1 /* $OpenBSD: channels.c,v 1.311 2011/06/22 22:08:42 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 functions for generic socket connection forwarding. 7 * There is also code for initiating connection forwarding for X11 connections, 8 * arbitrary tcp/ip connections, and the authentication agent connection. 9 * 10 * As far as I am concerned, the code I have written for this software 11 * can be used freely for any purpose. Any derived versions of this 12 * software must be clearly marked as such, and if the derived work is 13 * incompatible with the protocol description in the RFC file, it must be 14 * called by a name other than "ssh" or "Secure Shell". 15 * 16 * SSH2 support added by Markus Friedl. 17 * Copyright (c) 1999, 2000, 2001, 2002 Markus Friedl. All rights reserved. 18 * Copyright (c) 1999 Dug Song. All rights reserved. 19 * Copyright (c) 1999 Theo de Raadt. All rights reserved. 20 * 21 * Redistribution and use in source and binary forms, with or without 22 * modification, are permitted provided that the following conditions 23 * are met: 24 * 1. Redistributions of source code must retain the above copyright 25 * notice, this list of conditions and the following disclaimer. 26 * 2. Redistributions in binary form must reproduce the above copyright 27 * notice, this list of conditions and the following disclaimer in the 28 * documentation and/or other materials provided with the distribution. 29 * 30 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 31 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 32 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 33 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 34 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 35 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 36 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 37 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 38 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 39 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 40 */ 41 42 #include "includes.h" 43 44 #include <sys/types.h> 45 #include <sys/ioctl.h> 46 #include <sys/un.h> 47 #include <sys/socket.h> 48 #ifdef HAVE_SYS_TIME_H 49 # include <sys/time.h> 50 #endif 51 52 #include <netinet/in.h> 53 #include <arpa/inet.h> 54 55 #include <errno.h> 56 #include <fcntl.h> 57 #include <netdb.h> 58 #include <stdio.h> 59 #include <stdlib.h> 60 #include <string.h> 61 #include <termios.h> 62 #include <unistd.h> 63 #include <stdarg.h> 64 65 #include "openbsd-compat/sys-queue.h" 66 #include "xmalloc.h" 67 #include "ssh.h" 68 #include "ssh1.h" 69 #include "ssh2.h" 70 #include "packet.h" 71 #include "log.h" 72 #include "misc.h" 73 #include "buffer.h" 74 #include "channels.h" 75 #include "compat.h" 76 #include "canohost.h" 77 #include "key.h" 78 #include "authfd.h" 79 #include "pathnames.h" 80 81 /* -- channel core */ 82 83 /* 84 * Pointer to an array containing all allocated channels. The array is 85 * dynamically extended as needed. 86 */ 87 static Channel **channels = NULL; 88 89 /* 90 * Size of the channel array. All slots of the array must always be 91 * initialized (at least the type field); unused slots set to NULL 92 */ 93 static u_int channels_alloc = 0; 94 95 /* 96 * Maximum file descriptor value used in any of the channels. This is 97 * updated in channel_new. 98 */ 99 static int channel_max_fd = 0; 100 101 102 /* -- tcp forwarding */ 103 104 /* 105 * Data structure for storing which hosts are permitted for forward requests. 106 * The local sides of any remote forwards are stored in this array to prevent 107 * a corrupt remote server from accessing arbitrary TCP/IP ports on our local 108 * network (which might be behind a firewall). 109 */ 110 typedef struct { 111 char *host_to_connect; /* Connect to 'host'. */ 112 u_short port_to_connect; /* Connect to 'port'. */ 113 u_short listen_port; /* Remote side should listen port number. */ 114 } ForwardPermission; 115 116 /* List of all permitted host/port pairs to connect by the user. */ 117 static ForwardPermission *permitted_opens = NULL; 118 119 /* List of all permitted host/port pairs to connect by the admin. */ 120 static ForwardPermission *permitted_adm_opens = NULL; 121 122 /* Number of permitted host/port pairs in the array permitted by the user. */ 123 static int num_permitted_opens = 0; 124 125 /* Number of permitted host/port pair in the array permitted by the admin. */ 126 static int num_adm_permitted_opens = 0; 127 128 /* 129 * If this is true, all opens are permitted. This is the case on the server 130 * on which we have to trust the client anyway, and the user could do 131 * anything after logging in anyway. 132 */ 133 static int all_opens_permitted = 0; 134 135 136 /* -- X11 forwarding */ 137 138 /* Maximum number of fake X11 displays to try. */ 139 #define MAX_DISPLAYS 1000 140 141 /* Saved X11 local (client) display. */ 142 static char *x11_saved_display = NULL; 143 144 /* Saved X11 authentication protocol name. */ 145 static char *x11_saved_proto = NULL; 146 147 /* Saved X11 authentication data. This is the real data. */ 148 static char *x11_saved_data = NULL; 149 static u_int x11_saved_data_len = 0; 150 151 /* 152 * Fake X11 authentication data. This is what the server will be sending us; 153 * we should replace any occurrences of this by the real data. 154 */ 155 static u_char *x11_fake_data = NULL; 156 static u_int x11_fake_data_len; 157 158 159 /* -- agent forwarding */ 160 161 #define NUM_SOCKS 10 162 163 /* AF_UNSPEC or AF_INET or AF_INET6 */ 164 static int IPv4or6 = AF_UNSPEC; 165 166 /* helper */ 167 static void port_open_helper(Channel *c, char *rtype); 168 169 /* non-blocking connect helpers */ 170 static int connect_next(struct channel_connect *); 171 static void channel_connect_ctx_free(struct channel_connect *); 172 173 174 static int hpn_disabled = 0; 175 static int hpn_buffer_size = 2 * 1024 * 1024; 176 177 /* -- channel core */ 178 179 180 181 Channel * 182 channel_by_id(int id) 183 { 184 Channel *c; 185 186 if (id < 0 || (u_int)id >= channels_alloc) { 187 logit("channel_by_id: %d: bad id", id); 188 return NULL; 189 } 190 c = channels[id]; 191 if (c == NULL) { 192 logit("channel_by_id: %d: bad id: channel free", id); 193 return NULL; 194 } 195 return c; 196 } 197 198 /* 199 * Returns the channel if it is allowed to receive protocol messages. 200 * Private channels, like listening sockets, may not receive messages. 201 */ 202 Channel * 203 channel_lookup(int id) 204 { 205 Channel *c; 206 207 if ((c = channel_by_id(id)) == NULL) 208 return (NULL); 209 210 switch (c->type) { 211 case SSH_CHANNEL_X11_OPEN: 212 case SSH_CHANNEL_LARVAL: 213 case SSH_CHANNEL_CONNECTING: 214 case SSH_CHANNEL_DYNAMIC: 215 case SSH_CHANNEL_OPENING: 216 case SSH_CHANNEL_OPEN: 217 case SSH_CHANNEL_INPUT_DRAINING: 218 case SSH_CHANNEL_OUTPUT_DRAINING: 219 return (c); 220 } 221 logit("Non-public channel %d, type %d.", id, c->type); 222 return (NULL); 223 } 224 225 /* 226 * Register filedescriptors for a channel, used when allocating a channel or 227 * when the channel consumer/producer is ready, e.g. shell exec'd 228 */ 229 static void 230 channel_register_fds(Channel *c, int rfd, int wfd, int efd, 231 int extusage, int nonblock, int is_tty) 232 { 233 /* Update the maximum file descriptor value. */ 234 channel_max_fd = MAX(channel_max_fd, rfd); 235 channel_max_fd = MAX(channel_max_fd, wfd); 236 channel_max_fd = MAX(channel_max_fd, efd); 237 238 if (rfd != -1) 239 fcntl(rfd, F_SETFD, FD_CLOEXEC); 240 if (wfd != -1 && wfd != rfd) 241 fcntl(wfd, F_SETFD, FD_CLOEXEC); 242 if (efd != -1 && efd != rfd && efd != wfd) 243 fcntl(efd, F_SETFD, FD_CLOEXEC); 244 245 c->rfd = rfd; 246 c->wfd = wfd; 247 c->sock = (rfd == wfd) ? rfd : -1; 248 c->efd = efd; 249 c->extended_usage = extusage; 250 251 if ((c->isatty = is_tty) != 0) 252 debug2("channel %d: rfd %d isatty", c->self, c->rfd); 253 c->wfd_isatty = is_tty || isatty(c->wfd); 254 255 /* enable nonblocking mode */ 256 if (nonblock) { 257 if (rfd != -1) 258 set_nonblock(rfd); 259 if (wfd != -1) 260 set_nonblock(wfd); 261 if (efd != -1) 262 set_nonblock(efd); 263 } 264 } 265 266 /* 267 * Allocate a new channel object and set its type and socket. This will cause 268 * remote_name to be freed. 269 */ 270 Channel * 271 channel_new(char *ctype, int type, int rfd, int wfd, int efd, 272 u_int window, u_int maxpack, int extusage, char *remote_name, int nonblock) 273 { 274 int found; 275 u_int i; 276 Channel *c; 277 278 /* Do initial allocation if this is the first call. */ 279 if (channels_alloc == 0) { 280 channels_alloc = 10; 281 channels = xcalloc(channels_alloc, sizeof(Channel *)); 282 for (i = 0; i < channels_alloc; i++) 283 channels[i] = NULL; 284 } 285 /* Try to find a free slot where to put the new channel. */ 286 for (found = -1, i = 0; i < channels_alloc; i++) 287 if (channels[i] == NULL) { 288 /* Found a free slot. */ 289 found = (int)i; 290 break; 291 } 292 if (found < 0) { 293 /* There are no free slots. Take last+1 slot and expand the array. */ 294 found = channels_alloc; 295 if (channels_alloc > 10000) 296 fatal("channel_new: internal error: channels_alloc %d " 297 "too big.", channels_alloc); 298 channels = xrealloc(channels, channels_alloc + 10, 299 sizeof(Channel *)); 300 channels_alloc += 10; 301 debug2("channel: expanding %d", channels_alloc); 302 for (i = found; i < channels_alloc; i++) 303 channels[i] = NULL; 304 } 305 /* Initialize and return new channel. */ 306 c = channels[found] = xcalloc(1, sizeof(Channel)); 307 buffer_init(&c->input); 308 buffer_init(&c->output); 309 buffer_init(&c->extended); 310 c->path = NULL; 311 c->ostate = CHAN_OUTPUT_OPEN; 312 c->istate = CHAN_INPUT_OPEN; 313 c->flags = 0; 314 channel_register_fds(c, rfd, wfd, efd, extusage, nonblock, 0); 315 c->self = found; 316 c->type = type; 317 c->ctype = ctype; 318 c->local_window = window; 319 c->local_window_max = window; 320 c->local_consumed = 0; 321 c->local_maxpacket = maxpack; 322 c->dynamic_window = 0; 323 c->remote_id = -1; 324 c->remote_name = xstrdup(remote_name); 325 c->remote_window = 0; 326 c->remote_maxpacket = 0; 327 c->force_drain = 0; 328 c->single_connection = 0; 329 c->detach_user = NULL; 330 c->detach_close = 0; 331 c->open_confirm = NULL; 332 c->open_confirm_ctx = NULL; 333 c->input_filter = NULL; 334 c->output_filter = NULL; 335 c->filter_ctx = NULL; 336 c->filter_cleanup = NULL; 337 c->ctl_chan = -1; 338 c->mux_rcb = NULL; 339 c->mux_ctx = NULL; 340 c->mux_pause = 0; 341 c->delayed = 1; /* prevent call to channel_post handler */ 342 TAILQ_INIT(&c->status_confirms); 343 debug("channel %d: new [%s]", found, remote_name); 344 return c; 345 } 346 347 static int 348 channel_find_maxfd(void) 349 { 350 u_int i; 351 int max = 0; 352 Channel *c; 353 354 for (i = 0; i < channels_alloc; i++) { 355 c = channels[i]; 356 if (c != NULL) { 357 max = MAX(max, c->rfd); 358 max = MAX(max, c->wfd); 359 max = MAX(max, c->efd); 360 } 361 } 362 return max; 363 } 364 365 int 366 channel_close_fd(int *fdp) 367 { 368 int ret = 0, fd = *fdp; 369 370 if (fd != -1) { 371 ret = close(fd); 372 *fdp = -1; 373 if (fd == channel_max_fd) 374 channel_max_fd = channel_find_maxfd(); 375 } 376 return ret; 377 } 378 379 /* Close all channel fd/socket. */ 380 static void 381 channel_close_fds(Channel *c) 382 { 383 channel_close_fd(&c->sock); 384 channel_close_fd(&c->rfd); 385 channel_close_fd(&c->wfd); 386 channel_close_fd(&c->efd); 387 } 388 389 /* Free the channel and close its fd/socket. */ 390 void 391 channel_free(Channel *c) 392 { 393 char *s; 394 u_int i, n; 395 struct channel_confirm *cc; 396 397 for (n = 0, i = 0; i < channels_alloc; i++) 398 if (channels[i]) 399 n++; 400 debug("channel %d: free: %s, nchannels %u", c->self, 401 c->remote_name ? c->remote_name : "???", n); 402 403 s = channel_open_message(); 404 debug3("channel %d: status: %s", c->self, s); 405 xfree(s); 406 407 if (c->sock != -1) 408 shutdown(c->sock, SHUT_RDWR); 409 channel_close_fds(c); 410 buffer_free(&c->input); 411 buffer_free(&c->output); 412 buffer_free(&c->extended); 413 if (c->remote_name) { 414 xfree(c->remote_name); 415 c->remote_name = NULL; 416 } 417 if (c->path) { 418 xfree(c->path); 419 c->path = NULL; 420 } 421 while ((cc = TAILQ_FIRST(&c->status_confirms)) != NULL) { 422 if (cc->abandon_cb != NULL) 423 cc->abandon_cb(c, cc->ctx); 424 TAILQ_REMOVE(&c->status_confirms, cc, entry); 425 bzero(cc, sizeof(*cc)); 426 xfree(cc); 427 } 428 if (c->filter_cleanup != NULL && c->filter_ctx != NULL) 429 c->filter_cleanup(c->self, c->filter_ctx); 430 channels[c->self] = NULL; 431 xfree(c); 432 } 433 434 void 435 channel_free_all(void) 436 { 437 u_int i; 438 439 for (i = 0; i < channels_alloc; i++) 440 if (channels[i] != NULL) 441 channel_free(channels[i]); 442 } 443 444 /* 445 * Closes the sockets/fds of all channels. This is used to close extra file 446 * descriptors after a fork. 447 */ 448 void 449 channel_close_all(void) 450 { 451 u_int i; 452 453 for (i = 0; i < channels_alloc; i++) 454 if (channels[i] != NULL) 455 channel_close_fds(channels[i]); 456 } 457 458 /* 459 * Stop listening to channels. 460 */ 461 void 462 channel_stop_listening(void) 463 { 464 u_int i; 465 Channel *c; 466 467 for (i = 0; i < channels_alloc; i++) { 468 c = channels[i]; 469 if (c != NULL) { 470 switch (c->type) { 471 case SSH_CHANNEL_AUTH_SOCKET: 472 case SSH_CHANNEL_PORT_LISTENER: 473 case SSH_CHANNEL_RPORT_LISTENER: 474 case SSH_CHANNEL_X11_LISTENER: 475 channel_close_fd(&c->sock); 476 channel_free(c); 477 break; 478 } 479 } 480 } 481 } 482 483 /* 484 * Returns true if no channel has too much buffered data, and false if one or 485 * more channel is overfull. 486 */ 487 int 488 channel_not_very_much_buffered_data(void) 489 { 490 u_int i; 491 Channel *c; 492 493 for (i = 0; i < channels_alloc; i++) { 494 c = channels[i]; 495 if (c != NULL && c->type == SSH_CHANNEL_OPEN) { 496 #if 0 497 if (!compat20 && 498 buffer_len(&c->input) > packet_get_maxsize()) { 499 debug2("channel %d: big input buffer %d", 500 c->self, buffer_len(&c->input)); 501 return 0; 502 } 503 #endif 504 if (buffer_len(&c->output) > packet_get_maxsize()) { 505 debug2("channel %d: big output buffer %u > %u", 506 c->self, buffer_len(&c->output), 507 packet_get_maxsize()); 508 return 0; 509 } 510 } 511 } 512 return 1; 513 } 514 515 /* Returns true if any channel is still open. */ 516 int 517 channel_still_open(void) 518 { 519 u_int i; 520 Channel *c; 521 522 for (i = 0; i < channels_alloc; i++) { 523 c = channels[i]; 524 if (c == NULL) 525 continue; 526 switch (c->type) { 527 case SSH_CHANNEL_X11_LISTENER: 528 case SSH_CHANNEL_PORT_LISTENER: 529 case SSH_CHANNEL_RPORT_LISTENER: 530 case SSH_CHANNEL_MUX_LISTENER: 531 case SSH_CHANNEL_CLOSED: 532 case SSH_CHANNEL_AUTH_SOCKET: 533 case SSH_CHANNEL_DYNAMIC: 534 case SSH_CHANNEL_CONNECTING: 535 case SSH_CHANNEL_ZOMBIE: 536 continue; 537 case SSH_CHANNEL_LARVAL: 538 if (!compat20) 539 fatal("cannot happen: SSH_CHANNEL_LARVAL"); 540 continue; 541 case SSH_CHANNEL_OPENING: 542 case SSH_CHANNEL_OPEN: 543 case SSH_CHANNEL_X11_OPEN: 544 case SSH_CHANNEL_MUX_CLIENT: 545 return 1; 546 case SSH_CHANNEL_INPUT_DRAINING: 547 case SSH_CHANNEL_OUTPUT_DRAINING: 548 if (!compat13) 549 fatal("cannot happen: OUT_DRAIN"); 550 return 1; 551 default: 552 fatal("channel_still_open: bad channel type %d", c->type); 553 /* NOTREACHED */ 554 } 555 } 556 return 0; 557 } 558 559 /* Returns the id of an open channel suitable for keepaliving */ 560 int 561 channel_find_open(void) 562 { 563 u_int i; 564 Channel *c; 565 566 for (i = 0; i < channels_alloc; i++) { 567 c = channels[i]; 568 if (c == NULL || c->remote_id < 0) 569 continue; 570 switch (c->type) { 571 case SSH_CHANNEL_CLOSED: 572 case SSH_CHANNEL_DYNAMIC: 573 case SSH_CHANNEL_X11_LISTENER: 574 case SSH_CHANNEL_PORT_LISTENER: 575 case SSH_CHANNEL_RPORT_LISTENER: 576 case SSH_CHANNEL_MUX_LISTENER: 577 case SSH_CHANNEL_MUX_CLIENT: 578 case SSH_CHANNEL_OPENING: 579 case SSH_CHANNEL_CONNECTING: 580 case SSH_CHANNEL_ZOMBIE: 581 continue; 582 case SSH_CHANNEL_LARVAL: 583 case SSH_CHANNEL_AUTH_SOCKET: 584 case SSH_CHANNEL_OPEN: 585 case SSH_CHANNEL_X11_OPEN: 586 return i; 587 case SSH_CHANNEL_INPUT_DRAINING: 588 case SSH_CHANNEL_OUTPUT_DRAINING: 589 if (!compat13) 590 fatal("cannot happen: OUT_DRAIN"); 591 return i; 592 default: 593 fatal("channel_find_open: bad channel type %d", c->type); 594 /* NOTREACHED */ 595 } 596 } 597 return -1; 598 } 599 600 601 /* 602 * Returns a message describing the currently open forwarded connections, 603 * suitable for sending to the client. The message contains crlf pairs for 604 * newlines. 605 */ 606 char * 607 channel_open_message(void) 608 { 609 Buffer buffer; 610 Channel *c; 611 char buf[1024], *cp; 612 u_int i; 613 614 buffer_init(&buffer); 615 snprintf(buf, sizeof buf, "The following connections are open:\r\n"); 616 buffer_append(&buffer, buf, strlen(buf)); 617 for (i = 0; i < channels_alloc; i++) { 618 c = channels[i]; 619 if (c == NULL) 620 continue; 621 switch (c->type) { 622 case SSH_CHANNEL_X11_LISTENER: 623 case SSH_CHANNEL_PORT_LISTENER: 624 case SSH_CHANNEL_RPORT_LISTENER: 625 case SSH_CHANNEL_CLOSED: 626 case SSH_CHANNEL_AUTH_SOCKET: 627 case SSH_CHANNEL_ZOMBIE: 628 case SSH_CHANNEL_MUX_CLIENT: 629 case SSH_CHANNEL_MUX_LISTENER: 630 continue; 631 case SSH_CHANNEL_LARVAL: 632 case SSH_CHANNEL_OPENING: 633 case SSH_CHANNEL_CONNECTING: 634 case SSH_CHANNEL_DYNAMIC: 635 case SSH_CHANNEL_OPEN: 636 case SSH_CHANNEL_X11_OPEN: 637 case SSH_CHANNEL_INPUT_DRAINING: 638 case SSH_CHANNEL_OUTPUT_DRAINING: 639 snprintf(buf, sizeof buf, 640 " #%d %.300s (t%d r%d i%d/%d o%d/%d fd %d/%d cc %d)\r\n", 641 c->self, c->remote_name, 642 c->type, c->remote_id, 643 c->istate, buffer_len(&c->input), 644 c->ostate, buffer_len(&c->output), 645 c->rfd, c->wfd, c->ctl_chan); 646 buffer_append(&buffer, buf, strlen(buf)); 647 continue; 648 default: 649 fatal("channel_open_message: bad channel type %d", c->type); 650 /* NOTREACHED */ 651 } 652 } 653 buffer_append(&buffer, "\0", 1); 654 cp = xstrdup(buffer_ptr(&buffer)); 655 buffer_free(&buffer); 656 return cp; 657 } 658 659 void 660 channel_send_open(int id) 661 { 662 Channel *c = channel_lookup(id); 663 664 if (c == NULL) { 665 logit("channel_send_open: %d: bad id", id); 666 return; 667 } 668 debug2("channel %d: send open", id); 669 packet_start(SSH2_MSG_CHANNEL_OPEN); 670 packet_put_cstring(c->ctype); 671 packet_put_int(c->self); 672 packet_put_int(c->local_window); 673 packet_put_int(c->local_maxpacket); 674 packet_send(); 675 } 676 677 void 678 channel_request_start(int id, char *service, int wantconfirm) 679 { 680 Channel *c = channel_lookup(id); 681 682 if (c == NULL) { 683 logit("channel_request_start: %d: unknown channel id", id); 684 return; 685 } 686 debug2("channel %d: request %s confirm %d", id, service, wantconfirm); 687 packet_start(SSH2_MSG_CHANNEL_REQUEST); 688 packet_put_int(c->remote_id); 689 packet_put_cstring(service); 690 packet_put_char(wantconfirm); 691 } 692 693 void 694 channel_register_status_confirm(int id, channel_confirm_cb *cb, 695 channel_confirm_abandon_cb *abandon_cb, void *ctx) 696 { 697 struct channel_confirm *cc; 698 Channel *c; 699 700 if ((c = channel_lookup(id)) == NULL) 701 fatal("channel_register_expect: %d: bad id", id); 702 703 cc = xmalloc(sizeof(*cc)); 704 cc->cb = cb; 705 cc->abandon_cb = abandon_cb; 706 cc->ctx = ctx; 707 TAILQ_INSERT_TAIL(&c->status_confirms, cc, entry); 708 } 709 710 void 711 channel_register_open_confirm(int id, channel_open_fn *fn, void *ctx) 712 { 713 Channel *c = channel_lookup(id); 714 715 if (c == NULL) { 716 logit("channel_register_open_confirm: %d: bad id", id); 717 return; 718 } 719 c->open_confirm = fn; 720 c->open_confirm_ctx = ctx; 721 } 722 723 void 724 channel_register_cleanup(int id, channel_callback_fn *fn, int do_close) 725 { 726 Channel *c = channel_by_id(id); 727 728 if (c == NULL) { 729 logit("channel_register_cleanup: %d: bad id", id); 730 return; 731 } 732 c->detach_user = fn; 733 c->detach_close = do_close; 734 } 735 736 void 737 channel_cancel_cleanup(int id) 738 { 739 Channel *c = channel_by_id(id); 740 741 if (c == NULL) { 742 logit("channel_cancel_cleanup: %d: bad id", id); 743 return; 744 } 745 c->detach_user = NULL; 746 c->detach_close = 0; 747 } 748 749 void 750 channel_register_filter(int id, channel_infilter_fn *ifn, 751 channel_outfilter_fn *ofn, channel_filter_cleanup_fn *cfn, void *ctx) 752 { 753 Channel *c = channel_lookup(id); 754 755 if (c == NULL) { 756 logit("channel_register_filter: %d: bad id", id); 757 return; 758 } 759 c->input_filter = ifn; 760 c->output_filter = ofn; 761 c->filter_ctx = ctx; 762 c->filter_cleanup = cfn; 763 } 764 765 void 766 channel_set_fds(int id, int rfd, int wfd, int efd, 767 int extusage, int nonblock, int is_tty, u_int window_max) 768 { 769 Channel *c = channel_lookup(id); 770 771 if (c == NULL || c->type != SSH_CHANNEL_LARVAL) 772 fatal("channel_activate for non-larval channel %d.", id); 773 channel_register_fds(c, rfd, wfd, efd, extusage, nonblock, is_tty); 774 c->type = SSH_CHANNEL_OPEN; 775 c->local_window = c->local_window_max = window_max; 776 packet_start(SSH2_MSG_CHANNEL_WINDOW_ADJUST); 777 packet_put_int(c->remote_id); 778 packet_put_int(c->local_window); 779 packet_send(); 780 } 781 782 /* 783 * 'channel_pre*' are called just before select() to add any bits relevant to 784 * channels in the select bitmasks. 785 */ 786 /* 787 * 'channel_post*': perform any appropriate operations for channels which 788 * have events pending. 789 */ 790 typedef void chan_fn(Channel *c, fd_set *readset, fd_set *writeset); 791 chan_fn *channel_pre[SSH_CHANNEL_MAX_TYPE]; 792 chan_fn *channel_post[SSH_CHANNEL_MAX_TYPE]; 793 794 /* ARGSUSED */ 795 static void 796 channel_pre_listener(Channel *c, fd_set *readset, fd_set *writeset) 797 { 798 FD_SET(c->sock, readset); 799 } 800 801 /* ARGSUSED */ 802 static void 803 channel_pre_connecting(Channel *c, fd_set *readset, fd_set *writeset) 804 { 805 debug3("channel %d: waiting for connection", c->self); 806 FD_SET(c->sock, writeset); 807 } 808 809 static void 810 channel_pre_open_13(Channel *c, fd_set *readset, fd_set *writeset) 811 { 812 if (buffer_len(&c->input) < packet_get_maxsize()) 813 FD_SET(c->sock, readset); 814 if (buffer_len(&c->output) > 0) 815 FD_SET(c->sock, writeset); 816 } 817 818 int channel_tcpwinsz () { 819 u_int32_t tcpwinsz = 0; 820 socklen_t optsz = sizeof(tcpwinsz); 821 int ret = -1; 822 823 /* if we aren't on a socket return 128KB*/ 824 if(!packet_connection_is_on_socket()) 825 return(128*1024); 826 ret = getsockopt(packet_get_connection_in(), 827 SOL_SOCKET, SO_RCVBUF, &tcpwinsz, &optsz); 828 /* return no more than 64MB */ 829 if ((ret == 0) && tcpwinsz > BUFFER_MAX_LEN_HPN) 830 tcpwinsz = BUFFER_MAX_LEN_HPN; 831 debug2("tcpwinsz: %d for connection: %d", tcpwinsz, 832 packet_get_connection_in()); 833 return(tcpwinsz); 834 } 835 836 static void 837 channel_pre_open(Channel *c, fd_set *readset, fd_set *writeset) 838 { 839 u_int limit = compat20 ? c->remote_window : packet_get_maxsize(); 840 841 /* check buffer limits */ 842 if ((!c->tcpwinsz) || (c->dynamic_window > 0)) 843 c->tcpwinsz = channel_tcpwinsz(); 844 845 limit = MIN(limit, 2 * c->tcpwinsz); 846 847 if (c->istate == CHAN_INPUT_OPEN && 848 limit > 0 && 849 buffer_len(&c->input) < limit && 850 buffer_check_alloc(&c->input, CHAN_RBUF)) 851 FD_SET(c->rfd, readset); 852 if (c->ostate == CHAN_OUTPUT_OPEN || 853 c->ostate == CHAN_OUTPUT_WAIT_DRAIN) { 854 if (buffer_len(&c->output) > 0) { 855 FD_SET(c->wfd, writeset); 856 } else if (c->ostate == CHAN_OUTPUT_WAIT_DRAIN) { 857 if (CHANNEL_EFD_OUTPUT_ACTIVE(c)) 858 debug2("channel %d: obuf_empty delayed efd %d/(%d)", 859 c->self, c->efd, buffer_len(&c->extended)); 860 else 861 chan_obuf_empty(c); 862 } 863 } 864 /** XXX check close conditions, too */ 865 if (compat20 && c->efd != -1 && 866 !(c->istate == CHAN_INPUT_CLOSED && c->ostate == CHAN_OUTPUT_CLOSED)) { 867 if (c->extended_usage == CHAN_EXTENDED_WRITE && 868 buffer_len(&c->extended) > 0) 869 FD_SET(c->efd, writeset); 870 else if (c->efd != -1 && !(c->flags & CHAN_EOF_SENT) && 871 (c->extended_usage == CHAN_EXTENDED_READ || 872 c->extended_usage == CHAN_EXTENDED_IGNORE) && 873 buffer_len(&c->extended) < c->remote_window) 874 FD_SET(c->efd, readset); 875 } 876 /* XXX: What about efd? races? */ 877 } 878 879 /* ARGSUSED */ 880 static void 881 channel_pre_input_draining(Channel *c, fd_set *readset, fd_set *writeset) 882 { 883 if (buffer_len(&c->input) == 0) { 884 packet_start(SSH_MSG_CHANNEL_CLOSE); 885 packet_put_int(c->remote_id); 886 packet_send(); 887 c->type = SSH_CHANNEL_CLOSED; 888 debug2("channel %d: closing after input drain.", c->self); 889 } 890 } 891 892 /* ARGSUSED */ 893 static void 894 channel_pre_output_draining(Channel *c, fd_set *readset, fd_set *writeset) 895 { 896 if (buffer_len(&c->output) == 0) 897 chan_mark_dead(c); 898 else 899 FD_SET(c->sock, writeset); 900 } 901 902 /* 903 * This is a special state for X11 authentication spoofing. An opened X11 904 * connection (when authentication spoofing is being done) remains in this 905 * state until the first packet has been completely read. The authentication 906 * data in that packet is then substituted by the real data if it matches the 907 * fake data, and the channel is put into normal mode. 908 * XXX All this happens at the client side. 909 * Returns: 0 = need more data, -1 = wrong cookie, 1 = ok 910 */ 911 static int 912 x11_open_helper(Buffer *b) 913 { 914 u_char *ucp; 915 u_int proto_len, data_len; 916 917 /* Check if the fixed size part of the packet is in buffer. */ 918 if (buffer_len(b) < 12) 919 return 0; 920 921 /* Parse the lengths of variable-length fields. */ 922 ucp = buffer_ptr(b); 923 if (ucp[0] == 0x42) { /* Byte order MSB first. */ 924 proto_len = 256 * ucp[6] + ucp[7]; 925 data_len = 256 * ucp[8] + ucp[9]; 926 } else if (ucp[0] == 0x6c) { /* Byte order LSB first. */ 927 proto_len = ucp[6] + 256 * ucp[7]; 928 data_len = ucp[8] + 256 * ucp[9]; 929 } else { 930 debug2("Initial X11 packet contains bad byte order byte: 0x%x", 931 ucp[0]); 932 return -1; 933 } 934 935 /* Check if the whole packet is in buffer. */ 936 if (buffer_len(b) < 937 12 + ((proto_len + 3) & ~3) + ((data_len + 3) & ~3)) 938 return 0; 939 940 /* Check if authentication protocol matches. */ 941 if (proto_len != strlen(x11_saved_proto) || 942 memcmp(ucp + 12, x11_saved_proto, proto_len) != 0) { 943 debug2("X11 connection uses different authentication protocol."); 944 return -1; 945 } 946 /* Check if authentication data matches our fake data. */ 947 if (data_len != x11_fake_data_len || 948 timingsafe_bcmp(ucp + 12 + ((proto_len + 3) & ~3), 949 x11_fake_data, x11_fake_data_len) != 0) { 950 debug2("X11 auth data does not match fake data."); 951 return -1; 952 } 953 /* Check fake data length */ 954 if (x11_fake_data_len != x11_saved_data_len) { 955 error("X11 fake_data_len %d != saved_data_len %d", 956 x11_fake_data_len, x11_saved_data_len); 957 return -1; 958 } 959 /* 960 * Received authentication protocol and data match 961 * our fake data. Substitute the fake data with real 962 * data. 963 */ 964 memcpy(ucp + 12 + ((proto_len + 3) & ~3), 965 x11_saved_data, x11_saved_data_len); 966 return 1; 967 } 968 969 static void 970 channel_pre_x11_open_13(Channel *c, fd_set *readset, fd_set *writeset) 971 { 972 int ret = x11_open_helper(&c->output); 973 974 if (ret == 1) { 975 /* Start normal processing for the channel. */ 976 c->type = SSH_CHANNEL_OPEN; 977 channel_pre_open_13(c, readset, writeset); 978 } else if (ret == -1) { 979 /* 980 * We have received an X11 connection that has bad 981 * authentication information. 982 */ 983 logit("X11 connection rejected because of wrong authentication."); 984 buffer_clear(&c->input); 985 buffer_clear(&c->output); 986 channel_close_fd(&c->sock); 987 c->sock = -1; 988 c->type = SSH_CHANNEL_CLOSED; 989 packet_start(SSH_MSG_CHANNEL_CLOSE); 990 packet_put_int(c->remote_id); 991 packet_send(); 992 } 993 } 994 995 static void 996 channel_pre_x11_open(Channel *c, fd_set *readset, fd_set *writeset) 997 { 998 int ret = x11_open_helper(&c->output); 999 1000 /* c->force_drain = 1; */ 1001 1002 if (ret == 1) { 1003 c->type = SSH_CHANNEL_OPEN; 1004 channel_pre_open(c, readset, writeset); 1005 } else if (ret == -1) { 1006 logit("X11 connection rejected because of wrong authentication."); 1007 debug2("X11 rejected %d i%d/o%d", c->self, c->istate, c->ostate); 1008 chan_read_failed(c); 1009 buffer_clear(&c->input); 1010 chan_ibuf_empty(c); 1011 buffer_clear(&c->output); 1012 /* for proto v1, the peer will send an IEOF */ 1013 if (compat20) 1014 chan_write_failed(c); 1015 else 1016 c->type = SSH_CHANNEL_OPEN; 1017 debug2("X11 closed %d i%d/o%d", c->self, c->istate, c->ostate); 1018 } 1019 } 1020 1021 static void 1022 channel_pre_mux_client(Channel *c, fd_set *readset, fd_set *writeset) 1023 { 1024 if (c->istate == CHAN_INPUT_OPEN && !c->mux_pause && 1025 buffer_check_alloc(&c->input, CHAN_RBUF)) 1026 FD_SET(c->rfd, readset); 1027 if (c->istate == CHAN_INPUT_WAIT_DRAIN) { 1028 /* clear buffer immediately (discard any partial packet) */ 1029 buffer_clear(&c->input); 1030 chan_ibuf_empty(c); 1031 /* Start output drain. XXX just kill chan? */ 1032 chan_rcvd_oclose(c); 1033 } 1034 if (c->ostate == CHAN_OUTPUT_OPEN || 1035 c->ostate == CHAN_OUTPUT_WAIT_DRAIN) { 1036 if (buffer_len(&c->output) > 0) 1037 FD_SET(c->wfd, writeset); 1038 else if (c->ostate == CHAN_OUTPUT_WAIT_DRAIN) 1039 chan_obuf_empty(c); 1040 } 1041 } 1042 1043 /* try to decode a socks4 header */ 1044 /* ARGSUSED */ 1045 static int 1046 channel_decode_socks4(Channel *c, fd_set *readset, fd_set *writeset) 1047 { 1048 char *p, *host; 1049 u_int len, have, i, found, need; 1050 char username[256]; 1051 struct { 1052 u_int8_t version; 1053 u_int8_t command; 1054 u_int16_t dest_port; 1055 struct in_addr dest_addr; 1056 } s4_req, s4_rsp; 1057 1058 debug2("channel %d: decode socks4", c->self); 1059 1060 have = buffer_len(&c->input); 1061 len = sizeof(s4_req); 1062 if (have < len) 1063 return 0; 1064 p = buffer_ptr(&c->input); 1065 1066 need = 1; 1067 /* SOCKS4A uses an invalid IP address 0.0.0.x */ 1068 if (p[4] == 0 && p[5] == 0 && p[6] == 0 && p[7] != 0) { 1069 debug2("channel %d: socks4a request", c->self); 1070 /* ... and needs an extra string (the hostname) */ 1071 need = 2; 1072 } 1073 /* Check for terminating NUL on the string(s) */ 1074 for (found = 0, i = len; i < have; i++) { 1075 if (p[i] == '\0') { 1076 found++; 1077 if (found == need) 1078 break; 1079 } 1080 if (i > 1024) { 1081 /* the peer is probably sending garbage */ 1082 debug("channel %d: decode socks4: too long", 1083 c->self); 1084 return -1; 1085 } 1086 } 1087 if (found < need) 1088 return 0; 1089 buffer_get(&c->input, (char *)&s4_req.version, 1); 1090 buffer_get(&c->input, (char *)&s4_req.command, 1); 1091 buffer_get(&c->input, (char *)&s4_req.dest_port, 2); 1092 buffer_get(&c->input, (char *)&s4_req.dest_addr, 4); 1093 have = buffer_len(&c->input); 1094 p = buffer_ptr(&c->input); 1095 len = strlen(p); 1096 debug2("channel %d: decode socks4: user %s/%d", c->self, p, len); 1097 len++; /* trailing '\0' */ 1098 if (len > have) 1099 fatal("channel %d: decode socks4: len %d > have %d", 1100 c->self, len, have); 1101 strlcpy(username, p, sizeof(username)); 1102 buffer_consume(&c->input, len); 1103 1104 if (c->path != NULL) { 1105 xfree(c->path); 1106 c->path = NULL; 1107 } 1108 if (need == 1) { /* SOCKS4: one string */ 1109 host = inet_ntoa(s4_req.dest_addr); 1110 c->path = xstrdup(host); 1111 } else { /* SOCKS4A: two strings */ 1112 have = buffer_len(&c->input); 1113 p = buffer_ptr(&c->input); 1114 len = strlen(p); 1115 debug2("channel %d: decode socks4a: host %s/%d", 1116 c->self, p, len); 1117 len++; /* trailing '\0' */ 1118 if (len > have) 1119 fatal("channel %d: decode socks4a: len %d > have %d", 1120 c->self, len, have); 1121 if (len > NI_MAXHOST) { 1122 error("channel %d: hostname \"%.100s\" too long", 1123 c->self, p); 1124 return -1; 1125 } 1126 c->path = xstrdup(p); 1127 buffer_consume(&c->input, len); 1128 } 1129 c->host_port = ntohs(s4_req.dest_port); 1130 1131 debug2("channel %d: dynamic request: socks4 host %s port %u command %u", 1132 c->self, c->path, c->host_port, s4_req.command); 1133 1134 if (s4_req.command != 1) { 1135 debug("channel %d: cannot handle: %s cn %d", 1136 c->self, need == 1 ? "SOCKS4" : "SOCKS4A", s4_req.command); 1137 return -1; 1138 } 1139 s4_rsp.version = 0; /* vn: 0 for reply */ 1140 s4_rsp.command = 90; /* cd: req granted */ 1141 s4_rsp.dest_port = 0; /* ignored */ 1142 s4_rsp.dest_addr.s_addr = INADDR_ANY; /* ignored */ 1143 buffer_append(&c->output, &s4_rsp, sizeof(s4_rsp)); 1144 return 1; 1145 } 1146 1147 /* try to decode a socks5 header */ 1148 #define SSH_SOCKS5_AUTHDONE 0x1000 1149 #define SSH_SOCKS5_NOAUTH 0x00 1150 #define SSH_SOCKS5_IPV4 0x01 1151 #define SSH_SOCKS5_DOMAIN 0x03 1152 #define SSH_SOCKS5_IPV6 0x04 1153 #define SSH_SOCKS5_CONNECT 0x01 1154 #define SSH_SOCKS5_SUCCESS 0x00 1155 1156 /* ARGSUSED */ 1157 static int 1158 channel_decode_socks5(Channel *c, fd_set *readset, fd_set *writeset) 1159 { 1160 struct { 1161 u_int8_t version; 1162 u_int8_t command; 1163 u_int8_t reserved; 1164 u_int8_t atyp; 1165 } s5_req, s5_rsp; 1166 u_int16_t dest_port; 1167 u_char *p, dest_addr[255+1], ntop[INET6_ADDRSTRLEN]; 1168 u_int have, need, i, found, nmethods, addrlen, af; 1169 1170 debug2("channel %d: decode socks5", c->self); 1171 p = buffer_ptr(&c->input); 1172 if (p[0] != 0x05) 1173 return -1; 1174 have = buffer_len(&c->input); 1175 if (!(c->flags & SSH_SOCKS5_AUTHDONE)) { 1176 /* format: ver | nmethods | methods */ 1177 if (have < 2) 1178 return 0; 1179 nmethods = p[1]; 1180 if (have < nmethods + 2) 1181 return 0; 1182 /* look for method: "NO AUTHENTICATION REQUIRED" */ 1183 for (found = 0, i = 2; i < nmethods + 2; i++) { 1184 if (p[i] == SSH_SOCKS5_NOAUTH) { 1185 found = 1; 1186 break; 1187 } 1188 } 1189 if (!found) { 1190 debug("channel %d: method SSH_SOCKS5_NOAUTH not found", 1191 c->self); 1192 return -1; 1193 } 1194 buffer_consume(&c->input, nmethods + 2); 1195 buffer_put_char(&c->output, 0x05); /* version */ 1196 buffer_put_char(&c->output, SSH_SOCKS5_NOAUTH); /* method */ 1197 FD_SET(c->sock, writeset); 1198 c->flags |= SSH_SOCKS5_AUTHDONE; 1199 debug2("channel %d: socks5 auth done", c->self); 1200 return 0; /* need more */ 1201 } 1202 debug2("channel %d: socks5 post auth", c->self); 1203 if (have < sizeof(s5_req)+1) 1204 return 0; /* need more */ 1205 memcpy(&s5_req, p, sizeof(s5_req)); 1206 if (s5_req.version != 0x05 || 1207 s5_req.command != SSH_SOCKS5_CONNECT || 1208 s5_req.reserved != 0x00) { 1209 debug2("channel %d: only socks5 connect supported", c->self); 1210 return -1; 1211 } 1212 switch (s5_req.atyp){ 1213 case SSH_SOCKS5_IPV4: 1214 addrlen = 4; 1215 af = AF_INET; 1216 break; 1217 case SSH_SOCKS5_DOMAIN: 1218 addrlen = p[sizeof(s5_req)]; 1219 af = -1; 1220 break; 1221 case SSH_SOCKS5_IPV6: 1222 addrlen = 16; 1223 af = AF_INET6; 1224 break; 1225 default: 1226 debug2("channel %d: bad socks5 atyp %d", c->self, s5_req.atyp); 1227 return -1; 1228 } 1229 need = sizeof(s5_req) + addrlen + 2; 1230 if (s5_req.atyp == SSH_SOCKS5_DOMAIN) 1231 need++; 1232 if (have < need) 1233 return 0; 1234 buffer_consume(&c->input, sizeof(s5_req)); 1235 if (s5_req.atyp == SSH_SOCKS5_DOMAIN) 1236 buffer_consume(&c->input, 1); /* host string length */ 1237 buffer_get(&c->input, (char *)&dest_addr, addrlen); 1238 buffer_get(&c->input, (char *)&dest_port, 2); 1239 dest_addr[addrlen] = '\0'; 1240 if (c->path != NULL) { 1241 xfree(c->path); 1242 c->path = NULL; 1243 } 1244 if (s5_req.atyp == SSH_SOCKS5_DOMAIN) { 1245 if (addrlen >= NI_MAXHOST) { 1246 error("channel %d: dynamic request: socks5 hostname " 1247 "\"%.100s\" too long", c->self, dest_addr); 1248 return -1; 1249 } 1250 c->path = xstrdup(dest_addr); 1251 } else { 1252 if (inet_ntop(af, dest_addr, ntop, sizeof(ntop)) == NULL) 1253 return -1; 1254 c->path = xstrdup(ntop); 1255 } 1256 c->host_port = ntohs(dest_port); 1257 1258 debug2("channel %d: dynamic request: socks5 host %s port %u command %u", 1259 c->self, c->path, c->host_port, s5_req.command); 1260 1261 s5_rsp.version = 0x05; 1262 s5_rsp.command = SSH_SOCKS5_SUCCESS; 1263 s5_rsp.reserved = 0; /* ignored */ 1264 s5_rsp.atyp = SSH_SOCKS5_IPV4; 1265 ((struct in_addr *)&dest_addr)->s_addr = INADDR_ANY; 1266 dest_port = 0; /* ignored */ 1267 1268 buffer_append(&c->output, &s5_rsp, sizeof(s5_rsp)); 1269 buffer_append(&c->output, &dest_addr, sizeof(struct in_addr)); 1270 buffer_append(&c->output, &dest_port, sizeof(dest_port)); 1271 return 1; 1272 } 1273 1274 Channel * 1275 channel_connect_stdio_fwd(const char *host_to_connect, u_short port_to_connect, 1276 int in, int out) 1277 { 1278 Channel *c; 1279 1280 debug("channel_connect_stdio_fwd %s:%d", host_to_connect, 1281 port_to_connect); 1282 1283 c = channel_new("stdio-forward", SSH_CHANNEL_OPENING, in, out, 1284 -1, CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT, 1285 0, "stdio-forward", /*nonblock*/0); 1286 1287 c->path = xstrdup(host_to_connect); 1288 c->host_port = port_to_connect; 1289 c->listening_port = 0; 1290 c->force_drain = 1; 1291 1292 channel_register_fds(c, in, out, -1, 0, 1, 0); 1293 port_open_helper(c, "direct-tcpip"); 1294 1295 return c; 1296 } 1297 1298 /* dynamic port forwarding */ 1299 static void 1300 channel_pre_dynamic(Channel *c, fd_set *readset, fd_set *writeset) 1301 { 1302 u_char *p; 1303 u_int have; 1304 int ret; 1305 1306 have = buffer_len(&c->input); 1307 debug2("channel %d: pre_dynamic: have %d", c->self, have); 1308 /* buffer_dump(&c->input); */ 1309 /* check if the fixed size part of the packet is in buffer. */ 1310 if (have < 3) { 1311 /* need more */ 1312 FD_SET(c->sock, readset); 1313 return; 1314 } 1315 /* try to guess the protocol */ 1316 p = buffer_ptr(&c->input); 1317 switch (p[0]) { 1318 case 0x04: 1319 ret = channel_decode_socks4(c, readset, writeset); 1320 break; 1321 case 0x05: 1322 ret = channel_decode_socks5(c, readset, writeset); 1323 break; 1324 default: 1325 ret = -1; 1326 break; 1327 } 1328 if (ret < 0) { 1329 chan_mark_dead(c); 1330 } else if (ret == 0) { 1331 debug2("channel %d: pre_dynamic: need more", c->self); 1332 /* need more */ 1333 FD_SET(c->sock, readset); 1334 } else { 1335 /* switch to the next state */ 1336 c->type = SSH_CHANNEL_OPENING; 1337 port_open_helper(c, "direct-tcpip"); 1338 } 1339 } 1340 1341 /* This is our fake X11 server socket. */ 1342 /* ARGSUSED */ 1343 static void 1344 channel_post_x11_listener(Channel *c, fd_set *readset, fd_set *writeset) 1345 { 1346 Channel *nc; 1347 struct sockaddr_storage addr; 1348 int newsock; 1349 socklen_t addrlen; 1350 char buf[16384], *remote_ipaddr; 1351 int remote_port; 1352 1353 if (FD_ISSET(c->sock, readset)) { 1354 debug("X11 connection requested."); 1355 addrlen = sizeof(addr); 1356 newsock = accept(c->sock, (struct sockaddr *)&addr, &addrlen); 1357 if (c->single_connection) { 1358 debug2("single_connection: closing X11 listener."); 1359 channel_close_fd(&c->sock); 1360 chan_mark_dead(c); 1361 } 1362 if (newsock < 0) { 1363 error("accept: %.100s", strerror(errno)); 1364 return; 1365 } 1366 set_nodelay(newsock); 1367 remote_ipaddr = get_peer_ipaddr(newsock); 1368 remote_port = get_peer_port(newsock); 1369 snprintf(buf, sizeof buf, "X11 connection from %.200s port %d", 1370 remote_ipaddr, remote_port); 1371 1372 nc = channel_new("accepted x11 socket", 1373 SSH_CHANNEL_OPENING, newsock, newsock, -1, 1374 c->local_window_max, c->local_maxpacket, 0, buf, 1); 1375 if (compat20) { 1376 packet_start(SSH2_MSG_CHANNEL_OPEN); 1377 packet_put_cstring("x11"); 1378 packet_put_int(nc->self); 1379 packet_put_int(nc->local_window_max); 1380 packet_put_int(nc->local_maxpacket); 1381 /* originator ipaddr and port */ 1382 packet_put_cstring(remote_ipaddr); 1383 if (datafellows & SSH_BUG_X11FWD) { 1384 debug2("ssh2 x11 bug compat mode"); 1385 } else { 1386 packet_put_int(remote_port); 1387 } 1388 packet_send(); 1389 } else { 1390 packet_start(SSH_SMSG_X11_OPEN); 1391 packet_put_int(nc->self); 1392 if (packet_get_protocol_flags() & 1393 SSH_PROTOFLAG_HOST_IN_FWD_OPEN) 1394 packet_put_cstring(buf); 1395 packet_send(); 1396 } 1397 xfree(remote_ipaddr); 1398 } 1399 } 1400 1401 static void 1402 port_open_helper(Channel *c, char *rtype) 1403 { 1404 int direct; 1405 char buf[1024]; 1406 char *remote_ipaddr = get_peer_ipaddr(c->sock); 1407 int remote_port = get_peer_port(c->sock); 1408 1409 if (remote_port == -1) { 1410 /* Fake addr/port to appease peers that validate it (Tectia) */ 1411 xfree(remote_ipaddr); 1412 remote_ipaddr = xstrdup("127.0.0.1"); 1413 remote_port = 65535; 1414 } 1415 1416 direct = (strcmp(rtype, "direct-tcpip") == 0); 1417 1418 snprintf(buf, sizeof buf, 1419 "%s: listening port %d for %.100s port %d, " 1420 "connect from %.200s port %d", 1421 rtype, c->listening_port, c->path, c->host_port, 1422 remote_ipaddr, remote_port); 1423 1424 xfree(c->remote_name); 1425 c->remote_name = xstrdup(buf); 1426 1427 if (compat20) { 1428 packet_start(SSH2_MSG_CHANNEL_OPEN); 1429 packet_put_cstring(rtype); 1430 packet_put_int(c->self); 1431 packet_put_int(c->local_window_max); 1432 packet_put_int(c->local_maxpacket); 1433 if (direct) { 1434 /* target host, port */ 1435 packet_put_cstring(c->path); 1436 packet_put_int(c->host_port); 1437 } else { 1438 /* listen address, port */ 1439 packet_put_cstring(c->path); 1440 packet_put_int(c->listening_port); 1441 } 1442 /* originator host and port */ 1443 packet_put_cstring(remote_ipaddr); 1444 packet_put_int((u_int)remote_port); 1445 packet_send(); 1446 } else { 1447 packet_start(SSH_MSG_PORT_OPEN); 1448 packet_put_int(c->self); 1449 packet_put_cstring(c->path); 1450 packet_put_int(c->host_port); 1451 if (packet_get_protocol_flags() & 1452 SSH_PROTOFLAG_HOST_IN_FWD_OPEN) 1453 packet_put_cstring(c->remote_name); 1454 packet_send(); 1455 } 1456 xfree(remote_ipaddr); 1457 } 1458 1459 static void 1460 channel_set_reuseaddr(int fd) 1461 { 1462 int on = 1; 1463 1464 /* 1465 * Set socket options. 1466 * Allow local port reuse in TIME_WAIT. 1467 */ 1468 if (setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, &on, sizeof(on)) == -1) 1469 error("setsockopt SO_REUSEADDR fd %d: %s", fd, strerror(errno)); 1470 } 1471 1472 /* 1473 * This socket is listening for connections to a forwarded TCP/IP port. 1474 */ 1475 /* ARGSUSED */ 1476 static void 1477 channel_post_port_listener(Channel *c, fd_set *readset, fd_set *writeset) 1478 { 1479 Channel *nc; 1480 struct sockaddr_storage addr; 1481 int newsock, nextstate; 1482 socklen_t addrlen; 1483 char *rtype; 1484 1485 if (FD_ISSET(c->sock, readset)) { 1486 debug("Connection to port %d forwarding " 1487 "to %.100s port %d requested.", 1488 c->listening_port, c->path, c->host_port); 1489 1490 if (c->type == SSH_CHANNEL_RPORT_LISTENER) { 1491 nextstate = SSH_CHANNEL_OPENING; 1492 rtype = "forwarded-tcpip"; 1493 } else { 1494 if (c->host_port == 0) { 1495 nextstate = SSH_CHANNEL_DYNAMIC; 1496 rtype = "dynamic-tcpip"; 1497 } else { 1498 nextstate = SSH_CHANNEL_OPENING; 1499 rtype = "direct-tcpip"; 1500 } 1501 } 1502 1503 addrlen = sizeof(addr); 1504 newsock = accept(c->sock, (struct sockaddr *)&addr, &addrlen); 1505 if (newsock < 0) { 1506 error("accept: %.100s", strerror(errno)); 1507 return; 1508 } 1509 set_nodelay(newsock); 1510 nc = channel_new(rtype, nextstate, newsock, newsock, -1, 1511 c->local_window_max, c->local_maxpacket, 0, rtype, 1); 1512 nc->listening_port = c->listening_port; 1513 nc->host_port = c->host_port; 1514 if (c->path != NULL) 1515 nc->path = xstrdup(c->path); 1516 1517 if (nextstate != SSH_CHANNEL_DYNAMIC) 1518 port_open_helper(nc, rtype); 1519 } 1520 } 1521 1522 /* 1523 * This is the authentication agent socket listening for connections from 1524 * clients. 1525 */ 1526 /* ARGSUSED */ 1527 static void 1528 channel_post_auth_listener(Channel *c, fd_set *readset, fd_set *writeset) 1529 { 1530 Channel *nc; 1531 int newsock; 1532 struct sockaddr_storage addr; 1533 socklen_t addrlen; 1534 1535 if (FD_ISSET(c->sock, readset)) { 1536 addrlen = sizeof(addr); 1537 newsock = accept(c->sock, (struct sockaddr *)&addr, &addrlen); 1538 if (newsock < 0) { 1539 error("accept from auth socket: %.100s", strerror(errno)); 1540 return; 1541 } 1542 nc = channel_new("accepted auth socket", 1543 SSH_CHANNEL_OPENING, newsock, newsock, -1, 1544 c->local_window_max, c->local_maxpacket, 1545 0, "accepted auth socket", 1); 1546 if (compat20) { 1547 packet_start(SSH2_MSG_CHANNEL_OPEN); 1548 packet_put_cstring("auth-agent@openssh.com"); 1549 packet_put_int(nc->self); 1550 packet_put_int(c->local_window_max); 1551 packet_put_int(c->local_maxpacket); 1552 } else { 1553 packet_start(SSH_SMSG_AGENT_OPEN); 1554 packet_put_int(nc->self); 1555 } 1556 packet_send(); 1557 } 1558 } 1559 1560 /* ARGSUSED */ 1561 static void 1562 channel_post_connecting(Channel *c, fd_set *readset, fd_set *writeset) 1563 { 1564 int err = 0, sock; 1565 socklen_t sz = sizeof(err); 1566 1567 if (FD_ISSET(c->sock, writeset)) { 1568 if (getsockopt(c->sock, SOL_SOCKET, SO_ERROR, &err, &sz) < 0) { 1569 err = errno; 1570 error("getsockopt SO_ERROR failed"); 1571 } 1572 if (err == 0) { 1573 debug("channel %d: connected to %s port %d", 1574 c->self, c->connect_ctx.host, c->connect_ctx.port); 1575 channel_connect_ctx_free(&c->connect_ctx); 1576 c->type = SSH_CHANNEL_OPEN; 1577 if (compat20) { 1578 packet_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION); 1579 packet_put_int(c->remote_id); 1580 packet_put_int(c->self); 1581 packet_put_int(c->local_window); 1582 packet_put_int(c->local_maxpacket); 1583 } else { 1584 packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION); 1585 packet_put_int(c->remote_id); 1586 packet_put_int(c->self); 1587 } 1588 } else { 1589 debug("channel %d: connection failed: %s", 1590 c->self, strerror(err)); 1591 /* Try next address, if any */ 1592 if ((sock = connect_next(&c->connect_ctx)) > 0) { 1593 close(c->sock); 1594 c->sock = c->rfd = c->wfd = sock; 1595 channel_max_fd = channel_find_maxfd(); 1596 return; 1597 } 1598 /* Exhausted all addresses */ 1599 error("connect_to %.100s port %d: failed.", 1600 c->connect_ctx.host, c->connect_ctx.port); 1601 channel_connect_ctx_free(&c->connect_ctx); 1602 if (compat20) { 1603 packet_start(SSH2_MSG_CHANNEL_OPEN_FAILURE); 1604 packet_put_int(c->remote_id); 1605 packet_put_int(SSH2_OPEN_CONNECT_FAILED); 1606 if (!(datafellows & SSH_BUG_OPENFAILURE)) { 1607 packet_put_cstring(strerror(err)); 1608 packet_put_cstring(""); 1609 } 1610 } else { 1611 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); 1612 packet_put_int(c->remote_id); 1613 } 1614 chan_mark_dead(c); 1615 } 1616 packet_send(); 1617 } 1618 } 1619 1620 /* ARGSUSED */ 1621 static int 1622 channel_handle_rfd(Channel *c, fd_set *readset, fd_set *writeset) 1623 { 1624 char buf[CHAN_RBUF]; 1625 int len, force; 1626 1627 force = c->isatty && c->detach_close && c->istate != CHAN_INPUT_CLOSED; 1628 if (c->rfd != -1 && (force || FD_ISSET(c->rfd, readset))) { 1629 errno = 0; 1630 len = read(c->rfd, buf, sizeof(buf)); 1631 if (len < 0 && (errno == EINTR || 1632 ((errno == EAGAIN || errno == EWOULDBLOCK) && !force))) 1633 return 1; 1634 #ifndef PTY_ZEROREAD 1635 if (len <= 0) { 1636 #else 1637 if ((!c->isatty && len <= 0) || 1638 (c->isatty && (len < 0 || (len == 0 && errno != 0)))) { 1639 #endif 1640 debug2("channel %d: read<=0 rfd %d len %d", 1641 c->self, c->rfd, len); 1642 if (c->type != SSH_CHANNEL_OPEN) { 1643 debug2("channel %d: not open", c->self); 1644 chan_mark_dead(c); 1645 return -1; 1646 } else if (compat13) { 1647 buffer_clear(&c->output); 1648 c->type = SSH_CHANNEL_INPUT_DRAINING; 1649 debug2("channel %d: input draining.", c->self); 1650 } else { 1651 chan_read_failed(c); 1652 } 1653 return -1; 1654 } 1655 if (c->input_filter != NULL) { 1656 if (c->input_filter(c, buf, len) == -1) { 1657 debug2("channel %d: filter stops", c->self); 1658 chan_read_failed(c); 1659 } 1660 } else if (c->datagram) { 1661 buffer_put_string(&c->input, buf, len); 1662 } else { 1663 buffer_append(&c->input, buf, len); 1664 } 1665 } 1666 return 1; 1667 } 1668 1669 /* ARGSUSED */ 1670 static int 1671 channel_handle_wfd(Channel *c, fd_set *readset, fd_set *writeset) 1672 { 1673 struct termios tio; 1674 u_char *data = NULL, *buf; 1675 u_int dlen, olen = 0; 1676 int len; 1677 1678 /* Send buffered output data to the socket. */ 1679 if (c->wfd != -1 && 1680 FD_ISSET(c->wfd, writeset) && 1681 buffer_len(&c->output) > 0) { 1682 olen = buffer_len(&c->output); 1683 if (c->output_filter != NULL) { 1684 if ((buf = c->output_filter(c, &data, &dlen)) == NULL) { 1685 debug2("channel %d: filter stops", c->self); 1686 if (c->type != SSH_CHANNEL_OPEN) 1687 chan_mark_dead(c); 1688 else 1689 chan_write_failed(c); 1690 return -1; 1691 } 1692 } else if (c->datagram) { 1693 buf = data = buffer_get_string(&c->output, &dlen); 1694 } else { 1695 buf = data = buffer_ptr(&c->output); 1696 dlen = buffer_len(&c->output); 1697 } 1698 1699 if (c->datagram) { 1700 /* ignore truncated writes, datagrams might get lost */ 1701 len = write(c->wfd, buf, dlen); 1702 xfree(data); 1703 if (len < 0 && (errno == EINTR || errno == EAGAIN || 1704 errno == EWOULDBLOCK)) 1705 return 1; 1706 if (len <= 0) { 1707 if (c->type != SSH_CHANNEL_OPEN) 1708 chan_mark_dead(c); 1709 else 1710 chan_write_failed(c); 1711 return -1; 1712 } 1713 goto out; 1714 } 1715 #ifdef _AIX 1716 /* XXX: Later AIX versions can't push as much data to tty */ 1717 if (compat20 && c->wfd_isatty) 1718 dlen = MIN(dlen, 8*1024); 1719 #endif 1720 1721 len = write(c->wfd, buf, dlen); 1722 if (len < 0 && 1723 (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK)) 1724 return 1; 1725 if (len <= 0) { 1726 if (c->type != SSH_CHANNEL_OPEN) { 1727 debug2("channel %d: not open", c->self); 1728 chan_mark_dead(c); 1729 return -1; 1730 } else if (compat13) { 1731 buffer_clear(&c->output); 1732 debug2("channel %d: input draining.", c->self); 1733 c->type = SSH_CHANNEL_INPUT_DRAINING; 1734 } else { 1735 chan_write_failed(c); 1736 } 1737 return -1; 1738 } 1739 #ifndef BROKEN_TCGETATTR_ICANON 1740 if (compat20 && c->isatty && dlen >= 1 && buf[0] != '\r') { 1741 if (tcgetattr(c->wfd, &tio) == 0 && 1742 !(tio.c_lflag & ECHO) && (tio.c_lflag & ICANON)) { 1743 /* 1744 * Simulate echo to reduce the impact of 1745 * traffic analysis. We need to match the 1746 * size of a SSH2_MSG_CHANNEL_DATA message 1747 * (4 byte channel id + buf) 1748 */ 1749 packet_send_ignore(4 + len); 1750 packet_send(); 1751 } 1752 } 1753 #endif 1754 buffer_consume(&c->output, len); 1755 } 1756 out: 1757 if (compat20 && olen > 0) 1758 c->local_consumed += olen - buffer_len(&c->output); 1759 return 1; 1760 } 1761 1762 static int 1763 channel_handle_efd(Channel *c, fd_set *readset, fd_set *writeset) 1764 { 1765 char buf[CHAN_RBUF]; 1766 int len; 1767 1768 /** XXX handle drain efd, too */ 1769 if (c->efd != -1) { 1770 if (c->extended_usage == CHAN_EXTENDED_WRITE && 1771 FD_ISSET(c->efd, writeset) && 1772 buffer_len(&c->extended) > 0) { 1773 len = write(c->efd, buffer_ptr(&c->extended), 1774 buffer_len(&c->extended)); 1775 debug2("channel %d: written %d to efd %d", 1776 c->self, len, c->efd); 1777 if (len < 0 && (errno == EINTR || errno == EAGAIN || 1778 errno == EWOULDBLOCK)) 1779 return 1; 1780 if (len <= 0) { 1781 debug2("channel %d: closing write-efd %d", 1782 c->self, c->efd); 1783 channel_close_fd(&c->efd); 1784 } else { 1785 buffer_consume(&c->extended, len); 1786 c->local_consumed += len; 1787 } 1788 } else if (c->efd != -1 && 1789 (c->extended_usage == CHAN_EXTENDED_READ || 1790 c->extended_usage == CHAN_EXTENDED_IGNORE) && 1791 (c->detach_close || FD_ISSET(c->efd, readset))) { 1792 len = read(c->efd, buf, sizeof(buf)); 1793 debug2("channel %d: read %d from efd %d", 1794 c->self, len, c->efd); 1795 if (len < 0 && (errno == EINTR || ((errno == EAGAIN || 1796 errno == EWOULDBLOCK) && !c->detach_close))) 1797 return 1; 1798 if (len <= 0) { 1799 debug2("channel %d: closing read-efd %d", 1800 c->self, c->efd); 1801 channel_close_fd(&c->efd); 1802 } else { 1803 if (c->extended_usage == CHAN_EXTENDED_IGNORE) { 1804 debug3("channel %d: discard efd", 1805 c->self); 1806 } else 1807 buffer_append(&c->extended, buf, len); 1808 } 1809 } 1810 } 1811 return 1; 1812 } 1813 1814 static int 1815 channel_check_window(Channel *c) 1816 { 1817 if (c->type == SSH_CHANNEL_OPEN && 1818 !(c->flags & (CHAN_CLOSE_SENT|CHAN_CLOSE_RCVD)) && 1819 ((c->local_window_max - c->local_window > 1820 c->local_maxpacket*3) || 1821 c->local_window < c->local_window_max/2) && 1822 c->local_consumed > 0) { 1823 u_int addition = 0; 1824 /* adjust max window size if we are in a dynamic environment */ 1825 if (c->dynamic_window && (c->tcpwinsz > c->local_window_max)) { 1826 /* grow the window somewhat aggressively to maintain pressure */ 1827 addition = 1.5*(c->tcpwinsz - c->local_window_max); 1828 c->local_window_max += addition; 1829 } 1830 packet_start(SSH2_MSG_CHANNEL_WINDOW_ADJUST); 1831 packet_put_int(c->remote_id); 1832 packet_put_int(c->local_consumed + addition); 1833 packet_send(); 1834 debug2("channel %d: window %d sent adjust %d", 1835 c->self, c->local_window, 1836 c->local_consumed); 1837 c->local_window += c->local_consumed + addition; 1838 c->local_consumed = 0; 1839 } 1840 return 1; 1841 } 1842 1843 static void 1844 channel_post_open(Channel *c, fd_set *readset, fd_set *writeset) 1845 { 1846 channel_handle_rfd(c, readset, writeset); 1847 channel_handle_wfd(c, readset, writeset); 1848 if (!compat20) 1849 return; 1850 channel_handle_efd(c, readset, writeset); 1851 channel_check_window(c); 1852 } 1853 1854 static u_int 1855 read_mux(Channel *c, u_int need) 1856 { 1857 char buf[CHAN_RBUF]; 1858 int len; 1859 u_int rlen; 1860 1861 if (buffer_len(&c->input) < need) { 1862 rlen = need - buffer_len(&c->input); 1863 len = read(c->rfd, buf, MIN(rlen, CHAN_RBUF)); 1864 if (len <= 0) { 1865 if (errno != EINTR && errno != EAGAIN) { 1866 debug2("channel %d: ctl read<=0 rfd %d len %d", 1867 c->self, c->rfd, len); 1868 chan_read_failed(c); 1869 return 0; 1870 } 1871 } else 1872 buffer_append(&c->input, buf, len); 1873 } 1874 return buffer_len(&c->input); 1875 } 1876 1877 static void 1878 channel_post_mux_client(Channel *c, fd_set *readset, fd_set *writeset) 1879 { 1880 u_int need; 1881 ssize_t len; 1882 1883 if (!compat20) 1884 fatal("%s: entered with !compat20", __func__); 1885 1886 if (c->rfd != -1 && !c->mux_pause && FD_ISSET(c->rfd, readset) && 1887 (c->istate == CHAN_INPUT_OPEN || 1888 c->istate == CHAN_INPUT_WAIT_DRAIN)) { 1889 /* 1890 * Don't not read past the precise end of packets to 1891 * avoid disrupting fd passing. 1892 */ 1893 if (read_mux(c, 4) < 4) /* read header */ 1894 return; 1895 need = get_u32(buffer_ptr(&c->input)); 1896 #define CHANNEL_MUX_MAX_PACKET (256 * 1024) 1897 if (need > CHANNEL_MUX_MAX_PACKET) { 1898 debug2("channel %d: packet too big %u > %u", 1899 c->self, CHANNEL_MUX_MAX_PACKET, need); 1900 chan_rcvd_oclose(c); 1901 return; 1902 } 1903 if (read_mux(c, need + 4) < need + 4) /* read body */ 1904 return; 1905 if (c->mux_rcb(c) != 0) { 1906 debug("channel %d: mux_rcb failed", c->self); 1907 chan_mark_dead(c); 1908 return; 1909 } 1910 } 1911 1912 if (c->wfd != -1 && FD_ISSET(c->wfd, writeset) && 1913 buffer_len(&c->output) > 0) { 1914 len = write(c->wfd, buffer_ptr(&c->output), 1915 buffer_len(&c->output)); 1916 if (len < 0 && (errno == EINTR || errno == EAGAIN)) 1917 return; 1918 if (len <= 0) { 1919 chan_mark_dead(c); 1920 return; 1921 } 1922 buffer_consume(&c->output, len); 1923 } 1924 } 1925 1926 static void 1927 channel_post_mux_listener(Channel *c, fd_set *readset, fd_set *writeset) 1928 { 1929 Channel *nc; 1930 struct sockaddr_storage addr; 1931 socklen_t addrlen; 1932 int newsock; 1933 uid_t euid; 1934 gid_t egid; 1935 1936 if (!FD_ISSET(c->sock, readset)) 1937 return; 1938 1939 debug("multiplexing control connection"); 1940 1941 /* 1942 * Accept connection on control socket 1943 */ 1944 memset(&addr, 0, sizeof(addr)); 1945 addrlen = sizeof(addr); 1946 if ((newsock = accept(c->sock, (struct sockaddr*)&addr, 1947 &addrlen)) == -1) { 1948 error("%s accept: %s", __func__, strerror(errno)); 1949 return; 1950 } 1951 1952 if (getpeereid(newsock, &euid, &egid) < 0) { 1953 error("%s getpeereid failed: %s", __func__, 1954 strerror(errno)); 1955 close(newsock); 1956 return; 1957 } 1958 if ((euid != 0) && (getuid() != euid)) { 1959 error("multiplex uid mismatch: peer euid %u != uid %u", 1960 (u_int)euid, (u_int)getuid()); 1961 close(newsock); 1962 return; 1963 } 1964 nc = channel_new("multiplex client", SSH_CHANNEL_MUX_CLIENT, 1965 newsock, newsock, -1, c->local_window_max, 1966 c->local_maxpacket, 0, "mux-control", 1); 1967 nc->mux_rcb = c->mux_rcb; 1968 debug3("%s: new mux channel %d fd %d", __func__, 1969 nc->self, nc->sock); 1970 /* establish state */ 1971 nc->mux_rcb(nc); 1972 /* mux state transitions must not elicit protocol messages */ 1973 nc->flags |= CHAN_LOCAL; 1974 } 1975 1976 /* ARGSUSED */ 1977 static void 1978 channel_post_output_drain_13(Channel *c, fd_set *readset, fd_set *writeset) 1979 { 1980 int len; 1981 1982 /* Send buffered output data to the socket. */ 1983 if (FD_ISSET(c->sock, writeset) && buffer_len(&c->output) > 0) { 1984 len = write(c->sock, buffer_ptr(&c->output), 1985 buffer_len(&c->output)); 1986 if (len <= 0) 1987 buffer_clear(&c->output); 1988 else 1989 buffer_consume(&c->output, len); 1990 } 1991 } 1992 1993 static void 1994 channel_handler_init_20(void) 1995 { 1996 channel_pre[SSH_CHANNEL_OPEN] = &channel_pre_open; 1997 channel_pre[SSH_CHANNEL_X11_OPEN] = &channel_pre_x11_open; 1998 channel_pre[SSH_CHANNEL_PORT_LISTENER] = &channel_pre_listener; 1999 channel_pre[SSH_CHANNEL_RPORT_LISTENER] = &channel_pre_listener; 2000 channel_pre[SSH_CHANNEL_X11_LISTENER] = &channel_pre_listener; 2001 channel_pre[SSH_CHANNEL_AUTH_SOCKET] = &channel_pre_listener; 2002 channel_pre[SSH_CHANNEL_CONNECTING] = &channel_pre_connecting; 2003 channel_pre[SSH_CHANNEL_DYNAMIC] = &channel_pre_dynamic; 2004 channel_pre[SSH_CHANNEL_MUX_LISTENER] = &channel_pre_listener; 2005 channel_pre[SSH_CHANNEL_MUX_CLIENT] = &channel_pre_mux_client; 2006 2007 channel_post[SSH_CHANNEL_OPEN] = &channel_post_open; 2008 channel_post[SSH_CHANNEL_PORT_LISTENER] = &channel_post_port_listener; 2009 channel_post[SSH_CHANNEL_RPORT_LISTENER] = &channel_post_port_listener; 2010 channel_post[SSH_CHANNEL_X11_LISTENER] = &channel_post_x11_listener; 2011 channel_post[SSH_CHANNEL_AUTH_SOCKET] = &channel_post_auth_listener; 2012 channel_post[SSH_CHANNEL_CONNECTING] = &channel_post_connecting; 2013 channel_post[SSH_CHANNEL_DYNAMIC] = &channel_post_open; 2014 channel_post[SSH_CHANNEL_MUX_LISTENER] = &channel_post_mux_listener; 2015 channel_post[SSH_CHANNEL_MUX_CLIENT] = &channel_post_mux_client; 2016 } 2017 2018 static void 2019 channel_handler_init_13(void) 2020 { 2021 channel_pre[SSH_CHANNEL_OPEN] = &channel_pre_open_13; 2022 channel_pre[SSH_CHANNEL_X11_OPEN] = &channel_pre_x11_open_13; 2023 channel_pre[SSH_CHANNEL_X11_LISTENER] = &channel_pre_listener; 2024 channel_pre[SSH_CHANNEL_PORT_LISTENER] = &channel_pre_listener; 2025 channel_pre[SSH_CHANNEL_AUTH_SOCKET] = &channel_pre_listener; 2026 channel_pre[SSH_CHANNEL_INPUT_DRAINING] = &channel_pre_input_draining; 2027 channel_pre[SSH_CHANNEL_OUTPUT_DRAINING] = &channel_pre_output_draining; 2028 channel_pre[SSH_CHANNEL_CONNECTING] = &channel_pre_connecting; 2029 channel_pre[SSH_CHANNEL_DYNAMIC] = &channel_pre_dynamic; 2030 2031 channel_post[SSH_CHANNEL_OPEN] = &channel_post_open; 2032 channel_post[SSH_CHANNEL_X11_LISTENER] = &channel_post_x11_listener; 2033 channel_post[SSH_CHANNEL_PORT_LISTENER] = &channel_post_port_listener; 2034 channel_post[SSH_CHANNEL_AUTH_SOCKET] = &channel_post_auth_listener; 2035 channel_post[SSH_CHANNEL_OUTPUT_DRAINING] = &channel_post_output_drain_13; 2036 channel_post[SSH_CHANNEL_CONNECTING] = &channel_post_connecting; 2037 channel_post[SSH_CHANNEL_DYNAMIC] = &channel_post_open; 2038 } 2039 2040 static void 2041 channel_handler_init_15(void) 2042 { 2043 channel_pre[SSH_CHANNEL_OPEN] = &channel_pre_open; 2044 channel_pre[SSH_CHANNEL_X11_OPEN] = &channel_pre_x11_open; 2045 channel_pre[SSH_CHANNEL_X11_LISTENER] = &channel_pre_listener; 2046 channel_pre[SSH_CHANNEL_PORT_LISTENER] = &channel_pre_listener; 2047 channel_pre[SSH_CHANNEL_AUTH_SOCKET] = &channel_pre_listener; 2048 channel_pre[SSH_CHANNEL_CONNECTING] = &channel_pre_connecting; 2049 channel_pre[SSH_CHANNEL_DYNAMIC] = &channel_pre_dynamic; 2050 2051 channel_post[SSH_CHANNEL_X11_LISTENER] = &channel_post_x11_listener; 2052 channel_post[SSH_CHANNEL_PORT_LISTENER] = &channel_post_port_listener; 2053 channel_post[SSH_CHANNEL_AUTH_SOCKET] = &channel_post_auth_listener; 2054 channel_post[SSH_CHANNEL_OPEN] = &channel_post_open; 2055 channel_post[SSH_CHANNEL_CONNECTING] = &channel_post_connecting; 2056 channel_post[SSH_CHANNEL_DYNAMIC] = &channel_post_open; 2057 } 2058 2059 static void 2060 channel_handler_init(void) 2061 { 2062 int i; 2063 2064 for (i = 0; i < SSH_CHANNEL_MAX_TYPE; i++) { 2065 channel_pre[i] = NULL; 2066 channel_post[i] = NULL; 2067 } 2068 if (compat20) 2069 channel_handler_init_20(); 2070 else if (compat13) 2071 channel_handler_init_13(); 2072 else 2073 channel_handler_init_15(); 2074 } 2075 2076 /* gc dead channels */ 2077 static void 2078 channel_garbage_collect(Channel *c) 2079 { 2080 if (c == NULL) 2081 return; 2082 if (c->detach_user != NULL) { 2083 if (!chan_is_dead(c, c->detach_close)) 2084 return; 2085 debug2("channel %d: gc: notify user", c->self); 2086 c->detach_user(c->self, NULL); 2087 /* if we still have a callback */ 2088 if (c->detach_user != NULL) 2089 return; 2090 debug2("channel %d: gc: user detached", c->self); 2091 } 2092 if (!chan_is_dead(c, 1)) 2093 return; 2094 debug2("channel %d: garbage collecting", c->self); 2095 channel_free(c); 2096 } 2097 2098 static void 2099 channel_handler(chan_fn *ftab[], fd_set *readset, fd_set *writeset) 2100 { 2101 static int did_init = 0; 2102 u_int i, oalloc; 2103 Channel *c; 2104 2105 if (!did_init) { 2106 channel_handler_init(); 2107 did_init = 1; 2108 } 2109 for (i = 0, oalloc = channels_alloc; i < oalloc; i++) { 2110 c = channels[i]; 2111 if (c == NULL) 2112 continue; 2113 if (c->delayed) { 2114 if (ftab == channel_pre) 2115 c->delayed = 0; 2116 else 2117 continue; 2118 } 2119 if (ftab[c->type] != NULL) 2120 (*ftab[c->type])(c, readset, writeset); 2121 channel_garbage_collect(c); 2122 } 2123 } 2124 2125 /* 2126 * Allocate/update select bitmasks and add any bits relevant to channels in 2127 * select bitmasks. 2128 */ 2129 void 2130 channel_prepare_select(fd_set **readsetp, fd_set **writesetp, int *maxfdp, 2131 u_int *nallocp, int rekeying) 2132 { 2133 u_int n, sz, nfdset; 2134 2135 n = MAX(*maxfdp, channel_max_fd); 2136 2137 nfdset = howmany(n+1, NFDBITS); 2138 /* Explicitly test here, because xrealloc isn't always called */ 2139 if (nfdset && SIZE_T_MAX / nfdset < sizeof(fd_mask)) 2140 fatal("channel_prepare_select: max_fd (%d) is too large", n); 2141 sz = nfdset * sizeof(fd_mask); 2142 2143 /* perhaps check sz < nalloc/2 and shrink? */ 2144 if (*readsetp == NULL || sz > *nallocp) { 2145 *readsetp = xrealloc(*readsetp, nfdset, sizeof(fd_mask)); 2146 *writesetp = xrealloc(*writesetp, nfdset, sizeof(fd_mask)); 2147 *nallocp = sz; 2148 } 2149 *maxfdp = n; 2150 memset(*readsetp, 0, sz); 2151 memset(*writesetp, 0, sz); 2152 2153 if (!rekeying) 2154 channel_handler(channel_pre, *readsetp, *writesetp); 2155 } 2156 2157 /* 2158 * After select, perform any appropriate operations for channels which have 2159 * events pending. 2160 */ 2161 void 2162 channel_after_select(fd_set *readset, fd_set *writeset) 2163 { 2164 channel_handler(channel_post, readset, writeset); 2165 } 2166 2167 2168 /* If there is data to send to the connection, enqueue some of it now. */ 2169 int 2170 channel_output_poll(void) 2171 { 2172 Channel *c; 2173 u_int i, len; 2174 int packet_length = 0; 2175 2176 for (i = 0; i < channels_alloc; i++) { 2177 c = channels[i]; 2178 if (c == NULL) 2179 continue; 2180 2181 /* 2182 * We are only interested in channels that can have buffered 2183 * incoming data. 2184 */ 2185 if (compat13) { 2186 if (c->type != SSH_CHANNEL_OPEN && 2187 c->type != SSH_CHANNEL_INPUT_DRAINING) 2188 continue; 2189 } else { 2190 if (c->type != SSH_CHANNEL_OPEN) 2191 continue; 2192 } 2193 if (compat20 && 2194 (c->flags & (CHAN_CLOSE_SENT|CHAN_CLOSE_RCVD))) { 2195 /* XXX is this true? */ 2196 debug3("channel %d: will not send data after close", c->self); 2197 continue; 2198 } 2199 2200 /* Get the amount of buffered data for this channel. */ 2201 if ((c->istate == CHAN_INPUT_OPEN || 2202 c->istate == CHAN_INPUT_WAIT_DRAIN) && 2203 (len = buffer_len(&c->input)) > 0) { 2204 if (c->datagram) { 2205 if (len > 0) { 2206 u_char *data; 2207 u_int dlen; 2208 2209 data = buffer_get_string(&c->input, 2210 &dlen); 2211 if (dlen > c->remote_window || 2212 dlen > c->remote_maxpacket) { 2213 debug("channel %d: datagram " 2214 "too big for channel", 2215 c->self); 2216 xfree(data); 2217 continue; 2218 } 2219 packet_start(SSH2_MSG_CHANNEL_DATA); 2220 packet_put_int(c->remote_id); 2221 packet_put_string(data, dlen); 2222 packet_length = packet_send(); 2223 c->remote_window -= dlen + 4; 2224 xfree(data); 2225 } 2226 continue; 2227 } 2228 /* 2229 * Send some data for the other side over the secure 2230 * connection. 2231 */ 2232 if (compat20) { 2233 if (len > c->remote_window) 2234 len = c->remote_window; 2235 if (len > c->remote_maxpacket) 2236 len = c->remote_maxpacket; 2237 } else { 2238 if (packet_is_interactive()) { 2239 if (len > 1024) 2240 len = 512; 2241 } else { 2242 /* Keep the packets at reasonable size. */ 2243 if (len > packet_get_maxsize()/2) 2244 len = packet_get_maxsize()/2; 2245 } 2246 } 2247 if (len > 0) { 2248 packet_start(compat20 ? 2249 SSH2_MSG_CHANNEL_DATA : SSH_MSG_CHANNEL_DATA); 2250 packet_put_int(c->remote_id); 2251 packet_put_string(buffer_ptr(&c->input), len); 2252 packet_length = packet_send(); 2253 buffer_consume(&c->input, len); 2254 c->remote_window -= len; 2255 } 2256 } else if (c->istate == CHAN_INPUT_WAIT_DRAIN) { 2257 if (compat13) 2258 fatal("cannot happen: istate == INPUT_WAIT_DRAIN for proto 1.3"); 2259 /* 2260 * input-buffer is empty and read-socket shutdown: 2261 * tell peer, that we will not send more data: send IEOF. 2262 * hack for extended data: delay EOF if EFD still in use. 2263 */ 2264 if (CHANNEL_EFD_INPUT_ACTIVE(c)) 2265 debug2("channel %d: ibuf_empty delayed efd %d/(%d)", 2266 c->self, c->efd, buffer_len(&c->extended)); 2267 else 2268 chan_ibuf_empty(c); 2269 } 2270 /* Send extended data, i.e. stderr */ 2271 if (compat20 && 2272 !(c->flags & CHAN_EOF_SENT) && 2273 c->remote_window > 0 && 2274 (len = buffer_len(&c->extended)) > 0 && 2275 c->extended_usage == CHAN_EXTENDED_READ) { 2276 debug2("channel %d: rwin %u elen %u euse %d", 2277 c->self, c->remote_window, buffer_len(&c->extended), 2278 c->extended_usage); 2279 if (len > c->remote_window) 2280 len = c->remote_window; 2281 if (len > c->remote_maxpacket) 2282 len = c->remote_maxpacket; 2283 packet_start(SSH2_MSG_CHANNEL_EXTENDED_DATA); 2284 packet_put_int(c->remote_id); 2285 packet_put_int(SSH2_EXTENDED_DATA_STDERR); 2286 packet_put_string(buffer_ptr(&c->extended), len); 2287 packet_length = packet_send(); 2288 buffer_consume(&c->extended, len); 2289 c->remote_window -= len; 2290 debug2("channel %d: sent ext data %d", c->self, len); 2291 } 2292 } 2293 return (packet_length); 2294 } 2295 2296 2297 /* -- protocol input */ 2298 2299 /* ARGSUSED */ 2300 void 2301 channel_input_data(int type, u_int32_t seq, void *ctxt) 2302 { 2303 int id; 2304 char *data; 2305 u_int data_len, win_len; 2306 Channel *c; 2307 2308 /* Get the channel number and verify it. */ 2309 id = packet_get_int(); 2310 c = channel_lookup(id); 2311 if (c == NULL) 2312 packet_disconnect("Received data for nonexistent channel %d.", id); 2313 2314 /* Ignore any data for non-open channels (might happen on close) */ 2315 if (c->type != SSH_CHANNEL_OPEN && 2316 c->type != SSH_CHANNEL_X11_OPEN) 2317 return; 2318 2319 /* Get the data. */ 2320 data = packet_get_string_ptr(&data_len); 2321 win_len = data_len; 2322 if (c->datagram) 2323 win_len += 4; /* string length header */ 2324 2325 /* 2326 * Ignore data for protocol > 1.3 if output end is no longer open. 2327 * For protocol 2 the sending side is reducing its window as it sends 2328 * data, so we must 'fake' consumption of the data in order to ensure 2329 * that window updates are sent back. Otherwise the connection might 2330 * deadlock. 2331 */ 2332 if (!compat13 && c->ostate != CHAN_OUTPUT_OPEN) { 2333 if (compat20) { 2334 c->local_window -= win_len; 2335 c->local_consumed += win_len; 2336 } 2337 return; 2338 } 2339 2340 if (compat20) { 2341 if (win_len > c->local_maxpacket) { 2342 logit("channel %d: rcvd big packet %d, maxpack %d", 2343 c->self, win_len, c->local_maxpacket); 2344 } 2345 if (win_len > c->local_window) { 2346 logit("channel %d: rcvd too much data %d, win %d", 2347 c->self, win_len, c->local_window); 2348 return; 2349 } 2350 c->local_window -= win_len; 2351 } 2352 if (c->datagram) 2353 buffer_put_string(&c->output, data, data_len); 2354 else 2355 buffer_append(&c->output, data, data_len); 2356 packet_check_eom(); 2357 } 2358 2359 /* ARGSUSED */ 2360 void 2361 channel_input_extended_data(int type, u_int32_t seq, void *ctxt) 2362 { 2363 int id; 2364 char *data; 2365 u_int data_len, tcode; 2366 Channel *c; 2367 2368 /* Get the channel number and verify it. */ 2369 id = packet_get_int(); 2370 c = channel_lookup(id); 2371 2372 if (c == NULL) 2373 packet_disconnect("Received extended_data for bad channel %d.", id); 2374 if (c->type != SSH_CHANNEL_OPEN) { 2375 logit("channel %d: ext data for non open", id); 2376 return; 2377 } 2378 if (c->flags & CHAN_EOF_RCVD) { 2379 if (datafellows & SSH_BUG_EXTEOF) 2380 debug("channel %d: accepting ext data after eof", id); 2381 else 2382 packet_disconnect("Received extended_data after EOF " 2383 "on channel %d.", id); 2384 } 2385 tcode = packet_get_int(); 2386 if (c->efd == -1 || 2387 c->extended_usage != CHAN_EXTENDED_WRITE || 2388 tcode != SSH2_EXTENDED_DATA_STDERR) { 2389 logit("channel %d: bad ext data", c->self); 2390 return; 2391 } 2392 data = packet_get_string(&data_len); 2393 packet_check_eom(); 2394 if (data_len > c->local_window) { 2395 logit("channel %d: rcvd too much extended_data %d, win %d", 2396 c->self, data_len, c->local_window); 2397 xfree(data); 2398 return; 2399 } 2400 debug2("channel %d: rcvd ext data %d", c->self, data_len); 2401 c->local_window -= data_len; 2402 buffer_append(&c->extended, data, data_len); 2403 xfree(data); 2404 } 2405 2406 /* ARGSUSED */ 2407 void 2408 channel_input_ieof(int type, u_int32_t seq, void *ctxt) 2409 { 2410 int id; 2411 Channel *c; 2412 2413 id = packet_get_int(); 2414 packet_check_eom(); 2415 c = channel_lookup(id); 2416 if (c == NULL) 2417 packet_disconnect("Received ieof for nonexistent channel %d.", id); 2418 chan_rcvd_ieof(c); 2419 2420 /* XXX force input close */ 2421 if (c->force_drain && c->istate == CHAN_INPUT_OPEN) { 2422 debug("channel %d: FORCE input drain", c->self); 2423 c->istate = CHAN_INPUT_WAIT_DRAIN; 2424 if (buffer_len(&c->input) == 0) 2425 chan_ibuf_empty(c); 2426 } 2427 2428 } 2429 2430 /* ARGSUSED */ 2431 void 2432 channel_input_close(int type, u_int32_t seq, void *ctxt) 2433 { 2434 int id; 2435 Channel *c; 2436 2437 id = packet_get_int(); 2438 packet_check_eom(); 2439 c = channel_lookup(id); 2440 if (c == NULL) 2441 packet_disconnect("Received close for nonexistent channel %d.", id); 2442 2443 /* 2444 * Send a confirmation that we have closed the channel and no more 2445 * data is coming for it. 2446 */ 2447 packet_start(SSH_MSG_CHANNEL_CLOSE_CONFIRMATION); 2448 packet_put_int(c->remote_id); 2449 packet_send(); 2450 2451 /* 2452 * If the channel is in closed state, we have sent a close request, 2453 * and the other side will eventually respond with a confirmation. 2454 * Thus, we cannot free the channel here, because then there would be 2455 * no-one to receive the confirmation. The channel gets freed when 2456 * the confirmation arrives. 2457 */ 2458 if (c->type != SSH_CHANNEL_CLOSED) { 2459 /* 2460 * Not a closed channel - mark it as draining, which will 2461 * cause it to be freed later. 2462 */ 2463 buffer_clear(&c->input); 2464 c->type = SSH_CHANNEL_OUTPUT_DRAINING; 2465 } 2466 } 2467 2468 /* proto version 1.5 overloads CLOSE_CONFIRMATION with OCLOSE */ 2469 /* ARGSUSED */ 2470 void 2471 channel_input_oclose(int type, u_int32_t seq, void *ctxt) 2472 { 2473 int id = packet_get_int(); 2474 Channel *c = channel_lookup(id); 2475 2476 packet_check_eom(); 2477 if (c == NULL) 2478 packet_disconnect("Received oclose for nonexistent channel %d.", id); 2479 chan_rcvd_oclose(c); 2480 } 2481 2482 /* ARGSUSED */ 2483 void 2484 channel_input_close_confirmation(int type, u_int32_t seq, void *ctxt) 2485 { 2486 int id = packet_get_int(); 2487 Channel *c = channel_lookup(id); 2488 2489 packet_check_eom(); 2490 if (c == NULL) 2491 packet_disconnect("Received close confirmation for " 2492 "out-of-range channel %d.", id); 2493 if (c->type != SSH_CHANNEL_CLOSED) 2494 packet_disconnect("Received close confirmation for " 2495 "non-closed channel %d (type %d).", id, c->type); 2496 channel_free(c); 2497 } 2498 2499 /* ARGSUSED */ 2500 void 2501 channel_input_open_confirmation(int type, u_int32_t seq, void *ctxt) 2502 { 2503 int id, remote_id; 2504 Channel *c; 2505 2506 id = packet_get_int(); 2507 c = channel_lookup(id); 2508 2509 if (c==NULL || c->type != SSH_CHANNEL_OPENING) 2510 packet_disconnect("Received open confirmation for " 2511 "non-opening channel %d.", id); 2512 remote_id = packet_get_int(); 2513 /* Record the remote channel number and mark that the channel is now open. */ 2514 c->remote_id = remote_id; 2515 c->type = SSH_CHANNEL_OPEN; 2516 2517 if (compat20) { 2518 c->remote_window = packet_get_int(); 2519 c->remote_maxpacket = packet_get_int(); 2520 if (c->open_confirm) { 2521 debug2("callback start"); 2522 c->open_confirm(c->self, 1, c->open_confirm_ctx); 2523 debug2("callback done"); 2524 } 2525 debug2("channel %d: open confirm rwindow %u rmax %u", c->self, 2526 c->remote_window, c->remote_maxpacket); 2527 } 2528 packet_check_eom(); 2529 } 2530 2531 static char * 2532 reason2txt(int reason) 2533 { 2534 switch (reason) { 2535 case SSH2_OPEN_ADMINISTRATIVELY_PROHIBITED: 2536 return "administratively prohibited"; 2537 case SSH2_OPEN_CONNECT_FAILED: 2538 return "connect failed"; 2539 case SSH2_OPEN_UNKNOWN_CHANNEL_TYPE: 2540 return "unknown channel type"; 2541 case SSH2_OPEN_RESOURCE_SHORTAGE: 2542 return "resource shortage"; 2543 } 2544 return "unknown reason"; 2545 } 2546 2547 /* ARGSUSED */ 2548 void 2549 channel_input_open_failure(int type, u_int32_t seq, void *ctxt) 2550 { 2551 int id, reason; 2552 char *msg = NULL, *lang = NULL; 2553 Channel *c; 2554 2555 id = packet_get_int(); 2556 c = channel_lookup(id); 2557 2558 if (c==NULL || c->type != SSH_CHANNEL_OPENING) 2559 packet_disconnect("Received open failure for " 2560 "non-opening channel %d.", id); 2561 if (compat20) { 2562 reason = packet_get_int(); 2563 if (!(datafellows & SSH_BUG_OPENFAILURE)) { 2564 msg = packet_get_string(NULL); 2565 lang = packet_get_string(NULL); 2566 } 2567 logit("channel %d: open failed: %s%s%s", id, 2568 reason2txt(reason), msg ? ": ": "", msg ? msg : ""); 2569 if (msg != NULL) 2570 xfree(msg); 2571 if (lang != NULL) 2572 xfree(lang); 2573 if (c->open_confirm) { 2574 debug2("callback start"); 2575 c->open_confirm(c->self, 0, c->open_confirm_ctx); 2576 debug2("callback done"); 2577 } 2578 } 2579 packet_check_eom(); 2580 /* Schedule the channel for cleanup/deletion. */ 2581 chan_mark_dead(c); 2582 } 2583 2584 /* ARGSUSED */ 2585 void 2586 channel_input_window_adjust(int type, u_int32_t seq, void *ctxt) 2587 { 2588 Channel *c; 2589 int id; 2590 u_int adjust; 2591 2592 if (!compat20) 2593 return; 2594 2595 /* Get the channel number and verify it. */ 2596 id = packet_get_int(); 2597 c = channel_lookup(id); 2598 2599 if (c == NULL) { 2600 logit("Received window adjust for non-open channel %d.", id); 2601 return; 2602 } 2603 adjust = packet_get_int(); 2604 packet_check_eom(); 2605 debug2("channel %d: rcvd adjust %u", id, adjust); 2606 c->remote_window += adjust; 2607 } 2608 2609 /* ARGSUSED */ 2610 void 2611 channel_input_port_open(int type, u_int32_t seq, void *ctxt) 2612 { 2613 Channel *c = NULL; 2614 u_short host_port; 2615 char *host, *originator_string; 2616 int remote_id; 2617 2618 remote_id = packet_get_int(); 2619 host = packet_get_string(NULL); 2620 host_port = packet_get_int(); 2621 2622 if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) { 2623 originator_string = packet_get_string(NULL); 2624 } else { 2625 originator_string = xstrdup("unknown (remote did not supply name)"); 2626 } 2627 packet_check_eom(); 2628 c = channel_connect_to(host, host_port, 2629 "connected socket", originator_string); 2630 xfree(originator_string); 2631 xfree(host); 2632 if (c == NULL) { 2633 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); 2634 packet_put_int(remote_id); 2635 packet_send(); 2636 } else 2637 c->remote_id = remote_id; 2638 } 2639 2640 /* ARGSUSED */ 2641 void 2642 channel_input_status_confirm(int type, u_int32_t seq, void *ctxt) 2643 { 2644 Channel *c; 2645 struct channel_confirm *cc; 2646 int id; 2647 2648 /* Reset keepalive timeout */ 2649 packet_set_alive_timeouts(0); 2650 2651 id = packet_get_int(); 2652 packet_check_eom(); 2653 2654 debug2("channel_input_status_confirm: type %d id %d", type, id); 2655 2656 if ((c = channel_lookup(id)) == NULL) { 2657 logit("channel_input_status_confirm: %d: unknown", id); 2658 return; 2659 } 2660 ; 2661 if ((cc = TAILQ_FIRST(&c->status_confirms)) == NULL) 2662 return; 2663 cc->cb(type, c, cc->ctx); 2664 TAILQ_REMOVE(&c->status_confirms, cc, entry); 2665 bzero(cc, sizeof(*cc)); 2666 xfree(cc); 2667 } 2668 2669 /* -- tcp forwarding */ 2670 2671 void 2672 channel_set_af(int af) 2673 { 2674 IPv4or6 = af; 2675 } 2676 2677 2678 void 2679 channel_set_hpn(int external_hpn_disabled, int external_hpn_buffer_size) 2680 { 2681 hpn_disabled = external_hpn_disabled; 2682 hpn_buffer_size = external_hpn_buffer_size; 2683 debug("HPN Disabled: %d, HPN Buffer Size: %d", hpn_disabled, hpn_buffer_size); 2684 } 2685 2686 static int 2687 channel_setup_fwd_listener(int type, const char *listen_addr, 2688 u_short listen_port, int *allocated_listen_port, 2689 const char *host_to_connect, u_short port_to_connect, int gateway_ports) 2690 { 2691 Channel *c; 2692 int sock, r, success = 0, wildcard = 0, is_client; 2693 struct addrinfo hints, *ai, *aitop; 2694 const char *host, *addr; 2695 char ntop[NI_MAXHOST], strport[NI_MAXSERV]; 2696 in_port_t *lport_p; 2697 2698 host = (type == SSH_CHANNEL_RPORT_LISTENER) ? 2699 listen_addr : host_to_connect; 2700 is_client = (type == SSH_CHANNEL_PORT_LISTENER); 2701 2702 if (host == NULL) { 2703 error("No forward host name."); 2704 return 0; 2705 } 2706 if (strlen(host) >= NI_MAXHOST) { 2707 error("Forward host name too long."); 2708 return 0; 2709 } 2710 2711 /* 2712 * Determine whether or not a port forward listens to loopback, 2713 * specified address or wildcard. On the client, a specified bind 2714 * address will always override gateway_ports. On the server, a 2715 * gateway_ports of 1 (``yes'') will override the client's 2716 * specification and force a wildcard bind, whereas a value of 2 2717 * (``clientspecified'') will bind to whatever address the client 2718 * asked for. 2719 * 2720 * Special-case listen_addrs are: 2721 * 2722 * "0.0.0.0" -> wildcard v4/v6 if SSH_OLD_FORWARD_ADDR 2723 * "" (empty string), "*" -> wildcard v4/v6 2724 * "localhost" -> loopback v4/v6 2725 */ 2726 addr = NULL; 2727 if (listen_addr == NULL) { 2728 /* No address specified: default to gateway_ports setting */ 2729 if (gateway_ports) 2730 wildcard = 1; 2731 } else if (gateway_ports || is_client) { 2732 if (((datafellows & SSH_OLD_FORWARD_ADDR) && 2733 strcmp(listen_addr, "0.0.0.0") == 0 && is_client == 0) || 2734 *listen_addr == '\0' || strcmp(listen_addr, "*") == 0 || 2735 (!is_client && gateway_ports == 1)) 2736 wildcard = 1; 2737 else if (strcmp(listen_addr, "localhost") != 0) 2738 addr = listen_addr; 2739 } 2740 2741 debug3("channel_setup_fwd_listener: type %d wildcard %d addr %s", 2742 type, wildcard, (addr == NULL) ? "NULL" : addr); 2743 2744 /* 2745 * getaddrinfo returns a loopback address if the hostname is 2746 * set to NULL and hints.ai_flags is not AI_PASSIVE 2747 */ 2748 memset(&hints, 0, sizeof(hints)); 2749 hints.ai_family = IPv4or6; 2750 hints.ai_flags = wildcard ? AI_PASSIVE : 0; 2751 hints.ai_socktype = SOCK_STREAM; 2752 snprintf(strport, sizeof strport, "%d", listen_port); 2753 if ((r = getaddrinfo(addr, strport, &hints, &aitop)) != 0) { 2754 if (addr == NULL) { 2755 /* This really shouldn't happen */ 2756 packet_disconnect("getaddrinfo: fatal error: %s", 2757 ssh_gai_strerror(r)); 2758 } else { 2759 error("channel_setup_fwd_listener: " 2760 "getaddrinfo(%.64s): %s", addr, 2761 ssh_gai_strerror(r)); 2762 } 2763 return 0; 2764 } 2765 if (allocated_listen_port != NULL) 2766 *allocated_listen_port = 0; 2767 for (ai = aitop; ai; ai = ai->ai_next) { 2768 switch (ai->ai_family) { 2769 case AF_INET: 2770 lport_p = &((struct sockaddr_in *)ai->ai_addr)-> 2771 sin_port; 2772 break; 2773 case AF_INET6: 2774 lport_p = &((struct sockaddr_in6 *)ai->ai_addr)-> 2775 sin6_port; 2776 break; 2777 default: 2778 continue; 2779 } 2780 /* 2781 * If allocating a port for -R forwards, then use the 2782 * same port for all address families. 2783 */ 2784 if (type == SSH_CHANNEL_RPORT_LISTENER && listen_port == 0 && 2785 allocated_listen_port != NULL && *allocated_listen_port > 0) 2786 *lport_p = htons(*allocated_listen_port); 2787 2788 if (getnameinfo(ai->ai_addr, ai->ai_addrlen, ntop, sizeof(ntop), 2789 strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV) != 0) { 2790 error("channel_setup_fwd_listener: getnameinfo failed"); 2791 continue; 2792 } 2793 /* Create a port to listen for the host. */ 2794 sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); 2795 if (sock < 0) { 2796 /* this is no error since kernel may not support ipv6 */ 2797 verbose("socket: %.100s", strerror(errno)); 2798 continue; 2799 } 2800 2801 channel_set_reuseaddr(sock); 2802 if (ai->ai_family == AF_INET6) 2803 sock_set_v6only(sock); 2804 2805 debug("Local forwarding listening on %s port %s.", 2806 ntop, strport); 2807 2808 /* Bind the socket to the address. */ 2809 if (bind(sock, ai->ai_addr, ai->ai_addrlen) < 0) { 2810 /* address can be in use ipv6 address is already bound */ 2811 if (!ai->ai_next) 2812 error("bind: %.100s", strerror(errno)); 2813 else 2814 verbose("bind: %.100s", strerror(errno)); 2815 2816 close(sock); 2817 continue; 2818 } 2819 /* Start listening for connections on the socket. */ 2820 if (listen(sock, SSH_LISTEN_BACKLOG) < 0) { 2821 error("listen: %.100s", strerror(errno)); 2822 close(sock); 2823 continue; 2824 } 2825 2826 /* 2827 * listen_port == 0 requests a dynamically allocated port - 2828 * record what we got. 2829 */ 2830 if (type == SSH_CHANNEL_RPORT_LISTENER && listen_port == 0 && 2831 allocated_listen_port != NULL && 2832 *allocated_listen_port == 0) { 2833 *allocated_listen_port = get_sock_port(sock, 1); 2834 debug("Allocated listen port %d", 2835 *allocated_listen_port); 2836 } 2837 2838 /* Allocate a channel number for the socket. */ 2839 /* explicitly test for hpn disabled option. if true use smaller window size */ 2840 if (hpn_disabled) 2841 c = channel_new("port listener", type, sock, sock, -1, 2842 CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT, 2843 0, "port listener", 1); 2844 else 2845 c = channel_new("port listener", type, sock, sock, -1, 2846 hpn_buffer_size, CHAN_TCP_PACKET_DEFAULT, 2847 0, "port listener", 1); 2848 c->path = xstrdup(host); 2849 c->host_port = port_to_connect; 2850 c->listening_port = listen_port; 2851 success = 1; 2852 } 2853 if (success == 0) 2854 error("channel_setup_fwd_listener: cannot listen to port: %d", 2855 listen_port); 2856 freeaddrinfo(aitop); 2857 return success; 2858 } 2859 2860 int 2861 channel_cancel_rport_listener(const char *host, u_short port) 2862 { 2863 u_int i; 2864 int found = 0; 2865 2866 for (i = 0; i < channels_alloc; i++) { 2867 Channel *c = channels[i]; 2868 2869 if (c != NULL && c->type == SSH_CHANNEL_RPORT_LISTENER && 2870 strcmp(c->path, host) == 0 && c->listening_port == port) { 2871 debug2("%s: close channel %d", __func__, i); 2872 channel_free(c); 2873 found = 1; 2874 } 2875 } 2876 2877 return (found); 2878 } 2879 2880 /* protocol local port fwd, used by ssh (and sshd in v1) */ 2881 int 2882 channel_setup_local_fwd_listener(const char *listen_host, u_short listen_port, 2883 const char *host_to_connect, u_short port_to_connect, int gateway_ports) 2884 { 2885 return channel_setup_fwd_listener(SSH_CHANNEL_PORT_LISTENER, 2886 listen_host, listen_port, NULL, host_to_connect, port_to_connect, 2887 gateway_ports); 2888 } 2889 2890 /* protocol v2 remote port fwd, used by sshd */ 2891 int 2892 channel_setup_remote_fwd_listener(const char *listen_address, 2893 u_short listen_port, int *allocated_listen_port, int gateway_ports) 2894 { 2895 return channel_setup_fwd_listener(SSH_CHANNEL_RPORT_LISTENER, 2896 listen_address, listen_port, allocated_listen_port, 2897 NULL, 0, gateway_ports); 2898 } 2899 2900 /* 2901 * Initiate forwarding of connections to port "port" on remote host through 2902 * the secure channel to host:port from local side. 2903 */ 2904 2905 int 2906 channel_request_remote_forwarding(const char *listen_host, u_short listen_port, 2907 const char *host_to_connect, u_short port_to_connect) 2908 { 2909 int type, success = 0; 2910 2911 /* Send the forward request to the remote side. */ 2912 if (compat20) { 2913 const char *address_to_bind; 2914 if (listen_host == NULL) { 2915 if (datafellows & SSH_BUG_RFWD_ADDR) 2916 address_to_bind = "127.0.0.1"; 2917 else 2918 address_to_bind = "localhost"; 2919 } else if (*listen_host == '\0' || 2920 strcmp(listen_host, "*") == 0) { 2921 if (datafellows & SSH_BUG_RFWD_ADDR) 2922 address_to_bind = "0.0.0.0"; 2923 else 2924 address_to_bind = ""; 2925 } else 2926 address_to_bind = listen_host; 2927 2928 packet_start(SSH2_MSG_GLOBAL_REQUEST); 2929 packet_put_cstring("tcpip-forward"); 2930 packet_put_char(1); /* boolean: want reply */ 2931 packet_put_cstring(address_to_bind); 2932 packet_put_int(listen_port); 2933 packet_send(); 2934 packet_write_wait(); 2935 /* Assume that server accepts the request */ 2936 success = 1; 2937 } else { 2938 packet_start(SSH_CMSG_PORT_FORWARD_REQUEST); 2939 packet_put_int(listen_port); 2940 packet_put_cstring(host_to_connect); 2941 packet_put_int(port_to_connect); 2942 packet_send(); 2943 packet_write_wait(); 2944 2945 /* Wait for response from the remote side. */ 2946 type = packet_read(); 2947 switch (type) { 2948 case SSH_SMSG_SUCCESS: 2949 success = 1; 2950 break; 2951 case SSH_SMSG_FAILURE: 2952 break; 2953 default: 2954 /* Unknown packet */ 2955 packet_disconnect("Protocol error for port forward request:" 2956 "received packet type %d.", type); 2957 } 2958 } 2959 if (success) { 2960 /* Record that connection to this host/port is permitted. */ 2961 permitted_opens = xrealloc(permitted_opens, 2962 num_permitted_opens + 1, sizeof(*permitted_opens)); 2963 permitted_opens[num_permitted_opens].host_to_connect = xstrdup(host_to_connect); 2964 permitted_opens[num_permitted_opens].port_to_connect = port_to_connect; 2965 permitted_opens[num_permitted_opens].listen_port = listen_port; 2966 num_permitted_opens++; 2967 } 2968 return (success ? 0 : -1); 2969 } 2970 2971 /* 2972 * Request cancellation of remote forwarding of connection host:port from 2973 * local side. 2974 */ 2975 void 2976 channel_request_rforward_cancel(const char *host, u_short port) 2977 { 2978 int i; 2979 2980 if (!compat20) 2981 return; 2982 2983 for (i = 0; i < num_permitted_opens; i++) { 2984 if (permitted_opens[i].host_to_connect != NULL && 2985 permitted_opens[i].listen_port == port) 2986 break; 2987 } 2988 if (i >= num_permitted_opens) { 2989 debug("%s: requested forward not found", __func__); 2990 return; 2991 } 2992 packet_start(SSH2_MSG_GLOBAL_REQUEST); 2993 packet_put_cstring("cancel-tcpip-forward"); 2994 packet_put_char(0); 2995 packet_put_cstring(host == NULL ? "" : host); 2996 packet_put_int(port); 2997 packet_send(); 2998 2999 permitted_opens[i].listen_port = 0; 3000 permitted_opens[i].port_to_connect = 0; 3001 xfree(permitted_opens[i].host_to_connect); 3002 permitted_opens[i].host_to_connect = NULL; 3003 } 3004 3005 /* 3006 * This is called after receiving CHANNEL_FORWARDING_REQUEST. This initates 3007 * listening for the port, and sends back a success reply (or disconnect 3008 * message if there was an error). 3009 */ 3010 int 3011 channel_input_port_forward_request(int is_root, int gateway_ports) 3012 { 3013 u_short port, host_port; 3014 int success = 0; 3015 char *hostname; 3016 3017 /* Get arguments from the packet. */ 3018 port = packet_get_int(); 3019 hostname = packet_get_string(NULL); 3020 host_port = packet_get_int(); 3021 3022 #ifndef HAVE_CYGWIN 3023 /* 3024 * Check that an unprivileged user is not trying to forward a 3025 * privileged port. 3026 */ 3027 if (port < IPPORT_RESERVED && !is_root) 3028 packet_disconnect( 3029 "Requested forwarding of port %d but user is not root.", 3030 port); 3031 if (host_port == 0) 3032 packet_disconnect("Dynamic forwarding denied."); 3033 #endif 3034 3035 /* Initiate forwarding */ 3036 success = channel_setup_local_fwd_listener(NULL, port, hostname, 3037 host_port, gateway_ports); 3038 3039 /* Free the argument string. */ 3040 xfree(hostname); 3041 3042 return (success ? 0 : -1); 3043 } 3044 3045 /* 3046 * Permits opening to any host/port if permitted_opens[] is empty. This is 3047 * usually called by the server, because the user could connect to any port 3048 * anyway, and the server has no way to know but to trust the client anyway. 3049 */ 3050 void 3051 channel_permit_all_opens(void) 3052 { 3053 if (num_permitted_opens == 0) 3054 all_opens_permitted = 1; 3055 } 3056 3057 void 3058 channel_add_permitted_opens(char *host, int port) 3059 { 3060 debug("allow port forwarding to host %s port %d", host, port); 3061 3062 permitted_opens = xrealloc(permitted_opens, 3063 num_permitted_opens + 1, sizeof(*permitted_opens)); 3064 permitted_opens[num_permitted_opens].host_to_connect = xstrdup(host); 3065 permitted_opens[num_permitted_opens].port_to_connect = port; 3066 num_permitted_opens++; 3067 3068 all_opens_permitted = 0; 3069 } 3070 3071 int 3072 channel_add_adm_permitted_opens(char *host, int port) 3073 { 3074 debug("config allows port forwarding to host %s port %d", host, port); 3075 3076 permitted_adm_opens = xrealloc(permitted_adm_opens, 3077 num_adm_permitted_opens + 1, sizeof(*permitted_adm_opens)); 3078 permitted_adm_opens[num_adm_permitted_opens].host_to_connect 3079 = xstrdup(host); 3080 permitted_adm_opens[num_adm_permitted_opens].port_to_connect = port; 3081 return ++num_adm_permitted_opens; 3082 } 3083 3084 void 3085 channel_clear_permitted_opens(void) 3086 { 3087 int i; 3088 3089 for (i = 0; i < num_permitted_opens; i++) 3090 if (permitted_opens[i].host_to_connect != NULL) 3091 xfree(permitted_opens[i].host_to_connect); 3092 if (num_permitted_opens > 0) { 3093 xfree(permitted_opens); 3094 permitted_opens = NULL; 3095 } 3096 num_permitted_opens = 0; 3097 } 3098 3099 void 3100 channel_clear_adm_permitted_opens(void) 3101 { 3102 int i; 3103 3104 for (i = 0; i < num_adm_permitted_opens; i++) 3105 if (permitted_adm_opens[i].host_to_connect != NULL) 3106 xfree(permitted_adm_opens[i].host_to_connect); 3107 if (num_adm_permitted_opens > 0) { 3108 xfree(permitted_adm_opens); 3109 permitted_adm_opens = NULL; 3110 } 3111 num_adm_permitted_opens = 0; 3112 } 3113 3114 void 3115 channel_print_adm_permitted_opens(void) 3116 { 3117 int i; 3118 3119 printf("permitopen"); 3120 if (num_adm_permitted_opens == 0) { 3121 printf(" any\n"); 3122 return; 3123 } 3124 for (i = 0; i < num_adm_permitted_opens; i++) 3125 if (permitted_adm_opens[i].host_to_connect != NULL) 3126 printf(" %s:%d", permitted_adm_opens[i].host_to_connect, 3127 permitted_adm_opens[i].port_to_connect); 3128 printf("\n"); 3129 } 3130 3131 /* Try to start non-blocking connect to next host in cctx list */ 3132 static int 3133 connect_next(struct channel_connect *cctx) 3134 { 3135 int sock, saved_errno; 3136 char ntop[NI_MAXHOST], strport[NI_MAXSERV]; 3137 3138 for (; cctx->ai; cctx->ai = cctx->ai->ai_next) { 3139 if (cctx->ai->ai_family != AF_INET && 3140 cctx->ai->ai_family != AF_INET6) 3141 continue; 3142 if (getnameinfo(cctx->ai->ai_addr, cctx->ai->ai_addrlen, 3143 ntop, sizeof(ntop), strport, sizeof(strport), 3144 NI_NUMERICHOST|NI_NUMERICSERV) != 0) { 3145 error("connect_next: getnameinfo failed"); 3146 continue; 3147 } 3148 if ((sock = socket(cctx->ai->ai_family, cctx->ai->ai_socktype, 3149 cctx->ai->ai_protocol)) == -1) { 3150 if (cctx->ai->ai_next == NULL) 3151 error("socket: %.100s", strerror(errno)); 3152 else 3153 verbose("socket: %.100s", strerror(errno)); 3154 continue; 3155 } 3156 if (set_nonblock(sock) == -1) 3157 fatal("%s: set_nonblock(%d)", __func__, sock); 3158 if (connect(sock, cctx->ai->ai_addr, 3159 cctx->ai->ai_addrlen) == -1 && errno != EINPROGRESS) { 3160 debug("connect_next: host %.100s ([%.100s]:%s): " 3161 "%.100s", cctx->host, ntop, strport, 3162 strerror(errno)); 3163 saved_errno = errno; 3164 close(sock); 3165 errno = saved_errno; 3166 continue; /* fail -- try next */ 3167 } 3168 debug("connect_next: host %.100s ([%.100s]:%s) " 3169 "in progress, fd=%d", cctx->host, ntop, strport, sock); 3170 cctx->ai = cctx->ai->ai_next; 3171 set_nodelay(sock); 3172 return sock; 3173 } 3174 return -1; 3175 } 3176 3177 static void 3178 channel_connect_ctx_free(struct channel_connect *cctx) 3179 { 3180 xfree(cctx->host); 3181 if (cctx->aitop) 3182 freeaddrinfo(cctx->aitop); 3183 bzero(cctx, sizeof(*cctx)); 3184 cctx->host = NULL; 3185 cctx->ai = cctx->aitop = NULL; 3186 } 3187 3188 /* Return CONNECTING channel to remote host, port */ 3189 static Channel * 3190 connect_to(const char *host, u_short port, char *ctype, char *rname) 3191 { 3192 struct addrinfo hints; 3193 int gaierr; 3194 int sock = -1; 3195 char strport[NI_MAXSERV]; 3196 struct channel_connect cctx; 3197 Channel *c; 3198 3199 memset(&cctx, 0, sizeof(cctx)); 3200 memset(&hints, 0, sizeof(hints)); 3201 hints.ai_family = IPv4or6; 3202 hints.ai_socktype = SOCK_STREAM; 3203 snprintf(strport, sizeof strport, "%d", port); 3204 if ((gaierr = getaddrinfo(host, strport, &hints, &cctx.aitop)) != 0) { 3205 error("connect_to %.100s: unknown host (%s)", host, 3206 ssh_gai_strerror(gaierr)); 3207 return NULL; 3208 } 3209 3210 cctx.host = xstrdup(host); 3211 cctx.port = port; 3212 cctx.ai = cctx.aitop; 3213 3214 if ((sock = connect_next(&cctx)) == -1) { 3215 error("connect to %.100s port %d failed: %s", 3216 host, port, strerror(errno)); 3217 channel_connect_ctx_free(&cctx); 3218 return NULL; 3219 } 3220 c = channel_new(ctype, SSH_CHANNEL_CONNECTING, sock, sock, -1, 3221 CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT, 0, rname, 1); 3222 c->connect_ctx = cctx; 3223 return c; 3224 } 3225 3226 Channel * 3227 channel_connect_by_listen_address(u_short listen_port, char *ctype, char *rname) 3228 { 3229 int i; 3230 3231 for (i = 0; i < num_permitted_opens; i++) { 3232 if (permitted_opens[i].host_to_connect != NULL && 3233 permitted_opens[i].listen_port == listen_port) { 3234 return connect_to( 3235 permitted_opens[i].host_to_connect, 3236 permitted_opens[i].port_to_connect, ctype, rname); 3237 } 3238 } 3239 error("WARNING: Server requests forwarding for unknown listen_port %d", 3240 listen_port); 3241 return NULL; 3242 } 3243 3244 /* Check if connecting to that port is permitted and connect. */ 3245 Channel * 3246 channel_connect_to(const char *host, u_short port, char *ctype, char *rname) 3247 { 3248 int i, permit, permit_adm = 1; 3249 3250 permit = all_opens_permitted; 3251 if (!permit) { 3252 for (i = 0; i < num_permitted_opens; i++) 3253 if (permitted_opens[i].host_to_connect != NULL && 3254 permitted_opens[i].port_to_connect == port && 3255 strcmp(permitted_opens[i].host_to_connect, host) == 0) 3256 permit = 1; 3257 } 3258 3259 if (num_adm_permitted_opens > 0) { 3260 permit_adm = 0; 3261 for (i = 0; i < num_adm_permitted_opens; i++) 3262 if (permitted_adm_opens[i].host_to_connect != NULL && 3263 permitted_adm_opens[i].port_to_connect == port && 3264 strcmp(permitted_adm_opens[i].host_to_connect, host) 3265 == 0) 3266 permit_adm = 1; 3267 } 3268 3269 if (!permit || !permit_adm) { 3270 logit("Received request to connect to host %.100s port %d, " 3271 "but the request was denied.", host, port); 3272 return NULL; 3273 } 3274 return connect_to(host, port, ctype, rname); 3275 } 3276 3277 void 3278 channel_send_window_changes(void) 3279 { 3280 u_int i; 3281 struct winsize ws; 3282 3283 for (i = 0; i < channels_alloc; i++) { 3284 if (channels[i] == NULL || !channels[i]->client_tty || 3285 channels[i]->type != SSH_CHANNEL_OPEN) 3286 continue; 3287 if (ioctl(channels[i]->rfd, TIOCGWINSZ, &ws) < 0) 3288 continue; 3289 channel_request_start(i, "window-change", 0); 3290 packet_put_int((u_int)ws.ws_col); 3291 packet_put_int((u_int)ws.ws_row); 3292 packet_put_int((u_int)ws.ws_xpixel); 3293 packet_put_int((u_int)ws.ws_ypixel); 3294 packet_send(); 3295 } 3296 } 3297 3298 /* -- X11 forwarding */ 3299 3300 /* 3301 * Creates an internet domain socket for listening for X11 connections. 3302 * Returns 0 and a suitable display number for the DISPLAY variable 3303 * stored in display_numberp , or -1 if an error occurs. 3304 */ 3305 int 3306 x11_create_display_inet(int x11_display_offset, int x11_use_localhost, 3307 int single_connection, u_int *display_numberp, int **chanids) 3308 { 3309 Channel *nc = NULL; 3310 int display_number, sock; 3311 u_short port; 3312 struct addrinfo hints, *ai, *aitop; 3313 char strport[NI_MAXSERV]; 3314 int gaierr, n, num_socks = 0, socks[NUM_SOCKS]; 3315 3316 if (chanids == NULL) 3317 return -1; 3318 3319 for (display_number = x11_display_offset; 3320 display_number < MAX_DISPLAYS; 3321 display_number++) { 3322 port = 6000 + display_number; 3323 memset(&hints, 0, sizeof(hints)); 3324 hints.ai_family = IPv4or6; 3325 hints.ai_flags = x11_use_localhost ? 0: AI_PASSIVE; 3326 hints.ai_socktype = SOCK_STREAM; 3327 snprintf(strport, sizeof strport, "%d", port); 3328 if ((gaierr = getaddrinfo(NULL, strport, &hints, &aitop)) != 0) { 3329 error("getaddrinfo: %.100s", ssh_gai_strerror(gaierr)); 3330 return -1; 3331 } 3332 for (ai = aitop; ai; ai = ai->ai_next) { 3333 if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6) 3334 continue; 3335 sock = socket(ai->ai_family, ai->ai_socktype, 3336 ai->ai_protocol); 3337 if (sock < 0) { 3338 if ((errno != EINVAL) && (errno != EAFNOSUPPORT) 3339 #ifdef EPFNOSUPPORT 3340 && (errno != EPFNOSUPPORT) 3341 #endif 3342 ) { 3343 error("socket: %.100s", strerror(errno)); 3344 freeaddrinfo(aitop); 3345 return -1; 3346 } else { 3347 debug("x11_create_display_inet: Socket family %d not supported", 3348 ai->ai_family); 3349 continue; 3350 } 3351 } 3352 if (ai->ai_family == AF_INET6) 3353 sock_set_v6only(sock); 3354 if (x11_use_localhost) 3355 channel_set_reuseaddr(sock); 3356 if (bind(sock, ai->ai_addr, ai->ai_addrlen) < 0) { 3357 debug2("bind port %d: %.100s", port, strerror(errno)); 3358 close(sock); 3359 3360 for (n = 0; n < num_socks; n++) { 3361 close(socks[n]); 3362 } 3363 num_socks = 0; 3364 break; 3365 } 3366 socks[num_socks++] = sock; 3367 if (num_socks == NUM_SOCKS) 3368 break; 3369 } 3370 freeaddrinfo(aitop); 3371 if (num_socks > 0) 3372 break; 3373 } 3374 if (display_number >= MAX_DISPLAYS) { 3375 error("Failed to allocate internet-domain X11 display socket."); 3376 return -1; 3377 } 3378 /* Start listening for connections on the socket. */ 3379 for (n = 0; n < num_socks; n++) { 3380 sock = socks[n]; 3381 if (listen(sock, SSH_LISTEN_BACKLOG) < 0) { 3382 error("listen: %.100s", strerror(errno)); 3383 close(sock); 3384 return -1; 3385 } 3386 } 3387 3388 /* Allocate a channel for each socket. */ 3389 *chanids = xcalloc(num_socks + 1, sizeof(**chanids)); 3390 for (n = 0; n < num_socks; n++) { 3391 sock = socks[n]; 3392 /* Is this really necassary? */ 3393 if (hpn_disabled) 3394 nc = channel_new("x11 listener", 3395 SSH_CHANNEL_X11_LISTENER, sock, sock, -1, 3396 CHAN_X11_WINDOW_DEFAULT, CHAN_X11_PACKET_DEFAULT, 3397 0, "X11 inet listener", 1); 3398 else 3399 nc = channel_new("x11 listener", 3400 SSH_CHANNEL_X11_LISTENER, sock, sock, -1, 3401 hpn_buffer_size, CHAN_X11_PACKET_DEFAULT, 3402 0, "X11 inet listener", 1); 3403 nc->single_connection = single_connection; 3404 (*chanids)[n] = nc->self; 3405 } 3406 (*chanids)[n] = -1; 3407 3408 /* Return the display number for the DISPLAY environment variable. */ 3409 *display_numberp = display_number; 3410 return (0); 3411 } 3412 3413 static int 3414 connect_local_xsocket_path(const char *pathname) 3415 { 3416 int sock; 3417 struct sockaddr_un addr; 3418 3419 sock = socket(AF_UNIX, SOCK_STREAM, 0); 3420 if (sock < 0) 3421 error("socket: %.100s", strerror(errno)); 3422 memset(&addr, 0, sizeof(addr)); 3423 addr.sun_family = AF_UNIX; 3424 strlcpy(addr.sun_path, pathname, sizeof addr.sun_path); 3425 if (connect(sock, (struct sockaddr *)&addr, sizeof(addr)) == 0) 3426 return sock; 3427 close(sock); 3428 error("connect %.100s: %.100s", addr.sun_path, strerror(errno)); 3429 return -1; 3430 } 3431 3432 static int 3433 connect_local_xsocket(u_int dnr) 3434 { 3435 char buf[1024]; 3436 snprintf(buf, sizeof buf, _PATH_UNIX_X, dnr); 3437 return connect_local_xsocket_path(buf); 3438 } 3439 3440 int 3441 x11_connect_display(void) 3442 { 3443 u_int display_number; 3444 const char *display; 3445 char buf[1024], *cp; 3446 struct addrinfo hints, *ai, *aitop; 3447 char strport[NI_MAXSERV]; 3448 int gaierr, sock = 0; 3449 3450 /* Try to open a socket for the local X server. */ 3451 display = getenv("DISPLAY"); 3452 if (!display) { 3453 error("DISPLAY not set."); 3454 return -1; 3455 } 3456 /* 3457 * Now we decode the value of the DISPLAY variable and make a 3458 * connection to the real X server. 3459 */ 3460 3461 /* Check if the display is from launchd. */ 3462 #ifdef __APPLE__ 3463 if (strncmp(display, "/tmp/launch", 11) == 0) { 3464 sock = connect_local_xsocket_path(display); 3465 if (sock < 0) 3466 return -1; 3467 3468 /* OK, we now have a connection to the display. */ 3469 return sock; 3470 } 3471 #endif 3472 /* 3473 * Check if it is a unix domain socket. Unix domain displays are in 3474 * one of the following formats: unix:d[.s], :d[.s], ::d[.s] 3475 */ 3476 if (strncmp(display, "unix:", 5) == 0 || 3477 display[0] == ':') { 3478 /* Connect to the unix domain socket. */ 3479 if (sscanf(strrchr(display, ':') + 1, "%u", &display_number) != 1) { 3480 error("Could not parse display number from DISPLAY: %.100s", 3481 display); 3482 return -1; 3483 } 3484 /* Create a socket. */ 3485 sock = connect_local_xsocket(display_number); 3486 if (sock < 0) 3487 return -1; 3488 3489 /* OK, we now have a connection to the display. */ 3490 return sock; 3491 } 3492 /* 3493 * Connect to an inet socket. The DISPLAY value is supposedly 3494 * hostname:d[.s], where hostname may also be numeric IP address. 3495 */ 3496 strlcpy(buf, display, sizeof(buf)); 3497 cp = strchr(buf, ':'); 3498 if (!cp) { 3499 error("Could not find ':' in DISPLAY: %.100s", display); 3500 return -1; 3501 } 3502 *cp = 0; 3503 /* buf now contains the host name. But first we parse the display number. */ 3504 if (sscanf(cp + 1, "%u", &display_number) != 1) { 3505 error("Could not parse display number from DISPLAY: %.100s", 3506 display); 3507 return -1; 3508 } 3509 3510 /* Look up the host address */ 3511 memset(&hints, 0, sizeof(hints)); 3512 hints.ai_family = IPv4or6; 3513 hints.ai_socktype = SOCK_STREAM; 3514 snprintf(strport, sizeof strport, "%u", 6000 + display_number); 3515 if ((gaierr = getaddrinfo(buf, strport, &hints, &aitop)) != 0) { 3516 error("%.100s: unknown host. (%s)", buf, 3517 ssh_gai_strerror(gaierr)); 3518 return -1; 3519 } 3520 for (ai = aitop; ai; ai = ai->ai_next) { 3521 /* Create a socket. */ 3522 sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); 3523 if (sock < 0) { 3524 debug2("socket: %.100s", strerror(errno)); 3525 continue; 3526 } 3527 /* Connect it to the display. */ 3528 if (connect(sock, ai->ai_addr, ai->ai_addrlen) < 0) { 3529 debug2("connect %.100s port %u: %.100s", buf, 3530 6000 + display_number, strerror(errno)); 3531 close(sock); 3532 continue; 3533 } 3534 /* Success */ 3535 break; 3536 } 3537 freeaddrinfo(aitop); 3538 if (!ai) { 3539 error("connect %.100s port %u: %.100s", buf, 6000 + display_number, 3540 strerror(errno)); 3541 return -1; 3542 } 3543 set_nodelay(sock); 3544 return sock; 3545 } 3546 3547 /* 3548 * This is called when SSH_SMSG_X11_OPEN is received. The packet contains 3549 * the remote channel number. We should do whatever we want, and respond 3550 * with either SSH_MSG_OPEN_CONFIRMATION or SSH_MSG_OPEN_FAILURE. 3551 */ 3552 3553 /* ARGSUSED */ 3554 void 3555 x11_input_open(int type, u_int32_t seq, void *ctxt) 3556 { 3557 Channel *c = NULL; 3558 int remote_id, sock = 0; 3559 char *remote_host; 3560 3561 debug("Received X11 open request."); 3562 3563 remote_id = packet_get_int(); 3564 3565 if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) { 3566 remote_host = packet_get_string(NULL); 3567 } else { 3568 remote_host = xstrdup("unknown (remote did not supply name)"); 3569 } 3570 packet_check_eom(); 3571 3572 /* Obtain a connection to the real X display. */ 3573 sock = x11_connect_display(); 3574 if (sock != -1) { 3575 /* Allocate a channel for this connection. */ 3576 c = channel_new("connected x11 socket", 3577 SSH_CHANNEL_X11_OPEN, sock, sock, -1, 0, 0, 0, 3578 remote_host, 1); 3579 c->remote_id = remote_id; 3580 c->force_drain = 1; 3581 } 3582 xfree(remote_host); 3583 if (c == NULL) { 3584 /* Send refusal to the remote host. */ 3585 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); 3586 packet_put_int(remote_id); 3587 } else { 3588 /* Send a confirmation to the remote host. */ 3589 packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION); 3590 packet_put_int(remote_id); 3591 packet_put_int(c->self); 3592 } 3593 packet_send(); 3594 } 3595 3596 /* dummy protocol handler that denies SSH-1 requests (agent/x11) */ 3597 /* ARGSUSED */ 3598 void 3599 deny_input_open(int type, u_int32_t seq, void *ctxt) 3600 { 3601 int rchan = packet_get_int(); 3602 3603 switch (type) { 3604 case SSH_SMSG_AGENT_OPEN: 3605 error("Warning: ssh server tried agent forwarding."); 3606 break; 3607 case SSH_SMSG_X11_OPEN: 3608 error("Warning: ssh server tried X11 forwarding."); 3609 break; 3610 default: 3611 error("deny_input_open: type %d", type); 3612 break; 3613 } 3614 error("Warning: this is probably a break-in attempt by a malicious server."); 3615 packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); 3616 packet_put_int(rchan); 3617 packet_send(); 3618 } 3619 3620 /* 3621 * Requests forwarding of X11 connections, generates fake authentication 3622 * data, and enables authentication spoofing. 3623 * This should be called in the client only. 3624 */ 3625 void 3626 x11_request_forwarding_with_spoofing(int client_session_id, const char *disp, 3627 const char *proto, const char *data, int want_reply) 3628 { 3629 u_int data_len = (u_int) strlen(data) / 2; 3630 u_int i, value; 3631 char *new_data; 3632 int screen_number; 3633 const char *cp; 3634 u_int32_t rnd = 0; 3635 3636 if (x11_saved_display == NULL) 3637 x11_saved_display = xstrdup(disp); 3638 else if (strcmp(disp, x11_saved_display) != 0) { 3639 error("x11_request_forwarding_with_spoofing: different " 3640 "$DISPLAY already forwarded"); 3641 return; 3642 } 3643 3644 cp = strchr(disp, ':'); 3645 if (cp) 3646 cp = strchr(cp, '.'); 3647 if (cp) 3648 screen_number = (u_int)strtonum(cp + 1, 0, 400, NULL); 3649 else 3650 screen_number = 0; 3651 3652 if (x11_saved_proto == NULL) { 3653 /* Save protocol name. */ 3654 x11_saved_proto = xstrdup(proto); 3655 /* 3656 * Extract real authentication data and generate fake data 3657 * of the same length. 3658 */ 3659 x11_saved_data = xmalloc(data_len); 3660 x11_fake_data = xmalloc(data_len); 3661 for (i = 0; i < data_len; i++) { 3662 if (sscanf(data + 2 * i, "%2x", &value) != 1) 3663 fatal("x11_request_forwarding: bad " 3664 "authentication data: %.100s", data); 3665 if (i % 4 == 0) 3666 rnd = arc4random(); 3667 x11_saved_data[i] = value; 3668 x11_fake_data[i] = rnd & 0xff; 3669 rnd >>= 8; 3670 } 3671 x11_saved_data_len = data_len; 3672 x11_fake_data_len = data_len; 3673 } 3674 3675 /* Convert the fake data into hex. */ 3676 new_data = tohex(x11_fake_data, data_len); 3677 3678 /* Send the request packet. */ 3679 if (compat20) { 3680 channel_request_start(client_session_id, "x11-req", want_reply); 3681 packet_put_char(0); /* XXX bool single connection */ 3682 } else { 3683 packet_start(SSH_CMSG_X11_REQUEST_FORWARDING); 3684 } 3685 packet_put_cstring(proto); 3686 packet_put_cstring(new_data); 3687 packet_put_int(screen_number); 3688 packet_send(); 3689 packet_write_wait(); 3690 xfree(new_data); 3691 } 3692 3693 3694 /* -- agent forwarding */ 3695 3696 /* Sends a message to the server to request authentication fd forwarding. */ 3697 3698 void 3699 auth_request_forwarding(void) 3700 { 3701 packet_start(SSH_CMSG_AGENT_REQUEST_FORWARDING); 3702 packet_send(); 3703 packet_write_wait(); 3704 } 3705