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25d429a2 1/* $OpenBSD: sshd.c,v 1.351 2007/05/22 10:18:52 djm Exp $ */
3c0ef626 2/*
3 * Author: Tatu Ylonen <ylo@cs.hut.fi>
4 * Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
5 * All rights reserved
6 * This program is the ssh daemon. It listens for connections from clients,
7 * and performs authentication, executes use commands or shell, and forwards
8 * information to/from the application to the user client over an encrypted
9 * connection. This can also handle forwarding of X11, TCP/IP, and
10 * authentication agent connections.
11 *
12 * As far as I am concerned, the code I have written for this software
13 * can be used freely for any purpose. Any derived versions of this
14 * software must be clearly marked as such, and if the derived work is
15 * incompatible with the protocol description in the RFC file, it must be
16 * called by a name other than "ssh" or "Secure Shell".
17 *
18 * SSH2 implementation:
2980ea68 19 * Privilege Separation:
3c0ef626 20 *
2980ea68 21 * Copyright (c) 2000, 2001, 2002 Markus Friedl. All rights reserved.
22 * Copyright (c) 2002 Niels Provos. All rights reserved.
3c0ef626 23 *
24 * Redistribution and use in source and binary forms, with or without
25 * modification, are permitted provided that the following conditions
26 * are met:
27 * 1. Redistributions of source code must retain the above copyright
28 * notice, this list of conditions and the following disclaimer.
29 * 2. Redistributions in binary form must reproduce the above copyright
30 * notice, this list of conditions and the following disclaimer in the
31 * documentation and/or other materials provided with the distribution.
32 *
33 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
34 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
35 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
36 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
37 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
38 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
39 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
40 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
41 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
42 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
43 */
44
45#include "includes.h"
2e437378 46
47#include <sys/types.h>
48#include <sys/ioctl.h>
49#include <sys/socket.h>
50#ifdef HAVE_SYS_STAT_H
51# include <sys/stat.h>
52#endif
53#ifdef HAVE_SYS_TIME_H
54# include <sys/time.h>
55#endif
56#include "openbsd-compat/sys-tree.h"
57#include <sys/wait.h>
58
59#include <errno.h>
60#include <fcntl.h>
61#include <netdb.h>
62#ifdef HAVE_PATHS_H
63#include <paths.h>
64#endif
65#include <grp.h>
66#include <pwd.h>
67#include <signal.h>
68#include <stdarg.h>
69#include <stdio.h>
70#include <stdlib.h>
71#include <string.h>
72#include <unistd.h>
3c0ef626 73
74#include <openssl/dh.h>
75#include <openssl/bn.h>
1e608e42 76#include <openssl/md5.h>
2980ea68 77#include <openssl/rand.h>
78#ifdef HAVE_SECUREWARE
79#include <sys/security.h>
80#include <prot.h>
81#endif
3c0ef626 82
2e437378 83#include "xmalloc.h"
3c0ef626 84#include "ssh.h"
85#include "ssh1.h"
86#include "ssh2.h"
3c0ef626 87#include "rsa.h"
88#include "sshpty.h"
89#include "packet.h"
3c0ef626 90#include "log.h"
2e437378 91#include "buffer.h"
3c0ef626 92#include "servconf.h"
93#include "uidswap.h"
94#include "compat.h"
3c0ef626 95#include "cipher.h"
3c0ef626 96#include "key.h"
2e437378 97#include "kex.h"
3c0ef626 98#include "dh.h"
99#include "myproposal.h"
100#include "authfile.h"
101#include "pathnames.h"
102#include "atomicio.h"
103#include "canohost.h"
2e437378 104#include "hostfile.h"
3c0ef626 105#include "auth.h"
106#include "misc.h"
1b56ff3d 107#include "msg.h"
3c0ef626 108#include "dispatch.h"
109#include "channels.h"
2980ea68 110#include "session.h"
111#include "monitor_mm.h"
112#include "monitor.h"
2e437378 113#ifdef GSSAPI
114#include "ssh-gss.h"
115#endif
2980ea68 116#include "monitor_wrap.h"
117#include "monitor_fdpass.h"
2e437378 118#include "version.h"
3c0ef626 119
34fee935 120#ifdef USE_SECURITY_SESSION_API
121#include <Security/AuthSession.h>
5598e598 122#endif
123
3c0ef626 124#ifdef LIBWRAP
125#include <tcpd.h>
126#include <syslog.h>
127int allow_severity = LOG_INFO;
128int deny_severity = LOG_WARNING;
129#endif /* LIBWRAP */
130
131#ifndef O_NOCTTY
132#define O_NOCTTY 0
133#endif
134
1b56ff3d 135/* Re-exec fds */
136#define REEXEC_DEVCRYPTO_RESERVED_FD (STDERR_FILENO + 1)
137#define REEXEC_STARTUP_PIPE_FD (STDERR_FILENO + 2)
138#define REEXEC_CONFIG_PASS_FD (STDERR_FILENO + 3)
139#define REEXEC_MIN_FREE_FD (STDERR_FILENO + 4)
140
3c0ef626 141extern char *__progname;
3c0ef626 142
143/* Server configuration options. */
144ServerOptions options;
145
146/* Name of the server configuration file. */
ae43c103 147char *config_file_name;
3c0ef626 148
3c0ef626 149/*
150 * Debug mode flag. This can be set on the command line. If debug
151 * mode is enabled, extra debugging output will be sent to the system
152 * log, the daemon will not go to background, and will exit after processing
153 * the first connection.
154 */
155int debug_flag = 0;
156
157/* Flag indicating that the daemon should only test the configuration and keys. */
158int test_flag = 0;
159
160/* Flag indicating that the daemon is being started from inetd. */
161int inetd_flag = 0;
162
163/* Flag indicating that sshd should not detach and become a daemon. */
164int no_daemon_flag = 0;
165
166/* debug goes to stderr unless inetd_flag is set */
167int log_stderr = 0;
168
169/* Saved arguments to main(). */
170char **saved_argv;
171int saved_argc;
172
1b56ff3d 173/* re-exec */
174int rexeced_flag = 0;
175int rexec_flag = 1;
176int rexec_argc = 0;
177char **rexec_argv;
178
3c0ef626 179/*
180 * The sockets that the server is listening; this is used in the SIGHUP
181 * signal handler.
182 */
183#define MAX_LISTEN_SOCKS 16
184int listen_socks[MAX_LISTEN_SOCKS];
185int num_listen_socks = 0;
186
187/*
188 * the client's version string, passed by sshd2 in compat mode. if != NULL,
189 * sshd will skip the version-number exchange
190 */
191char *client_version_string = NULL;
192char *server_version_string = NULL;
193
194/* for rekeying XXX fixme */
195Kex *xxx_kex;
196
197/*
198 * Any really sensitive data in the application is contained in this
199 * structure. The idea is that this structure could be locked into memory so
200 * that the pages do not get written into swap. However, there are some
201 * problems. The private key contains BIGNUMs, and we do not (in principle)
202 * have access to the internals of them, and locking just the structure is
203 * not very useful. Currently, memory locking is not implemented.
204 */
205struct {
206 Key *server_key; /* ephemeral server key */
207 Key *ssh1_host_key; /* ssh1 host key */
208 Key **host_keys; /* all private host keys */
209 int have_ssh1_key;
210 int have_ssh2_key;
211 u_char ssh1_cookie[SSH_SESSION_KEY_LENGTH];
212} sensitive_data;
213
214/*
215 * Flag indicating whether the RSA server key needs to be regenerated.
216 * Is set in the SIGALRM handler and cleared when the key is regenerated.
217 */
1e608e42 218static volatile sig_atomic_t key_do_regen = 0;
3c0ef626 219
220/* This is set to true when a signal is received. */
1e608e42 221static volatile sig_atomic_t received_sighup = 0;
222static volatile sig_atomic_t received_sigterm = 0;
3c0ef626 223
224/* session identifier, used by RSA-auth */
225u_char session_id[16];
226
227/* same for ssh2 */
228u_char *session_id2 = NULL;
70791e56 229u_int session_id2_len = 0;
3c0ef626 230
231/* record remote hostname or ip */
232u_int utmp_len = MAXHOSTNAMELEN;
233
1e608e42 234/* options.max_startup sized array of fd ints */
235int *startup_pipes = NULL;
236int startup_pipe; /* in child */
237
2980ea68 238/* variables used for privilege separation */
2e437378 239int use_privsep = -1;
416fd2a8 240struct monitor *pmonitor = NULL;
2980ea68 241
416fd2a8 242/* global authentication context */
243Authctxt *the_authctxt = NULL;
244
2e437378 245/* sshd_config buffer */
246Buffer cfg;
247
1b56ff3d 248/* message to be displayed after login */
249Buffer loginmsg;
250
2e437378 251/* Unprivileged user */
252struct passwd *privsep_pw = NULL;
253
3c0ef626 254/* Prototypes for various functions defined later in this file. */
255void destroy_sensitive_data(void);
2980ea68 256void demote_sensitive_data(void);
3c0ef626 257
258static void do_ssh1_kex(void);
259static void do_ssh2_kex(void);
260
261/*
262 * Close all listening sockets
263 */
264static void
265close_listen_socks(void)
266{
267 int i;
ff2d7a98 268
3c0ef626 269 for (i = 0; i < num_listen_socks; i++)
270 close(listen_socks[i]);
271 num_listen_socks = -1;
272}
273
1e608e42 274static void
275close_startup_pipes(void)
276{
277 int i;
ff2d7a98 278
1e608e42 279 if (startup_pipes)
280 for (i = 0; i < options.max_startups; i++)
281 if (startup_pipes[i] != -1)
282 close(startup_pipes[i]);
283}
284
3c0ef626 285/*
286 * Signal handler for SIGHUP. Sshd execs itself when it receives SIGHUP;
287 * the effect is to reread the configuration file (and to regenerate
288 * the server key).
289 */
2e437378 290
291/*ARGSUSED*/
3c0ef626 292static void
293sighup_handler(int sig)
294{
1e608e42 295 int save_errno = errno;
296
3c0ef626 297 received_sighup = 1;
298 signal(SIGHUP, sighup_handler);
1e608e42 299 errno = save_errno;
3c0ef626 300}
301
302/*
303 * Called from the main program after receiving SIGHUP.
304 * Restarts the server.
305 */
306static void
307sighup_restart(void)
308{
70791e56 309 logit("Received SIGHUP; restarting.");
3c0ef626 310 close_listen_socks();
1e608e42 311 close_startup_pipes();
2278ffa1 312 alarm(0); /* alarm timer persists across exec */
3c0ef626 313 execv(saved_argv[0], saved_argv);
70791e56 314 logit("RESTART FAILED: av[0]='%.100s', error: %.100s.", saved_argv[0],
ff2d7a98 315 strerror(errno));
3c0ef626 316 exit(1);
317}
318
319/*
320 * Generic signal handler for terminating signals in the master daemon.
321 */
2e437378 322/*ARGSUSED*/
3c0ef626 323static void
324sigterm_handler(int sig)
325{
326 received_sigterm = sig;
327}
328
329/*
330 * SIGCHLD handler. This is called whenever a child dies. This will then
331 * reap any zombies left by exited children.
332 */
2e437378 333/*ARGSUSED*/
3c0ef626 334static void
335main_sigchld_handler(int sig)
336{
337 int save_errno = errno;
ff2d7a98 338 pid_t pid;
3c0ef626 339 int status;
340
2980ea68 341 while ((pid = waitpid(-1, &status, WNOHANG)) > 0 ||
342 (pid < 0 && errno == EINTR))
3c0ef626 343 ;
344
345 signal(SIGCHLD, main_sigchld_handler);
346 errno = save_errno;
347}
348
349/*
350 * Signal handler for the alarm after the login grace period has expired.
351 */
2e437378 352/*ARGSUSED*/
3c0ef626 353static void
354grace_alarm_handler(int sig)
355{
416fd2a8 356 if (use_privsep && pmonitor != NULL && pmonitor->m_pid > 0)
357 kill(pmonitor->m_pid, SIGALRM);
358
3c0ef626 359 /* Log error and exit. */
2e437378 360 sigdie("Timeout before authentication for %s", get_remote_ipaddr());
3c0ef626 361}
362
363/*
364 * Signal handler for the key regeneration alarm. Note that this
365 * alarm only occurs in the daemon waiting for connections, and it does not
366 * do anything with the private key or random state before forking.
367 * Thus there should be no concurrency control/asynchronous execution
368 * problems.
369 */
370static void
371generate_ephemeral_server_key(void)
372{
e54b3d7c 373 u_int32_t rnd = 0;
3c0ef626 374 int i;
375
376 verbose("Generating %s%d bit RSA key.",
377 sensitive_data.server_key ? "new " : "", options.server_key_bits);
378 if (sensitive_data.server_key != NULL)
379 key_free(sensitive_data.server_key);
380 sensitive_data.server_key = key_generate(KEY_RSA1,
381 options.server_key_bits);
382 verbose("RSA key generation complete.");
383
384 for (i = 0; i < SSH_SESSION_KEY_LENGTH; i++) {
385 if (i % 4 == 0)
e54b3d7c 386 rnd = arc4random();
387 sensitive_data.ssh1_cookie[i] = rnd & 0xff;
388 rnd >>= 8;
3c0ef626 389 }
390 arc4random_stir();
391}
392
2e437378 393/*ARGSUSED*/
3c0ef626 394static void
395key_regeneration_alarm(int sig)
396{
397 int save_errno = errno;
ff2d7a98 398
3c0ef626 399 signal(SIGALRM, SIG_DFL);
400 errno = save_errno;
401 key_do_regen = 1;
402}
403
404static void
405sshd_exchange_identification(int sock_in, int sock_out)
406{
34fee935 407 u_int i;
408 int mismatch;
3c0ef626 409 int remote_major, remote_minor;
410 int major, minor;
411 char *s;
412 char buf[256]; /* Must not be larger than remote_version. */
413 char remote_version[256]; /* Must be at least as big as buf. */
414
415 if ((options.protocol & SSH_PROTO_1) &&
416 (options.protocol & SSH_PROTO_2)) {
417 major = PROTOCOL_MAJOR_1;
418 minor = 99;
419 } else if (options.protocol & SSH_PROTO_2) {
420 major = PROTOCOL_MAJOR_2;
421 minor = PROTOCOL_MINOR_2;
422 } else {
423 major = PROTOCOL_MAJOR_1;
424 minor = PROTOCOL_MINOR_1;
425 }
34fee935 426 snprintf(buf, sizeof buf, "SSH-%d.%d-%.100s\n", major, minor, SSH_RELEASE);
3c0ef626 427 server_version_string = xstrdup(buf);
428
70791e56 429 /* Send our protocol version identification. */
430 if (atomicio(vwrite, sock_out, server_version_string,
431 strlen(server_version_string))
432 != strlen(server_version_string)) {
433 logit("Could not write ident string to %s", get_remote_ipaddr());
416fd2a8 434 cleanup_exit(255);
70791e56 435 }
436
437 /* Read other sides version identification. */
438 memset(buf, 0, sizeof(buf));
439 for (i = 0; i < sizeof(buf) - 1; i++) {
440 if (atomicio(read, sock_in, &buf[i], 1) != 1) {
441 logit("Did not receive identification string from %s",
442 get_remote_ipaddr());
416fd2a8 443 cleanup_exit(255);
3c0ef626 444 }
70791e56 445 if (buf[i] == '\r') {
446 buf[i] = 0;
447 /* Kludge for F-Secure Macintosh < 1.0.2 */
448 if (i == 12 &&
449 strncmp(buf, "SSH-1.5-W1.0", 12) == 0)
3c0ef626 450 break;
70791e56 451 continue;
452 }
453 if (buf[i] == '\n') {
454 buf[i] = 0;
455 break;
3c0ef626 456 }
3c0ef626 457 }
70791e56 458 buf[sizeof(buf) - 1] = 0;
459 client_version_string = xstrdup(buf);
3c0ef626 460
461 /*
462 * Check that the versions match. In future this might accept
463 * several versions and set appropriate flags to handle them.
464 */
465 if (sscanf(client_version_string, "SSH-%d.%d-%[^\n]\n",
466 &remote_major, &remote_minor, remote_version) != 3) {
467 s = "Protocol mismatch.\n";
70791e56 468 (void) atomicio(vwrite, sock_out, s, strlen(s));
3c0ef626 469 close(sock_in);
470 close(sock_out);
70791e56 471 logit("Bad protocol version identification '%.100s' from %s",
3c0ef626 472 client_version_string, get_remote_ipaddr());
416fd2a8 473 cleanup_exit(255);
3c0ef626 474 }
475 debug("Client protocol version %d.%d; client software version %.100s",
1e608e42 476 remote_major, remote_minor, remote_version);
3c0ef626 477
478 compat_datafellows(remote_version);
479
e54b3d7c 480 if (datafellows & SSH_BUG_PROBE) {
70791e56 481 logit("probed from %s with %s. Don't panic.",
e54b3d7c 482 get_remote_ipaddr(), client_version_string);
416fd2a8 483 cleanup_exit(255);
e54b3d7c 484 }
485
3c0ef626 486 if (datafellows & SSH_BUG_SCANNER) {
70791e56 487 logit("scanned from %s with %s. Don't panic.",
3c0ef626 488 get_remote_ipaddr(), client_version_string);
416fd2a8 489 cleanup_exit(255);
3c0ef626 490 }
491
492 mismatch = 0;
1e608e42 493 switch (remote_major) {
3c0ef626 494 case 1:
495 if (remote_minor == 99) {
496 if (options.protocol & SSH_PROTO_2)
497 enable_compat20();
498 else
499 mismatch = 1;
500 break;
501 }
502 if (!(options.protocol & SSH_PROTO_1)) {
503 mismatch = 1;
504 break;
505 }
506 if (remote_minor < 3) {
507 packet_disconnect("Your ssh version is too old and "
508 "is no longer supported. Please install a newer version.");
509 } else if (remote_minor == 3) {
510 /* note that this disables agent-forwarding */
511 enable_compat13();
512 }
513 break;
514 case 2:
515 if (options.protocol & SSH_PROTO_2) {
516 enable_compat20();
517 break;
518 }
519 /* FALLTHROUGH */
520 default:
521 mismatch = 1;
522 break;
523 }
524 chop(server_version_string);
525 debug("Local version string %.200s", server_version_string);
526
527 if (mismatch) {
528 s = "Protocol major versions differ.\n";
70791e56 529 (void) atomicio(vwrite, sock_out, s, strlen(s));
3c0ef626 530 close(sock_in);
531 close(sock_out);
70791e56 532 logit("Protocol major versions differ for %s: %.200s vs. %.200s",
3c0ef626 533 get_remote_ipaddr(),
534 server_version_string, client_version_string);
416fd2a8 535 cleanup_exit(255);
3c0ef626 536 }
537}
538
3c0ef626 539/* Destroy the host and server keys. They will no longer be needed. */
540void
541destroy_sensitive_data(void)
542{
543 int i;
544
545 if (sensitive_data.server_key) {
546 key_free(sensitive_data.server_key);
547 sensitive_data.server_key = NULL;
548 }
1e608e42 549 for (i = 0; i < options.num_host_key_files; i++) {
3c0ef626 550 if (sensitive_data.host_keys[i]) {
551 key_free(sensitive_data.host_keys[i]);
552 sensitive_data.host_keys[i] = NULL;
553 }
554 }
555 sensitive_data.ssh1_host_key = NULL;
556 memset(sensitive_data.ssh1_cookie, 0, SSH_SESSION_KEY_LENGTH);
557}
558
2980ea68 559/* Demote private to public keys for network child */
560void
561demote_sensitive_data(void)
562{
563 Key *tmp;
564 int i;
565
566 if (sensitive_data.server_key) {
567 tmp = key_demote(sensitive_data.server_key);
568 key_free(sensitive_data.server_key);
569 sensitive_data.server_key = tmp;
570 }
571
572 for (i = 0; i < options.num_host_key_files; i++) {
573 if (sensitive_data.host_keys[i]) {
574 tmp = key_demote(sensitive_data.host_keys[i]);
575 key_free(sensitive_data.host_keys[i]);
576 sensitive_data.host_keys[i] = tmp;
577 if (tmp->type == KEY_RSA1)
578 sensitive_data.ssh1_host_key = tmp;
579 }
580 }
581
582 /* We do not clear ssh1_host key and cookie. XXX - Okay Niels? */
583}
584
585static void
586privsep_preauth_child(void)
587{
e54b3d7c 588 u_int32_t rnd[256];
589 gid_t gidset[1];
ff2d7a98 590 int i;
2980ea68 591
592 /* Enable challenge-response authentication for privilege separation */
593 privsep_challenge_enable();
594
595 for (i = 0; i < 256; i++)
e54b3d7c 596 rnd[i] = arc4random();
597 RAND_seed(rnd, sizeof(rnd));
2980ea68 598
599 /* Demote the private keys to public keys. */
600 demote_sensitive_data();
601
e54b3d7c 602 /* Change our root directory */
2980ea68 603 if (chroot(_PATH_PRIVSEP_CHROOT_DIR) == -1)
604 fatal("chroot(\"%s\"): %s", _PATH_PRIVSEP_CHROOT_DIR,
605 strerror(errno));
606 if (chdir("/") == -1)
607 fatal("chdir(\"/\"): %s", strerror(errno));
608
609 /* Drop our privileges */
2e437378 610 debug3("privsep user:group %u:%u", (u_int)privsep_pw->pw_uid,
611 (u_int)privsep_pw->pw_gid);
ff2d7a98 612#if 0
2a304a95 613 /* XXX not ready, too heavy after chroot */
2e437378 614 do_setusercontext(privsep_pw);
ff2d7a98 615#else
2e437378 616 gidset[0] = privsep_pw->pw_gid;
ff2d7a98 617 if (setgroups(1, gidset) < 0)
618 fatal("setgroups: %.100s", strerror(errno));
2e437378 619 permanently_set_uid(privsep_pw);
ff2d7a98 620#endif
2980ea68 621}
622
416fd2a8 623static int
624privsep_preauth(Authctxt *authctxt)
2980ea68 625{
2980ea68 626 int status;
627 pid_t pid;
628
629 /* Set up unprivileged child process to deal with network data */
630 pmonitor = monitor_init();
631 /* Store a pointer to the kex for later rekeying */
632 pmonitor->m_pkex = &xxx_kex;
633
634 pid = fork();
635 if (pid == -1) {
636 fatal("fork of unprivileged child failed");
637 } else if (pid != 0) {
ff2d7a98 638 debug2("Network child is on pid %ld", (long)pid);
2980ea68 639
640 close(pmonitor->m_recvfd);
416fd2a8 641 pmonitor->m_pid = pid;
642 monitor_child_preauth(authctxt, pmonitor);
2980ea68 643 close(pmonitor->m_sendfd);
644
645 /* Sync memory */
646 monitor_sync(pmonitor);
647
648 /* Wait for the child's exit status */
649 while (waitpid(pid, &status, 0) < 0)
650 if (errno != EINTR)
651 break;
416fd2a8 652 return (1);
2980ea68 653 } else {
654 /* child */
655
656 close(pmonitor->m_sendfd);
657
658 /* Demote the child */
659 if (getuid() == 0 || geteuid() == 0)
660 privsep_preauth_child();
661 setproctitle("%s", "[net]");
662 }
416fd2a8 663 return (0);
2980ea68 664}
665
666static void
667privsep_postauth(Authctxt *authctxt)
668{
e54b3d7c 669#ifdef DISABLE_FD_PASSING
ff2d7a98 670 if (1) {
671#else
2980ea68 672 if (authctxt->pw->pw_uid == 0 || options.use_login) {
ff2d7a98 673#endif
2980ea68 674 /* File descriptor passing is broken or root login */
2980ea68 675 use_privsep = 0;
e00da40d 676 goto skip;
2980ea68 677 }
678
679 /* New socket pair */
680 monitor_reinit(pmonitor);
681
682 pmonitor->m_pid = fork();
683 if (pmonitor->m_pid == -1)
684 fatal("fork of unprivileged child failed");
685 else if (pmonitor->m_pid != 0) {
ff2d7a98 686 debug2("User child is on pid %ld", (long)pmonitor->m_pid);
2980ea68 687 close(pmonitor->m_recvfd);
1b56ff3d 688 buffer_clear(&loginmsg);
2980ea68 689 monitor_child_postauth(pmonitor);
690
691 /* NEVERREACHED */
692 exit(0);
693 }
694
695 close(pmonitor->m_sendfd);
696
697 /* Demote the private keys to public keys. */
698 demote_sensitive_data();
699
700 /* Drop privileges */
701 do_setusercontext(authctxt->pw);
702
e00da40d 703 skip:
2980ea68 704 /* It is safe now to apply the key state */
705 monitor_apply_keystate(pmonitor);
34fee935 706
707 /*
708 * Tell the packet layer that authentication was successful, since
709 * this information is not part of the key state.
710 */
711 packet_set_authenticated();
2980ea68 712}
713
3c0ef626 714static char *
715list_hostkey_types(void)
716{
1e608e42 717 Buffer b;
416fd2a8 718 const char *p;
719 char *ret;
3c0ef626 720 int i;
1e608e42 721
722 buffer_init(&b);
723 for (i = 0; i < options.num_host_key_files; i++) {
3c0ef626 724 Key *key = sensitive_data.host_keys[i];
725 if (key == NULL)
726 continue;
1e608e42 727 switch (key->type) {
3c0ef626 728 case KEY_RSA:
729 case KEY_DSA:
1e608e42 730 if (buffer_len(&b) > 0)
731 buffer_append(&b, ",", 1);
732 p = key_ssh_name(key);
733 buffer_append(&b, p, strlen(p));
3c0ef626 734 break;
735 }
736 }
1e608e42 737 buffer_append(&b, "\0", 1);
416fd2a8 738 ret = xstrdup(buffer_ptr(&b));
1e608e42 739 buffer_free(&b);
416fd2a8 740 debug("list_hostkey_types: %s", ret);
741 return ret;
3c0ef626 742}
743
2980ea68 744Key *
3c0ef626 745get_hostkey_by_type(int type)
746{
747 int i;
ff2d7a98 748
1e608e42 749 for (i = 0; i < options.num_host_key_files; i++) {
3c0ef626 750 Key *key = sensitive_data.host_keys[i];
751 if (key != NULL && key->type == type)
752 return key;
753 }
754 return NULL;
755}
756
2980ea68 757Key *
758get_hostkey_by_index(int ind)
759{
760 if (ind < 0 || ind >= options.num_host_key_files)
761 return (NULL);
762 return (sensitive_data.host_keys[ind]);
763}
764
765int
766get_hostkey_index(Key *key)
767{
768 int i;
ff2d7a98 769
2980ea68 770 for (i = 0; i < options.num_host_key_files; i++) {
771 if (key == sensitive_data.host_keys[i])
772 return (i);
773 }
774 return (-1);
775}
776
3c0ef626 777/*
778 * returns 1 if connection should be dropped, 0 otherwise.
779 * dropping starts at connection #max_startups_begin with a probability
780 * of (max_startups_rate/100). the probability increases linearly until
781 * all connections are dropped for startups > max_startups
782 */
783static int
784drop_connection(int startups)
785{
34fee935 786 int p, r;
3c0ef626 787
788 if (startups < options.max_startups_begin)
789 return 0;
790 if (startups >= options.max_startups)
791 return 1;
792 if (options.max_startups_rate == 100)
793 return 1;
794
795 p = 100 - options.max_startups_rate;
796 p *= startups - options.max_startups_begin;
34fee935 797 p /= options.max_startups - options.max_startups_begin;
3c0ef626 798 p += options.max_startups_rate;
34fee935 799 r = arc4random() % 100;
3c0ef626 800
34fee935 801 debug("drop_connection: p %d, r %d", p, r);
3c0ef626 802 return (r < p) ? 1 : 0;
803}
804
1e608e42 805static void
806usage(void)
807{
2a304a95 808 fprintf(stderr, "%s, %s\n",
34fee935 809 SSH_RELEASE, SSLeay_version(SSLEAY_VERSION));
2a304a95 810 fprintf(stderr,
811"usage: sshd [-46Ddeiqt] [-b bits] [-f config_file] [-g login_grace_time]\n"
812" [-h host_key_file] [-k key_gen_time] [-o option] [-p port] [-u len]\n"
813 );
1e608e42 814 exit(1);
815}
3c0ef626 816
1b56ff3d 817static void
818send_rexec_state(int fd, Buffer *conf)
819{
820 Buffer m;
821
822 debug3("%s: entering fd = %d config len %d", __func__, fd,
823 buffer_len(conf));
824
825 /*
826 * Protocol from reexec master to child:
827 * string configuration
828 * u_int ephemeral_key_follows
829 * bignum e (only if ephemeral_key_follows == 1)
830 * bignum n "
831 * bignum d "
832 * bignum iqmp "
833 * bignum p "
834 * bignum q "
e00da40d 835 * string rngseed (only if OpenSSL is not self-seeded)
1b56ff3d 836 */
837 buffer_init(&m);
838 buffer_put_cstring(&m, buffer_ptr(conf));
839
840 if (sensitive_data.server_key != NULL &&
841 sensitive_data.server_key->type == KEY_RSA1) {
842 buffer_put_int(&m, 1);
843 buffer_put_bignum(&m, sensitive_data.server_key->rsa->e);
844 buffer_put_bignum(&m, sensitive_data.server_key->rsa->n);
845 buffer_put_bignum(&m, sensitive_data.server_key->rsa->d);
846 buffer_put_bignum(&m, sensitive_data.server_key->rsa->iqmp);
847 buffer_put_bignum(&m, sensitive_data.server_key->rsa->p);
848 buffer_put_bignum(&m, sensitive_data.server_key->rsa->q);
849 } else
850 buffer_put_int(&m, 0);
851
e00da40d 852#ifndef OPENSSL_PRNG_ONLY
853 rexec_send_rng_seed(&m);
854#endif
855
1b56ff3d 856 if (ssh_msg_send(fd, 0, &m) == -1)
857 fatal("%s: ssh_msg_send failed", __func__);
858
859 buffer_free(&m);
860
861 debug3("%s: done", __func__);
862}
863
864static void
865recv_rexec_state(int fd, Buffer *conf)
866{
867 Buffer m;
868 char *cp;
869 u_int len;
870
871 debug3("%s: entering fd = %d", __func__, fd);
872
873 buffer_init(&m);
874
875 if (ssh_msg_recv(fd, &m) == -1)
876 fatal("%s: ssh_msg_recv failed", __func__);
877 if (buffer_get_char(&m) != 0)
878 fatal("%s: rexec version mismatch", __func__);
879
880 cp = buffer_get_string(&m, &len);
881 if (conf != NULL)
882 buffer_append(conf, cp, len + 1);
883 xfree(cp);
884
885 if (buffer_get_int(&m)) {
886 if (sensitive_data.server_key != NULL)
887 key_free(sensitive_data.server_key);
888 sensitive_data.server_key = key_new_private(KEY_RSA1);
889 buffer_get_bignum(&m, sensitive_data.server_key->rsa->e);
890 buffer_get_bignum(&m, sensitive_data.server_key->rsa->n);
891 buffer_get_bignum(&m, sensitive_data.server_key->rsa->d);
892 buffer_get_bignum(&m, sensitive_data.server_key->rsa->iqmp);
893 buffer_get_bignum(&m, sensitive_data.server_key->rsa->p);
894 buffer_get_bignum(&m, sensitive_data.server_key->rsa->q);
895 rsa_generate_additional_parameters(
896 sensitive_data.server_key->rsa);
897 }
e00da40d 898
899#ifndef OPENSSL_PRNG_ONLY
900 rexec_recv_rng_seed(&m);
901#endif
902
1b56ff3d 903 buffer_free(&m);
904
905 debug3("%s: done", __func__);
906}
907
2e437378 908/* Accept a connection from inetd */
909static void
910server_accept_inetd(int *sock_in, int *sock_out)
911{
912 int fd;
913
914 startup_pipe = -1;
915 if (rexeced_flag) {
916 close(REEXEC_CONFIG_PASS_FD);
917 *sock_in = *sock_out = dup(STDIN_FILENO);
918 if (!debug_flag) {
919 startup_pipe = dup(REEXEC_STARTUP_PIPE_FD);
920 close(REEXEC_STARTUP_PIPE_FD);
921 }
922 } else {
923 *sock_in = dup(STDIN_FILENO);
924 *sock_out = dup(STDOUT_FILENO);
925 }
926 /*
927 * We intentionally do not close the descriptors 0, 1, and 2
928 * as our code for setting the descriptors won't work if
929 * ttyfd happens to be one of those.
930 */
931 if ((fd = open(_PATH_DEVNULL, O_RDWR, 0)) != -1) {
932 dup2(fd, STDIN_FILENO);
933 dup2(fd, STDOUT_FILENO);
934 if (fd > STDOUT_FILENO)
935 close(fd);
936 }
937 debug("inetd sockets after dupping: %d, %d", *sock_in, *sock_out);
938}
939
940/*
941 * Listen for TCP connections
942 */
943static void
944server_listen(void)
945{
946 int ret, listen_sock, on = 1;
947 struct addrinfo *ai;
948 char ntop[NI_MAXHOST], strport[NI_MAXSERV];
949 int socksize;
950 int socksizelen = sizeof(int);
951
952 for (ai = options.listen_addrs; ai; ai = ai->ai_next) {
953 if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6)
954 continue;
955 if (num_listen_socks >= MAX_LISTEN_SOCKS)
956 fatal("Too many listen sockets. "
957 "Enlarge MAX_LISTEN_SOCKS");
958 if ((ret = getnameinfo(ai->ai_addr, ai->ai_addrlen,
959 ntop, sizeof(ntop), strport, sizeof(strport),
960 NI_NUMERICHOST|NI_NUMERICSERV)) != 0) {
961 error("getnameinfo failed: %.100s",
962 (ret != EAI_SYSTEM) ? gai_strerror(ret) :
963 strerror(errno));
964 continue;
965 }
966 /* Create socket for listening. */
967 listen_sock = socket(ai->ai_family, ai->ai_socktype,
968 ai->ai_protocol);
969 if (listen_sock < 0) {
970 /* kernel may not support ipv6 */
971 verbose("socket: %.100s", strerror(errno));
972 continue;
973 }
974 if (set_nonblock(listen_sock) == -1) {
975 close(listen_sock);
976 continue;
977 }
978 /*
979 * Set socket options.
980 * Allow local port reuse in TIME_WAIT.
981 */
982 if (setsockopt(listen_sock, SOL_SOCKET, SO_REUSEADDR,
983 &on, sizeof(on)) == -1)
984 error("setsockopt SO_REUSEADDR: %s", strerror(errno));
985
986 debug("Bind to port %s on %s.", strport, ntop);
987
988 getsockopt(listen_sock, SOL_SOCKET, SO_RCVBUF,
989 &socksize, &socksizelen);
990 debug("Server TCP RWIN socket size: %d", socksize);
991 debug("HPN Buffer Size: %d", options.hpn_buffer_size);
992
993 /* Bind the socket to the desired port. */
994 if (bind(listen_sock, ai->ai_addr, ai->ai_addrlen) < 0) {
995 error("Bind to port %s on %s failed: %.200s.",
996 strport, ntop, strerror(errno));
997 close(listen_sock);
998 continue;
999 }
1000 listen_socks[num_listen_socks] = listen_sock;
1001 num_listen_socks++;
1002
1003 /* Start listening on the port. */
1004 if (listen(listen_sock, SSH_LISTEN_BACKLOG) < 0)
1005 fatal("listen on [%s]:%s: %.100s",
1006 ntop, strport, strerror(errno));
1007 logit("Server listening on %s port %s.", ntop, strport);
1008 }
1009 freeaddrinfo(options.listen_addrs);
1010
1011 if (!num_listen_socks)
1012 fatal("Cannot bind any address.");
1013}
1014
1015/*
1016 * The main TCP accept loop. Note that, for the non-debug case, returns
1017 * from this function are in a forked subprocess.
1018 */
1019static void
1020server_accept_loop(int *sock_in, int *sock_out, int *newsock, int *config_s)
1021{
1022 fd_set *fdset;
1023 int i, j, ret, maxfd;
1024 int key_used = 0, startups = 0;
1025 int startup_p[2] = { -1 , -1 };
1026 struct sockaddr_storage from;
1027 socklen_t fromlen;
1028 pid_t pid;
1029
1030 /* setup fd set for accept */
1031 fdset = NULL;
1032 maxfd = 0;
1033 for (i = 0; i < num_listen_socks; i++)
1034 if (listen_socks[i] > maxfd)
1035 maxfd = listen_socks[i];
1036 /* pipes connected to unauthenticated childs */
1037 startup_pipes = xcalloc(options.max_startups, sizeof(int));
1038 for (i = 0; i < options.max_startups; i++)
1039 startup_pipes[i] = -1;
1040
1041 /*
1042 * Stay listening for connections until the system crashes or
1043 * the daemon is killed with a signal.
1044 */
1045 for (;;) {
1046 if (received_sighup)
1047 sighup_restart();
1048 if (fdset != NULL)
1049 xfree(fdset);
1050 fdset = (fd_set *)xcalloc(howmany(maxfd + 1, NFDBITS),
1051 sizeof(fd_mask));
1052
1053 for (i = 0; i < num_listen_socks; i++)
1054 FD_SET(listen_socks[i], fdset);
1055 for (i = 0; i < options.max_startups; i++)
1056 if (startup_pipes[i] != -1)
1057 FD_SET(startup_pipes[i], fdset);
1058
1059 /* Wait in select until there is a connection. */
1060 ret = select(maxfd+1, fdset, NULL, NULL, NULL);
1061 if (ret < 0 && errno != EINTR)
1062 error("select: %.100s", strerror(errno));
1063 if (received_sigterm) {
1064 logit("Received signal %d; terminating.",
1065 (int) received_sigterm);
1066 close_listen_socks();
1067 unlink(options.pid_file);
1068 exit(255);
1069 }
1070 if (key_used && key_do_regen) {
1071 generate_ephemeral_server_key();
1072 key_used = 0;
1073 key_do_regen = 0;
1074 }
1075 if (ret < 0)
1076 continue;
1077
1078 for (i = 0; i < options.max_startups; i++)
1079 if (startup_pipes[i] != -1 &&
1080 FD_ISSET(startup_pipes[i], fdset)) {
1081 /*
1082 * the read end of the pipe is ready
1083 * if the child has closed the pipe
1084 * after successful authentication
1085 * or if the child has died
1086 */
1087 close(startup_pipes[i]);
1088 startup_pipes[i] = -1;
1089 startups--;
1090 }
1091 for (i = 0; i < num_listen_socks; i++) {
1092 if (!FD_ISSET(listen_socks[i], fdset))
1093 continue;
1094 fromlen = sizeof(from);
1095 *newsock = accept(listen_socks[i],
1096 (struct sockaddr *)&from, &fromlen);
1097 if (*newsock < 0) {
1098 if (errno != EINTR && errno != EWOULDBLOCK)
1099 error("accept: %.100s", strerror(errno));
1100 continue;
1101 }
1102 if (unset_nonblock(*newsock) == -1) {
1103 close(*newsock);
1104 continue;
1105 }
1106 if (drop_connection(startups) == 1) {
1107 debug("drop connection #%d", startups);
1108 close(*newsock);
1109 continue;
1110 }
1111 if (pipe(startup_p) == -1) {
1112 close(*newsock);
1113 continue;
1114 }
1115
1116 if (rexec_flag && socketpair(AF_UNIX,
1117 SOCK_STREAM, 0, config_s) == -1) {
1118 error("reexec socketpair: %s",
1119 strerror(errno));
1120 close(*newsock);
1121 close(startup_p[0]);
1122 close(startup_p[1]);
1123 continue;
1124 }
1125
1126 for (j = 0; j < options.max_startups; j++)
1127 if (startup_pipes[j] == -1) {
1128 startup_pipes[j] = startup_p[0];
1129 if (maxfd < startup_p[0])
1130 maxfd = startup_p[0];
1131 startups++;
1132 break;
1133 }
1134
1135 /*
1136 * Got connection. Fork a child to handle it, unless
1137 * we are in debugging mode.
1138 */
1139 if (debug_flag) {
1140 /*
1141 * In debugging mode. Close the listening
1142 * socket, and start processing the
1143 * connection without forking.
1144 */
1145 debug("Server will not fork when running in debugging mode.");
1146 close_listen_socks();
1147 *sock_in = *newsock;
1148 *sock_out = *newsock;
1149 close(startup_p[0]);
1150 close(startup_p[1]);
1151 startup_pipe = -1;
1152 pid = getpid();
1153 if (rexec_flag) {
1154 send_rexec_state(config_s[0],
1155 &cfg);
1156 close(config_s[0]);
1157 }
1158 break;
1159 }
1160
1161 /*
1162 * Normal production daemon. Fork, and have
1163 * the child process the connection. The
1164 * parent continues listening.
1165 */
1166 platform_pre_fork();
1167 if ((pid = fork()) == 0) {
1168 /*
1169 * Child. Close the listening and
1170 * max_startup sockets. Start using
1171 * the accepted socket. Reinitialize
1172 * logging (since our pid has changed).
1173 * We break out of the loop to handle
1174 * the connection.
1175 */
1176 platform_post_fork_child();
1177 startup_pipe = startup_p[1];
1178 close_startup_pipes();
1179 close_listen_socks();
1180 *sock_in = *newsock;
1181 *sock_out = *newsock;
1182 log_init(__progname,
1183 options.log_level,
1184 options.log_facility,
1185 log_stderr);
1186 if (rexec_flag)
1187 close(config_s[0]);
1188 break;
1189 }
1190
1191 /* Parent. Stay in the loop. */
1192 platform_post_fork_parent(pid);
1193 if (pid < 0)
1194 error("fork: %.100s", strerror(errno));
1195 else
1196 debug("Forked child %ld.", (long)pid);
1197
1198 close(startup_p[1]);
1199
1200 if (rexec_flag) {
1201 send_rexec_state(config_s[0], &cfg);
1202 close(config_s[0]);
1203 close(config_s[1]);
1204 }
1205
1206 /*
1207 * Mark that the key has been used (it
1208 * was "given" to the child).
1209 */
1210 if ((options.protocol & SSH_PROTO_1) &&
1211 key_used == 0) {
1212 /* Schedule server key regeneration alarm. */
1213 signal(SIGALRM, key_regeneration_alarm);
1214 alarm(options.key_regeneration_time);
1215 key_used = 1;
1216 }
1217
1218 close(*newsock);
1219
1220 /*
1221 * Ensure that our random state differs
1222 * from that of the child
1223 */
1224 arc4random_stir();
1225 }
1226
1227 /* child process check (or debug mode) */
1228 if (num_listen_socks < 0)
1229 break;
1230 }
1231}
1232
1233
3c0ef626 1234/*
1235 * Main program for the daemon.
1236 */
1237int
1238main(int ac, char **av)
1239{
1240 extern char *optarg;
1241 extern int optind;
2e437378 1242 int opt, i, on = 1;
1b56ff3d 1243 int sock_in = -1, sock_out = -1, newsock = -1;
3c0ef626 1244 const char *remote_ip;
1245 int remote_port;
416fd2a8 1246 char *line;
2e437378 1247 int config_s[2] = { -1 , -1 };
3c0ef626 1248 Key *key;
416fd2a8 1249 Authctxt *authctxt;
3c0ef626 1250
2980ea68 1251#ifdef HAVE_SECUREWARE
1252 (void)set_auth_parameters(ac, av);
1253#endif
70791e56 1254 __progname = ssh_get_progname(av[0]);
ae43c103 1255 init_pathnames();
004706ea 1256 config_file_name = _PATH_SERVER_CONFIG_FILE;
3c0ef626 1257 init_rng();
1258
1c14df9e 1259 /* Save argv. Duplicate so setproctitle emulation doesn't clobber it */
3c0ef626 1260 saved_argc = ac;
1b56ff3d 1261 rexec_argc = ac;
2e437378 1262 saved_argv = xcalloc(ac + 1, sizeof(*saved_argv));
1c14df9e 1263 for (i = 0; i < ac; i++)
1264 saved_argv[i] = xstrdup(av[i]);
70791e56 1265 saved_argv[i] = NULL;
1c14df9e 1266
1267#ifndef HAVE_SETPROCTITLE
1268 /* Prepare for later setproctitle emulation */
1269 compat_init_setproctitle(ac, av);
70791e56 1270 av = saved_argv;
1c14df9e 1271#endif
3c0ef626 1272
2a304a95 1273 if (geteuid() == 0 && setgroups(0, NULL) == -1)
1274 debug("setgroups(): %.200s", strerror(errno));
1275
e00da40d 1276 /* Ensure that fds 0, 1 and 2 are open or directed to /dev/null */
1277 sanitise_stdfd();
1278
3c0ef626 1279 /* Initialize configuration options to their default values. */
1280 initialize_server_options(&options);
1281
1282 /* Parse command-line arguments. */
1b56ff3d 1283 while ((opt = getopt(ac, av, "f:p:b:k:h:g:u:o:dDeiqrtQR46")) != -1) {
3c0ef626 1284 switch (opt) {
1285 case '4':
34fee935 1286 options.address_family = AF_INET;
3c0ef626 1287 break;
1288 case '6':
34fee935 1289 options.address_family = AF_INET6;
3c0ef626 1290 break;
1291 case 'f':
1292 config_file_name = optarg;
1293 break;
1294 case 'd':
70791e56 1295 if (debug_flag == 0) {
3c0ef626 1296 debug_flag = 1;
1297 options.log_level = SYSLOG_LEVEL_DEBUG1;
70791e56 1298 } else if (options.log_level < SYSLOG_LEVEL_DEBUG3)
3c0ef626 1299 options.log_level++;
3c0ef626 1300 break;
1301 case 'D':
1302 no_daemon_flag = 1;
1303 break;
1304 case 'e':
1305 log_stderr = 1;
1306 break;
1307 case 'i':
1308 inetd_flag = 1;
1309 break;
1b56ff3d 1310 case 'r':
1311 rexec_flag = 0;
1312 break;
1313 case 'R':
1314 rexeced_flag = 1;
1315 inetd_flag = 1;
1316 break;
3c0ef626 1317 case 'Q':
1318 /* ignored */
1319 break;
1320 case 'q':
1321 options.log_level = SYSLOG_LEVEL_QUIET;
1322 break;
1323 case 'b':
2e437378 1324 options.server_key_bits = (int)strtonum(optarg, 256,
1325 32768, NULL);
3c0ef626 1326 break;
1327 case 'p':
1328 options.ports_from_cmdline = 1;
1329 if (options.num_ports >= MAX_PORTS) {
1330 fprintf(stderr, "too many ports.\n");
1331 exit(1);
1332 }
1333 options.ports[options.num_ports++] = a2port(optarg);
1334 if (options.ports[options.num_ports-1] == 0) {
1335 fprintf(stderr, "Bad port number.\n");
1336 exit(1);
1337 }
1338 break;
1339 case 'g':
1340 if ((options.login_grace_time = convtime(optarg)) == -1) {
1341 fprintf(stderr, "Invalid login grace time.\n");
1342 exit(1);
1343 }
1344 break;
1345 case 'k':
1346 if ((options.key_regeneration_time = convtime(optarg)) == -1) {
1347 fprintf(stderr, "Invalid key regeneration interval.\n");
1348 exit(1);
1349 }
1350 break;
1351 case 'h':
1352 if (options.num_host_key_files >= MAX_HOSTKEYS) {
1353 fprintf(stderr, "too many host keys.\n");
1354 exit(1);
1355 }
1356 options.host_key_files[options.num_host_key_files++] = optarg;
1357 break;
3c0ef626 1358 case 't':
1359 test_flag = 1;
1360 break;
1361 case 'u':
2e437378 1362 utmp_len = (u_int)strtonum(optarg, 0, MAXHOSTNAMELEN+1, NULL);
e54b3d7c 1363 if (utmp_len > MAXHOSTNAMELEN) {
1364 fprintf(stderr, "Invalid utmp length.\n");
1365 exit(1);
1366 }
3c0ef626 1367 break;
1e608e42 1368 case 'o':
416fd2a8 1369 line = xstrdup(optarg);
1370 if (process_server_config_line(&options, line,
2e437378 1371 "command-line", 0, NULL, NULL, NULL, NULL) != 0)
1e608e42 1372 exit(1);
416fd2a8 1373 xfree(line);
1e608e42 1374 break;
3c0ef626 1375 case '?':
1376 default:
1e608e42 1377 usage();
1378 break;
3c0ef626 1379 }
1380 }
1b56ff3d 1381 if (rexeced_flag || inetd_flag)
1382 rexec_flag = 0;
1383 if (rexec_flag && (av[0] == NULL || *av[0] != '/'))
1384 fatal("sshd re-exec requires execution with an absolute path");
1385 if (rexeced_flag)
1386 closefrom(REEXEC_MIN_FREE_FD);
1387 else
1388 closefrom(REEXEC_DEVCRYPTO_RESERVED_FD);
1389
3c0ef626 1390 SSLeay_add_all_algorithms();
3c0ef626 1391
1392 /*
1393 * Force logging to stderr until we have loaded the private host
1394 * key (unless started from inetd)
1395 */
1396 log_init(__progname,
1e608e42 1397 options.log_level == SYSLOG_LEVEL_NOT_SET ?
1398 SYSLOG_LEVEL_INFO : options.log_level,
1399 options.log_facility == SYSLOG_FACILITY_NOT_SET ?
1400 SYSLOG_FACILITY_AUTH : options.log_facility,
1c14df9e 1401 log_stderr || !inetd_flag);
3c0ef626 1402
2a304a95 1403 /*
1404 * Unset KRB5CCNAME, otherwise the user's session may inherit it from
1405 * root's environment
34fee935 1406 */
1407 if (getenv("KRB5CCNAME") != NULL)
1408 unsetenv("KRB5CCNAME");
1409
e54b3d7c 1410#ifdef _UNICOS
1b56ff3d 1411 /* Cray can define user privs drop all privs now!
3c0ef626 1412 * Not needed on PRIV_SU systems!
1413 */
1414 drop_cray_privs();
1415#endif
1416
1b56ff3d 1417 sensitive_data.server_key = NULL;
1418 sensitive_data.ssh1_host_key = NULL;
1419 sensitive_data.have_ssh1_key = 0;
1420 sensitive_data.have_ssh2_key = 0;
1421
1422 /* Fetch our configuration */
1423 buffer_init(&cfg);
1424 if (rexeced_flag)
1425 recv_rexec_state(REEXEC_CONFIG_PASS_FD, &cfg);
1426 else
1427 load_server_config(config_file_name, &cfg);
1428
2e437378 1429 parse_server_config(&options, rexeced_flag ? "rexec" : config_file_name,
1430 &cfg, NULL, NULL, NULL);
3c0ef626 1431
e00da40d 1432 seed_rng();
1433
3c0ef626 1434 /* Fill in default values for those options not explicitly set. */
1435 fill_default_server_options(&options);
1436
25d429a2 1437 /* challenge-response is implemented via keyboard interactive */
1438 if (options.challenge_response_authentication)
1439 options.kbd_interactive_authentication = 1;
1440
34fee935 1441 /* set default channel AF */
1442 channel_set_af(options.address_family);
1443
3c0ef626 1444 /* Check that there are no remaining arguments. */
1445 if (optind < ac) {
1446 fprintf(stderr, "Extra argument %s.\n", av[optind]);
1447 exit(1);
1448 }
1449
34fee935 1450 debug("sshd version %.100s", SSH_RELEASE);
3c0ef626 1451
2e437378 1452 /* Store privilege separation user for later use if required. */
1453 if ((privsep_pw = getpwnam(SSH_PRIVSEP_USER)) == NULL) {
1454 if (use_privsep || options.kerberos_authentication)
1455 fatal("Privilege separation user %s does not exist",
1456 SSH_PRIVSEP_USER);
1457 } else {
1458 memset(privsep_pw->pw_passwd, 0, strlen(privsep_pw->pw_passwd));
1459 privsep_pw = pwcopy(privsep_pw);
1460 xfree(privsep_pw->pw_passwd);
1461 privsep_pw->pw_passwd = xstrdup("*");
1462 }
1463 endpwent();
1464
3c0ef626 1465 /* load private host keys */
2e437378 1466 sensitive_data.host_keys = xcalloc(options.num_host_key_files,
e54b3d7c 1467 sizeof(Key *));
1e608e42 1468 for (i = 0; i < options.num_host_key_files; i++)
3c0ef626 1469 sensitive_data.host_keys[i] = NULL;
3c0ef626 1470
1e608e42 1471 for (i = 0; i < options.num_host_key_files; i++) {
3c0ef626 1472 key = key_load_private(options.host_key_files[i], "", NULL);
1473 sensitive_data.host_keys[i] = key;
1474 if (key == NULL) {
1475 error("Could not load host key: %s",
1476 options.host_key_files[i]);
1477 sensitive_data.host_keys[i] = NULL;
1478 continue;
1479 }
1e608e42 1480 switch (key->type) {
3c0ef626 1481 case KEY_RSA1:
1482 sensitive_data.ssh1_host_key = key;
1483 sensitive_data.have_ssh1_key = 1;
1484 break;
1485 case KEY_RSA:
1486 case KEY_DSA:
1487 sensitive_data.have_ssh2_key = 1;
1488 break;
1489 }
1490 debug("private host key: #%d type %d %s", i, key->type,
1491 key_type(key));
1492 }
1493 if ((options.protocol & SSH_PROTO_1) && !sensitive_data.have_ssh1_key) {
70791e56 1494 logit("Disabling protocol version 1. Could not load host key");
3c0ef626 1495 options.protocol &= ~SSH_PROTO_1;
1496 }
5598e598 1497#ifndef GSSAPI
1498 /* The GSSAPI key exchange can run without a host key */
3c0ef626 1499 if ((options.protocol & SSH_PROTO_2) && !sensitive_data.have_ssh2_key) {
70791e56 1500 logit("Disabling protocol version 2. Could not load host key");
3c0ef626 1501 options.protocol &= ~SSH_PROTO_2;
1502 }
5598e598 1503#endif
3c0ef626 1504 if (!(options.protocol & (SSH_PROTO_1|SSH_PROTO_2))) {
70791e56 1505 logit("sshd: no hostkeys available -- exiting.");
3c0ef626 1506 exit(1);
1507 }
1508
1509 /* Check certain values for sanity. */
1510 if (options.protocol & SSH_PROTO_1) {
1511 if (options.server_key_bits < 512 ||
1512 options.server_key_bits > 32768) {
1513 fprintf(stderr, "Bad server key size.\n");
1514 exit(1);
1515 }
1516 /*
1517 * Check that server and host key lengths differ sufficiently. This
1518 * is necessary to make double encryption work with rsaref. Oh, I
1519 * hate software patents. I dont know if this can go? Niels
1520 */
1521 if (options.server_key_bits >
ff2d7a98 1522 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) -
1523 SSH_KEY_BITS_RESERVED && options.server_key_bits <
1524 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) +
1525 SSH_KEY_BITS_RESERVED) {
3c0ef626 1526 options.server_key_bits =
ff2d7a98 1527 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) +
1528 SSH_KEY_BITS_RESERVED;
3c0ef626 1529 debug("Forcing server key to %d bits to make it differ from host key.",
1530 options.server_key_bits);
1531 }
1532 }
1533
ff2d7a98 1534 if (use_privsep) {
ff2d7a98 1535 struct stat st;
1536
ff2d7a98 1537 if ((stat(_PATH_PRIVSEP_CHROOT_DIR, &st) == -1) ||
1538 (S_ISDIR(st.st_mode) == 0))
1539 fatal("Missing privilege separation directory: %s",
1540 _PATH_PRIVSEP_CHROOT_DIR);
e54b3d7c 1541
1542#ifdef HAVE_CYGWIN
1543 if (check_ntsec(_PATH_PRIVSEP_CHROOT_DIR) &&
1544 (st.st_uid != getuid () ||
1545 (st.st_mode & (S_IWGRP|S_IWOTH)) != 0))
1546#else
ff2d7a98 1547 if (st.st_uid != 0 || (st.st_mode & (S_IWGRP|S_IWOTH)) != 0)
e54b3d7c 1548#endif
1c14df9e 1549 fatal("%s must be owned by root and not group or "
1550 "world-writable.", _PATH_PRIVSEP_CHROOT_DIR);
ff2d7a98 1551 }
1552
3c0ef626 1553 /* Configuration looks good, so exit if in test mode. */
1554 if (test_flag)
1555 exit(0);
1556
2980ea68 1557 /*
1558 * Clear out any supplemental groups we may have inherited. This
1559 * prevents inadvertent creation of files with bad modes (in the
416fd2a8 1560 * portable version at least, it's certainly possible for PAM
1561 * to create a file, and we can't control the code in every
2980ea68 1562 * module which might be used).
1563 */
1564 if (setgroups(0, NULL) < 0)
1565 debug("setgroups() failed: %.200s", strerror(errno));
3c0ef626 1566
1b56ff3d 1567 if (rexec_flag) {
2e437378 1568 rexec_argv = xcalloc(rexec_argc + 2, sizeof(char *));
1b56ff3d 1569 for (i = 0; i < rexec_argc; i++) {
1570 debug("rexec_argv[%d]='%s'", i, saved_argv[i]);
1571 rexec_argv[i] = saved_argv[i];
1572 }
1573 rexec_argv[rexec_argc] = "-R";
1574 rexec_argv[rexec_argc + 1] = NULL;
1575 }
1576
3c0ef626 1577 /* Initialize the log (it is reinitialized below in case we forked). */
34fee935 1578 if (debug_flag && (!inetd_flag || rexeced_flag))
3c0ef626 1579 log_stderr = 1;
1580 log_init(__progname, options.log_level, options.log_facility, log_stderr);
1581
1582 /*
1583 * If not in debugging mode, and not started from inetd, disconnect
1584 * from the controlling terminal, and fork. The original process
1585 * exits.
1586 */
1587 if (!(debug_flag || inetd_flag || no_daemon_flag)) {
1588#ifdef TIOCNOTTY
1589 int fd;
1590#endif /* TIOCNOTTY */
1591 if (daemon(0, 0) < 0)
1592 fatal("daemon() failed: %.200s", strerror(errno));
1593
1594 /* Disconnect from the controlling tty. */
1595#ifdef TIOCNOTTY
1596 fd = open(_PATH_TTY, O_RDWR | O_NOCTTY);
1597 if (fd >= 0) {
1598 (void) ioctl(fd, TIOCNOTTY, NULL);
1599 close(fd);
1600 }
1601#endif /* TIOCNOTTY */
1602 }
1603 /* Reinitialize the log (because of the fork above). */
1604 log_init(__progname, options.log_level, options.log_facility, log_stderr);
1605
1606 /* Initialize the random number generator. */
1607 arc4random_stir();
1608
1609 /* Chdir to the root directory so that the current disk can be
1610 unmounted if desired. */
1611 chdir("/");
1e608e42 1612
3c0ef626 1613 /* ignore SIGPIPE */
1614 signal(SIGPIPE, SIG_IGN);
1615
2e437378 1616 /* Get a connection, either from inetd or a listening TCP socket */
3c0ef626 1617 if (inetd_flag) {
2e437378 1618 server_accept_inetd(&sock_in, &sock_out);
1b56ff3d 1619
1b56ff3d 1620 if ((options.protocol & SSH_PROTO_1) &&
1621 sensitive_data.server_key == NULL)
3c0ef626 1622 generate_ephemeral_server_key();
1623 } else {
2e437378 1624 server_listen();
3c0ef626 1625
1626 if (options.protocol & SSH_PROTO_1)
1627 generate_ephemeral_server_key();
1628
3c0ef626 1629 signal(SIGHUP, sighup_handler);
2e437378 1630 signal(SIGCHLD, main_sigchld_handler);
3c0ef626 1631 signal(SIGTERM, sigterm_handler);
1632 signal(SIGQUIT, sigterm_handler);
1633
2e437378 1634 /*
1635 * Write out the pid file after the sigterm handler
1636 * is setup and the listen sockets are bound
1637 */
3c0ef626 1638 if (!debug_flag) {
2e437378 1639 FILE *f = fopen(options.pid_file, "w");
1640
70791e56 1641 if (f == NULL) {
1642 error("Couldn't create pid file \"%s\": %s",
1643 options.pid_file, strerror(errno));
1644 } else {
ff2d7a98 1645 fprintf(f, "%ld\n", (long) getpid());
3c0ef626 1646 fclose(f);
1647 }
1648 }
1649
2e437378 1650 /* Accept a connection and return in a forked child */
1651 server_accept_loop(&sock_in, &sock_out,
1652 &newsock, config_s);
3c0ef626 1653 }
1654
1655 /* This is the child processing a new connection. */
2a304a95 1656 setproctitle("%s", "[accepted]");
3c0ef626 1657
2980ea68 1658 /*
1659 * Create a new session and process group since the 4.4BSD
1660 * setlogin() affects the entire process group. We don't
1661 * want the child to be able to affect the parent.
1662 */
70791e56 1663#if !defined(SSHD_ACQUIRES_CTTY)
1c14df9e 1664 /*
70791e56 1665 * If setsid is called, on some platforms sshd will later acquire a
1666 * controlling terminal which will result in "could not set
1667 * controlling tty" errors.
1c14df9e 1668 */
ff2d7a98 1669 if (!debug_flag && !inetd_flag && setsid() < 0)
2980ea68 1670 error("setsid: %.100s", strerror(errno));
1671#endif
1672
1b56ff3d 1673 if (rexec_flag) {
1674 int fd;
1675
1676 debug("rexec start in %d out %d newsock %d pipe %d sock %d",
1677 sock_in, sock_out, newsock, startup_pipe, config_s[0]);
1678 dup2(newsock, STDIN_FILENO);
1679 dup2(STDIN_FILENO, STDOUT_FILENO);
1680 if (startup_pipe == -1)
1681 close(REEXEC_STARTUP_PIPE_FD);
1682 else
1683 dup2(startup_pipe, REEXEC_STARTUP_PIPE_FD);
1684
1685 dup2(config_s[1], REEXEC_CONFIG_PASS_FD);
1686 close(config_s[1]);
1687 if (startup_pipe != -1)
1688 close(startup_pipe);
1689
1690 execv(rexec_argv[0], rexec_argv);
1691
1692 /* Reexec has failed, fall back and continue */
1693 error("rexec of %s failed: %s", rexec_argv[0], strerror(errno));
1694 recv_rexec_state(REEXEC_CONFIG_PASS_FD, NULL);
1695 log_init(__progname, options.log_level,
1696 options.log_facility, log_stderr);
1697
1698 /* Clean up fds */
1699 startup_pipe = REEXEC_STARTUP_PIPE_FD;
1700 close(config_s[1]);
1701 close(REEXEC_CONFIG_PASS_FD);
1702 newsock = sock_out = sock_in = dup(STDIN_FILENO);
1703 if ((fd = open(_PATH_DEVNULL, O_RDWR, 0)) != -1) {
1704 dup2(fd, STDIN_FILENO);
1705 dup2(fd, STDOUT_FILENO);
1706 if (fd > STDERR_FILENO)
1707 close(fd);
1708 }
1709 debug("rexec cleanup in %d out %d newsock %d pipe %d sock %d",
1710 sock_in, sock_out, newsock, startup_pipe, config_s[0]);
1711 }
1712
3c0ef626 1713 /*
1714 * Disable the key regeneration alarm. We will not regenerate the
1715 * key since we are no longer in a position to give it to anyone. We
1716 * will not restart on SIGHUP since it no longer makes sense.
1717 */
1718 alarm(0);
1719 signal(SIGALRM, SIG_DFL);
1720 signal(SIGHUP, SIG_DFL);
1721 signal(SIGTERM, SIG_DFL);
1722 signal(SIGQUIT, SIG_DFL);
1723 signal(SIGCHLD, SIG_DFL);
1724 signal(SIGINT, SIG_DFL);
1725
3c0ef626 1726 /*
1727 * Register our connection. This turns encryption off because we do
1728 * not have a key.
1729 */
1730 packet_set_connection(sock_in, sock_out);
34fee935 1731 packet_set_server();
1732
1733 /* Set SO_KEEPALIVE if requested. */
1734 if (options.tcp_keep_alive && packet_connection_is_on_socket() &&
1735 setsockopt(sock_in, SOL_SOCKET, SO_KEEPALIVE, &on, sizeof(on)) < 0)
1736 error("setsockopt SO_KEEPALIVE: %.100s", strerror(errno));
3c0ef626 1737
34fee935 1738 if ((remote_port = get_remote_port()) < 0) {
1739 debug("get_remote_port failed");
1740 cleanup_exit(255);
1741 }
e00da40d 1742
1743 /*
1744 * We use get_canonical_hostname with usedns = 0 instead of
1745 * get_remote_ipaddr here so IP options will be checked.
1746 */
2e437378 1747 (void) get_canonical_hostname(0);
1748 /*
1749 * The rest of the code depends on the fact that
1750 * get_remote_ipaddr() caches the remote ip, even if
1751 * the socket goes away.
1752 */
1753 remote_ip = get_remote_ipaddr();
3c0ef626 1754
34fee935 1755#ifdef SSH_AUDIT_EVENTS
1756 audit_connection_from(remote_ip, remote_port);
1757#endif
3c0ef626 1758#ifdef LIBWRAP
1759 /* Check whether logins are denied from this host. */
1b56ff3d 1760 if (packet_connection_is_on_socket()) {
3c0ef626 1761 struct request_info req;
1762
1763 request_init(&req, RQ_DAEMON, __progname, RQ_FILE, sock_in, 0);
1764 fromhost(&req);
1765
1766 if (!hosts_access(&req)) {
1767 debug("Connection refused by tcp wrapper");
1768 refuse(&req);
1769 /* NOTREACHED */
1770 fatal("libwrap refuse returns");
1771 }
1772 }
1773#endif /* LIBWRAP */
1774
1775 /* Log the connection. */
1776 verbose("Connection from %.500s port %d", remote_ip, remote_port);
1777
34fee935 1778#ifdef USE_SECURITY_SESSION_API
1779 /*
1780 * Create a new security session for use by the new user login if
1781 * the current session is the root session or we are not launched
1782 * by inetd (eg: debugging mode or server mode). We do not
1783 * necessarily need to create a session if we are launched from
1784 * inetd because Panther xinetd will create a session for us.
1785 *
1786 * The only case where this logic will fail is if there is an
1787 * inetd running in a non-root session which is not creating
1788 * new sessions for us. Then all the users will end up in the
1789 * same session (bad).
1790 *
1791 * When the client exits, the session will be destroyed for us
1792 * automatically.
1793 *
1794 * We must create the session before any credentials are stored
1795 * (including AFS pags, which happens a few lines below).
1796 */
1797 {
1798 OSStatus err = 0;
1799 SecuritySessionId sid = 0;
1800 SessionAttributeBits sattrs = 0;
1801
1802 err = SessionGetInfo(callerSecuritySession, &sid, &sattrs);
1803 if (err)
1804 error("SessionGetInfo() failed with error %.8X",
1805 (unsigned) err);
1806 else
1807 debug("Current Session ID is %.8X / Session Attributes are %.8X",
1808 (unsigned) sid, (unsigned) sattrs);
1809
1810 if (inetd_flag && !(sattrs & sessionIsRoot))
1811 debug("Running in inetd mode in a non-root session... "
1812 "assuming inetd created the session for us.");
1813 else {
1814 debug("Creating new security session...");
1815 err = SessionCreate(0, sessionHasTTY | sessionIsRemote);
1816 if (err)
1817 error("SessionCreate() failed with error %.8X",
1818 (unsigned) err);
1819
1820 err = SessionGetInfo(callerSecuritySession, &sid,
1821 &sattrs);
1822 if (err)
1823 error("SessionGetInfo() failed with error %.8X",
1824 (unsigned) err);
1825 else
1826 debug("New Session ID is %.8X / Session Attributes are %.8X",
1827 (unsigned) sid, (unsigned) sattrs);
1828 }
1829 }
1830#endif
1831
3c0ef626 1832 /*
e00da40d 1833 * We don't want to listen forever unless the other side
3c0ef626 1834 * successfully authenticates itself. So we set up an alarm which is
1835 * cleared after successful authentication. A limit of zero
e00da40d 1836 * indicates no limit. Note that we don't set the alarm in debugging
3c0ef626 1837 * mode; it is just annoying to have the server exit just when you
1838 * are about to discover the bug.
1839 */
1840 signal(SIGALRM, grace_alarm_handler);
1841 if (!debug_flag)
1842 alarm(options.login_grace_time);
1843
1844 sshd_exchange_identification(sock_in, sock_out);
70791e56 1845#if defined(AFS_KRB5)
3c0ef626 1846 /* If machine has AFS, set process authentication group. */
1847 if (k_hasafs()) {
1848 k_setpag();
1849 k_unlog();
1850 }
f2fd21a2 1851#endif /* AFS || AFS_KRB5 */
3c0ef626 1852
1853 packet_set_nonblocking();
1854
416fd2a8 1855 /* allocate authentication context */
2e437378 1856 authctxt = xcalloc(1, sizeof(*authctxt));
416fd2a8 1857
34fee935 1858 authctxt->loginmsg = &loginmsg;
1859
416fd2a8 1860 /* XXX global for cleanup, access from other modules */
1861 the_authctxt = authctxt;
1862
34fee935 1863 /* prepare buffer to collect messages to display to user after login */
1864 buffer_init(&loginmsg);
1865
2980ea68 1866 if (use_privsep)
416fd2a8 1867 if (privsep_preauth(authctxt) == 1)
2980ea68 1868 goto authenticated;
1869
3c0ef626 1870 /* perform the key exchange */
1871 /* authenticate user and start session */
1872 if (compat20) {
1873 do_ssh2_kex();
416fd2a8 1874 do_authentication2(authctxt);
3c0ef626 1875 } else {
1876 do_ssh1_kex();
416fd2a8 1877 do_authentication(authctxt);
2980ea68 1878 }
1879 /*
1880 * If we use privilege separation, the unprivileged child transfers
1881 * the current keystate and exits
1882 */
1883 if (use_privsep) {
1884 mm_send_keystate(pmonitor);
1885 exit(0);
3c0ef626 1886 }
2980ea68 1887
1888 authenticated:
e00da40d 1889 /*
1890 * Cancel the alarm we set to limit the time taken for
1891 * authentication.
1892 */
1893 alarm(0);
1894 signal(SIGALRM, SIG_DFL);
2e437378 1895 authctxt->authenticated = 1;
e00da40d 1896 if (startup_pipe != -1) {
1897 close(startup_pipe);
1898 startup_pipe = -1;
1899 }
1900
34fee935 1901#ifdef SSH_AUDIT_EVENTS
1902 audit_event(SSH_AUTH_SUCCESS);
1903#endif
1904
2980ea68 1905 /*
1906 * In privilege separation, we fork another child and prepare
1907 * file descriptor passing.
1908 */
1909 if (use_privsep) {
1910 privsep_postauth(authctxt);
1911 /* the monitor process [priv] will not return */
1912 if (!compat20)
1913 destroy_sensitive_data();
1914 }
1915
416fd2a8 1916 /* Start session. */
2980ea68 1917 do_authenticated(authctxt);
1918
3c0ef626 1919 /* The connection has been terminated. */
1920 verbose("Closing connection to %.100s", remote_ip);
1921
1922#ifdef USE_PAM
70791e56 1923 if (options.use_pam)
1924 finish_pam();
3c0ef626 1925#endif /* USE_PAM */
1926
34fee935 1927#ifdef SSH_AUDIT_EVENTS
1928 PRIVSEP(audit_event(SSH_CONNECTION_CLOSE));
1929#endif
1930
3c0ef626 1931 packet_close();
2980ea68 1932
1933 if (use_privsep)
1934 mm_terminate();
1935
3c0ef626 1936 exit(0);
1937}
1938
2980ea68 1939/*
1940 * Decrypt session_key_int using our private server key and private host key
1941 * (key with larger modulus first).
1942 */
1943int
1944ssh1_session_key(BIGNUM *session_key_int)
1945{
1946 int rsafail = 0;
1947
2e437378 1948 if (BN_cmp(sensitive_data.server_key->rsa->n,
1949 sensitive_data.ssh1_host_key->rsa->n) > 0) {
2980ea68 1950 /* Server key has bigger modulus. */
1951 if (BN_num_bits(sensitive_data.server_key->rsa->n) <
2e437378 1952 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) +
1953 SSH_KEY_BITS_RESERVED) {
1954 fatal("do_connection: %s: "
1955 "server_key %d < host_key %d + SSH_KEY_BITS_RESERVED %d",
2980ea68 1956 get_remote_ipaddr(),
1957 BN_num_bits(sensitive_data.server_key->rsa->n),
1958 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n),
1959 SSH_KEY_BITS_RESERVED);
1960 }
1961 if (rsa_private_decrypt(session_key_int, session_key_int,
1962 sensitive_data.server_key->rsa) <= 0)
1963 rsafail++;
1964 if (rsa_private_decrypt(session_key_int, session_key_int,
1965 sensitive_data.ssh1_host_key->rsa) <= 0)
1966 rsafail++;
1967 } else {
1968 /* Host key has bigger modulus (or they are equal). */
1969 if (BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) <
2e437378 1970 BN_num_bits(sensitive_data.server_key->rsa->n) +
1971 SSH_KEY_BITS_RESERVED) {
1972 fatal("do_connection: %s: "
1973 "host_key %d < server_key %d + SSH_KEY_BITS_RESERVED %d",
2980ea68 1974 get_remote_ipaddr(),
1975 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n),
1976 BN_num_bits(sensitive_data.server_key->rsa->n),
1977 SSH_KEY_BITS_RESERVED);
1978 }
1979 if (rsa_private_decrypt(session_key_int, session_key_int,
1980 sensitive_data.ssh1_host_key->rsa) < 0)
1981 rsafail++;
1982 if (rsa_private_decrypt(session_key_int, session_key_int,
1983 sensitive_data.server_key->rsa) < 0)
1984 rsafail++;
1985 }
1986 return (rsafail);
1987}
3c0ef626 1988/*
1989 * SSH1 key exchange
1990 */
1991static void
1992do_ssh1_kex(void)
1993{
1994 int i, len;
3c0ef626 1995 int rsafail = 0;
1996 BIGNUM *session_key_int;
1997 u_char session_key[SSH_SESSION_KEY_LENGTH];
1998 u_char cookie[8];
1999 u_int cipher_type, auth_mask, protocol_flags;
e54b3d7c 2000 u_int32_t rnd = 0;
3c0ef626 2001
2002 /*
2003 * Generate check bytes that the client must send back in the user
2004 * packet in order for it to be accepted; this is used to defy ip
2005 * spoofing attacks. Note that this only works against somebody
2006 * doing IP spoofing from a remote machine; any machine on the local
2007 * network can still see outgoing packets and catch the random
2008 * cookie. This only affects rhosts authentication, and this is one
2009 * of the reasons why it is inherently insecure.
2010 */
2011 for (i = 0; i < 8; i++) {
2012 if (i % 4 == 0)
e54b3d7c 2013 rnd = arc4random();
2014 cookie[i] = rnd & 0xff;
2015 rnd >>= 8;
3c0ef626 2016 }
2017
2018 /*
2019 * Send our public key. We include in the packet 64 bits of random
2020 * data that must be matched in the reply in order to prevent IP
2021 * spoofing.
2022 */
2023 packet_start(SSH_SMSG_PUBLIC_KEY);
2024 for (i = 0; i < 8; i++)
2025 packet_put_char(cookie[i]);
2026
2027 /* Store our public server RSA key. */
2028 packet_put_int(BN_num_bits(sensitive_data.server_key->rsa->n));
2029 packet_put_bignum(sensitive_data.server_key->rsa->e);
2030 packet_put_bignum(sensitive_data.server_key->rsa->n);
2031
2032 /* Store our public host RSA key. */
2033 packet_put_int(BN_num_bits(sensitive_data.ssh1_host_key->rsa->n));
2034 packet_put_bignum(sensitive_data.ssh1_host_key->rsa->e);
2035 packet_put_bignum(sensitive_data.ssh1_host_key->rsa->n);
2036
2037 /* Put protocol flags. */
2038 packet_put_int(SSH_PROTOFLAG_HOST_IN_FWD_OPEN);
2039
2040 /* Declare which ciphers we support. */
2041 packet_put_int(cipher_mask_ssh1(0));
2042
2043 /* Declare supported authentication types. */
2044 auth_mask = 0;
3c0ef626 2045 if (options.rhosts_rsa_authentication)
2046 auth_mask |= 1 << SSH_AUTH_RHOSTS_RSA;
2047 if (options.rsa_authentication)
2048 auth_mask |= 1 << SSH_AUTH_RSA;
ff2d7a98 2049 if (options.challenge_response_authentication == 1)
2050 auth_mask |= 1 << SSH_AUTH_TIS;
3c0ef626 2051 if (options.password_authentication)
2052 auth_mask |= 1 << SSH_AUTH_PASSWORD;
2053 packet_put_int(auth_mask);
2054
2055 /* Send the packet and wait for it to be sent. */
2056 packet_send();
2057 packet_write_wait();
2058
2059 debug("Sent %d bit server key and %d bit host key.",
2060 BN_num_bits(sensitive_data.server_key->rsa->n),
2061 BN_num_bits(sensitive_data.ssh1_host_key->rsa->n));
2062
2063 /* Read clients reply (cipher type and session key). */
1e608e42 2064 packet_read_expect(SSH_CMSG_SESSION_KEY);
3c0ef626 2065
2066 /* Get cipher type and check whether we accept this. */
2067 cipher_type = packet_get_char();
2068
2069 if (!(cipher_mask_ssh1(0) & (1 << cipher_type)))
2070 packet_disconnect("Warning: client selects unsupported cipher.");
2071
2072 /* Get check bytes from the packet. These must match those we
2073 sent earlier with the public key packet. */
2074 for (i = 0; i < 8; i++)
2075 if (cookie[i] != packet_get_char())
2076 packet_disconnect("IP Spoofing check bytes do not match.");
2077
2078 debug("Encryption type: %.200s", cipher_name(cipher_type));
2079
2080 /* Get the encrypted integer. */
1e608e42 2081 if ((session_key_int = BN_new()) == NULL)
2082 fatal("do_ssh1_kex: BN_new failed");
2083 packet_get_bignum(session_key_int);
3c0ef626 2084
2085 protocol_flags = packet_get_int();
2086 packet_set_protocol_flags(protocol_flags);
1e608e42 2087 packet_check_eom();
3c0ef626 2088
2980ea68 2089 /* Decrypt session_key_int using host/server keys */
2090 rsafail = PRIVSEP(ssh1_session_key(session_key_int));
2091
3c0ef626 2092 /*
2093 * Extract session key from the decrypted integer. The key is in the
2094 * least significant 256 bits of the integer; the first byte of the
2095 * key is in the highest bits.
2096 */
2097 if (!rsafail) {
2e437378 2098 (void) BN_mask_bits(session_key_int, sizeof(session_key) * 8);
3c0ef626 2099 len = BN_num_bytes(session_key_int);
34fee935 2100 if (len < 0 || (u_int)len > sizeof(session_key)) {
2e437378 2101 error("do_ssh1_kex: bad session key len from %s: "
3c0ef626 2102 "session_key_int %d > sizeof(session_key) %lu",
2103 get_remote_ipaddr(), len, (u_long)sizeof(session_key));
2104 rsafail++;
2105 } else {
2106 memset(session_key, 0, sizeof(session_key));
2107 BN_bn2bin(session_key_int,
2108 session_key + sizeof(session_key) - len);
2109
1b56ff3d 2110 derive_ssh1_session_id(
3c0ef626 2111 sensitive_data.ssh1_host_key->rsa->n,
1b56ff3d 2112 sensitive_data.server_key->rsa->n,
2113 cookie, session_id);
3c0ef626 2114 /*
2115 * Xor the first 16 bytes of the session key with the
2116 * session id.
2117 */
2118 for (i = 0; i < 16; i++)
2119 session_key[i] ^= session_id[i];
2120 }
2121 }
2122 if (rsafail) {
2123 int bytes = BN_num_bytes(session_key_int);
1e608e42 2124 u_char *buf = xmalloc(bytes);
3c0ef626 2125 MD5_CTX md;
2126
70791e56 2127 logit("do_connection: generating a fake encryption key");
3c0ef626 2128 BN_bn2bin(session_key_int, buf);
2129 MD5_Init(&md);
2130 MD5_Update(&md, buf, bytes);
2131 MD5_Update(&md, sensitive_data.ssh1_cookie, SSH_SESSION_KEY_LENGTH);
2132 MD5_Final(session_key, &md);
2133 MD5_Init(&md);
2134 MD5_Update(&md, session_key, 16);
2135 MD5_Update(&md, buf, bytes);
2136 MD5_Update(&md, sensitive_data.ssh1_cookie, SSH_SESSION_KEY_LENGTH);
2137 MD5_Final(session_key + 16, &md);
2138 memset(buf, 0, bytes);
2139 xfree(buf);
2140 for (i = 0; i < 16; i++)
2141 session_id[i] = session_key[i] ^ session_key[i + 16];
2142 }
2980ea68 2143 /* Destroy the private and public keys. No longer. */
3c0ef626 2144 destroy_sensitive_data();
2145
2980ea68 2146 if (use_privsep)
2147 mm_ssh1_session_id(session_id);
2148
3c0ef626 2149 /* Destroy the decrypted integer. It is no longer needed. */
2150 BN_clear_free(session_key_int);
2151
2152 /* Set the session key. From this on all communications will be encrypted. */
2153 packet_set_encryption_key(session_key, SSH_SESSION_KEY_LENGTH, cipher_type);
2154
2155 /* Destroy our copy of the session key. It is no longer needed. */
2156 memset(session_key, 0, sizeof(session_key));
2157
2158 debug("Received session key; encryption turned on.");
2159
ff2d7a98 2160 /* Send an acknowledgment packet. Note that this packet is sent encrypted. */
3c0ef626 2161 packet_start(SSH_SMSG_SUCCESS);
2162 packet_send();
2163 packet_write_wait();
2164}
2165
2166/*
2167 * SSH2 key exchange: diffie-hellman-group1-sha1
2168 */
2169static void
2170do_ssh2_kex(void)
2171{
2172 Kex *kex;
2173
2174 if (options.ciphers != NULL) {
2175 myproposal[PROPOSAL_ENC_ALGS_CTOS] =
2176 myproposal[PROPOSAL_ENC_ALGS_STOC] = options.ciphers;
e00da40d 2177 } else if (options.none_enabled == 1) {
2178 debug ("WARNING: None cipher enabled");
2179 myproposal[PROPOSAL_ENC_ALGS_CTOS] =
2180 myproposal[PROPOSAL_ENC_ALGS_STOC] = KEX_ENCRYPT_INCLUDE_NONE;
3c0ef626 2181 }
2182 myproposal[PROPOSAL_ENC_ALGS_CTOS] =
2183 compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_CTOS]);
2184 myproposal[PROPOSAL_ENC_ALGS_STOC] =
2185 compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_STOC]);
2186
2187 if (options.macs != NULL) {
2188 myproposal[PROPOSAL_MAC_ALGS_CTOS] =
2189 myproposal[PROPOSAL_MAC_ALGS_STOC] = options.macs;
2190 }
34fee935 2191 if (options.compression == COMP_NONE) {
ff2d7a98 2192 myproposal[PROPOSAL_COMP_ALGS_CTOS] =
2193 myproposal[PROPOSAL_COMP_ALGS_STOC] = "none";
34fee935 2194 } else if (options.compression == COMP_DELAYED) {
2195 myproposal[PROPOSAL_COMP_ALGS_CTOS] =
2196 myproposal[PROPOSAL_COMP_ALGS_STOC] = "none,zlib@openssh.com";
ff2d7a98 2197 }
2e437378 2198
3c0ef626 2199 myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = list_hostkey_types();
2200
5598e598 2201#ifdef GSSAPI
34fee935 2202 {
5598e598 2203 char *orig;
2204 char *gss = NULL;
2205 char *newstr = NULL;
34fee935 2206 orig = myproposal[PROPOSAL_KEX_ALGS];
2207
2208 /*
2e437378 2209 * If we don't have a host key, then there's no point advertising
2210 * the other key exchange algorithms
34fee935 2211 */
2212
2213 if (strlen(myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS]) == 0)
2214 orig = NULL;
2215
2216 if (options.gss_keyex)
2217 gss = ssh_gssapi_server_mechanisms();
2218 else
2219 gss = NULL;
2220
2e437378 2221 if (gss && orig)
2222 xasprintf(&newstr, "%s,%s", gss, orig);
2223 else if (gss)
34fee935 2224 newstr = gss;
2e437378 2225 else if (orig)
34fee935 2226 newstr = orig;
2e437378 2227
34fee935 2228 /*
2229 * If we've got GSSAPI mechanisms, then we've got the 'null' host
2230 * key alg, but we can't tell people about it unless its the only
2231 * host key algorithm we support
2232 */
2233 if (gss && (strlen(myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS])) == 0)
2234 myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = "null";
2235
5598e598 2236 if (newstr)
34fee935 2237 myproposal[PROPOSAL_KEX_ALGS] = newstr;
5598e598 2238 else
2239 fatal("No supported key exchange algorithms");
34fee935 2240 }
5598e598 2241#endif
2242
2e437378 2243 /* start key exchange */
2244 /* start key exchange */
2245 kex = kex_setup(myproposal);
2246 kex->kex[KEX_DH_GRP1_SHA1] = kexdh_server;
1b56ff3d 2247 kex->kex[KEX_DH_GRP14_SHA1] = kexdh_server;
1c14df9e 2248 kex->kex[KEX_DH_GEX_SHA1] = kexgex_server;
2e437378 2249 kex->kex[KEX_DH_GEX_SHA256] = kexgex_server;
1c14df9e 2250#ifdef GSSAPI
2251 kex->kex[KEX_GSS_GRP1_SHA1] = kexgss_server;
2e437378 2252 kex->kex[KEX_GSS_GRP14_SHA1] = kexgss_server;
34fee935 2253 kex->kex[KEX_GSS_GEX_SHA1] = kexgss_server;
1c14df9e 2254#endif
2e437378 2255 kex->server = 1;
2256 kex->client_version_string=client_version_string;
2257 kex->server_version_string=server_version_string;
3c0ef626 2258 kex->load_host_key=&get_hostkey_by_type;
2980ea68 2259 kex->host_key_index=&get_hostkey_index;
3c0ef626 2260
2261 xxx_kex = kex;
2262
2263 dispatch_run(DISPATCH_BLOCK, &kex->done, kex);
2264
2265 session_id2 = kex->session_id;
2266 session_id2_len = kex->session_id_len;
2267
2268#ifdef DEBUG_KEXDH
2269 /* send 1st encrypted/maced/compressed message */
2270 packet_start(SSH2_MSG_IGNORE);
2271 packet_put_cstring("markus");
2272 packet_send();
2273 packet_write_wait();
2274#endif
2275 debug("KEX done");
2276}
416fd2a8 2277
2278/* server specific fatal cleanup */
2279void
2280cleanup_exit(int i)
2281{
2282 if (the_authctxt)
2283 do_cleanup(the_authctxt);
34fee935 2284#ifdef SSH_AUDIT_EVENTS
2285 /* done after do_cleanup so it can cancel the PAM auth 'thread' */
2286 if (!use_privsep || mm_is_monitor())
2287 audit_event(SSH_CONNECTION_ABANDON);
2288#endif
416fd2a8 2289 _exit(i);
2290}
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