1 /* $FreeBSD$ */
2 /* $OpenBSD: cryptodev.h,v 1.31 2002/06/11 11:14:29 beck Exp $ */
3
4 /*-
5 * The author of this code is Angelos D. Keromytis ([email protected])
6 * Copyright (c) 2002-2006 Sam Leffler, Errno Consulting
7 *
8 * This code was written by Angelos D. Keromytis in Athens, Greece, in
9 * February 2000. Network Security Technologies Inc. (NSTI) kindly
10 * supported the development of this code.
11 *
12 * Copyright (c) 2000 Angelos D. Keromytis
13 *
14 * Permission to use, copy, and modify this software with or without fee
15 * is hereby granted, provided that this entire notice is included in
16 * all source code copies of any software which is or includes a copy or
17 * modification of this software.
18 *
19 * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR
20 * IMPLIED WARRANTY. IN PARTICULAR, NONE OF THE AUTHORS MAKES ANY
21 * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE
22 * MERCHANTABILITY OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR
23 * PURPOSE.
24 *
25 * Copyright (c) 2001 Theo de Raadt
26 * Copyright (c) 2014-2021 The FreeBSD Foundation
27 * All rights reserved.
28 *
29 * Portions of this software were developed by John-Mark Gurney
30 * under sponsorship of the FreeBSD Foundation and
31 * Rubicon Communications, LLC (Netgate).
32 *
33 * Portions of this software were developed by Ararat River
34 * Consulting, LLC under sponsorship of the FreeBSD Foundation.
35 *
36 * Redistribution and use in source and binary forms, with or without
37 * modification, are permitted provided that the following conditions
38 * are met:
39 *
40 * 1. Redistributions of source code must retain the above copyright
41 * notice, this list of conditions and the following disclaimer.
42 * 2. Redistributions in binary form must reproduce the above copyright
43 * notice, this list of conditions and the following disclaimer in the
44 * documentation and/or other materials provided with the distribution.
45 * 3. The name of the author may not be used to endorse or promote products
46 * derived from this software without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
49 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
50 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
51 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
52 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
53 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
54 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
55 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
56 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
57 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
58 *
59 * Effort sponsored in part by the Defense Advanced Research Projects
60 * Agency (DARPA) and Air Force Research Laboratory, Air Force
61 * Materiel Command, USAF, under agreement number F30602-01-2-0537.
62 *
63 */
64
65 #ifndef _CRYPTO_CRYPTO_H_
66 #define _CRYPTO_CRYPTO_H_
67
68 #include <sys/ioccom.h>
69
70 #ifdef _KERNEL
71 #include <opencrypto/_cryptodev.h>
72 #include <sys/_task.h>
73 #endif
74
75 /* Some initial values */
76 #define CRYPTO_DRIVERS_INITIAL 4
77
78 /* Hash values */
79 #define NULL_HASH_LEN 16
80 #define SHA1_HASH_LEN 20
81 #define RIPEMD160_HASH_LEN 20
82 #define SHA2_224_HASH_LEN 28
83 #define SHA2_256_HASH_LEN 32
84 #define SHA2_384_HASH_LEN 48
85 #define SHA2_512_HASH_LEN 64
86 #define AES_GMAC_HASH_LEN 16
87 #define POLY1305_HASH_LEN 16
88 #define AES_CBC_MAC_HASH_LEN 16
89 /* Maximum hash algorithm result length */
90 #define HASH_MAX_LEN SHA2_512_HASH_LEN /* Keep this updated */
91
92 #define SHA1_BLOCK_LEN 64
93 #define RIPEMD160_BLOCK_LEN 64
94 #define SHA2_224_BLOCK_LEN 64
95 #define SHA2_256_BLOCK_LEN 64
96 #define SHA2_384_BLOCK_LEN 128
97 #define SHA2_512_BLOCK_LEN 128
98
99 /* HMAC values */
100 #define NULL_HMAC_BLOCK_LEN 64
101 /* Maximum HMAC block length */
102 #define HMAC_MAX_BLOCK_LEN SHA2_512_BLOCK_LEN /* Keep this updated */
103 #define HMAC_IPAD_VAL 0x36
104 #define HMAC_OPAD_VAL 0x5C
105 /* HMAC Key Length */
106 #define AES_128_GMAC_KEY_LEN 16
107 #define AES_192_GMAC_KEY_LEN 24
108 #define AES_256_GMAC_KEY_LEN 32
109 #define AES_128_CBC_MAC_KEY_LEN 16
110 #define AES_192_CBC_MAC_KEY_LEN 24
111 #define AES_256_CBC_MAC_KEY_LEN 32
112
113 #define POLY1305_KEY_LEN 32
114
115 /* Encryption algorithm block sizes */
116 #define NULL_BLOCK_LEN 4 /* IPsec to maintain alignment */
117 #define RIJNDAEL128_BLOCK_LEN 16
118 #define AES_BLOCK_LEN 16
119 #define AES_ICM_BLOCK_LEN 1
120 #define CAMELLIA_BLOCK_LEN 16
121 #define CHACHA20_NATIVE_BLOCK_LEN 64
122 #define EALG_MAX_BLOCK_LEN CHACHA20_NATIVE_BLOCK_LEN /* Keep this updated */
123
124 /* IV Lengths */
125
126 #define AES_GCM_IV_LEN 12
127 #define AES_CCM_IV_LEN 12
128 #define AES_XTS_IV_LEN 8
129 #define AES_XTS_ALPHA 0x87 /* GF(2^128) generator polynomial */
130 #define CHACHA20_POLY1305_IV_LEN 12
131
132 /* Min and Max Encryption Key Sizes */
133 #define NULL_MIN_KEY 0
134 #define NULL_MAX_KEY 256 /* 2048 bits, max key */
135 #define RIJNDAEL_MIN_KEY 16
136 #define RIJNDAEL_MAX_KEY 32
137 #define AES_MIN_KEY RIJNDAEL_MIN_KEY
138 #define AES_MAX_KEY RIJNDAEL_MAX_KEY
139 #define AES_XTS_MIN_KEY (2 * AES_MIN_KEY)
140 #define AES_XTS_MAX_KEY (2 * AES_MAX_KEY)
141 #define CAMELLIA_MIN_KEY 16
142 #define CAMELLIA_MAX_KEY 32
143 #define CHACHA20_POLY1305_KEY 32
144
145 /* Maximum hash algorithm result length */
146 #define AALG_MAX_RESULT_LEN 64 /* Keep this updated */
147
148 #define CRYPTO_ALGORITHM_MIN 1
149 #define CRYPTO_DES_CBC 1
150 #define CRYPTO_3DES_CBC 2
151 #define CRYPTO_BLF_CBC 3
152 #define CRYPTO_CAST_CBC 4
153 #define CRYPTO_SKIPJACK_CBC 5
154 #define CRYPTO_MD5_HMAC 6
155 #define CRYPTO_SHA1_HMAC 7
156 #define CRYPTO_RIPEMD160_HMAC 8
157 #define CRYPTO_MD5_KPDK 9
158 #define CRYPTO_SHA1_KPDK 10
159 #define CRYPTO_RIJNDAEL128_CBC 11 /* 128 bit blocksize */
160 #define CRYPTO_AES_CBC 11 /* 128 bit blocksize -- the same as above */
161 #define CRYPTO_ARC4 12
162 #define CRYPTO_MD5 13
163 #define CRYPTO_SHA1 14
164 #define CRYPTO_NULL_HMAC 15
165 #define CRYPTO_NULL_CBC 16
166 #define CRYPTO_DEFLATE_COMP 17 /* Deflate compression algorithm */
167 #define CRYPTO_SHA2_256_HMAC 18
168 #define CRYPTO_SHA2_384_HMAC 19
169 #define CRYPTO_SHA2_512_HMAC 20
170 #define CRYPTO_CAMELLIA_CBC 21
171 #define CRYPTO_AES_XTS 22
172 #define CRYPTO_AES_ICM 23 /* commonly known as CTR mode */
173 #define CRYPTO_AES_NIST_GMAC 24 /* GMAC only */
174 #define CRYPTO_AES_NIST_GCM_16 25 /* 16 byte ICV */
175 #ifdef _KERNEL
176 #define CRYPTO_AES_128_NIST_GMAC 26 /* auth side */
177 #define CRYPTO_AES_192_NIST_GMAC 27 /* auth side */
178 #define CRYPTO_AES_256_NIST_GMAC 28 /* auth side */
179 #endif
180 #define CRYPTO_BLAKE2B 29 /* Blake2b hash */
181 #define CRYPTO_BLAKE2S 30 /* Blake2s hash */
182 #define CRYPTO_CHACHA20 31 /* Chacha20 stream cipher */
183 #define CRYPTO_SHA2_224_HMAC 32
184 #define CRYPTO_RIPEMD160 33
185 #define CRYPTO_SHA2_224 34
186 #define CRYPTO_SHA2_256 35
187 #define CRYPTO_SHA2_384 36
188 #define CRYPTO_SHA2_512 37
189 #define CRYPTO_POLY1305 38
190 #define CRYPTO_AES_CCM_CBC_MAC 39 /* auth side */
191 #define CRYPTO_AES_CCM_16 40 /* cipher side */
192 #define CRYPTO_CHACHA20_POLY1305 41 /* combined AEAD cipher per RFC 8439 */
193 #define CRYPTO_ALGORITHM_MAX 41 /* Keep updated - see below */
194
195 #define CRYPTO_ALGO_VALID(x) ((x) >= CRYPTO_ALGORITHM_MIN && \
196 (x) <= CRYPTO_ALGORITHM_MAX)
197
198 /* Algorithm flags */
199 #define CRYPTO_ALG_FLAG_SUPPORTED 0x01 /* Algorithm is supported */
200 #define CRYPTO_ALG_FLAG_RNG_ENABLE 0x02 /* Has HW RNG for DH/DSA */
201 #define CRYPTO_ALG_FLAG_DSA_SHA 0x04 /* Can do SHA on msg */
202
203 /*
204 * Crypto driver/device flags. They can set in the crid
205 * parameter when creating a session or submitting a key
206 * op to affect the device/driver assigned. If neither
207 * of these are specified then the crid is assumed to hold
208 * the driver id of an existing (and suitable) device that
209 * must be used to satisfy the request.
210 */
211 #define CRYPTO_FLAG_HARDWARE 0x01000000 /* hardware accelerated */
212 #define CRYPTO_FLAG_SOFTWARE 0x02000000 /* software implementation */
213
214 /* Does the kernel support vmpage buffers on this platform? */
215 #ifdef __powerpc__
216 #define CRYPTO_MAY_HAVE_VMPAGE 1
217 #else
218 #define CRYPTO_MAY_HAVE_VMPAGE ( PMAP_HAS_DMAP )
219 #endif
220 /* Does the currently running system support vmpage buffers on this platform? */
221 #define CRYPTO_HAS_VMPAGE ( PMAP_HAS_DMAP )
222
223 /* NB: deprecated */
224 struct session_op {
225 uint32_t cipher; /* ie. CRYPTO_AES_CBC */
226 uint32_t mac; /* ie. CRYPTO_SHA2_256_HMAC */
227
228 uint32_t keylen; /* cipher key */
229 const void *key;
230 int mackeylen; /* mac key */
231 const void *mackey;
232
233 uint32_t ses; /* returns: session # */
234 };
235
236 /*
237 * session and crypt _op structs are used by userspace programs to interact
238 * with /dev/crypto. Confusingly, the internal kernel interface is named
239 * "cryptop" (no underscore).
240 */
241 struct session2_op {
242 uint32_t cipher; /* ie. CRYPTO_AES_CBC */
243 uint32_t mac; /* ie. CRYPTO_SHA2_256_HMAC */
244
245 uint32_t keylen; /* cipher key */
246 const void *key;
247 int mackeylen; /* mac key */
248 const void *mackey;
249
250 uint32_t ses; /* returns: session # */
251 int crid; /* driver id + flags (rw) */
252 int ivlen; /* length of nonce/IV */
253 int maclen; /* length of MAC/tag */
254 int pad[2]; /* for future expansion */
255 };
256
257 struct crypt_op {
258 uint32_t ses;
259 uint16_t op; /* i.e. COP_ENCRYPT */
260 #define COP_ENCRYPT 1
261 #define COP_DECRYPT 2
262 uint16_t flags;
263 #define COP_F_CIPHER_FIRST 0x0001 /* Cipher before MAC. */
264 #define COP_F_BATCH 0x0008 /* Batch op if possible */
265 u_int len;
266 const void *src; /* become iov[] inside kernel */
267 void *dst;
268 void *mac; /* must be big enough for chosen MAC */
269 const void *iv;
270 };
271
272 /* op and flags the same as crypt_op */
273 struct crypt_aead {
274 uint32_t ses;
275 uint16_t op; /* i.e. COP_ENCRYPT */
276 uint16_t flags;
277 u_int len;
278 u_int aadlen;
279 u_int ivlen;
280 const void *src; /* become iov[] inside kernel */
281 void *dst;
282 const void *aad; /* additional authenticated data */
283 void *tag; /* must fit for chosen TAG length */
284 const void *iv;
285 };
286
287 /*
288 * Parameters for looking up a crypto driver/device by
289 * device name or by id. The latter are returned for
290 * created sessions (crid) and completed key operations.
291 */
292 struct crypt_find_op {
293 int crid; /* driver id + flags */
294 char name[32]; /* device/driver name */
295 };
296
297 /* bignum parameter, in packed bytes, ... */
298 struct crparam {
299 void *crp_p;
300 u_int crp_nbits;
301 };
302
303 #define CRK_MAXPARAM 8
304
305 struct crypt_kop {
306 u_int crk_op; /* ie. CRK_MOD_EXP or other */
307 u_int crk_status; /* return status */
308 u_short crk_iparams; /* # of input parameters */
309 u_short crk_oparams; /* # of output parameters */
310 u_int crk_crid; /* NB: only used by CIOCKEY2 (rw) */
311 struct crparam crk_param[CRK_MAXPARAM];
312 };
313 #define CRK_ALGORITM_MIN 0
314 #define CRK_MOD_EXP 0
315 #define CRK_MOD_EXP_CRT 1
316 #define CRK_DSA_SIGN 2
317 #define CRK_DSA_VERIFY 3
318 #define CRK_DH_COMPUTE_KEY 4
319 #define CRK_ALGORITHM_MAX 4 /* Keep updated - see below */
320
321 #define CRF_MOD_EXP (1 << CRK_MOD_EXP)
322 #define CRF_MOD_EXP_CRT (1 << CRK_MOD_EXP_CRT)
323 #define CRF_DSA_SIGN (1 << CRK_DSA_SIGN)
324 #define CRF_DSA_VERIFY (1 << CRK_DSA_VERIFY)
325 #define CRF_DH_COMPUTE_KEY (1 << CRK_DH_COMPUTE_KEY)
326
327 #define CIOCGSESSION _IOWR('c', 101, struct session_op)
328 #define CIOCFSESSION _IOW('c', 102, uint32_t)
329 #define CIOCCRYPT _IOWR('c', 103, struct crypt_op)
330 #define CIOCKEY _IOWR('c', 104, struct crypt_kop)
331 #define CIOCASYMFEAT _IOR('c', 105, uint32_t)
332 #define CIOCGSESSION2 _IOWR('c', 106, struct session2_op)
333 #define CIOCKEY2 _IOWR('c', 107, struct crypt_kop)
334 #define CIOCFINDDEV _IOWR('c', 108, struct crypt_find_op)
335 #define CIOCCRYPTAEAD _IOWR('c', 109, struct crypt_aead)
336
337 struct cryptostats {
338 uint64_t cs_ops; /* symmetric crypto ops submitted */
339 uint64_t cs_errs; /* symmetric crypto ops that failed */
340 uint64_t cs_kops; /* asymetric/key ops submitted */
341 uint64_t cs_kerrs; /* asymetric/key ops that failed */
342 uint64_t cs_intrs; /* crypto swi thread activations */
343 uint64_t cs_rets; /* crypto return thread activations */
344 uint64_t cs_blocks; /* symmetric op driver block */
345 uint64_t cs_kblocks; /* symmetric op driver block */
346 };
347
348 #ifdef _KERNEL
349
350 /*
351 * Return values for cryptodev_probesession methods.
352 */
353 #define CRYPTODEV_PROBE_HARDWARE (-100)
354 #define CRYPTODEV_PROBE_ACCEL_SOFTWARE (-200)
355 #define CRYPTODEV_PROBE_SOFTWARE (-500)
356
357 #if 0
358 #define CRYPTDEB(s, ...) do { \
359 printf("%s:%d: " s "\n", __FILE__, __LINE__, ## __VA_ARGS__); \
360 } while (0)
361 #else
362 #define CRYPTDEB(...) do { } while (0)
363 #endif
364
365 struct crypto_session_params {
366 int csp_mode; /* Type of operations to perform. */
367
368 #define CSP_MODE_NONE 0
369 #define CSP_MODE_COMPRESS 1 /* Compression/decompression. */
370 #define CSP_MODE_CIPHER 2 /* Encrypt/decrypt. */
371 #define CSP_MODE_DIGEST 3 /* Compute/verify digest. */
372 #define CSP_MODE_AEAD 4 /* Combined auth/encryption. */
373 #define CSP_MODE_ETA 5 /* IPsec style encrypt-then-auth */
374
375 int csp_flags;
376
377 #define CSP_F_SEPARATE_OUTPUT 0x0001 /* Requests can use separate output */
378 #define CSP_F_SEPARATE_AAD 0x0002 /* Requests can use separate AAD */
379 #define CSP_F_ESN 0x0004 /* Requests can use seperate ESN field */
380
381 int csp_ivlen; /* IV length in bytes. */
382
383 int csp_cipher_alg;
384 int csp_cipher_klen; /* Key length in bytes. */
385 const void *csp_cipher_key;
386
387 int csp_auth_alg;
388 int csp_auth_klen; /* Key length in bytes. */
389 const void *csp_auth_key;
390 int csp_auth_mlen; /* Number of digest bytes to use.
391 0 means all. */
392 };
393
394 enum crypto_buffer_type {
395 CRYPTO_BUF_NONE = 0,
396 CRYPTO_BUF_CONTIG,
397 CRYPTO_BUF_UIO,
398 CRYPTO_BUF_MBUF,
399 CRYPTO_BUF_VMPAGE,
400 CRYPTO_BUF_SINGLE_MBUF,
401 CRYPTO_BUF_LAST = CRYPTO_BUF_SINGLE_MBUF
402 };
403
404 /*
405 * Description of a data buffer for a request. Requests can either
406 * have a single buffer that is modified in place or separate input
407 * and output buffers.
408 */
409 struct crypto_buffer {
410 union {
411 struct {
412 char *cb_buf;
413 int cb_buf_len;
414 };
415 struct mbuf *cb_mbuf;
416 struct {
417 vm_page_t *cb_vm_page;
418 int cb_vm_page_len;
419 int cb_vm_page_offset;
420 };
421 struct uio *cb_uio;
422 };
423 enum crypto_buffer_type cb_type;
424 };
425
426 /*
427 * A cursor is used to iterate through a crypto request data buffer.
428 */
429 struct crypto_buffer_cursor {
430 union {
431 char *cc_buf;
432 struct mbuf *cc_mbuf;
433 struct iovec *cc_iov;
434 vm_page_t *cc_vmpage;
435 };
436 /* Optional bytes of valid data remaining */
437 int cc_buf_len;
438 /*
439 * Optional offset within the current buffer segment where
440 * valid data begins
441 */
442 size_t cc_offset;
443 enum crypto_buffer_type cc_type;
444 };
445
446 /* Structure describing complete operation */
447 struct cryptop {
448 TAILQ_ENTRY(cryptop) crp_next;
449
450 struct task crp_task;
451
452 crypto_session_t crp_session; /* Session */
453 int crp_olen; /* Result total length */
454
455 int crp_etype; /*
456 * Error type (zero means no error).
457 * All error codes except EAGAIN
458 * indicate possible data corruption (as in,
459 * the data have been touched). On all
460 * errors, the crp_session may have changed
461 * (reset to a new one), so the caller
462 * should always check and use the new
463 * value on future requests.
464 */
465 int crp_flags;
466
467 #define CRYPTO_F_BATCH 0x0008 /* Batch op if possible */
468 #define CRYPTO_F_CBIMM 0x0010 /* Do callback immediately */
469 #define CRYPTO_F_DONE 0x0020 /* Operation completed */
470 #define CRYPTO_F_CBIFSYNC 0x0040 /* Do CBIMM if op is synchronous */
471 #define CRYPTO_F_ASYNC 0x0080 /* Dispatch crypto jobs on several threads
472 * if op is synchronous
473 */
474 #define CRYPTO_F_ASYNC_KEEPORDER 0x0100 /*
475 * Dispatch the crypto jobs in the same
476 * order there are submitted. Applied only
477 * if CRYPTO_F_ASYNC flags is set
478 */
479 #define CRYPTO_F_IV_SEPARATE 0x0200 /* Use crp_iv[] as IV. */
480
481 int crp_op;
482
483 struct crypto_buffer crp_buf;
484 struct crypto_buffer crp_obuf;
485
486 void *crp_aad; /* AAD buffer. */
487 int crp_aad_start; /* Location of AAD. */
488 int crp_aad_length; /* 0 => no AAD. */
489 uint8_t crp_esn[4]; /* high-order ESN */
490
491 int crp_iv_start; /* Location of IV. IV length is from
492 * the session.
493 */
494 int crp_payload_start; /* Location of ciphertext. */
495 int crp_payload_output_start;
496 int crp_payload_length;
497 int crp_digest_start; /* Location of MAC/tag. Length is
498 * from the session.
499 */
500
501 uint8_t crp_iv[EALG_MAX_BLOCK_LEN]; /* IV if IV_SEPARATE. */
502
503 const void *crp_cipher_key; /* New cipher key if non-NULL. */
504 const void *crp_auth_key; /* New auth key if non-NULL. */
505
506 void *crp_opaque; /* Opaque pointer, passed along */
507
508 int (*crp_callback)(struct cryptop *); /* Callback function */
509
510 struct bintime crp_tstamp; /* performance time stamp */
511 uint32_t crp_seq; /* used for ordered dispatch */
512 uint32_t crp_retw_id; /*
513 * the return worker to be used,
514 * used for ordered dispatch
515 */
516 };
517
518 static __inline void
_crypto_use_buf(struct crypto_buffer * cb,void * buf,int len)519 _crypto_use_buf(struct crypto_buffer *cb, void *buf, int len)
520 {
521 cb->cb_buf = buf;
522 cb->cb_buf_len = len;
523 cb->cb_type = CRYPTO_BUF_CONTIG;
524 }
525
526 static __inline void
_crypto_use_mbuf(struct crypto_buffer * cb,struct mbuf * m)527 _crypto_use_mbuf(struct crypto_buffer *cb, struct mbuf *m)
528 {
529 cb->cb_mbuf = m;
530 cb->cb_type = CRYPTO_BUF_MBUF;
531 }
532
533 static __inline void
_crypto_use_single_mbuf(struct crypto_buffer * cb,struct mbuf * m)534 _crypto_use_single_mbuf(struct crypto_buffer *cb, struct mbuf *m)
535 {
536 cb->cb_mbuf = m;
537 cb->cb_type = CRYPTO_BUF_SINGLE_MBUF;
538 }
539
540 static __inline void
_crypto_use_vmpage(struct crypto_buffer * cb,vm_page_t * pages,int len,int offset)541 _crypto_use_vmpage(struct crypto_buffer *cb, vm_page_t *pages, int len,
542 int offset)
543 {
544 cb->cb_vm_page = pages;
545 cb->cb_vm_page_len = len;
546 cb->cb_vm_page_offset = offset;
547 cb->cb_type = CRYPTO_BUF_VMPAGE;
548 }
549
550 static __inline void
_crypto_use_uio(struct crypto_buffer * cb,struct uio * uio)551 _crypto_use_uio(struct crypto_buffer *cb, struct uio *uio)
552 {
553 cb->cb_uio = uio;
554 cb->cb_type = CRYPTO_BUF_UIO;
555 }
556
557 static __inline void
crypto_use_buf(struct cryptop * crp,void * buf,int len)558 crypto_use_buf(struct cryptop *crp, void *buf, int len)
559 {
560 _crypto_use_buf(&crp->crp_buf, buf, len);
561 }
562
563 static __inline void
crypto_use_mbuf(struct cryptop * crp,struct mbuf * m)564 crypto_use_mbuf(struct cryptop *crp, struct mbuf *m)
565 {
566 _crypto_use_mbuf(&crp->crp_buf, m);
567 }
568
569 static __inline void
crypto_use_single_mbuf(struct cryptop * crp,struct mbuf * m)570 crypto_use_single_mbuf(struct cryptop *crp, struct mbuf *m)
571 {
572 _crypto_use_single_mbuf(&crp->crp_buf, m);
573 }
574
575 static __inline void
crypto_use_vmpage(struct cryptop * crp,vm_page_t * pages,int len,int offset)576 crypto_use_vmpage(struct cryptop *crp, vm_page_t *pages, int len, int offset)
577 {
578 _crypto_use_vmpage(&crp->crp_buf, pages, len, offset);
579 }
580
581 static __inline void
crypto_use_uio(struct cryptop * crp,struct uio * uio)582 crypto_use_uio(struct cryptop *crp, struct uio *uio)
583 {
584 _crypto_use_uio(&crp->crp_buf, uio);
585 }
586
587 static __inline void
crypto_use_output_buf(struct cryptop * crp,void * buf,int len)588 crypto_use_output_buf(struct cryptop *crp, void *buf, int len)
589 {
590 _crypto_use_buf(&crp->crp_obuf, buf, len);
591 }
592
593 static __inline void
crypto_use_output_mbuf(struct cryptop * crp,struct mbuf * m)594 crypto_use_output_mbuf(struct cryptop *crp, struct mbuf *m)
595 {
596 _crypto_use_mbuf(&crp->crp_obuf, m);
597 }
598
599 static __inline void
crypto_use_output_single_mbuf(struct cryptop * crp,struct mbuf * m)600 crypto_use_output_single_mbuf(struct cryptop *crp, struct mbuf *m)
601 {
602 _crypto_use_single_mbuf(&crp->crp_obuf, m);
603 }
604
605 static __inline void
crypto_use_output_vmpage(struct cryptop * crp,vm_page_t * pages,int len,int offset)606 crypto_use_output_vmpage(struct cryptop *crp, vm_page_t *pages, int len,
607 int offset)
608 {
609 _crypto_use_vmpage(&crp->crp_obuf, pages, len, offset);
610 }
611
612 static __inline void
crypto_use_output_uio(struct cryptop * crp,struct uio * uio)613 crypto_use_output_uio(struct cryptop *crp, struct uio *uio)
614 {
615 _crypto_use_uio(&crp->crp_obuf, uio);
616 }
617
618 #define CRYPTOP_ASYNC(crp) \
619 (((crp)->crp_flags & CRYPTO_F_ASYNC) && \
620 crypto_ses2caps((crp)->crp_session) & CRYPTOCAP_F_SYNC)
621 #define CRYPTOP_ASYNC_KEEPORDER(crp) \
622 (CRYPTOP_ASYNC(crp) && \
623 (crp)->crp_flags & CRYPTO_F_ASYNC_KEEPORDER)
624 #define CRYPTO_HAS_OUTPUT_BUFFER(crp) \
625 ((crp)->crp_obuf.cb_type != CRYPTO_BUF_NONE)
626
627 /* Flags in crp_op. */
628 #define CRYPTO_OP_DECRYPT 0x0
629 #define CRYPTO_OP_ENCRYPT 0x1
630 #define CRYPTO_OP_IS_ENCRYPT(op) ((op) & CRYPTO_OP_ENCRYPT)
631 #define CRYPTO_OP_COMPUTE_DIGEST 0x0
632 #define CRYPTO_OP_VERIFY_DIGEST 0x2
633 #define CRYPTO_OP_DECOMPRESS CRYPTO_OP_DECRYPT
634 #define CRYPTO_OP_COMPRESS CRYPTO_OP_ENCRYPT
635 #define CRYPTO_OP_IS_COMPRESS(op) ((op) & CRYPTO_OP_COMPRESS)
636
637 /*
638 * Hints passed to process methods.
639 */
640 #define CRYPTO_HINT_MORE 0x1 /* more ops coming shortly */
641
642 struct cryptkop {
643 TAILQ_ENTRY(cryptkop) krp_next;
644
645 u_int krp_op; /* ie. CRK_MOD_EXP or other */
646 u_int krp_status; /* return status */
647 u_short krp_iparams; /* # of input parameters */
648 u_short krp_oparams; /* # of output parameters */
649 u_int krp_crid; /* desired device, etc. */
650 uint32_t krp_hid; /* device used */
651 struct crparam krp_param[CRK_MAXPARAM]; /* kvm */
652 void (*krp_callback)(struct cryptkop *);
653 struct cryptocap *krp_cap;
654 };
655
656 uint32_t crypto_ses2hid(crypto_session_t crypto_session);
657 uint32_t crypto_ses2caps(crypto_session_t crypto_session);
658 void *crypto_get_driver_session(crypto_session_t crypto_session);
659 const struct crypto_session_params *crypto_get_params(
660 crypto_session_t crypto_session);
661 struct auth_hash *crypto_auth_hash(const struct crypto_session_params *csp);
662 struct enc_xform *crypto_cipher(const struct crypto_session_params *csp);
663
664 MALLOC_DECLARE(M_CRYPTO_DATA);
665
666 extern int crypto_newsession(crypto_session_t *cses,
667 const struct crypto_session_params *params, int hard);
668 extern void crypto_freesession(crypto_session_t cses);
669 #define CRYPTOCAP_F_HARDWARE CRYPTO_FLAG_HARDWARE
670 #define CRYPTOCAP_F_SOFTWARE CRYPTO_FLAG_SOFTWARE
671 #define CRYPTOCAP_F_SYNC 0x04000000 /* operates synchronously */
672 #define CRYPTOCAP_F_ACCEL_SOFTWARE 0x08000000
673 extern int32_t crypto_get_driverid(device_t dev, size_t session_size,
674 int flags);
675 extern int crypto_find_driver(const char *);
676 extern device_t crypto_find_device_byhid(int hid);
677 extern int crypto_getcaps(int hid);
678 extern int crypto_kregister(uint32_t, int, uint32_t);
679 extern int crypto_unregister_all(uint32_t driverid);
680 extern int crypto_dispatch(struct cryptop *crp);
681 extern int crypto_kdispatch(struct cryptkop *);
682 #define CRYPTO_SYMQ 0x1
683 #define CRYPTO_ASYMQ 0x2
684 extern int crypto_unblock(uint32_t, int);
685 extern void crypto_done(struct cryptop *crp);
686 extern void crypto_kdone(struct cryptkop *);
687 extern int crypto_getfeat(int *);
688
689 extern void crypto_destroyreq(struct cryptop *crp);
690 extern void crypto_initreq(struct cryptop *crp, crypto_session_t cses);
691 extern void crypto_freereq(struct cryptop *crp);
692 extern struct cryptop *crypto_getreq(crypto_session_t cses, int how);
693
694 extern int crypto_usercrypto; /* userland may do crypto requests */
695 extern int crypto_userasymcrypto; /* userland may do asym crypto reqs */
696 extern int crypto_devallowsoft; /* only use hardware crypto */
697
698 #ifdef SYSCTL_DECL
699 SYSCTL_DECL(_kern_crypto);
700 #endif
701
702 /* Helper routines for drivers to initialize auth contexts for HMAC. */
703 struct auth_hash;
704
705 void hmac_init_ipad(const struct auth_hash *axf, const char *key, int klen,
706 void *auth_ctx);
707 void hmac_init_opad(const struct auth_hash *axf, const char *key, int klen,
708 void *auth_ctx);
709
710 /*
711 * Crypto-related utility routines used mainly by drivers.
712 *
713 * Similar to m_copyback/data, *_copyback copy data from the 'src'
714 * buffer into the crypto request's data buffer while *_copydata copy
715 * data from the crypto request's data buffer into the the 'dst'
716 * buffer.
717 */
718 void crypto_copyback(struct cryptop *crp, int off, int size,
719 const void *src);
720 void crypto_copydata(struct cryptop *crp, int off, int size, void *dst);
721 int crypto_apply(struct cryptop *crp, int off, int len,
722 int (*f)(void *, const void *, u_int), void *arg);
723 void *crypto_contiguous_subsegment(struct cryptop *crp, size_t skip,
724 size_t len);
725
726 int crypto_apply_buf(struct crypto_buffer *cb, int off, int len,
727 int (*f)(void *, const void *, u_int), void *arg);
728 void *crypto_buffer_contiguous_subsegment(struct crypto_buffer *cb,
729 size_t skip, size_t len);
730 size_t crypto_buffer_len(struct crypto_buffer *cb);
731 void crypto_cursor_init(struct crypto_buffer_cursor *cc,
732 const struct crypto_buffer *cb);
733 void crypto_cursor_advance(struct crypto_buffer_cursor *cc, size_t amount);
734 void *crypto_cursor_segment(struct crypto_buffer_cursor *cc, size_t *len);
735 void *crypto_cursor_segbase(struct crypto_buffer_cursor *cc);
736 size_t crypto_cursor_seglen(struct crypto_buffer_cursor *cc);
737 void crypto_cursor_copyback(struct crypto_buffer_cursor *cc, int size,
738 const void *vsrc);
739 void crypto_cursor_copydata(struct crypto_buffer_cursor *cc, int size,
740 void *vdst);
741 void crypto_cursor_copydata_noadv(struct crypto_buffer_cursor *cc, int size,
742 void *vdst);
743
744 static __inline void
crypto_read_iv(struct cryptop * crp,void * iv)745 crypto_read_iv(struct cryptop *crp, void *iv)
746 {
747 const struct crypto_session_params *csp;
748
749 csp = crypto_get_params(crp->crp_session);
750 if (crp->crp_flags & CRYPTO_F_IV_SEPARATE)
751 memcpy(iv, crp->crp_iv, csp->csp_ivlen);
752 else
753 crypto_copydata(crp, crp->crp_iv_start, csp->csp_ivlen, iv);
754 }
755
756 static __inline size_t
ccm_max_payload_length(const struct crypto_session_params * csp)757 ccm_max_payload_length(const struct crypto_session_params *csp)
758 {
759 /* RFC 3160 */
760 const u_int L = 15 - csp->csp_ivlen;
761
762 switch (L) {
763 case 2:
764 return (0xffff);
765 case 3:
766 return (0xffffff);
767 #ifdef __LP64__
768 case 4:
769 return (0xffffffff);
770 case 5:
771 return (0xffffffffff);
772 case 6:
773 return (0xffffffffffff);
774 case 7:
775 return (0xffffffffffffff);
776 default:
777 return (0xffffffffffffffff);
778 #else
779 default:
780 return (0xffffffff);
781 #endif
782 }
783 }
784
785 #endif /* _KERNEL */
786 #endif /* _CRYPTO_CRYPTO_H_ */
787