Fix some char * vs unsigned char * conversions, plus a stylistic nit, both
[u/mdw/putty] / proxy.c
1 /*
2 * Network proxy abstraction in PuTTY
3 *
4 * A proxy layer, if necessary, wedges itself between the network
5 * code and the higher level backend.
6 */
7
8 #include <assert.h>
9 #include <ctype.h>
10 #include <string.h>
11
12 #define DEFINE_PLUG_METHOD_MACROS
13 #include "putty.h"
14 #include "network.h"
15 #include "proxy.h"
16
17 #define do_proxy_dns \
18 (cfg.proxy_dns == 2 || \
19 (cfg.proxy_dns == 1 && cfg.proxy_type != PROXY_SOCKS))
20
21 /*
22 * Call this when proxy negotiation is complete, so that this
23 * socket can begin working normally.
24 */
25 void proxy_activate (Proxy_Socket p)
26 {
27 void *data;
28 int len;
29 long output_before, output_after;
30
31 p->state = PROXY_STATE_ACTIVE;
32
33 /* we want to ignore new receive events until we have sent
34 * all of our buffered receive data.
35 */
36 sk_set_frozen(p->sub_socket, 1);
37
38 /* how many bytes of output have we buffered? */
39 output_before = bufchain_size(&p->pending_oob_output_data) +
40 bufchain_size(&p->pending_output_data);
41 /* and keep track of how many bytes do not get sent. */
42 output_after = 0;
43
44 /* send buffered OOB writes */
45 while (bufchain_size(&p->pending_oob_output_data) > 0) {
46 bufchain_prefix(&p->pending_oob_output_data, &data, &len);
47 output_after += sk_write_oob(p->sub_socket, data, len);
48 bufchain_consume(&p->pending_oob_output_data, len);
49 }
50
51 /* send buffered normal writes */
52 while (bufchain_size(&p->pending_output_data) > 0) {
53 bufchain_prefix(&p->pending_output_data, &data, &len);
54 output_after += sk_write(p->sub_socket, data, len);
55 bufchain_consume(&p->pending_output_data, len);
56 }
57
58 /* if we managed to send any data, let the higher levels know. */
59 if (output_after < output_before)
60 plug_sent(p->plug, output_after);
61
62 /* if we were asked to flush the output during
63 * the proxy negotiation process, do so now.
64 */
65 if (p->pending_flush) sk_flush(p->sub_socket);
66
67 /* if the backend wanted the socket unfrozen, try to unfreeze.
68 * our set_frozen handler will flush buffered receive data before
69 * unfreezing the actual underlying socket.
70 */
71 if (!p->freeze)
72 sk_set_frozen((Socket)p, 0);
73 }
74
75 /* basic proxy socket functions */
76
77 static Plug sk_proxy_plug (Socket s, Plug p)
78 {
79 Proxy_Socket ps = (Proxy_Socket) s;
80 Plug ret = ps->plug;
81 if (p)
82 ps->plug = p;
83 return ret;
84 }
85
86 static void sk_proxy_close (Socket s)
87 {
88 Proxy_Socket ps = (Proxy_Socket) s;
89
90 sk_close(ps->sub_socket);
91 sfree(ps);
92 }
93
94 static int sk_proxy_write (Socket s, char *data, int len)
95 {
96 Proxy_Socket ps = (Proxy_Socket) s;
97
98 if (ps->state != PROXY_STATE_ACTIVE) {
99 bufchain_add(&ps->pending_output_data, data, len);
100 return bufchain_size(&ps->pending_output_data);
101 }
102 return sk_write(ps->sub_socket, data, len);
103 }
104
105 static int sk_proxy_write_oob (Socket s, char *data, int len)
106 {
107 Proxy_Socket ps = (Proxy_Socket) s;
108
109 if (ps->state != PROXY_STATE_ACTIVE) {
110 bufchain_clear(&ps->pending_output_data);
111 bufchain_clear(&ps->pending_oob_output_data);
112 bufchain_add(&ps->pending_oob_output_data, data, len);
113 return len;
114 }
115 return sk_write_oob(ps->sub_socket, data, len);
116 }
117
118 static void sk_proxy_flush (Socket s)
119 {
120 Proxy_Socket ps = (Proxy_Socket) s;
121
122 if (ps->state != PROXY_STATE_ACTIVE) {
123 ps->pending_flush = 1;
124 return;
125 }
126 sk_flush(ps->sub_socket);
127 }
128
129 static void sk_proxy_set_private_ptr (Socket s, void *ptr)
130 {
131 Proxy_Socket ps = (Proxy_Socket) s;
132 sk_set_private_ptr(ps->sub_socket, ptr);
133 }
134
135 static void * sk_proxy_get_private_ptr (Socket s)
136 {
137 Proxy_Socket ps = (Proxy_Socket) s;
138 return sk_get_private_ptr(ps->sub_socket);
139 }
140
141 static void sk_proxy_set_frozen (Socket s, int is_frozen)
142 {
143 Proxy_Socket ps = (Proxy_Socket) s;
144
145 if (ps->state != PROXY_STATE_ACTIVE) {
146 ps->freeze = is_frozen;
147 return;
148 }
149
150 /* handle any remaining buffered recv data first */
151 if (bufchain_size(&ps->pending_input_data) > 0) {
152 ps->freeze = is_frozen;
153
154 /* loop while we still have buffered data, and while we are
155 * unfrozen. the plug_receive call in the loop could result
156 * in a call back into this function refreezing the socket,
157 * so we have to check each time.
158 */
159 while (!ps->freeze && bufchain_size(&ps->pending_input_data) > 0) {
160 void *data;
161 int len;
162 bufchain_prefix(&ps->pending_input_data, &data, &len);
163 plug_receive(ps->plug, 0, data, len);
164 bufchain_consume(&ps->pending_input_data, len);
165 }
166
167 /* if we're still frozen, we'll have to wait for another
168 * call from the backend to finish unbuffering the data.
169 */
170 if (ps->freeze) return;
171 }
172
173 sk_set_frozen(ps->sub_socket, is_frozen);
174 }
175
176 static char * sk_proxy_socket_error (Socket s)
177 {
178 Proxy_Socket ps = (Proxy_Socket) s;
179 if (ps->error != NULL || ps->sub_socket == NULL) {
180 return ps->error;
181 }
182 return sk_socket_error(ps->sub_socket);
183 }
184
185 /* basic proxy plug functions */
186
187 static int plug_proxy_closing (Plug p, char *error_msg,
188 int error_code, int calling_back)
189 {
190 Proxy_Plug pp = (Proxy_Plug) p;
191 Proxy_Socket ps = pp->proxy_socket;
192
193 if (ps->state != PROXY_STATE_ACTIVE) {
194 ps->closing_error_msg = error_msg;
195 ps->closing_error_code = error_code;
196 ps->closing_calling_back = calling_back;
197 return ps->negotiate(ps, PROXY_CHANGE_CLOSING);
198 }
199 return plug_closing(ps->plug, error_msg,
200 error_code, calling_back);
201 }
202
203 static int plug_proxy_receive (Plug p, int urgent, char *data, int len)
204 {
205 Proxy_Plug pp = (Proxy_Plug) p;
206 Proxy_Socket ps = pp->proxy_socket;
207
208 if (ps->state != PROXY_STATE_ACTIVE) {
209 /* we will lose the urgentness of this data, but since most,
210 * if not all, of this data will be consumed by the negotiation
211 * process, hopefully it won't affect the protocol above us
212 */
213 bufchain_add(&ps->pending_input_data, data, len);
214 ps->receive_urgent = urgent;
215 ps->receive_data = data;
216 ps->receive_len = len;
217 return ps->negotiate(ps, PROXY_CHANGE_RECEIVE);
218 }
219 return plug_receive(ps->plug, urgent, data, len);
220 }
221
222 static void plug_proxy_sent (Plug p, int bufsize)
223 {
224 Proxy_Plug pp = (Proxy_Plug) p;
225 Proxy_Socket ps = pp->proxy_socket;
226
227 if (ps->state != PROXY_STATE_ACTIVE) {
228 ps->sent_bufsize = bufsize;
229 ps->negotiate(ps, PROXY_CHANGE_SENT);
230 return;
231 }
232 plug_sent(ps->plug, bufsize);
233 }
234
235 static int plug_proxy_accepting (Plug p, void *sock)
236 {
237 Proxy_Plug pp = (Proxy_Plug) p;
238 Proxy_Socket ps = pp->proxy_socket;
239
240 if (ps->state != PROXY_STATE_ACTIVE) {
241 ps->accepting_sock = sock;
242 return ps->negotiate(ps, PROXY_CHANGE_ACCEPTING);
243 }
244 return plug_accepting(ps->plug, sock);
245 }
246
247 /*
248 * This function can accept a NULL pointer as `addr', in which case
249 * it will only check the host name.
250 */
251 static int proxy_for_destination (SockAddr addr, char * hostname, int port)
252 {
253 int s = 0, e = 0;
254 char hostip[64];
255 int hostip_len, hostname_len;
256 char * exclude_list;
257
258 /*
259 * Check the host name and IP against the hard-coded
260 * representations of `localhost'.
261 */
262 if (!cfg.even_proxy_localhost &&
263 (sk_hostname_is_local(hostname) ||
264 (addr && sk_address_is_local(addr))))
265 return 0; /* do not proxy */
266
267 /* we want a string representation of the IP address for comparisons */
268 if (addr) {
269 sk_getaddr(addr, hostip, 64);
270 hostip_len = strlen(hostip);
271 }
272
273 hostname_len = strlen(hostname);
274
275 exclude_list = cfg.proxy_exclude_list;
276
277 /* now parse the exclude list, and see if either our IP
278 * or hostname matches anything in it.
279 */
280
281 while (exclude_list[s]) {
282 while (exclude_list[s] &&
283 (isspace(exclude_list[s]) ||
284 exclude_list[s] == ',')) s++;
285
286 if (!exclude_list[s]) break;
287
288 e = s;
289
290 while (exclude_list[e] &&
291 (isalnum(exclude_list[e]) ||
292 exclude_list[e] == '-' ||
293 exclude_list[e] == '.' ||
294 exclude_list[e] == '*')) e++;
295
296 if (exclude_list[s] == '*') {
297 /* wildcard at beginning of entry */
298
299 if ((addr && strnicmp(hostip + hostip_len - (e - s - 1),
300 exclude_list + s + 1, e - s - 1) == 0) ||
301 strnicmp(hostname + hostname_len - (e - s - 1),
302 exclude_list + s + 1, e - s - 1) == 0)
303 return 0; /* IP/hostname range excluded. do not use proxy. */
304
305 } else if (exclude_list[e-1] == '*') {
306 /* wildcard at end of entry */
307
308 if ((addr && strnicmp(hostip, exclude_list + s, e - s - 1) == 0) ||
309 strnicmp(hostname, exclude_list + s, e - s - 1) == 0)
310 return 0; /* IP/hostname range excluded. do not use proxy. */
311
312 } else {
313 /* no wildcard at either end, so let's try an absolute
314 * match (ie. a specific IP)
315 */
316
317 if (addr && stricmp(hostip, exclude_list + s) == 0)
318 return 0; /* IP/hostname excluded. do not use proxy. */
319 if (stricmp(hostname, exclude_list + s) == 0)
320 return 0; /* IP/hostname excluded. do not use proxy. */
321 }
322
323 s = e;
324
325 /* Make sure we really have reached the next comma or end-of-string */
326 while (exclude_list[s] &&
327 !isspace(exclude_list[s]) &&
328 exclude_list[s] != ',') s++;
329 }
330
331 /* no matches in the exclude list, so use the proxy */
332 return 1;
333 }
334
335 SockAddr name_lookup(char *host, int port, char **canonicalname)
336 {
337 if (cfg.proxy_type != PROXY_NONE &&
338 do_proxy_dns && proxy_for_destination(NULL, host, port)) {
339 *canonicalname = dupstr(host);
340 return sk_nonamelookup(host);
341 }
342
343 return sk_namelookup(host, canonicalname);
344 }
345
346 Socket new_connection(SockAddr addr, char *hostname,
347 int port, int privport,
348 int oobinline, int nodelay, Plug plug)
349 {
350 static const struct socket_function_table socket_fn_table = {
351 sk_proxy_plug,
352 sk_proxy_close,
353 sk_proxy_write,
354 sk_proxy_write_oob,
355 sk_proxy_flush,
356 sk_proxy_set_private_ptr,
357 sk_proxy_get_private_ptr,
358 sk_proxy_set_frozen,
359 sk_proxy_socket_error
360 };
361
362 static const struct plug_function_table plug_fn_table = {
363 plug_proxy_closing,
364 plug_proxy_receive,
365 plug_proxy_sent,
366 plug_proxy_accepting
367 };
368
369 if (cfg.proxy_type != PROXY_NONE &&
370 proxy_for_destination(addr, hostname, port))
371 {
372 Proxy_Socket ret;
373 Proxy_Plug pplug;
374 SockAddr proxy_addr;
375 char *proxy_canonical_name, *err;
376
377 ret = smalloc(sizeof(struct Socket_proxy_tag));
378 ret->fn = &socket_fn_table;
379 ret->plug = plug;
380 ret->remote_addr = addr;
381 ret->remote_port = port;
382
383 ret->error = NULL;
384 ret->pending_flush = 0;
385 ret->freeze = 0;
386
387 bufchain_init(&ret->pending_input_data);
388 bufchain_init(&ret->pending_output_data);
389 bufchain_init(&ret->pending_oob_output_data);
390
391 ret->sub_socket = NULL;
392 ret->state = PROXY_STATE_NEW;
393 ret->negotiate = NULL;
394
395 if (cfg.proxy_type == PROXY_HTTP) {
396 ret->negotiate = proxy_http_negotiate;
397 } else if (cfg.proxy_type == PROXY_SOCKS) {
398 if (cfg.proxy_socks_version == 4)
399 ret->negotiate = proxy_socks4_negotiate;
400 else
401 ret->negotiate = proxy_socks5_negotiate;
402 } else if (cfg.proxy_type == PROXY_TELNET) {
403 ret->negotiate = proxy_telnet_negotiate;
404 } else {
405 ret->error = "Proxy error: Unknown proxy method";
406 return (Socket) ret;
407 }
408
409 /* create the proxy plug to map calls from the actual
410 * socket into our proxy socket layer */
411 pplug = smalloc(sizeof(struct Plug_proxy_tag));
412 pplug->fn = &plug_fn_table;
413 pplug->proxy_socket = ret;
414
415 /* look-up proxy */
416 proxy_addr = sk_namelookup(cfg.proxy_host,
417 &proxy_canonical_name);
418 if ((err = sk_addr_error(proxy_addr)) != NULL) {
419 ret->error = "Proxy error: Unable to resolve proxy host name";
420 return (Socket)ret;
421 }
422 sfree(proxy_canonical_name);
423
424 /* create the actual socket we will be using,
425 * connected to our proxy server and port.
426 */
427 ret->sub_socket = sk_new(proxy_addr, cfg.proxy_port,
428 privport, oobinline,
429 nodelay, (Plug) pplug);
430 if (sk_socket_error(ret->sub_socket) != NULL)
431 return (Socket) ret;
432
433 sk_addr_free(proxy_addr);
434
435 /* start the proxy negotiation process... */
436 sk_set_frozen(ret->sub_socket, 0);
437 ret->negotiate(ret, PROXY_CHANGE_NEW);
438
439 return (Socket) ret;
440 }
441
442 /* no proxy, so just return the direct socket */
443 return sk_new(addr, port, privport, oobinline, nodelay, plug);
444 }
445
446 Socket new_listener(char *srcaddr, int port, Plug plug, int local_host_only)
447 {
448 /* TODO: SOCKS (and potentially others) support inbound
449 * TODO: connections via the proxy. support them.
450 */
451
452 return sk_newlistener(srcaddr, port, plug, local_host_only);
453 }
454
455 /* ----------------------------------------------------------------------
456 * HTTP CONNECT proxy type.
457 */
458
459 static int get_line_end (char * data, int len)
460 {
461 int off = 0;
462
463 while (off < len)
464 {
465 if (data[off] == '\n') {
466 /* we have a newline */
467 off++;
468
469 /* is that the only thing on this line? */
470 if (off <= 2) return off;
471
472 /* if not, then there is the possibility that this header
473 * continues onto the next line, if it starts with a space
474 * or a tab.
475 */
476
477 if (off + 1 < len &&
478 data[off+1] != ' ' &&
479 data[off+1] != '\t') return off;
480
481 /* the line does continue, so we have to keep going
482 * until we see an the header's "real" end of line.
483 */
484 off++;
485 }
486
487 off++;
488 }
489
490 return -1;
491 }
492
493 int proxy_http_negotiate (Proxy_Socket p, int change)
494 {
495 if (p->state == PROXY_STATE_NEW) {
496 /* we are just beginning the proxy negotiate process,
497 * so we'll send off the initial bits of the request.
498 * for this proxy method, it's just a simple HTTP
499 * request
500 */
501 char *buf, dest[512];
502
503 sk_getaddr(p->remote_addr, dest, lenof(dest));
504
505 buf = dupprintf("CONNECT %s:%i HTTP/1.1\r\nHost: %s:%i\r\n",
506 dest, p->remote_port, dest, p->remote_port);
507 sk_write(p->sub_socket, buf, strlen(buf));
508 sfree(buf);
509
510 if (cfg.proxy_username[0] || cfg.proxy_password[0]) {
511 char buf[sizeof(cfg.proxy_username)+sizeof(cfg.proxy_password)];
512 char buf2[sizeof(buf)*4/3 + 100];
513 int i, j, len;
514 sprintf(buf, "%s:%s", cfg.proxy_username, cfg.proxy_password);
515 len = strlen(buf);
516 sprintf(buf2, "Proxy-Authorization: basic ");
517 for (i = 0, j = strlen(buf2); i < len; i += 3, j += 4)
518 base64_encode_atom((unsigned char *)(buf+i),
519 (len-i > 3 ? 3 : len-i), buf2+j);
520 strcpy(buf2+j, "\r\n");
521 sk_write(p->sub_socket, buf2, strlen(buf2));
522 }
523
524 sk_write(p->sub_socket, "\r\n", 2);
525
526 p->state = 1;
527 return 0;
528 }
529
530 if (change == PROXY_CHANGE_CLOSING) {
531 /* if our proxy negotiation process involves closing and opening
532 * new sockets, then we would want to intercept this closing
533 * callback when we were expecting it. if we aren't anticipating
534 * a socket close, then some error must have occurred. we'll
535 * just pass those errors up to the backend.
536 */
537 return plug_closing(p->plug, p->closing_error_msg,
538 p->closing_error_code,
539 p->closing_calling_back);
540 }
541
542 if (change == PROXY_CHANGE_SENT) {
543 /* some (or all) of what we wrote to the proxy was sent.
544 * we don't do anything new, however, until we receive the
545 * proxy's response. we might want to set a timer so we can
546 * timeout the proxy negotiation after a while...
547 */
548 return 0;
549 }
550
551 if (change == PROXY_CHANGE_ACCEPTING) {
552 /* we should _never_ see this, as we are using our socket to
553 * connect to a proxy, not accepting inbound connections.
554 * what should we do? close the socket with an appropriate
555 * error message?
556 */
557 return plug_accepting(p->plug, p->accepting_sock);
558 }
559
560 if (change == PROXY_CHANGE_RECEIVE) {
561 /* we have received data from the underlying socket, which
562 * we'll need to parse, process, and respond to appropriately.
563 */
564
565 char *data, *datap;
566 int len;
567 int eol;
568
569 if (p->state == 1) {
570
571 int min_ver, maj_ver, status;
572
573 /* get the status line */
574 len = bufchain_size(&p->pending_input_data);
575 assert(len > 0); /* or we wouldn't be here */
576 data = smalloc(len);
577 bufchain_fetch(&p->pending_input_data, data, len);
578
579 eol = get_line_end(data, len);
580 if (eol < 0) {
581 sfree(data);
582 return 1;
583 }
584
585 status = -1;
586 /* We can't rely on whether the %n incremented the sscanf return */
587 if (sscanf((char *)data, "HTTP/%i.%i %n",
588 &maj_ver, &min_ver, &status) < 2 || status == -1) {
589 plug_closing(p->plug, "Proxy error: HTTP response was absent",
590 PROXY_ERROR_GENERAL, 0);
591 sfree(data);
592 return 1;
593 }
594
595 /* remove the status line from the input buffer. */
596 bufchain_consume(&p->pending_input_data, eol);
597 if (data[status] != '2') {
598 /* error */
599 char *buf;
600 data[eol] = '\0';
601 while (eol > status &&
602 (data[eol-1] == '\r' || data[eol-1] == '\n'))
603 data[--eol] = '\0';
604 buf = dupprintf("Proxy error: %s", data+status);
605 plug_closing(p->plug, buf, PROXY_ERROR_GENERAL, 0);
606 sfree(buf);
607 sfree(data);
608 return 1;
609 }
610
611 sfree(data);
612
613 p->state = 2;
614 }
615
616 if (p->state == 2) {
617
618 /* get headers. we're done when we get a
619 * header of length 2, (ie. just "\r\n")
620 */
621
622 len = bufchain_size(&p->pending_input_data);
623 assert(len > 0); /* or we wouldn't be here */
624 data = smalloc(len);
625 datap = data;
626 bufchain_fetch(&p->pending_input_data, data, len);
627
628 eol = get_line_end(datap, len);
629 if (eol < 0) {
630 sfree(data);
631 return 1;
632 }
633 while (eol > 2)
634 {
635 bufchain_consume(&p->pending_input_data, eol);
636 datap += eol;
637 len -= eol;
638 eol = get_line_end(datap, len);
639 }
640
641 if (eol == 2) {
642 /* we're done */
643 bufchain_consume(&p->pending_input_data, 2);
644 proxy_activate(p);
645 /* proxy activate will have dealt with
646 * whatever is left of the buffer */
647 sfree(data);
648 return 1;
649 }
650
651 sfree(data);
652 return 1;
653 }
654 }
655
656 plug_closing(p->plug, "Proxy error: unexpected proxy error",
657 PROXY_ERROR_UNEXPECTED, 0);
658 return 1;
659 }
660
661 /* ----------------------------------------------------------------------
662 * SOCKS proxy type.
663 */
664
665 /* SOCKS version 4 */
666 int proxy_socks4_negotiate (Proxy_Socket p, int change)
667 {
668 if (p->state == PROXY_CHANGE_NEW) {
669
670 /* request format:
671 * version number (1 byte) = 4
672 * command code (1 byte)
673 * 1 = CONNECT
674 * 2 = BIND
675 * dest. port (2 bytes) [network order]
676 * dest. address (4 bytes)
677 * user ID (variable length, null terminated string)
678 */
679
680 int length, type, namelen;
681 char *command, addr[4], hostname[512];
682
683 type = sk_addrtype(p->remote_addr);
684 if (type == ADDRTYPE_IPV6) {
685 plug_closing(p->plug, "Proxy error: SOCKS version 4 does"
686 " not support IPv6", PROXY_ERROR_GENERAL, 0);
687 return 1;
688 } else if (type == ADDRTYPE_IPV4) {
689 namelen = 0;
690 sk_addrcopy(p->remote_addr, addr);
691 } else { /* type == ADDRTYPE_NAME */
692 sk_getaddr(p->remote_addr, hostname, lenof(hostname));
693 namelen = strlen(hostname) + 1; /* include the NUL */
694 addr[0] = addr[1] = addr[2] = 0;
695 addr[3] = 1;
696 }
697
698 length = strlen(cfg.proxy_username) + namelen + 9;
699 command = (char*) smalloc(length);
700 strcpy(command + 8, cfg.proxy_username);
701
702 command[0] = 4; /* version 4 */
703 command[1] = 1; /* CONNECT command */
704
705 /* port */
706 command[2] = (char) (p->remote_port >> 8) & 0xff;
707 command[3] = (char) p->remote_port & 0xff;
708
709 /* address */
710 memcpy(command + 4, addr, 4);
711
712 /* hostname */
713 memcpy(command + 8 + strlen(cfg.proxy_username) + 1,
714 hostname, namelen);
715
716 sk_write(p->sub_socket, command, length);
717 sfree(command);
718
719 p->state = 1;
720 return 0;
721 }
722
723 if (change == PROXY_CHANGE_CLOSING) {
724 /* if our proxy negotiation process involves closing and opening
725 * new sockets, then we would want to intercept this closing
726 * callback when we were expecting it. if we aren't anticipating
727 * a socket close, then some error must have occurred. we'll
728 * just pass those errors up to the backend.
729 */
730 return plug_closing(p->plug, p->closing_error_msg,
731 p->closing_error_code,
732 p->closing_calling_back);
733 }
734
735 if (change == PROXY_CHANGE_SENT) {
736 /* some (or all) of what we wrote to the proxy was sent.
737 * we don't do anything new, however, until we receive the
738 * proxy's response. we might want to set a timer so we can
739 * timeout the proxy negotiation after a while...
740 */
741 return 0;
742 }
743
744 if (change == PROXY_CHANGE_ACCEPTING) {
745 /* we should _never_ see this, as we are using our socket to
746 * connect to a proxy, not accepting inbound connections.
747 * what should we do? close the socket with an appropriate
748 * error message?
749 */
750 return plug_accepting(p->plug, p->accepting_sock);
751 }
752
753 if (change == PROXY_CHANGE_RECEIVE) {
754 /* we have received data from the underlying socket, which
755 * we'll need to parse, process, and respond to appropriately.
756 */
757
758 if (p->state == 1) {
759 /* response format:
760 * version number (1 byte) = 4
761 * reply code (1 byte)
762 * 90 = request granted
763 * 91 = request rejected or failed
764 * 92 = request rejected due to lack of IDENTD on client
765 * 93 = request rejected due to difference in user ID
766 * (what we sent vs. what IDENTD said)
767 * dest. port (2 bytes)
768 * dest. address (4 bytes)
769 */
770
771 char data[8];
772
773 if (bufchain_size(&p->pending_input_data) < 8)
774 return 1; /* not got anything yet */
775
776 /* get the response */
777 bufchain_fetch(&p->pending_input_data, data, 8);
778
779 if (data[0] != 0) {
780 plug_closing(p->plug, "Proxy error: SOCKS proxy responded with "
781 "unexpected reply code version",
782 PROXY_ERROR_GENERAL, 0);
783 return 1;
784 }
785
786 if (data[1] != 90) {
787
788 switch (data[1]) {
789 case 92:
790 plug_closing(p->plug, "Proxy error: SOCKS server wanted IDENTD on client",
791 PROXY_ERROR_GENERAL, 0);
792 break;
793 case 93:
794 plug_closing(p->plug, "Proxy error: Username and IDENTD on client don't agree",
795 PROXY_ERROR_GENERAL, 0);
796 break;
797 case 91:
798 default:
799 plug_closing(p->plug, "Proxy error: Error while communicating with proxy",
800 PROXY_ERROR_GENERAL, 0);
801 break;
802 }
803
804 return 1;
805 }
806 bufchain_consume(&p->pending_input_data, 8);
807
808 /* we're done */
809 proxy_activate(p);
810 /* proxy activate will have dealt with
811 * whatever is left of the buffer */
812 return 1;
813 }
814 }
815
816 plug_closing(p->plug, "Proxy error: unexpected proxy error",
817 PROXY_ERROR_UNEXPECTED, 0);
818 return 1;
819 }
820
821 /* SOCKS version 5 */
822 int proxy_socks5_negotiate (Proxy_Socket p, int change)
823 {
824 if (p->state == PROXY_CHANGE_NEW) {
825
826 /* initial command:
827 * version number (1 byte) = 5
828 * number of available authentication methods (1 byte)
829 * available authentication methods (1 byte * previous value)
830 * authentication methods:
831 * 0x00 = no authentication
832 * 0x01 = GSSAPI
833 * 0x02 = username/password
834 * 0x03 = CHAP
835 */
836
837 char command[4];
838 int len;
839
840 command[0] = 5; /* version 5 */
841 if (cfg.proxy_username[0] || cfg.proxy_password[0]) {
842 command[1] = 2; /* two methods supported: */
843 command[2] = 0x00; /* no authentication */
844 command[3] = 0x02; /* username/password */
845 len = 4;
846 } else {
847 command[1] = 1; /* one methods supported: */
848 command[2] = 0x00; /* no authentication */
849 len = 3;
850 }
851
852 sk_write(p->sub_socket, command, len);
853
854 p->state = 1;
855 return 0;
856 }
857
858 if (change == PROXY_CHANGE_CLOSING) {
859 /* if our proxy negotiation process involves closing and opening
860 * new sockets, then we would want to intercept this closing
861 * callback when we were expecting it. if we aren't anticipating
862 * a socket close, then some error must have occurred. we'll
863 * just pass those errors up to the backend.
864 */
865 return plug_closing(p->plug, p->closing_error_msg,
866 p->closing_error_code,
867 p->closing_calling_back);
868 }
869
870 if (change == PROXY_CHANGE_SENT) {
871 /* some (or all) of what we wrote to the proxy was sent.
872 * we don't do anything new, however, until we receive the
873 * proxy's response. we might want to set a timer so we can
874 * timeout the proxy negotiation after a while...
875 */
876 return 0;
877 }
878
879 if (change == PROXY_CHANGE_ACCEPTING) {
880 /* we should _never_ see this, as we are using our socket to
881 * connect to a proxy, not accepting inbound connections.
882 * what should we do? close the socket with an appropriate
883 * error message?
884 */
885 return plug_accepting(p->plug, p->accepting_sock);
886 }
887
888 if (change == PROXY_CHANGE_RECEIVE) {
889 /* we have received data from the underlying socket, which
890 * we'll need to parse, process, and respond to appropriately.
891 */
892
893 if (p->state == 1) {
894
895 /* initial response:
896 * version number (1 byte) = 5
897 * authentication method (1 byte)
898 * authentication methods:
899 * 0x00 = no authentication
900 * 0x01 = GSSAPI
901 * 0x02 = username/password
902 * 0x03 = CHAP
903 * 0xff = no acceptable methods
904 */
905 char data[2];
906
907 if (bufchain_size(&p->pending_input_data) < 2)
908 return 1; /* not got anything yet */
909
910 /* get the response */
911 bufchain_fetch(&p->pending_input_data, data, 2);
912
913 if (data[0] != 5) {
914 plug_closing(p->plug, "Proxy error: SOCKS proxy returned unexpected version",
915 PROXY_ERROR_GENERAL, 0);
916 return 1;
917 }
918
919 if (data[1] == 0x00) p->state = 2; /* no authentication needed */
920 else if (data[1] == 0x01) p->state = 4; /* GSSAPI authentication */
921 else if (data[1] == 0x02) p->state = 5; /* username/password authentication */
922 else if (data[1] == 0x03) p->state = 6; /* CHAP authentication */
923 else {
924 plug_closing(p->plug, "Proxy error: SOCKS proxy did not accept our authentication",
925 PROXY_ERROR_GENERAL, 0);
926 return 1;
927 }
928 bufchain_consume(&p->pending_input_data, 2);
929 }
930
931 if (p->state == 7) {
932
933 /* password authentication reply format:
934 * version number (1 bytes) = 1
935 * reply code (1 byte)
936 * 0 = succeeded
937 * >0 = failed
938 */
939 char data[2];
940
941 if (bufchain_size(&p->pending_input_data) < 2)
942 return 1; /* not got anything yet */
943
944 /* get the response */
945 bufchain_fetch(&p->pending_input_data, data, 2);
946
947 if (data[0] != 1) {
948 plug_closing(p->plug, "Proxy error: SOCKS password "
949 "subnegotiation contained wrong version number",
950 PROXY_ERROR_GENERAL, 0);
951 return 1;
952 }
953
954 if (data[1] != 0) {
955
956 plug_closing(p->plug, "Proxy error: SOCKS proxy refused"
957 " password authentication",
958 PROXY_ERROR_GENERAL, 0);
959 return 1;
960 }
961
962 bufchain_consume(&p->pending_input_data, 2);
963 p->state = 2; /* now proceed as authenticated */
964 }
965
966 if (p->state == 2) {
967
968 /* request format:
969 * version number (1 byte) = 5
970 * command code (1 byte)
971 * 1 = CONNECT
972 * 2 = BIND
973 * 3 = UDP ASSOCIATE
974 * reserved (1 byte) = 0x00
975 * address type (1 byte)
976 * 1 = IPv4
977 * 3 = domainname (first byte has length, no terminating null)
978 * 4 = IPv6
979 * dest. address (variable)
980 * dest. port (2 bytes) [network order]
981 */
982
983 char command[512];
984 int len;
985 int type;
986
987 type = sk_addrtype(p->remote_addr);
988 if (type == ADDRTYPE_IPV4) {
989 len = 10; /* 4 hdr + 4 addr + 2 trailer */
990 command[3] = 1; /* IPv4 */
991 sk_addrcopy(p->remote_addr, command+4);
992 } else if (type == ADDRTYPE_IPV6) {
993 len = 22; /* 4 hdr + 16 addr + 2 trailer */
994 command[3] = 4; /* IPv6 */
995 sk_addrcopy(p->remote_addr, command+4);
996 } else if (type == ADDRTYPE_NAME) {
997 command[3] = 3;
998 sk_getaddr(p->remote_addr, command+5, 256);
999 command[4] = strlen(command+5);
1000 len = 7 + command[4]; /* 4 hdr, 1 len, N addr, 2 trailer */
1001 }
1002
1003 command[0] = 5; /* version 5 */
1004 command[1] = 1; /* CONNECT command */
1005 command[2] = 0x00;
1006
1007 /* port */
1008 command[len-2] = (char) (p->remote_port >> 8) & 0xff;
1009 command[len-1] = (char) p->remote_port & 0xff;
1010
1011 sk_write(p->sub_socket, command, len);
1012
1013 p->state = 3;
1014 return 1;
1015 }
1016
1017 if (p->state == 3) {
1018
1019 /* reply format:
1020 * version number (1 bytes) = 5
1021 * reply code (1 byte)
1022 * 0 = succeeded
1023 * 1 = general SOCKS server failure
1024 * 2 = connection not allowed by ruleset
1025 * 3 = network unreachable
1026 * 4 = host unreachable
1027 * 5 = connection refused
1028 * 6 = TTL expired
1029 * 7 = command not supported
1030 * 8 = address type not supported
1031 * reserved (1 byte) = x00
1032 * address type (1 byte)
1033 * 1 = IPv4
1034 * 3 = domainname (first byte has length, no terminating null)
1035 * 4 = IPv6
1036 * server bound address (variable)
1037 * server bound port (2 bytes) [network order]
1038 */
1039 char data[5];
1040 int len;
1041
1042 /* First 5 bytes of packet are enough to tell its length. */
1043 if (bufchain_size(&p->pending_input_data) < 5)
1044 return 1; /* not got anything yet */
1045
1046 /* get the response */
1047 bufchain_fetch(&p->pending_input_data, data, 5);
1048
1049 if (data[0] != 5) {
1050 plug_closing(p->plug, "Proxy error: SOCKS proxy returned wrong version number",
1051 PROXY_ERROR_GENERAL, 0);
1052 return 1;
1053 }
1054
1055 if (data[1] != 0) {
1056 char buf[256];
1057
1058 strcpy(buf, "Proxy error: ");
1059
1060 switch (data[1]) {
1061 case 1: strcat(buf, "General SOCKS server failure"); break;
1062 case 2: strcat(buf, "Connection not allowed by ruleset"); break;
1063 case 3: strcat(buf, "Network unreachable"); break;
1064 case 4: strcat(buf, "Host unreachable"); break;
1065 case 5: strcat(buf, "Connection refused"); break;
1066 case 6: strcat(buf, "TTL expired"); break;
1067 case 7: strcat(buf, "Command not supported"); break;
1068 case 8: strcat(buf, "Address type not supported"); break;
1069 default: sprintf(buf+strlen(buf),
1070 "Unrecognised SOCKS error code %d",
1071 data[1]);
1072 break;
1073 }
1074 plug_closing(p->plug, buf, PROXY_ERROR_GENERAL, 0);
1075
1076 return 1;
1077 }
1078
1079 /*
1080 * Eat the rest of the reply packet.
1081 */
1082 len = 6; /* first 4 bytes, last 2 */
1083 switch (data[3]) {
1084 case 1: len += 4; break; /* IPv4 address */
1085 case 4: len += 16; break;/* IPv6 address */
1086 case 3: len += (unsigned char)data[4]; break; /* domain name */
1087 default:
1088 plug_closing(p->plug, "Proxy error: SOCKS proxy returned "
1089 "unrecognised address format",
1090 PROXY_ERROR_GENERAL, 0);
1091 return 1;
1092 }
1093 if (bufchain_size(&p->pending_input_data) < len)
1094 return 1; /* not got whole reply yet */
1095 bufchain_consume(&p->pending_input_data, len);
1096
1097 /* we're done */
1098 proxy_activate(p);
1099 return 1;
1100 }
1101
1102 if (p->state == 4) {
1103 /* TODO: Handle GSSAPI authentication */
1104 plug_closing(p->plug, "Proxy error: We don't support GSSAPI authentication",
1105 PROXY_ERROR_GENERAL, 0);
1106 return 1;
1107 }
1108
1109 if (p->state == 5) {
1110 if (cfg.proxy_username[0] || cfg.proxy_password[0]) {
1111 char userpwbuf[514];
1112 int ulen, plen;
1113 ulen = strlen(cfg.proxy_username);
1114 if (ulen > 255) ulen = 255; if (ulen < 1) ulen = 1;
1115 plen = strlen(cfg.proxy_password);
1116 if (plen > 255) plen = 255; if (plen < 1) plen = 1;
1117 userpwbuf[0] = 1; /* version number of subnegotiation */
1118 userpwbuf[1] = ulen;
1119 memcpy(userpwbuf+2, cfg.proxy_username, ulen);
1120 userpwbuf[ulen+2] = plen;
1121 memcpy(userpwbuf+ulen+3, cfg.proxy_password, plen);
1122 sk_write(p->sub_socket, userpwbuf, ulen + plen + 3);
1123 p->state = 7;
1124 } else
1125 plug_closing(p->plug, "Proxy error: Server chose "
1126 "username/password authentication but we "
1127 "didn't offer it!",
1128 PROXY_ERROR_GENERAL, 0);
1129 return 1;
1130 }
1131
1132 if (p->state == 6) {
1133 /* TODO: Handle CHAP authentication */
1134 plug_closing(p->plug, "Proxy error: We don't support CHAP authentication",
1135 PROXY_ERROR_GENERAL, 0);
1136 return 1;
1137 }
1138
1139 }
1140
1141 plug_closing(p->plug, "Proxy error: Unexpected proxy error",
1142 PROXY_ERROR_UNEXPECTED, 0);
1143 return 1;
1144 }
1145
1146 /* ----------------------------------------------------------------------
1147 * `Telnet' proxy type.
1148 *
1149 * (This is for ad-hoc proxies where you connect to the proxy's
1150 * telnet port and send a command such as `connect host port'. The
1151 * command is configurable, since this proxy type is typically not
1152 * standardised or at all well-defined.)
1153 */
1154
1155 int proxy_telnet_negotiate (Proxy_Socket p, int change)
1156 {
1157 if (p->state == PROXY_CHANGE_NEW) {
1158
1159 int so = 0, eo = 0;
1160
1161 /* we need to escape \\, \%, \r, \n, \t, \x??, \0???,
1162 * %%, %host, %port, %user, and %pass
1163 */
1164
1165 while (cfg.proxy_telnet_command[eo] != 0) {
1166
1167 /* scan forward until we hit end-of-line,
1168 * or an escape character (\ or %) */
1169 while (cfg.proxy_telnet_command[eo] != 0 &&
1170 cfg.proxy_telnet_command[eo] != '%' &&
1171 cfg.proxy_telnet_command[eo] != '\\') eo++;
1172
1173 /* if we hit eol, break out of our escaping loop */
1174 if (cfg.proxy_telnet_command[eo] == 0) break;
1175
1176 /* if there was any unescaped text before the escape
1177 * character, send that now */
1178 if (eo != so) {
1179 sk_write(p->sub_socket,
1180 cfg.proxy_telnet_command + so, eo - so);
1181 }
1182
1183 so = eo++;
1184
1185 /* if the escape character was the last character of
1186 * the line, we'll just stop and send it. */
1187 if (cfg.proxy_telnet_command[eo] == 0) break;
1188
1189 if (cfg.proxy_telnet_command[so] == '\\') {
1190
1191 /* we recognize \\, \%, \r, \n, \t, \x??.
1192 * anything else, we just send unescaped (including the \).
1193 */
1194
1195 switch (cfg.proxy_telnet_command[eo]) {
1196
1197 case '\\':
1198 sk_write(p->sub_socket, "\\", 1);
1199 eo++;
1200 break;
1201
1202 case '%':
1203 sk_write(p->sub_socket, "%%", 1);
1204 eo++;
1205 break;
1206
1207 case 'r':
1208 sk_write(p->sub_socket, "\r", 1);
1209 eo++;
1210 break;
1211
1212 case 'n':
1213 sk_write(p->sub_socket, "\n", 1);
1214 eo++;
1215 break;
1216
1217 case 't':
1218 sk_write(p->sub_socket, "\t", 1);
1219 eo++;
1220 break;
1221
1222 case 'x':
1223 case 'X':
1224 {
1225 /* escaped hexadecimal value (ie. \xff) */
1226 unsigned char v = 0;
1227 int i = 0;
1228
1229 for (;;) {
1230 eo++;
1231 if (cfg.proxy_telnet_command[eo] >= '0' &&
1232 cfg.proxy_telnet_command[eo] <= '9')
1233 v += cfg.proxy_telnet_command[eo] - '0';
1234 else if (cfg.proxy_telnet_command[eo] >= 'a' &&
1235 cfg.proxy_telnet_command[eo] <= 'f')
1236 v += cfg.proxy_telnet_command[eo] - 'a' + 10;
1237 else if (cfg.proxy_telnet_command[eo] >= 'A' &&
1238 cfg.proxy_telnet_command[eo] <= 'F')
1239 v += cfg.proxy_telnet_command[eo] - 'A' + 10;
1240 else {
1241 /* non hex character, so we abort and just
1242 * send the whole thing unescaped (including \x)
1243 */
1244 sk_write(p->sub_socket, "\\", 1);
1245 eo = so + 1;
1246 break;
1247 }
1248
1249 /* we only extract two hex characters */
1250 if (i == 1) {
1251 sk_write(p->sub_socket, (char *)&v, 1);
1252 eo++;
1253 break;
1254 }
1255
1256 i++;
1257 v <<= 4;
1258 }
1259 }
1260 break;
1261
1262 default:
1263 sk_write(p->sub_socket,
1264 cfg.proxy_telnet_command + so, 2);
1265 eo++;
1266 break;
1267 }
1268 } else {
1269
1270 /* % escape. we recognize %%, %host, %port, %user, %pass.
1271 * anything else, we just send unescaped (including the %).
1272 */
1273
1274 if (cfg.proxy_telnet_command[eo] == '%') {
1275 sk_write(p->sub_socket, "%", 1);
1276 eo++;
1277 }
1278 else if (strnicmp(cfg.proxy_telnet_command + eo,
1279 "host", 4) == 0) {
1280 char dest[512];
1281 sk_getaddr(p->remote_addr, dest, lenof(dest));
1282 sk_write(p->sub_socket, dest, strlen(dest));
1283 eo += 4;
1284 }
1285 else if (strnicmp(cfg.proxy_telnet_command + eo,
1286 "port", 4) == 0) {
1287 char port[8];
1288 sprintf(port, "%i", p->remote_port);
1289 sk_write(p->sub_socket, port, strlen(port));
1290 eo += 4;
1291 }
1292 else if (strnicmp(cfg.proxy_telnet_command + eo,
1293 "user", 4) == 0) {
1294 sk_write(p->sub_socket, cfg.proxy_username,
1295 strlen(cfg.proxy_username));
1296 eo += 4;
1297 }
1298 else if (strnicmp(cfg.proxy_telnet_command + eo,
1299 "pass", 4) == 0) {
1300 sk_write(p->sub_socket, cfg.proxy_password,
1301 strlen(cfg.proxy_password));
1302 eo += 4;
1303 }
1304 else {
1305 /* we don't escape this, so send the % now, and
1306 * don't advance eo, so that we'll consider the
1307 * text immediately following the % as unescaped.
1308 */
1309 sk_write(p->sub_socket, "%", 1);
1310 }
1311 }
1312
1313 /* resume scanning for additional escapes after this one. */
1314 so = eo;
1315 }
1316
1317 /* if there is any unescaped text at the end of the line, send it */
1318 if (eo != so) {
1319 sk_write(p->sub_socket, cfg.proxy_telnet_command + so, eo - so);
1320 }
1321
1322 p->state = 1;
1323 return 0;
1324 }
1325
1326 if (change == PROXY_CHANGE_CLOSING) {
1327 /* if our proxy negotiation process involves closing and opening
1328 * new sockets, then we would want to intercept this closing
1329 * callback when we were expecting it. if we aren't anticipating
1330 * a socket close, then some error must have occurred. we'll
1331 * just pass those errors up to the backend.
1332 */
1333 return plug_closing(p->plug, p->closing_error_msg,
1334 p->closing_error_code,
1335 p->closing_calling_back);
1336 }
1337
1338 if (change == PROXY_CHANGE_SENT) {
1339 /* some (or all) of what we wrote to the proxy was sent.
1340 * we don't do anything new, however, until we receive the
1341 * proxy's response. we might want to set a timer so we can
1342 * timeout the proxy negotiation after a while...
1343 */
1344 return 0;
1345 }
1346
1347 if (change == PROXY_CHANGE_ACCEPTING) {
1348 /* we should _never_ see this, as we are using our socket to
1349 * connect to a proxy, not accepting inbound connections.
1350 * what should we do? close the socket with an appropriate
1351 * error message?
1352 */
1353 return plug_accepting(p->plug, p->accepting_sock);
1354 }
1355
1356 if (change == PROXY_CHANGE_RECEIVE) {
1357 /* we have received data from the underlying socket, which
1358 * we'll need to parse, process, and respond to appropriately.
1359 */
1360
1361 /* we're done */
1362 proxy_activate(p);
1363 /* proxy activate will have dealt with
1364 * whatever is left of the buffer */
1365 return 1;
1366 }
1367
1368 plug_closing(p->plug, "Proxy error: Unexpected proxy error",
1369 PROXY_ERROR_UNEXPECTED, 0);
1370 return 1;
1371 }