]> andersk Git - openssh.git/blob - channels.c
- markus@cvs.openbsd.org 2003/06/23 09:02:44
[openssh.git] / channels.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  * This file contains functions for generic socket connection forwarding.
6  * There is also code for initiating connection forwarding for X11 connections,
7  * arbitrary tcp/ip connections, and the authentication agent connection.
8  *
9  * As far as I am concerned, the code I have written for this software
10  * can be used freely for any purpose.  Any derived versions of this
11  * software must be clearly marked as such, and if the derived work is
12  * incompatible with the protocol description in the RFC file, it must be
13  * called by a name other than "ssh" or "Secure Shell".
14  *
15  * SSH2 support added by Markus Friedl.
16  * Copyright (c) 1999, 2000, 2001, 2002 Markus Friedl.  All rights reserved.
17  * Copyright (c) 1999 Dug Song.  All rights reserved.
18  * Copyright (c) 1999 Theo de Raadt.  All rights reserved.
19  *
20  * Redistribution and use in source and binary forms, with or without
21  * modification, are permitted provided that the following conditions
22  * are met:
23  * 1. Redistributions of source code must retain the above copyright
24  *    notice, this list of conditions and the following disclaimer.
25  * 2. Redistributions in binary form must reproduce the above copyright
26  *    notice, this list of conditions and the following disclaimer in the
27  *    documentation and/or other materials provided with the distribution.
28  *
29  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
30  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
31  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
32  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
33  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
34  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
35  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
36  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
37  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
38  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
39  */
40
41 #include "includes.h"
42 RCSID("$OpenBSD: channels.c,v 1.190 2003/05/11 20:30:24 markus Exp $");
43
44 #include "ssh.h"
45 #include "ssh1.h"
46 #include "ssh2.h"
47 #include "packet.h"
48 #include "xmalloc.h"
49 #include "log.h"
50 #include "misc.h"
51 #include "channels.h"
52 #include "compat.h"
53 #include "canohost.h"
54 #include "key.h"
55 #include "authfd.h"
56 #include "pathnames.h"
57
58
59 /* -- channel core */
60
61 /*
62  * Pointer to an array containing all allocated channels.  The array is
63  * dynamically extended as needed.
64  */
65 static Channel **channels = NULL;
66
67 /*
68  * Size of the channel array.  All slots of the array must always be
69  * initialized (at least the type field); unused slots set to NULL
70  */
71 static int channels_alloc = 0;
72
73 /*
74  * Maximum file descriptor value used in any of the channels.  This is
75  * updated in channel_new.
76  */
77 static int channel_max_fd = 0;
78
79
80 /* -- tcp forwarding */
81
82 /*
83  * Data structure for storing which hosts are permitted for forward requests.
84  * The local sides of any remote forwards are stored in this array to prevent
85  * a corrupt remote server from accessing arbitrary TCP/IP ports on our local
86  * network (which might be behind a firewall).
87  */
88 typedef struct {
89         char *host_to_connect;          /* Connect to 'host'. */
90         u_short port_to_connect;        /* Connect to 'port'. */
91         u_short listen_port;            /* Remote side should listen port number. */
92 } ForwardPermission;
93
94 /* List of all permitted host/port pairs to connect. */
95 static ForwardPermission permitted_opens[SSH_MAX_FORWARDS_PER_DIRECTION];
96
97 /* Number of permitted host/port pairs in the array. */
98 static int num_permitted_opens = 0;
99 /*
100  * If this is true, all opens are permitted.  This is the case on the server
101  * on which we have to trust the client anyway, and the user could do
102  * anything after logging in anyway.
103  */
104 static int all_opens_permitted = 0;
105
106
107 /* -- X11 forwarding */
108
109 /* Maximum number of fake X11 displays to try. */
110 #define MAX_DISPLAYS  1000
111
112 /* Saved X11 authentication protocol name. */
113 static char *x11_saved_proto = NULL;
114
115 /* Saved X11 authentication data.  This is the real data. */
116 static char *x11_saved_data = NULL;
117 static u_int x11_saved_data_len = 0;
118
119 /*
120  * Fake X11 authentication data.  This is what the server will be sending us;
121  * we should replace any occurrences of this by the real data.
122  */
123 static char *x11_fake_data = NULL;
124 static u_int x11_fake_data_len;
125
126
127 /* -- agent forwarding */
128
129 #define NUM_SOCKS       10
130
131 /* AF_UNSPEC or AF_INET or AF_INET6 */
132 static int IPv4or6 = AF_UNSPEC;
133
134 /* helper */
135 static void port_open_helper(Channel *c, char *rtype);
136
137 /* -- channel core */
138
139 Channel *
140 channel_lookup(int id)
141 {
142         Channel *c;
143
144         if (id < 0 || id >= channels_alloc) {
145                 logit("channel_lookup: %d: bad id", id);
146                 return NULL;
147         }
148         c = channels[id];
149         if (c == NULL) {
150                 logit("channel_lookup: %d: bad id: channel free", id);
151                 return NULL;
152         }
153         return c;
154 }
155
156 /*
157  * Register filedescriptors for a channel, used when allocating a channel or
158  * when the channel consumer/producer is ready, e.g. shell exec'd
159  */
160
161 static void
162 channel_register_fds(Channel *c, int rfd, int wfd, int efd,
163     int extusage, int nonblock)
164 {
165         /* Update the maximum file descriptor value. */
166         channel_max_fd = MAX(channel_max_fd, rfd);
167         channel_max_fd = MAX(channel_max_fd, wfd);
168         channel_max_fd = MAX(channel_max_fd, efd);
169
170         /* XXX set close-on-exec -markus */
171
172         c->rfd = rfd;
173         c->wfd = wfd;
174         c->sock = (rfd == wfd) ? rfd : -1;
175         c->efd = efd;
176         c->extended_usage = extusage;
177
178         /* XXX ugly hack: nonblock is only set by the server */
179         if (nonblock && isatty(c->rfd)) {
180                 debug("channel %d: rfd %d isatty", c->self, c->rfd);
181                 c->isatty = 1;
182                 if (!isatty(c->wfd)) {
183                         error("channel %d: wfd %d is not a tty?",
184                             c->self, c->wfd);
185                 }
186         } else {
187                 c->isatty = 0;
188         }
189         c->wfd_isatty = isatty(c->wfd);
190
191         /* enable nonblocking mode */
192         if (nonblock) {
193                 if (rfd != -1)
194                         set_nonblock(rfd);
195                 if (wfd != -1)
196                         set_nonblock(wfd);
197                 if (efd != -1)
198                         set_nonblock(efd);
199         }
200 }
201
202 /*
203  * Allocate a new channel object and set its type and socket. This will cause
204  * remote_name to be freed.
205  */
206
207 Channel *
208 channel_new(char *ctype, int type, int rfd, int wfd, int efd,
209     u_int window, u_int maxpack, int extusage, char *remote_name, int nonblock)
210 {
211         int i, found;
212         Channel *c;
213
214         /* Do initial allocation if this is the first call. */
215         if (channels_alloc == 0) {
216                 channels_alloc = 10;
217                 channels = xmalloc(channels_alloc * sizeof(Channel *));
218                 for (i = 0; i < channels_alloc; i++)
219                         channels[i] = NULL;
220                 fatal_add_cleanup((void (*) (void *)) channel_free_all, NULL);
221         }
222         /* Try to find a free slot where to put the new channel. */
223         for (found = -1, i = 0; i < channels_alloc; i++)
224                 if (channels[i] == NULL) {
225                         /* Found a free slot. */
226                         found = i;
227                         break;
228                 }
229         if (found == -1) {
230                 /* There are no free slots.  Take last+1 slot and expand the array.  */
231                 found = channels_alloc;
232                 channels_alloc += 10;
233                 if (channels_alloc > 10000)
234                         fatal("channel_new: internal error: channels_alloc %d "
235                             "too big.", channels_alloc);
236                 debug2("channel: expanding %d", channels_alloc);
237                 channels = xrealloc(channels, channels_alloc * sizeof(Channel *));
238                 for (i = found; i < channels_alloc; i++)
239                         channels[i] = NULL;
240         }
241         /* Initialize and return new channel. */
242         c = channels[found] = xmalloc(sizeof(Channel));
243         memset(c, 0, sizeof(Channel));
244         buffer_init(&c->input);
245         buffer_init(&c->output);
246         buffer_init(&c->extended);
247         c->ostate = CHAN_OUTPUT_OPEN;
248         c->istate = CHAN_INPUT_OPEN;
249         c->flags = 0;
250         channel_register_fds(c, rfd, wfd, efd, extusage, nonblock);
251         c->self = found;
252         c->type = type;
253         c->ctype = ctype;
254         c->local_window = window;
255         c->local_window_max = window;
256         c->local_consumed = 0;
257         c->local_maxpacket = maxpack;
258         c->remote_id = -1;
259         c->remote_name = xstrdup(remote_name);
260         c->remote_window = 0;
261         c->remote_maxpacket = 0;
262         c->force_drain = 0;
263         c->single_connection = 0;
264         c->detach_user = NULL;
265         c->confirm = NULL;
266         c->input_filter = NULL;
267         debug("channel %d: new [%s]", found, remote_name);
268         return c;
269 }
270
271 static int
272 channel_find_maxfd(void)
273 {
274         int i, max = 0;
275         Channel *c;
276
277         for (i = 0; i < channels_alloc; i++) {
278                 c = channels[i];
279                 if (c != NULL) {
280                         max = MAX(max, c->rfd);
281                         max = MAX(max, c->wfd);
282                         max = MAX(max, c->efd);
283                 }
284         }
285         return max;
286 }
287
288 int
289 channel_close_fd(int *fdp)
290 {
291         int ret = 0, fd = *fdp;
292
293         if (fd != -1) {
294                 ret = close(fd);
295                 *fdp = -1;
296                 if (fd == channel_max_fd)
297                         channel_max_fd = channel_find_maxfd();
298         }
299         return ret;
300 }
301
302 /* Close all channel fd/socket. */
303
304 static void
305 channel_close_fds(Channel *c)
306 {
307         debug3("channel_close_fds: channel %d: r %d w %d e %d",
308             c->self, c->rfd, c->wfd, c->efd);
309
310         channel_close_fd(&c->sock);
311         channel_close_fd(&c->rfd);
312         channel_close_fd(&c->wfd);
313         channel_close_fd(&c->efd);
314 }
315
316 /* Free the channel and close its fd/socket. */
317
318 void
319 channel_free(Channel *c)
320 {
321         char *s;
322         int i, n;
323
324         for (n = 0, i = 0; i < channels_alloc; i++)
325                 if (channels[i])
326                         n++;
327         debug("channel_free: channel %d: %s, nchannels %d", c->self,
328             c->remote_name ? c->remote_name : "???", n);
329
330         s = channel_open_message();
331         debug3("channel_free: status: %s", s);
332         xfree(s);
333
334         if (c->sock != -1)
335                 shutdown(c->sock, SHUT_RDWR);
336         channel_close_fds(c);
337         buffer_free(&c->input);
338         buffer_free(&c->output);
339         buffer_free(&c->extended);
340         if (c->remote_name) {
341                 xfree(c->remote_name);
342                 c->remote_name = NULL;
343         }
344         channels[c->self] = NULL;
345         xfree(c);
346 }
347
348 void
349 channel_free_all(void)
350 {
351         int i;
352
353         for (i = 0; i < channels_alloc; i++)
354                 if (channels[i] != NULL)
355                         channel_free(channels[i]);
356 }
357
358 /*
359  * Closes the sockets/fds of all channels.  This is used to close extra file
360  * descriptors after a fork.
361  */
362
363 void
364 channel_close_all(void)
365 {
366         int i;
367
368         for (i = 0; i < channels_alloc; i++)
369                 if (channels[i] != NULL)
370                         channel_close_fds(channels[i]);
371 }
372
373 /*
374  * Stop listening to channels.
375  */
376
377 void
378 channel_stop_listening(void)
379 {
380         int i;
381         Channel *c;
382
383         for (i = 0; i < channels_alloc; i++) {
384                 c = channels[i];
385                 if (c != NULL) {
386                         switch (c->type) {
387                         case SSH_CHANNEL_AUTH_SOCKET:
388                         case SSH_CHANNEL_PORT_LISTENER:
389                         case SSH_CHANNEL_RPORT_LISTENER:
390                         case SSH_CHANNEL_X11_LISTENER:
391                                 channel_close_fd(&c->sock);
392                                 channel_free(c);
393                                 break;
394                         }
395                 }
396         }
397 }
398
399 /*
400  * Returns true if no channel has too much buffered data, and false if one or
401  * more channel is overfull.
402  */
403
404 int
405 channel_not_very_much_buffered_data(void)
406 {
407         u_int i;
408         Channel *c;
409
410         for (i = 0; i < channels_alloc; i++) {
411                 c = channels[i];
412                 if (c != NULL && c->type == SSH_CHANNEL_OPEN) {
413 #if 0
414                         if (!compat20 &&
415                             buffer_len(&c->input) > packet_get_maxsize()) {
416                                 debug2("channel %d: big input buffer %d",
417                                     c->self, buffer_len(&c->input));
418                                 return 0;
419                         }
420 #endif
421                         if (buffer_len(&c->output) > packet_get_maxsize()) {
422                                 debug2("channel %d: big output buffer %d > %d",
423                                     c->self, buffer_len(&c->output),
424                                     packet_get_maxsize());
425                                 return 0;
426                         }
427                 }
428         }
429         return 1;
430 }
431
432 /* Returns true if any channel is still open. */
433
434 int
435 channel_still_open(void)
436 {
437         int i;
438         Channel *c;
439
440         for (i = 0; i < channels_alloc; i++) {
441                 c = channels[i];
442                 if (c == NULL)
443                         continue;
444                 switch (c->type) {
445                 case SSH_CHANNEL_X11_LISTENER:
446                 case SSH_CHANNEL_PORT_LISTENER:
447                 case SSH_CHANNEL_RPORT_LISTENER:
448                 case SSH_CHANNEL_CLOSED:
449                 case SSH_CHANNEL_AUTH_SOCKET:
450                 case SSH_CHANNEL_DYNAMIC:
451                 case SSH_CHANNEL_CONNECTING:
452                 case SSH_CHANNEL_ZOMBIE:
453                         continue;
454                 case SSH_CHANNEL_LARVAL:
455                         if (!compat20)
456                                 fatal("cannot happen: SSH_CHANNEL_LARVAL");
457                         continue;
458                 case SSH_CHANNEL_OPENING:
459                 case SSH_CHANNEL_OPEN:
460                 case SSH_CHANNEL_X11_OPEN:
461                         return 1;
462                 case SSH_CHANNEL_INPUT_DRAINING:
463                 case SSH_CHANNEL_OUTPUT_DRAINING:
464                         if (!compat13)
465                                 fatal("cannot happen: OUT_DRAIN");
466                         return 1;
467                 default:
468                         fatal("channel_still_open: bad channel type %d", c->type);
469                         /* NOTREACHED */
470                 }
471         }
472         return 0;
473 }
474
475 /* Returns the id of an open channel suitable for keepaliving */
476
477 int
478 channel_find_open(void)
479 {
480         int i;
481         Channel *c;
482
483         for (i = 0; i < channels_alloc; i++) {
484                 c = channels[i];
485                 if (c == NULL)
486                         continue;
487                 switch (c->type) {
488                 case SSH_CHANNEL_CLOSED:
489                 case SSH_CHANNEL_DYNAMIC:
490                 case SSH_CHANNEL_X11_LISTENER:
491                 case SSH_CHANNEL_PORT_LISTENER:
492                 case SSH_CHANNEL_RPORT_LISTENER:
493                 case SSH_CHANNEL_OPENING:
494                 case SSH_CHANNEL_CONNECTING:
495                 case SSH_CHANNEL_ZOMBIE:
496                         continue;
497                 case SSH_CHANNEL_LARVAL:
498                 case SSH_CHANNEL_AUTH_SOCKET:
499                 case SSH_CHANNEL_OPEN:
500                 case SSH_CHANNEL_X11_OPEN:
501                         return i;
502                 case SSH_CHANNEL_INPUT_DRAINING:
503                 case SSH_CHANNEL_OUTPUT_DRAINING:
504                         if (!compat13)
505                                 fatal("cannot happen: OUT_DRAIN");
506                         return i;
507                 default:
508                         fatal("channel_find_open: bad channel type %d", c->type);
509                         /* NOTREACHED */
510                 }
511         }
512         return -1;
513 }
514
515
516 /*
517  * Returns a message describing the currently open forwarded connections,
518  * suitable for sending to the client.  The message contains crlf pairs for
519  * newlines.
520  */
521
522 char *
523 channel_open_message(void)
524 {
525         Buffer buffer;
526         Channel *c;
527         char buf[1024], *cp;
528         int i;
529
530         buffer_init(&buffer);
531         snprintf(buf, sizeof buf, "The following connections are open:\r\n");
532         buffer_append(&buffer, buf, strlen(buf));
533         for (i = 0; i < channels_alloc; i++) {
534                 c = channels[i];
535                 if (c == NULL)
536                         continue;
537                 switch (c->type) {
538                 case SSH_CHANNEL_X11_LISTENER:
539                 case SSH_CHANNEL_PORT_LISTENER:
540                 case SSH_CHANNEL_RPORT_LISTENER:
541                 case SSH_CHANNEL_CLOSED:
542                 case SSH_CHANNEL_AUTH_SOCKET:
543                 case SSH_CHANNEL_ZOMBIE:
544                         continue;
545                 case SSH_CHANNEL_LARVAL:
546                 case SSH_CHANNEL_OPENING:
547                 case SSH_CHANNEL_CONNECTING:
548                 case SSH_CHANNEL_DYNAMIC:
549                 case SSH_CHANNEL_OPEN:
550                 case SSH_CHANNEL_X11_OPEN:
551                 case SSH_CHANNEL_INPUT_DRAINING:
552                 case SSH_CHANNEL_OUTPUT_DRAINING:
553                         snprintf(buf, sizeof buf, "  #%d %.300s (t%d r%d i%d/%d o%d/%d fd %d/%d)\r\n",
554                             c->self, c->remote_name,
555                             c->type, c->remote_id,
556                             c->istate, buffer_len(&c->input),
557                             c->ostate, buffer_len(&c->output),
558                             c->rfd, c->wfd);
559                         buffer_append(&buffer, buf, strlen(buf));
560                         continue;
561                 default:
562                         fatal("channel_open_message: bad channel type %d", c->type);
563                         /* NOTREACHED */
564                 }
565         }
566         buffer_append(&buffer, "\0", 1);
567         cp = xstrdup(buffer_ptr(&buffer));
568         buffer_free(&buffer);
569         return cp;
570 }
571
572 void
573 channel_send_open(int id)
574 {
575         Channel *c = channel_lookup(id);
576
577         if (c == NULL) {
578                 logit("channel_send_open: %d: bad id", id);
579                 return;
580         }
581         debug2("channel %d: send open", id);
582         packet_start(SSH2_MSG_CHANNEL_OPEN);
583         packet_put_cstring(c->ctype);
584         packet_put_int(c->self);
585         packet_put_int(c->local_window);
586         packet_put_int(c->local_maxpacket);
587         packet_send();
588 }
589
590 void
591 channel_request_start(int id, char *service, int wantconfirm)
592 {
593         Channel *c = channel_lookup(id);
594
595         if (c == NULL) {
596                 logit("channel_request_start: %d: unknown channel id", id);
597                 return;
598         }
599         debug("channel %d: request %s", id, service) ;
600         packet_start(SSH2_MSG_CHANNEL_REQUEST);
601         packet_put_int(c->remote_id);
602         packet_put_cstring(service);
603         packet_put_char(wantconfirm);
604 }
605 void
606 channel_register_confirm(int id, channel_callback_fn *fn)
607 {
608         Channel *c = channel_lookup(id);
609
610         if (c == NULL) {
611                 logit("channel_register_comfirm: %d: bad id", id);
612                 return;
613         }
614         c->confirm = fn;
615 }
616 void
617 channel_register_cleanup(int id, channel_callback_fn *fn)
618 {
619         Channel *c = channel_lookup(id);
620
621         if (c == NULL) {
622                 logit("channel_register_cleanup: %d: bad id", id);
623                 return;
624         }
625         c->detach_user = fn;
626 }
627 void
628 channel_cancel_cleanup(int id)
629 {
630         Channel *c = channel_lookup(id);
631
632         if (c == NULL) {
633                 logit("channel_cancel_cleanup: %d: bad id", id);
634                 return;
635         }
636         c->detach_user = NULL;
637 }
638 void
639 channel_register_filter(int id, channel_filter_fn *fn)
640 {
641         Channel *c = channel_lookup(id);
642
643         if (c == NULL) {
644                 logit("channel_register_filter: %d: bad id", id);
645                 return;
646         }
647         c->input_filter = fn;
648 }
649
650 void
651 channel_set_fds(int id, int rfd, int wfd, int efd,
652     int extusage, int nonblock, u_int window_max)
653 {
654         Channel *c = channel_lookup(id);
655
656         if (c == NULL || c->type != SSH_CHANNEL_LARVAL)
657                 fatal("channel_activate for non-larval channel %d.", id);
658         channel_register_fds(c, rfd, wfd, efd, extusage, nonblock);
659         c->type = SSH_CHANNEL_OPEN;
660         c->local_window = c->local_window_max = window_max;
661         packet_start(SSH2_MSG_CHANNEL_WINDOW_ADJUST);
662         packet_put_int(c->remote_id);
663         packet_put_int(c->local_window);
664         packet_send();
665 }
666
667 /*
668  * 'channel_pre*' are called just before select() to add any bits relevant to
669  * channels in the select bitmasks.
670  */
671 /*
672  * 'channel_post*': perform any appropriate operations for channels which
673  * have events pending.
674  */
675 typedef void chan_fn(Channel *c, fd_set * readset, fd_set * writeset);
676 chan_fn *channel_pre[SSH_CHANNEL_MAX_TYPE];
677 chan_fn *channel_post[SSH_CHANNEL_MAX_TYPE];
678
679 static void
680 channel_pre_listener(Channel *c, fd_set * readset, fd_set * writeset)
681 {
682         FD_SET(c->sock, readset);
683 }
684
685 static void
686 channel_pre_connecting(Channel *c, fd_set * readset, fd_set * writeset)
687 {
688         debug3("channel %d: waiting for connection", c->self);
689         FD_SET(c->sock, writeset);
690 }
691
692 static void
693 channel_pre_open_13(Channel *c, fd_set * readset, fd_set * writeset)
694 {
695         if (buffer_len(&c->input) < packet_get_maxsize())
696                 FD_SET(c->sock, readset);
697         if (buffer_len(&c->output) > 0)
698                 FD_SET(c->sock, writeset);
699 }
700
701 static void
702 channel_pre_open(Channel *c, fd_set * readset, fd_set * writeset)
703 {
704         u_int limit = compat20 ? c->remote_window : packet_get_maxsize();
705
706         if (c->istate == CHAN_INPUT_OPEN &&
707             limit > 0 &&
708             buffer_len(&c->input) < limit)
709                 FD_SET(c->rfd, readset);
710         if (c->ostate == CHAN_OUTPUT_OPEN ||
711             c->ostate == CHAN_OUTPUT_WAIT_DRAIN) {
712                 if (buffer_len(&c->output) > 0) {
713                         FD_SET(c->wfd, writeset);
714                 } else if (c->ostate == CHAN_OUTPUT_WAIT_DRAIN) {
715                         if (CHANNEL_EFD_OUTPUT_ACTIVE(c))
716                                debug2("channel %d: obuf_empty delayed efd %d/(%d)",
717                                    c->self, c->efd, buffer_len(&c->extended));
718                         else
719                                 chan_obuf_empty(c);
720                 }
721         }
722         /** XXX check close conditions, too */
723         if (compat20 && c->efd != -1) {
724                 if (c->extended_usage == CHAN_EXTENDED_WRITE &&
725                     buffer_len(&c->extended) > 0)
726                         FD_SET(c->efd, writeset);
727                 else if (!(c->flags & CHAN_EOF_SENT) &&
728                     c->extended_usage == CHAN_EXTENDED_READ &&
729                     buffer_len(&c->extended) < c->remote_window)
730                         FD_SET(c->efd, readset);
731         }
732 }
733
734 static void
735 channel_pre_input_draining(Channel *c, fd_set * readset, fd_set * writeset)
736 {
737         if (buffer_len(&c->input) == 0) {
738                 packet_start(SSH_MSG_CHANNEL_CLOSE);
739                 packet_put_int(c->remote_id);
740                 packet_send();
741                 c->type = SSH_CHANNEL_CLOSED;
742                 debug("channel %d: closing after input drain.", c->self);
743         }
744 }
745
746 static void
747 channel_pre_output_draining(Channel *c, fd_set * readset, fd_set * writeset)
748 {
749         if (buffer_len(&c->output) == 0)
750                 chan_mark_dead(c);
751         else
752                 FD_SET(c->sock, writeset);
753 }
754
755 /*
756  * This is a special state for X11 authentication spoofing.  An opened X11
757  * connection (when authentication spoofing is being done) remains in this
758  * state until the first packet has been completely read.  The authentication
759  * data in that packet is then substituted by the real data if it matches the
760  * fake data, and the channel is put into normal mode.
761  * XXX All this happens at the client side.
762  * Returns: 0 = need more data, -1 = wrong cookie, 1 = ok
763  */
764 static int
765 x11_open_helper(Buffer *b)
766 {
767         u_char *ucp;
768         u_int proto_len, data_len;
769
770         /* Check if the fixed size part of the packet is in buffer. */
771         if (buffer_len(b) < 12)
772                 return 0;
773
774         /* Parse the lengths of variable-length fields. */
775         ucp = buffer_ptr(b);
776         if (ucp[0] == 0x42) {   /* Byte order MSB first. */
777                 proto_len = 256 * ucp[6] + ucp[7];
778                 data_len = 256 * ucp[8] + ucp[9];
779         } else if (ucp[0] == 0x6c) {    /* Byte order LSB first. */
780                 proto_len = ucp[6] + 256 * ucp[7];
781                 data_len = ucp[8] + 256 * ucp[9];
782         } else {
783                 debug("Initial X11 packet contains bad byte order byte: 0x%x",
784                     ucp[0]);
785                 return -1;
786         }
787
788         /* Check if the whole packet is in buffer. */
789         if (buffer_len(b) <
790             12 + ((proto_len + 3) & ~3) + ((data_len + 3) & ~3))
791                 return 0;
792
793         /* Check if authentication protocol matches. */
794         if (proto_len != strlen(x11_saved_proto) ||
795             memcmp(ucp + 12, x11_saved_proto, proto_len) != 0) {
796                 debug("X11 connection uses different authentication protocol.");
797                 return -1;
798         }
799         /* Check if authentication data matches our fake data. */
800         if (data_len != x11_fake_data_len ||
801             memcmp(ucp + 12 + ((proto_len + 3) & ~3),
802                 x11_fake_data, x11_fake_data_len) != 0) {
803                 debug("X11 auth data does not match fake data.");
804                 return -1;
805         }
806         /* Check fake data length */
807         if (x11_fake_data_len != x11_saved_data_len) {
808                 error("X11 fake_data_len %d != saved_data_len %d",
809                     x11_fake_data_len, x11_saved_data_len);
810                 return -1;
811         }
812         /*
813          * Received authentication protocol and data match
814          * our fake data. Substitute the fake data with real
815          * data.
816          */
817         memcpy(ucp + 12 + ((proto_len + 3) & ~3),
818             x11_saved_data, x11_saved_data_len);
819         return 1;
820 }
821
822 static void
823 channel_pre_x11_open_13(Channel *c, fd_set * readset, fd_set * writeset)
824 {
825         int ret = x11_open_helper(&c->output);
826
827         if (ret == 1) {
828                 /* Start normal processing for the channel. */
829                 c->type = SSH_CHANNEL_OPEN;
830                 channel_pre_open_13(c, readset, writeset);
831         } else if (ret == -1) {
832                 /*
833                  * We have received an X11 connection that has bad
834                  * authentication information.
835                  */
836                 logit("X11 connection rejected because of wrong authentication.");
837                 buffer_clear(&c->input);
838                 buffer_clear(&c->output);
839                 channel_close_fd(&c->sock);
840                 c->sock = -1;
841                 c->type = SSH_CHANNEL_CLOSED;
842                 packet_start(SSH_MSG_CHANNEL_CLOSE);
843                 packet_put_int(c->remote_id);
844                 packet_send();
845         }
846 }
847
848 static void
849 channel_pre_x11_open(Channel *c, fd_set * readset, fd_set * writeset)
850 {
851         int ret = x11_open_helper(&c->output);
852
853         /* c->force_drain = 1; */
854
855         if (ret == 1) {
856                 c->type = SSH_CHANNEL_OPEN;
857                 channel_pre_open(c, readset, writeset);
858         } else if (ret == -1) {
859                 logit("X11 connection rejected because of wrong authentication.");
860                 debug("X11 rejected %d i%d/o%d", c->self, c->istate, c->ostate);
861                 chan_read_failed(c);
862                 buffer_clear(&c->input);
863                 chan_ibuf_empty(c);
864                 buffer_clear(&c->output);
865                 /* for proto v1, the peer will send an IEOF */
866                 if (compat20)
867                         chan_write_failed(c);
868                 else
869                         c->type = SSH_CHANNEL_OPEN;
870                 debug("X11 closed %d i%d/o%d", c->self, c->istate, c->ostate);
871         }
872 }
873
874 /* try to decode a socks4 header */
875 static int
876 channel_decode_socks4(Channel *c, fd_set * readset, fd_set * writeset)
877 {
878         char *p, *host;
879         int len, have, i, found;
880         char username[256];
881         struct {
882                 u_int8_t version;
883                 u_int8_t command;
884                 u_int16_t dest_port;
885                 struct in_addr dest_addr;
886         } s4_req, s4_rsp;
887
888         debug2("channel %d: decode socks4", c->self);
889
890         have = buffer_len(&c->input);
891         len = sizeof(s4_req);
892         if (have < len)
893                 return 0;
894         p = buffer_ptr(&c->input);
895         for (found = 0, i = len; i < have; i++) {
896                 if (p[i] == '\0') {
897                         found = 1;
898                         break;
899                 }
900                 if (i > 1024) {
901                         /* the peer is probably sending garbage */
902                         debug("channel %d: decode socks4: too long",
903                             c->self);
904                         return -1;
905                 }
906         }
907         if (!found)
908                 return 0;
909         buffer_get(&c->input, (char *)&s4_req.version, 1);
910         buffer_get(&c->input, (char *)&s4_req.command, 1);
911         buffer_get(&c->input, (char *)&s4_req.dest_port, 2);
912         buffer_get(&c->input, (char *)&s4_req.dest_addr, 4);
913         have = buffer_len(&c->input);
914         p = buffer_ptr(&c->input);
915         len = strlen(p);
916         debug2("channel %d: decode socks4: user %s/%d", c->self, p, len);
917         if (len > have)
918                 fatal("channel %d: decode socks4: len %d > have %d",
919                     c->self, len, have);
920         strlcpy(username, p, sizeof(username));
921         buffer_consume(&c->input, len);
922         buffer_consume(&c->input, 1);           /* trailing '\0' */
923
924         host = inet_ntoa(s4_req.dest_addr);
925         strlcpy(c->path, host, sizeof(c->path));
926         c->host_port = ntohs(s4_req.dest_port);
927
928         debug("channel %d: dynamic request: socks4 host %s port %u command %u",
929             c->self, host, c->host_port, s4_req.command);
930
931         if (s4_req.command != 1) {
932                 debug("channel %d: cannot handle: socks4 cn %d",
933                     c->self, s4_req.command);
934                 return -1;
935         }
936         s4_rsp.version = 0;                     /* vn: 0 for reply */
937         s4_rsp.command = 90;                    /* cd: req granted */
938         s4_rsp.dest_port = 0;                   /* ignored */
939         s4_rsp.dest_addr.s_addr = INADDR_ANY;   /* ignored */
940         buffer_append(&c->output, (char *)&s4_rsp, sizeof(s4_rsp));
941         return 1;
942 }
943
944 /* dynamic port forwarding */
945 static void
946 channel_pre_dynamic(Channel *c, fd_set * readset, fd_set * writeset)
947 {
948         u_char *p;
949         int have, ret;
950
951         have = buffer_len(&c->input);
952         c->delayed = 0;
953         debug2("channel %d: pre_dynamic: have %d", c->self, have);
954         /* buffer_dump(&c->input); */
955         /* check if the fixed size part of the packet is in buffer. */
956         if (have < 4) {
957                 /* need more */
958                 FD_SET(c->sock, readset);
959                 return;
960         }
961         /* try to guess the protocol */
962         p = buffer_ptr(&c->input);
963         switch (p[0]) {
964         case 0x04:
965                 ret = channel_decode_socks4(c, readset, writeset);
966                 break;
967         default:
968                 ret = -1;
969                 break;
970         }
971         if (ret < 0) {
972                 chan_mark_dead(c);
973         } else if (ret == 0) {
974                 debug2("channel %d: pre_dynamic: need more", c->self);
975                 /* need more */
976                 FD_SET(c->sock, readset);
977         } else {
978                 /* switch to the next state */
979                 c->type = SSH_CHANNEL_OPENING;
980                 port_open_helper(c, "direct-tcpip");
981         }
982 }
983
984 /* This is our fake X11 server socket. */
985 static void
986 channel_post_x11_listener(Channel *c, fd_set * readset, fd_set * writeset)
987 {
988         Channel *nc;
989         struct sockaddr addr;
990         int newsock;
991         socklen_t addrlen;
992         char buf[16384], *remote_ipaddr;
993         int remote_port;
994
995         if (FD_ISSET(c->sock, readset)) {
996                 debug("X11 connection requested.");
997                 addrlen = sizeof(addr);
998                 newsock = accept(c->sock, &addr, &addrlen);
999                 if (c->single_connection) {
1000                         debug("single_connection: closing X11 listener.");
1001                         channel_close_fd(&c->sock);
1002                         chan_mark_dead(c);
1003                 }
1004                 if (newsock < 0) {
1005                         error("accept: %.100s", strerror(errno));
1006                         return;
1007                 }
1008                 set_nodelay(newsock);
1009                 remote_ipaddr = get_peer_ipaddr(newsock);
1010                 remote_port = get_peer_port(newsock);
1011                 snprintf(buf, sizeof buf, "X11 connection from %.200s port %d",
1012                     remote_ipaddr, remote_port);
1013
1014                 nc = channel_new("accepted x11 socket",
1015                     SSH_CHANNEL_OPENING, newsock, newsock, -1,
1016                     c->local_window_max, c->local_maxpacket, 0, buf, 1);
1017                 if (compat20) {
1018                         packet_start(SSH2_MSG_CHANNEL_OPEN);
1019                         packet_put_cstring("x11");
1020                         packet_put_int(nc->self);
1021                         packet_put_int(nc->local_window_max);
1022                         packet_put_int(nc->local_maxpacket);
1023                         /* originator ipaddr and port */
1024                         packet_put_cstring(remote_ipaddr);
1025                         if (datafellows & SSH_BUG_X11FWD) {
1026                                 debug("ssh2 x11 bug compat mode");
1027                         } else {
1028                                 packet_put_int(remote_port);
1029                         }
1030                         packet_send();
1031                 } else {
1032                         packet_start(SSH_SMSG_X11_OPEN);
1033                         packet_put_int(nc->self);
1034                         if (packet_get_protocol_flags() &
1035                             SSH_PROTOFLAG_HOST_IN_FWD_OPEN)
1036                                 packet_put_cstring(buf);
1037                         packet_send();
1038                 }
1039                 xfree(remote_ipaddr);
1040         }
1041 }
1042
1043 static void
1044 port_open_helper(Channel *c, char *rtype)
1045 {
1046         int direct;
1047         char buf[1024];
1048         char *remote_ipaddr = get_peer_ipaddr(c->sock);
1049         u_short remote_port = get_peer_port(c->sock);
1050
1051         direct = (strcmp(rtype, "direct-tcpip") == 0);
1052
1053         snprintf(buf, sizeof buf,
1054             "%s: listening port %d for %.100s port %d, "
1055             "connect from %.200s port %d",
1056             rtype, c->listening_port, c->path, c->host_port,
1057             remote_ipaddr, remote_port);
1058
1059         xfree(c->remote_name);
1060         c->remote_name = xstrdup(buf);
1061
1062         if (compat20) {
1063                 packet_start(SSH2_MSG_CHANNEL_OPEN);
1064                 packet_put_cstring(rtype);
1065                 packet_put_int(c->self);
1066                 packet_put_int(c->local_window_max);
1067                 packet_put_int(c->local_maxpacket);
1068                 if (direct) {
1069                         /* target host, port */
1070                         packet_put_cstring(c->path);
1071                         packet_put_int(c->host_port);
1072                 } else {
1073                         /* listen address, port */
1074                         packet_put_cstring(c->path);
1075                         packet_put_int(c->listening_port);
1076                 }
1077                 /* originator host and port */
1078                 packet_put_cstring(remote_ipaddr);
1079                 packet_put_int(remote_port);
1080                 packet_send();
1081         } else {
1082                 packet_start(SSH_MSG_PORT_OPEN);
1083                 packet_put_int(c->self);
1084                 packet_put_cstring(c->path);
1085                 packet_put_int(c->host_port);
1086                 if (packet_get_protocol_flags() &
1087                     SSH_PROTOFLAG_HOST_IN_FWD_OPEN)
1088                         packet_put_cstring(c->remote_name);
1089                 packet_send();
1090         }
1091         xfree(remote_ipaddr);
1092 }
1093
1094 /*
1095  * This socket is listening for connections to a forwarded TCP/IP port.
1096  */
1097 static void
1098 channel_post_port_listener(Channel *c, fd_set * readset, fd_set * writeset)
1099 {
1100         Channel *nc;
1101         struct sockaddr addr;
1102         int newsock, nextstate;
1103         socklen_t addrlen;
1104         char *rtype;
1105
1106         if (FD_ISSET(c->sock, readset)) {
1107                 debug("Connection to port %d forwarding "
1108                     "to %.100s port %d requested.",
1109                     c->listening_port, c->path, c->host_port);
1110
1111                 if (c->type == SSH_CHANNEL_RPORT_LISTENER) {
1112                         nextstate = SSH_CHANNEL_OPENING;
1113                         rtype = "forwarded-tcpip";
1114                 } else {
1115                         if (c->host_port == 0) {
1116                                 nextstate = SSH_CHANNEL_DYNAMIC;
1117                                 rtype = "dynamic-tcpip";
1118                         } else {
1119                                 nextstate = SSH_CHANNEL_OPENING;
1120                                 rtype = "direct-tcpip";
1121                         }
1122                 }
1123
1124                 addrlen = sizeof(addr);
1125                 newsock = accept(c->sock, &addr, &addrlen);
1126                 if (newsock < 0) {
1127                         error("accept: %.100s", strerror(errno));
1128                         return;
1129                 }
1130                 set_nodelay(newsock);
1131                 nc = channel_new(rtype, nextstate, newsock, newsock, -1,
1132                     c->local_window_max, c->local_maxpacket, 0, rtype, 1);
1133                 nc->listening_port = c->listening_port;
1134                 nc->host_port = c->host_port;
1135                 strlcpy(nc->path, c->path, sizeof(nc->path));
1136
1137                 if (nextstate == SSH_CHANNEL_DYNAMIC) {
1138                         /*
1139                          * do not call the channel_post handler until
1140                          * this flag has been reset by a pre-handler.
1141                          * otherwise the FD_ISSET calls might overflow
1142                          */
1143                         nc->delayed = 1;
1144                 } else {
1145                         port_open_helper(nc, rtype);
1146                 }
1147         }
1148 }
1149
1150 /*
1151  * This is the authentication agent socket listening for connections from
1152  * clients.
1153  */
1154 static void
1155 channel_post_auth_listener(Channel *c, fd_set * readset, fd_set * writeset)
1156 {
1157         Channel *nc;
1158         int newsock;
1159         struct sockaddr addr;
1160         socklen_t addrlen;
1161
1162         if (FD_ISSET(c->sock, readset)) {
1163                 addrlen = sizeof(addr);
1164                 newsock = accept(c->sock, &addr, &addrlen);
1165                 if (newsock < 0) {
1166                         error("accept from auth socket: %.100s", strerror(errno));
1167                         return;
1168                 }
1169                 nc = channel_new("accepted auth socket",
1170                     SSH_CHANNEL_OPENING, newsock, newsock, -1,
1171                     c->local_window_max, c->local_maxpacket,
1172                     0, "accepted auth socket", 1);
1173                 if (compat20) {
1174                         packet_start(SSH2_MSG_CHANNEL_OPEN);
1175                         packet_put_cstring("auth-agent@openssh.com");
1176                         packet_put_int(nc->self);
1177                         packet_put_int(c->local_window_max);
1178                         packet_put_int(c->local_maxpacket);
1179                 } else {
1180                         packet_start(SSH_SMSG_AGENT_OPEN);
1181                         packet_put_int(nc->self);
1182                 }
1183                 packet_send();
1184         }
1185 }
1186
1187 static void
1188 channel_post_connecting(Channel *c, fd_set * readset, fd_set * writeset)
1189 {
1190         int err = 0;
1191         socklen_t sz = sizeof(err);
1192
1193         if (FD_ISSET(c->sock, writeset)) {
1194                 if (getsockopt(c->sock, SOL_SOCKET, SO_ERROR, &err, &sz) < 0) {
1195                         err = errno;
1196                         error("getsockopt SO_ERROR failed");
1197                 }
1198                 if (err == 0) {
1199                         debug("channel %d: connected", c->self);
1200                         c->type = SSH_CHANNEL_OPEN;
1201                         if (compat20) {
1202                                 packet_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION);
1203                                 packet_put_int(c->remote_id);
1204                                 packet_put_int(c->self);
1205                                 packet_put_int(c->local_window);
1206                                 packet_put_int(c->local_maxpacket);
1207                         } else {
1208                                 packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION);
1209                                 packet_put_int(c->remote_id);
1210                                 packet_put_int(c->self);
1211                         }
1212                 } else {
1213                         debug("channel %d: not connected: %s",
1214                             c->self, strerror(err));
1215                         if (compat20) {
1216                                 packet_start(SSH2_MSG_CHANNEL_OPEN_FAILURE);
1217                                 packet_put_int(c->remote_id);
1218                                 packet_put_int(SSH2_OPEN_CONNECT_FAILED);
1219                                 if (!(datafellows & SSH_BUG_OPENFAILURE)) {
1220                                         packet_put_cstring(strerror(err));
1221                                         packet_put_cstring("");
1222                                 }
1223                         } else {
1224                                 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE);
1225                                 packet_put_int(c->remote_id);
1226                         }
1227                         chan_mark_dead(c);
1228                 }
1229                 packet_send();
1230         }
1231 }
1232
1233 static int
1234 channel_handle_rfd(Channel *c, fd_set * readset, fd_set * writeset)
1235 {
1236         char buf[16*1024];
1237         int len;
1238
1239         if (c->rfd != -1 &&
1240             FD_ISSET(c->rfd, readset)) {
1241                 len = read(c->rfd, buf, sizeof(buf));
1242                 if (len < 0 && (errno == EINTR || errno == EAGAIN))
1243                         return 1;
1244                 if (len <= 0) {
1245                         debug("channel %d: read<=0 rfd %d len %d",
1246                             c->self, c->rfd, len);
1247                         if (c->type != SSH_CHANNEL_OPEN) {
1248                                 debug("channel %d: not open", c->self);
1249                                 chan_mark_dead(c);
1250                                 return -1;
1251                         } else if (compat13) {
1252                                 buffer_clear(&c->output);
1253                                 c->type = SSH_CHANNEL_INPUT_DRAINING;
1254                                 debug("channel %d: input draining.", c->self);
1255                         } else {
1256                                 chan_read_failed(c);
1257                         }
1258                         return -1;
1259                 }
1260                 if (c->input_filter != NULL) {
1261                         if (c->input_filter(c, buf, len) == -1) {
1262                                 debug("channel %d: filter stops", c->self);
1263                                 chan_read_failed(c);
1264                         }
1265                 } else {
1266                         buffer_append(&c->input, buf, len);
1267                 }
1268         }
1269         return 1;
1270 }
1271 static int
1272 channel_handle_wfd(Channel *c, fd_set * readset, fd_set * writeset)
1273 {
1274         struct termios tio;
1275         u_char *data;
1276         u_int dlen;
1277         int len;
1278
1279         /* Send buffered output data to the socket. */
1280         if (c->wfd != -1 &&
1281             FD_ISSET(c->wfd, writeset) &&
1282             buffer_len(&c->output) > 0) {
1283                 data = buffer_ptr(&c->output);
1284                 dlen = buffer_len(&c->output);
1285 #ifdef _AIX
1286                 /* XXX: Later AIX versions can't push as much data to tty */ 
1287                 if (compat20 && c->wfd_isatty && dlen > 8*1024)
1288                         dlen = 8*1024;
1289 #endif
1290                 len = write(c->wfd, data, dlen);
1291                 if (len < 0 && (errno == EINTR || errno == EAGAIN))
1292                         return 1;
1293                 if (len <= 0) {
1294                         if (c->type != SSH_CHANNEL_OPEN) {
1295                                 debug("channel %d: not open", c->self);
1296                                 chan_mark_dead(c);
1297                                 return -1;
1298                         } else if (compat13) {
1299                                 buffer_clear(&c->output);
1300                                 debug("channel %d: input draining.", c->self);
1301                                 c->type = SSH_CHANNEL_INPUT_DRAINING;
1302                         } else {
1303                                 chan_write_failed(c);
1304                         }
1305                         return -1;
1306                 }
1307                 if (compat20 && c->isatty && dlen >= 1 && data[0] != '\r') {
1308                         if (tcgetattr(c->wfd, &tio) == 0 &&
1309                             !(tio.c_lflag & ECHO) && (tio.c_lflag & ICANON)) {
1310                                 /*
1311                                  * Simulate echo to reduce the impact of
1312                                  * traffic analysis. We need to match the
1313                                  * size of a SSH2_MSG_CHANNEL_DATA message
1314                                  * (4 byte channel id + data)
1315                                  */
1316                                 packet_send_ignore(4 + len);
1317                                 packet_send();
1318                         }
1319                 }
1320                 buffer_consume(&c->output, len);
1321                 if (compat20 && len > 0) {
1322                         c->local_consumed += len;
1323                 }
1324         }
1325         return 1;
1326 }
1327 static int
1328 channel_handle_efd(Channel *c, fd_set * readset, fd_set * writeset)
1329 {
1330         char buf[16*1024];
1331         int len;
1332
1333 /** XXX handle drain efd, too */
1334         if (c->efd != -1) {
1335                 if (c->extended_usage == CHAN_EXTENDED_WRITE &&
1336                     FD_ISSET(c->efd, writeset) &&
1337                     buffer_len(&c->extended) > 0) {
1338                         len = write(c->efd, buffer_ptr(&c->extended),
1339                             buffer_len(&c->extended));
1340                         debug2("channel %d: written %d to efd %d",
1341                             c->self, len, c->efd);
1342                         if (len < 0 && (errno == EINTR || errno == EAGAIN))
1343                                 return 1;
1344                         if (len <= 0) {
1345                                 debug2("channel %d: closing write-efd %d",
1346                                     c->self, c->efd);
1347                                 channel_close_fd(&c->efd);
1348                         } else {
1349                                 buffer_consume(&c->extended, len);
1350                                 c->local_consumed += len;
1351                         }
1352                 } else if (c->extended_usage == CHAN_EXTENDED_READ &&
1353                     FD_ISSET(c->efd, readset)) {
1354                         len = read(c->efd, buf, sizeof(buf));
1355                         debug2("channel %d: read %d from efd %d",
1356                             c->self, len, c->efd);
1357                         if (len < 0 && (errno == EINTR || errno == EAGAIN))
1358                                 return 1;
1359                         if (len <= 0) {
1360                                 debug2("channel %d: closing read-efd %d",
1361                                     c->self, c->efd);
1362                                 channel_close_fd(&c->efd);
1363                         } else {
1364                                 buffer_append(&c->extended, buf, len);
1365                         }
1366                 }
1367         }
1368         return 1;
1369 }
1370 static int
1371 channel_check_window(Channel *c)
1372 {
1373         if (c->type == SSH_CHANNEL_OPEN &&
1374             !(c->flags & (CHAN_CLOSE_SENT|CHAN_CLOSE_RCVD)) &&
1375             c->local_window < c->local_window_max/2 &&
1376             c->local_consumed > 0) {
1377                 packet_start(SSH2_MSG_CHANNEL_WINDOW_ADJUST);
1378                 packet_put_int(c->remote_id);
1379                 packet_put_int(c->local_consumed);
1380                 packet_send();
1381                 debug2("channel %d: window %d sent adjust %d",
1382                     c->self, c->local_window,
1383                     c->local_consumed);
1384                 c->local_window += c->local_consumed;
1385                 c->local_consumed = 0;
1386         }
1387         return 1;
1388 }
1389
1390 static void
1391 channel_post_open(Channel *c, fd_set * readset, fd_set * writeset)
1392 {
1393         if (c->delayed)
1394                 return;
1395         channel_handle_rfd(c, readset, writeset);
1396         channel_handle_wfd(c, readset, writeset);
1397         if (!compat20)
1398                 return;
1399         channel_handle_efd(c, readset, writeset);
1400         channel_check_window(c);
1401 }
1402
1403 static void
1404 channel_post_output_drain_13(Channel *c, fd_set * readset, fd_set * writeset)
1405 {
1406         int len;
1407
1408         /* Send buffered output data to the socket. */
1409         if (FD_ISSET(c->sock, writeset) && buffer_len(&c->output) > 0) {
1410                 len = write(c->sock, buffer_ptr(&c->output),
1411                             buffer_len(&c->output));
1412                 if (len <= 0)
1413                         buffer_clear(&c->output);
1414                 else
1415                         buffer_consume(&c->output, len);
1416         }
1417 }
1418
1419 static void
1420 channel_handler_init_20(void)
1421 {
1422         channel_pre[SSH_CHANNEL_OPEN] =                 &channel_pre_open;
1423         channel_pre[SSH_CHANNEL_X11_OPEN] =             &channel_pre_x11_open;
1424         channel_pre[SSH_CHANNEL_PORT_LISTENER] =        &channel_pre_listener;
1425         channel_pre[SSH_CHANNEL_RPORT_LISTENER] =       &channel_pre_listener;
1426         channel_pre[SSH_CHANNEL_X11_LISTENER] =         &channel_pre_listener;
1427         channel_pre[SSH_CHANNEL_AUTH_SOCKET] =          &channel_pre_listener;
1428         channel_pre[SSH_CHANNEL_CONNECTING] =           &channel_pre_connecting;
1429         channel_pre[SSH_CHANNEL_DYNAMIC] =              &channel_pre_dynamic;
1430
1431         channel_post[SSH_CHANNEL_OPEN] =                &channel_post_open;
1432         channel_post[SSH_CHANNEL_PORT_LISTENER] =       &channel_post_port_listener;
1433         channel_post[SSH_CHANNEL_RPORT_LISTENER] =      &channel_post_port_listener;
1434         channel_post[SSH_CHANNEL_X11_LISTENER] =        &channel_post_x11_listener;
1435         channel_post[SSH_CHANNEL_AUTH_SOCKET] =         &channel_post_auth_listener;
1436         channel_post[SSH_CHANNEL_CONNECTING] =          &channel_post_connecting;
1437         channel_post[SSH_CHANNEL_DYNAMIC] =             &channel_post_open;
1438 }
1439
1440 static void
1441 channel_handler_init_13(void)
1442 {
1443         channel_pre[SSH_CHANNEL_OPEN] =                 &channel_pre_open_13;
1444         channel_pre[SSH_CHANNEL_X11_OPEN] =             &channel_pre_x11_open_13;
1445         channel_pre[SSH_CHANNEL_X11_LISTENER] =         &channel_pre_listener;
1446         channel_pre[SSH_CHANNEL_PORT_LISTENER] =        &channel_pre_listener;
1447         channel_pre[SSH_CHANNEL_AUTH_SOCKET] =          &channel_pre_listener;
1448         channel_pre[SSH_CHANNEL_INPUT_DRAINING] =       &channel_pre_input_draining;
1449         channel_pre[SSH_CHANNEL_OUTPUT_DRAINING] =      &channel_pre_output_draining;
1450         channel_pre[SSH_CHANNEL_CONNECTING] =           &channel_pre_connecting;
1451         channel_pre[SSH_CHANNEL_DYNAMIC] =              &channel_pre_dynamic;
1452
1453         channel_post[SSH_CHANNEL_OPEN] =                &channel_post_open;
1454         channel_post[SSH_CHANNEL_X11_LISTENER] =        &channel_post_x11_listener;
1455         channel_post[SSH_CHANNEL_PORT_LISTENER] =       &channel_post_port_listener;
1456         channel_post[SSH_CHANNEL_AUTH_SOCKET] =         &channel_post_auth_listener;
1457         channel_post[SSH_CHANNEL_OUTPUT_DRAINING] =     &channel_post_output_drain_13;
1458         channel_post[SSH_CHANNEL_CONNECTING] =          &channel_post_connecting;
1459         channel_post[SSH_CHANNEL_DYNAMIC] =             &channel_post_open;
1460 }
1461
1462 static void
1463 channel_handler_init_15(void)
1464 {
1465         channel_pre[SSH_CHANNEL_OPEN] =                 &channel_pre_open;
1466         channel_pre[SSH_CHANNEL_X11_OPEN] =             &channel_pre_x11_open;
1467         channel_pre[SSH_CHANNEL_X11_LISTENER] =         &channel_pre_listener;
1468         channel_pre[SSH_CHANNEL_PORT_LISTENER] =        &channel_pre_listener;
1469         channel_pre[SSH_CHANNEL_AUTH_SOCKET] =          &channel_pre_listener;
1470         channel_pre[SSH_CHANNEL_CONNECTING] =           &channel_pre_connecting;
1471         channel_pre[SSH_CHANNEL_DYNAMIC] =              &channel_pre_dynamic;
1472
1473         channel_post[SSH_CHANNEL_X11_LISTENER] =        &channel_post_x11_listener;
1474         channel_post[SSH_CHANNEL_PORT_LISTENER] =       &channel_post_port_listener;
1475         channel_post[SSH_CHANNEL_AUTH_SOCKET] =         &channel_post_auth_listener;
1476         channel_post[SSH_CHANNEL_OPEN] =                &channel_post_open;
1477         channel_post[SSH_CHANNEL_CONNECTING] =          &channel_post_connecting;
1478         channel_post[SSH_CHANNEL_DYNAMIC] =             &channel_post_open;
1479 }
1480
1481 static void
1482 channel_handler_init(void)
1483 {
1484         int i;
1485
1486         for (i = 0; i < SSH_CHANNEL_MAX_TYPE; i++) {
1487                 channel_pre[i] = NULL;
1488                 channel_post[i] = NULL;
1489         }
1490         if (compat20)
1491                 channel_handler_init_20();
1492         else if (compat13)
1493                 channel_handler_init_13();
1494         else
1495                 channel_handler_init_15();
1496 }
1497
1498 /* gc dead channels */
1499 static void
1500 channel_garbage_collect(Channel *c)
1501 {
1502         if (c == NULL)
1503                 return;
1504         if (c->detach_user != NULL) {
1505                 if (!chan_is_dead(c, 0))
1506                         return;
1507                 debug("channel %d: gc: notify user", c->self);
1508                 c->detach_user(c->self, NULL);
1509                 /* if we still have a callback */
1510                 if (c->detach_user != NULL)
1511                         return;
1512                 debug("channel %d: gc: user detached", c->self);
1513         }
1514         if (!chan_is_dead(c, 1))
1515                 return;
1516         debug("channel %d: garbage collecting", c->self);
1517         channel_free(c);
1518 }
1519
1520 static void
1521 channel_handler(chan_fn *ftab[], fd_set * readset, fd_set * writeset)
1522 {
1523         static int did_init = 0;
1524         int i;
1525         Channel *c;
1526
1527         if (!did_init) {
1528                 channel_handler_init();
1529                 did_init = 1;
1530         }
1531         for (i = 0; i < channels_alloc; i++) {
1532                 c = channels[i];
1533                 if (c == NULL)
1534                         continue;
1535                 if (ftab[c->type] != NULL)
1536                         (*ftab[c->type])(c, readset, writeset);
1537                 channel_garbage_collect(c);
1538         }
1539 }
1540
1541 /*
1542  * Allocate/update select bitmasks and add any bits relevant to channels in
1543  * select bitmasks.
1544  */
1545 void
1546 channel_prepare_select(fd_set **readsetp, fd_set **writesetp, int *maxfdp,
1547     int *nallocp, int rekeying)
1548 {
1549         int n;
1550         u_int sz;
1551
1552         n = MAX(*maxfdp, channel_max_fd);
1553
1554         sz = howmany(n+1, NFDBITS) * sizeof(fd_mask);
1555         /* perhaps check sz < nalloc/2 and shrink? */
1556         if (*readsetp == NULL || sz > *nallocp) {
1557                 *readsetp = xrealloc(*readsetp, sz);
1558                 *writesetp = xrealloc(*writesetp, sz);
1559                 *nallocp = sz;
1560         }
1561         *maxfdp = n;
1562         memset(*readsetp, 0, sz);
1563         memset(*writesetp, 0, sz);
1564
1565         if (!rekeying)
1566                 channel_handler(channel_pre, *readsetp, *writesetp);
1567 }
1568
1569 /*
1570  * After select, perform any appropriate operations for channels which have
1571  * events pending.
1572  */
1573 void
1574 channel_after_select(fd_set * readset, fd_set * writeset)
1575 {
1576         channel_handler(channel_post, readset, writeset);
1577 }
1578
1579
1580 /* If there is data to send to the connection, enqueue some of it now. */
1581
1582 void
1583 channel_output_poll(void)
1584 {
1585         Channel *c;
1586         int i;
1587         u_int len;
1588
1589         for (i = 0; i < channels_alloc; i++) {
1590                 c = channels[i];
1591                 if (c == NULL)
1592                         continue;
1593
1594                 /*
1595                  * We are only interested in channels that can have buffered
1596                  * incoming data.
1597                  */
1598                 if (compat13) {
1599                         if (c->type != SSH_CHANNEL_OPEN &&
1600                             c->type != SSH_CHANNEL_INPUT_DRAINING)
1601                                 continue;
1602                 } else {
1603                         if (c->type != SSH_CHANNEL_OPEN)
1604                                 continue;
1605                 }
1606                 if (compat20 &&
1607                     (c->flags & (CHAN_CLOSE_SENT|CHAN_CLOSE_RCVD))) {
1608                         /* XXX is this true? */
1609                         debug3("channel %d: will not send data after close", c->self);
1610                         continue;
1611                 }
1612
1613                 /* Get the amount of buffered data for this channel. */
1614                 if ((c->istate == CHAN_INPUT_OPEN ||
1615                     c->istate == CHAN_INPUT_WAIT_DRAIN) &&
1616                     (len = buffer_len(&c->input)) > 0) {
1617                         /*
1618                          * Send some data for the other side over the secure
1619                          * connection.
1620                          */
1621                         if (compat20) {
1622                                 if (len > c->remote_window)
1623                                         len = c->remote_window;
1624                                 if (len > c->remote_maxpacket)
1625                                         len = c->remote_maxpacket;
1626                         } else {
1627                                 if (packet_is_interactive()) {
1628                                         if (len > 1024)
1629                                                 len = 512;
1630                                 } else {
1631                                         /* Keep the packets at reasonable size. */
1632                                         if (len > packet_get_maxsize()/2)
1633                                                 len = packet_get_maxsize()/2;
1634                                 }
1635                         }
1636                         if (len > 0) {
1637                                 packet_start(compat20 ?
1638                                     SSH2_MSG_CHANNEL_DATA : SSH_MSG_CHANNEL_DATA);
1639                                 packet_put_int(c->remote_id);
1640                                 packet_put_string(buffer_ptr(&c->input), len);
1641                                 packet_send();
1642                                 buffer_consume(&c->input, len);
1643                                 c->remote_window -= len;
1644                         }
1645                 } else if (c->istate == CHAN_INPUT_WAIT_DRAIN) {
1646                         if (compat13)
1647                                 fatal("cannot happen: istate == INPUT_WAIT_DRAIN for proto 1.3");
1648                         /*
1649                          * input-buffer is empty and read-socket shutdown:
1650                          * tell peer, that we will not send more data: send IEOF.
1651                          * hack for extended data: delay EOF if EFD still in use.
1652                          */
1653                         if (CHANNEL_EFD_INPUT_ACTIVE(c))
1654                                debug2("channel %d: ibuf_empty delayed efd %d/(%d)",
1655                                    c->self, c->efd, buffer_len(&c->extended));
1656                         else
1657                                 chan_ibuf_empty(c);
1658                 }
1659                 /* Send extended data, i.e. stderr */
1660                 if (compat20 &&
1661                     !(c->flags & CHAN_EOF_SENT) &&
1662                     c->remote_window > 0 &&
1663                     (len = buffer_len(&c->extended)) > 0 &&
1664                     c->extended_usage == CHAN_EXTENDED_READ) {
1665                         debug2("channel %d: rwin %u elen %u euse %d",
1666                             c->self, c->remote_window, buffer_len(&c->extended),
1667                             c->extended_usage);
1668                         if (len > c->remote_window)
1669                                 len = c->remote_window;
1670                         if (len > c->remote_maxpacket)
1671                                 len = c->remote_maxpacket;
1672                         packet_start(SSH2_MSG_CHANNEL_EXTENDED_DATA);
1673                         packet_put_int(c->remote_id);
1674                         packet_put_int(SSH2_EXTENDED_DATA_STDERR);
1675                         packet_put_string(buffer_ptr(&c->extended), len);
1676                         packet_send();
1677                         buffer_consume(&c->extended, len);
1678                         c->remote_window -= len;
1679                         debug2("channel %d: sent ext data %d", c->self, len);
1680                 }
1681         }
1682 }
1683
1684
1685 /* -- protocol input */
1686
1687 void
1688 channel_input_data(int type, u_int32_t seq, void *ctxt)
1689 {
1690         int id;
1691         char *data;
1692         u_int data_len;
1693         Channel *c;
1694
1695         /* Get the channel number and verify it. */
1696         id = packet_get_int();
1697         c = channel_lookup(id);
1698         if (c == NULL)
1699                 packet_disconnect("Received data for nonexistent channel %d.", id);
1700
1701         /* Ignore any data for non-open channels (might happen on close) */
1702         if (c->type != SSH_CHANNEL_OPEN &&
1703             c->type != SSH_CHANNEL_X11_OPEN)
1704                 return;
1705
1706         /* same for protocol 1.5 if output end is no longer open */
1707         if (!compat13 && c->ostate != CHAN_OUTPUT_OPEN)
1708                 return;
1709
1710         /* Get the data. */
1711         data = packet_get_string(&data_len);
1712
1713         if (compat20) {
1714                 if (data_len > c->local_maxpacket) {
1715                         logit("channel %d: rcvd big packet %d, maxpack %d",
1716                             c->self, data_len, c->local_maxpacket);
1717                 }
1718                 if (data_len > c->local_window) {
1719                         logit("channel %d: rcvd too much data %d, win %d",
1720                             c->self, data_len, c->local_window);
1721                         xfree(data);
1722                         return;
1723                 }
1724                 c->local_window -= data_len;
1725         }
1726         packet_check_eom();
1727         buffer_append(&c->output, data, data_len);
1728         xfree(data);
1729 }
1730
1731 void
1732 channel_input_extended_data(int type, u_int32_t seq, void *ctxt)
1733 {
1734         int id;
1735         char *data;
1736         u_int data_len, tcode;
1737         Channel *c;
1738
1739         /* Get the channel number and verify it. */
1740         id = packet_get_int();
1741         c = channel_lookup(id);
1742
1743         if (c == NULL)
1744                 packet_disconnect("Received extended_data for bad channel %d.", id);
1745         if (c->type != SSH_CHANNEL_OPEN) {
1746                 logit("channel %d: ext data for non open", id);
1747                 return;
1748         }
1749         if (c->flags & CHAN_EOF_RCVD) {
1750                 if (datafellows & SSH_BUG_EXTEOF)
1751                         debug("channel %d: accepting ext data after eof", id);
1752                 else
1753                         packet_disconnect("Received extended_data after EOF "
1754                             "on channel %d.", id);
1755         }
1756         tcode = packet_get_int();
1757         if (c->efd == -1 ||
1758             c->extended_usage != CHAN_EXTENDED_WRITE ||
1759             tcode != SSH2_EXTENDED_DATA_STDERR) {
1760                 logit("channel %d: bad ext data", c->self);
1761                 return;
1762         }
1763         data = packet_get_string(&data_len);
1764         packet_check_eom();
1765         if (data_len > c->local_window) {
1766                 logit("channel %d: rcvd too much extended_data %d, win %d",
1767                     c->self, data_len, c->local_window);
1768                 xfree(data);
1769                 return;
1770         }
1771         debug2("channel %d: rcvd ext data %d", c->self, data_len);
1772         c->local_window -= data_len;
1773         buffer_append(&c->extended, data, data_len);
1774         xfree(data);
1775 }
1776
1777 void
1778 channel_input_ieof(int type, u_int32_t seq, void *ctxt)
1779 {
1780         int id;
1781         Channel *c;
1782
1783         id = packet_get_int();
1784         packet_check_eom();
1785         c = channel_lookup(id);
1786         if (c == NULL)
1787                 packet_disconnect("Received ieof for nonexistent channel %d.", id);
1788         chan_rcvd_ieof(c);
1789
1790         /* XXX force input close */
1791         if (c->force_drain && c->istate == CHAN_INPUT_OPEN) {
1792                 debug("channel %d: FORCE input drain", c->self);
1793                 c->istate = CHAN_INPUT_WAIT_DRAIN;
1794                 if (buffer_len(&c->input) == 0)
1795                         chan_ibuf_empty(c);
1796         }
1797
1798 }
1799
1800 void
1801 channel_input_close(int type, u_int32_t seq, void *ctxt)
1802 {
1803         int id;
1804         Channel *c;
1805
1806         id = packet_get_int();
1807         packet_check_eom();
1808         c = channel_lookup(id);
1809         if (c == NULL)
1810                 packet_disconnect("Received close for nonexistent channel %d.", id);
1811
1812         /*
1813          * Send a confirmation that we have closed the channel and no more
1814          * data is coming for it.
1815          */
1816         packet_start(SSH_MSG_CHANNEL_CLOSE_CONFIRMATION);
1817         packet_put_int(c->remote_id);
1818         packet_send();
1819
1820         /*
1821          * If the channel is in closed state, we have sent a close request,
1822          * and the other side will eventually respond with a confirmation.
1823          * Thus, we cannot free the channel here, because then there would be
1824          * no-one to receive the confirmation.  The channel gets freed when
1825          * the confirmation arrives.
1826          */
1827         if (c->type != SSH_CHANNEL_CLOSED) {
1828                 /*
1829                  * Not a closed channel - mark it as draining, which will
1830                  * cause it to be freed later.
1831                  */
1832                 buffer_clear(&c->input);
1833                 c->type = SSH_CHANNEL_OUTPUT_DRAINING;
1834         }
1835 }
1836
1837 /* proto version 1.5 overloads CLOSE_CONFIRMATION with OCLOSE */
1838 void
1839 channel_input_oclose(int type, u_int32_t seq, void *ctxt)
1840 {
1841         int id = packet_get_int();
1842         Channel *c = channel_lookup(id);
1843
1844         packet_check_eom();
1845         if (c == NULL)
1846                 packet_disconnect("Received oclose for nonexistent channel %d.", id);
1847         chan_rcvd_oclose(c);
1848 }
1849
1850 void
1851 channel_input_close_confirmation(int type, u_int32_t seq, void *ctxt)
1852 {
1853         int id = packet_get_int();
1854         Channel *c = channel_lookup(id);
1855
1856         packet_check_eom();
1857         if (c == NULL)
1858                 packet_disconnect("Received close confirmation for "
1859                     "out-of-range channel %d.", id);
1860         if (c->type != SSH_CHANNEL_CLOSED)
1861                 packet_disconnect("Received close confirmation for "
1862                     "non-closed channel %d (type %d).", id, c->type);
1863         channel_free(c);
1864 }
1865
1866 void
1867 channel_input_open_confirmation(int type, u_int32_t seq, void *ctxt)
1868 {
1869         int id, remote_id;
1870         Channel *c;
1871
1872         id = packet_get_int();
1873         c = channel_lookup(id);
1874
1875         if (c==NULL || c->type != SSH_CHANNEL_OPENING)
1876                 packet_disconnect("Received open confirmation for "
1877                     "non-opening channel %d.", id);
1878         remote_id = packet_get_int();
1879         /* Record the remote channel number and mark that the channel is now open. */
1880         c->remote_id = remote_id;
1881         c->type = SSH_CHANNEL_OPEN;
1882
1883         if (compat20) {
1884                 c->remote_window = packet_get_int();
1885                 c->remote_maxpacket = packet_get_int();
1886                 if (c->confirm) {
1887                         debug2("callback start");
1888                         c->confirm(c->self, NULL);
1889                         debug2("callback done");
1890                 }
1891                 debug("channel %d: open confirm rwindow %u rmax %u", c->self,
1892                     c->remote_window, c->remote_maxpacket);
1893         }
1894         packet_check_eom();
1895 }
1896
1897 static char *
1898 reason2txt(int reason)
1899 {
1900         switch (reason) {
1901         case SSH2_OPEN_ADMINISTRATIVELY_PROHIBITED:
1902                 return "administratively prohibited";
1903         case SSH2_OPEN_CONNECT_FAILED:
1904                 return "connect failed";
1905         case SSH2_OPEN_UNKNOWN_CHANNEL_TYPE:
1906                 return "unknown channel type";
1907         case SSH2_OPEN_RESOURCE_SHORTAGE:
1908                 return "resource shortage";
1909         }
1910         return "unknown reason";
1911 }
1912
1913 void
1914 channel_input_open_failure(int type, u_int32_t seq, void *ctxt)
1915 {
1916         int id, reason;
1917         char *msg = NULL, *lang = NULL;
1918         Channel *c;
1919
1920         id = packet_get_int();
1921         c = channel_lookup(id);
1922
1923         if (c==NULL || c->type != SSH_CHANNEL_OPENING)
1924                 packet_disconnect("Received open failure for "
1925                     "non-opening channel %d.", id);
1926         if (compat20) {
1927                 reason = packet_get_int();
1928                 if (!(datafellows & SSH_BUG_OPENFAILURE)) {
1929                         msg  = packet_get_string(NULL);
1930                         lang = packet_get_string(NULL);
1931                 }
1932                 logit("channel %d: open failed: %s%s%s", id,
1933                     reason2txt(reason), msg ? ": ": "", msg ? msg : "");
1934                 if (msg != NULL)
1935                         xfree(msg);
1936                 if (lang != NULL)
1937                         xfree(lang);
1938         }
1939         packet_check_eom();
1940         /* Free the channel.  This will also close the socket. */
1941         channel_free(c);
1942 }
1943
1944 void
1945 channel_input_window_adjust(int type, u_int32_t seq, void *ctxt)
1946 {
1947         Channel *c;
1948         int id;
1949         u_int adjust;
1950
1951         if (!compat20)
1952                 return;
1953
1954         /* Get the channel number and verify it. */
1955         id = packet_get_int();
1956         c = channel_lookup(id);
1957
1958         if (c == NULL || c->type != SSH_CHANNEL_OPEN) {
1959                 logit("Received window adjust for "
1960                     "non-open channel %d.", id);
1961                 return;
1962         }
1963         adjust = packet_get_int();
1964         packet_check_eom();
1965         debug2("channel %d: rcvd adjust %u", id, adjust);
1966         c->remote_window += adjust;
1967 }
1968
1969 void
1970 channel_input_port_open(int type, u_int32_t seq, void *ctxt)
1971 {
1972         Channel *c = NULL;
1973         u_short host_port;
1974         char *host, *originator_string;
1975         int remote_id, sock = -1;
1976
1977         remote_id = packet_get_int();
1978         host = packet_get_string(NULL);
1979         host_port = packet_get_int();
1980
1981         if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) {
1982                 originator_string = packet_get_string(NULL);
1983         } else {
1984                 originator_string = xstrdup("unknown (remote did not supply name)");
1985         }
1986         packet_check_eom();
1987         sock = channel_connect_to(host, host_port);
1988         if (sock != -1) {
1989                 c = channel_new("connected socket",
1990                     SSH_CHANNEL_CONNECTING, sock, sock, -1, 0, 0, 0,
1991                     originator_string, 1);
1992                 c->remote_id = remote_id;
1993         }
1994         xfree(originator_string);
1995         if (c == NULL) {
1996                 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE);
1997                 packet_put_int(remote_id);
1998                 packet_send();
1999         }
2000         xfree(host);
2001 }
2002
2003
2004 /* -- tcp forwarding */
2005
2006 void
2007 channel_set_af(int af)
2008 {
2009         IPv4or6 = af;
2010 }
2011
2012 static int
2013 channel_setup_fwd_listener(int type, const char *listen_addr, u_short listen_port,
2014     const char *host_to_connect, u_short port_to_connect, int gateway_ports)
2015 {
2016         Channel *c;
2017         int success, sock, on = 1;
2018         struct addrinfo hints, *ai, *aitop;
2019         const char *host;
2020         char ntop[NI_MAXHOST], strport[NI_MAXSERV];
2021
2022         success = 0;
2023         host = (type == SSH_CHANNEL_RPORT_LISTENER) ?
2024             listen_addr : host_to_connect;
2025
2026         if (host == NULL) {
2027                 error("No forward host name.");
2028                 return success;
2029         }
2030         if (strlen(host) > SSH_CHANNEL_PATH_LEN - 1) {
2031                 error("Forward host name too long.");
2032                 return success;
2033         }
2034
2035         /*
2036          * getaddrinfo returns a loopback address if the hostname is
2037          * set to NULL and hints.ai_flags is not AI_PASSIVE
2038          */
2039         memset(&hints, 0, sizeof(hints));
2040         hints.ai_family = IPv4or6;
2041         hints.ai_flags = gateway_ports ? AI_PASSIVE : 0;
2042         hints.ai_socktype = SOCK_STREAM;
2043         snprintf(strport, sizeof strport, "%d", listen_port);
2044         if (getaddrinfo(NULL, strport, &hints, &aitop) != 0)
2045                 packet_disconnect("getaddrinfo: fatal error");
2046
2047         for (ai = aitop; ai; ai = ai->ai_next) {
2048                 if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6)
2049                         continue;
2050                 if (getnameinfo(ai->ai_addr, ai->ai_addrlen, ntop, sizeof(ntop),
2051                     strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV) != 0) {
2052                         error("channel_setup_fwd_listener: getnameinfo failed");
2053                         continue;
2054                 }
2055                 /* Create a port to listen for the host. */
2056                 sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
2057                 if (sock < 0) {
2058                         /* this is no error since kernel may not support ipv6 */
2059                         verbose("socket: %.100s", strerror(errno));
2060                         continue;
2061                 }
2062                 /*
2063                  * Set socket options.
2064                  * Allow local port reuse in TIME_WAIT.
2065                  */
2066                 if (setsockopt(sock, SOL_SOCKET, SO_REUSEADDR, &on,
2067                     sizeof(on)) == -1)
2068                         error("setsockopt SO_REUSEADDR: %s", strerror(errno));
2069
2070                 debug("Local forwarding listening on %s port %s.", ntop, strport);
2071
2072                 /* Bind the socket to the address. */
2073                 if (bind(sock, ai->ai_addr, ai->ai_addrlen) < 0) {
2074                         /* address can be in use ipv6 address is already bound */
2075                         if (!ai->ai_next)
2076                                 error("bind: %.100s", strerror(errno));
2077                         else
2078                                 verbose("bind: %.100s", strerror(errno));
2079
2080                         close(sock);
2081                         continue;
2082                 }
2083                 /* Start listening for connections on the socket. */
2084                 if (listen(sock, 5) < 0) {
2085                         error("listen: %.100s", strerror(errno));
2086                         close(sock);
2087                         continue;
2088                 }
2089                 /* Allocate a channel number for the socket. */
2090                 c = channel_new("port listener", type, sock, sock, -1,
2091                     CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT,
2092                     0, "port listener", 1);
2093                 strlcpy(c->path, host, sizeof(c->path));
2094                 c->host_port = port_to_connect;
2095                 c->listening_port = listen_port;
2096                 success = 1;
2097         }
2098         if (success == 0)
2099                 error("channel_setup_fwd_listener: cannot listen to port: %d",
2100                     listen_port);
2101         freeaddrinfo(aitop);
2102         return success;
2103 }
2104
2105 /* protocol local port fwd, used by ssh (and sshd in v1) */
2106 int
2107 channel_setup_local_fwd_listener(u_short listen_port,
2108     const char *host_to_connect, u_short port_to_connect, int gateway_ports)
2109 {
2110         return channel_setup_fwd_listener(SSH_CHANNEL_PORT_LISTENER,
2111             NULL, listen_port, host_to_connect, port_to_connect, gateway_ports);
2112 }
2113
2114 /* protocol v2 remote port fwd, used by sshd */
2115 int
2116 channel_setup_remote_fwd_listener(const char *listen_address,
2117     u_short listen_port, int gateway_ports)
2118 {
2119         return channel_setup_fwd_listener(SSH_CHANNEL_RPORT_LISTENER,
2120             listen_address, listen_port, NULL, 0, gateway_ports);
2121 }
2122
2123 /*
2124  * Initiate forwarding of connections to port "port" on remote host through
2125  * the secure channel to host:port from local side.
2126  */
2127
2128 void
2129 channel_request_remote_forwarding(u_short listen_port,
2130     const char *host_to_connect, u_short port_to_connect)
2131 {
2132         int type, success = 0;
2133
2134         /* Record locally that connection to this host/port is permitted. */
2135         if (num_permitted_opens >= SSH_MAX_FORWARDS_PER_DIRECTION)
2136                 fatal("channel_request_remote_forwarding: too many forwards");
2137
2138         /* Send the forward request to the remote side. */
2139         if (compat20) {
2140                 const char *address_to_bind = "0.0.0.0";
2141                 packet_start(SSH2_MSG_GLOBAL_REQUEST);
2142                 packet_put_cstring("tcpip-forward");
2143                 packet_put_char(1);                     /* boolean: want reply */
2144                 packet_put_cstring(address_to_bind);
2145                 packet_put_int(listen_port);
2146                 packet_send();
2147                 packet_write_wait();
2148                 /* Assume that server accepts the request */
2149                 success = 1;
2150         } else {
2151                 packet_start(SSH_CMSG_PORT_FORWARD_REQUEST);
2152                 packet_put_int(listen_port);
2153                 packet_put_cstring(host_to_connect);
2154                 packet_put_int(port_to_connect);
2155                 packet_send();
2156                 packet_write_wait();
2157
2158                 /* Wait for response from the remote side. */
2159                 type = packet_read();
2160                 switch (type) {
2161                 case SSH_SMSG_SUCCESS:
2162                         success = 1;
2163                         break;
2164                 case SSH_SMSG_FAILURE:
2165                         logit("Warning: Server denied remote port forwarding.");
2166                         break;
2167                 default:
2168                         /* Unknown packet */
2169                         packet_disconnect("Protocol error for port forward request:"
2170                             "received packet type %d.", type);
2171                 }
2172         }
2173         if (success) {
2174                 permitted_opens[num_permitted_opens].host_to_connect = xstrdup(host_to_connect);
2175                 permitted_opens[num_permitted_opens].port_to_connect = port_to_connect;
2176                 permitted_opens[num_permitted_opens].listen_port = listen_port;
2177                 num_permitted_opens++;
2178         }
2179 }
2180
2181 /*
2182  * This is called after receiving CHANNEL_FORWARDING_REQUEST.  This initates
2183  * listening for the port, and sends back a success reply (or disconnect
2184  * message if there was an error).  This never returns if there was an error.
2185  */
2186
2187 void
2188 channel_input_port_forward_request(int is_root, int gateway_ports)
2189 {
2190         u_short port, host_port;
2191         char *hostname;
2192
2193         /* Get arguments from the packet. */
2194         port = packet_get_int();
2195         hostname = packet_get_string(NULL);
2196         host_port = packet_get_int();
2197
2198 #ifndef HAVE_CYGWIN
2199         /*
2200          * Check that an unprivileged user is not trying to forward a
2201          * privileged port.
2202          */
2203         if (port < IPPORT_RESERVED && !is_root)
2204                 packet_disconnect("Requested forwarding of port %d but user is not root.",
2205                                   port);
2206 #endif
2207         /* Initiate forwarding */
2208         channel_setup_local_fwd_listener(port, hostname, host_port, gateway_ports);
2209
2210         /* Free the argument string. */
2211         xfree(hostname);
2212 }
2213
2214 /*
2215  * Permits opening to any host/port if permitted_opens[] is empty.  This is
2216  * usually called by the server, because the user could connect to any port
2217  * anyway, and the server has no way to know but to trust the client anyway.
2218  */
2219 void
2220 channel_permit_all_opens(void)
2221 {
2222         if (num_permitted_opens == 0)
2223                 all_opens_permitted = 1;
2224 }
2225
2226 void
2227 channel_add_permitted_opens(char *host, int port)
2228 {
2229         if (num_permitted_opens >= SSH_MAX_FORWARDS_PER_DIRECTION)
2230                 fatal("channel_request_remote_forwarding: too many forwards");
2231         debug("allow port forwarding to host %s port %d", host, port);
2232
2233         permitted_opens[num_permitted_opens].host_to_connect = xstrdup(host);
2234         permitted_opens[num_permitted_opens].port_to_connect = port;
2235         num_permitted_opens++;
2236
2237         all_opens_permitted = 0;
2238 }
2239
2240 void
2241 channel_clear_permitted_opens(void)
2242 {
2243         int i;
2244
2245         for (i = 0; i < num_permitted_opens; i++)
2246                 xfree(permitted_opens[i].host_to_connect);
2247         num_permitted_opens = 0;
2248
2249 }
2250
2251
2252 /* return socket to remote host, port */
2253 static int
2254 connect_to(const char *host, u_short port)
2255 {
2256         struct addrinfo hints, *ai, *aitop;
2257         char ntop[NI_MAXHOST], strport[NI_MAXSERV];
2258         int gaierr;
2259         int sock = -1;
2260
2261         memset(&hints, 0, sizeof(hints));
2262         hints.ai_family = IPv4or6;
2263         hints.ai_socktype = SOCK_STREAM;
2264         snprintf(strport, sizeof strport, "%d", port);
2265         if ((gaierr = getaddrinfo(host, strport, &hints, &aitop)) != 0) {
2266                 error("connect_to %.100s: unknown host (%s)", host,
2267                     gai_strerror(gaierr));
2268                 return -1;
2269         }
2270         for (ai = aitop; ai; ai = ai->ai_next) {
2271                 if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6)
2272                         continue;
2273                 if (getnameinfo(ai->ai_addr, ai->ai_addrlen, ntop, sizeof(ntop),
2274                     strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV) != 0) {
2275                         error("connect_to: getnameinfo failed");
2276                         continue;
2277                 }
2278                 sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
2279                 if (sock < 0) {
2280                         if (ai->ai_next == NULL)
2281                                 error("socket: %.100s", strerror(errno));
2282                         else
2283                                 verbose("socket: %.100s", strerror(errno));
2284                         continue;
2285                 }
2286                 if (fcntl(sock, F_SETFL, O_NONBLOCK) < 0)
2287                         fatal("connect_to: F_SETFL: %s", strerror(errno));
2288                 if (connect(sock, ai->ai_addr, ai->ai_addrlen) < 0 &&
2289                     errno != EINPROGRESS) {
2290                         error("connect_to %.100s port %s: %.100s", ntop, strport,
2291                             strerror(errno));
2292                         close(sock);
2293                         continue;       /* fail -- try next */
2294                 }
2295                 break; /* success */
2296
2297         }
2298         freeaddrinfo(aitop);
2299         if (!ai) {
2300                 error("connect_to %.100s port %d: failed.", host, port);
2301                 return -1;
2302         }
2303         /* success */
2304         set_nodelay(sock);
2305         return sock;
2306 }
2307
2308 int
2309 channel_connect_by_listen_address(u_short listen_port)
2310 {
2311         int i;
2312
2313         for (i = 0; i < num_permitted_opens; i++)
2314                 if (permitted_opens[i].listen_port == listen_port)
2315                         return connect_to(
2316                             permitted_opens[i].host_to_connect,
2317                             permitted_opens[i].port_to_connect);
2318         error("WARNING: Server requests forwarding for unknown listen_port %d",
2319             listen_port);
2320         return -1;
2321 }
2322
2323 /* Check if connecting to that port is permitted and connect. */
2324 int
2325 channel_connect_to(const char *host, u_short port)
2326 {
2327         int i, permit;
2328
2329         permit = all_opens_permitted;
2330         if (!permit) {
2331                 for (i = 0; i < num_permitted_opens; i++)
2332                         if (permitted_opens[i].port_to_connect == port &&
2333                             strcmp(permitted_opens[i].host_to_connect, host) == 0)
2334                                 permit = 1;
2335
2336         }
2337         if (!permit) {
2338                 logit("Received request to connect to host %.100s port %d, "
2339                     "but the request was denied.", host, port);
2340                 return -1;
2341         }
2342         return connect_to(host, port);
2343 }
2344
2345 /* -- X11 forwarding */
2346
2347 /*
2348  * Creates an internet domain socket for listening for X11 connections.
2349  * Returns 0 and a suitable display number for the DISPLAY variable
2350  * stored in display_numberp , or -1 if an error occurs.
2351  */
2352 int
2353 x11_create_display_inet(int x11_display_offset, int x11_use_localhost,
2354     int single_connection, u_int *display_numberp)
2355 {
2356         Channel *nc = NULL;
2357         int display_number, sock;
2358         u_short port;
2359         struct addrinfo hints, *ai, *aitop;
2360         char strport[NI_MAXSERV];
2361         int gaierr, n, num_socks = 0, socks[NUM_SOCKS];
2362
2363         for (display_number = x11_display_offset;
2364             display_number < MAX_DISPLAYS;
2365             display_number++) {
2366                 port = 6000 + display_number;
2367                 memset(&hints, 0, sizeof(hints));
2368                 hints.ai_family = IPv4or6;
2369                 hints.ai_flags = x11_use_localhost ? 0: AI_PASSIVE;
2370                 hints.ai_socktype = SOCK_STREAM;
2371                 snprintf(strport, sizeof strport, "%d", port);
2372                 if ((gaierr = getaddrinfo(NULL, strport, &hints, &aitop)) != 0) {
2373                         error("getaddrinfo: %.100s", gai_strerror(gaierr));
2374                         return -1;
2375                 }
2376                 for (ai = aitop; ai; ai = ai->ai_next) {
2377                         if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6)
2378                                 continue;
2379                         sock = socket(ai->ai_family, ai->ai_socktype,
2380                             ai->ai_protocol);
2381                         if (sock < 0) {
2382                                 if ((errno != EINVAL) && (errno != EAFNOSUPPORT)) {
2383                                         error("socket: %.100s", strerror(errno));
2384                                         return -1;
2385                                 } else {
2386                                         debug("x11_create_display_inet: Socket family %d not supported",
2387                                                  ai->ai_family);
2388                                         continue;
2389                                 }
2390                         }
2391 #ifdef IPV6_V6ONLY
2392                         if (ai->ai_family == AF_INET6) {
2393                                 int on = 1;
2394                                 if (setsockopt(sock, IPPROTO_IPV6, IPV6_V6ONLY, &on, sizeof(on)) < 0)
2395                                         error("setsockopt IPV6_V6ONLY: %.100s", strerror(errno));
2396                         }
2397 #endif
2398                         if (bind(sock, ai->ai_addr, ai->ai_addrlen) < 0) {
2399                                 debug("bind port %d: %.100s", port, strerror(errno));
2400                                 close(sock);
2401
2402                                 if (ai->ai_next)
2403                                         continue;
2404
2405                                 for (n = 0; n < num_socks; n++) {
2406                                         close(socks[n]);
2407                                 }
2408                                 num_socks = 0;
2409                                 break;
2410                         }
2411                         socks[num_socks++] = sock;
2412 #ifndef DONT_TRY_OTHER_AF
2413                         if (num_socks == NUM_SOCKS)
2414                                 break;
2415 #else
2416                         if (x11_use_localhost) {
2417                                 if (num_socks == NUM_SOCKS)
2418                                         break;
2419                         } else {
2420                                 break;
2421                         }
2422 #endif
2423                 }
2424                 freeaddrinfo(aitop);
2425                 if (num_socks > 0)
2426                         break;
2427         }
2428         if (display_number >= MAX_DISPLAYS) {
2429                 error("Failed to allocate internet-domain X11 display socket.");
2430                 return -1;
2431         }
2432         /* Start listening for connections on the socket. */
2433         for (n = 0; n < num_socks; n++) {
2434                 sock = socks[n];
2435                 if (listen(sock, 5) < 0) {
2436                         error("listen: %.100s", strerror(errno));
2437                         close(sock);
2438                         return -1;
2439                 }
2440         }
2441
2442         /* Allocate a channel for each socket. */
2443         for (n = 0; n < num_socks; n++) {
2444                 sock = socks[n];
2445                 nc = channel_new("x11 listener",
2446                     SSH_CHANNEL_X11_LISTENER, sock, sock, -1,
2447                     CHAN_X11_WINDOW_DEFAULT, CHAN_X11_PACKET_DEFAULT,
2448                     0, "X11 inet listener", 1);
2449                 nc->single_connection = single_connection;
2450         }
2451
2452         /* Return the display number for the DISPLAY environment variable. */
2453         *display_numberp = display_number;
2454         return (0);
2455 }
2456
2457 static int
2458 connect_local_xsocket(u_int dnr)
2459 {
2460         int sock;
2461         struct sockaddr_un addr;
2462
2463         sock = socket(AF_UNIX, SOCK_STREAM, 0);
2464         if (sock < 0)
2465                 error("socket: %.100s", strerror(errno));
2466         memset(&addr, 0, sizeof(addr));
2467         addr.sun_family = AF_UNIX;
2468         snprintf(addr.sun_path, sizeof addr.sun_path, _PATH_UNIX_X, dnr);
2469         if (connect(sock, (struct sockaddr *) & addr, sizeof(addr)) == 0)
2470                 return sock;
2471         close(sock);
2472         error("connect %.100s: %.100s", addr.sun_path, strerror(errno));
2473         return -1;
2474 }
2475
2476 int
2477 x11_connect_display(void)
2478 {
2479         int display_number, sock = 0;
2480         const char *display;
2481         char buf[1024], *cp;
2482         struct addrinfo hints, *ai, *aitop;
2483         char strport[NI_MAXSERV];
2484         int gaierr;
2485
2486         /* Try to open a socket for the local X server. */
2487         display = getenv("DISPLAY");
2488         if (!display) {
2489                 error("DISPLAY not set.");
2490                 return -1;
2491         }
2492         /*
2493          * Now we decode the value of the DISPLAY variable and make a
2494          * connection to the real X server.
2495          */
2496
2497         /*
2498          * Check if it is a unix domain socket.  Unix domain displays are in
2499          * one of the following formats: unix:d[.s], :d[.s], ::d[.s]
2500          */
2501         if (strncmp(display, "unix:", 5) == 0 ||
2502             display[0] == ':') {
2503                 /* Connect to the unix domain socket. */
2504                 if (sscanf(strrchr(display, ':') + 1, "%d", &display_number) != 1) {
2505                         error("Could not parse display number from DISPLAY: %.100s",
2506                             display);
2507                         return -1;
2508                 }
2509                 /* Create a socket. */
2510                 sock = connect_local_xsocket(display_number);
2511                 if (sock < 0)
2512                         return -1;
2513
2514                 /* OK, we now have a connection to the display. */
2515                 return sock;
2516         }
2517         /*
2518          * Connect to an inet socket.  The DISPLAY value is supposedly
2519          * hostname:d[.s], where hostname may also be numeric IP address.
2520          */
2521         strlcpy(buf, display, sizeof(buf));
2522         cp = strchr(buf, ':');
2523         if (!cp) {
2524                 error("Could not find ':' in DISPLAY: %.100s", display);
2525                 return -1;
2526         }
2527         *cp = 0;
2528         /* buf now contains the host name.  But first we parse the display number. */
2529         if (sscanf(cp + 1, "%d", &display_number) != 1) {
2530                 error("Could not parse display number from DISPLAY: %.100s",
2531                     display);
2532                 return -1;
2533         }
2534
2535         /* Look up the host address */
2536         memset(&hints, 0, sizeof(hints));
2537         hints.ai_family = IPv4or6;
2538         hints.ai_socktype = SOCK_STREAM;
2539         snprintf(strport, sizeof strport, "%d", 6000 + display_number);
2540         if ((gaierr = getaddrinfo(buf, strport, &hints, &aitop)) != 0) {
2541                 error("%.100s: unknown host. (%s)", buf, gai_strerror(gaierr));
2542                 return -1;
2543         }
2544         for (ai = aitop; ai; ai = ai->ai_next) {
2545                 /* Create a socket. */
2546                 sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
2547                 if (sock < 0) {
2548                         debug("socket: %.100s", strerror(errno));
2549                         continue;
2550                 }
2551                 /* Connect it to the display. */
2552                 if (connect(sock, ai->ai_addr, ai->ai_addrlen) < 0) {
2553                         debug("connect %.100s port %d: %.100s", buf,
2554                             6000 + display_number, strerror(errno));
2555                         close(sock);
2556                         continue;
2557                 }
2558                 /* Success */
2559                 break;
2560         }
2561         freeaddrinfo(aitop);
2562         if (!ai) {
2563                 error("connect %.100s port %d: %.100s", buf, 6000 + display_number,
2564                     strerror(errno));
2565                 return -1;
2566         }
2567         set_nodelay(sock);
2568         return sock;
2569 }
2570
2571 /*
2572  * This is called when SSH_SMSG_X11_OPEN is received.  The packet contains
2573  * the remote channel number.  We should do whatever we want, and respond
2574  * with either SSH_MSG_OPEN_CONFIRMATION or SSH_MSG_OPEN_FAILURE.
2575  */
2576
2577 void
2578 x11_input_open(int type, u_int32_t seq, void *ctxt)
2579 {
2580         Channel *c = NULL;
2581         int remote_id, sock = 0;
2582         char *remote_host;
2583
2584         debug("Received X11 open request.");
2585
2586         remote_id = packet_get_int();
2587
2588         if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) {
2589                 remote_host = packet_get_string(NULL);
2590         } else {
2591                 remote_host = xstrdup("unknown (remote did not supply name)");
2592         }
2593         packet_check_eom();
2594
2595         /* Obtain a connection to the real X display. */
2596         sock = x11_connect_display();
2597         if (sock != -1) {
2598                 /* Allocate a channel for this connection. */
2599                 c = channel_new("connected x11 socket",
2600                     SSH_CHANNEL_X11_OPEN, sock, sock, -1, 0, 0, 0,
2601                     remote_host, 1);
2602                 c->remote_id = remote_id;
2603                 c->force_drain = 1;
2604         }
2605         xfree(remote_host);
2606         if (c == NULL) {
2607                 /* Send refusal to the remote host. */
2608                 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE);
2609                 packet_put_int(remote_id);
2610         } else {
2611                 /* Send a confirmation to the remote host. */
2612                 packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION);
2613                 packet_put_int(remote_id);
2614                 packet_put_int(c->self);
2615         }
2616         packet_send();
2617 }
2618
2619 /* dummy protocol handler that denies SSH-1 requests (agent/x11) */
2620 void
2621 deny_input_open(int type, u_int32_t seq, void *ctxt)
2622 {
2623         int rchan = packet_get_int();
2624
2625         switch (type) {
2626         case SSH_SMSG_AGENT_OPEN:
2627                 error("Warning: ssh server tried agent forwarding.");
2628                 break;
2629         case SSH_SMSG_X11_OPEN:
2630                 error("Warning: ssh server tried X11 forwarding.");
2631                 break;
2632         default:
2633                 error("deny_input_open: type %d", type);
2634                 break;
2635         }
2636         error("Warning: this is probably a break in attempt by a malicious server.");
2637         packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE);
2638         packet_put_int(rchan);
2639         packet_send();
2640 }
2641
2642 /*
2643  * Requests forwarding of X11 connections, generates fake authentication
2644  * data, and enables authentication spoofing.
2645  * This should be called in the client only.
2646  */
2647 void
2648 x11_request_forwarding_with_spoofing(int client_session_id,
2649     const char *proto, const char *data)
2650 {
2651         u_int data_len = (u_int) strlen(data) / 2;
2652         u_int i, value, len;
2653         char *new_data;
2654         int screen_number;
2655         const char *cp;
2656         u_int32_t rand = 0;
2657
2658         cp = getenv("DISPLAY");
2659         if (cp)
2660                 cp = strchr(cp, ':');
2661         if (cp)
2662                 cp = strchr(cp, '.');
2663         if (cp)
2664                 screen_number = atoi(cp + 1);
2665         else
2666                 screen_number = 0;
2667
2668         /* Save protocol name. */
2669         x11_saved_proto = xstrdup(proto);
2670
2671         /*
2672          * Extract real authentication data and generate fake data of the
2673          * same length.
2674          */
2675         x11_saved_data = xmalloc(data_len);
2676         x11_fake_data = xmalloc(data_len);
2677         for (i = 0; i < data_len; i++) {
2678                 if (sscanf(data + 2 * i, "%2x", &value) != 1)
2679                         fatal("x11_request_forwarding: bad authentication data: %.100s", data);
2680                 if (i % 4 == 0)
2681                         rand = arc4random();
2682                 x11_saved_data[i] = value;
2683                 x11_fake_data[i] = rand & 0xff;
2684                 rand >>= 8;
2685         }
2686         x11_saved_data_len = data_len;
2687         x11_fake_data_len = data_len;
2688
2689         /* Convert the fake data into hex. */
2690         len = 2 * data_len + 1;
2691         new_data = xmalloc(len);
2692         for (i = 0; i < data_len; i++)
2693                 snprintf(new_data + 2 * i, len - 2 * i,
2694                     "%02x", (u_char) x11_fake_data[i]);
2695
2696         /* Send the request packet. */
2697         if (compat20) {
2698                 channel_request_start(client_session_id, "x11-req", 0);
2699                 packet_put_char(0);     /* XXX bool single connection */
2700         } else {
2701                 packet_start(SSH_CMSG_X11_REQUEST_FORWARDING);
2702         }
2703         packet_put_cstring(proto);
2704         packet_put_cstring(new_data);
2705         packet_put_int(screen_number);
2706         packet_send();
2707         packet_write_wait();
2708         xfree(new_data);
2709 }
2710
2711
2712 /* -- agent forwarding */
2713
2714 /* Sends a message to the server to request authentication fd forwarding. */
2715
2716 void
2717 auth_request_forwarding(void)
2718 {
2719         packet_start(SSH_CMSG_AGENT_REQUEST_FORWARDING);
2720         packet_send();
2721         packet_write_wait();
2722 }
2723
2724 /* This is called to process an SSH_SMSG_AGENT_OPEN message. */
2725
2726 void
2727 auth_input_open_request(int type, u_int32_t seq, void *ctxt)
2728 {
2729         Channel *c = NULL;
2730         int remote_id, sock;
2731
2732         /* Read the remote channel number from the message. */
2733         remote_id = packet_get_int();
2734         packet_check_eom();
2735
2736         /*
2737          * Get a connection to the local authentication agent (this may again
2738          * get forwarded).
2739          */
2740         sock = ssh_get_authentication_socket();
2741
2742         /*
2743          * If we could not connect the agent, send an error message back to
2744          * the server. This should never happen unless the agent dies,
2745          * because authentication forwarding is only enabled if we have an
2746          * agent.
2747          */
2748         if (sock >= 0) {
2749                 c = channel_new("", SSH_CHANNEL_OPEN, sock, sock,
2750                     -1, 0, 0, 0, "authentication agent connection", 1);
2751                 c->remote_id = remote_id;
2752                 c->force_drain = 1;
2753         }
2754         if (c == NULL) {
2755                 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE);
2756                 packet_put_int(remote_id);
2757         } else {
2758                 /* Send a confirmation to the remote host. */
2759                 debug("Forwarding authentication connection.");
2760                 packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION);
2761                 packet_put_int(remote_id);
2762                 packet_put_int(c->self);
2763         }
2764         packet_send();
2765 }
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