]> andersk Git - openssh.git/blob - ssh-agent.c
- markus@cvs.openbsd.org 2002/06/15 00:07:38
[openssh.git] / ssh-agent.c
1 /*
2  * Author: Tatu Ylonen <ylo@cs.hut.fi>
3  * Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
4  *                    All rights reserved
5  * The authentication agent program.
6  *
7  * As far as I am concerned, the code I have written for this software
8  * can be used freely for any purpose.  Any derived versions of this
9  * software must be clearly marked as such, and if the derived work is
10  * incompatible with the protocol description in the RFC file, it must be
11  * called by a name other than "ssh" or "Secure Shell".
12  *
13  * Copyright (c) 2000, 2001 Markus Friedl.  All rights reserved.
14  *
15  * Redistribution and use in source and binary forms, with or without
16  * modification, are permitted provided that the following conditions
17  * are met:
18  * 1. Redistributions of source code must retain the above copyright
19  *    notice, this list of conditions and the following disclaimer.
20  * 2. Redistributions in binary form must reproduce the above copyright
21  *    notice, this list of conditions and the following disclaimer in the
22  *    documentation and/or other materials provided with the distribution.
23  *
24  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
33  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34  */
35
36 #include "includes.h"
37 #include "openbsd-compat/fake-queue.h"
38 RCSID("$OpenBSD: ssh-agent.c,v 1.93 2002/06/15 00:07:38 markus Exp $");
39
40 #include <openssl/evp.h>
41 #include <openssl/md5.h>
42
43 #include "ssh.h"
44 #include "rsa.h"
45 #include "buffer.h"
46 #include "bufaux.h"
47 #include "xmalloc.h"
48 #include "getput.h"
49 #include "key.h"
50 #include "authfd.h"
51 #include "compat.h"
52 #include "log.h"
53
54 #ifdef SMARTCARD
55 #include "scard.h"
56 #endif
57
58 typedef enum {
59         AUTH_UNUSED,
60         AUTH_SOCKET,
61         AUTH_CONNECTION
62 } sock_type;
63
64 typedef struct {
65         int fd;
66         sock_type type;
67         Buffer input;
68         Buffer output;
69         Buffer request;
70 } SocketEntry;
71
72 u_int sockets_alloc = 0;
73 SocketEntry *sockets = NULL;
74
75 typedef struct identity {
76         TAILQ_ENTRY(identity) next;
77         Key *key;
78         char *comment;
79         u_int death;
80 } Identity;
81
82 typedef struct {
83         int nentries;
84         TAILQ_HEAD(idqueue, identity) idlist;
85 } Idtab;
86
87 /* private key table, one per protocol version */
88 Idtab idtable[3];
89
90 int max_fd = 0;
91
92 /* pid of shell == parent of agent */
93 pid_t parent_pid = -1;
94
95 /* pathname and directory for AUTH_SOCKET */
96 char socket_name[1024];
97 char socket_dir[1024];
98
99 /* locking */
100 int locked = 0;
101 char *lock_passwd = NULL;
102
103 #ifdef HAVE___PROGNAME
104 extern char *__progname;
105 #else
106 char *__progname;
107 #endif
108
109 static void
110 idtab_init(void)
111 {
112         int i;
113         for (i = 0; i <=2; i++) {
114                 TAILQ_INIT(&idtable[i].idlist);
115                 idtable[i].nentries = 0;
116         }
117 }
118
119 /* return private key table for requested protocol version */
120 static Idtab *
121 idtab_lookup(int version)
122 {
123         if (version < 1 || version > 2)
124                 fatal("internal error, bad protocol version %d", version);
125         return &idtable[version];
126 }
127
128 static void
129 free_identity(Identity *id)
130 {
131         key_free(id->key);
132         xfree(id->comment);
133         xfree(id);
134 }
135
136 /* return matching private key for given public key */
137 static Identity *
138 lookup_identity(Key *key, int version)
139 {
140         Identity *id;
141
142         Idtab *tab = idtab_lookup(version);
143         TAILQ_FOREACH(id, &tab->idlist, next) {
144                 if (key_equal(key, id->key))
145                         return (id);
146         }
147         return (NULL);
148 }
149
150 /* send list of supported public keys to 'client' */
151 static void
152 process_request_identities(SocketEntry *e, int version)
153 {
154         Idtab *tab = idtab_lookup(version);
155         Buffer msg;
156         Identity *id;
157
158         buffer_init(&msg);
159         buffer_put_char(&msg, (version == 1) ?
160             SSH_AGENT_RSA_IDENTITIES_ANSWER : SSH2_AGENT_IDENTITIES_ANSWER);
161         buffer_put_int(&msg, tab->nentries);
162         TAILQ_FOREACH(id, &tab->idlist, next) {
163                 if (id->key->type == KEY_RSA1) {
164                         buffer_put_int(&msg, BN_num_bits(id->key->rsa->n));
165                         buffer_put_bignum(&msg, id->key->rsa->e);
166                         buffer_put_bignum(&msg, id->key->rsa->n);
167                 } else {
168                         u_char *blob;
169                         u_int blen;
170                         key_to_blob(id->key, &blob, &blen);
171                         buffer_put_string(&msg, blob, blen);
172                         xfree(blob);
173                 }
174                 buffer_put_cstring(&msg, id->comment);
175         }
176         buffer_put_int(&e->output, buffer_len(&msg));
177         buffer_append(&e->output, buffer_ptr(&msg), buffer_len(&msg));
178         buffer_free(&msg);
179 }
180
181 /* ssh1 only */
182 static void
183 process_authentication_challenge1(SocketEntry *e)
184 {
185         Identity *id;
186         Key *key;
187         BIGNUM *challenge;
188         int i, len;
189         Buffer msg;
190         MD5_CTX md;
191         u_char buf[32], mdbuf[16], session_id[16];
192         u_int response_type;
193
194         buffer_init(&msg);
195         key = key_new(KEY_RSA1);
196         if ((challenge = BN_new()) == NULL)
197                 fatal("process_authentication_challenge1: BN_new failed");
198
199         buffer_get_int(&e->request);                            /* ignored */
200         buffer_get_bignum(&e->request, key->rsa->e);
201         buffer_get_bignum(&e->request, key->rsa->n);
202         buffer_get_bignum(&e->request, challenge);
203
204         /* Only protocol 1.1 is supported */
205         if (buffer_len(&e->request) == 0)
206                 goto failure;
207         buffer_get(&e->request, session_id, 16);
208         response_type = buffer_get_int(&e->request);
209         if (response_type != 1)
210                 goto failure;
211
212         id = lookup_identity(key, 1);
213         if (id != NULL) {
214                 Key *private = id->key;
215                 /* Decrypt the challenge using the private key. */
216                 if (rsa_private_decrypt(challenge, challenge, private->rsa) <= 0)
217                         goto failure;
218
219                 /* The response is MD5 of decrypted challenge plus session id. */
220                 len = BN_num_bytes(challenge);
221                 if (len <= 0 || len > 32) {
222                         log("process_authentication_challenge: bad challenge length %d", len);
223                         goto failure;
224                 }
225                 memset(buf, 0, 32);
226                 BN_bn2bin(challenge, buf + 32 - len);
227                 MD5_Init(&md);
228                 MD5_Update(&md, buf, 32);
229                 MD5_Update(&md, session_id, 16);
230                 MD5_Final(mdbuf, &md);
231
232                 /* Send the response. */
233                 buffer_put_char(&msg, SSH_AGENT_RSA_RESPONSE);
234                 for (i = 0; i < 16; i++)
235                         buffer_put_char(&msg, mdbuf[i]);
236                 goto send;
237         }
238
239 failure:
240         /* Unknown identity or protocol error.  Send failure. */
241         buffer_put_char(&msg, SSH_AGENT_FAILURE);
242 send:
243         buffer_put_int(&e->output, buffer_len(&msg));
244         buffer_append(&e->output, buffer_ptr(&msg), buffer_len(&msg));
245         key_free(key);
246         BN_clear_free(challenge);
247         buffer_free(&msg);
248 }
249
250 /* ssh2 only */
251 static void
252 process_sign_request2(SocketEntry *e)
253 {
254         extern int datafellows;
255         Key *key;
256         u_char *blob, *data, *signature = NULL;
257         u_int blen, dlen, slen = 0;
258         int flags;
259         Buffer msg;
260         int ok = -1;
261
262         datafellows = 0;
263
264         blob = buffer_get_string(&e->request, &blen);
265         data = buffer_get_string(&e->request, &dlen);
266
267         flags = buffer_get_int(&e->request);
268         if (flags & SSH_AGENT_OLD_SIGNATURE)
269                 datafellows = SSH_BUG_SIGBLOB;
270
271         key = key_from_blob(blob, blen);
272         if (key != NULL) {
273                 Identity *id = lookup_identity(key, 2);
274                 if (id != NULL)
275                         ok = key_sign(id->key, &signature, &slen, data, dlen);
276         }
277         key_free(key);
278         buffer_init(&msg);
279         if (ok == 0) {
280                 buffer_put_char(&msg, SSH2_AGENT_SIGN_RESPONSE);
281                 buffer_put_string(&msg, signature, slen);
282         } else {
283                 buffer_put_char(&msg, SSH_AGENT_FAILURE);
284         }
285         buffer_put_int(&e->output, buffer_len(&msg));
286         buffer_append(&e->output, buffer_ptr(&msg),
287             buffer_len(&msg));
288         buffer_free(&msg);
289         xfree(data);
290         xfree(blob);
291         if (signature != NULL)
292                 xfree(signature);
293 }
294
295 /* shared */
296 static void
297 process_remove_identity(SocketEntry *e, int version)
298 {
299         Key *key = NULL;
300         u_char *blob;
301         u_int blen;
302         u_int bits;
303         int success = 0;
304
305         switch (version) {
306         case 1:
307                 key = key_new(KEY_RSA1);
308                 bits = buffer_get_int(&e->request);
309                 buffer_get_bignum(&e->request, key->rsa->e);
310                 buffer_get_bignum(&e->request, key->rsa->n);
311
312                 if (bits != key_size(key))
313                         log("Warning: identity keysize mismatch: actual %d, announced %d",
314                             key_size(key), bits);
315                 break;
316         case 2:
317                 blob = buffer_get_string(&e->request, &blen);
318                 key = key_from_blob(blob, blen);
319                 xfree(blob);
320                 break;
321         }
322         if (key != NULL) {
323                 Identity *id = lookup_identity(key, version);
324                 if (id != NULL) {
325                         /*
326                          * We have this key.  Free the old key.  Since we
327                          * don\'t want to leave empty slots in the middle of
328                          * the array, we actually free the key there and move
329                          * all the entries between the empty slot and the end
330                          * of the array.
331                          */
332                         Idtab *tab = idtab_lookup(version);
333                         if (tab->nentries < 1)
334                                 fatal("process_remove_identity: "
335                                     "internal error: tab->nentries %d",
336                                     tab->nentries);
337                         TAILQ_REMOVE(&tab->idlist, id, next);
338                         free_identity(id);
339                         tab->nentries--;
340                         success = 1;
341                 }
342                 key_free(key);
343         }
344         buffer_put_int(&e->output, 1);
345         buffer_put_char(&e->output,
346             success ? SSH_AGENT_SUCCESS : SSH_AGENT_FAILURE);
347 }
348
349 static void
350 process_remove_all_identities(SocketEntry *e, int version)
351 {
352         Idtab *tab = idtab_lookup(version);
353         Identity *id;
354
355         /* Loop over all identities and clear the keys. */
356         for (id = TAILQ_FIRST(&tab->idlist); id;
357             id = TAILQ_FIRST(&tab->idlist)) {
358                 TAILQ_REMOVE(&tab->idlist, id, next);
359                 free_identity(id);
360         }
361
362         /* Mark that there are no identities. */
363         tab->nentries = 0;
364
365         /* Send success. */
366         buffer_put_int(&e->output, 1);
367         buffer_put_char(&e->output, SSH_AGENT_SUCCESS);
368         return;
369 }
370
371 static void
372 reaper(void)
373 {
374         Idtab *tab;
375         Identity *id, *nxt;
376         int version;
377         u_int now = time(NULL);
378
379         for (version = 1; version < 3; version++) {
380                 tab = idtab_lookup(version);
381                 for (id = TAILQ_FIRST(&tab->idlist); id; id = nxt) {
382                         nxt = TAILQ_NEXT(id, next);
383                         if (id->death != 0 && now >= id->death) {
384                                 TAILQ_REMOVE(&tab->idlist, id, next);
385                                 free_identity(id);
386                                 tab->nentries--;
387                         }
388                 }
389         }
390 }
391
392 static void
393 process_add_identity(SocketEntry *e, int version)
394 {
395         Key *k = NULL;
396         char *type_name;
397         char *comment;
398         int type, success = 0;
399         Idtab *tab = idtab_lookup(version);
400
401         switch (version) {
402         case 1:
403                 k = key_new_private(KEY_RSA1);
404                 buffer_get_int(&e->request);                    /* ignored */
405                 buffer_get_bignum(&e->request, k->rsa->n);
406                 buffer_get_bignum(&e->request, k->rsa->e);
407                 buffer_get_bignum(&e->request, k->rsa->d);
408                 buffer_get_bignum(&e->request, k->rsa->iqmp);
409
410                 /* SSH and SSL have p and q swapped */
411                 buffer_get_bignum(&e->request, k->rsa->q);      /* p */
412                 buffer_get_bignum(&e->request, k->rsa->p);      /* q */
413
414                 /* Generate additional parameters */
415                 rsa_generate_additional_parameters(k->rsa);
416                 break;
417         case 2:
418                 type_name = buffer_get_string(&e->request, NULL);
419                 type = key_type_from_name(type_name);
420                 xfree(type_name);
421                 switch (type) {
422                 case KEY_DSA:
423                         k = key_new_private(type);
424                         buffer_get_bignum2(&e->request, k->dsa->p);
425                         buffer_get_bignum2(&e->request, k->dsa->q);
426                         buffer_get_bignum2(&e->request, k->dsa->g);
427                         buffer_get_bignum2(&e->request, k->dsa->pub_key);
428                         buffer_get_bignum2(&e->request, k->dsa->priv_key);
429                         break;
430                 case KEY_RSA:
431                         k = key_new_private(type);
432                         buffer_get_bignum2(&e->request, k->rsa->n);
433                         buffer_get_bignum2(&e->request, k->rsa->e);
434                         buffer_get_bignum2(&e->request, k->rsa->d);
435                         buffer_get_bignum2(&e->request, k->rsa->iqmp);
436                         buffer_get_bignum2(&e->request, k->rsa->p);
437                         buffer_get_bignum2(&e->request, k->rsa->q);
438
439                         /* Generate additional parameters */
440                         rsa_generate_additional_parameters(k->rsa);
441                         break;
442                 default:
443                         buffer_clear(&e->request);
444                         goto send;
445                 }
446                 break;
447         }
448         comment = buffer_get_string(&e->request, NULL);
449         if (k == NULL) {
450                 xfree(comment);
451                 goto send;
452         }
453         success = 1;
454         if (lookup_identity(k, version) == NULL) {
455                 Identity *id = xmalloc(sizeof(Identity));
456                 id->key = k;
457                 id->comment = comment;
458                 id->death = 0;
459                 TAILQ_INSERT_TAIL(&tab->idlist, id, next);
460                 /* Increment the number of identities. */
461                 tab->nentries++;
462         } else {
463                 key_free(k);
464                 xfree(comment);
465         }
466 send:
467         buffer_put_int(&e->output, 1);
468         buffer_put_char(&e->output,
469             success ? SSH_AGENT_SUCCESS : SSH_AGENT_FAILURE);
470 }
471
472 static void
473 process_constrain_identity(SocketEntry *e, int version)
474 {
475         Key *key = NULL;
476         u_char *blob;
477         u_int blen, bits, death = 0;
478         int success = 0;
479
480         switch (version) {
481         case 1:
482                 key = key_new(KEY_RSA1);
483                 bits = buffer_get_int(&e->request);
484                 buffer_get_bignum(&e->request, key->rsa->e);
485                 buffer_get_bignum(&e->request, key->rsa->n);
486
487                 break;
488         case 2:
489                 blob = buffer_get_string(&e->request, &blen);
490                 key = key_from_blob(blob, blen);
491                 xfree(blob);
492                 break;
493         }
494         while (buffer_len(&e->request)) {
495                 switch (buffer_get_char(&e->request)) {
496                 case SSH_AGENT_CONSTRAIN_LIFETIME:
497                         death = time(NULL) + buffer_get_int(&e->request);
498                         break;
499                 default:
500                         break;
501                 }
502         }
503         if (key != NULL) {
504                 Identity *id = lookup_identity(key, version);
505                 if (id != NULL && id->death == 0 && death != 0) {
506                         id->death = death;
507                         success = 1;
508                 }
509                 key_free(key);
510         }
511         buffer_put_int(&e->output, 1);
512         buffer_put_char(&e->output,
513             success ? SSH_AGENT_SUCCESS : SSH_AGENT_FAILURE);
514 }
515
516 /* XXX todo: encrypt sensitive data with passphrase */
517 static void
518 process_lock_agent(SocketEntry *e, int lock)
519 {
520         char *passwd;
521         int success = 0;
522
523         passwd = buffer_get_string(&e->request, NULL);
524         if (locked && !lock && strcmp(passwd, lock_passwd) == 0) {
525                 locked = 0;
526                 memset(lock_passwd, 0, strlen(lock_passwd));
527                 xfree(lock_passwd);
528                 lock_passwd = NULL;
529                 success = 1;
530         } else if (!locked && lock) {
531                 locked = 1;
532                 lock_passwd = xstrdup(passwd);
533                 success = 1;
534         }
535         memset(passwd, 0, strlen(passwd));
536         xfree(passwd);
537  
538         buffer_put_int(&e->output, 1);
539         buffer_put_char(&e->output,
540             success ? SSH_AGENT_SUCCESS : SSH_AGENT_FAILURE);
541         return;
542 }
543
544 static void
545 no_identities(SocketEntry *e, u_int type)
546 {
547         Buffer msg;
548
549         buffer_init(&msg);
550         buffer_put_char(&msg,
551             (type == SSH_AGENTC_REQUEST_RSA_IDENTITIES) ?
552             SSH_AGENT_RSA_IDENTITIES_ANSWER : SSH2_AGENT_IDENTITIES_ANSWER);
553         buffer_put_int(&msg, 0);
554         buffer_put_int(&e->output, buffer_len(&msg));
555         buffer_append(&e->output, buffer_ptr(&msg), buffer_len(&msg));
556         buffer_free(&msg);
557 }
558
559 #ifdef SMARTCARD
560 static void
561 process_add_smartcard_key (SocketEntry *e)
562 {
563         Identity *id;
564         Idtab *tab;
565         Key **keys, *k;
566         char *sc_reader_id = NULL, *pin;
567         int i, version, success = 0;
568
569         sc_reader_id = buffer_get_string(&e->request, NULL);
570         pin = buffer_get_string(&e->request, NULL);
571         keys = sc_get_keys(sc_reader_id, pin);
572         xfree(sc_reader_id);
573         xfree(pin);
574
575         if (keys == NULL || keys[0] == NULL) {
576                 error("sc_get_keys failed");
577                 goto send;
578         }
579         for (i = 0; keys[i] != NULL; i++) {
580                 k = keys[i];
581                 version = k->type == KEY_RSA1 ? 1 : 2;
582                 tab = idtab_lookup(version);
583                 if (lookup_identity(k, version) == NULL) {
584                         id = xmalloc(sizeof(Identity));
585                         id->key = k;
586                         id->comment = xstrdup("smartcard key");
587                         id->death = 0;
588                         TAILQ_INSERT_TAIL(&tab->idlist, id, next);
589                         tab->nentries++;
590                         success = 1;
591                 } else {
592                         key_free(k);
593                 }
594                 keys[i] = NULL;
595         }
596         xfree(keys);
597 send:
598         buffer_put_int(&e->output, 1);
599         buffer_put_char(&e->output,
600             success ? SSH_AGENT_SUCCESS : SSH_AGENT_FAILURE);
601 }
602
603 static void
604 process_remove_smartcard_key(SocketEntry *e)
605 {
606         Identity *id;
607         Idtab *tab;
608         Key **keys, *k = NULL;
609         char *sc_reader_id = NULL, *pin;
610         int i, version, success = 0;
611
612         sc_reader_id = buffer_get_string(&e->request, NULL);
613         pin = buffer_get_string(&e->request, NULL);
614         keys = sc_get_keys(sc_reader_id, pin);
615         xfree(sc_reader_id);
616         xfree(pin);
617
618         if (keys == NULL || keys[0] == NULL) {
619                 error("sc_get_keys failed");
620                 goto send;
621         }
622         for (i = 0; keys[i] != NULL; i++) {
623                 k = keys[i];
624                 version = k->type == KEY_RSA1 ? 1 : 2;
625                 if ((id = lookup_identity(k, version)) != NULL) {
626                         tab = idtab_lookup(version);
627                         TAILQ_REMOVE(&tab->idlist, id, next);
628                         tab->nentries--;
629                         free_identity(id);
630                         success = 1;
631                 }
632                 key_free(k);
633                 keys[i] = NULL;
634         }
635         xfree(keys);
636 send:
637         buffer_put_int(&e->output, 1);
638         buffer_put_char(&e->output,
639             success ? SSH_AGENT_SUCCESS : SSH_AGENT_FAILURE);
640 }
641 #endif /* SMARTCARD */
642
643 /* dispatch incoming messages */
644
645 static void
646 process_message(SocketEntry *e)
647 {
648         u_int msg_len;
649         u_int type;
650         u_char *cp;
651
652         /* kill dead keys */
653         reaper();
654
655         if (buffer_len(&e->input) < 5)
656                 return;         /* Incomplete message. */
657         cp = buffer_ptr(&e->input);
658         msg_len = GET_32BIT(cp);
659         if (msg_len > 256 * 1024) {
660                 shutdown(e->fd, SHUT_RDWR);
661                 close(e->fd);
662                 e->type = AUTH_UNUSED;
663                 buffer_free(&e->input);
664                 buffer_free(&e->output);
665                 buffer_free(&e->request);
666                 return;
667         }
668         if (buffer_len(&e->input) < msg_len + 4)
669                 return;
670
671         /* move the current input to e->request */
672         buffer_consume(&e->input, 4);
673         buffer_clear(&e->request);
674         buffer_append(&e->request, buffer_ptr(&e->input), msg_len);
675         buffer_consume(&e->input, msg_len);
676         type = buffer_get_char(&e->request);
677
678         /* check wheter agent is locked */
679         if (locked && type != SSH_AGENTC_UNLOCK) {
680                 buffer_clear(&e->request);
681                 switch (type) {
682                 case SSH_AGENTC_REQUEST_RSA_IDENTITIES:
683                 case SSH2_AGENTC_REQUEST_IDENTITIES:
684                         /* send empty lists */
685                         no_identities(e, type);
686                         break;
687                 default:
688                         /* send a fail message for all other request types */
689                         buffer_put_int(&e->output, 1);
690                         buffer_put_char(&e->output, SSH_AGENT_FAILURE);
691                 }
692                 return;
693         }
694
695         debug("type %d", type);
696         switch (type) {
697         case SSH_AGENTC_LOCK:
698         case SSH_AGENTC_UNLOCK:
699                 process_lock_agent(e, type == SSH_AGENTC_LOCK);
700                 break;
701         /* ssh1 */
702         case SSH_AGENTC_RSA_CHALLENGE:
703                 process_authentication_challenge1(e);
704                 break;
705         case SSH_AGENTC_REQUEST_RSA_IDENTITIES:
706                 process_request_identities(e, 1);
707                 break;
708         case SSH_AGENTC_ADD_RSA_IDENTITY:
709                 process_add_identity(e, 1);
710                 break;
711         case SSH_AGENTC_REMOVE_RSA_IDENTITY:
712                 process_remove_identity(e, 1);
713                 break;
714         case SSH_AGENTC_REMOVE_ALL_RSA_IDENTITIES:
715                 process_remove_all_identities(e, 1);
716                 break;
717         case SSH_AGENTC_CONSTRAIN_IDENTITY1:
718                 process_constrain_identity(e, 1);
719                 break;
720         /* ssh2 */
721         case SSH2_AGENTC_SIGN_REQUEST:
722                 process_sign_request2(e);
723                 break;
724         case SSH2_AGENTC_REQUEST_IDENTITIES:
725                 process_request_identities(e, 2);
726                 break;
727         case SSH2_AGENTC_ADD_IDENTITY:
728                 process_add_identity(e, 2);
729                 break;
730         case SSH2_AGENTC_REMOVE_IDENTITY:
731                 process_remove_identity(e, 2);
732                 break;
733         case SSH2_AGENTC_REMOVE_ALL_IDENTITIES:
734                 process_remove_all_identities(e, 2);
735                 break;
736         case SSH_AGENTC_CONSTRAIN_IDENTITY:
737                 process_constrain_identity(e, 2);
738                 break;
739 #ifdef SMARTCARD
740         case SSH_AGENTC_ADD_SMARTCARD_KEY:
741                 process_add_smartcard_key(e);
742                 break;
743         case SSH_AGENTC_REMOVE_SMARTCARD_KEY:
744                 process_remove_smartcard_key(e);
745                 break;
746 #endif /* SMARTCARD */
747         default:
748                 /* Unknown message.  Respond with failure. */
749                 error("Unknown message %d", type);
750                 buffer_clear(&e->request);
751                 buffer_put_int(&e->output, 1);
752                 buffer_put_char(&e->output, SSH_AGENT_FAILURE);
753                 break;
754         }
755 }
756
757 static void
758 new_socket(sock_type type, int fd)
759 {
760         u_int i, old_alloc;
761         if (fcntl(fd, F_SETFL, O_NONBLOCK) < 0)
762                 error("fcntl O_NONBLOCK: %s", strerror(errno));
763
764         if (fd > max_fd)
765                 max_fd = fd;
766
767         for (i = 0; i < sockets_alloc; i++)
768                 if (sockets[i].type == AUTH_UNUSED) {
769                         sockets[i].fd = fd;
770                         sockets[i].type = type;
771                         buffer_init(&sockets[i].input);
772                         buffer_init(&sockets[i].output);
773                         buffer_init(&sockets[i].request);
774                         return;
775                 }
776         old_alloc = sockets_alloc;
777         sockets_alloc += 10;
778         if (sockets)
779                 sockets = xrealloc(sockets, sockets_alloc * sizeof(sockets[0]));
780         else
781                 sockets = xmalloc(sockets_alloc * sizeof(sockets[0]));
782         for (i = old_alloc; i < sockets_alloc; i++)
783                 sockets[i].type = AUTH_UNUSED;
784         sockets[old_alloc].type = type;
785         sockets[old_alloc].fd = fd;
786         buffer_init(&sockets[old_alloc].input);
787         buffer_init(&sockets[old_alloc].output);
788         buffer_init(&sockets[old_alloc].request);
789 }
790
791 static int
792 prepare_select(fd_set **fdrp, fd_set **fdwp, int *fdl, int *nallocp)
793 {
794         u_int i, sz;
795         int n = 0;
796
797         for (i = 0; i < sockets_alloc; i++) {
798                 switch (sockets[i].type) {
799                 case AUTH_SOCKET:
800                 case AUTH_CONNECTION:
801                         n = MAX(n, sockets[i].fd);
802                         break;
803                 case AUTH_UNUSED:
804                         break;
805                 default:
806                         fatal("Unknown socket type %d", sockets[i].type);
807                         break;
808                 }
809         }
810
811         sz = howmany(n+1, NFDBITS) * sizeof(fd_mask);
812         if (*fdrp == NULL || sz > *nallocp) {
813                 if (*fdrp)
814                         xfree(*fdrp);
815                 if (*fdwp)
816                         xfree(*fdwp);
817                 *fdrp = xmalloc(sz);
818                 *fdwp = xmalloc(sz);
819                 *nallocp = sz;
820         }
821         if (n < *fdl)
822                 debug("XXX shrink: %d < %d", n, *fdl);
823         *fdl = n;
824         memset(*fdrp, 0, sz);
825         memset(*fdwp, 0, sz);
826
827         for (i = 0; i < sockets_alloc; i++) {
828                 switch (sockets[i].type) {
829                 case AUTH_SOCKET:
830                 case AUTH_CONNECTION:
831                         FD_SET(sockets[i].fd, *fdrp);
832                         if (buffer_len(&sockets[i].output) > 0)
833                                 FD_SET(sockets[i].fd, *fdwp);
834                         break;
835                 default:
836                         break;
837                 }
838         }
839         return (1);
840 }
841
842 static void
843 after_select(fd_set *readset, fd_set *writeset)
844 {
845         u_int i;
846         int len, sock;
847         socklen_t slen;
848         char buf[1024];
849         struct sockaddr_un sunaddr;
850
851         for (i = 0; i < sockets_alloc; i++)
852                 switch (sockets[i].type) {
853                 case AUTH_UNUSED:
854                         break;
855                 case AUTH_SOCKET:
856                         if (FD_ISSET(sockets[i].fd, readset)) {
857                                 slen = sizeof(sunaddr);
858                                 sock = accept(sockets[i].fd,
859                                     (struct sockaddr *) &sunaddr, &slen);
860                                 if (sock < 0) {
861                                         error("accept from AUTH_SOCKET: %s",
862                                             strerror(errno));
863                                         break;
864                                 }
865                                 new_socket(AUTH_CONNECTION, sock);
866                         }
867                         break;
868                 case AUTH_CONNECTION:
869                         if (buffer_len(&sockets[i].output) > 0 &&
870                             FD_ISSET(sockets[i].fd, writeset)) {
871                                 do {
872                                         len = write(sockets[i].fd,
873                                             buffer_ptr(&sockets[i].output),
874                                             buffer_len(&sockets[i].output));
875                                         if (len == -1 && (errno == EAGAIN ||
876                                             errno == EINTR))
877                                                 continue;
878                                         break;
879                                 } while (1);
880                                 if (len <= 0) {
881                                         shutdown(sockets[i].fd, SHUT_RDWR);
882                                         close(sockets[i].fd);
883                                         sockets[i].type = AUTH_UNUSED;
884                                         buffer_free(&sockets[i].input);
885                                         buffer_free(&sockets[i].output);
886                                         buffer_free(&sockets[i].request);
887                                         break;
888                                 }
889                                 buffer_consume(&sockets[i].output, len);
890                         }
891                         if (FD_ISSET(sockets[i].fd, readset)) {
892                                 do {
893                                         len = read(sockets[i].fd, buf, sizeof(buf));
894                                         if (len == -1 && (errno == EAGAIN ||
895                                             errno == EINTR))
896                                                 continue;
897                                         break;
898                                 } while (1);
899                                 if (len <= 0) {
900                                         shutdown(sockets[i].fd, SHUT_RDWR);
901                                         close(sockets[i].fd);
902                                         sockets[i].type = AUTH_UNUSED;
903                                         buffer_free(&sockets[i].input);
904                                         buffer_free(&sockets[i].output);
905                                         buffer_free(&sockets[i].request);
906                                         break;
907                                 }
908                                 buffer_append(&sockets[i].input, buf, len);
909                                 process_message(&sockets[i]);
910                         }
911                         break;
912                 default:
913                         fatal("Unknown type %d", sockets[i].type);
914                 }
915 }
916
917 static void
918 cleanup_socket(void *p)
919 {
920         if (socket_name[0])
921                 unlink(socket_name);
922         if (socket_dir[0])
923                 rmdir(socket_dir);
924 }
925
926 static void
927 cleanup_exit(int i)
928 {
929         cleanup_socket(NULL);
930         exit(i);
931 }
932
933 static void
934 cleanup_handler(int sig)
935 {
936         cleanup_socket(NULL);
937         _exit(2);
938 }
939
940 static void
941 check_parent_exists(int sig)
942 {
943         int save_errno = errno;
944
945         if (parent_pid != -1 && kill(parent_pid, 0) < 0) {
946                 /* printf("Parent has died - Authentication agent exiting.\n"); */
947                 cleanup_handler(sig); /* safe */
948         }
949         signal(SIGALRM, check_parent_exists);
950         alarm(10);
951         errno = save_errno;
952 }
953
954 static void
955 usage(void)
956 {
957         fprintf(stderr, "Usage: %s [options] [command [args ...]]\n",
958             __progname);
959         fprintf(stderr, "Options:\n");
960         fprintf(stderr, "  -c          Generate C-shell commands on stdout.\n");
961         fprintf(stderr, "  -s          Generate Bourne shell commands on stdout.\n");
962         fprintf(stderr, "  -k          Kill the current agent.\n");
963         fprintf(stderr, "  -d          Debug mode.\n");
964         fprintf(stderr, "  -a socket   Bind agent socket to given name.\n");
965         exit(1);
966 }
967
968 int
969 main(int ac, char **av)
970 {
971         int sock, c_flag = 0, d_flag = 0, k_flag = 0, s_flag = 0, ch, nalloc;
972         struct sockaddr_un sunaddr;
973 #ifdef HAVE_SETRLIMIT
974         struct rlimit rlim;
975 #endif
976 #ifdef HAVE_CYGWIN
977         int prev_mask;
978 #endif
979         pid_t pid;
980         char *shell, *format, *pidstr, pidstrbuf[1 + 3 * sizeof pid];
981         char *agentsocket = NULL;
982         extern int optind;
983         fd_set *readsetp = NULL, *writesetp = NULL;
984
985         SSLeay_add_all_algorithms();
986
987         __progname = get_progname(av[0]);
988         init_rng();
989         seed_rng();
990
991 #ifdef __GNU_LIBRARY__
992         while ((ch = getopt(ac, av, "+cdksa:")) != -1) {
993 #else /* __GNU_LIBRARY__ */
994         while ((ch = getopt(ac, av, "cdksa:")) != -1) {
995 #endif /* __GNU_LIBRARY__ */
996                 switch (ch) {
997                 case 'c':
998                         if (s_flag)
999                                 usage();
1000                         c_flag++;
1001                         break;
1002                 case 'k':
1003                         k_flag++;
1004                         break;
1005                 case 's':
1006                         if (c_flag)
1007                                 usage();
1008                         s_flag++;
1009                         break;
1010                 case 'd':
1011                         if (d_flag)
1012                                 usage();
1013                         d_flag++;
1014                         break;
1015                 case 'a':
1016                         agentsocket = optarg;
1017                         break;
1018                 default:
1019                         usage();
1020                 }
1021         }
1022         ac -= optind;
1023         av += optind;
1024
1025         if (ac > 0 && (c_flag || k_flag || s_flag || d_flag))
1026                 usage();
1027
1028         if (ac == 0 && !c_flag && !s_flag) {
1029                 shell = getenv("SHELL");
1030                 if (shell != NULL && strncmp(shell + strlen(shell) - 3, "csh", 3) == 0)
1031                         c_flag = 1;
1032         }
1033         if (k_flag) {
1034                 pidstr = getenv(SSH_AGENTPID_ENV_NAME);
1035                 if (pidstr == NULL) {
1036                         fprintf(stderr, "%s not set, cannot kill agent\n",
1037                             SSH_AGENTPID_ENV_NAME);
1038                         exit(1);
1039                 }
1040                 pid = atoi(pidstr);
1041                 if (pid < 1) {
1042                         fprintf(stderr, "%s=\"%s\", which is not a good PID\n",
1043                             SSH_AGENTPID_ENV_NAME, pidstr);
1044                         exit(1);
1045                 }
1046                 if (kill(pid, SIGTERM) == -1) {
1047                         perror("kill");
1048                         exit(1);
1049                 }
1050                 format = c_flag ? "unsetenv %s;\n" : "unset %s;\n";
1051                 printf(format, SSH_AUTHSOCKET_ENV_NAME);
1052                 printf(format, SSH_AGENTPID_ENV_NAME);
1053                 printf("echo Agent pid %ld killed;\n", (long)pid);
1054                 exit(0);
1055         }
1056         parent_pid = getpid();
1057
1058         if (agentsocket == NULL) {
1059                 /* Create private directory for agent socket */
1060                 strlcpy(socket_dir, "/tmp/ssh-XXXXXXXX", sizeof socket_dir);
1061                 if (mkdtemp(socket_dir) == NULL) {
1062                         perror("mkdtemp: private socket dir");
1063                         exit(1);
1064                 }
1065                 snprintf(socket_name, sizeof socket_name, "%s/agent.%ld", socket_dir,
1066                     (long)parent_pid);
1067         } else {
1068                 /* Try to use specified agent socket */
1069                 socket_dir[0] = '\0';
1070                 strlcpy(socket_name, agentsocket, sizeof socket_name);
1071         }
1072
1073         /*
1074          * Create socket early so it will exist before command gets run from
1075          * the parent.
1076          */
1077         sock = socket(AF_UNIX, SOCK_STREAM, 0);
1078         if (sock < 0) {
1079                 perror("socket");
1080                 cleanup_exit(1);
1081         }
1082         memset(&sunaddr, 0, sizeof(sunaddr));
1083         sunaddr.sun_family = AF_UNIX;
1084         strlcpy(sunaddr.sun_path, socket_name, sizeof(sunaddr.sun_path));
1085 #ifdef HAVE_CYGWIN
1086         prev_mask = umask(0177);
1087 #endif
1088         if (bind(sock, (struct sockaddr *) & sunaddr, sizeof(sunaddr)) < 0) {
1089                 perror("bind");
1090 #ifdef HAVE_CYGWIN
1091                 umask(prev_mask);
1092 #endif
1093                 cleanup_exit(1);
1094         }
1095 #ifdef HAVE_CYGWIN
1096         umask(prev_mask);
1097 #endif
1098         if (listen(sock, 5) < 0) {
1099                 perror("listen");
1100                 cleanup_exit(1);
1101         }
1102
1103         /*
1104          * Fork, and have the parent execute the command, if any, or present
1105          * the socket data.  The child continues as the authentication agent.
1106          */
1107         if (d_flag) {
1108                 log_init(__progname, SYSLOG_LEVEL_DEBUG1, SYSLOG_FACILITY_AUTH, 1);
1109                 format = c_flag ? "setenv %s %s;\n" : "%s=%s; export %s;\n";
1110                 printf(format, SSH_AUTHSOCKET_ENV_NAME, socket_name,
1111                     SSH_AUTHSOCKET_ENV_NAME);
1112                 printf("echo Agent pid %ld;\n", (long)parent_pid);
1113                 goto skip;
1114         }
1115         pid = fork();
1116         if (pid == -1) {
1117                 perror("fork");
1118                 cleanup_exit(1);
1119         }
1120         if (pid != 0) {         /* Parent - execute the given command. */
1121                 close(sock);
1122                 snprintf(pidstrbuf, sizeof pidstrbuf, "%ld", (long)pid);
1123                 if (ac == 0) {
1124                         format = c_flag ? "setenv %s %s;\n" : "%s=%s; export %s;\n";
1125                         printf(format, SSH_AUTHSOCKET_ENV_NAME, socket_name,
1126                             SSH_AUTHSOCKET_ENV_NAME);
1127                         printf(format, SSH_AGENTPID_ENV_NAME, pidstrbuf,
1128                             SSH_AGENTPID_ENV_NAME);
1129                         printf("echo Agent pid %ld;\n", (long)pid);
1130                         exit(0);
1131                 }
1132                 if (setenv(SSH_AUTHSOCKET_ENV_NAME, socket_name, 1) == -1 ||
1133                     setenv(SSH_AGENTPID_ENV_NAME, pidstrbuf, 1) == -1) {
1134                         perror("setenv");
1135                         exit(1);
1136                 }
1137                 execvp(av[0], av);
1138                 perror(av[0]);
1139                 exit(1);
1140         }
1141         /* child */
1142         log_init(__progname, SYSLOG_LEVEL_INFO, SYSLOG_FACILITY_AUTH, 0);
1143
1144         if (setsid() == -1) {
1145                 error("setsid: %s", strerror(errno));
1146                 cleanup_exit(1);
1147         }
1148
1149         (void)chdir("/");
1150         close(0);
1151         close(1);
1152         close(2);
1153
1154 #ifdef HAVE_SETRLIMIT
1155         /* deny core dumps, since memory contains unencrypted private keys */
1156         rlim.rlim_cur = rlim.rlim_max = 0;
1157         if (setrlimit(RLIMIT_CORE, &rlim) < 0) {
1158                 error("setrlimit RLIMIT_CORE: %s", strerror(errno));
1159                 cleanup_exit(1);
1160         }
1161 #endif
1162
1163 skip:
1164         fatal_add_cleanup(cleanup_socket, NULL);
1165         new_socket(AUTH_SOCKET, sock);
1166         if (ac > 0) {
1167                 signal(SIGALRM, check_parent_exists);
1168                 alarm(10);
1169         }
1170         idtab_init();
1171         if (!d_flag)
1172                 signal(SIGINT, SIG_IGN);
1173         signal(SIGPIPE, SIG_IGN);
1174         signal(SIGHUP, cleanup_handler);
1175         signal(SIGTERM, cleanup_handler);
1176         nalloc = 0;
1177
1178         while (1) {
1179                 prepare_select(&readsetp, &writesetp, &max_fd, &nalloc);
1180                 if (select(max_fd + 1, readsetp, writesetp, NULL, NULL) < 0) {
1181                         if (errno == EINTR)
1182                                 continue;
1183                         fatal("select: %s", strerror(errno));
1184                 }
1185                 after_select(readsetp, writesetp);
1186         }
1187         /* NOTREACHED */
1188 }
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