algapi.h 6.4 KB

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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. #include <linux/crypto.h>
  15. #include <linux/list.h>
  16. #include <linux/kernel.h>
  17. struct module;
  18. struct rtattr;
  19. struct seq_file;
  20. struct crypto_type {
  21. unsigned int (*ctxsize)(struct crypto_alg *alg, u32 type, u32 mask);
  22. int (*init)(struct crypto_tfm *tfm, u32 type, u32 mask);
  23. void (*exit)(struct crypto_tfm *tfm);
  24. void (*show)(struct seq_file *m, struct crypto_alg *alg);
  25. };
  26. struct crypto_instance {
  27. struct crypto_alg alg;
  28. struct crypto_template *tmpl;
  29. struct hlist_node list;
  30. void *__ctx[] CRYPTO_MINALIGN_ATTR;
  31. };
  32. struct crypto_template {
  33. struct list_head list;
  34. struct hlist_head instances;
  35. struct module *module;
  36. struct crypto_instance *(*alloc)(struct rtattr **tb);
  37. void (*free)(struct crypto_instance *inst);
  38. char name[CRYPTO_MAX_ALG_NAME];
  39. };
  40. struct crypto_spawn {
  41. struct list_head list;
  42. struct crypto_alg *alg;
  43. struct crypto_instance *inst;
  44. u32 mask;
  45. };
  46. struct crypto_queue {
  47. struct list_head list;
  48. struct list_head *backlog;
  49. unsigned int qlen;
  50. unsigned int max_qlen;
  51. };
  52. struct scatter_walk {
  53. struct scatterlist *sg;
  54. unsigned int offset;
  55. };
  56. struct blkcipher_walk {
  57. union {
  58. struct {
  59. struct page *page;
  60. unsigned long offset;
  61. } phys;
  62. struct {
  63. u8 *page;
  64. u8 *addr;
  65. } virt;
  66. } src, dst;
  67. struct scatter_walk in;
  68. unsigned int nbytes;
  69. struct scatter_walk out;
  70. unsigned int total;
  71. void *page;
  72. u8 *buffer;
  73. u8 *iv;
  74. int flags;
  75. };
  76. extern const struct crypto_type crypto_ablkcipher_type;
  77. extern const struct crypto_type crypto_blkcipher_type;
  78. extern const struct crypto_type crypto_hash_type;
  79. void crypto_mod_put(struct crypto_alg *alg);
  80. int crypto_register_template(struct crypto_template *tmpl);
  81. void crypto_unregister_template(struct crypto_template *tmpl);
  82. struct crypto_template *crypto_lookup_template(const char *name);
  83. int crypto_init_spawn(struct crypto_spawn *spawn, struct crypto_alg *alg,
  84. struct crypto_instance *inst, u32 mask);
  85. void crypto_drop_spawn(struct crypto_spawn *spawn);
  86. struct crypto_tfm *crypto_spawn_tfm(struct crypto_spawn *spawn, u32 type,
  87. u32 mask);
  88. struct crypto_attr_type *crypto_get_attr_type(struct rtattr **tb);
  89. int crypto_check_attr_type(struct rtattr **tb, u32 type);
  90. struct crypto_alg *crypto_get_attr_alg(struct rtattr **tb, u32 type, u32 mask);
  91. struct crypto_instance *crypto_alloc_instance(const char *name,
  92. struct crypto_alg *alg);
  93. void crypto_init_queue(struct crypto_queue *queue, unsigned int max_qlen);
  94. int crypto_enqueue_request(struct crypto_queue *queue,
  95. struct crypto_async_request *request);
  96. struct crypto_async_request *crypto_dequeue_request(struct crypto_queue *queue);
  97. int crypto_tfm_in_queue(struct crypto_queue *queue, struct crypto_tfm *tfm);
  98. int blkcipher_walk_done(struct blkcipher_desc *desc,
  99. struct blkcipher_walk *walk, int err);
  100. int blkcipher_walk_virt(struct blkcipher_desc *desc,
  101. struct blkcipher_walk *walk);
  102. int blkcipher_walk_phys(struct blkcipher_desc *desc,
  103. struct blkcipher_walk *walk);
  104. static inline void *crypto_tfm_ctx_aligned(struct crypto_tfm *tfm)
  105. {
  106. unsigned long addr = (unsigned long)crypto_tfm_ctx(tfm);
  107. unsigned long align = crypto_tfm_alg_alignmask(tfm);
  108. if (align <= crypto_tfm_ctx_alignment())
  109. align = 1;
  110. return (void *)ALIGN(addr, align);
  111. }
  112. static inline struct crypto_instance *crypto_tfm_alg_instance(
  113. struct crypto_tfm *tfm)
  114. {
  115. return container_of(tfm->__crt_alg, struct crypto_instance, alg);
  116. }
  117. static inline void *crypto_instance_ctx(struct crypto_instance *inst)
  118. {
  119. return inst->__ctx;
  120. }
  121. static inline struct ablkcipher_alg *crypto_ablkcipher_alg(
  122. struct crypto_ablkcipher *tfm)
  123. {
  124. return &crypto_ablkcipher_tfm(tfm)->__crt_alg->cra_ablkcipher;
  125. }
  126. static inline void *crypto_ablkcipher_ctx(struct crypto_ablkcipher *tfm)
  127. {
  128. return crypto_tfm_ctx(&tfm->base);
  129. }
  130. static inline struct crypto_blkcipher *crypto_spawn_blkcipher(
  131. struct crypto_spawn *spawn)
  132. {
  133. u32 type = CRYPTO_ALG_TYPE_BLKCIPHER;
  134. u32 mask = CRYPTO_ALG_TYPE_MASK | CRYPTO_ALG_ASYNC;
  135. return __crypto_blkcipher_cast(crypto_spawn_tfm(spawn, type, mask));
  136. }
  137. static inline void *crypto_blkcipher_ctx(struct crypto_blkcipher *tfm)
  138. {
  139. return crypto_tfm_ctx(&tfm->base);
  140. }
  141. static inline void *crypto_blkcipher_ctx_aligned(struct crypto_blkcipher *tfm)
  142. {
  143. return crypto_tfm_ctx_aligned(&tfm->base);
  144. }
  145. static inline struct crypto_cipher *crypto_spawn_cipher(
  146. struct crypto_spawn *spawn)
  147. {
  148. u32 type = CRYPTO_ALG_TYPE_CIPHER;
  149. u32 mask = CRYPTO_ALG_TYPE_MASK;
  150. return __crypto_cipher_cast(crypto_spawn_tfm(spawn, type, mask));
  151. }
  152. static inline struct cipher_alg *crypto_cipher_alg(struct crypto_cipher *tfm)
  153. {
  154. return &crypto_cipher_tfm(tfm)->__crt_alg->cra_cipher;
  155. }
  156. static inline struct crypto_hash *crypto_spawn_hash(struct crypto_spawn *spawn)
  157. {
  158. u32 type = CRYPTO_ALG_TYPE_HASH;
  159. u32 mask = CRYPTO_ALG_TYPE_HASH_MASK;
  160. return __crypto_hash_cast(crypto_spawn_tfm(spawn, type, mask));
  161. }
  162. static inline void *crypto_hash_ctx_aligned(struct crypto_hash *tfm)
  163. {
  164. return crypto_tfm_ctx_aligned(&tfm->base);
  165. }
  166. static inline void blkcipher_walk_init(struct blkcipher_walk *walk,
  167. struct scatterlist *dst,
  168. struct scatterlist *src,
  169. unsigned int nbytes)
  170. {
  171. walk->in.sg = src;
  172. walk->out.sg = dst;
  173. walk->total = nbytes;
  174. }
  175. static inline struct crypto_async_request *crypto_get_backlog(
  176. struct crypto_queue *queue)
  177. {
  178. return queue->backlog == &queue->list ? NULL :
  179. container_of(queue->backlog, struct crypto_async_request, list);
  180. }
  181. static inline int ablkcipher_enqueue_request(struct ablkcipher_alg *alg,
  182. struct ablkcipher_request *request)
  183. {
  184. return crypto_enqueue_request(alg->queue, &request->base);
  185. }
  186. static inline struct ablkcipher_request *ablkcipher_dequeue_request(
  187. struct ablkcipher_alg *alg)
  188. {
  189. return ablkcipher_request_cast(crypto_dequeue_request(alg->queue));
  190. }
  191. static inline void *ablkcipher_request_ctx(struct ablkcipher_request *req)
  192. {
  193. return req->__ctx;
  194. }
  195. static inline int ablkcipher_tfm_in_queue(struct crypto_ablkcipher *tfm)
  196. {
  197. return crypto_tfm_in_queue(crypto_ablkcipher_alg(tfm)->queue,
  198. crypto_ablkcipher_tfm(tfm));
  199. }
  200. #endif /* _CRYPTO_ALGAPI_H */