cryptosoft.c revision 1.16 1 1.16 daniel /* $NetBSD: cryptosoft.c,v 1.16 2007/02/17 00:28:25 daniel Exp $ */
2 1.1 jonathan /* $FreeBSD: src/sys/opencrypto/cryptosoft.c,v 1.2.2.1 2002/11/21 23:34:23 sam Exp $ */
3 1.1 jonathan /* $OpenBSD: cryptosoft.c,v 1.35 2002/04/26 08:43:50 deraadt Exp $ */
4 1.1 jonathan
5 1.1 jonathan /*
6 1.1 jonathan * The author of this code is Angelos D. Keromytis (angelos (at) cis.upenn.edu)
7 1.1 jonathan *
8 1.1 jonathan * This code was written by Angelos D. Keromytis in Athens, Greece, in
9 1.1 jonathan * February 2000. Network Security Technologies Inc. (NSTI) kindly
10 1.1 jonathan * supported the development of this code.
11 1.1 jonathan *
12 1.1 jonathan * Copyright (c) 2000, 2001 Angelos D. Keromytis
13 1.1 jonathan *
14 1.1 jonathan * Permission to use, copy, and modify this software with or without fee
15 1.1 jonathan * is hereby granted, provided that this entire notice is included in
16 1.1 jonathan * all source code copies of any software which is or includes a copy or
17 1.1 jonathan * modification of this software.
18 1.1 jonathan *
19 1.1 jonathan * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR
20 1.1 jonathan * IMPLIED WARRANTY. IN PARTICULAR, NONE OF THE AUTHORS MAKES ANY
21 1.1 jonathan * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE
22 1.1 jonathan * MERCHANTABILITY OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR
23 1.1 jonathan * PURPOSE.
24 1.1 jonathan */
25 1.1 jonathan
26 1.1 jonathan #include <sys/cdefs.h>
27 1.16 daniel __KERNEL_RCSID(0, "$NetBSD: cryptosoft.c,v 1.16 2007/02/17 00:28:25 daniel Exp $");
28 1.1 jonathan
29 1.1 jonathan #include <sys/param.h>
30 1.1 jonathan #include <sys/systm.h>
31 1.1 jonathan #include <sys/malloc.h>
32 1.1 jonathan #include <sys/mbuf.h>
33 1.1 jonathan #include <sys/sysctl.h>
34 1.1 jonathan #include <sys/errno.h>
35 1.5 jonathan
36 1.1 jonathan #include <opencrypto/cryptodev.h>
37 1.1 jonathan #include <opencrypto/cryptosoft.h>
38 1.1 jonathan #include <opencrypto/xform.h>
39 1.1 jonathan
40 1.10 thorpej #include <opencrypto/cryptosoft_xform.c>
41 1.1 jonathan
42 1.10 thorpej union authctx {
43 1.10 thorpej MD5_CTX md5ctx;
44 1.10 thorpej SHA1_CTX sha1ctx;
45 1.10 thorpej RMD160_CTX rmd160ctx;
46 1.10 thorpej SHA256_CTX sha256ctx;
47 1.10 thorpej SHA384_CTX sha384ctx;
48 1.10 thorpej SHA512_CTX sha512ctx;
49 1.1 jonathan };
50 1.1 jonathan
51 1.1 jonathan struct swcr_data **swcr_sessions = NULL;
52 1.1 jonathan u_int32_t swcr_sesnum = 0;
53 1.1 jonathan int32_t swcr_id = -1;
54 1.1 jonathan
55 1.1 jonathan #define COPYBACK(x, a, b, c, d) \
56 1.1 jonathan (x) == CRYPTO_BUF_MBUF ? m_copyback((struct mbuf *)a,b,c,d) \
57 1.1 jonathan : cuio_copyback((struct uio *)a,b,c,d)
58 1.1 jonathan #define COPYDATA(x, a, b, c, d) \
59 1.1 jonathan (x) == CRYPTO_BUF_MBUF ? m_copydata((struct mbuf *)a,b,c,d) \
60 1.1 jonathan : cuio_copydata((struct uio *)a,b,c,d)
61 1.1 jonathan
62 1.1 jonathan static int swcr_encdec(struct cryptodesc *, struct swcr_data *, caddr_t, int);
63 1.1 jonathan static int swcr_compdec(struct cryptodesc *, struct swcr_data *, caddr_t, int);
64 1.1 jonathan static int swcr_process(void *, struct cryptop *, int);
65 1.1 jonathan static int swcr_newsession(void *, u_int32_t *, struct cryptoini *);
66 1.1 jonathan static int swcr_freesession(void *, u_int64_t);
67 1.1 jonathan
68 1.1 jonathan /*
69 1.1 jonathan * Apply a symmetric encryption/decryption algorithm.
70 1.1 jonathan */
71 1.1 jonathan static int
72 1.1 jonathan swcr_encdec(struct cryptodesc *crd, struct swcr_data *sw, caddr_t buf,
73 1.1 jonathan int outtype)
74 1.1 jonathan {
75 1.1 jonathan unsigned char iv[EALG_MAX_BLOCK_LEN], blk[EALG_MAX_BLOCK_LEN], *idat;
76 1.1 jonathan unsigned char *ivp, piv[EALG_MAX_BLOCK_LEN];
77 1.10 thorpej const struct swcr_enc_xform *exf;
78 1.1 jonathan int i, k, j, blks;
79 1.1 jonathan int count, ind;
80 1.1 jonathan
81 1.1 jonathan exf = sw->sw_exf;
82 1.10 thorpej blks = exf->enc_xform->blocksize;
83 1.1 jonathan
84 1.1 jonathan /* Check for non-padded data */
85 1.1 jonathan if (crd->crd_len % blks)
86 1.1 jonathan return EINVAL;
87 1.1 jonathan
88 1.1 jonathan /* Initialize the IV */
89 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
90 1.1 jonathan /* IV explicitly provided ? */
91 1.1 jonathan if (crd->crd_flags & CRD_F_IV_EXPLICIT)
92 1.1 jonathan bcopy(crd->crd_iv, iv, blks);
93 1.1 jonathan else {
94 1.1 jonathan /* Get random IV */
95 1.1 jonathan for (i = 0;
96 1.1 jonathan i + sizeof (u_int32_t) < EALG_MAX_BLOCK_LEN;
97 1.1 jonathan i += sizeof (u_int32_t)) {
98 1.1 jonathan u_int32_t temp = arc4random();
99 1.1 jonathan
100 1.1 jonathan bcopy(&temp, iv + i, sizeof(u_int32_t));
101 1.1 jonathan }
102 1.1 jonathan /*
103 1.1 jonathan * What if the block size is not a multiple
104 1.1 jonathan * of sizeof (u_int32_t), which is the size of
105 1.1 jonathan * what arc4random() returns ?
106 1.1 jonathan */
107 1.1 jonathan if (EALG_MAX_BLOCK_LEN % sizeof (u_int32_t) != 0) {
108 1.1 jonathan u_int32_t temp = arc4random();
109 1.1 jonathan
110 1.1 jonathan bcopy (&temp, iv + i,
111 1.1 jonathan EALG_MAX_BLOCK_LEN - i);
112 1.1 jonathan }
113 1.1 jonathan }
114 1.1 jonathan
115 1.1 jonathan /* Do we need to write the IV */
116 1.1 jonathan if (!(crd->crd_flags & CRD_F_IV_PRESENT)) {
117 1.1 jonathan COPYBACK(outtype, buf, crd->crd_inject, blks, iv);
118 1.1 jonathan }
119 1.1 jonathan
120 1.1 jonathan } else { /* Decryption */
121 1.1 jonathan /* IV explicitly provided ? */
122 1.1 jonathan if (crd->crd_flags & CRD_F_IV_EXPLICIT)
123 1.1 jonathan bcopy(crd->crd_iv, iv, blks);
124 1.1 jonathan else {
125 1.1 jonathan /* Get IV off buf */
126 1.1 jonathan COPYDATA(outtype, buf, crd->crd_inject, blks, iv);
127 1.1 jonathan }
128 1.1 jonathan }
129 1.1 jonathan
130 1.1 jonathan ivp = iv;
131 1.1 jonathan
132 1.1 jonathan if (outtype == CRYPTO_BUF_CONTIG) {
133 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
134 1.1 jonathan for (i = crd->crd_skip;
135 1.1 jonathan i < crd->crd_skip + crd->crd_len; i += blks) {
136 1.1 jonathan /* XOR with the IV/previous block, as appropriate. */
137 1.1 jonathan if (i == crd->crd_skip)
138 1.1 jonathan for (k = 0; k < blks; k++)
139 1.1 jonathan buf[i + k] ^= ivp[k];
140 1.1 jonathan else
141 1.1 jonathan for (k = 0; k < blks; k++)
142 1.1 jonathan buf[i + k] ^= buf[i + k - blks];
143 1.1 jonathan exf->encrypt(sw->sw_kschedule, buf + i);
144 1.1 jonathan }
145 1.1 jonathan } else { /* Decrypt */
146 1.1 jonathan /*
147 1.1 jonathan * Start at the end, so we don't need to keep the encrypted
148 1.1 jonathan * block as the IV for the next block.
149 1.1 jonathan */
150 1.1 jonathan for (i = crd->crd_skip + crd->crd_len - blks;
151 1.1 jonathan i >= crd->crd_skip; i -= blks) {
152 1.1 jonathan exf->decrypt(sw->sw_kschedule, buf + i);
153 1.1 jonathan
154 1.1 jonathan /* XOR with the IV/previous block, as appropriate */
155 1.1 jonathan if (i == crd->crd_skip)
156 1.1 jonathan for (k = 0; k < blks; k++)
157 1.1 jonathan buf[i + k] ^= ivp[k];
158 1.1 jonathan else
159 1.1 jonathan for (k = 0; k < blks; k++)
160 1.1 jonathan buf[i + k] ^= buf[i + k - blks];
161 1.1 jonathan }
162 1.1 jonathan }
163 1.1 jonathan
164 1.1 jonathan return 0;
165 1.1 jonathan } else if (outtype == CRYPTO_BUF_MBUF) {
166 1.1 jonathan struct mbuf *m = (struct mbuf *) buf;
167 1.1 jonathan
168 1.1 jonathan /* Find beginning of data */
169 1.1 jonathan m = m_getptr(m, crd->crd_skip, &k);
170 1.1 jonathan if (m == NULL)
171 1.1 jonathan return EINVAL;
172 1.1 jonathan
173 1.1 jonathan i = crd->crd_len;
174 1.1 jonathan
175 1.1 jonathan while (i > 0) {
176 1.1 jonathan /*
177 1.1 jonathan * If there's insufficient data at the end of
178 1.1 jonathan * an mbuf, we have to do some copying.
179 1.1 jonathan */
180 1.1 jonathan if (m->m_len < k + blks && m->m_len != k) {
181 1.1 jonathan m_copydata(m, k, blks, blk);
182 1.1 jonathan
183 1.1 jonathan /* Actual encryption/decryption */
184 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
185 1.1 jonathan /* XOR with previous block */
186 1.1 jonathan for (j = 0; j < blks; j++)
187 1.1 jonathan blk[j] ^= ivp[j];
188 1.1 jonathan
189 1.1 jonathan exf->encrypt(sw->sw_kschedule, blk);
190 1.1 jonathan
191 1.1 jonathan /*
192 1.1 jonathan * Keep encrypted block for XOR'ing
193 1.1 jonathan * with next block
194 1.1 jonathan */
195 1.1 jonathan bcopy(blk, iv, blks);
196 1.1 jonathan ivp = iv;
197 1.1 jonathan } else { /* decrypt */
198 1.1 jonathan /*
199 1.1 jonathan * Keep encrypted block for XOR'ing
200 1.1 jonathan * with next block
201 1.1 jonathan */
202 1.1 jonathan if (ivp == iv)
203 1.1 jonathan bcopy(blk, piv, blks);
204 1.1 jonathan else
205 1.1 jonathan bcopy(blk, iv, blks);
206 1.1 jonathan
207 1.1 jonathan exf->decrypt(sw->sw_kschedule, blk);
208 1.1 jonathan
209 1.1 jonathan /* XOR with previous block */
210 1.1 jonathan for (j = 0; j < blks; j++)
211 1.1 jonathan blk[j] ^= ivp[j];
212 1.1 jonathan
213 1.1 jonathan if (ivp == iv)
214 1.1 jonathan bcopy(piv, iv, blks);
215 1.1 jonathan else
216 1.1 jonathan ivp = iv;
217 1.1 jonathan }
218 1.1 jonathan
219 1.1 jonathan /* Copy back decrypted block */
220 1.1 jonathan m_copyback(m, k, blks, blk);
221 1.1 jonathan
222 1.1 jonathan /* Advance pointer */
223 1.1 jonathan m = m_getptr(m, k + blks, &k);
224 1.1 jonathan if (m == NULL)
225 1.1 jonathan return EINVAL;
226 1.1 jonathan
227 1.1 jonathan i -= blks;
228 1.1 jonathan
229 1.1 jonathan /* Could be done... */
230 1.1 jonathan if (i == 0)
231 1.1 jonathan break;
232 1.1 jonathan }
233 1.1 jonathan
234 1.1 jonathan /* Skip possibly empty mbufs */
235 1.1 jonathan if (k == m->m_len) {
236 1.1 jonathan for (m = m->m_next; m && m->m_len == 0;
237 1.1 jonathan m = m->m_next)
238 1.1 jonathan ;
239 1.1 jonathan k = 0;
240 1.1 jonathan }
241 1.1 jonathan
242 1.1 jonathan /* Sanity check */
243 1.1 jonathan if (m == NULL)
244 1.1 jonathan return EINVAL;
245 1.1 jonathan
246 1.1 jonathan /*
247 1.1 jonathan * Warning: idat may point to garbage here, but
248 1.1 jonathan * we only use it in the while() loop, only if
249 1.1 jonathan * there are indeed enough data.
250 1.1 jonathan */
251 1.1 jonathan idat = mtod(m, unsigned char *) + k;
252 1.1 jonathan
253 1.1 jonathan while (m->m_len >= k + blks && i > 0) {
254 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
255 1.1 jonathan /* XOR with previous block/IV */
256 1.1 jonathan for (j = 0; j < blks; j++)
257 1.1 jonathan idat[j] ^= ivp[j];
258 1.1 jonathan
259 1.1 jonathan exf->encrypt(sw->sw_kschedule, idat);
260 1.1 jonathan ivp = idat;
261 1.1 jonathan } else { /* decrypt */
262 1.1 jonathan /*
263 1.1 jonathan * Keep encrypted block to be used
264 1.1 jonathan * in next block's processing.
265 1.1 jonathan */
266 1.1 jonathan if (ivp == iv)
267 1.1 jonathan bcopy(idat, piv, blks);
268 1.1 jonathan else
269 1.1 jonathan bcopy(idat, iv, blks);
270 1.1 jonathan
271 1.1 jonathan exf->decrypt(sw->sw_kschedule, idat);
272 1.1 jonathan
273 1.1 jonathan /* XOR with previous block/IV */
274 1.1 jonathan for (j = 0; j < blks; j++)
275 1.1 jonathan idat[j] ^= ivp[j];
276 1.1 jonathan
277 1.1 jonathan if (ivp == iv)
278 1.1 jonathan bcopy(piv, iv, blks);
279 1.1 jonathan else
280 1.1 jonathan ivp = iv;
281 1.1 jonathan }
282 1.1 jonathan
283 1.1 jonathan idat += blks;
284 1.1 jonathan k += blks;
285 1.1 jonathan i -= blks;
286 1.1 jonathan }
287 1.1 jonathan }
288 1.1 jonathan
289 1.1 jonathan return 0; /* Done with mbuf encryption/decryption */
290 1.1 jonathan } else if (outtype == CRYPTO_BUF_IOV) {
291 1.1 jonathan struct uio *uio = (struct uio *) buf;
292 1.1 jonathan
293 1.1 jonathan #ifdef __FreeBSD__
294 1.1 jonathan struct iovec *iov;
295 1.1 jonathan /* Find beginning of data */
296 1.1 jonathan iov = cuio_getptr(uio, crd->crd_skip, &k);
297 1.1 jonathan if (iov == NULL)
298 1.1 jonathan return EINVAL;
299 1.1 jonathan
300 1.1 jonathan i = crd->crd_len;
301 1.1 jonathan
302 1.1 jonathan while (i > 0) {
303 1.1 jonathan /*
304 1.1 jonathan * If there's insufficient data at the end of
305 1.1 jonathan * an iovec, we have to do some copying.
306 1.1 jonathan */
307 1.1 jonathan if (iov->iov_len < k + blks && iov->iov_len != k) {
308 1.1 jonathan cuio_copydata(uio, k, blks, blk);
309 1.1 jonathan
310 1.1 jonathan /* Actual encryption/decryption */
311 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
312 1.1 jonathan /* XOR with previous block */
313 1.1 jonathan for (j = 0; j < blks; j++)
314 1.1 jonathan blk[j] ^= ivp[j];
315 1.1 jonathan
316 1.1 jonathan exf->encrypt(sw->sw_kschedule, blk);
317 1.1 jonathan
318 1.1 jonathan /*
319 1.1 jonathan * Keep encrypted block for XOR'ing
320 1.1 jonathan * with next block
321 1.1 jonathan */
322 1.1 jonathan bcopy(blk, iv, blks);
323 1.1 jonathan ivp = iv;
324 1.1 jonathan } else { /* decrypt */
325 1.9 perry /*
326 1.1 jonathan * Keep encrypted block for XOR'ing
327 1.1 jonathan * with next block
328 1.1 jonathan */
329 1.1 jonathan if (ivp == iv)
330 1.1 jonathan bcopy(blk, piv, blks);
331 1.1 jonathan else
332 1.1 jonathan bcopy(blk, iv, blks);
333 1.1 jonathan
334 1.1 jonathan exf->decrypt(sw->sw_kschedule, blk);
335 1.1 jonathan
336 1.1 jonathan /* XOR with previous block */
337 1.1 jonathan for (j = 0; j < blks; j++)
338 1.1 jonathan blk[j] ^= ivp[j];
339 1.1 jonathan
340 1.1 jonathan if (ivp == iv)
341 1.1 jonathan bcopy(piv, iv, blks);
342 1.1 jonathan else
343 1.1 jonathan ivp = iv;
344 1.1 jonathan }
345 1.1 jonathan
346 1.1 jonathan /* Copy back decrypted block */
347 1.1 jonathan cuio_copyback(uio, k, blks, blk);
348 1.1 jonathan
349 1.1 jonathan /* Advance pointer */
350 1.1 jonathan iov = cuio_getptr(uio, k + blks, &k);
351 1.1 jonathan if (iov == NULL)
352 1.1 jonathan return EINVAL;
353 1.1 jonathan
354 1.1 jonathan i -= blks;
355 1.1 jonathan
356 1.1 jonathan /* Could be done... */
357 1.1 jonathan if (i == 0)
358 1.1 jonathan break;
359 1.1 jonathan }
360 1.1 jonathan
361 1.1 jonathan /*
362 1.1 jonathan * Warning: idat may point to garbage here, but
363 1.1 jonathan * we only use it in the while() loop, only if
364 1.1 jonathan * there are indeed enough data.
365 1.1 jonathan */
366 1.1 jonathan idat = (char *)iov->iov_base + k;
367 1.1 jonathan
368 1.1 jonathan while (iov->iov_len >= k + blks && i > 0) {
369 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
370 1.1 jonathan /* XOR with previous block/IV */
371 1.1 jonathan for (j = 0; j < blks; j++)
372 1.1 jonathan idat[j] ^= ivp[j];
373 1.1 jonathan
374 1.1 jonathan exf->encrypt(sw->sw_kschedule, idat);
375 1.1 jonathan ivp = idat;
376 1.1 jonathan } else { /* decrypt */
377 1.1 jonathan /*
378 1.1 jonathan * Keep encrypted block to be used
379 1.1 jonathan * in next block's processing.
380 1.1 jonathan */
381 1.1 jonathan if (ivp == iv)
382 1.1 jonathan bcopy(idat, piv, blks);
383 1.1 jonathan else
384 1.1 jonathan bcopy(idat, iv, blks);
385 1.1 jonathan
386 1.1 jonathan exf->decrypt(sw->sw_kschedule, idat);
387 1.1 jonathan
388 1.1 jonathan /* XOR with previous block/IV */
389 1.1 jonathan for (j = 0; j < blks; j++)
390 1.1 jonathan idat[j] ^= ivp[j];
391 1.1 jonathan
392 1.1 jonathan if (ivp == iv)
393 1.1 jonathan bcopy(piv, iv, blks);
394 1.1 jonathan else
395 1.1 jonathan ivp = iv;
396 1.1 jonathan }
397 1.1 jonathan
398 1.1 jonathan idat += blks;
399 1.1 jonathan k += blks;
400 1.1 jonathan i -= blks;
401 1.1 jonathan }
402 1.1 jonathan }
403 1.1 jonathan
404 1.1 jonathan return 0; /* Done with mbuf encryption/decryption */
405 1.1 jonathan #else /* !freebsd iov */
406 1.1 jonathan /* Find beginning of data */
407 1.1 jonathan count = crd->crd_skip;
408 1.1 jonathan ind = cuio_getptr(uio, count, &k);
409 1.1 jonathan if (ind == -1)
410 1.1 jonathan return EINVAL;
411 1.1 jonathan
412 1.1 jonathan i = crd->crd_len;
413 1.1 jonathan
414 1.1 jonathan while (i > 0) {
415 1.1 jonathan /*
416 1.1 jonathan * If there's insufficient data at the end,
417 1.1 jonathan * we have to do some copying.
418 1.1 jonathan */
419 1.1 jonathan if (uio->uio_iov[ind].iov_len < k + blks &&
420 1.1 jonathan uio->uio_iov[ind].iov_len != k) {
421 1.1 jonathan cuio_copydata(uio, k, blks, blk);
422 1.1 jonathan
423 1.1 jonathan /* Actual encryption/decryption */
424 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
425 1.1 jonathan /* XOR with previous block */
426 1.1 jonathan for (j = 0; j < blks; j++)
427 1.1 jonathan blk[j] ^= ivp[j];
428 1.1 jonathan
429 1.1 jonathan exf->encrypt(sw->sw_kschedule, blk);
430 1.1 jonathan
431 1.1 jonathan /*
432 1.1 jonathan * Keep encrypted block for XOR'ing
433 1.1 jonathan * with next block
434 1.1 jonathan */
435 1.1 jonathan bcopy(blk, iv, blks);
436 1.1 jonathan ivp = iv;
437 1.1 jonathan } else { /* decrypt */
438 1.1 jonathan /*
439 1.1 jonathan * Keep encrypted block for XOR'ing
440 1.1 jonathan * with next block
441 1.1 jonathan */
442 1.1 jonathan if (ivp == iv)
443 1.1 jonathan bcopy(blk, piv, blks);
444 1.1 jonathan else
445 1.1 jonathan bcopy(blk, iv, blks);
446 1.1 jonathan
447 1.1 jonathan exf->decrypt(sw->sw_kschedule, blk);
448 1.1 jonathan
449 1.1 jonathan /* XOR with previous block */
450 1.1 jonathan for (j = 0; j < blks; j++)
451 1.1 jonathan blk[j] ^= ivp[j];
452 1.1 jonathan
453 1.1 jonathan if (ivp == iv)
454 1.1 jonathan bcopy(piv, iv, blks);
455 1.1 jonathan else
456 1.1 jonathan ivp = iv;
457 1.1 jonathan }
458 1.1 jonathan
459 1.1 jonathan /* Copy back decrypted block */
460 1.1 jonathan cuio_copyback(uio, k, blks, blk);
461 1.1 jonathan
462 1.1 jonathan count += blks;
463 1.1 jonathan
464 1.1 jonathan /* Advance pointer */
465 1.1 jonathan ind = cuio_getptr(uio, count, &k);
466 1.1 jonathan if (ind == -1)
467 1.1 jonathan return (EINVAL);
468 1.1 jonathan
469 1.1 jonathan i -= blks;
470 1.1 jonathan
471 1.1 jonathan /* Could be done... */
472 1.1 jonathan if (i == 0)
473 1.1 jonathan break;
474 1.1 jonathan }
475 1.1 jonathan
476 1.1 jonathan /*
477 1.1 jonathan * Warning: idat may point to garbage here, but
478 1.1 jonathan * we only use it in the while() loop, only if
479 1.1 jonathan * there are indeed enough data.
480 1.1 jonathan */
481 1.1 jonathan idat = ((caddr_t)uio->uio_iov[ind].iov_base) + k;
482 1.1 jonathan
483 1.1 jonathan while (uio->uio_iov[ind].iov_len >= k + blks &&
484 1.1 jonathan i > 0) {
485 1.1 jonathan if (crd->crd_flags & CRD_F_ENCRYPT) {
486 1.1 jonathan /* XOR with previous block/IV */
487 1.1 jonathan for (j = 0; j < blks; j++)
488 1.1 jonathan idat[j] ^= ivp[j];
489 1.1 jonathan
490 1.1 jonathan exf->encrypt(sw->sw_kschedule, idat);
491 1.1 jonathan ivp = idat;
492 1.1 jonathan } else { /* decrypt */
493 1.1 jonathan /*
494 1.1 jonathan * Keep encrypted block to be used
495 1.1 jonathan * in next block's processing.
496 1.1 jonathan */
497 1.1 jonathan if (ivp == iv)
498 1.1 jonathan bcopy(idat, piv, blks);
499 1.1 jonathan else
500 1.1 jonathan bcopy(idat, iv, blks);
501 1.1 jonathan
502 1.1 jonathan exf->decrypt(sw->sw_kschedule, idat);
503 1.1 jonathan
504 1.1 jonathan /* XOR with previous block/IV */
505 1.1 jonathan for (j = 0; j < blks; j++)
506 1.1 jonathan idat[j] ^= ivp[j];
507 1.1 jonathan
508 1.1 jonathan if (ivp == iv)
509 1.1 jonathan bcopy(piv, iv, blks);
510 1.1 jonathan else
511 1.1 jonathan ivp = iv;
512 1.1 jonathan }
513 1.1 jonathan
514 1.1 jonathan idat += blks;
515 1.1 jonathan count += blks;
516 1.1 jonathan k += blks;
517 1.1 jonathan i -= blks;
518 1.1 jonathan }
519 1.1 jonathan }
520 1.9 perry #endif
521 1.1 jonathan return 0; /* Done with mbuf encryption/decryption */
522 1.1 jonathan }
523 1.1 jonathan
524 1.1 jonathan /* Unreachable */
525 1.1 jonathan return EINVAL;
526 1.1 jonathan }
527 1.1 jonathan
528 1.1 jonathan /*
529 1.1 jonathan * Compute keyed-hash authenticator.
530 1.1 jonathan */
531 1.16 daniel int
532 1.1 jonathan swcr_authcompute(struct cryptop *crp, struct cryptodesc *crd,
533 1.1 jonathan struct swcr_data *sw, caddr_t buf, int outtype)
534 1.1 jonathan {
535 1.1 jonathan unsigned char aalg[AALG_MAX_RESULT_LEN];
536 1.10 thorpej const struct swcr_auth_hash *axf;
537 1.1 jonathan union authctx ctx;
538 1.1 jonathan int err;
539 1.1 jonathan
540 1.1 jonathan if (sw->sw_ictx == 0)
541 1.1 jonathan return EINVAL;
542 1.1 jonathan
543 1.1 jonathan axf = sw->sw_axf;
544 1.1 jonathan
545 1.10 thorpej bcopy(sw->sw_ictx, &ctx, axf->auth_hash->ctxsize);
546 1.1 jonathan
547 1.1 jonathan switch (outtype) {
548 1.1 jonathan case CRYPTO_BUF_CONTIG:
549 1.1 jonathan axf->Update(&ctx, buf + crd->crd_skip, crd->crd_len);
550 1.1 jonathan break;
551 1.1 jonathan case CRYPTO_BUF_MBUF:
552 1.1 jonathan err = m_apply((struct mbuf *) buf, crd->crd_skip, crd->crd_len,
553 1.3 jonathan (int (*)(void*, caddr_t, unsigned int)) axf->Update,
554 1.1 jonathan (caddr_t) &ctx);
555 1.1 jonathan if (err)
556 1.1 jonathan return err;
557 1.1 jonathan break;
558 1.1 jonathan case CRYPTO_BUF_IOV:
559 1.2 jonathan #ifdef __FreeBSD__
560 1.2 jonathan /*XXX FIXME: handle iov case*/
561 1.2 jonathan return EINVAL;
562 1.2 jonathan #else
563 1.2 jonathan err = cuio_apply((struct uio *) buf, crd->crd_skip,
564 1.2 jonathan crd->crd_len,
565 1.2 jonathan (int (*)(caddr_t, caddr_t, unsigned int)) axf->Update,
566 1.2 jonathan (caddr_t) &ctx);
567 1.2 jonathan if (err) {
568 1.2 jonathan return err;
569 1.2 jonathan }
570 1.2 jonathan #endif
571 1.2 jonathan break;
572 1.1 jonathan default:
573 1.1 jonathan return EINVAL;
574 1.1 jonathan }
575 1.1 jonathan
576 1.1 jonathan switch (sw->sw_alg) {
577 1.1 jonathan case CRYPTO_MD5_HMAC:
578 1.1 jonathan case CRYPTO_SHA1_HMAC:
579 1.1 jonathan case CRYPTO_SHA2_HMAC:
580 1.1 jonathan case CRYPTO_RIPEMD160_HMAC:
581 1.1 jonathan if (sw->sw_octx == NULL)
582 1.1 jonathan return EINVAL;
583 1.1 jonathan
584 1.1 jonathan axf->Final(aalg, &ctx);
585 1.10 thorpej bcopy(sw->sw_octx, &ctx, axf->auth_hash->ctxsize);
586 1.10 thorpej axf->Update(&ctx, aalg, axf->auth_hash->hashsize);
587 1.1 jonathan axf->Final(aalg, &ctx);
588 1.1 jonathan break;
589 1.1 jonathan
590 1.1 jonathan case CRYPTO_MD5_KPDK:
591 1.1 jonathan case CRYPTO_SHA1_KPDK:
592 1.1 jonathan if (sw->sw_octx == NULL)
593 1.1 jonathan return EINVAL;
594 1.1 jonathan
595 1.1 jonathan axf->Update(&ctx, sw->sw_octx, sw->sw_klen);
596 1.1 jonathan axf->Final(aalg, &ctx);
597 1.1 jonathan break;
598 1.1 jonathan
599 1.1 jonathan case CRYPTO_NULL_HMAC:
600 1.1 jonathan case CRYPTO_MD5:
601 1.1 jonathan case CRYPTO_SHA1:
602 1.1 jonathan axf->Final(aalg, &ctx);
603 1.1 jonathan break;
604 1.1 jonathan }
605 1.1 jonathan
606 1.1 jonathan /* Inject the authentication data */
607 1.2 jonathan switch (outtype) {
608 1.2 jonathan case CRYPTO_BUF_CONTIG:
609 1.10 thorpej bcopy(aalg, buf + crd->crd_inject, axf->auth_hash->authsize);
610 1.2 jonathan break;
611 1.2 jonathan case CRYPTO_BUF_MBUF:
612 1.1 jonathan m_copyback((struct mbuf *) buf, crd->crd_inject,
613 1.10 thorpej axf->auth_hash->authsize, aalg);
614 1.2 jonathan break;
615 1.2 jonathan case CRYPTO_BUF_IOV:
616 1.10 thorpej bcopy(aalg, crp->crp_mac, axf->auth_hash->authsize);
617 1.2 jonathan break;
618 1.2 jonathan default:
619 1.2 jonathan return EINVAL;
620 1.2 jonathan }
621 1.1 jonathan return 0;
622 1.1 jonathan }
623 1.1 jonathan
624 1.1 jonathan /*
625 1.1 jonathan * Apply a compression/decompression algorithm
626 1.1 jonathan */
627 1.1 jonathan static int
628 1.1 jonathan swcr_compdec(struct cryptodesc *crd, struct swcr_data *sw,
629 1.1 jonathan caddr_t buf, int outtype)
630 1.1 jonathan {
631 1.1 jonathan u_int8_t *data, *out;
632 1.10 thorpej const struct swcr_comp_algo *cxf;
633 1.1 jonathan int adj;
634 1.1 jonathan u_int32_t result;
635 1.1 jonathan
636 1.1 jonathan cxf = sw->sw_cxf;
637 1.1 jonathan
638 1.1 jonathan /* We must handle the whole buffer of data in one time
639 1.1 jonathan * then if there is not all the data in the mbuf, we must
640 1.1 jonathan * copy in a buffer.
641 1.1 jonathan */
642 1.1 jonathan
643 1.12 christos data = malloc(crd->crd_len, M_CRYPTO_DATA, M_NOWAIT);
644 1.1 jonathan if (data == NULL)
645 1.1 jonathan return (EINVAL);
646 1.1 jonathan COPYDATA(outtype, buf, crd->crd_skip, crd->crd_len, data);
647 1.1 jonathan
648 1.1 jonathan if (crd->crd_flags & CRD_F_COMP)
649 1.1 jonathan result = cxf->compress(data, crd->crd_len, &out);
650 1.1 jonathan else
651 1.1 jonathan result = cxf->decompress(data, crd->crd_len, &out);
652 1.1 jonathan
653 1.1 jonathan FREE(data, M_CRYPTO_DATA);
654 1.1 jonathan if (result == 0)
655 1.1 jonathan return EINVAL;
656 1.1 jonathan
657 1.1 jonathan /* Copy back the (de)compressed data. m_copyback is
658 1.1 jonathan * extending the mbuf as necessary.
659 1.1 jonathan */
660 1.1 jonathan sw->sw_size = result;
661 1.1 jonathan /* Check the compressed size when doing compression */
662 1.1 jonathan if (crd->crd_flags & CRD_F_COMP) {
663 1.1 jonathan if (result > crd->crd_len) {
664 1.1 jonathan /* Compression was useless, we lost time */
665 1.1 jonathan FREE(out, M_CRYPTO_DATA);
666 1.1 jonathan return 0;
667 1.1 jonathan }
668 1.1 jonathan }
669 1.1 jonathan
670 1.1 jonathan COPYBACK(outtype, buf, crd->crd_skip, result, out);
671 1.1 jonathan if (result < crd->crd_len) {
672 1.1 jonathan adj = result - crd->crd_len;
673 1.1 jonathan if (outtype == CRYPTO_BUF_MBUF) {
674 1.1 jonathan adj = result - crd->crd_len;
675 1.1 jonathan m_adj((struct mbuf *)buf, adj);
676 1.1 jonathan } else {
677 1.1 jonathan struct uio *uio = (struct uio *)buf;
678 1.1 jonathan int ind;
679 1.1 jonathan
680 1.1 jonathan adj = crd->crd_len - result;
681 1.1 jonathan ind = uio->uio_iovcnt - 1;
682 1.1 jonathan
683 1.1 jonathan while (adj > 0 && ind >= 0) {
684 1.1 jonathan if (adj < uio->uio_iov[ind].iov_len) {
685 1.1 jonathan uio->uio_iov[ind].iov_len -= adj;
686 1.1 jonathan break;
687 1.1 jonathan }
688 1.1 jonathan
689 1.1 jonathan adj -= uio->uio_iov[ind].iov_len;
690 1.1 jonathan uio->uio_iov[ind].iov_len = 0;
691 1.1 jonathan ind--;
692 1.1 jonathan uio->uio_iovcnt--;
693 1.1 jonathan }
694 1.1 jonathan }
695 1.1 jonathan }
696 1.1 jonathan FREE(out, M_CRYPTO_DATA);
697 1.1 jonathan return 0;
698 1.1 jonathan }
699 1.1 jonathan
700 1.1 jonathan /*
701 1.1 jonathan * Generate a new software session.
702 1.1 jonathan */
703 1.1 jonathan static int
704 1.15 christos swcr_newsession(void *arg, u_int32_t *sid, struct cryptoini *cri)
705 1.1 jonathan {
706 1.1 jonathan struct swcr_data **swd;
707 1.10 thorpej const struct swcr_auth_hash *axf;
708 1.10 thorpej const struct swcr_enc_xform *txf;
709 1.10 thorpej const struct swcr_comp_algo *cxf;
710 1.1 jonathan u_int32_t i;
711 1.1 jonathan int k, error;
712 1.1 jonathan
713 1.1 jonathan if (sid == NULL || cri == NULL)
714 1.1 jonathan return EINVAL;
715 1.1 jonathan
716 1.1 jonathan if (swcr_sessions) {
717 1.1 jonathan for (i = 1; i < swcr_sesnum; i++)
718 1.1 jonathan if (swcr_sessions[i] == NULL)
719 1.1 jonathan break;
720 1.1 jonathan } else
721 1.1 jonathan i = 1; /* NB: to silence compiler warning */
722 1.1 jonathan
723 1.1 jonathan if (swcr_sessions == NULL || i == swcr_sesnum) {
724 1.1 jonathan if (swcr_sessions == NULL) {
725 1.1 jonathan i = 1; /* We leave swcr_sessions[0] empty */
726 1.1 jonathan swcr_sesnum = CRYPTO_SW_SESSIONS;
727 1.1 jonathan } else
728 1.1 jonathan swcr_sesnum *= 2;
729 1.1 jonathan
730 1.1 jonathan swd = malloc(swcr_sesnum * sizeof(struct swcr_data *),
731 1.1 jonathan M_CRYPTO_DATA, M_NOWAIT);
732 1.1 jonathan if (swd == NULL) {
733 1.1 jonathan /* Reset session number */
734 1.1 jonathan if (swcr_sesnum == CRYPTO_SW_SESSIONS)
735 1.1 jonathan swcr_sesnum = 0;
736 1.1 jonathan else
737 1.1 jonathan swcr_sesnum /= 2;
738 1.1 jonathan return ENOBUFS;
739 1.1 jonathan }
740 1.1 jonathan
741 1.1 jonathan bzero(swd, swcr_sesnum * sizeof(struct swcr_data *));
742 1.1 jonathan
743 1.1 jonathan /* Copy existing sessions */
744 1.1 jonathan if (swcr_sessions) {
745 1.1 jonathan bcopy(swcr_sessions, swd,
746 1.1 jonathan (swcr_sesnum / 2) * sizeof(struct swcr_data *));
747 1.1 jonathan free(swcr_sessions, M_CRYPTO_DATA);
748 1.1 jonathan }
749 1.1 jonathan
750 1.1 jonathan swcr_sessions = swd;
751 1.1 jonathan }
752 1.1 jonathan
753 1.1 jonathan swd = &swcr_sessions[i];
754 1.1 jonathan *sid = i;
755 1.1 jonathan
756 1.1 jonathan while (cri) {
757 1.13 dsl *swd = malloc(sizeof **swd, M_CRYPTO_DATA, M_NOWAIT);
758 1.1 jonathan if (*swd == NULL) {
759 1.1 jonathan swcr_freesession(NULL, i);
760 1.1 jonathan return ENOBUFS;
761 1.1 jonathan }
762 1.1 jonathan bzero(*swd, sizeof(struct swcr_data));
763 1.1 jonathan
764 1.1 jonathan switch (cri->cri_alg) {
765 1.1 jonathan case CRYPTO_DES_CBC:
766 1.10 thorpej txf = &swcr_enc_xform_des;
767 1.1 jonathan goto enccommon;
768 1.1 jonathan case CRYPTO_3DES_CBC:
769 1.10 thorpej txf = &swcr_enc_xform_3des;
770 1.1 jonathan goto enccommon;
771 1.1 jonathan case CRYPTO_BLF_CBC:
772 1.10 thorpej txf = &swcr_enc_xform_blf;
773 1.1 jonathan goto enccommon;
774 1.1 jonathan case CRYPTO_CAST_CBC:
775 1.10 thorpej txf = &swcr_enc_xform_cast5;
776 1.1 jonathan goto enccommon;
777 1.1 jonathan case CRYPTO_SKIPJACK_CBC:
778 1.10 thorpej txf = &swcr_enc_xform_skipjack;
779 1.1 jonathan goto enccommon;
780 1.1 jonathan case CRYPTO_RIJNDAEL128_CBC:
781 1.10 thorpej txf = &swcr_enc_xform_rijndael128;
782 1.1 jonathan goto enccommon;
783 1.1 jonathan case CRYPTO_NULL_CBC:
784 1.10 thorpej txf = &swcr_enc_xform_null;
785 1.1 jonathan goto enccommon;
786 1.1 jonathan enccommon:
787 1.1 jonathan error = txf->setkey(&((*swd)->sw_kschedule),
788 1.1 jonathan cri->cri_key, cri->cri_klen / 8);
789 1.1 jonathan if (error) {
790 1.1 jonathan swcr_freesession(NULL, i);
791 1.1 jonathan return error;
792 1.1 jonathan }
793 1.1 jonathan (*swd)->sw_exf = txf;
794 1.1 jonathan break;
795 1.1 jonathan
796 1.1 jonathan case CRYPTO_MD5_HMAC:
797 1.10 thorpej axf = &swcr_auth_hash_hmac_md5_96;
798 1.1 jonathan goto authcommon;
799 1.1 jonathan case CRYPTO_SHA1_HMAC:
800 1.10 thorpej axf = &swcr_auth_hash_hmac_sha1_96;
801 1.1 jonathan goto authcommon;
802 1.1 jonathan case CRYPTO_SHA2_HMAC:
803 1.1 jonathan if (cri->cri_klen == 256)
804 1.10 thorpej axf = &swcr_auth_hash_hmac_sha2_256;
805 1.1 jonathan else if (cri->cri_klen == 384)
806 1.10 thorpej axf = &swcr_auth_hash_hmac_sha2_384;
807 1.1 jonathan else if (cri->cri_klen == 512)
808 1.10 thorpej axf = &swcr_auth_hash_hmac_sha2_512;
809 1.1 jonathan else {
810 1.1 jonathan swcr_freesession(NULL, i);
811 1.1 jonathan return EINVAL;
812 1.1 jonathan }
813 1.1 jonathan goto authcommon;
814 1.1 jonathan case CRYPTO_NULL_HMAC:
815 1.10 thorpej axf = &swcr_auth_hash_null;
816 1.1 jonathan goto authcommon;
817 1.1 jonathan case CRYPTO_RIPEMD160_HMAC:
818 1.10 thorpej axf = &swcr_auth_hash_hmac_ripemd_160_96;
819 1.1 jonathan authcommon:
820 1.10 thorpej (*swd)->sw_ictx = malloc(axf->auth_hash->ctxsize,
821 1.10 thorpej M_CRYPTO_DATA, M_NOWAIT);
822 1.1 jonathan if ((*swd)->sw_ictx == NULL) {
823 1.1 jonathan swcr_freesession(NULL, i);
824 1.1 jonathan return ENOBUFS;
825 1.1 jonathan }
826 1.1 jonathan
827 1.10 thorpej (*swd)->sw_octx = malloc(axf->auth_hash->ctxsize,
828 1.10 thorpej M_CRYPTO_DATA, M_NOWAIT);
829 1.1 jonathan if ((*swd)->sw_octx == NULL) {
830 1.1 jonathan swcr_freesession(NULL, i);
831 1.1 jonathan return ENOBUFS;
832 1.1 jonathan }
833 1.1 jonathan
834 1.1 jonathan for (k = 0; k < cri->cri_klen / 8; k++)
835 1.1 jonathan cri->cri_key[k] ^= HMAC_IPAD_VAL;
836 1.1 jonathan
837 1.1 jonathan axf->Init((*swd)->sw_ictx);
838 1.1 jonathan axf->Update((*swd)->sw_ictx, cri->cri_key,
839 1.1 jonathan cri->cri_klen / 8);
840 1.1 jonathan axf->Update((*swd)->sw_ictx, hmac_ipad_buffer,
841 1.1 jonathan HMAC_BLOCK_LEN - (cri->cri_klen / 8));
842 1.1 jonathan
843 1.1 jonathan for (k = 0; k < cri->cri_klen / 8; k++)
844 1.1 jonathan cri->cri_key[k] ^= (HMAC_IPAD_VAL ^ HMAC_OPAD_VAL);
845 1.1 jonathan
846 1.1 jonathan axf->Init((*swd)->sw_octx);
847 1.1 jonathan axf->Update((*swd)->sw_octx, cri->cri_key,
848 1.1 jonathan cri->cri_klen / 8);
849 1.1 jonathan axf->Update((*swd)->sw_octx, hmac_opad_buffer,
850 1.1 jonathan HMAC_BLOCK_LEN - (cri->cri_klen / 8));
851 1.1 jonathan
852 1.1 jonathan for (k = 0; k < cri->cri_klen / 8; k++)
853 1.1 jonathan cri->cri_key[k] ^= HMAC_OPAD_VAL;
854 1.1 jonathan (*swd)->sw_axf = axf;
855 1.1 jonathan break;
856 1.1 jonathan
857 1.1 jonathan case CRYPTO_MD5_KPDK:
858 1.10 thorpej axf = &swcr_auth_hash_key_md5;
859 1.1 jonathan goto auth2common;
860 1.1 jonathan
861 1.1 jonathan case CRYPTO_SHA1_KPDK:
862 1.10 thorpej axf = &swcr_auth_hash_key_sha1;
863 1.1 jonathan auth2common:
864 1.10 thorpej (*swd)->sw_ictx = malloc(axf->auth_hash->ctxsize,
865 1.10 thorpej M_CRYPTO_DATA, M_NOWAIT);
866 1.1 jonathan if ((*swd)->sw_ictx == NULL) {
867 1.1 jonathan swcr_freesession(NULL, i);
868 1.1 jonathan return ENOBUFS;
869 1.1 jonathan }
870 1.1 jonathan
871 1.1 jonathan /* Store the key so we can "append" it to the payload */
872 1.1 jonathan (*swd)->sw_octx = malloc(cri->cri_klen / 8, M_CRYPTO_DATA,
873 1.1 jonathan M_NOWAIT);
874 1.1 jonathan if ((*swd)->sw_octx == NULL) {
875 1.1 jonathan swcr_freesession(NULL, i);
876 1.1 jonathan return ENOBUFS;
877 1.1 jonathan }
878 1.1 jonathan
879 1.1 jonathan (*swd)->sw_klen = cri->cri_klen / 8;
880 1.1 jonathan bcopy(cri->cri_key, (*swd)->sw_octx, cri->cri_klen / 8);
881 1.1 jonathan axf->Init((*swd)->sw_ictx);
882 1.1 jonathan axf->Update((*swd)->sw_ictx, cri->cri_key,
883 1.1 jonathan cri->cri_klen / 8);
884 1.1 jonathan axf->Final(NULL, (*swd)->sw_ictx);
885 1.1 jonathan (*swd)->sw_axf = axf;
886 1.1 jonathan break;
887 1.1 jonathan
888 1.1 jonathan case CRYPTO_MD5:
889 1.10 thorpej axf = &swcr_auth_hash_md5;
890 1.1 jonathan goto auth3common;
891 1.1 jonathan
892 1.1 jonathan case CRYPTO_SHA1:
893 1.10 thorpej axf = &swcr_auth_hash_sha1;
894 1.1 jonathan auth3common:
895 1.10 thorpej (*swd)->sw_ictx = malloc(axf->auth_hash->ctxsize,
896 1.10 thorpej M_CRYPTO_DATA, M_NOWAIT);
897 1.1 jonathan if ((*swd)->sw_ictx == NULL) {
898 1.1 jonathan swcr_freesession(NULL, i);
899 1.1 jonathan return ENOBUFS;
900 1.1 jonathan }
901 1.1 jonathan
902 1.1 jonathan axf->Init((*swd)->sw_ictx);
903 1.1 jonathan (*swd)->sw_axf = axf;
904 1.1 jonathan break;
905 1.1 jonathan
906 1.1 jonathan case CRYPTO_DEFLATE_COMP:
907 1.10 thorpej cxf = &swcr_comp_algo_deflate;
908 1.1 jonathan (*swd)->sw_cxf = cxf;
909 1.1 jonathan break;
910 1.1 jonathan default:
911 1.1 jonathan swcr_freesession(NULL, i);
912 1.1 jonathan return EINVAL;
913 1.1 jonathan }
914 1.1 jonathan
915 1.1 jonathan (*swd)->sw_alg = cri->cri_alg;
916 1.1 jonathan cri = cri->cri_next;
917 1.1 jonathan swd = &((*swd)->sw_next);
918 1.1 jonathan }
919 1.1 jonathan return 0;
920 1.1 jonathan }
921 1.1 jonathan
922 1.1 jonathan /*
923 1.1 jonathan * Free a session.
924 1.1 jonathan */
925 1.1 jonathan static int
926 1.15 christos swcr_freesession(void *arg, u_int64_t tid)
927 1.1 jonathan {
928 1.1 jonathan struct swcr_data *swd;
929 1.10 thorpej const struct swcr_enc_xform *txf;
930 1.10 thorpej const struct swcr_auth_hash *axf;
931 1.10 thorpej const struct swcr_comp_algo *cxf;
932 1.1 jonathan u_int32_t sid = ((u_int32_t) tid) & 0xffffffff;
933 1.1 jonathan
934 1.1 jonathan if (sid > swcr_sesnum || swcr_sessions == NULL ||
935 1.1 jonathan swcr_sessions[sid] == NULL)
936 1.1 jonathan return EINVAL;
937 1.1 jonathan
938 1.1 jonathan /* Silently accept and return */
939 1.1 jonathan if (sid == 0)
940 1.1 jonathan return 0;
941 1.1 jonathan
942 1.1 jonathan while ((swd = swcr_sessions[sid]) != NULL) {
943 1.1 jonathan swcr_sessions[sid] = swd->sw_next;
944 1.1 jonathan
945 1.1 jonathan switch (swd->sw_alg) {
946 1.1 jonathan case CRYPTO_DES_CBC:
947 1.1 jonathan case CRYPTO_3DES_CBC:
948 1.1 jonathan case CRYPTO_BLF_CBC:
949 1.1 jonathan case CRYPTO_CAST_CBC:
950 1.1 jonathan case CRYPTO_SKIPJACK_CBC:
951 1.1 jonathan case CRYPTO_RIJNDAEL128_CBC:
952 1.1 jonathan case CRYPTO_NULL_CBC:
953 1.1 jonathan txf = swd->sw_exf;
954 1.1 jonathan
955 1.1 jonathan if (swd->sw_kschedule)
956 1.1 jonathan txf->zerokey(&(swd->sw_kschedule));
957 1.1 jonathan break;
958 1.1 jonathan
959 1.1 jonathan case CRYPTO_MD5_HMAC:
960 1.1 jonathan case CRYPTO_SHA1_HMAC:
961 1.1 jonathan case CRYPTO_SHA2_HMAC:
962 1.1 jonathan case CRYPTO_RIPEMD160_HMAC:
963 1.1 jonathan case CRYPTO_NULL_HMAC:
964 1.1 jonathan axf = swd->sw_axf;
965 1.1 jonathan
966 1.1 jonathan if (swd->sw_ictx) {
967 1.10 thorpej bzero(swd->sw_ictx, axf->auth_hash->ctxsize);
968 1.1 jonathan free(swd->sw_ictx, M_CRYPTO_DATA);
969 1.1 jonathan }
970 1.1 jonathan if (swd->sw_octx) {
971 1.10 thorpej bzero(swd->sw_octx, axf->auth_hash->ctxsize);
972 1.1 jonathan free(swd->sw_octx, M_CRYPTO_DATA);
973 1.1 jonathan }
974 1.1 jonathan break;
975 1.1 jonathan
976 1.1 jonathan case CRYPTO_MD5_KPDK:
977 1.1 jonathan case CRYPTO_SHA1_KPDK:
978 1.1 jonathan axf = swd->sw_axf;
979 1.1 jonathan
980 1.1 jonathan if (swd->sw_ictx) {
981 1.10 thorpej bzero(swd->sw_ictx, axf->auth_hash->ctxsize);
982 1.1 jonathan free(swd->sw_ictx, M_CRYPTO_DATA);
983 1.1 jonathan }
984 1.1 jonathan if (swd->sw_octx) {
985 1.1 jonathan bzero(swd->sw_octx, swd->sw_klen);
986 1.1 jonathan free(swd->sw_octx, M_CRYPTO_DATA);
987 1.1 jonathan }
988 1.1 jonathan break;
989 1.1 jonathan
990 1.1 jonathan case CRYPTO_MD5:
991 1.1 jonathan case CRYPTO_SHA1:
992 1.1 jonathan axf = swd->sw_axf;
993 1.1 jonathan
994 1.1 jonathan if (swd->sw_ictx)
995 1.1 jonathan free(swd->sw_ictx, M_CRYPTO_DATA);
996 1.1 jonathan break;
997 1.1 jonathan
998 1.1 jonathan case CRYPTO_DEFLATE_COMP:
999 1.1 jonathan cxf = swd->sw_cxf;
1000 1.1 jonathan break;
1001 1.1 jonathan }
1002 1.1 jonathan
1003 1.1 jonathan FREE(swd, M_CRYPTO_DATA);
1004 1.1 jonathan }
1005 1.1 jonathan return 0;
1006 1.1 jonathan }
1007 1.1 jonathan
1008 1.1 jonathan /*
1009 1.1 jonathan * Process a software request.
1010 1.1 jonathan */
1011 1.1 jonathan static int
1012 1.15 christos swcr_process(void *arg, struct cryptop *crp, int hint)
1013 1.1 jonathan {
1014 1.1 jonathan struct cryptodesc *crd;
1015 1.1 jonathan struct swcr_data *sw;
1016 1.1 jonathan u_int32_t lid;
1017 1.1 jonathan int type;
1018 1.1 jonathan
1019 1.1 jonathan /* Sanity check */
1020 1.1 jonathan if (crp == NULL)
1021 1.1 jonathan return EINVAL;
1022 1.1 jonathan
1023 1.1 jonathan if (crp->crp_desc == NULL || crp->crp_buf == NULL) {
1024 1.1 jonathan crp->crp_etype = EINVAL;
1025 1.1 jonathan goto done;
1026 1.1 jonathan }
1027 1.1 jonathan
1028 1.1 jonathan lid = crp->crp_sid & 0xffffffff;
1029 1.1 jonathan if (lid >= swcr_sesnum || lid == 0 || swcr_sessions[lid] == NULL) {
1030 1.1 jonathan crp->crp_etype = ENOENT;
1031 1.1 jonathan goto done;
1032 1.1 jonathan }
1033 1.1 jonathan
1034 1.1 jonathan if (crp->crp_flags & CRYPTO_F_IMBUF) {
1035 1.1 jonathan type = CRYPTO_BUF_MBUF;
1036 1.1 jonathan } else if (crp->crp_flags & CRYPTO_F_IOV) {
1037 1.1 jonathan type = CRYPTO_BUF_IOV;
1038 1.1 jonathan } else {
1039 1.1 jonathan type = CRYPTO_BUF_CONTIG;
1040 1.1 jonathan }
1041 1.1 jonathan
1042 1.1 jonathan /* Go through crypto descriptors, processing as we go */
1043 1.1 jonathan for (crd = crp->crp_desc; crd; crd = crd->crd_next) {
1044 1.1 jonathan /*
1045 1.1 jonathan * Find the crypto context.
1046 1.1 jonathan *
1047 1.1 jonathan * XXX Note that the logic here prevents us from having
1048 1.1 jonathan * XXX the same algorithm multiple times in a session
1049 1.1 jonathan * XXX (or rather, we can but it won't give us the right
1050 1.1 jonathan * XXX results). To do that, we'd need some way of differentiating
1051 1.1 jonathan * XXX between the various instances of an algorithm (so we can
1052 1.1 jonathan * XXX locate the correct crypto context).
1053 1.1 jonathan */
1054 1.1 jonathan for (sw = swcr_sessions[lid];
1055 1.1 jonathan sw && sw->sw_alg != crd->crd_alg;
1056 1.1 jonathan sw = sw->sw_next)
1057 1.1 jonathan ;
1058 1.1 jonathan
1059 1.1 jonathan /* No such context ? */
1060 1.1 jonathan if (sw == NULL) {
1061 1.1 jonathan crp->crp_etype = EINVAL;
1062 1.1 jonathan goto done;
1063 1.1 jonathan }
1064 1.1 jonathan
1065 1.1 jonathan switch (sw->sw_alg) {
1066 1.1 jonathan case CRYPTO_DES_CBC:
1067 1.1 jonathan case CRYPTO_3DES_CBC:
1068 1.1 jonathan case CRYPTO_BLF_CBC:
1069 1.1 jonathan case CRYPTO_CAST_CBC:
1070 1.1 jonathan case CRYPTO_SKIPJACK_CBC:
1071 1.1 jonathan case CRYPTO_RIJNDAEL128_CBC:
1072 1.1 jonathan if ((crp->crp_etype = swcr_encdec(crd, sw,
1073 1.1 jonathan crp->crp_buf, type)) != 0)
1074 1.1 jonathan goto done;
1075 1.1 jonathan break;
1076 1.1 jonathan case CRYPTO_NULL_CBC:
1077 1.1 jonathan crp->crp_etype = 0;
1078 1.1 jonathan break;
1079 1.1 jonathan case CRYPTO_MD5_HMAC:
1080 1.1 jonathan case CRYPTO_SHA1_HMAC:
1081 1.1 jonathan case CRYPTO_SHA2_HMAC:
1082 1.1 jonathan case CRYPTO_RIPEMD160_HMAC:
1083 1.1 jonathan case CRYPTO_NULL_HMAC:
1084 1.1 jonathan case CRYPTO_MD5_KPDK:
1085 1.1 jonathan case CRYPTO_SHA1_KPDK:
1086 1.1 jonathan case CRYPTO_MD5:
1087 1.1 jonathan case CRYPTO_SHA1:
1088 1.1 jonathan if ((crp->crp_etype = swcr_authcompute(crp, crd, sw,
1089 1.1 jonathan crp->crp_buf, type)) != 0)
1090 1.1 jonathan goto done;
1091 1.1 jonathan break;
1092 1.1 jonathan
1093 1.1 jonathan case CRYPTO_DEFLATE_COMP:
1094 1.9 perry if ((crp->crp_etype = swcr_compdec(crd, sw,
1095 1.1 jonathan crp->crp_buf, type)) != 0)
1096 1.1 jonathan goto done;
1097 1.1 jonathan else
1098 1.1 jonathan crp->crp_olen = (int)sw->sw_size;
1099 1.1 jonathan break;
1100 1.1 jonathan
1101 1.1 jonathan default:
1102 1.1 jonathan /* Unknown/unsupported algorithm */
1103 1.1 jonathan crp->crp_etype = EINVAL;
1104 1.1 jonathan goto done;
1105 1.1 jonathan }
1106 1.1 jonathan }
1107 1.1 jonathan
1108 1.1 jonathan done:
1109 1.1 jonathan crypto_done(crp);
1110 1.1 jonathan return 0;
1111 1.1 jonathan }
1112 1.1 jonathan
1113 1.10 thorpej static void
1114 1.1 jonathan swcr_init(void)
1115 1.1 jonathan {
1116 1.1 jonathan swcr_id = crypto_get_driverid(CRYPTOCAP_F_SOFTWARE);
1117 1.1 jonathan if (swcr_id < 0) {
1118 1.1 jonathan /* This should never happen */
1119 1.1 jonathan panic("Software crypto device cannot initialize!");
1120 1.1 jonathan }
1121 1.1 jonathan
1122 1.1 jonathan crypto_register(swcr_id, CRYPTO_DES_CBC,
1123 1.1 jonathan 0, 0, swcr_newsession, swcr_freesession, swcr_process, NULL);
1124 1.1 jonathan #define REGISTER(alg) \
1125 1.1 jonathan crypto_register(swcr_id, alg, 0, 0, NULL, NULL, NULL, NULL)
1126 1.1 jonathan
1127 1.1 jonathan REGISTER(CRYPTO_3DES_CBC);
1128 1.1 jonathan REGISTER(CRYPTO_BLF_CBC);
1129 1.1 jonathan REGISTER(CRYPTO_CAST_CBC);
1130 1.1 jonathan REGISTER(CRYPTO_SKIPJACK_CBC);
1131 1.1 jonathan REGISTER(CRYPTO_NULL_CBC);
1132 1.1 jonathan REGISTER(CRYPTO_MD5_HMAC);
1133 1.1 jonathan REGISTER(CRYPTO_SHA1_HMAC);
1134 1.1 jonathan REGISTER(CRYPTO_SHA2_HMAC);
1135 1.1 jonathan REGISTER(CRYPTO_RIPEMD160_HMAC);
1136 1.1 jonathan REGISTER(CRYPTO_NULL_HMAC);
1137 1.1 jonathan REGISTER(CRYPTO_MD5_KPDK);
1138 1.1 jonathan REGISTER(CRYPTO_SHA1_KPDK);
1139 1.1 jonathan REGISTER(CRYPTO_MD5);
1140 1.1 jonathan REGISTER(CRYPTO_SHA1);
1141 1.1 jonathan REGISTER(CRYPTO_RIJNDAEL128_CBC);
1142 1.1 jonathan REGISTER(CRYPTO_DEFLATE_COMP);
1143 1.1 jonathan #undef REGISTER
1144 1.1 jonathan }
1145 1.1 jonathan
1146 1.1 jonathan #ifdef __FreeBSD__
1147 1.1 jonathan SYSINIT(cryptosoft_init, SI_SUB_PSEUDO, SI_ORDER_ANY, swcr_init, NULL)
1148 1.1 jonathan #endif
1149 1.10 thorpej
1150 1.10 thorpej #ifdef __NetBSD__
1151 1.10 thorpej /*
1152 1.10 thorpej * Pseudo-device init routine for software crypto.
1153 1.10 thorpej */
1154 1.11 thorpej void swcryptoattach(int);
1155 1.10 thorpej
1156 1.10 thorpej void
1157 1.15 christos swcryptoattach(int num)
1158 1.10 thorpej {
1159 1.10 thorpej
1160 1.10 thorpej swcr_init();
1161 1.10 thorpej }
1162 1.10 thorpej #endif /* __NetBSD__ */
1163