1 /* $OpenBSD: session.c,v 1.252 2010/03/07 11:57:13 dtucker Exp $ */ 2 /* 3 * Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland 4 * All rights reserved 5 * 6 * As far as I am concerned, the code I have written for this software 7 * can be used freely for any purpose. Any derived versions of this 8 * software must be clearly marked as such, and if the derived work is 9 * incompatible with the protocol description in the RFC file, it must be 10 * called by a name other than "ssh" or "Secure Shell". 11 * 12 * SSH2 support by Markus Friedl. 13 * Copyright (c) 2000, 2001 Markus Friedl. All rights reserved. 14 * 15 * Redistribution and use in source and binary forms, with or without 16 * modification, are permitted provided that the following conditions 17 * are met: 18 * 1. Redistributions of source code must retain the above copyright 19 * notice, this list of conditions and the following disclaimer. 20 * 2. Redistributions in binary form must reproduce the above copyright 21 * notice, this list of conditions and the following disclaimer in the 22 * documentation and/or other materials provided with the distribution. 23 * 24 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 25 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 26 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 27 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 28 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 29 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 30 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 31 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 32 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 33 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 34 */ 35 36 #include "includes.h" 37 __RCSID("$FreeBSD$"); 38 39 #include <sys/types.h> 40 #include <sys/param.h> 41 #ifdef HAVE_SYS_STAT_H 42 # include <sys/stat.h> 43 #endif 44 #include <sys/socket.h> 45 #include <sys/un.h> 46 #include <sys/wait.h> 47 48 #include <arpa/inet.h> 49 50 #include <errno.h> 51 #include <grp.h> 52 #ifdef HAVE_PATHS_H 53 #include <paths.h> 54 #endif 55 #include <pwd.h> 56 #include <signal.h> 57 #include <stdarg.h> 58 #include <stdio.h> 59 #include <stdlib.h> 60 #include <string.h> 61 #include <unistd.h> 62 63 #include "openbsd-compat/sys-queue.h" 64 #include "xmalloc.h" 65 #include "ssh.h" 66 #include "ssh1.h" 67 #include "ssh2.h" 68 #include "sshpty.h" 69 #include "packet.h" 70 #include "buffer.h" 71 #include "match.h" 72 #include "uidswap.h" 73 #include "compat.h" 74 #include "channels.h" 75 #include "key.h" 76 #include "cipher.h" 77 #ifdef GSSAPI 78 #include "ssh-gss.h" 79 #endif 80 #include "hostfile.h" 81 #include "auth.h" 82 #include "auth-options.h" 83 #include "pathnames.h" 84 #include "log.h" 85 #include "servconf.h" 86 #include "sshlogin.h" 87 #include "serverloop.h" 88 #include "canohost.h" 89 #include "misc.h" 90 #include "session.h" 91 #include "kex.h" 92 #include "monitor_wrap.h" 93 #include "sftp.h" 94 95 #if defined(KRB5) && defined(USE_AFS) 96 #include <kafs.h> 97 #endif 98 99 #define IS_INTERNAL_SFTP(c) \ 100 (!strncmp(c, INTERNAL_SFTP_NAME, sizeof(INTERNAL_SFTP_NAME) - 1) && \ 101 (c[sizeof(INTERNAL_SFTP_NAME) - 1] == '\0' || \ 102 c[sizeof(INTERNAL_SFTP_NAME) - 1] == ' ' || \ 103 c[sizeof(INTERNAL_SFTP_NAME) - 1] == '\t')) 104 105 /* func */ 106 107 Session *session_new(void); 108 void session_set_fds(Session *, int, int, int, int); 109 void session_pty_cleanup(Session *); 110 void session_proctitle(Session *); 111 int session_setup_x11fwd(Session *); 112 int do_exec_pty(Session *, const char *); 113 int do_exec_no_pty(Session *, const char *); 114 int do_exec(Session *, const char *); 115 void do_login(Session *, const char *); 116 #ifdef LOGIN_NEEDS_UTMPX 117 static void do_pre_login(Session *s); 118 #endif 119 void do_child(Session *, const char *); 120 void do_motd(void); 121 int check_quietlogin(Session *, const char *); 122 123 static void do_authenticated1(Authctxt *); 124 static void do_authenticated2(Authctxt *); 125 126 static int session_pty_req(Session *); 127 128 /* import */ 129 extern ServerOptions options; 130 extern char *__progname; 131 extern int log_stderr; 132 extern int debug_flag; 133 extern u_int utmp_len; 134 extern int startup_pipe; 135 extern void destroy_sensitive_data(void); 136 extern Buffer loginmsg; 137 138 /* original command from peer. */ 139 const char *original_command = NULL; 140 141 /* data */ 142 static int sessions_first_unused = -1; 143 static int sessions_nalloc = 0; 144 static Session *sessions = NULL; 145 146 #define SUBSYSTEM_NONE 0 147 #define SUBSYSTEM_EXT 1 148 #define SUBSYSTEM_INT_SFTP 2 149 #define SUBSYSTEM_INT_SFTP_ERROR 3 150 151 #ifdef HAVE_LOGIN_CAP 152 login_cap_t *lc; 153 #endif 154 155 static int is_child = 0; 156 157 /* Name and directory of socket for authentication agent forwarding. */ 158 static char *auth_sock_name = NULL; 159 static char *auth_sock_dir = NULL; 160 161 /* removes the agent forwarding socket */ 162 163 static void 164 auth_sock_cleanup_proc(struct passwd *pw) 165 { 166 if (auth_sock_name != NULL) { 167 temporarily_use_uid(pw); 168 unlink(auth_sock_name); 169 rmdir(auth_sock_dir); 170 auth_sock_name = NULL; 171 restore_uid(); 172 } 173 } 174 175 static int 176 auth_input_request_forwarding(struct passwd * pw) 177 { 178 Channel *nc; 179 int sock = -1; 180 struct sockaddr_un sunaddr; 181 182 if (auth_sock_name != NULL) { 183 error("authentication forwarding requested twice."); 184 return 0; 185 } 186 187 /* Temporarily drop privileged uid for mkdir/bind. */ 188 temporarily_use_uid(pw); 189 190 /* Allocate a buffer for the socket name, and format the name. */ 191 auth_sock_dir = xstrdup("/tmp/ssh-XXXXXXXXXX"); 192 193 /* Create private directory for socket */ 194 if (mkdtemp(auth_sock_dir) == NULL) { 195 packet_send_debug("Agent forwarding disabled: " 196 "mkdtemp() failed: %.100s", strerror(errno)); 197 restore_uid(); 198 xfree(auth_sock_dir); 199 auth_sock_dir = NULL; 200 goto authsock_err; 201 } 202 203 xasprintf(&auth_sock_name, "%s/agent.%ld", 204 auth_sock_dir, (long) getpid()); 205 206 /* Create the socket. */ 207 sock = socket(AF_UNIX, SOCK_STREAM, 0); 208 if (sock < 0) { 209 error("socket: %.100s", strerror(errno)); 210 restore_uid(); 211 goto authsock_err; 212 } 213 214 /* Bind it to the name. */ 215 memset(&sunaddr, 0, sizeof(sunaddr)); 216 sunaddr.sun_family = AF_UNIX; 217 strlcpy(sunaddr.sun_path, auth_sock_name, sizeof(sunaddr.sun_path)); 218 219 if (bind(sock, (struct sockaddr *)&sunaddr, sizeof(sunaddr)) < 0) { 220 error("bind: %.100s", strerror(errno)); 221 restore_uid(); 222 goto authsock_err; 223 } 224 225 /* Restore the privileged uid. */ 226 restore_uid(); 227 228 /* Start listening on the socket. */ 229 if (listen(sock, SSH_LISTEN_BACKLOG) < 0) { 230 error("listen: %.100s", strerror(errno)); 231 goto authsock_err; 232 } 233 234 /* Allocate a channel for the authentication agent socket. */ 235 nc = channel_new("auth socket", 236 SSH_CHANNEL_AUTH_SOCKET, sock, sock, -1, 237 CHAN_X11_WINDOW_DEFAULT, CHAN_X11_PACKET_DEFAULT, 238 0, "auth socket", 1); 239 nc->path = xstrdup(auth_sock_name); 240 return 1; 241 242 authsock_err: 243 if (auth_sock_name != NULL) 244 xfree(auth_sock_name); 245 if (auth_sock_dir != NULL) { 246 rmdir(auth_sock_dir); 247 xfree(auth_sock_dir); 248 } 249 if (sock != -1) 250 close(sock); 251 auth_sock_name = NULL; 252 auth_sock_dir = NULL; 253 return 0; 254 } 255 256 static void 257 display_loginmsg(void) 258 { 259 if (buffer_len(&loginmsg) > 0) { 260 buffer_append(&loginmsg, "\0", 1); 261 printf("%s", (char *)buffer_ptr(&loginmsg)); 262 buffer_clear(&loginmsg); 263 } 264 } 265 266 void 267 do_authenticated(Authctxt *authctxt) 268 { 269 setproctitle("%s", authctxt->pw->pw_name); 270 271 /* setup the channel layer */ 272 if (!no_port_forwarding_flag && options.allow_tcp_forwarding) 273 channel_permit_all_opens(); 274 275 auth_debug_send(); 276 277 if (compat20) 278 do_authenticated2(authctxt); 279 else 280 do_authenticated1(authctxt); 281 282 do_cleanup(authctxt); 283 } 284 285 /* 286 * Prepares for an interactive session. This is called after the user has 287 * been successfully authenticated. During this message exchange, pseudo 288 * terminals are allocated, X11, TCP/IP, and authentication agent forwardings 289 * are requested, etc. 290 */ 291 static void 292 do_authenticated1(Authctxt *authctxt) 293 { 294 Session *s; 295 char *command; 296 int success, type, screen_flag; 297 int enable_compression_after_reply = 0; 298 u_int proto_len, data_len, dlen, compression_level = 0; 299 300 s = session_new(); 301 if (s == NULL) { 302 error("no more sessions"); 303 return; 304 } 305 s->authctxt = authctxt; 306 s->pw = authctxt->pw; 307 308 /* 309 * We stay in this loop until the client requests to execute a shell 310 * or a command. 311 */ 312 for (;;) { 313 success = 0; 314 315 /* Get a packet from the client. */ 316 type = packet_read(); 317 318 /* Process the packet. */ 319 switch (type) { 320 case SSH_CMSG_REQUEST_COMPRESSION: 321 compression_level = packet_get_int(); 322 packet_check_eom(); 323 if (compression_level < 1 || compression_level > 9) { 324 packet_send_debug("Received invalid compression level %d.", 325 compression_level); 326 break; 327 } 328 if (options.compression == COMP_NONE) { 329 debug2("compression disabled"); 330 break; 331 } 332 /* Enable compression after we have responded with SUCCESS. */ 333 enable_compression_after_reply = 1; 334 success = 1; 335 break; 336 337 case SSH_CMSG_REQUEST_PTY: 338 success = session_pty_req(s); 339 break; 340 341 case SSH_CMSG_X11_REQUEST_FORWARDING: 342 s->auth_proto = packet_get_string(&proto_len); 343 s->auth_data = packet_get_string(&data_len); 344 345 screen_flag = packet_get_protocol_flags() & 346 SSH_PROTOFLAG_SCREEN_NUMBER; 347 debug2("SSH_PROTOFLAG_SCREEN_NUMBER: %d", screen_flag); 348 349 if (packet_remaining() == 4) { 350 if (!screen_flag) 351 debug2("Buggy client: " 352 "X11 screen flag missing"); 353 s->screen = packet_get_int(); 354 } else { 355 s->screen = 0; 356 } 357 packet_check_eom(); 358 success = session_setup_x11fwd(s); 359 if (!success) { 360 xfree(s->auth_proto); 361 xfree(s->auth_data); 362 s->auth_proto = NULL; 363 s->auth_data = NULL; 364 } 365 break; 366 367 case SSH_CMSG_AGENT_REQUEST_FORWARDING: 368 if (!options.allow_agent_forwarding || 369 no_agent_forwarding_flag || compat13) { 370 debug("Authentication agent forwarding not permitted for this authentication."); 371 break; 372 } 373 debug("Received authentication agent forwarding request."); 374 success = auth_input_request_forwarding(s->pw); 375 break; 376 377 case SSH_CMSG_PORT_FORWARD_REQUEST: 378 if (no_port_forwarding_flag) { 379 debug("Port forwarding not permitted for this authentication."); 380 break; 381 } 382 if (!options.allow_tcp_forwarding) { 383 debug("Port forwarding not permitted."); 384 break; 385 } 386 debug("Received TCP/IP port forwarding request."); 387 if (channel_input_port_forward_request(s->pw->pw_uid == 0, 388 options.gateway_ports) < 0) { 389 debug("Port forwarding failed."); 390 break; 391 } 392 success = 1; 393 break; 394 395 case SSH_CMSG_MAX_PACKET_SIZE: 396 if (packet_set_maxsize(packet_get_int()) > 0) 397 success = 1; 398 break; 399 400 case SSH_CMSG_EXEC_SHELL: 401 case SSH_CMSG_EXEC_CMD: 402 if (type == SSH_CMSG_EXEC_CMD) { 403 command = packet_get_string(&dlen); 404 debug("Exec command '%.500s'", command); 405 if (do_exec(s, command) != 0) 406 packet_disconnect( 407 "command execution failed"); 408 xfree(command); 409 } else { 410 if (do_exec(s, NULL) != 0) 411 packet_disconnect( 412 "shell execution failed"); 413 } 414 packet_check_eom(); 415 session_close(s); 416 return; 417 418 default: 419 /* 420 * Any unknown messages in this phase are ignored, 421 * and a failure message is returned. 422 */ 423 logit("Unknown packet type received after authentication: %d", type); 424 } 425 packet_start(success ? SSH_SMSG_SUCCESS : SSH_SMSG_FAILURE); 426 packet_send(); 427 packet_write_wait(); 428 429 /* Enable compression now that we have replied if appropriate. */ 430 if (enable_compression_after_reply) { 431 enable_compression_after_reply = 0; 432 packet_start_compression(compression_level); 433 } 434 } 435 } 436 437 #define USE_PIPES 438 /* 439 * This is called to fork and execute a command when we have no tty. This 440 * will call do_child from the child, and server_loop from the parent after 441 * setting up file descriptors and such. 442 */ 443 int 444 do_exec_no_pty(Session *s, const char *command) 445 { 446 pid_t pid; 447 448 #ifdef USE_PIPES 449 int pin[2], pout[2], perr[2]; 450 451 /* Allocate pipes for communicating with the program. */ 452 if (pipe(pin) < 0) { 453 error("%s: pipe in: %.100s", __func__, strerror(errno)); 454 return -1; 455 } 456 if (pipe(pout) < 0) { 457 error("%s: pipe out: %.100s", __func__, strerror(errno)); 458 close(pin[0]); 459 close(pin[1]); 460 return -1; 461 } 462 if (pipe(perr) < 0) { 463 error("%s: pipe err: %.100s", __func__, strerror(errno)); 464 close(pin[0]); 465 close(pin[1]); 466 close(pout[0]); 467 close(pout[1]); 468 return -1; 469 } 470 #else 471 int inout[2], err[2]; 472 473 /* Uses socket pairs to communicate with the program. */ 474 if (socketpair(AF_UNIX, SOCK_STREAM, 0, inout) < 0) { 475 error("%s: socketpair #1: %.100s", __func__, strerror(errno)); 476 return -1; 477 } 478 if (socketpair(AF_UNIX, SOCK_STREAM, 0, err) < 0) { 479 error("%s: socketpair #2: %.100s", __func__, strerror(errno)); 480 close(inout[0]); 481 close(inout[1]); 482 return -1; 483 } 484 #endif 485 486 if (s == NULL) 487 fatal("do_exec_no_pty: no session"); 488 489 session_proctitle(s); 490 491 /* Fork the child. */ 492 switch ((pid = fork())) { 493 case -1: 494 error("%s: fork: %.100s", __func__, strerror(errno)); 495 #ifdef USE_PIPES 496 close(pin[0]); 497 close(pin[1]); 498 close(pout[0]); 499 close(pout[1]); 500 close(perr[0]); 501 close(perr[1]); 502 #else 503 close(inout[0]); 504 close(inout[1]); 505 close(err[0]); 506 close(err[1]); 507 #endif 508 return -1; 509 case 0: 510 is_child = 1; 511 512 /* Child. Reinitialize the log since the pid has changed. */ 513 log_init(__progname, options.log_level, 514 options.log_facility, log_stderr); 515 516 /* 517 * Create a new session and process group since the 4.4BSD 518 * setlogin() affects the entire process group. 519 */ 520 if (setsid() < 0) 521 error("setsid failed: %.100s", strerror(errno)); 522 523 #ifdef USE_PIPES 524 /* 525 * Redirect stdin. We close the parent side of the socket 526 * pair, and make the child side the standard input. 527 */ 528 close(pin[1]); 529 if (dup2(pin[0], 0) < 0) 530 perror("dup2 stdin"); 531 close(pin[0]); 532 533 /* Redirect stdout. */ 534 close(pout[0]); 535 if (dup2(pout[1], 1) < 0) 536 perror("dup2 stdout"); 537 close(pout[1]); 538 539 /* Redirect stderr. */ 540 close(perr[0]); 541 if (dup2(perr[1], 2) < 0) 542 perror("dup2 stderr"); 543 close(perr[1]); 544 #else 545 /* 546 * Redirect stdin, stdout, and stderr. Stdin and stdout will 547 * use the same socket, as some programs (particularly rdist) 548 * seem to depend on it. 549 */ 550 close(inout[1]); 551 close(err[1]); 552 if (dup2(inout[0], 0) < 0) /* stdin */ 553 perror("dup2 stdin"); 554 if (dup2(inout[0], 1) < 0) /* stdout (same as stdin) */ 555 perror("dup2 stdout"); 556 close(inout[0]); 557 if (dup2(err[0], 2) < 0) /* stderr */ 558 perror("dup2 stderr"); 559 close(err[0]); 560 #endif 561 562 563 #ifdef _UNICOS 564 cray_init_job(s->pw); /* set up cray jid and tmpdir */ 565 #endif 566 567 /* Do processing for the child (exec command etc). */ 568 do_child(s, command); 569 /* NOTREACHED */ 570 default: 571 break; 572 } 573 574 #ifdef _UNICOS 575 signal(WJSIGNAL, cray_job_termination_handler); 576 #endif /* _UNICOS */ 577 #ifdef HAVE_CYGWIN 578 cygwin_set_impersonation_token(INVALID_HANDLE_VALUE); 579 #endif 580 581 s->pid = pid; 582 /* Set interactive/non-interactive mode. */ 583 packet_set_interactive(s->display != NULL); 584 585 /* 586 * Clear loginmsg, since it's the child's responsibility to display 587 * it to the user, otherwise multiple sessions may accumulate 588 * multiple copies of the login messages. 589 */ 590 buffer_clear(&loginmsg); 591 592 #ifdef USE_PIPES 593 /* We are the parent. Close the child sides of the pipes. */ 594 close(pin[0]); 595 close(pout[1]); 596 close(perr[1]); 597 598 if (compat20) { 599 if (s->is_subsystem) { 600 close(perr[0]); 601 perr[0] = -1; 602 } 603 session_set_fds(s, pin[1], pout[0], perr[0], 0); 604 } else { 605 /* Enter the interactive session. */ 606 server_loop(pid, pin[1], pout[0], perr[0]); 607 /* server_loop has closed pin[1], pout[0], and perr[0]. */ 608 } 609 #else 610 /* We are the parent. Close the child sides of the socket pairs. */ 611 close(inout[0]); 612 close(err[0]); 613 614 /* 615 * Enter the interactive session. Note: server_loop must be able to 616 * handle the case that fdin and fdout are the same. 617 */ 618 if (compat20) { 619 session_set_fds(s, inout[1], inout[1], 620 s->is_subsystem ? -1 : err[1], 0); 621 if (s->is_subsystem) 622 close(err[1]); 623 } else { 624 server_loop(pid, inout[1], inout[1], err[1]); 625 /* server_loop has closed inout[1] and err[1]. */ 626 } 627 #endif 628 return 0; 629 } 630 631 /* 632 * This is called to fork and execute a command when we have a tty. This 633 * will call do_child from the child, and server_loop from the parent after 634 * setting up file descriptors, controlling tty, updating wtmp, utmp, 635 * lastlog, and other such operations. 636 */ 637 int 638 do_exec_pty(Session *s, const char *command) 639 { 640 int fdout, ptyfd, ttyfd, ptymaster; 641 pid_t pid; 642 643 if (s == NULL) 644 fatal("do_exec_pty: no session"); 645 ptyfd = s->ptyfd; 646 ttyfd = s->ttyfd; 647 648 /* 649 * Create another descriptor of the pty master side for use as the 650 * standard input. We could use the original descriptor, but this 651 * simplifies code in server_loop. The descriptor is bidirectional. 652 * Do this before forking (and cleanup in the child) so as to 653 * detect and gracefully fail out-of-fd conditions. 654 */ 655 if ((fdout = dup(ptyfd)) < 0) { 656 error("%s: dup #1: %s", __func__, strerror(errno)); 657 close(ttyfd); 658 close(ptyfd); 659 return -1; 660 } 661 /* we keep a reference to the pty master */ 662 if ((ptymaster = dup(ptyfd)) < 0) { 663 error("%s: dup #2: %s", __func__, strerror(errno)); 664 close(ttyfd); 665 close(ptyfd); 666 close(fdout); 667 return -1; 668 } 669 670 /* Fork the child. */ 671 switch ((pid = fork())) { 672 case -1: 673 error("%s: fork: %.100s", __func__, strerror(errno)); 674 close(fdout); 675 close(ptymaster); 676 close(ttyfd); 677 close(ptyfd); 678 return -1; 679 case 0: 680 is_child = 1; 681 682 close(fdout); 683 close(ptymaster); 684 685 /* Child. Reinitialize the log because the pid has changed. */ 686 log_init(__progname, options.log_level, 687 options.log_facility, log_stderr); 688 /* Close the master side of the pseudo tty. */ 689 close(ptyfd); 690 691 /* Make the pseudo tty our controlling tty. */ 692 pty_make_controlling_tty(&ttyfd, s->tty); 693 694 /* Redirect stdin/stdout/stderr from the pseudo tty. */ 695 if (dup2(ttyfd, 0) < 0) 696 error("dup2 stdin: %s", strerror(errno)); 697 if (dup2(ttyfd, 1) < 0) 698 error("dup2 stdout: %s", strerror(errno)); 699 if (dup2(ttyfd, 2) < 0) 700 error("dup2 stderr: %s", strerror(errno)); 701 702 /* Close the extra descriptor for the pseudo tty. */ 703 close(ttyfd); 704 705 /* record login, etc. similar to login(1) */ 706 #ifndef HAVE_OSF_SIA 707 if (!(options.use_login && command == NULL)) { 708 #ifdef _UNICOS 709 cray_init_job(s->pw); /* set up cray jid and tmpdir */ 710 #endif /* _UNICOS */ 711 do_login(s, command); 712 } 713 # ifdef LOGIN_NEEDS_UTMPX 714 else 715 do_pre_login(s); 716 # endif 717 #endif 718 /* 719 * Do common processing for the child, such as execing 720 * the command. 721 */ 722 do_child(s, command); 723 /* NOTREACHED */ 724 default: 725 break; 726 } 727 728 #ifdef _UNICOS 729 signal(WJSIGNAL, cray_job_termination_handler); 730 #endif /* _UNICOS */ 731 #ifdef HAVE_CYGWIN 732 cygwin_set_impersonation_token(INVALID_HANDLE_VALUE); 733 #endif 734 735 s->pid = pid; 736 737 /* Parent. Close the slave side of the pseudo tty. */ 738 close(ttyfd); 739 740 /* Enter interactive session. */ 741 s->ptymaster = ptymaster; 742 packet_set_interactive(1); 743 if (compat20) { 744 session_set_fds(s, ptyfd, fdout, -1, 1); 745 } else { 746 server_loop(pid, ptyfd, fdout, -1); 747 /* server_loop _has_ closed ptyfd and fdout. */ 748 } 749 return 0; 750 } 751 752 #ifdef LOGIN_NEEDS_UTMPX 753 static void 754 do_pre_login(Session *s) 755 { 756 socklen_t fromlen; 757 struct sockaddr_storage from; 758 pid_t pid = getpid(); 759 760 /* 761 * Get IP address of client. If the connection is not a socket, let 762 * the address be 0.0.0.0. 763 */ 764 memset(&from, 0, sizeof(from)); 765 fromlen = sizeof(from); 766 if (packet_connection_is_on_socket()) { 767 if (getpeername(packet_get_connection_in(), 768 (struct sockaddr *)&from, &fromlen) < 0) { 769 debug("getpeername: %.100s", strerror(errno)); 770 cleanup_exit(255); 771 } 772 } 773 774 record_utmp_only(pid, s->tty, s->pw->pw_name, 775 get_remote_name_or_ip(utmp_len, options.use_dns), 776 (struct sockaddr *)&from, fromlen); 777 } 778 #endif 779 780 /* 781 * This is called to fork and execute a command. If another command is 782 * to be forced, execute that instead. 783 */ 784 int 785 do_exec(Session *s, const char *command) 786 { 787 int ret; 788 789 if (options.adm_forced_command) { 790 original_command = command; 791 command = options.adm_forced_command; 792 if (IS_INTERNAL_SFTP(command)) { 793 s->is_subsystem = s->is_subsystem ? 794 SUBSYSTEM_INT_SFTP : SUBSYSTEM_INT_SFTP_ERROR; 795 } else if (s->is_subsystem) 796 s->is_subsystem = SUBSYSTEM_EXT; 797 debug("Forced command (config) '%.900s'", command); 798 } else if (forced_command) { 799 original_command = command; 800 command = forced_command; 801 if (IS_INTERNAL_SFTP(command)) { 802 s->is_subsystem = s->is_subsystem ? 803 SUBSYSTEM_INT_SFTP : SUBSYSTEM_INT_SFTP_ERROR; 804 } else if (s->is_subsystem) 805 s->is_subsystem = SUBSYSTEM_EXT; 806 debug("Forced command (key option) '%.900s'", command); 807 } 808 809 #ifdef SSH_AUDIT_EVENTS 810 if (command != NULL) 811 PRIVSEP(audit_run_command(command)); 812 else if (s->ttyfd == -1) { 813 char *shell = s->pw->pw_shell; 814 815 if (shell[0] == '\0') /* empty shell means /bin/sh */ 816 shell =_PATH_BSHELL; 817 PRIVSEP(audit_run_command(shell)); 818 } 819 #endif 820 if (s->ttyfd != -1) 821 ret = do_exec_pty(s, command); 822 else 823 ret = do_exec_no_pty(s, command); 824 825 original_command = NULL; 826 827 /* 828 * Clear loginmsg: it's the child's responsibility to display 829 * it to the user, otherwise multiple sessions may accumulate 830 * multiple copies of the login messages. 831 */ 832 buffer_clear(&loginmsg); 833 834 return ret; 835 } 836 837 /* administrative, login(1)-like work */ 838 void 839 do_login(Session *s, const char *command) 840 { 841 socklen_t fromlen; 842 struct sockaddr_storage from; 843 struct passwd * pw = s->pw; 844 pid_t pid = getpid(); 845 846 /* 847 * Get IP address of client. If the connection is not a socket, let 848 * the address be 0.0.0.0. 849 */ 850 memset(&from, 0, sizeof(from)); 851 fromlen = sizeof(from); 852 if (packet_connection_is_on_socket()) { 853 if (getpeername(packet_get_connection_in(), 854 (struct sockaddr *)&from, &fromlen) < 0) { 855 debug("getpeername: %.100s", strerror(errno)); 856 cleanup_exit(255); 857 } 858 } 859 860 /* Record that there was a login on that tty from the remote host. */ 861 if (!use_privsep) 862 record_login(pid, s->tty, pw->pw_name, pw->pw_uid, 863 get_remote_name_or_ip(utmp_len, 864 options.use_dns), 865 (struct sockaddr *)&from, fromlen); 866 867 #ifdef USE_PAM 868 /* 869 * If password change is needed, do it now. 870 * This needs to occur before the ~/.hushlogin check. 871 */ 872 if (options.use_pam && !use_privsep && s->authctxt->force_pwchange) { 873 display_loginmsg(); 874 do_pam_chauthtok(); 875 s->authctxt->force_pwchange = 0; 876 /* XXX - signal [net] parent to enable forwardings */ 877 } 878 #endif 879 880 if (check_quietlogin(s, command)) 881 return; 882 883 display_loginmsg(); 884 885 do_motd(); 886 } 887 888 /* 889 * Display the message of the day. 890 */ 891 void 892 do_motd(void) 893 { 894 FILE *f; 895 char buf[256]; 896 #ifdef HAVE_LOGIN_CAP 897 const char *fname; 898 #endif 899 900 #ifdef HAVE_LOGIN_CAP 901 fname = login_getcapstr(lc, "copyright", NULL, NULL); 902 if (fname != NULL && (f = fopen(fname, "r")) != NULL) { 903 while (fgets(buf, sizeof(buf), f) != NULL) 904 fputs(buf, stdout); 905 fclose(f); 906 } else 907 #endif /* HAVE_LOGIN_CAP */ 908 (void)printf("%s\n\t%s %s\n", 909 "Copyright (c) 1980, 1983, 1986, 1988, 1990, 1991, 1993, 1994", 910 "The Regents of the University of California. ", 911 "All rights reserved."); 912 913 (void)printf("\n"); 914 915 if (options.print_motd) { 916 #ifdef HAVE_LOGIN_CAP 917 f = fopen(login_getcapstr(lc, "welcome", "/etc/motd", 918 "/etc/motd"), "r"); 919 #else 920 f = fopen("/etc/motd", "r"); 921 #endif 922 if (f) { 923 while (fgets(buf, sizeof(buf), f)) 924 fputs(buf, stdout); 925 fclose(f); 926 } 927 } 928 } 929 930 931 /* 932 * Check for quiet login, either .hushlogin or command given. 933 */ 934 int 935 check_quietlogin(Session *s, const char *command) 936 { 937 char buf[256]; 938 struct passwd *pw = s->pw; 939 struct stat st; 940 941 /* Return 1 if .hushlogin exists or a command given. */ 942 if (command != NULL) 943 return 1; 944 snprintf(buf, sizeof(buf), "%.200s/.hushlogin", pw->pw_dir); 945 #ifdef HAVE_LOGIN_CAP 946 if (login_getcapbool(lc, "hushlogin", 0) || stat(buf, &st) >= 0) 947 return 1; 948 #else 949 if (stat(buf, &st) >= 0) 950 return 1; 951 #endif 952 return 0; 953 } 954 955 /* 956 * Sets the value of the given variable in the environment. If the variable 957 * already exists, its value is overridden. 958 */ 959 void 960 child_set_env(char ***envp, u_int *envsizep, const char *name, 961 const char *value) 962 { 963 char **env; 964 u_int envsize; 965 u_int i, namelen; 966 967 /* 968 * If we're passed an uninitialized list, allocate a single null 969 * entry before continuing. 970 */ 971 if (*envp == NULL && *envsizep == 0) { 972 *envp = xmalloc(sizeof(char *)); 973 *envp[0] = NULL; 974 *envsizep = 1; 975 } 976 977 /* 978 * Find the slot where the value should be stored. If the variable 979 * already exists, we reuse the slot; otherwise we append a new slot 980 * at the end of the array, expanding if necessary. 981 */ 982 env = *envp; 983 namelen = strlen(name); 984 for (i = 0; env[i]; i++) 985 if (strncmp(env[i], name, namelen) == 0 && env[i][namelen] == '=') 986 break; 987 if (env[i]) { 988 /* Reuse the slot. */ 989 xfree(env[i]); 990 } else { 991 /* New variable. Expand if necessary. */ 992 envsize = *envsizep; 993 if (i >= envsize - 1) { 994 if (envsize >= 1000) 995 fatal("child_set_env: too many env vars"); 996 envsize += 50; 997 env = (*envp) = xrealloc(env, envsize, sizeof(char *)); 998 *envsizep = envsize; 999 } 1000 /* Need to set the NULL pointer at end of array beyond the new slot. */ 1001 env[i + 1] = NULL; 1002 } 1003 1004 /* Allocate space and format the variable in the appropriate slot. */ 1005 env[i] = xmalloc(strlen(name) + 1 + strlen(value) + 1); 1006 snprintf(env[i], strlen(name) + 1 + strlen(value) + 1, "%s=%s", name, value); 1007 } 1008 1009 /* 1010 * Reads environment variables from the given file and adds/overrides them 1011 * into the environment. If the file does not exist, this does nothing. 1012 * Otherwise, it must consist of empty lines, comments (line starts with '#') 1013 * and assignments of the form name=value. No other forms are allowed. 1014 */ 1015 static void 1016 read_environment_file(char ***env, u_int *envsize, 1017 const char *filename) 1018 { 1019 FILE *f; 1020 char buf[4096]; 1021 char *cp, *value; 1022 u_int lineno = 0; 1023 1024 f = fopen(filename, "r"); 1025 if (!f) 1026 return; 1027 1028 while (fgets(buf, sizeof(buf), f)) { 1029 if (++lineno > 1000) 1030 fatal("Too many lines in environment file %s", filename); 1031 for (cp = buf; *cp == ' ' || *cp == '\t'; cp++) 1032 ; 1033 if (!*cp || *cp == '#' || *cp == '\n') 1034 continue; 1035 1036 cp[strcspn(cp, "\n")] = '\0'; 1037 1038 value = strchr(cp, '='); 1039 if (value == NULL) { 1040 fprintf(stderr, "Bad line %u in %.100s\n", lineno, 1041 filename); 1042 continue; 1043 } 1044 /* 1045 * Replace the equals sign by nul, and advance value to 1046 * the value string. 1047 */ 1048 *value = '\0'; 1049 value++; 1050 child_set_env(env, envsize, cp, value); 1051 } 1052 fclose(f); 1053 } 1054 1055 #ifdef HAVE_ETC_DEFAULT_LOGIN 1056 /* 1057 * Return named variable from specified environment, or NULL if not present. 1058 */ 1059 static char * 1060 child_get_env(char **env, const char *name) 1061 { 1062 int i; 1063 size_t len; 1064 1065 len = strlen(name); 1066 for (i=0; env[i] != NULL; i++) 1067 if (strncmp(name, env[i], len) == 0 && env[i][len] == '=') 1068 return(env[i] + len + 1); 1069 return NULL; 1070 } 1071 1072 /* 1073 * Read /etc/default/login. 1074 * We pick up the PATH (or SUPATH for root) and UMASK. 1075 */ 1076 static void 1077 read_etc_default_login(char ***env, u_int *envsize, uid_t uid) 1078 { 1079 char **tmpenv = NULL, *var; 1080 u_int i, tmpenvsize = 0; 1081 u_long mask; 1082 1083 /* 1084 * We don't want to copy the whole file to the child's environment, 1085 * so we use a temporary environment and copy the variables we're 1086 * interested in. 1087 */ 1088 read_environment_file(&tmpenv, &tmpenvsize, "/etc/default/login"); 1089 1090 if (tmpenv == NULL) 1091 return; 1092 1093 if (uid == 0) 1094 var = child_get_env(tmpenv, "SUPATH"); 1095 else 1096 var = child_get_env(tmpenv, "PATH"); 1097 if (var != NULL) 1098 child_set_env(env, envsize, "PATH", var); 1099 1100 if ((var = child_get_env(tmpenv, "UMASK")) != NULL) 1101 if (sscanf(var, "%5lo", &mask) == 1) 1102 umask((mode_t)mask); 1103 1104 for (i = 0; tmpenv[i] != NULL; i++) 1105 xfree(tmpenv[i]); 1106 xfree(tmpenv); 1107 } 1108 #endif /* HAVE_ETC_DEFAULT_LOGIN */ 1109 1110 void 1111 copy_environment(char **source, char ***env, u_int *envsize) 1112 { 1113 char *var_name, *var_val; 1114 int i; 1115 1116 if (source == NULL) 1117 return; 1118 1119 for(i = 0; source[i] != NULL; i++) { 1120 var_name = xstrdup(source[i]); 1121 if ((var_val = strstr(var_name, "=")) == NULL) { 1122 xfree(var_name); 1123 continue; 1124 } 1125 *var_val++ = '\0'; 1126 1127 debug3("Copy environment: %s=%s", var_name, var_val); 1128 child_set_env(env, envsize, var_name, var_val); 1129 1130 xfree(var_name); 1131 } 1132 } 1133 1134 static char ** 1135 do_setup_env(Session *s, const char *shell) 1136 { 1137 char buf[256]; 1138 u_int i, envsize; 1139 char **env, *laddr; 1140 struct passwd *pw = s->pw; 1141 #if !defined (HAVE_LOGIN_CAP) && !defined (HAVE_CYGWIN) 1142 char *path = NULL; 1143 #else 1144 extern char **environ; 1145 char **senv, **var; 1146 #endif 1147 1148 /* Initialize the environment. */ 1149 envsize = 100; 1150 env = xcalloc(envsize, sizeof(char *)); 1151 env[0] = NULL; 1152 1153 #ifdef HAVE_CYGWIN 1154 /* 1155 * The Windows environment contains some setting which are 1156 * important for a running system. They must not be dropped. 1157 */ 1158 { 1159 char **p; 1160 1161 p = fetch_windows_environment(); 1162 copy_environment(p, &env, &envsize); 1163 free_windows_environment(p); 1164 } 1165 #endif 1166 1167 if (getenv("TZ")) 1168 child_set_env(&env, &envsize, "TZ", getenv("TZ")); 1169 1170 #ifdef GSSAPI 1171 /* Allow any GSSAPI methods that we've used to alter 1172 * the childs environment as they see fit 1173 */ 1174 ssh_gssapi_do_child(&env, &envsize); 1175 #endif 1176 1177 if (!options.use_login) { 1178 /* Set basic environment. */ 1179 for (i = 0; i < s->num_env; i++) 1180 child_set_env(&env, &envsize, s->env[i].name, 1181 s->env[i].val); 1182 1183 child_set_env(&env, &envsize, "USER", pw->pw_name); 1184 child_set_env(&env, &envsize, "LOGNAME", pw->pw_name); 1185 #ifdef _AIX 1186 child_set_env(&env, &envsize, "LOGIN", pw->pw_name); 1187 #endif 1188 child_set_env(&env, &envsize, "HOME", pw->pw_dir); 1189 snprintf(buf, sizeof buf, "%.200s/%.50s", 1190 _PATH_MAILDIR, pw->pw_name); 1191 child_set_env(&env, &envsize, "MAIL", buf); 1192 #ifdef HAVE_LOGIN_CAP 1193 child_set_env(&env, &envsize, "PATH", _PATH_STDPATH); 1194 child_set_env(&env, &envsize, "TERM", "su"); 1195 senv = environ; 1196 environ = xmalloc(sizeof(char *)); 1197 *environ = NULL; 1198 (void) setusercontext(lc, pw, pw->pw_uid, 1199 LOGIN_SETENV|LOGIN_SETPATH); 1200 copy_environment(environ, &env, &envsize); 1201 for (var = environ; *var != NULL; ++var) 1202 xfree(*var); 1203 xfree(environ); 1204 environ = senv; 1205 #else /* HAVE_LOGIN_CAP */ 1206 # ifndef HAVE_CYGWIN 1207 /* 1208 * There's no standard path on Windows. The path contains 1209 * important components pointing to the system directories, 1210 * needed for loading shared libraries. So the path better 1211 * remains intact here. 1212 */ 1213 # ifdef HAVE_ETC_DEFAULT_LOGIN 1214 read_etc_default_login(&env, &envsize, pw->pw_uid); 1215 path = child_get_env(env, "PATH"); 1216 # endif /* HAVE_ETC_DEFAULT_LOGIN */ 1217 if (path == NULL || *path == '\0') { 1218 child_set_env(&env, &envsize, "PATH", 1219 s->pw->pw_uid == 0 ? 1220 SUPERUSER_PATH : _PATH_STDPATH); 1221 } 1222 # endif /* HAVE_CYGWIN */ 1223 #endif /* HAVE_LOGIN_CAP */ 1224 1225 /* Normal systems set SHELL by default. */ 1226 child_set_env(&env, &envsize, "SHELL", shell); 1227 } 1228 1229 /* Set custom environment options from RSA authentication. */ 1230 if (!options.use_login) { 1231 while (custom_environment) { 1232 struct envstring *ce = custom_environment; 1233 char *str = ce->s; 1234 1235 for (i = 0; str[i] != '=' && str[i]; i++) 1236 ; 1237 if (str[i] == '=') { 1238 str[i] = 0; 1239 child_set_env(&env, &envsize, str, str + i + 1); 1240 } 1241 custom_environment = ce->next; 1242 xfree(ce->s); 1243 xfree(ce); 1244 } 1245 } 1246 1247 /* SSH_CLIENT deprecated */ 1248 snprintf(buf, sizeof buf, "%.50s %d %d", 1249 get_remote_ipaddr(), get_remote_port(), get_local_port()); 1250 child_set_env(&env, &envsize, "SSH_CLIENT", buf); 1251 1252 laddr = get_local_ipaddr(packet_get_connection_in()); 1253 snprintf(buf, sizeof buf, "%.50s %d %.50s %d", 1254 get_remote_ipaddr(), get_remote_port(), laddr, get_local_port()); 1255 xfree(laddr); 1256 child_set_env(&env, &envsize, "SSH_CONNECTION", buf); 1257 1258 if (s->ttyfd != -1) 1259 child_set_env(&env, &envsize, "SSH_TTY", s->tty); 1260 if (s->term) 1261 child_set_env(&env, &envsize, "TERM", s->term); 1262 if (s->display) 1263 child_set_env(&env, &envsize, "DISPLAY", s->display); 1264 if (original_command) 1265 child_set_env(&env, &envsize, "SSH_ORIGINAL_COMMAND", 1266 original_command); 1267 1268 #ifdef _UNICOS 1269 if (cray_tmpdir[0] != '\0') 1270 child_set_env(&env, &envsize, "TMPDIR", cray_tmpdir); 1271 #endif /* _UNICOS */ 1272 1273 /* 1274 * Since we clear KRB5CCNAME at startup, if it's set now then it 1275 * must have been set by a native authentication method (eg AIX or 1276 * SIA), so copy it to the child. 1277 */ 1278 { 1279 char *cp; 1280 1281 if ((cp = getenv("KRB5CCNAME")) != NULL) 1282 child_set_env(&env, &envsize, "KRB5CCNAME", cp); 1283 } 1284 1285 #ifdef _AIX 1286 { 1287 char *cp; 1288 1289 if ((cp = getenv("AUTHSTATE")) != NULL) 1290 child_set_env(&env, &envsize, "AUTHSTATE", cp); 1291 read_environment_file(&env, &envsize, "/etc/environment"); 1292 } 1293 #endif 1294 #ifdef KRB5 1295 if (s->authctxt->krb5_ccname) 1296 child_set_env(&env, &envsize, "KRB5CCNAME", 1297 s->authctxt->krb5_ccname); 1298 #endif 1299 #ifdef USE_PAM 1300 /* 1301 * Pull in any environment variables that may have 1302 * been set by PAM. 1303 */ 1304 if (options.use_pam) { 1305 char **p; 1306 1307 p = fetch_pam_child_environment(); 1308 copy_environment(p, &env, &envsize); 1309 free_pam_environment(p); 1310 1311 p = fetch_pam_environment(); 1312 copy_environment(p, &env, &envsize); 1313 free_pam_environment(p); 1314 } 1315 #endif /* USE_PAM */ 1316 1317 if (auth_sock_name != NULL) 1318 child_set_env(&env, &envsize, SSH_AUTHSOCKET_ENV_NAME, 1319 auth_sock_name); 1320 1321 /* read $HOME/.ssh/environment. */ 1322 if (options.permit_user_env && !options.use_login) { 1323 snprintf(buf, sizeof buf, "%.200s/.ssh/environment", 1324 strcmp(pw->pw_dir, "/") ? pw->pw_dir : ""); 1325 read_environment_file(&env, &envsize, buf); 1326 } 1327 if (debug_flag) { 1328 /* dump the environment */ 1329 fprintf(stderr, "Environment:\n"); 1330 for (i = 0; env[i]; i++) 1331 fprintf(stderr, " %.200s\n", env[i]); 1332 } 1333 return env; 1334 } 1335 1336 /* 1337 * Run $HOME/.ssh/rc, /etc/ssh/sshrc, or xauth (whichever is found 1338 * first in this order). 1339 */ 1340 static void 1341 do_rc_files(Session *s, const char *shell) 1342 { 1343 FILE *f = NULL; 1344 char cmd[1024]; 1345 int do_xauth; 1346 struct stat st; 1347 1348 do_xauth = 1349 s->display != NULL && s->auth_proto != NULL && s->auth_data != NULL; 1350 1351 /* ignore _PATH_SSH_USER_RC for subsystems and admin forced commands */ 1352 if (!s->is_subsystem && options.adm_forced_command == NULL && 1353 !no_user_rc && stat(_PATH_SSH_USER_RC, &st) >= 0) { 1354 snprintf(cmd, sizeof cmd, "%s -c '%s %s'", 1355 shell, _PATH_BSHELL, _PATH_SSH_USER_RC); 1356 if (debug_flag) 1357 fprintf(stderr, "Running %s\n", cmd); 1358 f = popen(cmd, "w"); 1359 if (f) { 1360 if (do_xauth) 1361 fprintf(f, "%s %s\n", s->auth_proto, 1362 s->auth_data); 1363 pclose(f); 1364 } else 1365 fprintf(stderr, "Could not run %s\n", 1366 _PATH_SSH_USER_RC); 1367 } else if (stat(_PATH_SSH_SYSTEM_RC, &st) >= 0) { 1368 if (debug_flag) 1369 fprintf(stderr, "Running %s %s\n", _PATH_BSHELL, 1370 _PATH_SSH_SYSTEM_RC); 1371 f = popen(_PATH_BSHELL " " _PATH_SSH_SYSTEM_RC, "w"); 1372 if (f) { 1373 if (do_xauth) 1374 fprintf(f, "%s %s\n", s->auth_proto, 1375 s->auth_data); 1376 pclose(f); 1377 } else 1378 fprintf(stderr, "Could not run %s\n", 1379 _PATH_SSH_SYSTEM_RC); 1380 } else if (do_xauth && options.xauth_location != NULL) { 1381 /* Add authority data to .Xauthority if appropriate. */ 1382 if (debug_flag) { 1383 fprintf(stderr, 1384 "Running %.500s remove %.100s\n", 1385 options.xauth_location, s->auth_display); 1386 fprintf(stderr, 1387 "%.500s add %.100s %.100s %.100s\n", 1388 options.xauth_location, s->auth_display, 1389 s->auth_proto, s->auth_data); 1390 } 1391 snprintf(cmd, sizeof cmd, "%s -q -", 1392 options.xauth_location); 1393 f = popen(cmd, "w"); 1394 if (f) { 1395 fprintf(f, "remove %s\n", 1396 s->auth_display); 1397 fprintf(f, "add %s %s %s\n", 1398 s->auth_display, s->auth_proto, 1399 s->auth_data); 1400 pclose(f); 1401 } else { 1402 fprintf(stderr, "Could not run %s\n", 1403 cmd); 1404 } 1405 } 1406 } 1407 1408 static void 1409 do_nologin(struct passwd *pw) 1410 { 1411 FILE *f = NULL; 1412 char buf[1024], *nl, *def_nl = _PATH_NOLOGIN; 1413 struct stat sb; 1414 1415 #ifdef HAVE_LOGIN_CAP 1416 if (login_getcapbool(lc, "ignorenologin", 0) && pw->pw_uid) 1417 return; 1418 nl = login_getcapstr(lc, "nologin", def_nl, def_nl); 1419 #else 1420 if (pw->pw_uid == 0) 1421 return; 1422 nl = def_nl; 1423 #endif 1424 if (stat(nl, &sb) == -1) { 1425 if (nl != def_nl) 1426 xfree(nl); 1427 return; 1428 } 1429 1430 /* /etc/nologin exists. Print its contents if we can and exit. */ 1431 logit("User %.100s not allowed because %s exists", pw->pw_name, nl); 1432 if ((f = fopen(nl, "r")) != NULL) { 1433 while (fgets(buf, sizeof(buf), f)) 1434 fputs(buf, stderr); 1435 fclose(f); 1436 } 1437 exit(254); 1438 } 1439 1440 /* 1441 * Chroot into a directory after checking it for safety: all path components 1442 * must be root-owned directories with strict permissions. 1443 */ 1444 static void 1445 safely_chroot(const char *path, uid_t uid) 1446 { 1447 const char *cp; 1448 char component[MAXPATHLEN]; 1449 struct stat st; 1450 1451 if (*path != '/') 1452 fatal("chroot path does not begin at root"); 1453 if (strlen(path) >= sizeof(component)) 1454 fatal("chroot path too long"); 1455 1456 /* 1457 * Descend the path, checking that each component is a 1458 * root-owned directory with strict permissions. 1459 */ 1460 for (cp = path; cp != NULL;) { 1461 if ((cp = strchr(cp, '/')) == NULL) 1462 strlcpy(component, path, sizeof(component)); 1463 else { 1464 cp++; 1465 memcpy(component, path, cp - path); 1466 component[cp - path] = '\0'; 1467 } 1468 1469 debug3("%s: checking '%s'", __func__, component); 1470 1471 if (stat(component, &st) != 0) 1472 fatal("%s: stat(\"%s\"): %s", __func__, 1473 component, strerror(errno)); 1474 if (st.st_uid != 0 || (st.st_mode & 022) != 0) 1475 fatal("bad ownership or modes for chroot " 1476 "directory %s\"%s\"", 1477 cp == NULL ? "" : "component ", component); 1478 if (!S_ISDIR(st.st_mode)) 1479 fatal("chroot path %s\"%s\" is not a directory", 1480 cp == NULL ? "" : "component ", component); 1481 1482 } 1483 1484 if (chdir(path) == -1) 1485 fatal("Unable to chdir to chroot path \"%s\": " 1486 "%s", path, strerror(errno)); 1487 if (chroot(path) == -1) 1488 fatal("chroot(\"%s\"): %s", path, strerror(errno)); 1489 if (chdir("/") == -1) 1490 fatal("%s: chdir(/) after chroot: %s", 1491 __func__, strerror(errno)); 1492 verbose("Changed root directory to \"%s\"", path); 1493 } 1494 1495 /* Set login name, uid, gid, and groups. */ 1496 void 1497 do_setusercontext(struct passwd *pw) 1498 { 1499 char *chroot_path, *tmp; 1500 1501 #ifdef WITH_SELINUX 1502 /* Cache selinux status for later use */ 1503 (void)ssh_selinux_enabled(); 1504 #endif 1505 1506 #ifndef HAVE_CYGWIN 1507 if (getuid() == 0 || geteuid() == 0) 1508 #endif /* HAVE_CYGWIN */ 1509 { 1510 #ifdef HAVE_LOGIN_CAP 1511 # ifdef __bsdi__ 1512 setpgid(0, 0); 1513 # endif 1514 # ifdef USE_PAM 1515 if (options.use_pam) { 1516 do_pam_setcred(use_privsep); 1517 } 1518 # endif /* USE_PAM */ 1519 if (setusercontext(lc, pw, pw->pw_uid, 1520 (LOGIN_SETALL & ~(LOGIN_SETENV|LOGIN_SETPATH|LOGIN_SETUSER))) < 0) { 1521 perror("unable to set user context"); 1522 exit(1); 1523 } 1524 #else 1525 # if defined(HAVE_GETLUID) && defined(HAVE_SETLUID) 1526 /* Sets login uid for accounting */ 1527 if (getluid() == -1 && setluid(pw->pw_uid) == -1) 1528 error("setluid: %s", strerror(errno)); 1529 # endif /* defined(HAVE_GETLUID) && defined(HAVE_SETLUID) */ 1530 1531 if (setlogin(pw->pw_name) < 0) 1532 error("setlogin failed: %s", strerror(errno)); 1533 if (setgid(pw->pw_gid) < 0) { 1534 perror("setgid"); 1535 exit(1); 1536 } 1537 /* Initialize the group list. */ 1538 if (initgroups(pw->pw_name, pw->pw_gid) < 0) { 1539 perror("initgroups"); 1540 exit(1); 1541 } 1542 endgrent(); 1543 # ifdef USE_PAM 1544 /* 1545 * PAM credentials may take the form of supplementary groups. 1546 * These will have been wiped by the above initgroups() call. 1547 * Reestablish them here. 1548 */ 1549 if (options.use_pam) { 1550 do_pam_setcred(use_privsep); 1551 } 1552 # endif /* USE_PAM */ 1553 # if defined(WITH_IRIX_PROJECT) || defined(WITH_IRIX_JOBS) || defined(WITH_IRIX_ARRAY) 1554 irix_setusercontext(pw); 1555 # endif /* defined(WITH_IRIX_PROJECT) || defined(WITH_IRIX_JOBS) || defined(WITH_IRIX_ARRAY) */ 1556 # ifdef _AIX 1557 aix_usrinfo(pw); 1558 # endif /* _AIX */ 1559 # ifdef USE_LIBIAF 1560 if (set_id(pw->pw_name) != 0) { 1561 exit(1); 1562 } 1563 # endif /* USE_LIBIAF */ 1564 #endif 1565 #ifdef HAVE_SETPCRED 1566 /* 1567 * If we have a chroot directory, we set all creds except real 1568 * uid which we will need for chroot. If we don't have a 1569 * chroot directory, we don't override anything. 1570 */ 1571 { 1572 char **creds = NULL, *chroot_creds[] = 1573 { "REAL_USER=root", NULL }; 1574 1575 if (options.chroot_directory != NULL && 1576 strcasecmp(options.chroot_directory, "none") != 0) 1577 creds = chroot_creds; 1578 1579 if (setpcred(pw->pw_name, creds) == -1) 1580 fatal("Failed to set process credentials"); 1581 } 1582 #endif /* HAVE_SETPCRED */ 1583 1584 #ifdef WITH_SELINUX 1585 ssh_selinux_setup_exec_context(pw->pw_name); 1586 #endif 1587 1588 if (options.chroot_directory != NULL && 1589 strcasecmp(options.chroot_directory, "none") != 0) { 1590 tmp = tilde_expand_filename(options.chroot_directory, 1591 pw->pw_uid); 1592 chroot_path = percent_expand(tmp, "h", pw->pw_dir, 1593 "u", pw->pw_name, (char *)NULL); 1594 safely_chroot(chroot_path, pw->pw_uid); 1595 free(tmp); 1596 free(chroot_path); 1597 } 1598 1599 #ifdef HAVE_LOGIN_CAP 1600 if (setusercontext(lc, pw, pw->pw_uid, LOGIN_SETUSER) < 0) { 1601 perror("unable to set user context (setuser)"); 1602 exit(1); 1603 } 1604 #else 1605 /* Permanently switch to the desired uid. */ 1606 permanently_set_uid(pw); 1607 #endif 1608 } 1609 1610 if (getuid() != pw->pw_uid || geteuid() != pw->pw_uid) 1611 fatal("Failed to set uids to %u.", (u_int) pw->pw_uid); 1612 } 1613 1614 static void 1615 do_pwchange(Session *s) 1616 { 1617 fflush(NULL); 1618 fprintf(stderr, "WARNING: Your password has expired.\n"); 1619 if (s->ttyfd != -1) { 1620 fprintf(stderr, 1621 "You must change your password now and login again!\n"); 1622 #ifdef PASSWD_NEEDS_USERNAME 1623 execl(_PATH_PASSWD_PROG, "passwd", s->pw->pw_name, 1624 (char *)NULL); 1625 #else 1626 execl(_PATH_PASSWD_PROG, "passwd", (char *)NULL); 1627 #endif 1628 perror("passwd"); 1629 } else { 1630 fprintf(stderr, 1631 "Password change required but no TTY available.\n"); 1632 } 1633 exit(1); 1634 } 1635 1636 static void 1637 launch_login(struct passwd *pw, const char *hostname) 1638 { 1639 /* Launch login(1). */ 1640 1641 execl(LOGIN_PROGRAM, "login", "-h", hostname, 1642 #ifdef xxxLOGIN_NEEDS_TERM 1643 (s->term ? s->term : "unknown"), 1644 #endif /* LOGIN_NEEDS_TERM */ 1645 #ifdef LOGIN_NO_ENDOPT 1646 "-p", "-f", pw->pw_name, (char *)NULL); 1647 #else 1648 "-p", "-f", "--", pw->pw_name, (char *)NULL); 1649 #endif 1650 1651 /* Login couldn't be executed, die. */ 1652 1653 perror("login"); 1654 exit(1); 1655 } 1656 1657 static void 1658 child_close_fds(void) 1659 { 1660 int i; 1661 1662 if (packet_get_connection_in() == packet_get_connection_out()) 1663 close(packet_get_connection_in()); 1664 else { 1665 close(packet_get_connection_in()); 1666 close(packet_get_connection_out()); 1667 } 1668 /* 1669 * Close all descriptors related to channels. They will still remain 1670 * open in the parent. 1671 */ 1672 /* XXX better use close-on-exec? -markus */ 1673 channel_close_all(); 1674 1675 /* 1676 * Close any extra file descriptors. Note that there may still be 1677 * descriptors left by system functions. They will be closed later. 1678 */ 1679 endpwent(); 1680 1681 /* 1682 * Close any extra open file descriptors so that we don't have them 1683 * hanging around in clients. Note that we want to do this after 1684 * initgroups, because at least on Solaris 2.3 it leaves file 1685 * descriptors open. 1686 */ 1687 for (i = 3; i < 64; i++) 1688 close(i); 1689 } 1690 1691 /* 1692 * Performs common processing for the child, such as setting up the 1693 * environment, closing extra file descriptors, setting the user and group 1694 * ids, and executing the command or shell. 1695 */ 1696 #define ARGV_MAX 10 1697 void 1698 do_child(Session *s, const char *command) 1699 { 1700 extern char **environ; 1701 char **env; 1702 char *argv[ARGV_MAX]; 1703 const char *shell, *shell0, *hostname = NULL; 1704 struct passwd *pw = s->pw; 1705 int r = 0; 1706 1707 /* remove hostkey from the child's memory */ 1708 destroy_sensitive_data(); 1709 1710 /* Force a password change */ 1711 if (s->authctxt->force_pwchange) { 1712 do_setusercontext(pw); 1713 child_close_fds(); 1714 do_pwchange(s); 1715 exit(1); 1716 } 1717 1718 /* login(1) is only called if we execute the login shell */ 1719 if (options.use_login && command != NULL) 1720 options.use_login = 0; 1721 1722 #ifdef _UNICOS 1723 cray_setup(pw->pw_uid, pw->pw_name, command); 1724 #endif /* _UNICOS */ 1725 1726 /* 1727 * Login(1) does this as well, and it needs uid 0 for the "-h" 1728 * switch, so we let login(1) to this for us. 1729 */ 1730 if (!options.use_login) { 1731 #ifdef HAVE_OSF_SIA 1732 session_setup_sia(pw, s->ttyfd == -1 ? NULL : s->tty); 1733 if (!check_quietlogin(s, command)) 1734 do_motd(); 1735 #else /* HAVE_OSF_SIA */ 1736 /* When PAM is enabled we rely on it to do the nologin check */ 1737 if (!options.use_pam) 1738 do_nologin(pw); 1739 do_setusercontext(pw); 1740 /* 1741 * PAM session modules in do_setusercontext may have 1742 * generated messages, so if this in an interactive 1743 * login then display them too. 1744 */ 1745 if (!check_quietlogin(s, command)) 1746 display_loginmsg(); 1747 #endif /* HAVE_OSF_SIA */ 1748 } 1749 1750 #ifdef USE_PAM 1751 if (options.use_pam && !options.use_login && !is_pam_session_open()) { 1752 debug3("PAM session not opened, exiting"); 1753 display_loginmsg(); 1754 exit(254); 1755 } 1756 #endif 1757 1758 /* 1759 * Get the shell from the password data. An empty shell field is 1760 * legal, and means /bin/sh. 1761 */ 1762 shell = (pw->pw_shell[0] == '\0') ? _PATH_BSHELL : pw->pw_shell; 1763 1764 /* 1765 * Make sure $SHELL points to the shell from the password file, 1766 * even if shell is overridden from login.conf 1767 */ 1768 env = do_setup_env(s, shell); 1769 1770 #ifdef HAVE_LOGIN_CAP 1771 shell = login_getcapstr(lc, "shell", (char *)shell, (char *)shell); 1772 #endif 1773 1774 /* we have to stash the hostname before we close our socket. */ 1775 if (options.use_login) 1776 hostname = get_remote_name_or_ip(utmp_len, 1777 options.use_dns); 1778 /* 1779 * Close the connection descriptors; note that this is the child, and 1780 * the server will still have the socket open, and it is important 1781 * that we do not shutdown it. Note that the descriptors cannot be 1782 * closed before building the environment, as we call 1783 * get_remote_ipaddr there. 1784 */ 1785 child_close_fds(); 1786 1787 /* 1788 * Must take new environment into use so that .ssh/rc, 1789 * /etc/ssh/sshrc and xauth are run in the proper environment. 1790 */ 1791 environ = env; 1792 1793 #if defined(KRB5) && defined(USE_AFS) 1794 /* 1795 * At this point, we check to see if AFS is active and if we have 1796 * a valid Kerberos 5 TGT. If so, it seems like a good idea to see 1797 * if we can (and need to) extend the ticket into an AFS token. If 1798 * we don't do this, we run into potential problems if the user's 1799 * home directory is in AFS and it's not world-readable. 1800 */ 1801 1802 if (options.kerberos_get_afs_token && k_hasafs() && 1803 (s->authctxt->krb5_ctx != NULL)) { 1804 char cell[64]; 1805 1806 debug("Getting AFS token"); 1807 1808 k_setpag(); 1809 1810 if (k_afs_cell_of_file(pw->pw_dir, cell, sizeof(cell)) == 0) 1811 krb5_afslog(s->authctxt->krb5_ctx, 1812 s->authctxt->krb5_fwd_ccache, cell, NULL); 1813 1814 krb5_afslog_home(s->authctxt->krb5_ctx, 1815 s->authctxt->krb5_fwd_ccache, NULL, NULL, pw->pw_dir); 1816 } 1817 #endif 1818 1819 /* Change current directory to the user's home directory. */ 1820 if (chdir(pw->pw_dir) < 0) { 1821 /* Suppress missing homedir warning for chroot case */ 1822 #ifdef HAVE_LOGIN_CAP 1823 r = login_getcapbool(lc, "requirehome", 0); 1824 #endif 1825 if (r || options.chroot_directory == NULL) 1826 fprintf(stderr, "Could not chdir to home " 1827 "directory %s: %s\n", pw->pw_dir, 1828 strerror(errno)); 1829 if (r) 1830 exit(1); 1831 } 1832 1833 closefrom(STDERR_FILENO + 1); 1834 1835 if (!options.use_login) 1836 do_rc_files(s, shell); 1837 1838 /* restore SIGPIPE for child */ 1839 signal(SIGPIPE, SIG_DFL); 1840 1841 if (s->is_subsystem == SUBSYSTEM_INT_SFTP_ERROR) { 1842 printf("This service allows sftp connections only.\n"); 1843 fflush(NULL); 1844 exit(1); 1845 } else if (s->is_subsystem == SUBSYSTEM_INT_SFTP) { 1846 extern int optind, optreset; 1847 int i; 1848 char *p, *args; 1849 1850 setproctitle("%s@%s", s->pw->pw_name, INTERNAL_SFTP_NAME); 1851 args = xstrdup(command ? command : "sftp-server"); 1852 for (i = 0, (p = strtok(args, " ")); p; (p = strtok(NULL, " "))) 1853 if (i < ARGV_MAX - 1) 1854 argv[i++] = p; 1855 argv[i] = NULL; 1856 optind = optreset = 1; 1857 __progname = argv[0]; 1858 #ifdef WITH_SELINUX 1859 ssh_selinux_change_context("sftpd_t"); 1860 #endif 1861 exit(sftp_server_main(i, argv, s->pw)); 1862 } 1863 1864 fflush(NULL); 1865 1866 if (options.use_login) { 1867 launch_login(pw, hostname); 1868 /* NEVERREACHED */ 1869 } 1870 1871 /* Get the last component of the shell name. */ 1872 if ((shell0 = strrchr(shell, '/')) != NULL) 1873 shell0++; 1874 else 1875 shell0 = shell; 1876 1877 /* 1878 * If we have no command, execute the shell. In this case, the shell 1879 * name to be passed in argv[0] is preceded by '-' to indicate that 1880 * this is a login shell. 1881 */ 1882 if (!command) { 1883 char argv0[256]; 1884 1885 /* Start the shell. Set initial character to '-'. */ 1886 argv0[0] = '-'; 1887 1888 if (strlcpy(argv0 + 1, shell0, sizeof(argv0) - 1) 1889 >= sizeof(argv0) - 1) { 1890 errno = EINVAL; 1891 perror(shell); 1892 exit(1); 1893 } 1894 1895 /* Execute the shell. */ 1896 argv[0] = argv0; 1897 argv[1] = NULL; 1898 execve(shell, argv, env); 1899 1900 /* Executing the shell failed. */ 1901 perror(shell); 1902 exit(1); 1903 } 1904 /* 1905 * Execute the command using the user's shell. This uses the -c 1906 * option to execute the command. 1907 */ 1908 argv[0] = (char *) shell0; 1909 argv[1] = "-c"; 1910 argv[2] = (char *) command; 1911 argv[3] = NULL; 1912 execve(shell, argv, env); 1913 perror(shell); 1914 exit(1); 1915 } 1916 1917 void 1918 session_unused(int id) 1919 { 1920 debug3("%s: session id %d unused", __func__, id); 1921 if (id >= options.max_sessions || 1922 id >= sessions_nalloc) { 1923 fatal("%s: insane session id %d (max %d nalloc %d)", 1924 __func__, id, options.max_sessions, sessions_nalloc); 1925 } 1926 bzero(&sessions[id], sizeof(*sessions)); 1927 sessions[id].self = id; 1928 sessions[id].used = 0; 1929 sessions[id].chanid = -1; 1930 sessions[id].ptyfd = -1; 1931 sessions[id].ttyfd = -1; 1932 sessions[id].ptymaster = -1; 1933 sessions[id].x11_chanids = NULL; 1934 sessions[id].next_unused = sessions_first_unused; 1935 sessions_first_unused = id; 1936 } 1937 1938 Session * 1939 session_new(void) 1940 { 1941 Session *s, *tmp; 1942 1943 if (sessions_first_unused == -1) { 1944 if (sessions_nalloc >= options.max_sessions) 1945 return NULL; 1946 debug2("%s: allocate (allocated %d max %d)", 1947 __func__, sessions_nalloc, options.max_sessions); 1948 tmp = xrealloc(sessions, sessions_nalloc + 1, 1949 sizeof(*sessions)); 1950 if (tmp == NULL) { 1951 error("%s: cannot allocate %d sessions", 1952 __func__, sessions_nalloc + 1); 1953 return NULL; 1954 } 1955 sessions = tmp; 1956 session_unused(sessions_nalloc++); 1957 } 1958 1959 if (sessions_first_unused >= sessions_nalloc || 1960 sessions_first_unused < 0) { 1961 fatal("%s: insane first_unused %d max %d nalloc %d", 1962 __func__, sessions_first_unused, options.max_sessions, 1963 sessions_nalloc); 1964 } 1965 1966 s = &sessions[sessions_first_unused]; 1967 if (s->used) { 1968 fatal("%s: session %d already used", 1969 __func__, sessions_first_unused); 1970 } 1971 sessions_first_unused = s->next_unused; 1972 s->used = 1; 1973 s->next_unused = -1; 1974 debug("session_new: session %d", s->self); 1975 1976 return s; 1977 } 1978 1979 static void 1980 session_dump(void) 1981 { 1982 int i; 1983 for (i = 0; i < sessions_nalloc; i++) { 1984 Session *s = &sessions[i]; 1985 1986 debug("dump: used %d next_unused %d session %d %p " 1987 "channel %d pid %ld", 1988 s->used, 1989 s->next_unused, 1990 s->self, 1991 s, 1992 s->chanid, 1993 (long)s->pid); 1994 } 1995 } 1996 1997 int 1998 session_open(Authctxt *authctxt, int chanid) 1999 { 2000 Session *s = session_new(); 2001 debug("session_open: channel %d", chanid); 2002 if (s == NULL) { 2003 error("no more sessions"); 2004 return 0; 2005 } 2006 s->authctxt = authctxt; 2007 s->pw = authctxt->pw; 2008 if (s->pw == NULL || !authctxt->valid) 2009 fatal("no user for session %d", s->self); 2010 debug("session_open: session %d: link with channel %d", s->self, chanid); 2011 s->chanid = chanid; 2012 return 1; 2013 } 2014 2015 Session * 2016 session_by_tty(char *tty) 2017 { 2018 int i; 2019 for (i = 0; i < sessions_nalloc; i++) { 2020 Session *s = &sessions[i]; 2021 if (s->used && s->ttyfd != -1 && strcmp(s->tty, tty) == 0) { 2022 debug("session_by_tty: session %d tty %s", i, tty); 2023 return s; 2024 } 2025 } 2026 debug("session_by_tty: unknown tty %.100s", tty); 2027 session_dump(); 2028 return NULL; 2029 } 2030 2031 static Session * 2032 session_by_channel(int id) 2033 { 2034 int i; 2035 for (i = 0; i < sessions_nalloc; i++) { 2036 Session *s = &sessions[i]; 2037 if (s->used && s->chanid == id) { 2038 debug("session_by_channel: session %d channel %d", 2039 i, id); 2040 return s; 2041 } 2042 } 2043 debug("session_by_channel: unknown channel %d", id); 2044 session_dump(); 2045 return NULL; 2046 } 2047 2048 static Session * 2049 session_by_x11_channel(int id) 2050 { 2051 int i, j; 2052 2053 for (i = 0; i < sessions_nalloc; i++) { 2054 Session *s = &sessions[i]; 2055 2056 if (s->x11_chanids == NULL || !s->used) 2057 continue; 2058 for (j = 0; s->x11_chanids[j] != -1; j++) { 2059 if (s->x11_chanids[j] == id) { 2060 debug("session_by_x11_channel: session %d " 2061 "channel %d", s->self, id); 2062 return s; 2063 } 2064 } 2065 } 2066 debug("session_by_x11_channel: unknown channel %d", id); 2067 session_dump(); 2068 return NULL; 2069 } 2070 2071 static Session * 2072 session_by_pid(pid_t pid) 2073 { 2074 int i; 2075 debug("session_by_pid: pid %ld", (long)pid); 2076 for (i = 0; i < sessions_nalloc; i++) { 2077 Session *s = &sessions[i]; 2078 if (s->used && s->pid == pid) 2079 return s; 2080 } 2081 error("session_by_pid: unknown pid %ld", (long)pid); 2082 session_dump(); 2083 return NULL; 2084 } 2085 2086 static int 2087 session_window_change_req(Session *s) 2088 { 2089 s->col = packet_get_int(); 2090 s->row = packet_get_int(); 2091 s->xpixel = packet_get_int(); 2092 s->ypixel = packet_get_int(); 2093 packet_check_eom(); 2094 pty_change_window_size(s->ptyfd, s->row, s->col, s->xpixel, s->ypixel); 2095 return 1; 2096 } 2097 2098 static int 2099 session_pty_req(Session *s) 2100 { 2101 u_int len; 2102 int n_bytes; 2103 2104 if (no_pty_flag) { 2105 debug("Allocating a pty not permitted for this authentication."); 2106 return 0; 2107 } 2108 if (s->ttyfd != -1) { 2109 packet_disconnect("Protocol error: you already have a pty."); 2110 return 0; 2111 } 2112 2113 s->term = packet_get_string(&len); 2114 2115 if (compat20) { 2116 s->col = packet_get_int(); 2117 s->row = packet_get_int(); 2118 } else { 2119 s->row = packet_get_int(); 2120 s->col = packet_get_int(); 2121 } 2122 s->xpixel = packet_get_int(); 2123 s->ypixel = packet_get_int(); 2124 2125 if (strcmp(s->term, "") == 0) { 2126 xfree(s->term); 2127 s->term = NULL; 2128 } 2129 2130 /* Allocate a pty and open it. */ 2131 debug("Allocating pty."); 2132 if (!PRIVSEP(pty_allocate(&s->ptyfd, &s->ttyfd, s->tty, 2133 sizeof(s->tty)))) { 2134 if (s->term) 2135 xfree(s->term); 2136 s->term = NULL; 2137 s->ptyfd = -1; 2138 s->ttyfd = -1; 2139 error("session_pty_req: session %d alloc failed", s->self); 2140 return 0; 2141 } 2142 debug("session_pty_req: session %d alloc %s", s->self, s->tty); 2143 2144 /* for SSH1 the tty modes length is not given */ 2145 if (!compat20) 2146 n_bytes = packet_remaining(); 2147 tty_parse_modes(s->ttyfd, &n_bytes); 2148 2149 if (!use_privsep) 2150 pty_setowner(s->pw, s->tty); 2151 2152 /* Set window size from the packet. */ 2153 pty_change_window_size(s->ptyfd, s->row, s->col, s->xpixel, s->ypixel); 2154 2155 packet_check_eom(); 2156 session_proctitle(s); 2157 return 1; 2158 } 2159 2160 static int 2161 session_subsystem_req(Session *s) 2162 { 2163 struct stat st; 2164 u_int len; 2165 int success = 0; 2166 char *prog, *cmd, *subsys = packet_get_string(&len); 2167 u_int i; 2168 2169 packet_check_eom(); 2170 logit("subsystem request for %.100s", subsys); 2171 2172 for (i = 0; i < options.num_subsystems; i++) { 2173 if (strcmp(subsys, options.subsystem_name[i]) == 0) { 2174 prog = options.subsystem_command[i]; 2175 cmd = options.subsystem_args[i]; 2176 if (strcmp(INTERNAL_SFTP_NAME, prog) == 0) { 2177 s->is_subsystem = SUBSYSTEM_INT_SFTP; 2178 debug("subsystem: %s", prog); 2179 } else { 2180 if (stat(prog, &st) < 0) 2181 debug("subsystem: cannot stat %s: %s", 2182 prog, strerror(errno)); 2183 s->is_subsystem = SUBSYSTEM_EXT; 2184 debug("subsystem: exec() %s", cmd); 2185 } 2186 success = do_exec(s, cmd) == 0; 2187 break; 2188 } 2189 } 2190 2191 if (!success) 2192 logit("subsystem request for %.100s failed, subsystem not found", 2193 subsys); 2194 2195 xfree(subsys); 2196 return success; 2197 } 2198 2199 static int 2200 session_x11_req(Session *s) 2201 { 2202 int success; 2203 2204 if (s->auth_proto != NULL || s->auth_data != NULL) { 2205 error("session_x11_req: session %d: " 2206 "x11 forwarding already active", s->self); 2207 return 0; 2208 } 2209 s->single_connection = packet_get_char(); 2210 s->auth_proto = packet_get_string(NULL); 2211 s->auth_data = packet_get_string(NULL); 2212 s->screen = packet_get_int(); 2213 packet_check_eom(); 2214 2215 success = session_setup_x11fwd(s); 2216 if (!success) { 2217 xfree(s->auth_proto); 2218 xfree(s->auth_data); 2219 s->auth_proto = NULL; 2220 s->auth_data = NULL; 2221 } 2222 return success; 2223 } 2224 2225 static int 2226 session_shell_req(Session *s) 2227 { 2228 packet_check_eom(); 2229 return do_exec(s, NULL) == 0; 2230 } 2231 2232 static int 2233 session_exec_req(Session *s) 2234 { 2235 u_int len, success; 2236 2237 char *command = packet_get_string(&len); 2238 packet_check_eom(); 2239 success = do_exec(s, command) == 0; 2240 xfree(command); 2241 return success; 2242 } 2243 2244 static int 2245 session_break_req(Session *s) 2246 { 2247 2248 packet_get_int(); /* ignored */ 2249 packet_check_eom(); 2250 2251 if (s->ttyfd == -1 || tcsendbreak(s->ttyfd, 0) < 0) 2252 return 0; 2253 return 1; 2254 } 2255 2256 static int 2257 session_env_req(Session *s) 2258 { 2259 char *name, *val; 2260 u_int name_len, val_len, i; 2261 2262 name = packet_get_string(&name_len); 2263 val = packet_get_string(&val_len); 2264 packet_check_eom(); 2265 2266 /* Don't set too many environment variables */ 2267 if (s->num_env > 128) { 2268 debug2("Ignoring env request %s: too many env vars", name); 2269 goto fail; 2270 } 2271 2272 for (i = 0; i < options.num_accept_env; i++) { 2273 if (match_pattern(name, options.accept_env[i])) { 2274 debug2("Setting env %d: %s=%s", s->num_env, name, val); 2275 s->env = xrealloc(s->env, s->num_env + 1, 2276 sizeof(*s->env)); 2277 s->env[s->num_env].name = name; 2278 s->env[s->num_env].val = val; 2279 s->num_env++; 2280 return (1); 2281 } 2282 } 2283 debug2("Ignoring env request %s: disallowed name", name); 2284 2285 fail: 2286 xfree(name); 2287 xfree(val); 2288 return (0); 2289 } 2290 2291 static int 2292 session_auth_agent_req(Session *s) 2293 { 2294 static int called = 0; 2295 packet_check_eom(); 2296 if (no_agent_forwarding_flag || !options.allow_agent_forwarding) { 2297 debug("session_auth_agent_req: no_agent_forwarding_flag"); 2298 return 0; 2299 } 2300 if (called) { 2301 return 0; 2302 } else { 2303 called = 1; 2304 return auth_input_request_forwarding(s->pw); 2305 } 2306 } 2307 2308 int 2309 session_input_channel_req(Channel *c, const char *rtype) 2310 { 2311 int success = 0; 2312 Session *s; 2313 2314 if ((s = session_by_channel(c->self)) == NULL) { 2315 logit("session_input_channel_req: no session %d req %.100s", 2316 c->self, rtype); 2317 return 0; 2318 } 2319 debug("session_input_channel_req: session %d req %s", s->self, rtype); 2320 2321 /* 2322 * a session is in LARVAL state until a shell, a command 2323 * or a subsystem is executed 2324 */ 2325 if (c->type == SSH_CHANNEL_LARVAL) { 2326 if (strcmp(rtype, "shell") == 0) { 2327 success = session_shell_req(s); 2328 } else if (strcmp(rtype, "exec") == 0) { 2329 success = session_exec_req(s); 2330 } else if (strcmp(rtype, "pty-req") == 0) { 2331 success = session_pty_req(s); 2332 } else if (strcmp(rtype, "x11-req") == 0) { 2333 success = session_x11_req(s); 2334 } else if (strcmp(rtype, "auth-agent-req@openssh.com") == 0) { 2335 success = session_auth_agent_req(s); 2336 } else if (strcmp(rtype, "subsystem") == 0) { 2337 success = session_subsystem_req(s); 2338 } else if (strcmp(rtype, "env") == 0) { 2339 success = session_env_req(s); 2340 } 2341 } 2342 if (strcmp(rtype, "window-change") == 0) { 2343 success = session_window_change_req(s); 2344 } else if (strcmp(rtype, "break") == 0) { 2345 success = session_break_req(s); 2346 } 2347 2348 return success; 2349 } 2350 2351 void 2352 session_set_fds(Session *s, int fdin, int fdout, int fderr, int is_tty) 2353 { 2354 if (!compat20) 2355 fatal("session_set_fds: called for proto != 2.0"); 2356 /* 2357 * now that have a child and a pipe to the child, 2358 * we can activate our channel and register the fd's 2359 */ 2360 if (s->chanid == -1) 2361 fatal("no channel for session %d", s->self); 2362 channel_set_fds(s->chanid, 2363 fdout, fdin, fderr, 2364 fderr == -1 ? CHAN_EXTENDED_IGNORE : CHAN_EXTENDED_READ, 2365 1, is_tty, CHAN_SES_WINDOW_DEFAULT); 2366 } 2367 2368 /* 2369 * Function to perform pty cleanup. Also called if we get aborted abnormally 2370 * (e.g., due to a dropped connection). 2371 */ 2372 void 2373 session_pty_cleanup2(Session *s) 2374 { 2375 if (s == NULL) { 2376 error("session_pty_cleanup: no session"); 2377 return; 2378 } 2379 if (s->ttyfd == -1) 2380 return; 2381 2382 debug("session_pty_cleanup: session %d release %s", s->self, s->tty); 2383 2384 /* Record that the user has logged out. */ 2385 if (s->pid != 0) 2386 record_logout(s->pid, s->tty, s->pw->pw_name); 2387 2388 /* Release the pseudo-tty. */ 2389 if (getuid() == 0) 2390 pty_release(s->tty); 2391 2392 /* 2393 * Close the server side of the socket pairs. We must do this after 2394 * the pty cleanup, so that another process doesn't get this pty 2395 * while we're still cleaning up. 2396 */ 2397 if (s->ptymaster != -1 && close(s->ptymaster) < 0) 2398 error("close(s->ptymaster/%d): %s", 2399 s->ptymaster, strerror(errno)); 2400 2401 /* unlink pty from session */ 2402 s->ttyfd = -1; 2403 } 2404 2405 void 2406 session_pty_cleanup(Session *s) 2407 { 2408 PRIVSEP(session_pty_cleanup2(s)); 2409 } 2410 2411 static char * 2412 sig2name(int sig) 2413 { 2414 #define SSH_SIG(x) if (sig == SIG ## x) return #x 2415 SSH_SIG(ABRT); 2416 SSH_SIG(ALRM); 2417 SSH_SIG(FPE); 2418 SSH_SIG(HUP); 2419 SSH_SIG(ILL); 2420 SSH_SIG(INT); 2421 SSH_SIG(KILL); 2422 SSH_SIG(PIPE); 2423 SSH_SIG(QUIT); 2424 SSH_SIG(SEGV); 2425 SSH_SIG(TERM); 2426 SSH_SIG(USR1); 2427 SSH_SIG(USR2); 2428 #undef SSH_SIG 2429 return "SIG@openssh.com"; 2430 } 2431 2432 static void 2433 session_close_x11(int id) 2434 { 2435 Channel *c; 2436 2437 if ((c = channel_by_id(id)) == NULL) { 2438 debug("session_close_x11: x11 channel %d missing", id); 2439 } else { 2440 /* Detach X11 listener */ 2441 debug("session_close_x11: detach x11 channel %d", id); 2442 channel_cancel_cleanup(id); 2443 if (c->ostate != CHAN_OUTPUT_CLOSED) 2444 chan_mark_dead(c); 2445 } 2446 } 2447 2448 static void 2449 session_close_single_x11(int id, void *arg) 2450 { 2451 Session *s; 2452 u_int i; 2453 2454 debug3("session_close_single_x11: channel %d", id); 2455 channel_cancel_cleanup(id); 2456 if ((s = session_by_x11_channel(id)) == NULL) 2457 fatal("session_close_single_x11: no x11 channel %d", id); 2458 for (i = 0; s->x11_chanids[i] != -1; i++) { 2459 debug("session_close_single_x11: session %d: " 2460 "closing channel %d", s->self, s->x11_chanids[i]); 2461 /* 2462 * The channel "id" is already closing, but make sure we 2463 * close all of its siblings. 2464 */ 2465 if (s->x11_chanids[i] != id) 2466 session_close_x11(s->x11_chanids[i]); 2467 } 2468 xfree(s->x11_chanids); 2469 s->x11_chanids = NULL; 2470 if (s->display) { 2471 xfree(s->display); 2472 s->display = NULL; 2473 } 2474 if (s->auth_proto) { 2475 xfree(s->auth_proto); 2476 s->auth_proto = NULL; 2477 } 2478 if (s->auth_data) { 2479 xfree(s->auth_data); 2480 s->auth_data = NULL; 2481 } 2482 if (s->auth_display) { 2483 xfree(s->auth_display); 2484 s->auth_display = NULL; 2485 } 2486 } 2487 2488 static void 2489 session_exit_message(Session *s, int status) 2490 { 2491 Channel *c; 2492 2493 if ((c = channel_lookup(s->chanid)) == NULL) 2494 fatal("session_exit_message: session %d: no channel %d", 2495 s->self, s->chanid); 2496 debug("session_exit_message: session %d channel %d pid %ld", 2497 s->self, s->chanid, (long)s->pid); 2498 2499 if (WIFEXITED(status)) { 2500 channel_request_start(s->chanid, "exit-status", 0); 2501 packet_put_int(WEXITSTATUS(status)); 2502 packet_send(); 2503 } else if (WIFSIGNALED(status)) { 2504 channel_request_start(s->chanid, "exit-signal", 0); 2505 packet_put_cstring(sig2name(WTERMSIG(status))); 2506 #ifdef WCOREDUMP 2507 packet_put_char(WCOREDUMP(status)? 1 : 0); 2508 #else /* WCOREDUMP */ 2509 packet_put_char(0); 2510 #endif /* WCOREDUMP */ 2511 packet_put_cstring(""); 2512 packet_put_cstring(""); 2513 packet_send(); 2514 } else { 2515 /* Some weird exit cause. Just exit. */ 2516 packet_disconnect("wait returned status %04x.", status); 2517 } 2518 2519 /* disconnect channel */ 2520 debug("session_exit_message: release channel %d", s->chanid); 2521 2522 /* 2523 * Adjust cleanup callback attachment to send close messages when 2524 * the channel gets EOF. The session will be then be closed 2525 * by session_close_by_channel when the childs close their fds. 2526 */ 2527 channel_register_cleanup(c->self, session_close_by_channel, 1); 2528 2529 /* 2530 * emulate a write failure with 'chan_write_failed', nobody will be 2531 * interested in data we write. 2532 * Note that we must not call 'chan_read_failed', since there could 2533 * be some more data waiting in the pipe. 2534 */ 2535 if (c->ostate != CHAN_OUTPUT_CLOSED) 2536 chan_write_failed(c); 2537 } 2538 2539 void 2540 session_close(Session *s) 2541 { 2542 u_int i; 2543 2544 debug("session_close: session %d pid %ld", s->self, (long)s->pid); 2545 if (s->ttyfd != -1) 2546 session_pty_cleanup(s); 2547 if (s->term) 2548 xfree(s->term); 2549 if (s->display) 2550 xfree(s->display); 2551 if (s->x11_chanids) 2552 xfree(s->x11_chanids); 2553 if (s->auth_display) 2554 xfree(s->auth_display); 2555 if (s->auth_data) 2556 xfree(s->auth_data); 2557 if (s->auth_proto) 2558 xfree(s->auth_proto); 2559 if (s->env != NULL) { 2560 for (i = 0; i < s->num_env; i++) { 2561 xfree(s->env[i].name); 2562 xfree(s->env[i].val); 2563 } 2564 xfree(s->env); 2565 } 2566 session_proctitle(s); 2567 session_unused(s->self); 2568 } 2569 2570 void 2571 session_close_by_pid(pid_t pid, int status) 2572 { 2573 Session *s = session_by_pid(pid); 2574 if (s == NULL) { 2575 debug("session_close_by_pid: no session for pid %ld", 2576 (long)pid); 2577 return; 2578 } 2579 if (s->chanid != -1) 2580 session_exit_message(s, status); 2581 if (s->ttyfd != -1) 2582 session_pty_cleanup(s); 2583 s->pid = 0; 2584 } 2585 2586 /* 2587 * this is called when a channel dies before 2588 * the session 'child' itself dies 2589 */ 2590 void 2591 session_close_by_channel(int id, void *arg) 2592 { 2593 Session *s = session_by_channel(id); 2594 u_int i; 2595 2596 if (s == NULL) { 2597 debug("session_close_by_channel: no session for id %d", id); 2598 return; 2599 } 2600 debug("session_close_by_channel: channel %d child %ld", 2601 id, (long)s->pid); 2602 if (s->pid != 0) { 2603 debug("session_close_by_channel: channel %d: has child", id); 2604 /* 2605 * delay detach of session, but release pty, since 2606 * the fd's to the child are already closed 2607 */ 2608 if (s->ttyfd != -1) 2609 session_pty_cleanup(s); 2610 return; 2611 } 2612 /* detach by removing callback */ 2613 channel_cancel_cleanup(s->chanid); 2614 2615 /* Close any X11 listeners associated with this session */ 2616 if (s->x11_chanids != NULL) { 2617 for (i = 0; s->x11_chanids[i] != -1; i++) { 2618 session_close_x11(s->x11_chanids[i]); 2619 s->x11_chanids[i] = -1; 2620 } 2621 } 2622 2623 s->chanid = -1; 2624 session_close(s); 2625 } 2626 2627 void 2628 session_destroy_all(void (*closefunc)(Session *)) 2629 { 2630 int i; 2631 for (i = 0; i < sessions_nalloc; i++) { 2632 Session *s = &sessions[i]; 2633 if (s->used) { 2634 if (closefunc != NULL) 2635 closefunc(s); 2636 else 2637 session_close(s); 2638 } 2639 } 2640 } 2641 2642 static char * 2643 session_tty_list(void) 2644 { 2645 static char buf[1024]; 2646 int i; 2647 char *cp; 2648 2649 buf[0] = '\0'; 2650 for (i = 0; i < sessions_nalloc; i++) { 2651 Session *s = &sessions[i]; 2652 if (s->used && s->ttyfd != -1) { 2653 2654 if (strncmp(s->tty, "/dev/", 5) != 0) { 2655 cp = strrchr(s->tty, '/'); 2656 cp = (cp == NULL) ? s->tty : cp + 1; 2657 } else 2658 cp = s->tty + 5; 2659 2660 if (buf[0] != '\0') 2661 strlcat(buf, ",", sizeof buf); 2662 strlcat(buf, cp, sizeof buf); 2663 } 2664 } 2665 if (buf[0] == '\0') 2666 strlcpy(buf, "notty", sizeof buf); 2667 return buf; 2668 } 2669 2670 void 2671 session_proctitle(Session *s) 2672 { 2673 if (s->pw == NULL) 2674 error("no user for session %d", s->self); 2675 else 2676 setproctitle("%s@%s", s->pw->pw_name, session_tty_list()); 2677 } 2678 2679 int 2680 session_setup_x11fwd(Session *s) 2681 { 2682 struct stat st; 2683 char display[512], auth_display[512]; 2684 char hostname[MAXHOSTNAMELEN]; 2685 u_int i; 2686 2687 if (no_x11_forwarding_flag) { 2688 packet_send_debug("X11 forwarding disabled in user configuration file."); 2689 return 0; 2690 } 2691 if (!options.x11_forwarding) { 2692 debug("X11 forwarding disabled in server configuration file."); 2693 return 0; 2694 } 2695 if (!options.xauth_location || 2696 (stat(options.xauth_location, &st) == -1)) { 2697 packet_send_debug("No xauth program; cannot forward with spoofing."); 2698 return 0; 2699 } 2700 if (options.use_login) { 2701 packet_send_debug("X11 forwarding disabled; " 2702 "not compatible with UseLogin=yes."); 2703 return 0; 2704 } 2705 if (s->display != NULL) { 2706 debug("X11 display already set."); 2707 return 0; 2708 } 2709 if (x11_create_display_inet(options.x11_display_offset, 2710 options.x11_use_localhost, s->single_connection, 2711 &s->display_number, &s->x11_chanids) == -1) { 2712 debug("x11_create_display_inet failed."); 2713 return 0; 2714 } 2715 for (i = 0; s->x11_chanids[i] != -1; i++) { 2716 channel_register_cleanup(s->x11_chanids[i], 2717 session_close_single_x11, 0); 2718 } 2719 2720 /* Set up a suitable value for the DISPLAY variable. */ 2721 if (gethostname(hostname, sizeof(hostname)) < 0) 2722 fatal("gethostname: %.100s", strerror(errno)); 2723 /* 2724 * auth_display must be used as the displayname when the 2725 * authorization entry is added with xauth(1). This will be 2726 * different than the DISPLAY string for localhost displays. 2727 */ 2728 if (options.x11_use_localhost) { 2729 snprintf(display, sizeof display, "localhost:%u.%u", 2730 s->display_number, s->screen); 2731 snprintf(auth_display, sizeof auth_display, "unix:%u.%u", 2732 s->display_number, s->screen); 2733 s->display = xstrdup(display); 2734 s->auth_display = xstrdup(auth_display); 2735 } else { 2736 #ifdef IPADDR_IN_DISPLAY 2737 struct hostent *he; 2738 struct in_addr my_addr; 2739 2740 he = gethostbyname(hostname); 2741 if (he == NULL) { 2742 error("Can't get IP address for X11 DISPLAY."); 2743 packet_send_debug("Can't get IP address for X11 DISPLAY."); 2744 return 0; 2745 } 2746 memcpy(&my_addr, he->h_addr_list[0], sizeof(struct in_addr)); 2747 snprintf(display, sizeof display, "%.50s:%u.%u", inet_ntoa(my_addr), 2748 s->display_number, s->screen); 2749 #else 2750 snprintf(display, sizeof display, "%.400s:%u.%u", hostname, 2751 s->display_number, s->screen); 2752 #endif 2753 s->display = xstrdup(display); 2754 s->auth_display = xstrdup(display); 2755 } 2756 2757 return 1; 2758 } 2759 2760 static void 2761 do_authenticated2(Authctxt *authctxt) 2762 { 2763 server_loop2(authctxt); 2764 } 2765 2766 void 2767 do_cleanup(Authctxt *authctxt) 2768 { 2769 static int called = 0; 2770 2771 debug("do_cleanup"); 2772 2773 /* no cleanup if we're in the child for login shell */ 2774 if (is_child) 2775 return; 2776 2777 /* avoid double cleanup */ 2778 if (called) 2779 return; 2780 called = 1; 2781 2782 if (authctxt == NULL) 2783 return; 2784 2785 #ifdef USE_PAM 2786 if (options.use_pam) { 2787 sshpam_cleanup(); 2788 sshpam_thread_cleanup(); 2789 } 2790 #endif 2791 2792 if (!authctxt->authenticated) 2793 return; 2794 2795 #ifdef KRB5 2796 if (options.kerberos_ticket_cleanup && 2797 authctxt->krb5_ctx) 2798 krb5_cleanup_proc(authctxt); 2799 #endif 2800 2801 #ifdef GSSAPI 2802 if (compat20 && options.gss_cleanup_creds) 2803 ssh_gssapi_cleanup_creds(); 2804 #endif 2805 2806 /* remove agent socket */ 2807 auth_sock_cleanup_proc(authctxt->pw); 2808 2809 /* 2810 * Cleanup ptys/utmp only if privsep is disabled, 2811 * or if running in monitor. 2812 */ 2813 if (!use_privsep || mm_is_monitor()) 2814 session_destroy_all(session_pty_cleanup2); 2815 } 2816