xref: /freebsd/crypto/openssh/ssh-keygen.c (revision bb5c77e9d281d6def6835d48249898764bc6a5fe)
1 /* $OpenBSD: ssh-keygen.c,v 1.492 2026/06/30 23:55:32 djm Exp $ */
2 /*
3  * Author: Tatu Ylonen <ylo@cs.hut.fi>
4  * Copyright (c) 1994 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
5  *                    All rights reserved
6  * Identity and host key generation and maintenance.
7  *
8  * As far as I am concerned, the code I have written for this software
9  * can be used freely for any purpose.  Any derived versions of this
10  * software must be clearly marked as such, and if the derived work is
11  * incompatible with the protocol description in the RFC file, it must be
12  * called by a name other than "ssh" or "Secure Shell".
13  */
14 
15 #include "includes.h"
16 
17 #include <sys/types.h>
18 #include <sys/socket.h>
19 #include <sys/stat.h>
20 
21 #ifdef WITH_OPENSSL
22 #include "openbsd-compat/openssl-compat.h"
23 #include <openssl/bn.h>
24 #include <openssl/evp.h>
25 #include <openssl/pem.h>
26 #endif
27 
28 #include <stdint.h>
29 #include <errno.h>
30 #include <fcntl.h>
31 #include <netdb.h>
32 #include <paths.h>
33 #include <pwd.h>
34 #include <stdarg.h>
35 #include <stdio.h>
36 #include <stdlib.h>
37 #include <string.h>
38 #include <unistd.h>
39 #include <limits.h>
40 #include <locale.h>
41 #include <time.h>
42 
43 #include "xmalloc.h"
44 #include "sshkey.h"
45 #include "authfile.h"
46 #include "sshbuf.h"
47 #include "pathnames.h"
48 #include "log.h"
49 #include "misc.h"
50 #include "match.h"
51 #include "hostfile.h"
52 #include "dns.h"
53 #include "ssh.h"
54 #include "ssh2.h"
55 #include "ssherr.h"
56 #include "atomicio.h"
57 #include "krl.h"
58 #include "digest.h"
59 #include "utf8.h"
60 #include "authfd.h"
61 #include "sshsig.h"
62 #include "ssh-sk.h"
63 #include "sk-api.h" /* XXX for SSH_SK_USER_PRESENCE_REQD; remove */
64 #include "cipher.h"
65 
66 #ifdef ENABLE_PKCS11
67 #include "ssh-pkcs11.h"
68 #endif
69 
70 #define DEFAULT_KEY_TYPE_NAME "ed25519"
71 
72 /*
73  * Default number of bits in the RSA and ECDSA keys.  These value can be
74  * overridden on the command line.
75  *
76  * These values provide security equivalent to at least 128 bits of security
77  * according to NIST Special Publication 800-57: Recommendation for Key
78  * Management Part 1 rev 4 section 5.6.1.
79  */
80 #define DEFAULT_BITS		3072
81 #define DEFAULT_BITS_ECDSA	256
82 
83 static int quiet = 0;
84 
85 /* Flag indicating that we just want to see the key fingerprint */
86 static int print_fingerprint = 0;
87 static int print_bubblebabble = 0;
88 
89 /* Hash algorithm to use for fingerprints. */
90 static int fingerprint_hash = SSH_FP_HASH_DEFAULT;
91 
92 /* The identity file name, given on the command line or entered by the user. */
93 static char identity_file[PATH_MAX];
94 static int have_identity = 0;
95 
96 /* This is set to the passphrase if given on the command line. */
97 static char *identity_passphrase = NULL;
98 
99 /* This is set to the new passphrase if given on the command line. */
100 static char *identity_new_passphrase = NULL;
101 
102 /* Key type when certifying */
103 static u_int cert_key_type = SSH2_CERT_TYPE_USER;
104 
105 /* "key ID" of signed key */
106 static char *cert_key_id = NULL;
107 
108 /* Comma-separated list of principal names for certifying keys */
109 static char *cert_principals = NULL;
110 
111 /* Validity period for certificates */
112 static uint64_t cert_valid_from = 0;
113 static uint64_t cert_valid_to = ~0ULL;
114 
115 /* Certificate options */
116 #define CERTOPT_X_FWD				(1)
117 #define CERTOPT_AGENT_FWD			(1<<1)
118 #define CERTOPT_PORT_FWD			(1<<2)
119 #define CERTOPT_PTY				(1<<3)
120 #define CERTOPT_USER_RC				(1<<4)
121 #define CERTOPT_NO_REQUIRE_USER_PRESENCE	(1<<5)
122 #define CERTOPT_REQUIRE_VERIFY			(1<<6)
123 #define CERTOPT_DEFAULT	(CERTOPT_X_FWD|CERTOPT_AGENT_FWD| \
124 			 CERTOPT_PORT_FWD|CERTOPT_PTY|CERTOPT_USER_RC)
125 static uint32_t certflags_flags = CERTOPT_DEFAULT;
126 static char *certflags_command = NULL;
127 static char *certflags_src_addr = NULL;
128 
129 /* Arbitrary extensions specified by user */
130 struct cert_ext {
131 	char *key;
132 	char *val;
133 	int crit;
134 };
135 static struct cert_ext *cert_ext;
136 static size_t ncert_ext;
137 
138 /* Conversion to/from various formats */
139 enum {
140 	FMT_RFC4716,
141 	FMT_PKCS8,
142 	FMT_PEM
143 } convert_format = FMT_RFC4716;
144 
145 static char *key_type_name = NULL;
146 
147 /* Load key from this PKCS#11 provider */
148 static char *pkcs11provider = NULL;
149 
150 /* FIDO/U2F provider to use */
151 static char *sk_provider = NULL;
152 
153 /* Format for writing private keys */
154 static int private_key_format = SSHKEY_PRIVATE_OPENSSH;
155 
156 /* Cipher for new-format private keys */
157 static char *openssh_format_cipher = NULL;
158 
159 /* Number of KDF rounds to derive new format keys. */
160 static int rounds = 0;
161 
162 /* argv0 */
163 extern char *__progname;
164 
165 static char hostname[NI_MAXHOST];
166 
167 #ifdef WITH_OPENSSL
168 /* moduli.c */
169 int gen_candidates(FILE *, uint32_t, BIGNUM *);
170 int prime_test(FILE *, FILE *, uint32_t, uint32_t, char *, unsigned long,
171     unsigned long);
172 #endif
173 
174 static void
type_bits_valid(int type,const char * name,uint32_t * bitsp)175 type_bits_valid(int type, const char *name, uint32_t *bitsp)
176 {
177 	if (type == KEY_UNSPEC)
178 		fatal("unknown key type %s", key_type_name);
179 	if (*bitsp == 0) {
180 #ifdef WITH_OPENSSL
181 		int nid;
182 
183 		switch(type) {
184 		case KEY_ECDSA:
185 			if (name != NULL &&
186 			    (nid = sshkey_ecdsa_nid_from_name(name)) > 0)
187 				*bitsp = sshkey_curve_nid_to_bits(nid);
188 			if (*bitsp == 0)
189 				*bitsp = DEFAULT_BITS_ECDSA;
190 			break;
191 		case KEY_RSA:
192 			*bitsp = DEFAULT_BITS;
193 			break;
194 		}
195 #endif
196 	}
197 #ifdef WITH_OPENSSL
198 	switch (type) {
199 	case KEY_RSA:
200 		if (*bitsp < SSH_RSA_MINIMUM_MODULUS_SIZE)
201 			fatal("Invalid RSA key length: minimum is %d bits",
202 			    SSH_RSA_MINIMUM_MODULUS_SIZE);
203 		else if (*bitsp > OPENSSL_RSA_MAX_MODULUS_BITS)
204 			fatal("Invalid RSA key length: maximum is %d bits",
205 			    OPENSSL_RSA_MAX_MODULUS_BITS);
206 		break;
207 	case KEY_ECDSA:
208 		if (sshkey_ecdsa_bits_to_nid(*bitsp) == -1)
209 #ifdef OPENSSL_HAS_NISTP521
210 			fatal("Invalid ECDSA key length: valid lengths are "
211 			    "256, 384 or 521 bits");
212 #else
213 			fatal("Invalid ECDSA key length: valid lengths are "
214 			    "256 or 384 bits");
215 #endif
216 	}
217 #endif
218 }
219 
220 /*
221  * Checks whether a file exists and, if so, asks the user whether they wish
222  * to overwrite it.
223  * Returns nonzero if the file does not already exist or if the user agrees to
224  * overwrite, or zero otherwise.
225  */
226 static int
confirm_overwrite(const char * filename)227 confirm_overwrite(const char *filename)
228 {
229 	char yesno[3];
230 	struct stat st;
231 
232 	if (stat(filename, &st) != 0)
233 		return 1;
234 	printf("%s already exists.\n", filename);
235 	printf("Overwrite (y/n)? ");
236 	fflush(stdout);
237 	if (fgets(yesno, sizeof(yesno), stdin) == NULL)
238 		return 0;
239 	if (yesno[0] != 'y' && yesno[0] != 'Y')
240 		return 0;
241 	return 1;
242 }
243 
244 static void
ask_filename(struct passwd * pw,const char * prompt)245 ask_filename(struct passwd *pw, const char *prompt)
246 {
247 	char buf[1024];
248 	char *name = NULL;
249 
250 	if (key_type_name == NULL)
251 		name = _PATH_SSH_CLIENT_ID_ED25519;
252 	else {
253 		switch (sshkey_type_from_shortname(key_type_name)) {
254 #ifdef OPENSSL_HAS_ECC
255 		case KEY_ECDSA_CERT:
256 		case KEY_ECDSA:
257 			name = _PATH_SSH_CLIENT_ID_ECDSA;
258 			break;
259 		case KEY_ECDSA_SK_CERT:
260 		case KEY_ECDSA_SK:
261 			name = _PATH_SSH_CLIENT_ID_ECDSA_SK;
262 			break;
263 #endif
264 		case KEY_RSA_CERT:
265 		case KEY_RSA:
266 			name = _PATH_SSH_CLIENT_ID_RSA;
267 			break;
268 		case KEY_ED25519:
269 		case KEY_ED25519_CERT:
270 			name = _PATH_SSH_CLIENT_ID_ED25519;
271 			break;
272 		case KEY_ED25519_SK:
273 		case KEY_ED25519_SK_CERT:
274 			name = _PATH_SSH_CLIENT_ID_ED25519_SK;
275 			break;
276 		case KEY_MLDSA44_ED25519:
277 		case KEY_MLDSA44_ED25519_CERT:
278 			name = _PATH_SSH_CLIENT_ID_MLDSA44_ED25519;
279 			break;
280 		default:
281 			fatal("bad key type");
282 		}
283 	}
284 	snprintf(identity_file, sizeof(identity_file),
285 	    "%s/%s", pw->pw_dir, name);
286 	printf("%s (%s): ", prompt, identity_file);
287 	fflush(stdout);
288 	if (fgets(buf, sizeof(buf), stdin) == NULL)
289 		exit(1);
290 	buf[strcspn(buf, "\n")] = '\0';
291 	if (strcmp(buf, "") != 0)
292 		strlcpy(identity_file, buf, sizeof(identity_file));
293 	have_identity = 1;
294 }
295 
296 static struct sshkey *
load_identity(const char * filename,char ** commentp)297 load_identity(const char *filename, char **commentp)
298 {
299 	char *prompt, *pass;
300 	struct sshkey *prv;
301 	int r;
302 
303 	if (commentp != NULL)
304 		*commentp = NULL;
305 	if ((r = sshkey_load_private(filename, "", &prv, commentp)) == 0)
306 		return prv;
307 	if (r != SSH_ERR_KEY_WRONG_PASSPHRASE)
308 		fatal_r(r, "Load key \"%s\"", filename);
309 	if (identity_passphrase)
310 		pass = xstrdup(identity_passphrase);
311 	else {
312 		xasprintf(&prompt, "Enter passphrase for \"%s\": ", filename);
313 		pass = read_passphrase(prompt, RP_ALLOW_STDIN);
314 		free(prompt);
315 	}
316 	r = sshkey_load_private(filename, pass, &prv, commentp);
317 	freezero(pass, strlen(pass));
318 	if (r != 0)
319 		fatal_r(r, "Load key \"%s\"", filename);
320 	return prv;
321 }
322 
323 #define SSH_COM_PUBLIC_BEGIN		"---- BEGIN SSH2 PUBLIC KEY ----"
324 #define SSH_COM_PUBLIC_END		"---- END SSH2 PUBLIC KEY ----"
325 #define SSH_COM_PRIVATE_BEGIN		"---- BEGIN SSH2 ENCRYPTED PRIVATE KEY ----"
326 #define	SSH_COM_PRIVATE_KEY_MAGIC	0x3f6ff9eb
327 
328 #ifdef WITH_OPENSSL
329 static void
do_convert_to_ssh2(struct passwd * pw,struct sshkey * k)330 do_convert_to_ssh2(struct passwd *pw, struct sshkey *k)
331 {
332 	struct sshbuf *b;
333 	char comment[61], *b64;
334 	int r;
335 
336 	if ((b = sshbuf_new()) == NULL)
337 		fatal_f("sshbuf_new failed");
338 	if ((r = sshkey_putb(k, b)) != 0)
339 		fatal_fr(r, "put key");
340 	if ((b64 = sshbuf_dtob64_string(b, 1)) == NULL)
341 		fatal_f("sshbuf_dtob64_string failed");
342 
343 	/* Comment + surrounds must fit into 72 chars (RFC 4716 sec 3.3) */
344 	snprintf(comment, sizeof(comment),
345 	    "%u-bit %s, converted by %s@%s from OpenSSH",
346 	    sshkey_size(k), sshkey_type(k),
347 	    pw->pw_name, hostname);
348 
349 	sshkey_free(k);
350 	sshbuf_free(b);
351 
352 	fprintf(stdout, "%s\n", SSH_COM_PUBLIC_BEGIN);
353 	fprintf(stdout, "Comment: \"%s\"\n%s", comment, b64);
354 	fprintf(stdout, "%s\n", SSH_COM_PUBLIC_END);
355 	free(b64);
356 }
357 
358 static void
do_convert_to_pkcs8(struct sshkey * k)359 do_convert_to_pkcs8(struct sshkey *k)
360 {
361 	switch (sshkey_type_plain(k->type)) {
362 	case KEY_RSA:
363 		if (!PEM_write_RSA_PUBKEY(stdout,
364 		    EVP_PKEY_get0_RSA(k->pkey)))
365 			fatal("PEM_write_RSA_PUBKEY failed");
366 		break;
367 #ifdef OPENSSL_HAS_ECC
368 	case KEY_ECDSA:
369 		if (!PEM_write_EC_PUBKEY(stdout,
370 		    EVP_PKEY_get0_EC_KEY(k->pkey)))
371 			fatal("PEM_write_EC_PUBKEY failed");
372 		break;
373 #endif
374 	default:
375 		fatal_f("unsupported key type %s", sshkey_type(k));
376 	}
377 }
378 
379 static void
do_convert_to_pem(struct sshkey * k)380 do_convert_to_pem(struct sshkey *k)
381 {
382 	switch (sshkey_type_plain(k->type)) {
383 	case KEY_RSA:
384 		if (!PEM_write_RSAPublicKey(stdout,
385 		    EVP_PKEY_get0_RSA(k->pkey)))
386 			fatal("PEM_write_RSAPublicKey failed");
387 		break;
388 #ifdef OPENSSL_HAS_ECC
389 	case KEY_ECDSA:
390 		if (!PEM_write_EC_PUBKEY(stdout,
391 		    EVP_PKEY_get0_EC_KEY(k->pkey)))
392 			fatal("PEM_write_EC_PUBKEY failed");
393 		break;
394 #endif
395 	default:
396 		fatal_f("unsupported key type %s", sshkey_type(k));
397 	}
398 }
399 
400 static void
do_convert_to(struct passwd * pw)401 do_convert_to(struct passwd *pw)
402 {
403 	struct sshkey *k;
404 	struct stat st;
405 	int r;
406 
407 	if (!have_identity)
408 		ask_filename(pw, "Enter file in which the key is");
409 	if (stat(identity_file, &st) == -1)
410 		fatal("%s: %s: %s", __progname, identity_file, strerror(errno));
411 	if ((r = sshkey_load_public(identity_file, &k, NULL)) != 0)
412 		k = load_identity(identity_file, NULL);
413 	switch (convert_format) {
414 	case FMT_RFC4716:
415 		do_convert_to_ssh2(pw, k);
416 		break;
417 	case FMT_PKCS8:
418 		do_convert_to_pkcs8(k);
419 		break;
420 	case FMT_PEM:
421 		do_convert_to_pem(k);
422 		break;
423 	default:
424 		fatal_f("unknown key format %d", convert_format);
425 	}
426 }
427 
428 /*
429  * This is almost exactly the bignum1 encoding, but with 32 bit for length
430  * instead of 16.
431  */
432 static void
buffer_get_bignum_bits(struct sshbuf * b,BIGNUM * value)433 buffer_get_bignum_bits(struct sshbuf *b, BIGNUM *value)
434 {
435 	u_int bytes, bignum_bits;
436 	int r;
437 
438 	if ((r = sshbuf_get_u32(b, &bignum_bits)) != 0)
439 		fatal_fr(r, "parse");
440 	bytes = (bignum_bits + 7) / 8;
441 	if (sshbuf_len(b) < bytes)
442 		fatal_f("input buffer too small: need %d have %zu",
443 		    bytes, sshbuf_len(b));
444 	if (BN_bin2bn(sshbuf_ptr(b), bytes, value) == NULL)
445 		fatal_f("BN_bin2bn failed");
446 	if ((r = sshbuf_consume(b, bytes)) != 0)
447 		fatal_fr(r, "consume");
448 }
449 
450 static struct sshkey *
do_convert_private_ssh2(struct sshbuf * b)451 do_convert_private_ssh2(struct sshbuf *b)
452 {
453 	struct sshkey *key = NULL;
454 	char *type, *cipher;
455 	const char *alg = NULL;
456 	u_char e1, e2, e3, *sig = NULL, data[] = "abcde12345";
457 	int r, rlen, ktype;
458 	u_int magic, i1, i2, i3, i4;
459 	size_t slen;
460 	u_long e;
461 	BIGNUM *rsa_n = NULL, *rsa_e = NULL, *rsa_d = NULL;
462 	BIGNUM *rsa_p = NULL, *rsa_q = NULL, *rsa_iqmp = NULL;
463 	BIGNUM *rsa_dmp1 = NULL, *rsa_dmq1 = NULL;
464 	RSA *rsa = NULL;
465 
466 	if ((r = sshbuf_get_u32(b, &magic)) != 0)
467 		fatal_fr(r, "parse magic");
468 
469 	if (magic != SSH_COM_PRIVATE_KEY_MAGIC) {
470 		error("bad magic 0x%x != 0x%x", magic,
471 		    SSH_COM_PRIVATE_KEY_MAGIC);
472 		return NULL;
473 	}
474 	if ((r = sshbuf_get_u32(b, &i1)) != 0 ||
475 	    (r = sshbuf_get_cstring(b, &type, NULL)) != 0 ||
476 	    (r = sshbuf_get_cstring(b, &cipher, NULL)) != 0 ||
477 	    (r = sshbuf_get_u32(b, &i2)) != 0 ||
478 	    (r = sshbuf_get_u32(b, &i3)) != 0 ||
479 	    (r = sshbuf_get_u32(b, &i4)) != 0)
480 		fatal_fr(r, "parse");
481 	debug("ignore (%d %d %d %d)", i1, i2, i3, i4);
482 	if (strcmp(cipher, "none") != 0) {
483 		error("unsupported cipher %s", cipher);
484 		free(cipher);
485 		free(type);
486 		return NULL;
487 	}
488 	free(cipher);
489 
490 	if (strstr(type, "rsa")) {
491 		ktype = KEY_RSA;
492 	} else {
493 		free(type);
494 		return NULL;
495 	}
496 	if ((key = sshkey_new(ktype)) == NULL)
497 		fatal("sshkey_new failed");
498 	free(type);
499 
500 	switch (key->type) {
501 	case KEY_RSA:
502 		if ((r = sshbuf_get_u8(b, &e1)) != 0 ||
503 		    (e1 < 30 && (r = sshbuf_get_u8(b, &e2)) != 0) ||
504 		    (e1 < 30 && (r = sshbuf_get_u8(b, &e3)) != 0))
505 			fatal_fr(r, "parse RSA");
506 		e = e1;
507 		debug("e %lx", e);
508 		if (e < 30) {
509 			e <<= 8;
510 			e += e2;
511 			debug("e %lx", e);
512 			e <<= 8;
513 			e += e3;
514 			debug("e %lx", e);
515 		}
516 		if ((rsa_e = BN_new()) == NULL)
517 			fatal_f("BN_new");
518 		if (!BN_set_word(rsa_e, e)) {
519 			BN_clear_free(rsa_e);
520 			sshkey_free(key);
521 			return NULL;
522 		}
523 		if ((rsa_n = BN_new()) == NULL ||
524 		    (rsa_d = BN_new()) == NULL ||
525 		    (rsa_p = BN_new()) == NULL ||
526 		    (rsa_q = BN_new()) == NULL ||
527 		    (rsa_iqmp = BN_new()) == NULL)
528 			fatal_f("BN_new");
529 		buffer_get_bignum_bits(b, rsa_d);
530 		buffer_get_bignum_bits(b, rsa_n);
531 		buffer_get_bignum_bits(b, rsa_iqmp);
532 		buffer_get_bignum_bits(b, rsa_q);
533 		buffer_get_bignum_bits(b, rsa_p);
534 		if ((r = ssh_rsa_complete_crt_parameters(rsa_d, rsa_p, rsa_q,
535 		    rsa_iqmp, &rsa_dmp1, &rsa_dmq1)) != 0)
536 			fatal_fr(r, "generate RSA CRT parameters");
537 		EVP_PKEY_free(key->pkey);
538 		if ((key->pkey = EVP_PKEY_new()) == NULL)
539 			fatal_f("EVP_PKEY_new failed");
540 		if ((rsa = RSA_new()) == NULL)
541 			fatal_f("RSA_new failed");
542 		if (!RSA_set0_key(rsa, rsa_n, rsa_e, rsa_d))
543 			fatal_f("RSA_set0_key failed");
544 		rsa_n = rsa_e = rsa_d = NULL; /* transferred */
545 		if (!RSA_set0_factors(rsa, rsa_p, rsa_q))
546 			fatal_f("RSA_set0_factors failed");
547 		rsa_p = rsa_q = NULL; /* transferred */
548 		if (RSA_set0_crt_params(rsa, rsa_dmp1, rsa_dmq1, rsa_iqmp) != 1)
549 			fatal_f("RSA_set0_crt_params failed");
550 		rsa_dmp1 = rsa_dmq1 = rsa_iqmp = NULL;
551 		if (EVP_PKEY_set1_RSA(key->pkey, rsa) != 1)
552 			fatal_f("EVP_PKEY_set1_RSA failed");
553 		RSA_free(rsa);
554 		alg = "rsa-sha2-256";
555 		break;
556 	}
557 	rlen = sshbuf_len(b);
558 	if (rlen != 0)
559 		error_f("remaining bytes in key blob %d", rlen);
560 
561 	/* try the key */
562 	if ((r = sshkey_sign(key, &sig, &slen, data, sizeof(data),
563 	    alg, NULL, NULL, 0)) != 0)
564 		error_fr(r, "signing with converted key failed");
565 	else if ((r = sshkey_verify(key, sig, slen, data, sizeof(data),
566 	    alg, 0, NULL)) != 0)
567 		error_fr(r, "verification with converted key failed");
568 	if (r != 0) {
569 		sshkey_free(key);
570 		free(sig);
571 		return NULL;
572 	}
573 	free(sig);
574 	return key;
575 }
576 
577 static int
get_line(FILE * fp,char * line,size_t len)578 get_line(FILE *fp, char *line, size_t len)
579 {
580 	int c;
581 	size_t pos = 0;
582 
583 	line[0] = '\0';
584 	while ((c = fgetc(fp)) != EOF) {
585 		if (pos >= len - 1)
586 			fatal("input line too long.");
587 		switch (c) {
588 		case '\r':
589 			c = fgetc(fp);
590 			if (c != EOF && c != '\n' && ungetc(c, fp) == EOF)
591 				fatal("unget: %s", strerror(errno));
592 			return pos;
593 		case '\n':
594 			return pos;
595 		}
596 		line[pos++] = c;
597 		line[pos] = '\0';
598 	}
599 	/* We reached EOF */
600 	return -1;
601 }
602 
603 static void
do_convert_from_ssh2(struct passwd * pw,struct sshkey ** k,int * private)604 do_convert_from_ssh2(struct passwd *pw, struct sshkey **k, int *private)
605 {
606 	int r, blen, escaped = 0;
607 	u_int len;
608 	char line[1024];
609 	struct sshbuf *buf;
610 	char encoded[8096];
611 	FILE *fp;
612 
613 	if ((buf = sshbuf_new()) == NULL)
614 		fatal("sshbuf_new failed");
615 	if ((fp = fopen(identity_file, "r")) == NULL)
616 		fatal("%s: %s: %s", __progname, identity_file, strerror(errno));
617 	encoded[0] = '\0';
618 	while ((blen = get_line(fp, line, sizeof(line))) != -1) {
619 		if (blen > 0 && line[blen - 1] == '\\')
620 			escaped++;
621 		if (strncmp(line, "----", 4) == 0 ||
622 		    strstr(line, ": ") != NULL) {
623 			if (strstr(line, SSH_COM_PRIVATE_BEGIN) != NULL)
624 				*private = 1;
625 			if (strstr(line, " END ") != NULL) {
626 				break;
627 			}
628 			/* fprintf(stderr, "ignore: %s", line); */
629 			continue;
630 		}
631 		if (escaped) {
632 			escaped--;
633 			/* fprintf(stderr, "escaped: %s", line); */
634 			continue;
635 		}
636 		strlcat(encoded, line, sizeof(encoded));
637 	}
638 	len = strlen(encoded);
639 	if (((len % 4) == 3) &&
640 	    (encoded[len-1] == '=') &&
641 	    (encoded[len-2] == '=') &&
642 	    (encoded[len-3] == '='))
643 		encoded[len-3] = '\0';
644 	if ((r = sshbuf_b64tod(buf, encoded)) != 0)
645 		fatal_fr(r, "base64 decode");
646 	if (*private) {
647 		if ((*k = do_convert_private_ssh2(buf)) == NULL)
648 			fatal_f("private key conversion failed");
649 	} else if ((r = sshkey_fromb(buf, k)) != 0)
650 		fatal_fr(r, "parse key");
651 	sshbuf_free(buf);
652 	fclose(fp);
653 }
654 
655 static void
do_convert_from_pkcs8(struct sshkey ** k,int * private)656 do_convert_from_pkcs8(struct sshkey **k, int *private)
657 {
658 	EVP_PKEY *pubkey;
659 	FILE *fp;
660 
661 	if ((fp = fopen(identity_file, "r")) == NULL)
662 		fatal("%s: %s: %s", __progname, identity_file, strerror(errno));
663 	if ((pubkey = PEM_read_PUBKEY(fp, NULL, NULL, NULL)) == NULL) {
664 		fatal_f("%s is not a recognised public key format",
665 		    identity_file);
666 	}
667 	fclose(fp);
668 	switch (EVP_PKEY_base_id(pubkey)) {
669 	case EVP_PKEY_RSA:
670 		if ((*k = sshkey_new(KEY_UNSPEC)) == NULL)
671 			fatal("sshkey_new failed");
672 		(*k)->type = KEY_RSA;
673 		(*k)->pkey = pubkey;
674 		pubkey = NULL;
675 		break;
676 #ifdef OPENSSL_HAS_ECC
677 	case EVP_PKEY_EC:
678 		if ((*k = sshkey_new(KEY_UNSPEC)) == NULL)
679 			fatal("sshkey_new failed");
680 		if (((*k)->ecdsa_nid = sshkey_ecdsa_fixup_group(pubkey)) == -1)
681 			fatal("sshkey_ecdsa_fixup_group failed");
682 		(*k)->type = KEY_ECDSA;
683 		(*k)->pkey = pubkey;
684 		pubkey = NULL;
685 		break;
686 #endif
687 	default:
688 		fatal_f("unsupported pubkey type %d",
689 		    EVP_PKEY_base_id(pubkey));
690 	}
691 	EVP_PKEY_free(pubkey);
692 }
693 
694 static void
do_convert_from_pem(struct sshkey ** k,int * private)695 do_convert_from_pem(struct sshkey **k, int *private)
696 {
697 	FILE *fp;
698 	RSA *rsa;
699 
700 	if ((fp = fopen(identity_file, "r")) == NULL)
701 		fatal("%s: %s: %s", __progname, identity_file, strerror(errno));
702 	if ((rsa = PEM_read_RSAPublicKey(fp, NULL, NULL, NULL)) != NULL) {
703 		if ((*k = sshkey_new(KEY_UNSPEC)) == NULL)
704 			fatal("sshkey_new failed");
705 		if (((*k)->pkey = EVP_PKEY_new()) == NULL)
706 			fatal("EVP_PKEY_new failed");
707 		(*k)->type = KEY_RSA;
708 		if (EVP_PKEY_set1_RSA((*k)->pkey, rsa) != 1)
709 			fatal("EVP_PKEY_set1_RSA failed");
710 		RSA_free(rsa);
711 		fclose(fp);
712 		return;
713 	}
714 	fatal_f("unrecognised raw private key format");
715 }
716 
717 static void
do_convert_from(struct passwd * pw)718 do_convert_from(struct passwd *pw)
719 {
720 	struct sshkey *k = NULL;
721 	int r, private = 0, ok = 0;
722 	struct stat st;
723 
724 	if (!have_identity)
725 		ask_filename(pw, "Enter file in which the key is");
726 	if (stat(identity_file, &st) == -1)
727 		fatal("%s: %s: %s", __progname, identity_file, strerror(errno));
728 
729 	switch (convert_format) {
730 	case FMT_RFC4716:
731 		do_convert_from_ssh2(pw, &k, &private);
732 		break;
733 	case FMT_PKCS8:
734 		do_convert_from_pkcs8(&k, &private);
735 		break;
736 	case FMT_PEM:
737 		do_convert_from_pem(&k, &private);
738 		break;
739 	default:
740 		fatal_f("unknown key format %d", convert_format);
741 	}
742 
743 	if (!private) {
744 		if ((r = sshkey_write(k, stdout)) == 0)
745 			ok = 1;
746 		if (ok)
747 			fprintf(stdout, "\n");
748 	} else {
749 		switch (k->type) {
750 #ifdef OPENSSL_HAS_ECC
751 		case KEY_ECDSA:
752 			ok = PEM_write_ECPrivateKey(stdout,
753 			    EVP_PKEY_get0_EC_KEY(k->pkey), NULL, NULL, 0,
754 			    NULL, NULL);
755 			break;
756 #endif
757 		case KEY_RSA:
758 			ok = PEM_write_RSAPrivateKey(stdout,
759 			    EVP_PKEY_get0_RSA(k->pkey), NULL, NULL, 0,
760 			    NULL, NULL);
761 			break;
762 		default:
763 			fatal_f("unsupported key type %s", sshkey_type(k));
764 		}
765 	}
766 
767 	if (!ok)
768 		fatal("key write failed");
769 	sshkey_free(k);
770 }
771 #endif
772 
773 static void
do_print_public(struct passwd * pw)774 do_print_public(struct passwd *pw)
775 {
776 	struct sshkey *prv;
777 	struct stat st;
778 	int r;
779 	char *comment = NULL;
780 
781 	if (!have_identity)
782 		ask_filename(pw, "Enter file in which the key is");
783 	if (stat(identity_file, &st) == -1)
784 		fatal("%s: %s", identity_file, strerror(errno));
785 	prv = load_identity(identity_file, &comment);
786 	if ((r = sshkey_write(prv, stdout)) != 0)
787 		fatal_fr(r, "write key");
788 	if (comment != NULL && *comment != '\0')
789 		fprintf(stdout, " %s", comment);
790 	fprintf(stdout, "\n");
791 	if (sshkey_is_sk(prv)) {
792 		debug("sk_application: \"%s\", sk_flags 0x%02x",
793 			prv->sk_application, prv->sk_flags);
794 	}
795 	sshkey_free(prv);
796 	free(comment);
797 	exit(0);
798 }
799 
800 static void
do_download(struct passwd * pw)801 do_download(struct passwd *pw)
802 {
803 #ifdef ENABLE_PKCS11
804 	struct sshkey **keys = NULL;
805 	int i, nkeys;
806 	enum sshkey_fp_rep rep;
807 	int fptype;
808 	char *fp, *ra, **comments = NULL;
809 
810 	fptype = print_bubblebabble ? SSH_DIGEST_SHA1 : fingerprint_hash;
811 	rep =    print_bubblebabble ? SSH_FP_BUBBLEBABBLE : SSH_FP_DEFAULT;
812 
813 	pkcs11_init(1);
814 	nkeys = pkcs11_add_provider(pkcs11provider, NULL, &keys, &comments);
815 	if (nkeys <= 0)
816 		fatal("cannot read public key from pkcs11");
817 	for (i = 0; i < nkeys; i++) {
818 		if (print_fingerprint) {
819 			fp = sshkey_fingerprint(keys[i], fptype, rep);
820 			ra = sshkey_fingerprint(keys[i], fingerprint_hash,
821 			    SSH_FP_RANDOMART);
822 			if (fp == NULL || ra == NULL)
823 				fatal_f("sshkey_fingerprint fail");
824 			printf("%u %s %s (PKCS11 key)\n", sshkey_size(keys[i]),
825 			    fp, sshkey_type(keys[i]));
826 			if (log_level_get() >= SYSLOG_LEVEL_VERBOSE)
827 				printf("%s\n", ra);
828 			free(ra);
829 			free(fp);
830 		} else {
831 			(void) sshkey_write(keys[i], stdout); /* XXX check */
832 			fprintf(stdout, "%s%s\n",
833 			    *(comments[i]) == '\0' ? "" : " ", comments[i]);
834 		}
835 		free(comments[i]);
836 		sshkey_free(keys[i]);
837 	}
838 	free(comments);
839 	free(keys);
840 	pkcs11_terminate();
841 	exit(0);
842 #else
843 	fatal("no pkcs11 support");
844 #endif /* ENABLE_PKCS11 */
845 }
846 
847 static struct sshkey *
try_read_key(char ** cpp)848 try_read_key(char **cpp)
849 {
850 	struct sshkey *ret;
851 	int r;
852 
853 	if ((ret = sshkey_new(KEY_UNSPEC)) == NULL)
854 		fatal("sshkey_new failed");
855 	if ((r = sshkey_read(ret, cpp)) == 0)
856 		return ret;
857 	/* Not a key */
858 	sshkey_free(ret);
859 	return NULL;
860 }
861 
862 static void
fingerprint_one_key(const struct sshkey * public,const char * comment)863 fingerprint_one_key(const struct sshkey *public, const char *comment)
864 {
865 	char *fp = NULL, *ra = NULL;
866 	enum sshkey_fp_rep rep;
867 	int fptype;
868 
869 	fptype = print_bubblebabble ? SSH_DIGEST_SHA1 : fingerprint_hash;
870 	rep =    print_bubblebabble ? SSH_FP_BUBBLEBABBLE : SSH_FP_DEFAULT;
871 	fp = sshkey_fingerprint(public, fptype, rep);
872 	ra = sshkey_fingerprint(public, fingerprint_hash, SSH_FP_RANDOMART);
873 	if (fp == NULL || ra == NULL)
874 		fatal_f("sshkey_fingerprint failed");
875 	mprintf("%u %s %s (%s)\n", sshkey_size(public), fp,
876 	    comment ? comment : "no comment", sshkey_type(public));
877 	if (log_level_get() >= SYSLOG_LEVEL_VERBOSE)
878 		printf("%s\n", ra);
879 	free(ra);
880 	free(fp);
881 }
882 
883 static void
fingerprint_private(const char * path)884 fingerprint_private(const char *path)
885 {
886 	struct stat st;
887 	char *comment = NULL;
888 	struct sshkey *privkey = NULL, *pubkey = NULL;
889 	int r;
890 
891 	if (stat(identity_file, &st) == -1)
892 		fatal("%s: %s", path, strerror(errno));
893 	if ((r = sshkey_load_public(path, &pubkey, &comment)) != 0)
894 		debug_r(r, "load public \"%s\"", path);
895 	if (pubkey == NULL || comment == NULL || *comment == '\0') {
896 		free(comment);
897 		if ((r = sshkey_load_private(path, NULL,
898 		    &privkey, &comment)) != 0)
899 			debug_r(r, "load private \"%s\"", path);
900 	}
901 	if (pubkey == NULL && privkey == NULL)
902 		fatal("%s is not a key file.", path);
903 
904 	fingerprint_one_key(pubkey == NULL ? privkey : pubkey, comment);
905 	sshkey_free(pubkey);
906 	sshkey_free(privkey);
907 	free(comment);
908 }
909 
910 static void
do_fingerprint(struct passwd * pw)911 do_fingerprint(struct passwd *pw)
912 {
913 	FILE *f;
914 	struct sshkey *public = NULL;
915 	char *comment = NULL, *cp, *ep, *line = NULL;
916 	size_t linesize = 0;
917 	int i, invalid = 1;
918 	const char *path;
919 	u_long lnum = 0;
920 
921 	if (!have_identity)
922 		ask_filename(pw, "Enter file in which the key is");
923 	path = identity_file;
924 
925 	if (strcmp(identity_file, "-") == 0) {
926 		f = stdin;
927 		path = "(stdin)";
928 	} else if ((f = fopen(path, "r")) == NULL)
929 		fatal("%s: %s: %s", __progname, path, strerror(errno));
930 
931 	while (getline(&line, &linesize, f) != -1) {
932 		lnum++;
933 		cp = line;
934 		cp[strcspn(cp, "\r\n")] = '\0';
935 		/* Trim leading space and comments */
936 		cp = line + strspn(line, " \t");
937 		if (*cp == '#' || *cp == '\0')
938 			continue;
939 
940 		/*
941 		 * Input may be plain keys, private keys, authorized_keys
942 		 * or known_hosts.
943 		 */
944 
945 		/*
946 		 * Try private keys first. Assume a key is private if
947 		 * "SSH PRIVATE KEY" appears on the first line and we're
948 		 * not reading from stdin (XXX support private keys on stdin).
949 		 */
950 		if (lnum == 1 && strcmp(identity_file, "-") != 0 &&
951 		    strstr(cp, "PRIVATE KEY") != NULL) {
952 			free(line);
953 			fclose(f);
954 			fingerprint_private(path);
955 			exit(0);
956 		}
957 
958 		/*
959 		 * If it's not a private key, then this must be prepared to
960 		 * accept a public key prefixed with a hostname or options.
961 		 * Try a bare key first, otherwise skip the leading stuff.
962 		 */
963 		comment = NULL;
964 		if ((public = try_read_key(&cp)) == NULL) {
965 			i = strtol(cp, &ep, 10);
966 			if (i == 0 || ep == NULL ||
967 			    (*ep != ' ' && *ep != '\t')) {
968 				int quoted = 0;
969 
970 				comment = cp;
971 				for (; *cp && (quoted || (*cp != ' ' &&
972 				    *cp != '\t')); cp++) {
973 					if (*cp == '\\' && cp[1] == '"')
974 						cp++;	/* Skip both */
975 					else if (*cp == '"')
976 						quoted = !quoted;
977 				}
978 				if (!*cp)
979 					continue;
980 				*cp++ = '\0';
981 			}
982 		}
983 		/* Retry after parsing leading hostname/key options */
984 		if (public == NULL && (public = try_read_key(&cp)) == NULL) {
985 			debug("%s:%lu: not a public key", path, lnum);
986 			continue;
987 		}
988 
989 		/* Find trailing comment, if any */
990 		for (; *cp == ' ' || *cp == '\t'; cp++)
991 			;
992 		if (*cp != '\0' && *cp != '#')
993 			comment = cp;
994 
995 		fingerprint_one_key(public, comment);
996 		sshkey_free(public);
997 		invalid = 0; /* One good key in the file is sufficient */
998 	}
999 	fclose(f);
1000 	free(line);
1001 
1002 	if (invalid)
1003 		fatal("%s is not a public key file.", path);
1004 	exit(0);
1005 }
1006 
1007 static void
do_gen_all_hostkeys(struct passwd * pw)1008 do_gen_all_hostkeys(struct passwd *pw)
1009 {
1010 	struct {
1011 		char *key_type;
1012 		char *key_type_display;
1013 		char *path;
1014 	} key_types[] = {
1015 #ifdef WITH_OPENSSL
1016 		{ "rsa", "RSA" ,_PATH_HOST_RSA_KEY_FILE },
1017 #ifdef OPENSSL_HAS_ECC
1018 		{ "ecdsa", "ECDSA",_PATH_HOST_ECDSA_KEY_FILE },
1019 #endif /* OPENSSL_HAS_ECC */
1020 #endif /* WITH_OPENSSL */
1021 		{ "ed25519", "ED25519",_PATH_HOST_ED25519_KEY_FILE },
1022 #ifdef USE_MLDSA
1023 		{ "mldsa44-ed25519", "MLDSA44-ED25519",
1024 		     _PATH_HOST_MLDSA44_ED25519_KEY_FILE },
1025 #endif
1026 		{ NULL, NULL, NULL }
1027 	};
1028 
1029 	uint32_t bits = 0;
1030 	int first = 0;
1031 	struct stat st;
1032 	struct sshkey *private, *public;
1033 	char comment[1024], *prv_tmp, *pub_tmp, *prv_file, *pub_file;
1034 	int i, type, fd, r;
1035 
1036 	for (i = 0; key_types[i].key_type; i++) {
1037 		public = private = NULL;
1038 		prv_tmp = pub_tmp = prv_file = pub_file = NULL;
1039 
1040 		xasprintf(&prv_file, "%s%s",
1041 		    identity_file, key_types[i].path);
1042 
1043 		/* Check whether private key exists and is not zero-length */
1044 		if (stat(prv_file, &st) == 0) {
1045 			if (st.st_size != 0)
1046 				goto next;
1047 		} else if (errno != ENOENT) {
1048 			error("Could not stat %s: %s", key_types[i].path,
1049 			    strerror(errno));
1050 			goto failnext;
1051 		}
1052 
1053 		/*
1054 		 * Private key doesn't exist or is invalid; proceed with
1055 		 * key generation.
1056 		 */
1057 		xasprintf(&prv_tmp, "%s%s.XXXXXXXXXX",
1058 		    identity_file, key_types[i].path);
1059 		xasprintf(&pub_tmp, "%s%s.pub.XXXXXXXXXX",
1060 		    identity_file, key_types[i].path);
1061 		xasprintf(&pub_file, "%s%s.pub",
1062 		    identity_file, key_types[i].path);
1063 
1064 		if (first == 0) {
1065 			first = 1;
1066 			printf("%s: generating new host keys: ", __progname);
1067 		}
1068 		printf("%s ", key_types[i].key_type_display);
1069 		fflush(stdout);
1070 		type = sshkey_type_from_shortname(key_types[i].key_type);
1071 		if ((fd = mkstemp(prv_tmp)) == -1) {
1072 			error("Could not save your private key in %s: %s",
1073 			    prv_tmp, strerror(errno));
1074 			goto failnext;
1075 		}
1076 		(void)close(fd); /* just using mkstemp() to reserve a name */
1077 		bits = 0;
1078 		type_bits_valid(type, NULL, &bits);
1079 		if ((r = sshkey_generate(type, bits, &private)) != 0) {
1080 			error_r(r, "sshkey_generate failed");
1081 			goto failnext;
1082 		}
1083 		if ((r = sshkey_from_private(private, &public)) != 0)
1084 			fatal_fr(r, "sshkey_from_private");
1085 		snprintf(comment, sizeof comment, "%s@%s", pw->pw_name,
1086 		    hostname);
1087 		if ((r = sshkey_save_private(private, prv_tmp, "",
1088 		    comment, private_key_format, openssh_format_cipher,
1089 		    rounds)) != 0) {
1090 			error_r(r, "Saving key \"%s\" failed", prv_tmp);
1091 			goto failnext;
1092 		}
1093 		if ((fd = mkstemp(pub_tmp)) == -1) {
1094 			error("Could not save your public key in %s: %s",
1095 			    pub_tmp, strerror(errno));
1096 			goto failnext;
1097 		}
1098 		(void)fchmod(fd, 0644);
1099 		(void)close(fd);
1100 		if ((r = sshkey_save_public(public, pub_tmp, comment)) != 0) {
1101 			error_r(r, "Unable to save public key to %s",
1102 			    identity_file);
1103 			goto failnext;
1104 		}
1105 
1106 		/* Rename temporary files to their permanent locations. */
1107 		if (rename(pub_tmp, pub_file) != 0) {
1108 			error("Unable to move %s into position: %s",
1109 			    pub_file, strerror(errno));
1110 			goto failnext;
1111 		}
1112 		if (rename(prv_tmp, prv_file) != 0) {
1113 			error("Unable to move %s into position: %s",
1114 			    key_types[i].path, strerror(errno));
1115  failnext:
1116 			first = 0;
1117 			goto next;
1118 		}
1119  next:
1120 		sshkey_free(private);
1121 		sshkey_free(public);
1122 		free(prv_tmp);
1123 		free(pub_tmp);
1124 		free(prv_file);
1125 		free(pub_file);
1126 	}
1127 	if (first != 0)
1128 		printf("\n");
1129 }
1130 
1131 struct known_hosts_ctx {
1132 	const char *host;	/* Hostname searched for in find/delete case */
1133 	FILE *out;		/* Output file, stdout for find_hosts case */
1134 	int has_unhashed;	/* When hashing, original had unhashed hosts */
1135 	int found_key;		/* For find/delete, host was found */
1136 	int invalid;		/* File contained invalid items; don't delete */
1137 	int hash_hosts;		/* Hash hostnames as we go */
1138 	int find_host;		/* Search for specific hostname */
1139 	int delete_host;	/* Delete host from known_hosts */
1140 };
1141 
1142 static int
known_hosts_hash(struct hostkey_foreach_line * l,void * _ctx)1143 known_hosts_hash(struct hostkey_foreach_line *l, void *_ctx)
1144 {
1145 	struct known_hosts_ctx *ctx = (struct known_hosts_ctx *)_ctx;
1146 	char *hashed, *cp, *hosts, *ohosts;
1147 	int has_wild = l->hosts && strcspn(l->hosts, "*?!") != strlen(l->hosts);
1148 	int was_hashed = l->hosts && l->hosts[0] == HASH_DELIM;
1149 
1150 	switch (l->status) {
1151 	case HKF_STATUS_OK:
1152 	case HKF_STATUS_MATCHED:
1153 		/*
1154 		 * Don't hash hosts already hashed, with wildcard
1155 		 * characters or a CA/revocation marker.
1156 		 */
1157 		if (was_hashed || has_wild || l->marker != MRK_NONE) {
1158 			fprintf(ctx->out, "%s\n", l->line);
1159 			if (has_wild && !ctx->find_host) {
1160 				logit("%s:%lu: ignoring host name "
1161 				    "with wildcard: %.64s", l->path,
1162 				    l->linenum, l->hosts);
1163 			}
1164 			return 0;
1165 		}
1166 		/*
1167 		 * Split any comma-separated hostnames from the host list,
1168 		 * hash and store separately.
1169 		 */
1170 		ohosts = hosts = xstrdup(l->hosts);
1171 		while ((cp = strsep(&hosts, ",")) != NULL && *cp != '\0') {
1172 			lowercase(cp);
1173 			if ((hashed = host_hash(cp, NULL, 0)) == NULL)
1174 				fatal("hash_host failed");
1175 			fprintf(ctx->out, "%s %s\n", hashed, l->rawkey);
1176 			free(hashed);
1177 			ctx->has_unhashed = 1;
1178 		}
1179 		free(ohosts);
1180 		return 0;
1181 	case HKF_STATUS_INVALID:
1182 		/* Retain invalid lines, but mark file as invalid. */
1183 		ctx->invalid = 1;
1184 		logit("%s:%lu: invalid line", l->path, l->linenum);
1185 		/* FALLTHROUGH */
1186 	default:
1187 		fprintf(ctx->out, "%s\n", l->line);
1188 		return 0;
1189 	}
1190 	/* NOTREACHED */
1191 	return -1;
1192 }
1193 
1194 static int
known_hosts_find_delete(struct hostkey_foreach_line * l,void * _ctx)1195 known_hosts_find_delete(struct hostkey_foreach_line *l, void *_ctx)
1196 {
1197 	struct known_hosts_ctx *ctx = (struct known_hosts_ctx *)_ctx;
1198 	enum sshkey_fp_rep rep;
1199 	int fptype;
1200 	char *fp = NULL, *ra = NULL;
1201 
1202 	fptype = print_bubblebabble ? SSH_DIGEST_SHA1 : fingerprint_hash;
1203 	rep =    print_bubblebabble ? SSH_FP_BUBBLEBABBLE : SSH_FP_DEFAULT;
1204 
1205 	if (l->status == HKF_STATUS_MATCHED) {
1206 		if (ctx->delete_host) {
1207 			if (l->marker != MRK_NONE) {
1208 				/* Don't remove CA and revocation lines */
1209 				fprintf(ctx->out, "%s\n", l->line);
1210 			} else {
1211 				/*
1212 				 * Hostname matches and has no CA/revoke
1213 				 * marker, delete it by *not* writing the
1214 				 * line to ctx->out.
1215 				 */
1216 				ctx->found_key = 1;
1217 				if (!quiet)
1218 					printf("# Host %s found: line %lu\n",
1219 					    ctx->host, l->linenum);
1220 			}
1221 			return 0;
1222 		} else if (ctx->find_host) {
1223 			ctx->found_key = 1;
1224 			if (!quiet) {
1225 				printf("# Host %s found: line %lu %s\n",
1226 				    ctx->host,
1227 				    l->linenum, l->marker == MRK_CA ? "CA" :
1228 				    (l->marker == MRK_REVOKE ? "REVOKED" : ""));
1229 			}
1230 			if (ctx->hash_hosts)
1231 				known_hosts_hash(l, ctx);
1232 			else if (print_fingerprint) {
1233 				fp = sshkey_fingerprint(l->key, fptype, rep);
1234 				ra = sshkey_fingerprint(l->key,
1235 				    fingerprint_hash, SSH_FP_RANDOMART);
1236 				if (fp == NULL || ra == NULL)
1237 					fatal_f("sshkey_fingerprint failed");
1238 				mprintf("%s %s %s%s%s\n", ctx->host,
1239 				    sshkey_type(l->key), fp,
1240 				    l->comment[0] ? " " : "",
1241 				    l->comment);
1242 				if (log_level_get() >= SYSLOG_LEVEL_VERBOSE)
1243 					printf("%s\n", ra);
1244 				free(ra);
1245 				free(fp);
1246 			} else
1247 				fprintf(ctx->out, "%s\n", l->line);
1248 			return 0;
1249 		}
1250 	} else if (ctx->delete_host) {
1251 		/* Retain non-matching hosts when deleting */
1252 		if (l->status == HKF_STATUS_INVALID) {
1253 			ctx->invalid = 1;
1254 			logit("%s:%lu: invalid line", l->path, l->linenum);
1255 		}
1256 		fprintf(ctx->out, "%s\n", l->line);
1257 	}
1258 	return 0;
1259 }
1260 
1261 static void
do_known_hosts(struct passwd * pw,const char * name,int find_host,int delete_host,int hash_hosts)1262 do_known_hosts(struct passwd *pw, const char *name, int find_host,
1263     int delete_host, int hash_hosts)
1264 {
1265 	char *cp, tmp[PATH_MAX], old[PATH_MAX];
1266 	int r, fd, oerrno, inplace = 0;
1267 	struct known_hosts_ctx ctx;
1268 	u_int foreach_options;
1269 	struct stat sb;
1270 
1271 	if (!have_identity) {
1272 		cp = tilde_expand_filename(_PATH_SSH_USER_HOSTFILE, pw->pw_uid);
1273 		if (strlcpy(identity_file, cp, sizeof(identity_file)) >=
1274 		    sizeof(identity_file))
1275 			fatal("Specified known hosts path too long");
1276 		free(cp);
1277 		have_identity = 1;
1278 	}
1279 	if (stat(identity_file, &sb) != 0)
1280 		fatal("Cannot stat %s: %s", identity_file, strerror(errno));
1281 
1282 	memset(&ctx, 0, sizeof(ctx));
1283 	ctx.out = stdout;
1284 	ctx.host = name;
1285 	ctx.hash_hosts = hash_hosts;
1286 	ctx.find_host = find_host;
1287 	ctx.delete_host = delete_host;
1288 
1289 	/*
1290 	 * Find hosts goes to stdout, hash and deletions happen in-place
1291 	 * A corner case is ssh-keygen -HF foo, which should go to stdout
1292 	 */
1293 	if (!find_host && (hash_hosts || delete_host)) {
1294 		if (strlcpy(tmp, identity_file, sizeof(tmp)) >= sizeof(tmp) ||
1295 		    strlcat(tmp, ".XXXXXXXXXX", sizeof(tmp)) >= sizeof(tmp) ||
1296 		    strlcpy(old, identity_file, sizeof(old)) >= sizeof(old) ||
1297 		    strlcat(old, ".old", sizeof(old)) >= sizeof(old))
1298 			fatal("known_hosts path too long");
1299 		umask(077);
1300 		if ((fd = mkstemp(tmp)) == -1)
1301 			fatal("mkstemp: %s", strerror(errno));
1302 		if ((ctx.out = fdopen(fd, "w")) == NULL) {
1303 			oerrno = errno;
1304 			unlink(tmp);
1305 			fatal("fdopen: %s", strerror(oerrno));
1306 		}
1307 		(void)fchmod(fd, sb.st_mode & 0644);
1308 		inplace = 1;
1309 	}
1310 	/* XXX support identity_file == "-" for stdin */
1311 	foreach_options = find_host ? HKF_WANT_MATCH : 0;
1312 	foreach_options |= print_fingerprint ? HKF_WANT_PARSE_KEY : 0;
1313 	if ((r = hostkeys_foreach(identity_file, (find_host || !hash_hosts) ?
1314 	    known_hosts_find_delete : known_hosts_hash, &ctx, name, NULL,
1315 	    foreach_options, 0)) != 0) {
1316 		if (inplace)
1317 			unlink(tmp);
1318 		fatal_fr(r, "hostkeys_foreach");
1319 	}
1320 
1321 	if (inplace)
1322 		fclose(ctx.out);
1323 
1324 	if (ctx.invalid) {
1325 		error("%s is not a valid known_hosts file.", identity_file);
1326 		if (inplace) {
1327 			error("Not replacing existing known_hosts "
1328 			    "file because of errors");
1329 			unlink(tmp);
1330 		}
1331 		exit(1);
1332 	} else if (delete_host && !ctx.found_key) {
1333 		logit("Host %s not found in %s", name, identity_file);
1334 		if (inplace)
1335 			unlink(tmp);
1336 	} else if (inplace) {
1337 		/* Backup existing file */
1338 		if (unlink(old) == -1 && errno != ENOENT)
1339 			fatal("unlink %.100s: %s", old, strerror(errno));
1340 		if (link(identity_file, old) == -1)
1341 			fatal("link %.100s to %.100s: %s", identity_file, old,
1342 			    strerror(errno));
1343 		/* Move new one into place */
1344 		if (rename(tmp, identity_file) == -1) {
1345 			error("rename\"%s\" to \"%s\": %s", tmp, identity_file,
1346 			    strerror(errno));
1347 			unlink(tmp);
1348 			unlink(old);
1349 			exit(1);
1350 		}
1351 
1352 		printf("%s updated.\n", identity_file);
1353 		printf("Original contents retained as %s\n", old);
1354 		if (ctx.has_unhashed) {
1355 			logit("WARNING: %s contains unhashed entries", old);
1356 			logit("Delete this file to ensure privacy "
1357 			    "of hostnames");
1358 		}
1359 	}
1360 
1361 	exit (find_host && !ctx.found_key);
1362 }
1363 
1364 /*
1365  * Perform changing a passphrase.  The argument is the passwd structure
1366  * for the current user.
1367  */
1368 static void
do_change_passphrase(struct passwd * pw)1369 do_change_passphrase(struct passwd *pw)
1370 {
1371 	char *comment;
1372 	char *old_passphrase, *passphrase1, *passphrase2;
1373 	struct stat st;
1374 	struct sshkey *private;
1375 	int r;
1376 
1377 	if (!have_identity)
1378 		ask_filename(pw, "Enter file in which the key is");
1379 	if (stat(identity_file, &st) == -1)
1380 		fatal("%s: %s", identity_file, strerror(errno));
1381 	/* Try to load the file with empty passphrase. */
1382 	r = sshkey_load_private(identity_file, "", &private, &comment);
1383 	if (r == SSH_ERR_KEY_WRONG_PASSPHRASE) {
1384 		if (identity_passphrase)
1385 			old_passphrase = xstrdup(identity_passphrase);
1386 		else
1387 			old_passphrase =
1388 			    read_passphrase("Enter old passphrase: ",
1389 			    RP_ALLOW_STDIN);
1390 		r = sshkey_load_private(identity_file, old_passphrase,
1391 		    &private, &comment);
1392 		freezero(old_passphrase, strlen(old_passphrase));
1393 		if (r != 0)
1394 			goto badkey;
1395 	} else if (r != 0) {
1396  badkey:
1397 		fatal_r(r, "Failed to load key %s", identity_file);
1398 	}
1399 	if (comment)
1400 		mprintf("Key has comment '%s'\n", comment);
1401 
1402 	/* Ask the new passphrase (twice). */
1403 	if (identity_new_passphrase) {
1404 		passphrase1 = xstrdup(identity_new_passphrase);
1405 		passphrase2 = NULL;
1406 	} else {
1407 		passphrase1 =
1408 			read_passphrase("Enter new passphrase (empty for no "
1409 			    "passphrase): ", RP_ALLOW_STDIN);
1410 		passphrase2 = read_passphrase("Enter same passphrase again: ",
1411 		    RP_ALLOW_STDIN);
1412 
1413 		/* Verify that they are the same. */
1414 		if (strcmp(passphrase1, passphrase2) != 0) {
1415 			explicit_bzero(passphrase1, strlen(passphrase1));
1416 			explicit_bzero(passphrase2, strlen(passphrase2));
1417 			free(passphrase1);
1418 			free(passphrase2);
1419 			printf("Pass phrases do not match.  Try again.\n");
1420 			exit(1);
1421 		}
1422 		/* Destroy the other copy. */
1423 		freezero(passphrase2, strlen(passphrase2));
1424 	}
1425 
1426 	/* Save the file using the new passphrase. */
1427 	if ((r = sshkey_save_private(private, identity_file, passphrase1,
1428 	    comment, private_key_format, openssh_format_cipher, rounds)) != 0) {
1429 		error_r(r, "Saving key \"%s\" failed", identity_file);
1430 		freezero(passphrase1, strlen(passphrase1));
1431 		sshkey_free(private);
1432 		free(comment);
1433 		exit(1);
1434 	}
1435 	/* Destroy the passphrase and the copy of the key in memory. */
1436 	freezero(passphrase1, strlen(passphrase1));
1437 	sshkey_free(private);		 /* Destroys contents */
1438 	free(comment);
1439 
1440 	printf("Your identification has been saved with the new passphrase.\n");
1441 	exit(0);
1442 }
1443 
1444 /*
1445  * Print the SSHFP RR.
1446  */
1447 static int
do_print_resource_record(struct passwd * pw,char * fname,char * hname,int print_generic,char * const * opts,size_t nopts)1448 do_print_resource_record(struct passwd *pw, char *fname, char *hname,
1449     int print_generic, char * const *opts, size_t nopts)
1450 {
1451 	struct sshkey *public;
1452 	char *comment = NULL;
1453 	const char *p;
1454 	struct stat st;
1455 	int r, hash = -1;
1456 	size_t i;
1457 
1458 	for (i = 0; i < nopts; i++) {
1459 		if ((p = strprefix(opts[i], "hashalg=", 1)) != NULL) {
1460 			if ((hash = ssh_digest_alg_by_name(p)) == -1)
1461 				fatal("Unsupported hash algorithm");
1462 		} else {
1463 			error("Invalid option \"%s\"", opts[i]);
1464 			return SSH_ERR_INVALID_ARGUMENT;
1465 		}
1466 	}
1467 	if (fname == NULL)
1468 		fatal_f("no filename");
1469 	if (stat(fname, &st) == -1) {
1470 		if (errno == ENOENT)
1471 			return 0;
1472 		fatal("%s: %s", fname, strerror(errno));
1473 	}
1474 	if ((r = sshkey_load_public(fname, &public, &comment)) != 0)
1475 		fatal_r(r, "Failed to read v2 public key from \"%s\"", fname);
1476 	export_dns_rr(hname, public, stdout, print_generic, hash);
1477 	sshkey_free(public);
1478 	free(comment);
1479 	return 1;
1480 }
1481 
1482 /*
1483  * Change the comment of a private key file.
1484  */
1485 static void
do_change_comment(struct passwd * pw,const char * identity_comment)1486 do_change_comment(struct passwd *pw, const char *identity_comment)
1487 {
1488 	char new_comment[1024], *comment, *passphrase;
1489 	struct sshkey *private;
1490 	struct sshkey *public;
1491 	struct stat st;
1492 	int r;
1493 
1494 	if (!have_identity)
1495 		ask_filename(pw, "Enter file in which the key is");
1496 	if (stat(identity_file, &st) == -1)
1497 		fatal("%s: %s", identity_file, strerror(errno));
1498 	if ((r = sshkey_load_private(identity_file, "",
1499 	    &private, &comment)) == 0)
1500 		passphrase = xstrdup("");
1501 	else if (r != SSH_ERR_KEY_WRONG_PASSPHRASE)
1502 		fatal_r(r, "Cannot load private key \"%s\"", identity_file);
1503 	else {
1504 		if (identity_passphrase)
1505 			passphrase = xstrdup(identity_passphrase);
1506 		else if (identity_new_passphrase)
1507 			passphrase = xstrdup(identity_new_passphrase);
1508 		else
1509 			passphrase = read_passphrase("Enter passphrase: ",
1510 			    RP_ALLOW_STDIN);
1511 		/* Try to load using the passphrase. */
1512 		if ((r = sshkey_load_private(identity_file, passphrase,
1513 		    &private, &comment)) != 0) {
1514 			freezero(passphrase, strlen(passphrase));
1515 			fatal_r(r, "Cannot load private key \"%s\"",
1516 			    identity_file);
1517 		}
1518 	}
1519 
1520 	if (private->type != KEY_ED25519 &&
1521 	    private_key_format != SSHKEY_PRIVATE_OPENSSH) {
1522 		error("Comments are only supported for keys stored in "
1523 		    "the new format (-o).");
1524 		explicit_bzero(passphrase, strlen(passphrase));
1525 		sshkey_free(private);
1526 		exit(1);
1527 	}
1528 	if (comment)
1529 		printf("Old comment: %s\n", comment);
1530 	else
1531 		printf("No existing comment\n");
1532 
1533 	if (identity_comment) {
1534 		strlcpy(new_comment, identity_comment, sizeof(new_comment));
1535 	} else {
1536 		printf("New comment: ");
1537 		fflush(stdout);
1538 		if (!fgets(new_comment, sizeof(new_comment), stdin)) {
1539 			explicit_bzero(passphrase, strlen(passphrase));
1540 			sshkey_free(private);
1541 			exit(1);
1542 		}
1543 		new_comment[strcspn(new_comment, "\n")] = '\0';
1544 	}
1545 	if (comment != NULL && strcmp(comment, new_comment) == 0) {
1546 		printf("No change to comment\n");
1547 		free(passphrase);
1548 		sshkey_free(private);
1549 		free(comment);
1550 		exit(0);
1551 	}
1552 
1553 	/* Save the file using the new passphrase. */
1554 	if ((r = sshkey_save_private(private, identity_file, passphrase,
1555 	    new_comment, private_key_format, openssh_format_cipher,
1556 	    rounds)) != 0) {
1557 		error_r(r, "Saving key \"%s\" failed", identity_file);
1558 		freezero(passphrase, strlen(passphrase));
1559 		sshkey_free(private);
1560 		free(comment);
1561 		exit(1);
1562 	}
1563 	freezero(passphrase, strlen(passphrase));
1564 	if ((r = sshkey_from_private(private, &public)) != 0)
1565 		fatal_fr(r, "sshkey_from_private");
1566 	sshkey_free(private);
1567 
1568 	strlcat(identity_file, ".pub", sizeof(identity_file));
1569 	if ((r = sshkey_save_public(public, identity_file, new_comment)) != 0)
1570 		fatal_r(r, "Unable to save public key to %s", identity_file);
1571 	sshkey_free(public);
1572 	free(comment);
1573 
1574 	if (strlen(new_comment) > 0)
1575 		printf("Comment '%s' applied\n", new_comment);
1576 	else
1577 		printf("Comment removed\n");
1578 
1579 	exit(0);
1580 }
1581 
1582 static void
cert_ext_add(const char * key,const char * value,int iscrit)1583 cert_ext_add(const char *key, const char *value, int iscrit)
1584 {
1585 	cert_ext = xreallocarray(cert_ext, ncert_ext + 1, sizeof(*cert_ext));
1586 	cert_ext[ncert_ext].key = xstrdup(key);
1587 	cert_ext[ncert_ext].val = value == NULL ? NULL : xstrdup(value);
1588 	cert_ext[ncert_ext].crit = iscrit;
1589 	ncert_ext++;
1590 }
1591 
1592 /* qsort(3) comparison function for certificate extensions */
1593 static int
cert_ext_cmp(const void * _a,const void * _b)1594 cert_ext_cmp(const void *_a, const void *_b)
1595 {
1596 	const struct cert_ext *a = (const struct cert_ext *)_a;
1597 	const struct cert_ext *b = (const struct cert_ext *)_b;
1598 	int r;
1599 
1600 	if (a->crit != b->crit)
1601 		return (a->crit < b->crit) ? -1 : 1;
1602 	if ((r = strcmp(a->key, b->key)) != 0)
1603 		return r;
1604 	if ((a->val == NULL) != (b->val == NULL))
1605 		return (a->val == NULL) ? -1 : 1;
1606 	if (a->val != NULL && (r = strcmp(a->val, b->val)) != 0)
1607 		return r;
1608 	return 0;
1609 }
1610 
1611 #define OPTIONS_CRITICAL	1
1612 #define OPTIONS_EXTENSIONS	2
1613 static void
prepare_options_buf(struct sshbuf * c,int which)1614 prepare_options_buf(struct sshbuf *c, int which)
1615 {
1616 	struct sshbuf *b;
1617 	size_t i;
1618 	int r;
1619 	const struct cert_ext *ext;
1620 
1621 	if ((b = sshbuf_new()) == NULL)
1622 		fatal_f("sshbuf_new failed");
1623 	sshbuf_reset(c);
1624 	for (i = 0; i < ncert_ext; i++) {
1625 		ext = &cert_ext[i];
1626 		if ((ext->crit && (which & OPTIONS_EXTENSIONS)) ||
1627 		    (!ext->crit && (which & OPTIONS_CRITICAL)))
1628 			continue;
1629 		if (ext->val == NULL) {
1630 			/* flag option */
1631 			debug3_f("%s", ext->key);
1632 			if ((r = sshbuf_put_cstring(c, ext->key)) != 0 ||
1633 			    (r = sshbuf_put_string(c, NULL, 0)) != 0)
1634 				fatal_fr(r, "prepare flag");
1635 		} else {
1636 			/* key/value option */
1637 			debug3_f("%s=%s", ext->key, ext->val);
1638 			sshbuf_reset(b);
1639 			if ((r = sshbuf_put_cstring(c, ext->key)) != 0 ||
1640 			    (r = sshbuf_put_cstring(b, ext->val)) != 0 ||
1641 			    (r = sshbuf_put_stringb(c, b)) != 0)
1642 				fatal_fr(r, "prepare k/v");
1643 		}
1644 	}
1645 	sshbuf_free(b);
1646 }
1647 
1648 static void
finalise_cert_exts(void)1649 finalise_cert_exts(void)
1650 {
1651 	/* critical options */
1652 	if (certflags_command != NULL)
1653 		cert_ext_add("force-command", certflags_command, 1);
1654 	if (certflags_src_addr != NULL)
1655 		cert_ext_add("source-address", certflags_src_addr, 1);
1656 	if ((certflags_flags & CERTOPT_REQUIRE_VERIFY) != 0)
1657 		cert_ext_add("verify-required", NULL, 1);
1658 	/* extensions */
1659 	if ((certflags_flags & CERTOPT_X_FWD) != 0)
1660 		cert_ext_add("permit-X11-forwarding", NULL, 0);
1661 	if ((certflags_flags & CERTOPT_AGENT_FWD) != 0)
1662 		cert_ext_add("permit-agent-forwarding", NULL, 0);
1663 	if ((certflags_flags & CERTOPT_PORT_FWD) != 0)
1664 		cert_ext_add("permit-port-forwarding", NULL, 0);
1665 	if ((certflags_flags & CERTOPT_PTY) != 0)
1666 		cert_ext_add("permit-pty", NULL, 0);
1667 	if ((certflags_flags & CERTOPT_USER_RC) != 0)
1668 		cert_ext_add("permit-user-rc", NULL, 0);
1669 	if ((certflags_flags & CERTOPT_NO_REQUIRE_USER_PRESENCE) != 0)
1670 		cert_ext_add("no-touch-required", NULL, 0);
1671 	/* order lexically by key */
1672 	if (ncert_ext > 0)
1673 		qsort(cert_ext, ncert_ext, sizeof(*cert_ext), cert_ext_cmp);
1674 }
1675 
1676 static struct sshkey *
load_pkcs11_key(char * path)1677 load_pkcs11_key(char *path)
1678 {
1679 #ifdef ENABLE_PKCS11
1680 	struct sshkey **keys = NULL, *public, *private = NULL;
1681 	int r, i, nkeys;
1682 
1683 	if ((r = sshkey_load_public(path, &public, NULL)) != 0)
1684 		fatal_r(r, "Couldn't load CA public key \"%s\"", path);
1685 
1686 	nkeys = pkcs11_add_provider(pkcs11provider, identity_passphrase,
1687 	    &keys, NULL);
1688 	debug3_f("%d keys", nkeys);
1689 	if (nkeys <= 0)
1690 		fatal("cannot read public key from pkcs11");
1691 	for (i = 0; i < nkeys; i++) {
1692 		if (sshkey_equal_public(public, keys[i])) {
1693 			private = keys[i];
1694 			continue;
1695 		}
1696 		sshkey_free(keys[i]);
1697 	}
1698 	free(keys);
1699 	sshkey_free(public);
1700 	return private;
1701 #else
1702 	fatal("no pkcs11 support");
1703 #endif /* ENABLE_PKCS11 */
1704 }
1705 
1706 /* Signer for sshkey_certify_custom that uses the agent */
1707 static int
agent_signer(struct sshkey * key,u_char ** sigp,size_t * lenp,const u_char * data,size_t datalen,const char * alg,const char * provider,const char * pin,u_int compat,void * ctx)1708 agent_signer(struct sshkey *key, u_char **sigp, size_t *lenp,
1709     const u_char *data, size_t datalen,
1710     const char *alg, const char *provider, const char *pin,
1711     u_int compat, void *ctx)
1712 {
1713 	int *agent_fdp = (int *)ctx;
1714 
1715 	return ssh_agent_sign(*agent_fdp, key, sigp, lenp,
1716 	    data, datalen, alg, compat);
1717 }
1718 
1719 static void
do_ca_sign(struct passwd * pw,const char * ca_key_path,int prefer_agent,unsigned long long cert_serial,int cert_serial_autoinc,int argc,char ** argv)1720 do_ca_sign(struct passwd *pw, const char *ca_key_path, int prefer_agent,
1721     unsigned long long cert_serial, int cert_serial_autoinc,
1722     int argc, char **argv)
1723 {
1724 	int r, i, key_in_agent = 0, agent_fd = -1;
1725 	u_int n;
1726 	struct sshkey *ca, *public;
1727 	char valid[64], *otmp, *tmp, *cp, *out, *comment;
1728 	char *ca_fp = NULL, **plist = NULL, *pin = NULL;
1729 	struct ssh_identitylist *agent_ids;
1730 	size_t j;
1731 	struct notifier_ctx *notifier = NULL;
1732 
1733 #ifdef ENABLE_PKCS11
1734 	pkcs11_init(1);
1735 #endif
1736 	tmp = tilde_expand_filename(ca_key_path, pw->pw_uid);
1737 	if (pkcs11provider != NULL) {
1738 		/* If a PKCS#11 token was specified then try to use it */
1739 		if ((ca = load_pkcs11_key(tmp)) == NULL)
1740 			fatal("No PKCS#11 key matching %s found", ca_key_path);
1741 	} else if (prefer_agent) {
1742 		/*
1743 		 * Agent signature requested. Try to use agent after making
1744 		 * sure the public key specified is actually present in the
1745 		 * agent.
1746 		 */
1747 		if ((r = sshkey_load_public(tmp, &ca, NULL)) != 0)
1748 			fatal_r(r, "Cannot load CA public key %s", tmp);
1749 		if ((r = ssh_get_authentication_socket(&agent_fd)) != 0)
1750 			fatal_r(r, "Cannot use public key for CA signature");
1751 		if ((r = ssh_fetch_identitylist(agent_fd, &agent_ids)) != 0)
1752 			fatal_r(r, "Retrieve agent key list");
1753 		for (j = 0; j < agent_ids->nkeys; j++) {
1754 			if (sshkey_equal(ca, agent_ids->keys[j])) {
1755 				key_in_agent = 1;
1756 				/* Replace the CA key with the agent one */
1757 				sshkey_free(ca);
1758 				ca = agent_ids->keys[j];
1759 				agent_ids->keys[j] = NULL;
1760 				break;
1761 			}
1762 		}
1763 		if (!key_in_agent)
1764 			fatal("CA key %s not found in agent", tmp);
1765 		ssh_free_identitylist(agent_ids);
1766 	} else {
1767 		/* CA key is assumed to be a private key on the filesystem */
1768 		ca = load_identity(tmp, NULL);
1769 		if (sshkey_is_sk(ca) &&
1770 		    (ca->sk_flags & SSH_SK_USER_VERIFICATION_REQD)) {
1771 			if ((pin = read_passphrase("Enter PIN for CA key: ",
1772 			    RP_ALLOW_STDIN)) == NULL)
1773 				fatal_f("couldn't read PIN");
1774 		}
1775 	}
1776 	free(tmp);
1777 
1778 	if (key_type_name != NULL) {
1779 		if (sshkey_type_from_shortname(key_type_name) != ca->type) {
1780 			fatal("CA key type %s doesn't match specified %s",
1781 			    sshkey_ssh_name(ca), key_type_name);
1782 		}
1783 	} else if (ca->type == KEY_RSA) {
1784 		/* Default to a good signature algorithm */
1785 		key_type_name = "rsa-sha2-512";
1786 	}
1787 	ca_fp = sshkey_fingerprint(ca, fingerprint_hash, SSH_FP_DEFAULT);
1788 
1789 	finalise_cert_exts();
1790 	for (i = 0; i < argc; i++) {
1791 		/* Split list of principals */
1792 		n = 0;
1793 		if (cert_principals != NULL) {
1794 			otmp = tmp = xstrdup(cert_principals);
1795 			plist = NULL;
1796 			for (; (cp = strsep(&tmp, ",")) != NULL; n++) {
1797 				plist = xreallocarray(plist, n + 1, sizeof(*plist));
1798 				if (*(plist[n] = xstrdup(cp)) == '\0')
1799 					fatal("Empty principal name");
1800 			}
1801 			free(otmp);
1802 		}
1803 		if (n > SSHKEY_CERT_MAX_PRINCIPALS)
1804 			fatal("Too many certificate principals specified");
1805 
1806 		tmp = tilde_expand_filename(argv[i], pw->pw_uid);
1807 		if ((r = sshkey_load_public(tmp, &public, &comment)) != 0)
1808 			fatal_r(r, "load pubkey \"%s\"", tmp);
1809 		if (sshkey_is_cert(public))
1810 			fatal_f("key \"%s\" type %s cannot be certified",
1811 			    tmp, sshkey_type(public));
1812 
1813 		/* Prepare certificate to sign */
1814 		if ((r = sshkey_to_certified(public)) != 0)
1815 			fatal_r(r, "Could not upgrade key %s to certificate", tmp);
1816 		public->cert->type = cert_key_type;
1817 		public->cert->serial = (uint64_t)cert_serial;
1818 		public->cert->key_id = xstrdup(cert_key_id);
1819 		public->cert->nprincipals = n;
1820 		public->cert->principals = plist;
1821 		public->cert->valid_after = cert_valid_from;
1822 		public->cert->valid_before = cert_valid_to;
1823 		prepare_options_buf(public->cert->critical, OPTIONS_CRITICAL);
1824 		prepare_options_buf(public->cert->extensions,
1825 		    OPTIONS_EXTENSIONS);
1826 		if ((r = sshkey_from_private(ca,
1827 		    &public->cert->signature_key)) != 0)
1828 			fatal_r(r, "sshkey_from_private (ca key)");
1829 
1830 		if (key_in_agent) {
1831 			if ((r = sshkey_certify_custom(public, ca,
1832 			    key_type_name, sk_provider, NULL, agent_signer,
1833 			    &agent_fd)) != 0)
1834 				fatal_r(r, "Couldn't certify %s via agent", tmp);
1835 		} else {
1836 			if (sshkey_is_sk(ca) &&
1837 			    (ca->sk_flags & SSH_SK_USER_PRESENCE_REQD)) {
1838 				notifier = notify_start(0,
1839 				    "Confirm user presence for key %s %s",
1840 				    sshkey_type(ca), ca_fp);
1841 			}
1842 			r = sshkey_certify(public, ca, key_type_name,
1843 			    sk_provider, pin);
1844 			notify_complete(notifier, "User presence confirmed");
1845 			if (r != 0)
1846 				fatal_r(r, "Couldn't certify key %s", tmp);
1847 		}
1848 
1849 		if ((cp = strrchr(tmp, '.')) != NULL && strcmp(cp, ".pub") == 0)
1850 			*cp = '\0';
1851 		xasprintf(&out, "%s-cert.pub", tmp);
1852 		free(tmp);
1853 
1854 		if ((r = sshkey_save_public(public, out, comment)) != 0) {
1855 			fatal_r(r, "Unable to save public key to %s",
1856 			    identity_file);
1857 		}
1858 
1859 		if (!quiet) {
1860 			sshkey_format_cert_validity(public->cert,
1861 			    valid, sizeof(valid));
1862 			logit("Signed %s key %s: id \"%s\" serial %llu%s%s "
1863 			    "valid %s", sshkey_cert_type(public),
1864 			    out, public->cert->key_id,
1865 			    (unsigned long long)public->cert->serial,
1866 			    cert_principals != NULL ? " for " : "",
1867 			    cert_principals != NULL ? cert_principals : "",
1868 			    valid);
1869 		}
1870 
1871 		sshkey_free(public);
1872 		free(out);
1873 		free(comment);
1874 		if (cert_serial_autoinc)
1875 			cert_serial++;
1876 	}
1877 	if (pin != NULL)
1878 		freezero(pin, strlen(pin));
1879 	sshkey_free(ca);
1880 	free(ca_fp);
1881 #ifdef ENABLE_PKCS11
1882 	pkcs11_terminate();
1883 #endif
1884 }
1885 
1886 static uint64_t
parse_relative_time(const char * s,time_t now)1887 parse_relative_time(const char *s, time_t now)
1888 {
1889 	int64_t mul, secs;
1890 
1891 	mul = *s == '-' ? -1 : 1;
1892 
1893 	if ((secs = convtime(s + 1)) == -1)
1894 		fatal("Invalid relative certificate time %s", s);
1895 	if (mul == -1 && secs > now)
1896 		fatal("Certificate time %s cannot be represented", s);
1897 	return now + (uint64_t)(secs * mul);
1898 }
1899 
1900 static void
parse_hex_u64(const char * s,uint64_t * up)1901 parse_hex_u64(const char *s, uint64_t *up)
1902 {
1903 	char *ep;
1904 	unsigned long long ull;
1905 
1906 	errno = 0;
1907 	ull = strtoull(s, &ep, 16);
1908 	if (*s == '\0' || *ep != '\0')
1909 		fatal("Invalid certificate time: not a number");
1910 	if (errno == ERANGE && ull == ULONG_MAX)
1911 		fatal_fr(SSH_ERR_SYSTEM_ERROR, "Invalid certificate time");
1912 	*up = (uint64_t)ull;
1913 }
1914 
1915 static void
parse_cert_times(char * timespec)1916 parse_cert_times(char *timespec)
1917 {
1918 	char *from, *to;
1919 	time_t now = time(NULL);
1920 	int64_t secs;
1921 
1922 	/* +timespec relative to now */
1923 	if (*timespec == '+' && strchr(timespec, ':') == NULL) {
1924 		if ((secs = convtime(timespec + 1)) == -1)
1925 			fatal("Invalid relative certificate life %s", timespec);
1926 		cert_valid_to = now + secs;
1927 		/*
1928 		 * Backdate certificate one minute to avoid problems on hosts
1929 		 * with poorly-synchronised clocks.
1930 		 */
1931 		cert_valid_from = ((now - 59)/ 60) * 60;
1932 		return;
1933 	}
1934 
1935 	/*
1936 	 * from:to, where
1937 	 * from := [+-]timespec | YYYYMMDD | YYYYMMDDHHMMSS | 0x... | "always"
1938 	 *   to := [+-]timespec | YYYYMMDD | YYYYMMDDHHMMSS | 0x... | "forever"
1939 	 */
1940 	from = xstrdup(timespec);
1941 	to = strchr(from, ':');
1942 	if (to == NULL || from == to || *(to + 1) == '\0')
1943 		fatal("Invalid certificate life specification %s", timespec);
1944 	*to++ = '\0';
1945 
1946 	if (*from == '-' || *from == '+')
1947 		cert_valid_from = parse_relative_time(from, now);
1948 	else if (strcmp(from, "always") == 0)
1949 		cert_valid_from = 0;
1950 	else if (strncmp(from, "0x", 2) == 0)
1951 		parse_hex_u64(from, &cert_valid_from);
1952 	else if (parse_absolute_time(from, &cert_valid_from) != 0)
1953 		fatal("Invalid from time \"%s\"", from);
1954 
1955 	if (*to == '-' || *to == '+')
1956 		cert_valid_to = parse_relative_time(to, now);
1957 	else if (strcmp(to, "forever") == 0)
1958 		cert_valid_to = ~(uint64_t)0;
1959 	else if (strncmp(to, "0x", 2) == 0)
1960 		parse_hex_u64(to, &cert_valid_to);
1961 	else if (parse_absolute_time(to, &cert_valid_to) != 0)
1962 		fatal("Invalid to time \"%s\"", to);
1963 
1964 	if (cert_valid_to <= cert_valid_from)
1965 		fatal("Empty certificate validity interval");
1966 	free(from);
1967 }
1968 
1969 static void
add_cert_option(char * opt)1970 add_cert_option(char *opt)
1971 {
1972 	char *val, *cp;
1973 	const char *p;
1974 	int iscrit = 0;
1975 
1976 	if (strcasecmp(opt, "clear") == 0)
1977 		certflags_flags = 0;
1978 	else if (strcasecmp(opt, "no-x11-forwarding") == 0)
1979 		certflags_flags &= ~CERTOPT_X_FWD;
1980 	else if (strcasecmp(opt, "permit-x11-forwarding") == 0)
1981 		certflags_flags |= CERTOPT_X_FWD;
1982 	else if (strcasecmp(opt, "no-agent-forwarding") == 0)
1983 		certflags_flags &= ~CERTOPT_AGENT_FWD;
1984 	else if (strcasecmp(opt, "permit-agent-forwarding") == 0)
1985 		certflags_flags |= CERTOPT_AGENT_FWD;
1986 	else if (strcasecmp(opt, "no-port-forwarding") == 0)
1987 		certflags_flags &= ~CERTOPT_PORT_FWD;
1988 	else if (strcasecmp(opt, "permit-port-forwarding") == 0)
1989 		certflags_flags |= CERTOPT_PORT_FWD;
1990 	else if (strcasecmp(opt, "no-pty") == 0)
1991 		certflags_flags &= ~CERTOPT_PTY;
1992 	else if (strcasecmp(opt, "permit-pty") == 0)
1993 		certflags_flags |= CERTOPT_PTY;
1994 	else if (strcasecmp(opt, "no-user-rc") == 0)
1995 		certflags_flags &= ~CERTOPT_USER_RC;
1996 	else if (strcasecmp(opt, "permit-user-rc") == 0)
1997 		certflags_flags |= CERTOPT_USER_RC;
1998 	else if (strcasecmp(opt, "touch-required") == 0)
1999 		certflags_flags &= ~CERTOPT_NO_REQUIRE_USER_PRESENCE;
2000 	else if (strcasecmp(opt, "no-touch-required") == 0)
2001 		certflags_flags |= CERTOPT_NO_REQUIRE_USER_PRESENCE;
2002 	else if (strcasecmp(opt, "no-verify-required") == 0)
2003 		certflags_flags &= ~CERTOPT_REQUIRE_VERIFY;
2004 	else if (strcasecmp(opt, "verify-required") == 0)
2005 		certflags_flags |= CERTOPT_REQUIRE_VERIFY;
2006 	else if ((p = strprefix(opt, "force-command=", 1)) != NULL) {
2007 		if (*p == '\0')
2008 			fatal("Empty force-command option");
2009 		if (certflags_command != NULL)
2010 			fatal("force-command already specified");
2011 		certflags_command = xstrdup(p);
2012 	} else if ((p = strprefix(opt, "source-address=", 1)) != NULL) {
2013 		if (*p == '\0')
2014 			fatal("Empty source-address option");
2015 		if (certflags_src_addr != NULL)
2016 			fatal("source-address already specified");
2017 		if (addr_match_cidr_list(NULL, p) != 0)
2018 			fatal("Invalid source-address list");
2019 		certflags_src_addr = xstrdup(p);
2020 	} else if (strprefix(opt, "extension:", 1) != NULL ||
2021 		    (iscrit = (strprefix(opt, "critical:", 1) != NULL))) {
2022 		val = xstrdup(strchr(opt, ':') + 1);
2023 		if ((cp = strchr(val, '=')) != NULL)
2024 			*cp++ = '\0';
2025 		cert_ext_add(val, cp, iscrit);
2026 		free(val);
2027 	} else
2028 		fatal("Unsupported certificate option \"%s\"", opt);
2029 }
2030 
2031 static void
show_options(struct sshbuf * optbuf,int in_critical)2032 show_options(struct sshbuf *optbuf, int in_critical)
2033 {
2034 	char *name, *arg, *hex;
2035 	struct sshbuf *options, *option = NULL;
2036 	int r;
2037 
2038 	if ((options = sshbuf_fromb(optbuf)) == NULL)
2039 		fatal_f("sshbuf_fromb failed");
2040 	while (sshbuf_len(options) != 0) {
2041 		sshbuf_free(option);
2042 		option = NULL;
2043 		if ((r = sshbuf_get_cstring(options, &name, NULL)) != 0 ||
2044 		    (r = sshbuf_froms(options, &option)) != 0)
2045 			fatal_fr(r, "parse option");
2046 		printf("                %s", name);
2047 		if (!in_critical &&
2048 		    (strcmp(name, "permit-X11-forwarding") == 0 ||
2049 		    strcmp(name, "permit-agent-forwarding") == 0 ||
2050 		    strcmp(name, "permit-port-forwarding") == 0 ||
2051 		    strcmp(name, "permit-pty") == 0 ||
2052 		    strcmp(name, "permit-user-rc") == 0 ||
2053 		    strcmp(name, "no-touch-required") == 0)) {
2054 			printf("\n");
2055 		} else if (in_critical &&
2056 		    (strcmp(name, "force-command") == 0 ||
2057 		    strcmp(name, "source-address") == 0)) {
2058 			if ((r = sshbuf_get_cstring(option, &arg, NULL)) != 0)
2059 				fatal_fr(r, "parse critical");
2060 			printf(" %s\n", arg);
2061 			free(arg);
2062 		} else if (in_critical &&
2063 		    strcmp(name, "verify-required") == 0) {
2064 			printf("\n");
2065 		} else if (sshbuf_len(option) > 0) {
2066 			hex = sshbuf_dtob16(option);
2067 			printf(" UNKNOWN OPTION: %s (len %zu)\n",
2068 			    hex, sshbuf_len(option));
2069 			sshbuf_reset(option);
2070 			free(hex);
2071 		} else
2072 			printf(" UNKNOWN FLAG OPTION\n");
2073 		free(name);
2074 		if (sshbuf_len(option) != 0)
2075 			fatal("Option corrupt: extra data at end");
2076 	}
2077 	sshbuf_free(option);
2078 	sshbuf_free(options);
2079 }
2080 
2081 static void
print_cert(struct sshkey * key)2082 print_cert(struct sshkey *key)
2083 {
2084 	char valid[64], *key_fp, *ca_fp;
2085 	u_int i;
2086 
2087 	key_fp = sshkey_fingerprint(key, fingerprint_hash, SSH_FP_DEFAULT);
2088 	ca_fp = sshkey_fingerprint(key->cert->signature_key,
2089 	    fingerprint_hash, SSH_FP_DEFAULT);
2090 	if (key_fp == NULL || ca_fp == NULL)
2091 		fatal_f("sshkey_fingerprint fail");
2092 	sshkey_format_cert_validity(key->cert, valid, sizeof(valid));
2093 
2094 	printf("        Type: %s %s certificate\n", sshkey_ssh_name(key),
2095 	    sshkey_cert_type(key));
2096 	printf("        Public key: %s %s\n", sshkey_type(key), key_fp);
2097 	printf("        Signing CA: %s %s (using %s)\n",
2098 	    sshkey_type(key->cert->signature_key), ca_fp,
2099 	    key->cert->signature_type);
2100 	printf("        Key ID: \"%s\"\n", key->cert->key_id);
2101 	printf("        Serial: %llu\n", (unsigned long long)key->cert->serial);
2102 	printf("        Valid: %s\n", valid);
2103 	printf("        Principals: ");
2104 	if (key->cert->nprincipals == 0)
2105 		printf("(none)\n");
2106 	else {
2107 		for (i = 0; i < key->cert->nprincipals; i++)
2108 			printf("\n                %s",
2109 			    key->cert->principals[i]);
2110 		printf("\n");
2111 	}
2112 	printf("        Critical Options: ");
2113 	if (sshbuf_len(key->cert->critical) == 0)
2114 		printf("(none)\n");
2115 	else {
2116 		printf("\n");
2117 		show_options(key->cert->critical, 1);
2118 	}
2119 	printf("        Extensions: ");
2120 	if (sshbuf_len(key->cert->extensions) == 0)
2121 		printf("(none)\n");
2122 	else {
2123 		printf("\n");
2124 		show_options(key->cert->extensions, 0);
2125 	}
2126 }
2127 
2128 static void
do_show_cert(struct passwd * pw)2129 do_show_cert(struct passwd *pw)
2130 {
2131 	struct sshkey *key = NULL;
2132 	struct stat st;
2133 	int r, is_stdin = 0, ok = 0;
2134 	FILE *f;
2135 	char *cp, *line = NULL;
2136 	const char *path;
2137 	size_t linesize = 0;
2138 	u_long lnum = 0;
2139 
2140 	if (!have_identity)
2141 		ask_filename(pw, "Enter file in which the key is");
2142 	if (strcmp(identity_file, "-") != 0 && stat(identity_file, &st) == -1)
2143 		fatal("%s: %s: %s", __progname, identity_file, strerror(errno));
2144 
2145 	path = identity_file;
2146 	if (strcmp(path, "-") == 0) {
2147 		f = stdin;
2148 		path = "(stdin)";
2149 		is_stdin = 1;
2150 	} else if ((f = fopen(identity_file, "r")) == NULL)
2151 		fatal("fopen %s: %s", identity_file, strerror(errno));
2152 
2153 	while (getline(&line, &linesize, f) != -1) {
2154 		lnum++;
2155 		sshkey_free(key);
2156 		key = NULL;
2157 		/* Trim leading space and comments */
2158 		cp = line + strspn(line, " \t");
2159 		if (*cp == '#' || *cp == '\0')
2160 			continue;
2161 		if ((key = sshkey_new(KEY_UNSPEC)) == NULL)
2162 			fatal("sshkey_new");
2163 		if ((r = sshkey_read(key, &cp)) != 0) {
2164 			error_r(r, "%s:%lu: invalid key", path, lnum);
2165 			continue;
2166 		}
2167 		if (!sshkey_is_cert(key)) {
2168 			error("%s:%lu is not a certificate", path, lnum);
2169 			continue;
2170 		}
2171 		ok = 1;
2172 		if (!is_stdin && lnum == 1)
2173 			printf("%s:\n", path);
2174 		else
2175 			printf("%s:%lu:\n", path, lnum);
2176 		print_cert(key);
2177 	}
2178 	free(line);
2179 	sshkey_free(key);
2180 	fclose(f);
2181 	exit(ok ? 0 : 1);
2182 }
2183 
2184 static void
load_krl(const char * path,struct ssh_krl ** krlp)2185 load_krl(const char *path, struct ssh_krl **krlp)
2186 {
2187 	struct sshbuf *krlbuf;
2188 	int r;
2189 
2190 	if ((r = sshbuf_load_file(path, &krlbuf)) != 0)
2191 		fatal_r(r, "Unable to load KRL %s", path);
2192 	/* XXX check sigs */
2193 	if ((r = ssh_krl_from_blob(krlbuf, krlp)) != 0 ||
2194 	    *krlp == NULL)
2195 		fatal_r(r, "Invalid KRL file %s", path);
2196 	sshbuf_free(krlbuf);
2197 }
2198 
2199 static void
hash_to_blob(const char * cp,u_char ** blobp,size_t * lenp,const char * file,u_long lnum)2200 hash_to_blob(const char *cp, u_char **blobp, size_t *lenp,
2201     const char *file, u_long lnum)
2202 {
2203 	char *tmp;
2204 	size_t tlen;
2205 	struct sshbuf *b;
2206 	int r;
2207 
2208 	if ((cp = strprefix(cp, "SHA256:", 0)) == NULL)
2209 		fatal("%s:%lu: unsupported hash algorithm", file, lnum);
2210 
2211 	/*
2212 	 * OpenSSH base64 hashes omit trailing '='
2213 	 * characters; put them back for decode.
2214 	 */
2215 	if ((tlen = strlen(cp)) >= SIZE_MAX - 5)
2216 		fatal_f("hash too long: %zu bytes", tlen);
2217 	tmp = xmalloc(tlen + 4 + 1);
2218 	strlcpy(tmp, cp, tlen + 1);
2219 	while ((tlen % 4) != 0) {
2220 		tmp[tlen++] = '=';
2221 		tmp[tlen] = '\0';
2222 	}
2223 	if ((b = sshbuf_new()) == NULL)
2224 		fatal_f("sshbuf_new failed");
2225 	if ((r = sshbuf_b64tod(b, tmp)) != 0)
2226 		fatal_r(r, "%s:%lu: decode hash failed", file, lnum);
2227 	free(tmp);
2228 	*lenp = sshbuf_len(b);
2229 	*blobp = xmalloc(*lenp);
2230 	memcpy(*blobp, sshbuf_ptr(b), *lenp);
2231 	sshbuf_free(b);
2232 }
2233 
2234 static void
update_krl_from_file(struct passwd * pw,const char * file,int wild_ca,const struct sshkey * ca,struct ssh_krl * krl)2235 update_krl_from_file(struct passwd *pw, const char *file, int wild_ca,
2236     const struct sshkey *ca, struct ssh_krl *krl)
2237 {
2238 	struct sshkey *key = NULL;
2239 	u_long lnum = 0;
2240 	char *path, *cp, *ep, *line = NULL;
2241 	u_char *blob = NULL;
2242 	size_t blen = 0, linesize = 0;
2243 	unsigned long long serial, serial2;
2244 	int i, was_explicit_key, was_sha1, was_sha256, was_hash, r;
2245 	FILE *krl_spec;
2246 
2247 	path = tilde_expand_filename(file, pw->pw_uid);
2248 	if (strcmp(path, "-") == 0) {
2249 		krl_spec = stdin;
2250 		free(path);
2251 		path = xstrdup("(standard input)");
2252 	} else if ((krl_spec = fopen(path, "r")) == NULL)
2253 		fatal("fopen %s: %s", path, strerror(errno));
2254 
2255 	if (!quiet)
2256 		printf("Revoking from %s\n", path);
2257 	while (getline(&line, &linesize, krl_spec) != -1) {
2258 		if (linesize >= INT_MAX) {
2259 			fatal_f("%s contains unparsable line, len=%zu",
2260 			    path, linesize);
2261 		}
2262 		lnum++;
2263 		was_explicit_key = was_sha1 = was_sha256 = was_hash = 0;
2264 		cp = line + strspn(line, " \t");
2265 		/* Trim trailing space, comments and strip \n */
2266 		for (i = 0, r = -1; cp[i] != '\0'; i++) {
2267 			if (cp[i] == '#' || cp[i] == '\n') {
2268 				cp[i] = '\0';
2269 				break;
2270 			}
2271 			if (cp[i] == ' ' || cp[i] == '\t') {
2272 				/* Remember the start of a span of whitespace */
2273 				if (r == -1)
2274 					r = i;
2275 			} else
2276 				r = -1;
2277 		}
2278 		if (r != -1)
2279 			cp[r] = '\0';
2280 		if (*cp == '\0')
2281 			continue;
2282 		if (strncasecmp(cp, "serial:", 7) == 0) {
2283 			if (ca == NULL && !wild_ca) {
2284 				fatal("revoking certificates by serial number "
2285 				    "requires specification of a CA key");
2286 			}
2287 			cp += 7;
2288 			cp = cp + strspn(cp, " \t");
2289 			errno = 0;
2290 			serial = strtoull(cp, &ep, 0);
2291 			if (*cp == '\0' || (*ep != '\0' && *ep != '-'))
2292 				fatal("%s:%lu: invalid serial \"%s\"",
2293 				    path, lnum, cp);
2294 			if (errno == ERANGE && serial == ULLONG_MAX)
2295 				fatal("%s:%lu: serial out of range",
2296 				    path, lnum);
2297 			serial2 = serial;
2298 			if (*ep == '-') {
2299 				cp = ep + 1;
2300 				errno = 0;
2301 				serial2 = strtoull(cp, &ep, 0);
2302 				if (*cp == '\0' || *ep != '\0')
2303 					fatal("%s:%lu: invalid serial \"%s\"",
2304 					    path, lnum, cp);
2305 				if (errno == ERANGE && serial2 == ULLONG_MAX)
2306 					fatal("%s:%lu: serial out of range",
2307 					    path, lnum);
2308 				if (serial2 <= serial)
2309 					fatal("%s:%lu: invalid serial range "
2310 					    "%llu:%llu", path, lnum,
2311 					    (unsigned long long)serial,
2312 					    (unsigned long long)serial2);
2313 			}
2314 			if (ssh_krl_revoke_cert_by_serial_range(krl,
2315 			    ca, serial, serial2) != 0) {
2316 				fatal_f("revoke serial failed");
2317 			}
2318 		} else if (strncasecmp(cp, "id:", 3) == 0) {
2319 			if (ca == NULL && !wild_ca) {
2320 				fatal("revoking certificates by key ID "
2321 				    "requires specification of a CA key");
2322 			}
2323 			cp += 3;
2324 			cp = cp + strspn(cp, " \t");
2325 			if (ssh_krl_revoke_cert_by_key_id(krl, ca, cp) != 0)
2326 				fatal_f("revoke key ID failed");
2327 		} else if (strncasecmp(cp, "hash:", 5) == 0) {
2328 			cp += 5;
2329 			cp = cp + strspn(cp, " \t");
2330 			hash_to_blob(cp, &blob, &blen, file, lnum);
2331 			if ((r = ssh_krl_revoke_key_sha256(krl,
2332 			    blob, blen)) != 0)
2333 				fatal_fr(r, "revoke key failed");
2334 			free(blob);
2335 			blob = NULL;
2336 			blen = 0;
2337 		} else {
2338 			if (strncasecmp(cp, "key:", 4) == 0) {
2339 				cp += 4;
2340 				cp = cp + strspn(cp, " \t");
2341 				was_explicit_key = 1;
2342 			} else if (strncasecmp(cp, "sha1:", 5) == 0) {
2343 				cp += 5;
2344 				cp = cp + strspn(cp, " \t");
2345 				was_sha1 = 1;
2346 			} else if (strncasecmp(cp, "sha256:", 7) == 0) {
2347 				cp += 7;
2348 				cp = cp + strspn(cp, " \t");
2349 				was_sha256 = 1;
2350 				/*
2351 				 * Just try to process the line as a key.
2352 				 * Parsing will fail if it isn't.
2353 				 */
2354 			}
2355 			if ((key = sshkey_new(KEY_UNSPEC)) == NULL)
2356 				fatal("sshkey_new");
2357 			if ((r = sshkey_read(key, &cp)) != 0)
2358 				fatal_r(r, "%s:%lu: invalid key", path, lnum);
2359 			if (was_explicit_key)
2360 				r = ssh_krl_revoke_key_explicit(krl, key);
2361 			else if (was_sha1) {
2362 				if (sshkey_fingerprint_raw(key,
2363 				    SSH_DIGEST_SHA1, &blob, &blen) != 0) {
2364 					fatal("%s:%lu: fingerprint failed",
2365 					    file, lnum);
2366 				}
2367 				r = ssh_krl_revoke_key_sha1(krl, blob, blen);
2368 			} else if (was_sha256) {
2369 				if (sshkey_fingerprint_raw(key,
2370 				    SSH_DIGEST_SHA256, &blob, &blen) != 0) {
2371 					fatal("%s:%lu: fingerprint failed",
2372 					    file, lnum);
2373 				}
2374 				r = ssh_krl_revoke_key_sha256(krl, blob, blen);
2375 			} else
2376 				r = ssh_krl_revoke_key(krl, key);
2377 			if (r != 0)
2378 				fatal_fr(r, "revoke key failed");
2379 			freezero(blob, blen);
2380 			blob = NULL;
2381 			blen = 0;
2382 			sshkey_free(key);
2383 		}
2384 	}
2385 	if (strcmp(path, "-") != 0)
2386 		fclose(krl_spec);
2387 	free(line);
2388 	free(path);
2389 }
2390 
2391 static void
do_gen_krl(struct passwd * pw,int updating,const char * ca_key_path,unsigned long long krl_version,const char * krl_comment,int argc,char ** argv)2392 do_gen_krl(struct passwd *pw, int updating, const char *ca_key_path,
2393     unsigned long long krl_version, const char *krl_comment,
2394     int argc, char **argv)
2395 {
2396 	struct ssh_krl *krl;
2397 	struct stat sb;
2398 	struct sshkey *ca = NULL;
2399 	int i, r, wild_ca = 0;
2400 	char *tmp;
2401 	struct sshbuf *kbuf;
2402 
2403 	if (*identity_file == '\0')
2404 		fatal("KRL generation requires an output file");
2405 	if (stat(identity_file, &sb) == -1) {
2406 		if (errno != ENOENT)
2407 			fatal("Cannot access KRL \"%s\": %s",
2408 			    identity_file, strerror(errno));
2409 		if (updating)
2410 			fatal("KRL \"%s\" does not exist", identity_file);
2411 	}
2412 	if (ca_key_path != NULL) {
2413 		if (strcasecmp(ca_key_path, "none") == 0)
2414 			wild_ca = 1;
2415 		else {
2416 			tmp = tilde_expand_filename(ca_key_path, pw->pw_uid);
2417 			if ((r = sshkey_load_public(tmp, &ca, NULL)) != 0)
2418 				fatal_r(r, "Cannot load CA public key %s", tmp);
2419 			free(tmp);
2420 		}
2421 	}
2422 
2423 	if (updating)
2424 		load_krl(identity_file, &krl);
2425 	else if ((krl = ssh_krl_init()) == NULL)
2426 		fatal("couldn't create KRL");
2427 
2428 	if (krl_version != 0)
2429 		ssh_krl_set_version(krl, krl_version);
2430 	if (krl_comment != NULL)
2431 		ssh_krl_set_comment(krl, krl_comment);
2432 
2433 	for (i = 0; i < argc; i++)
2434 		update_krl_from_file(pw, argv[i], wild_ca, ca, krl);
2435 
2436 	if ((kbuf = sshbuf_new()) == NULL)
2437 		fatal("sshbuf_new failed");
2438 	if (ssh_krl_to_blob(krl, kbuf) != 0)
2439 		fatal("Couldn't generate KRL");
2440 	if ((r = sshbuf_write_file(identity_file, kbuf)) != 0)
2441 		fatal("write %s: %s", identity_file, strerror(errno));
2442 	sshbuf_free(kbuf);
2443 	ssh_krl_free(krl);
2444 	sshkey_free(ca);
2445 }
2446 
2447 static void
do_check_krl(struct passwd * pw,int print_krl,int argc,char ** argv)2448 do_check_krl(struct passwd *pw, int print_krl, int argc, char **argv)
2449 {
2450 	int i, r, ret = 0;
2451 	char *comment;
2452 	struct ssh_krl *krl;
2453 	struct sshkey *k;
2454 
2455 	if (*identity_file == '\0')
2456 		fatal("KRL checking requires an input file");
2457 	load_krl(identity_file, &krl);
2458 	if (print_krl)
2459 		krl_dump(krl, stdout);
2460 	for (i = 0; i < argc; i++) {
2461 		if ((r = sshkey_load_public(argv[i], &k, &comment)) != 0)
2462 			fatal_r(r, "Cannot load public key %s", argv[i]);
2463 		r = ssh_krl_check_key(krl, k);
2464 		printf("%s%s%s%s: %s\n", argv[i],
2465 		    *comment ? " (" : "", comment, *comment ? ")" : "",
2466 		    r == 0 ? "ok" : "REVOKED");
2467 		if (r != 0)
2468 			ret = 1;
2469 		sshkey_free(k);
2470 		free(comment);
2471 	}
2472 	ssh_krl_free(krl);
2473 	exit(ret);
2474 }
2475 
2476 static struct sshkey *
load_sign_key(const char * keypath,const struct sshkey * pubkey)2477 load_sign_key(const char *keypath, const struct sshkey *pubkey)
2478 {
2479 	size_t i, slen, plen = strlen(keypath);
2480 	char *privpath = xstrdup(keypath);
2481 	static const char * const suffixes[] = { "-cert.pub", ".pub", NULL };
2482 	struct sshkey *ret = NULL, *privkey = NULL;
2483 	int r, waspub = 0;
2484 	struct stat st;
2485 
2486 	/*
2487 	 * If passed a public key filename, then try to locate the corresponding
2488 	 * private key. This lets us specify certificates on the command-line
2489 	 * and have ssh-keygen find the appropriate private key.
2490 	 */
2491 	for (i = 0; suffixes[i]; i++) {
2492 		slen = strlen(suffixes[i]);
2493 		if (plen <= slen ||
2494 		    strcmp(privpath + plen - slen, suffixes[i]) != 0)
2495 			continue;
2496 		privpath[plen - slen] = '\0';
2497 		debug_f("%s looks like a public key, using private key "
2498 		    "path %s instead", keypath, privpath);
2499 		waspub = 1;
2500 	}
2501 	if (waspub && stat(privpath, &st) != 0 && errno == ENOENT)
2502 		fatal("No private key found for public key \"%s\"", keypath);
2503 	if ((r = sshkey_load_private(privpath, "", &privkey, NULL)) != 0 &&
2504 	    (r != SSH_ERR_KEY_WRONG_PASSPHRASE)) {
2505 		debug_fr(r, "load private key \"%s\"", privpath);
2506 		fatal("No private key found for \"%s\"", privpath);
2507 	} else if (privkey == NULL)
2508 		privkey = load_identity(privpath, NULL);
2509 
2510 	if (!sshkey_equal_public(pubkey, privkey)) {
2511 		error("Public key %s doesn't match private %s",
2512 		    keypath, privpath);
2513 		goto done;
2514 	}
2515 	if (sshkey_is_cert(pubkey) && !sshkey_is_cert(privkey)) {
2516 		/*
2517 		 * Graft the certificate onto the private key to make
2518 		 * it capable of signing.
2519 		 */
2520 		if ((r = sshkey_to_certified(privkey)) != 0) {
2521 			error_fr(r, "sshkey_to_certified");
2522 			goto done;
2523 		}
2524 		if ((r = sshkey_cert_copy(pubkey, privkey)) != 0) {
2525 			error_fr(r, "sshkey_cert_copy");
2526 			goto done;
2527 		}
2528 	}
2529 	/* success */
2530 	ret = privkey;
2531 	privkey = NULL;
2532  done:
2533 	sshkey_free(privkey);
2534 	free(privpath);
2535 	return ret;
2536 }
2537 
2538 static int
sign_one(struct sshkey * signkey,const char * filename,int fd,const char * sig_namespace,const char * hashalg,sshsig_signer * signer,void * signer_ctx)2539 sign_one(struct sshkey *signkey, const char *filename, int fd,
2540     const char *sig_namespace, const char *hashalg, sshsig_signer *signer,
2541     void *signer_ctx)
2542 {
2543 	struct sshbuf *sigbuf = NULL, *abuf = NULL;
2544 	int r = SSH_ERR_INTERNAL_ERROR, wfd = -1, oerrno;
2545 	char *wfile = NULL, *asig = NULL, *fp = NULL;
2546 	char *pin = NULL, *prompt = NULL;
2547 
2548 	if (!quiet) {
2549 		if (fd == STDIN_FILENO)
2550 			fprintf(stderr, "Signing data on standard input\n");
2551 		else
2552 			fprintf(stderr, "Signing file %s\n", filename);
2553 	}
2554 	if (signer == NULL && sshkey_is_sk(signkey)) {
2555 		if ((signkey->sk_flags & SSH_SK_USER_VERIFICATION_REQD)) {
2556 			xasprintf(&prompt, "Enter PIN for %s key: ",
2557 			    sshkey_type(signkey));
2558 			if ((pin = read_passphrase(prompt,
2559 			    RP_ALLOW_STDIN)) == NULL)
2560 				fatal_f("couldn't read PIN");
2561 		}
2562 		if ((signkey->sk_flags & SSH_SK_USER_PRESENCE_REQD)) {
2563 			if ((fp = sshkey_fingerprint(signkey, fingerprint_hash,
2564 			    SSH_FP_DEFAULT)) == NULL)
2565 				fatal_f("fingerprint failed");
2566 			fprintf(stderr, "Confirm user presence for key %s %s\n",
2567 			    sshkey_type(signkey), fp);
2568 			free(fp);
2569 		}
2570 	}
2571 	if ((r = sshsig_sign_fd(signkey, hashalg, sk_provider, pin,
2572 	    fd, sig_namespace, &sigbuf, signer, signer_ctx)) != 0) {
2573 		error_r(r, "Signing %s failed", filename);
2574 		goto out;
2575 	}
2576 	if ((r = sshsig_armor(sigbuf, &abuf)) != 0) {
2577 		error_fr(r, "sshsig_armor");
2578 		goto out;
2579 	}
2580 	if ((asig = sshbuf_dup_string(abuf)) == NULL) {
2581 		error_f("buffer error");
2582 		r = SSH_ERR_ALLOC_FAIL;
2583 		goto out;
2584 	}
2585 
2586 	if (fd == STDIN_FILENO) {
2587 		fputs(asig, stdout);
2588 		fflush(stdout);
2589 	} else {
2590 		xasprintf(&wfile, "%s.sig", filename);
2591 		if (confirm_overwrite(wfile)) {
2592 			if ((wfd = open(wfile, O_WRONLY|O_CREAT|O_TRUNC,
2593 			    0666)) == -1) {
2594 				oerrno = errno;
2595 				error("Cannot open %s: %s",
2596 				    wfile, strerror(errno));
2597 				errno = oerrno;
2598 				r = SSH_ERR_SYSTEM_ERROR;
2599 				goto out;
2600 			}
2601 			if (atomicio(vwrite, wfd, asig,
2602 			    strlen(asig)) != strlen(asig)) {
2603 				oerrno = errno;
2604 				error("Cannot write to %s: %s",
2605 				    wfile, strerror(errno));
2606 				errno = oerrno;
2607 				r = SSH_ERR_SYSTEM_ERROR;
2608 				goto out;
2609 			}
2610 			if (!quiet) {
2611 				fprintf(stderr, "Write signature to %s\n",
2612 				    wfile);
2613 			}
2614 		}
2615 	}
2616 	/* success */
2617 	r = 0;
2618  out:
2619 	free(wfile);
2620 	free(prompt);
2621 	free(asig);
2622 	if (pin != NULL)
2623 		freezero(pin, strlen(pin));
2624 	sshbuf_free(abuf);
2625 	sshbuf_free(sigbuf);
2626 	if (wfd != -1)
2627 		close(wfd);
2628 	return r;
2629 }
2630 
2631 static int
sig_process_opts(char * const * opts,size_t nopts,char ** hashalgp,uint64_t * verify_timep,int * print_pubkey)2632 sig_process_opts(char * const *opts, size_t nopts, char **hashalgp,
2633     uint64_t *verify_timep, int *print_pubkey)
2634 {
2635 	size_t i;
2636 	time_t now;
2637 	const char *p;
2638 
2639 	if (verify_timep != NULL)
2640 		*verify_timep = 0;
2641 	if (print_pubkey != NULL)
2642 		*print_pubkey = 0;
2643 	if (hashalgp != NULL)
2644 		*hashalgp = NULL;
2645 	for (i = 0; i < nopts; i++) {
2646 		if (hashalgp != NULL &&
2647 		    (p = strprefix(opts[i], "hashalg=", 1)) != NULL) {
2648 			*hashalgp = xstrdup(p);
2649 		} else if (verify_timep &&
2650 		    (p = strprefix(opts[i], "verify-time=", 1)) != NULL) {
2651 			if (parse_absolute_time(p, verify_timep) != 0 ||
2652 			    *verify_timep == 0) {
2653 				error("Invalid \"verify-time\" option");
2654 				return SSH_ERR_INVALID_ARGUMENT;
2655 			}
2656 		} else if (print_pubkey &&
2657 		    strcasecmp(opts[i], "print-pubkey") == 0) {
2658 			*print_pubkey = 1;
2659 		} else {
2660 			error("Invalid option \"%s\"", opts[i]);
2661 			return SSH_ERR_INVALID_ARGUMENT;
2662 		}
2663 	}
2664 	if (verify_timep && *verify_timep == 0) {
2665 		if ((now = time(NULL)) < 0) {
2666 			error("Time is before epoch");
2667 			return SSH_ERR_INVALID_ARGUMENT;
2668 		}
2669 		*verify_timep = (uint64_t)now;
2670 	}
2671 	return 0;
2672 }
2673 
2674 
2675 static int
sig_sign(const char * keypath,const char * sig_namespace,int require_agent,int argc,char ** argv,char * const * opts,size_t nopts)2676 sig_sign(const char *keypath, const char *sig_namespace, int require_agent,
2677     int argc, char **argv, char * const *opts, size_t nopts)
2678 {
2679 	int i, fd = -1, r, ret = -1;
2680 	int agent_fd = -1;
2681 	struct sshkey *pubkey = NULL, *privkey = NULL, *signkey = NULL;
2682 	sshsig_signer *signer = NULL;
2683 	char *hashalg = NULL;
2684 
2685 	/* Check file arguments. */
2686 	for (i = 0; i < argc; i++) {
2687 		if (strcmp(argv[i], "-") != 0)
2688 			continue;
2689 		if (i > 0 || argc > 1)
2690 			fatal("Cannot sign mix of paths and standard input");
2691 	}
2692 
2693 	if (sig_process_opts(opts, nopts, &hashalg, NULL, NULL) != 0)
2694 		goto done; /* error already logged */
2695 
2696 	if ((r = sshkey_load_public(keypath, &pubkey, NULL)) != 0) {
2697 		error_r(r, "Couldn't load public key %s", keypath);
2698 		goto done;
2699 	}
2700 
2701 	if ((r = ssh_get_authentication_socket(&agent_fd)) != 0) {
2702 		if (require_agent)
2703 			fatal("Couldn't get agent socket");
2704 		debug_r(r, "Couldn't get agent socket");
2705 	} else {
2706 		if ((r = ssh_agent_has_key(agent_fd, pubkey)) == 0)
2707 			signer = agent_signer;
2708 		else {
2709 			if (require_agent)
2710 				fatal("Couldn't find key in agent");
2711 			debug_r(r, "Couldn't find key in agent");
2712 		}
2713 	}
2714 
2715 	if (signer == NULL) {
2716 		/* Not using agent - try to load private key */
2717 		if ((privkey = load_sign_key(keypath, pubkey)) == NULL)
2718 			goto done;
2719 		signkey = privkey;
2720 	} else {
2721 		/* Will use key in agent */
2722 		signkey = pubkey;
2723 	}
2724 
2725 	if (argc == 0) {
2726 		if ((r = sign_one(signkey, "(stdin)", STDIN_FILENO,
2727 		    sig_namespace, hashalg, signer, &agent_fd)) != 0)
2728 			goto done;
2729 	} else {
2730 		for (i = 0; i < argc; i++) {
2731 			if (strcmp(argv[i], "-") == 0)
2732 				fd = STDIN_FILENO;
2733 			else if ((fd = open(argv[i], O_RDONLY)) == -1) {
2734 				error("Cannot open %s for signing: %s",
2735 				    argv[i], strerror(errno));
2736 				goto done;
2737 			}
2738 			if ((r = sign_one(signkey, argv[i], fd, sig_namespace,
2739 			    hashalg, signer, &agent_fd)) != 0)
2740 				goto done;
2741 			if (fd != STDIN_FILENO)
2742 				close(fd);
2743 			fd = -1;
2744 		}
2745 	}
2746 
2747 	ret = 0;
2748 done:
2749 	if (fd != -1 && fd != STDIN_FILENO)
2750 		close(fd);
2751 	sshkey_free(pubkey);
2752 	sshkey_free(privkey);
2753 	free(hashalg);
2754 	return ret;
2755 }
2756 
2757 static int
sig_verify(const char * signature,const char * sig_namespace,const char * principal,const char * allowed_keys,const char * revoked_keys,char * const * opts,size_t nopts)2758 sig_verify(const char *signature, const char *sig_namespace,
2759     const char *principal, const char *allowed_keys, const char *revoked_keys,
2760     char * const *opts, size_t nopts)
2761 {
2762 	int r, ret = -1;
2763 	int print_pubkey = 0;
2764 	struct sshbuf *sigbuf = NULL, *abuf = NULL;
2765 	struct sshkey *sign_key = NULL;
2766 	char *fp = NULL;
2767 	struct sshkey_sig_details *sig_details = NULL;
2768 	uint64_t verify_time = 0;
2769 
2770 	if (sig_process_opts(opts, nopts, NULL, &verify_time,
2771 	    &print_pubkey) != 0)
2772 		goto done; /* error already logged */
2773 
2774 	memset(&sig_details, 0, sizeof(sig_details));
2775 	if ((r = sshbuf_load_file(signature, &abuf)) != 0) {
2776 		error_r(r, "Couldn't read signature file");
2777 		goto done;
2778 	}
2779 
2780 	if ((r = sshsig_dearmor(abuf, &sigbuf)) != 0) {
2781 		error_fr(r, "sshsig_armor");
2782 		goto done;
2783 	}
2784 	if ((r = sshsig_verify_fd(sigbuf, STDIN_FILENO, sig_namespace,
2785 	    &sign_key, &sig_details)) != 0)
2786 		goto done; /* sshsig_verify() prints error */
2787 
2788 	if ((fp = sshkey_fingerprint(sign_key, fingerprint_hash,
2789 	    SSH_FP_DEFAULT)) == NULL)
2790 		fatal_f("sshkey_fingerprint failed");
2791 	debug("Valid (unverified) signature from key %s", fp);
2792 	if (sig_details != NULL) {
2793 		debug2_f("signature details: counter = %u, flags = 0x%02x",
2794 		    sig_details->sk_counter, sig_details->sk_flags);
2795 	}
2796 	free(fp);
2797 	fp = NULL;
2798 
2799 	if (revoked_keys != NULL) {
2800 		if ((r = sshkey_check_revoked(sign_key, revoked_keys)) != 0) {
2801 			debug3_fr(r, "sshkey_check_revoked");
2802 			goto done;
2803 		}
2804 	}
2805 
2806 	if (allowed_keys != NULL && (r = sshsig_check_allowed_keys(allowed_keys,
2807 	    sign_key, principal, sig_namespace, verify_time)) != 0) {
2808 		debug3_fr(r, "sshsig_check_allowed_keys");
2809 		goto done;
2810 	}
2811 	/* success */
2812 	ret = 0;
2813 done:
2814 	if (!quiet) {
2815 		if (ret == 0) {
2816 			if ((fp = sshkey_fingerprint(sign_key, fingerprint_hash,
2817 			    SSH_FP_DEFAULT)) == NULL)
2818 				fatal_f("sshkey_fingerprint failed");
2819 			if (principal == NULL) {
2820 				printf("Good \"%s\" signature with %s key %s\n",
2821 				    sig_namespace, sshkey_type(sign_key), fp);
2822 
2823 			} else {
2824 				printf("Good \"%s\" signature for %s with %s key %s\n",
2825 				    sig_namespace, principal,
2826 				    sshkey_type(sign_key), fp);
2827 			}
2828 		} else {
2829 			printf("Could not verify signature.\n");
2830 		}
2831 	}
2832 	/* Print the signature key if requested */
2833 	if (ret == 0 && print_pubkey && sign_key != NULL) {
2834 		if ((r = sshkey_write(sign_key, stdout)) == 0)
2835 			fputc('\n', stdout);
2836 		else {
2837 			error_r(r, "Could not print public key.\n");
2838 			ret = -1;
2839 		}
2840 	}
2841 	sshbuf_free(sigbuf);
2842 	sshbuf_free(abuf);
2843 	sshkey_free(sign_key);
2844 	sshkey_sig_details_free(sig_details);
2845 	free(fp);
2846 	return ret;
2847 }
2848 
2849 static int
sig_find_principals(const char * signature,const char * allowed_keys,char * const * opts,size_t nopts)2850 sig_find_principals(const char *signature, const char *allowed_keys,
2851     char * const *opts, size_t nopts)
2852 {
2853 	int r, ret = -1;
2854 	struct sshbuf *sigbuf = NULL, *abuf = NULL;
2855 	struct sshkey *sign_key = NULL;
2856 	char *principals = NULL, *cp, *tmp;
2857 	uint64_t verify_time = 0;
2858 
2859 	if (sig_process_opts(opts, nopts, NULL, &verify_time, NULL) != 0)
2860 		goto done; /* error already logged */
2861 
2862 	if ((r = sshbuf_load_file(signature, &abuf)) != 0) {
2863 		error_r(r, "Couldn't read signature file");
2864 		goto done;
2865 	}
2866 	if ((r = sshsig_dearmor(abuf, &sigbuf)) != 0) {
2867 		error_fr(r, "sshsig_armor");
2868 		goto done;
2869 	}
2870 	if ((r = sshsig_get_pubkey(sigbuf, &sign_key)) != 0) {
2871 		error_fr(r, "sshsig_get_pubkey");
2872 		goto done;
2873 	}
2874 	if ((r = sshsig_find_principals(allowed_keys, sign_key,
2875 	    verify_time, &principals)) != 0) {
2876 		if (r != SSH_ERR_KEY_NOT_FOUND)
2877 			error_fr(r, "sshsig_find_principal");
2878 		goto done;
2879 	}
2880 	ret = 0;
2881 done:
2882 	if (ret == 0 ) {
2883 		/* Emit matching principals one per line */
2884 		tmp = principals;
2885 		while ((cp = strsep(&tmp, ",")) != NULL && *cp != '\0')
2886 			puts(cp);
2887 	} else {
2888 		fprintf(stderr, "No principal matched.\n");
2889 	}
2890 	sshbuf_free(sigbuf);
2891 	sshbuf_free(abuf);
2892 	sshkey_free(sign_key);
2893 	free(principals);
2894 	return ret;
2895 }
2896 
2897 static int
sig_match_principals(const char * allowed_keys,char * principal,char * const * opts,size_t nopts)2898 sig_match_principals(const char *allowed_keys, char *principal,
2899 	char * const *opts, size_t nopts)
2900 {
2901 	int r;
2902 	char **principals = NULL;
2903 	size_t i, nprincipals = 0;
2904 
2905 	if ((r = sig_process_opts(opts, nopts, NULL, NULL, NULL)) != 0)
2906 		return r; /* error already logged */
2907 
2908 	if ((r = sshsig_match_principals(allowed_keys, principal,
2909 	    &principals, &nprincipals)) != 0) {
2910 		debug_f("match: %s", ssh_err(r));
2911 		fprintf(stderr, "No principal matched.\n");
2912 		return r;
2913 	}
2914 	for (i = 0; i < nprincipals; i++) {
2915 		printf("%s\n", principals[i]);
2916 		free(principals[i]);
2917 	}
2918 	free(principals);
2919 
2920 	return 0;
2921 }
2922 
2923 static void
do_moduli_gen(const char * out_file,char ** opts,size_t nopts)2924 do_moduli_gen(const char *out_file, char **opts, size_t nopts)
2925 {
2926 #ifdef WITH_OPENSSL
2927 	/* Moduli generation/screening */
2928 	BIGNUM *start = NULL;
2929 	int moduli_bits = 0;
2930 	FILE *out;
2931 	size_t i;
2932 	const char *errstr, *p;
2933 
2934 	/* Parse options */
2935 	for (i = 0; i < nopts; i++) {
2936 		if ((p = strprefix(opts[i], "start=", 0)) != NULL) {
2937 			/* XXX - also compare length against bits */
2938 			if (BN_hex2bn(&start, p) == 0)
2939 				fatal("Invalid start point.");
2940 		} else if ((p = strprefix(opts[i], "bits=", 0)) != NULL) {
2941 			moduli_bits = (int)strtonum(p, 1, INT_MAX, &errstr);
2942 			if (errstr) {
2943 				fatal("Invalid number: %s (%s)", p, errstr);
2944 			}
2945 		} else {
2946 			fatal("Option \"%s\" is unsupported for moduli "
2947 			    "generation", opts[i]);
2948 		}
2949 	}
2950 
2951 	if (strcmp(out_file, "-") == 0)
2952 		out = stdout;
2953 	else if ((out = fopen(out_file, "w")) == NULL) {
2954 		fatal("Couldn't open modulus candidate file \"%s\": %s",
2955 		    out_file, strerror(errno));
2956 	}
2957 	setvbuf(out, NULL, _IOLBF, 0);
2958 
2959 	if (moduli_bits == 0)
2960 		moduli_bits = DEFAULT_BITS;
2961 	if (gen_candidates(out, moduli_bits, start) != 0)
2962 		fatal("modulus candidate generation failed");
2963 #else /* WITH_OPENSSL */
2964 	fatal("Moduli generation is not supported");
2965 #endif /* WITH_OPENSSL */
2966 }
2967 
2968 static void
do_moduli_screen(const char * out_file,char ** opts,size_t nopts)2969 do_moduli_screen(const char *out_file, char **opts, size_t nopts)
2970 {
2971 #ifdef WITH_OPENSSL
2972 	/* Moduli generation/screening */
2973 	char *checkpoint = NULL;
2974 	uint32_t generator_wanted = 0;
2975 	unsigned long start_lineno = 0, lines_to_process = 0;
2976 	int prime_tests = 0;
2977 	FILE *out, *in = stdin;
2978 	size_t i;
2979 	const char *errstr, *p;
2980 
2981 	/* Parse options */
2982 	for (i = 0; i < nopts; i++) {
2983 		if ((p = strprefix(opts[i], "lines=", 0)) != NULL) {
2984 			lines_to_process = strtoul(p, NULL, 10);
2985 		} else if ((p = strprefix(opts[i], "start-line=", 0)) != NULL) {
2986 			start_lineno = strtoul(p, NULL, 10);
2987 		} else if ((p = strprefix(opts[i], "checkpoint=", 0)) != NULL) {
2988 			free(checkpoint);
2989 			checkpoint = xstrdup(p);
2990 		} else if ((p = strprefix(opts[i], "generator=", 0)) != NULL) {
2991 			generator_wanted = (uint32_t)strtonum(p, 1, UINT_MAX,
2992 			    &errstr);
2993 			if (errstr != NULL) {
2994 				fatal("Generator invalid: %s (%s)", p, errstr);
2995 			}
2996 		} else if ((p = strprefix(opts[i], "prime-tests=", 0)) != NULL) {
2997 			prime_tests = (int)strtonum(p, 1, INT_MAX, &errstr);
2998 			if (errstr) {
2999 				fatal("Invalid number: %s (%s)", p, errstr);
3000 			}
3001 		} else {
3002 			fatal("Option \"%s\" is unsupported for moduli "
3003 			    "screening", opts[i]);
3004 		}
3005 	}
3006 
3007 	if (have_identity && strcmp(identity_file, "-") != 0) {
3008 		if ((in = fopen(identity_file, "r")) == NULL) {
3009 			fatal("Couldn't open modulus candidate "
3010 			    "file \"%s\": %s", identity_file,
3011 			    strerror(errno));
3012 		}
3013 	}
3014 
3015 	if (strcmp(out_file, "-") == 0)
3016 		out = stdout;
3017 	else if ((out = fopen(out_file, "a")) == NULL) {
3018 		fatal("Couldn't open moduli file \"%s\": %s",
3019 		    out_file, strerror(errno));
3020 	}
3021 	setvbuf(out, NULL, _IOLBF, 0);
3022 	if (prime_test(in, out, prime_tests == 0 ? 100 : prime_tests,
3023 	    generator_wanted, checkpoint,
3024 	    start_lineno, lines_to_process) != 0)
3025 		fatal("modulus screening failed");
3026 	if (in != stdin)
3027 		(void)fclose(in);
3028 	free(checkpoint);
3029 #else /* WITH_OPENSSL */
3030 	fatal("Moduli screening is not supported");
3031 #endif /* WITH_OPENSSL */
3032 }
3033 
3034 /* Read and confirm a passphrase */
3035 static char *
read_check_passphrase(const char * prompt1,const char * prompt2,const char * retry_prompt)3036 read_check_passphrase(const char *prompt1, const char *prompt2,
3037     const char *retry_prompt)
3038 {
3039 	char *passphrase1, *passphrase2;
3040 
3041 	for (;;) {
3042 		passphrase1 = read_passphrase(prompt1, RP_ALLOW_STDIN);
3043 		passphrase2 = read_passphrase(prompt2, RP_ALLOW_STDIN);
3044 		if (strcmp(passphrase1, passphrase2) == 0) {
3045 			freezero(passphrase2, strlen(passphrase2));
3046 			return passphrase1;
3047 		}
3048 		/* The passphrases do not match. Clear them and retry. */
3049 		freezero(passphrase1, strlen(passphrase1));
3050 		freezero(passphrase2, strlen(passphrase2));
3051 		fputs(retry_prompt, stdout);
3052 		fputc('\n', stdout);
3053 		fflush(stdout);
3054 	}
3055 	/* NOTREACHED */
3056 	return NULL;
3057 }
3058 
3059 static char *
private_key_passphrase(const char * path)3060 private_key_passphrase(const char *path)
3061 {
3062 	char *prompt, *ret;
3063 
3064 	if (identity_passphrase)
3065 		return xstrdup(identity_passphrase);
3066 	if (identity_new_passphrase)
3067 		return xstrdup(identity_new_passphrase);
3068 
3069 	xasprintf(&prompt, "Enter passphrase for \"%s\" "
3070 	    "(empty for no passphrase): ", path);
3071 	ret = read_check_passphrase(prompt,
3072 	    "Enter same passphrase again: ",
3073 	    "Passphrases do not match.  Try again.");
3074 	free(prompt);
3075 	return ret;
3076 }
3077 
3078 static char *
sk_suffix(const char * application,const uint8_t * user,size_t userlen)3079 sk_suffix(const char *application, const uint8_t *user, size_t userlen)
3080 {
3081 	char *ret, *cp;
3082 	const char *p;
3083 	size_t slen, i;
3084 
3085 	/* Trim off URL-like preamble */
3086 	if ((p = strprefix(application, "ssh://", 0)) != NULL)
3087 		ret =  xstrdup(p);
3088 	else if ((p = strprefix(application, "ssh:", 0)) != NULL)
3089 		ret =  xstrdup(p);
3090 	else
3091 		ret = xstrdup(application);
3092 
3093 	/* Count trailing zeros in user */
3094 	for (i = 0; i < userlen; i++) {
3095 		if (user[userlen - i - 1] != 0)
3096 			break;
3097 	}
3098 	if (i >= userlen)
3099 		return ret; /* user-id was default all-zeros */
3100 
3101 	/* Append user-id, escaping non-UTF-8 characters */
3102 	slen = userlen - i;
3103 	if (asmprintf(&cp, INT_MAX, NULL, "%.*s", (int)slen, user) == -1)
3104 		fatal_f("asmprintf failed");
3105 	/* Don't emit a user-id that contains path or control characters */
3106 	if (strchr(cp, '/') != NULL || strstr(cp, "..") != NULL ||
3107 	    strchr(cp, '\\') != NULL) {
3108 		free(cp);
3109 		cp = tohex(user, slen);
3110 	}
3111 	xextendf(&ret, "_", "%s", cp);
3112 	free(cp);
3113 	return ret;
3114 }
3115 
3116 static int
do_download_sk(const char * skprovider,const char * device)3117 do_download_sk(const char *skprovider, const char *device)
3118 {
3119 	struct sshsk_resident_key **srks;
3120 	size_t nsrks, i;
3121 	int r, ret = -1;
3122 	char *fp, *pin = NULL, *pass = NULL, *path, *pubpath;
3123 	const char *ext;
3124 	struct sshkey *key;
3125 
3126 	if (skprovider == NULL)
3127 		fatal("Cannot download keys without provider");
3128 
3129 	pin = read_passphrase("Enter PIN for authenticator: ", RP_ALLOW_STDIN);
3130 	if (!quiet) {
3131 		printf("You may need to touch your authenticator "
3132 		    "to authorize key download.\n");
3133 	}
3134 	if ((r = sshsk_load_resident(skprovider, device, pin, 0,
3135 	    &srks, &nsrks)) != 0) {
3136 		if (pin != NULL)
3137 			freezero(pin, strlen(pin));
3138 		error_r(r, "Unable to load resident keys");
3139 		return -1;
3140 	}
3141 	if (nsrks == 0)
3142 		logit("No keys to download");
3143 	if (pin != NULL)
3144 		freezero(pin, strlen(pin));
3145 
3146 	for (i = 0; i < nsrks; i++) {
3147 		key = srks[i]->key;
3148 		if (key->type != KEY_ECDSA_SK && key->type != KEY_ED25519_SK) {
3149 			error("Unsupported key type %s (%d)",
3150 			    sshkey_type(key), key->type);
3151 			continue;
3152 		}
3153 		if ((fp = sshkey_fingerprint(key, fingerprint_hash,
3154 		    SSH_FP_DEFAULT)) == NULL)
3155 			fatal_f("sshkey_fingerprint failed");
3156 		debug_f("key %zu: %s %s %s (flags 0x%02x)", i,
3157 		    sshkey_type(key), fp, key->sk_application, key->sk_flags);
3158 		ext = sk_suffix(key->sk_application,
3159 		    srks[i]->user_id, srks[i]->user_id_len);
3160 		xasprintf(&path, "id_%s_rk%s%s",
3161 		    key->type == KEY_ECDSA_SK ? "ecdsa_sk" : "ed25519_sk",
3162 		    *ext == '\0' ? "" : "_", ext);
3163 
3164 		/* If the file already exists, ask the user to confirm. */
3165 		if (!confirm_overwrite(path)) {
3166 			free(path);
3167 			break;
3168 		}
3169 
3170 		/* Save the key with the application string as the comment */
3171 		if (pass == NULL)
3172 			pass = private_key_passphrase(path);
3173 		if ((r = sshkey_save_private(key, path, pass,
3174 		    key->sk_application, private_key_format,
3175 		    openssh_format_cipher, rounds)) != 0) {
3176 			error_r(r, "Saving key \"%s\" failed", path);
3177 			free(path);
3178 			break;
3179 		}
3180 		if (!quiet) {
3181 			printf("Saved %s key%s%s to %s\n", sshkey_type(key),
3182 			    *ext != '\0' ? " " : "",
3183 			    *ext != '\0' ? key->sk_application : "",
3184 			    path);
3185 		}
3186 
3187 		/* Save public key too */
3188 		xasprintf(&pubpath, "%s.pub", path);
3189 		free(path);
3190 		if ((r = sshkey_save_public(key, pubpath,
3191 		    key->sk_application)) != 0) {
3192 			error_r(r, "Saving public key \"%s\" failed", pubpath);
3193 			free(pubpath);
3194 			break;
3195 		}
3196 		free(pubpath);
3197 	}
3198 
3199 	if (i >= nsrks)
3200 		ret = 0; /* success */
3201 	if (pass != NULL)
3202 		freezero(pass, strlen(pass));
3203 	sshsk_free_resident_keys(srks, nsrks);
3204 	return ret;
3205 }
3206 
3207 static void
save_attestation(struct sshbuf * attest,const char * path)3208 save_attestation(struct sshbuf *attest, const char *path)
3209 {
3210 	mode_t omask;
3211 	int r;
3212 
3213 	if (path == NULL)
3214 		return; /* nothing to do */
3215 	if (attest == NULL || sshbuf_len(attest) == 0)
3216 		fatal("Enrollment did not return attestation data");
3217 	omask = umask(077);
3218 	r = sshbuf_write_file(path, attest);
3219 	umask(omask);
3220 	if (r != 0)
3221 		fatal_r(r, "Unable to write attestation data \"%s\"", path);
3222 	if (!quiet)
3223 		printf("Your FIDO attestation certificate has been saved in "
3224 		    "%s\n", path);
3225 }
3226 
3227 static int
confirm_sk_overwrite(const char * application,const char * user)3228 confirm_sk_overwrite(const char *application, const char *user)
3229 {
3230 	char yesno[3];
3231 
3232 	printf("A resident key scoped to '%s' with user id '%s' already "
3233 	    "exists.\n", application == NULL ? "ssh:" : application,
3234 	    user == NULL ? "null" : user);
3235 	printf("Overwrite key in token (y/n)? ");
3236 	fflush(stdout);
3237 	if (fgets(yesno, sizeof(yesno), stdin) == NULL)
3238 		return 0;
3239 	if (yesno[0] != 'y' && yesno[0] != 'Y')
3240 		return 0;
3241 	return 1;
3242 }
3243 
3244 static void
usage(void)3245 usage(void)
3246 {
3247 	fprintf(stderr,
3248 	    "usage: ssh-keygen [-q] [-a rounds] [-b bits] [-C comment] [-f output_keyfile]\n"
3249 	    "                  [-m format] [-N new_passphrase] [-O option]\n"
3250 	    "                  [-t ecdsa|ecdsa-sk|ed25519|ed25519-sk|mldsa44-ed25519|rsa]\n"
3251 	    "                  [-w provider] [-Z cipher]\n"
3252 	    "       ssh-keygen -p [-a rounds] [-f keyfile] [-m format] [-N new_passphrase]\n"
3253 	    "                   [-P old_passphrase] [-Z cipher]\n"
3254 #ifdef WITH_OPENSSL
3255 	    "       ssh-keygen -i [-f input_keyfile] [-m key_format]\n"
3256 	    "       ssh-keygen -e [-f input_keyfile] [-m key_format]\n"
3257 #endif
3258 	    "       ssh-keygen -y [-f input_keyfile]\n"
3259 	    "       ssh-keygen -c [-a rounds] [-C comment] [-f keyfile] [-P passphrase]\n"
3260 	    "       ssh-keygen -l [-v] [-E fingerprint_hash] [-f input_keyfile]\n"
3261 	    "       ssh-keygen -B [-f input_keyfile]\n");
3262 #ifdef ENABLE_PKCS11
3263 	fprintf(stderr,
3264 	    "       ssh-keygen -D pkcs11\n");
3265 #endif
3266 	fprintf(stderr,
3267 	    "       ssh-keygen -F hostname [-lv] [-f known_hosts_file]\n"
3268 	    "       ssh-keygen -H [-f known_hosts_file]\n"
3269 	    "       ssh-keygen -K [-a rounds] [-w provider]\n"
3270 	    "       ssh-keygen -R hostname [-f known_hosts_file]\n"
3271 	    "       ssh-keygen -r hostname [-g] [-f input_keyfile]\n"
3272 #ifdef WITH_OPENSSL
3273 	    "       ssh-keygen -M generate [-O option] output_file\n"
3274 	    "       ssh-keygen -M screen [-f input_file] [-O option] output_file\n"
3275 #endif
3276 	    "       ssh-keygen -I certificate_identity -s ca_key [-hU] [-D pkcs11_provider]\n"
3277 	    "                  [-n principals] [-O option] [-V validity_interval]\n"
3278 	    "                  [-z serial_number] file ...\n"
3279 	    "       ssh-keygen -L [-f input_keyfile]\n"
3280 	    "       ssh-keygen -A [-a rounds] [-f prefix_path]\n"
3281 	    "       ssh-keygen -k -f krl_file [-u] [-s ca_public] [-z version_number]\n"
3282 	    "                  file ...\n"
3283 	    "       ssh-keygen -Q [-l] -f krl_file [file ...]\n"
3284 	    "       ssh-keygen -Y find-principals -s signature_file -f allowed_signers_file\n"
3285 	    "       ssh-keygen -Y match-principals -I signer_identity -f allowed_signers_file\n"
3286 	    "       ssh-keygen -Y check-novalidate -n namespace -s signature_file\n"
3287 	    "       ssh-keygen -Y sign -f key_file -n namespace file [-O option] ...\n"
3288 	    "       ssh-keygen -Y verify -f allowed_signers_file -I signer_identity\n"
3289 	    "                  -n namespace -s signature_file [-r krl_file] [-O option]\n");
3290 	exit(1);
3291 }
3292 
3293 /*
3294  * Main program for key management.
3295  */
3296 int
main(int argc,char ** argv)3297 main(int argc, char **argv)
3298 {
3299 	char comment[1024], *passphrase = NULL;
3300 	char *rr_hostname = NULL, *ep, *fp, *ra;
3301 	struct sshkey *private = NULL, *public = NULL;
3302 	struct passwd *pw;
3303 	int ret = 0, r, opt, type;
3304 	int change_passphrase = 0, change_comment = 0, show_cert = 0;
3305 	int find_host = 0, delete_host = 0, hash_hosts = 0;
3306 	int gen_all_hostkeys = 0, gen_krl = 0, update_krl = 0, check_krl = 0;
3307 	int prefer_agent = 0, convert_to = 0, convert_from = 0;
3308 	int print_public = 0, print_generic = 0, cert_serial_autoinc = 0;
3309 	int do_gen_candidates = 0, do_screen_candidates = 0, download_sk = 0;
3310 	unsigned long long cert_serial = 0;
3311 	char *identity_comment = NULL, *ca_key_path = NULL, **opts = NULL;
3312 	char *sk_application = NULL, *sk_device = NULL, *sk_user = NULL;
3313 	char *sk_attestation_path = NULL;
3314 	struct sshbuf *challenge = NULL, *attest = NULL;
3315 	size_t i, nopts = 0;
3316 	uint32_t bits = 0;
3317 	uint8_t sk_flags = SSH_SK_USER_PRESENCE_REQD;
3318 	const char *errstr, *p;
3319 	int log_level = SYSLOG_LEVEL_INFO;
3320 	char *sign_op = NULL;
3321 
3322 	extern int optind;
3323 	extern char *optarg;
3324 
3325 	/* Ensure that fds 0, 1 and 2 are open or directed to /dev/null */
3326 	sanitise_stdfd();
3327 
3328 	__progname = ssh_get_progname(argv[0]);
3329 
3330 	seed_rng();
3331 
3332 	log_init(argv[0], SYSLOG_LEVEL_INFO, SYSLOG_FACILITY_USER, 1);
3333 
3334 	msetlocale();
3335 
3336 	/* we need this for the home * directory.  */
3337 	pw = getpwuid(getuid());
3338 	if (!pw)
3339 		fatal("No user exists for uid %lu", (u_long)getuid());
3340 	pw = pwcopy(pw);
3341 	if (gethostname(hostname, sizeof(hostname)) == -1)
3342 		fatal("gethostname: %s", strerror(errno));
3343 
3344 	sk_provider = getenv("SSH_SK_PROVIDER");
3345 
3346 	/* Remaining characters: dGjJSTWx */
3347 	while ((opt = getopt(argc, argv, "ABHKLQUXceghiklopquvy"
3348 	    "C:D:E:F:I:M:N:O:P:R:V:Y:Z:"
3349 	    "a:b:f:g:m:n:r:s:t:w:z:")) != -1) {
3350 		switch (opt) {
3351 		case 'A':
3352 			gen_all_hostkeys = 1;
3353 			break;
3354 		case 'b':
3355 			bits = (uint32_t)strtonum(optarg, 1, UINT32_MAX,
3356 			    &errstr);
3357 			if (errstr)
3358 				fatal("Bits has bad value %s (%s)",
3359 					optarg, errstr);
3360 			break;
3361 		case 'E':
3362 			fingerprint_hash = ssh_digest_alg_by_name(optarg);
3363 			if (fingerprint_hash == -1)
3364 				fatal("Invalid hash algorithm \"%s\"", optarg);
3365 			break;
3366 		case 'F':
3367 			find_host = 1;
3368 			rr_hostname = optarg;
3369 			break;
3370 		case 'H':
3371 			hash_hosts = 1;
3372 			break;
3373 		case 'I':
3374 			cert_key_id = optarg;
3375 			break;
3376 		case 'R':
3377 			delete_host = 1;
3378 			rr_hostname = optarg;
3379 			break;
3380 		case 'L':
3381 			show_cert = 1;
3382 			break;
3383 		case 'l':
3384 			print_fingerprint = 1;
3385 			break;
3386 		case 'B':
3387 			print_bubblebabble = 1;
3388 			break;
3389 		case 'm':
3390 			if (strcasecmp(optarg, "RFC4716") == 0 ||
3391 			    strcasecmp(optarg, "ssh2") == 0) {
3392 				convert_format = FMT_RFC4716;
3393 				break;
3394 			}
3395 			if (strcasecmp(optarg, "PKCS8") == 0) {
3396 				convert_format = FMT_PKCS8;
3397 				private_key_format = SSHKEY_PRIVATE_PKCS8;
3398 				break;
3399 			}
3400 			if (strcasecmp(optarg, "PEM") == 0) {
3401 				convert_format = FMT_PEM;
3402 				private_key_format = SSHKEY_PRIVATE_PEM;
3403 				break;
3404 			}
3405 			fatal("Unsupported conversion format \"%s\"", optarg);
3406 		case 'n':
3407 			cert_principals = optarg;
3408 			break;
3409 		case 'o':
3410 			/* no-op; new format is already the default */
3411 			break;
3412 		case 'p':
3413 			change_passphrase = 1;
3414 			break;
3415 		case 'c':
3416 			change_comment = 1;
3417 			break;
3418 		case 'f':
3419 			if (strlcpy(identity_file, optarg,
3420 			    sizeof(identity_file)) >= sizeof(identity_file))
3421 				fatal("Identity filename too long");
3422 			have_identity = 1;
3423 			break;
3424 		case 'g':
3425 			print_generic = 1;
3426 			break;
3427 		case 'K':
3428 			download_sk = 1;
3429 			break;
3430 		case 'P':
3431 			identity_passphrase = optarg;
3432 			break;
3433 		case 'N':
3434 			identity_new_passphrase = optarg;
3435 			break;
3436 		case 'Q':
3437 			check_krl = 1;
3438 			break;
3439 		case 'O':
3440 			opts = xrecallocarray(opts, nopts, nopts + 1,
3441 			    sizeof(*opts));
3442 			opts[nopts++] = xstrdup(optarg);
3443 			break;
3444 		case 'Z':
3445 			openssh_format_cipher = optarg;
3446 			if (cipher_by_name(openssh_format_cipher) == NULL)
3447 				fatal("Invalid OpenSSH-format cipher '%s'",
3448 				    openssh_format_cipher);
3449 			break;
3450 		case 'C':
3451 			identity_comment = optarg;
3452 			break;
3453 		case 'q':
3454 			quiet = 1;
3455 			break;
3456 		case 'e':
3457 			/* export key */
3458 			convert_to = 1;
3459 			break;
3460 		case 'h':
3461 			cert_key_type = SSH2_CERT_TYPE_HOST;
3462 			certflags_flags = 0;
3463 			break;
3464 		case 'k':
3465 			gen_krl = 1;
3466 			break;
3467 		case 'i':
3468 		case 'X':
3469 			/* import key */
3470 			convert_from = 1;
3471 			break;
3472 		case 'y':
3473 			print_public = 1;
3474 			break;
3475 		case 's':
3476 			ca_key_path = optarg;
3477 			break;
3478 		case 't':
3479 			key_type_name = optarg;
3480 			break;
3481 		case 'D':
3482 			pkcs11provider = optarg;
3483 			break;
3484 		case 'U':
3485 			prefer_agent = 1;
3486 			break;
3487 		case 'u':
3488 			update_krl = 1;
3489 			break;
3490 		case 'v':
3491 			if (log_level == SYSLOG_LEVEL_INFO)
3492 				log_level = SYSLOG_LEVEL_DEBUG1;
3493 			else {
3494 				if (log_level >= SYSLOG_LEVEL_DEBUG1 &&
3495 				    log_level < SYSLOG_LEVEL_DEBUG3)
3496 					log_level++;
3497 			}
3498 			break;
3499 		case 'r':
3500 			rr_hostname = optarg;
3501 			break;
3502 		case 'a':
3503 			rounds = (int)strtonum(optarg, 1, INT_MAX, &errstr);
3504 			if (errstr)
3505 				fatal("Invalid number: %s (%s)",
3506 					optarg, errstr);
3507 			break;
3508 		case 'V':
3509 			parse_cert_times(optarg);
3510 			break;
3511 		case 'Y':
3512 			sign_op = optarg;
3513 			break;
3514 		case 'w':
3515 			sk_provider = optarg;
3516 			break;
3517 		case 'z':
3518 			errno = 0;
3519 			if (*optarg == '+') {
3520 				cert_serial_autoinc = 1;
3521 				optarg++;
3522 			}
3523 			cert_serial = strtoull(optarg, &ep, 10);
3524 			if (*optarg < '0' || *optarg > '9' || *ep != '\0' ||
3525 			    (errno == ERANGE && cert_serial == ULLONG_MAX))
3526 				fatal("Invalid serial number \"%s\"", optarg);
3527 			break;
3528 		case 'M':
3529 			if (strcmp(optarg, "generate") == 0)
3530 				do_gen_candidates = 1;
3531 			else if (strcmp(optarg, "screen") == 0)
3532 				do_screen_candidates = 1;
3533 			else
3534 				fatal("Unsupported moduli option %s", optarg);
3535 			break;
3536 		default:
3537 			usage();
3538 		}
3539 	}
3540 
3541 #ifdef ENABLE_SK_INTERNAL
3542 	if (sk_provider == NULL)
3543 		sk_provider = "internal";
3544 #endif
3545 
3546 	/* reinit */
3547 	log_init(argv[0], log_level, SYSLOG_FACILITY_USER, 1);
3548 
3549 	argv += optind;
3550 	argc -= optind;
3551 
3552 	if (sign_op != NULL) {
3553 		if (strprefix(sign_op, "find-principals", 0) != NULL) {
3554 			if (ca_key_path == NULL) {
3555 				error("Too few arguments for find-principals:"
3556 				    "missing signature file");
3557 				exit(1);
3558 			}
3559 			if (!have_identity) {
3560 				error("Too few arguments for find-principals:"
3561 				    "missing allowed keys file");
3562 				exit(1);
3563 			}
3564 			ret = sig_find_principals(ca_key_path, identity_file,
3565 			    opts, nopts);
3566 			goto done;
3567 		} else if (strprefix(sign_op, "match-principals", 0) != NULL) {
3568 			if (!have_identity) {
3569 				error("Too few arguments for match-principals:"
3570 				    "missing allowed keys file");
3571 				exit(1);
3572 			}
3573 			if (cert_key_id == NULL) {
3574 				error("Too few arguments for match-principals: "
3575 				    "missing principal ID");
3576 				exit(1);
3577 			}
3578 			ret = sig_match_principals(identity_file, cert_key_id,
3579 			    opts, nopts);
3580 			goto done;
3581 		} else if (strprefix(sign_op, "sign", 0) != NULL) {
3582 			/* NB. cert_principals is actually namespace, via -n */
3583 			if (cert_principals == NULL ||
3584 			    *cert_principals == '\0') {
3585 				error("Too few arguments for sign: "
3586 				    "missing namespace");
3587 				exit(1);
3588 			}
3589 			if (!have_identity) {
3590 				error("Too few arguments for sign: "
3591 				    "missing key");
3592 				exit(1);
3593 			}
3594 			ret = sig_sign(identity_file, cert_principals,
3595 			    prefer_agent, argc, argv, opts, nopts);
3596 			goto done;
3597 		} else if (strprefix(sign_op, "check-novalidate", 0) != NULL) {
3598 			/* NB. cert_principals is actually namespace, via -n */
3599 			if (cert_principals == NULL ||
3600 			    *cert_principals == '\0') {
3601 				error("Too few arguments for check-novalidate: "
3602 				    "missing namespace");
3603 				exit(1);
3604 			}
3605 			if (ca_key_path == NULL) {
3606 				error("Too few arguments for check-novalidate: "
3607 				    "missing signature file");
3608 				exit(1);
3609 			}
3610 			ret = sig_verify(ca_key_path, cert_principals,
3611 			    NULL, NULL, NULL, opts, nopts);
3612 			goto done;
3613 		} else if (strprefix(sign_op, "verify", 0) != NULL) {
3614 			/* NB. cert_principals is actually namespace, via -n */
3615 			if (cert_principals == NULL ||
3616 			    *cert_principals == '\0') {
3617 				error("Too few arguments for verify: "
3618 				    "missing namespace");
3619 				exit(1);
3620 			}
3621 			if (ca_key_path == NULL) {
3622 				error("Too few arguments for verify: "
3623 				    "missing signature file");
3624 				exit(1);
3625 			}
3626 			if (!have_identity) {
3627 				error("Too few arguments for sign: "
3628 				    "missing allowed keys file");
3629 				exit(1);
3630 			}
3631 			if (cert_key_id == NULL) {
3632 				error("Too few arguments for verify: "
3633 				    "missing principal identity");
3634 				exit(1);
3635 			}
3636 			ret = sig_verify(ca_key_path, cert_principals,
3637 			    cert_key_id, identity_file, rr_hostname,
3638 			    opts, nopts);
3639 			goto done;
3640 		}
3641 		error("Unsupported operation for -Y: \"%s\"", sign_op);
3642 		usage();
3643 		/* NOTREACHED */
3644 	}
3645 
3646 	if (ca_key_path != NULL) {
3647 		if (argc < 1 && !gen_krl) {
3648 			error("Too few arguments.");
3649 			usage();
3650 		}
3651 	} else if (argc > 0 && !gen_krl && !check_krl &&
3652 	    !do_gen_candidates && !do_screen_candidates) {
3653 		error("Too many arguments.");
3654 		usage();
3655 	}
3656 	if (change_passphrase && change_comment) {
3657 		error("Can only have one of -p and -c.");
3658 		usage();
3659 	}
3660 	if (print_fingerprint && (delete_host || hash_hosts)) {
3661 		error("Cannot use -l with -H or -R.");
3662 		usage();
3663 	}
3664 	if (gen_krl) {
3665 		do_gen_krl(pw, update_krl, ca_key_path,
3666 		    cert_serial, identity_comment, argc, argv);
3667 		goto done;
3668 	}
3669 	if (check_krl) {
3670 		do_check_krl(pw, print_fingerprint, argc, argv);
3671 		goto done;
3672 	}
3673 	if (ca_key_path != NULL) {
3674 		if (cert_key_id == NULL)
3675 			fatal("Must specify key id (-I) when certifying");
3676 		if (cert_principals == NULL) {
3677 			/*
3678 			 * Ideally this would be a fatal(), but we need to
3679 			 * be able to generate such certificates for testing
3680 			 * even though they will be rejected.
3681 			 */
3682 			error("Warning: certificate will contain no "
3683 			    "principals (-n)");
3684 		}
3685 		for (i = 0; i < nopts; i++)
3686 			add_cert_option(opts[i]);
3687 		do_ca_sign(pw, ca_key_path, prefer_agent,
3688 		    cert_serial, cert_serial_autoinc, argc, argv);
3689 		goto done;
3690 	}
3691 	if (show_cert)
3692 		do_show_cert(pw);
3693 	if (delete_host || hash_hosts || find_host) {
3694 		do_known_hosts(pw, rr_hostname, find_host,
3695 		    delete_host, hash_hosts);
3696 	}
3697 	if (pkcs11provider != NULL)
3698 		do_download(pw);
3699 	if (download_sk) {
3700 		for (i = 0; i < nopts; i++) {
3701 			if ((p = strprefix(opts[i], "device=", 1)) != NULL) {
3702 				sk_device = xstrdup(p);
3703 			} else {
3704 				fatal("Option \"%s\" is unsupported for "
3705 				    "FIDO authenticator download", opts[i]);
3706 			}
3707 		}
3708 		ret = do_download_sk(sk_provider, sk_device);
3709 		goto done;
3710 	}
3711 	if (print_fingerprint || print_bubblebabble)
3712 		do_fingerprint(pw);
3713 	if (change_passphrase)
3714 		do_change_passphrase(pw);
3715 	if (change_comment)
3716 		do_change_comment(pw, identity_comment);
3717 #ifdef WITH_OPENSSL
3718 	if (convert_to) {
3719 		do_convert_to(pw);
3720 		goto done;
3721 	}
3722 	if (convert_from) {
3723 		do_convert_from(pw);
3724 		goto done;
3725 	}
3726 #else /* WITH_OPENSSL */
3727 	if (convert_to || convert_from)
3728 		fatal("key conversion disabled at compile time");
3729 #endif /* WITH_OPENSSL */
3730 	if (print_public)
3731 		do_print_public(pw);
3732 	if (rr_hostname != NULL) {
3733 		unsigned int n = 0;
3734 
3735 		if (have_identity) {
3736 			n = do_print_resource_record(pw, identity_file,
3737 			    rr_hostname, print_generic, opts, nopts);
3738 			if (n == 0)
3739 				fatal("%s: %s", identity_file, strerror(errno));
3740 			exit(0);
3741 		} else {
3742 
3743 			n += do_print_resource_record(pw,
3744 			    _PATH_HOST_RSA_KEY_FILE, rr_hostname,
3745 			    print_generic, opts, nopts);
3746 			n += do_print_resource_record(pw,
3747 			    _PATH_HOST_ECDSA_KEY_FILE, rr_hostname,
3748 			    print_generic, opts, nopts);
3749 			n += do_print_resource_record(pw,
3750 			    _PATH_HOST_ED25519_KEY_FILE, rr_hostname,
3751 			    print_generic, opts, nopts);
3752 			if (n == 0)
3753 				fatal("no keys found.");
3754 			exit(0);
3755 		}
3756 	}
3757 
3758 	if (do_gen_candidates || do_screen_candidates) {
3759 		if (argc <= 0)
3760 			fatal("No output file specified");
3761 		else if (argc > 1)
3762 			fatal("Too many output files specified");
3763 	}
3764 	if (do_gen_candidates) {
3765 		do_moduli_gen(argv[0], opts, nopts);
3766 		goto done;
3767 	}
3768 	if (do_screen_candidates) {
3769 		do_moduli_screen(argv[0], opts, nopts);
3770 		goto done;
3771 	}
3772 
3773 	if (gen_all_hostkeys) {
3774 		do_gen_all_hostkeys(pw);
3775 		goto done;
3776 	}
3777 
3778 	if (key_type_name == NULL)
3779 		key_type_name = DEFAULT_KEY_TYPE_NAME;
3780 
3781 	type = sshkey_type_from_shortname(key_type_name);
3782 	type_bits_valid(type, key_type_name, &bits);
3783 
3784 	if (!quiet)
3785 		printf("Generating public/private %s key pair.\n",
3786 		    key_type_name);
3787 	switch (type) {
3788 	case KEY_ECDSA_SK:
3789 	case KEY_ED25519_SK:
3790 		for (i = 0; i < nopts; i++) {
3791 			if (strcasecmp(opts[i], "no-touch-required") == 0) {
3792 				sk_flags &= ~SSH_SK_USER_PRESENCE_REQD;
3793 			} else if (strcasecmp(opts[i], "verify-required") == 0) {
3794 				sk_flags |= SSH_SK_USER_VERIFICATION_REQD;
3795 			} else if (strcasecmp(opts[i], "resident") == 0) {
3796 				sk_flags |= SSH_SK_RESIDENT_KEY;
3797 			} else if ((p = strprefix(opts[i], "device=", 1))
3798 			    != NULL ) {
3799 				sk_device = xstrdup(p);
3800 			} else if ((p = strprefix(opts[i], "user=", 1))
3801 			    != NULL) {
3802 				sk_user = xstrdup(p);
3803 			} else if ((p = strprefix(opts[i], "challenge=", 1))
3804 			    != NULL) {
3805 				if ((r = sshbuf_load_file(p,
3806 				    &challenge)) != 0) {
3807 					fatal_r(r, "Unable to load FIDO "
3808 					    "enrollment challenge \"%s\"", p);
3809 				}
3810 			} else if (strncasecmp(opts[i],
3811 			    "write-attestation=", 18) == 0) {
3812 				sk_attestation_path = opts[i] + 18;
3813 			} else if (strncasecmp(opts[i],
3814 			    "application=", 12) == 0) {
3815 				sk_application = xstrdup(opts[i] + 12);
3816 				if (strncmp(sk_application, "ssh:", 4) != 0) {
3817 					fatal("FIDO application string must "
3818 					    "begin with \"ssh:\"");
3819 				}
3820 			} else {
3821 				fatal("Option \"%s\" is unsupported for "
3822 				    "FIDO authenticator enrollment", opts[i]);
3823 			}
3824 		}
3825 		if ((attest = sshbuf_new()) == NULL)
3826 			fatal("sshbuf_new failed");
3827 		r = 0;
3828 		for (i = 0 ;;) {
3829 			if (!quiet) {
3830 				printf("You may need to touch your "
3831 				    "authenticator%s to authorize key "
3832 				    "generation.\n",
3833 				    r == 0 ? "" : " again");
3834 			}
3835 			fflush(stdout);
3836 			r = sshsk_enroll(type, sk_provider, sk_device,
3837 			    sk_application == NULL ? "ssh:" : sk_application,
3838 			    sk_user, sk_flags, passphrase, challenge,
3839 			    &private, attest);
3840 			if (r == 0)
3841 				break;
3842 			if (r == SSH_ERR_KEY_BAD_PERMISSIONS &&
3843 			    (sk_flags & SSH_SK_RESIDENT_KEY) != 0 &&
3844 			    (sk_flags & SSH_SK_FORCE_OPERATION) == 0 &&
3845 			    confirm_sk_overwrite(sk_application, sk_user)) {
3846 				sk_flags |= SSH_SK_FORCE_OPERATION;
3847 				continue;
3848 			}
3849 			if (r != SSH_ERR_KEY_WRONG_PASSPHRASE)
3850 				fatal_r(r, "Key enrollment failed");
3851 			else if (passphrase != NULL) {
3852 				error("PIN incorrect");
3853 				freezero(passphrase, strlen(passphrase));
3854 				passphrase = NULL;
3855 			}
3856 			if (++i >= 3)
3857 				fatal("Too many incorrect PINs");
3858 			passphrase = read_passphrase("Enter PIN for "
3859 			    "authenticator: ", RP_ALLOW_STDIN);
3860 		}
3861 		if (passphrase != NULL) {
3862 			freezero(passphrase, strlen(passphrase));
3863 			passphrase = NULL;
3864 		}
3865 		break;
3866 	default:
3867 		if ((r = sshkey_generate(type, bits, &private)) != 0)
3868 			fatal("sshkey_generate failed");
3869 		break;
3870 	}
3871 	if ((r = sshkey_from_private(private, &public)) != 0)
3872 		fatal_r(r, "sshkey_from_private");
3873 
3874 	if (!have_identity)
3875 		ask_filename(pw, "Enter file in which to save the key");
3876 
3877 	/* Create ~/.ssh directory if it doesn't already exist. */
3878 	hostfile_create_user_ssh_dir(identity_file, !quiet);
3879 
3880 	/* If the file already exists, ask the user to confirm. */
3881 	if (!confirm_overwrite(identity_file))
3882 		exit(1);
3883 
3884 	/* Determine the passphrase for the private key */
3885 	passphrase = private_key_passphrase(identity_file);
3886 	if (identity_comment) {
3887 		strlcpy(comment, identity_comment, sizeof(comment));
3888 	} else {
3889 		/* Create default comment field for the passphrase. */
3890 		snprintf(comment, sizeof comment, "%s@%s", pw->pw_name, hostname);
3891 	}
3892 
3893 	/* Save the key with the given passphrase and comment. */
3894 	if ((r = sshkey_save_private(private, identity_file, passphrase,
3895 	    comment, private_key_format, openssh_format_cipher, rounds)) != 0) {
3896 		error_r(r, "Saving key \"%s\" failed", identity_file);
3897 		freezero(passphrase, strlen(passphrase));
3898 		exit(1);
3899 	}
3900 	freezero(passphrase, strlen(passphrase));
3901 	sshkey_free(private);
3902 
3903 	if (!quiet) {
3904 		printf("Your identification has been saved in %s\n",
3905 		    identity_file);
3906 	}
3907 
3908 	strlcat(identity_file, ".pub", sizeof(identity_file));
3909 	if ((r = sshkey_save_public(public, identity_file, comment)) != 0)
3910 		fatal_r(r, "Unable to save public key to %s", identity_file);
3911 
3912 	if (!quiet) {
3913 		fp = sshkey_fingerprint(public, fingerprint_hash,
3914 		    SSH_FP_DEFAULT);
3915 		ra = sshkey_fingerprint(public, fingerprint_hash,
3916 		    SSH_FP_RANDOMART);
3917 		if (fp == NULL || ra == NULL)
3918 			fatal("sshkey_fingerprint failed");
3919 		printf("Your public key has been saved in %s\n",
3920 		    identity_file);
3921 		printf("The key fingerprint is:\n");
3922 		printf("%s %s\n", fp, comment);
3923 		printf("The key's randomart image is:\n");
3924 		printf("%s\n", ra);
3925 		free(ra);
3926 		free(fp);
3927 	}
3928 
3929 	if (sk_attestation_path != NULL)
3930 		save_attestation(attest, sk_attestation_path);
3931 
3932  done:
3933 	sshbuf_free(attest);
3934 	sshkey_free(public);
3935 	pwfree(pw);
3936 	exit(ret);
3937 }
3938