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