1 /* $OpenBSD: ssh-keygen.c,v 1.470 2023/07/17 04:01:10 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 <sys/types.h> 16 #include <sys/socket.h> 17 #include <sys/stat.h> 18 19 #ifdef WITH_OPENSSL 20 #include <openssl/evp.h> 21 #include <openssl/pem.h> 22 #endif 23 24 #include <stdint.h> 25 #include <errno.h> 26 #include <fcntl.h> 27 #include <netdb.h> 28 #include <pwd.h> 29 #include <stdarg.h> 30 #include <stdio.h> 31 #include <stdlib.h> 32 #include <string.h> 33 #include <unistd.h> 34 #include <limits.h> 35 #include <locale.h> 36 37 #include "xmalloc.h" 38 #include "sshkey.h" 39 #include "authfile.h" 40 #include "sshbuf.h" 41 #include "pathnames.h" 42 #include "log.h" 43 #include "misc.h" 44 #include "match.h" 45 #include "hostfile.h" 46 #include "dns.h" 47 #include "ssh.h" 48 #include "ssh2.h" 49 #include "ssherr.h" 50 #include "atomicio.h" 51 #include "krl.h" 52 #include "digest.h" 53 #include "utf8.h" 54 #include "authfd.h" 55 #include "sshsig.h" 56 #include "ssh-sk.h" 57 #include "sk-api.h" /* XXX for SSH_SK_USER_PRESENCE_REQD; remove */ 58 #include "cipher.h" 59 60 #ifdef ENABLE_PKCS11 61 #include "ssh-pkcs11.h" 62 #endif 63 64 #ifdef WITH_OPENSSL 65 # define DEFAULT_KEY_TYPE_NAME "rsa" 66 #else 67 # define DEFAULT_KEY_TYPE_NAME "ed25519" 68 #endif 69 70 /* 71 * Default number of bits in the RSA, DSA and ECDSA keys. These value can be 72 * overridden on the command line. 73 * 74 * These values, with the exception of DSA, provide security equivalent to at 75 * least 128 bits of security according to NIST Special Publication 800-57: 76 * Recommendation for Key Management Part 1 rev 4 section 5.6.1. 77 * For DSA it (and FIPS-186-4 section 4.2) specifies that the only size for 78 * which a 160bit hash is acceptable is 1kbit, and since ssh-dss specifies only 79 * SHA1 we limit the DSA key size 1k bits. 80 */ 81 #define DEFAULT_BITS 3072 82 #define DEFAULT_BITS_DSA 1024 83 #define DEFAULT_BITS_ECDSA 256 84 85 static int quiet = 0; 86 87 /* Flag indicating that we just want to see the key fingerprint */ 88 static int print_fingerprint = 0; 89 static int print_bubblebabble = 0; 90 91 /* Hash algorithm to use for fingerprints. */ 92 static int fingerprint_hash = SSH_FP_HASH_DEFAULT; 93 94 /* The identity file name, given on the command line or entered by the user. */ 95 static char identity_file[PATH_MAX]; 96 static int have_identity = 0; 97 98 /* This is set to the passphrase if given on the command line. */ 99 static char *identity_passphrase = NULL; 100 101 /* This is set to the new passphrase if given on the command line. */ 102 static char *identity_new_passphrase = NULL; 103 104 /* Key type when certifying */ 105 static u_int cert_key_type = SSH2_CERT_TYPE_USER; 106 107 /* "key ID" of signed key */ 108 static char *cert_key_id = NULL; 109 110 /* Comma-separated list of principal names for certifying keys */ 111 static char *cert_principals = NULL; 112 113 /* Validity period for certificates */ 114 static u_int64_t cert_valid_from = 0; 115 static u_int64_t cert_valid_to = ~0ULL; 116 117 /* Certificate options */ 118 #define CERTOPT_X_FWD (1) 119 #define CERTOPT_AGENT_FWD (1<<1) 120 #define CERTOPT_PORT_FWD (1<<2) 121 #define CERTOPT_PTY (1<<3) 122 #define CERTOPT_USER_RC (1<<4) 123 #define CERTOPT_NO_REQUIRE_USER_PRESENCE (1<<5) 124 #define CERTOPT_REQUIRE_VERIFY (1<<6) 125 #define CERTOPT_DEFAULT (CERTOPT_X_FWD|CERTOPT_AGENT_FWD| \ 126 CERTOPT_PORT_FWD|CERTOPT_PTY|CERTOPT_USER_RC) 127 static u_int32_t certflags_flags = CERTOPT_DEFAULT; 128 static char *certflags_command = NULL; 129 static char *certflags_src_addr = NULL; 130 131 /* Arbitrary extensions specified by user */ 132 struct cert_ext { 133 char *key; 134 char *val; 135 int crit; 136 }; 137 static struct cert_ext *cert_ext; 138 static size_t ncert_ext; 139 140 /* Conversion to/from various formats */ 141 enum { 142 FMT_RFC4716, 143 FMT_PKCS8, 144 FMT_PEM 145 } convert_format = FMT_RFC4716; 146 147 static char *key_type_name = NULL; 148 149 /* Load key from this PKCS#11 provider */ 150 static char *pkcs11provider = NULL; 151 152 /* FIDO/U2F provider to use */ 153 static char *sk_provider = NULL; 154 155 /* Format for writing private keys */ 156 static int private_key_format = SSHKEY_PRIVATE_OPENSSH; 157 158 /* Cipher for new-format private keys */ 159 static char *openssh_format_cipher = NULL; 160 161 /* Number of KDF rounds to derive new format keys. */ 162 static int rounds = 0; 163 164 /* argv0 */ 165 extern char *__progname; 166 167 static char hostname[NI_MAXHOST]; 168 169 #ifdef WITH_OPENSSL 170 /* moduli.c */ 171 int gen_candidates(FILE *, u_int32_t, u_int32_t, BIGNUM *); 172 int prime_test(FILE *, FILE *, u_int32_t, u_int32_t, char *, unsigned long, 173 unsigned long); 174 #endif 175 176 static void 177 type_bits_valid(int type, const char *name, u_int32_t *bitsp) 178 { 179 if (type == KEY_UNSPEC) 180 fatal("unknown key type %s", key_type_name); 181 if (*bitsp == 0) { 182 #ifdef WITH_OPENSSL 183 int nid; 184 185 switch(type) { 186 case KEY_DSA: 187 *bitsp = DEFAULT_BITS_DSA; 188 break; 189 case KEY_ECDSA: 190 if (name != NULL && 191 (nid = sshkey_ecdsa_nid_from_name(name)) > 0) 192 *bitsp = sshkey_curve_nid_to_bits(nid); 193 if (*bitsp == 0) 194 *bitsp = DEFAULT_BITS_ECDSA; 195 break; 196 case KEY_RSA: 197 *bitsp = DEFAULT_BITS; 198 break; 199 } 200 #endif 201 } 202 #ifdef WITH_OPENSSL 203 switch (type) { 204 case KEY_DSA: 205 if (*bitsp != 1024) 206 fatal("Invalid DSA key length: must be 1024 bits"); 207 break; 208 case KEY_RSA: 209 if (*bitsp < SSH_RSA_MINIMUM_MODULUS_SIZE) 210 fatal("Invalid RSA key length: minimum is %d bits", 211 SSH_RSA_MINIMUM_MODULUS_SIZE); 212 else if (*bitsp > OPENSSL_RSA_MAX_MODULUS_BITS) 213 fatal("Invalid RSA key length: maximum is %d bits", 214 OPENSSL_RSA_MAX_MODULUS_BITS); 215 break; 216 case KEY_ECDSA: 217 if (sshkey_ecdsa_bits_to_nid(*bitsp) == -1) 218 fatal("Invalid ECDSA key length: valid lengths are " 219 "256, 384 or 521 bits"); 220 } 221 #endif 222 } 223 224 /* 225 * Checks whether a file exists and, if so, asks the user whether they wish 226 * to overwrite it. 227 * Returns nonzero if the file does not already exist or if the user agrees to 228 * overwrite, or zero otherwise. 229 */ 230 static int 231 confirm_overwrite(const char *filename) 232 { 233 char yesno[3]; 234 struct stat st; 235 236 if (stat(filename, &st) != 0) 237 return 1; 238 printf("%s already exists.\n", filename); 239 printf("Overwrite (y/n)? "); 240 fflush(stdout); 241 if (fgets(yesno, sizeof(yesno), stdin) == NULL) 242 return 0; 243 if (yesno[0] != 'y' && yesno[0] != 'Y') 244 return 0; 245 return 1; 246 } 247 248 static void 249 ask_filename(struct passwd *pw, const char *prompt) 250 { 251 char buf[1024]; 252 char *name = NULL; 253 254 if (key_type_name == NULL) 255 name = _PATH_SSH_CLIENT_ID_RSA; 256 else { 257 switch (sshkey_type_from_name(key_type_name)) { 258 case KEY_DSA_CERT: 259 case KEY_DSA: 260 name = _PATH_SSH_CLIENT_ID_DSA; 261 break; 262 case KEY_ECDSA_CERT: 263 case KEY_ECDSA: 264 name = _PATH_SSH_CLIENT_ID_ECDSA; 265 break; 266 case KEY_ECDSA_SK_CERT: 267 case KEY_ECDSA_SK: 268 name = _PATH_SSH_CLIENT_ID_ECDSA_SK; 269 break; 270 case KEY_RSA_CERT: 271 case KEY_RSA: 272 name = _PATH_SSH_CLIENT_ID_RSA; 273 break; 274 case KEY_ED25519: 275 case KEY_ED25519_CERT: 276 name = _PATH_SSH_CLIENT_ID_ED25519; 277 break; 278 case KEY_ED25519_SK: 279 case KEY_ED25519_SK_CERT: 280 name = _PATH_SSH_CLIENT_ID_ED25519_SK; 281 break; 282 case KEY_XMSS: 283 case KEY_XMSS_CERT: 284 name = _PATH_SSH_CLIENT_ID_XMSS; 285 break; 286 default: 287 fatal("bad key type"); 288 } 289 } 290 snprintf(identity_file, sizeof(identity_file), 291 "%s/%s", pw->pw_dir, name); 292 printf("%s (%s): ", prompt, identity_file); 293 fflush(stdout); 294 if (fgets(buf, sizeof(buf), stdin) == NULL) 295 exit(1); 296 buf[strcspn(buf, "\n")] = '\0'; 297 if (strcmp(buf, "") != 0) 298 strlcpy(identity_file, buf, sizeof(identity_file)); 299 have_identity = 1; 300 } 301 302 static struct sshkey * 303 load_identity(const char *filename, char **commentp) 304 { 305 char *pass; 306 struct sshkey *prv; 307 int r; 308 309 if (commentp != NULL) 310 *commentp = NULL; 311 if ((r = sshkey_load_private(filename, "", &prv, commentp)) == 0) 312 return prv; 313 if (r != SSH_ERR_KEY_WRONG_PASSPHRASE) 314 fatal_r(r, "Load key \"%s\"", filename); 315 if (identity_passphrase) 316 pass = xstrdup(identity_passphrase); 317 else 318 pass = read_passphrase("Enter passphrase: ", RP_ALLOW_STDIN); 319 r = sshkey_load_private(filename, pass, &prv, commentp); 320 freezero(pass, strlen(pass)); 321 if (r != 0) 322 fatal_r(r, "Load key \"%s\"", filename); 323 return prv; 324 } 325 326 #define SSH_COM_PUBLIC_BEGIN "---- BEGIN SSH2 PUBLIC KEY ----" 327 #define SSH_COM_PUBLIC_END "---- END SSH2 PUBLIC KEY ----" 328 #define SSH_COM_PRIVATE_BEGIN "---- BEGIN SSH2 ENCRYPTED PRIVATE KEY ----" 329 #define SSH_COM_PRIVATE_KEY_MAGIC 0x3f6ff9eb 330 331 #ifdef WITH_OPENSSL 332 static void 333 do_convert_to_ssh2(struct passwd *pw, struct sshkey *k) 334 { 335 struct sshbuf *b; 336 char comment[61], *b64; 337 int r; 338 339 if ((b = sshbuf_new()) == NULL) 340 fatal_f("sshbuf_new failed"); 341 if ((r = sshkey_putb(k, b)) != 0) 342 fatal_fr(r, "put key"); 343 if ((b64 = sshbuf_dtob64_string(b, 1)) == NULL) 344 fatal_f("sshbuf_dtob64_string failed"); 345 346 /* Comment + surrounds must fit into 72 chars (RFC 4716 sec 3.3) */ 347 snprintf(comment, sizeof(comment), 348 "%u-bit %s, converted by %s@%s from OpenSSH", 349 sshkey_size(k), sshkey_type(k), 350 pw->pw_name, hostname); 351 352 sshkey_free(k); 353 sshbuf_free(b); 354 355 fprintf(stdout, "%s\n", SSH_COM_PUBLIC_BEGIN); 356 fprintf(stdout, "Comment: \"%s\"\n%s", comment, b64); 357 fprintf(stdout, "%s\n", SSH_COM_PUBLIC_END); 358 free(b64); 359 exit(0); 360 } 361 362 static void 363 do_convert_to_pkcs8(struct sshkey *k) 364 { 365 switch (sshkey_type_plain(k->type)) { 366 case KEY_RSA: 367 if (!PEM_write_RSA_PUBKEY(stdout, k->rsa)) 368 fatal("PEM_write_RSA_PUBKEY failed"); 369 break; 370 case KEY_DSA: 371 if (!PEM_write_DSA_PUBKEY(stdout, k->dsa)) 372 fatal("PEM_write_DSA_PUBKEY failed"); 373 break; 374 case KEY_ECDSA: 375 if (!PEM_write_EC_PUBKEY(stdout, k->ecdsa)) 376 fatal("PEM_write_EC_PUBKEY failed"); 377 break; 378 default: 379 fatal_f("unsupported key type %s", sshkey_type(k)); 380 } 381 exit(0); 382 } 383 384 static void 385 do_convert_to_pem(struct sshkey *k) 386 { 387 switch (sshkey_type_plain(k->type)) { 388 case KEY_RSA: 389 if (!PEM_write_RSAPublicKey(stdout, k->rsa)) 390 fatal("PEM_write_RSAPublicKey failed"); 391 break; 392 case KEY_DSA: 393 if (!PEM_write_DSA_PUBKEY(stdout, k->dsa)) 394 fatal("PEM_write_DSA_PUBKEY failed"); 395 break; 396 case KEY_ECDSA: 397 if (!PEM_write_EC_PUBKEY(stdout, k->ecdsa)) 398 fatal("PEM_write_EC_PUBKEY failed"); 399 break; 400 default: 401 fatal_f("unsupported key type %s", sshkey_type(k)); 402 } 403 exit(0); 404 } 405 406 static void 407 do_convert_to(struct passwd *pw) 408 { 409 struct sshkey *k; 410 struct stat st; 411 int r; 412 413 if (!have_identity) 414 ask_filename(pw, "Enter file in which the key is"); 415 if (stat(identity_file, &st) == -1) 416 fatal("%s: %s: %s", __progname, identity_file, strerror(errno)); 417 if ((r = sshkey_load_public(identity_file, &k, NULL)) != 0) 418 k = load_identity(identity_file, NULL); 419 switch (convert_format) { 420 case FMT_RFC4716: 421 do_convert_to_ssh2(pw, k); 422 break; 423 case FMT_PKCS8: 424 do_convert_to_pkcs8(k); 425 break; 426 case FMT_PEM: 427 do_convert_to_pem(k); 428 break; 429 default: 430 fatal_f("unknown key format %d", convert_format); 431 } 432 exit(0); 433 } 434 435 /* 436 * This is almost exactly the bignum1 encoding, but with 32 bit for length 437 * instead of 16. 438 */ 439 static void 440 buffer_get_bignum_bits(struct sshbuf *b, BIGNUM *value) 441 { 442 u_int bytes, bignum_bits; 443 int r; 444 445 if ((r = sshbuf_get_u32(b, &bignum_bits)) != 0) 446 fatal_fr(r, "parse"); 447 bytes = (bignum_bits + 7) / 8; 448 if (sshbuf_len(b) < bytes) 449 fatal_f("input buffer too small: need %d have %zu", 450 bytes, sshbuf_len(b)); 451 if (BN_bin2bn(sshbuf_ptr(b), bytes, value) == NULL) 452 fatal_f("BN_bin2bn failed"); 453 if ((r = sshbuf_consume(b, bytes)) != 0) 454 fatal_fr(r, "consume"); 455 } 456 457 static struct sshkey * 458 do_convert_private_ssh2(struct sshbuf *b) 459 { 460 struct sshkey *key = NULL; 461 char *type, *cipher; 462 const char *alg = NULL; 463 u_char e1, e2, e3, *sig = NULL, data[] = "abcde12345"; 464 int r, rlen, ktype; 465 u_int magic, i1, i2, i3, i4; 466 size_t slen; 467 u_long e; 468 BIGNUM *dsa_p = NULL, *dsa_q = NULL, *dsa_g = NULL; 469 BIGNUM *dsa_pub_key = NULL, *dsa_priv_key = NULL; 470 BIGNUM *rsa_n = NULL, *rsa_e = NULL, *rsa_d = NULL; 471 BIGNUM *rsa_p = NULL, *rsa_q = NULL, *rsa_iqmp = NULL; 472 473 if ((r = sshbuf_get_u32(b, &magic)) != 0) 474 fatal_fr(r, "parse magic"); 475 476 if (magic != SSH_COM_PRIVATE_KEY_MAGIC) { 477 error("bad magic 0x%x != 0x%x", magic, 478 SSH_COM_PRIVATE_KEY_MAGIC); 479 return NULL; 480 } 481 if ((r = sshbuf_get_u32(b, &i1)) != 0 || 482 (r = sshbuf_get_cstring(b, &type, NULL)) != 0 || 483 (r = sshbuf_get_cstring(b, &cipher, NULL)) != 0 || 484 (r = sshbuf_get_u32(b, &i2)) != 0 || 485 (r = sshbuf_get_u32(b, &i3)) != 0 || 486 (r = sshbuf_get_u32(b, &i4)) != 0) 487 fatal_fr(r, "parse"); 488 debug("ignore (%d %d %d %d)", i1, i2, i3, i4); 489 if (strcmp(cipher, "none") != 0) { 490 error("unsupported cipher %s", cipher); 491 free(cipher); 492 free(type); 493 return NULL; 494 } 495 free(cipher); 496 497 if (strstr(type, "dsa")) { 498 ktype = KEY_DSA; 499 } else if (strstr(type, "rsa")) { 500 ktype = KEY_RSA; 501 } else { 502 free(type); 503 return NULL; 504 } 505 if ((key = sshkey_new(ktype)) == NULL) 506 fatal("sshkey_new failed"); 507 free(type); 508 509 switch (key->type) { 510 case KEY_DSA: 511 if ((dsa_p = BN_new()) == NULL || 512 (dsa_q = BN_new()) == NULL || 513 (dsa_g = BN_new()) == NULL || 514 (dsa_pub_key = BN_new()) == NULL || 515 (dsa_priv_key = BN_new()) == NULL) 516 fatal_f("BN_new"); 517 buffer_get_bignum_bits(b, dsa_p); 518 buffer_get_bignum_bits(b, dsa_g); 519 buffer_get_bignum_bits(b, dsa_q); 520 buffer_get_bignum_bits(b, dsa_pub_key); 521 buffer_get_bignum_bits(b, dsa_priv_key); 522 if (!DSA_set0_pqg(key->dsa, dsa_p, dsa_q, dsa_g)) 523 fatal_f("DSA_set0_pqg failed"); 524 dsa_p = dsa_q = dsa_g = NULL; /* transferred */ 525 if (!DSA_set0_key(key->dsa, dsa_pub_key, dsa_priv_key)) 526 fatal_f("DSA_set0_key failed"); 527 dsa_pub_key = dsa_priv_key = NULL; /* transferred */ 528 break; 529 case KEY_RSA: 530 if ((r = sshbuf_get_u8(b, &e1)) != 0 || 531 (e1 < 30 && (r = sshbuf_get_u8(b, &e2)) != 0) || 532 (e1 < 30 && (r = sshbuf_get_u8(b, &e3)) != 0)) 533 fatal_fr(r, "parse RSA"); 534 e = e1; 535 debug("e %lx", e); 536 if (e < 30) { 537 e <<= 8; 538 e += e2; 539 debug("e %lx", e); 540 e <<= 8; 541 e += e3; 542 debug("e %lx", e); 543 } 544 if ((rsa_e = BN_new()) == NULL) 545 fatal_f("BN_new"); 546 if (!BN_set_word(rsa_e, e)) { 547 BN_clear_free(rsa_e); 548 sshkey_free(key); 549 return NULL; 550 } 551 if ((rsa_n = BN_new()) == NULL || 552 (rsa_d = BN_new()) == NULL || 553 (rsa_p = BN_new()) == NULL || 554 (rsa_q = BN_new()) == NULL || 555 (rsa_iqmp = BN_new()) == NULL) 556 fatal_f("BN_new"); 557 buffer_get_bignum_bits(b, rsa_d); 558 buffer_get_bignum_bits(b, rsa_n); 559 buffer_get_bignum_bits(b, rsa_iqmp); 560 buffer_get_bignum_bits(b, rsa_q); 561 buffer_get_bignum_bits(b, rsa_p); 562 if (!RSA_set0_key(key->rsa, rsa_n, rsa_e, rsa_d)) 563 fatal_f("RSA_set0_key failed"); 564 rsa_n = rsa_e = rsa_d = NULL; /* transferred */ 565 if (!RSA_set0_factors(key->rsa, rsa_p, rsa_q)) 566 fatal_f("RSA_set0_factors failed"); 567 rsa_p = rsa_q = NULL; /* transferred */ 568 if ((r = ssh_rsa_complete_crt_parameters(key, rsa_iqmp)) != 0) 569 fatal_fr(r, "generate RSA parameters"); 570 BN_clear_free(rsa_iqmp); 571 alg = "rsa-sha2-256"; 572 break; 573 } 574 rlen = sshbuf_len(b); 575 if (rlen != 0) 576 error_f("remaining bytes in key blob %d", rlen); 577 578 /* try the key */ 579 if ((r = sshkey_sign(key, &sig, &slen, data, sizeof(data), 580 alg, NULL, NULL, 0)) != 0) 581 error_fr(r, "signing with converted key failed"); 582 else if ((r = sshkey_verify(key, sig, slen, data, sizeof(data), 583 alg, 0, NULL)) != 0) 584 error_fr(r, "verification with converted key failed"); 585 if (r != 0) { 586 sshkey_free(key); 587 free(sig); 588 return NULL; 589 } 590 free(sig); 591 return key; 592 } 593 594 static int 595 get_line(FILE *fp, char *line, size_t len) 596 { 597 int c; 598 size_t pos = 0; 599 600 line[0] = '\0'; 601 while ((c = fgetc(fp)) != EOF) { 602 if (pos >= len - 1) 603 fatal("input line too long."); 604 switch (c) { 605 case '\r': 606 c = fgetc(fp); 607 if (c != EOF && c != '\n' && ungetc(c, fp) == EOF) 608 fatal("unget: %s", strerror(errno)); 609 return pos; 610 case '\n': 611 return pos; 612 } 613 line[pos++] = c; 614 line[pos] = '\0'; 615 } 616 /* We reached EOF */ 617 return -1; 618 } 619 620 static void 621 do_convert_from_ssh2(struct passwd *pw, struct sshkey **k, int *private) 622 { 623 int r, blen, escaped = 0; 624 u_int len; 625 char line[1024]; 626 struct sshbuf *buf; 627 char encoded[8096]; 628 FILE *fp; 629 630 if ((buf = sshbuf_new()) == NULL) 631 fatal("sshbuf_new failed"); 632 if ((fp = fopen(identity_file, "r")) == NULL) 633 fatal("%s: %s: %s", __progname, identity_file, strerror(errno)); 634 encoded[0] = '\0'; 635 while ((blen = get_line(fp, line, sizeof(line))) != -1) { 636 if (blen > 0 && line[blen - 1] == '\\') 637 escaped++; 638 if (strncmp(line, "----", 4) == 0 || 639 strstr(line, ": ") != NULL) { 640 if (strstr(line, SSH_COM_PRIVATE_BEGIN) != NULL) 641 *private = 1; 642 if (strstr(line, " END ") != NULL) { 643 break; 644 } 645 /* fprintf(stderr, "ignore: %s", line); */ 646 continue; 647 } 648 if (escaped) { 649 escaped--; 650 /* fprintf(stderr, "escaped: %s", line); */ 651 continue; 652 } 653 strlcat(encoded, line, sizeof(encoded)); 654 } 655 len = strlen(encoded); 656 if (((len % 4) == 3) && 657 (encoded[len-1] == '=') && 658 (encoded[len-2] == '=') && 659 (encoded[len-3] == '=')) 660 encoded[len-3] = '\0'; 661 if ((r = sshbuf_b64tod(buf, encoded)) != 0) 662 fatal_fr(r, "base64 decode"); 663 if (*private) { 664 if ((*k = do_convert_private_ssh2(buf)) == NULL) 665 fatal_f("private key conversion failed"); 666 } else if ((r = sshkey_fromb(buf, k)) != 0) 667 fatal_fr(r, "parse key"); 668 sshbuf_free(buf); 669 fclose(fp); 670 } 671 672 static void 673 do_convert_from_pkcs8(struct sshkey **k, int *private) 674 { 675 EVP_PKEY *pubkey; 676 FILE *fp; 677 678 if ((fp = fopen(identity_file, "r")) == NULL) 679 fatal("%s: %s: %s", __progname, identity_file, strerror(errno)); 680 if ((pubkey = PEM_read_PUBKEY(fp, NULL, NULL, NULL)) == NULL) { 681 fatal_f("%s is not a recognised public key format", 682 identity_file); 683 } 684 fclose(fp); 685 switch (EVP_PKEY_base_id(pubkey)) { 686 case EVP_PKEY_RSA: 687 if ((*k = sshkey_new(KEY_UNSPEC)) == NULL) 688 fatal("sshkey_new failed"); 689 (*k)->type = KEY_RSA; 690 (*k)->rsa = EVP_PKEY_get1_RSA(pubkey); 691 break; 692 case EVP_PKEY_DSA: 693 if ((*k = sshkey_new(KEY_UNSPEC)) == NULL) 694 fatal("sshkey_new failed"); 695 (*k)->type = KEY_DSA; 696 (*k)->dsa = EVP_PKEY_get1_DSA(pubkey); 697 break; 698 case EVP_PKEY_EC: 699 if ((*k = sshkey_new(KEY_UNSPEC)) == NULL) 700 fatal("sshkey_new failed"); 701 (*k)->type = KEY_ECDSA; 702 (*k)->ecdsa = EVP_PKEY_get1_EC_KEY(pubkey); 703 (*k)->ecdsa_nid = sshkey_ecdsa_key_to_nid((*k)->ecdsa); 704 break; 705 default: 706 fatal_f("unsupported pubkey type %d", 707 EVP_PKEY_base_id(pubkey)); 708 } 709 EVP_PKEY_free(pubkey); 710 return; 711 } 712 713 static void 714 do_convert_from_pem(struct sshkey **k, int *private) 715 { 716 FILE *fp; 717 RSA *rsa; 718 719 if ((fp = fopen(identity_file, "r")) == NULL) 720 fatal("%s: %s: %s", __progname, identity_file, strerror(errno)); 721 if ((rsa = PEM_read_RSAPublicKey(fp, NULL, NULL, NULL)) != NULL) { 722 if ((*k = sshkey_new(KEY_UNSPEC)) == NULL) 723 fatal("sshkey_new failed"); 724 (*k)->type = KEY_RSA; 725 (*k)->rsa = rsa; 726 fclose(fp); 727 return; 728 } 729 fatal_f("unrecognised raw private key format"); 730 } 731 732 static void 733 do_convert_from(struct passwd *pw) 734 { 735 struct sshkey *k = NULL; 736 int r, private = 0, ok = 0; 737 struct stat st; 738 739 if (!have_identity) 740 ask_filename(pw, "Enter file in which the key is"); 741 if (stat(identity_file, &st) == -1) 742 fatal("%s: %s: %s", __progname, identity_file, strerror(errno)); 743 744 switch (convert_format) { 745 case FMT_RFC4716: 746 do_convert_from_ssh2(pw, &k, &private); 747 break; 748 case FMT_PKCS8: 749 do_convert_from_pkcs8(&k, &private); 750 break; 751 case FMT_PEM: 752 do_convert_from_pem(&k, &private); 753 break; 754 default: 755 fatal_f("unknown key format %d", convert_format); 756 } 757 758 if (!private) { 759 if ((r = sshkey_write(k, stdout)) == 0) 760 ok = 1; 761 if (ok) 762 fprintf(stdout, "\n"); 763 } else { 764 switch (k->type) { 765 case KEY_DSA: 766 ok = PEM_write_DSAPrivateKey(stdout, k->dsa, NULL, 767 NULL, 0, NULL, NULL); 768 break; 769 case KEY_ECDSA: 770 ok = PEM_write_ECPrivateKey(stdout, k->ecdsa, NULL, 771 NULL, 0, NULL, NULL); 772 break; 773 case KEY_RSA: 774 ok = PEM_write_RSAPrivateKey(stdout, k->rsa, NULL, 775 NULL, 0, NULL, NULL); 776 break; 777 default: 778 fatal_f("unsupported key type %s", sshkey_type(k)); 779 } 780 } 781 782 if (!ok) 783 fatal("key write failed"); 784 sshkey_free(k); 785 exit(0); 786 } 787 #endif 788 789 static void 790 do_print_public(struct passwd *pw) 791 { 792 struct sshkey *prv; 793 struct stat st; 794 int r; 795 char *comment = NULL; 796 797 if (!have_identity) 798 ask_filename(pw, "Enter file in which the key is"); 799 if (stat(identity_file, &st) == -1) 800 fatal("%s: %s", identity_file, strerror(errno)); 801 prv = load_identity(identity_file, &comment); 802 if ((r = sshkey_write(prv, stdout)) != 0) 803 fatal_fr(r, "write key"); 804 if (comment != NULL && *comment != '\0') 805 fprintf(stdout, " %s", comment); 806 fprintf(stdout, "\n"); 807 if (sshkey_is_sk(prv)) { 808 debug("sk_application: \"%s\", sk_flags 0x%02x", 809 prv->sk_application, prv->sk_flags); 810 } 811 sshkey_free(prv); 812 free(comment); 813 exit(0); 814 } 815 816 static void 817 do_download(struct passwd *pw) 818 { 819 #ifdef ENABLE_PKCS11 820 struct sshkey **keys = NULL; 821 int i, nkeys; 822 enum sshkey_fp_rep rep; 823 int fptype; 824 char *fp, *ra, **comments = NULL; 825 826 fptype = print_bubblebabble ? SSH_DIGEST_SHA1 : fingerprint_hash; 827 rep = print_bubblebabble ? SSH_FP_BUBBLEBABBLE : SSH_FP_DEFAULT; 828 829 pkcs11_init(1); 830 nkeys = pkcs11_add_provider(pkcs11provider, NULL, &keys, &comments); 831 if (nkeys <= 0) 832 fatal("cannot read public key from pkcs11"); 833 for (i = 0; i < nkeys; i++) { 834 if (print_fingerprint) { 835 fp = sshkey_fingerprint(keys[i], fptype, rep); 836 ra = sshkey_fingerprint(keys[i], fingerprint_hash, 837 SSH_FP_RANDOMART); 838 if (fp == NULL || ra == NULL) 839 fatal_f("sshkey_fingerprint fail"); 840 printf("%u %s %s (PKCS11 key)\n", sshkey_size(keys[i]), 841 fp, sshkey_type(keys[i])); 842 if (log_level_get() >= SYSLOG_LEVEL_VERBOSE) 843 printf("%s\n", ra); 844 free(ra); 845 free(fp); 846 } else { 847 (void) sshkey_write(keys[i], stdout); /* XXX check */ 848 fprintf(stdout, "%s%s\n", 849 *(comments[i]) == '\0' ? "" : " ", comments[i]); 850 } 851 free(comments[i]); 852 sshkey_free(keys[i]); 853 } 854 free(comments); 855 free(keys); 856 pkcs11_terminate(); 857 exit(0); 858 #else 859 fatal("no pkcs11 support"); 860 #endif /* ENABLE_PKCS11 */ 861 } 862 863 static struct sshkey * 864 try_read_key(char **cpp) 865 { 866 struct sshkey *ret; 867 int r; 868 869 if ((ret = sshkey_new(KEY_UNSPEC)) == NULL) 870 fatal("sshkey_new failed"); 871 if ((r = sshkey_read(ret, cpp)) == 0) 872 return ret; 873 /* Not a key */ 874 sshkey_free(ret); 875 return NULL; 876 } 877 878 static void 879 fingerprint_one_key(const struct sshkey *public, const char *comment) 880 { 881 char *fp = NULL, *ra = NULL; 882 enum sshkey_fp_rep rep; 883 int fptype; 884 885 fptype = print_bubblebabble ? SSH_DIGEST_SHA1 : fingerprint_hash; 886 rep = print_bubblebabble ? SSH_FP_BUBBLEBABBLE : SSH_FP_DEFAULT; 887 fp = sshkey_fingerprint(public, fptype, rep); 888 ra = sshkey_fingerprint(public, fingerprint_hash, SSH_FP_RANDOMART); 889 if (fp == NULL || ra == NULL) 890 fatal_f("sshkey_fingerprint failed"); 891 mprintf("%u %s %s (%s)\n", sshkey_size(public), fp, 892 comment ? comment : "no comment", sshkey_type(public)); 893 if (log_level_get() >= SYSLOG_LEVEL_VERBOSE) 894 printf("%s\n", ra); 895 free(ra); 896 free(fp); 897 } 898 899 static void 900 fingerprint_private(const char *path) 901 { 902 struct stat st; 903 char *comment = NULL; 904 struct sshkey *privkey = NULL, *pubkey = NULL; 905 int r; 906 907 if (stat(identity_file, &st) == -1) 908 fatal("%s: %s", path, strerror(errno)); 909 if ((r = sshkey_load_public(path, &pubkey, &comment)) != 0) 910 debug_r(r, "load public \"%s\"", path); 911 if (pubkey == NULL || comment == NULL || *comment == '\0') { 912 free(comment); 913 if ((r = sshkey_load_private(path, NULL, 914 &privkey, &comment)) != 0) 915 debug_r(r, "load private \"%s\"", path); 916 } 917 if (pubkey == NULL && privkey == NULL) 918 fatal("%s is not a key file.", path); 919 920 fingerprint_one_key(pubkey == NULL ? privkey : pubkey, comment); 921 sshkey_free(pubkey); 922 sshkey_free(privkey); 923 free(comment); 924 } 925 926 static void 927 do_fingerprint(struct passwd *pw) 928 { 929 FILE *f; 930 struct sshkey *public = NULL; 931 char *comment = NULL, *cp, *ep, *line = NULL; 932 size_t linesize = 0; 933 int i, invalid = 1; 934 const char *path; 935 u_long lnum = 0; 936 937 if (!have_identity) 938 ask_filename(pw, "Enter file in which the key is"); 939 path = identity_file; 940 941 if (strcmp(identity_file, "-") == 0) { 942 f = stdin; 943 path = "(stdin)"; 944 } else if ((f = fopen(path, "r")) == NULL) 945 fatal("%s: %s: %s", __progname, path, strerror(errno)); 946 947 while (getline(&line, &linesize, f) != -1) { 948 lnum++; 949 cp = line; 950 cp[strcspn(cp, "\n")] = '\0'; 951 /* Trim leading space and comments */ 952 cp = line + strspn(line, " \t"); 953 if (*cp == '#' || *cp == '\0') 954 continue; 955 956 /* 957 * Input may be plain keys, private keys, authorized_keys 958 * or known_hosts. 959 */ 960 961 /* 962 * Try private keys first. Assume a key is private if 963 * "SSH PRIVATE KEY" appears on the first line and we're 964 * not reading from stdin (XXX support private keys on stdin). 965 */ 966 if (lnum == 1 && strcmp(identity_file, "-") != 0 && 967 strstr(cp, "PRIVATE KEY") != NULL) { 968 free(line); 969 fclose(f); 970 fingerprint_private(path); 971 exit(0); 972 } 973 974 /* 975 * If it's not a private key, then this must be prepared to 976 * accept a public key prefixed with a hostname or options. 977 * Try a bare key first, otherwise skip the leading stuff. 978 */ 979 comment = NULL; 980 if ((public = try_read_key(&cp)) == NULL) { 981 i = strtol(cp, &ep, 10); 982 if (i == 0 || ep == NULL || 983 (*ep != ' ' && *ep != '\t')) { 984 int quoted = 0; 985 986 comment = cp; 987 for (; *cp && (quoted || (*cp != ' ' && 988 *cp != '\t')); cp++) { 989 if (*cp == '\\' && cp[1] == '"') 990 cp++; /* Skip both */ 991 else if (*cp == '"') 992 quoted = !quoted; 993 } 994 if (!*cp) 995 continue; 996 *cp++ = '\0'; 997 } 998 } 999 /* Retry after parsing leading hostname/key options */ 1000 if (public == NULL && (public = try_read_key(&cp)) == NULL) { 1001 debug("%s:%lu: not a public key", path, lnum); 1002 continue; 1003 } 1004 1005 /* Find trailing comment, if any */ 1006 for (; *cp == ' ' || *cp == '\t'; cp++) 1007 ; 1008 if (*cp != '\0' && *cp != '#') 1009 comment = cp; 1010 1011 fingerprint_one_key(public, comment); 1012 sshkey_free(public); 1013 invalid = 0; /* One good key in the file is sufficient */ 1014 } 1015 fclose(f); 1016 free(line); 1017 1018 if (invalid) 1019 fatal("%s is not a public key file.", path); 1020 exit(0); 1021 } 1022 1023 static void 1024 do_gen_all_hostkeys(struct passwd *pw) 1025 { 1026 struct { 1027 char *key_type; 1028 char *key_type_display; 1029 char *path; 1030 } key_types[] = { 1031 #ifdef WITH_OPENSSL 1032 { "rsa", "RSA" ,_PATH_HOST_RSA_KEY_FILE }, 1033 { "ecdsa", "ECDSA",_PATH_HOST_ECDSA_KEY_FILE }, 1034 #endif /* WITH_OPENSSL */ 1035 { "ed25519", "ED25519",_PATH_HOST_ED25519_KEY_FILE }, 1036 #ifdef WITH_XMSS 1037 { "xmss", "XMSS",_PATH_HOST_XMSS_KEY_FILE }, 1038 #endif /* WITH_XMSS */ 1039 { NULL, NULL, NULL } 1040 }; 1041 1042 u_int32_t bits = 0; 1043 int first = 0; 1044 struct stat st; 1045 struct sshkey *private, *public; 1046 char comment[1024], *prv_tmp, *pub_tmp, *prv_file, *pub_file; 1047 int i, type, fd, r; 1048 1049 for (i = 0; key_types[i].key_type; i++) { 1050 public = private = NULL; 1051 prv_tmp = pub_tmp = prv_file = pub_file = NULL; 1052 1053 xasprintf(&prv_file, "%s%s", 1054 identity_file, key_types[i].path); 1055 1056 /* Check whether private key exists and is not zero-length */ 1057 if (stat(prv_file, &st) == 0) { 1058 if (st.st_size != 0) 1059 goto next; 1060 } else if (errno != ENOENT) { 1061 error("Could not stat %s: %s", key_types[i].path, 1062 strerror(errno)); 1063 goto failnext; 1064 } 1065 1066 /* 1067 * Private key doesn't exist or is invalid; proceed with 1068 * key generation. 1069 */ 1070 xasprintf(&prv_tmp, "%s%s.XXXXXXXXXX", 1071 identity_file, key_types[i].path); 1072 xasprintf(&pub_tmp, "%s%s.pub.XXXXXXXXXX", 1073 identity_file, key_types[i].path); 1074 xasprintf(&pub_file, "%s%s.pub", 1075 identity_file, key_types[i].path); 1076 1077 if (first == 0) { 1078 first = 1; 1079 printf("%s: generating new host keys: ", __progname); 1080 } 1081 printf("%s ", key_types[i].key_type_display); 1082 fflush(stdout); 1083 type = sshkey_type_from_name(key_types[i].key_type); 1084 if ((fd = mkstemp(prv_tmp)) == -1) { 1085 error("Could not save your private key in %s: %s", 1086 prv_tmp, strerror(errno)); 1087 goto failnext; 1088 } 1089 (void)close(fd); /* just using mkstemp() to reserve a name */ 1090 bits = 0; 1091 type_bits_valid(type, NULL, &bits); 1092 if ((r = sshkey_generate(type, bits, &private)) != 0) { 1093 error_r(r, "sshkey_generate failed"); 1094 goto failnext; 1095 } 1096 if ((r = sshkey_from_private(private, &public)) != 0) 1097 fatal_fr(r, "sshkey_from_private"); 1098 snprintf(comment, sizeof comment, "%s@%s", pw->pw_name, 1099 hostname); 1100 if ((r = sshkey_save_private(private, prv_tmp, "", 1101 comment, private_key_format, openssh_format_cipher, 1102 rounds)) != 0) { 1103 error_r(r, "Saving key \"%s\" failed", prv_tmp); 1104 goto failnext; 1105 } 1106 if ((fd = mkstemp(pub_tmp)) == -1) { 1107 error("Could not save your public key in %s: %s", 1108 pub_tmp, strerror(errno)); 1109 goto failnext; 1110 } 1111 (void)fchmod(fd, 0644); 1112 (void)close(fd); 1113 if ((r = sshkey_save_public(public, pub_tmp, comment)) != 0) { 1114 error_r(r, "Unable to save public key to %s", 1115 identity_file); 1116 goto failnext; 1117 } 1118 1119 /* Rename temporary files to their permanent locations. */ 1120 if (rename(pub_tmp, pub_file) != 0) { 1121 error("Unable to move %s into position: %s", 1122 pub_file, strerror(errno)); 1123 goto failnext; 1124 } 1125 if (rename(prv_tmp, prv_file) != 0) { 1126 error("Unable to move %s into position: %s", 1127 key_types[i].path, strerror(errno)); 1128 failnext: 1129 first = 0; 1130 goto next; 1131 } 1132 next: 1133 sshkey_free(private); 1134 sshkey_free(public); 1135 free(prv_tmp); 1136 free(pub_tmp); 1137 free(prv_file); 1138 free(pub_file); 1139 } 1140 if (first != 0) 1141 printf("\n"); 1142 } 1143 1144 struct known_hosts_ctx { 1145 const char *host; /* Hostname searched for in find/delete case */ 1146 FILE *out; /* Output file, stdout for find_hosts case */ 1147 int has_unhashed; /* When hashing, original had unhashed hosts */ 1148 int found_key; /* For find/delete, host was found */ 1149 int invalid; /* File contained invalid items; don't delete */ 1150 int hash_hosts; /* Hash hostnames as we go */ 1151 int find_host; /* Search for specific hostname */ 1152 int delete_host; /* Delete host from known_hosts */ 1153 }; 1154 1155 static int 1156 known_hosts_hash(struct hostkey_foreach_line *l, void *_ctx) 1157 { 1158 struct known_hosts_ctx *ctx = (struct known_hosts_ctx *)_ctx; 1159 char *hashed, *cp, *hosts, *ohosts; 1160 int has_wild = l->hosts && strcspn(l->hosts, "*?!") != strlen(l->hosts); 1161 int was_hashed = l->hosts && l->hosts[0] == HASH_DELIM; 1162 1163 switch (l->status) { 1164 case HKF_STATUS_OK: 1165 case HKF_STATUS_MATCHED: 1166 /* 1167 * Don't hash hosts already hashed, with wildcard 1168 * characters or a CA/revocation marker. 1169 */ 1170 if (was_hashed || has_wild || l->marker != MRK_NONE) { 1171 fprintf(ctx->out, "%s\n", l->line); 1172 if (has_wild && !ctx->find_host) { 1173 logit("%s:%lu: ignoring host name " 1174 "with wildcard: %.64s", l->path, 1175 l->linenum, l->hosts); 1176 } 1177 return 0; 1178 } 1179 /* 1180 * Split any comma-separated hostnames from the host list, 1181 * hash and store separately. 1182 */ 1183 ohosts = hosts = xstrdup(l->hosts); 1184 while ((cp = strsep(&hosts, ",")) != NULL && *cp != '\0') { 1185 lowercase(cp); 1186 if ((hashed = host_hash(cp, NULL, 0)) == NULL) 1187 fatal("hash_host failed"); 1188 fprintf(ctx->out, "%s %s\n", hashed, l->rawkey); 1189 free(hashed); 1190 ctx->has_unhashed = 1; 1191 } 1192 free(ohosts); 1193 return 0; 1194 case HKF_STATUS_INVALID: 1195 /* Retain invalid lines, but mark file as invalid. */ 1196 ctx->invalid = 1; 1197 logit("%s:%lu: invalid line", l->path, l->linenum); 1198 /* FALLTHROUGH */ 1199 default: 1200 fprintf(ctx->out, "%s\n", l->line); 1201 return 0; 1202 } 1203 /* NOTREACHED */ 1204 return -1; 1205 } 1206 1207 static int 1208 known_hosts_find_delete(struct hostkey_foreach_line *l, void *_ctx) 1209 { 1210 struct known_hosts_ctx *ctx = (struct known_hosts_ctx *)_ctx; 1211 enum sshkey_fp_rep rep; 1212 int fptype; 1213 char *fp = NULL, *ra = NULL; 1214 1215 fptype = print_bubblebabble ? SSH_DIGEST_SHA1 : fingerprint_hash; 1216 rep = print_bubblebabble ? SSH_FP_BUBBLEBABBLE : SSH_FP_DEFAULT; 1217 1218 if (l->status == HKF_STATUS_MATCHED) { 1219 if (ctx->delete_host) { 1220 if (l->marker != MRK_NONE) { 1221 /* Don't remove CA and revocation lines */ 1222 fprintf(ctx->out, "%s\n", l->line); 1223 } else { 1224 /* 1225 * Hostname matches and has no CA/revoke 1226 * marker, delete it by *not* writing the 1227 * line to ctx->out. 1228 */ 1229 ctx->found_key = 1; 1230 if (!quiet) 1231 printf("# Host %s found: line %lu\n", 1232 ctx->host, l->linenum); 1233 } 1234 return 0; 1235 } else if (ctx->find_host) { 1236 ctx->found_key = 1; 1237 if (!quiet) { 1238 printf("# Host %s found: line %lu %s\n", 1239 ctx->host, 1240 l->linenum, l->marker == MRK_CA ? "CA" : 1241 (l->marker == MRK_REVOKE ? "REVOKED" : "")); 1242 } 1243 if (ctx->hash_hosts) 1244 known_hosts_hash(l, ctx); 1245 else if (print_fingerprint) { 1246 fp = sshkey_fingerprint(l->key, fptype, rep); 1247 ra = sshkey_fingerprint(l->key, 1248 fingerprint_hash, SSH_FP_RANDOMART); 1249 if (fp == NULL || ra == NULL) 1250 fatal_f("sshkey_fingerprint failed"); 1251 mprintf("%s %s %s%s%s\n", ctx->host, 1252 sshkey_type(l->key), fp, 1253 l->comment[0] ? " " : "", 1254 l->comment); 1255 if (log_level_get() >= SYSLOG_LEVEL_VERBOSE) 1256 printf("%s\n", ra); 1257 free(ra); 1258 free(fp); 1259 } else 1260 fprintf(ctx->out, "%s\n", l->line); 1261 return 0; 1262 } 1263 } else if (ctx->delete_host) { 1264 /* Retain non-matching hosts when deleting */ 1265 if (l->status == HKF_STATUS_INVALID) { 1266 ctx->invalid = 1; 1267 logit("%s:%lu: invalid line", l->path, l->linenum); 1268 } 1269 fprintf(ctx->out, "%s\n", l->line); 1270 } 1271 return 0; 1272 } 1273 1274 static void 1275 do_known_hosts(struct passwd *pw, const char *name, int find_host, 1276 int delete_host, int hash_hosts) 1277 { 1278 char *cp, tmp[PATH_MAX], old[PATH_MAX]; 1279 int r, fd, oerrno, inplace = 0; 1280 struct known_hosts_ctx ctx; 1281 u_int foreach_options; 1282 struct stat sb; 1283 1284 if (!have_identity) { 1285 cp = tilde_expand_filename(_PATH_SSH_USER_HOSTFILE, pw->pw_uid); 1286 if (strlcpy(identity_file, cp, sizeof(identity_file)) >= 1287 sizeof(identity_file)) 1288 fatal("Specified known hosts path too long"); 1289 free(cp); 1290 have_identity = 1; 1291 } 1292 if (stat(identity_file, &sb) != 0) 1293 fatal("Cannot stat %s: %s", identity_file, strerror(errno)); 1294 1295 memset(&ctx, 0, sizeof(ctx)); 1296 ctx.out = stdout; 1297 ctx.host = name; 1298 ctx.hash_hosts = hash_hosts; 1299 ctx.find_host = find_host; 1300 ctx.delete_host = delete_host; 1301 1302 /* 1303 * Find hosts goes to stdout, hash and deletions happen in-place 1304 * A corner case is ssh-keygen -HF foo, which should go to stdout 1305 */ 1306 if (!find_host && (hash_hosts || delete_host)) { 1307 if (strlcpy(tmp, identity_file, sizeof(tmp)) >= sizeof(tmp) || 1308 strlcat(tmp, ".XXXXXXXXXX", sizeof(tmp)) >= sizeof(tmp) || 1309 strlcpy(old, identity_file, sizeof(old)) >= sizeof(old) || 1310 strlcat(old, ".old", sizeof(old)) >= sizeof(old)) 1311 fatal("known_hosts path too long"); 1312 umask(077); 1313 if ((fd = mkstemp(tmp)) == -1) 1314 fatal("mkstemp: %s", strerror(errno)); 1315 if ((ctx.out = fdopen(fd, "w")) == NULL) { 1316 oerrno = errno; 1317 unlink(tmp); 1318 fatal("fdopen: %s", strerror(oerrno)); 1319 } 1320 (void)fchmod(fd, sb.st_mode & 0644); 1321 inplace = 1; 1322 } 1323 /* XXX support identity_file == "-" for stdin */ 1324 foreach_options = find_host ? HKF_WANT_MATCH : 0; 1325 foreach_options |= print_fingerprint ? HKF_WANT_PARSE_KEY : 0; 1326 if ((r = hostkeys_foreach(identity_file, (find_host || !hash_hosts) ? 1327 known_hosts_find_delete : known_hosts_hash, &ctx, name, NULL, 1328 foreach_options, 0)) != 0) { 1329 if (inplace) 1330 unlink(tmp); 1331 fatal_fr(r, "hostkeys_foreach"); 1332 } 1333 1334 if (inplace) 1335 fclose(ctx.out); 1336 1337 if (ctx.invalid) { 1338 error("%s is not a valid known_hosts file.", identity_file); 1339 if (inplace) { 1340 error("Not replacing existing known_hosts " 1341 "file because of errors"); 1342 unlink(tmp); 1343 } 1344 exit(1); 1345 } else if (delete_host && !ctx.found_key) { 1346 logit("Host %s not found in %s", name, identity_file); 1347 if (inplace) 1348 unlink(tmp); 1349 } else if (inplace) { 1350 /* Backup existing file */ 1351 if (unlink(old) == -1 && errno != ENOENT) 1352 fatal("unlink %.100s: %s", old, strerror(errno)); 1353 if (link(identity_file, old) == -1) 1354 fatal("link %.100s to %.100s: %s", identity_file, old, 1355 strerror(errno)); 1356 /* Move new one into place */ 1357 if (rename(tmp, identity_file) == -1) { 1358 error("rename\"%s\" to \"%s\": %s", tmp, identity_file, 1359 strerror(errno)); 1360 unlink(tmp); 1361 unlink(old); 1362 exit(1); 1363 } 1364 1365 printf("%s updated.\n", identity_file); 1366 printf("Original contents retained as %s\n", old); 1367 if (ctx.has_unhashed) { 1368 logit("WARNING: %s contains unhashed entries", old); 1369 logit("Delete this file to ensure privacy " 1370 "of hostnames"); 1371 } 1372 } 1373 1374 exit (find_host && !ctx.found_key); 1375 } 1376 1377 /* 1378 * Perform changing a passphrase. The argument is the passwd structure 1379 * for the current user. 1380 */ 1381 static void 1382 do_change_passphrase(struct passwd *pw) 1383 { 1384 char *comment; 1385 char *old_passphrase, *passphrase1, *passphrase2; 1386 struct stat st; 1387 struct sshkey *private; 1388 int r; 1389 1390 if (!have_identity) 1391 ask_filename(pw, "Enter file in which the key is"); 1392 if (stat(identity_file, &st) == -1) 1393 fatal("%s: %s", identity_file, strerror(errno)); 1394 /* Try to load the file with empty passphrase. */ 1395 r = sshkey_load_private(identity_file, "", &private, &comment); 1396 if (r == SSH_ERR_KEY_WRONG_PASSPHRASE) { 1397 if (identity_passphrase) 1398 old_passphrase = xstrdup(identity_passphrase); 1399 else 1400 old_passphrase = 1401 read_passphrase("Enter old passphrase: ", 1402 RP_ALLOW_STDIN); 1403 r = sshkey_load_private(identity_file, old_passphrase, 1404 &private, &comment); 1405 freezero(old_passphrase, strlen(old_passphrase)); 1406 if (r != 0) 1407 goto badkey; 1408 } else if (r != 0) { 1409 badkey: 1410 fatal_r(r, "Failed to load key %s", identity_file); 1411 } 1412 if (comment) 1413 mprintf("Key has comment '%s'\n", comment); 1414 1415 /* Ask the new passphrase (twice). */ 1416 if (identity_new_passphrase) { 1417 passphrase1 = xstrdup(identity_new_passphrase); 1418 passphrase2 = NULL; 1419 } else { 1420 passphrase1 = 1421 read_passphrase("Enter new passphrase (empty for no " 1422 "passphrase): ", RP_ALLOW_STDIN); 1423 passphrase2 = read_passphrase("Enter same passphrase again: ", 1424 RP_ALLOW_STDIN); 1425 1426 /* Verify that they are the same. */ 1427 if (strcmp(passphrase1, passphrase2) != 0) { 1428 explicit_bzero(passphrase1, strlen(passphrase1)); 1429 explicit_bzero(passphrase2, strlen(passphrase2)); 1430 free(passphrase1); 1431 free(passphrase2); 1432 printf("Pass phrases do not match. Try again.\n"); 1433 exit(1); 1434 } 1435 /* Destroy the other copy. */ 1436 freezero(passphrase2, strlen(passphrase2)); 1437 } 1438 1439 /* Save the file using the new passphrase. */ 1440 if ((r = sshkey_save_private(private, identity_file, passphrase1, 1441 comment, private_key_format, openssh_format_cipher, rounds)) != 0) { 1442 error_r(r, "Saving key \"%s\" failed", identity_file); 1443 freezero(passphrase1, strlen(passphrase1)); 1444 sshkey_free(private); 1445 free(comment); 1446 exit(1); 1447 } 1448 /* Destroy the passphrase and the copy of the key in memory. */ 1449 freezero(passphrase1, strlen(passphrase1)); 1450 sshkey_free(private); /* Destroys contents */ 1451 free(comment); 1452 1453 printf("Your identification has been saved with the new passphrase.\n"); 1454 exit(0); 1455 } 1456 1457 /* 1458 * Print the SSHFP RR. 1459 */ 1460 static int 1461 do_print_resource_record(struct passwd *pw, char *fname, char *hname, 1462 int print_generic, char * const *opts, size_t nopts) 1463 { 1464 struct sshkey *public; 1465 char *comment = NULL; 1466 struct stat st; 1467 int r, hash = -1; 1468 size_t i; 1469 1470 for (i = 0; i < nopts; i++) { 1471 if (strncasecmp(opts[i], "hashalg=", 8) == 0) { 1472 if ((hash = ssh_digest_alg_by_name(opts[i] + 8)) == -1) 1473 fatal("Unsupported hash algorithm"); 1474 } else { 1475 error("Invalid option \"%s\"", opts[i]); 1476 return SSH_ERR_INVALID_ARGUMENT; 1477 } 1478 } 1479 if (fname == NULL) 1480 fatal_f("no filename"); 1481 if (stat(fname, &st) == -1) { 1482 if (errno == ENOENT) 1483 return 0; 1484 fatal("%s: %s", fname, strerror(errno)); 1485 } 1486 if ((r = sshkey_load_public(fname, &public, &comment)) != 0) 1487 fatal_r(r, "Failed to read v2 public key from \"%s\"", fname); 1488 export_dns_rr(hname, public, stdout, print_generic, hash); 1489 sshkey_free(public); 1490 free(comment); 1491 return 1; 1492 } 1493 1494 /* 1495 * Change the comment of a private key file. 1496 */ 1497 static void 1498 do_change_comment(struct passwd *pw, const char *identity_comment) 1499 { 1500 char new_comment[1024], *comment, *passphrase; 1501 struct sshkey *private; 1502 struct sshkey *public; 1503 struct stat st; 1504 int r; 1505 1506 if (!have_identity) 1507 ask_filename(pw, "Enter file in which the key is"); 1508 if (stat(identity_file, &st) == -1) 1509 fatal("%s: %s", identity_file, strerror(errno)); 1510 if ((r = sshkey_load_private(identity_file, "", 1511 &private, &comment)) == 0) 1512 passphrase = xstrdup(""); 1513 else if (r != SSH_ERR_KEY_WRONG_PASSPHRASE) 1514 fatal_r(r, "Cannot load private key \"%s\"", identity_file); 1515 else { 1516 if (identity_passphrase) 1517 passphrase = xstrdup(identity_passphrase); 1518 else if (identity_new_passphrase) 1519 passphrase = xstrdup(identity_new_passphrase); 1520 else 1521 passphrase = read_passphrase("Enter passphrase: ", 1522 RP_ALLOW_STDIN); 1523 /* Try to load using the passphrase. */ 1524 if ((r = sshkey_load_private(identity_file, passphrase, 1525 &private, &comment)) != 0) { 1526 freezero(passphrase, strlen(passphrase)); 1527 fatal_r(r, "Cannot load private key \"%s\"", 1528 identity_file); 1529 } 1530 } 1531 1532 if (private->type != KEY_ED25519 && private->type != KEY_XMSS && 1533 private_key_format != SSHKEY_PRIVATE_OPENSSH) { 1534 error("Comments are only supported for keys stored in " 1535 "the new format (-o)."); 1536 explicit_bzero(passphrase, strlen(passphrase)); 1537 sshkey_free(private); 1538 exit(1); 1539 } 1540 if (comment) 1541 printf("Old comment: %s\n", comment); 1542 else 1543 printf("No existing comment\n"); 1544 1545 if (identity_comment) { 1546 strlcpy(new_comment, identity_comment, sizeof(new_comment)); 1547 } else { 1548 printf("New comment: "); 1549 fflush(stdout); 1550 if (!fgets(new_comment, sizeof(new_comment), stdin)) { 1551 explicit_bzero(passphrase, strlen(passphrase)); 1552 sshkey_free(private); 1553 exit(1); 1554 } 1555 new_comment[strcspn(new_comment, "\n")] = '\0'; 1556 } 1557 if (comment != NULL && strcmp(comment, new_comment) == 0) { 1558 printf("No change to comment\n"); 1559 free(passphrase); 1560 sshkey_free(private); 1561 free(comment); 1562 exit(0); 1563 } 1564 1565 /* Save the file using the new passphrase. */ 1566 if ((r = sshkey_save_private(private, identity_file, passphrase, 1567 new_comment, private_key_format, openssh_format_cipher, 1568 rounds)) != 0) { 1569 error_r(r, "Saving key \"%s\" failed", identity_file); 1570 freezero(passphrase, strlen(passphrase)); 1571 sshkey_free(private); 1572 free(comment); 1573 exit(1); 1574 } 1575 freezero(passphrase, strlen(passphrase)); 1576 if ((r = sshkey_from_private(private, &public)) != 0) 1577 fatal_fr(r, "sshkey_from_private"); 1578 sshkey_free(private); 1579 1580 strlcat(identity_file, ".pub", sizeof(identity_file)); 1581 if ((r = sshkey_save_public(public, identity_file, new_comment)) != 0) 1582 fatal_r(r, "Unable to save public key to %s", identity_file); 1583 sshkey_free(public); 1584 free(comment); 1585 1586 if (strlen(new_comment) > 0) 1587 printf("Comment '%s' applied\n", new_comment); 1588 else 1589 printf("Comment removed\n"); 1590 1591 exit(0); 1592 } 1593 1594 static void 1595 cert_ext_add(const char *key, const char *value, int iscrit) 1596 { 1597 cert_ext = xreallocarray(cert_ext, ncert_ext + 1, sizeof(*cert_ext)); 1598 cert_ext[ncert_ext].key = xstrdup(key); 1599 cert_ext[ncert_ext].val = value == NULL ? NULL : xstrdup(value); 1600 cert_ext[ncert_ext].crit = iscrit; 1601 ncert_ext++; 1602 } 1603 1604 /* qsort(3) comparison function for certificate extensions */ 1605 static int 1606 cert_ext_cmp(const void *_a, const void *_b) 1607 { 1608 const struct cert_ext *a = (const struct cert_ext *)_a; 1609 const struct cert_ext *b = (const struct cert_ext *)_b; 1610 int r; 1611 1612 if (a->crit != b->crit) 1613 return (a->crit < b->crit) ? -1 : 1; 1614 if ((r = strcmp(a->key, b->key)) != 0) 1615 return r; 1616 if ((a->val == NULL) != (b->val == NULL)) 1617 return (a->val == NULL) ? -1 : 1; 1618 if (a->val != NULL && (r = strcmp(a->val, b->val)) != 0) 1619 return r; 1620 return 0; 1621 } 1622 1623 #define OPTIONS_CRITICAL 1 1624 #define OPTIONS_EXTENSIONS 2 1625 static void 1626 prepare_options_buf(struct sshbuf *c, int which) 1627 { 1628 struct sshbuf *b; 1629 size_t i; 1630 int r; 1631 const struct cert_ext *ext; 1632 1633 if ((b = sshbuf_new()) == NULL) 1634 fatal_f("sshbuf_new failed"); 1635 sshbuf_reset(c); 1636 for (i = 0; i < ncert_ext; i++) { 1637 ext = &cert_ext[i]; 1638 if ((ext->crit && (which & OPTIONS_EXTENSIONS)) || 1639 (!ext->crit && (which & OPTIONS_CRITICAL))) 1640 continue; 1641 if (ext->val == NULL) { 1642 /* flag option */ 1643 debug3_f("%s", ext->key); 1644 if ((r = sshbuf_put_cstring(c, ext->key)) != 0 || 1645 (r = sshbuf_put_string(c, NULL, 0)) != 0) 1646 fatal_fr(r, "prepare flag"); 1647 } else { 1648 /* key/value option */ 1649 debug3_f("%s=%s", ext->key, ext->val); 1650 sshbuf_reset(b); 1651 if ((r = sshbuf_put_cstring(c, ext->key)) != 0 || 1652 (r = sshbuf_put_cstring(b, ext->val)) != 0 || 1653 (r = sshbuf_put_stringb(c, b)) != 0) 1654 fatal_fr(r, "prepare k/v"); 1655 } 1656 } 1657 sshbuf_free(b); 1658 } 1659 1660 static void 1661 finalise_cert_exts(void) 1662 { 1663 /* critical options */ 1664 if (certflags_command != NULL) 1665 cert_ext_add("force-command", certflags_command, 1); 1666 if (certflags_src_addr != NULL) 1667 cert_ext_add("source-address", certflags_src_addr, 1); 1668 if ((certflags_flags & CERTOPT_REQUIRE_VERIFY) != 0) 1669 cert_ext_add("verify-required", NULL, 1); 1670 /* extensions */ 1671 if ((certflags_flags & CERTOPT_X_FWD) != 0) 1672 cert_ext_add("permit-X11-forwarding", NULL, 0); 1673 if ((certflags_flags & CERTOPT_AGENT_FWD) != 0) 1674 cert_ext_add("permit-agent-forwarding", NULL, 0); 1675 if ((certflags_flags & CERTOPT_PORT_FWD) != 0) 1676 cert_ext_add("permit-port-forwarding", NULL, 0); 1677 if ((certflags_flags & CERTOPT_PTY) != 0) 1678 cert_ext_add("permit-pty", NULL, 0); 1679 if ((certflags_flags & CERTOPT_USER_RC) != 0) 1680 cert_ext_add("permit-user-rc", NULL, 0); 1681 if ((certflags_flags & CERTOPT_NO_REQUIRE_USER_PRESENCE) != 0) 1682 cert_ext_add("no-touch-required", NULL, 0); 1683 /* order lexically by key */ 1684 if (ncert_ext > 0) 1685 qsort(cert_ext, ncert_ext, sizeof(*cert_ext), cert_ext_cmp); 1686 } 1687 1688 static struct sshkey * 1689 load_pkcs11_key(char *path) 1690 { 1691 #ifdef ENABLE_PKCS11 1692 struct sshkey **keys = NULL, *public, *private = NULL; 1693 int r, i, nkeys; 1694 1695 if ((r = sshkey_load_public(path, &public, NULL)) != 0) 1696 fatal_r(r, "Couldn't load CA public key \"%s\"", path); 1697 1698 nkeys = pkcs11_add_provider(pkcs11provider, identity_passphrase, 1699 &keys, NULL); 1700 debug3_f("%d keys", nkeys); 1701 if (nkeys <= 0) 1702 fatal("cannot read public key from pkcs11"); 1703 for (i = 0; i < nkeys; i++) { 1704 if (sshkey_equal_public(public, keys[i])) { 1705 private = keys[i]; 1706 continue; 1707 } 1708 sshkey_free(keys[i]); 1709 } 1710 free(keys); 1711 sshkey_free(public); 1712 return private; 1713 #else 1714 fatal("no pkcs11 support"); 1715 #endif /* ENABLE_PKCS11 */ 1716 } 1717 1718 /* Signer for sshkey_certify_custom that uses the agent */ 1719 static int 1720 agent_signer(struct sshkey *key, u_char **sigp, size_t *lenp, 1721 const u_char *data, size_t datalen, 1722 const char *alg, const char *provider, const char *pin, 1723 u_int compat, void *ctx) 1724 { 1725 int *agent_fdp = (int *)ctx; 1726 1727 return ssh_agent_sign(*agent_fdp, key, sigp, lenp, 1728 data, datalen, alg, compat); 1729 } 1730 1731 static void 1732 do_ca_sign(struct passwd *pw, const char *ca_key_path, int prefer_agent, 1733 unsigned long long cert_serial, int cert_serial_autoinc, 1734 int argc, char **argv) 1735 { 1736 int r, i, found, agent_fd = -1; 1737 u_int n; 1738 struct sshkey *ca, *public; 1739 char valid[64], *otmp, *tmp, *cp, *out, *comment; 1740 char *ca_fp = NULL, **plist = NULL, *pin = NULL; 1741 struct ssh_identitylist *agent_ids; 1742 size_t j; 1743 struct notifier_ctx *notifier = NULL; 1744 1745 #ifdef ENABLE_PKCS11 1746 pkcs11_init(1); 1747 #endif 1748 tmp = tilde_expand_filename(ca_key_path, pw->pw_uid); 1749 if (pkcs11provider != NULL) { 1750 /* If a PKCS#11 token was specified then try to use it */ 1751 if ((ca = load_pkcs11_key(tmp)) == NULL) 1752 fatal("No PKCS#11 key matching %s found", ca_key_path); 1753 } else if (prefer_agent) { 1754 /* 1755 * Agent signature requested. Try to use agent after making 1756 * sure the public key specified is actually present in the 1757 * agent. 1758 */ 1759 if ((r = sshkey_load_public(tmp, &ca, NULL)) != 0) 1760 fatal_r(r, "Cannot load CA public key %s", tmp); 1761 if ((r = ssh_get_authentication_socket(&agent_fd)) != 0) 1762 fatal_r(r, "Cannot use public key for CA signature"); 1763 if ((r = ssh_fetch_identitylist(agent_fd, &agent_ids)) != 0) 1764 fatal_r(r, "Retrieve agent key list"); 1765 found = 0; 1766 for (j = 0; j < agent_ids->nkeys; j++) { 1767 if (sshkey_equal(ca, agent_ids->keys[j])) { 1768 found = 1; 1769 break; 1770 } 1771 } 1772 if (!found) 1773 fatal("CA key %s not found in agent", tmp); 1774 ssh_free_identitylist(agent_ids); 1775 ca->flags |= SSHKEY_FLAG_EXT; 1776 } else { 1777 /* CA key is assumed to be a private key on the filesystem */ 1778 ca = load_identity(tmp, NULL); 1779 if (sshkey_is_sk(ca) && 1780 (ca->sk_flags & SSH_SK_USER_VERIFICATION_REQD)) { 1781 if ((pin = read_passphrase("Enter PIN for CA key: ", 1782 RP_ALLOW_STDIN)) == NULL) 1783 fatal_f("couldn't read PIN"); 1784 } 1785 } 1786 free(tmp); 1787 1788 if (key_type_name != NULL) { 1789 if (sshkey_type_from_name(key_type_name) != ca->type) { 1790 fatal("CA key type %s doesn't match specified %s", 1791 sshkey_ssh_name(ca), key_type_name); 1792 } 1793 } else if (ca->type == KEY_RSA) { 1794 /* Default to a good signature algorithm */ 1795 key_type_name = "rsa-sha2-512"; 1796 } 1797 ca_fp = sshkey_fingerprint(ca, fingerprint_hash, SSH_FP_DEFAULT); 1798 1799 finalise_cert_exts(); 1800 for (i = 0; i < argc; i++) { 1801 /* Split list of principals */ 1802 n = 0; 1803 if (cert_principals != NULL) { 1804 otmp = tmp = xstrdup(cert_principals); 1805 plist = NULL; 1806 for (; (cp = strsep(&tmp, ",")) != NULL; n++) { 1807 plist = xreallocarray(plist, n + 1, sizeof(*plist)); 1808 if (*(plist[n] = xstrdup(cp)) == '\0') 1809 fatal("Empty principal name"); 1810 } 1811 free(otmp); 1812 } 1813 if (n > SSHKEY_CERT_MAX_PRINCIPALS) 1814 fatal("Too many certificate principals specified"); 1815 1816 tmp = tilde_expand_filename(argv[i], pw->pw_uid); 1817 if ((r = sshkey_load_public(tmp, &public, &comment)) != 0) 1818 fatal_r(r, "load pubkey \"%s\"", tmp); 1819 if (sshkey_is_cert(public)) 1820 fatal_f("key \"%s\" type %s cannot be certified", 1821 tmp, sshkey_type(public)); 1822 1823 /* Prepare certificate to sign */ 1824 if ((r = sshkey_to_certified(public)) != 0) 1825 fatal_r(r, "Could not upgrade key %s to certificate", tmp); 1826 public->cert->type = cert_key_type; 1827 public->cert->serial = (u_int64_t)cert_serial; 1828 public->cert->key_id = xstrdup(cert_key_id); 1829 public->cert->nprincipals = n; 1830 public->cert->principals = plist; 1831 public->cert->valid_after = cert_valid_from; 1832 public->cert->valid_before = cert_valid_to; 1833 prepare_options_buf(public->cert->critical, OPTIONS_CRITICAL); 1834 prepare_options_buf(public->cert->extensions, 1835 OPTIONS_EXTENSIONS); 1836 if ((r = sshkey_from_private(ca, 1837 &public->cert->signature_key)) != 0) 1838 fatal_r(r, "sshkey_from_private (ca key)"); 1839 1840 if (agent_fd != -1 && (ca->flags & SSHKEY_FLAG_EXT) != 0) { 1841 if ((r = sshkey_certify_custom(public, ca, 1842 key_type_name, sk_provider, NULL, agent_signer, 1843 &agent_fd)) != 0) 1844 fatal_r(r, "Couldn't certify %s via agent", tmp); 1845 } else { 1846 if (sshkey_is_sk(ca) && 1847 (ca->sk_flags & SSH_SK_USER_PRESENCE_REQD)) { 1848 notifier = notify_start(0, 1849 "Confirm user presence for key %s %s", 1850 sshkey_type(ca), ca_fp); 1851 } 1852 r = sshkey_certify(public, ca, key_type_name, 1853 sk_provider, pin); 1854 notify_complete(notifier, "User presence confirmed"); 1855 if (r != 0) 1856 fatal_r(r, "Couldn't certify key %s", tmp); 1857 } 1858 1859 if ((cp = strrchr(tmp, '.')) != NULL && strcmp(cp, ".pub") == 0) 1860 *cp = '\0'; 1861 xasprintf(&out, "%s-cert.pub", tmp); 1862 free(tmp); 1863 1864 if ((r = sshkey_save_public(public, out, comment)) != 0) { 1865 fatal_r(r, "Unable to save public key to %s", 1866 identity_file); 1867 } 1868 1869 if (!quiet) { 1870 sshkey_format_cert_validity(public->cert, 1871 valid, sizeof(valid)); 1872 logit("Signed %s key %s: id \"%s\" serial %llu%s%s " 1873 "valid %s", sshkey_cert_type(public), 1874 out, public->cert->key_id, 1875 (unsigned long long)public->cert->serial, 1876 cert_principals != NULL ? " for " : "", 1877 cert_principals != NULL ? cert_principals : "", 1878 valid); 1879 } 1880 1881 sshkey_free(public); 1882 free(out); 1883 if (cert_serial_autoinc) 1884 cert_serial++; 1885 } 1886 if (pin != NULL) 1887 freezero(pin, strlen(pin)); 1888 free(ca_fp); 1889 #ifdef ENABLE_PKCS11 1890 pkcs11_terminate(); 1891 #endif 1892 exit(0); 1893 } 1894 1895 static u_int64_t 1896 parse_relative_time(const char *s, time_t now) 1897 { 1898 int64_t mul, secs; 1899 1900 mul = *s == '-' ? -1 : 1; 1901 1902 if ((secs = convtime(s + 1)) == -1) 1903 fatal("Invalid relative certificate time %s", s); 1904 if (mul == -1 && secs > now) 1905 fatal("Certificate time %s cannot be represented", s); 1906 return now + (u_int64_t)(secs * mul); 1907 } 1908 1909 static void 1910 parse_hex_u64(const char *s, uint64_t *up) 1911 { 1912 char *ep; 1913 unsigned long long ull; 1914 1915 errno = 0; 1916 ull = strtoull(s, &ep, 16); 1917 if (*s == '\0' || *ep != '\0') 1918 fatal("Invalid certificate time: not a number"); 1919 if (errno == ERANGE && ull == ULONG_MAX) 1920 fatal_fr(SSH_ERR_SYSTEM_ERROR, "Invalid certificate time"); 1921 *up = (uint64_t)ull; 1922 } 1923 1924 static void 1925 parse_cert_times(char *timespec) 1926 { 1927 char *from, *to; 1928 time_t now = time(NULL); 1929 int64_t secs; 1930 1931 /* +timespec relative to now */ 1932 if (*timespec == '+' && strchr(timespec, ':') == NULL) { 1933 if ((secs = convtime(timespec + 1)) == -1) 1934 fatal("Invalid relative certificate life %s", timespec); 1935 cert_valid_to = now + secs; 1936 /* 1937 * Backdate certificate one minute to avoid problems on hosts 1938 * with poorly-synchronised clocks. 1939 */ 1940 cert_valid_from = ((now - 59)/ 60) * 60; 1941 return; 1942 } 1943 1944 /* 1945 * from:to, where 1946 * from := [+-]timespec | YYYYMMDD | YYYYMMDDHHMMSS | 0x... | "always" 1947 * to := [+-]timespec | YYYYMMDD | YYYYMMDDHHMMSS | 0x... | "forever" 1948 */ 1949 from = xstrdup(timespec); 1950 to = strchr(from, ':'); 1951 if (to == NULL || from == to || *(to + 1) == '\0') 1952 fatal("Invalid certificate life specification %s", timespec); 1953 *to++ = '\0'; 1954 1955 if (*from == '-' || *from == '+') 1956 cert_valid_from = parse_relative_time(from, now); 1957 else if (strcmp(from, "always") == 0) 1958 cert_valid_from = 0; 1959 else if (strncmp(from, "0x", 2) == 0) 1960 parse_hex_u64(from, &cert_valid_from); 1961 else if (parse_absolute_time(from, &cert_valid_from) != 0) 1962 fatal("Invalid from time \"%s\"", from); 1963 1964 if (*to == '-' || *to == '+') 1965 cert_valid_to = parse_relative_time(to, now); 1966 else if (strcmp(to, "forever") == 0) 1967 cert_valid_to = ~(u_int64_t)0; 1968 else if (strncmp(to, "0x", 2) == 0) 1969 parse_hex_u64(to, &cert_valid_to); 1970 else if (parse_absolute_time(to, &cert_valid_to) != 0) 1971 fatal("Invalid to time \"%s\"", to); 1972 1973 if (cert_valid_to <= cert_valid_from) 1974 fatal("Empty certificate validity interval"); 1975 free(from); 1976 } 1977 1978 static void 1979 add_cert_option(char *opt) 1980 { 1981 char *val, *cp; 1982 int iscrit = 0; 1983 1984 if (strcasecmp(opt, "clear") == 0) 1985 certflags_flags = 0; 1986 else if (strcasecmp(opt, "no-x11-forwarding") == 0) 1987 certflags_flags &= ~CERTOPT_X_FWD; 1988 else if (strcasecmp(opt, "permit-x11-forwarding") == 0) 1989 certflags_flags |= CERTOPT_X_FWD; 1990 else if (strcasecmp(opt, "no-agent-forwarding") == 0) 1991 certflags_flags &= ~CERTOPT_AGENT_FWD; 1992 else if (strcasecmp(opt, "permit-agent-forwarding") == 0) 1993 certflags_flags |= CERTOPT_AGENT_FWD; 1994 else if (strcasecmp(opt, "no-port-forwarding") == 0) 1995 certflags_flags &= ~CERTOPT_PORT_FWD; 1996 else if (strcasecmp(opt, "permit-port-forwarding") == 0) 1997 certflags_flags |= CERTOPT_PORT_FWD; 1998 else if (strcasecmp(opt, "no-pty") == 0) 1999 certflags_flags &= ~CERTOPT_PTY; 2000 else if (strcasecmp(opt, "permit-pty") == 0) 2001 certflags_flags |= CERTOPT_PTY; 2002 else if (strcasecmp(opt, "no-user-rc") == 0) 2003 certflags_flags &= ~CERTOPT_USER_RC; 2004 else if (strcasecmp(opt, "permit-user-rc") == 0) 2005 certflags_flags |= CERTOPT_USER_RC; 2006 else if (strcasecmp(opt, "touch-required") == 0) 2007 certflags_flags &= ~CERTOPT_NO_REQUIRE_USER_PRESENCE; 2008 else if (strcasecmp(opt, "no-touch-required") == 0) 2009 certflags_flags |= CERTOPT_NO_REQUIRE_USER_PRESENCE; 2010 else if (strcasecmp(opt, "no-verify-required") == 0) 2011 certflags_flags &= ~CERTOPT_REQUIRE_VERIFY; 2012 else if (strcasecmp(opt, "verify-required") == 0) 2013 certflags_flags |= CERTOPT_REQUIRE_VERIFY; 2014 else if (strncasecmp(opt, "force-command=", 14) == 0) { 2015 val = opt + 14; 2016 if (*val == '\0') 2017 fatal("Empty force-command option"); 2018 if (certflags_command != NULL) 2019 fatal("force-command already specified"); 2020 certflags_command = xstrdup(val); 2021 } else if (strncasecmp(opt, "source-address=", 15) == 0) { 2022 val = opt + 15; 2023 if (*val == '\0') 2024 fatal("Empty source-address option"); 2025 if (certflags_src_addr != NULL) 2026 fatal("source-address already specified"); 2027 if (addr_match_cidr_list(NULL, val) != 0) 2028 fatal("Invalid source-address list"); 2029 certflags_src_addr = xstrdup(val); 2030 } else if (strncasecmp(opt, "extension:", 10) == 0 || 2031 (iscrit = (strncasecmp(opt, "critical:", 9) == 0))) { 2032 val = xstrdup(strchr(opt, ':') + 1); 2033 if ((cp = strchr(val, '=')) != NULL) 2034 *cp++ = '\0'; 2035 cert_ext_add(val, cp, iscrit); 2036 free(val); 2037 } else 2038 fatal("Unsupported certificate option \"%s\"", opt); 2039 } 2040 2041 static void 2042 show_options(struct sshbuf *optbuf, int in_critical) 2043 { 2044 char *name, *arg, *hex; 2045 struct sshbuf *options, *option = NULL; 2046 int r; 2047 2048 if ((options = sshbuf_fromb(optbuf)) == NULL) 2049 fatal_f("sshbuf_fromb failed"); 2050 while (sshbuf_len(options) != 0) { 2051 sshbuf_free(option); 2052 option = NULL; 2053 if ((r = sshbuf_get_cstring(options, &name, NULL)) != 0 || 2054 (r = sshbuf_froms(options, &option)) != 0) 2055 fatal_fr(r, "parse option"); 2056 printf(" %s", name); 2057 if (!in_critical && 2058 (strcmp(name, "permit-X11-forwarding") == 0 || 2059 strcmp(name, "permit-agent-forwarding") == 0 || 2060 strcmp(name, "permit-port-forwarding") == 0 || 2061 strcmp(name, "permit-pty") == 0 || 2062 strcmp(name, "permit-user-rc") == 0 || 2063 strcmp(name, "no-touch-required") == 0)) { 2064 printf("\n"); 2065 } else if (in_critical && 2066 (strcmp(name, "force-command") == 0 || 2067 strcmp(name, "source-address") == 0)) { 2068 if ((r = sshbuf_get_cstring(option, &arg, NULL)) != 0) 2069 fatal_fr(r, "parse critical"); 2070 printf(" %s\n", arg); 2071 free(arg); 2072 } else if (in_critical && 2073 strcmp(name, "verify-required") == 0) { 2074 printf("\n"); 2075 } else if (sshbuf_len(option) > 0) { 2076 hex = sshbuf_dtob16(option); 2077 printf(" UNKNOWN OPTION: %s (len %zu)\n", 2078 hex, sshbuf_len(option)); 2079 sshbuf_reset(option); 2080 free(hex); 2081 } else 2082 printf(" UNKNOWN FLAG OPTION\n"); 2083 free(name); 2084 if (sshbuf_len(option) != 0) 2085 fatal("Option corrupt: extra data at end"); 2086 } 2087 sshbuf_free(option); 2088 sshbuf_free(options); 2089 } 2090 2091 static void 2092 print_cert(struct sshkey *key) 2093 { 2094 char valid[64], *key_fp, *ca_fp; 2095 u_int i; 2096 2097 key_fp = sshkey_fingerprint(key, fingerprint_hash, SSH_FP_DEFAULT); 2098 ca_fp = sshkey_fingerprint(key->cert->signature_key, 2099 fingerprint_hash, SSH_FP_DEFAULT); 2100 if (key_fp == NULL || ca_fp == NULL) 2101 fatal_f("sshkey_fingerprint fail"); 2102 sshkey_format_cert_validity(key->cert, valid, sizeof(valid)); 2103 2104 printf(" Type: %s %s certificate\n", sshkey_ssh_name(key), 2105 sshkey_cert_type(key)); 2106 printf(" Public key: %s %s\n", sshkey_type(key), key_fp); 2107 printf(" Signing CA: %s %s (using %s)\n", 2108 sshkey_type(key->cert->signature_key), ca_fp, 2109 key->cert->signature_type); 2110 printf(" Key ID: \"%s\"\n", key->cert->key_id); 2111 printf(" Serial: %llu\n", (unsigned long long)key->cert->serial); 2112 printf(" Valid: %s\n", valid); 2113 printf(" Principals: "); 2114 if (key->cert->nprincipals == 0) 2115 printf("(none)\n"); 2116 else { 2117 for (i = 0; i < key->cert->nprincipals; i++) 2118 printf("\n %s", 2119 key->cert->principals[i]); 2120 printf("\n"); 2121 } 2122 printf(" Critical Options: "); 2123 if (sshbuf_len(key->cert->critical) == 0) 2124 printf("(none)\n"); 2125 else { 2126 printf("\n"); 2127 show_options(key->cert->critical, 1); 2128 } 2129 printf(" Extensions: "); 2130 if (sshbuf_len(key->cert->extensions) == 0) 2131 printf("(none)\n"); 2132 else { 2133 printf("\n"); 2134 show_options(key->cert->extensions, 0); 2135 } 2136 } 2137 2138 static void 2139 do_show_cert(struct passwd *pw) 2140 { 2141 struct sshkey *key = NULL; 2142 struct stat st; 2143 int r, is_stdin = 0, ok = 0; 2144 FILE *f; 2145 char *cp, *line = NULL; 2146 const char *path; 2147 size_t linesize = 0; 2148 u_long lnum = 0; 2149 2150 if (!have_identity) 2151 ask_filename(pw, "Enter file in which the key is"); 2152 if (strcmp(identity_file, "-") != 0 && stat(identity_file, &st) == -1) 2153 fatal("%s: %s: %s", __progname, identity_file, strerror(errno)); 2154 2155 path = identity_file; 2156 if (strcmp(path, "-") == 0) { 2157 f = stdin; 2158 path = "(stdin)"; 2159 is_stdin = 1; 2160 } else if ((f = fopen(identity_file, "r")) == NULL) 2161 fatal("fopen %s: %s", identity_file, strerror(errno)); 2162 2163 while (getline(&line, &linesize, f) != -1) { 2164 lnum++; 2165 sshkey_free(key); 2166 key = NULL; 2167 /* Trim leading space and comments */ 2168 cp = line + strspn(line, " \t"); 2169 if (*cp == '#' || *cp == '\0') 2170 continue; 2171 if ((key = sshkey_new(KEY_UNSPEC)) == NULL) 2172 fatal("sshkey_new"); 2173 if ((r = sshkey_read(key, &cp)) != 0) { 2174 error_r(r, "%s:%lu: invalid key", path, lnum); 2175 continue; 2176 } 2177 if (!sshkey_is_cert(key)) { 2178 error("%s:%lu is not a certificate", path, lnum); 2179 continue; 2180 } 2181 ok = 1; 2182 if (!is_stdin && lnum == 1) 2183 printf("%s:\n", path); 2184 else 2185 printf("%s:%lu:\n", path, lnum); 2186 print_cert(key); 2187 } 2188 free(line); 2189 sshkey_free(key); 2190 fclose(f); 2191 exit(ok ? 0 : 1); 2192 } 2193 2194 static void 2195 load_krl(const char *path, struct ssh_krl **krlp) 2196 { 2197 struct sshbuf *krlbuf; 2198 int r; 2199 2200 if ((r = sshbuf_load_file(path, &krlbuf)) != 0) 2201 fatal_r(r, "Unable to load KRL %s", path); 2202 /* XXX check sigs */ 2203 if ((r = ssh_krl_from_blob(krlbuf, krlp)) != 0 || 2204 *krlp == NULL) 2205 fatal_r(r, "Invalid KRL file %s", path); 2206 sshbuf_free(krlbuf); 2207 } 2208 2209 static void 2210 hash_to_blob(const char *cp, u_char **blobp, size_t *lenp, 2211 const char *file, u_long lnum) 2212 { 2213 char *tmp; 2214 size_t tlen; 2215 struct sshbuf *b; 2216 int r; 2217 2218 if (strncmp(cp, "SHA256:", 7) != 0) 2219 fatal("%s:%lu: unsupported hash algorithm", file, lnum); 2220 cp += 7; 2221 2222 /* 2223 * OpenSSH base64 hashes omit trailing '=' 2224 * characters; put them back for decode. 2225 */ 2226 if ((tlen = strlen(cp)) >= SIZE_MAX - 5) 2227 fatal_f("hash too long: %zu bytes", tlen); 2228 tmp = xmalloc(tlen + 4 + 1); 2229 strlcpy(tmp, cp, tlen + 1); 2230 while ((tlen % 4) != 0) { 2231 tmp[tlen++] = '='; 2232 tmp[tlen] = '\0'; 2233 } 2234 if ((b = sshbuf_new()) == NULL) 2235 fatal_f("sshbuf_new failed"); 2236 if ((r = sshbuf_b64tod(b, tmp)) != 0) 2237 fatal_r(r, "%s:%lu: decode hash failed", file, lnum); 2238 free(tmp); 2239 *lenp = sshbuf_len(b); 2240 *blobp = xmalloc(*lenp); 2241 memcpy(*blobp, sshbuf_ptr(b), *lenp); 2242 sshbuf_free(b); 2243 } 2244 2245 static void 2246 update_krl_from_file(struct passwd *pw, const char *file, int wild_ca, 2247 const struct sshkey *ca, struct ssh_krl *krl) 2248 { 2249 struct sshkey *key = NULL; 2250 u_long lnum = 0; 2251 char *path, *cp, *ep, *line = NULL; 2252 u_char *blob = NULL; 2253 size_t blen = 0, linesize = 0; 2254 unsigned long long serial, serial2; 2255 int i, was_explicit_key, was_sha1, was_sha256, was_hash, r; 2256 FILE *krl_spec; 2257 2258 path = tilde_expand_filename(file, pw->pw_uid); 2259 if (strcmp(path, "-") == 0) { 2260 krl_spec = stdin; 2261 free(path); 2262 path = xstrdup("(standard input)"); 2263 } else if ((krl_spec = fopen(path, "r")) == NULL) 2264 fatal("fopen %s: %s", path, strerror(errno)); 2265 2266 if (!quiet) 2267 printf("Revoking from %s\n", path); 2268 while (getline(&line, &linesize, krl_spec) != -1) { 2269 if (linesize >= INT_MAX) { 2270 fatal_f("%s contains unparsable line, len=%zu", 2271 path, linesize); 2272 } 2273 lnum++; 2274 was_explicit_key = was_sha1 = was_sha256 = was_hash = 0; 2275 cp = line + strspn(line, " \t"); 2276 /* Trim trailing space, comments and strip \n */ 2277 for (i = 0, r = -1; cp[i] != '\0'; i++) { 2278 if (cp[i] == '#' || cp[i] == '\n') { 2279 cp[i] = '\0'; 2280 break; 2281 } 2282 if (cp[i] == ' ' || cp[i] == '\t') { 2283 /* Remember the start of a span of whitespace */ 2284 if (r == -1) 2285 r = i; 2286 } else 2287 r = -1; 2288 } 2289 if (r != -1) 2290 cp[r] = '\0'; 2291 if (*cp == '\0') 2292 continue; 2293 if (strncasecmp(cp, "serial:", 7) == 0) { 2294 if (ca == NULL && !wild_ca) { 2295 fatal("revoking certificates by serial number " 2296 "requires specification of a CA key"); 2297 } 2298 cp += 7; 2299 cp = cp + strspn(cp, " \t"); 2300 errno = 0; 2301 serial = strtoull(cp, &ep, 0); 2302 if (*cp == '\0' || (*ep != '\0' && *ep != '-')) 2303 fatal("%s:%lu: invalid serial \"%s\"", 2304 path, lnum, cp); 2305 if (errno == ERANGE && serial == ULLONG_MAX) 2306 fatal("%s:%lu: serial out of range", 2307 path, lnum); 2308 serial2 = serial; 2309 if (*ep == '-') { 2310 cp = ep + 1; 2311 errno = 0; 2312 serial2 = strtoull(cp, &ep, 0); 2313 if (*cp == '\0' || *ep != '\0') 2314 fatal("%s:%lu: invalid serial \"%s\"", 2315 path, lnum, cp); 2316 if (errno == ERANGE && serial2 == ULLONG_MAX) 2317 fatal("%s:%lu: serial out of range", 2318 path, lnum); 2319 if (serial2 <= serial) 2320 fatal("%s:%lu: invalid serial range " 2321 "%llu:%llu", path, lnum, 2322 (unsigned long long)serial, 2323 (unsigned long long)serial2); 2324 } 2325 if (ssh_krl_revoke_cert_by_serial_range(krl, 2326 ca, serial, serial2) != 0) { 2327 fatal_f("revoke serial failed"); 2328 } 2329 } else if (strncasecmp(cp, "id:", 3) == 0) { 2330 if (ca == NULL && !wild_ca) { 2331 fatal("revoking certificates by key ID " 2332 "requires specification of a CA key"); 2333 } 2334 cp += 3; 2335 cp = cp + strspn(cp, " \t"); 2336 if (ssh_krl_revoke_cert_by_key_id(krl, ca, cp) != 0) 2337 fatal_f("revoke key ID failed"); 2338 } else if (strncasecmp(cp, "hash:", 5) == 0) { 2339 cp += 5; 2340 cp = cp + strspn(cp, " \t"); 2341 hash_to_blob(cp, &blob, &blen, file, lnum); 2342 r = ssh_krl_revoke_key_sha256(krl, blob, blen); 2343 if (r != 0) 2344 fatal_fr(r, "revoke key failed"); 2345 } else { 2346 if (strncasecmp(cp, "key:", 4) == 0) { 2347 cp += 4; 2348 cp = cp + strspn(cp, " \t"); 2349 was_explicit_key = 1; 2350 } else if (strncasecmp(cp, "sha1:", 5) == 0) { 2351 cp += 5; 2352 cp = cp + strspn(cp, " \t"); 2353 was_sha1 = 1; 2354 } else if (strncasecmp(cp, "sha256:", 7) == 0) { 2355 cp += 7; 2356 cp = cp + strspn(cp, " \t"); 2357 was_sha256 = 1; 2358 /* 2359 * Just try to process the line as a key. 2360 * Parsing will fail if it isn't. 2361 */ 2362 } 2363 if ((key = sshkey_new(KEY_UNSPEC)) == NULL) 2364 fatal("sshkey_new"); 2365 if ((r = sshkey_read(key, &cp)) != 0) 2366 fatal_r(r, "%s:%lu: invalid key", path, lnum); 2367 if (was_explicit_key) 2368 r = ssh_krl_revoke_key_explicit(krl, key); 2369 else if (was_sha1) { 2370 if (sshkey_fingerprint_raw(key, 2371 SSH_DIGEST_SHA1, &blob, &blen) != 0) { 2372 fatal("%s:%lu: fingerprint failed", 2373 file, lnum); 2374 } 2375 r = ssh_krl_revoke_key_sha1(krl, blob, blen); 2376 } else if (was_sha256) { 2377 if (sshkey_fingerprint_raw(key, 2378 SSH_DIGEST_SHA256, &blob, &blen) != 0) { 2379 fatal("%s:%lu: fingerprint failed", 2380 file, lnum); 2381 } 2382 r = ssh_krl_revoke_key_sha256(krl, blob, blen); 2383 } else 2384 r = ssh_krl_revoke_key(krl, key); 2385 if (r != 0) 2386 fatal_fr(r, "revoke key failed"); 2387 freezero(blob, blen); 2388 blob = NULL; 2389 blen = 0; 2390 sshkey_free(key); 2391 } 2392 } 2393 if (strcmp(path, "-") != 0) 2394 fclose(krl_spec); 2395 free(line); 2396 free(path); 2397 } 2398 2399 static void 2400 do_gen_krl(struct passwd *pw, int updating, const char *ca_key_path, 2401 unsigned long long krl_version, const char *krl_comment, 2402 int argc, char **argv) 2403 { 2404 struct ssh_krl *krl; 2405 struct stat sb; 2406 struct sshkey *ca = NULL; 2407 int i, r, wild_ca = 0; 2408 char *tmp; 2409 struct sshbuf *kbuf; 2410 2411 if (*identity_file == '\0') 2412 fatal("KRL generation requires an output file"); 2413 if (stat(identity_file, &sb) == -1) { 2414 if (errno != ENOENT) 2415 fatal("Cannot access KRL \"%s\": %s", 2416 identity_file, strerror(errno)); 2417 if (updating) 2418 fatal("KRL \"%s\" does not exist", identity_file); 2419 } 2420 if (ca_key_path != NULL) { 2421 if (strcasecmp(ca_key_path, "none") == 0) 2422 wild_ca = 1; 2423 else { 2424 tmp = tilde_expand_filename(ca_key_path, pw->pw_uid); 2425 if ((r = sshkey_load_public(tmp, &ca, NULL)) != 0) 2426 fatal_r(r, "Cannot load CA public key %s", tmp); 2427 free(tmp); 2428 } 2429 } 2430 2431 if (updating) 2432 load_krl(identity_file, &krl); 2433 else if ((krl = ssh_krl_init()) == NULL) 2434 fatal("couldn't create KRL"); 2435 2436 if (krl_version != 0) 2437 ssh_krl_set_version(krl, krl_version); 2438 if (krl_comment != NULL) 2439 ssh_krl_set_comment(krl, krl_comment); 2440 2441 for (i = 0; i < argc; i++) 2442 update_krl_from_file(pw, argv[i], wild_ca, ca, krl); 2443 2444 if ((kbuf = sshbuf_new()) == NULL) 2445 fatal("sshbuf_new failed"); 2446 if (ssh_krl_to_blob(krl, kbuf) != 0) 2447 fatal("Couldn't generate KRL"); 2448 if ((r = sshbuf_write_file(identity_file, kbuf)) != 0) 2449 fatal("write %s: %s", identity_file, strerror(errno)); 2450 sshbuf_free(kbuf); 2451 ssh_krl_free(krl); 2452 sshkey_free(ca); 2453 } 2454 2455 static void 2456 do_check_krl(struct passwd *pw, int print_krl, int argc, char **argv) 2457 { 2458 int i, r, ret = 0; 2459 char *comment; 2460 struct ssh_krl *krl; 2461 struct sshkey *k; 2462 2463 if (*identity_file == '\0') 2464 fatal("KRL checking requires an input file"); 2465 load_krl(identity_file, &krl); 2466 if (print_krl) 2467 krl_dump(krl, stdout); 2468 for (i = 0; i < argc; i++) { 2469 if ((r = sshkey_load_public(argv[i], &k, &comment)) != 0) 2470 fatal_r(r, "Cannot load public key %s", argv[i]); 2471 r = ssh_krl_check_key(krl, k); 2472 printf("%s%s%s%s: %s\n", argv[i], 2473 *comment ? " (" : "", comment, *comment ? ")" : "", 2474 r == 0 ? "ok" : "REVOKED"); 2475 if (r != 0) 2476 ret = 1; 2477 sshkey_free(k); 2478 free(comment); 2479 } 2480 ssh_krl_free(krl); 2481 exit(ret); 2482 } 2483 2484 static struct sshkey * 2485 load_sign_key(const char *keypath, const struct sshkey *pubkey) 2486 { 2487 size_t i, slen, plen = strlen(keypath); 2488 char *privpath = xstrdup(keypath); 2489 static const char * const suffixes[] = { "-cert.pub", ".pub", NULL }; 2490 struct sshkey *ret = NULL, *privkey = NULL; 2491 int r, waspub = 0; 2492 struct stat st; 2493 2494 /* 2495 * If passed a public key filename, then try to locate the corresponding 2496 * private key. This lets us specify certificates on the command-line 2497 * and have ssh-keygen find the appropriate private key. 2498 */ 2499 for (i = 0; suffixes[i]; i++) { 2500 slen = strlen(suffixes[i]); 2501 if (plen <= slen || 2502 strcmp(privpath + plen - slen, suffixes[i]) != 0) 2503 continue; 2504 privpath[plen - slen] = '\0'; 2505 debug_f("%s looks like a public key, using private key " 2506 "path %s instead", keypath, privpath); 2507 waspub = 1; 2508 } 2509 if (waspub && stat(privpath, &st) != 0 && errno == ENOENT) 2510 fatal("No private key found for public key \"%s\"", keypath); 2511 if ((r = sshkey_load_private(privpath, "", &privkey, NULL)) != 0 && 2512 (r != SSH_ERR_KEY_WRONG_PASSPHRASE)) { 2513 debug_fr(r, "load private key \"%s\"", privpath); 2514 fatal("No private key found for \"%s\"", privpath); 2515 } else if (privkey == NULL) 2516 privkey = load_identity(privpath, NULL); 2517 2518 if (!sshkey_equal_public(pubkey, privkey)) { 2519 error("Public key %s doesn't match private %s", 2520 keypath, privpath); 2521 goto done; 2522 } 2523 if (sshkey_is_cert(pubkey) && !sshkey_is_cert(privkey)) { 2524 /* 2525 * Graft the certificate onto the private key to make 2526 * it capable of signing. 2527 */ 2528 if ((r = sshkey_to_certified(privkey)) != 0) { 2529 error_fr(r, "sshkey_to_certified"); 2530 goto done; 2531 } 2532 if ((r = sshkey_cert_copy(pubkey, privkey)) != 0) { 2533 error_fr(r, "sshkey_cert_copy"); 2534 goto done; 2535 } 2536 } 2537 /* success */ 2538 ret = privkey; 2539 privkey = NULL; 2540 done: 2541 sshkey_free(privkey); 2542 free(privpath); 2543 return ret; 2544 } 2545 2546 static int 2547 sign_one(struct sshkey *signkey, const char *filename, int fd, 2548 const char *sig_namespace, const char *hashalg, sshsig_signer *signer, 2549 void *signer_ctx) 2550 { 2551 struct sshbuf *sigbuf = NULL, *abuf = NULL; 2552 int r = SSH_ERR_INTERNAL_ERROR, wfd = -1, oerrno; 2553 char *wfile = NULL, *asig = NULL, *fp = NULL; 2554 char *pin = NULL, *prompt = NULL; 2555 2556 if (!quiet) { 2557 if (fd == STDIN_FILENO) 2558 fprintf(stderr, "Signing data on standard input\n"); 2559 else 2560 fprintf(stderr, "Signing file %s\n", filename); 2561 } 2562 if (signer == NULL && sshkey_is_sk(signkey)) { 2563 if ((signkey->sk_flags & SSH_SK_USER_VERIFICATION_REQD)) { 2564 xasprintf(&prompt, "Enter PIN for %s key: ", 2565 sshkey_type(signkey)); 2566 if ((pin = read_passphrase(prompt, 2567 RP_ALLOW_STDIN)) == NULL) 2568 fatal_f("couldn't read PIN"); 2569 } 2570 if ((signkey->sk_flags & SSH_SK_USER_PRESENCE_REQD)) { 2571 if ((fp = sshkey_fingerprint(signkey, fingerprint_hash, 2572 SSH_FP_DEFAULT)) == NULL) 2573 fatal_f("fingerprint failed"); 2574 fprintf(stderr, "Confirm user presence for key %s %s\n", 2575 sshkey_type(signkey), fp); 2576 free(fp); 2577 } 2578 } 2579 if ((r = sshsig_sign_fd(signkey, hashalg, sk_provider, pin, 2580 fd, sig_namespace, &sigbuf, signer, signer_ctx)) != 0) { 2581 error_r(r, "Signing %s failed", filename); 2582 goto out; 2583 } 2584 if ((r = sshsig_armor(sigbuf, &abuf)) != 0) { 2585 error_fr(r, "sshsig_armor"); 2586 goto out; 2587 } 2588 if ((asig = sshbuf_dup_string(abuf)) == NULL) { 2589 error_f("buffer error"); 2590 r = SSH_ERR_ALLOC_FAIL; 2591 goto out; 2592 } 2593 2594 if (fd == STDIN_FILENO) { 2595 fputs(asig, stdout); 2596 fflush(stdout); 2597 } else { 2598 xasprintf(&wfile, "%s.sig", filename); 2599 if (confirm_overwrite(wfile)) { 2600 if ((wfd = open(wfile, O_WRONLY|O_CREAT|O_TRUNC, 2601 0666)) == -1) { 2602 oerrno = errno; 2603 error("Cannot open %s: %s", 2604 wfile, strerror(errno)); 2605 errno = oerrno; 2606 r = SSH_ERR_SYSTEM_ERROR; 2607 goto out; 2608 } 2609 if (atomicio(vwrite, wfd, asig, 2610 strlen(asig)) != strlen(asig)) { 2611 oerrno = errno; 2612 error("Cannot write to %s: %s", 2613 wfile, strerror(errno)); 2614 errno = oerrno; 2615 r = SSH_ERR_SYSTEM_ERROR; 2616 goto out; 2617 } 2618 if (!quiet) { 2619 fprintf(stderr, "Write signature to %s\n", 2620 wfile); 2621 } 2622 } 2623 } 2624 /* success */ 2625 r = 0; 2626 out: 2627 free(wfile); 2628 free(prompt); 2629 free(asig); 2630 if (pin != NULL) 2631 freezero(pin, strlen(pin)); 2632 sshbuf_free(abuf); 2633 sshbuf_free(sigbuf); 2634 if (wfd != -1) 2635 close(wfd); 2636 return r; 2637 } 2638 2639 static int 2640 sig_process_opts(char * const *opts, size_t nopts, char **hashalgp, 2641 uint64_t *verify_timep, int *print_pubkey) 2642 { 2643 size_t i; 2644 time_t now; 2645 2646 if (verify_timep != NULL) 2647 *verify_timep = 0; 2648 if (print_pubkey != NULL) 2649 *print_pubkey = 0; 2650 if (hashalgp != NULL) 2651 *hashalgp = NULL; 2652 for (i = 0; i < nopts; i++) { 2653 if (hashalgp != NULL && 2654 strncasecmp(opts[i], "hashalg=", 8) == 0) { 2655 *hashalgp = xstrdup(opts[i] + 8); 2656 } else if (verify_timep && 2657 strncasecmp(opts[i], "verify-time=", 12) == 0) { 2658 if (parse_absolute_time(opts[i] + 12, 2659 verify_timep) != 0 || *verify_timep == 0) { 2660 error("Invalid \"verify-time\" option"); 2661 return SSH_ERR_INVALID_ARGUMENT; 2662 } 2663 } else if (print_pubkey && 2664 strcasecmp(opts[i], "print-pubkey") == 0) { 2665 *print_pubkey = 1; 2666 } else { 2667 error("Invalid option \"%s\"", opts[i]); 2668 return SSH_ERR_INVALID_ARGUMENT; 2669 } 2670 } 2671 if (verify_timep && *verify_timep == 0) { 2672 if ((now = time(NULL)) < 0) { 2673 error("Time is before epoch"); 2674 return SSH_ERR_INVALID_ARGUMENT; 2675 } 2676 *verify_timep = (uint64_t)now; 2677 } 2678 return 0; 2679 } 2680 2681 2682 static int 2683 sig_sign(const char *keypath, const char *sig_namespace, int require_agent, 2684 int argc, char **argv, char * const *opts, size_t nopts) 2685 { 2686 int i, fd = -1, r, ret = -1; 2687 int agent_fd = -1; 2688 struct sshkey *pubkey = NULL, *privkey = NULL, *signkey = NULL; 2689 sshsig_signer *signer = NULL; 2690 char *hashalg = NULL; 2691 2692 /* Check file arguments. */ 2693 for (i = 0; i < argc; i++) { 2694 if (strcmp(argv[i], "-") != 0) 2695 continue; 2696 if (i > 0 || argc > 1) 2697 fatal("Cannot sign mix of paths and standard input"); 2698 } 2699 2700 if (sig_process_opts(opts, nopts, &hashalg, NULL, NULL) != 0) 2701 goto done; /* error already logged */ 2702 2703 if ((r = sshkey_load_public(keypath, &pubkey, NULL)) != 0) { 2704 error_r(r, "Couldn't load public key %s", keypath); 2705 goto done; 2706 } 2707 2708 if ((r = ssh_get_authentication_socket(&agent_fd)) != 0) { 2709 if (require_agent) 2710 fatal("Couldn't get agent socket"); 2711 debug_r(r, "Couldn't get agent socket"); 2712 } else { 2713 if ((r = ssh_agent_has_key(agent_fd, pubkey)) == 0) 2714 signer = agent_signer; 2715 else { 2716 if (require_agent) 2717 fatal("Couldn't find key in agent"); 2718 debug_r(r, "Couldn't find key in agent"); 2719 } 2720 } 2721 2722 if (signer == NULL) { 2723 /* Not using agent - try to load private key */ 2724 if ((privkey = load_sign_key(keypath, pubkey)) == NULL) 2725 goto done; 2726 signkey = privkey; 2727 } else { 2728 /* Will use key in agent */ 2729 signkey = pubkey; 2730 } 2731 2732 if (argc == 0) { 2733 if ((r = sign_one(signkey, "(stdin)", STDIN_FILENO, 2734 sig_namespace, hashalg, signer, &agent_fd)) != 0) 2735 goto done; 2736 } else { 2737 for (i = 0; i < argc; i++) { 2738 if (strcmp(argv[i], "-") == 0) 2739 fd = STDIN_FILENO; 2740 else if ((fd = open(argv[i], O_RDONLY)) == -1) { 2741 error("Cannot open %s for signing: %s", 2742 argv[i], strerror(errno)); 2743 goto done; 2744 } 2745 if ((r = sign_one(signkey, argv[i], fd, sig_namespace, 2746 hashalg, signer, &agent_fd)) != 0) 2747 goto done; 2748 if (fd != STDIN_FILENO) 2749 close(fd); 2750 fd = -1; 2751 } 2752 } 2753 2754 ret = 0; 2755 done: 2756 if (fd != -1 && fd != STDIN_FILENO) 2757 close(fd); 2758 sshkey_free(pubkey); 2759 sshkey_free(privkey); 2760 free(hashalg); 2761 return ret; 2762 } 2763 2764 static int 2765 sig_verify(const char *signature, const char *sig_namespace, 2766 const char *principal, const char *allowed_keys, const char *revoked_keys, 2767 char * const *opts, size_t nopts) 2768 { 2769 int r, ret = -1; 2770 int print_pubkey = 0; 2771 struct sshbuf *sigbuf = NULL, *abuf = NULL; 2772 struct sshkey *sign_key = NULL; 2773 char *fp = NULL; 2774 struct sshkey_sig_details *sig_details = NULL; 2775 uint64_t verify_time = 0; 2776 2777 if (sig_process_opts(opts, nopts, NULL, &verify_time, 2778 &print_pubkey) != 0) 2779 goto done; /* error already logged */ 2780 2781 memset(&sig_details, 0, sizeof(sig_details)); 2782 if ((r = sshbuf_load_file(signature, &abuf)) != 0) { 2783 error_r(r, "Couldn't read signature file"); 2784 goto done; 2785 } 2786 2787 if ((r = sshsig_dearmor(abuf, &sigbuf)) != 0) { 2788 error_fr(r, "sshsig_armor"); 2789 goto done; 2790 } 2791 if ((r = sshsig_verify_fd(sigbuf, STDIN_FILENO, sig_namespace, 2792 &sign_key, &sig_details)) != 0) 2793 goto done; /* sshsig_verify() prints error */ 2794 2795 if ((fp = sshkey_fingerprint(sign_key, fingerprint_hash, 2796 SSH_FP_DEFAULT)) == NULL) 2797 fatal_f("sshkey_fingerprint failed"); 2798 debug("Valid (unverified) signature from key %s", fp); 2799 if (sig_details != NULL) { 2800 debug2_f("signature details: counter = %u, flags = 0x%02x", 2801 sig_details->sk_counter, sig_details->sk_flags); 2802 } 2803 free(fp); 2804 fp = NULL; 2805 2806 if (revoked_keys != NULL) { 2807 if ((r = sshkey_check_revoked(sign_key, revoked_keys)) != 0) { 2808 debug3_fr(r, "sshkey_check_revoked"); 2809 goto done; 2810 } 2811 } 2812 2813 if (allowed_keys != NULL && (r = sshsig_check_allowed_keys(allowed_keys, 2814 sign_key, principal, sig_namespace, verify_time)) != 0) { 2815 debug3_fr(r, "sshsig_check_allowed_keys"); 2816 goto done; 2817 } 2818 /* success */ 2819 ret = 0; 2820 done: 2821 if (!quiet) { 2822 if (ret == 0) { 2823 if ((fp = sshkey_fingerprint(sign_key, fingerprint_hash, 2824 SSH_FP_DEFAULT)) == NULL) 2825 fatal_f("sshkey_fingerprint failed"); 2826 if (principal == NULL) { 2827 printf("Good \"%s\" signature with %s key %s\n", 2828 sig_namespace, sshkey_type(sign_key), fp); 2829 2830 } else { 2831 printf("Good \"%s\" signature for %s with %s key %s\n", 2832 sig_namespace, principal, 2833 sshkey_type(sign_key), fp); 2834 } 2835 } else { 2836 printf("Could not verify signature.\n"); 2837 } 2838 } 2839 /* Print the signature key if requested */ 2840 if (ret == 0 && print_pubkey && sign_key != NULL) { 2841 if ((r = sshkey_write(sign_key, stdout)) == 0) 2842 fputc('\n', stdout); 2843 else { 2844 error_r(r, "Could not print public key.\n"); 2845 ret = -1; 2846 } 2847 } 2848 sshbuf_free(sigbuf); 2849 sshbuf_free(abuf); 2850 sshkey_free(sign_key); 2851 sshkey_sig_details_free(sig_details); 2852 free(fp); 2853 return ret; 2854 } 2855 2856 static int 2857 sig_find_principals(const char *signature, const char *allowed_keys, 2858 char * const *opts, size_t nopts) 2859 { 2860 int r, ret = -1; 2861 struct sshbuf *sigbuf = NULL, *abuf = NULL; 2862 struct sshkey *sign_key = NULL; 2863 char *principals = NULL, *cp, *tmp; 2864 uint64_t verify_time = 0; 2865 2866 if (sig_process_opts(opts, nopts, NULL, &verify_time, NULL) != 0) 2867 goto done; /* error already logged */ 2868 2869 if ((r = sshbuf_load_file(signature, &abuf)) != 0) { 2870 error_r(r, "Couldn't read signature file"); 2871 goto done; 2872 } 2873 if ((r = sshsig_dearmor(abuf, &sigbuf)) != 0) { 2874 error_fr(r, "sshsig_armor"); 2875 goto done; 2876 } 2877 if ((r = sshsig_get_pubkey(sigbuf, &sign_key)) != 0) { 2878 error_fr(r, "sshsig_get_pubkey"); 2879 goto done; 2880 } 2881 if ((r = sshsig_find_principals(allowed_keys, sign_key, 2882 verify_time, &principals)) != 0) { 2883 if (r != SSH_ERR_KEY_NOT_FOUND) 2884 error_fr(r, "sshsig_find_principal"); 2885 goto done; 2886 } 2887 ret = 0; 2888 done: 2889 if (ret == 0 ) { 2890 /* Emit matching principals one per line */ 2891 tmp = principals; 2892 while ((cp = strsep(&tmp, ",")) != NULL && *cp != '\0') 2893 puts(cp); 2894 } else { 2895 fprintf(stderr, "No principal matched.\n"); 2896 } 2897 sshbuf_free(sigbuf); 2898 sshbuf_free(abuf); 2899 sshkey_free(sign_key); 2900 free(principals); 2901 return ret; 2902 } 2903 2904 static int 2905 sig_match_principals(const char *allowed_keys, char *principal, 2906 char * const *opts, size_t nopts) 2907 { 2908 int r; 2909 char **principals = NULL; 2910 size_t i, nprincipals = 0; 2911 2912 if ((r = sig_process_opts(opts, nopts, NULL, NULL, NULL)) != 0) 2913 return r; /* error already logged */ 2914 2915 if ((r = sshsig_match_principals(allowed_keys, principal, 2916 &principals, &nprincipals)) != 0) { 2917 debug_f("match: %s", ssh_err(r)); 2918 fprintf(stderr, "No principal matched.\n"); 2919 return r; 2920 } 2921 for (i = 0; i < nprincipals; i++) { 2922 printf("%s\n", principals[i]); 2923 free(principals[i]); 2924 } 2925 free(principals); 2926 2927 return 0; 2928 } 2929 2930 static void 2931 do_moduli_gen(const char *out_file, char **opts, size_t nopts) 2932 { 2933 #ifdef WITH_OPENSSL 2934 /* Moduli generation/screening */ 2935 u_int32_t memory = 0; 2936 BIGNUM *start = NULL; 2937 int moduli_bits = 0; 2938 FILE *out; 2939 size_t i; 2940 const char *errstr; 2941 2942 /* Parse options */ 2943 for (i = 0; i < nopts; i++) { 2944 if (strncmp(opts[i], "memory=", 7) == 0) { 2945 memory = (u_int32_t)strtonum(opts[i]+7, 1, 2946 UINT_MAX, &errstr); 2947 if (errstr) { 2948 fatal("Memory limit is %s: %s", 2949 errstr, opts[i]+7); 2950 } 2951 } else if (strncmp(opts[i], "start=", 6) == 0) { 2952 /* XXX - also compare length against bits */ 2953 if (BN_hex2bn(&start, opts[i]+6) == 0) 2954 fatal("Invalid start point."); 2955 } else if (strncmp(opts[i], "bits=", 5) == 0) { 2956 moduli_bits = (int)strtonum(opts[i]+5, 1, 2957 INT_MAX, &errstr); 2958 if (errstr) { 2959 fatal("Invalid number: %s (%s)", 2960 opts[i]+12, errstr); 2961 } 2962 } else { 2963 fatal("Option \"%s\" is unsupported for moduli " 2964 "generation", opts[i]); 2965 } 2966 } 2967 2968 if ((out = fopen(out_file, "w")) == NULL) { 2969 fatal("Couldn't open modulus candidate file \"%s\": %s", 2970 out_file, strerror(errno)); 2971 } 2972 setvbuf(out, NULL, _IOLBF, 0); 2973 2974 if (moduli_bits == 0) 2975 moduli_bits = DEFAULT_BITS; 2976 if (gen_candidates(out, memory, moduli_bits, start) != 0) 2977 fatal("modulus candidate generation failed"); 2978 #else /* WITH_OPENSSL */ 2979 fatal("Moduli generation is not supported"); 2980 #endif /* WITH_OPENSSL */ 2981 } 2982 2983 static void 2984 do_moduli_screen(const char *out_file, char **opts, size_t nopts) 2985 { 2986 #ifdef WITH_OPENSSL 2987 /* Moduli generation/screening */ 2988 char *checkpoint = NULL; 2989 u_int32_t generator_wanted = 0; 2990 unsigned long start_lineno = 0, lines_to_process = 0; 2991 int prime_tests = 0; 2992 FILE *out, *in = stdin; 2993 size_t i; 2994 const char *errstr; 2995 2996 /* Parse options */ 2997 for (i = 0; i < nopts; i++) { 2998 if (strncmp(opts[i], "lines=", 6) == 0) { 2999 lines_to_process = strtoul(opts[i]+6, NULL, 10); 3000 } else if (strncmp(opts[i], "start-line=", 11) == 0) { 3001 start_lineno = strtoul(opts[i]+11, NULL, 10); 3002 } else if (strncmp(opts[i], "checkpoint=", 11) == 0) { 3003 free(checkpoint); 3004 checkpoint = xstrdup(opts[i]+11); 3005 } else if (strncmp(opts[i], "generator=", 10) == 0) { 3006 generator_wanted = (u_int32_t)strtonum( 3007 opts[i]+10, 1, UINT_MAX, &errstr); 3008 if (errstr != NULL) { 3009 fatal("Generator invalid: %s (%s)", 3010 opts[i]+10, errstr); 3011 } 3012 } else if (strncmp(opts[i], "prime-tests=", 12) == 0) { 3013 prime_tests = (int)strtonum(opts[i]+12, 1, 3014 INT_MAX, &errstr); 3015 if (errstr) { 3016 fatal("Invalid number: %s (%s)", 3017 opts[i]+12, errstr); 3018 } 3019 } else { 3020 fatal("Option \"%s\" is unsupported for moduli " 3021 "screening", opts[i]); 3022 } 3023 } 3024 3025 if (have_identity && strcmp(identity_file, "-") != 0) { 3026 if ((in = fopen(identity_file, "r")) == NULL) { 3027 fatal("Couldn't open modulus candidate " 3028 "file \"%s\": %s", identity_file, 3029 strerror(errno)); 3030 } 3031 } 3032 3033 if ((out = fopen(out_file, "a")) == NULL) { 3034 fatal("Couldn't open moduli file \"%s\": %s", 3035 out_file, strerror(errno)); 3036 } 3037 setvbuf(out, NULL, _IOLBF, 0); 3038 if (prime_test(in, out, prime_tests == 0 ? 100 : prime_tests, 3039 generator_wanted, checkpoint, 3040 start_lineno, lines_to_process) != 0) 3041 fatal("modulus screening failed"); 3042 if (in != stdin) 3043 (void)fclose(in); 3044 free(checkpoint); 3045 #else /* WITH_OPENSSL */ 3046 fatal("Moduli screening is not supported"); 3047 #endif /* WITH_OPENSSL */ 3048 } 3049 3050 /* Read and confirm a passphrase */ 3051 static char * 3052 read_check_passphrase(const char *prompt1, const char *prompt2, 3053 const char *retry_prompt) 3054 { 3055 char *passphrase1, *passphrase2; 3056 3057 for (;;) { 3058 passphrase1 = read_passphrase(prompt1, RP_ALLOW_STDIN); 3059 passphrase2 = read_passphrase(prompt2, RP_ALLOW_STDIN); 3060 if (strcmp(passphrase1, passphrase2) == 0) { 3061 freezero(passphrase2, strlen(passphrase2)); 3062 return passphrase1; 3063 } 3064 /* The passphrases do not match. Clear them and retry. */ 3065 freezero(passphrase1, strlen(passphrase1)); 3066 freezero(passphrase2, strlen(passphrase2)); 3067 fputs(retry_prompt, stdout); 3068 fputc('\n', stdout); 3069 fflush(stdout); 3070 } 3071 /* NOTREACHED */ 3072 return NULL; 3073 } 3074 3075 static char * 3076 private_key_passphrase(void) 3077 { 3078 if (identity_passphrase) 3079 return xstrdup(identity_passphrase); 3080 if (identity_new_passphrase) 3081 return xstrdup(identity_new_passphrase); 3082 3083 return read_check_passphrase( 3084 "Enter passphrase (empty for no passphrase): ", 3085 "Enter same passphrase again: ", 3086 "Passphrases do not match. Try again."); 3087 } 3088 3089 static char * 3090 sk_suffix(const char *application, const uint8_t *user, size_t userlen) 3091 { 3092 char *ret, *cp; 3093 size_t slen, i; 3094 3095 /* Trim off URL-like preamble */ 3096 if (strncmp(application, "ssh://", 6) == 0) 3097 ret = xstrdup(application + 6); 3098 else if (strncmp(application, "ssh:", 4) == 0) 3099 ret = xstrdup(application + 4); 3100 else 3101 ret = xstrdup(application); 3102 3103 /* Count trailing zeros in user */ 3104 for (i = 0; i < userlen; i++) { 3105 if (user[userlen - i - 1] != 0) 3106 break; 3107 } 3108 if (i >= userlen) 3109 return ret; /* user-id was default all-zeros */ 3110 3111 /* Append user-id, escaping non-UTF-8 characters */ 3112 slen = userlen - i; 3113 if (asmprintf(&cp, INT_MAX, NULL, "%.*s", (int)slen, user) == -1) 3114 fatal_f("asmprintf failed"); 3115 /* Don't emit a user-id that contains path or control characters */ 3116 if (strchr(cp, '/') != NULL || strstr(cp, "..") != NULL || 3117 strchr(cp, '\\') != NULL) { 3118 free(cp); 3119 cp = tohex(user, slen); 3120 } 3121 xextendf(&ret, "_", "%s", cp); 3122 free(cp); 3123 return ret; 3124 } 3125 3126 static int 3127 do_download_sk(const char *skprovider, const char *device) 3128 { 3129 struct sshsk_resident_key **srks; 3130 size_t nsrks, i; 3131 int r, ret = -1; 3132 char *fp, *pin = NULL, *pass = NULL, *path, *pubpath; 3133 const char *ext; 3134 struct sshkey *key; 3135 3136 if (skprovider == NULL) 3137 fatal("Cannot download keys without provider"); 3138 3139 pin = read_passphrase("Enter PIN for authenticator: ", RP_ALLOW_STDIN); 3140 if (!quiet) { 3141 printf("You may need to touch your authenticator " 3142 "to authorize key download.\n"); 3143 } 3144 if ((r = sshsk_load_resident(skprovider, device, pin, 0, 3145 &srks, &nsrks)) != 0) { 3146 if (pin != NULL) 3147 freezero(pin, strlen(pin)); 3148 error_r(r, "Unable to load resident keys"); 3149 return -1; 3150 } 3151 if (nsrks == 0) 3152 logit("No keys to download"); 3153 if (pin != NULL) 3154 freezero(pin, strlen(pin)); 3155 3156 for (i = 0; i < nsrks; i++) { 3157 key = srks[i]->key; 3158 if (key->type != KEY_ECDSA_SK && key->type != KEY_ED25519_SK) { 3159 error("Unsupported key type %s (%d)", 3160 sshkey_type(key), key->type); 3161 continue; 3162 } 3163 if ((fp = sshkey_fingerprint(key, fingerprint_hash, 3164 SSH_FP_DEFAULT)) == NULL) 3165 fatal_f("sshkey_fingerprint failed"); 3166 debug_f("key %zu: %s %s %s (flags 0x%02x)", i, 3167 sshkey_type(key), fp, key->sk_application, key->sk_flags); 3168 ext = sk_suffix(key->sk_application, 3169 srks[i]->user_id, srks[i]->user_id_len); 3170 xasprintf(&path, "id_%s_rk%s%s", 3171 key->type == KEY_ECDSA_SK ? "ecdsa_sk" : "ed25519_sk", 3172 *ext == '\0' ? "" : "_", ext); 3173 3174 /* If the file already exists, ask the user to confirm. */ 3175 if (!confirm_overwrite(path)) { 3176 free(path); 3177 break; 3178 } 3179 3180 /* Save the key with the application string as the comment */ 3181 if (pass == NULL) 3182 pass = private_key_passphrase(); 3183 if ((r = sshkey_save_private(key, path, pass, 3184 key->sk_application, private_key_format, 3185 openssh_format_cipher, rounds)) != 0) { 3186 error_r(r, "Saving key \"%s\" failed", path); 3187 free(path); 3188 break; 3189 } 3190 if (!quiet) { 3191 printf("Saved %s key%s%s to %s\n", sshkey_type(key), 3192 *ext != '\0' ? " " : "", 3193 *ext != '\0' ? key->sk_application : "", 3194 path); 3195 } 3196 3197 /* Save public key too */ 3198 xasprintf(&pubpath, "%s.pub", path); 3199 free(path); 3200 if ((r = sshkey_save_public(key, pubpath, 3201 key->sk_application)) != 0) { 3202 error_r(r, "Saving public key \"%s\" failed", pubpath); 3203 free(pubpath); 3204 break; 3205 } 3206 free(pubpath); 3207 } 3208 3209 if (i >= nsrks) 3210 ret = 0; /* success */ 3211 if (pass != NULL) 3212 freezero(pass, strlen(pass)); 3213 sshsk_free_resident_keys(srks, nsrks); 3214 return ret; 3215 } 3216 3217 static void 3218 save_attestation(struct sshbuf *attest, const char *path) 3219 { 3220 mode_t omask; 3221 int r; 3222 3223 if (path == NULL) 3224 return; /* nothing to do */ 3225 if (attest == NULL || sshbuf_len(attest) == 0) 3226 fatal("Enrollment did not return attestation data"); 3227 omask = umask(077); 3228 r = sshbuf_write_file(path, attest); 3229 umask(omask); 3230 if (r != 0) 3231 fatal_r(r, "Unable to write attestation data \"%s\"", path); 3232 if (!quiet) 3233 printf("Your FIDO attestation certificate has been saved in " 3234 "%s\n", path); 3235 } 3236 3237 static int 3238 confirm_sk_overwrite(const char *application, const char *user) 3239 { 3240 char yesno[3]; 3241 3242 printf("A resident key scoped to '%s' with user id '%s' already " 3243 "exists.\n", application == NULL ? "ssh:" : application, 3244 user == NULL ? "null" : user); 3245 printf("Overwrite key in token (y/n)? "); 3246 fflush(stdout); 3247 if (fgets(yesno, sizeof(yesno), stdin) == NULL) 3248 return 0; 3249 if (yesno[0] != 'y' && yesno[0] != 'Y') 3250 return 0; 3251 return 1; 3252 } 3253 3254 static void 3255 usage(void) 3256 { 3257 fprintf(stderr, 3258 "usage: ssh-keygen [-q] [-a rounds] [-b bits] [-C comment] [-f output_keyfile]\n" 3259 " [-m format] [-N new_passphrase] [-O option]\n" 3260 " [-t dsa | ecdsa | ecdsa-sk | ed25519 | ed25519-sk | rsa]\n" 3261 " [-w provider] [-Z cipher]\n" 3262 " ssh-keygen -p [-a rounds] [-f keyfile] [-m format] [-N new_passphrase]\n" 3263 " [-P old_passphrase] [-Z cipher]\n" 3264 #ifdef WITH_OPENSSL 3265 " ssh-keygen -i [-f input_keyfile] [-m key_format]\n" 3266 " ssh-keygen -e [-f input_keyfile] [-m key_format]\n" 3267 #endif 3268 " ssh-keygen -y [-f input_keyfile]\n" 3269 " ssh-keygen -c [-a rounds] [-C comment] [-f keyfile] [-P passphrase]\n" 3270 " ssh-keygen -l [-v] [-E fingerprint_hash] [-f input_keyfile]\n" 3271 " ssh-keygen -B [-f input_keyfile]\n"); 3272 #ifdef ENABLE_PKCS11 3273 fprintf(stderr, 3274 " ssh-keygen -D pkcs11\n"); 3275 #endif 3276 fprintf(stderr, 3277 " ssh-keygen -F hostname [-lv] [-f known_hosts_file]\n" 3278 " ssh-keygen -H [-f known_hosts_file]\n" 3279 " ssh-keygen -K [-a rounds] [-w provider]\n" 3280 " ssh-keygen -R hostname [-f known_hosts_file]\n" 3281 " ssh-keygen -r hostname [-g] [-f input_keyfile]\n" 3282 #ifdef WITH_OPENSSL 3283 " ssh-keygen -M generate [-O option] output_file\n" 3284 " ssh-keygen -M screen [-f input_file] [-O option] output_file\n" 3285 #endif 3286 " ssh-keygen -I certificate_identity -s ca_key [-hU] [-D pkcs11_provider]\n" 3287 " [-n principals] [-O option] [-V validity_interval]\n" 3288 " [-z serial_number] file ...\n" 3289 " ssh-keygen -L [-f input_keyfile]\n" 3290 " ssh-keygen -A [-a rounds] [-f prefix_path]\n" 3291 " ssh-keygen -k -f krl_file [-u] [-s ca_public] [-z version_number]\n" 3292 " file ...\n" 3293 " ssh-keygen -Q [-l] -f krl_file [file ...]\n" 3294 " ssh-keygen -Y find-principals -s signature_file -f allowed_signers_file\n" 3295 " ssh-keygen -Y match-principals -I signer_identity -f allowed_signers_file\n" 3296 " ssh-keygen -Y check-novalidate -n namespace -s signature_file\n" 3297 " ssh-keygen -Y sign -f key_file -n namespace file [-O option] ...\n" 3298 " ssh-keygen -Y verify -f allowed_signers_file -I signer_identity\n" 3299 " -n namespace -s signature_file [-r krl_file] [-O option]\n"); 3300 exit(1); 3301 } 3302 3303 /* 3304 * Main program for key management. 3305 */ 3306 int 3307 main(int argc, char **argv) 3308 { 3309 char comment[1024], *passphrase = NULL; 3310 char *rr_hostname = NULL, *ep, *fp, *ra; 3311 struct sshkey *private, *public; 3312 struct passwd *pw; 3313 int r, opt, type; 3314 int change_passphrase = 0, change_comment = 0, show_cert = 0; 3315 int find_host = 0, delete_host = 0, hash_hosts = 0; 3316 int gen_all_hostkeys = 0, gen_krl = 0, update_krl = 0, check_krl = 0; 3317 int prefer_agent = 0, convert_to = 0, convert_from = 0; 3318 int print_public = 0, print_generic = 0, cert_serial_autoinc = 0; 3319 int do_gen_candidates = 0, do_screen_candidates = 0, download_sk = 0; 3320 unsigned long long cert_serial = 0; 3321 char *identity_comment = NULL, *ca_key_path = NULL, **opts = NULL; 3322 char *sk_application = NULL, *sk_device = NULL, *sk_user = NULL; 3323 char *sk_attestation_path = NULL; 3324 struct sshbuf *challenge = NULL, *attest = NULL; 3325 size_t i, nopts = 0; 3326 u_int32_t bits = 0; 3327 uint8_t sk_flags = SSH_SK_USER_PRESENCE_REQD; 3328 const char *errstr; 3329 int log_level = SYSLOG_LEVEL_INFO; 3330 char *sign_op = NULL; 3331 3332 extern int optind; 3333 extern char *optarg; 3334 3335 /* Ensure that fds 0, 1 and 2 are open or directed to /dev/null */ 3336 sanitise_stdfd(); 3337 3338 #ifdef WITH_OPENSSL 3339 OpenSSL_add_all_algorithms(); 3340 #endif 3341 log_init(argv[0], SYSLOG_LEVEL_INFO, SYSLOG_FACILITY_USER, 1); 3342 3343 setlocale(LC_CTYPE, ""); 3344 3345 /* we need this for the home * directory. */ 3346 pw = getpwuid(getuid()); 3347 if (!pw) 3348 fatal("No user exists for uid %lu", (u_long)getuid()); 3349 pw = pwcopy(pw); 3350 if (gethostname(hostname, sizeof(hostname)) == -1) 3351 fatal("gethostname: %s", strerror(errno)); 3352 3353 sk_provider = getenv("SSH_SK_PROVIDER"); 3354 3355 /* Remaining characters: dGjJSTWx */ 3356 while ((opt = getopt(argc, argv, "ABHKLQUXceghiklopquvy" 3357 "C:D:E:F:I:M:N:O:P:R:V:Y:Z:" 3358 "a:b:f:g:m:n:r:s:t:w:z:")) != -1) { 3359 switch (opt) { 3360 case 'A': 3361 gen_all_hostkeys = 1; 3362 break; 3363 case 'b': 3364 bits = (u_int32_t)strtonum(optarg, 1, UINT32_MAX, 3365 &errstr); 3366 if (errstr) 3367 fatal("Bits has bad value %s (%s)", 3368 optarg, errstr); 3369 break; 3370 case 'E': 3371 fingerprint_hash = ssh_digest_alg_by_name(optarg); 3372 if (fingerprint_hash == -1) 3373 fatal("Invalid hash algorithm \"%s\"", optarg); 3374 break; 3375 case 'F': 3376 find_host = 1; 3377 rr_hostname = optarg; 3378 break; 3379 case 'H': 3380 hash_hosts = 1; 3381 break; 3382 case 'I': 3383 cert_key_id = optarg; 3384 break; 3385 case 'R': 3386 delete_host = 1; 3387 rr_hostname = optarg; 3388 break; 3389 case 'L': 3390 show_cert = 1; 3391 break; 3392 case 'l': 3393 print_fingerprint = 1; 3394 break; 3395 case 'B': 3396 print_bubblebabble = 1; 3397 break; 3398 case 'm': 3399 if (strcasecmp(optarg, "RFC4716") == 0 || 3400 strcasecmp(optarg, "ssh2") == 0) { 3401 convert_format = FMT_RFC4716; 3402 break; 3403 } 3404 if (strcasecmp(optarg, "PKCS8") == 0) { 3405 convert_format = FMT_PKCS8; 3406 private_key_format = SSHKEY_PRIVATE_PKCS8; 3407 break; 3408 } 3409 if (strcasecmp(optarg, "PEM") == 0) { 3410 convert_format = FMT_PEM; 3411 private_key_format = SSHKEY_PRIVATE_PEM; 3412 break; 3413 } 3414 fatal("Unsupported conversion format \"%s\"", optarg); 3415 case 'n': 3416 cert_principals = optarg; 3417 break; 3418 case 'o': 3419 /* no-op; new format is already the default */ 3420 break; 3421 case 'p': 3422 change_passphrase = 1; 3423 break; 3424 case 'c': 3425 change_comment = 1; 3426 break; 3427 case 'f': 3428 if (strlcpy(identity_file, optarg, 3429 sizeof(identity_file)) >= sizeof(identity_file)) 3430 fatal("Identity filename too long"); 3431 have_identity = 1; 3432 break; 3433 case 'g': 3434 print_generic = 1; 3435 break; 3436 case 'K': 3437 download_sk = 1; 3438 break; 3439 case 'P': 3440 identity_passphrase = optarg; 3441 break; 3442 case 'N': 3443 identity_new_passphrase = optarg; 3444 break; 3445 case 'Q': 3446 check_krl = 1; 3447 break; 3448 case 'O': 3449 opts = xrecallocarray(opts, nopts, nopts + 1, 3450 sizeof(*opts)); 3451 opts[nopts++] = xstrdup(optarg); 3452 break; 3453 case 'Z': 3454 openssh_format_cipher = optarg; 3455 if (cipher_by_name(openssh_format_cipher) == NULL) 3456 fatal("Invalid OpenSSH-format cipher '%s'", 3457 openssh_format_cipher); 3458 break; 3459 case 'C': 3460 identity_comment = optarg; 3461 break; 3462 case 'q': 3463 quiet = 1; 3464 break; 3465 case 'e': 3466 /* export key */ 3467 convert_to = 1; 3468 break; 3469 case 'h': 3470 cert_key_type = SSH2_CERT_TYPE_HOST; 3471 certflags_flags = 0; 3472 break; 3473 case 'k': 3474 gen_krl = 1; 3475 break; 3476 case 'i': 3477 case 'X': 3478 /* import key */ 3479 convert_from = 1; 3480 break; 3481 case 'y': 3482 print_public = 1; 3483 break; 3484 case 's': 3485 ca_key_path = optarg; 3486 break; 3487 case 't': 3488 key_type_name = optarg; 3489 break; 3490 case 'D': 3491 pkcs11provider = optarg; 3492 break; 3493 case 'U': 3494 prefer_agent = 1; 3495 break; 3496 case 'u': 3497 update_krl = 1; 3498 break; 3499 case 'v': 3500 if (log_level == SYSLOG_LEVEL_INFO) 3501 log_level = SYSLOG_LEVEL_DEBUG1; 3502 else { 3503 if (log_level >= SYSLOG_LEVEL_DEBUG1 && 3504 log_level < SYSLOG_LEVEL_DEBUG3) 3505 log_level++; 3506 } 3507 break; 3508 case 'r': 3509 rr_hostname = optarg; 3510 break; 3511 case 'a': 3512 rounds = (int)strtonum(optarg, 1, INT_MAX, &errstr); 3513 if (errstr) 3514 fatal("Invalid number: %s (%s)", 3515 optarg, errstr); 3516 break; 3517 case 'V': 3518 parse_cert_times(optarg); 3519 break; 3520 case 'Y': 3521 sign_op = optarg; 3522 break; 3523 case 'w': 3524 sk_provider = optarg; 3525 break; 3526 case 'z': 3527 errno = 0; 3528 if (*optarg == '+') { 3529 cert_serial_autoinc = 1; 3530 optarg++; 3531 } 3532 cert_serial = strtoull(optarg, &ep, 10); 3533 if (*optarg < '0' || *optarg > '9' || *ep != '\0' || 3534 (errno == ERANGE && cert_serial == ULLONG_MAX)) 3535 fatal("Invalid serial number \"%s\"", optarg); 3536 break; 3537 case 'M': 3538 if (strcmp(optarg, "generate") == 0) 3539 do_gen_candidates = 1; 3540 else if (strcmp(optarg, "screen") == 0) 3541 do_screen_candidates = 1; 3542 else 3543 fatal("Unsupported moduli option %s", optarg); 3544 break; 3545 default: 3546 usage(); 3547 } 3548 } 3549 3550 if (sk_provider == NULL) 3551 sk_provider = "internal"; 3552 3553 /* reinit */ 3554 log_init(argv[0], log_level, SYSLOG_FACILITY_USER, 1); 3555 3556 argv += optind; 3557 argc -= optind; 3558 3559 if (sign_op != NULL) { 3560 if (strncmp(sign_op, "find-principals", 15) == 0) { 3561 if (ca_key_path == NULL) { 3562 error("Too few arguments for find-principals:" 3563 "missing signature file"); 3564 exit(1); 3565 } 3566 if (!have_identity) { 3567 error("Too few arguments for find-principals:" 3568 "missing allowed keys file"); 3569 exit(1); 3570 } 3571 return sig_find_principals(ca_key_path, identity_file, 3572 opts, nopts); 3573 } else if (strncmp(sign_op, "match-principals", 16) == 0) { 3574 if (!have_identity) { 3575 error("Too few arguments for match-principals:" 3576 "missing allowed keys file"); 3577 exit(1); 3578 } 3579 if (cert_key_id == NULL) { 3580 error("Too few arguments for match-principals: " 3581 "missing principal ID"); 3582 exit(1); 3583 } 3584 return sig_match_principals(identity_file, cert_key_id, 3585 opts, nopts); 3586 } else if (strncmp(sign_op, "sign", 4) == 0) { 3587 /* NB. cert_principals is actually namespace, via -n */ 3588 if (cert_principals == NULL || 3589 *cert_principals == '\0') { 3590 error("Too few arguments for sign: " 3591 "missing namespace"); 3592 exit(1); 3593 } 3594 if (!have_identity) { 3595 error("Too few arguments for sign: " 3596 "missing key"); 3597 exit(1); 3598 } 3599 return sig_sign(identity_file, cert_principals, 3600 prefer_agent, argc, argv, opts, nopts); 3601 } else if (strncmp(sign_op, "check-novalidate", 16) == 0) { 3602 /* NB. cert_principals is actually namespace, via -n */ 3603 if (cert_principals == NULL || 3604 *cert_principals == '\0') { 3605 error("Too few arguments for check-novalidate: " 3606 "missing namespace"); 3607 exit(1); 3608 } 3609 if (ca_key_path == NULL) { 3610 error("Too few arguments for check-novalidate: " 3611 "missing signature file"); 3612 exit(1); 3613 } 3614 return sig_verify(ca_key_path, cert_principals, 3615 NULL, NULL, NULL, opts, nopts); 3616 } else if (strncmp(sign_op, "verify", 6) == 0) { 3617 /* NB. cert_principals is actually namespace, via -n */ 3618 if (cert_principals == NULL || 3619 *cert_principals == '\0') { 3620 error("Too few arguments for verify: " 3621 "missing namespace"); 3622 exit(1); 3623 } 3624 if (ca_key_path == NULL) { 3625 error("Too few arguments for verify: " 3626 "missing signature file"); 3627 exit(1); 3628 } 3629 if (!have_identity) { 3630 error("Too few arguments for sign: " 3631 "missing allowed keys file"); 3632 exit(1); 3633 } 3634 if (cert_key_id == NULL) { 3635 error("Too few arguments for verify: " 3636 "missing principal identity"); 3637 exit(1); 3638 } 3639 return sig_verify(ca_key_path, cert_principals, 3640 cert_key_id, identity_file, rr_hostname, 3641 opts, nopts); 3642 } 3643 error("Unsupported operation for -Y: \"%s\"", sign_op); 3644 usage(); 3645 /* NOTREACHED */ 3646 } 3647 3648 if (ca_key_path != NULL) { 3649 if (argc < 1 && !gen_krl) { 3650 error("Too few arguments."); 3651 usage(); 3652 } 3653 } else if (argc > 0 && !gen_krl && !check_krl && 3654 !do_gen_candidates && !do_screen_candidates) { 3655 error("Too many arguments."); 3656 usage(); 3657 } 3658 if (change_passphrase && change_comment) { 3659 error("Can only have one of -p and -c."); 3660 usage(); 3661 } 3662 if (print_fingerprint && (delete_host || hash_hosts)) { 3663 error("Cannot use -l with -H or -R."); 3664 usage(); 3665 } 3666 if (gen_krl) { 3667 do_gen_krl(pw, update_krl, ca_key_path, 3668 cert_serial, identity_comment, argc, argv); 3669 return (0); 3670 } 3671 if (check_krl) { 3672 do_check_krl(pw, print_fingerprint, argc, argv); 3673 return (0); 3674 } 3675 if (ca_key_path != NULL) { 3676 if (cert_key_id == NULL) 3677 fatal("Must specify key id (-I) when certifying"); 3678 for (i = 0; i < nopts; i++) 3679 add_cert_option(opts[i]); 3680 do_ca_sign(pw, ca_key_path, prefer_agent, 3681 cert_serial, cert_serial_autoinc, argc, argv); 3682 } 3683 if (show_cert) 3684 do_show_cert(pw); 3685 if (delete_host || hash_hosts || find_host) { 3686 do_known_hosts(pw, rr_hostname, find_host, 3687 delete_host, hash_hosts); 3688 } 3689 if (pkcs11provider != NULL) 3690 do_download(pw); 3691 if (download_sk) { 3692 for (i = 0; i < nopts; i++) { 3693 if (strncasecmp(opts[i], "device=", 7) == 0) { 3694 sk_device = xstrdup(opts[i] + 7); 3695 } else { 3696 fatal("Option \"%s\" is unsupported for " 3697 "FIDO authenticator download", opts[i]); 3698 } 3699 } 3700 return do_download_sk(sk_provider, sk_device); 3701 } 3702 if (print_fingerprint || print_bubblebabble) 3703 do_fingerprint(pw); 3704 if (change_passphrase) 3705 do_change_passphrase(pw); 3706 if (change_comment) 3707 do_change_comment(pw, identity_comment); 3708 #ifdef WITH_OPENSSL 3709 if (convert_to) 3710 do_convert_to(pw); 3711 if (convert_from) 3712 do_convert_from(pw); 3713 #else /* WITH_OPENSSL */ 3714 if (convert_to || convert_from) 3715 fatal("key conversion disabled at compile time"); 3716 #endif /* WITH_OPENSSL */ 3717 if (print_public) 3718 do_print_public(pw); 3719 if (rr_hostname != NULL) { 3720 unsigned int n = 0; 3721 3722 if (have_identity) { 3723 n = do_print_resource_record(pw, identity_file, 3724 rr_hostname, print_generic, opts, nopts); 3725 if (n == 0) 3726 fatal("%s: %s", identity_file, strerror(errno)); 3727 exit(0); 3728 } else { 3729 3730 n += do_print_resource_record(pw, 3731 _PATH_HOST_RSA_KEY_FILE, rr_hostname, 3732 print_generic, opts, nopts); 3733 n += do_print_resource_record(pw, 3734 _PATH_HOST_DSA_KEY_FILE, rr_hostname, 3735 print_generic, opts, nopts); 3736 n += do_print_resource_record(pw, 3737 _PATH_HOST_ECDSA_KEY_FILE, rr_hostname, 3738 print_generic, opts, nopts); 3739 n += do_print_resource_record(pw, 3740 _PATH_HOST_ED25519_KEY_FILE, rr_hostname, 3741 print_generic, opts, nopts); 3742 n += do_print_resource_record(pw, 3743 _PATH_HOST_XMSS_KEY_FILE, rr_hostname, 3744 print_generic, opts, nopts); 3745 if (n == 0) 3746 fatal("no keys found."); 3747 exit(0); 3748 } 3749 } 3750 3751 if (do_gen_candidates || do_screen_candidates) { 3752 if (argc <= 0) 3753 fatal("No output file specified"); 3754 else if (argc > 1) 3755 fatal("Too many output files specified"); 3756 } 3757 if (do_gen_candidates) { 3758 do_moduli_gen(argv[0], opts, nopts); 3759 return 0; 3760 } 3761 if (do_screen_candidates) { 3762 do_moduli_screen(argv[0], opts, nopts); 3763 return 0; 3764 } 3765 3766 if (gen_all_hostkeys) { 3767 do_gen_all_hostkeys(pw); 3768 return (0); 3769 } 3770 3771 if (key_type_name == NULL) 3772 key_type_name = DEFAULT_KEY_TYPE_NAME; 3773 3774 type = sshkey_type_from_name(key_type_name); 3775 type_bits_valid(type, key_type_name, &bits); 3776 3777 if (!quiet) 3778 printf("Generating public/private %s key pair.\n", 3779 key_type_name); 3780 switch (type) { 3781 case KEY_ECDSA_SK: 3782 case KEY_ED25519_SK: 3783 for (i = 0; i < nopts; i++) { 3784 if (strcasecmp(opts[i], "no-touch-required") == 0) { 3785 sk_flags &= ~SSH_SK_USER_PRESENCE_REQD; 3786 } else if (strcasecmp(opts[i], "verify-required") == 0) { 3787 sk_flags |= SSH_SK_USER_VERIFICATION_REQD; 3788 } else if (strcasecmp(opts[i], "resident") == 0) { 3789 sk_flags |= SSH_SK_RESIDENT_KEY; 3790 } else if (strncasecmp(opts[i], "device=", 7) == 0) { 3791 sk_device = xstrdup(opts[i] + 7); 3792 } else if (strncasecmp(opts[i], "user=", 5) == 0) { 3793 sk_user = xstrdup(opts[i] + 5); 3794 } else if (strncasecmp(opts[i], "challenge=", 10) == 0) { 3795 if ((r = sshbuf_load_file(opts[i] + 10, 3796 &challenge)) != 0) { 3797 fatal_r(r, "Unable to load FIDO " 3798 "enrollment challenge \"%s\"", 3799 opts[i] + 10); 3800 } 3801 } else if (strncasecmp(opts[i], 3802 "write-attestation=", 18) == 0) { 3803 sk_attestation_path = opts[i] + 18; 3804 } else if (strncasecmp(opts[i], 3805 "application=", 12) == 0) { 3806 sk_application = xstrdup(opts[i] + 12); 3807 if (strncmp(sk_application, "ssh:", 4) != 0) { 3808 fatal("FIDO application string must " 3809 "begin with \"ssh:\""); 3810 } 3811 } else { 3812 fatal("Option \"%s\" is unsupported for " 3813 "FIDO authenticator enrollment", opts[i]); 3814 } 3815 } 3816 if ((attest = sshbuf_new()) == NULL) 3817 fatal("sshbuf_new failed"); 3818 r = 0; 3819 for (i = 0 ;;) { 3820 if (!quiet) { 3821 printf("You may need to touch your " 3822 "authenticator%s to authorize key " 3823 "generation.\n", 3824 r == 0 ? "" : " again"); 3825 } 3826 fflush(stdout); 3827 r = sshsk_enroll(type, sk_provider, sk_device, 3828 sk_application == NULL ? "ssh:" : sk_application, 3829 sk_user, sk_flags, passphrase, challenge, 3830 &private, attest); 3831 if (r == 0) 3832 break; 3833 if (r == SSH_ERR_KEY_BAD_PERMISSIONS && 3834 (sk_flags & SSH_SK_RESIDENT_KEY) != 0 && 3835 (sk_flags & SSH_SK_FORCE_OPERATION) == 0 && 3836 confirm_sk_overwrite(sk_application, sk_user)) { 3837 sk_flags |= SSH_SK_FORCE_OPERATION; 3838 continue; 3839 } 3840 if (r != SSH_ERR_KEY_WRONG_PASSPHRASE) 3841 fatal_r(r, "Key enrollment failed"); 3842 else if (passphrase != NULL) { 3843 error("PIN incorrect"); 3844 freezero(passphrase, strlen(passphrase)); 3845 passphrase = NULL; 3846 } 3847 if (++i >= 3) 3848 fatal("Too many incorrect PINs"); 3849 passphrase = read_passphrase("Enter PIN for " 3850 "authenticator: ", RP_ALLOW_STDIN); 3851 } 3852 if (passphrase != NULL) { 3853 freezero(passphrase, strlen(passphrase)); 3854 passphrase = NULL; 3855 } 3856 break; 3857 default: 3858 if ((r = sshkey_generate(type, bits, &private)) != 0) 3859 fatal("sshkey_generate failed"); 3860 break; 3861 } 3862 if ((r = sshkey_from_private(private, &public)) != 0) 3863 fatal_r(r, "sshkey_from_private"); 3864 3865 if (!have_identity) 3866 ask_filename(pw, "Enter file in which to save the key"); 3867 3868 /* Create ~/.ssh directory if it doesn't already exist. */ 3869 hostfile_create_user_ssh_dir(identity_file, !quiet); 3870 3871 /* If the file already exists, ask the user to confirm. */ 3872 if (!confirm_overwrite(identity_file)) 3873 exit(1); 3874 3875 /* Determine the passphrase for the private key */ 3876 passphrase = private_key_passphrase(); 3877 if (identity_comment) { 3878 strlcpy(comment, identity_comment, sizeof(comment)); 3879 } else { 3880 /* Create default comment field for the passphrase. */ 3881 snprintf(comment, sizeof comment, "%s@%s", pw->pw_name, hostname); 3882 } 3883 3884 /* Save the key with the given passphrase and comment. */ 3885 if ((r = sshkey_save_private(private, identity_file, passphrase, 3886 comment, private_key_format, openssh_format_cipher, rounds)) != 0) { 3887 error_r(r, "Saving key \"%s\" failed", identity_file); 3888 freezero(passphrase, strlen(passphrase)); 3889 exit(1); 3890 } 3891 freezero(passphrase, strlen(passphrase)); 3892 sshkey_free(private); 3893 3894 if (!quiet) { 3895 printf("Your identification has been saved in %s\n", 3896 identity_file); 3897 } 3898 3899 strlcat(identity_file, ".pub", sizeof(identity_file)); 3900 if ((r = sshkey_save_public(public, identity_file, comment)) != 0) 3901 fatal_r(r, "Unable to save public key to %s", identity_file); 3902 3903 if (!quiet) { 3904 fp = sshkey_fingerprint(public, fingerprint_hash, 3905 SSH_FP_DEFAULT); 3906 ra = sshkey_fingerprint(public, fingerprint_hash, 3907 SSH_FP_RANDOMART); 3908 if (fp == NULL || ra == NULL) 3909 fatal("sshkey_fingerprint failed"); 3910 printf("Your public key has been saved in %s\n", 3911 identity_file); 3912 printf("The key fingerprint is:\n"); 3913 printf("%s %s\n", fp, comment); 3914 printf("The key's randomart image is:\n"); 3915 printf("%s\n", ra); 3916 free(ra); 3917 free(fp); 3918 } 3919 3920 if (sk_attestation_path != NULL) 3921 save_attestation(attest, sk_attestation_path); 3922 3923 sshbuf_free(attest); 3924 sshkey_free(public); 3925 3926 exit(0); 3927 } 3928