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rndctl.c revision 1.30.18.1
      1  1.30.18.1    martin /*	$NetBSD: rndctl.c,v 1.30.18.1 2019/12/17 12:45:30 martin Exp $	*/
      2        1.3     perry 
      3        1.1  explorer /*-
      4        1.1  explorer  * Copyright (c) 1997 Michael Graff.
      5        1.1  explorer  * All rights reserved.
      6        1.1  explorer  *
      7        1.1  explorer  * Redistribution and use in source and binary forms, with or without
      8        1.1  explorer  * modification, are permitted provided that the following conditions
      9        1.1  explorer  * are met:
     10        1.1  explorer  * 1. Redistributions of source code must retain the above copyright
     11        1.1  explorer  *    notice, this list of conditions and the following disclaimer.
     12        1.1  explorer  * 2. Redistributions in binary form must reproduce the above copyright
     13        1.1  explorer  *    notice, this list of conditions and the following disclaimer in the
     14        1.1  explorer  *    documentation and/or other materials provided with the distribution.
     15        1.1  explorer  * 3. Neither the name of the author nor the names of other contributors
     16        1.1  explorer  *    may be used to endorse or promote products derived from this software
     17        1.1  explorer  *    without specific prior written permission.
     18        1.1  explorer  *
     19        1.1  explorer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     20        1.1  explorer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     21        1.1  explorer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     22        1.1  explorer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     23        1.1  explorer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     24        1.1  explorer  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     25        1.1  explorer  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     26        1.1  explorer  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     27        1.1  explorer  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28        1.1  explorer  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29        1.1  explorer  * SUCH DAMAGE.
     30        1.1  explorer  */
     31       1.15       agc #include <sys/cdefs.h>
     32       1.21       tls #include <sys/types.h>
     33       1.21       tls #include <sha1.h>
     34       1.15       agc 
     35       1.15       agc #ifndef lint
     36  1.30.18.1    martin __RCSID("$NetBSD: rndctl.c,v 1.30.18.1 2019/12/17 12:45:30 martin Exp $");
     37       1.15       agc #endif
     38       1.15       agc 
     39        1.1  explorer 
     40       1.11     enami #include <sys/types.h>
     41       1.11     enami #include <sys/ioctl.h>
     42       1.21       tls #include <sys/param.h>
     43       1.30  riastrad #include <sys/rndio.h>
     44  1.30.18.1    martin #include <sys/sha3.h>
     45       1.11     enami 
     46        1.1  explorer #include <stdio.h>
     47        1.1  explorer #include <stdlib.h>
     48        1.1  explorer #include <unistd.h>
     49        1.1  explorer #include <fcntl.h>
     50        1.1  explorer #include <errno.h>
     51        1.1  explorer #include <err.h>
     52       1.25    jruoho #include <paths.h>
     53        1.2  explorer #include <string.h>
     54        1.1  explorer 
     55        1.1  explorer typedef struct {
     56       1.17  christos 	const char *a_name;
     57        1.9     enami 	u_int32_t a_type;
     58        1.1  explorer } arg_t;
     59        1.1  explorer 
     60       1.20     joerg static const arg_t source_types[] = {
     61        1.6  sommerfe 	{ "???",     RND_TYPE_UNKNOWN },
     62        1.1  explorer 	{ "disk",    RND_TYPE_DISK },
     63        1.1  explorer 	{ "net",     RND_TYPE_NET },
     64        1.1  explorer 	{ "tape",    RND_TYPE_TAPE },
     65        1.1  explorer 	{ "tty",     RND_TYPE_TTY },
     66       1.11     enami 	{ "rng",     RND_TYPE_RNG },
     67       1.24       tls 	{ "skew",    RND_TYPE_SKEW },
     68       1.24       tls 	{ "env",     RND_TYPE_ENV },
     69       1.24       tls 	{ "vm",      RND_TYPE_VM },
     70       1.24       tls 	{ "power",   RND_TYPE_POWER },
     71        1.1  explorer 	{ NULL,      0 }
     72        1.1  explorer };
     73        1.1  explorer 
     74       1.20     joerg __dead static void usage(void);
     75       1.20     joerg static u_int32_t find_type(const char *name);
     76       1.20     joerg static const char *find_name(u_int32_t);
     77       1.20     joerg static void do_ioctl(rndctl_t *);
     78       1.20     joerg static char * strflags(u_int32_t);
     79       1.20     joerg static void do_list(int, u_int32_t, char *);
     80       1.20     joerg static void do_stats(void);
     81        1.2  explorer 
     82       1.28       tls static int vflag;
     83       1.28       tls 
     84        1.2  explorer static void
     85        1.1  explorer usage(void)
     86        1.1  explorer {
     87        1.9     enami 
     88       1.29       wiz 	fprintf(stderr, "usage: %s [-CEce] [-d devname | -t devtype]\n",
     89       1.11     enami 	    getprogname());
     90       1.29       wiz 	fprintf(stderr, "       %s [-lsv] [-d devname | -t devtype]\n",
     91       1.11     enami 	    getprogname());
     92       1.21       tls 	fprintf(stderr, "	%s -[L|S] save-file\n", getprogname());
     93        1.5   mycroft 	exit(1);
     94        1.1  explorer }
     95        1.1  explorer 
     96       1.20     joerg static u_int32_t
     97       1.20     joerg find_type(const char *name)
     98        1.1  explorer {
     99       1.20     joerg 	const arg_t *a;
    100        1.1  explorer 
    101        1.1  explorer 	a = source_types;
    102        1.9     enami 
    103        1.9     enami 	while (a->a_name != NULL) {
    104        1.9     enami 		if (strcmp(a->a_name, name) == 0)
    105        1.9     enami 			return (a->a_type);
    106        1.1  explorer 		a++;
    107        1.1  explorer 	}
    108        1.1  explorer 
    109       1.10     enami 	errx(1, "device name %s unknown", name);
    110        1.9     enami 	return (0);
    111        1.1  explorer }
    112        1.1  explorer 
    113       1.20     joerg static const char *
    114        1.1  explorer find_name(u_int32_t type)
    115        1.1  explorer {
    116       1.20     joerg 	const arg_t *a;
    117        1.1  explorer 
    118        1.1  explorer 	a = source_types;
    119        1.9     enami 
    120        1.9     enami 	while (a->a_name != NULL) {
    121        1.9     enami 		if (type == a->a_type)
    122        1.9     enami 			return (a->a_name);
    123        1.1  explorer 		a++;
    124        1.1  explorer 	}
    125        1.1  explorer 
    126       1.10     enami 	warnx("device type %u unknown", type);
    127       1.10     enami 	return ("???");
    128        1.1  explorer }
    129        1.1  explorer 
    130       1.20     joerg static void
    131  1.30.18.1    martin do_save(const char *filename, const void *extra, size_t nextra,
    132  1.30.18.1    martin     uint32_t extraentropy)
    133       1.21       tls {
    134  1.30.18.1    martin 	char tmp[PATH_MAX];
    135  1.30.18.1    martin 	uint32_t systementropy;
    136  1.30.18.1    martin 	uint8_t buf[32];
    137  1.30.18.1    martin 	SHAKE128_CTX shake128;
    138       1.21       tls 	rndsave_t rs;
    139       1.21       tls 	SHA1_CTX s;
    140  1.30.18.1    martin 	ssize_t nread, nwrit;
    141       1.21       tls 	int fd;
    142       1.21       tls 
    143  1.30.18.1    martin 	/* Paranoia: Avoid stack memory disclosure.  */
    144  1.30.18.1    martin 	memset(&rs, 0, sizeof rs);
    145       1.21       tls 
    146  1.30.18.1    martin 	/* Format the temporary file name.  */
    147  1.30.18.1    martin 	if (snprintf(tmp, sizeof tmp, "%s.tmp", filename) >= PATH_MAX)
    148  1.30.18.1    martin 		errx(1, "path too long");
    149       1.21       tls 
    150  1.30.18.1    martin 	/* Open /dev/urandom.  */
    151  1.30.18.1    martin 	if ((fd = open(_PATH_URANDOM, O_RDONLY)) == -1)
    152  1.30.18.1    martin 		err(1, "device open");
    153       1.21       tls 
    154  1.30.18.1    martin 	/* Find how much entropy is in the pool.  */
    155  1.30.18.1    martin 	if (ioctl(fd, RNDGETENTCNT, &systementropy) == -1)
    156  1.30.18.1    martin 		err(1, "ioctl(RNDGETENTCNT)");
    157  1.30.18.1    martin 
    158  1.30.18.1    martin 	/* Read some data from /dev/urandom.  */
    159  1.30.18.1    martin 	if ((size_t)(nread = read(fd, buf, sizeof buf)) != sizeof buf) {
    160  1.30.18.1    martin 		if (nread == -1)
    161  1.30.18.1    martin 			err(1, "read");
    162  1.30.18.1    martin 		else
    163  1.30.18.1    martin 			errx(1, "truncated read");
    164  1.30.18.1    martin 	}
    165  1.30.18.1    martin 
    166  1.30.18.1    martin 	/* Close /dev/urandom; we're done with it.  */
    167  1.30.18.1    martin 	if (close(fd) == -1)
    168  1.30.18.1    martin 		warn("close");
    169  1.30.18.1    martin 	fd = -1;		/* paranoia */
    170       1.21       tls 
    171  1.30.18.1    martin 	/*
    172  1.30.18.1    martin 	 * Hash what we read together with the extra input to generate
    173  1.30.18.1    martin 	 * the seed data.
    174  1.30.18.1    martin 	 */
    175  1.30.18.1    martin 	SHAKE128_Init(&shake128);
    176  1.30.18.1    martin 	SHAKE128_Update(&shake128, buf, sizeof buf);
    177  1.30.18.1    martin 	SHAKE128_Update(&shake128, extra, nextra);
    178  1.30.18.1    martin 	SHAKE128_Final(rs.data, sizeof(rs.data), &shake128);
    179  1.30.18.1    martin 	explicit_memset(&shake128, 0, sizeof shake128); /* paranoia */
    180       1.21       tls 
    181  1.30.18.1    martin 	/*
    182  1.30.18.1    martin 	 * Report an upper bound on the min-entropy of the seed data.
    183  1.30.18.1    martin 	 * We take the larger of the system entropy and the extra
    184  1.30.18.1    martin 	 * entropy -- the system state and the extra input may or may
    185  1.30.18.1    martin 	 * not be independent, so we can't add them -- and clamp to the
    186  1.30.18.1    martin 	 * size of the data.
    187  1.30.18.1    martin 	 */
    188  1.30.18.1    martin 	systementropy = MIN(systementropy,
    189  1.30.18.1    martin 	    MIN(sizeof(buf), UINT32_MAX/NBBY)*NBBY);
    190  1.30.18.1    martin 	extraentropy = MIN(extraentropy, MIN(nextra, UINT32_MAX/NBBY)*NBBY);
    191  1.30.18.1    martin 	rs.entropy = MIN(MAX(systementropy, extraentropy),
    192  1.30.18.1    martin 	    MIN(sizeof(rs.data), UINT32_MAX/NBBY)*NBBY);
    193       1.21       tls 
    194  1.30.18.1    martin 	/*
    195  1.30.18.1    martin 	 * Compute the checksum on the 32-bit entropy count, in host
    196  1.30.18.1    martin 	 * byte order (XXX this means it is not portable across
    197  1.30.18.1    martin 	 * different-endian platforms!), followed by the seed data.
    198  1.30.18.1    martin 	 */
    199       1.21       tls 	SHA1Init(&s);
    200  1.30.18.1    martin 	SHA1Update(&s, (const uint8_t *)&rs.entropy, sizeof(rs.entropy));
    201       1.21       tls 	SHA1Update(&s, rs.data, sizeof(rs.data));
    202       1.21       tls 	SHA1Final(rs.digest, &s);
    203  1.30.18.1    martin 	explicit_memset(&s, 0, sizeof s); /* paranoia */
    204       1.21       tls 
    205  1.30.18.1    martin 	/*
    206  1.30.18.1    martin 	 * Write it to a temporary file and sync it before we commit.
    207  1.30.18.1    martin 	 * This way either the old seed or the new seed is completely
    208  1.30.18.1    martin 	 * written in the expected location on disk even if the system
    209  1.30.18.1    martin 	 * crashes as long as the file system doesn't get corrupted too
    210  1.30.18.1    martin 	 * badly.
    211  1.30.18.1    martin 	 *
    212  1.30.18.1    martin 	 * If interrupted after this point and the temporary file is
    213  1.30.18.1    martin 	 * disclosed, no big deal -- either the pool was predictable to
    214  1.30.18.1    martin 	 * begin with in which case we're hosed either way, or we've
    215  1.30.18.1    martin 	 * just revealed some output which is not a problem.
    216  1.30.18.1    martin 	 */
    217  1.30.18.1    martin 	if ((fd = open(tmp, O_CREAT|O_TRUNC|O_WRONLY, 0600)) == -1)
    218  1.30.18.1    martin 		err(1, "open seed file to save");
    219  1.30.18.1    martin 	if ((size_t)(nwrit = write(fd, &rs, sizeof rs)) != sizeof rs) {
    220  1.30.18.1    martin 		int error = errno;
    221  1.30.18.1    martin 		if (unlink(tmp) == -1)
    222  1.30.18.1    martin 			warn("unlink");
    223  1.30.18.1    martin 		if (nwrit == -1)
    224  1.30.18.1    martin 			errc(1, error, "write");
    225  1.30.18.1    martin 		else
    226  1.30.18.1    martin 			errx(1, "truncated write");
    227  1.30.18.1    martin 	}
    228  1.30.18.1    martin 	explicit_memset(&rs, 0, sizeof rs); /* paranoia */
    229  1.30.18.1    martin 	if (fsync_range(fd, FDATASYNC|FDISKSYNC, 0, 0) == -1) {
    230  1.30.18.1    martin 		int error = errno;
    231  1.30.18.1    martin 		if (unlink(tmp) == -1)
    232  1.30.18.1    martin 			warn("unlink");
    233  1.30.18.1    martin 		errc(1, error, "fsync_range");
    234  1.30.18.1    martin 	}
    235  1.30.18.1    martin 	if (close(fd) == -1)
    236  1.30.18.1    martin 		warn("close");
    237  1.30.18.1    martin 
    238  1.30.18.1    martin 	/* Rename it over the original file to commit.  */
    239  1.30.18.1    martin 	if (rename(tmp, filename) == -1)
    240  1.30.18.1    martin 		err(1, "rename");
    241       1.21       tls }
    242       1.21       tls 
    243       1.21       tls static void
    244  1.30.18.1    martin do_load(const char *filename)
    245       1.21       tls {
    246  1.30.18.1    martin 	char tmp[PATH_MAX];
    247  1.30.18.1    martin 	int fd_seed, fd_random;
    248  1.30.18.1    martin 	rndsave_t rs;
    249       1.21       tls 	rnddata_t rd;
    250  1.30.18.1    martin 	ssize_t nread, nwrit;
    251       1.21       tls 	SHA1_CTX s;
    252       1.21       tls 	uint8_t digest[SHA1_DIGEST_LENGTH];
    253       1.21       tls 
    254  1.30.18.1    martin 	/*
    255  1.30.18.1    martin 	 * The order of operations is important here:
    256  1.30.18.1    martin 	 *
    257  1.30.18.1    martin 	 * 1. Load the old seed.
    258  1.30.18.1    martin 	 * 2. Feed the old seed into the kernel.
    259  1.30.18.1    martin 	 * 3. Generate and write a new seed.
    260  1.30.18.1    martin 	 * 4. Erase the old seed.
    261  1.30.18.1    martin 	 *
    262  1.30.18.1    martin 	 * This follows the procedure in
    263  1.30.18.1    martin 	 *
    264  1.30.18.1    martin 	 *	Niels Ferguson, Bruce Schneier, and Tadayoshi Kohno,
    265  1.30.18.1    martin 	 *	_Cryptography Engineering_, Wiley, 2010, Sec. 9.6.2
    266  1.30.18.1    martin 	 *	`Update Seed File'.
    267  1.30.18.1    martin 	 *
    268  1.30.18.1    martin 	 * There is a race condition: If another process generates a
    269  1.30.18.1    martin 	 * key from /dev/urandom after step (2) but before step (3),
    270  1.30.18.1    martin 	 * and if the machine crashes before step (3), an adversary who
    271  1.30.18.1    martin 	 * can read the disk after the crash can probably guess the
    272  1.30.18.1    martin 	 * complete state of the entropy pool and thereby predict the
    273  1.30.18.1    martin 	 * key.
    274  1.30.18.1    martin 	 *
    275  1.30.18.1    martin 	 * There's not much we can do here without some kind of
    276  1.30.18.1    martin 	 * systemwide lock on /dev/urandom and without introducing an
    277  1.30.18.1    martin 	 * opportunity for a crash to wipe out the entropy altogether.
    278  1.30.18.1    martin 	 * To avoid this race, you should ensure that any key
    279  1.30.18.1    martin 	 * generation happens _after_ `rndctl -L' has completed.
    280  1.30.18.1    martin 	 */
    281       1.21       tls 
    282  1.30.18.1    martin 	/* Format the temporary file name.  */
    283  1.30.18.1    martin 	if (snprintf(tmp, sizeof tmp, "%s.tmp", filename) >= PATH_MAX)
    284  1.30.18.1    martin 		errx(1, "path too long");
    285  1.30.18.1    martin 
    286  1.30.18.1    martin 	/* 1. Load the old seed.  */
    287  1.30.18.1    martin 	if ((fd_seed = open(filename, O_RDWR)) == -1)
    288  1.30.18.1    martin 		err(1, "open seed file to load");
    289  1.30.18.1    martin 	if ((size_t)(nread = read(fd_seed, &rs, sizeof rs)) != sizeof rs) {
    290  1.30.18.1    martin 		if (nread == -1)
    291  1.30.18.1    martin 			err(1, "read seed");
    292  1.30.18.1    martin 		else
    293  1.30.18.1    martin 			errx(1, "seed too short");
    294       1.21       tls 	}
    295       1.21       tls 
    296  1.30.18.1    martin 	/* Verify its checksum.  */
    297       1.21       tls 	SHA1Init(&s);
    298  1.30.18.1    martin 	SHA1Update(&s, (const uint8_t *)&rs.entropy, sizeof(rs.entropy));
    299       1.21       tls 	SHA1Update(&s, rs.data, sizeof(rs.data));
    300       1.21       tls 	SHA1Final(digest, &s);
    301  1.30.18.1    martin 	if (!consttime_memequal(digest, rs.digest, sizeof(digest))) {
    302  1.30.18.1    martin 		/*
    303  1.30.18.1    martin 		 * If the checksum doesn't match, doesn't hurt to feed
    304  1.30.18.1    martin 		 * the seed in anyway, but act as though it has zero
    305  1.30.18.1    martin 		 * entropy in case it was corrupted with predictable
    306  1.30.18.1    martin 		 * garbage.
    307  1.30.18.1    martin 		 */
    308  1.30.18.1    martin 		warnx("bad checksum");
    309  1.30.18.1    martin 		rs.entropy = 0;
    310       1.21       tls 	}
    311       1.21       tls 
    312  1.30.18.1    martin 	/* Format the ioctl request.  */
    313       1.21       tls 	rd.len = MIN(sizeof(rd.data), sizeof(rs.data));
    314       1.21       tls 	rd.entropy = rs.entropy;
    315  1.30.18.1    martin 	memcpy(rd.data, rs.data, rd.len);
    316  1.30.18.1    martin 	explicit_memset(&rs, 0, sizeof rs); /* paranoia */
    317       1.21       tls 
    318  1.30.18.1    martin 	/* 2. Feed the old seed into the kernel.  */
    319  1.30.18.1    martin 	if ((fd_random = open(_PATH_URANDOM, O_WRONLY)) == -1)
    320  1.30.18.1    martin 		err(1, "open /dev/urandom");
    321  1.30.18.1    martin 	if (ioctl(fd_random, RNDADDDATA, &rd) == -1)
    322  1.30.18.1    martin 		err(1, "RNDADDDATA");
    323  1.30.18.1    martin 	if (close(fd_random) == -1)
    324  1.30.18.1    martin 		warn("close /dev/urandom");
    325  1.30.18.1    martin 	fd_random = -1;		/* paranoia */
    326       1.21       tls 
    327  1.30.18.1    martin 	/*
    328  1.30.18.1    martin 	 * 3. Generate and write a new seed.  Note that we hash the old
    329  1.30.18.1    martin 	 * seed together with whatever /dev/urandom returns in do_save.
    330  1.30.18.1    martin 	 * Why?  After RNDADDDATA, the input may not be distributed
    331  1.30.18.1    martin 	 * immediately to /dev/urandom.
    332  1.30.18.1    martin 	 */
    333  1.30.18.1    martin 	do_save(filename, rd.data, rd.len, rd.entropy);
    334  1.30.18.1    martin 	explicit_memset(&rd, 0, sizeof rd); /* paranoia */
    335  1.30.18.1    martin 
    336  1.30.18.1    martin 	/*
    337  1.30.18.1    martin 	 * 4. Erase the old seed.  Only effective if we're on a
    338  1.30.18.1    martin 	 * fixed-address file system like ffs -- doesn't help to erase
    339  1.30.18.1    martin 	 * the data on lfs, but doesn't hurt either.  No need to unlink
    340  1.30.18.1    martin 	 * because do_save will have already overwritten it.
    341  1.30.18.1    martin 	 */
    342  1.30.18.1    martin 	memset(&rs, 0, sizeof rs);
    343  1.30.18.1    martin 	if ((size_t)(nwrit = pwrite(fd_seed, &rs, sizeof rs, 0)) !=
    344  1.30.18.1    martin 	    sizeof rs) {
    345  1.30.18.1    martin 		if (nwrit == -1)
    346  1.30.18.1    martin 			err(1, "overwrite old seed");
    347  1.30.18.1    martin 		else
    348  1.30.18.1    martin 			errx(1, "truncated overwrite");
    349       1.21       tls 	}
    350  1.30.18.1    martin 	if (fsync_range(fd_seed, FDATASYNC|FDISKSYNC, 0, 0) == -1)
    351  1.30.18.1    martin 		err(1, "fsync_range");
    352       1.21       tls }
    353       1.21       tls 
    354       1.21       tls static void
    355        1.1  explorer do_ioctl(rndctl_t *rctl)
    356        1.1  explorer {
    357        1.1  explorer 	int fd;
    358        1.1  explorer 	int res;
    359        1.1  explorer 
    360       1.25    jruoho 	fd = open(_PATH_URANDOM, O_RDONLY, 0644);
    361        1.1  explorer 	if (fd < 0)
    362        1.1  explorer 		err(1, "open");
    363        1.1  explorer 
    364        1.1  explorer 	res = ioctl(fd, RNDCTL, rctl);
    365        1.1  explorer 	if (res < 0)
    366        1.1  explorer 		err(1, "ioctl(RNDCTL)");
    367        1.1  explorer 
    368        1.1  explorer 	close(fd);
    369        1.1  explorer }
    370        1.1  explorer 
    371       1.20     joerg static char *
    372        1.1  explorer strflags(u_int32_t fl)
    373        1.1  explorer {
    374        1.1  explorer 	static char str[512];
    375        1.1  explorer 
    376       1.28       tls 	str[0] = '\0';
    377        1.1  explorer 	if (fl & RND_FLAG_NO_ESTIMATE)
    378        1.6  sommerfe 		;
    379        1.9     enami 	else
    380       1.28       tls 		strlcat(str, "estimate, ", sizeof(str));
    381        1.9     enami 
    382        1.1  explorer 	if (fl & RND_FLAG_NO_COLLECT)
    383        1.6  sommerfe 		;
    384       1.28       tls 	else
    385       1.28       tls 		strlcat(str, "collect, ", sizeof(str));
    386       1.28       tls 
    387       1.28       tls 	if (fl & RND_FLAG_COLLECT_VALUE)
    388       1.28       tls 		strlcat(str, "v, ", sizeof(str));
    389       1.28       tls 	if (fl & RND_FLAG_COLLECT_TIME)
    390       1.28       tls 		strlcat(str, "t, ", sizeof(str));
    391       1.28       tls 	if (fl & RND_FLAG_ESTIMATE_VALUE)
    392       1.28       tls 		strlcat(str, "dv, ", sizeof(str));
    393       1.28       tls 	if (fl & RND_FLAG_ESTIMATE_TIME)
    394       1.28       tls 		strlcat(str, "dt, ", sizeof(str));
    395       1.28       tls 
    396       1.28       tls 	if (str[strlen(str) - 2] == ',')
    397       1.28       tls 		str[strlen(str) - 2] = '\0';
    398        1.9     enami 
    399        1.9     enami 	return (str);
    400        1.1  explorer }
    401        1.1  explorer 
    402        1.6  sommerfe #define HEADER "Source                 Bits Type      Flags\n"
    403        1.1  explorer 
    404       1.20     joerg static void
    405        1.1  explorer do_list(int all, u_int32_t type, char *name)
    406        1.1  explorer {
    407       1.28       tls 	rndstat_est_t rstat;
    408       1.28       tls 	rndstat_est_name_t rstat_name;
    409        1.9     enami 	int fd;
    410        1.9     enami 	int res;
    411       1.19     lukem 	uint32_t i;
    412        1.9     enami 	u_int32_t start;
    413        1.1  explorer 
    414       1.25    jruoho 	fd = open(_PATH_URANDOM, O_RDONLY, 0644);
    415        1.1  explorer 	if (fd < 0)
    416        1.1  explorer 		err(1, "open");
    417        1.1  explorer 
    418        1.1  explorer 	if (all == 0 && type == 0xff) {
    419       1.14    itojun 		strncpy(rstat_name.name, name, sizeof(rstat_name.name));
    420       1.28       tls 		res = ioctl(fd, RNDGETESTNAME, &rstat_name);
    421        1.1  explorer 		if (res < 0)
    422       1.28       tls 			err(1, "ioctl(RNDGETESTNAME)");
    423        1.1  explorer 		printf(HEADER);
    424        1.6  sommerfe 		printf("%-16s %10u %-4s %s\n",
    425       1.28       tls 		    rstat_name.source.rt.name,
    426       1.28       tls 		    rstat_name.source.rt.total,
    427       1.28       tls 		    find_name(rstat_name.source.rt.type),
    428       1.28       tls 		    strflags(rstat_name.source.rt.flags));
    429       1.28       tls 		if (vflag) {
    430       1.28       tls 			printf("\tDt samples = %d\n",
    431       1.28       tls 			       rstat_name.source.dt_samples);
    432       1.28       tls 			printf("\tDt bits = %d\n",
    433       1.28       tls 			       rstat_name.source.dt_total);
    434       1.28       tls 			printf("\tDv samples = %d\n",
    435       1.28       tls 				rstat_name.source.dv_samples);
    436       1.28       tls 			printf("\tDv bits = %d\n",
    437       1.28       tls 			       rstat_name.source.dv_total);
    438       1.28       tls 		}
    439        1.1  explorer 		close(fd);
    440        1.1  explorer 		return;
    441        1.1  explorer 	}
    442        1.1  explorer 
    443        1.1  explorer 	/*
    444        1.9     enami 	 * Run through all the devices present in the system, and either
    445        1.1  explorer 	 * print out ones that match, or print out all of them.
    446        1.1  explorer 	 */
    447        1.1  explorer 	printf(HEADER);
    448        1.1  explorer 	start = 0;
    449        1.1  explorer 	for (;;) {
    450        1.1  explorer 		rstat.count = RND_MAXSTATCOUNT;
    451        1.1  explorer 		rstat.start = start;
    452       1.28       tls 		res = ioctl(fd, RNDGETESTNUM, &rstat);
    453        1.1  explorer 		if (res < 0)
    454       1.28       tls 			err(1, "ioctl(RNDGETESTNUM)");
    455        1.9     enami 
    456        1.1  explorer 		if (rstat.count == 0)
    457        1.1  explorer 			break;
    458        1.9     enami 
    459       1.19     lukem 		for (i = 0; i < rstat.count; i++) {
    460        1.9     enami 			if (all != 0 ||
    461       1.28       tls 			    type == rstat.source[i].rt.type)
    462        1.6  sommerfe 				printf("%-16s %10u %-4s %s\n",
    463       1.28       tls 				    rstat.source[i].rt.name,
    464       1.28       tls 				    rstat.source[i].rt.total,
    465       1.28       tls 				    find_name(rstat.source[i].rt.type),
    466       1.28       tls 				    strflags(rstat.source[i].rt.flags));
    467       1.28       tls 			if (vflag) {
    468       1.28       tls 				printf("\tDt samples = %d\n",
    469       1.28       tls 				       rstat.source[i].dt_samples);
    470       1.28       tls 				printf("\tDt bits = %d\n",
    471       1.28       tls 				       rstat.source[i].dt_total);
    472       1.28       tls 				printf("\tDv samples = %d\n",
    473       1.28       tls 				       rstat.source[i].dv_samples);
    474       1.28       tls 				printf("\tDv bits = %d\n",
    475       1.28       tls 				       rstat.source[i].dv_total);
    476       1.28       tls 			}
    477       1.28       tls                 }
    478        1.1  explorer 		start += rstat.count;
    479        1.1  explorer 	}
    480        1.1  explorer 
    481        1.1  explorer 	close(fd);
    482        1.1  explorer }
    483        1.1  explorer 
    484       1.20     joerg static void
    485       1.20     joerg do_stats(void)
    486        1.6  sommerfe {
    487        1.6  sommerfe 	rndpoolstat_t rs;
    488        1.6  sommerfe 	int fd;
    489        1.9     enami 
    490       1.25    jruoho 	fd = open(_PATH_URANDOM, O_RDONLY, 0644);
    491        1.6  sommerfe 	if (fd < 0)
    492        1.6  sommerfe 		err(1, "open");
    493        1.9     enami 
    494        1.6  sommerfe 	if (ioctl(fd, RNDGETPOOLSTAT, &rs) < 0)
    495        1.6  sommerfe 		err(1, "ioctl(RNDGETPOOLSTAT)");
    496        1.6  sommerfe 
    497       1.12     enami 	printf("\t%9u bits mixed into pool\n", rs.added);
    498       1.12     enami 	printf("\t%9u bits currently stored in pool (max %u)\n",
    499        1.6  sommerfe 	    rs.curentropy, rs.maxentropy);
    500       1.12     enami 	printf("\t%9u bits of entropy discarded due to full pool\n",
    501        1.6  sommerfe 	    rs.discarded);
    502       1.12     enami 	printf("\t%9u hard-random bits generated\n", rs.removed);
    503       1.12     enami 	printf("\t%9u pseudo-random bits generated\n", rs.generated);
    504        1.6  sommerfe 
    505        1.6  sommerfe 	close(fd);
    506        1.6  sommerfe }
    507        1.6  sommerfe 
    508        1.1  explorer int
    509        1.1  explorer main(int argc, char **argv)
    510        1.1  explorer {
    511        1.9     enami 	rndctl_t rctl;
    512        1.9     enami 	int ch, cmd, lflag, mflag, sflag;
    513        1.1  explorer 	u_int32_t type;
    514        1.9     enami 	char name[16];
    515       1.21       tls 	const char *filename = NULL;
    516        1.1  explorer 
    517  1.30.18.1    martin 	if (SHA3_Selftest() != 0)
    518  1.30.18.1    martin 		errx(1, "SHA-3 self-test failed");
    519  1.30.18.1    martin 
    520        1.1  explorer 	rctl.mask = 0;
    521        1.1  explorer 	rctl.flags = 0;
    522        1.1  explorer 
    523        1.1  explorer 	cmd = 0;
    524        1.1  explorer 	lflag = 0;
    525        1.1  explorer 	mflag = 0;
    526        1.7      joda 	sflag = 0;
    527        1.2  explorer 	type = 0xff;
    528        1.1  explorer 
    529       1.28       tls 	while ((ch = getopt(argc, argv, "CES:L:celt:d:sv")) != -1) {
    530        1.9     enami 		switch (ch) {
    531        1.1  explorer 		case 'C':
    532        1.1  explorer 			rctl.flags |= RND_FLAG_NO_COLLECT;
    533        1.1  explorer 			rctl.mask |= RND_FLAG_NO_COLLECT;
    534        1.1  explorer 			mflag++;
    535        1.1  explorer 			break;
    536        1.1  explorer 		case 'E':
    537        1.1  explorer 			rctl.flags |= RND_FLAG_NO_ESTIMATE;
    538        1.1  explorer 			rctl.mask |= RND_FLAG_NO_ESTIMATE;
    539        1.1  explorer 			mflag++;
    540        1.1  explorer 			break;
    541       1.21       tls 		case 'L':
    542       1.21       tls 			if (cmd != 0)
    543       1.21       tls 				usage();
    544       1.21       tls 			cmd = 'L';
    545       1.21       tls 			filename = optarg;
    546       1.21       tls 			break;
    547       1.21       tls 		case 'S':
    548       1.21       tls 			if (cmd != 0)
    549       1.21       tls 				usage();
    550       1.21       tls 			cmd = 'S';
    551       1.21       tls 			filename = optarg;
    552       1.21       tls 			break;
    553        1.1  explorer 		case 'c':
    554        1.1  explorer 			rctl.flags &= ~RND_FLAG_NO_COLLECT;
    555        1.1  explorer 			rctl.mask |= RND_FLAG_NO_COLLECT;
    556        1.1  explorer 			mflag++;
    557        1.1  explorer 			break;
    558        1.1  explorer 		case 'e':
    559        1.1  explorer 			rctl.flags &= ~RND_FLAG_NO_ESTIMATE;
    560        1.1  explorer 			rctl.mask |= RND_FLAG_NO_ESTIMATE;
    561        1.1  explorer 			mflag++;
    562        1.1  explorer 			break;
    563        1.1  explorer 		case 'l':
    564        1.1  explorer 			lflag++;
    565        1.1  explorer 			break;
    566        1.1  explorer 		case 't':
    567        1.1  explorer 			if (cmd != 0)
    568        1.1  explorer 				usage();
    569        1.1  explorer 			cmd = 't';
    570        1.1  explorer 
    571        1.1  explorer 			type = find_type(optarg);
    572        1.1  explorer 			break;
    573        1.1  explorer 		case 'd':
    574        1.1  explorer 			if (cmd != 0)
    575        1.1  explorer 				usage();
    576        1.1  explorer 			cmd = 'd';
    577        1.1  explorer 
    578        1.1  explorer 			type = 0xff;
    579       1.14    itojun 			strlcpy(name, optarg, sizeof(name));
    580        1.1  explorer 			break;
    581        1.6  sommerfe 		case 's':
    582        1.6  sommerfe 			sflag++;
    583        1.6  sommerfe 			break;
    584       1.28       tls 		case 'v':
    585       1.28       tls 			vflag++;
    586       1.28       tls 			break;
    587        1.1  explorer 		case '?':
    588        1.1  explorer 		default:
    589        1.1  explorer 			usage();
    590        1.1  explorer 		}
    591       1.18       apb 	}
    592       1.18       apb 	argc -= optind;
    593       1.18       apb 	argv += optind;
    594       1.18       apb 
    595       1.18       apb 	/*
    596       1.18       apb 	 * No leftover non-option arguments.
    597       1.18       apb 	 */
    598       1.18       apb 	if (argc > 0)
    599       1.18       apb 		usage();
    600        1.1  explorer 
    601        1.1  explorer 	/*
    602       1.21       tls 	 * Save.
    603       1.21       tls 	 */
    604       1.21       tls 	if (cmd == 'S') {
    605  1.30.18.1    martin 		do_save(filename, NULL, 0, 0);
    606       1.21       tls 		exit(0);
    607       1.21       tls 	}
    608       1.21       tls 
    609       1.21       tls 	/*
    610       1.21       tls 	 * Load.
    611       1.21       tls 	 */
    612       1.21       tls 	if (cmd == 'L') {
    613       1.21       tls 		do_load(filename);
    614       1.21       tls 		exit(0);
    615       1.21       tls 	}
    616       1.21       tls 
    617       1.21       tls 	/*
    618        1.9     enami 	 * Cannot list and modify at the same time.
    619        1.1  explorer 	 */
    620        1.6  sommerfe 	if ((lflag != 0 || sflag != 0) && mflag != 0)
    621        1.1  explorer 		usage();
    622        1.1  explorer 
    623        1.1  explorer 	/*
    624        1.9     enami 	 * Bomb out on no-ops.
    625        1.1  explorer 	 */
    626        1.6  sommerfe 	if (lflag == 0 && mflag == 0 && sflag == 0)
    627        1.1  explorer 		usage();
    628        1.1  explorer 
    629        1.1  explorer 	/*
    630        1.9     enami 	 * If not listing, we need a device name or a type.
    631        1.1  explorer 	 */
    632        1.6  sommerfe 	if (lflag == 0 && cmd == 0 && sflag == 0)
    633        1.1  explorer 		usage();
    634        1.1  explorer 
    635        1.1  explorer 	/*
    636        1.9     enami 	 * Modify request.
    637        1.1  explorer 	 */
    638        1.1  explorer 	if (mflag != 0) {
    639        1.1  explorer 		rctl.type = type;
    640       1.14    itojun 		strncpy(rctl.name, name, sizeof(rctl.name));
    641        1.1  explorer 		do_ioctl(&rctl);
    642        1.1  explorer 
    643        1.1  explorer 		exit(0);
    644        1.1  explorer 	}
    645        1.1  explorer 
    646        1.1  explorer 	/*
    647        1.9     enami 	 * List sources.
    648        1.1  explorer 	 */
    649        1.1  explorer 	if (lflag != 0)
    650        1.1  explorer 		do_list(cmd == 0, type, name);
    651        1.1  explorer 
    652        1.6  sommerfe 	if (sflag != 0)
    653        1.6  sommerfe 		do_stats();
    654        1.9     enami 
    655        1.9     enami 	exit(0);
    656        1.1  explorer }
    657