst;
134 }
135
136 struct crypto_attr_type *crypto_get_attr_type(struct rtattr **tb);
137 int crypto_check_attr_type(struct rtattr **tb, u32 type);
138 const char *crypto_attr_alg_name(struct rtattr *rta);
139 struct crypto_alg *crypto_attr_alg(struct rtattr *rta, u32 type, u32 mask);
140 int crypto_attr_u32(struct rtattr *rta, u32 *num);
141 void *crypto_alloc_instance2(const char *name, struct crypto_alg *alg,
142 unsigned int head);
143 struct crypto_instance *crypto_alloc_instance(const char *name,
144 struct crypto_alg *alg);
145
146 void crypto_init_queue(struct crypto_queue *queue, unsigned int max_qlen);
147 int crypto_enqueue_request(struct crypto_queue *queue,
148 struct crypto_async_request *request);
149 struct crypto_async_request *crypto_dequeue_request(struct crypto_queue *queue);
150 int crypto_tfm_in_queue(struct crypto_queue *queue, struct crypto_tfm *tfm);
151
152 /* These functions require the input/output to be aligned as u32. */
153 void crypto_inc(u8 *a, unsigned int size);
154 void crypto_xor(u8 *dst, const u8 *src, unsigned int size);
155
156 int blkcipher_walk_done(struct blkcipher_desc *desc,
157 struct blkcipher_walk *walk, int err);
158 int blkcipher_walk_virt(struct blkcipher_desc *desc,
159 struct blkcipher_walk *walk);
160 int blkcipher_walk_phys(struct blkcipher_desc *desc,
161 struct blkcipher_walk *walk);
162 int blkcipher_walk_virt_block(struct blkcipher_desc *desc,
163 struct blkcipher_walk *walk,
164 unsigned int blocksize);
165
166 static inline void *crypto_tfm_ctx_aligned(struct crypto_tfm *tfm)
167 {
168 unsigned long addr = (unsigned long)crypto_tfm_ctx(tfm);
169 unsigned long align = crypto_tfm_alg_alignmask(tfm);
170
171 if (align <= crypto_tfm_ctx_alignment())
172 align = 1;
173 return (void *)ALIGN(addr, align);
174 }
175
176 static inline struct crypto_instance *crypto_tfm_alg_instance(
177 struct crypto_tfm *tfm)
178 {
179 return container_of(tfm->__crt_alg, struct crypto_instance, alg);
180 }
181
182 static inline void *crypto_instance_ctx(struct crypto_instance *inst)
183 {
184 return inst->__ctx;
185 }
186
187 static inline struct ablkcipher_alg *crypto_ablkcipher_alg(
188 struct crypto_ablkcipher *tfm)
189 {
190 return &crypto_ablkcipher_tfm(tfm)->__crt_alg->cra_ablkcipher;
191 }
192
193 static inline void *crypto_ablkcipher_ctx(struct crypto_ablkcipher *tfm)
194 {
195 return crypto_tfm_ctx(&tfm->base);
196 }
197
198 static inline void *crypto_ablkcipher_ctx_aligned(struct crypto_ablkcipher *tfm)
199 {
200 return crypto_tfm_ctx_aligned(&tfm->base);
201 }
202
203 static inline struct aead_alg *crypto_aead_alg(struct crypto_aead *tfm)
204 {
205 return &crypto_aead_tfm(tfm)->__crt_alg->cra_aead;
206 }
207
208 static inline void *crypto_aead_ctx(struct crypto_aead *tfm)
209 {
210 return crypto_tfm_ctx(&tfm->base);
211 }
212
213 static inline struct crypto_instance *crypto_aead_alg_instance(
214 struct crypto_aead *aead)
215 {
216 return crypto_tfm_alg_instance(&aead->base);
217 }
218
219 static inline struct crypto_blkcipher *crypto_spawn_blkcipher(
220 struct crypto_spawn *spawn)
221 {
222 u32 type = CRYPTO_ALG_TYPE_BLKCIPHER;
223 u32 mask = CRYPTO_ALG_TYPE_MASK;
224
225 return __crypto_blkcipher_cast(crypto_spawn_tfm(spawn, type, mask));
226 }
227
228 static inline void *crypto_blkcipher_ctx(struct crypto_blkcipher *tfm)
229 {
230 return crypto_tfm_ctx(&tfm->base);
231 }
232
233 static inline void *crypto_blkcipher_ctx_aligned(struct crypto_blkcipher *tfm)
234 {
235 return crypto_tfm_ctx_aligned(&tfm->base);
236 }
237
238 static inline struct crypto_cipher *crypto_spawn_cipher(
239 struct crypto_spawn *spawn)
240 {
241 u32 type = CRYPTO_ALG_TYPE_CIPHER;
242 u32 mask = CRYPTO_ALG_TYPE_MASK;
243
244 return __crypto_cipher_cast(crypto_spawn_tfm(spawn, type, mask));
245 }
246
247 static inline struct cipher_alg *crypto_cipher_alg(struct crypto_cipher *tfm)
248 {
249 return &crypto_cipher_tfm(tfm)->__crt_alg->cra_cipher;
250 }
251
252 static inline struct crypto_hash *crypto_spawn_hash(struct crypto_spawn *spawn)
253 {
254 u32 type = CRYPTO_ALG_TYPE_HASH;
255 u32 mask = CRYPTO_ALG_TYPE_HASH_MASK;
256
257 return __crypto_hash_cast(crypto_spawn_tfm(spawn, type, mask));
258 }
259
260 static inline void *crypto_hash_ctx(struct crypto_hash *tfm)
261 {
262 return crypto_tfm_ctx(&tfm->base);
263 }
264
265 static inline void *crypto_hash_ctx_aligned(struct crypto_hash *tfm)
266 {
267 return crypto_tfm_ctx_aligned(&tfm->base);
268 }
269
270 static inline void blkcipher_walk_init(struct blkcipher_walk *walk,
271 struct scatterlist *dst,
272 struct scatterlist *src,
273 unsigned int nbytes)
274 {
275 walk->in.sg = src;
276 walk->out.sg = dst;
277 walk->total = nbytes;
278 }
279
280 static inline struct crypto_async_request *crypto_get_backlog(
281 struct crypto_queue *queue)
282 {
283 return queue->backlog == &queue->list ? NULL :
284 container_of(queue->backlog, struct crypto_async_request, list);
285 }
286
287 static inline int ablkcipher_enqueue_request(struct crypto_queue *queue,
288 struct ablkcipher_request *request)
289 {
290 return crypto_enqueue_request(queue, &request->base);
291 }
292
293 static inline struct ablkcipher_request *ablkcipher_dequeue_request(
294 struct crypto_queue *queue)
295 {
296 return ablkcipher_request_cast(crypto_dequeue_request(queue));
297 }
298
299 static inline void *ablkcipher_request_ctx(struct ablkcipher_request *req)
300 {
301 return req->__ctx;
302 }
303
304 static inline int ablkcipher_tfm_in_queue(struct crypto_queue *queue,
305 struct crypto_ablkcipher *tfm)
306 {
307 return crypto_tfm_in_queue(queue, crypto_ablkcipher_tfm(tfm));
308 }
309
310 static inline void *aead_request_ctx(struct aead_request *req)
311 {
312 return req->__ctx;
313 }
314
315 static inline void aead_request_complete(struct aead_request *req, int err)
316 {
317 req->base.complete(&req->base, err);
318 }
319
320 static inline u32 aead_request_flags(struct aead_request *req)
321 {
322 return req->base.flags;
323 }
324
325 static inline struct crypto_alg *crypto_get_attr_alg(struct rtattr **tb,
326 u32 type, u32 mask)
327 {
328 return crypto_attr_alg(tb[1], type, mask);
329 }
330
331 /*
332 * Returns CRYPTO_ALG_ASYNC if type/mask requires the use of sync algorithms.
333 * Otherwise returns zero.
334 */
335 static inline int crypto_requires_sync(u32 type, u32 mask)
336 {
337 return (type ^ CRYPTO_ALG_ASYNC) & mask & CRYPTO_ALG_ASYNC;
338 }
339
340 #endif /* _CRYPTO_ALGAPI_H */
341