xref: /dragonfly/crypto/openssh/monitor.c (revision 9f3fc534)
1 /* $OpenBSD: monitor.c,v 1.101 2009/02/12 03:26:22 djm Exp $ */
2 /*
3  * Copyright 2002 Niels Provos <provos@citi.umich.edu>
4  * Copyright 2002 Markus Friedl <markus@openbsd.org>
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26  */
27 
28 #include "includes.h"
29 
30 #include <sys/types.h>
31 #include <sys/param.h>
32 #include <sys/socket.h>
33 #include "openbsd-compat/sys-tree.h"
34 #include <sys/wait.h>
35 
36 #include <errno.h>
37 #include <fcntl.h>
38 #ifdef HAVE_PATHS_H
39 #include <paths.h>
40 #endif
41 #include <pwd.h>
42 #include <signal.h>
43 #include <stdarg.h>
44 #include <stdlib.h>
45 #include <string.h>
46 #include <unistd.h>
47 
48 #ifdef SKEY
49 #include <skey.h>
50 #endif
51 
52 #include <openssl/dh.h>
53 
54 #include "openbsd-compat/sys-queue.h"
55 #include "xmalloc.h"
56 #include "ssh.h"
57 #include "key.h"
58 #include "buffer.h"
59 #include "hostfile.h"
60 #include "auth.h"
61 #include "cipher.h"
62 #include "kex.h"
63 #include "dh.h"
64 #ifdef TARGET_OS_MAC	/* XXX Broken krb5 headers on Mac */
65 #undef TARGET_OS_MAC
66 #include "zlib.h"
67 #define TARGET_OS_MAC 1
68 #else
69 #include "zlib.h"
70 #endif
71 #include "packet.h"
72 #include "auth-options.h"
73 #include "sshpty.h"
74 #include "channels.h"
75 #include "session.h"
76 #include "sshlogin.h"
77 #include "canohost.h"
78 #include "log.h"
79 #include "servconf.h"
80 #include "monitor.h"
81 #include "monitor_mm.h"
82 #ifdef GSSAPI
83 #include "ssh-gss.h"
84 #endif
85 #include "monitor_wrap.h"
86 #include "monitor_fdpass.h"
87 #include "misc.h"
88 #include "compat.h"
89 #include "ssh2.h"
90 #include "jpake.h"
91 
92 #ifdef GSSAPI
93 static Gssctxt *gsscontext = NULL;
94 #endif
95 
96 /* Imports */
97 extern ServerOptions options;
98 extern u_int utmp_len;
99 extern Newkeys *current_keys[];
100 extern z_stream incoming_stream;
101 extern z_stream outgoing_stream;
102 extern u_char session_id[];
103 extern Buffer input, output;
104 extern Buffer auth_debug;
105 extern int auth_debug_init;
106 extern Buffer loginmsg;
107 
108 /* State exported from the child */
109 
110 struct {
111 	z_stream incoming;
112 	z_stream outgoing;
113 	u_char *keyin;
114 	u_int keyinlen;
115 	u_char *keyout;
116 	u_int keyoutlen;
117 	u_char *ivin;
118 	u_int ivinlen;
119 	u_char *ivout;
120 	u_int ivoutlen;
121 	u_char *ssh1key;
122 	u_int ssh1keylen;
123 	int ssh1cipher;
124 	int ssh1protoflags;
125 	u_char *input;
126 	u_int ilen;
127 	u_char *output;
128 	u_int olen;
129 } child_state;
130 
131 /* Functions on the monitor that answer unprivileged requests */
132 
133 int mm_answer_moduli(int, Buffer *);
134 int mm_answer_sign(int, Buffer *);
135 int mm_answer_pwnamallow(int, Buffer *);
136 int mm_answer_auth2_read_banner(int, Buffer *);
137 int mm_answer_authserv(int, Buffer *);
138 int mm_answer_authpassword(int, Buffer *);
139 int mm_answer_bsdauthquery(int, Buffer *);
140 int mm_answer_bsdauthrespond(int, Buffer *);
141 int mm_answer_skeyquery(int, Buffer *);
142 int mm_answer_skeyrespond(int, Buffer *);
143 int mm_answer_keyallowed(int, Buffer *);
144 int mm_answer_keyverify(int, Buffer *);
145 int mm_answer_pty(int, Buffer *);
146 int mm_answer_pty_cleanup(int, Buffer *);
147 int mm_answer_term(int, Buffer *);
148 int mm_answer_rsa_keyallowed(int, Buffer *);
149 int mm_answer_rsa_challenge(int, Buffer *);
150 int mm_answer_rsa_response(int, Buffer *);
151 int mm_answer_sesskey(int, Buffer *);
152 int mm_answer_sessid(int, Buffer *);
153 int mm_answer_jpake_get_pwdata(int, Buffer *);
154 int mm_answer_jpake_step1(int, Buffer *);
155 int mm_answer_jpake_step2(int, Buffer *);
156 int mm_answer_jpake_key_confirm(int, Buffer *);
157 int mm_answer_jpake_check_confirm(int, Buffer *);
158 
159 #ifdef USE_PAM
160 int mm_answer_pam_start(int, Buffer *);
161 int mm_answer_pam_account(int, Buffer *);
162 int mm_answer_pam_init_ctx(int, Buffer *);
163 int mm_answer_pam_query(int, Buffer *);
164 int mm_answer_pam_respond(int, Buffer *);
165 int mm_answer_pam_free_ctx(int, Buffer *);
166 #endif
167 
168 #ifdef GSSAPI
169 int mm_answer_gss_setup_ctx(int, Buffer *);
170 int mm_answer_gss_accept_ctx(int, Buffer *);
171 int mm_answer_gss_userok(int, Buffer *);
172 int mm_answer_gss_checkmic(int, Buffer *);
173 #endif
174 
175 #ifdef SSH_AUDIT_EVENTS
176 int mm_answer_audit_event(int, Buffer *);
177 int mm_answer_audit_command(int, Buffer *);
178 #endif
179 
180 static Authctxt *authctxt;
181 static BIGNUM *ssh1_challenge = NULL;	/* used for ssh1 rsa auth */
182 
183 /* local state for key verify */
184 static u_char *key_blob = NULL;
185 static u_int key_bloblen = 0;
186 static int key_blobtype = MM_NOKEY;
187 static char *hostbased_cuser = NULL;
188 static char *hostbased_chost = NULL;
189 static char *auth_method = "unknown";
190 static u_int session_id2_len = 0;
191 static u_char *session_id2 = NULL;
192 static pid_t monitor_child_pid;
193 
194 struct mon_table {
195 	enum monitor_reqtype type;
196 	int flags;
197 	int (*f)(int, Buffer *);
198 };
199 
200 #define MON_ISAUTH	0x0004	/* Required for Authentication */
201 #define MON_AUTHDECIDE	0x0008	/* Decides Authentication */
202 #define MON_ONCE	0x0010	/* Disable after calling */
203 #define MON_ALOG	0x0020	/* Log auth attempt without authenticating */
204 
205 #define MON_AUTH	(MON_ISAUTH|MON_AUTHDECIDE)
206 
207 #define MON_PERMIT	0x1000	/* Request is permitted */
208 
209 struct mon_table mon_dispatch_proto20[] = {
210     {MONITOR_REQ_MODULI, MON_ONCE, mm_answer_moduli},
211     {MONITOR_REQ_SIGN, MON_ONCE, mm_answer_sign},
212     {MONITOR_REQ_PWNAM, MON_ONCE, mm_answer_pwnamallow},
213     {MONITOR_REQ_AUTHSERV, MON_ONCE, mm_answer_authserv},
214     {MONITOR_REQ_AUTH2_READ_BANNER, MON_ONCE, mm_answer_auth2_read_banner},
215     {MONITOR_REQ_AUTHPASSWORD, MON_AUTH, mm_answer_authpassword},
216 #ifdef USE_PAM
217     {MONITOR_REQ_PAM_START, MON_ONCE, mm_answer_pam_start},
218     {MONITOR_REQ_PAM_ACCOUNT, 0, mm_answer_pam_account},
219     {MONITOR_REQ_PAM_INIT_CTX, MON_ISAUTH, mm_answer_pam_init_ctx},
220     {MONITOR_REQ_PAM_QUERY, MON_ISAUTH, mm_answer_pam_query},
221     {MONITOR_REQ_PAM_RESPOND, MON_ISAUTH, mm_answer_pam_respond},
222     {MONITOR_REQ_PAM_FREE_CTX, MON_ONCE|MON_AUTHDECIDE, mm_answer_pam_free_ctx},
223 #endif
224 #ifdef SSH_AUDIT_EVENTS
225     {MONITOR_REQ_AUDIT_EVENT, MON_PERMIT, mm_answer_audit_event},
226 #endif
227 #ifdef BSD_AUTH
228     {MONITOR_REQ_BSDAUTHQUERY, MON_ISAUTH, mm_answer_bsdauthquery},
229     {MONITOR_REQ_BSDAUTHRESPOND, MON_AUTH, mm_answer_bsdauthrespond},
230 #endif
231 #ifdef SKEY
232     {MONITOR_REQ_SKEYQUERY, MON_ISAUTH, mm_answer_skeyquery},
233     {MONITOR_REQ_SKEYRESPOND, MON_AUTH, mm_answer_skeyrespond},
234 #endif
235     {MONITOR_REQ_KEYALLOWED, MON_ISAUTH, mm_answer_keyallowed},
236     {MONITOR_REQ_KEYVERIFY, MON_AUTH, mm_answer_keyverify},
237 #ifdef GSSAPI
238     {MONITOR_REQ_GSSSETUP, MON_ISAUTH, mm_answer_gss_setup_ctx},
239     {MONITOR_REQ_GSSSTEP, MON_ISAUTH, mm_answer_gss_accept_ctx},
240     {MONITOR_REQ_GSSUSEROK, MON_AUTH, mm_answer_gss_userok},
241     {MONITOR_REQ_GSSCHECKMIC, MON_ISAUTH, mm_answer_gss_checkmic},
242 #endif
243 #ifdef JPAKE
244     {MONITOR_REQ_JPAKE_GET_PWDATA, MON_ONCE, mm_answer_jpake_get_pwdata},
245     {MONITOR_REQ_JPAKE_STEP1, MON_ISAUTH, mm_answer_jpake_step1},
246     {MONITOR_REQ_JPAKE_STEP2, MON_ONCE, mm_answer_jpake_step2},
247     {MONITOR_REQ_JPAKE_KEY_CONFIRM, MON_ONCE, mm_answer_jpake_key_confirm},
248     {MONITOR_REQ_JPAKE_CHECK_CONFIRM, MON_AUTH, mm_answer_jpake_check_confirm},
249 #endif
250     {0, 0, NULL}
251 };
252 
253 struct mon_table mon_dispatch_postauth20[] = {
254     {MONITOR_REQ_MODULI, 0, mm_answer_moduli},
255     {MONITOR_REQ_SIGN, 0, mm_answer_sign},
256     {MONITOR_REQ_PTY, 0, mm_answer_pty},
257     {MONITOR_REQ_PTYCLEANUP, 0, mm_answer_pty_cleanup},
258     {MONITOR_REQ_TERM, 0, mm_answer_term},
259 #ifdef SSH_AUDIT_EVENTS
260     {MONITOR_REQ_AUDIT_EVENT, MON_PERMIT, mm_answer_audit_event},
261     {MONITOR_REQ_AUDIT_COMMAND, MON_PERMIT, mm_answer_audit_command},
262 #endif
263     {0, 0, NULL}
264 };
265 
266 struct mon_table mon_dispatch_proto15[] = {
267     {MONITOR_REQ_PWNAM, MON_ONCE, mm_answer_pwnamallow},
268     {MONITOR_REQ_SESSKEY, MON_ONCE, mm_answer_sesskey},
269     {MONITOR_REQ_SESSID, MON_ONCE, mm_answer_sessid},
270     {MONITOR_REQ_AUTHPASSWORD, MON_AUTH, mm_answer_authpassword},
271     {MONITOR_REQ_RSAKEYALLOWED, MON_ISAUTH|MON_ALOG, mm_answer_rsa_keyallowed},
272     {MONITOR_REQ_KEYALLOWED, MON_ISAUTH|MON_ALOG, mm_answer_keyallowed},
273     {MONITOR_REQ_RSACHALLENGE, MON_ONCE, mm_answer_rsa_challenge},
274     {MONITOR_REQ_RSARESPONSE, MON_ONCE|MON_AUTHDECIDE, mm_answer_rsa_response},
275 #ifdef BSD_AUTH
276     {MONITOR_REQ_BSDAUTHQUERY, MON_ISAUTH, mm_answer_bsdauthquery},
277     {MONITOR_REQ_BSDAUTHRESPOND, MON_AUTH, mm_answer_bsdauthrespond},
278 #endif
279 #ifdef SKEY
280     {MONITOR_REQ_SKEYQUERY, MON_ISAUTH, mm_answer_skeyquery},
281     {MONITOR_REQ_SKEYRESPOND, MON_AUTH, mm_answer_skeyrespond},
282 #endif
283 #ifdef USE_PAM
284     {MONITOR_REQ_PAM_START, MON_ONCE, mm_answer_pam_start},
285     {MONITOR_REQ_PAM_ACCOUNT, 0, mm_answer_pam_account},
286     {MONITOR_REQ_PAM_INIT_CTX, MON_ISAUTH, mm_answer_pam_init_ctx},
287     {MONITOR_REQ_PAM_QUERY, MON_ISAUTH, mm_answer_pam_query},
288     {MONITOR_REQ_PAM_RESPOND, MON_ISAUTH, mm_answer_pam_respond},
289     {MONITOR_REQ_PAM_FREE_CTX, MON_ONCE|MON_AUTHDECIDE, mm_answer_pam_free_ctx},
290 #endif
291 #ifdef SSH_AUDIT_EVENTS
292     {MONITOR_REQ_AUDIT_EVENT, MON_PERMIT, mm_answer_audit_event},
293 #endif
294     {0, 0, NULL}
295 };
296 
297 struct mon_table mon_dispatch_postauth15[] = {
298     {MONITOR_REQ_PTY, MON_ONCE, mm_answer_pty},
299     {MONITOR_REQ_PTYCLEANUP, MON_ONCE, mm_answer_pty_cleanup},
300     {MONITOR_REQ_TERM, 0, mm_answer_term},
301 #ifdef SSH_AUDIT_EVENTS
302     {MONITOR_REQ_AUDIT_EVENT, MON_PERMIT, mm_answer_audit_event},
303     {MONITOR_REQ_AUDIT_COMMAND, MON_PERMIT|MON_ONCE, mm_answer_audit_command},
304 #endif
305     {0, 0, NULL}
306 };
307 
308 struct mon_table *mon_dispatch;
309 
310 /* Specifies if a certain message is allowed at the moment */
311 
312 static void
313 monitor_permit(struct mon_table *ent, enum monitor_reqtype type, int permit)
314 {
315 	while (ent->f != NULL) {
316 		if (ent->type == type) {
317 			ent->flags &= ~MON_PERMIT;
318 			ent->flags |= permit ? MON_PERMIT : 0;
319 			return;
320 		}
321 		ent++;
322 	}
323 }
324 
325 static void
326 monitor_permit_authentications(int permit)
327 {
328 	struct mon_table *ent = mon_dispatch;
329 
330 	while (ent->f != NULL) {
331 		if (ent->flags & MON_AUTH) {
332 			ent->flags &= ~MON_PERMIT;
333 			ent->flags |= permit ? MON_PERMIT : 0;
334 		}
335 		ent++;
336 	}
337 }
338 
339 void
340 monitor_child_preauth(Authctxt *_authctxt, struct monitor *pmonitor)
341 {
342 	struct mon_table *ent;
343 	int authenticated = 0;
344 
345 	debug3("preauth child monitor started");
346 
347 	authctxt = _authctxt;
348 	memset(authctxt, 0, sizeof(*authctxt));
349 
350 	authctxt->loginmsg = &loginmsg;
351 
352 	if (compat20) {
353 		mon_dispatch = mon_dispatch_proto20;
354 
355 		/* Permit requests for moduli and signatures */
356 		monitor_permit(mon_dispatch, MONITOR_REQ_MODULI, 1);
357 		monitor_permit(mon_dispatch, MONITOR_REQ_SIGN, 1);
358 	} else {
359 		mon_dispatch = mon_dispatch_proto15;
360 
361 		monitor_permit(mon_dispatch, MONITOR_REQ_SESSKEY, 1);
362 	}
363 
364 	/* The first few requests do not require asynchronous access */
365 	while (!authenticated) {
366 		auth_method = "unknown";
367 		authenticated = (monitor_read(pmonitor, mon_dispatch, &ent) == 1);
368 		if (authenticated) {
369 			if (!(ent->flags & MON_AUTHDECIDE))
370 				fatal("%s: unexpected authentication from %d",
371 				    __func__, ent->type);
372 			if (authctxt->pw->pw_uid == 0 &&
373 			    !auth_root_allowed(auth_method))
374 				authenticated = 0;
375 #ifdef USE_PAM
376 			/* PAM needs to perform account checks after auth */
377 			if (options.use_pam && authenticated) {
378 				Buffer m;
379 
380 				buffer_init(&m);
381 				mm_request_receive_expect(pmonitor->m_sendfd,
382 				    MONITOR_REQ_PAM_ACCOUNT, &m);
383 				authenticated = mm_answer_pam_account(pmonitor->m_sendfd, &m);
384 				buffer_free(&m);
385 			}
386 #endif
387 		}
388 
389 		if (ent->flags & (MON_AUTHDECIDE|MON_ALOG)) {
390 			auth_log(authctxt, authenticated, auth_method,
391 			    compat20 ? " ssh2" : "");
392 			if (!authenticated)
393 				authctxt->failures++;
394 		}
395 #ifdef JPAKE
396 		/* Cleanup JPAKE context after authentication */
397 		if (ent->flags & MON_AUTHDECIDE) {
398 			if (authctxt->jpake_ctx != NULL) {
399 				jpake_free(authctxt->jpake_ctx);
400 				authctxt->jpake_ctx = NULL;
401 			}
402 		}
403 #endif
404 	}
405 
406 	if (!authctxt->valid)
407 		fatal("%s: authenticated invalid user", __func__);
408 	if (strcmp(auth_method, "unknown") == 0)
409 		fatal("%s: authentication method name unknown", __func__);
410 
411 	debug("%s: %s has been authenticated by privileged process",
412 	    __func__, authctxt->user);
413 
414 	mm_get_keystate(pmonitor);
415 }
416 
417 static void
418 monitor_set_child_handler(pid_t pid)
419 {
420 	monitor_child_pid = pid;
421 }
422 
423 static void
424 monitor_child_handler(int sig)
425 {
426 	kill(monitor_child_pid, sig);
427 }
428 
429 void
430 monitor_child_postauth(struct monitor *pmonitor)
431 {
432 	monitor_set_child_handler(pmonitor->m_pid);
433 	signal(SIGHUP, &monitor_child_handler);
434 	signal(SIGTERM, &monitor_child_handler);
435 	signal(SIGINT, &monitor_child_handler);
436 
437 	if (compat20) {
438 		mon_dispatch = mon_dispatch_postauth20;
439 
440 		/* Permit requests for moduli and signatures */
441 		monitor_permit(mon_dispatch, MONITOR_REQ_MODULI, 1);
442 		monitor_permit(mon_dispatch, MONITOR_REQ_SIGN, 1);
443 		monitor_permit(mon_dispatch, MONITOR_REQ_TERM, 1);
444 	} else {
445 		mon_dispatch = mon_dispatch_postauth15;
446 		monitor_permit(mon_dispatch, MONITOR_REQ_TERM, 1);
447 	}
448 	if (!no_pty_flag) {
449 		monitor_permit(mon_dispatch, MONITOR_REQ_PTY, 1);
450 		monitor_permit(mon_dispatch, MONITOR_REQ_PTYCLEANUP, 1);
451 	}
452 
453 	for (;;)
454 		monitor_read(pmonitor, mon_dispatch, NULL);
455 }
456 
457 void
458 monitor_sync(struct monitor *pmonitor)
459 {
460 	if (options.compression) {
461 		/* The member allocation is not visible, so sync it */
462 		mm_share_sync(&pmonitor->m_zlib, &pmonitor->m_zback);
463 	}
464 }
465 
466 int
467 monitor_read(struct monitor *pmonitor, struct mon_table *ent,
468     struct mon_table **pent)
469 {
470 	Buffer m;
471 	int ret;
472 	u_char type;
473 
474 	buffer_init(&m);
475 
476 	mm_request_receive(pmonitor->m_sendfd, &m);
477 	type = buffer_get_char(&m);
478 
479 	debug3("%s: checking request %d", __func__, type);
480 
481 	while (ent->f != NULL) {
482 		if (ent->type == type)
483 			break;
484 		ent++;
485 	}
486 
487 	if (ent->f != NULL) {
488 		if (!(ent->flags & MON_PERMIT))
489 			fatal("%s: unpermitted request %d", __func__,
490 			    type);
491 		ret = (*ent->f)(pmonitor->m_sendfd, &m);
492 		buffer_free(&m);
493 
494 		/* The child may use this request only once, disable it */
495 		if (ent->flags & MON_ONCE) {
496 			debug2("%s: %d used once, disabling now", __func__,
497 			    type);
498 			ent->flags &= ~MON_PERMIT;
499 		}
500 
501 		if (pent != NULL)
502 			*pent = ent;
503 
504 		return ret;
505 	}
506 
507 	fatal("%s: unsupported request: %d", __func__, type);
508 
509 	/* NOTREACHED */
510 	return (-1);
511 }
512 
513 /* allowed key state */
514 static int
515 monitor_allowed_key(u_char *blob, u_int bloblen)
516 {
517 	/* make sure key is allowed */
518 	if (key_blob == NULL || key_bloblen != bloblen ||
519 	    memcmp(key_blob, blob, key_bloblen))
520 		return (0);
521 	return (1);
522 }
523 
524 static void
525 monitor_reset_key_state(void)
526 {
527 	/* reset state */
528 	if (key_blob != NULL)
529 		xfree(key_blob);
530 	if (hostbased_cuser != NULL)
531 		xfree(hostbased_cuser);
532 	if (hostbased_chost != NULL)
533 		xfree(hostbased_chost);
534 	key_blob = NULL;
535 	key_bloblen = 0;
536 	key_blobtype = MM_NOKEY;
537 	hostbased_cuser = NULL;
538 	hostbased_chost = NULL;
539 }
540 
541 int
542 mm_answer_moduli(int sock, Buffer *m)
543 {
544 	DH *dh;
545 	int min, want, max;
546 
547 	min = buffer_get_int(m);
548 	want = buffer_get_int(m);
549 	max = buffer_get_int(m);
550 
551 	debug3("%s: got parameters: %d %d %d",
552 	    __func__, min, want, max);
553 	/* We need to check here, too, in case the child got corrupted */
554 	if (max < min || want < min || max < want)
555 		fatal("%s: bad parameters: %d %d %d",
556 		    __func__, min, want, max);
557 
558 	buffer_clear(m);
559 
560 	dh = choose_dh(min, want, max);
561 	if (dh == NULL) {
562 		buffer_put_char(m, 0);
563 		return (0);
564 	} else {
565 		/* Send first bignum */
566 		buffer_put_char(m, 1);
567 		buffer_put_bignum2(m, dh->p);
568 		buffer_put_bignum2(m, dh->g);
569 
570 		DH_free(dh);
571 	}
572 	mm_request_send(sock, MONITOR_ANS_MODULI, m);
573 	return (0);
574 }
575 
576 int
577 mm_answer_sign(int sock, Buffer *m)
578 {
579 	Key *key;
580 	u_char *p;
581 	u_char *signature;
582 	u_int siglen, datlen;
583 	int keyid;
584 
585 	debug3("%s", __func__);
586 
587 	keyid = buffer_get_int(m);
588 	p = buffer_get_string(m, &datlen);
589 
590 	/*
591 	 * Supported KEX types will only return SHA1 (20 byte) or
592 	 * SHA256 (32 byte) hashes
593 	 */
594 	if (datlen != 20 && datlen != 32)
595 		fatal("%s: data length incorrect: %u", __func__, datlen);
596 
597 	/* save session id, it will be passed on the first call */
598 	if (session_id2_len == 0) {
599 		session_id2_len = datlen;
600 		session_id2 = xmalloc(session_id2_len);
601 		memcpy(session_id2, p, session_id2_len);
602 	}
603 
604 	if ((key = get_hostkey_by_index(keyid)) == NULL)
605 		fatal("%s: no hostkey from index %d", __func__, keyid);
606 	if (key_sign(key, &signature, &siglen, p, datlen) < 0)
607 		fatal("%s: key_sign failed", __func__);
608 
609 	debug3("%s: signature %p(%u)", __func__, signature, siglen);
610 
611 	buffer_clear(m);
612 	buffer_put_string(m, signature, siglen);
613 
614 	xfree(p);
615 	xfree(signature);
616 
617 	mm_request_send(sock, MONITOR_ANS_SIGN, m);
618 
619 	/* Turn on permissions for getpwnam */
620 	monitor_permit(mon_dispatch, MONITOR_REQ_PWNAM, 1);
621 
622 	return (0);
623 }
624 
625 /* Retrieves the password entry and also checks if the user is permitted */
626 
627 int
628 mm_answer_pwnamallow(int sock, Buffer *m)
629 {
630 	char *username;
631 	struct passwd *pwent;
632 	int allowed = 0;
633 
634 	debug3("%s", __func__);
635 
636 	if (authctxt->attempt++ != 0)
637 		fatal("%s: multiple attempts for getpwnam", __func__);
638 
639 	username = buffer_get_string(m, NULL);
640 
641 	pwent = getpwnamallow(username);
642 
643 	authctxt->user = xstrdup(username);
644 	setproctitle("%s [priv]", pwent ? username : "unknown");
645 	xfree(username);
646 
647 	buffer_clear(m);
648 
649 	if (pwent == NULL) {
650 		buffer_put_char(m, 0);
651 		authctxt->pw = fakepw();
652 		goto out;
653 	}
654 
655 	allowed = 1;
656 	authctxt->pw = pwent;
657 	authctxt->valid = 1;
658 
659 	buffer_put_char(m, 1);
660 	buffer_put_string(m, pwent, sizeof(struct passwd));
661 	buffer_put_cstring(m, pwent->pw_name);
662 	buffer_put_cstring(m, "*");
663 	buffer_put_cstring(m, pwent->pw_gecos);
664 #ifdef HAVE_PW_CLASS_IN_PASSWD
665 	buffer_put_cstring(m, pwent->pw_class);
666 #endif
667 	buffer_put_cstring(m, pwent->pw_dir);
668 	buffer_put_cstring(m, pwent->pw_shell);
669 
670  out:
671 	buffer_put_string(m, &options, sizeof(options));
672 	if (options.banner != NULL)
673 		buffer_put_cstring(m, options.banner);
674 	debug3("%s: sending MONITOR_ANS_PWNAM: %d", __func__, allowed);
675 	mm_request_send(sock, MONITOR_ANS_PWNAM, m);
676 
677 	/* For SSHv1 allow authentication now */
678 	if (!compat20)
679 		monitor_permit_authentications(1);
680 	else {
681 		/* Allow service/style information on the auth context */
682 		monitor_permit(mon_dispatch, MONITOR_REQ_AUTHSERV, 1);
683 		monitor_permit(mon_dispatch, MONITOR_REQ_AUTH2_READ_BANNER, 1);
684 	}
685 
686 #ifdef USE_PAM
687 	if (options.use_pam)
688 		monitor_permit(mon_dispatch, MONITOR_REQ_PAM_START, 1);
689 #endif
690 
691 	return (0);
692 }
693 
694 int mm_answer_auth2_read_banner(int sock, Buffer *m)
695 {
696 	char *banner;
697 
698 	buffer_clear(m);
699 	banner = auth2_read_banner();
700 	buffer_put_cstring(m, banner != NULL ? banner : "");
701 	mm_request_send(sock, MONITOR_ANS_AUTH2_READ_BANNER, m);
702 
703 	if (banner != NULL)
704 		xfree(banner);
705 
706 	return (0);
707 }
708 
709 int
710 mm_answer_authserv(int sock, Buffer *m)
711 {
712 	monitor_permit_authentications(1);
713 
714 	authctxt->service = buffer_get_string(m, NULL);
715 	authctxt->style = buffer_get_string(m, NULL);
716 	debug3("%s: service=%s, style=%s",
717 	    __func__, authctxt->service, authctxt->style);
718 
719 	if (strlen(authctxt->style) == 0) {
720 		xfree(authctxt->style);
721 		authctxt->style = NULL;
722 	}
723 
724 	return (0);
725 }
726 
727 int
728 mm_answer_authpassword(int sock, Buffer *m)
729 {
730 	static int call_count;
731 	char *passwd;
732 	int authenticated;
733 	u_int plen;
734 
735 	passwd = buffer_get_string(m, &plen);
736 	/* Only authenticate if the context is valid */
737 	authenticated = options.password_authentication &&
738 	    auth_password(authctxt, passwd);
739 	memset(passwd, 0, strlen(passwd));
740 	xfree(passwd);
741 
742 	buffer_clear(m);
743 	buffer_put_int(m, authenticated);
744 
745 	debug3("%s: sending result %d", __func__, authenticated);
746 	mm_request_send(sock, MONITOR_ANS_AUTHPASSWORD, m);
747 
748 	call_count++;
749 	if (plen == 0 && call_count == 1)
750 		auth_method = "none";
751 	else
752 		auth_method = "password";
753 
754 	/* Causes monitor loop to terminate if authenticated */
755 	return (authenticated);
756 }
757 
758 #ifdef BSD_AUTH
759 int
760 mm_answer_bsdauthquery(int sock, Buffer *m)
761 {
762 	char *name, *infotxt;
763 	u_int numprompts;
764 	u_int *echo_on;
765 	char **prompts;
766 	u_int success;
767 
768 	success = bsdauth_query(authctxt, &name, &infotxt, &numprompts,
769 	    &prompts, &echo_on) < 0 ? 0 : 1;
770 
771 	buffer_clear(m);
772 	buffer_put_int(m, success);
773 	if (success)
774 		buffer_put_cstring(m, prompts[0]);
775 
776 	debug3("%s: sending challenge success: %u", __func__, success);
777 	mm_request_send(sock, MONITOR_ANS_BSDAUTHQUERY, m);
778 
779 	if (success) {
780 		xfree(name);
781 		xfree(infotxt);
782 		xfree(prompts);
783 		xfree(echo_on);
784 	}
785 
786 	return (0);
787 }
788 
789 int
790 mm_answer_bsdauthrespond(int sock, Buffer *m)
791 {
792 	char *response;
793 	int authok;
794 
795 	if (authctxt->as == 0)
796 		fatal("%s: no bsd auth session", __func__);
797 
798 	response = buffer_get_string(m, NULL);
799 	authok = options.challenge_response_authentication &&
800 	    auth_userresponse(authctxt->as, response, 0);
801 	authctxt->as = NULL;
802 	debug3("%s: <%s> = <%d>", __func__, response, authok);
803 	xfree(response);
804 
805 	buffer_clear(m);
806 	buffer_put_int(m, authok);
807 
808 	debug3("%s: sending authenticated: %d", __func__, authok);
809 	mm_request_send(sock, MONITOR_ANS_BSDAUTHRESPOND, m);
810 
811 	auth_method = "bsdauth";
812 
813 	return (authok != 0);
814 }
815 #endif
816 
817 #ifdef SKEY
818 int
819 mm_answer_skeyquery(int sock, Buffer *m)
820 {
821 	struct skey skey;
822 	char challenge[1024];
823 	u_int success;
824 
825 	success = _compat_skeychallenge(&skey, authctxt->user, challenge,
826 	    sizeof(challenge)) < 0 ? 0 : 1;
827 
828 	buffer_clear(m);
829 	buffer_put_int(m, success);
830 	if (success)
831 		buffer_put_cstring(m, challenge);
832 
833 	debug3("%s: sending challenge success: %u", __func__, success);
834 	mm_request_send(sock, MONITOR_ANS_SKEYQUERY, m);
835 
836 	return (0);
837 }
838 
839 int
840 mm_answer_skeyrespond(int sock, Buffer *m)
841 {
842 	char *response;
843 	int authok;
844 
845 	response = buffer_get_string(m, NULL);
846 
847 	authok = (options.challenge_response_authentication &&
848 	    authctxt->valid &&
849 	    skey_haskey(authctxt->pw->pw_name) == 0 &&
850 	    skey_passcheck(authctxt->pw->pw_name, response) != -1);
851 
852 	xfree(response);
853 
854 	buffer_clear(m);
855 	buffer_put_int(m, authok);
856 
857 	debug3("%s: sending authenticated: %d", __func__, authok);
858 	mm_request_send(sock, MONITOR_ANS_SKEYRESPOND, m);
859 
860 	auth_method = "skey";
861 
862 	return (authok != 0);
863 }
864 #endif
865 
866 #ifdef USE_PAM
867 int
868 mm_answer_pam_start(int sock, Buffer *m)
869 {
870 	if (!options.use_pam)
871 		fatal("UsePAM not set, but ended up in %s anyway", __func__);
872 
873 	start_pam(authctxt);
874 
875 	monitor_permit(mon_dispatch, MONITOR_REQ_PAM_ACCOUNT, 1);
876 
877 	return (0);
878 }
879 
880 int
881 mm_answer_pam_account(int sock, Buffer *m)
882 {
883 	u_int ret;
884 
885 	if (!options.use_pam)
886 		fatal("UsePAM not set, but ended up in %s anyway", __func__);
887 
888 	ret = do_pam_account();
889 
890 	buffer_put_int(m, ret);
891 	buffer_put_string(m, buffer_ptr(&loginmsg), buffer_len(&loginmsg));
892 
893 	mm_request_send(sock, MONITOR_ANS_PAM_ACCOUNT, m);
894 
895 	return (ret);
896 }
897 
898 static void *sshpam_ctxt, *sshpam_authok;
899 extern KbdintDevice sshpam_device;
900 
901 int
902 mm_answer_pam_init_ctx(int sock, Buffer *m)
903 {
904 
905 	debug3("%s", __func__);
906 	authctxt->user = buffer_get_string(m, NULL);
907 	sshpam_ctxt = (sshpam_device.init_ctx)(authctxt);
908 	sshpam_authok = NULL;
909 	buffer_clear(m);
910 	if (sshpam_ctxt != NULL) {
911 		monitor_permit(mon_dispatch, MONITOR_REQ_PAM_FREE_CTX, 1);
912 		buffer_put_int(m, 1);
913 	} else {
914 		buffer_put_int(m, 0);
915 	}
916 	mm_request_send(sock, MONITOR_ANS_PAM_INIT_CTX, m);
917 	return (0);
918 }
919 
920 int
921 mm_answer_pam_query(int sock, Buffer *m)
922 {
923 	char *name, *info, **prompts;
924 	u_int i, num, *echo_on;
925 	int ret;
926 
927 	debug3("%s", __func__);
928 	sshpam_authok = NULL;
929 	ret = (sshpam_device.query)(sshpam_ctxt, &name, &info, &num, &prompts, &echo_on);
930 	if (ret == 0 && num == 0)
931 		sshpam_authok = sshpam_ctxt;
932 	if (num > 1 || name == NULL || info == NULL)
933 		ret = -1;
934 	buffer_clear(m);
935 	buffer_put_int(m, ret);
936 	buffer_put_cstring(m, name);
937 	xfree(name);
938 	buffer_put_cstring(m, info);
939 	xfree(info);
940 	buffer_put_int(m, num);
941 	for (i = 0; i < num; ++i) {
942 		buffer_put_cstring(m, prompts[i]);
943 		xfree(prompts[i]);
944 		buffer_put_int(m, echo_on[i]);
945 	}
946 	if (prompts != NULL)
947 		xfree(prompts);
948 	if (echo_on != NULL)
949 		xfree(echo_on);
950 	auth_method = "keyboard-interactive/pam";
951 	mm_request_send(sock, MONITOR_ANS_PAM_QUERY, m);
952 	return (0);
953 }
954 
955 int
956 mm_answer_pam_respond(int sock, Buffer *m)
957 {
958 	char **resp;
959 	u_int i, num;
960 	int ret;
961 
962 	debug3("%s", __func__);
963 	sshpam_authok = NULL;
964 	num = buffer_get_int(m);
965 	if (num > 0) {
966 		resp = xcalloc(num, sizeof(char *));
967 		for (i = 0; i < num; ++i)
968 			resp[i] = buffer_get_string(m, NULL);
969 		ret = (sshpam_device.respond)(sshpam_ctxt, num, resp);
970 		for (i = 0; i < num; ++i)
971 			xfree(resp[i]);
972 		xfree(resp);
973 	} else {
974 		ret = (sshpam_device.respond)(sshpam_ctxt, num, NULL);
975 	}
976 	buffer_clear(m);
977 	buffer_put_int(m, ret);
978 	mm_request_send(sock, MONITOR_ANS_PAM_RESPOND, m);
979 	auth_method = "keyboard-interactive/pam";
980 	if (ret == 0)
981 		sshpam_authok = sshpam_ctxt;
982 	return (0);
983 }
984 
985 int
986 mm_answer_pam_free_ctx(int sock, Buffer *m)
987 {
988 
989 	debug3("%s", __func__);
990 	(sshpam_device.free_ctx)(sshpam_ctxt);
991 	buffer_clear(m);
992 	mm_request_send(sock, MONITOR_ANS_PAM_FREE_CTX, m);
993 	auth_method = "keyboard-interactive/pam";
994 	return (sshpam_authok == sshpam_ctxt);
995 }
996 #endif
997 
998 static void
999 mm_append_debug(Buffer *m)
1000 {
1001 	if (auth_debug_init && buffer_len(&auth_debug)) {
1002 		debug3("%s: Appending debug messages for child", __func__);
1003 		buffer_append(m, buffer_ptr(&auth_debug),
1004 		    buffer_len(&auth_debug));
1005 		buffer_clear(&auth_debug);
1006 	}
1007 }
1008 
1009 int
1010 mm_answer_keyallowed(int sock, Buffer *m)
1011 {
1012 	Key *key;
1013 	char *cuser, *chost;
1014 	u_char *blob;
1015 	u_int bloblen;
1016 	enum mm_keytype type = 0;
1017 	int allowed = 0;
1018 
1019 	debug3("%s entering", __func__);
1020 
1021 	type = buffer_get_int(m);
1022 	cuser = buffer_get_string(m, NULL);
1023 	chost = buffer_get_string(m, NULL);
1024 	blob = buffer_get_string(m, &bloblen);
1025 
1026 	key = key_from_blob(blob, bloblen);
1027 
1028 	if ((compat20 && type == MM_RSAHOSTKEY) ||
1029 	    (!compat20 && type != MM_RSAHOSTKEY))
1030 		fatal("%s: key type and protocol mismatch", __func__);
1031 
1032 	debug3("%s: key_from_blob: %p", __func__, key);
1033 
1034 	if (key != NULL && authctxt->valid) {
1035 		switch (type) {
1036 		case MM_USERKEY:
1037 			allowed = options.pubkey_authentication &&
1038 			    user_key_allowed(authctxt->pw, key);
1039 			auth_method = "publickey";
1040 			if (options.pubkey_authentication && allowed != 1)
1041 				auth_clear_options();
1042 			break;
1043 		case MM_HOSTKEY:
1044 			allowed = options.hostbased_authentication &&
1045 			    hostbased_key_allowed(authctxt->pw,
1046 			    cuser, chost, key);
1047 			auth_method = "hostbased";
1048 			break;
1049 		case MM_RSAHOSTKEY:
1050 			key->type = KEY_RSA1; /* XXX */
1051 			allowed = options.rhosts_rsa_authentication &&
1052 			    auth_rhosts_rsa_key_allowed(authctxt->pw,
1053 			    cuser, chost, key);
1054 			if (options.rhosts_rsa_authentication && allowed != 1)
1055 				auth_clear_options();
1056 			auth_method = "rsa";
1057 			break;
1058 		default:
1059 			fatal("%s: unknown key type %d", __func__, type);
1060 			break;
1061 		}
1062 	}
1063 	if (key != NULL)
1064 		key_free(key);
1065 
1066 	/* clear temporarily storage (used by verify) */
1067 	monitor_reset_key_state();
1068 
1069 	if (allowed) {
1070 		/* Save temporarily for comparison in verify */
1071 		key_blob = blob;
1072 		key_bloblen = bloblen;
1073 		key_blobtype = type;
1074 		hostbased_cuser = cuser;
1075 		hostbased_chost = chost;
1076 	} else {
1077 		/* Log failed attempt */
1078 		auth_log(authctxt, 0, auth_method, compat20 ? " ssh2" : "");
1079 		xfree(blob);
1080 		xfree(cuser);
1081 		xfree(chost);
1082 	}
1083 
1084 	debug3("%s: key %p is %s",
1085 	    __func__, key, allowed ? "allowed" : "not allowed");
1086 
1087 	buffer_clear(m);
1088 	buffer_put_int(m, allowed);
1089 	buffer_put_int(m, forced_command != NULL);
1090 
1091 	mm_append_debug(m);
1092 
1093 	mm_request_send(sock, MONITOR_ANS_KEYALLOWED, m);
1094 
1095 	if (type == MM_RSAHOSTKEY)
1096 		monitor_permit(mon_dispatch, MONITOR_REQ_RSACHALLENGE, allowed);
1097 
1098 	return (0);
1099 }
1100 
1101 static int
1102 monitor_valid_userblob(u_char *data, u_int datalen)
1103 {
1104 	Buffer b;
1105 	char *p;
1106 	u_int len;
1107 	int fail = 0;
1108 
1109 	buffer_init(&b);
1110 	buffer_append(&b, data, datalen);
1111 
1112 	if (datafellows & SSH_OLD_SESSIONID) {
1113 		p = buffer_ptr(&b);
1114 		len = buffer_len(&b);
1115 		if ((session_id2 == NULL) ||
1116 		    (len < session_id2_len) ||
1117 		    (memcmp(p, session_id2, session_id2_len) != 0))
1118 			fail++;
1119 		buffer_consume(&b, session_id2_len);
1120 	} else {
1121 		p = buffer_get_string(&b, &len);
1122 		if ((session_id2 == NULL) ||
1123 		    (len != session_id2_len) ||
1124 		    (memcmp(p, session_id2, session_id2_len) != 0))
1125 			fail++;
1126 		xfree(p);
1127 	}
1128 	if (buffer_get_char(&b) != SSH2_MSG_USERAUTH_REQUEST)
1129 		fail++;
1130 	p = buffer_get_string(&b, NULL);
1131 	if (strcmp(authctxt->user, p) != 0) {
1132 		logit("wrong user name passed to monitor: expected %s != %.100s",
1133 		    authctxt->user, p);
1134 		fail++;
1135 	}
1136 	xfree(p);
1137 	buffer_skip_string(&b);
1138 	if (datafellows & SSH_BUG_PKAUTH) {
1139 		if (!buffer_get_char(&b))
1140 			fail++;
1141 	} else {
1142 		p = buffer_get_string(&b, NULL);
1143 		if (strcmp("publickey", p) != 0)
1144 			fail++;
1145 		xfree(p);
1146 		if (!buffer_get_char(&b))
1147 			fail++;
1148 		buffer_skip_string(&b);
1149 	}
1150 	buffer_skip_string(&b);
1151 	if (buffer_len(&b) != 0)
1152 		fail++;
1153 	buffer_free(&b);
1154 	return (fail == 0);
1155 }
1156 
1157 static int
1158 monitor_valid_hostbasedblob(u_char *data, u_int datalen, char *cuser,
1159     char *chost)
1160 {
1161 	Buffer b;
1162 	char *p;
1163 	u_int len;
1164 	int fail = 0;
1165 
1166 	buffer_init(&b);
1167 	buffer_append(&b, data, datalen);
1168 
1169 	p = buffer_get_string(&b, &len);
1170 	if ((session_id2 == NULL) ||
1171 	    (len != session_id2_len) ||
1172 	    (memcmp(p, session_id2, session_id2_len) != 0))
1173 		fail++;
1174 	xfree(p);
1175 
1176 	if (buffer_get_char(&b) != SSH2_MSG_USERAUTH_REQUEST)
1177 		fail++;
1178 	p = buffer_get_string(&b, NULL);
1179 	if (strcmp(authctxt->user, p) != 0) {
1180 		logit("wrong user name passed to monitor: expected %s != %.100s",
1181 		    authctxt->user, p);
1182 		fail++;
1183 	}
1184 	xfree(p);
1185 	buffer_skip_string(&b);	/* service */
1186 	p = buffer_get_string(&b, NULL);
1187 	if (strcmp(p, "hostbased") != 0)
1188 		fail++;
1189 	xfree(p);
1190 	buffer_skip_string(&b);	/* pkalg */
1191 	buffer_skip_string(&b);	/* pkblob */
1192 
1193 	/* verify client host, strip trailing dot if necessary */
1194 	p = buffer_get_string(&b, NULL);
1195 	if (((len = strlen(p)) > 0) && p[len - 1] == '.')
1196 		p[len - 1] = '\0';
1197 	if (strcmp(p, chost) != 0)
1198 		fail++;
1199 	xfree(p);
1200 
1201 	/* verify client user */
1202 	p = buffer_get_string(&b, NULL);
1203 	if (strcmp(p, cuser) != 0)
1204 		fail++;
1205 	xfree(p);
1206 
1207 	if (buffer_len(&b) != 0)
1208 		fail++;
1209 	buffer_free(&b);
1210 	return (fail == 0);
1211 }
1212 
1213 int
1214 mm_answer_keyverify(int sock, Buffer *m)
1215 {
1216 	Key *key;
1217 	u_char *signature, *data, *blob;
1218 	u_int signaturelen, datalen, bloblen;
1219 	int verified = 0;
1220 	int valid_data = 0;
1221 
1222 	blob = buffer_get_string(m, &bloblen);
1223 	signature = buffer_get_string(m, &signaturelen);
1224 	data = buffer_get_string(m, &datalen);
1225 
1226 	if (hostbased_cuser == NULL || hostbased_chost == NULL ||
1227 	  !monitor_allowed_key(blob, bloblen))
1228 		fatal("%s: bad key, not previously allowed", __func__);
1229 
1230 	key = key_from_blob(blob, bloblen);
1231 	if (key == NULL)
1232 		fatal("%s: bad public key blob", __func__);
1233 
1234 	switch (key_blobtype) {
1235 	case MM_USERKEY:
1236 		valid_data = monitor_valid_userblob(data, datalen);
1237 		break;
1238 	case MM_HOSTKEY:
1239 		valid_data = monitor_valid_hostbasedblob(data, datalen,
1240 		    hostbased_cuser, hostbased_chost);
1241 		break;
1242 	default:
1243 		valid_data = 0;
1244 		break;
1245 	}
1246 	if (!valid_data)
1247 		fatal("%s: bad signature data blob", __func__);
1248 
1249 	verified = key_verify(key, signature, signaturelen, data, datalen);
1250 	debug3("%s: key %p signature %s",
1251 	    __func__, key, (verified == 1) ? "verified" : "unverified");
1252 
1253 	key_free(key);
1254 	xfree(blob);
1255 	xfree(signature);
1256 	xfree(data);
1257 
1258 	auth_method = key_blobtype == MM_USERKEY ? "publickey" : "hostbased";
1259 
1260 	monitor_reset_key_state();
1261 
1262 	buffer_clear(m);
1263 	buffer_put_int(m, verified);
1264 	mm_request_send(sock, MONITOR_ANS_KEYVERIFY, m);
1265 
1266 	return (verified == 1);
1267 }
1268 
1269 static void
1270 mm_record_login(Session *s, struct passwd *pw)
1271 {
1272 	socklen_t fromlen;
1273 	struct sockaddr_storage from;
1274 
1275 	/*
1276 	 * Get IP address of client. If the connection is not a socket, let
1277 	 * the address be 0.0.0.0.
1278 	 */
1279 	memset(&from, 0, sizeof(from));
1280 	fromlen = sizeof(from);
1281 	if (packet_connection_is_on_socket()) {
1282 		if (getpeername(packet_get_connection_in(),
1283 		    (struct sockaddr *)&from, &fromlen) < 0) {
1284 			debug("getpeername: %.100s", strerror(errno));
1285 			cleanup_exit(255);
1286 		}
1287 	}
1288 	/* Record that there was a login on that tty from the remote host. */
1289 	record_login(s->pid, s->tty, pw->pw_name, pw->pw_uid,
1290 	    get_remote_name_or_ip(utmp_len, options.use_dns),
1291 	    (struct sockaddr *)&from, fromlen);
1292 }
1293 
1294 static void
1295 mm_session_close(Session *s)
1296 {
1297 	debug3("%s: session %d pid %ld", __func__, s->self, (long)s->pid);
1298 	if (s->ttyfd != -1) {
1299 		debug3("%s: tty %s ptyfd %d", __func__, s->tty, s->ptyfd);
1300 		session_pty_cleanup2(s);
1301 	}
1302 	session_unused(s->self);
1303 }
1304 
1305 int
1306 mm_answer_pty(int sock, Buffer *m)
1307 {
1308 	extern struct monitor *pmonitor;
1309 	Session *s;
1310 	int res, fd0;
1311 
1312 	debug3("%s entering", __func__);
1313 
1314 	buffer_clear(m);
1315 	s = session_new();
1316 	if (s == NULL)
1317 		goto error;
1318 	s->authctxt = authctxt;
1319 	s->pw = authctxt->pw;
1320 	s->pid = pmonitor->m_pid;
1321 	res = pty_allocate(&s->ptyfd, &s->ttyfd, s->tty, sizeof(s->tty));
1322 	if (res == 0)
1323 		goto error;
1324 	pty_setowner(authctxt->pw, s->tty);
1325 
1326 	buffer_put_int(m, 1);
1327 	buffer_put_cstring(m, s->tty);
1328 
1329 	/* We need to trick ttyslot */
1330 	if (dup2(s->ttyfd, 0) == -1)
1331 		fatal("%s: dup2", __func__);
1332 
1333 	mm_record_login(s, authctxt->pw);
1334 
1335 	/* Now we can close the file descriptor again */
1336 	close(0);
1337 
1338 	/* send messages generated by record_login */
1339 	buffer_put_string(m, buffer_ptr(&loginmsg), buffer_len(&loginmsg));
1340 	buffer_clear(&loginmsg);
1341 
1342 	mm_request_send(sock, MONITOR_ANS_PTY, m);
1343 
1344 	if (mm_send_fd(sock, s->ptyfd) == -1 ||
1345 	    mm_send_fd(sock, s->ttyfd) == -1)
1346 		fatal("%s: send fds failed", __func__);
1347 
1348 	/* make sure nothing uses fd 0 */
1349 	if ((fd0 = open(_PATH_DEVNULL, O_RDONLY)) < 0)
1350 		fatal("%s: open(/dev/null): %s", __func__, strerror(errno));
1351 	if (fd0 != 0)
1352 		error("%s: fd0 %d != 0", __func__, fd0);
1353 
1354 	/* slave is not needed */
1355 	close(s->ttyfd);
1356 	s->ttyfd = s->ptyfd;
1357 	/* no need to dup() because nobody closes ptyfd */
1358 	s->ptymaster = s->ptyfd;
1359 
1360 	debug3("%s: tty %s ptyfd %d", __func__, s->tty, s->ttyfd);
1361 
1362 	return (0);
1363 
1364  error:
1365 	if (s != NULL)
1366 		mm_session_close(s);
1367 	buffer_put_int(m, 0);
1368 	mm_request_send(sock, MONITOR_ANS_PTY, m);
1369 	return (0);
1370 }
1371 
1372 int
1373 mm_answer_pty_cleanup(int sock, Buffer *m)
1374 {
1375 	Session *s;
1376 	char *tty;
1377 
1378 	debug3("%s entering", __func__);
1379 
1380 	tty = buffer_get_string(m, NULL);
1381 	if ((s = session_by_tty(tty)) != NULL)
1382 		mm_session_close(s);
1383 	buffer_clear(m);
1384 	xfree(tty);
1385 	return (0);
1386 }
1387 
1388 int
1389 mm_answer_sesskey(int sock, Buffer *m)
1390 {
1391 	BIGNUM *p;
1392 	int rsafail;
1393 
1394 	/* Turn off permissions */
1395 	monitor_permit(mon_dispatch, MONITOR_REQ_SESSKEY, 0);
1396 
1397 	if ((p = BN_new()) == NULL)
1398 		fatal("%s: BN_new", __func__);
1399 
1400 	buffer_get_bignum2(m, p);
1401 
1402 	rsafail = ssh1_session_key(p);
1403 
1404 	buffer_clear(m);
1405 	buffer_put_int(m, rsafail);
1406 	buffer_put_bignum2(m, p);
1407 
1408 	BN_clear_free(p);
1409 
1410 	mm_request_send(sock, MONITOR_ANS_SESSKEY, m);
1411 
1412 	/* Turn on permissions for sessid passing */
1413 	monitor_permit(mon_dispatch, MONITOR_REQ_SESSID, 1);
1414 
1415 	return (0);
1416 }
1417 
1418 int
1419 mm_answer_sessid(int sock, Buffer *m)
1420 {
1421 	int i;
1422 
1423 	debug3("%s entering", __func__);
1424 
1425 	if (buffer_len(m) != 16)
1426 		fatal("%s: bad ssh1 session id", __func__);
1427 	for (i = 0; i < 16; i++)
1428 		session_id[i] = buffer_get_char(m);
1429 
1430 	/* Turn on permissions for getpwnam */
1431 	monitor_permit(mon_dispatch, MONITOR_REQ_PWNAM, 1);
1432 
1433 	return (0);
1434 }
1435 
1436 int
1437 mm_answer_rsa_keyallowed(int sock, Buffer *m)
1438 {
1439 	BIGNUM *client_n;
1440 	Key *key = NULL;
1441 	u_char *blob = NULL;
1442 	u_int blen = 0;
1443 	int allowed = 0;
1444 
1445 	debug3("%s entering", __func__);
1446 
1447 	auth_method = "rsa";
1448 	if (options.rsa_authentication && authctxt->valid) {
1449 		if ((client_n = BN_new()) == NULL)
1450 			fatal("%s: BN_new", __func__);
1451 		buffer_get_bignum2(m, client_n);
1452 		allowed = auth_rsa_key_allowed(authctxt->pw, client_n, &key);
1453 		BN_clear_free(client_n);
1454 	}
1455 	buffer_clear(m);
1456 	buffer_put_int(m, allowed);
1457 	buffer_put_int(m, forced_command != NULL);
1458 
1459 	/* clear temporarily storage (used by generate challenge) */
1460 	monitor_reset_key_state();
1461 
1462 	if (allowed && key != NULL) {
1463 		key->type = KEY_RSA;	/* cheat for key_to_blob */
1464 		if (key_to_blob(key, &blob, &blen) == 0)
1465 			fatal("%s: key_to_blob failed", __func__);
1466 		buffer_put_string(m, blob, blen);
1467 
1468 		/* Save temporarily for comparison in verify */
1469 		key_blob = blob;
1470 		key_bloblen = blen;
1471 		key_blobtype = MM_RSAUSERKEY;
1472 	}
1473 	if (key != NULL)
1474 		key_free(key);
1475 
1476 	mm_append_debug(m);
1477 
1478 	mm_request_send(sock, MONITOR_ANS_RSAKEYALLOWED, m);
1479 
1480 	monitor_permit(mon_dispatch, MONITOR_REQ_RSACHALLENGE, allowed);
1481 	monitor_permit(mon_dispatch, MONITOR_REQ_RSARESPONSE, 0);
1482 	return (0);
1483 }
1484 
1485 int
1486 mm_answer_rsa_challenge(int sock, Buffer *m)
1487 {
1488 	Key *key = NULL;
1489 	u_char *blob;
1490 	u_int blen;
1491 
1492 	debug3("%s entering", __func__);
1493 
1494 	if (!authctxt->valid)
1495 		fatal("%s: authctxt not valid", __func__);
1496 	blob = buffer_get_string(m, &blen);
1497 	if (!monitor_allowed_key(blob, blen))
1498 		fatal("%s: bad key, not previously allowed", __func__);
1499 	if (key_blobtype != MM_RSAUSERKEY && key_blobtype != MM_RSAHOSTKEY)
1500 		fatal("%s: key type mismatch", __func__);
1501 	if ((key = key_from_blob(blob, blen)) == NULL)
1502 		fatal("%s: received bad key", __func__);
1503 	if (key->type != KEY_RSA)
1504 		fatal("%s: received bad key type %d", __func__, key->type);
1505 	key->type = KEY_RSA1;
1506 	if (ssh1_challenge)
1507 		BN_clear_free(ssh1_challenge);
1508 	ssh1_challenge = auth_rsa_generate_challenge(key);
1509 
1510 	buffer_clear(m);
1511 	buffer_put_bignum2(m, ssh1_challenge);
1512 
1513 	debug3("%s sending reply", __func__);
1514 	mm_request_send(sock, MONITOR_ANS_RSACHALLENGE, m);
1515 
1516 	monitor_permit(mon_dispatch, MONITOR_REQ_RSARESPONSE, 1);
1517 
1518 	xfree(blob);
1519 	key_free(key);
1520 	return (0);
1521 }
1522 
1523 int
1524 mm_answer_rsa_response(int sock, Buffer *m)
1525 {
1526 	Key *key = NULL;
1527 	u_char *blob, *response;
1528 	u_int blen, len;
1529 	int success;
1530 
1531 	debug3("%s entering", __func__);
1532 
1533 	if (!authctxt->valid)
1534 		fatal("%s: authctxt not valid", __func__);
1535 	if (ssh1_challenge == NULL)
1536 		fatal("%s: no ssh1_challenge", __func__);
1537 
1538 	blob = buffer_get_string(m, &blen);
1539 	if (!monitor_allowed_key(blob, blen))
1540 		fatal("%s: bad key, not previously allowed", __func__);
1541 	if (key_blobtype != MM_RSAUSERKEY && key_blobtype != MM_RSAHOSTKEY)
1542 		fatal("%s: key type mismatch: %d", __func__, key_blobtype);
1543 	if ((key = key_from_blob(blob, blen)) == NULL)
1544 		fatal("%s: received bad key", __func__);
1545 	response = buffer_get_string(m, &len);
1546 	if (len != 16)
1547 		fatal("%s: received bad response to challenge", __func__);
1548 	success = auth_rsa_verify_response(key, ssh1_challenge, response);
1549 
1550 	xfree(blob);
1551 	key_free(key);
1552 	xfree(response);
1553 
1554 	auth_method = key_blobtype == MM_RSAUSERKEY ? "rsa" : "rhosts-rsa";
1555 
1556 	/* reset state */
1557 	BN_clear_free(ssh1_challenge);
1558 	ssh1_challenge = NULL;
1559 	monitor_reset_key_state();
1560 
1561 	buffer_clear(m);
1562 	buffer_put_int(m, success);
1563 	mm_request_send(sock, MONITOR_ANS_RSARESPONSE, m);
1564 
1565 	return (success);
1566 }
1567 
1568 int
1569 mm_answer_term(int sock, Buffer *req)
1570 {
1571 	extern struct monitor *pmonitor;
1572 	int res, status;
1573 
1574 	debug3("%s: tearing down sessions", __func__);
1575 
1576 	/* The child is terminating */
1577 	session_destroy_all(&mm_session_close);
1578 
1579 #ifdef USE_PAM
1580 	if (options.use_pam)
1581 		sshpam_cleanup();
1582 #endif
1583 
1584 	while (waitpid(pmonitor->m_pid, &status, 0) == -1)
1585 		if (errno != EINTR)
1586 			exit(1);
1587 
1588 	res = WIFEXITED(status) ? WEXITSTATUS(status) : 1;
1589 
1590 	/* Terminate process */
1591 	exit(res);
1592 }
1593 
1594 #ifdef SSH_AUDIT_EVENTS
1595 /* Report that an audit event occurred */
1596 int
1597 mm_answer_audit_event(int socket, Buffer *m)
1598 {
1599 	ssh_audit_event_t event;
1600 
1601 	debug3("%s entering", __func__);
1602 
1603 	event = buffer_get_int(m);
1604 	switch(event) {
1605 	case SSH_AUTH_FAIL_PUBKEY:
1606 	case SSH_AUTH_FAIL_HOSTBASED:
1607 	case SSH_AUTH_FAIL_GSSAPI:
1608 	case SSH_LOGIN_EXCEED_MAXTRIES:
1609 	case SSH_LOGIN_ROOT_DENIED:
1610 	case SSH_CONNECTION_CLOSE:
1611 	case SSH_INVALID_USER:
1612 		audit_event(event);
1613 		break;
1614 	default:
1615 		fatal("Audit event type %d not permitted", event);
1616 	}
1617 
1618 	return (0);
1619 }
1620 
1621 int
1622 mm_answer_audit_command(int socket, Buffer *m)
1623 {
1624 	u_int len;
1625 	char *cmd;
1626 
1627 	debug3("%s entering", __func__);
1628 	cmd = buffer_get_string(m, &len);
1629 	/* sanity check command, if so how? */
1630 	audit_run_command(cmd);
1631 	xfree(cmd);
1632 	return (0);
1633 }
1634 #endif /* SSH_AUDIT_EVENTS */
1635 
1636 void
1637 monitor_apply_keystate(struct monitor *pmonitor)
1638 {
1639 	if (compat20) {
1640 		set_newkeys(MODE_IN);
1641 		set_newkeys(MODE_OUT);
1642 	} else {
1643 		packet_set_protocol_flags(child_state.ssh1protoflags);
1644 		packet_set_encryption_key(child_state.ssh1key,
1645 		    child_state.ssh1keylen, child_state.ssh1cipher);
1646 		xfree(child_state.ssh1key);
1647 	}
1648 
1649 	/* for rc4 and other stateful ciphers */
1650 	packet_set_keycontext(MODE_OUT, child_state.keyout);
1651 	xfree(child_state.keyout);
1652 	packet_set_keycontext(MODE_IN, child_state.keyin);
1653 	xfree(child_state.keyin);
1654 
1655 	if (!compat20) {
1656 		packet_set_iv(MODE_OUT, child_state.ivout);
1657 		xfree(child_state.ivout);
1658 		packet_set_iv(MODE_IN, child_state.ivin);
1659 		xfree(child_state.ivin);
1660 	}
1661 
1662 	memcpy(&incoming_stream, &child_state.incoming,
1663 	    sizeof(incoming_stream));
1664 	memcpy(&outgoing_stream, &child_state.outgoing,
1665 	    sizeof(outgoing_stream));
1666 
1667 	/* Update with new address */
1668 	if (options.compression)
1669 		mm_init_compression(pmonitor->m_zlib);
1670 
1671 	/* Network I/O buffers */
1672 	/* XXX inefficient for large buffers, need: buffer_init_from_string */
1673 	buffer_clear(&input);
1674 	buffer_append(&input, child_state.input, child_state.ilen);
1675 	memset(child_state.input, 0, child_state.ilen);
1676 	xfree(child_state.input);
1677 
1678 	buffer_clear(&output);
1679 	buffer_append(&output, child_state.output, child_state.olen);
1680 	memset(child_state.output, 0, child_state.olen);
1681 	xfree(child_state.output);
1682 }
1683 
1684 static Kex *
1685 mm_get_kex(Buffer *m)
1686 {
1687 	Kex *kex;
1688 	void *blob;
1689 	u_int bloblen;
1690 
1691 	kex = xcalloc(1, sizeof(*kex));
1692 	kex->session_id = buffer_get_string(m, &kex->session_id_len);
1693 	if ((session_id2 == NULL) ||
1694 	    (kex->session_id_len != session_id2_len) ||
1695 	    (memcmp(kex->session_id, session_id2, session_id2_len) != 0))
1696 		fatal("mm_get_get: internal error: bad session id");
1697 	kex->we_need = buffer_get_int(m);
1698 	kex->kex[KEX_DH_GRP1_SHA1] = kexdh_server;
1699 	kex->kex[KEX_DH_GRP14_SHA1] = kexdh_server;
1700 	kex->kex[KEX_DH_GEX_SHA1] = kexgex_server;
1701 	kex->kex[KEX_DH_GEX_SHA256] = kexgex_server;
1702 	kex->server = 1;
1703 	kex->hostkey_type = buffer_get_int(m);
1704 	kex->kex_type = buffer_get_int(m);
1705 	blob = buffer_get_string(m, &bloblen);
1706 	buffer_init(&kex->my);
1707 	buffer_append(&kex->my, blob, bloblen);
1708 	xfree(blob);
1709 	blob = buffer_get_string(m, &bloblen);
1710 	buffer_init(&kex->peer);
1711 	buffer_append(&kex->peer, blob, bloblen);
1712 	xfree(blob);
1713 	kex->done = 1;
1714 	kex->flags = buffer_get_int(m);
1715 	kex->client_version_string = buffer_get_string(m, NULL);
1716 	kex->server_version_string = buffer_get_string(m, NULL);
1717 	kex->load_host_key=&get_hostkey_by_type;
1718 	kex->host_key_index=&get_hostkey_index;
1719 
1720 	return (kex);
1721 }
1722 
1723 /* This function requries careful sanity checking */
1724 
1725 void
1726 mm_get_keystate(struct monitor *pmonitor)
1727 {
1728 	Buffer m;
1729 	u_char *blob, *p;
1730 	u_int bloblen, plen;
1731 	u_int32_t seqnr, packets;
1732 	u_int64_t blocks, bytes;
1733 
1734 	debug3("%s: Waiting for new keys", __func__);
1735 
1736 	buffer_init(&m);
1737 	mm_request_receive_expect(pmonitor->m_sendfd, MONITOR_REQ_KEYEXPORT, &m);
1738 	if (!compat20) {
1739 		child_state.ssh1protoflags = buffer_get_int(&m);
1740 		child_state.ssh1cipher = buffer_get_int(&m);
1741 		child_state.ssh1key = buffer_get_string(&m,
1742 		    &child_state.ssh1keylen);
1743 		child_state.ivout = buffer_get_string(&m,
1744 		    &child_state.ivoutlen);
1745 		child_state.ivin = buffer_get_string(&m, &child_state.ivinlen);
1746 		goto skip;
1747 	} else {
1748 		/* Get the Kex for rekeying */
1749 		*pmonitor->m_pkex = mm_get_kex(&m);
1750 	}
1751 
1752 	blob = buffer_get_string(&m, &bloblen);
1753 	current_keys[MODE_OUT] = mm_newkeys_from_blob(blob, bloblen);
1754 	xfree(blob);
1755 
1756 	debug3("%s: Waiting for second key", __func__);
1757 	blob = buffer_get_string(&m, &bloblen);
1758 	current_keys[MODE_IN] = mm_newkeys_from_blob(blob, bloblen);
1759 	xfree(blob);
1760 
1761 	/* Now get sequence numbers for the packets */
1762 	seqnr = buffer_get_int(&m);
1763 	blocks = buffer_get_int64(&m);
1764 	packets = buffer_get_int(&m);
1765 	bytes = buffer_get_int64(&m);
1766 	packet_set_state(MODE_OUT, seqnr, blocks, packets, bytes);
1767 	seqnr = buffer_get_int(&m);
1768 	blocks = buffer_get_int64(&m);
1769 	packets = buffer_get_int(&m);
1770 	bytes = buffer_get_int64(&m);
1771 	packet_set_state(MODE_IN, seqnr, blocks, packets, bytes);
1772 
1773  skip:
1774 	/* Get the key context */
1775 	child_state.keyout = buffer_get_string(&m, &child_state.keyoutlen);
1776 	child_state.keyin  = buffer_get_string(&m, &child_state.keyinlen);
1777 
1778 	debug3("%s: Getting compression state", __func__);
1779 	/* Get compression state */
1780 	p = buffer_get_string(&m, &plen);
1781 	if (plen != sizeof(child_state.outgoing))
1782 		fatal("%s: bad request size", __func__);
1783 	memcpy(&child_state.outgoing, p, sizeof(child_state.outgoing));
1784 	xfree(p);
1785 
1786 	p = buffer_get_string(&m, &plen);
1787 	if (plen != sizeof(child_state.incoming))
1788 		fatal("%s: bad request size", __func__);
1789 	memcpy(&child_state.incoming, p, sizeof(child_state.incoming));
1790 	xfree(p);
1791 
1792 	/* Network I/O buffers */
1793 	debug3("%s: Getting Network I/O buffers", __func__);
1794 	child_state.input = buffer_get_string(&m, &child_state.ilen);
1795 	child_state.output = buffer_get_string(&m, &child_state.olen);
1796 
1797 	buffer_free(&m);
1798 }
1799 
1800 
1801 /* Allocation functions for zlib */
1802 void *
1803 mm_zalloc(struct mm_master *mm, u_int ncount, u_int size)
1804 {
1805 	size_t len = (size_t) size * ncount;
1806 	void *address;
1807 
1808 	if (len == 0 || ncount > SIZE_T_MAX / size)
1809 		fatal("%s: mm_zalloc(%u, %u)", __func__, ncount, size);
1810 
1811 	address = mm_malloc(mm, len);
1812 
1813 	return (address);
1814 }
1815 
1816 void
1817 mm_zfree(struct mm_master *mm, void *address)
1818 {
1819 	mm_free(mm, address);
1820 }
1821 
1822 void
1823 mm_init_compression(struct mm_master *mm)
1824 {
1825 	outgoing_stream.zalloc = (alloc_func)mm_zalloc;
1826 	outgoing_stream.zfree = (free_func)mm_zfree;
1827 	outgoing_stream.opaque = mm;
1828 
1829 	incoming_stream.zalloc = (alloc_func)mm_zalloc;
1830 	incoming_stream.zfree = (free_func)mm_zfree;
1831 	incoming_stream.opaque = mm;
1832 }
1833 
1834 /* XXX */
1835 
1836 #define FD_CLOSEONEXEC(x) do { \
1837 	if (fcntl(x, F_SETFD, 1) == -1) \
1838 		fatal("fcntl(%d, F_SETFD)", x); \
1839 } while (0)
1840 
1841 static void
1842 monitor_socketpair(int *pair)
1843 {
1844 #ifdef HAVE_SOCKETPAIR
1845 	if (socketpair(AF_UNIX, SOCK_STREAM, 0, pair) == -1)
1846 		fatal("%s: socketpair", __func__);
1847 #else
1848 	fatal("%s: UsePrivilegeSeparation=yes not supported",
1849 	    __func__);
1850 #endif
1851 	FD_CLOSEONEXEC(pair[0]);
1852 	FD_CLOSEONEXEC(pair[1]);
1853 }
1854 
1855 #define MM_MEMSIZE	65536
1856 
1857 struct monitor *
1858 monitor_init(void)
1859 {
1860 	struct monitor *mon;
1861 	int pair[2];
1862 
1863 	mon = xcalloc(1, sizeof(*mon));
1864 
1865 	monitor_socketpair(pair);
1866 
1867 	mon->m_recvfd = pair[0];
1868 	mon->m_sendfd = pair[1];
1869 
1870 	/* Used to share zlib space across processes */
1871 	if (options.compression) {
1872 		mon->m_zback = mm_create(NULL, MM_MEMSIZE);
1873 		mon->m_zlib = mm_create(mon->m_zback, 20 * MM_MEMSIZE);
1874 
1875 		/* Compression needs to share state across borders */
1876 		mm_init_compression(mon->m_zlib);
1877 	}
1878 
1879 	return mon;
1880 }
1881 
1882 void
1883 monitor_reinit(struct monitor *mon)
1884 {
1885 	int pair[2];
1886 
1887 	monitor_socketpair(pair);
1888 
1889 	mon->m_recvfd = pair[0];
1890 	mon->m_sendfd = pair[1];
1891 }
1892 
1893 #ifdef GSSAPI
1894 int
1895 mm_answer_gss_setup_ctx(int sock, Buffer *m)
1896 {
1897 	gss_OID_desc goid;
1898 	OM_uint32 major;
1899 	u_int len;
1900 
1901 	goid.elements = buffer_get_string(m, &len);
1902 	goid.length = len;
1903 
1904 	major = ssh_gssapi_server_ctx(&gsscontext, &goid);
1905 
1906 	xfree(goid.elements);
1907 
1908 	buffer_clear(m);
1909 	buffer_put_int(m, major);
1910 
1911 	mm_request_send(sock, MONITOR_ANS_GSSSETUP, m);
1912 
1913 	/* Now we have a context, enable the step */
1914 	monitor_permit(mon_dispatch, MONITOR_REQ_GSSSTEP, 1);
1915 
1916 	return (0);
1917 }
1918 
1919 int
1920 mm_answer_gss_accept_ctx(int sock, Buffer *m)
1921 {
1922 	gss_buffer_desc in;
1923 	gss_buffer_desc out = GSS_C_EMPTY_BUFFER;
1924 	OM_uint32 major, minor;
1925 	OM_uint32 flags = 0; /* GSI needs this */
1926 	u_int len;
1927 
1928 	in.value = buffer_get_string(m, &len);
1929 	in.length = len;
1930 	major = ssh_gssapi_accept_ctx(gsscontext, &in, &out, &flags);
1931 	xfree(in.value);
1932 
1933 	buffer_clear(m);
1934 	buffer_put_int(m, major);
1935 	buffer_put_string(m, out.value, out.length);
1936 	buffer_put_int(m, flags);
1937 	mm_request_send(sock, MONITOR_ANS_GSSSTEP, m);
1938 
1939 	gss_release_buffer(&minor, &out);
1940 
1941 	if (major == GSS_S_COMPLETE) {
1942 		monitor_permit(mon_dispatch, MONITOR_REQ_GSSSTEP, 0);
1943 		monitor_permit(mon_dispatch, MONITOR_REQ_GSSUSEROK, 1);
1944 		monitor_permit(mon_dispatch, MONITOR_REQ_GSSCHECKMIC, 1);
1945 	}
1946 	return (0);
1947 }
1948 
1949 int
1950 mm_answer_gss_checkmic(int sock, Buffer *m)
1951 {
1952 	gss_buffer_desc gssbuf, mic;
1953 	OM_uint32 ret;
1954 	u_int len;
1955 
1956 	gssbuf.value = buffer_get_string(m, &len);
1957 	gssbuf.length = len;
1958 	mic.value = buffer_get_string(m, &len);
1959 	mic.length = len;
1960 
1961 	ret = ssh_gssapi_checkmic(gsscontext, &gssbuf, &mic);
1962 
1963 	xfree(gssbuf.value);
1964 	xfree(mic.value);
1965 
1966 	buffer_clear(m);
1967 	buffer_put_int(m, ret);
1968 
1969 	mm_request_send(sock, MONITOR_ANS_GSSCHECKMIC, m);
1970 
1971 	if (!GSS_ERROR(ret))
1972 		monitor_permit(mon_dispatch, MONITOR_REQ_GSSUSEROK, 1);
1973 
1974 	return (0);
1975 }
1976 
1977 int
1978 mm_answer_gss_userok(int sock, Buffer *m)
1979 {
1980 	int authenticated;
1981 
1982 	authenticated = authctxt->valid && ssh_gssapi_userok(authctxt->user);
1983 
1984 	buffer_clear(m);
1985 	buffer_put_int(m, authenticated);
1986 
1987 	debug3("%s: sending result %d", __func__, authenticated);
1988 	mm_request_send(sock, MONITOR_ANS_GSSUSEROK, m);
1989 
1990 	auth_method = "gssapi-with-mic";
1991 
1992 	/* Monitor loop will terminate if authenticated */
1993 	return (authenticated);
1994 }
1995 #endif /* GSSAPI */
1996 
1997 #ifdef JPAKE
1998 int
1999 mm_answer_jpake_step1(int sock, Buffer *m)
2000 {
2001 	struct jpake_ctx *pctx;
2002 	u_char *x3_proof, *x4_proof;
2003 	u_int x3_proof_len, x4_proof_len;
2004 
2005 	if (!options.zero_knowledge_password_authentication)
2006 		fatal("zero_knowledge_password_authentication disabled");
2007 
2008 	if (authctxt->jpake_ctx != NULL)
2009 		fatal("%s: authctxt->jpake_ctx already set (%p)",
2010 		    __func__, authctxt->jpake_ctx);
2011 	authctxt->jpake_ctx = pctx = jpake_new();
2012 
2013 	jpake_step1(pctx->grp,
2014 	    &pctx->server_id, &pctx->server_id_len,
2015 	    &pctx->x3, &pctx->x4, &pctx->g_x3, &pctx->g_x4,
2016 	    &x3_proof, &x3_proof_len,
2017 	    &x4_proof, &x4_proof_len);
2018 
2019 	JPAKE_DEBUG_CTX((pctx, "step1 done in %s", __func__));
2020 
2021 	buffer_clear(m);
2022 
2023 	buffer_put_string(m, pctx->server_id, pctx->server_id_len);
2024 	buffer_put_bignum2(m, pctx->g_x3);
2025 	buffer_put_bignum2(m, pctx->g_x4);
2026 	buffer_put_string(m, x3_proof, x3_proof_len);
2027 	buffer_put_string(m, x4_proof, x4_proof_len);
2028 
2029 	debug3("%s: sending step1", __func__);
2030 	mm_request_send(sock, MONITOR_ANS_JPAKE_STEP1, m);
2031 
2032 	bzero(x3_proof, x3_proof_len);
2033 	bzero(x4_proof, x4_proof_len);
2034 	xfree(x3_proof);
2035 	xfree(x4_proof);
2036 
2037 	monitor_permit(mon_dispatch, MONITOR_REQ_JPAKE_GET_PWDATA, 1);
2038 	monitor_permit(mon_dispatch, MONITOR_REQ_JPAKE_STEP1, 0);
2039 
2040 	return 0;
2041 }
2042 
2043 int
2044 mm_answer_jpake_get_pwdata(int sock, Buffer *m)
2045 {
2046 	struct jpake_ctx *pctx = authctxt->jpake_ctx;
2047 	char *hash_scheme, *salt;
2048 
2049 	if (pctx == NULL)
2050 		fatal("%s: pctx == NULL", __func__);
2051 
2052 	auth2_jpake_get_pwdata(authctxt, &pctx->s, &hash_scheme, &salt);
2053 
2054 	buffer_clear(m);
2055 	/* pctx->s is sensitive, not returned to slave */
2056 	buffer_put_cstring(m, hash_scheme);
2057 	buffer_put_cstring(m, salt);
2058 
2059 	debug3("%s: sending pwdata", __func__);
2060 	mm_request_send(sock, MONITOR_ANS_JPAKE_GET_PWDATA, m);
2061 
2062 	bzero(hash_scheme, strlen(hash_scheme));
2063 	bzero(salt, strlen(salt));
2064 	xfree(hash_scheme);
2065 	xfree(salt);
2066 
2067 	monitor_permit(mon_dispatch, MONITOR_REQ_JPAKE_STEP2, 1);
2068 
2069 	return 0;
2070 }
2071 
2072 int
2073 mm_answer_jpake_step2(int sock, Buffer *m)
2074 {
2075 	struct jpake_ctx *pctx = authctxt->jpake_ctx;
2076 	u_char *x1_proof, *x2_proof, *x4_s_proof;
2077 	u_int x1_proof_len, x2_proof_len, x4_s_proof_len;
2078 
2079 	if (pctx == NULL)
2080 		fatal("%s: pctx == NULL", __func__);
2081 
2082 	if ((pctx->g_x1 = BN_new()) == NULL ||
2083 	    (pctx->g_x2 = BN_new()) == NULL)
2084 		fatal("%s: BN_new", __func__);
2085 	buffer_get_bignum2(m, pctx->g_x1);
2086 	buffer_get_bignum2(m, pctx->g_x2);
2087 	pctx->client_id = buffer_get_string(m, &pctx->client_id_len);
2088 	x1_proof = buffer_get_string(m, &x1_proof_len);
2089 	x2_proof = buffer_get_string(m, &x2_proof_len);
2090 
2091 	jpake_step2(pctx->grp, pctx->s, pctx->g_x3,
2092 	    pctx->g_x1, pctx->g_x2, pctx->x4,
2093 	    pctx->client_id, pctx->client_id_len,
2094 	    pctx->server_id, pctx->server_id_len,
2095 	    x1_proof, x1_proof_len,
2096 	    x2_proof, x2_proof_len,
2097 	    &pctx->b,
2098 	    &x4_s_proof, &x4_s_proof_len);
2099 
2100 	JPAKE_DEBUG_CTX((pctx, "step2 done in %s", __func__));
2101 
2102 	bzero(x1_proof, x1_proof_len);
2103 	bzero(x2_proof, x2_proof_len);
2104 	xfree(x1_proof);
2105 	xfree(x2_proof);
2106 
2107 	buffer_clear(m);
2108 
2109 	buffer_put_bignum2(m, pctx->b);
2110 	buffer_put_string(m, x4_s_proof, x4_s_proof_len);
2111 
2112 	debug3("%s: sending step2", __func__);
2113 	mm_request_send(sock, MONITOR_ANS_JPAKE_STEP2, m);
2114 
2115 	bzero(x4_s_proof, x4_s_proof_len);
2116 	xfree(x4_s_proof);
2117 
2118 	monitor_permit(mon_dispatch, MONITOR_REQ_JPAKE_KEY_CONFIRM, 1);
2119 
2120 	return 0;
2121 }
2122 
2123 int
2124 mm_answer_jpake_key_confirm(int sock, Buffer *m)
2125 {
2126 	struct jpake_ctx *pctx = authctxt->jpake_ctx;
2127 	u_char *x2_s_proof;
2128 	u_int x2_s_proof_len;
2129 
2130 	if (pctx == NULL)
2131 		fatal("%s: pctx == NULL", __func__);
2132 
2133 	if ((pctx->a = BN_new()) == NULL)
2134 		fatal("%s: BN_new", __func__);
2135 	buffer_get_bignum2(m, pctx->a);
2136 	x2_s_proof = buffer_get_string(m, &x2_s_proof_len);
2137 
2138 	jpake_key_confirm(pctx->grp, pctx->s, pctx->a,
2139 	    pctx->x4, pctx->g_x3, pctx->g_x4, pctx->g_x1, pctx->g_x2,
2140 	    pctx->server_id, pctx->server_id_len,
2141 	    pctx->client_id, pctx->client_id_len,
2142 	    session_id2, session_id2_len,
2143 	    x2_s_proof, x2_s_proof_len,
2144 	    &pctx->k,
2145 	    &pctx->h_k_sid_sessid, &pctx->h_k_sid_sessid_len);
2146 
2147 	JPAKE_DEBUG_CTX((pctx, "key_confirm done in %s", __func__));
2148 
2149 	bzero(x2_s_proof, x2_s_proof_len);
2150 	buffer_clear(m);
2151 
2152 	/* pctx->k is sensitive, not sent */
2153 	buffer_put_string(m, pctx->h_k_sid_sessid, pctx->h_k_sid_sessid_len);
2154 
2155 	debug3("%s: sending confirmation hash", __func__);
2156 	mm_request_send(sock, MONITOR_ANS_JPAKE_KEY_CONFIRM, m);
2157 
2158 	monitor_permit(mon_dispatch, MONITOR_REQ_JPAKE_CHECK_CONFIRM, 1);
2159 
2160 	return 0;
2161 }
2162 
2163 int
2164 mm_answer_jpake_check_confirm(int sock, Buffer *m)
2165 {
2166 	int authenticated = 0;
2167 	u_char *peer_confirm_hash;
2168 	u_int peer_confirm_hash_len;
2169 	struct jpake_ctx *pctx = authctxt->jpake_ctx;
2170 
2171 	if (pctx == NULL)
2172 		fatal("%s: pctx == NULL", __func__);
2173 
2174 	peer_confirm_hash = buffer_get_string(m, &peer_confirm_hash_len);
2175 
2176 	authenticated = jpake_check_confirm(pctx->k,
2177 	    pctx->client_id, pctx->client_id_len,
2178 	    session_id2, session_id2_len,
2179 	    peer_confirm_hash, peer_confirm_hash_len) && authctxt->valid;
2180 
2181 	JPAKE_DEBUG_CTX((pctx, "check_confirm done in %s", __func__));
2182 
2183 	bzero(peer_confirm_hash, peer_confirm_hash_len);
2184 	xfree(peer_confirm_hash);
2185 
2186 	buffer_clear(m);
2187 	buffer_put_int(m, authenticated);
2188 
2189 	debug3("%s: sending result %d", __func__, authenticated);
2190 	mm_request_send(sock, MONITOR_ANS_JPAKE_CHECK_CONFIRM, m);
2191 
2192 	monitor_permit(mon_dispatch, MONITOR_REQ_JPAKE_STEP1, 1);
2193 
2194 	auth_method = "jpake-01@openssh.com";
2195 	return authenticated;
2196 }
2197 
2198 #endif /* JPAKE */
2199