xref: /openbsd-src/usr.bin/ssh/packet.c (revision fcde59b201a29a2b4570b00b71e7aa25d61cb5c1)
1 /* $OpenBSD: packet.c,v 1.298 2020/11/27 00:49:58 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 <sys/types.h>
41 #include <sys/queue.h>
42 #include <sys/socket.h>
43 #include <sys/time.h>
44 #include <netinet/in.h>
45 #include <netinet/ip.h>
46 
47 #include <errno.h>
48 #include <netdb.h>
49 #include <stdarg.h>
50 #include <stdio.h>
51 #include <stdlib.h>
52 #include <string.h>
53 #include <unistd.h>
54 #include <limits.h>
55 #include <poll.h>
56 #include <signal.h>
57 #include <time.h>
58 
59 #ifdef WITH_ZLIB
60 #include <zlib.h>
61 #endif
62 
63 #include "xmalloc.h"
64 #include "compat.h"
65 #include "ssh2.h"
66 #include "cipher.h"
67 #include "sshkey.h"
68 #include "kex.h"
69 #include "digest.h"
70 #include "mac.h"
71 #include "log.h"
72 #include "canohost.h"
73 #include "misc.h"
74 #include "channels.h"
75 #include "ssh.h"
76 #include "packet.h"
77 #include "ssherr.h"
78 #include "sshbuf.h"
79 
80 #ifdef PACKET_DEBUG
81 #define DBG(x) x
82 #else
83 #define DBG(x)
84 #endif
85 
86 #define PACKET_MAX_SIZE (256 * 1024)
87 
88 struct packet_state {
89 	u_int32_t seqnr;
90 	u_int32_t packets;
91 	u_int64_t blocks;
92 	u_int64_t bytes;
93 };
94 
95 struct packet {
96 	TAILQ_ENTRY(packet) next;
97 	u_char type;
98 	struct sshbuf *payload;
99 };
100 
101 struct session_state {
102 	/*
103 	 * This variable contains the file descriptors used for
104 	 * communicating with the other side.  connection_in is used for
105 	 * reading; connection_out for writing.  These can be the same
106 	 * descriptor, in which case it is assumed to be a socket.
107 	 */
108 	int connection_in;
109 	int connection_out;
110 
111 	/* Protocol flags for the remote side. */
112 	u_int remote_protocol_flags;
113 
114 	/* Encryption context for receiving data.  Only used for decryption. */
115 	struct sshcipher_ctx *receive_context;
116 
117 	/* Encryption context for sending data.  Only used for encryption. */
118 	struct sshcipher_ctx *send_context;
119 
120 	/* Buffer for raw input data from the socket. */
121 	struct sshbuf *input;
122 
123 	/* Buffer for raw output data going to the socket. */
124 	struct sshbuf *output;
125 
126 	/* Buffer for the partial outgoing packet being constructed. */
127 	struct sshbuf *outgoing_packet;
128 
129 	/* Buffer for the incoming packet currently being processed. */
130 	struct sshbuf *incoming_packet;
131 
132 	/* Scratch buffer for packet compression/decompression. */
133 	struct sshbuf *compression_buffer;
134 
135 #ifdef WITH_ZLIB
136 	/* Incoming/outgoing compression dictionaries */
137 	z_stream compression_in_stream;
138 	z_stream compression_out_stream;
139 #endif
140 	int compression_in_started;
141 	int compression_out_started;
142 	int compression_in_failures;
143 	int compression_out_failures;
144 
145 	/* default maximum packet size */
146 	u_int max_packet_size;
147 
148 	/* Flag indicating whether this module has been initialized. */
149 	int initialized;
150 
151 	/* Set to true if the connection is interactive. */
152 	int interactive_mode;
153 
154 	/* Set to true if we are the server side. */
155 	int server_side;
156 
157 	/* Set to true if we are authenticated. */
158 	int after_authentication;
159 
160 	int keep_alive_timeouts;
161 
162 	/* The maximum time that we will wait to send or receive a packet */
163 	int packet_timeout_ms;
164 
165 	/* Session key information for Encryption and MAC */
166 	struct newkeys *newkeys[MODE_MAX];
167 	struct packet_state p_read, p_send;
168 
169 	/* Volume-based rekeying */
170 	u_int64_t max_blocks_in, max_blocks_out, rekey_limit;
171 
172 	/* Time-based rekeying */
173 	u_int32_t rekey_interval;	/* how often in seconds */
174 	time_t rekey_time;	/* time of last rekeying */
175 
176 	/* roundup current message to extra_pad bytes */
177 	u_char extra_pad;
178 
179 	/* XXX discard incoming data after MAC error */
180 	u_int packet_discard;
181 	size_t packet_discard_mac_already;
182 	struct sshmac *packet_discard_mac;
183 
184 	/* Used in packet_read_poll2() */
185 	u_int packlen;
186 
187 	/* Used in packet_send2 */
188 	int rekeying;
189 
190 	/* Used in ssh_packet_send_mux() */
191 	int mux;
192 
193 	/* Used in packet_set_interactive */
194 	int set_interactive_called;
195 
196 	/* Used in packet_set_maxsize */
197 	int set_maxsize_called;
198 
199 	/* One-off warning about weak ciphers */
200 	int cipher_warning_done;
201 
202 	/* Hook for fuzzing inbound packets */
203 	ssh_packet_hook_fn *hook_in;
204 	void *hook_in_ctx;
205 
206 	TAILQ_HEAD(, packet) outgoing;
207 };
208 
209 struct ssh *
210 ssh_alloc_session_state(void)
211 {
212 	struct ssh *ssh = NULL;
213 	struct session_state *state = NULL;
214 
215 	if ((ssh = calloc(1, sizeof(*ssh))) == NULL ||
216 	    (state = calloc(1, sizeof(*state))) == NULL ||
217 	    (ssh->kex = kex_new()) == NULL ||
218 	    (state->input = sshbuf_new()) == NULL ||
219 	    (state->output = sshbuf_new()) == NULL ||
220 	    (state->outgoing_packet = sshbuf_new()) == NULL ||
221 	    (state->incoming_packet = sshbuf_new()) == NULL)
222 		goto fail;
223 	TAILQ_INIT(&state->outgoing);
224 	TAILQ_INIT(&ssh->private_keys);
225 	TAILQ_INIT(&ssh->public_keys);
226 	state->connection_in = -1;
227 	state->connection_out = -1;
228 	state->max_packet_size = 32768;
229 	state->packet_timeout_ms = -1;
230 	state->p_send.packets = state->p_read.packets = 0;
231 	state->initialized = 1;
232 	/*
233 	 * ssh_packet_send2() needs to queue packets until
234 	 * we've done the initial key exchange.
235 	 */
236 	state->rekeying = 1;
237 	ssh->state = state;
238 	return ssh;
239  fail:
240 	if (ssh) {
241 		kex_free(ssh->kex);
242 		free(ssh);
243 	}
244 	if (state) {
245 		sshbuf_free(state->input);
246 		sshbuf_free(state->output);
247 		sshbuf_free(state->incoming_packet);
248 		sshbuf_free(state->outgoing_packet);
249 		free(state);
250 	}
251 	return NULL;
252 }
253 
254 void
255 ssh_packet_set_input_hook(struct ssh *ssh, ssh_packet_hook_fn *hook, void *ctx)
256 {
257 	ssh->state->hook_in = hook;
258 	ssh->state->hook_in_ctx = ctx;
259 }
260 
261 /* Returns nonzero if rekeying is in progress */
262 int
263 ssh_packet_is_rekeying(struct ssh *ssh)
264 {
265 	return ssh->state->rekeying ||
266 	    (ssh->kex != NULL && ssh->kex->done == 0);
267 }
268 
269 /*
270  * Sets the descriptors used for communication.
271  */
272 struct ssh *
273 ssh_packet_set_connection(struct ssh *ssh, int fd_in, int fd_out)
274 {
275 	struct session_state *state;
276 	const struct sshcipher *none = cipher_by_name("none");
277 	int r;
278 
279 	if (none == NULL) {
280 		error_f("cannot load cipher 'none'");
281 		return NULL;
282 	}
283 	if (ssh == NULL)
284 		ssh = ssh_alloc_session_state();
285 	if (ssh == NULL) {
286 		error_f("could not allocate state");
287 		return NULL;
288 	}
289 	state = ssh->state;
290 	state->connection_in = fd_in;
291 	state->connection_out = fd_out;
292 	if ((r = cipher_init(&state->send_context, none,
293 	    (const u_char *)"", 0, NULL, 0, CIPHER_ENCRYPT)) != 0 ||
294 	    (r = cipher_init(&state->receive_context, none,
295 	    (const u_char *)"", 0, NULL, 0, CIPHER_DECRYPT)) != 0) {
296 		error_fr(r, "cipher_init failed");
297 		free(ssh); /* XXX need ssh_free_session_state? */
298 		return NULL;
299 	}
300 	state->newkeys[MODE_IN] = state->newkeys[MODE_OUT] = NULL;
301 	/*
302 	 * Cache the IP address of the remote connection for use in error
303 	 * messages that might be generated after the connection has closed.
304 	 */
305 	(void)ssh_remote_ipaddr(ssh);
306 	return ssh;
307 }
308 
309 void
310 ssh_packet_set_timeout(struct ssh *ssh, int timeout, int count)
311 {
312 	struct session_state *state = ssh->state;
313 
314 	if (timeout <= 0 || count <= 0) {
315 		state->packet_timeout_ms = -1;
316 		return;
317 	}
318 	if ((INT_MAX / 1000) / count < timeout)
319 		state->packet_timeout_ms = INT_MAX;
320 	else
321 		state->packet_timeout_ms = timeout * count * 1000;
322 }
323 
324 void
325 ssh_packet_set_mux(struct ssh *ssh)
326 {
327 	ssh->state->mux = 1;
328 	ssh->state->rekeying = 0;
329 	kex_free(ssh->kex);
330 	ssh->kex = NULL;
331 }
332 
333 int
334 ssh_packet_get_mux(struct ssh *ssh)
335 {
336 	return ssh->state->mux;
337 }
338 
339 int
340 ssh_packet_set_log_preamble(struct ssh *ssh, const char *fmt, ...)
341 {
342 	va_list args;
343 	int r;
344 
345 	free(ssh->log_preamble);
346 	if (fmt == NULL)
347 		ssh->log_preamble = NULL;
348 	else {
349 		va_start(args, fmt);
350 		r = vasprintf(&ssh->log_preamble, fmt, args);
351 		va_end(args);
352 		if (r < 0 || ssh->log_preamble == NULL)
353 			return SSH_ERR_ALLOC_FAIL;
354 	}
355 	return 0;
356 }
357 
358 int
359 ssh_packet_stop_discard(struct ssh *ssh)
360 {
361 	struct session_state *state = ssh->state;
362 	int r;
363 
364 	if (state->packet_discard_mac) {
365 		char buf[1024];
366 		size_t dlen = PACKET_MAX_SIZE;
367 
368 		if (dlen > state->packet_discard_mac_already)
369 			dlen -= state->packet_discard_mac_already;
370 		memset(buf, 'a', sizeof(buf));
371 		while (sshbuf_len(state->incoming_packet) < dlen)
372 			if ((r = sshbuf_put(state->incoming_packet, buf,
373 			    sizeof(buf))) != 0)
374 				return r;
375 		(void) mac_compute(state->packet_discard_mac,
376 		    state->p_read.seqnr,
377 		    sshbuf_ptr(state->incoming_packet), dlen,
378 		    NULL, 0);
379 	}
380 	logit("Finished discarding for %.200s port %d",
381 	    ssh_remote_ipaddr(ssh), ssh_remote_port(ssh));
382 	return SSH_ERR_MAC_INVALID;
383 }
384 
385 static int
386 ssh_packet_start_discard(struct ssh *ssh, struct sshenc *enc,
387     struct sshmac *mac, size_t mac_already, u_int discard)
388 {
389 	struct session_state *state = ssh->state;
390 	int r;
391 
392 	if (enc == NULL || !cipher_is_cbc(enc->cipher) || (mac && mac->etm)) {
393 		if ((r = sshpkt_disconnect(ssh, "Packet corrupt")) != 0)
394 			return r;
395 		return SSH_ERR_MAC_INVALID;
396 	}
397 	/*
398 	 * Record number of bytes over which the mac has already
399 	 * been computed in order to minimize timing attacks.
400 	 */
401 	if (mac && mac->enabled) {
402 		state->packet_discard_mac = mac;
403 		state->packet_discard_mac_already = mac_already;
404 	}
405 	if (sshbuf_len(state->input) >= discard)
406 		return ssh_packet_stop_discard(ssh);
407 	state->packet_discard = discard - sshbuf_len(state->input);
408 	return 0;
409 }
410 
411 /* Returns 1 if remote host is connected via socket, 0 if not. */
412 
413 int
414 ssh_packet_connection_is_on_socket(struct ssh *ssh)
415 {
416 	struct session_state *state;
417 	struct sockaddr_storage from, to;
418 	socklen_t fromlen, tolen;
419 
420 	if (ssh == NULL || ssh->state == NULL)
421 		return 0;
422 
423 	state = ssh->state;
424 	if (state->connection_in == -1 || state->connection_out == -1)
425 		return 0;
426 	/* filedescriptors in and out are the same, so it's a socket */
427 	if (state->connection_in == state->connection_out)
428 		return 1;
429 	fromlen = sizeof(from);
430 	memset(&from, 0, sizeof(from));
431 	if (getpeername(state->connection_in, (struct sockaddr *)&from,
432 	    &fromlen) == -1)
433 		return 0;
434 	tolen = sizeof(to);
435 	memset(&to, 0, sizeof(to));
436 	if (getpeername(state->connection_out, (struct sockaddr *)&to,
437 	    &tolen) == -1)
438 		return 0;
439 	if (fromlen != tolen || memcmp(&from, &to, fromlen) != 0)
440 		return 0;
441 	if (from.ss_family != AF_INET && from.ss_family != AF_INET6)
442 		return 0;
443 	return 1;
444 }
445 
446 void
447 ssh_packet_get_bytes(struct ssh *ssh, u_int64_t *ibytes, u_int64_t *obytes)
448 {
449 	if (ibytes)
450 		*ibytes = ssh->state->p_read.bytes;
451 	if (obytes)
452 		*obytes = ssh->state->p_send.bytes;
453 }
454 
455 int
456 ssh_packet_connection_af(struct ssh *ssh)
457 {
458 	return get_sock_af(ssh->state->connection_out);
459 }
460 
461 /* Sets the connection into non-blocking mode. */
462 
463 void
464 ssh_packet_set_nonblocking(struct ssh *ssh)
465 {
466 	/* Set the socket into non-blocking mode. */
467 	set_nonblock(ssh->state->connection_in);
468 
469 	if (ssh->state->connection_out != ssh->state->connection_in)
470 		set_nonblock(ssh->state->connection_out);
471 }
472 
473 /* Returns the socket used for reading. */
474 
475 int
476 ssh_packet_get_connection_in(struct ssh *ssh)
477 {
478 	return ssh->state->connection_in;
479 }
480 
481 /* Returns the descriptor used for writing. */
482 
483 int
484 ssh_packet_get_connection_out(struct ssh *ssh)
485 {
486 	return ssh->state->connection_out;
487 }
488 
489 /*
490  * Returns the IP-address of the remote host as a string.  The returned
491  * string must not be freed.
492  */
493 
494 const char *
495 ssh_remote_ipaddr(struct ssh *ssh)
496 {
497 	int sock;
498 
499 	/* Check whether we have cached the ipaddr. */
500 	if (ssh->remote_ipaddr == NULL) {
501 		if (ssh_packet_connection_is_on_socket(ssh)) {
502 			sock = ssh->state->connection_in;
503 			ssh->remote_ipaddr = get_peer_ipaddr(sock);
504 			ssh->remote_port = get_peer_port(sock);
505 			ssh->local_ipaddr = get_local_ipaddr(sock);
506 			ssh->local_port = get_local_port(sock);
507 		} else {
508 			ssh->remote_ipaddr = xstrdup("UNKNOWN");
509 			ssh->remote_port = 65535;
510 			ssh->local_ipaddr = xstrdup("UNKNOWN");
511 			ssh->local_port = 65535;
512 		}
513 	}
514 	return ssh->remote_ipaddr;
515 }
516 
517 /* Returns the port number of the remote host. */
518 
519 int
520 ssh_remote_port(struct ssh *ssh)
521 {
522 	(void)ssh_remote_ipaddr(ssh); /* Will lookup and cache. */
523 	return ssh->remote_port;
524 }
525 
526 /*
527  * Returns the IP-address of the local host as a string.  The returned
528  * string must not be freed.
529  */
530 
531 const char *
532 ssh_local_ipaddr(struct ssh *ssh)
533 {
534 	(void)ssh_remote_ipaddr(ssh); /* Will lookup and cache. */
535 	return ssh->local_ipaddr;
536 }
537 
538 /* Returns the port number of the local host. */
539 
540 int
541 ssh_local_port(struct ssh *ssh)
542 {
543 	(void)ssh_remote_ipaddr(ssh); /* Will lookup and cache. */
544 	return ssh->local_port;
545 }
546 
547 /* Returns the routing domain of the input socket, or NULL if unavailable */
548 const char *
549 ssh_packet_rdomain_in(struct ssh *ssh)
550 {
551 	if (ssh->rdomain_in != NULL)
552 		return ssh->rdomain_in;
553 	if (!ssh_packet_connection_is_on_socket(ssh))
554 		return NULL;
555 	ssh->rdomain_in = get_rdomain(ssh->state->connection_in);
556 	return ssh->rdomain_in;
557 }
558 
559 /* Closes the connection and clears and frees internal data structures. */
560 
561 static void
562 ssh_packet_close_internal(struct ssh *ssh, int do_close)
563 {
564 	struct session_state *state = ssh->state;
565 	u_int mode;
566 
567 	if (!state->initialized)
568 		return;
569 	state->initialized = 0;
570 	if (do_close) {
571 		if (state->connection_in == state->connection_out) {
572 			close(state->connection_out);
573 		} else {
574 			close(state->connection_in);
575 			close(state->connection_out);
576 		}
577 	}
578 	sshbuf_free(state->input);
579 	sshbuf_free(state->output);
580 	sshbuf_free(state->outgoing_packet);
581 	sshbuf_free(state->incoming_packet);
582 	for (mode = 0; mode < MODE_MAX; mode++) {
583 		kex_free_newkeys(state->newkeys[mode]);	/* current keys */
584 		state->newkeys[mode] = NULL;
585 		ssh_clear_newkeys(ssh, mode);		/* next keys */
586 	}
587 #ifdef WITH_ZLIB
588 	/* compression state is in shared mem, so we can only release it once */
589 	if (do_close && state->compression_buffer) {
590 		sshbuf_free(state->compression_buffer);
591 		if (state->compression_out_started) {
592 			z_streamp stream = &state->compression_out_stream;
593 			debug("compress outgoing: "
594 			    "raw data %llu, compressed %llu, factor %.2f",
595 				(unsigned long long)stream->total_in,
596 				(unsigned long long)stream->total_out,
597 				stream->total_in == 0 ? 0.0 :
598 				(double) stream->total_out / stream->total_in);
599 			if (state->compression_out_failures == 0)
600 				deflateEnd(stream);
601 		}
602 		if (state->compression_in_started) {
603 			z_streamp stream = &state->compression_in_stream;
604 			debug("compress incoming: "
605 			    "raw data %llu, compressed %llu, factor %.2f",
606 			    (unsigned long long)stream->total_out,
607 			    (unsigned long long)stream->total_in,
608 			    stream->total_out == 0 ? 0.0 :
609 			    (double) stream->total_in / stream->total_out);
610 			if (state->compression_in_failures == 0)
611 				inflateEnd(stream);
612 		}
613 	}
614 #endif	/* WITH_ZLIB */
615 	cipher_free(state->send_context);
616 	cipher_free(state->receive_context);
617 	state->send_context = state->receive_context = NULL;
618 	if (do_close) {
619 		free(ssh->local_ipaddr);
620 		ssh->local_ipaddr = NULL;
621 		free(ssh->remote_ipaddr);
622 		ssh->remote_ipaddr = NULL;
623 		free(ssh->state);
624 		ssh->state = NULL;
625 		kex_free(ssh->kex);
626 		ssh->kex = NULL;
627 	}
628 }
629 
630 void
631 ssh_packet_close(struct ssh *ssh)
632 {
633 	ssh_packet_close_internal(ssh, 1);
634 }
635 
636 void
637 ssh_packet_clear_keys(struct ssh *ssh)
638 {
639 	ssh_packet_close_internal(ssh, 0);
640 }
641 
642 /* Sets remote side protocol flags. */
643 
644 void
645 ssh_packet_set_protocol_flags(struct ssh *ssh, u_int protocol_flags)
646 {
647 	ssh->state->remote_protocol_flags = protocol_flags;
648 }
649 
650 /* Returns the remote protocol flags set earlier by the above function. */
651 
652 u_int
653 ssh_packet_get_protocol_flags(struct ssh *ssh)
654 {
655 	return ssh->state->remote_protocol_flags;
656 }
657 
658 /*
659  * Starts packet compression from the next packet on in both directions.
660  * Level is compression level 1 (fastest) - 9 (slow, best) as in gzip.
661  */
662 
663 static int
664 ssh_packet_init_compression(struct ssh *ssh)
665 {
666 	if (!ssh->state->compression_buffer &&
667 	   ((ssh->state->compression_buffer = sshbuf_new()) == NULL))
668 		return SSH_ERR_ALLOC_FAIL;
669 	return 0;
670 }
671 
672 #ifdef WITH_ZLIB
673 static int
674 start_compression_out(struct ssh *ssh, int level)
675 {
676 	if (level < 1 || level > 9)
677 		return SSH_ERR_INVALID_ARGUMENT;
678 	debug("Enabling compression at level %d.", level);
679 	if (ssh->state->compression_out_started == 1)
680 		deflateEnd(&ssh->state->compression_out_stream);
681 	switch (deflateInit(&ssh->state->compression_out_stream, level)) {
682 	case Z_OK:
683 		ssh->state->compression_out_started = 1;
684 		break;
685 	case Z_MEM_ERROR:
686 		return SSH_ERR_ALLOC_FAIL;
687 	default:
688 		return SSH_ERR_INTERNAL_ERROR;
689 	}
690 	return 0;
691 }
692 
693 static int
694 start_compression_in(struct ssh *ssh)
695 {
696 	if (ssh->state->compression_in_started == 1)
697 		inflateEnd(&ssh->state->compression_in_stream);
698 	switch (inflateInit(&ssh->state->compression_in_stream)) {
699 	case Z_OK:
700 		ssh->state->compression_in_started = 1;
701 		break;
702 	case Z_MEM_ERROR:
703 		return SSH_ERR_ALLOC_FAIL;
704 	default:
705 		return SSH_ERR_INTERNAL_ERROR;
706 	}
707 	return 0;
708 }
709 
710 /* XXX remove need for separate compression buffer */
711 static int
712 compress_buffer(struct ssh *ssh, struct sshbuf *in, struct sshbuf *out)
713 {
714 	u_char buf[4096];
715 	int r, status;
716 
717 	if (ssh->state->compression_out_started != 1)
718 		return SSH_ERR_INTERNAL_ERROR;
719 
720 	/* This case is not handled below. */
721 	if (sshbuf_len(in) == 0)
722 		return 0;
723 
724 	/* Input is the contents of the input buffer. */
725 	if ((ssh->state->compression_out_stream.next_in =
726 	    sshbuf_mutable_ptr(in)) == NULL)
727 		return SSH_ERR_INTERNAL_ERROR;
728 	ssh->state->compression_out_stream.avail_in = sshbuf_len(in);
729 
730 	/* Loop compressing until deflate() returns with avail_out != 0. */
731 	do {
732 		/* Set up fixed-size output buffer. */
733 		ssh->state->compression_out_stream.next_out = buf;
734 		ssh->state->compression_out_stream.avail_out = sizeof(buf);
735 
736 		/* Compress as much data into the buffer as possible. */
737 		status = deflate(&ssh->state->compression_out_stream,
738 		    Z_PARTIAL_FLUSH);
739 		switch (status) {
740 		case Z_MEM_ERROR:
741 			return SSH_ERR_ALLOC_FAIL;
742 		case Z_OK:
743 			/* Append compressed data to output_buffer. */
744 			if ((r = sshbuf_put(out, buf, sizeof(buf) -
745 			    ssh->state->compression_out_stream.avail_out)) != 0)
746 				return r;
747 			break;
748 		case Z_STREAM_ERROR:
749 		default:
750 			ssh->state->compression_out_failures++;
751 			return SSH_ERR_INVALID_FORMAT;
752 		}
753 	} while (ssh->state->compression_out_stream.avail_out == 0);
754 	return 0;
755 }
756 
757 static int
758 uncompress_buffer(struct ssh *ssh, struct sshbuf *in, struct sshbuf *out)
759 {
760 	u_char buf[4096];
761 	int r, status;
762 
763 	if (ssh->state->compression_in_started != 1)
764 		return SSH_ERR_INTERNAL_ERROR;
765 
766 	if ((ssh->state->compression_in_stream.next_in =
767 	    sshbuf_mutable_ptr(in)) == NULL)
768 		return SSH_ERR_INTERNAL_ERROR;
769 	ssh->state->compression_in_stream.avail_in = sshbuf_len(in);
770 
771 	for (;;) {
772 		/* Set up fixed-size output buffer. */
773 		ssh->state->compression_in_stream.next_out = buf;
774 		ssh->state->compression_in_stream.avail_out = sizeof(buf);
775 
776 		status = inflate(&ssh->state->compression_in_stream,
777 		    Z_PARTIAL_FLUSH);
778 		switch (status) {
779 		case Z_OK:
780 			if ((r = sshbuf_put(out, buf, sizeof(buf) -
781 			    ssh->state->compression_in_stream.avail_out)) != 0)
782 				return r;
783 			break;
784 		case Z_BUF_ERROR:
785 			/*
786 			 * Comments in zlib.h say that we should keep calling
787 			 * inflate() until we get an error.  This appears to
788 			 * be the error that we get.
789 			 */
790 			return 0;
791 		case Z_DATA_ERROR:
792 			return SSH_ERR_INVALID_FORMAT;
793 		case Z_MEM_ERROR:
794 			return SSH_ERR_ALLOC_FAIL;
795 		case Z_STREAM_ERROR:
796 		default:
797 			ssh->state->compression_in_failures++;
798 			return SSH_ERR_INTERNAL_ERROR;
799 		}
800 	}
801 	/* NOTREACHED */
802 }
803 
804 #else	/* WITH_ZLIB */
805 
806 static int
807 start_compression_out(struct ssh *ssh, int level)
808 {
809 	return SSH_ERR_INTERNAL_ERROR;
810 }
811 
812 static int
813 start_compression_in(struct ssh *ssh)
814 {
815 	return SSH_ERR_INTERNAL_ERROR;
816 }
817 
818 static int
819 compress_buffer(struct ssh *ssh, struct sshbuf *in, struct sshbuf *out)
820 {
821 	return SSH_ERR_INTERNAL_ERROR;
822 }
823 
824 static int
825 uncompress_buffer(struct ssh *ssh, struct sshbuf *in, struct sshbuf *out)
826 {
827 	return SSH_ERR_INTERNAL_ERROR;
828 }
829 #endif	/* WITH_ZLIB */
830 
831 void
832 ssh_clear_newkeys(struct ssh *ssh, int mode)
833 {
834 	if (ssh->kex && ssh->kex->newkeys[mode]) {
835 		kex_free_newkeys(ssh->kex->newkeys[mode]);
836 		ssh->kex->newkeys[mode] = NULL;
837 	}
838 }
839 
840 int
841 ssh_set_newkeys(struct ssh *ssh, int mode)
842 {
843 	struct session_state *state = ssh->state;
844 	struct sshenc *enc;
845 	struct sshmac *mac;
846 	struct sshcomp *comp;
847 	struct sshcipher_ctx **ccp;
848 	struct packet_state *ps;
849 	u_int64_t *max_blocks;
850 	const char *wmsg;
851 	int r, crypt_type;
852 	const char *dir = mode == MODE_OUT ? "out" : "in";
853 
854 	debug2("set_newkeys: mode %d", mode);
855 
856 	if (mode == MODE_OUT) {
857 		ccp = &state->send_context;
858 		crypt_type = CIPHER_ENCRYPT;
859 		ps = &state->p_send;
860 		max_blocks = &state->max_blocks_out;
861 	} else {
862 		ccp = &state->receive_context;
863 		crypt_type = CIPHER_DECRYPT;
864 		ps = &state->p_read;
865 		max_blocks = &state->max_blocks_in;
866 	}
867 	if (state->newkeys[mode] != NULL) {
868 		debug_f("rekeying %s, input %llu bytes %llu blocks, "
869 		   "output %llu bytes %llu blocks", dir,
870 		   (unsigned long long)state->p_read.bytes,
871 		   (unsigned long long)state->p_read.blocks,
872 		   (unsigned long long)state->p_send.bytes,
873 		   (unsigned long long)state->p_send.blocks);
874 		kex_free_newkeys(state->newkeys[mode]);
875 		state->newkeys[mode] = NULL;
876 	}
877 	/* note that both bytes and the seqnr are not reset */
878 	ps->packets = ps->blocks = 0;
879 	/* move newkeys from kex to state */
880 	if ((state->newkeys[mode] = ssh->kex->newkeys[mode]) == NULL)
881 		return SSH_ERR_INTERNAL_ERROR;
882 	ssh->kex->newkeys[mode] = NULL;
883 	enc  = &state->newkeys[mode]->enc;
884 	mac  = &state->newkeys[mode]->mac;
885 	comp = &state->newkeys[mode]->comp;
886 	if (cipher_authlen(enc->cipher) == 0) {
887 		if ((r = mac_init(mac)) != 0)
888 			return r;
889 	}
890 	mac->enabled = 1;
891 	DBG(debug_f("cipher_init_context: %s", dir));
892 	cipher_free(*ccp);
893 	*ccp = NULL;
894 	if ((r = cipher_init(ccp, enc->cipher, enc->key, enc->key_len,
895 	    enc->iv, enc->iv_len, crypt_type)) != 0)
896 		return r;
897 	if (!state->cipher_warning_done &&
898 	    (wmsg = cipher_warning_message(*ccp)) != NULL) {
899 		error("Warning: %s", wmsg);
900 		state->cipher_warning_done = 1;
901 	}
902 	/* Deleting the keys does not gain extra security */
903 	/* explicit_bzero(enc->iv,  enc->block_size);
904 	   explicit_bzero(enc->key, enc->key_len);
905 	   explicit_bzero(mac->key, mac->key_len); */
906 	if ((comp->type == COMP_ZLIB ||
907 	    (comp->type == COMP_DELAYED &&
908 	     state->after_authentication)) && comp->enabled == 0) {
909 		if ((r = ssh_packet_init_compression(ssh)) < 0)
910 			return r;
911 		if (mode == MODE_OUT) {
912 			if ((r = start_compression_out(ssh, 6)) != 0)
913 				return r;
914 		} else {
915 			if ((r = start_compression_in(ssh)) != 0)
916 				return r;
917 		}
918 		comp->enabled = 1;
919 	}
920 	/*
921 	 * The 2^(blocksize*2) limit is too expensive for 3DES,
922 	 * so enforce a 1GB limit for small blocksizes.
923 	 * See RFC4344 section 3.2.
924 	 */
925 	if (enc->block_size >= 16)
926 		*max_blocks = (u_int64_t)1 << (enc->block_size*2);
927 	else
928 		*max_blocks = ((u_int64_t)1 << 30) / enc->block_size;
929 	if (state->rekey_limit)
930 		*max_blocks = MINIMUM(*max_blocks,
931 		    state->rekey_limit / enc->block_size);
932 	debug("rekey %s after %llu blocks", dir,
933 	    (unsigned long long)*max_blocks);
934 	return 0;
935 }
936 
937 #define MAX_PACKETS	(1U<<31)
938 static int
939 ssh_packet_need_rekeying(struct ssh *ssh, u_int outbound_packet_len)
940 {
941 	struct session_state *state = ssh->state;
942 	u_int32_t out_blocks;
943 
944 	/* XXX client can't cope with rekeying pre-auth */
945 	if (!state->after_authentication)
946 		return 0;
947 
948 	/* Haven't keyed yet or KEX in progress. */
949 	if (ssh_packet_is_rekeying(ssh))
950 		return 0;
951 
952 	/* Peer can't rekey */
953 	if (ssh->compat & SSH_BUG_NOREKEY)
954 		return 0;
955 
956 	/*
957 	 * Permit one packet in or out per rekey - this allows us to
958 	 * make progress when rekey limits are very small.
959 	 */
960 	if (state->p_send.packets == 0 && state->p_read.packets == 0)
961 		return 0;
962 
963 	/* Time-based rekeying */
964 	if (state->rekey_interval != 0 &&
965 	    (int64_t)state->rekey_time + state->rekey_interval <= monotime())
966 		return 1;
967 
968 	/*
969 	 * Always rekey when MAX_PACKETS sent in either direction
970 	 * As per RFC4344 section 3.1 we do this after 2^31 packets.
971 	 */
972 	if (state->p_send.packets > MAX_PACKETS ||
973 	    state->p_read.packets > MAX_PACKETS)
974 		return 1;
975 
976 	/* Rekey after (cipher-specific) maxiumum blocks */
977 	out_blocks = ROUNDUP(outbound_packet_len,
978 	    state->newkeys[MODE_OUT]->enc.block_size);
979 	return (state->max_blocks_out &&
980 	    (state->p_send.blocks + out_blocks > state->max_blocks_out)) ||
981 	    (state->max_blocks_in &&
982 	    (state->p_read.blocks > state->max_blocks_in));
983 }
984 
985 /*
986  * Delayed compression for SSH2 is enabled after authentication:
987  * This happens on the server side after a SSH2_MSG_USERAUTH_SUCCESS is sent,
988  * and on the client side after a SSH2_MSG_USERAUTH_SUCCESS is received.
989  */
990 static int
991 ssh_packet_enable_delayed_compress(struct ssh *ssh)
992 {
993 	struct session_state *state = ssh->state;
994 	struct sshcomp *comp = NULL;
995 	int r, mode;
996 
997 	/*
998 	 * Remember that we are past the authentication step, so rekeying
999 	 * with COMP_DELAYED will turn on compression immediately.
1000 	 */
1001 	state->after_authentication = 1;
1002 	for (mode = 0; mode < MODE_MAX; mode++) {
1003 		/* protocol error: USERAUTH_SUCCESS received before NEWKEYS */
1004 		if (state->newkeys[mode] == NULL)
1005 			continue;
1006 		comp = &state->newkeys[mode]->comp;
1007 		if (comp && !comp->enabled && comp->type == COMP_DELAYED) {
1008 			if ((r = ssh_packet_init_compression(ssh)) != 0)
1009 				return r;
1010 			if (mode == MODE_OUT) {
1011 				if ((r = start_compression_out(ssh, 6)) != 0)
1012 					return r;
1013 			} else {
1014 				if ((r = start_compression_in(ssh)) != 0)
1015 					return r;
1016 			}
1017 			comp->enabled = 1;
1018 		}
1019 	}
1020 	return 0;
1021 }
1022 
1023 /* Used to mute debug logging for noisy packet types */
1024 int
1025 ssh_packet_log_type(u_char type)
1026 {
1027 	switch (type) {
1028 	case SSH2_MSG_CHANNEL_DATA:
1029 	case SSH2_MSG_CHANNEL_EXTENDED_DATA:
1030 	case SSH2_MSG_CHANNEL_WINDOW_ADJUST:
1031 		return 0;
1032 	default:
1033 		return 1;
1034 	}
1035 }
1036 
1037 /*
1038  * Finalize packet in SSH2 format (compress, mac, encrypt, enqueue)
1039  */
1040 int
1041 ssh_packet_send2_wrapped(struct ssh *ssh)
1042 {
1043 	struct session_state *state = ssh->state;
1044 	u_char type, *cp, macbuf[SSH_DIGEST_MAX_LENGTH];
1045 	u_char tmp, padlen, pad = 0;
1046 	u_int authlen = 0, aadlen = 0;
1047 	u_int len;
1048 	struct sshenc *enc   = NULL;
1049 	struct sshmac *mac   = NULL;
1050 	struct sshcomp *comp = NULL;
1051 	int r, block_size;
1052 
1053 	if (state->newkeys[MODE_OUT] != NULL) {
1054 		enc  = &state->newkeys[MODE_OUT]->enc;
1055 		mac  = &state->newkeys[MODE_OUT]->mac;
1056 		comp = &state->newkeys[MODE_OUT]->comp;
1057 		/* disable mac for authenticated encryption */
1058 		if ((authlen = cipher_authlen(enc->cipher)) != 0)
1059 			mac = NULL;
1060 	}
1061 	block_size = enc ? enc->block_size : 8;
1062 	aadlen = (mac && mac->enabled && mac->etm) || authlen ? 4 : 0;
1063 
1064 	type = (sshbuf_ptr(state->outgoing_packet))[5];
1065 	if (ssh_packet_log_type(type))
1066 		debug3("send packet: type %u", type);
1067 #ifdef PACKET_DEBUG
1068 	fprintf(stderr, "plain:     ");
1069 	sshbuf_dump(state->outgoing_packet, stderr);
1070 #endif
1071 
1072 	if (comp && comp->enabled) {
1073 		len = sshbuf_len(state->outgoing_packet);
1074 		/* skip header, compress only payload */
1075 		if ((r = sshbuf_consume(state->outgoing_packet, 5)) != 0)
1076 			goto out;
1077 		sshbuf_reset(state->compression_buffer);
1078 		if ((r = compress_buffer(ssh, state->outgoing_packet,
1079 		    state->compression_buffer)) != 0)
1080 			goto out;
1081 		sshbuf_reset(state->outgoing_packet);
1082 		if ((r = sshbuf_put(state->outgoing_packet,
1083 		    "\0\0\0\0\0", 5)) != 0 ||
1084 		    (r = sshbuf_putb(state->outgoing_packet,
1085 		    state->compression_buffer)) != 0)
1086 			goto out;
1087 		DBG(debug("compression: raw %d compressed %zd", len,
1088 		    sshbuf_len(state->outgoing_packet)));
1089 	}
1090 
1091 	/* sizeof (packet_len + pad_len + payload) */
1092 	len = sshbuf_len(state->outgoing_packet);
1093 
1094 	/*
1095 	 * calc size of padding, alloc space, get random data,
1096 	 * minimum padding is 4 bytes
1097 	 */
1098 	len -= aadlen; /* packet length is not encrypted for EtM modes */
1099 	padlen = block_size - (len % block_size);
1100 	if (padlen < 4)
1101 		padlen += block_size;
1102 	if (state->extra_pad) {
1103 		tmp = state->extra_pad;
1104 		state->extra_pad =
1105 		    ROUNDUP(state->extra_pad, block_size);
1106 		/* check if roundup overflowed */
1107 		if (state->extra_pad < tmp)
1108 			return SSH_ERR_INVALID_ARGUMENT;
1109 		tmp = (len + padlen) % state->extra_pad;
1110 		/* Check whether pad calculation below will underflow */
1111 		if (tmp > state->extra_pad)
1112 			return SSH_ERR_INVALID_ARGUMENT;
1113 		pad = state->extra_pad - tmp;
1114 		DBG(debug3_f("adding %d (len %d padlen %d extra_pad %d)",
1115 		    pad, len, padlen, state->extra_pad));
1116 		tmp = padlen;
1117 		padlen += pad;
1118 		/* Check whether padlen calculation overflowed */
1119 		if (padlen < tmp)
1120 			return SSH_ERR_INVALID_ARGUMENT; /* overflow */
1121 		state->extra_pad = 0;
1122 	}
1123 	if ((r = sshbuf_reserve(state->outgoing_packet, padlen, &cp)) != 0)
1124 		goto out;
1125 	if (enc && !cipher_ctx_is_plaintext(state->send_context)) {
1126 		/* random padding */
1127 		arc4random_buf(cp, padlen);
1128 	} else {
1129 		/* clear padding */
1130 		explicit_bzero(cp, padlen);
1131 	}
1132 	/* sizeof (packet_len + pad_len + payload + padding) */
1133 	len = sshbuf_len(state->outgoing_packet);
1134 	cp = sshbuf_mutable_ptr(state->outgoing_packet);
1135 	if (cp == NULL) {
1136 		r = SSH_ERR_INTERNAL_ERROR;
1137 		goto out;
1138 	}
1139 	/* packet_length includes payload, padding and padding length field */
1140 	POKE_U32(cp, len - 4);
1141 	cp[4] = padlen;
1142 	DBG(debug("send: len %d (includes padlen %d, aadlen %d)",
1143 	    len, padlen, aadlen));
1144 
1145 	/* compute MAC over seqnr and packet(length fields, payload, padding) */
1146 	if (mac && mac->enabled && !mac->etm) {
1147 		if ((r = mac_compute(mac, state->p_send.seqnr,
1148 		    sshbuf_ptr(state->outgoing_packet), len,
1149 		    macbuf, sizeof(macbuf))) != 0)
1150 			goto out;
1151 		DBG(debug("done calc MAC out #%d", state->p_send.seqnr));
1152 	}
1153 	/* encrypt packet and append to output buffer. */
1154 	if ((r = sshbuf_reserve(state->output,
1155 	    sshbuf_len(state->outgoing_packet) + authlen, &cp)) != 0)
1156 		goto out;
1157 	if ((r = cipher_crypt(state->send_context, state->p_send.seqnr, cp,
1158 	    sshbuf_ptr(state->outgoing_packet),
1159 	    len - aadlen, aadlen, authlen)) != 0)
1160 		goto out;
1161 	/* append unencrypted MAC */
1162 	if (mac && mac->enabled) {
1163 		if (mac->etm) {
1164 			/* EtM: compute mac over aadlen + cipher text */
1165 			if ((r = mac_compute(mac, state->p_send.seqnr,
1166 			    cp, len, macbuf, sizeof(macbuf))) != 0)
1167 				goto out;
1168 			DBG(debug("done calc MAC(EtM) out #%d",
1169 			    state->p_send.seqnr));
1170 		}
1171 		if ((r = sshbuf_put(state->output, macbuf, mac->mac_len)) != 0)
1172 			goto out;
1173 	}
1174 #ifdef PACKET_DEBUG
1175 	fprintf(stderr, "encrypted: ");
1176 	sshbuf_dump(state->output, stderr);
1177 #endif
1178 	/* increment sequence number for outgoing packets */
1179 	if (++state->p_send.seqnr == 0)
1180 		logit("outgoing seqnr wraps around");
1181 	if (++state->p_send.packets == 0)
1182 		if (!(ssh->compat & SSH_BUG_NOREKEY))
1183 			return SSH_ERR_NEED_REKEY;
1184 	state->p_send.blocks += len / block_size;
1185 	state->p_send.bytes += len;
1186 	sshbuf_reset(state->outgoing_packet);
1187 
1188 	if (type == SSH2_MSG_NEWKEYS)
1189 		r = ssh_set_newkeys(ssh, MODE_OUT);
1190 	else if (type == SSH2_MSG_USERAUTH_SUCCESS && state->server_side)
1191 		r = ssh_packet_enable_delayed_compress(ssh);
1192 	else
1193 		r = 0;
1194  out:
1195 	return r;
1196 }
1197 
1198 /* returns non-zero if the specified packet type is usec by KEX */
1199 static int
1200 ssh_packet_type_is_kex(u_char type)
1201 {
1202 	return
1203 	    type >= SSH2_MSG_TRANSPORT_MIN &&
1204 	    type <= SSH2_MSG_TRANSPORT_MAX &&
1205 	    type != SSH2_MSG_SERVICE_REQUEST &&
1206 	    type != SSH2_MSG_SERVICE_ACCEPT &&
1207 	    type != SSH2_MSG_EXT_INFO;
1208 }
1209 
1210 int
1211 ssh_packet_send2(struct ssh *ssh)
1212 {
1213 	struct session_state *state = ssh->state;
1214 	struct packet *p;
1215 	u_char type;
1216 	int r, need_rekey;
1217 
1218 	if (sshbuf_len(state->outgoing_packet) < 6)
1219 		return SSH_ERR_INTERNAL_ERROR;
1220 	type = sshbuf_ptr(state->outgoing_packet)[5];
1221 	need_rekey = !ssh_packet_type_is_kex(type) &&
1222 	    ssh_packet_need_rekeying(ssh, sshbuf_len(state->outgoing_packet));
1223 
1224 	/*
1225 	 * During rekeying we can only send key exchange messages.
1226 	 * Queue everything else.
1227 	 */
1228 	if ((need_rekey || state->rekeying) && !ssh_packet_type_is_kex(type)) {
1229 		if (need_rekey)
1230 			debug3_f("rekex triggered");
1231 		debug("enqueue packet: %u", type);
1232 		p = calloc(1, sizeof(*p));
1233 		if (p == NULL)
1234 			return SSH_ERR_ALLOC_FAIL;
1235 		p->type = type;
1236 		p->payload = state->outgoing_packet;
1237 		TAILQ_INSERT_TAIL(&state->outgoing, p, next);
1238 		state->outgoing_packet = sshbuf_new();
1239 		if (state->outgoing_packet == NULL)
1240 			return SSH_ERR_ALLOC_FAIL;
1241 		if (need_rekey) {
1242 			/*
1243 			 * This packet triggered a rekey, so send the
1244 			 * KEXINIT now.
1245 			 * NB. reenters this function via kex_start_rekex().
1246 			 */
1247 			return kex_start_rekex(ssh);
1248 		}
1249 		return 0;
1250 	}
1251 
1252 	/* rekeying starts with sending KEXINIT */
1253 	if (type == SSH2_MSG_KEXINIT)
1254 		state->rekeying = 1;
1255 
1256 	if ((r = ssh_packet_send2_wrapped(ssh)) != 0)
1257 		return r;
1258 
1259 	/* after a NEWKEYS message we can send the complete queue */
1260 	if (type == SSH2_MSG_NEWKEYS) {
1261 		state->rekeying = 0;
1262 		state->rekey_time = monotime();
1263 		while ((p = TAILQ_FIRST(&state->outgoing))) {
1264 			type = p->type;
1265 			/*
1266 			 * If this packet triggers a rekex, then skip the
1267 			 * remaining packets in the queue for now.
1268 			 * NB. re-enters this function via kex_start_rekex.
1269 			 */
1270 			if (ssh_packet_need_rekeying(ssh,
1271 			    sshbuf_len(p->payload))) {
1272 				debug3_f("queued packet triggered rekex");
1273 				return kex_start_rekex(ssh);
1274 			}
1275 			debug("dequeue packet: %u", type);
1276 			sshbuf_free(state->outgoing_packet);
1277 			state->outgoing_packet = p->payload;
1278 			TAILQ_REMOVE(&state->outgoing, p, next);
1279 			memset(p, 0, sizeof(*p));
1280 			free(p);
1281 			if ((r = ssh_packet_send2_wrapped(ssh)) != 0)
1282 				return r;
1283 		}
1284 	}
1285 	return 0;
1286 }
1287 
1288 /*
1289  * Waits until a packet has been received, and returns its type.  Note that
1290  * no other data is processed until this returns, so this function should not
1291  * be used during the interactive session.
1292  */
1293 
1294 int
1295 ssh_packet_read_seqnr(struct ssh *ssh, u_char *typep, u_int32_t *seqnr_p)
1296 {
1297 	struct session_state *state = ssh->state;
1298 	int len, r, ms_remain;
1299 	fd_set *setp;
1300 	char buf[8192];
1301 	struct timeval timeout, start, *timeoutp = NULL;
1302 
1303 	DBG(debug("packet_read()"));
1304 
1305 	setp = calloc(howmany(state->connection_in + 1,
1306 	    NFDBITS), sizeof(fd_mask));
1307 	if (setp == NULL)
1308 		return SSH_ERR_ALLOC_FAIL;
1309 
1310 	/*
1311 	 * Since we are blocking, ensure that all written packets have
1312 	 * been sent.
1313 	 */
1314 	if ((r = ssh_packet_write_wait(ssh)) != 0)
1315 		goto out;
1316 
1317 	/* Stay in the loop until we have received a complete packet. */
1318 	for (;;) {
1319 		/* Try to read a packet from the buffer. */
1320 		r = ssh_packet_read_poll_seqnr(ssh, typep, seqnr_p);
1321 		if (r != 0)
1322 			break;
1323 		/* If we got a packet, return it. */
1324 		if (*typep != SSH_MSG_NONE)
1325 			break;
1326 		/*
1327 		 * Otherwise, wait for some data to arrive, add it to the
1328 		 * buffer, and try again.
1329 		 */
1330 		memset(setp, 0, howmany(state->connection_in + 1,
1331 		    NFDBITS) * sizeof(fd_mask));
1332 		FD_SET(state->connection_in, setp);
1333 
1334 		if (state->packet_timeout_ms > 0) {
1335 			ms_remain = state->packet_timeout_ms;
1336 			timeoutp = &timeout;
1337 		}
1338 		/* Wait for some data to arrive. */
1339 		for (;;) {
1340 			if (state->packet_timeout_ms > 0) {
1341 				ms_to_timeval(&timeout, ms_remain);
1342 				monotime_tv(&start);
1343 			}
1344 			if ((r = select(state->connection_in + 1, setp,
1345 			    NULL, NULL, timeoutp)) >= 0)
1346 				break;
1347 			if (errno != EAGAIN && errno != EINTR) {
1348 				r = SSH_ERR_SYSTEM_ERROR;
1349 				goto out;
1350 			}
1351 			if (state->packet_timeout_ms <= 0)
1352 				continue;
1353 			ms_subtract_diff(&start, &ms_remain);
1354 			if (ms_remain <= 0) {
1355 				r = 0;
1356 				break;
1357 			}
1358 		}
1359 		if (r == 0) {
1360 			r = SSH_ERR_CONN_TIMEOUT;
1361 			goto out;
1362 		}
1363 		/* Read data from the socket. */
1364 		len = read(state->connection_in, buf, sizeof(buf));
1365 		if (len == 0) {
1366 			r = SSH_ERR_CONN_CLOSED;
1367 			goto out;
1368 		}
1369 		if (len == -1) {
1370 			r = SSH_ERR_SYSTEM_ERROR;
1371 			goto out;
1372 		}
1373 
1374 		/* Append it to the buffer. */
1375 		if ((r = ssh_packet_process_incoming(ssh, buf, len)) != 0)
1376 			goto out;
1377 	}
1378  out:
1379 	free(setp);
1380 	return r;
1381 }
1382 
1383 int
1384 ssh_packet_read(struct ssh *ssh)
1385 {
1386 	u_char type;
1387 	int r;
1388 
1389 	if ((r = ssh_packet_read_seqnr(ssh, &type, NULL)) != 0)
1390 		fatal_fr(r, "read");
1391 	return type;
1392 }
1393 
1394 /*
1395  * Waits until a packet has been received, verifies that its type matches
1396  * that given, and gives a fatal error and exits if there is a mismatch.
1397  */
1398 
1399 int
1400 ssh_packet_read_expect(struct ssh *ssh, u_int expected_type)
1401 {
1402 	int r;
1403 	u_char type;
1404 
1405 	if ((r = ssh_packet_read_seqnr(ssh, &type, NULL)) != 0)
1406 		return r;
1407 	if (type != expected_type) {
1408 		if ((r = sshpkt_disconnect(ssh,
1409 		    "Protocol error: expected packet type %d, got %d",
1410 		    expected_type, type)) != 0)
1411 			return r;
1412 		return SSH_ERR_PROTOCOL_ERROR;
1413 	}
1414 	return 0;
1415 }
1416 
1417 static int
1418 ssh_packet_read_poll2_mux(struct ssh *ssh, u_char *typep, u_int32_t *seqnr_p)
1419 {
1420 	struct session_state *state = ssh->state;
1421 	const u_char *cp;
1422 	size_t need;
1423 	int r;
1424 
1425 	if (ssh->kex)
1426 		return SSH_ERR_INTERNAL_ERROR;
1427 	*typep = SSH_MSG_NONE;
1428 	cp = sshbuf_ptr(state->input);
1429 	if (state->packlen == 0) {
1430 		if (sshbuf_len(state->input) < 4 + 1)
1431 			return 0; /* packet is incomplete */
1432 		state->packlen = PEEK_U32(cp);
1433 		if (state->packlen < 4 + 1 ||
1434 		    state->packlen > PACKET_MAX_SIZE)
1435 			return SSH_ERR_MESSAGE_INCOMPLETE;
1436 	}
1437 	need = state->packlen + 4;
1438 	if (sshbuf_len(state->input) < need)
1439 		return 0; /* packet is incomplete */
1440 	sshbuf_reset(state->incoming_packet);
1441 	if ((r = sshbuf_put(state->incoming_packet, cp + 4,
1442 	    state->packlen)) != 0 ||
1443 	    (r = sshbuf_consume(state->input, need)) != 0 ||
1444 	    (r = sshbuf_get_u8(state->incoming_packet, NULL)) != 0 ||
1445 	    (r = sshbuf_get_u8(state->incoming_packet, typep)) != 0)
1446 		return r;
1447 	if (ssh_packet_log_type(*typep))
1448 		debug3_f("type %u", *typep);
1449 	/* sshbuf_dump(state->incoming_packet, stderr); */
1450 	/* reset for next packet */
1451 	state->packlen = 0;
1452 	return r;
1453 }
1454 
1455 int
1456 ssh_packet_read_poll2(struct ssh *ssh, u_char *typep, u_int32_t *seqnr_p)
1457 {
1458 	struct session_state *state = ssh->state;
1459 	u_int padlen, need;
1460 	u_char *cp;
1461 	u_int maclen, aadlen = 0, authlen = 0, block_size;
1462 	struct sshenc *enc   = NULL;
1463 	struct sshmac *mac   = NULL;
1464 	struct sshcomp *comp = NULL;
1465 	int r;
1466 
1467 	if (state->mux)
1468 		return ssh_packet_read_poll2_mux(ssh, typep, seqnr_p);
1469 
1470 	*typep = SSH_MSG_NONE;
1471 
1472 	if (state->packet_discard)
1473 		return 0;
1474 
1475 	if (state->newkeys[MODE_IN] != NULL) {
1476 		enc  = &state->newkeys[MODE_IN]->enc;
1477 		mac  = &state->newkeys[MODE_IN]->mac;
1478 		comp = &state->newkeys[MODE_IN]->comp;
1479 		/* disable mac for authenticated encryption */
1480 		if ((authlen = cipher_authlen(enc->cipher)) != 0)
1481 			mac = NULL;
1482 	}
1483 	maclen = mac && mac->enabled ? mac->mac_len : 0;
1484 	block_size = enc ? enc->block_size : 8;
1485 	aadlen = (mac && mac->enabled && mac->etm) || authlen ? 4 : 0;
1486 
1487 	if (aadlen && state->packlen == 0) {
1488 		if (cipher_get_length(state->receive_context,
1489 		    &state->packlen, state->p_read.seqnr,
1490 		    sshbuf_ptr(state->input), sshbuf_len(state->input)) != 0)
1491 			return 0;
1492 		if (state->packlen < 1 + 4 ||
1493 		    state->packlen > PACKET_MAX_SIZE) {
1494 #ifdef PACKET_DEBUG
1495 			sshbuf_dump(state->input, stderr);
1496 #endif
1497 			logit("Bad packet length %u.", state->packlen);
1498 			if ((r = sshpkt_disconnect(ssh, "Packet corrupt")) != 0)
1499 				return r;
1500 			return SSH_ERR_CONN_CORRUPT;
1501 		}
1502 		sshbuf_reset(state->incoming_packet);
1503 	} else if (state->packlen == 0) {
1504 		/*
1505 		 * check if input size is less than the cipher block size,
1506 		 * decrypt first block and extract length of incoming packet
1507 		 */
1508 		if (sshbuf_len(state->input) < block_size)
1509 			return 0;
1510 		sshbuf_reset(state->incoming_packet);
1511 		if ((r = sshbuf_reserve(state->incoming_packet, block_size,
1512 		    &cp)) != 0)
1513 			goto out;
1514 		if ((r = cipher_crypt(state->receive_context,
1515 		    state->p_send.seqnr, cp, sshbuf_ptr(state->input),
1516 		    block_size, 0, 0)) != 0)
1517 			goto out;
1518 		state->packlen = PEEK_U32(sshbuf_ptr(state->incoming_packet));
1519 		if (state->packlen < 1 + 4 ||
1520 		    state->packlen > PACKET_MAX_SIZE) {
1521 #ifdef PACKET_DEBUG
1522 			fprintf(stderr, "input: \n");
1523 			sshbuf_dump(state->input, stderr);
1524 			fprintf(stderr, "incoming_packet: \n");
1525 			sshbuf_dump(state->incoming_packet, stderr);
1526 #endif
1527 			logit("Bad packet length %u.", state->packlen);
1528 			return ssh_packet_start_discard(ssh, enc, mac, 0,
1529 			    PACKET_MAX_SIZE);
1530 		}
1531 		if ((r = sshbuf_consume(state->input, block_size)) != 0)
1532 			goto out;
1533 	}
1534 	DBG(debug("input: packet len %u", state->packlen+4));
1535 
1536 	if (aadlen) {
1537 		/* only the payload is encrypted */
1538 		need = state->packlen;
1539 	} else {
1540 		/*
1541 		 * the payload size and the payload are encrypted, but we
1542 		 * have a partial packet of block_size bytes
1543 		 */
1544 		need = 4 + state->packlen - block_size;
1545 	}
1546 	DBG(debug("partial packet: block %d, need %d, maclen %d, authlen %d,"
1547 	    " aadlen %d", block_size, need, maclen, authlen, aadlen));
1548 	if (need % block_size != 0) {
1549 		logit("padding error: need %d block %d mod %d",
1550 		    need, block_size, need % block_size);
1551 		return ssh_packet_start_discard(ssh, enc, mac, 0,
1552 		    PACKET_MAX_SIZE - block_size);
1553 	}
1554 	/*
1555 	 * check if the entire packet has been received and
1556 	 * decrypt into incoming_packet:
1557 	 * 'aadlen' bytes are unencrypted, but authenticated.
1558 	 * 'need' bytes are encrypted, followed by either
1559 	 * 'authlen' bytes of authentication tag or
1560 	 * 'maclen' bytes of message authentication code.
1561 	 */
1562 	if (sshbuf_len(state->input) < aadlen + need + authlen + maclen)
1563 		return 0; /* packet is incomplete */
1564 #ifdef PACKET_DEBUG
1565 	fprintf(stderr, "read_poll enc/full: ");
1566 	sshbuf_dump(state->input, stderr);
1567 #endif
1568 	/* EtM: check mac over encrypted input */
1569 	if (mac && mac->enabled && mac->etm) {
1570 		if ((r = mac_check(mac, state->p_read.seqnr,
1571 		    sshbuf_ptr(state->input), aadlen + need,
1572 		    sshbuf_ptr(state->input) + aadlen + need + authlen,
1573 		    maclen)) != 0) {
1574 			if (r == SSH_ERR_MAC_INVALID)
1575 				logit("Corrupted MAC on input.");
1576 			goto out;
1577 		}
1578 	}
1579 	if ((r = sshbuf_reserve(state->incoming_packet, aadlen + need,
1580 	    &cp)) != 0)
1581 		goto out;
1582 	if ((r = cipher_crypt(state->receive_context, state->p_read.seqnr, cp,
1583 	    sshbuf_ptr(state->input), need, aadlen, authlen)) != 0)
1584 		goto out;
1585 	if ((r = sshbuf_consume(state->input, aadlen + need + authlen)) != 0)
1586 		goto out;
1587 	if (mac && mac->enabled) {
1588 		/* Not EtM: check MAC over cleartext */
1589 		if (!mac->etm && (r = mac_check(mac, state->p_read.seqnr,
1590 		    sshbuf_ptr(state->incoming_packet),
1591 		    sshbuf_len(state->incoming_packet),
1592 		    sshbuf_ptr(state->input), maclen)) != 0) {
1593 			if (r != SSH_ERR_MAC_INVALID)
1594 				goto out;
1595 			logit("Corrupted MAC on input.");
1596 			if (need + block_size > PACKET_MAX_SIZE)
1597 				return SSH_ERR_INTERNAL_ERROR;
1598 			return ssh_packet_start_discard(ssh, enc, mac,
1599 			    sshbuf_len(state->incoming_packet),
1600 			    PACKET_MAX_SIZE - need - block_size);
1601 		}
1602 		/* Remove MAC from input buffer */
1603 		DBG(debug("MAC #%d ok", state->p_read.seqnr));
1604 		if ((r = sshbuf_consume(state->input, mac->mac_len)) != 0)
1605 			goto out;
1606 	}
1607 	if (seqnr_p != NULL)
1608 		*seqnr_p = state->p_read.seqnr;
1609 	if (++state->p_read.seqnr == 0)
1610 		logit("incoming seqnr wraps around");
1611 	if (++state->p_read.packets == 0)
1612 		if (!(ssh->compat & SSH_BUG_NOREKEY))
1613 			return SSH_ERR_NEED_REKEY;
1614 	state->p_read.blocks += (state->packlen + 4) / block_size;
1615 	state->p_read.bytes += state->packlen + 4;
1616 
1617 	/* get padlen */
1618 	padlen = sshbuf_ptr(state->incoming_packet)[4];
1619 	DBG(debug("input: padlen %d", padlen));
1620 	if (padlen < 4)	{
1621 		if ((r = sshpkt_disconnect(ssh,
1622 		    "Corrupted padlen %d on input.", padlen)) != 0 ||
1623 		    (r = ssh_packet_write_wait(ssh)) != 0)
1624 			return r;
1625 		return SSH_ERR_CONN_CORRUPT;
1626 	}
1627 
1628 	/* skip packet size + padlen, discard padding */
1629 	if ((r = sshbuf_consume(state->incoming_packet, 4 + 1)) != 0 ||
1630 	    ((r = sshbuf_consume_end(state->incoming_packet, padlen)) != 0))
1631 		goto out;
1632 
1633 	DBG(debug("input: len before de-compress %zd",
1634 	    sshbuf_len(state->incoming_packet)));
1635 	if (comp && comp->enabled) {
1636 		sshbuf_reset(state->compression_buffer);
1637 		if ((r = uncompress_buffer(ssh, state->incoming_packet,
1638 		    state->compression_buffer)) != 0)
1639 			goto out;
1640 		sshbuf_reset(state->incoming_packet);
1641 		if ((r = sshbuf_putb(state->incoming_packet,
1642 		    state->compression_buffer)) != 0)
1643 			goto out;
1644 		DBG(debug("input: len after de-compress %zd",
1645 		    sshbuf_len(state->incoming_packet)));
1646 	}
1647 	/*
1648 	 * get packet type, implies consume.
1649 	 * return length of payload (without type field)
1650 	 */
1651 	if ((r = sshbuf_get_u8(state->incoming_packet, typep)) != 0)
1652 		goto out;
1653 	if (ssh_packet_log_type(*typep))
1654 		debug3("receive packet: type %u", *typep);
1655 	if (*typep < SSH2_MSG_MIN || *typep >= SSH2_MSG_LOCAL_MIN) {
1656 		if ((r = sshpkt_disconnect(ssh,
1657 		    "Invalid ssh2 packet type: %d", *typep)) != 0 ||
1658 		    (r = ssh_packet_write_wait(ssh)) != 0)
1659 			return r;
1660 		return SSH_ERR_PROTOCOL_ERROR;
1661 	}
1662 	if (state->hook_in != NULL &&
1663 	    (r = state->hook_in(ssh, state->incoming_packet, typep,
1664 	    state->hook_in_ctx)) != 0)
1665 		return r;
1666 	if (*typep == SSH2_MSG_USERAUTH_SUCCESS && !state->server_side)
1667 		r = ssh_packet_enable_delayed_compress(ssh);
1668 	else
1669 		r = 0;
1670 #ifdef PACKET_DEBUG
1671 	fprintf(stderr, "read/plain[%d]:\r\n", *typep);
1672 	sshbuf_dump(state->incoming_packet, stderr);
1673 #endif
1674 	/* reset for next packet */
1675 	state->packlen = 0;
1676 
1677 	/* do we need to rekey? */
1678 	if (ssh_packet_need_rekeying(ssh, 0)) {
1679 		debug3_f("rekex triggered");
1680 		if ((r = kex_start_rekex(ssh)) != 0)
1681 			return r;
1682 	}
1683  out:
1684 	return r;
1685 }
1686 
1687 int
1688 ssh_packet_read_poll_seqnr(struct ssh *ssh, u_char *typep, u_int32_t *seqnr_p)
1689 {
1690 	struct session_state *state = ssh->state;
1691 	u_int reason, seqnr;
1692 	int r;
1693 	u_char *msg;
1694 
1695 	for (;;) {
1696 		msg = NULL;
1697 		r = ssh_packet_read_poll2(ssh, typep, seqnr_p);
1698 		if (r != 0)
1699 			return r;
1700 		if (*typep) {
1701 			state->keep_alive_timeouts = 0;
1702 			DBG(debug("received packet type %d", *typep));
1703 		}
1704 		switch (*typep) {
1705 		case SSH2_MSG_IGNORE:
1706 			debug3("Received SSH2_MSG_IGNORE");
1707 			break;
1708 		case SSH2_MSG_DEBUG:
1709 			if ((r = sshpkt_get_u8(ssh, NULL)) != 0 ||
1710 			    (r = sshpkt_get_string(ssh, &msg, NULL)) != 0 ||
1711 			    (r = sshpkt_get_string(ssh, NULL, NULL)) != 0) {
1712 				free(msg);
1713 				return r;
1714 			}
1715 			debug("Remote: %.900s", msg);
1716 			free(msg);
1717 			break;
1718 		case SSH2_MSG_DISCONNECT:
1719 			if ((r = sshpkt_get_u32(ssh, &reason)) != 0 ||
1720 			    (r = sshpkt_get_string(ssh, &msg, NULL)) != 0)
1721 				return r;
1722 			/* Ignore normal client exit notifications */
1723 			do_log2(ssh->state->server_side &&
1724 			    reason == SSH2_DISCONNECT_BY_APPLICATION ?
1725 			    SYSLOG_LEVEL_INFO : SYSLOG_LEVEL_ERROR,
1726 			    "Received disconnect from %s port %d:"
1727 			    "%u: %.400s", ssh_remote_ipaddr(ssh),
1728 			    ssh_remote_port(ssh), reason, msg);
1729 			free(msg);
1730 			return SSH_ERR_DISCONNECTED;
1731 		case SSH2_MSG_UNIMPLEMENTED:
1732 			if ((r = sshpkt_get_u32(ssh, &seqnr)) != 0)
1733 				return r;
1734 			debug("Received SSH2_MSG_UNIMPLEMENTED for %u",
1735 			    seqnr);
1736 			break;
1737 		default:
1738 			return 0;
1739 		}
1740 	}
1741 }
1742 
1743 /*
1744  * Buffers the given amount of input characters.  This is intended to be used
1745  * together with packet_read_poll.
1746  */
1747 
1748 int
1749 ssh_packet_process_incoming(struct ssh *ssh, const char *buf, u_int len)
1750 {
1751 	struct session_state *state = ssh->state;
1752 	int r;
1753 
1754 	if (state->packet_discard) {
1755 		state->keep_alive_timeouts = 0; /* ?? */
1756 		if (len >= state->packet_discard) {
1757 			if ((r = ssh_packet_stop_discard(ssh)) != 0)
1758 				return r;
1759 		}
1760 		state->packet_discard -= len;
1761 		return 0;
1762 	}
1763 	if ((r = sshbuf_put(ssh->state->input, buf, len)) != 0)
1764 		return r;
1765 
1766 	return 0;
1767 }
1768 
1769 int
1770 ssh_packet_remaining(struct ssh *ssh)
1771 {
1772 	return sshbuf_len(ssh->state->incoming_packet);
1773 }
1774 
1775 /*
1776  * Sends a diagnostic message from the server to the client.  This message
1777  * can be sent at any time (but not while constructing another message). The
1778  * message is printed immediately, but only if the client is being executed
1779  * in verbose mode.  These messages are primarily intended to ease debugging
1780  * authentication problems.   The length of the formatted message must not
1781  * exceed 1024 bytes.  This will automatically call ssh_packet_write_wait.
1782  */
1783 void
1784 ssh_packet_send_debug(struct ssh *ssh, const char *fmt,...)
1785 {
1786 	char buf[1024];
1787 	va_list args;
1788 	int r;
1789 
1790 	if ((ssh->compat & SSH_BUG_DEBUG))
1791 		return;
1792 
1793 	va_start(args, fmt);
1794 	vsnprintf(buf, sizeof(buf), fmt, args);
1795 	va_end(args);
1796 
1797 	debug3("sending debug message: %s", buf);
1798 
1799 	if ((r = sshpkt_start(ssh, SSH2_MSG_DEBUG)) != 0 ||
1800 	    (r = sshpkt_put_u8(ssh, 0)) != 0 || /* always display */
1801 	    (r = sshpkt_put_cstring(ssh, buf)) != 0 ||
1802 	    (r = sshpkt_put_cstring(ssh, "")) != 0 ||
1803 	    (r = sshpkt_send(ssh)) != 0 ||
1804 	    (r = ssh_packet_write_wait(ssh)) != 0)
1805 		fatal_fr(r, "send DEBUG");
1806 }
1807 
1808 void
1809 sshpkt_fmt_connection_id(struct ssh *ssh, char *s, size_t l)
1810 {
1811 	snprintf(s, l, "%.200s%s%s port %d",
1812 	    ssh->log_preamble ? ssh->log_preamble : "",
1813 	    ssh->log_preamble ? " " : "",
1814 	    ssh_remote_ipaddr(ssh), ssh_remote_port(ssh));
1815 }
1816 
1817 /*
1818  * Pretty-print connection-terminating errors and exit.
1819  */
1820 static void
1821 sshpkt_vfatal(struct ssh *ssh, int r, const char *fmt, va_list ap)
1822 {
1823 	char *tag = NULL, remote_id[512];
1824 	int oerrno = errno;
1825 
1826 	sshpkt_fmt_connection_id(ssh, remote_id, sizeof(remote_id));
1827 
1828 	switch (r) {
1829 	case SSH_ERR_CONN_CLOSED:
1830 		ssh_packet_clear_keys(ssh);
1831 		logdie("Connection closed by %s", remote_id);
1832 	case SSH_ERR_CONN_TIMEOUT:
1833 		ssh_packet_clear_keys(ssh);
1834 		logdie("Connection %s %s timed out",
1835 		    ssh->state->server_side ? "from" : "to", remote_id);
1836 	case SSH_ERR_DISCONNECTED:
1837 		ssh_packet_clear_keys(ssh);
1838 		logdie("Disconnected from %s", remote_id);
1839 	case SSH_ERR_SYSTEM_ERROR:
1840 		if (errno == ECONNRESET) {
1841 			ssh_packet_clear_keys(ssh);
1842 			logdie("Connection reset by %s", remote_id);
1843 		}
1844 		/* FALLTHROUGH */
1845 	case SSH_ERR_NO_CIPHER_ALG_MATCH:
1846 	case SSH_ERR_NO_MAC_ALG_MATCH:
1847 	case SSH_ERR_NO_COMPRESS_ALG_MATCH:
1848 	case SSH_ERR_NO_KEX_ALG_MATCH:
1849 	case SSH_ERR_NO_HOSTKEY_ALG_MATCH:
1850 		if (ssh && ssh->kex && ssh->kex->failed_choice) {
1851 			ssh_packet_clear_keys(ssh);
1852 			errno = oerrno;
1853 			logdie("Unable to negotiate with %s: %s. "
1854 			    "Their offer: %s", remote_id, ssh_err(r),
1855 			    ssh->kex->failed_choice);
1856 		}
1857 		/* FALLTHROUGH */
1858 	default:
1859 		if (vasprintf(&tag, fmt, ap) == -1) {
1860 			ssh_packet_clear_keys(ssh);
1861 			logdie_f("could not allocate failure message");
1862 		}
1863 		ssh_packet_clear_keys(ssh);
1864 		errno = oerrno;
1865 		logdie_r(r, "%s%sConnection %s %s",
1866 		    tag != NULL ? tag : "", tag != NULL ? ": " : "",
1867 		    ssh->state->server_side ? "from" : "to", remote_id);
1868 	}
1869 }
1870 
1871 void
1872 sshpkt_fatal(struct ssh *ssh, int r, const char *fmt, ...)
1873 {
1874 	va_list ap;
1875 
1876 	va_start(ap, fmt);
1877 	sshpkt_vfatal(ssh, r, fmt, ap);
1878 	/* NOTREACHED */
1879 	va_end(ap);
1880 	logdie_f("should have exited");
1881 }
1882 
1883 /*
1884  * Logs the error plus constructs and sends a disconnect packet, closes the
1885  * connection, and exits.  This function never returns. The error message
1886  * should not contain a newline.  The length of the formatted message must
1887  * not exceed 1024 bytes.
1888  */
1889 void
1890 ssh_packet_disconnect(struct ssh *ssh, const char *fmt,...)
1891 {
1892 	char buf[1024], remote_id[512];
1893 	va_list args;
1894 	static int disconnecting = 0;
1895 	int r;
1896 
1897 	if (disconnecting)	/* Guard against recursive invocations. */
1898 		fatal("packet_disconnect called recursively.");
1899 	disconnecting = 1;
1900 
1901 	/*
1902 	 * Format the message.  Note that the caller must make sure the
1903 	 * message is of limited size.
1904 	 */
1905 	sshpkt_fmt_connection_id(ssh, remote_id, sizeof(remote_id));
1906 	va_start(args, fmt);
1907 	vsnprintf(buf, sizeof(buf), fmt, args);
1908 	va_end(args);
1909 
1910 	/* Display the error locally */
1911 	logit("Disconnecting %s: %.100s", remote_id, buf);
1912 
1913 	/*
1914 	 * Send the disconnect message to the other side, and wait
1915 	 * for it to get sent.
1916 	 */
1917 	if ((r = sshpkt_disconnect(ssh, "%s", buf)) != 0)
1918 		sshpkt_fatal(ssh, r, "%s", __func__);
1919 
1920 	if ((r = ssh_packet_write_wait(ssh)) != 0)
1921 		sshpkt_fatal(ssh, r, "%s", __func__);
1922 
1923 	/* Close the connection. */
1924 	ssh_packet_close(ssh);
1925 	cleanup_exit(255);
1926 }
1927 
1928 /*
1929  * Checks if there is any buffered output, and tries to write some of
1930  * the output.
1931  */
1932 int
1933 ssh_packet_write_poll(struct ssh *ssh)
1934 {
1935 	struct session_state *state = ssh->state;
1936 	int len = sshbuf_len(state->output);
1937 	int r;
1938 
1939 	if (len > 0) {
1940 		len = write(state->connection_out,
1941 		    sshbuf_ptr(state->output), len);
1942 		if (len == -1) {
1943 			if (errno == EINTR || errno == EAGAIN)
1944 				return 0;
1945 			return SSH_ERR_SYSTEM_ERROR;
1946 		}
1947 		if (len == 0)
1948 			return SSH_ERR_CONN_CLOSED;
1949 		if ((r = sshbuf_consume(state->output, len)) != 0)
1950 			return r;
1951 	}
1952 	return 0;
1953 }
1954 
1955 /*
1956  * Calls packet_write_poll repeatedly until all pending output data has been
1957  * written.
1958  */
1959 int
1960 ssh_packet_write_wait(struct ssh *ssh)
1961 {
1962 	fd_set *setp;
1963 	int ret, r, ms_remain = 0;
1964 	struct timeval start, timeout, *timeoutp = NULL;
1965 	struct session_state *state = ssh->state;
1966 
1967 	setp = calloc(howmany(state->connection_out + 1,
1968 	    NFDBITS), sizeof(fd_mask));
1969 	if (setp == NULL)
1970 		return SSH_ERR_ALLOC_FAIL;
1971 	if ((r = ssh_packet_write_poll(ssh)) != 0) {
1972 		free(setp);
1973 		return r;
1974 	}
1975 	while (ssh_packet_have_data_to_write(ssh)) {
1976 		memset(setp, 0, howmany(state->connection_out + 1,
1977 		    NFDBITS) * sizeof(fd_mask));
1978 		FD_SET(state->connection_out, setp);
1979 
1980 		if (state->packet_timeout_ms > 0) {
1981 			ms_remain = state->packet_timeout_ms;
1982 			timeoutp = &timeout;
1983 		}
1984 		for (;;) {
1985 			if (state->packet_timeout_ms > 0) {
1986 				ms_to_timeval(&timeout, ms_remain);
1987 				monotime_tv(&start);
1988 			}
1989 			if ((ret = select(state->connection_out + 1,
1990 			    NULL, setp, NULL, timeoutp)) >= 0)
1991 				break;
1992 			if (errno != EAGAIN && errno != EINTR)
1993 				break;
1994 			if (state->packet_timeout_ms <= 0)
1995 				continue;
1996 			ms_subtract_diff(&start, &ms_remain);
1997 			if (ms_remain <= 0) {
1998 				ret = 0;
1999 				break;
2000 			}
2001 		}
2002 		if (ret == 0) {
2003 			free(setp);
2004 			return SSH_ERR_CONN_TIMEOUT;
2005 		}
2006 		if ((r = ssh_packet_write_poll(ssh)) != 0) {
2007 			free(setp);
2008 			return r;
2009 		}
2010 	}
2011 	free(setp);
2012 	return 0;
2013 }
2014 
2015 /* Returns true if there is buffered data to write to the connection. */
2016 
2017 int
2018 ssh_packet_have_data_to_write(struct ssh *ssh)
2019 {
2020 	return sshbuf_len(ssh->state->output) != 0;
2021 }
2022 
2023 /* Returns true if there is not too much data to write to the connection. */
2024 
2025 int
2026 ssh_packet_not_very_much_data_to_write(struct ssh *ssh)
2027 {
2028 	if (ssh->state->interactive_mode)
2029 		return sshbuf_len(ssh->state->output) < 16384;
2030 	else
2031 		return sshbuf_len(ssh->state->output) < 128 * 1024;
2032 }
2033 
2034 void
2035 ssh_packet_set_tos(struct ssh *ssh, int tos)
2036 {
2037 	if (!ssh_packet_connection_is_on_socket(ssh) || tos == INT_MAX)
2038 		return;
2039 	set_sock_tos(ssh->state->connection_in, tos);
2040 }
2041 
2042 /* Informs that the current session is interactive.  Sets IP flags for that. */
2043 
2044 void
2045 ssh_packet_set_interactive(struct ssh *ssh, int interactive, int qos_interactive, int qos_bulk)
2046 {
2047 	struct session_state *state = ssh->state;
2048 
2049 	if (state->set_interactive_called)
2050 		return;
2051 	state->set_interactive_called = 1;
2052 
2053 	/* Record that we are in interactive mode. */
2054 	state->interactive_mode = interactive;
2055 
2056 	/* Only set socket options if using a socket.  */
2057 	if (!ssh_packet_connection_is_on_socket(ssh))
2058 		return;
2059 	set_nodelay(state->connection_in);
2060 	ssh_packet_set_tos(ssh, interactive ? qos_interactive : qos_bulk);
2061 }
2062 
2063 /* Returns true if the current connection is interactive. */
2064 
2065 int
2066 ssh_packet_is_interactive(struct ssh *ssh)
2067 {
2068 	return ssh->state->interactive_mode;
2069 }
2070 
2071 int
2072 ssh_packet_set_maxsize(struct ssh *ssh, u_int s)
2073 {
2074 	struct session_state *state = ssh->state;
2075 
2076 	if (state->set_maxsize_called) {
2077 		logit("packet_set_maxsize: called twice: old %d new %d",
2078 		    state->max_packet_size, s);
2079 		return -1;
2080 	}
2081 	if (s < 4 * 1024 || s > 1024 * 1024) {
2082 		logit("packet_set_maxsize: bad size %d", s);
2083 		return -1;
2084 	}
2085 	state->set_maxsize_called = 1;
2086 	debug("packet_set_maxsize: setting to %d", s);
2087 	state->max_packet_size = s;
2088 	return s;
2089 }
2090 
2091 int
2092 ssh_packet_inc_alive_timeouts(struct ssh *ssh)
2093 {
2094 	return ++ssh->state->keep_alive_timeouts;
2095 }
2096 
2097 void
2098 ssh_packet_set_alive_timeouts(struct ssh *ssh, int ka)
2099 {
2100 	ssh->state->keep_alive_timeouts = ka;
2101 }
2102 
2103 u_int
2104 ssh_packet_get_maxsize(struct ssh *ssh)
2105 {
2106 	return ssh->state->max_packet_size;
2107 }
2108 
2109 void
2110 ssh_packet_set_rekey_limits(struct ssh *ssh, u_int64_t bytes, u_int32_t seconds)
2111 {
2112 	debug3("rekey after %llu bytes, %u seconds", (unsigned long long)bytes,
2113 	    (unsigned int)seconds);
2114 	ssh->state->rekey_limit = bytes;
2115 	ssh->state->rekey_interval = seconds;
2116 }
2117 
2118 time_t
2119 ssh_packet_get_rekey_timeout(struct ssh *ssh)
2120 {
2121 	time_t seconds;
2122 
2123 	seconds = ssh->state->rekey_time + ssh->state->rekey_interval -
2124 	    monotime();
2125 	return (seconds <= 0 ? 1 : seconds);
2126 }
2127 
2128 void
2129 ssh_packet_set_server(struct ssh *ssh)
2130 {
2131 	ssh->state->server_side = 1;
2132 	ssh->kex->server = 1; /* XXX unify? */
2133 }
2134 
2135 void
2136 ssh_packet_set_authenticated(struct ssh *ssh)
2137 {
2138 	ssh->state->after_authentication = 1;
2139 }
2140 
2141 void *
2142 ssh_packet_get_input(struct ssh *ssh)
2143 {
2144 	return (void *)ssh->state->input;
2145 }
2146 
2147 void *
2148 ssh_packet_get_output(struct ssh *ssh)
2149 {
2150 	return (void *)ssh->state->output;
2151 }
2152 
2153 /* Reset after_authentication and reset compression in post-auth privsep */
2154 static int
2155 ssh_packet_set_postauth(struct ssh *ssh)
2156 {
2157 	int r;
2158 
2159 	debug_f("called");
2160 	/* This was set in net child, but is not visible in user child */
2161 	ssh->state->after_authentication = 1;
2162 	ssh->state->rekeying = 0;
2163 	if ((r = ssh_packet_enable_delayed_compress(ssh)) != 0)
2164 		return r;
2165 	return 0;
2166 }
2167 
2168 /* Packet state (de-)serialization for privsep */
2169 
2170 /* turn kex into a blob for packet state serialization */
2171 static int
2172 kex_to_blob(struct sshbuf *m, struct kex *kex)
2173 {
2174 	int r;
2175 
2176 	if ((r = sshbuf_put_string(m, kex->session_id,
2177 	    kex->session_id_len)) != 0 ||
2178 	    (r = sshbuf_put_u32(m, kex->we_need)) != 0 ||
2179 	    (r = sshbuf_put_cstring(m, kex->hostkey_alg)) != 0 ||
2180 	    (r = sshbuf_put_u32(m, kex->hostkey_type)) != 0 ||
2181 	    (r = sshbuf_put_u32(m, kex->hostkey_nid)) != 0 ||
2182 	    (r = sshbuf_put_u32(m, kex->kex_type)) != 0 ||
2183 	    (r = sshbuf_put_stringb(m, kex->my)) != 0 ||
2184 	    (r = sshbuf_put_stringb(m, kex->peer)) != 0 ||
2185 	    (r = sshbuf_put_stringb(m, kex->client_version)) != 0 ||
2186 	    (r = sshbuf_put_stringb(m, kex->server_version)) != 0 ||
2187 	    (r = sshbuf_put_u32(m, kex->flags)) != 0)
2188 		return r;
2189 	return 0;
2190 }
2191 
2192 /* turn key exchange results into a blob for packet state serialization */
2193 static int
2194 newkeys_to_blob(struct sshbuf *m, struct ssh *ssh, int mode)
2195 {
2196 	struct sshbuf *b;
2197 	struct sshcipher_ctx *cc;
2198 	struct sshcomp *comp;
2199 	struct sshenc *enc;
2200 	struct sshmac *mac;
2201 	struct newkeys *newkey;
2202 	int r;
2203 
2204 	if ((newkey = ssh->state->newkeys[mode]) == NULL)
2205 		return SSH_ERR_INTERNAL_ERROR;
2206 	enc = &newkey->enc;
2207 	mac = &newkey->mac;
2208 	comp = &newkey->comp;
2209 	cc = (mode == MODE_OUT) ? ssh->state->send_context :
2210 	    ssh->state->receive_context;
2211 	if ((r = cipher_get_keyiv(cc, enc->iv, enc->iv_len)) != 0)
2212 		return r;
2213 	if ((b = sshbuf_new()) == NULL)
2214 		return SSH_ERR_ALLOC_FAIL;
2215 	if ((r = sshbuf_put_cstring(b, enc->name)) != 0 ||
2216 	    (r = sshbuf_put_u32(b, enc->enabled)) != 0 ||
2217 	    (r = sshbuf_put_u32(b, enc->block_size)) != 0 ||
2218 	    (r = sshbuf_put_string(b, enc->key, enc->key_len)) != 0 ||
2219 	    (r = sshbuf_put_string(b, enc->iv, enc->iv_len)) != 0)
2220 		goto out;
2221 	if (cipher_authlen(enc->cipher) == 0) {
2222 		if ((r = sshbuf_put_cstring(b, mac->name)) != 0 ||
2223 		    (r = sshbuf_put_u32(b, mac->enabled)) != 0 ||
2224 		    (r = sshbuf_put_string(b, mac->key, mac->key_len)) != 0)
2225 			goto out;
2226 	}
2227 	if ((r = sshbuf_put_u32(b, comp->type)) != 0 ||
2228 	    (r = sshbuf_put_cstring(b, comp->name)) != 0)
2229 		goto out;
2230 	r = sshbuf_put_stringb(m, b);
2231  out:
2232 	sshbuf_free(b);
2233 	return r;
2234 }
2235 
2236 /* serialize packet state into a blob */
2237 int
2238 ssh_packet_get_state(struct ssh *ssh, struct sshbuf *m)
2239 {
2240 	struct session_state *state = ssh->state;
2241 	int r;
2242 
2243 	if ((r = kex_to_blob(m, ssh->kex)) != 0 ||
2244 	    (r = newkeys_to_blob(m, ssh, MODE_OUT)) != 0 ||
2245 	    (r = newkeys_to_blob(m, ssh, MODE_IN)) != 0 ||
2246 	    (r = sshbuf_put_u64(m, state->rekey_limit)) != 0 ||
2247 	    (r = sshbuf_put_u32(m, state->rekey_interval)) != 0 ||
2248 	    (r = sshbuf_put_u32(m, state->p_send.seqnr)) != 0 ||
2249 	    (r = sshbuf_put_u64(m, state->p_send.blocks)) != 0 ||
2250 	    (r = sshbuf_put_u32(m, state->p_send.packets)) != 0 ||
2251 	    (r = sshbuf_put_u64(m, state->p_send.bytes)) != 0 ||
2252 	    (r = sshbuf_put_u32(m, state->p_read.seqnr)) != 0 ||
2253 	    (r = sshbuf_put_u64(m, state->p_read.blocks)) != 0 ||
2254 	    (r = sshbuf_put_u32(m, state->p_read.packets)) != 0 ||
2255 	    (r = sshbuf_put_u64(m, state->p_read.bytes)) != 0 ||
2256 	    (r = sshbuf_put_stringb(m, state->input)) != 0 ||
2257 	    (r = sshbuf_put_stringb(m, state->output)) != 0)
2258 		return r;
2259 
2260 	return 0;
2261 }
2262 
2263 /* restore key exchange results from blob for packet state de-serialization */
2264 static int
2265 newkeys_from_blob(struct sshbuf *m, struct ssh *ssh, int mode)
2266 {
2267 	struct sshbuf *b = NULL;
2268 	struct sshcomp *comp;
2269 	struct sshenc *enc;
2270 	struct sshmac *mac;
2271 	struct newkeys *newkey = NULL;
2272 	size_t keylen, ivlen, maclen;
2273 	int r;
2274 
2275 	if ((newkey = calloc(1, sizeof(*newkey))) == NULL) {
2276 		r = SSH_ERR_ALLOC_FAIL;
2277 		goto out;
2278 	}
2279 	if ((r = sshbuf_froms(m, &b)) != 0)
2280 		goto out;
2281 #ifdef DEBUG_PK
2282 	sshbuf_dump(b, stderr);
2283 #endif
2284 	enc = &newkey->enc;
2285 	mac = &newkey->mac;
2286 	comp = &newkey->comp;
2287 
2288 	if ((r = sshbuf_get_cstring(b, &enc->name, NULL)) != 0 ||
2289 	    (r = sshbuf_get_u32(b, (u_int *)&enc->enabled)) != 0 ||
2290 	    (r = sshbuf_get_u32(b, &enc->block_size)) != 0 ||
2291 	    (r = sshbuf_get_string(b, &enc->key, &keylen)) != 0 ||
2292 	    (r = sshbuf_get_string(b, &enc->iv, &ivlen)) != 0)
2293 		goto out;
2294 	if ((enc->cipher = cipher_by_name(enc->name)) == NULL) {
2295 		r = SSH_ERR_INVALID_FORMAT;
2296 		goto out;
2297 	}
2298 	if (cipher_authlen(enc->cipher) == 0) {
2299 		if ((r = sshbuf_get_cstring(b, &mac->name, NULL)) != 0)
2300 			goto out;
2301 		if ((r = mac_setup(mac, mac->name)) != 0)
2302 			goto out;
2303 		if ((r = sshbuf_get_u32(b, (u_int *)&mac->enabled)) != 0 ||
2304 		    (r = sshbuf_get_string(b, &mac->key, &maclen)) != 0)
2305 			goto out;
2306 		if (maclen > mac->key_len) {
2307 			r = SSH_ERR_INVALID_FORMAT;
2308 			goto out;
2309 		}
2310 		mac->key_len = maclen;
2311 	}
2312 	if ((r = sshbuf_get_u32(b, &comp->type)) != 0 ||
2313 	    (r = sshbuf_get_cstring(b, &comp->name, NULL)) != 0)
2314 		goto out;
2315 	if (sshbuf_len(b) != 0) {
2316 		r = SSH_ERR_INVALID_FORMAT;
2317 		goto out;
2318 	}
2319 	enc->key_len = keylen;
2320 	enc->iv_len = ivlen;
2321 	ssh->kex->newkeys[mode] = newkey;
2322 	newkey = NULL;
2323 	r = 0;
2324  out:
2325 	free(newkey);
2326 	sshbuf_free(b);
2327 	return r;
2328 }
2329 
2330 /* restore kex from blob for packet state de-serialization */
2331 static int
2332 kex_from_blob(struct sshbuf *m, struct kex **kexp)
2333 {
2334 	struct kex *kex;
2335 	int r;
2336 
2337 	if ((kex = kex_new()) == NULL)
2338 		return SSH_ERR_ALLOC_FAIL;
2339 	if ((r = sshbuf_get_string(m, &kex->session_id, &kex->session_id_len)) != 0 ||
2340 	    (r = sshbuf_get_u32(m, &kex->we_need)) != 0 ||
2341 	    (r = sshbuf_get_cstring(m, &kex->hostkey_alg, NULL)) != 0 ||
2342 	    (r = sshbuf_get_u32(m, (u_int *)&kex->hostkey_type)) != 0 ||
2343 	    (r = sshbuf_get_u32(m, (u_int *)&kex->hostkey_nid)) != 0 ||
2344 	    (r = sshbuf_get_u32(m, &kex->kex_type)) != 0 ||
2345 	    (r = sshbuf_get_stringb(m, kex->my)) != 0 ||
2346 	    (r = sshbuf_get_stringb(m, kex->peer)) != 0 ||
2347 	    (r = sshbuf_get_stringb(m, kex->client_version)) != 0 ||
2348 	    (r = sshbuf_get_stringb(m, kex->server_version)) != 0 ||
2349 	    (r = sshbuf_get_u32(m, &kex->flags)) != 0)
2350 		goto out;
2351 	kex->server = 1;
2352 	kex->done = 1;
2353 	r = 0;
2354  out:
2355 	if (r != 0 || kexp == NULL) {
2356 		kex_free(kex);
2357 		if (kexp != NULL)
2358 			*kexp = NULL;
2359 	} else {
2360 		kex_free(*kexp);
2361 		*kexp = kex;
2362 	}
2363 	return r;
2364 }
2365 
2366 /*
2367  * Restore packet state from content of blob 'm' (de-serialization).
2368  * Note that 'm' will be partially consumed on parsing or any other errors.
2369  */
2370 int
2371 ssh_packet_set_state(struct ssh *ssh, struct sshbuf *m)
2372 {
2373 	struct session_state *state = ssh->state;
2374 	const u_char *input, *output;
2375 	size_t ilen, olen;
2376 	int r;
2377 
2378 	if ((r = kex_from_blob(m, &ssh->kex)) != 0 ||
2379 	    (r = newkeys_from_blob(m, ssh, MODE_OUT)) != 0 ||
2380 	    (r = newkeys_from_blob(m, ssh, MODE_IN)) != 0 ||
2381 	    (r = sshbuf_get_u64(m, &state->rekey_limit)) != 0 ||
2382 	    (r = sshbuf_get_u32(m, &state->rekey_interval)) != 0 ||
2383 	    (r = sshbuf_get_u32(m, &state->p_send.seqnr)) != 0 ||
2384 	    (r = sshbuf_get_u64(m, &state->p_send.blocks)) != 0 ||
2385 	    (r = sshbuf_get_u32(m, &state->p_send.packets)) != 0 ||
2386 	    (r = sshbuf_get_u64(m, &state->p_send.bytes)) != 0 ||
2387 	    (r = sshbuf_get_u32(m, &state->p_read.seqnr)) != 0 ||
2388 	    (r = sshbuf_get_u64(m, &state->p_read.blocks)) != 0 ||
2389 	    (r = sshbuf_get_u32(m, &state->p_read.packets)) != 0 ||
2390 	    (r = sshbuf_get_u64(m, &state->p_read.bytes)) != 0)
2391 		return r;
2392 	/*
2393 	 * We set the time here so that in post-auth privsep child we
2394 	 * count from the completion of the authentication.
2395 	 */
2396 	state->rekey_time = monotime();
2397 	/* XXX ssh_set_newkeys overrides p_read.packets? XXX */
2398 	if ((r = ssh_set_newkeys(ssh, MODE_IN)) != 0 ||
2399 	    (r = ssh_set_newkeys(ssh, MODE_OUT)) != 0)
2400 		return r;
2401 
2402 	if ((r = ssh_packet_set_postauth(ssh)) != 0)
2403 		return r;
2404 
2405 	sshbuf_reset(state->input);
2406 	sshbuf_reset(state->output);
2407 	if ((r = sshbuf_get_string_direct(m, &input, &ilen)) != 0 ||
2408 	    (r = sshbuf_get_string_direct(m, &output, &olen)) != 0 ||
2409 	    (r = sshbuf_put(state->input, input, ilen)) != 0 ||
2410 	    (r = sshbuf_put(state->output, output, olen)) != 0)
2411 		return r;
2412 
2413 	if (sshbuf_len(m))
2414 		return SSH_ERR_INVALID_FORMAT;
2415 	debug3_f("done");
2416 	return 0;
2417 }
2418 
2419 /* NEW API */
2420 
2421 /* put data to the outgoing packet */
2422 
2423 int
2424 sshpkt_put(struct ssh *ssh, const void *v, size_t len)
2425 {
2426 	return sshbuf_put(ssh->state->outgoing_packet, v, len);
2427 }
2428 
2429 int
2430 sshpkt_putb(struct ssh *ssh, const struct sshbuf *b)
2431 {
2432 	return sshbuf_putb(ssh->state->outgoing_packet, b);
2433 }
2434 
2435 int
2436 sshpkt_put_u8(struct ssh *ssh, u_char val)
2437 {
2438 	return sshbuf_put_u8(ssh->state->outgoing_packet, val);
2439 }
2440 
2441 int
2442 sshpkt_put_u32(struct ssh *ssh, u_int32_t val)
2443 {
2444 	return sshbuf_put_u32(ssh->state->outgoing_packet, val);
2445 }
2446 
2447 int
2448 sshpkt_put_u64(struct ssh *ssh, u_int64_t val)
2449 {
2450 	return sshbuf_put_u64(ssh->state->outgoing_packet, val);
2451 }
2452 
2453 int
2454 sshpkt_put_string(struct ssh *ssh, const void *v, size_t len)
2455 {
2456 	return sshbuf_put_string(ssh->state->outgoing_packet, v, len);
2457 }
2458 
2459 int
2460 sshpkt_put_cstring(struct ssh *ssh, const void *v)
2461 {
2462 	return sshbuf_put_cstring(ssh->state->outgoing_packet, v);
2463 }
2464 
2465 int
2466 sshpkt_put_stringb(struct ssh *ssh, const struct sshbuf *v)
2467 {
2468 	return sshbuf_put_stringb(ssh->state->outgoing_packet, v);
2469 }
2470 
2471 #ifdef WITH_OPENSSL
2472 int
2473 sshpkt_put_ec(struct ssh *ssh, const EC_POINT *v, const EC_GROUP *g)
2474 {
2475 	return sshbuf_put_ec(ssh->state->outgoing_packet, v, g);
2476 }
2477 
2478 
2479 int
2480 sshpkt_put_bignum2(struct ssh *ssh, const BIGNUM *v)
2481 {
2482 	return sshbuf_put_bignum2(ssh->state->outgoing_packet, v);
2483 }
2484 #endif /* WITH_OPENSSL */
2485 
2486 /* fetch data from the incoming packet */
2487 
2488 int
2489 sshpkt_get(struct ssh *ssh, void *valp, size_t len)
2490 {
2491 	return sshbuf_get(ssh->state->incoming_packet, valp, len);
2492 }
2493 
2494 int
2495 sshpkt_get_u8(struct ssh *ssh, u_char *valp)
2496 {
2497 	return sshbuf_get_u8(ssh->state->incoming_packet, valp);
2498 }
2499 
2500 int
2501 sshpkt_get_u32(struct ssh *ssh, u_int32_t *valp)
2502 {
2503 	return sshbuf_get_u32(ssh->state->incoming_packet, valp);
2504 }
2505 
2506 int
2507 sshpkt_get_u64(struct ssh *ssh, u_int64_t *valp)
2508 {
2509 	return sshbuf_get_u64(ssh->state->incoming_packet, valp);
2510 }
2511 
2512 int
2513 sshpkt_get_string(struct ssh *ssh, u_char **valp, size_t *lenp)
2514 {
2515 	return sshbuf_get_string(ssh->state->incoming_packet, valp, lenp);
2516 }
2517 
2518 int
2519 sshpkt_get_string_direct(struct ssh *ssh, const u_char **valp, size_t *lenp)
2520 {
2521 	return sshbuf_get_string_direct(ssh->state->incoming_packet, valp, lenp);
2522 }
2523 
2524 int
2525 sshpkt_peek_string_direct(struct ssh *ssh, const u_char **valp, size_t *lenp)
2526 {
2527 	return sshbuf_peek_string_direct(ssh->state->incoming_packet, valp, lenp);
2528 }
2529 
2530 int
2531 sshpkt_get_cstring(struct ssh *ssh, char **valp, size_t *lenp)
2532 {
2533 	return sshbuf_get_cstring(ssh->state->incoming_packet, valp, lenp);
2534 }
2535 
2536 int
2537 sshpkt_getb_froms(struct ssh *ssh, struct sshbuf **valp)
2538 {
2539 	return sshbuf_froms(ssh->state->incoming_packet, valp);
2540 }
2541 
2542 #ifdef WITH_OPENSSL
2543 int
2544 sshpkt_get_ec(struct ssh *ssh, EC_POINT *v, const EC_GROUP *g)
2545 {
2546 	return sshbuf_get_ec(ssh->state->incoming_packet, v, g);
2547 }
2548 
2549 int
2550 sshpkt_get_bignum2(struct ssh *ssh, BIGNUM **valp)
2551 {
2552 	return sshbuf_get_bignum2(ssh->state->incoming_packet, valp);
2553 }
2554 #endif /* WITH_OPENSSL */
2555 
2556 int
2557 sshpkt_get_end(struct ssh *ssh)
2558 {
2559 	if (sshbuf_len(ssh->state->incoming_packet) > 0)
2560 		return SSH_ERR_UNEXPECTED_TRAILING_DATA;
2561 	return 0;
2562 }
2563 
2564 const u_char *
2565 sshpkt_ptr(struct ssh *ssh, size_t *lenp)
2566 {
2567 	if (lenp != NULL)
2568 		*lenp = sshbuf_len(ssh->state->incoming_packet);
2569 	return sshbuf_ptr(ssh->state->incoming_packet);
2570 }
2571 
2572 /* start a new packet */
2573 
2574 int
2575 sshpkt_start(struct ssh *ssh, u_char type)
2576 {
2577 	u_char buf[6]; /* u32 packet length, u8 pad len, u8 type */
2578 
2579 	DBG(debug("packet_start[%d]", type));
2580 	memset(buf, 0, sizeof(buf));
2581 	buf[sizeof(buf) - 1] = type;
2582 	sshbuf_reset(ssh->state->outgoing_packet);
2583 	return sshbuf_put(ssh->state->outgoing_packet, buf, sizeof(buf));
2584 }
2585 
2586 static int
2587 ssh_packet_send_mux(struct ssh *ssh)
2588 {
2589 	struct session_state *state = ssh->state;
2590 	u_char type, *cp;
2591 	size_t len;
2592 	int r;
2593 
2594 	if (ssh->kex)
2595 		return SSH_ERR_INTERNAL_ERROR;
2596 	len = sshbuf_len(state->outgoing_packet);
2597 	if (len < 6)
2598 		return SSH_ERR_INTERNAL_ERROR;
2599 	cp = sshbuf_mutable_ptr(state->outgoing_packet);
2600 	type = cp[5];
2601 	if (ssh_packet_log_type(type))
2602 		debug3_f("type %u", type);
2603 	/* drop everything, but the connection protocol */
2604 	if (type >= SSH2_MSG_CONNECTION_MIN &&
2605 	    type <= SSH2_MSG_CONNECTION_MAX) {
2606 		POKE_U32(cp, len - 4);
2607 		if ((r = sshbuf_putb(state->output,
2608 		    state->outgoing_packet)) != 0)
2609 			return r;
2610 		/* sshbuf_dump(state->output, stderr); */
2611 	}
2612 	sshbuf_reset(state->outgoing_packet);
2613 	return 0;
2614 }
2615 
2616 /*
2617  * 9.2.  Ignored Data Message
2618  *
2619  *   byte      SSH_MSG_IGNORE
2620  *   string    data
2621  *
2622  * All implementations MUST understand (and ignore) this message at any
2623  * time (after receiving the protocol version). No implementation is
2624  * required to send them. This message can be used as an additional
2625  * protection measure against advanced traffic analysis techniques.
2626  */
2627 int
2628 sshpkt_msg_ignore(struct ssh *ssh, u_int nbytes)
2629 {
2630 	u_int32_t rnd = 0;
2631 	int r;
2632 	u_int i;
2633 
2634 	if ((r = sshpkt_start(ssh, SSH2_MSG_IGNORE)) != 0 ||
2635 	    (r = sshpkt_put_u32(ssh, nbytes)) != 0)
2636 		return r;
2637 	for (i = 0; i < nbytes; i++) {
2638 		if (i % 4 == 0)
2639 			rnd = arc4random();
2640 		if ((r = sshpkt_put_u8(ssh, (u_char)rnd & 0xff)) != 0)
2641 			return r;
2642 		rnd >>= 8;
2643 	}
2644 	return 0;
2645 }
2646 
2647 /* send it */
2648 
2649 int
2650 sshpkt_send(struct ssh *ssh)
2651 {
2652 	if (ssh->state && ssh->state->mux)
2653 		return ssh_packet_send_mux(ssh);
2654 	return ssh_packet_send2(ssh);
2655 }
2656 
2657 int
2658 sshpkt_disconnect(struct ssh *ssh, const char *fmt,...)
2659 {
2660 	char buf[1024];
2661 	va_list args;
2662 	int r;
2663 
2664 	va_start(args, fmt);
2665 	vsnprintf(buf, sizeof(buf), fmt, args);
2666 	va_end(args);
2667 
2668 	if ((r = sshpkt_start(ssh, SSH2_MSG_DISCONNECT)) != 0 ||
2669 	    (r = sshpkt_put_u32(ssh, SSH2_DISCONNECT_PROTOCOL_ERROR)) != 0 ||
2670 	    (r = sshpkt_put_cstring(ssh, buf)) != 0 ||
2671 	    (r = sshpkt_put_cstring(ssh, "")) != 0 ||
2672 	    (r = sshpkt_send(ssh)) != 0)
2673 		return r;
2674 	return 0;
2675 }
2676 
2677 /* roundup current message to pad bytes */
2678 int
2679 sshpkt_add_padding(struct ssh *ssh, u_char pad)
2680 {
2681 	ssh->state->extra_pad = pad;
2682 	return 0;
2683 }
2684