1 /* $OpenBSD: misc.c,v 1.215 2026/06/21 19:23:56 tb Exp $ */ 2 /* 3 * Copyright (c) 2000 Markus Friedl. All rights reserved. 4 * Copyright (c) 2005-2020 Damien Miller. All rights reserved. 5 * Copyright (c) 2004 Henning Brauer <henning@openbsd.org> 6 * 7 * Permission to use, copy, modify, and distribute this software for any 8 * purpose with or without fee is hereby granted, provided that the above 9 * copyright notice and this permission notice appear in all copies. 10 * 11 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 12 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 13 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 14 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 15 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 16 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 17 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 18 */ 19 20 21 #include "includes.h" 22 23 #include <sys/types.h> 24 #include <sys/ioctl.h> 25 #include <sys/mman.h> 26 #include <sys/socket.h> 27 #include <sys/stat.h> 28 #include <sys/time.h> 29 #include <sys/wait.h> 30 #include <sys/un.h> 31 32 #include <limits.h> 33 #include <libgen.h> 34 #include <poll.h> 35 #include <nlist.h> 36 #include <signal.h> 37 #include <stdarg.h> 38 #include <stdio.h> 39 #include <stdint.h> 40 #include <stdlib.h> 41 #include <string.h> 42 #include <time.h> 43 #include <unistd.h> 44 45 #include <netinet/in.h> 46 #include <netinet/ip.h> 47 #include <netinet/tcp.h> 48 #include <arpa/inet.h> 49 50 #include <ctype.h> 51 #include <errno.h> 52 #include <fcntl.h> 53 #include <netdb.h> 54 #include <paths.h> 55 #include <pwd.h> 56 #include <grp.h> 57 #ifdef SSH_TUN_OPENBSD 58 #include <net/if.h> 59 #endif 60 61 #include "xmalloc.h" 62 #include "misc.h" 63 #include "log.h" 64 #include "ssh.h" 65 #include "sshbuf.h" 66 #include "ssherr.h" 67 #include "platform.h" 68 69 /* remove newline at end of string */ 70 char * 71 chop(char *s) 72 { 73 char *t = s; 74 while (*t) { 75 if (*t == '\n' || *t == '\r') { 76 *t = '\0'; 77 return s; 78 } 79 t++; 80 } 81 return s; 82 83 } 84 85 /* remove whitespace from end of string */ 86 void 87 rtrim(char *s) 88 { 89 size_t i; 90 91 if ((i = strlen(s)) == 0) 92 return; 93 do { 94 i--; 95 if (isspace((unsigned char)s[i])) 96 s[i] = '\0'; 97 else 98 break; 99 } while (i > 0); 100 } 101 102 /* 103 * returns pointer to character after 'prefix' in 's' or otherwise NULL 104 * if the prefix is not present. 105 */ 106 const char * 107 strprefix(const char *s, const char *prefix, int ignorecase) 108 { 109 size_t prefixlen; 110 111 if ((prefixlen = strlen(prefix)) == 0) 112 return s; 113 if (ignorecase) { 114 if (strncasecmp(s, prefix, prefixlen) != 0) 115 return NULL; 116 } else { 117 if (strncmp(s, prefix, prefixlen) != 0) 118 return NULL; 119 } 120 return s + prefixlen; 121 } 122 123 /* Append string 's' to a NULL-terminated array of strings */ 124 void 125 stringlist_append(char ***listp, const char *s) 126 { 127 size_t i = 0; 128 129 if (*listp == NULL) 130 *listp = xcalloc(2, sizeof(**listp)); 131 else { 132 for (i = 0; (*listp)[i] != NULL; i++) 133 ; /* count */ 134 *listp = xrecallocarray(*listp, i + 1, i + 2, sizeof(**listp)); 135 } 136 (*listp)[i] = xstrdup(s); 137 } 138 139 void 140 stringlist_free(char **list) 141 { 142 size_t i = 0; 143 144 if (list == NULL) 145 return; 146 for (i = 0; list[i] != NULL; i++) 147 free(list[i]); 148 free(list); 149 } 150 151 /* set/unset filedescriptor to non-blocking */ 152 int 153 set_nonblock(int fd) 154 { 155 int val; 156 157 val = fcntl(fd, F_GETFL); 158 if (val == -1) { 159 error("fcntl(%d, F_GETFL): %s", fd, strerror(errno)); 160 return (-1); 161 } 162 if (val & O_NONBLOCK) { 163 debug3("fd %d is O_NONBLOCK", fd); 164 return (0); 165 } 166 debug2("fd %d setting O_NONBLOCK", fd); 167 val |= O_NONBLOCK; 168 if (fcntl(fd, F_SETFL, val) == -1) { 169 debug("fcntl(%d, F_SETFL, O_NONBLOCK): %s", fd, 170 strerror(errno)); 171 return (-1); 172 } 173 return (0); 174 } 175 176 int 177 unset_nonblock(int fd) 178 { 179 int val; 180 181 val = fcntl(fd, F_GETFL); 182 if (val == -1) { 183 error("fcntl(%d, F_GETFL): %s", fd, strerror(errno)); 184 return (-1); 185 } 186 if (!(val & O_NONBLOCK)) { 187 debug3("fd %d is not O_NONBLOCK", fd); 188 return (0); 189 } 190 debug("fd %d clearing O_NONBLOCK", fd); 191 val &= ~O_NONBLOCK; 192 if (fcntl(fd, F_SETFL, val) == -1) { 193 debug("fcntl(%d, F_SETFL, ~O_NONBLOCK): %s", 194 fd, strerror(errno)); 195 return (-1); 196 } 197 return (0); 198 } 199 200 const char * 201 ssh_gai_strerror(int gaierr) 202 { 203 if (gaierr == EAI_SYSTEM && errno != 0) 204 return strerror(errno); 205 return gai_strerror(gaierr); 206 } 207 208 /* disable nagle on socket */ 209 void 210 set_nodelay(int fd) 211 { 212 int opt; 213 socklen_t optlen; 214 215 optlen = sizeof opt; 216 if (getsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &opt, &optlen) == -1) { 217 debug("getsockopt TCP_NODELAY: %.100s", strerror(errno)); 218 return; 219 } 220 if (opt == 1) { 221 debug2("fd %d is TCP_NODELAY", fd); 222 return; 223 } 224 opt = 1; 225 debug2("fd %d setting TCP_NODELAY", fd); 226 if (setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &opt, sizeof opt) == -1) 227 error("setsockopt TCP_NODELAY: %.100s", strerror(errno)); 228 } 229 230 /* Allow local port reuse in TIME_WAIT */ 231 int 232 set_reuseaddr(int fd) 233 { 234 int on = 1; 235 236 if (setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, &on, sizeof(on)) == -1) { 237 error("setsockopt SO_REUSEADDR fd %d: %s", fd, strerror(errno)); 238 return -1; 239 } 240 return 0; 241 } 242 243 /* Get/set routing domain */ 244 char * 245 get_rdomain(int fd) 246 { 247 #if defined(HAVE_SYS_GET_RDOMAIN) 248 return sys_get_rdomain(fd); 249 #elif defined(__OpenBSD__) 250 int rtable; 251 char *ret; 252 socklen_t len = sizeof(rtable); 253 254 if (getsockopt(fd, SOL_SOCKET, SO_RTABLE, &rtable, &len) == -1) { 255 error("Failed to get routing domain for fd %d: %s", 256 fd, strerror(errno)); 257 return NULL; 258 } 259 xasprintf(&ret, "%d", rtable); 260 return ret; 261 #else /* defined(__OpenBSD__) */ 262 return NULL; 263 #endif 264 } 265 266 int 267 set_rdomain(int fd, const char *name) 268 { 269 #if defined(HAVE_SYS_SET_RDOMAIN) 270 return sys_set_rdomain(fd, name); 271 #elif defined(__OpenBSD__) 272 int rtable; 273 const char *errstr; 274 275 if (name == NULL) 276 return 0; /* default table */ 277 278 rtable = (int)strtonum(name, 0, 255, &errstr); 279 if (errstr != NULL) { 280 /* Shouldn't happen */ 281 error("Invalid routing domain \"%s\": %s", name, errstr); 282 return -1; 283 } 284 if (setsockopt(fd, SOL_SOCKET, SO_RTABLE, 285 &rtable, sizeof(rtable)) == -1) { 286 error("Failed to set routing domain %d on fd %d: %s", 287 rtable, fd, strerror(errno)); 288 return -1; 289 } 290 return 0; 291 #else /* defined(__OpenBSD__) */ 292 error("Setting routing domain is not supported on this platform"); 293 return -1; 294 #endif 295 } 296 297 int 298 get_sock_af(int fd) 299 { 300 struct sockaddr_storage to; 301 socklen_t tolen = sizeof(to); 302 303 memset(&to, 0, sizeof(to)); 304 if (getsockname(fd, (struct sockaddr *)&to, &tolen) == -1) 305 return -1; 306 #ifdef IPV4_IN_IPV6 307 if (to.ss_family == AF_INET6 && 308 IN6_IS_ADDR_V4MAPPED(&((struct sockaddr_in6 *)&to)->sin6_addr)) 309 return AF_INET; 310 #endif 311 return to.ss_family; 312 } 313 314 void 315 set_sock_tos(int fd, int tos) 316 { 317 #ifndef IP_TOS_IS_BROKEN 318 int af; 319 320 if (tos < 0 || tos == INT_MAX) { 321 debug_f("invalid TOS %d", tos); 322 return; 323 } 324 switch ((af = get_sock_af(fd))) { 325 case -1: 326 /* assume not a socket */ 327 break; 328 case AF_INET: 329 # ifdef IP_TOS 330 debug3_f("set socket %d IP_TOS 0x%02x", fd, tos); 331 if (setsockopt(fd, IPPROTO_IP, IP_TOS, 332 &tos, sizeof(tos)) == -1) { 333 error("setsockopt socket %d IP_TOS %d: %s", 334 fd, tos, strerror(errno)); 335 } 336 # endif /* IP_TOS */ 337 break; 338 case AF_INET6: 339 # ifdef IPV6_TCLASS 340 debug3_f("set socket %d IPV6_TCLASS 0x%02x", fd, tos); 341 if (setsockopt(fd, IPPROTO_IPV6, IPV6_TCLASS, 342 &tos, sizeof(tos)) == -1) { 343 error("setsockopt socket %d IPV6_TCLASS %d: %s", 344 fd, tos, strerror(errno)); 345 } 346 # endif /* IPV6_TCLASS */ 347 break; 348 default: 349 debug2_f("unsupported socket family %d", af); 350 break; 351 } 352 #endif /* IP_TOS_IS_BROKEN */ 353 } 354 355 /* 356 * Wait up to *timeoutp milliseconds for events on fd. Updates 357 * *timeoutp with time remaining. 358 * Returns 0 if fd ready or -1 on timeout or error (see errno). 359 */ 360 static int 361 waitfd(int fd, int *timeoutp, short events, volatile sig_atomic_t *stop) 362 { 363 struct pollfd pfd; 364 struct timespec timeout; 365 int oerrno, r; 366 sigset_t nsigset, osigset; 367 368 if (timeoutp && *timeoutp == -1) 369 timeoutp = NULL; 370 pfd.fd = fd; 371 pfd.events = events; 372 ptimeout_init(&timeout); 373 if (timeoutp != NULL) 374 ptimeout_deadline_ms(&timeout, *timeoutp); 375 if (stop != NULL) 376 sigfillset(&nsigset); 377 for (; timeoutp == NULL || *timeoutp >= 0;) { 378 if (stop != NULL) { 379 sigprocmask(SIG_BLOCK, &nsigset, &osigset); 380 if (*stop) { 381 sigprocmask(SIG_SETMASK, &osigset, NULL); 382 errno = EINTR; 383 return -1; 384 } 385 } 386 r = ppoll(&pfd, 1, ptimeout_get_tsp(&timeout), 387 stop != NULL ? &osigset : NULL); 388 oerrno = errno; 389 if (stop != NULL) 390 sigprocmask(SIG_SETMASK, &osigset, NULL); 391 if (timeoutp) 392 *timeoutp = ptimeout_get_ms(&timeout); 393 errno = oerrno; 394 if (r > 0) 395 return 0; 396 else if (r == -1 && errno != EAGAIN && errno != EINTR) 397 return -1; 398 else if (r == 0) 399 break; 400 } 401 /* timeout */ 402 errno = ETIMEDOUT; 403 return -1; 404 } 405 406 /* 407 * Wait up to *timeoutp milliseconds for fd to be readable. Updates 408 * *timeoutp with time remaining. 409 * Returns 0 if fd ready or -1 on timeout or error (see errno). 410 */ 411 int 412 waitrfd(int fd, int *timeoutp, volatile sig_atomic_t *stop) { 413 return waitfd(fd, timeoutp, POLLIN, stop); 414 } 415 416 /* 417 * Attempt a non-blocking connect(2) to the specified address, waiting up to 418 * *timeoutp milliseconds for the connection to complete. If the timeout is 419 * <=0, then wait indefinitely. 420 * 421 * Returns 0 on success or -1 on failure. 422 */ 423 int 424 timeout_connect(int sockfd, const struct sockaddr *serv_addr, 425 socklen_t addrlen, int *timeoutp) 426 { 427 int optval = 0; 428 socklen_t optlen = sizeof(optval); 429 430 /* No timeout: just do a blocking connect() */ 431 if (timeoutp == NULL || *timeoutp <= 0) 432 return connect(sockfd, serv_addr, addrlen); 433 434 set_nonblock(sockfd); 435 for (;;) { 436 if (connect(sockfd, serv_addr, addrlen) == 0) { 437 /* Succeeded already? */ 438 unset_nonblock(sockfd); 439 return 0; 440 } else if (errno == EINTR) 441 continue; 442 else if (errno != EINPROGRESS) 443 return -1; 444 break; 445 } 446 447 if (waitfd(sockfd, timeoutp, POLLIN | POLLOUT, NULL) == -1) 448 return -1; 449 450 /* Completed or failed */ 451 if (getsockopt(sockfd, SOL_SOCKET, SO_ERROR, &optval, &optlen) == -1) { 452 debug("getsockopt: %s", strerror(errno)); 453 return -1; 454 } 455 if (optval != 0) { 456 errno = optval; 457 return -1; 458 } 459 unset_nonblock(sockfd); 460 return 0; 461 } 462 463 /* Characters considered whitespace in strsep calls. */ 464 #define WHITESPACE " \t\r\n" 465 #define QUOTE "\"" 466 467 /* return next token in configuration line */ 468 static char * 469 strdelim_internal(char **s, int split_equals) 470 { 471 char *old; 472 int wspace = 0; 473 474 if (*s == NULL) 475 return NULL; 476 477 old = *s; 478 479 *s = strpbrk(*s, 480 split_equals ? WHITESPACE QUOTE "=" : WHITESPACE QUOTE); 481 if (*s == NULL) 482 return (old); 483 484 if (*s[0] == '\"') { 485 memmove(*s, *s + 1, strlen(*s)); /* move nul too */ 486 /* Find matching quote */ 487 if ((*s = strpbrk(*s, QUOTE)) == NULL) { 488 return (NULL); /* no matching quote */ 489 } else { 490 *s[0] = '\0'; 491 *s += strspn(*s + 1, WHITESPACE) + 1; 492 return (old); 493 } 494 } 495 496 /* Allow only one '=' to be skipped */ 497 if (split_equals && *s[0] == '=') 498 wspace = 1; 499 *s[0] = '\0'; 500 501 /* Skip any extra whitespace after first token */ 502 *s += strspn(*s + 1, WHITESPACE) + 1; 503 if (split_equals && *s[0] == '=' && !wspace) 504 *s += strspn(*s + 1, WHITESPACE) + 1; 505 506 return (old); 507 } 508 509 /* 510 * Return next token in configuration line; splits on whitespace or a 511 * single '=' character. 512 */ 513 char * 514 strdelim(char **s) 515 { 516 return strdelim_internal(s, 1); 517 } 518 519 /* 520 * Return next token in configuration line; splits on whitespace only. 521 */ 522 char * 523 strdelimw(char **s) 524 { 525 return strdelim_internal(s, 0); 526 } 527 528 struct passwd * 529 pwcopy(struct passwd *pw) 530 { 531 struct passwd *copy = xcalloc(1, sizeof(*copy)); 532 533 copy->pw_name = xstrdup(pw->pw_name); 534 copy->pw_passwd = xstrdup(pw->pw_passwd == NULL ? "*" : pw->pw_passwd); 535 #ifdef HAVE_STRUCT_PASSWD_PW_GECOS 536 copy->pw_gecos = xstrdup(pw->pw_gecos == NULL ? "" : pw->pw_gecos); 537 #endif 538 copy->pw_uid = pw->pw_uid; 539 copy->pw_gid = pw->pw_gid; 540 #ifdef HAVE_STRUCT_PASSWD_PW_EXPIRE 541 copy->pw_expire = pw->pw_expire; 542 #endif 543 #ifdef HAVE_STRUCT_PASSWD_PW_CHANGE 544 copy->pw_change = pw->pw_change; 545 #endif 546 #ifdef HAVE_STRUCT_PASSWD_PW_CLASS 547 copy->pw_class = xstrdup(pw->pw_class == NULL ? "" : pw->pw_class); 548 #endif 549 copy->pw_dir = xstrdup(pw->pw_dir == NULL ? "" : pw->pw_dir); 550 copy->pw_shell = xstrdup(pw->pw_shell == NULL ? "" : pw->pw_shell); 551 return copy; 552 } 553 554 void 555 pwfree(struct passwd *pw) 556 { 557 if (pw == NULL) 558 return; 559 free(pw->pw_name); 560 freezero(pw->pw_passwd, 561 pw->pw_passwd == NULL ? 0 : strlen(pw->pw_passwd)); 562 #ifdef HAVE_STRUCT_PASSWD_PW_GECOS 563 free(pw->pw_gecos); 564 #endif 565 #ifdef HAVE_STRUCT_PASSWD_PW_CLASS 566 free(pw->pw_class); 567 #endif 568 free(pw->pw_dir); 569 free(pw->pw_shell); 570 freezero(pw, sizeof(*pw)); 571 } 572 573 /* 574 * Convert ASCII string to TCP/IP port number. 575 * Port must be >=0 and <=65535. 576 * Return -1 if invalid. 577 */ 578 int 579 a2port(const char *s) 580 { 581 struct servent *se; 582 long long port; 583 const char *errstr; 584 585 port = strtonum(s, 0, 65535, &errstr); 586 if (errstr == NULL) 587 return (int)port; 588 if ((se = getservbyname(s, "tcp")) != NULL) 589 return ntohs(se->s_port); 590 return -1; 591 } 592 593 int 594 a2tun(const char *s, int *remote) 595 { 596 const char *errstr = NULL; 597 char *sp, *ep; 598 int tun; 599 600 if (remote != NULL) { 601 *remote = SSH_TUNID_ANY; 602 sp = xstrdup(s); 603 if ((ep = strchr(sp, ':')) == NULL) { 604 free(sp); 605 return (a2tun(s, NULL)); 606 } 607 ep[0] = '\0'; ep++; 608 *remote = a2tun(ep, NULL); 609 tun = a2tun(sp, NULL); 610 free(sp); 611 return (*remote == SSH_TUNID_ERR ? *remote : tun); 612 } 613 614 if (strcasecmp(s, "any") == 0) 615 return (SSH_TUNID_ANY); 616 617 tun = strtonum(s, 0, SSH_TUNID_MAX, &errstr); 618 if (errstr != NULL) 619 return (SSH_TUNID_ERR); 620 621 return (tun); 622 } 623 624 #define SECONDS 1.0 625 #define MINUTES (SECONDS * 60) 626 #define HOURS (MINUTES * 60) 627 #define DAYS (HOURS * 24) 628 #define WEEKS (DAYS * 7) 629 630 /* 631 * Convert an interval/duration time string into seconds, which may include 632 * fractional seconds. 633 * 634 * The format is a sequence of: 635 * time[qualifier] 636 * 637 * This supports fractional values for the seconds value only. All other 638 * values must be integers. 639 * 640 * Valid time qualifiers are: 641 * <none> seconds 642 * s|S seconds 643 * m|M minutes 644 * h|H hours 645 * d|D days 646 * w|W weeks 647 * 648 * Examples: 649 * 90m 90 minutes 650 * 1h30m 90 minutes 651 * 1.5s 1.5 seconds 652 * 2d 2 days 653 * 1w 1 week 654 * 655 * Returns <0.0 if the time string is invalid. 656 */ 657 double 658 convtime_double(const char *s) 659 { 660 double val, total_sec = 0.0, multiplier; 661 const char *p, *start_p; 662 char *endp; 663 int seen_seconds = 0; 664 665 if (s == NULL || *s == '\0') 666 return -1.0; 667 668 for (p = s; *p != '\0';) { 669 if (!isdigit((unsigned char)*p) && *p != '.') 670 return -1.0; 671 672 errno = 0; 673 if ((val = strtod(p, &endp)) < 0 || errno != 0 || p == endp) 674 return -1.0; 675 /* Allow only decimal forms */ 676 if (p + strspn(p, "0123456789.") != endp) 677 return -1.0; 678 start_p = p; 679 p = endp; 680 681 switch (*p) { 682 case '\0': 683 /* FALLTHROUGH */ 684 case 's': 685 case 'S': 686 if (seen_seconds++) 687 return -1.0; 688 multiplier = SECONDS; 689 break; 690 case 'm': 691 case 'M': 692 multiplier = MINUTES; 693 break; 694 case 'h': 695 case 'H': 696 multiplier = HOURS; 697 break; 698 case 'd': 699 case 'D': 700 multiplier = DAYS; 701 break; 702 case 'w': 703 case 'W': 704 multiplier = WEEKS; 705 break; 706 default: 707 return -1.0; 708 } 709 710 /* Special handling if this was a decimal */ 711 if (memchr(start_p, '.', endp - start_p) != NULL) { 712 /* Decimal point present */ 713 if (multiplier > 1.0) 714 return -1.0; /* No fractionals for non-seconds */ 715 /* For seconds, ensure digits follow */ 716 if (!isdigit((unsigned char)*(endp - 1))) 717 return -1.0; 718 } 719 720 total_sec += val * multiplier; 721 722 if (*p != '\0') 723 p++; 724 } 725 return total_sec; 726 } 727 728 /* 729 * Same as convtime_double() above but fractional seconds are ignored. 730 * Return -1 if time string is invalid. 731 */ 732 int 733 convtime(const char *s) 734 { 735 double sec_val; 736 737 if ((sec_val = convtime_double(s)) < 0.0) 738 return -1; 739 740 /* Check for overflow into int */ 741 if (sec_val < 0 || sec_val > INT_MAX) 742 return -1; 743 744 return (int)sec_val; 745 } 746 747 #define TF_BUFS 8 748 #define TF_LEN 9 749 750 const char * 751 fmt_timeframe(time_t t) 752 { 753 char *buf; 754 static char tfbuf[TF_BUFS][TF_LEN]; /* ring buffer */ 755 static int idx = 0; 756 unsigned int sec, min, hrs, day; 757 unsigned long long week; 758 759 buf = tfbuf[idx++]; 760 if (idx == TF_BUFS) 761 idx = 0; 762 763 week = t; 764 765 sec = week % 60; 766 week /= 60; 767 min = week % 60; 768 week /= 60; 769 hrs = week % 24; 770 week /= 24; 771 day = week % 7; 772 week /= 7; 773 774 if (week > 0) 775 snprintf(buf, TF_LEN, "%02lluw%01ud%02uh", week, day, hrs); 776 else if (day > 0) 777 snprintf(buf, TF_LEN, "%01ud%02uh%02um", day, hrs, min); 778 else 779 snprintf(buf, TF_LEN, "%02u:%02u:%02u", hrs, min, sec); 780 781 return (buf); 782 } 783 784 /* 785 * Returns a standardized host+port identifier string. 786 * Caller must free returned string. 787 */ 788 char * 789 put_host_port(const char *host, u_short port) 790 { 791 char *hoststr; 792 793 if (port == 0 || port == SSH_DEFAULT_PORT) 794 return(xstrdup(host)); 795 if (asprintf(&hoststr, "[%s]:%d", host, (int)port) == -1) 796 fatal("put_host_port: asprintf: %s", strerror(errno)); 797 debug3("put_host_port: %s", hoststr); 798 return hoststr; 799 } 800 801 /* 802 * Search for next delimiter between hostnames/addresses and ports. 803 * Argument may be modified (for termination). 804 * Returns *cp if parsing succeeds. 805 * *cp is set to the start of the next field, if one was found. 806 * The delimiter char, if present, is stored in delim. 807 * If this is the last field, *cp is set to NULL. 808 */ 809 char * 810 hpdelim2(char **cp, char *delim) 811 { 812 char *s, *old; 813 814 if (cp == NULL || *cp == NULL) 815 return NULL; 816 817 old = s = *cp; 818 if (*s == '[') { 819 if ((s = strchr(s, ']')) == NULL) 820 return NULL; 821 else 822 s++; 823 } else if ((s = strpbrk(s, ":/")) == NULL) 824 s = *cp + strlen(*cp); /* skip to end (see first case below) */ 825 826 switch (*s) { 827 case '\0': 828 *cp = NULL; /* no more fields*/ 829 break; 830 831 case ':': 832 case '/': 833 if (delim != NULL) 834 *delim = *s; 835 *s = '\0'; /* terminate */ 836 *cp = s + 1; 837 break; 838 839 default: 840 return NULL; 841 } 842 843 return old; 844 } 845 846 /* The common case: only accept colon as delimiter. */ 847 char * 848 hpdelim(char **cp) 849 { 850 char *r, delim = '\0'; 851 852 r = hpdelim2(cp, &delim); 853 if (delim == '/') 854 return NULL; 855 return r; 856 } 857 858 char * 859 cleanhostname(char *host) 860 { 861 if (*host == '[' && host[strlen(host) - 1] == ']') { 862 host[strlen(host) - 1] = '\0'; 863 return (host + 1); 864 } else 865 return host; 866 } 867 868 char * 869 colon(char *cp) 870 { 871 int flag = 0; 872 873 if (*cp == ':') /* Leading colon is part of file name. */ 874 return NULL; 875 if (*cp == '[') 876 flag = 1; 877 878 for (; *cp; ++cp) { 879 if (*cp == '@' && *(cp+1) == '[') 880 flag = 1; 881 if (*cp == ']' && *(cp+1) == ':' && flag) 882 return (cp+1); 883 if (*cp == ':' && !flag) 884 return (cp); 885 if (*cp == '/') 886 return NULL; 887 } 888 return NULL; 889 } 890 891 /* 892 * Parse a [user@]host:[path] string. 893 * Caller must free returned user, host and path. 894 * Any of the pointer return arguments may be NULL (useful for syntax checking). 895 * If user was not specified then *userp will be set to NULL. 896 * If host was not specified then *hostp will be set to NULL. 897 * If path was not specified then *pathp will be set to ".". 898 * Returns 0 on success, -1 on failure. 899 */ 900 int 901 parse_user_host_path(const char *s, char **userp, char **hostp, char **pathp) 902 { 903 char *user = NULL, *host = NULL, *path = NULL; 904 char *sdup, *tmp; 905 int ret = -1; 906 907 if (userp != NULL) 908 *userp = NULL; 909 if (hostp != NULL) 910 *hostp = NULL; 911 if (pathp != NULL) 912 *pathp = NULL; 913 914 sdup = xstrdup(s); 915 916 /* Check for remote syntax: [user@]host:[path] */ 917 if ((tmp = colon(sdup)) == NULL) 918 goto out; 919 920 /* Extract optional path */ 921 *tmp++ = '\0'; 922 if (*tmp == '\0') 923 tmp = "."; 924 path = xstrdup(tmp); 925 926 /* Extract optional user and mandatory host */ 927 tmp = strrchr(sdup, '@'); 928 if (tmp != NULL) { 929 *tmp++ = '\0'; 930 host = xstrdup(cleanhostname(tmp)); 931 if (*sdup != '\0') 932 user = xstrdup(sdup); 933 } else { 934 host = xstrdup(cleanhostname(sdup)); 935 user = NULL; 936 } 937 938 /* Success */ 939 if (userp != NULL) { 940 *userp = user; 941 user = NULL; 942 } 943 if (hostp != NULL) { 944 *hostp = host; 945 host = NULL; 946 } 947 if (pathp != NULL) { 948 *pathp = path; 949 path = NULL; 950 } 951 ret = 0; 952 out: 953 free(sdup); 954 free(user); 955 free(host); 956 free(path); 957 return ret; 958 } 959 960 /* 961 * Parse a [user@]host[:port] string. 962 * Caller must free returned user and host. 963 * Any of the pointer return arguments may be NULL (useful for syntax checking). 964 * If user was not specified then *userp will be set to NULL. 965 * If port was not specified then *portp will be -1. 966 * Returns 0 on success, -1 on failure. 967 */ 968 int 969 parse_user_host_port(const char *s, char **userp, char **hostp, int *portp) 970 { 971 char *sdup, *cp, *tmp; 972 char *user = NULL, *host = NULL; 973 int port = -1, ret = -1; 974 975 if (userp != NULL) 976 *userp = NULL; 977 if (hostp != NULL) 978 *hostp = NULL; 979 if (portp != NULL) 980 *portp = -1; 981 982 if ((sdup = tmp = strdup(s)) == NULL) 983 return -1; 984 /* Extract optional username */ 985 if ((cp = strrchr(tmp, '@')) != NULL) { 986 *cp = '\0'; 987 if (*tmp == '\0') 988 goto out; 989 if ((user = strdup(tmp)) == NULL) 990 goto out; 991 tmp = cp + 1; 992 } 993 /* Extract mandatory hostname */ 994 if ((cp = hpdelim(&tmp)) == NULL || *cp == '\0') 995 goto out; 996 host = xstrdup(cleanhostname(cp)); 997 /* Convert and verify optional port */ 998 if (tmp != NULL && *tmp != '\0') { 999 if ((port = a2port(tmp)) <= 0) 1000 goto out; 1001 } 1002 /* Success */ 1003 if (userp != NULL) { 1004 *userp = user; 1005 user = NULL; 1006 } 1007 if (hostp != NULL) { 1008 *hostp = host; 1009 host = NULL; 1010 } 1011 if (portp != NULL) 1012 *portp = port; 1013 ret = 0; 1014 out: 1015 free(sdup); 1016 free(user); 1017 free(host); 1018 return ret; 1019 } 1020 1021 /* 1022 * Converts a two-byte hex string to decimal. 1023 * Returns the decimal value or -1 for invalid input. 1024 */ 1025 static int 1026 hexchar(const char *s) 1027 { 1028 unsigned char result[2]; 1029 int i; 1030 1031 for (i = 0; i < 2; i++) { 1032 if (s[i] >= '0' && s[i] <= '9') 1033 result[i] = (unsigned char)(s[i] - '0'); 1034 else if (s[i] >= 'a' && s[i] <= 'f') 1035 result[i] = (unsigned char)(s[i] - 'a') + 10; 1036 else if (s[i] >= 'A' && s[i] <= 'F') 1037 result[i] = (unsigned char)(s[i] - 'A') + 10; 1038 else 1039 return -1; 1040 } 1041 return (result[0] << 4) | result[1]; 1042 } 1043 1044 /* 1045 * Decode an url-encoded string. 1046 * Returns a newly allocated string on success or NULL on failure. 1047 */ 1048 static char * 1049 urldecode(const char *src) 1050 { 1051 char *ret, *dst; 1052 int ch; 1053 size_t srclen; 1054 1055 if ((srclen = strlen(src)) >= SIZE_MAX) 1056 return NULL; 1057 ret = xmalloc(srclen + 1); 1058 for (dst = ret; *src != '\0'; src++) { 1059 switch (*src) { 1060 case '+': 1061 *dst++ = ' '; 1062 break; 1063 case '%': 1064 /* note: don't allow \0 characters */ 1065 if (!isxdigit((unsigned char)src[1]) || 1066 !isxdigit((unsigned char)src[2]) || 1067 (ch = hexchar(src + 1)) == -1 || ch == 0) { 1068 free(ret); 1069 return NULL; 1070 } 1071 *dst++ = ch; 1072 src += 2; 1073 break; 1074 default: 1075 *dst++ = *src; 1076 break; 1077 } 1078 } 1079 *dst = '\0'; 1080 1081 return ret; 1082 } 1083 1084 /* 1085 * Parse an (scp|ssh|sftp)://[user@]host[:port][/path] URI. 1086 * See https://tools.ietf.org/html/draft-ietf-secsh-scp-sftp-ssh-uri-04 1087 * Either user or path may be url-encoded (but not host or port). 1088 * Caller must free returned user, host and path. 1089 * Any of the pointer return arguments may be NULL (useful for syntax checking) 1090 * but the scheme must always be specified. 1091 * If user was not specified then *userp will be set to NULL. 1092 * If port was not specified then *portp will be -1. 1093 * If path was not specified then *pathp will be set to NULL. 1094 * Returns 0 on success, 1 if non-uri/wrong scheme, -1 on error/invalid uri. 1095 */ 1096 int 1097 parse_uri(const char *scheme, const char *uri, char **userp, char **hostp, 1098 int *portp, char **pathp) 1099 { 1100 char *uridup, *cp, *tmp, ch; 1101 char *user = NULL, *host = NULL, *path = NULL; 1102 int port = -1, ret = -1; 1103 size_t len; 1104 1105 len = strlen(scheme); 1106 if (strncmp(uri, scheme, len) != 0 || strncmp(uri + len, "://", 3) != 0) 1107 return 1; 1108 uri += len + 3; 1109 1110 if (userp != NULL) 1111 *userp = NULL; 1112 if (hostp != NULL) 1113 *hostp = NULL; 1114 if (portp != NULL) 1115 *portp = -1; 1116 if (pathp != NULL) 1117 *pathp = NULL; 1118 1119 uridup = tmp = xstrdup(uri); 1120 1121 /* Extract optional ssh-info (username + connection params) */ 1122 if ((cp = strchr(tmp, '@')) != NULL) { 1123 char *delim; 1124 1125 *cp = '\0'; 1126 /* Extract username and connection params */ 1127 if ((delim = strchr(tmp, ';')) != NULL) { 1128 /* Just ignore connection params for now */ 1129 *delim = '\0'; 1130 } 1131 if (*tmp == '\0') { 1132 /* Empty username */ 1133 goto out; 1134 } 1135 if ((user = urldecode(tmp)) == NULL) 1136 goto out; 1137 tmp = cp + 1; 1138 } 1139 1140 /* Extract mandatory hostname */ 1141 if ((cp = hpdelim2(&tmp, &ch)) == NULL || *cp == '\0') 1142 goto out; 1143 host = xstrdup(cleanhostname(cp)); 1144 if (!valid_domain(host, 0, NULL)) 1145 goto out; 1146 1147 if (tmp != NULL && *tmp != '\0') { 1148 if (ch == ':') { 1149 /* Convert and verify port. */ 1150 if ((cp = strchr(tmp, '/')) != NULL) 1151 *cp = '\0'; 1152 if ((port = a2port(tmp)) <= 0) 1153 goto out; 1154 tmp = cp ? cp + 1 : NULL; 1155 } 1156 if (tmp != NULL && *tmp != '\0') { 1157 /* Extract optional path */ 1158 if ((path = urldecode(tmp)) == NULL) 1159 goto out; 1160 } 1161 } 1162 1163 /* Success */ 1164 if (userp != NULL) { 1165 *userp = user; 1166 user = NULL; 1167 } 1168 if (hostp != NULL) { 1169 *hostp = host; 1170 host = NULL; 1171 } 1172 if (portp != NULL) 1173 *portp = port; 1174 if (pathp != NULL) { 1175 *pathp = path; 1176 path = NULL; 1177 } 1178 ret = 0; 1179 out: 1180 free(uridup); 1181 free(user); 1182 free(host); 1183 free(path); 1184 return ret; 1185 } 1186 1187 /* function to assist building execv() arguments */ 1188 void 1189 addargs(arglist *args, char *fmt, ...) 1190 { 1191 va_list ap; 1192 char *cp; 1193 u_int nalloc; 1194 int r; 1195 1196 va_start(ap, fmt); 1197 r = vasprintf(&cp, fmt, ap); 1198 va_end(ap); 1199 if (r == -1) 1200 fatal_f("argument too long"); 1201 1202 nalloc = args->nalloc; 1203 if (args->list == NULL) { 1204 nalloc = 32; 1205 args->num = 0; 1206 } else if (args->num > (256 * 1024)) 1207 fatal_f("too many arguments"); 1208 else if (args->num >= args->nalloc) 1209 fatal_f("arglist corrupt"); 1210 else if (args->num+2 >= nalloc) 1211 nalloc *= 2; 1212 1213 args->list = xrecallocarray(args->list, args->nalloc, 1214 nalloc, sizeof(char *)); 1215 args->nalloc = nalloc; 1216 args->list[args->num++] = cp; 1217 args->list[args->num] = NULL; 1218 } 1219 1220 void 1221 replacearg(arglist *args, u_int which, char *fmt, ...) 1222 { 1223 va_list ap; 1224 char *cp; 1225 int r; 1226 1227 va_start(ap, fmt); 1228 r = vasprintf(&cp, fmt, ap); 1229 va_end(ap); 1230 if (r == -1) 1231 fatal_f("argument too long"); 1232 if (args->list == NULL || args->num >= args->nalloc) 1233 fatal_f("arglist corrupt"); 1234 1235 if (which >= args->num) 1236 fatal_f("tried to replace invalid arg %d >= %d", 1237 which, args->num); 1238 free(args->list[which]); 1239 args->list[which] = cp; 1240 } 1241 1242 void 1243 freeargs(arglist *args) 1244 { 1245 u_int i; 1246 1247 if (args == NULL) 1248 return; 1249 if (args->list != NULL && args->num < args->nalloc) { 1250 for (i = 0; i < args->num; i++) 1251 free(args->list[i]); 1252 free(args->list); 1253 } 1254 args->nalloc = args->num = 0; 1255 args->list = NULL; 1256 } 1257 1258 /* 1259 * Expands tildes in the file name. Returns data allocated by xmalloc. 1260 * Warning: this calls getpw*. 1261 */ 1262 int 1263 tilde_expand(const char *filename, uid_t uid, char **retp) 1264 { 1265 char *ocopy = NULL, *copy, *s = NULL; 1266 const char *path = NULL, *user = NULL; 1267 struct passwd *pw; 1268 size_t len; 1269 int ret = -1, r, slash; 1270 1271 *retp = NULL; 1272 if (*filename != '~') { 1273 *retp = xstrdup(filename); 1274 return 0; 1275 } 1276 ocopy = copy = xstrdup(filename + 1); 1277 1278 if (*copy == '\0') /* ~ */ 1279 path = NULL; 1280 else if (*copy == '/') { 1281 copy += strspn(copy, "/"); 1282 if (*copy == '\0') 1283 path = NULL; /* ~/ */ 1284 else 1285 path = copy; /* ~/path */ 1286 } else { 1287 user = copy; 1288 if ((path = strchr(copy, '/')) != NULL) { 1289 copy[path - copy] = '\0'; 1290 path++; 1291 path += strspn(path, "/"); 1292 if (*path == '\0') /* ~user/ */ 1293 path = NULL; 1294 /* else ~user/path */ 1295 } 1296 /* else ~user */ 1297 } 1298 if (user != NULL) { 1299 if ((pw = getpwnam(user)) == NULL) { 1300 error_f("No such user %s", user); 1301 goto out; 1302 } 1303 } else if ((pw = getpwuid(uid)) == NULL) { 1304 error_f("No such uid %ld", (long)uid); 1305 goto out; 1306 } 1307 1308 /* Make sure directory has a trailing '/' */ 1309 slash = (len = strlen(pw->pw_dir)) == 0 || pw->pw_dir[len - 1] != '/'; 1310 1311 if ((r = xasprintf(&s, "%s%s%s", pw->pw_dir, 1312 slash ? "/" : "", path != NULL ? path : "")) <= 0) { 1313 error_f("xasprintf failed"); 1314 goto out; 1315 } 1316 if (r >= PATH_MAX) { 1317 error_f("Path too long"); 1318 goto out; 1319 } 1320 /* success */ 1321 ret = 0; 1322 *retp = s; 1323 s = NULL; 1324 out: 1325 free(s); 1326 free(ocopy); 1327 return ret; 1328 } 1329 1330 char * 1331 tilde_expand_filename(const char *filename, uid_t uid) 1332 { 1333 char *ret; 1334 1335 if (tilde_expand(filename, uid, &ret) != 0) 1336 cleanup_exit(255); 1337 return ret; 1338 } 1339 1340 /* 1341 * Expand a string with a set of %[char] escapes and/or ${ENVIRONMENT} 1342 * substitutions. A number of escapes may be specified as 1343 * (char *escape_chars, char *replacement) pairs. The list must be terminated 1344 * by a NULL escape_char. Returns replaced string in memory allocated by 1345 * xmalloc which the caller must free. 1346 */ 1347 static char * 1348 vdollar_percent_expand(int *parseerror, int dollar, int percent, 1349 const char *string, va_list ap) 1350 { 1351 #define EXPAND_MAX_KEYS 64 1352 u_int num_keys = 0, i; 1353 struct { 1354 const char *key; 1355 const char *repl; 1356 } keys[EXPAND_MAX_KEYS]; 1357 struct sshbuf *buf; 1358 int r, missingvar = 0; 1359 char *ret = NULL, *var, *varend, *val; 1360 size_t len; 1361 1362 if ((buf = sshbuf_new()) == NULL) 1363 fatal_f("sshbuf_new failed"); 1364 if (parseerror == NULL) 1365 fatal_f("null parseerror arg"); 1366 *parseerror = 1; 1367 1368 /* Gather keys if we're doing percent expansion. */ 1369 if (percent) { 1370 for (num_keys = 0; num_keys < EXPAND_MAX_KEYS; num_keys++) { 1371 keys[num_keys].key = va_arg(ap, char *); 1372 if (keys[num_keys].key == NULL) 1373 break; 1374 keys[num_keys].repl = va_arg(ap, char *); 1375 if (keys[num_keys].repl == NULL) { 1376 fatal_f("NULL replacement for token %s", 1377 keys[num_keys].key); 1378 } 1379 } 1380 if (num_keys == EXPAND_MAX_KEYS && va_arg(ap, char *) != NULL) 1381 fatal_f("too many keys"); 1382 if (num_keys == 0) 1383 fatal_f("percent expansion without token list"); 1384 } 1385 1386 /* Expand string */ 1387 for (i = 0; *string != '\0'; string++) { 1388 /* Optionally process ${ENVIRONMENT} expansions. */ 1389 if (dollar && string[0] == '$' && string[1] == '{') { 1390 string += 2; /* skip over '${' */ 1391 if ((varend = strchr(string, '}')) == NULL) { 1392 error_f("environment variable '%s' missing " 1393 "closing '}'", string); 1394 goto out; 1395 } 1396 len = varend - string; 1397 if (len == 0) { 1398 error_f("zero-length environment variable"); 1399 goto out; 1400 } 1401 var = xmalloc(len + 1); 1402 (void)strlcpy(var, string, len + 1); 1403 if ((val = getenv(var)) == NULL) { 1404 error_f("env var ${%s} has no value", var); 1405 missingvar = 1; 1406 } else { 1407 debug3_f("expand ${%s} -> '%s'", var, val); 1408 if ((r = sshbuf_put(buf, val, strlen(val))) !=0) 1409 fatal_fr(r, "sshbuf_put ${}"); 1410 } 1411 free(var); 1412 string += len; 1413 continue; 1414 } 1415 1416 /* 1417 * Process percent expansions if we have a list of TOKENs. 1418 * If we're not doing percent expansion everything just gets 1419 * appended here. 1420 */ 1421 if (*string != '%' || !percent) { 1422 append: 1423 if ((r = sshbuf_put_u8(buf, *string)) != 0) 1424 fatal_fr(r, "sshbuf_put_u8 %%"); 1425 continue; 1426 } 1427 string++; 1428 /* %% case */ 1429 if (*string == '%') 1430 goto append; 1431 if (*string == '\0') { 1432 error_f("invalid format"); 1433 goto out; 1434 } 1435 for (i = 0; i < num_keys; i++) { 1436 if (strchr(keys[i].key, *string) != NULL) { 1437 if ((r = sshbuf_put(buf, keys[i].repl, 1438 strlen(keys[i].repl))) != 0) 1439 fatal_fr(r, "sshbuf_put %%-repl"); 1440 break; 1441 } 1442 } 1443 if (i >= num_keys) { 1444 error_f("unknown key %%%c", *string); 1445 goto out; 1446 } 1447 } 1448 if (!missingvar && (ret = sshbuf_dup_string(buf)) == NULL) 1449 fatal_f("sshbuf_dup_string failed"); 1450 *parseerror = 0; 1451 out: 1452 sshbuf_free(buf); 1453 return *parseerror ? NULL : ret; 1454 #undef EXPAND_MAX_KEYS 1455 } 1456 1457 /* 1458 * Expand only environment variables. 1459 * Note that although this function is variadic like the other similar 1460 * functions, any such arguments will be unused. 1461 */ 1462 1463 char * 1464 dollar_expand(int *parseerr, const char *string, ...) 1465 { 1466 char *ret; 1467 int err; 1468 va_list ap; 1469 1470 va_start(ap, string); 1471 ret = vdollar_percent_expand(&err, 1, 0, string, ap); 1472 va_end(ap); 1473 if (parseerr != NULL) 1474 *parseerr = err; 1475 return ret; 1476 } 1477 1478 /* 1479 * Returns expanded string or NULL if a specified environment variable is 1480 * not defined, or calls fatal if the string is invalid. 1481 */ 1482 char * 1483 percent_expand(const char *string, ...) 1484 { 1485 char *ret; 1486 int err; 1487 va_list ap; 1488 1489 va_start(ap, string); 1490 ret = vdollar_percent_expand(&err, 0, 1, string, ap); 1491 va_end(ap); 1492 if (err) 1493 fatal_f("failed"); 1494 return ret; 1495 } 1496 1497 /* 1498 * Returns expanded string or NULL if a specified environment variable is 1499 * not defined, or calls fatal if the string is invalid. 1500 */ 1501 char * 1502 percent_dollar_expand(const char *string, ...) 1503 { 1504 char *ret; 1505 int err; 1506 va_list ap; 1507 1508 va_start(ap, string); 1509 ret = vdollar_percent_expand(&err, 1, 1, string, ap); 1510 va_end(ap); 1511 if (err) 1512 fatal_f("failed"); 1513 return ret; 1514 } 1515 1516 int 1517 tun_open(int tun, int mode, char **ifname) 1518 { 1519 #if defined(CUSTOM_SYS_TUN_OPEN) 1520 return (sys_tun_open(tun, mode, ifname)); 1521 #elif defined(SSH_TUN_OPENBSD) 1522 struct ifreq ifr; 1523 char name[100]; 1524 int fd = -1, sock; 1525 const char *tunbase = "tun"; 1526 1527 if (ifname != NULL) 1528 *ifname = NULL; 1529 1530 if (mode == SSH_TUNMODE_ETHERNET) 1531 tunbase = "tap"; 1532 1533 /* Open the tunnel device */ 1534 if (tun <= SSH_TUNID_MAX) { 1535 snprintf(name, sizeof(name), "/dev/%s%d", tunbase, tun); 1536 fd = open(name, O_RDWR); 1537 } else if (tun == SSH_TUNID_ANY) { 1538 for (tun = 100; tun >= 0; tun--) { 1539 snprintf(name, sizeof(name), "/dev/%s%d", 1540 tunbase, tun); 1541 if ((fd = open(name, O_RDWR)) >= 0) 1542 break; 1543 } 1544 } else { 1545 debug_f("invalid tunnel %u", tun); 1546 return -1; 1547 } 1548 1549 if (fd == -1) { 1550 debug_f("%s open: %s", name, strerror(errno)); 1551 return -1; 1552 } 1553 1554 debug_f("%s mode %d fd %d", name, mode, fd); 1555 1556 /* Bring interface up if it is not already */ 1557 snprintf(ifr.ifr_name, sizeof(ifr.ifr_name), "%s%d", tunbase, tun); 1558 if ((sock = socket(PF_UNIX, SOCK_STREAM, 0)) == -1) 1559 goto failed; 1560 1561 if (ioctl(sock, SIOCGIFFLAGS, &ifr) == -1) { 1562 debug_f("get interface %s flags: %s", ifr.ifr_name, 1563 strerror(errno)); 1564 goto failed; 1565 } 1566 1567 if (!(ifr.ifr_flags & IFF_UP)) { 1568 ifr.ifr_flags |= IFF_UP; 1569 if (ioctl(sock, SIOCSIFFLAGS, &ifr) == -1) { 1570 debug_f("activate interface %s: %s", ifr.ifr_name, 1571 strerror(errno)); 1572 goto failed; 1573 } 1574 } 1575 1576 if (ifname != NULL) 1577 *ifname = xstrdup(ifr.ifr_name); 1578 1579 close(sock); 1580 return fd; 1581 1582 failed: 1583 if (fd >= 0) 1584 close(fd); 1585 if (sock >= 0) 1586 close(sock); 1587 return -1; 1588 #else 1589 error("Tunnel interfaces are not supported on this platform"); 1590 return (-1); 1591 #endif 1592 } 1593 1594 void 1595 sanitise_stdfd(void) 1596 { 1597 int nullfd, dupfd; 1598 1599 if ((nullfd = dupfd = open(_PATH_DEVNULL, O_RDWR)) == -1) { 1600 fprintf(stderr, "Couldn't open /dev/null: %s\n", 1601 strerror(errno)); 1602 exit(1); 1603 } 1604 while (++dupfd <= STDERR_FILENO) { 1605 /* Only populate closed fds. */ 1606 if (fcntl(dupfd, F_GETFL) == -1 && errno == EBADF) { 1607 if (dup2(nullfd, dupfd) == -1) { 1608 fprintf(stderr, "dup2: %s\n", strerror(errno)); 1609 exit(1); 1610 } 1611 } 1612 } 1613 if (nullfd > STDERR_FILENO) 1614 close(nullfd); 1615 } 1616 1617 char * 1618 tohex(const void *vp, size_t l) 1619 { 1620 const u_char *p = (const u_char *)vp; 1621 char b[3], *r; 1622 size_t i, hl; 1623 1624 if (l > 65536) 1625 return xstrdup("tohex: length > 65536"); 1626 1627 hl = l * 2 + 1; 1628 r = xcalloc(1, hl); 1629 for (i = 0; i < l; i++) { 1630 snprintf(b, sizeof(b), "%02x", p[i]); 1631 strlcat(r, b, hl); 1632 } 1633 return (r); 1634 } 1635 1636 /* 1637 * Extend string *sp by the specified format. If *sp is not NULL (or empty), 1638 * then the separator 'sep' will be prepended before the formatted arguments. 1639 * Extended strings are heap allocated. 1640 */ 1641 void 1642 xextendf(char **sp, const char *sep, const char *fmt, ...) 1643 { 1644 va_list ap; 1645 char *tmp1, *tmp2; 1646 1647 va_start(ap, fmt); 1648 xvasprintf(&tmp1, fmt, ap); 1649 va_end(ap); 1650 1651 if (*sp == NULL || **sp == '\0') { 1652 free(*sp); 1653 *sp = tmp1; 1654 return; 1655 } 1656 xasprintf(&tmp2, "%s%s%s", *sp, sep == NULL ? "" : sep, tmp1); 1657 free(tmp1); 1658 free(*sp); 1659 *sp = tmp2; 1660 } 1661 1662 1663 uint64_t 1664 get_u64(const void *vp) 1665 { 1666 const u_char *p = (const u_char *)vp; 1667 uint64_t v; 1668 1669 v = (uint64_t)p[0] << 56; 1670 v |= (uint64_t)p[1] << 48; 1671 v |= (uint64_t)p[2] << 40; 1672 v |= (uint64_t)p[3] << 32; 1673 v |= (uint64_t)p[4] << 24; 1674 v |= (uint64_t)p[5] << 16; 1675 v |= (uint64_t)p[6] << 8; 1676 v |= (uint64_t)p[7]; 1677 1678 return (v); 1679 } 1680 1681 uint32_t 1682 get_u32(const void *vp) 1683 { 1684 const u_char *p = (const u_char *)vp; 1685 uint32_t v; 1686 1687 v = (uint32_t)p[0] << 24; 1688 v |= (uint32_t)p[1] << 16; 1689 v |= (uint32_t)p[2] << 8; 1690 v |= (uint32_t)p[3]; 1691 1692 return (v); 1693 } 1694 1695 uint32_t 1696 get_u32_le(const void *vp) 1697 { 1698 const u_char *p = (const u_char *)vp; 1699 uint32_t v; 1700 1701 v = (uint32_t)p[0]; 1702 v |= (uint32_t)p[1] << 8; 1703 v |= (uint32_t)p[2] << 16; 1704 v |= (uint32_t)p[3] << 24; 1705 1706 return (v); 1707 } 1708 1709 uint16_t 1710 get_u16(const void *vp) 1711 { 1712 const u_char *p = (const u_char *)vp; 1713 uint16_t v; 1714 1715 v = (uint16_t)p[0] << 8; 1716 v |= (uint16_t)p[1]; 1717 1718 return (v); 1719 } 1720 1721 void 1722 put_u64(void *vp, uint64_t v) 1723 { 1724 u_char *p = (u_char *)vp; 1725 1726 p[0] = (u_char)(v >> 56) & 0xff; 1727 p[1] = (u_char)(v >> 48) & 0xff; 1728 p[2] = (u_char)(v >> 40) & 0xff; 1729 p[3] = (u_char)(v >> 32) & 0xff; 1730 p[4] = (u_char)(v >> 24) & 0xff; 1731 p[5] = (u_char)(v >> 16) & 0xff; 1732 p[6] = (u_char)(v >> 8) & 0xff; 1733 p[7] = (u_char)v & 0xff; 1734 } 1735 1736 void 1737 put_u32(void *vp, uint32_t v) 1738 { 1739 u_char *p = (u_char *)vp; 1740 1741 p[0] = (u_char)(v >> 24) & 0xff; 1742 p[1] = (u_char)(v >> 16) & 0xff; 1743 p[2] = (u_char)(v >> 8) & 0xff; 1744 p[3] = (u_char)v & 0xff; 1745 } 1746 1747 void 1748 put_u32_le(void *vp, uint32_t v) 1749 { 1750 u_char *p = (u_char *)vp; 1751 1752 p[0] = (u_char)v & 0xff; 1753 p[1] = (u_char)(v >> 8) & 0xff; 1754 p[2] = (u_char)(v >> 16) & 0xff; 1755 p[3] = (u_char)(v >> 24) & 0xff; 1756 } 1757 1758 void 1759 put_u16(void *vp, uint16_t v) 1760 { 1761 u_char *p = (u_char *)vp; 1762 1763 p[0] = (u_char)(v >> 8) & 0xff; 1764 p[1] = (u_char)v & 0xff; 1765 } 1766 1767 void 1768 ms_subtract_diff(struct timeval *start, int *ms) 1769 { 1770 struct timeval diff, finish; 1771 1772 monotime_tv(&finish); 1773 timersub(&finish, start, &diff); 1774 *ms -= (diff.tv_sec * 1000) + (diff.tv_usec / 1000); 1775 } 1776 1777 void 1778 ms_to_timespec(struct timespec *ts, int ms) 1779 { 1780 if (ms < 0) 1781 ms = 0; 1782 ts->tv_sec = ms / 1000; 1783 ts->tv_nsec = (ms % 1000) * 1000 * 1000; 1784 } 1785 1786 void 1787 monotime_ts(struct timespec *ts) 1788 { 1789 struct timeval tv; 1790 #if defined(HAVE_CLOCK_GETTIME) && (defined(CLOCK_BOOTTIME) || \ 1791 defined(CLOCK_MONOTONIC) || defined(CLOCK_REALTIME)) 1792 static int gettime_failed = 0; 1793 1794 if (!gettime_failed) { 1795 # ifdef CLOCK_BOOTTIME 1796 if (clock_gettime(CLOCK_BOOTTIME, ts) == 0) 1797 return; 1798 # endif /* CLOCK_BOOTTIME */ 1799 # ifdef CLOCK_MONOTONIC 1800 if (clock_gettime(CLOCK_MONOTONIC, ts) == 0) 1801 return; 1802 # endif /* CLOCK_MONOTONIC */ 1803 # ifdef CLOCK_REALTIME 1804 /* Not monotonic, but we're almost out of options here. */ 1805 if (clock_gettime(CLOCK_REALTIME, ts) == 0) 1806 return; 1807 # endif /* CLOCK_REALTIME */ 1808 debug3("clock_gettime: %s", strerror(errno)); 1809 gettime_failed = 1; 1810 } 1811 #endif /* HAVE_CLOCK_GETTIME && (BOOTTIME || MONOTONIC || REALTIME) */ 1812 gettimeofday(&tv, NULL); 1813 ts->tv_sec = tv.tv_sec; 1814 ts->tv_nsec = (long)tv.tv_usec * 1000; 1815 } 1816 1817 void 1818 monotime_tv(struct timeval *tv) 1819 { 1820 struct timespec ts; 1821 1822 monotime_ts(&ts); 1823 tv->tv_sec = ts.tv_sec; 1824 tv->tv_usec = ts.tv_nsec / 1000; 1825 } 1826 1827 time_t 1828 monotime(void) 1829 { 1830 struct timespec ts; 1831 1832 monotime_ts(&ts); 1833 return (ts.tv_sec); 1834 } 1835 1836 double 1837 monotime_double(void) 1838 { 1839 struct timespec ts; 1840 1841 monotime_ts(&ts); 1842 return (double)ts.tv_sec + (double)ts.tv_nsec / 1000000000.0; 1843 } 1844 1845 void 1846 bandwidth_limit_init(struct bwlimit *bw, uint64_t kbps, size_t buflen) 1847 { 1848 bw->buflen = buflen; 1849 bw->rate = kbps; 1850 bw->thresh = buflen; 1851 bw->lamt = 0; 1852 timerclear(&bw->bwstart); 1853 timerclear(&bw->bwend); 1854 } 1855 1856 /* Callback from read/write loop to insert bandwidth-limiting delays */ 1857 void 1858 bandwidth_limit(struct bwlimit *bw, size_t read_len) 1859 { 1860 uint64_t waitlen; 1861 struct timespec ts, rm; 1862 1863 bw->lamt += read_len; 1864 if (!timerisset(&bw->bwstart)) { 1865 monotime_tv(&bw->bwstart); 1866 return; 1867 } 1868 if (bw->lamt < bw->thresh) 1869 return; 1870 1871 monotime_tv(&bw->bwend); 1872 timersub(&bw->bwend, &bw->bwstart, &bw->bwend); 1873 if (!timerisset(&bw->bwend)) 1874 return; 1875 1876 bw->lamt *= 8; 1877 waitlen = (double)1000000L * bw->lamt / bw->rate; 1878 1879 bw->bwstart.tv_sec = waitlen / 1000000L; 1880 bw->bwstart.tv_usec = waitlen % 1000000L; 1881 1882 if (timercmp(&bw->bwstart, &bw->bwend, >)) { 1883 timersub(&bw->bwstart, &bw->bwend, &bw->bwend); 1884 1885 /* Adjust the wait time */ 1886 if (bw->bwend.tv_sec) { 1887 bw->thresh /= 2; 1888 if (bw->thresh < bw->buflen / 4) 1889 bw->thresh = bw->buflen / 4; 1890 } else if (bw->bwend.tv_usec < 10000) { 1891 bw->thresh *= 2; 1892 if (bw->thresh > bw->buflen * 8) 1893 bw->thresh = bw->buflen * 8; 1894 } 1895 1896 TIMEVAL_TO_TIMESPEC(&bw->bwend, &ts); 1897 while (nanosleep(&ts, &rm) == -1) { 1898 if (errno != EINTR) 1899 break; 1900 ts = rm; 1901 } 1902 } 1903 1904 bw->lamt = 0; 1905 monotime_tv(&bw->bwstart); 1906 } 1907 1908 /* Make a template filename for mk[sd]temp() */ 1909 void 1910 mktemp_proto(char *s, size_t len) 1911 { 1912 const char *tmpdir; 1913 int r; 1914 1915 if ((tmpdir = getenv("TMPDIR")) != NULL) { 1916 r = snprintf(s, len, "%s/ssh-XXXXXXXXXXXX", tmpdir); 1917 if (r > 0 && (size_t)r < len) 1918 return; 1919 } 1920 r = snprintf(s, len, "/tmp/ssh-XXXXXXXXXXXX"); 1921 if (r < 0 || (size_t)r >= len) 1922 fatal_f("template string too short"); 1923 } 1924 1925 static const struct { 1926 const char *name; 1927 int value; 1928 } ipqos[] = { 1929 { "none", INT_MAX }, /* can't use 0 here; that's CS0 */ 1930 { "af11", IPTOS_DSCP_AF11 }, 1931 { "af12", IPTOS_DSCP_AF12 }, 1932 { "af13", IPTOS_DSCP_AF13 }, 1933 { "af21", IPTOS_DSCP_AF21 }, 1934 { "af22", IPTOS_DSCP_AF22 }, 1935 { "af23", IPTOS_DSCP_AF23 }, 1936 { "af31", IPTOS_DSCP_AF31 }, 1937 { "af32", IPTOS_DSCP_AF32 }, 1938 { "af33", IPTOS_DSCP_AF33 }, 1939 { "af41", IPTOS_DSCP_AF41 }, 1940 { "af42", IPTOS_DSCP_AF42 }, 1941 { "af43", IPTOS_DSCP_AF43 }, 1942 { "cs0", IPTOS_DSCP_CS0 }, 1943 { "cs1", IPTOS_DSCP_CS1 }, 1944 { "cs2", IPTOS_DSCP_CS2 }, 1945 { "cs3", IPTOS_DSCP_CS3 }, 1946 { "cs4", IPTOS_DSCP_CS4 }, 1947 { "cs5", IPTOS_DSCP_CS5 }, 1948 { "cs6", IPTOS_DSCP_CS6 }, 1949 { "cs7", IPTOS_DSCP_CS7 }, 1950 { "ef", IPTOS_DSCP_EF }, 1951 { "le", IPTOS_DSCP_LE }, 1952 { "va", IPTOS_DSCP_VA }, 1953 { "lowdelay", INT_MIN }, /* deprecated */ 1954 { "throughput", INT_MIN }, /* deprecated */ 1955 { "reliability", INT_MIN }, /* deprecated */ 1956 { NULL, -1 } 1957 }; 1958 1959 int 1960 parse_ipqos(const char *cp) 1961 { 1962 const char *errstr; 1963 u_int i; 1964 int val; 1965 1966 if (cp == NULL) 1967 return -1; 1968 for (i = 0; ipqos[i].name != NULL; i++) { 1969 if (strcasecmp(cp, ipqos[i].name) == 0) 1970 return ipqos[i].value; 1971 } 1972 /* Try parsing as an integer */ 1973 val = (int)strtonum(cp, 0, 255, &errstr); 1974 if (errstr) 1975 return -1; 1976 return val; 1977 } 1978 1979 const char * 1980 iptos2str(int iptos) 1981 { 1982 int i; 1983 static char iptos_str[sizeof "0xff"]; 1984 1985 for (i = 0; ipqos[i].name != NULL; i++) { 1986 if (ipqos[i].value == iptos) 1987 return ipqos[i].name; 1988 } 1989 snprintf(iptos_str, sizeof iptos_str, "0x%02x", iptos); 1990 return iptos_str; 1991 } 1992 1993 void 1994 lowercase(char *s) 1995 { 1996 for (; *s; s++) 1997 *s = tolower((u_char)*s); 1998 } 1999 2000 int 2001 unix_listener(const char *path, int backlog, int unlink_first) 2002 { 2003 struct sockaddr_un sunaddr; 2004 int saved_errno, sock; 2005 2006 memset(&sunaddr, 0, sizeof(sunaddr)); 2007 sunaddr.sun_family = AF_UNIX; 2008 if (strlcpy(sunaddr.sun_path, path, 2009 sizeof(sunaddr.sun_path)) >= sizeof(sunaddr.sun_path)) { 2010 error_f("path \"%s\" too long for Unix domain socket", path); 2011 errno = ENAMETOOLONG; 2012 return -1; 2013 } 2014 2015 sock = socket(PF_UNIX, SOCK_STREAM, 0); 2016 if (sock == -1) { 2017 saved_errno = errno; 2018 error_f("socket: %.100s", strerror(errno)); 2019 errno = saved_errno; 2020 return -1; 2021 } 2022 if (unlink_first == 1) { 2023 if (unlink(path) != 0 && errno != ENOENT) 2024 error("unlink(%s): %.100s", path, strerror(errno)); 2025 } 2026 if (bind(sock, (struct sockaddr *)&sunaddr, sizeof(sunaddr)) == -1) { 2027 saved_errno = errno; 2028 error_f("cannot bind to path %s: %s", path, strerror(errno)); 2029 close(sock); 2030 errno = saved_errno; 2031 return -1; 2032 } 2033 if (listen(sock, backlog) == -1) { 2034 saved_errno = errno; 2035 error_f("cannot listen on path %s: %s", path, strerror(errno)); 2036 close(sock); 2037 unlink(path); 2038 errno = saved_errno; 2039 return -1; 2040 } 2041 return sock; 2042 } 2043 2044 void 2045 sock_set_v6only(int s) 2046 { 2047 #if defined(IPV6_V6ONLY) && !defined(__OpenBSD__) 2048 int on = 1; 2049 2050 debug3_f("set socket %d IPV6_V6ONLY", s); 2051 if (setsockopt(s, IPPROTO_IPV6, IPV6_V6ONLY, &on, sizeof(on)) == -1) 2052 error("setsockopt IPV6_V6ONLY: %s", strerror(errno)); 2053 #endif 2054 } 2055 2056 /* 2057 * Compares two strings that maybe be NULL. Returns non-zero if strings 2058 * are both NULL or are identical, returns zero otherwise. 2059 */ 2060 static int 2061 strcmp_maybe_null(const char *a, const char *b) 2062 { 2063 if ((a == NULL && b != NULL) || (a != NULL && b == NULL)) 2064 return 0; 2065 if (a != NULL && strcmp(a, b) != 0) 2066 return 0; 2067 return 1; 2068 } 2069 2070 /* 2071 * Compare two forwards, returning non-zero if they are identical or 2072 * zero otherwise. 2073 */ 2074 int 2075 forward_equals(const struct Forward *a, const struct Forward *b) 2076 { 2077 if (strcmp_maybe_null(a->listen_host, b->listen_host) == 0) 2078 return 0; 2079 if (a->listen_port != b->listen_port) 2080 return 0; 2081 if (strcmp_maybe_null(a->listen_path, b->listen_path) == 0) 2082 return 0; 2083 if (strcmp_maybe_null(a->connect_host, b->connect_host) == 0) 2084 return 0; 2085 if (a->connect_port != b->connect_port) 2086 return 0; 2087 if (strcmp_maybe_null(a->connect_path, b->connect_path) == 0) 2088 return 0; 2089 /* allocated_port and handle are not checked */ 2090 return 1; 2091 } 2092 2093 /* returns port number, FWD_PERMIT_ANY_PORT or -1 on error */ 2094 int 2095 permitopen_port(const char *p) 2096 { 2097 int port; 2098 2099 if (strcmp(p, "*") == 0) 2100 return FWD_PERMIT_ANY_PORT; 2101 if ((port = a2port(p)) > 0) 2102 return port; 2103 return -1; 2104 } 2105 2106 /* returns 1 if process is already daemonized, 0 otherwise */ 2107 int 2108 daemonized(void) 2109 { 2110 int fd; 2111 2112 if ((fd = open(_PATH_TTY, O_RDONLY | O_NOCTTY)) >= 0) { 2113 close(fd); 2114 return 0; /* have controlling terminal */ 2115 } 2116 if (getppid() != 1) 2117 return 0; /* parent is not init */ 2118 if (getsid(0) != getpid()) 2119 return 0; /* not session leader */ 2120 debug3("already daemonized"); 2121 return 1; 2122 } 2123 2124 /* 2125 * Splits 's' into an argument vector. Handles quoted string and basic 2126 * escape characters (\\, \", \'). Caller must free the argument vector 2127 * and its members. 2128 */ 2129 int 2130 argv_split(const char *s, int *argcp, char ***argvp, int terminate_on_comment) 2131 { 2132 int r = SSH_ERR_INTERNAL_ERROR; 2133 int argc = 0, quote, i, j; 2134 char *arg, **argv = xcalloc(1, sizeof(*argv)); 2135 2136 *argvp = NULL; 2137 *argcp = 0; 2138 2139 for (i = 0; s[i] != '\0'; i++) { 2140 /* Skip leading whitespace */ 2141 if (s[i] == ' ' || s[i] == '\t') 2142 continue; 2143 if (terminate_on_comment && s[i] == '#') 2144 break; 2145 /* Start of a token */ 2146 quote = 0; 2147 2148 argv = xreallocarray(argv, (argc + 2), sizeof(*argv)); 2149 arg = argv[argc++] = xcalloc(1, strlen(s + i) + 1); 2150 argv[argc] = NULL; 2151 2152 /* Copy the token in, removing escapes */ 2153 for (j = 0; s[i] != '\0'; i++) { 2154 if (s[i] == '\\') { 2155 if (s[i + 1] == '\'' || 2156 s[i + 1] == '\"' || 2157 s[i + 1] == '\\' || 2158 (quote == 0 && s[i + 1] == ' ')) { 2159 i++; /* Skip '\' */ 2160 arg[j++] = s[i]; 2161 } else { 2162 /* Unrecognised escape */ 2163 arg[j++] = s[i]; 2164 } 2165 } else if (quote == 0 && (s[i] == ' ' || s[i] == '\t')) 2166 break; /* done */ 2167 else if (quote == 0 && (s[i] == '\"' || s[i] == '\'')) 2168 quote = s[i]; /* quote start */ 2169 else if (quote != 0 && s[i] == quote) 2170 quote = 0; /* quote end */ 2171 else 2172 arg[j++] = s[i]; 2173 } 2174 if (s[i] == '\0') { 2175 if (quote != 0) { 2176 /* Ran out of string looking for close quote */ 2177 r = SSH_ERR_INVALID_FORMAT; 2178 goto out; 2179 } 2180 break; 2181 } 2182 } 2183 /* Success */ 2184 *argcp = argc; 2185 *argvp = argv; 2186 argc = 0; 2187 argv = NULL; 2188 r = 0; 2189 out: 2190 if (argc != 0 && argv != NULL) { 2191 for (i = 0; i < argc; i++) 2192 free(argv[i]); 2193 free(argv); 2194 } 2195 return r; 2196 } 2197 2198 /* 2199 * Reassemble an argument vector into a string, quoting and escaping as 2200 * necessary. Caller must free returned string. 2201 */ 2202 char * 2203 argv_assemble(int argc, char **argv) 2204 { 2205 int i, j, ws, r; 2206 char c, *ret; 2207 struct sshbuf *buf, *arg; 2208 2209 if ((buf = sshbuf_new()) == NULL || (arg = sshbuf_new()) == NULL) 2210 fatal_f("sshbuf_new failed"); 2211 2212 for (i = 0; i < argc; i++) { 2213 ws = 0; 2214 sshbuf_reset(arg); 2215 for (j = 0; argv[i][j] != '\0'; j++) { 2216 r = 0; 2217 c = argv[i][j]; 2218 switch (c) { 2219 case ' ': 2220 case '\t': 2221 ws = 1; 2222 r = sshbuf_put_u8(arg, c); 2223 break; 2224 case '\\': 2225 case '\'': 2226 case '"': 2227 if ((r = sshbuf_put_u8(arg, '\\')) != 0) 2228 break; 2229 /* FALLTHROUGH */ 2230 default: 2231 r = sshbuf_put_u8(arg, c); 2232 break; 2233 } 2234 if (r != 0) 2235 fatal_fr(r, "sshbuf_put_u8"); 2236 } 2237 if ((i != 0 && (r = sshbuf_put_u8(buf, ' ')) != 0) || 2238 (ws != 0 && (r = sshbuf_put_u8(buf, '"')) != 0) || 2239 (r = sshbuf_putb(buf, arg)) != 0 || 2240 (ws != 0 && (r = sshbuf_put_u8(buf, '"')) != 0)) 2241 fatal_fr(r, "assemble"); 2242 } 2243 if ((ret = malloc(sshbuf_len(buf) + 1)) == NULL) 2244 fatal_f("malloc failed"); 2245 memcpy(ret, sshbuf_ptr(buf), sshbuf_len(buf)); 2246 ret[sshbuf_len(buf)] = '\0'; 2247 sshbuf_free(buf); 2248 sshbuf_free(arg); 2249 return ret; 2250 } 2251 2252 char * 2253 argv_next(int *argcp, char ***argvp) 2254 { 2255 char *ret = (*argvp)[0]; 2256 2257 if (*argcp > 0 && ret != NULL) { 2258 (*argcp)--; 2259 (*argvp)++; 2260 } 2261 return ret; 2262 } 2263 2264 void 2265 argv_consume(int *argcp) 2266 { 2267 *argcp = 0; 2268 } 2269 2270 void 2271 argv_free(char **av, int ac) 2272 { 2273 int i; 2274 2275 if (av == NULL) 2276 return; 2277 for (i = 0; i < ac; i++) 2278 free(av[i]); 2279 free(av); 2280 } 2281 2282 /* Returns 0 if pid exited cleanly, non-zero otherwise */ 2283 int 2284 exited_cleanly(pid_t pid, const char *tag, const char *cmd, int quiet) 2285 { 2286 int status; 2287 2288 while (waitpid(pid, &status, 0) == -1) { 2289 if (errno != EINTR) { 2290 error("%s waitpid: %s", tag, strerror(errno)); 2291 return -1; 2292 } 2293 } 2294 if (WIFSIGNALED(status)) { 2295 error("%s %s exited on signal %d", tag, cmd, WTERMSIG(status)); 2296 return -1; 2297 } else if (WEXITSTATUS(status) != 0) { 2298 do_log2(quiet ? SYSLOG_LEVEL_DEBUG1 : SYSLOG_LEVEL_INFO, 2299 "%s %s failed, status %d", tag, cmd, WEXITSTATUS(status)); 2300 return -1; 2301 } 2302 return 0; 2303 } 2304 2305 /* 2306 * Check a given path for security. This is defined as all components 2307 * of the path to the file must be owned by either the owner of 2308 * of the file or root and no directories must be group or world writable. 2309 * 2310 * XXX Should any specific check be done for sym links ? 2311 * 2312 * Takes a file name, its stat information (preferably from fstat() to 2313 * avoid races), the uid of the expected owner, their home directory and an 2314 * error buffer plus max size as arguments. 2315 * 2316 * Returns 0 on success and -1 on failure 2317 */ 2318 int 2319 safe_path(const char *name, struct stat *stp, const char *pw_dir, 2320 uid_t uid, char *err, size_t errlen) 2321 { 2322 char buf[PATH_MAX], buf2[PATH_MAX], homedir[PATH_MAX]; 2323 char *cp; 2324 int comparehome = 0; 2325 struct stat st; 2326 2327 if (realpath(name, buf) == NULL) { 2328 snprintf(err, errlen, "realpath %s failed: %s", name, 2329 strerror(errno)); 2330 return -1; 2331 } 2332 if (pw_dir != NULL && realpath(pw_dir, homedir) != NULL) 2333 comparehome = 1; 2334 2335 if (!S_ISREG(stp->st_mode)) { 2336 snprintf(err, errlen, "%s is not a regular file", buf); 2337 return -1; 2338 } 2339 if ((!platform_sys_dir_uid(stp->st_uid) && stp->st_uid != uid) || 2340 (stp->st_mode & 022) != 0) { 2341 snprintf(err, errlen, "bad ownership or modes for file %s", 2342 buf); 2343 return -1; 2344 } 2345 2346 /* for each component of the canonical path, walking upwards */ 2347 for (;;) { 2348 /* 2349 * POSIX allows dirname to modify its argument and return a 2350 * pointer into it, so make a copy to avoid overlapping strlcpy. 2351 */ 2352 strlcpy(buf2, buf, sizeof(buf2)); 2353 if ((cp = dirname(buf2)) == NULL) { 2354 snprintf(err, errlen, "dirname() failed"); 2355 return -1; 2356 } 2357 strlcpy(buf, cp, sizeof(buf)); 2358 2359 if (stat(buf, &st) == -1 || 2360 (!platform_sys_dir_uid(st.st_uid) && st.st_uid != uid) || 2361 (st.st_mode & 022) != 0) { 2362 snprintf(err, errlen, 2363 "bad ownership or modes for directory %s", buf); 2364 return -1; 2365 } 2366 2367 /* If are past the homedir then we can stop */ 2368 if (comparehome && strcmp(homedir, buf) == 0) 2369 break; 2370 2371 /* 2372 * dirname should always complete with a "/" path, 2373 * but we can be paranoid and check for "." too 2374 */ 2375 if ((strcmp("/", buf) == 0) || (strcmp(".", buf) == 0)) 2376 break; 2377 } 2378 return 0; 2379 } 2380 2381 /* 2382 * Version of safe_path() that accepts an open file descriptor to 2383 * avoid races. 2384 * 2385 * Returns 0 on success and -1 on failure 2386 */ 2387 int 2388 safe_path_fd(int fd, const char *file, struct passwd *pw, 2389 char *err, size_t errlen) 2390 { 2391 struct stat st; 2392 2393 /* check the open file to avoid races */ 2394 if (fstat(fd, &st) == -1) { 2395 snprintf(err, errlen, "cannot stat file %s: %s", 2396 file, strerror(errno)); 2397 return -1; 2398 } 2399 return safe_path(file, &st, pw->pw_dir, pw->pw_uid, err, errlen); 2400 } 2401 2402 /* 2403 * Sets the value of the given variable in the environment. If the variable 2404 * already exists, its value is overridden. 2405 */ 2406 void 2407 child_set_env(char ***envp, u_int *envsizep, const char *name, 2408 const char *value) 2409 { 2410 char **env; 2411 u_int envsize; 2412 u_int i, namelen; 2413 2414 if (strchr(name, '=') != NULL) { 2415 error("Invalid environment variable \"%.100s\"", name); 2416 return; 2417 } 2418 2419 /* 2420 * If we're passed an uninitialized list, allocate a single null 2421 * entry before continuing. 2422 */ 2423 if ((*envp == NULL) != (*envsizep == 0)) 2424 fatal_f("environment size mismatch"); 2425 if (*envp == NULL && *envsizep == 0) { 2426 *envp = xmalloc(sizeof(char *)); 2427 *envp[0] = NULL; 2428 *envsizep = 1; 2429 } 2430 2431 /* 2432 * Find the slot where the value should be stored. If the variable 2433 * already exists, we reuse the slot; otherwise we append a new slot 2434 * at the end of the array, expanding if necessary. 2435 */ 2436 env = *envp; 2437 namelen = strlen(name); 2438 for (i = 0; env[i]; i++) 2439 if (strncmp(env[i], name, namelen) == 0 && env[i][namelen] == '=') 2440 break; 2441 if (env[i]) { 2442 /* Reuse the slot. */ 2443 free(env[i]); 2444 } else { 2445 /* New variable. Expand if necessary. */ 2446 envsize = *envsizep; 2447 if (i >= envsize - 1) { 2448 if (envsize >= 1000) 2449 fatal("child_set_env: too many env vars"); 2450 envsize += 50; 2451 env = (*envp) = xreallocarray(env, envsize, sizeof(char *)); 2452 *envsizep = envsize; 2453 } 2454 /* Need to set the NULL pointer at end of array beyond the new slot. */ 2455 env[i + 1] = NULL; 2456 } 2457 2458 /* Allocate space and format the variable in the appropriate slot. */ 2459 /* XXX xasprintf */ 2460 env[i] = xmalloc(strlen(name) + 1 + strlen(value) + 1); 2461 snprintf(env[i], strlen(name) + 1 + strlen(value) + 1, "%s=%s", name, value); 2462 } 2463 2464 /* 2465 * Check and optionally lowercase a domain name, also removes trailing '.' 2466 * Returns 1 on success and 0 on failure, storing an error message in errstr. 2467 */ 2468 int 2469 valid_domain(char *name, int makelower, const char **errstr) 2470 { 2471 size_t i, l = strlen(name); 2472 u_char c, last = '\0'; 2473 static char errbuf[256]; 2474 2475 if (l == 0) { 2476 strlcpy(errbuf, "empty domain name", sizeof(errbuf)); 2477 goto bad; 2478 } 2479 if (!isalpha((u_char)name[0]) && !isdigit((u_char)name[0]) && 2480 name[0] != '_' /* technically invalid, but common */) { 2481 snprintf(errbuf, sizeof(errbuf), "domain name \"%.100s\" " 2482 "starts with invalid character", name); 2483 goto bad; 2484 } 2485 for (i = 0; i < l; i++) { 2486 c = tolower((u_char)name[i]); 2487 if (makelower) 2488 name[i] = (char)c; 2489 if (last == '.' && c == '.') { 2490 snprintf(errbuf, sizeof(errbuf), "domain name " 2491 "\"%.100s\" contains consecutive separators", name); 2492 goto bad; 2493 } 2494 if (c != '.' && c != '-' && !isalnum(c) && 2495 c != '_') /* technically invalid, but common */ { 2496 snprintf(errbuf, sizeof(errbuf), "domain name " 2497 "\"%.100s\" contains invalid characters", name); 2498 goto bad; 2499 } 2500 last = c; 2501 } 2502 if (name[l - 1] == '.') 2503 name[l - 1] = '\0'; 2504 if (errstr != NULL) 2505 *errstr = NULL; 2506 return 1; 2507 bad: 2508 if (errstr != NULL) 2509 *errstr = errbuf; 2510 return 0; 2511 } 2512 2513 /* 2514 * Verify that a environment variable name (not including initial '$') is 2515 * valid; consisting of one or more alphanumeric or underscore characters only. 2516 * Returns 1 on valid, 0 otherwise. 2517 */ 2518 int 2519 valid_env_name(const char *name) 2520 { 2521 const char *cp; 2522 2523 if (name[0] == '\0') 2524 return 0; 2525 for (cp = name; *cp != '\0'; cp++) { 2526 if (!isalnum((u_char)*cp) && *cp != '_') 2527 return 0; 2528 } 2529 return 1; 2530 } 2531 2532 const char * 2533 atoi_err(const char *nptr, int *val) 2534 { 2535 const char *errstr = NULL; 2536 2537 if (nptr == NULL || *nptr == '\0') 2538 return "missing"; 2539 *val = strtonum(nptr, 0, INT_MAX, &errstr); 2540 return errstr; 2541 } 2542 2543 int 2544 parse_absolute_time(const char *s, uint64_t *tp) 2545 { 2546 struct tm tm; 2547 time_t tt; 2548 char buf[32], *fmt; 2549 const char *cp; 2550 size_t l; 2551 int is_utc = 0; 2552 2553 *tp = 0; 2554 2555 l = strlen(s); 2556 if (l > 1 && strcasecmp(s + l - 1, "Z") == 0) { 2557 is_utc = 1; 2558 l--; 2559 } else if (l > 3 && strcasecmp(s + l - 3, "UTC") == 0) { 2560 is_utc = 1; 2561 l -= 3; 2562 } 2563 /* 2564 * POSIX strptime says "The application shall ensure that there 2565 * is white-space or other non-alphanumeric characters between 2566 * any two conversion specifications" so arrange things this way. 2567 */ 2568 switch (l) { 2569 case 8: /* YYYYMMDD */ 2570 fmt = "%Y-%m-%d"; 2571 snprintf(buf, sizeof(buf), "%.4s-%.2s-%.2s", s, s + 4, s + 6); 2572 break; 2573 case 12: /* YYYYMMDDHHMM */ 2574 fmt = "%Y-%m-%dT%H:%M"; 2575 snprintf(buf, sizeof(buf), "%.4s-%.2s-%.2sT%.2s:%.2s", 2576 s, s + 4, s + 6, s + 8, s + 10); 2577 break; 2578 case 14: /* YYYYMMDDHHMMSS */ 2579 fmt = "%Y-%m-%dT%H:%M:%S"; 2580 snprintf(buf, sizeof(buf), "%.4s-%.2s-%.2sT%.2s:%.2s:%.2s", 2581 s, s + 4, s + 6, s + 8, s + 10, s + 12); 2582 break; 2583 default: 2584 return SSH_ERR_INVALID_FORMAT; 2585 } 2586 2587 memset(&tm, 0, sizeof(tm)); 2588 if ((cp = strptime(buf, fmt, &tm)) == NULL || *cp != '\0') 2589 return SSH_ERR_INVALID_FORMAT; 2590 if (is_utc) { 2591 tm.tm_wday = -1; /* sentinel for error */ 2592 if ((tt = timegm(&tm)) == -1 && tm.tm_wday == -1) 2593 return SSH_ERR_INVALID_FORMAT; 2594 } else { 2595 tm.tm_wday = -1; /* sentinel for error */ 2596 if ((tt = mktime(&tm)) == -1 && tm.tm_wday == -1) 2597 return SSH_ERR_INVALID_FORMAT; 2598 } 2599 /* success */ 2600 *tp = (uint64_t)tt; 2601 return 0; 2602 } 2603 2604 void 2605 format_absolute_time(uint64_t t, char *buf, size_t len) 2606 { 2607 time_t tt = t > SSH_TIME_T_MAX ? SSH_TIME_T_MAX : t; 2608 struct tm tm; 2609 2610 if (localtime_r(&tt, &tm) == NULL) 2611 strlcpy(buf, "UNKNOWN-TIME", len); 2612 else 2613 strftime(buf, len, "%Y-%m-%dT%H:%M:%S", &tm); 2614 } 2615 2616 /* 2617 * Parse a "pattern=interval" clause (e.g. a ChannelTimeout). 2618 * Returns 0 on success or non-zero on failure. 2619 * Caller must free *typep. 2620 */ 2621 int 2622 parse_pattern_interval(const char *s, char **typep, int *secsp) 2623 { 2624 char *cp, *sdup; 2625 int secs; 2626 2627 if (typep != NULL) 2628 *typep = NULL; 2629 if (secsp != NULL) 2630 *secsp = 0; 2631 if (s == NULL) 2632 return -1; 2633 sdup = xstrdup(s); 2634 2635 if ((cp = strchr(sdup, '=')) == NULL || cp == sdup) { 2636 free(sdup); 2637 return -1; 2638 } 2639 *cp++ = '\0'; 2640 if ((secs = convtime(cp)) < 0) { 2641 free(sdup); 2642 return -1; 2643 } 2644 /* success */ 2645 if (typep != NULL) 2646 *typep = xstrdup(sdup); 2647 if (secsp != NULL) 2648 *secsp = secs; 2649 free(sdup); 2650 return 0; 2651 } 2652 2653 /* check if path is absolute */ 2654 int 2655 path_absolute(const char *path) 2656 { 2657 return (*path == '/') ? 1 : 0; 2658 } 2659 2660 void 2661 skip_space(char **cpp) 2662 { 2663 char *cp; 2664 2665 for (cp = *cpp; *cp == ' ' || *cp == '\t'; cp++) 2666 ; 2667 *cpp = cp; 2668 } 2669 2670 /* authorized_key-style options parsing helpers */ 2671 2672 /* 2673 * Match flag 'opt' in *optsp, and if allow_negate is set then also match 2674 * 'no-opt'. Returns -1 if option not matched, 1 if option matches or 0 2675 * if negated option matches. 2676 * If the option or negated option matches, then *optsp is updated to 2677 * point to the first character after the option. 2678 */ 2679 int 2680 opt_flag(const char *opt, int allow_negate, const char **optsp) 2681 { 2682 size_t opt_len = strlen(opt); 2683 const char *opts = *optsp; 2684 int negate = 0; 2685 2686 if (allow_negate && strncasecmp(opts, "no-", 3) == 0) { 2687 opts += 3; 2688 negate = 1; 2689 } 2690 if (strncasecmp(opts, opt, opt_len) == 0) { 2691 *optsp = opts + opt_len; 2692 return negate ? 0 : 1; 2693 } 2694 return -1; 2695 } 2696 2697 char * 2698 opt_dequote(const char **sp, const char **errstrp) 2699 { 2700 const char *s = *sp; 2701 char *ret; 2702 size_t i; 2703 2704 *errstrp = NULL; 2705 if (*s != '"') { 2706 *errstrp = "missing start quote"; 2707 return NULL; 2708 } 2709 s++; 2710 if ((ret = malloc(strlen((s)) + 1)) == NULL) { 2711 *errstrp = "memory allocation failed"; 2712 return NULL; 2713 } 2714 for (i = 0; *s != '\0' && *s != '"';) { 2715 if (s[0] == '\\' && s[1] == '"') 2716 s++; 2717 ret[i++] = *s++; 2718 } 2719 if (*s == '\0') { 2720 *errstrp = "missing end quote"; 2721 free(ret); 2722 return NULL; 2723 } 2724 ret[i] = '\0'; 2725 s++; 2726 *sp = s; 2727 return ret; 2728 } 2729 2730 int 2731 opt_match(const char **opts, const char *term) 2732 { 2733 if (strncasecmp((*opts), term, strlen(term)) == 0 && 2734 (*opts)[strlen(term)] == '=') { 2735 *opts += strlen(term) + 1; 2736 return 1; 2737 } 2738 return 0; 2739 } 2740 2741 void 2742 opt_array_append2(const char *file, const int line, const char *directive, 2743 char ***array, int **iarray, u_int *lp, const char *s, int i) 2744 { 2745 2746 if (*lp >= INT_MAX) 2747 fatal("%s line %d: Too many %s entries", file, line, directive); 2748 2749 if (iarray != NULL) { 2750 *iarray = xrecallocarray(*iarray, *lp, *lp + 1, 2751 sizeof(**iarray)); 2752 (*iarray)[*lp] = i; 2753 } 2754 2755 *array = xrecallocarray(*array, *lp, *lp + 1, sizeof(**array)); 2756 (*array)[*lp] = xstrdup(s); 2757 (*lp)++; 2758 } 2759 2760 void 2761 opt_array_append(const char *file, const int line, const char *directive, 2762 char ***array, u_int *lp, const char *s) 2763 { 2764 opt_array_append2(file, line, directive, array, NULL, lp, s, 0); 2765 } 2766 2767 void 2768 opt_array_free2(char **array, int **iarray, u_int l) 2769 { 2770 u_int i; 2771 2772 if (array == NULL || l == 0) 2773 return; 2774 for (i = 0; i < l; i++) 2775 free(array[i]); 2776 free(array); 2777 free(iarray); 2778 } 2779 2780 sshsig_t 2781 ssh_signal(int signum, sshsig_t handler) 2782 { 2783 struct sigaction sa, osa; 2784 2785 /* mask all other signals while in handler */ 2786 memset(&sa, 0, sizeof(sa)); 2787 sa.sa_handler = handler; 2788 sigfillset(&sa.sa_mask); 2789 #if defined(SA_RESTART) && !defined(NO_SA_RESTART) 2790 if (signum != SIGALRM) 2791 sa.sa_flags = SA_RESTART; 2792 #endif 2793 if (sigaction(signum, &sa, &osa) == -1) { 2794 debug3("sigaction(%s): %s", strsignal(signum), strerror(errno)); 2795 return SIG_ERR; 2796 } 2797 return osa.sa_handler; 2798 } 2799 2800 int 2801 stdfd_devnull(int do_stdin, int do_stdout, int do_stderr) 2802 { 2803 int devnull, ret = 0; 2804 2805 if ((devnull = open(_PATH_DEVNULL, O_RDWR)) == -1) { 2806 error_f("open %s: %s", _PATH_DEVNULL, 2807 strerror(errno)); 2808 return -1; 2809 } 2810 if ((do_stdin && dup2(devnull, STDIN_FILENO) == -1) || 2811 (do_stdout && dup2(devnull, STDOUT_FILENO) == -1) || 2812 (do_stderr && dup2(devnull, STDERR_FILENO) == -1)) { 2813 error_f("dup2: %s", strerror(errno)); 2814 ret = -1; 2815 } 2816 if (devnull > STDERR_FILENO) 2817 close(devnull); 2818 return ret; 2819 } 2820 2821 /* 2822 * Runs command in a subprocess with a minimal environment. 2823 * Returns pid on success, 0 on failure. 2824 * The child stdout and stderr maybe captured, left attached or sent to 2825 * /dev/null depending on the contents of flags. 2826 * "tag" is prepended to log messages. 2827 * NB. "command" is only used for logging; the actual command executed is 2828 * av[0]. 2829 */ 2830 pid_t 2831 subprocess(const char *tag, const char *command, 2832 int ac, char **av, FILE **child, u_int flags, 2833 struct passwd *pw, privdrop_fn *drop_privs, privrestore_fn *restore_privs) 2834 { 2835 FILE *f = NULL; 2836 struct stat st; 2837 int fd, devnull, p[2], i; 2838 pid_t pid; 2839 char *cp, errmsg[512]; 2840 u_int nenv = 0; 2841 char **env = NULL; 2842 2843 /* If dropping privs, then must specify user and restore function */ 2844 if (drop_privs != NULL && (pw == NULL || restore_privs == NULL)) { 2845 error("%s: inconsistent arguments", tag); /* XXX fatal? */ 2846 return 0; 2847 } 2848 if (pw == NULL && (pw = getpwuid(getuid())) == NULL) { 2849 error("%s: no user for current uid", tag); 2850 return 0; 2851 } 2852 if (child != NULL) 2853 *child = NULL; 2854 2855 debug3_f("%s command \"%s\" running as %s (flags 0x%x)", 2856 tag, command, pw->pw_name, flags); 2857 2858 /* Check consistency */ 2859 if ((flags & SSH_SUBPROCESS_STDOUT_DISCARD) != 0 && 2860 (flags & SSH_SUBPROCESS_STDOUT_CAPTURE) != 0) { 2861 error_f("inconsistent flags"); 2862 return 0; 2863 } 2864 if (((flags & SSH_SUBPROCESS_STDOUT_CAPTURE) == 0) != (child == NULL)) { 2865 error_f("inconsistent flags/output"); 2866 return 0; 2867 } 2868 2869 /* 2870 * If executing an explicit binary, then verify the it exists 2871 * and appears safe-ish to execute 2872 */ 2873 if (!path_absolute(av[0])) { 2874 error("%s path is not absolute", tag); 2875 return 0; 2876 } 2877 if (drop_privs != NULL) 2878 drop_privs(pw); 2879 if (stat(av[0], &st) == -1) { 2880 error("Could not stat %s \"%s\": %s", tag, 2881 av[0], strerror(errno)); 2882 goto restore_return; 2883 } 2884 if ((flags & SSH_SUBPROCESS_UNSAFE_PATH) == 0 && 2885 safe_path(av[0], &st, NULL, 0, errmsg, sizeof(errmsg)) != 0) { 2886 error("Unsafe %s \"%s\": %s", tag, av[0], errmsg); 2887 goto restore_return; 2888 } 2889 /* Prepare to keep the child's stdout if requested */ 2890 if (pipe(p) == -1) { 2891 error("%s: pipe: %s", tag, strerror(errno)); 2892 restore_return: 2893 if (restore_privs != NULL) 2894 restore_privs(); 2895 return 0; 2896 } 2897 if (restore_privs != NULL) 2898 restore_privs(); 2899 2900 switch ((pid = fork())) { 2901 case -1: /* error */ 2902 error("%s: fork: %s", tag, strerror(errno)); 2903 close(p[0]); 2904 close(p[1]); 2905 return 0; 2906 case 0: /* child */ 2907 /* Prepare a minimal environment for the child. */ 2908 if ((flags & SSH_SUBPROCESS_PRESERVE_ENV) == 0) { 2909 nenv = 5; 2910 env = xcalloc(sizeof(*env), nenv); 2911 child_set_env(&env, &nenv, "PATH", _PATH_STDPATH); 2912 child_set_env(&env, &nenv, "USER", pw->pw_name); 2913 child_set_env(&env, &nenv, "LOGNAME", pw->pw_name); 2914 child_set_env(&env, &nenv, "HOME", pw->pw_dir); 2915 if ((cp = getenv("LANG")) != NULL) 2916 child_set_env(&env, &nenv, "LANG", cp); 2917 } 2918 2919 for (i = 1; i < NSIG; i++) 2920 ssh_signal(i, SIG_DFL); 2921 2922 if ((devnull = open(_PATH_DEVNULL, O_RDWR)) == -1) { 2923 error("%s: open %s: %s", tag, _PATH_DEVNULL, 2924 strerror(errno)); 2925 _exit(1); 2926 } 2927 if (dup2(devnull, STDIN_FILENO) == -1) { 2928 error("%s: dup2: %s", tag, strerror(errno)); 2929 _exit(1); 2930 } 2931 2932 /* Set up stdout as requested; leave stderr in place for now. */ 2933 fd = -1; 2934 if ((flags & SSH_SUBPROCESS_STDOUT_CAPTURE) != 0) 2935 fd = p[1]; 2936 else if ((flags & SSH_SUBPROCESS_STDOUT_DISCARD) != 0) 2937 fd = devnull; 2938 if (fd != -1 && dup2(fd, STDOUT_FILENO) == -1) { 2939 error("%s: dup2: %s", tag, strerror(errno)); 2940 _exit(1); 2941 } 2942 closefrom(STDERR_FILENO + 1); 2943 2944 if (geteuid() == 0 && 2945 initgroups(pw->pw_name, pw->pw_gid) == -1) { 2946 error("%s: initgroups(%s, %u): %s", tag, 2947 pw->pw_name, (u_int)pw->pw_gid, strerror(errno)); 2948 _exit(1); 2949 } 2950 if (setresgid(pw->pw_gid, pw->pw_gid, pw->pw_gid) == -1) { 2951 error("%s: setresgid %u: %s", tag, (u_int)pw->pw_gid, 2952 strerror(errno)); 2953 _exit(1); 2954 } 2955 if (setresuid(pw->pw_uid, pw->pw_uid, pw->pw_uid) == -1) { 2956 error("%s: setresuid %u: %s", tag, (u_int)pw->pw_uid, 2957 strerror(errno)); 2958 _exit(1); 2959 } 2960 /* stdin is pointed to /dev/null at this point */ 2961 if ((flags & SSH_SUBPROCESS_STDOUT_DISCARD) != 0 && 2962 dup2(STDIN_FILENO, STDERR_FILENO) == -1) { 2963 error("%s: dup2: %s", tag, strerror(errno)); 2964 _exit(1); 2965 } 2966 if (env != NULL) 2967 execve(av[0], av, env); 2968 else 2969 execv(av[0], av); 2970 error("%s %s \"%s\": %s", tag, env == NULL ? "execv" : "execve", 2971 command, strerror(errno)); 2972 _exit(127); 2973 default: /* parent */ 2974 break; 2975 } 2976 2977 close(p[1]); 2978 if ((flags & SSH_SUBPROCESS_STDOUT_CAPTURE) == 0) 2979 close(p[0]); 2980 else if ((f = fdopen(p[0], "r")) == NULL) { 2981 error("%s: fdopen: %s", tag, strerror(errno)); 2982 close(p[0]); 2983 /* Don't leave zombie child */ 2984 kill(pid, SIGTERM); 2985 while (waitpid(pid, NULL, 0) == -1 && errno == EINTR) 2986 ; 2987 return 0; 2988 } 2989 /* Success */ 2990 debug3_f("%s pid %ld", tag, (long)pid); 2991 if (child != NULL) 2992 *child = f; 2993 return pid; 2994 } 2995 2996 const char * 2997 lookup_env_in_list(const char *env, char * const *envs, size_t nenvs) 2998 { 2999 size_t i, envlen; 3000 3001 envlen = strlen(env); 3002 for (i = 0; i < nenvs; i++) { 3003 if (strncmp(envs[i], env, envlen) == 0 && 3004 envs[i][envlen] == '=') { 3005 return envs[i] + envlen + 1; 3006 } 3007 } 3008 return NULL; 3009 } 3010 3011 const char * 3012 lookup_setenv_in_list(const char *env, char * const *envs, size_t nenvs) 3013 { 3014 char *name, *cp; 3015 const char *ret; 3016 3017 name = xstrdup(env); 3018 if ((cp = strchr(name, '=')) == NULL) { 3019 free(name); 3020 return NULL; /* not env=val */ 3021 } 3022 *cp = '\0'; 3023 ret = lookup_env_in_list(name, envs, nenvs); 3024 free(name); 3025 return ret; 3026 } 3027 3028 /* 3029 * Helpers for managing poll(2)/ppoll(2) timeouts 3030 * Will remember the earliest deadline and return it for use in poll/ppoll. 3031 */ 3032 3033 /* Initialise a poll/ppoll timeout with an indefinite deadline */ 3034 void 3035 ptimeout_init(struct timespec *pt) 3036 { 3037 /* 3038 * Deliberately invalid for ppoll(2). 3039 * Will be converted to NULL in ptimeout_get_tspec() later. 3040 */ 3041 pt->tv_sec = -1; 3042 pt->tv_nsec = 0; 3043 } 3044 3045 /* Specify a poll/ppoll deadline of at most 'sec' seconds */ 3046 void 3047 ptimeout_deadline_sec(struct timespec *pt, long sec) 3048 { 3049 if (pt->tv_sec == -1 || pt->tv_sec >= sec) { 3050 pt->tv_sec = sec; 3051 pt->tv_nsec = 0; 3052 } 3053 } 3054 3055 /* Specify a poll/ppoll deadline of at most 'p' (timespec) */ 3056 static void 3057 ptimeout_deadline_tsp(struct timespec *pt, struct timespec *p) 3058 { 3059 if (pt->tv_sec == -1 || timespeccmp(pt, p, >=)) 3060 *pt = *p; 3061 } 3062 3063 /* Specify a poll/ppoll deadline of at most 'ms' milliseconds */ 3064 void 3065 ptimeout_deadline_ms(struct timespec *pt, long ms) 3066 { 3067 struct timespec p; 3068 3069 p.tv_sec = ms / 1000; 3070 p.tv_nsec = (ms % 1000) * 1000000; 3071 ptimeout_deadline_tsp(pt, &p); 3072 } 3073 3074 /* Specify a poll/ppoll deadline at wall clock monotime 'when' (timespec) */ 3075 void 3076 ptimeout_deadline_monotime_tsp(struct timespec *pt, struct timespec *when) 3077 { 3078 struct timespec now, t; 3079 3080 monotime_ts(&now); 3081 3082 if (timespeccmp(&now, when, >=)) { 3083 /* 'when' is now or in the past. Timeout ASAP */ 3084 pt->tv_sec = 0; 3085 pt->tv_nsec = 0; 3086 } else { 3087 timespecsub(when, &now, &t); 3088 ptimeout_deadline_tsp(pt, &t); 3089 } 3090 } 3091 3092 /* Specify a poll/ppoll deadline at wall clock monotime 'when' */ 3093 void 3094 ptimeout_deadline_monotime(struct timespec *pt, time_t when) 3095 { 3096 struct timespec t; 3097 3098 t.tv_sec = when; 3099 t.tv_nsec = 0; 3100 ptimeout_deadline_monotime_tsp(pt, &t); 3101 } 3102 3103 /* Get a poll(2) timeout value in milliseconds */ 3104 int 3105 ptimeout_get_ms(struct timespec *pt) 3106 { 3107 if (pt->tv_sec == -1) 3108 return -1; 3109 if (pt->tv_sec >= (INT_MAX - (pt->tv_nsec / 1000000)) / 1000) 3110 return INT_MAX; 3111 return (pt->tv_sec * 1000) + (pt->tv_nsec / 1000000); 3112 } 3113 3114 /* Get a ppoll(2) timeout value as a timespec pointer */ 3115 struct timespec * 3116 ptimeout_get_tsp(struct timespec *pt) 3117 { 3118 return pt->tv_sec == -1 ? NULL : pt; 3119 } 3120 3121 /* Returns non-zero if a timeout has been set (i.e. is not indefinite) */ 3122 int 3123 ptimeout_isset(struct timespec *pt) 3124 { 3125 return pt->tv_sec != -1; 3126 } 3127 3128 /* 3129 * Returns zero if the library at 'path' contains symbol 's', nonzero 3130 * otherwise. 3131 */ 3132 int 3133 lib_contains_symbol(const char *path, const char *s) 3134 { 3135 #ifdef HAVE_NLIST 3136 struct nlist nl[2]; 3137 int ret = -1, r; 3138 3139 memset(nl, 0, sizeof(nl)); 3140 nl[0].n_name = xstrdup(s); 3141 nl[1].n_name = NULL; 3142 if ((r = nlist(path, nl)) == -1) { 3143 error_f("nlist failed for %s", path); 3144 goto out; 3145 } 3146 if (r != 0 || nl[0].n_value == 0 || nl[0].n_type == 0) { 3147 error_f("library %s does not contain symbol %s", path, s); 3148 goto out; 3149 } 3150 /* success */ 3151 ret = 0; 3152 out: 3153 free(nl[0].n_name); 3154 return ret; 3155 #else /* HAVE_NLIST */ 3156 int fd, ret = -1; 3157 struct stat st; 3158 void *m = NULL; 3159 size_t sz = 0; 3160 3161 memset(&st, 0, sizeof(st)); 3162 if ((fd = open(path, O_RDONLY)) < 0) { 3163 error_f("open %s: %s", path, strerror(errno)); 3164 return -1; 3165 } 3166 if (fstat(fd, &st) != 0) { 3167 error_f("fstat %s: %s", path, strerror(errno)); 3168 goto out; 3169 } 3170 if (!S_ISREG(st.st_mode)) { 3171 error_f("%s is not a regular file", path); 3172 goto out; 3173 } 3174 if (st.st_size < 0 || 3175 (size_t)st.st_size < strlen(s) || 3176 st.st_size >= INT_MAX/2) { 3177 error_f("%s bad size %lld", path, (long long)st.st_size); 3178 goto out; 3179 } 3180 sz = (size_t)st.st_size; 3181 if ((m = mmap(NULL, sz, PROT_READ, MAP_PRIVATE, fd, 0)) == MAP_FAILED || 3182 m == NULL) { 3183 error_f("mmap %s: %s", path, strerror(errno)); 3184 goto out; 3185 } 3186 if (memmem(m, sz, s, strlen(s)) == NULL) { 3187 error_f("%s does not contain expected string %s", path, s); 3188 goto out; 3189 } 3190 /* success */ 3191 ret = 0; 3192 out: 3193 if (m != NULL && m != MAP_FAILED) 3194 munmap(m, sz); 3195 close(fd); 3196 return ret; 3197 #endif /* HAVE_NLIST */ 3198 } 3199 3200 int 3201 signal_is_crash(int sig) 3202 { 3203 switch (sig) { 3204 case SIGSEGV: 3205 case SIGBUS: 3206 case SIGTRAP: 3207 case SIGSYS: 3208 case SIGFPE: 3209 case SIGILL: 3210 case SIGABRT: 3211 return 1; 3212 } 3213 return 0; 3214 } 3215 3216 char * 3217 get_homedir(void) 3218 { 3219 char *cp; 3220 struct passwd *pw; 3221 3222 if ((cp = getenv("HOME")) != NULL && *cp != '\0') 3223 return xstrdup(cp); 3224 3225 if ((pw = getpwuid(getuid())) != NULL && *pw->pw_dir != '\0') 3226 return xstrdup(pw->pw_dir); 3227 3228 return NULL; 3229 } 3230