Merge branch 'vendor/OPENSSH'
[dragonfly.git] / crypto / openssh / packet.c
1 /* $OpenBSD: packet.c,v 1.173 2011/05/06 21:14:05 djm Exp $ */
2 /*
3  * Author: Tatu Ylonen <ylo@cs.hut.fi>
4  * Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
5  *                    All rights reserved
6  * This file contains code implementing the packet protocol and communication
7  * with the other side.  This same code is used both on client and server side.
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  *
16  * SSH2 packet format added by Markus Friedl.
17  * Copyright (c) 2000, 2001 Markus Friedl.  All rights reserved.
18  *
19  * Redistribution and use in source and binary forms, with or without
20  * modification, are permitted provided that the following conditions
21  * are met:
22  * 1. Redistributions of source code must retain the above copyright
23  *    notice, this list of conditions and the following disclaimer.
24  * 2. Redistributions in binary form must reproduce the above copyright
25  *    notice, this list of conditions and the following disclaimer in the
26  *    documentation and/or other materials provided with the distribution.
27  *
28  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
29  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
30  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
31  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
32  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
33  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
34  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
35  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
36  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
37  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
38  */
39
40 #include "includes.h"
41  
42 #include <sys/types.h>
43 #include "openbsd-compat/sys-queue.h"
44 #include <sys/param.h>
45 #include <sys/socket.h>
46 #ifdef HAVE_SYS_TIME_H
47 # include <sys/time.h>
48 #endif
49
50 #include <netinet/in.h>
51 #include <netinet/ip.h>
52 #include <arpa/inet.h>
53
54 #include <errno.h>
55 #include <stdarg.h>
56 #include <stdio.h>
57 #include <stdlib.h>
58 #include <string.h>
59 #include <unistd.h>
60 #include <signal.h>
61
62 #include "xmalloc.h"
63 #include "buffer.h"
64 #include "packet.h"
65 #include "crc32.h"
66 #include "compress.h"
67 #include "deattack.h"
68 #include "channels.h"
69 #include "compat.h"
70 #include "ssh1.h"
71 #include "ssh2.h"
72 #include "cipher.h"
73 #include "key.h"
74 #include "kex.h"
75 #include "mac.h"
76 #include "log.h"
77 #include "canohost.h"
78 #include "misc.h"
79 #include "ssh.h"
80 #include "roaming.h"
81
82 #ifdef PACKET_DEBUG
83 #define DBG(x) x
84 #else
85 #define DBG(x)
86 #endif
87
88 #define PACKET_MAX_SIZE (256 * 1024)
89
90 struct packet_state {
91         u_int32_t seqnr;
92         u_int32_t packets;
93         u_int64_t blocks;
94         u_int64_t bytes;
95 };
96
97 struct packet {
98         TAILQ_ENTRY(packet) next;
99         u_char type;
100         Buffer payload;
101 };
102
103 struct session_state {
104         /*
105          * This variable contains the file descriptors used for
106          * communicating with the other side.  connection_in is used for
107          * reading; connection_out for writing.  These can be the same
108          * descriptor, in which case it is assumed to be a socket.
109          */
110         int connection_in;
111         int connection_out;
112
113         /* Protocol flags for the remote side. */
114         u_int remote_protocol_flags;
115
116         /* Encryption context for receiving data.  Only used for decryption. */
117         CipherContext receive_context;
118
119         /* Encryption context for sending data.  Only used for encryption. */
120         CipherContext send_context;
121
122         /* Buffer for raw input data from the socket. */
123         Buffer input;
124
125         /* Buffer for raw output data going to the socket. */
126         Buffer output;
127
128         /* Buffer for the partial outgoing packet being constructed. */
129         Buffer outgoing_packet;
130
131         /* Buffer for the incoming packet currently being processed. */
132         Buffer incoming_packet;
133
134         /* Scratch buffer for packet compression/decompression. */
135         Buffer compression_buffer;
136         int compression_buffer_ready;
137
138         /*
139          * Flag indicating whether packet compression/decompression is
140          * enabled.
141          */
142         int packet_compression;
143
144         /* default maximum packet size */
145         u_int max_packet_size;
146
147         /* Flag indicating whether this module has been initialized. */
148         int initialized;
149
150         /* Set to true if the connection is interactive. */
151         int interactive_mode;
152
153         /* Set to true if we are the server side. */
154         int server_side;
155
156         /* Set to true if we are authenticated. */
157         int after_authentication;
158
159         int keep_alive_timeouts;
160
161         /* The maximum time that we will wait to send or receive a packet */
162         int packet_timeout_ms;
163
164         /* Session key information for Encryption and MAC */
165         Newkeys *newkeys[MODE_MAX];
166         struct packet_state p_read, p_send;
167
168         u_int64_t max_blocks_in, max_blocks_out;
169         u_int32_t rekey_limit;
170
171         /* Session key for protocol v1 */
172         u_char ssh1_key[SSH_SESSION_KEY_LENGTH];
173         u_int ssh1_keylen;
174
175         /* roundup current message to extra_pad bytes */
176         u_char extra_pad;
177
178         /* XXX discard incoming data after MAC error */
179         u_int packet_discard;
180         Mac *packet_discard_mac;
181
182         /* Used in packet_read_poll2() */
183         u_int packlen;
184
185         /* Used in packet_send2 */
186         int rekeying;
187
188         /* Used in packet_set_interactive */
189         int set_interactive_called;
190
191         /* Used in packet_set_maxsize */
192         int set_maxsize_called;
193
194         TAILQ_HEAD(, packet) outgoing;
195 };
196
197 static struct session_state *active_state, *backup_state;
198
199 static struct session_state *
200 alloc_session_state(void)
201 {
202         struct session_state *s = xcalloc(1, sizeof(*s));
203
204         s->connection_in = -1;
205         s->connection_out = -1;
206         s->max_packet_size = 32768;
207         s->packet_timeout_ms = -1;
208         return s;
209 }
210
211 /*
212  * Sets the descriptors used for communication.  Disables encryption until
213  * packet_set_encryption_key is called.
214  */
215 void
216 packet_set_connection(int fd_in, int fd_out)
217 {
218         Cipher *none = cipher_by_name("none");
219
220         if (none == NULL)
221                 fatal("packet_set_connection: cannot load cipher 'none'");
222         if (active_state == NULL)
223                 active_state = alloc_session_state();
224         active_state->connection_in = fd_in;
225         active_state->connection_out = fd_out;
226         cipher_init(&active_state->send_context, none, (const u_char *)"",
227             0, NULL, 0, CIPHER_ENCRYPT);
228         cipher_init(&active_state->receive_context, none, (const u_char *)"",
229             0, NULL, 0, CIPHER_DECRYPT);
230         active_state->newkeys[MODE_IN] = active_state->newkeys[MODE_OUT] = NULL;
231         if (!active_state->initialized) {
232                 active_state->initialized = 1;
233                 buffer_init(&active_state->input);
234                 buffer_init(&active_state->output);
235                 buffer_init(&active_state->outgoing_packet);
236                 buffer_init(&active_state->incoming_packet);
237                 TAILQ_INIT(&active_state->outgoing);
238                 active_state->p_send.packets = active_state->p_read.packets = 0;
239         }
240 }
241
242 void
243 packet_set_timeout(int timeout, int count)
244 {
245         if (timeout == 0 || count == 0) {
246                 active_state->packet_timeout_ms = -1;
247                 return;
248         }
249         if ((INT_MAX / 1000) / count < timeout)
250                 active_state->packet_timeout_ms = INT_MAX;
251         else
252                 active_state->packet_timeout_ms = timeout * count * 1000;
253 }
254
255 static void
256 packet_stop_discard(void)
257 {
258         if (active_state->packet_discard_mac) {
259                 char buf[1024];
260                 
261                 memset(buf, 'a', sizeof(buf));
262                 while (buffer_len(&active_state->incoming_packet) <
263                     PACKET_MAX_SIZE)
264                         buffer_append(&active_state->incoming_packet, buf,
265                             sizeof(buf));
266                 (void) mac_compute(active_state->packet_discard_mac,
267                     active_state->p_read.seqnr,
268                     buffer_ptr(&active_state->incoming_packet),
269                     PACKET_MAX_SIZE);
270         }
271         logit("Finished discarding for %.200s", get_remote_ipaddr());
272         cleanup_exit(255);
273 }
274
275 static void
276 packet_start_discard(Enc *enc, Mac *mac, u_int packet_length, u_int discard)
277 {
278         if (enc == NULL || !cipher_is_cbc(enc->cipher))
279                 packet_disconnect("Packet corrupt");
280         if (packet_length != PACKET_MAX_SIZE && mac && mac->enabled)
281                 active_state->packet_discard_mac = mac;
282         if (buffer_len(&active_state->input) >= discard)
283                 packet_stop_discard();
284         active_state->packet_discard = discard -
285             buffer_len(&active_state->input);
286 }
287
288 /* Returns 1 if remote host is connected via socket, 0 if not. */
289
290 int
291 packet_connection_is_on_socket(void)
292 {
293         struct sockaddr_storage from, to;
294         socklen_t fromlen, tolen;
295
296         /* filedescriptors in and out are the same, so it's a socket */
297         if (active_state->connection_in == active_state->connection_out)
298                 return 1;
299         fromlen = sizeof(from);
300         memset(&from, 0, sizeof(from));
301         if (getpeername(active_state->connection_in, (struct sockaddr *)&from,
302             &fromlen) < 0)
303                 return 0;
304         tolen = sizeof(to);
305         memset(&to, 0, sizeof(to));
306         if (getpeername(active_state->connection_out, (struct sockaddr *)&to,
307             &tolen) < 0)
308                 return 0;
309         if (fromlen != tolen || memcmp(&from, &to, fromlen) != 0)
310                 return 0;
311         if (from.ss_family != AF_INET && from.ss_family != AF_INET6)
312                 return 0;
313         return 1;
314 }
315
316 /*
317  * Exports an IV from the CipherContext required to export the key
318  * state back from the unprivileged child to the privileged parent
319  * process.
320  */
321
322 void
323 packet_get_keyiv(int mode, u_char *iv, u_int len)
324 {
325         CipherContext *cc;
326
327         if (mode == MODE_OUT)
328                 cc = &active_state->send_context;
329         else
330                 cc = &active_state->receive_context;
331
332         cipher_get_keyiv(cc, iv, len);
333 }
334
335 int
336 packet_get_keycontext(int mode, u_char *dat)
337 {
338         CipherContext *cc;
339
340         if (mode == MODE_OUT)
341                 cc = &active_state->send_context;
342         else
343                 cc = &active_state->receive_context;
344
345         return (cipher_get_keycontext(cc, dat));
346 }
347
348 void
349 packet_set_keycontext(int mode, u_char *dat)
350 {
351         CipherContext *cc;
352
353         if (mode == MODE_OUT)
354                 cc = &active_state->send_context;
355         else
356                 cc = &active_state->receive_context;
357
358         cipher_set_keycontext(cc, dat);
359 }
360
361 int
362 packet_get_keyiv_len(int mode)
363 {
364         CipherContext *cc;
365
366         if (mode == MODE_OUT)
367                 cc = &active_state->send_context;
368         else
369                 cc = &active_state->receive_context;
370
371         return (cipher_get_keyiv_len(cc));
372 }
373
374 void
375 packet_set_iv(int mode, u_char *dat)
376 {
377         CipherContext *cc;
378
379         if (mode == MODE_OUT)
380                 cc = &active_state->send_context;
381         else
382                 cc = &active_state->receive_context;
383
384         cipher_set_keyiv(cc, dat);
385 }
386
387 int
388 packet_get_ssh1_cipher(void)
389 {
390         return (cipher_get_number(active_state->receive_context.cipher));
391 }
392
393 void
394 packet_get_state(int mode, u_int32_t *seqnr, u_int64_t *blocks,
395     u_int32_t *packets, u_int64_t *bytes)
396 {
397         struct packet_state *state;
398
399         state = (mode == MODE_IN) ?
400             &active_state->p_read : &active_state->p_send;
401         if (seqnr)
402                 *seqnr = state->seqnr;
403         if (blocks)
404                 *blocks = state->blocks;
405         if (packets)
406                 *packets = state->packets;
407         if (bytes)
408                 *bytes = state->bytes;
409 }
410
411 void
412 packet_set_state(int mode, u_int32_t seqnr, u_int64_t blocks, u_int32_t packets,
413     u_int64_t bytes)
414 {
415         struct packet_state *state;
416
417         state = (mode == MODE_IN) ?
418             &active_state->p_read : &active_state->p_send;
419         state->seqnr = seqnr;
420         state->blocks = blocks;
421         state->packets = packets;
422         state->bytes = bytes;
423 }
424
425 static int
426 packet_connection_af(void)
427 {
428         struct sockaddr_storage to;
429         socklen_t tolen = sizeof(to);
430
431         memset(&to, 0, sizeof(to));
432         if (getsockname(active_state->connection_out, (struct sockaddr *)&to,
433             &tolen) < 0)
434                 return 0;
435         if (to.ss_family == AF_INET)
436                 return 1;
437 #ifdef IPV4_IN_IPV6
438         if (to.ss_family == AF_INET6 &&
439             IN6_IS_ADDR_V4MAPPED(&((struct sockaddr_in6 *)&to)->sin6_addr))
440                 return AF_INET;
441 #endif
442         return to.ss_family;
443 }
444
445 /* Sets the connection into non-blocking mode. */
446
447 void
448 packet_set_nonblocking(void)
449 {
450         /* Set the socket into non-blocking mode. */
451         set_nonblock(active_state->connection_in);
452
453         if (active_state->connection_out != active_state->connection_in)
454                 set_nonblock(active_state->connection_out);
455 }
456
457 /* Returns the socket used for reading. */
458
459 int
460 packet_get_connection_in(void)
461 {
462         return active_state->connection_in;
463 }
464
465 /* Returns the descriptor used for writing. */
466
467 int
468 packet_get_connection_out(void)
469 {
470         return active_state->connection_out;
471 }
472
473 /* Closes the connection and clears and frees internal data structures. */
474
475 void
476 packet_close(void)
477 {
478         if (!active_state->initialized)
479                 return;
480         active_state->initialized = 0;
481         if (active_state->connection_in == active_state->connection_out) {
482                 shutdown(active_state->connection_out, SHUT_RDWR);
483                 close(active_state->connection_out);
484         } else {
485                 close(active_state->connection_in);
486                 close(active_state->connection_out);
487         }
488         buffer_free(&active_state->input);
489         buffer_free(&active_state->output);
490         buffer_free(&active_state->outgoing_packet);
491         buffer_free(&active_state->incoming_packet);
492         if (active_state->compression_buffer_ready) {
493                 buffer_free(&active_state->compression_buffer);
494                 buffer_compress_uninit();
495         }
496         cipher_cleanup(&active_state->send_context);
497         cipher_cleanup(&active_state->receive_context);
498 }
499
500 /* Sets remote side protocol flags. */
501
502 void
503 packet_set_protocol_flags(u_int protocol_flags)
504 {
505         active_state->remote_protocol_flags = protocol_flags;
506 }
507
508 /* Returns the remote protocol flags set earlier by the above function. */
509
510 u_int
511 packet_get_protocol_flags(void)
512 {
513         return active_state->remote_protocol_flags;
514 }
515
516 /*
517  * Starts packet compression from the next packet on in both directions.
518  * Level is compression level 1 (fastest) - 9 (slow, best) as in gzip.
519  */
520
521 static void
522 packet_init_compression(void)
523 {
524         if (active_state->compression_buffer_ready == 1)
525                 return;
526         active_state->compression_buffer_ready = 1;
527         buffer_init(&active_state->compression_buffer);
528 }
529
530 void
531 packet_start_compression(int level)
532 {
533         if (active_state->packet_compression && !compat20)
534                 fatal("Compression already enabled.");
535         active_state->packet_compression = 1;
536         packet_init_compression();
537         buffer_compress_init_send(level);
538         buffer_compress_init_recv();
539 }
540
541 /*
542  * Causes any further packets to be encrypted using the given key.  The same
543  * key is used for both sending and reception.  However, both directions are
544  * encrypted independently of each other.
545  */
546
547 void
548 packet_set_encryption_key(const u_char *key, u_int keylen, int number)
549 {
550         Cipher *cipher = cipher_by_number(number);
551
552         if (cipher == NULL)
553                 fatal("packet_set_encryption_key: unknown cipher number %d", number);
554         if (keylen < 20)
555                 fatal("packet_set_encryption_key: keylen too small: %d", keylen);
556         if (keylen > SSH_SESSION_KEY_LENGTH)
557                 fatal("packet_set_encryption_key: keylen too big: %d", keylen);
558         memcpy(active_state->ssh1_key, key, keylen);
559         active_state->ssh1_keylen = keylen;
560         cipher_init(&active_state->send_context, cipher, key, keylen, NULL,
561             0, CIPHER_ENCRYPT);
562         cipher_init(&active_state->receive_context, cipher, key, keylen, NULL,
563             0, CIPHER_DECRYPT);
564 }
565
566 u_int
567 packet_get_encryption_key(u_char *key)
568 {
569         if (key == NULL)
570                 return (active_state->ssh1_keylen);
571         memcpy(key, active_state->ssh1_key, active_state->ssh1_keylen);
572         return (active_state->ssh1_keylen);
573 }
574
575 /* Start constructing a packet to send. */
576 void
577 packet_start(u_char type)
578 {
579         u_char buf[9];
580         int len;
581
582         DBG(debug("packet_start[%d]", type));
583         len = compat20 ? 6 : 9;
584         memset(buf, 0, len - 1);
585         buf[len - 1] = type;
586         buffer_clear(&active_state->outgoing_packet);
587         buffer_append(&active_state->outgoing_packet, buf, len);
588 }
589
590 /* Append payload. */
591 void
592 packet_put_char(int value)
593 {
594         char ch = value;
595
596         buffer_append(&active_state->outgoing_packet, &ch, 1);
597 }
598
599 void
600 packet_put_int(u_int value)
601 {
602         buffer_put_int(&active_state->outgoing_packet, value);
603 }
604
605 void
606 packet_put_int64(u_int64_t value)
607 {
608         buffer_put_int64(&active_state->outgoing_packet, value);
609 }
610
611 void
612 packet_put_string(const void *buf, u_int len)
613 {
614         buffer_put_string(&active_state->outgoing_packet, buf, len);
615 }
616
617 void
618 packet_put_cstring(const char *str)
619 {
620         buffer_put_cstring(&active_state->outgoing_packet, str);
621 }
622
623 void
624 packet_put_raw(const void *buf, u_int len)
625 {
626         buffer_append(&active_state->outgoing_packet, buf, len);
627 }
628
629 void
630 packet_put_bignum(BIGNUM * value)
631 {
632         buffer_put_bignum(&active_state->outgoing_packet, value);
633 }
634
635 void
636 packet_put_bignum2(BIGNUM * value)
637 {
638         buffer_put_bignum2(&active_state->outgoing_packet, value);
639 }
640
641 #ifdef OPENSSL_HAS_ECC
642 void
643 packet_put_ecpoint(const EC_GROUP *curve, const EC_POINT *point)
644 {
645         buffer_put_ecpoint(&active_state->outgoing_packet, curve, point);
646 }
647 #endif
648
649 /*
650  * Finalizes and sends the packet.  If the encryption key has been set,
651  * encrypts the packet before sending.
652  */
653
654 static void
655 packet_send1(void)
656 {
657         u_char buf[8], *cp;
658         int i, padding, len;
659         u_int checksum;
660         u_int32_t rnd = 0;
661
662         /*
663          * If using packet compression, compress the payload of the outgoing
664          * packet.
665          */
666         if (active_state->packet_compression) {
667                 buffer_clear(&active_state->compression_buffer);
668                 /* Skip padding. */
669                 buffer_consume(&active_state->outgoing_packet, 8);
670                 /* padding */
671                 buffer_append(&active_state->compression_buffer,
672                     "\0\0\0\0\0\0\0\0", 8);
673                 buffer_compress(&active_state->outgoing_packet,
674                     &active_state->compression_buffer);
675                 buffer_clear(&active_state->outgoing_packet);
676                 buffer_append(&active_state->outgoing_packet,
677                     buffer_ptr(&active_state->compression_buffer),
678                     buffer_len(&active_state->compression_buffer));
679         }
680         /* Compute packet length without padding (add checksum, remove padding). */
681         len = buffer_len(&active_state->outgoing_packet) + 4 - 8;
682
683         /* Insert padding. Initialized to zero in packet_start1() */
684         padding = 8 - len % 8;
685         if (!active_state->send_context.plaintext) {
686                 cp = buffer_ptr(&active_state->outgoing_packet);
687                 for (i = 0; i < padding; i++) {
688                         if (i % 4 == 0)
689                                 rnd = arc4random();
690                         cp[7 - i] = rnd & 0xff;
691                         rnd >>= 8;
692                 }
693         }
694         buffer_consume(&active_state->outgoing_packet, 8 - padding);
695
696         /* Add check bytes. */
697         checksum = ssh_crc32(buffer_ptr(&active_state->outgoing_packet),
698             buffer_len(&active_state->outgoing_packet));
699         put_u32(buf, checksum);
700         buffer_append(&active_state->outgoing_packet, buf, 4);
701
702 #ifdef PACKET_DEBUG
703         fprintf(stderr, "packet_send plain: ");
704         buffer_dump(&active_state->outgoing_packet);
705 #endif
706
707         /* Append to output. */
708         put_u32(buf, len);
709         buffer_append(&active_state->output, buf, 4);
710         cp = buffer_append_space(&active_state->output,
711             buffer_len(&active_state->outgoing_packet));
712         cipher_crypt(&active_state->send_context, cp,
713             buffer_ptr(&active_state->outgoing_packet),
714             buffer_len(&active_state->outgoing_packet));
715
716 #ifdef PACKET_DEBUG
717         fprintf(stderr, "encrypted: ");
718         buffer_dump(&active_state->output);
719 #endif
720         active_state->p_send.packets++;
721         active_state->p_send.bytes += len +
722             buffer_len(&active_state->outgoing_packet);
723         buffer_clear(&active_state->outgoing_packet);
724
725         /*
726          * Note that the packet is now only buffered in output.  It won't be
727          * actually sent until packet_write_wait or packet_write_poll is
728          * called.
729          */
730 }
731
732 void
733 set_newkeys(int mode)
734 {
735         Enc *enc;
736         Mac *mac;
737         Comp *comp;
738         CipherContext *cc;
739         u_int64_t *max_blocks;
740         int crypt_type;
741
742         debug2("set_newkeys: mode %d", mode);
743
744         if (mode == MODE_OUT) {
745                 cc = &active_state->send_context;
746                 crypt_type = CIPHER_ENCRYPT;
747                 active_state->p_send.packets = active_state->p_send.blocks = 0;
748                 max_blocks = &active_state->max_blocks_out;
749         } else {
750                 cc = &active_state->receive_context;
751                 crypt_type = CIPHER_DECRYPT;
752                 active_state->p_read.packets = active_state->p_read.blocks = 0;
753                 max_blocks = &active_state->max_blocks_in;
754         }
755         if (active_state->newkeys[mode] != NULL) {
756                 debug("set_newkeys: rekeying");
757                 cipher_cleanup(cc);
758                 enc  = &active_state->newkeys[mode]->enc;
759                 mac  = &active_state->newkeys[mode]->mac;
760                 comp = &active_state->newkeys[mode]->comp;
761                 mac_clear(mac);
762                 xfree(enc->name);
763                 xfree(enc->iv);
764                 xfree(enc->key);
765                 xfree(mac->name);
766                 xfree(mac->key);
767                 xfree(comp->name);
768                 xfree(active_state->newkeys[mode]);
769         }
770         active_state->newkeys[mode] = kex_get_newkeys(mode);
771         if (active_state->newkeys[mode] == NULL)
772                 fatal("newkeys: no keys for mode %d", mode);
773         enc  = &active_state->newkeys[mode]->enc;
774         mac  = &active_state->newkeys[mode]->mac;
775         comp = &active_state->newkeys[mode]->comp;
776         if (mac_init(mac) == 0)
777                 mac->enabled = 1;
778         DBG(debug("cipher_init_context: %d", mode));
779         cipher_init(cc, enc->cipher, enc->key, enc->key_len,
780             enc->iv, enc->block_size, crypt_type);
781         /* Deleting the keys does not gain extra security */
782         /* memset(enc->iv,  0, enc->block_size);
783            memset(enc->key, 0, enc->key_len);
784            memset(mac->key, 0, mac->key_len); */
785         if ((comp->type == COMP_ZLIB ||
786             (comp->type == COMP_DELAYED &&
787              active_state->after_authentication)) && comp->enabled == 0) {
788                 packet_init_compression();
789                 if (mode == MODE_OUT)
790                         buffer_compress_init_send(6);
791                 else
792                         buffer_compress_init_recv();
793                 comp->enabled = 1;
794         }
795         /*
796          * The 2^(blocksize*2) limit is too expensive for 3DES,
797          * blowfish, etc, so enforce a 1GB limit for small blocksizes.
798          */
799         if (enc->block_size >= 16)
800                 *max_blocks = (u_int64_t)1 << (enc->block_size*2);
801         else
802                 *max_blocks = ((u_int64_t)1 << 30) / enc->block_size;
803         if (active_state->rekey_limit)
804                 *max_blocks = MIN(*max_blocks,
805                     active_state->rekey_limit / enc->block_size);
806 }
807
808 /*
809  * Delayed compression for SSH2 is enabled after authentication:
810  * This happens on the server side after a SSH2_MSG_USERAUTH_SUCCESS is sent,
811  * and on the client side after a SSH2_MSG_USERAUTH_SUCCESS is received.
812  */
813 static void
814 packet_enable_delayed_compress(void)
815 {
816         Comp *comp = NULL;
817         int mode;
818
819         /*
820          * Remember that we are past the authentication step, so rekeying
821          * with COMP_DELAYED will turn on compression immediately.
822          */
823         active_state->after_authentication = 1;
824         for (mode = 0; mode < MODE_MAX; mode++) {
825                 /* protocol error: USERAUTH_SUCCESS received before NEWKEYS */
826                 if (active_state->newkeys[mode] == NULL)
827                         continue;
828                 comp = &active_state->newkeys[mode]->comp;
829                 if (comp && !comp->enabled && comp->type == COMP_DELAYED) {
830                         packet_init_compression();
831                         if (mode == MODE_OUT)
832                                 buffer_compress_init_send(6);
833                         else
834                                 buffer_compress_init_recv();
835                         comp->enabled = 1;
836                 }
837         }
838 }
839
840 /*
841  * Finalize packet in SSH2 format (compress, mac, encrypt, enqueue)
842  */
843 static int
844 packet_send2_wrapped(void)
845 {
846         u_char type, *cp, *macbuf = NULL;
847         u_char padlen, pad;
848         u_int packet_length = 0;
849         u_int i, len;
850         u_int32_t rnd = 0;
851         Enc *enc   = NULL;
852         Mac *mac   = NULL;
853         Comp *comp = NULL;
854         int block_size;
855
856         if (active_state->newkeys[MODE_OUT] != NULL) {
857                 enc  = &active_state->newkeys[MODE_OUT]->enc;
858                 mac  = &active_state->newkeys[MODE_OUT]->mac;
859                 comp = &active_state->newkeys[MODE_OUT]->comp;
860         }
861         block_size = enc ? enc->block_size : 8;
862
863         cp = buffer_ptr(&active_state->outgoing_packet);
864         type = cp[5];
865
866 #ifdef PACKET_DEBUG
867         fprintf(stderr, "plain:     ");
868         buffer_dump(&active_state->outgoing_packet);
869 #endif
870
871         if (comp && comp->enabled) {
872                 len = buffer_len(&active_state->outgoing_packet);
873                 /* skip header, compress only payload */
874                 buffer_consume(&active_state->outgoing_packet, 5);
875                 buffer_clear(&active_state->compression_buffer);
876                 buffer_compress(&active_state->outgoing_packet,
877                     &active_state->compression_buffer);
878                 buffer_clear(&active_state->outgoing_packet);
879                 buffer_append(&active_state->outgoing_packet, "\0\0\0\0\0", 5);
880                 buffer_append(&active_state->outgoing_packet,
881                     buffer_ptr(&active_state->compression_buffer),
882                     buffer_len(&active_state->compression_buffer));
883                 DBG(debug("compression: raw %d compressed %d", len,
884                     buffer_len(&active_state->outgoing_packet)));
885         }
886
887         /* sizeof (packet_len + pad_len + payload) */
888         len = buffer_len(&active_state->outgoing_packet);
889
890         /*
891          * calc size of padding, alloc space, get random data,
892          * minimum padding is 4 bytes
893          */
894         padlen = block_size - (len % block_size);
895         if (padlen < 4)
896                 padlen += block_size;
897         if (active_state->extra_pad) {
898                 /* will wrap if extra_pad+padlen > 255 */
899                 active_state->extra_pad =
900                     roundup(active_state->extra_pad, block_size);
901                 pad = active_state->extra_pad -
902                     ((len + padlen) % active_state->extra_pad);
903                 debug3("packet_send2: adding %d (len %d padlen %d extra_pad %d)",
904                     pad, len, padlen, active_state->extra_pad);
905                 padlen += pad;
906                 active_state->extra_pad = 0;
907         }
908         cp = buffer_append_space(&active_state->outgoing_packet, padlen);
909         if (enc && !active_state->send_context.plaintext) {
910                 /* random padding */
911                 for (i = 0; i < padlen; i++) {
912                         if (i % 4 == 0)
913                                 rnd = arc4random();
914                         cp[i] = rnd & 0xff;
915                         rnd >>= 8;
916                 }
917         } else {
918                 /* clear padding */
919                 memset(cp, 0, padlen);
920         }
921         /* packet_length includes payload, padding and padding length field */
922         packet_length = buffer_len(&active_state->outgoing_packet) - 4;
923         cp = buffer_ptr(&active_state->outgoing_packet);
924         put_u32(cp, packet_length);
925         cp[4] = padlen;
926         DBG(debug("send: len %d (includes padlen %d)", packet_length+4, padlen));
927
928         /* compute MAC over seqnr and packet(length fields, payload, padding) */
929         if (mac && mac->enabled) {
930                 macbuf = mac_compute(mac, active_state->p_send.seqnr,
931                     buffer_ptr(&active_state->outgoing_packet),
932                     buffer_len(&active_state->outgoing_packet));
933                 DBG(debug("done calc MAC out #%d", active_state->p_send.seqnr));
934         }
935         /* encrypt packet and append to output buffer. */
936         cp = buffer_append_space(&active_state->output,
937             buffer_len(&active_state->outgoing_packet));
938         cipher_crypt(&active_state->send_context, cp,
939             buffer_ptr(&active_state->outgoing_packet),
940             buffer_len(&active_state->outgoing_packet));
941         /* append unencrypted MAC */
942         if (mac && mac->enabled)
943                 buffer_append(&active_state->output, macbuf, mac->mac_len);
944 #ifdef PACKET_DEBUG
945         fprintf(stderr, "encrypted: ");
946         buffer_dump(&active_state->output);
947 #endif
948         /* increment sequence number for outgoing packets */
949         if (++active_state->p_send.seqnr == 0)
950                 logit("outgoing seqnr wraps around");
951         if (++active_state->p_send.packets == 0)
952                 if (!(datafellows & SSH_BUG_NOREKEY))
953                         fatal("XXX too many packets with same key");
954         active_state->p_send.blocks += (packet_length + 4) / block_size;
955         active_state->p_send.bytes += packet_length + 4;
956         buffer_clear(&active_state->outgoing_packet);
957
958         if (type == SSH2_MSG_NEWKEYS)
959                 set_newkeys(MODE_OUT);
960         else if (type == SSH2_MSG_USERAUTH_SUCCESS && active_state->server_side)
961                 packet_enable_delayed_compress();
962         return(packet_length);
963 }
964
965 static int
966 packet_send2(void)
967 {
968         static int packet_length = 0;
969         struct packet *p;
970         u_char type, *cp;
971
972         cp = buffer_ptr(&active_state->outgoing_packet);
973         type = cp[5];
974
975         /* during rekeying we can only send key exchange messages */
976         if (active_state->rekeying) {
977                 if (!((type >= SSH2_MSG_TRANSPORT_MIN) &&
978                     (type <= SSH2_MSG_TRANSPORT_MAX))) {
979                         debug("enqueue packet: %u", type);
980                         p = xmalloc(sizeof(*p));
981                         p->type = type;
982                         memcpy(&p->payload, &active_state->outgoing_packet,
983                             sizeof(Buffer));
984                         buffer_init(&active_state->outgoing_packet);
985                         TAILQ_INSERT_TAIL(&active_state->outgoing, p, next);
986                         return(sizeof(Buffer));
987                 }
988         }
989
990         /* rekeying starts with sending KEXINIT */
991         if (type == SSH2_MSG_KEXINIT)
992                 active_state->rekeying = 1;
993
994         packet_length = packet_send2_wrapped();
995
996         /* after a NEWKEYS message we can send the complete queue */
997         if (type == SSH2_MSG_NEWKEYS) {
998                 active_state->rekeying = 0;
999                 while ((p = TAILQ_FIRST(&active_state->outgoing))) {
1000                         type = p->type;
1001                         debug("dequeue packet: %u", type);
1002                         buffer_free(&active_state->outgoing_packet);
1003                         memcpy(&active_state->outgoing_packet, &p->payload,
1004                             sizeof(Buffer));
1005                         TAILQ_REMOVE(&active_state->outgoing, p, next);
1006                         xfree(p);
1007                         packet_length += packet_send2_wrapped();
1008                 }
1009         }
1010         return(packet_length);
1011 }
1012
1013 int
1014 packet_send(void)
1015 {
1016   int packet_len = 0;
1017         if (compat20)
1018                 packet_len = packet_send2();
1019         else
1020                 packet_send1();
1021         DBG(debug("packet_send done"));
1022         return(packet_len);
1023 }
1024
1025 /*
1026  * Waits until a packet has been received, and returns its type.  Note that
1027  * no other data is processed until this returns, so this function should not
1028  * be used during the interactive session.
1029  */
1030
1031 int
1032 packet_read_seqnr(u_int32_t *seqnr_p)
1033 {
1034         int type, len, ret, ms_remain, cont;
1035         fd_set *setp;
1036         char buf[8192];
1037         struct timeval timeout, start, *timeoutp = NULL;
1038
1039         DBG(debug("packet_read()"));
1040
1041         setp = (fd_set *)xcalloc(howmany(active_state->connection_in + 1,
1042             NFDBITS), sizeof(fd_mask));
1043
1044         /* Since we are blocking, ensure that all written packets have been sent. */
1045         packet_write_wait();
1046
1047         /* Stay in the loop until we have received a complete packet. */
1048         for (;;) {
1049                 /* Try to read a packet from the buffer. */
1050                 type = packet_read_poll_seqnr(seqnr_p);
1051                 if (!compat20 && (
1052                     type == SSH_SMSG_SUCCESS
1053                     || type == SSH_SMSG_FAILURE
1054                     || type == SSH_CMSG_EOF
1055                     || type == SSH_CMSG_EXIT_CONFIRMATION))
1056                         packet_check_eom();
1057                 /* If we got a packet, return it. */
1058                 if (type != SSH_MSG_NONE) {
1059                         xfree(setp);
1060                         return type;
1061                 }
1062                 /*
1063                  * Otherwise, wait for some data to arrive, add it to the
1064                  * buffer, and try again.
1065                  */
1066                 memset(setp, 0, howmany(active_state->connection_in + 1,
1067                     NFDBITS) * sizeof(fd_mask));
1068                 FD_SET(active_state->connection_in, setp);
1069
1070                 if (active_state->packet_timeout_ms > 0) {
1071                         ms_remain = active_state->packet_timeout_ms;
1072                         timeoutp = &timeout;
1073                 }
1074                 /* Wait for some data to arrive. */
1075                 for (;;) {
1076                         if (active_state->packet_timeout_ms != -1) {
1077                                 ms_to_timeval(&timeout, ms_remain);
1078                                 gettimeofday(&start, NULL);
1079                         }
1080                         if ((ret = select(active_state->connection_in + 1, setp,
1081                             NULL, NULL, timeoutp)) >= 0)
1082                                 break;
1083                         if (errno != EAGAIN && errno != EINTR &&
1084                             errno != EWOULDBLOCK)
1085                                 break;
1086                         if (active_state->packet_timeout_ms == -1)
1087                                 continue;
1088                         ms_subtract_diff(&start, &ms_remain);
1089                         if (ms_remain <= 0) {
1090                                 ret = 0;
1091                                 break;
1092                         }
1093                 }
1094                 if (ret == 0) {
1095                         logit("Connection to %.200s timed out while "
1096                             "waiting to read", get_remote_ipaddr());
1097                         cleanup_exit(255);
1098                 }
1099                 /* Read data from the socket. */
1100                 do {
1101                         cont = 0;
1102                         len = roaming_read(active_state->connection_in, buf,
1103                             sizeof(buf), &cont);
1104                 } while (len == 0 && cont);
1105                 if (len == 0) {
1106                         logit("Connection closed by %.200s", get_remote_ipaddr());
1107                         cleanup_exit(255);
1108                 }
1109                 if (len < 0)
1110                         fatal("Read from socket failed: %.100s", strerror(errno));
1111                 /* Append it to the buffer. */
1112                 packet_process_incoming(buf, len);
1113         }
1114         /* NOTREACHED */
1115 }
1116
1117 int
1118 packet_read(void)
1119 {
1120         return packet_read_seqnr(NULL);
1121 }
1122
1123 /*
1124  * Waits until a packet has been received, verifies that its type matches
1125  * that given, and gives a fatal error and exits if there is a mismatch.
1126  */
1127
1128 void
1129 packet_read_expect(int expected_type)
1130 {
1131         int type;
1132
1133         type = packet_read();
1134         if (type != expected_type)
1135                 packet_disconnect("Protocol error: expected packet type %d, got %d",
1136                     expected_type, type);
1137 }
1138
1139 /* Checks if a full packet is available in the data received so far via
1140  * packet_process_incoming.  If so, reads the packet; otherwise returns
1141  * SSH_MSG_NONE.  This does not wait for data from the connection.
1142  *
1143  * SSH_MSG_DISCONNECT is handled specially here.  Also,
1144  * SSH_MSG_IGNORE messages are skipped by this function and are never returned
1145  * to higher levels.
1146  */
1147
1148 static int
1149 packet_read_poll1(void)
1150 {
1151         u_int len, padded_len;
1152         u_char *cp, type;
1153         u_int checksum, stored_checksum;
1154
1155         /* Check if input size is less than minimum packet size. */
1156         if (buffer_len(&active_state->input) < 4 + 8)
1157                 return SSH_MSG_NONE;
1158         /* Get length of incoming packet. */
1159         cp = buffer_ptr(&active_state->input);
1160         len = get_u32(cp);
1161         if (len < 1 + 2 + 2 || len > 256 * 1024)
1162                 packet_disconnect("Bad packet length %u.", len);
1163         padded_len = (len + 8) & ~7;
1164
1165         /* Check if the packet has been entirely received. */
1166         if (buffer_len(&active_state->input) < 4 + padded_len)
1167                 return SSH_MSG_NONE;
1168
1169         /* The entire packet is in buffer. */
1170
1171         /* Consume packet length. */
1172         buffer_consume(&active_state->input, 4);
1173
1174         /*
1175          * Cryptographic attack detector for ssh
1176          * (C)1998 CORE-SDI, Buenos Aires Argentina
1177          * Ariel Futoransky(futo@core-sdi.com)
1178          */
1179         if (!active_state->receive_context.plaintext) {
1180                 switch (detect_attack(buffer_ptr(&active_state->input),
1181                     padded_len)) {
1182                 case DEATTACK_DETECTED:
1183                         packet_disconnect("crc32 compensation attack: "
1184                             "network attack detected");
1185                 case DEATTACK_DOS_DETECTED:
1186                         packet_disconnect("deattack denial of "
1187                             "service detected");
1188                 }
1189         }
1190
1191         /* Decrypt data to incoming_packet. */
1192         buffer_clear(&active_state->incoming_packet);
1193         cp = buffer_append_space(&active_state->incoming_packet, padded_len);
1194         cipher_crypt(&active_state->receive_context, cp,
1195             buffer_ptr(&active_state->input), padded_len);
1196
1197         buffer_consume(&active_state->input, padded_len);
1198
1199 #ifdef PACKET_DEBUG
1200         fprintf(stderr, "read_poll plain: ");
1201         buffer_dump(&active_state->incoming_packet);
1202 #endif
1203
1204         /* Compute packet checksum. */
1205         checksum = ssh_crc32(buffer_ptr(&active_state->incoming_packet),
1206             buffer_len(&active_state->incoming_packet) - 4);
1207
1208         /* Skip padding. */
1209         buffer_consume(&active_state->incoming_packet, 8 - len % 8);
1210
1211         /* Test check bytes. */
1212         if (len != buffer_len(&active_state->incoming_packet))
1213                 packet_disconnect("packet_read_poll1: len %d != buffer_len %d.",
1214                     len, buffer_len(&active_state->incoming_packet));
1215
1216         cp = (u_char *)buffer_ptr(&active_state->incoming_packet) + len - 4;
1217         stored_checksum = get_u32(cp);
1218         if (checksum != stored_checksum)
1219                 packet_disconnect("Corrupted check bytes on input.");
1220         buffer_consume_end(&active_state->incoming_packet, 4);
1221
1222         if (active_state->packet_compression) {
1223                 buffer_clear(&active_state->compression_buffer);
1224                 buffer_uncompress(&active_state->incoming_packet,
1225                     &active_state->compression_buffer);
1226                 buffer_clear(&active_state->incoming_packet);
1227                 buffer_append(&active_state->incoming_packet,
1228                     buffer_ptr(&active_state->compression_buffer),
1229                     buffer_len(&active_state->compression_buffer));
1230         }
1231         active_state->p_read.packets++;
1232         active_state->p_read.bytes += padded_len + 4;
1233         type = buffer_get_char(&active_state->incoming_packet);
1234         if (type < SSH_MSG_MIN || type > SSH_MSG_MAX)
1235                 packet_disconnect("Invalid ssh1 packet type: %d", type);
1236         return type;
1237 }
1238
1239 static int
1240 packet_read_poll2(u_int32_t *seqnr_p)
1241 {
1242         u_int padlen, need;
1243         u_char *macbuf, *cp, type;
1244         u_int maclen, block_size;
1245         Enc *enc   = NULL;
1246         Mac *mac   = NULL;
1247         Comp *comp = NULL;
1248
1249         if (active_state->packet_discard)
1250                 return SSH_MSG_NONE;
1251
1252         if (active_state->newkeys[MODE_IN] != NULL) {
1253                 enc  = &active_state->newkeys[MODE_IN]->enc;
1254                 mac  = &active_state->newkeys[MODE_IN]->mac;
1255                 comp = &active_state->newkeys[MODE_IN]->comp;
1256         }
1257         maclen = mac && mac->enabled ? mac->mac_len : 0;
1258         block_size = enc ? enc->block_size : 8;
1259
1260         if (active_state->packlen == 0) {
1261                 /*
1262                  * check if input size is less than the cipher block size,
1263                  * decrypt first block and extract length of incoming packet
1264                  */
1265                 if (buffer_len(&active_state->input) < block_size)
1266                         return SSH_MSG_NONE;
1267                 buffer_clear(&active_state->incoming_packet);
1268                 cp = buffer_append_space(&active_state->incoming_packet,
1269                     block_size);
1270                 cipher_crypt(&active_state->receive_context, cp,
1271                     buffer_ptr(&active_state->input), block_size);
1272                 cp = buffer_ptr(&active_state->incoming_packet);
1273                 active_state->packlen = get_u32(cp);
1274                 if (active_state->packlen < 1 + 4 ||
1275                     active_state->packlen > PACKET_MAX_SIZE) {
1276 #ifdef PACKET_DEBUG
1277                         buffer_dump(&active_state->incoming_packet);
1278 #endif
1279                         logit("Bad packet length %u.", active_state->packlen);
1280                         packet_start_discard(enc, mac, active_state->packlen,
1281                             PACKET_MAX_SIZE);
1282                         return SSH_MSG_NONE;
1283                 }
1284                 DBG(debug("input: packet len %u", active_state->packlen+4));
1285                 buffer_consume(&active_state->input, block_size);
1286         }
1287         /* we have a partial packet of block_size bytes */
1288         need = 4 + active_state->packlen - block_size;
1289         DBG(debug("partial packet %d, need %d, maclen %d", block_size,
1290             need, maclen));
1291         if (need % block_size != 0) {
1292                 logit("padding error: need %d block %d mod %d",
1293                     need, block_size, need % block_size);
1294                 packet_start_discard(enc, mac, active_state->packlen,
1295                     PACKET_MAX_SIZE - block_size);
1296                 return SSH_MSG_NONE;
1297         }
1298         /*
1299          * check if the entire packet has been received and
1300          * decrypt into incoming_packet
1301          */
1302         if (buffer_len(&active_state->input) < need + maclen)
1303                 return SSH_MSG_NONE;
1304 #ifdef PACKET_DEBUG
1305         fprintf(stderr, "read_poll enc/full: ");
1306         buffer_dump(&active_state->input);
1307 #endif
1308         cp = buffer_append_space(&active_state->incoming_packet, need);
1309         cipher_crypt(&active_state->receive_context, cp,
1310             buffer_ptr(&active_state->input), need);
1311         buffer_consume(&active_state->input, need);
1312         /*
1313          * compute MAC over seqnr and packet,
1314          * increment sequence number for incoming packet
1315          */
1316         if (mac && mac->enabled) {
1317                 macbuf = mac_compute(mac, active_state->p_read.seqnr,
1318                     buffer_ptr(&active_state->incoming_packet),
1319                     buffer_len(&active_state->incoming_packet));
1320                 if (timingsafe_bcmp(macbuf, buffer_ptr(&active_state->input),
1321                     mac->mac_len) != 0) {
1322                         logit("Corrupted MAC on input.");
1323                         if (need > PACKET_MAX_SIZE)
1324                                 fatal("internal error need %d", need);
1325                         packet_start_discard(enc, mac, active_state->packlen,
1326                             PACKET_MAX_SIZE - need);
1327                         return SSH_MSG_NONE;
1328                 }
1329                                 
1330                 DBG(debug("MAC #%d ok", active_state->p_read.seqnr));
1331                 buffer_consume(&active_state->input, mac->mac_len);
1332         }
1333         /* XXX now it's safe to use fatal/packet_disconnect */
1334         if (seqnr_p != NULL)
1335                 *seqnr_p = active_state->p_read.seqnr;
1336         if (++active_state->p_read.seqnr == 0)
1337                 logit("incoming seqnr wraps around");
1338         if (++active_state->p_read.packets == 0)
1339                 if (!(datafellows & SSH_BUG_NOREKEY))
1340                         fatal("XXX too many packets with same key");
1341         active_state->p_read.blocks += (active_state->packlen + 4) / block_size;
1342         active_state->p_read.bytes += active_state->packlen + 4;
1343
1344         /* get padlen */
1345         cp = buffer_ptr(&active_state->incoming_packet);
1346         padlen = cp[4];
1347         DBG(debug("input: padlen %d", padlen));
1348         if (padlen < 4)
1349                 packet_disconnect("Corrupted padlen %d on input.", padlen);
1350
1351         /* skip packet size + padlen, discard padding */
1352         buffer_consume(&active_state->incoming_packet, 4 + 1);
1353         buffer_consume_end(&active_state->incoming_packet, padlen);
1354
1355         DBG(debug("input: len before de-compress %d",
1356             buffer_len(&active_state->incoming_packet)));
1357         if (comp && comp->enabled) {
1358                 buffer_clear(&active_state->compression_buffer);
1359                 buffer_uncompress(&active_state->incoming_packet,
1360                     &active_state->compression_buffer);
1361                 buffer_clear(&active_state->incoming_packet);
1362                 buffer_append(&active_state->incoming_packet,
1363                     buffer_ptr(&active_state->compression_buffer),
1364                     buffer_len(&active_state->compression_buffer));
1365                 DBG(debug("input: len after de-compress %d",
1366                     buffer_len(&active_state->incoming_packet)));
1367         }
1368         /*
1369          * get packet type, implies consume.
1370          * return length of payload (without type field)
1371          */
1372         type = buffer_get_char(&active_state->incoming_packet);
1373         if (type < SSH2_MSG_MIN || type >= SSH2_MSG_LOCAL_MIN)
1374                 packet_disconnect("Invalid ssh2 packet type: %d", type);
1375         if (type == SSH2_MSG_NEWKEYS)
1376                 set_newkeys(MODE_IN);
1377         else if (type == SSH2_MSG_USERAUTH_SUCCESS &&
1378             !active_state->server_side)
1379                 packet_enable_delayed_compress();
1380 #ifdef PACKET_DEBUG
1381         fprintf(stderr, "read/plain[%d]:\r\n", type);
1382         buffer_dump(&active_state->incoming_packet);
1383 #endif
1384         /* reset for next packet */
1385         active_state->packlen = 0;
1386         return type;
1387 }
1388
1389 int
1390 packet_read_poll_seqnr(u_int32_t *seqnr_p)
1391 {
1392         u_int reason, seqnr;
1393         u_char type;
1394         char *msg;
1395
1396         for (;;) {
1397                 if (compat20) {
1398                         type = packet_read_poll2(seqnr_p);
1399                         if (type) {
1400                                 active_state->keep_alive_timeouts = 0;
1401                                 DBG(debug("received packet type %d", type));
1402                         }
1403                         switch (type) {
1404                         case SSH2_MSG_IGNORE:
1405                                 debug3("Received SSH2_MSG_IGNORE");
1406                                 break;
1407                         case SSH2_MSG_DEBUG:
1408                                 packet_get_char();
1409                                 msg = packet_get_string(NULL);
1410                                 debug("Remote: %.900s", msg);
1411                                 xfree(msg);
1412                                 msg = packet_get_string(NULL);
1413                                 xfree(msg);
1414                                 break;
1415                         case SSH2_MSG_DISCONNECT:
1416                                 reason = packet_get_int();
1417                                 msg = packet_get_string(NULL);
1418                                 logit("Received disconnect from %s: %u: %.400s",
1419                                     get_remote_ipaddr(), reason, msg);
1420                                 xfree(msg);
1421                                 cleanup_exit(255);
1422                                 break;
1423                         case SSH2_MSG_UNIMPLEMENTED:
1424                                 seqnr = packet_get_int();
1425                                 debug("Received SSH2_MSG_UNIMPLEMENTED for %u",
1426                                     seqnr);
1427                                 break;
1428                         default:
1429                                 return type;
1430                         }
1431                 } else {
1432                         type = packet_read_poll1();
1433                         switch (type) {
1434                         case SSH_MSG_IGNORE:
1435                                 break;
1436                         case SSH_MSG_DEBUG:
1437                                 msg = packet_get_string(NULL);
1438                                 debug("Remote: %.900s", msg);
1439                                 xfree(msg);
1440                                 break;
1441                         case SSH_MSG_DISCONNECT:
1442                                 msg = packet_get_string(NULL);
1443                                 logit("Received disconnect from %s: %.400s",
1444                                     get_remote_ipaddr(), msg);
1445                                 cleanup_exit(255);
1446                                 break;
1447                         default:
1448                                 if (type)
1449                                         DBG(debug("received packet type %d", type));
1450                                 return type;
1451                         }
1452                 }
1453         }
1454 }
1455
1456 int
1457 packet_read_poll(void)
1458 {
1459         return packet_read_poll_seqnr(NULL);
1460 }
1461
1462 /*
1463  * Buffers the given amount of input characters.  This is intended to be used
1464  * together with packet_read_poll.
1465  */
1466
1467 void
1468 packet_process_incoming(const char *buf, u_int len)
1469 {
1470         if (active_state->packet_discard) {
1471                 active_state->keep_alive_timeouts = 0; /* ?? */
1472                 if (len >= active_state->packet_discard)
1473                         packet_stop_discard();
1474                 active_state->packet_discard -= len;
1475                 return;
1476         }
1477         buffer_append(&active_state->input, buf, len);
1478 }
1479
1480 /* Returns a character from the packet. */
1481
1482 u_int
1483 packet_get_char(void)
1484 {
1485         char ch;
1486
1487         buffer_get(&active_state->incoming_packet, &ch, 1);
1488         return (u_char) ch;
1489 }
1490
1491 /* Returns an integer from the packet data. */
1492
1493 u_int
1494 packet_get_int(void)
1495 {
1496         return buffer_get_int(&active_state->incoming_packet);
1497 }
1498
1499 /* Returns an 64 bit integer from the packet data. */
1500
1501 u_int64_t
1502 packet_get_int64(void)
1503 {
1504         return buffer_get_int64(&active_state->incoming_packet);
1505 }
1506
1507 /*
1508  * Returns an arbitrary precision integer from the packet data.  The integer
1509  * must have been initialized before this call.
1510  */
1511
1512 void
1513 packet_get_bignum(BIGNUM * value)
1514 {
1515         buffer_get_bignum(&active_state->incoming_packet, value);
1516 }
1517
1518 void
1519 packet_get_bignum2(BIGNUM * value)
1520 {
1521         buffer_get_bignum2(&active_state->incoming_packet, value);
1522 }
1523
1524 #ifdef OPENSSL_HAS_ECC
1525 void
1526 packet_get_ecpoint(const EC_GROUP *curve, EC_POINT *point)
1527 {
1528         buffer_get_ecpoint(&active_state->incoming_packet, curve, point);
1529 }
1530 #endif
1531
1532 void *
1533 packet_get_raw(u_int *length_ptr)
1534 {
1535         u_int bytes = buffer_len(&active_state->incoming_packet);
1536
1537         if (length_ptr != NULL)
1538                 *length_ptr = bytes;
1539         return buffer_ptr(&active_state->incoming_packet);
1540 }
1541
1542 int
1543 packet_remaining(void)
1544 {
1545         return buffer_len(&active_state->incoming_packet);
1546 }
1547
1548 /*
1549  * Returns a string from the packet data.  The string is allocated using
1550  * xmalloc; it is the responsibility of the calling program to free it when
1551  * no longer needed.  The length_ptr argument may be NULL, or point to an
1552  * integer into which the length of the string is stored.
1553  */
1554
1555 void *
1556 packet_get_string(u_int *length_ptr)
1557 {
1558         return buffer_get_string(&active_state->incoming_packet, length_ptr);
1559 }
1560
1561 void *
1562 packet_get_string_ptr(u_int *length_ptr)
1563 {
1564         return buffer_get_string_ptr(&active_state->incoming_packet, length_ptr);
1565 }
1566
1567 /* Ensures the returned string has no embedded \0 characters in it. */
1568 char *
1569 packet_get_cstring(u_int *length_ptr)
1570 {
1571         return buffer_get_cstring(&active_state->incoming_packet, length_ptr);
1572 }
1573
1574 /*
1575  * Sends a diagnostic message from the server to the client.  This message
1576  * can be sent at any time (but not while constructing another message). The
1577  * message is printed immediately, but only if the client is being executed
1578  * in verbose mode.  These messages are primarily intended to ease debugging
1579  * authentication problems.   The length of the formatted message must not
1580  * exceed 1024 bytes.  This will automatically call packet_write_wait.
1581  */
1582
1583 void
1584 packet_send_debug(const char *fmt,...)
1585 {
1586         char buf[1024];
1587         va_list args;
1588
1589         if (compat20 && (datafellows & SSH_BUG_DEBUG))
1590                 return;
1591
1592         va_start(args, fmt);
1593         vsnprintf(buf, sizeof(buf), fmt, args);
1594         va_end(args);
1595
1596         if (compat20) {
1597                 packet_start(SSH2_MSG_DEBUG);
1598                 packet_put_char(0);     /* bool: always display */
1599                 packet_put_cstring(buf);
1600                 packet_put_cstring("");
1601         } else {
1602                 packet_start(SSH_MSG_DEBUG);
1603                 packet_put_cstring(buf);
1604         }
1605         packet_send();
1606         packet_write_wait();
1607 }
1608
1609 /*
1610  * Logs the error plus constructs and sends a disconnect packet, closes the
1611  * connection, and exits.  This function never returns. The error message
1612  * should not contain a newline.  The length of the formatted message must
1613  * not exceed 1024 bytes.
1614  */
1615
1616 void
1617 packet_disconnect(const char *fmt,...)
1618 {
1619         char buf[1024];
1620         va_list args;
1621         static int disconnecting = 0;
1622
1623         if (disconnecting)      /* Guard against recursive invocations. */
1624                 fatal("packet_disconnect called recursively.");
1625         disconnecting = 1;
1626
1627         /*
1628          * Format the message.  Note that the caller must make sure the
1629          * message is of limited size.
1630          */
1631         va_start(args, fmt);
1632         vsnprintf(buf, sizeof(buf), fmt, args);
1633         va_end(args);
1634
1635         /* Display the error locally */
1636         logit("Disconnecting: %.100s", buf);
1637
1638         /* Send the disconnect message to the other side, and wait for it to get sent. */
1639         if (compat20) {
1640                 packet_start(SSH2_MSG_DISCONNECT);
1641                 packet_put_int(SSH2_DISCONNECT_PROTOCOL_ERROR);
1642                 packet_put_cstring(buf);
1643                 packet_put_cstring("");
1644         } else {
1645                 packet_start(SSH_MSG_DISCONNECT);
1646                 packet_put_cstring(buf);
1647         }
1648         packet_send();
1649         packet_write_wait();
1650
1651         /* Stop listening for connections. */
1652         channel_close_all();
1653
1654         /* Close the connection. */
1655         packet_close();
1656         cleanup_exit(255);
1657 }
1658
1659 /* Checks if there is any buffered output, and tries to write some of the output. */
1660
1661 int
1662 packet_write_poll(void)
1663 {
1664         int len = buffer_len(&active_state->output);
1665         int cont;
1666
1667         if (len > 0) {
1668                 cont = 0;
1669                 len = roaming_write(active_state->connection_out,
1670                     buffer_ptr(&active_state->output), len, &cont);
1671                 if (len == -1) {
1672                         if (errno == EINTR || errno == EAGAIN ||
1673                             errno == EWOULDBLOCK)
1674                                 return(0);
1675                         fatal("Write failed: %.100s", strerror(errno));
1676                 }
1677                 if (len == 0 && !cont)
1678                         fatal("Write connection closed");
1679                 buffer_consume(&active_state->output, len);
1680         }
1681         return(len);
1682 }
1683
1684 /*
1685  * Calls packet_write_poll repeatedly until all pending output data has been
1686  * written.
1687  */
1688
1689 void
1690 packet_write_wait(void)
1691 {
1692         fd_set *setp;
1693         int ret, ms_remain;
1694         struct timeval start, timeout, *timeoutp = NULL;
1695
1696         setp = (fd_set *)xcalloc(howmany(active_state->connection_out + 1,
1697             NFDBITS), sizeof(fd_mask));
1698         packet_write_poll();
1699         while (packet_have_data_to_write()) {
1700                 memset(setp, 0, howmany(active_state->connection_out + 1,
1701                     NFDBITS) * sizeof(fd_mask));
1702                 FD_SET(active_state->connection_out, setp);
1703
1704                 if (active_state->packet_timeout_ms > 0) {
1705                         ms_remain = active_state->packet_timeout_ms;
1706                         timeoutp = &timeout;
1707                 }
1708                 for (;;) {
1709                         if (active_state->packet_timeout_ms != -1) {
1710                                 ms_to_timeval(&timeout, ms_remain);
1711                                 gettimeofday(&start, NULL);
1712                         }
1713                         if ((ret = select(active_state->connection_out + 1,
1714                             NULL, setp, NULL, timeoutp)) >= 0)
1715                                 break;
1716                         if (errno != EAGAIN && errno != EINTR &&
1717                             errno != EWOULDBLOCK)
1718                                 break;
1719                         if (active_state->packet_timeout_ms == -1)
1720                                 continue;
1721                         ms_subtract_diff(&start, &ms_remain);
1722                         if (ms_remain <= 0) {
1723                                 ret = 0;
1724                                 break;
1725                         }
1726                 }
1727                 if (ret == 0) {
1728                         logit("Connection to %.200s timed out while "
1729                             "waiting to write", get_remote_ipaddr());
1730                         cleanup_exit(255);
1731                 }
1732                 packet_write_poll();
1733         }
1734         xfree(setp);
1735 }
1736
1737 /* Returns true if there is buffered data to write to the connection. */
1738
1739 int
1740 packet_have_data_to_write(void)
1741 {
1742         return buffer_len(&active_state->output) != 0;
1743 }
1744
1745 /* Returns true if there is not too much data to write to the connection. */
1746
1747 int
1748 packet_not_very_much_data_to_write(void)
1749 {
1750         if (active_state->interactive_mode)
1751                 return buffer_len(&active_state->output) < 16384;
1752         else
1753                 return buffer_len(&active_state->output) < 128 * 1024;
1754 }
1755
1756 static void
1757 packet_set_tos(int tos)
1758 {
1759 #ifndef IP_TOS_IS_BROKEN
1760         if (!packet_connection_is_on_socket())
1761                 return;
1762         switch (packet_connection_af()) {
1763 # ifdef IP_TOS
1764         case AF_INET:
1765                 debug3("%s: set IP_TOS 0x%02x", __func__, tos);
1766                 if (setsockopt(active_state->connection_in,
1767                     IPPROTO_IP, IP_TOS, &tos, sizeof(tos)) < 0)
1768                         error("setsockopt IP_TOS %d: %.100s:",
1769                             tos, strerror(errno));
1770                 break;
1771 # endif /* IP_TOS */
1772 # ifdef IPV6_TCLASS
1773         case AF_INET6:
1774                 debug3("%s: set IPV6_TCLASS 0x%02x", __func__, tos);
1775                 if (setsockopt(active_state->connection_in,
1776                     IPPROTO_IPV6, IPV6_TCLASS, &tos, sizeof(tos)) < 0)
1777                         error("setsockopt IPV6_TCLASS %d: %.100s:",
1778                             tos, strerror(errno));
1779                 break;
1780 # endif /* IPV6_TCLASS */
1781         }
1782 #endif /* IP_TOS_IS_BROKEN */
1783 }
1784
1785 /* Informs that the current session is interactive.  Sets IP flags for that. */
1786
1787 void
1788 packet_set_interactive(int interactive, int qos_interactive, int qos_bulk)
1789 {
1790         if (active_state->set_interactive_called)
1791                 return;
1792         active_state->set_interactive_called = 1;
1793
1794         /* Record that we are in interactive mode. */
1795         active_state->interactive_mode = interactive;
1796
1797         /* Only set socket options if using a socket.  */
1798         if (!packet_connection_is_on_socket())
1799                 return;
1800         set_nodelay(active_state->connection_in);
1801         packet_set_tos(interactive ? qos_interactive : qos_bulk);
1802 }
1803
1804 /* Returns true if the current connection is interactive. */
1805
1806 int
1807 packet_is_interactive(void)
1808 {
1809         return active_state->interactive_mode;
1810 }
1811
1812 int
1813 packet_set_maxsize(u_int s)
1814 {
1815         if (active_state->set_maxsize_called) {
1816                 logit("packet_set_maxsize: called twice: old %d new %d",
1817                     active_state->max_packet_size, s);
1818                 return -1;
1819         }
1820         if (s < 4 * 1024 || s > 1024 * 1024) {
1821                 logit("packet_set_maxsize: bad size %d", s);
1822                 return -1;
1823         }
1824         active_state->set_maxsize_called = 1;
1825         debug("packet_set_maxsize: setting to %d", s);
1826         active_state->max_packet_size = s;
1827         return s;
1828 }
1829
1830 int
1831 packet_inc_alive_timeouts(void)
1832 {
1833         return ++active_state->keep_alive_timeouts;
1834 }
1835
1836 void
1837 packet_set_alive_timeouts(int ka)
1838 {
1839         active_state->keep_alive_timeouts = ka;
1840 }
1841
1842 u_int
1843 packet_get_maxsize(void)
1844 {
1845         return active_state->max_packet_size;
1846 }
1847
1848 /* roundup current message to pad bytes */
1849 void
1850 packet_add_padding(u_char pad)
1851 {
1852         active_state->extra_pad = pad;
1853 }
1854
1855 /*
1856  * 9.2.  Ignored Data Message
1857  *
1858  *   byte      SSH_MSG_IGNORE
1859  *   string    data
1860  *
1861  * All implementations MUST understand (and ignore) this message at any
1862  * time (after receiving the protocol version). No implementation is
1863  * required to send them. This message can be used as an additional
1864  * protection measure against advanced traffic analysis techniques.
1865  */
1866 void
1867 packet_send_ignore(int nbytes)
1868 {
1869         u_int32_t rnd = 0;
1870         int i;
1871
1872         packet_start(compat20 ? SSH2_MSG_IGNORE : SSH_MSG_IGNORE);
1873         packet_put_int(nbytes);
1874         for (i = 0; i < nbytes; i++) {
1875                 if (i % 4 == 0)
1876                         rnd = arc4random();
1877                 packet_put_char((u_char)rnd & 0xff);
1878                 rnd >>= 8;
1879         }
1880 }
1881
1882 int rekey_requested = 0;
1883 void
1884 packet_request_rekeying(void)
1885 {
1886         rekey_requested = 1;
1887 }
1888
1889 #define MAX_PACKETS     (1U<<31)
1890 int
1891 packet_need_rekeying(void)
1892 {
1893         if (datafellows & SSH_BUG_NOREKEY)
1894                 return 0;
1895         if (rekey_requested == 1)
1896         {
1897                 rekey_requested = 0;
1898                 return 1;
1899         }
1900         return
1901             (active_state->p_send.packets > MAX_PACKETS) ||
1902             (active_state->p_read.packets > MAX_PACKETS) ||
1903             (active_state->max_blocks_out &&
1904                 (active_state->p_send.blocks > active_state->max_blocks_out)) ||
1905             (active_state->max_blocks_in &&
1906                 (active_state->p_read.blocks > active_state->max_blocks_in));
1907 }
1908
1909 void
1910 packet_set_rekey_limit(u_int32_t bytes)
1911 {
1912         active_state->rekey_limit = bytes;
1913 }
1914
1915 void
1916 packet_set_server(void)
1917 {
1918         active_state->server_side = 1;
1919 }
1920
1921 void
1922 packet_set_authenticated(void)
1923 {
1924         active_state->after_authentication = 1;
1925 }
1926
1927 void *
1928 packet_get_input(void)
1929 {
1930         return (void *)&active_state->input;
1931 }
1932
1933 void *
1934 packet_get_output(void)
1935 {
1936         return (void *)&active_state->output;
1937 }
1938
1939 void *
1940 packet_get_newkeys(int mode)
1941 {
1942         return (void *)active_state->newkeys[mode];
1943 }
1944
1945 /*
1946  * Save the state for the real connection, and use a separate state when
1947  * resuming a suspended connection.
1948  */
1949 void
1950 packet_backup_state(void)
1951 {
1952         struct session_state *tmp;
1953
1954         close(active_state->connection_in);
1955         active_state->connection_in = -1;
1956         close(active_state->connection_out);
1957         active_state->connection_out = -1;
1958         if (backup_state)
1959                 tmp = backup_state;
1960         else
1961                 tmp = alloc_session_state();
1962         backup_state = active_state;
1963         active_state = tmp;
1964 }
1965
1966 /*
1967  * Swap in the old state when resuming a connecion.
1968  */
1969 void
1970 packet_restore_state(void)
1971 {
1972         struct session_state *tmp;
1973         void *buf;
1974         u_int len;
1975
1976         tmp = backup_state;
1977         backup_state = active_state;
1978         active_state = tmp;
1979         active_state->connection_in = backup_state->connection_in;
1980         backup_state->connection_in = -1;
1981         active_state->connection_out = backup_state->connection_out;
1982         backup_state->connection_out = -1;
1983         len = buffer_len(&backup_state->input);
1984         if (len > 0) {
1985                 buf = buffer_ptr(&backup_state->input);
1986                 buffer_append(&active_state->input, buf, len);
1987                 buffer_clear(&backup_state->input);
1988                 add_recv_bytes(len);
1989         }
1990 }
1991
1992 int
1993 packet_authentication_state(void)
1994 {
1995         return(active_state->after_authentication);
1996 }