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subr_cprng.c revision 1.30.2.2
      1  1.30.2.2    martin /*	$NetBSD: subr_cprng.c,v 1.30.2.2 2019/11/25 17:00:22 martin Exp $ */
      2       1.1       tls 
      3       1.1       tls /*-
      4      1.18  riastrad  * Copyright (c) 2011-2013 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      1.18  riastrad  * by Thor Lancelot Simon and Taylor R. Campbell.
      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      1.18  riastrad #include <sys/cdefs.h>
     33  1.30.2.2    martin __KERNEL_RCSID(0, "$NetBSD: subr_cprng.c,v 1.30.2.2 2019/11/25 17:00:22 martin Exp $");
     34      1.18  riastrad 
     35      1.18  riastrad #include <sys/param.h>
     36       1.1       tls #include <sys/types.h>
     37      1.18  riastrad #include <sys/condvar.h>
     38      1.18  riastrad #include <sys/cprng.h>
     39      1.18  riastrad #include <sys/errno.h>
     40      1.18  riastrad #include <sys/event.h>		/* XXX struct knote */
     41      1.18  riastrad #include <sys/fcntl.h>		/* XXX FNONBLOCK */
     42       1.1       tls #include <sys/kernel.h>
     43      1.18  riastrad #include <sys/kmem.h>
     44      1.19  riastrad #include <sys/lwp.h>
     45      1.23     pooka #include <sys/once.h>
     46      1.24       tls #include <sys/percpu.h>
     47      1.18  riastrad #include <sys/poll.h>		/* XXX POLLIN/POLLOUT/&c. */
     48      1.18  riastrad #include <sys/select.h>
     49       1.1       tls #include <sys/systm.h>
     50      1.23     pooka #include <sys/sysctl.h>
     51      1.18  riastrad #include <sys/rndsink.h>
     52      1.26  christos #if DIAGNOSTIC
     53       1.1       tls #include <sys/rngtest.h>
     54      1.18  riastrad #endif
     55      1.18  riastrad 
     56  1.30.2.1    martin #include <crypto/nist_hash_drbg/nist_hash_drbg.h>
     57       1.1       tls 
     58       1.2   tsutsui #if defined(__HAVE_CPU_COUNTER)
     59       1.1       tls #include <machine/cpu_counter.h>
     60       1.2   tsutsui #endif
     61       1.1       tls 
     62      1.23     pooka static int sysctl_kern_urnd(SYSCTLFN_PROTO);
     63      1.23     pooka static int sysctl_kern_arnd(SYSCTLFN_PROTO);
     64      1.23     pooka 
     65      1.18  riastrad static void	cprng_strong_generate(struct cprng_strong *, void *, size_t);
     66      1.18  riastrad static void	cprng_strong_reseed(struct cprng_strong *);
     67      1.18  riastrad static void	cprng_strong_reseed_from(struct cprng_strong *, const void *,
     68      1.18  riastrad 		    size_t, bool);
     69      1.26  christos #if DIAGNOSTIC
     70      1.18  riastrad static void	cprng_strong_rngtest(struct cprng_strong *);
     71      1.18  riastrad #endif
     72       1.1       tls 
     73      1.18  riastrad static rndsink_callback_t	cprng_strong_rndsink_callback;
     74       1.1       tls 
     75       1.1       tls void
     76       1.1       tls cprng_init(void)
     77       1.1       tls {
     78      1.23     pooka 	static struct sysctllog *random_sysctllog;
     79      1.23     pooka 
     80  1.30.2.1    martin 	if (nist_hash_drbg_initialize() != 0)
     81  1.30.2.1    martin 		panic("NIST Hash_DRBG failed self-test");
     82      1.23     pooka 
     83      1.23     pooka 	sysctl_createv(&random_sysctllog, 0, NULL, NULL,
     84      1.23     pooka 		       CTLFLAG_PERMANENT,
     85      1.23     pooka 		       CTLTYPE_INT, "urandom",
     86      1.23     pooka 		       SYSCTL_DESCR("Random integer value"),
     87      1.23     pooka 		       sysctl_kern_urnd, 0, NULL, 0,
     88      1.23     pooka 		       CTL_KERN, KERN_URND, CTL_EOL);
     89      1.23     pooka 	sysctl_createv(&random_sysctllog, 0, NULL, NULL,
     90      1.23     pooka 		       CTLFLAG_PERMANENT,
     91      1.23     pooka 		       CTLTYPE_INT, "arandom",
     92      1.23     pooka 		       SYSCTL_DESCR("n bytes of random data"),
     93      1.23     pooka 		       sysctl_kern_arnd, 0, NULL, 0,
     94      1.23     pooka 		       CTL_KERN, KERN_ARND, CTL_EOL);
     95       1.1       tls }
     96       1.1       tls 
     97       1.1       tls static inline uint32_t
     98       1.1       tls cprng_counter(void)
     99       1.1       tls {
    100       1.1       tls 	struct timeval tv;
    101       1.1       tls 
    102       1.1       tls #if defined(__HAVE_CPU_COUNTER)
    103       1.1       tls 	if (cpu_hascounter())
    104       1.1       tls 		return cpu_counter32();
    105       1.1       tls #endif
    106       1.1       tls 	if (__predict_false(cold)) {
    107      1.24       tls 		static int ctr;
    108       1.1       tls 		/* microtime unsafe if clock not running yet */
    109      1.24       tls 		return ctr++;
    110       1.1       tls 	}
    111      1.24       tls 	getmicrotime(&tv);
    112       1.1       tls 	return (tv.tv_sec * 1000000 + tv.tv_usec);
    113       1.1       tls }
    114       1.1       tls 
    115      1.18  riastrad struct cprng_strong {
    116      1.18  riastrad 	char		cs_name[16];
    117      1.18  riastrad 	int		cs_flags;
    118      1.18  riastrad 	kmutex_t	cs_lock;
    119      1.24       tls 	percpu_t	*cs_percpu;
    120      1.18  riastrad 	kcondvar_t	cs_cv;
    121      1.18  riastrad 	struct selinfo	cs_selq;
    122      1.18  riastrad 	struct rndsink	*cs_rndsink;
    123      1.18  riastrad 	bool		cs_ready;
    124  1.30.2.1    martin 	NIST_HASH_DRBG	cs_drbg;
    125      1.21  riastrad 
    126      1.21  riastrad 	/* XXX Kludge for /dev/random `information-theoretic' properties.   */
    127      1.21  riastrad 	unsigned int	cs_remaining;
    128      1.18  riastrad };
    129      1.18  riastrad 
    130      1.18  riastrad struct cprng_strong *
    131      1.18  riastrad cprng_strong_create(const char *name, int ipl, int flags)
    132      1.18  riastrad {
    133      1.18  riastrad 	const uint32_t cc = cprng_counter();
    134      1.18  riastrad 	struct cprng_strong *const cprng = kmem_alloc(sizeof(*cprng),
    135      1.18  riastrad 	    KM_SLEEP);
    136      1.18  riastrad 
    137      1.18  riastrad 	/*
    138      1.18  riastrad 	 * rndsink_request takes a spin lock at IPL_VM, so we can be no
    139      1.18  riastrad 	 * higher than that.
    140      1.18  riastrad 	 */
    141      1.22     skrll 	KASSERT(ipl != IPL_SCHED && ipl != IPL_HIGH);
    142      1.18  riastrad 
    143      1.18  riastrad 	/* Initialize the easy fields.  */
    144      1.30      maxv 	memset(cprng->cs_name, 0, sizeof(cprng->cs_name));
    145      1.18  riastrad 	(void)strlcpy(cprng->cs_name, name, sizeof(cprng->cs_name));
    146      1.18  riastrad 	cprng->cs_flags = flags;
    147      1.18  riastrad 	mutex_init(&cprng->cs_lock, MUTEX_DEFAULT, ipl);
    148      1.18  riastrad 	cv_init(&cprng->cs_cv, cprng->cs_name);
    149      1.18  riastrad 	selinit(&cprng->cs_selq);
    150  1.30.2.1    martin 	cprng->cs_rndsink = rndsink_create(NIST_HASH_DRBG_MIN_SEEDLEN_BYTES,
    151      1.18  riastrad 	    &cprng_strong_rndsink_callback, cprng);
    152      1.18  riastrad 
    153      1.18  riastrad 	/* Get some initial entropy.  Record whether it is full entropy.  */
    154  1.30.2.1    martin 	uint8_t seed[NIST_HASH_DRBG_MIN_SEEDLEN_BYTES];
    155      1.25  riastrad 	mutex_enter(&cprng->cs_lock);
    156      1.18  riastrad 	cprng->cs_ready = rndsink_request(cprng->cs_rndsink, seed,
    157      1.18  riastrad 	    sizeof(seed));
    158  1.30.2.1    martin 	if (nist_hash_drbg_instantiate(&cprng->cs_drbg, seed, sizeof(seed),
    159      1.18  riastrad 		&cc, sizeof(cc), cprng->cs_name, sizeof(cprng->cs_name)))
    160  1.30.2.1    martin 		/* XXX Fix nist_hash_drbg API so this can't happen.  */
    161  1.30.2.1    martin 		panic("cprng %s: NIST Hash_DRBG instantiation failed",
    162      1.18  riastrad 		    cprng->cs_name);
    163      1.20  riastrad 	explicit_memset(seed, 0, sizeof(seed));
    164      1.18  riastrad 
    165      1.21  riastrad 	if (ISSET(flags, CPRNG_HARD))
    166  1.30.2.1    martin 		cprng->cs_remaining = NIST_HASH_DRBG_MIN_SEEDLEN_BYTES;
    167      1.21  riastrad 	else
    168      1.21  riastrad 		cprng->cs_remaining = 0;
    169      1.21  riastrad 
    170      1.18  riastrad 	if (!cprng->cs_ready && !ISSET(flags, CPRNG_INIT_ANY))
    171      1.18  riastrad 		printf("cprng %s: creating with partial entropy\n",
    172      1.18  riastrad 		    cprng->cs_name);
    173      1.25  riastrad 	mutex_exit(&cprng->cs_lock);
    174      1.18  riastrad 
    175      1.18  riastrad 	return cprng;
    176      1.18  riastrad }
    177      1.18  riastrad 
    178      1.18  riastrad void
    179      1.18  riastrad cprng_strong_destroy(struct cprng_strong *cprng)
    180       1.8       tls {
    181       1.8       tls 
    182      1.18  riastrad 	/*
    183      1.18  riastrad 	 * Destroy the rndsink first to prevent calls to the callback.
    184      1.18  riastrad 	 */
    185      1.18  riastrad 	rndsink_destroy(cprng->cs_rndsink);
    186       1.8       tls 
    187      1.18  riastrad 	KASSERT(!cv_has_waiters(&cprng->cs_cv));
    188      1.18  riastrad #if 0
    189      1.18  riastrad 	KASSERT(!select_has_waiters(&cprng->cs_selq)) /* XXX ? */
    190      1.18  riastrad #endif
    191      1.15       tls 
    192  1.30.2.1    martin 	nist_hash_drbg_destroy(&cprng->cs_drbg);
    193      1.18  riastrad 	seldestroy(&cprng->cs_selq);
    194      1.18  riastrad 	cv_destroy(&cprng->cs_cv);
    195      1.18  riastrad 	mutex_destroy(&cprng->cs_lock);
    196      1.18  riastrad 
    197      1.20  riastrad 	explicit_memset(cprng, 0, sizeof(*cprng)); /* paranoia */
    198      1.18  riastrad 	kmem_free(cprng, sizeof(*cprng));
    199       1.8       tls }
    200       1.8       tls 
    201      1.18  riastrad /*
    202      1.18  riastrad  * Generate some data from cprng.  Block or return zero bytes,
    203      1.18  riastrad  * depending on flags & FNONBLOCK, if cprng was created without
    204      1.18  riastrad  * CPRNG_REKEY_ANY.
    205      1.18  riastrad  */
    206      1.18  riastrad size_t
    207      1.18  riastrad cprng_strong(struct cprng_strong *cprng, void *buffer, size_t bytes, int flags)
    208       1.5       tls {
    209      1.18  riastrad 	size_t result;
    210      1.18  riastrad 
    211      1.18  riastrad 	/* Caller must loop for more than CPRNG_MAX_LEN bytes.  */
    212      1.18  riastrad 	bytes = MIN(bytes, CPRNG_MAX_LEN);
    213      1.18  riastrad 
    214      1.18  riastrad 	mutex_enter(&cprng->cs_lock);
    215      1.18  riastrad 
    216      1.18  riastrad 	if (ISSET(cprng->cs_flags, CPRNG_REKEY_ANY)) {
    217      1.18  riastrad 		if (!cprng->cs_ready)
    218      1.18  riastrad 			cprng_strong_reseed(cprng);
    219      1.18  riastrad 	} else {
    220      1.18  riastrad 		while (!cprng->cs_ready) {
    221      1.18  riastrad 			if (ISSET(flags, FNONBLOCK) ||
    222      1.18  riastrad 			    !ISSET(cprng->cs_flags, CPRNG_USE_CV) ||
    223      1.18  riastrad 			    cv_wait_sig(&cprng->cs_cv, &cprng->cs_lock)) {
    224      1.18  riastrad 				result = 0;
    225      1.18  riastrad 				goto out;
    226       1.8       tls 			}
    227       1.8       tls 		}
    228       1.5       tls 	}
    229      1.18  riastrad 
    230      1.21  riastrad 	/*
    231      1.21  riastrad 	 * Debit the entropy if requested.
    232      1.21  riastrad 	 *
    233      1.21  riastrad 	 * XXX Kludge for /dev/random `information-theoretic' properties.
    234      1.21  riastrad 	 */
    235      1.21  riastrad 	if (__predict_false(ISSET(cprng->cs_flags, CPRNG_HARD))) {
    236      1.21  riastrad 		KASSERT(0 < cprng->cs_remaining);
    237  1.30.2.1    martin 		KASSERT(cprng->cs_remaining <=
    238  1.30.2.1    martin 		    NIST_HASH_DRBG_MIN_SEEDLEN_BYTES);
    239      1.21  riastrad 		if (bytes < cprng->cs_remaining) {
    240      1.21  riastrad 			cprng->cs_remaining -= bytes;
    241      1.21  riastrad 		} else {
    242      1.21  riastrad 			bytes = cprng->cs_remaining;
    243  1.30.2.1    martin 			cprng->cs_remaining = NIST_HASH_DRBG_MIN_SEEDLEN_BYTES;
    244      1.21  riastrad 			cprng->cs_ready = false;
    245      1.21  riastrad 			rndsink_schedule(cprng->cs_rndsink);
    246      1.21  riastrad 		}
    247  1.30.2.1    martin 		KASSERT(bytes <= NIST_HASH_DRBG_MIN_SEEDLEN_BYTES);
    248      1.21  riastrad 		KASSERT(0 < cprng->cs_remaining);
    249  1.30.2.1    martin 		KASSERT(cprng->cs_remaining <=
    250  1.30.2.1    martin 		    NIST_HASH_DRBG_MIN_SEEDLEN_BYTES);
    251      1.21  riastrad 	}
    252      1.21  riastrad 
    253      1.18  riastrad 	cprng_strong_generate(cprng, buffer, bytes);
    254      1.18  riastrad 	result = bytes;
    255      1.18  riastrad 
    256      1.18  riastrad out:	mutex_exit(&cprng->cs_lock);
    257      1.18  riastrad 	return result;
    258      1.18  riastrad }
    259      1.18  riastrad 
    260       1.5       tls static void
    261      1.18  riastrad filt_cprng_detach(struct knote *kn)
    262       1.1       tls {
    263      1.18  riastrad 	struct cprng_strong *const cprng = kn->kn_hook;
    264      1.18  riastrad 
    265      1.18  riastrad 	mutex_enter(&cprng->cs_lock);
    266      1.18  riastrad 	SLIST_REMOVE(&cprng->cs_selq.sel_klist, kn, knote, kn_selnext);
    267      1.18  riastrad 	mutex_exit(&cprng->cs_lock);
    268      1.18  riastrad }
    269       1.8       tls 
    270      1.18  riastrad static int
    271      1.29  christos filt_cprng_read_event(struct knote *kn, long hint)
    272      1.18  riastrad {
    273      1.18  riastrad 	struct cprng_strong *const cprng = kn->kn_hook;
    274      1.18  riastrad 	int ret;
    275       1.1       tls 
    276      1.18  riastrad 	if (hint == NOTE_SUBMIT)
    277      1.18  riastrad 		KASSERT(mutex_owned(&cprng->cs_lock));
    278      1.18  riastrad 	else
    279      1.18  riastrad 		mutex_enter(&cprng->cs_lock);
    280      1.18  riastrad 	if (cprng->cs_ready) {
    281      1.18  riastrad 		kn->kn_data = CPRNG_MAX_LEN; /* XXX Too large?  */
    282      1.18  riastrad 		ret = 1;
    283      1.18  riastrad 	} else {
    284      1.18  riastrad 		ret = 0;
    285       1.7       tls 	}
    286      1.18  riastrad 	if (hint == NOTE_SUBMIT)
    287      1.18  riastrad 		KASSERT(mutex_owned(&cprng->cs_lock));
    288      1.18  riastrad 	else
    289      1.18  riastrad 		mutex_exit(&cprng->cs_lock);
    290       1.7       tls 
    291      1.18  riastrad 	return ret;
    292       1.1       tls }
    293       1.1       tls 
    294      1.29  christos static int
    295      1.29  christos filt_cprng_write_event(struct knote *kn, long hint)
    296      1.29  christos {
    297      1.29  christos 	struct cprng_strong *const cprng = kn->kn_hook;
    298      1.29  christos 
    299      1.29  christos 	if (hint == NOTE_SUBMIT)
    300      1.29  christos 		KASSERT(mutex_owned(&cprng->cs_lock));
    301      1.29  christos 	else
    302      1.29  christos 		mutex_enter(&cprng->cs_lock);
    303      1.29  christos 
    304      1.29  christos 	kn->kn_data = 0;
    305      1.29  christos 
    306      1.29  christos 	if (hint == NOTE_SUBMIT)
    307      1.29  christos 		KASSERT(mutex_owned(&cprng->cs_lock));
    308      1.29  christos 	else
    309      1.29  christos 		mutex_exit(&cprng->cs_lock);
    310      1.29  christos 
    311      1.29  christos 	return 0;
    312      1.29  christos }
    313      1.29  christos 
    314      1.29  christos static const struct filterops cprng_read_filtops = {
    315      1.29  christos 	.f_isfd = 1,
    316      1.29  christos 	.f_attach = NULL,
    317      1.29  christos 	.f_detach = filt_cprng_detach,
    318      1.29  christos 	.f_event = filt_cprng_read_event,
    319      1.29  christos };
    320      1.29  christos 
    321      1.29  christos static const struct filterops cprng_write_filtops = {
    322      1.29  christos 	.f_isfd = 1,
    323      1.29  christos 	.f_attach = NULL,
    324      1.29  christos 	.f_detach = filt_cprng_detach,
    325      1.29  christos 	.f_event = filt_cprng_write_event,
    326      1.29  christos };
    327      1.29  christos 
    328      1.29  christos int
    329      1.29  christos cprng_strong_kqfilter(struct cprng_strong *cprng, struct knote *kn)
    330      1.29  christos {
    331      1.29  christos 
    332      1.29  christos 	switch (kn->kn_filter) {
    333      1.29  christos 	case EVFILT_READ:
    334      1.29  christos 		kn->kn_fop = &cprng_read_filtops;
    335      1.29  christos 		break;
    336      1.29  christos 	case EVFILT_WRITE:
    337      1.29  christos 		kn->kn_fop = &cprng_write_filtops;
    338      1.29  christos 		break;
    339      1.29  christos 	default:
    340      1.29  christos 		return EINVAL;
    341      1.29  christos 	}
    342      1.29  christos 
    343      1.29  christos 	kn->kn_hook = cprng;
    344      1.29  christos 	mutex_enter(&cprng->cs_lock);
    345      1.29  christos 	SLIST_INSERT_HEAD(&cprng->cs_selq.sel_klist, kn, kn_selnext);
    346      1.29  christos 	mutex_exit(&cprng->cs_lock);
    347      1.29  christos 	return 0;
    348      1.29  christos }
    349      1.29  christos 
    350      1.18  riastrad int
    351      1.18  riastrad cprng_strong_poll(struct cprng_strong *cprng, int events)
    352      1.15       tls {
    353      1.18  riastrad 	int revents;
    354      1.18  riastrad 
    355      1.18  riastrad 	if (!ISSET(events, (POLLIN | POLLRDNORM)))
    356      1.18  riastrad 		return 0;
    357      1.18  riastrad 
    358      1.18  riastrad 	mutex_enter(&cprng->cs_lock);
    359      1.18  riastrad 	if (cprng->cs_ready) {
    360      1.18  riastrad 		revents = (events & (POLLIN | POLLRDNORM));
    361      1.18  riastrad 	} else {
    362      1.18  riastrad 		selrecord(curlwp, &cprng->cs_selq);
    363      1.18  riastrad 		revents = 0;
    364      1.15       tls 	}
    365      1.18  riastrad 	mutex_exit(&cprng->cs_lock);
    366      1.18  riastrad 
    367      1.18  riastrad 	return revents;
    368      1.18  riastrad }
    369      1.18  riastrad 
    370      1.18  riastrad /*
    371  1.30.2.1    martin  * XXX Move nist_hash_drbg_reseed_advised_p and
    372  1.30.2.1    martin  * nist_hash_drbg_reseed_needed_p into the nist_hash_drbg API and make
    373  1.30.2.1    martin  * the NIST_HASH_DRBG structure opaque.
    374      1.18  riastrad  */
    375      1.18  riastrad static bool
    376  1.30.2.1    martin nist_hash_drbg_reseed_advised_p(NIST_HASH_DRBG *drbg)
    377      1.18  riastrad {
    378      1.18  riastrad 
    379  1.30.2.1    martin 	return (drbg->reseed_counter > (NIST_HASH_DRBG_RESEED_INTERVAL / 2));
    380      1.15       tls }
    381      1.15       tls 
    382      1.18  riastrad static bool
    383  1.30.2.1    martin nist_hash_drbg_reseed_needed_p(NIST_HASH_DRBG *drbg)
    384       1.1       tls {
    385       1.1       tls 
    386  1.30.2.1    martin 	return (drbg->reseed_counter >= NIST_HASH_DRBG_RESEED_INTERVAL);
    387      1.18  riastrad }
    388      1.18  riastrad 
    389      1.18  riastrad /*
    390      1.18  riastrad  * Generate some data from the underlying generator.
    391      1.18  riastrad  */
    392      1.18  riastrad static void
    393      1.21  riastrad cprng_strong_generate(struct cprng_strong *cprng, void *buffer, size_t bytes)
    394      1.18  riastrad {
    395      1.18  riastrad 	const uint32_t cc = cprng_counter();
    396      1.18  riastrad 
    397      1.18  riastrad 	KASSERT(bytes <= CPRNG_MAX_LEN);
    398      1.18  riastrad 	KASSERT(mutex_owned(&cprng->cs_lock));
    399      1.18  riastrad 
    400      1.18  riastrad 	/*
    401  1.30.2.1    martin 	 * Generate some data from the NIST Hash_DRBG.  Caller
    402      1.18  riastrad 	 * guarantees reseed if we're not ready, and if we exhaust the
    403      1.18  riastrad 	 * generator, we mark ourselves not ready.  Consequently, this
    404  1.30.2.1    martin 	 * call to the Hash_DRBG should not fail.
    405      1.18  riastrad 	 */
    406  1.30.2.1    martin 	if (__predict_false(nist_hash_drbg_generate(&cprng->cs_drbg, buffer,
    407      1.18  riastrad 		    bytes, &cc, sizeof(cc))))
    408  1.30.2.1    martin 		panic("cprng %s: NIST Hash_DRBG failed", cprng->cs_name);
    409       1.1       tls 
    410      1.18  riastrad 	/*
    411      1.18  riastrad 	 * If we've been seeing a lot of use, ask for some fresh
    412      1.18  riastrad 	 * entropy soon.
    413      1.18  riastrad 	 */
    414  1.30.2.1    martin 	if (__predict_false(nist_hash_drbg_reseed_advised_p(&cprng->cs_drbg)))
    415      1.18  riastrad 		rndsink_schedule(cprng->cs_rndsink);
    416       1.1       tls 
    417      1.18  riastrad 	/*
    418      1.18  riastrad 	 * If we just exhausted the generator, inform the next user
    419      1.18  riastrad 	 * that we need a reseed.
    420      1.18  riastrad 	 */
    421  1.30.2.1    martin 	if (__predict_false(nist_hash_drbg_reseed_needed_p(&cprng->cs_drbg))) {
    422      1.18  riastrad 		cprng->cs_ready = false;
    423      1.18  riastrad 		rndsink_schedule(cprng->cs_rndsink); /* paranoia */
    424       1.1       tls 	}
    425      1.18  riastrad }
    426       1.1       tls 
    427      1.18  riastrad /*
    428      1.18  riastrad  * Reseed with whatever we can get from the system entropy pool right now.
    429      1.18  riastrad  */
    430      1.18  riastrad static void
    431      1.18  riastrad cprng_strong_reseed(struct cprng_strong *cprng)
    432      1.18  riastrad {
    433  1.30.2.1    martin 	uint8_t seed[NIST_HASH_DRBG_MIN_SEEDLEN_BYTES];
    434       1.5       tls 
    435      1.18  riastrad 	KASSERT(mutex_owned(&cprng->cs_lock));
    436       1.1       tls 
    437      1.18  riastrad 	const bool full_entropy = rndsink_request(cprng->cs_rndsink, seed,
    438      1.18  riastrad 	    sizeof(seed));
    439      1.18  riastrad 	cprng_strong_reseed_from(cprng, seed, sizeof(seed), full_entropy);
    440      1.20  riastrad 	explicit_memset(seed, 0, sizeof(seed));
    441       1.1       tls }
    442       1.1       tls 
    443      1.18  riastrad /*
    444      1.18  riastrad  * Reseed with the given seed.  If we now have full entropy, notify waiters.
    445      1.18  riastrad  */
    446      1.18  riastrad static void
    447      1.18  riastrad cprng_strong_reseed_from(struct cprng_strong *cprng,
    448      1.18  riastrad     const void *seed, size_t bytes, bool full_entropy)
    449       1.1       tls {
    450      1.18  riastrad 	const uint32_t cc = cprng_counter();
    451       1.1       tls 
    452  1.30.2.1    martin 	KASSERT(bytes == NIST_HASH_DRBG_MIN_SEEDLEN_BYTES);
    453      1.18  riastrad 	KASSERT(mutex_owned(&cprng->cs_lock));
    454       1.1       tls 
    455       1.1       tls 	/*
    456      1.18  riastrad 	 * Notify anyone interested in the partiality of entropy in our
    457      1.18  riastrad 	 * seed -- anyone waiting for full entropy, or any system
    458      1.18  riastrad 	 * operators interested in knowing when the entropy pool is
    459      1.18  riastrad 	 * running on fumes.
    460       1.1       tls 	 */
    461      1.18  riastrad 	if (full_entropy) {
    462      1.18  riastrad 		if (!cprng->cs_ready) {
    463      1.18  riastrad 			cprng->cs_ready = true;
    464      1.18  riastrad 			cv_broadcast(&cprng->cs_cv);
    465      1.18  riastrad 			selnotify(&cprng->cs_selq, (POLLIN | POLLRDNORM),
    466      1.18  riastrad 			    NOTE_SUBMIT);
    467      1.18  riastrad 		}
    468      1.18  riastrad 	} else {
    469      1.18  riastrad 		/*
    470      1.18  riastrad 		 * XXX Is there is any harm in reseeding with partial
    471      1.18  riastrad 		 * entropy when we had full entropy before?  If so,
    472      1.18  riastrad 		 * remove the conditional on this message.
    473      1.18  riastrad 		 */
    474      1.18  riastrad 		if (!cprng->cs_ready &&
    475      1.18  riastrad 		    !ISSET(cprng->cs_flags, CPRNG_REKEY_ANY))
    476      1.18  riastrad 			printf("cprng %s: reseeding with partial entropy\n",
    477      1.18  riastrad 			    cprng->cs_name);
    478      1.18  riastrad 	}
    479      1.18  riastrad 
    480  1.30.2.1    martin 	if (nist_hash_drbg_reseed(&cprng->cs_drbg, seed, bytes, &cc,
    481  1.30.2.1    martin 		sizeof(cc)))
    482  1.30.2.1    martin 		/* XXX Fix nist_hash_drbg API so this can't happen.  */
    483  1.30.2.1    martin 		panic("cprng %s: NIST Hash_DRBG reseed failed",
    484  1.30.2.1    martin 		    cprng->cs_name);
    485       1.5       tls 
    486      1.26  christos #if DIAGNOSTIC
    487      1.18  riastrad 	cprng_strong_rngtest(cprng);
    488       1.8       tls #endif
    489       1.1       tls }
    490       1.1       tls 
    491      1.26  christos #if DIAGNOSTIC
    492      1.18  riastrad /*
    493      1.18  riastrad  * Generate some output and apply a statistical RNG test to it.
    494      1.18  riastrad  */
    495      1.18  riastrad static void
    496      1.18  riastrad cprng_strong_rngtest(struct cprng_strong *cprng)
    497       1.1       tls {
    498       1.5       tls 
    499      1.18  riastrad 	KASSERT(mutex_owned(&cprng->cs_lock));
    500      1.18  riastrad 
    501      1.18  riastrad 	/* XXX Switch to a pool cache instead?  */
    502      1.18  riastrad 	rngtest_t *const rt = kmem_intr_alloc(sizeof(*rt), KM_NOSLEEP);
    503      1.18  riastrad 	if (rt == NULL)
    504      1.18  riastrad 		/* XXX Warn?  */
    505      1.18  riastrad 		return;
    506       1.1       tls 
    507      1.18  riastrad 	(void)strlcpy(rt->rt_name, cprng->cs_name, sizeof(rt->rt_name));
    508       1.6       tls 
    509  1.30.2.1    martin 	if (nist_hash_drbg_generate(&cprng->cs_drbg, rt->rt_b,
    510  1.30.2.1    martin 		sizeof(rt->rt_b), NULL, 0))
    511  1.30.2.1    martin 		panic("cprng %s: NIST Hash_DRBG failed after reseed",
    512      1.18  riastrad 		    cprng->cs_name);
    513       1.5       tls 
    514      1.18  riastrad 	if (rngtest(rt)) {
    515      1.18  riastrad 		printf("cprng %s: failed statistical RNG test\n",
    516      1.18  riastrad 		    cprng->cs_name);
    517      1.18  riastrad 		/* XXX Not clear that this does any good...  */
    518      1.18  riastrad 		cprng->cs_ready = false;
    519      1.18  riastrad 		rndsink_schedule(cprng->cs_rndsink);
    520      1.18  riastrad 	}
    521       1.5       tls 
    522      1.20  riastrad 	explicit_memset(rt, 0, sizeof(*rt)); /* paranoia */
    523      1.18  riastrad 	kmem_intr_free(rt, sizeof(*rt));
    524       1.1       tls }
    525      1.18  riastrad #endif
    526       1.1       tls 
    527      1.18  riastrad /*
    528      1.18  riastrad  * Feed entropy from an rndsink request into the CPRNG for which the
    529      1.18  riastrad  * request was issued.
    530      1.18  riastrad  */
    531      1.18  riastrad static void
    532      1.18  riastrad cprng_strong_rndsink_callback(void *context, const void *seed, size_t bytes)
    533       1.1       tls {
    534      1.18  riastrad 	struct cprng_strong *const cprng = context;
    535       1.1       tls 
    536      1.18  riastrad 	mutex_enter(&cprng->cs_lock);
    537      1.18  riastrad 	/* Assume that rndsinks provide only full-entropy output.  */
    538      1.18  riastrad 	cprng_strong_reseed_from(cprng, seed, bytes, true);
    539      1.18  riastrad 	mutex_exit(&cprng->cs_lock);
    540       1.1       tls }
    541      1.23     pooka 
    542  1.30.2.2    martin static ONCE_DECL(sysctl_prng_once);
    543      1.23     pooka static cprng_strong_t *sysctl_prng;
    544      1.23     pooka 
    545      1.23     pooka static int
    546      1.23     pooka makeprng(void)
    547      1.23     pooka {
    548      1.23     pooka 
    549      1.23     pooka 	/* can't create in cprng_init(), too early */
    550      1.23     pooka 	sysctl_prng = cprng_strong_create("sysctl", IPL_NONE,
    551      1.23     pooka 					  CPRNG_INIT_ANY|CPRNG_REKEY_ANY);
    552      1.23     pooka 	return 0;
    553      1.23     pooka }
    554      1.23     pooka 
    555      1.23     pooka /*
    556      1.23     pooka  * sysctl helper routine for kern.urandom node. Picks a random number
    557      1.23     pooka  * for you.
    558      1.23     pooka  */
    559      1.23     pooka static int
    560      1.23     pooka sysctl_kern_urnd(SYSCTLFN_ARGS)
    561      1.23     pooka {
    562      1.23     pooka 	int v, rv;
    563      1.23     pooka 
    564  1.30.2.2    martin 	RUN_ONCE(&sysctl_prng_once, makeprng);
    565      1.23     pooka 	rv = cprng_strong(sysctl_prng, &v, sizeof(v), 0);
    566      1.23     pooka 	if (rv == sizeof(v)) {
    567      1.23     pooka 		struct sysctlnode node = *rnode;
    568      1.23     pooka 		node.sysctl_data = &v;
    569      1.23     pooka 		return (sysctl_lookup(SYSCTLFN_CALL(&node)));
    570      1.23     pooka 	}
    571      1.23     pooka 	else
    572      1.23     pooka 		return (EIO);	/*XXX*/
    573      1.23     pooka }
    574      1.23     pooka 
    575      1.23     pooka /*
    576      1.24       tls  * sysctl helper routine for kern.arandom node.  Fills the supplied
    577      1.24       tls  * structure with random data for you.
    578      1.24       tls  *
    579      1.24       tls  * This node was originally declared as type "int" but its implementation
    580      1.24       tls  * in OpenBSD, whence it came, would happily return up to 8K of data if
    581      1.24       tls  * requested.  Evidently this was used to key RC4 in userspace.
    582      1.24       tls  *
    583      1.24       tls  * In NetBSD, the libc stack-smash-protection code reads 64 bytes
    584      1.24       tls  * from here at every program startup.  So though it would be nice
    585      1.24       tls  * to make this node return only 32 or 64 bits, we can't.  Too bad!
    586      1.23     pooka  */
    587      1.23     pooka static int
    588      1.23     pooka sysctl_kern_arnd(SYSCTLFN_ARGS)
    589      1.23     pooka {
    590      1.23     pooka 	int error;
    591      1.23     pooka 	void *v;
    592      1.23     pooka 	struct sysctlnode node = *rnode;
    593  1.30.2.2    martin 	size_t n __diagused;
    594      1.23     pooka 
    595      1.24       tls 	switch (*oldlenp) {
    596      1.24       tls 	    case 0:
    597      1.23     pooka 		return 0;
    598      1.24       tls 	    default:
    599      1.24       tls 		if (*oldlenp > 256) {
    600      1.24       tls 			return E2BIG;
    601      1.24       tls 		}
    602  1.30.2.2    martin 		RUN_ONCE(&sysctl_prng_once, makeprng);
    603      1.24       tls 		v = kmem_alloc(*oldlenp, KM_SLEEP);
    604  1.30.2.2    martin 		n = cprng_strong(sysctl_prng, v, *oldlenp, 0);
    605  1.30.2.2    martin 		KASSERT(n == *oldlenp);
    606      1.24       tls 		node.sysctl_data = v;
    607      1.24       tls 		node.sysctl_size = *oldlenp;
    608      1.24       tls 		error = sysctl_lookup(SYSCTLFN_CALL(&node));
    609      1.24       tls 		kmem_free(v, *oldlenp);
    610      1.24       tls 		return error;
    611      1.24       tls 	}
    612      1.23     pooka }
    613