subr_cprng.c revision 1.11 1 1.11 tls /* $NetBSD: subr_cprng.c,v 1.11 2012/09/07 02:42:13 tls Exp $ */
2 1.1 tls
3 1.1 tls /*-
4 1.1 tls * Copyright (c) 2011 The NetBSD Foundation, Inc.
5 1.1 tls * All rights reserved.
6 1.1 tls *
7 1.1 tls * This code is derived from software contributed to The NetBSD Foundation
8 1.1 tls * by Thor Lancelot Simon.
9 1.1 tls *
10 1.1 tls * Redistribution and use in source and binary forms, with or without
11 1.1 tls * modification, are permitted provided that the following conditions
12 1.1 tls * are met:
13 1.1 tls * 1. Redistributions of source code must retain the above copyright
14 1.1 tls * notice, this list of conditions and the following disclaimer.
15 1.1 tls * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 tls * notice, this list of conditions and the following disclaimer in the
17 1.1 tls * documentation and/or other materials provided with the distribution.
18 1.1 tls *
19 1.1 tls * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 tls * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 tls * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 tls * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 tls * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 tls * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 tls * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 tls * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 tls * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 tls * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 tls * POSSIBILITY OF SUCH DAMAGE.
30 1.1 tls */
31 1.1 tls
32 1.1 tls #include <sys/types.h>
33 1.1 tls #include <sys/time.h>
34 1.1 tls #include <sys/param.h>
35 1.1 tls #include <sys/kernel.h>
36 1.1 tls #include <sys/systm.h>
37 1.1 tls #include <sys/kmem.h>
38 1.1 tls #include <sys/mutex.h>
39 1.1 tls #include <sys/rngtest.h>
40 1.1 tls #include <sys/rnd.h>
41 1.3 tls #include <dev/rnd_private.h>
42 1.1 tls
43 1.2 tsutsui #if defined(__HAVE_CPU_COUNTER)
44 1.1 tls #include <machine/cpu_counter.h>
45 1.2 tsutsui #endif
46 1.1 tls
47 1.1 tls #include <sys/cprng.h>
48 1.1 tls
49 1.11 tls __KERNEL_RCSID(0, "$NetBSD: subr_cprng.c,v 1.11 2012/09/07 02:42:13 tls Exp $");
50 1.1 tls
51 1.1 tls void
52 1.1 tls cprng_init(void)
53 1.1 tls {
54 1.1 tls nist_ctr_initialize();
55 1.1 tls }
56 1.1 tls
57 1.1 tls static inline uint32_t
58 1.1 tls cprng_counter(void)
59 1.1 tls {
60 1.1 tls struct timeval tv;
61 1.1 tls
62 1.1 tls #if defined(__HAVE_CPU_COUNTER)
63 1.1 tls if (cpu_hascounter())
64 1.1 tls return cpu_counter32();
65 1.1 tls #endif
66 1.1 tls if (__predict_false(cold)) {
67 1.1 tls /* microtime unsafe if clock not running yet */
68 1.1 tls return 0;
69 1.1 tls }
70 1.1 tls microtime(&tv);
71 1.1 tls return (tv.tv_sec * 1000000 + tv.tv_usec);
72 1.1 tls }
73 1.1 tls
74 1.1 tls static void
75 1.8 tls cprng_strong_doreseed(cprng_strong_t *const c)
76 1.8 tls {
77 1.8 tls uint32_t cc = cprng_counter();
78 1.8 tls
79 1.8 tls KASSERT(mutex_owned(&c->mtx));
80 1.8 tls KASSERT(mutex_owned(&c->reseed.mtx));
81 1.8 tls KASSERT(c->reseed.len == NIST_BLOCK_KEYLEN_BYTES);
82 1.8 tls
83 1.8 tls if (nist_ctr_drbg_reseed(&c->drbg, c->reseed.data, c->reseed.len,
84 1.8 tls &cc, sizeof(cc))) {
85 1.8 tls panic("cprng %s: nist_ctr_drbg_reseed failed.", c->name);
86 1.8 tls }
87 1.8 tls #ifdef RND_VERBOSE
88 1.8 tls printf("cprng %s: reseeded with rnd_filled = %d\n", c->name,
89 1.8 tls rnd_filled);
90 1.8 tls #endif
91 1.8 tls c->entropy_serial = rnd_filled;
92 1.8 tls c->reseed.state = RSTATE_IDLE;
93 1.8 tls if (c->flags & CPRNG_USE_CV) {
94 1.8 tls cv_broadcast(&c->cv);
95 1.8 tls }
96 1.8 tls selnotify(&c->selq, 0, 0);
97 1.8 tls }
98 1.8 tls
99 1.8 tls static void
100 1.5 tls cprng_strong_sched_reseed(cprng_strong_t *const c)
101 1.5 tls {
102 1.5 tls KASSERT(mutex_owned(&c->mtx));
103 1.8 tls if (mutex_tryenter(&c->reseed.mtx)) {
104 1.8 tls switch (c->reseed.state) {
105 1.8 tls case RSTATE_IDLE:
106 1.8 tls c->reseed.state = RSTATE_PENDING;
107 1.8 tls c->reseed.len = NIST_BLOCK_KEYLEN_BYTES;
108 1.8 tls rndsink_attach(&c->reseed);
109 1.8 tls break;
110 1.8 tls case RSTATE_HASBITS:
111 1.8 tls /* Just rekey the underlying generator now. */
112 1.8 tls cprng_strong_doreseed(c);
113 1.8 tls break;
114 1.8 tls case RSTATE_PENDING:
115 1.8 tls if (c->entropy_serial != rnd_filled) {
116 1.8 tls rndsink_detach(&c->reseed);
117 1.8 tls rndsink_attach(&c->reseed);
118 1.8 tls }
119 1.8 tls break;
120 1.8 tls default:
121 1.8 tls panic("cprng %s: bad reseed state %d",
122 1.8 tls c->name, c->reseed.state);
123 1.8 tls break;
124 1.8 tls }
125 1.6 tls mutex_spin_exit(&c->reseed.mtx);
126 1.5 tls }
127 1.8 tls #ifdef RND_VERBOSE
128 1.8 tls else {
129 1.8 tls printf("cprng %s: skipping sched_reseed, sink busy\n",
130 1.8 tls c->name);
131 1.8 tls }
132 1.8 tls #endif
133 1.5 tls }
134 1.5 tls
135 1.5 tls static void
136 1.1 tls cprng_strong_reseed(void *const arg)
137 1.1 tls {
138 1.1 tls cprng_strong_t *c = arg;
139 1.8 tls
140 1.8 tls KASSERT(mutex_owned(&c->reseed.mtx));
141 1.8 tls KASSERT(RSTATE_HASBITS == c->reseed.state);
142 1.1 tls
143 1.7 tls if (!mutex_tryenter(&c->mtx)) {
144 1.8 tls #ifdef RND_VERBOSE
145 1.8 tls printf("cprng: sink %s cprng busy, no reseed\n", c->reseed.name);
146 1.8 tls #endif
147 1.9 tls if (c->flags & CPRNG_USE_CV) { /* XXX if flags change? */
148 1.9 tls cv_broadcast(&c->cv);
149 1.9 tls }
150 1.7 tls return;
151 1.7 tls }
152 1.7 tls
153 1.8 tls cprng_strong_doreseed(c);
154 1.1 tls mutex_exit(&c->mtx);
155 1.1 tls }
156 1.1 tls
157 1.1 tls cprng_strong_t *
158 1.1 tls cprng_strong_create(const char *const name, int ipl, int flags)
159 1.1 tls {
160 1.1 tls cprng_strong_t *c;
161 1.1 tls uint8_t key[NIST_BLOCK_KEYLEN_BYTES];
162 1.5 tls int r, getmore = 0, hard = 0;
163 1.1 tls uint32_t cc;
164 1.1 tls
165 1.1 tls c = kmem_alloc(sizeof(*c), KM_NOSLEEP);
166 1.1 tls if (c == NULL) {
167 1.1 tls return NULL;
168 1.1 tls }
169 1.1 tls c->flags = flags;
170 1.1 tls strlcpy(c->name, name, sizeof(c->name));
171 1.8 tls c->reseed.state = RSTATE_IDLE;
172 1.1 tls c->reseed.cb = cprng_strong_reseed;
173 1.1 tls c->reseed.arg = c;
174 1.10 tls c->entropy_serial = rnd_initial_entropy ? rnd_filled : -1;
175 1.6 tls mutex_init(&c->reseed.mtx, MUTEX_DEFAULT, IPL_VM);
176 1.1 tls strlcpy(c->reseed.name, name, sizeof(c->reseed.name));
177 1.1 tls
178 1.1 tls mutex_init(&c->mtx, MUTEX_DEFAULT, ipl);
179 1.1 tls
180 1.1 tls if (c->flags & CPRNG_USE_CV) {
181 1.1 tls cv_init(&c->cv, name);
182 1.1 tls }
183 1.1 tls
184 1.5 tls selinit(&c->selq);
185 1.5 tls
186 1.1 tls r = rnd_extract_data(key, sizeof(key), RND_EXTRACT_GOOD);
187 1.1 tls if (r != sizeof(key)) {
188 1.1 tls if (c->flags & CPRNG_INIT_ANY) {
189 1.5 tls #ifdef DEBUG
190 1.1 tls printf("cprng %s: WARNING insufficient "
191 1.1 tls "entropy at creation.\n", name);
192 1.5 tls #endif
193 1.1 tls rnd_extract_data(key + r, sizeof(key - r),
194 1.1 tls RND_EXTRACT_ANY);
195 1.1 tls } else {
196 1.5 tls hard++;
197 1.1 tls }
198 1.1 tls getmore++;
199 1.1 tls }
200 1.1 tls
201 1.1 tls if (nist_ctr_drbg_instantiate(&c->drbg, key, sizeof(key),
202 1.1 tls &cc, sizeof(cc), name, strlen(name))) {
203 1.1 tls panic("cprng %s: instantiation failed.", name);
204 1.1 tls }
205 1.1 tls
206 1.1 tls if (getmore) {
207 1.5 tls /* Cause readers to wait for rekeying. */
208 1.5 tls if (hard) {
209 1.5 tls c->drbg.reseed_counter =
210 1.5 tls NIST_CTR_DRBG_RESEED_INTERVAL + 1;
211 1.5 tls } else {
212 1.5 tls c->drbg.reseed_counter =
213 1.5 tls (NIST_CTR_DRBG_RESEED_INTERVAL / 2) + 1;
214 1.1 tls }
215 1.1 tls }
216 1.1 tls return c;
217 1.1 tls }
218 1.1 tls
219 1.1 tls size_t
220 1.5 tls cprng_strong(cprng_strong_t *const c, void *const p, size_t len, int flags)
221 1.1 tls {
222 1.1 tls uint32_t cc = cprng_counter();
223 1.5 tls #ifdef DEBUG
224 1.5 tls int testfail = 0;
225 1.5 tls #endif
226 1.1 tls if (len > CPRNG_MAX_LEN) { /* XXX should we loop? */
227 1.1 tls len = CPRNG_MAX_LEN; /* let the caller loop if desired */
228 1.1 tls }
229 1.5 tls mutex_enter(&c->mtx);
230 1.1 tls
231 1.10 tls /* If we were initialized with the pool empty, rekey ASAP */
232 1.10 tls if (__predict_false(c->entropy_serial == -1) && rnd_initial_entropy) {
233 1.11 tls c->entropy_serial = 0;
234 1.10 tls goto rekeyany; /* We have _some_ entropy, use it. */
235 1.10 tls }
236 1.10 tls
237 1.1 tls if (nist_ctr_drbg_generate(&c->drbg, p, len, &cc, sizeof(cc))) {
238 1.1 tls /* A generator failure really means we hit the hard limit. */
239 1.10 tls rekeyany:
240 1.1 tls if (c->flags & CPRNG_REKEY_ANY) {
241 1.1 tls uint8_t key[NIST_BLOCK_KEYLEN_BYTES];
242 1.1 tls
243 1.1 tls printf("cprng %s: WARNING pseudorandom rekeying.\n",
244 1.1 tls c->name);
245 1.1 tls rnd_extract_data(key, sizeof(key), RND_EXTRACT_ANY);
246 1.1 tls cc = cprng_counter();
247 1.1 tls if (nist_ctr_drbg_reseed(&c->drbg, key, sizeof(key),
248 1.1 tls &cc, sizeof(cc))) {
249 1.1 tls panic("cprng %s: nist_ctr_drbg_reseed "
250 1.1 tls "failed.", c->name);
251 1.1 tls }
252 1.1 tls } else {
253 1.9 tls int wr;
254 1.1 tls
255 1.9 tls do {
256 1.5 tls cprng_strong_sched_reseed(c);
257 1.9 tls if ((flags & FNONBLOCK) ||
258 1.9 tls !(c->flags & CPRNG_USE_CV)) {
259 1.9 tls len = 0;
260 1.9 tls break;
261 1.9 tls }
262 1.9 tls /*
263 1.9 tls * XXX There's a race with the cv_broadcast
264 1.9 tls * XXX in cprng_strong_sched_reseed, because
265 1.9 tls * XXX of the use of tryenter in that function.
266 1.9 tls * XXX This "timedwait" hack works around it,
267 1.9 tls * XXX at the expense of occasionaly polling
268 1.9 tls * XXX for success on a /dev/random rekey.
269 1.9 tls */
270 1.9 tls wr = cv_timedwait_sig(&c->cv, &c->mtx,
271 1.9 tls mstohz(100));
272 1.9 tls if (wr == ERESTART) {
273 1.9 tls mutex_exit(&c->mtx);
274 1.9 tls return 0;
275 1.9 tls }
276 1.9 tls } while (nist_ctr_drbg_generate(&c->drbg, p,
277 1.9 tls len, &cc,
278 1.9 tls sizeof(cc)));
279 1.1 tls }
280 1.1 tls }
281 1.1 tls
282 1.5 tls #ifdef DEBUG
283 1.1 tls /*
284 1.1 tls * If the generator has just been keyed, perform
285 1.1 tls * the statistical RNG test.
286 1.1 tls */
287 1.1 tls if (__predict_false(c->drbg.reseed_counter == 1)) {
288 1.5 tls rngtest_t *rt = kmem_alloc(sizeof(*rt), KM_NOSLEEP);
289 1.1 tls
290 1.5 tls if (rt) {
291 1.1 tls
292 1.5 tls strncpy(rt->rt_name, c->name, sizeof(rt->rt_name));
293 1.5 tls
294 1.5 tls if (nist_ctr_drbg_generate(&c->drbg, rt->rt_b,
295 1.5 tls sizeof(rt->rt_b), NULL, 0)) {
296 1.5 tls panic("cprng %s: nist_ctr_drbg_generate "
297 1.5 tls "failed!", c->name);
298 1.1 tls
299 1.5 tls }
300 1.5 tls testfail = rngtest(rt);
301 1.5 tls
302 1.5 tls if (testfail) {
303 1.5 tls printf("cprng %s: failed statistical RNG "
304 1.5 tls "test.\n", c->name);
305 1.5 tls c->drbg.reseed_counter =
306 1.5 tls NIST_CTR_DRBG_RESEED_INTERVAL + 1;
307 1.5 tls len = 0;
308 1.5 tls }
309 1.5 tls memset(rt, 0, sizeof(*rt));
310 1.5 tls kmem_free(rt, sizeof(*rt));
311 1.1 tls }
312 1.1 tls }
313 1.1 tls #endif
314 1.1 tls if (__predict_false(c->drbg.reseed_counter >
315 1.5 tls (NIST_CTR_DRBG_RESEED_INTERVAL / 2))) {
316 1.5 tls cprng_strong_sched_reseed(c);
317 1.8 tls } else if (rnd_full) {
318 1.8 tls if (c->entropy_serial != rnd_filled) {
319 1.8 tls #ifdef RND_VERBOSE
320 1.8 tls printf("cprng %s: reseeding from full pool "
321 1.8 tls "(serial %d vs pool %d)\n", c->name,
322 1.8 tls c->entropy_serial, rnd_filled);
323 1.8 tls #endif
324 1.5 tls cprng_strong_sched_reseed(c);
325 1.1 tls }
326 1.1 tls }
327 1.1 tls
328 1.1 tls mutex_exit(&c->mtx);
329 1.1 tls return len;
330 1.1 tls }
331 1.1 tls
332 1.1 tls void
333 1.1 tls cprng_strong_destroy(cprng_strong_t *c)
334 1.1 tls {
335 1.7 tls mutex_enter(&c->mtx);
336 1.6 tls mutex_spin_enter(&c->reseed.mtx);
337 1.5 tls
338 1.1 tls if (c->flags & CPRNG_USE_CV) {
339 1.1 tls KASSERT(!cv_has_waiters(&c->cv));
340 1.1 tls cv_destroy(&c->cv);
341 1.1 tls }
342 1.5 tls seldestroy(&c->selq);
343 1.1 tls
344 1.8 tls if (RSTATE_PENDING == c->reseed.state) {
345 1.1 tls rndsink_detach(&c->reseed);
346 1.1 tls }
347 1.6 tls mutex_spin_exit(&c->reseed.mtx);
348 1.7 tls mutex_destroy(&c->reseed.mtx);
349 1.6 tls
350 1.1 tls nist_ctr_drbg_destroy(&c->drbg);
351 1.5 tls
352 1.5 tls mutex_exit(&c->mtx);
353 1.5 tls mutex_destroy(&c->mtx);
354 1.5 tls
355 1.1 tls memset(c, 0, sizeof(*c));
356 1.1 tls kmem_free(c, sizeof(*c));
357 1.1 tls }
358 1.1 tls
359 1.1 tls int
360 1.1 tls cprng_strong_getflags(cprng_strong_t *const c)
361 1.1 tls {
362 1.1 tls KASSERT(mutex_owned(&c->mtx));
363 1.1 tls return c->flags;
364 1.1 tls }
365 1.1 tls
366 1.1 tls void
367 1.1 tls cprng_strong_setflags(cprng_strong_t *const c, int flags)
368 1.1 tls {
369 1.1 tls KASSERT(mutex_owned(&c->mtx));
370 1.1 tls if (flags & CPRNG_USE_CV) {
371 1.1 tls if (!(c->flags & CPRNG_USE_CV)) {
372 1.1 tls cv_init(&c->cv, (const char *)c->name);
373 1.1 tls }
374 1.1 tls } else {
375 1.1 tls if (c->flags & CPRNG_USE_CV) {
376 1.1 tls KASSERT(!cv_has_waiters(&c->cv));
377 1.1 tls cv_destroy(&c->cv);
378 1.1 tls }
379 1.1 tls }
380 1.1 tls if (flags & CPRNG_REKEY_ANY) {
381 1.1 tls if (!(c->flags & CPRNG_REKEY_ANY)) {
382 1.1 tls if (c->flags & CPRNG_USE_CV) {
383 1.1 tls cv_broadcast(&c->cv);
384 1.1 tls }
385 1.5 tls selnotify(&c->selq, 0, 0);
386 1.1 tls }
387 1.1 tls }
388 1.1 tls c->flags = flags;
389 1.1 tls }
390