2802febc7fa30e4e1423f9f5fe2f21d4092c7a9f
[u/mdw/putty] / plink.c
1 /*
2 * PLink - a command-line (stdin/stdout) variant of PuTTY.
3 */
4
5 #ifndef AUTO_WINSOCK
6 #include <winsock2.h>
7 #endif
8 #include <windows.h>
9 #include <stdio.h>
10 #include <stdlib.h>
11 #include <stdarg.h>
12
13 #define PUTTY_DO_GLOBALS /* actually _define_ globals */
14 #include "putty.h"
15 #include "storage.h"
16 #include "tree234.h"
17
18 #define MAX_STDIN_BACKLOG 4096
19
20 void fatalbox(char *p, ...)
21 {
22 va_list ap;
23 fprintf(stderr, "FATAL ERROR: ");
24 va_start(ap, p);
25 vfprintf(stderr, p, ap);
26 va_end(ap);
27 fputc('\n', stderr);
28 WSACleanup();
29 exit(1);
30 }
31 void connection_fatal(char *p, ...)
32 {
33 va_list ap;
34 fprintf(stderr, "FATAL ERROR: ");
35 va_start(ap, p);
36 vfprintf(stderr, p, ap);
37 va_end(ap);
38 fputc('\n', stderr);
39 WSACleanup();
40 exit(1);
41 }
42
43 static char *password = NULL;
44
45 void logevent(char *string)
46 {
47 }
48
49 void verify_ssh_host_key(char *host, int port, char *keytype,
50 char *keystr, char *fingerprint)
51 {
52 int ret;
53 HANDLE hin;
54 DWORD savemode, i;
55
56 static const char absentmsg[] =
57 "The server's host key is not cached in the registry. You\n"
58 "have no guarantee that the server is the computer you\n"
59 "think it is.\n"
60 "The server's key fingerprint is:\n"
61 "%s\n"
62 "If you trust this host, enter \"y\" to add the key to\n"
63 "PuTTY's cache and carry on connecting.\n"
64 "If you want to carry on connecting just once, without\n"
65 "adding the key to the cache, enter \"n\".\n"
66 "If you do not trust this host, press Return to abandon the\n"
67 "connection.\n"
68 "Store key in cache? (y/n) ";
69
70 static const char wrongmsg[] =
71 "WARNING - POTENTIAL SECURITY BREACH!\n"
72 "The server's host key does not match the one PuTTY has\n"
73 "cached in the registry. This means that either the\n"
74 "server administrator has changed the host key, or you\n"
75 "have actually connected to another computer pretending\n"
76 "to be the server.\n"
77 "The new key fingerprint is:\n"
78 "%s\n"
79 "If you were expecting this change and trust the new key,\n"
80 "enter \"y\" to update PuTTY's cache and continue connecting.\n"
81 "If you want to carry on connecting but without updating\n"
82 "the cache, enter \"n\".\n"
83 "If you want to abandon the connection completely, press\n"
84 "Return to cancel. Pressing Return is the ONLY guaranteed\n"
85 "safe choice.\n"
86 "Update cached key? (y/n, Return cancels connection) ";
87
88 static const char abandoned[] = "Connection abandoned.\n";
89
90 char line[32];
91
92 /*
93 * Verify the key against the registry.
94 */
95 ret = verify_host_key(host, port, keytype, keystr);
96
97 if (ret == 0) /* success - key matched OK */
98 return;
99
100 if (ret == 2) { /* key was different */
101 fprintf(stderr, wrongmsg, fingerprint);
102 fflush(stderr);
103 }
104 if (ret == 1) { /* key was absent */
105 fprintf(stderr, absentmsg, fingerprint);
106 fflush(stderr);
107 }
108
109 hin = GetStdHandle(STD_INPUT_HANDLE);
110 GetConsoleMode(hin, &savemode);
111 SetConsoleMode(hin, (savemode | ENABLE_ECHO_INPUT |
112 ENABLE_PROCESSED_INPUT | ENABLE_LINE_INPUT));
113 ReadFile(hin, line, sizeof(line) - 1, &i, NULL);
114 SetConsoleMode(hin, savemode);
115
116 if (line[0] != '\0' && line[0] != '\r' && line[0] != '\n') {
117 if (line[0] == 'y' || line[0] == 'Y')
118 store_host_key(host, port, keytype, keystr);
119 } else {
120 fprintf(stderr, abandoned);
121 exit(0);
122 }
123 }
124
125 /*
126 * Ask whether the selected cipher is acceptable (since it was
127 * below the configured 'warn' threshold).
128 * cs: 0 = both ways, 1 = client->server, 2 = server->client
129 */
130 void askcipher(char *ciphername, int cs)
131 {
132 HANDLE hin;
133 DWORD savemode, i;
134
135 static const char msg[] =
136 "The first %scipher supported by the server is\n"
137 "%s, which is below the configured warning threshold.\n"
138 "Continue with connection? (y/n) ";
139 static const char abandoned[] = "Connection abandoned.\n";
140
141 char line[32];
142
143 fprintf(stderr, msg,
144 (cs == 0) ? "" :
145 (cs == 1) ? "client-to-server " :
146 "server-to-client ",
147 ciphername);
148 fflush(stderr);
149
150 hin = GetStdHandle(STD_INPUT_HANDLE);
151 GetConsoleMode(hin, &savemode);
152 SetConsoleMode(hin, (savemode | ENABLE_ECHO_INPUT |
153 ENABLE_PROCESSED_INPUT | ENABLE_LINE_INPUT));
154 ReadFile(hin, line, sizeof(line) - 1, &i, NULL);
155 SetConsoleMode(hin, savemode);
156
157 if (line[0] == 'y' || line[0] == 'Y') {
158 return;
159 } else {
160 fprintf(stderr, abandoned);
161 exit(0);
162 }
163 }
164
165 HANDLE inhandle, outhandle, errhandle;
166 DWORD orig_console_mode;
167
168 WSAEVENT netevent;
169
170 int term_ldisc(int mode)
171 {
172 return FALSE;
173 }
174 void ldisc_update(int echo, int edit)
175 {
176 /* Update stdin read mode to reflect changes in line discipline. */
177 DWORD mode;
178
179 mode = ENABLE_PROCESSED_INPUT;
180 if (echo)
181 mode = mode | ENABLE_ECHO_INPUT;
182 else
183 mode = mode & ~ENABLE_ECHO_INPUT;
184 if (edit)
185 mode = mode | ENABLE_LINE_INPUT;
186 else
187 mode = mode & ~ENABLE_LINE_INPUT;
188 SetConsoleMode(inhandle, mode);
189 }
190
191 static int get_line(const char *prompt, char *str, int maxlen, int is_pw)
192 {
193 HANDLE hin, hout;
194 DWORD savemode, newmode, i;
195
196 if (is_pw && password) {
197 static int tried_once = 0;
198
199 if (tried_once) {
200 return 0;
201 } else {
202 strncpy(str, password, maxlen);
203 str[maxlen - 1] = '\0';
204 tried_once = 1;
205 return 1;
206 }
207 }
208
209 hin = GetStdHandle(STD_INPUT_HANDLE);
210 hout = GetStdHandle(STD_OUTPUT_HANDLE);
211 if (hin == INVALID_HANDLE_VALUE || hout == INVALID_HANDLE_VALUE) {
212 fprintf(stderr, "Cannot get standard input/output handles");
213 return 0;
214 }
215
216 GetConsoleMode(hin, &savemode);
217 newmode = savemode | ENABLE_PROCESSED_INPUT | ENABLE_LINE_INPUT;
218 if (is_pw)
219 newmode &= ~ENABLE_ECHO_INPUT;
220 else
221 newmode |= ENABLE_ECHO_INPUT;
222 SetConsoleMode(hin, newmode);
223
224 WriteFile(hout, prompt, strlen(prompt), &i, NULL);
225 ReadFile(hin, str, maxlen - 1, &i, NULL);
226
227 SetConsoleMode(hin, savemode);
228
229 if ((int) i > maxlen)
230 i = maxlen - 1;
231 else
232 i = i - 2;
233 str[i] = '\0';
234
235 if (is_pw)
236 WriteFile(hout, "\r\n", 2, &i, NULL);
237
238 return 1;
239 }
240
241 struct input_data {
242 DWORD len;
243 char buffer[4096];
244 HANDLE event, eventback;
245 };
246
247 static DWORD WINAPI stdin_read_thread(void *param)
248 {
249 struct input_data *idata = (struct input_data *) param;
250 HANDLE inhandle;
251
252 inhandle = GetStdHandle(STD_INPUT_HANDLE);
253
254 while (ReadFile(inhandle, idata->buffer, sizeof(idata->buffer),
255 &idata->len, NULL) && idata->len > 0) {
256 SetEvent(idata->event);
257 WaitForSingleObject(idata->eventback, INFINITE);
258 }
259
260 idata->len = 0;
261 SetEvent(idata->event);
262
263 return 0;
264 }
265
266 struct output_data {
267 DWORD len, lenwritten;
268 int writeret;
269 char *buffer;
270 int is_stderr, done;
271 HANDLE event, eventback;
272 int busy;
273 };
274
275 static DWORD WINAPI stdout_write_thread(void *param)
276 {
277 struct output_data *odata = (struct output_data *) param;
278 HANDLE outhandle, errhandle;
279
280 outhandle = GetStdHandle(STD_OUTPUT_HANDLE);
281 errhandle = GetStdHandle(STD_ERROR_HANDLE);
282
283 while (1) {
284 WaitForSingleObject(odata->eventback, INFINITE);
285 if (odata->done)
286 break;
287 odata->writeret =
288 WriteFile(odata->is_stderr ? errhandle : outhandle,
289 odata->buffer, odata->len, &odata->lenwritten, NULL);
290 SetEvent(odata->event);
291 }
292
293 return 0;
294 }
295
296 bufchain stdout_data, stderr_data;
297 struct output_data odata, edata;
298
299 void try_output(int is_stderr)
300 {
301 struct output_data *data = (is_stderr ? &edata : &odata);
302 void *senddata;
303 int sendlen;
304
305 if (!data->busy) {
306 bufchain_prefix(is_stderr ? &stderr_data : &stdout_data,
307 &senddata, &sendlen);
308 data->buffer = senddata;
309 data->len = sendlen;
310 SetEvent(data->eventback);
311 data->busy = 1;
312 }
313 }
314
315 int from_backend(int is_stderr, char *data, int len)
316 {
317 int pos;
318 DWORD ret;
319 HANDLE h = (is_stderr ? errhandle : outhandle);
320 void *writedata;
321 int writelen;
322 int osize, esize;
323
324 if (is_stderr) {
325 bufchain_add(&stderr_data, data, len);
326 try_output(1);
327 } else {
328 bufchain_add(&stdout_data, data, len);
329 try_output(0);
330 }
331
332 osize = bufchain_size(&stdout_data);
333 esize = bufchain_size(&stderr_data);
334
335 return osize + esize;
336 }
337
338 /*
339 * Short description of parameters.
340 */
341 static void usage(void)
342 {
343 printf("PuTTY Link: command-line connection utility\n");
344 printf("%s\n", ver);
345 printf("Usage: plink [options] [user@]host [command]\n");
346 printf("Options:\n");
347 printf(" -v show verbose messages\n");
348 printf(" -ssh force use of ssh protocol\n");
349 printf(" -P port connect to specified port\n");
350 printf(" -pw passw login with specified password\n");
351 printf(" -m file read remote command(s) from file\n");
352 exit(1);
353 }
354
355 char *do_select(SOCKET skt, int startup)
356 {
357 int events;
358 if (startup) {
359 events = FD_READ | FD_WRITE | FD_OOB | FD_CLOSE | FD_ACCEPT;
360 } else {
361 events = 0;
362 }
363 if (WSAEventSelect(skt, netevent, events) == SOCKET_ERROR) {
364 switch (WSAGetLastError()) {
365 case WSAENETDOWN:
366 return "Network is down";
367 default:
368 return "WSAAsyncSelect(): unknown error";
369 }
370 }
371 return NULL;
372 }
373
374 int main(int argc, char **argv)
375 {
376 WSADATA wsadata;
377 WORD winsock_ver;
378 WSAEVENT stdinevent, stdoutevent, stderrevent;
379 HANDLE handles[4];
380 DWORD in_threadid, out_threadid, err_threadid;
381 struct input_data idata;
382 int reading;
383 int sending;
384 int portnumber = -1;
385 SOCKET *sklist;
386 int skcount, sksize;
387 int connopen;
388
389 ssh_get_line = get_line;
390
391 sklist = NULL;
392 skcount = sksize = 0;
393 /*
394 * Initialise port and protocol to sensible defaults. (These
395 * will be overridden by more or less anything.)
396 */
397 default_protocol = PROT_SSH;
398 default_port = 22;
399
400 flags = FLAG_STDERR;
401 /*
402 * Process the command line.
403 */
404 do_defaults(NULL, &cfg);
405 default_protocol = cfg.protocol;
406 default_port = cfg.port;
407 {
408 /*
409 * Override the default protocol if PLINK_PROTOCOL is set.
410 */
411 char *p = getenv("PLINK_PROTOCOL");
412 int i;
413 if (p) {
414 for (i = 0; backends[i].backend != NULL; i++) {
415 if (!strcmp(backends[i].name, p)) {
416 default_protocol = cfg.protocol = backends[i].protocol;
417 default_port = cfg.port =
418 backends[i].backend->default_port;
419 break;
420 }
421 }
422 }
423 }
424 while (--argc) {
425 char *p = *++argv;
426 if (*p == '-') {
427 if (!strcmp(p, "-ssh")) {
428 default_protocol = cfg.protocol = PROT_SSH;
429 default_port = cfg.port = 22;
430 } else if (!strcmp(p, "-telnet")) {
431 default_protocol = cfg.protocol = PROT_TELNET;
432 default_port = cfg.port = 23;
433 } else if (!strcmp(p, "-raw")) {
434 default_protocol = cfg.protocol = PROT_RAW;
435 } else if (!strcmp(p, "-v")) {
436 flags |= FLAG_VERBOSE;
437 } else if (!strcmp(p, "-log")) {
438 logfile = "putty.log";
439 } else if (!strcmp(p, "-pw") && argc > 1) {
440 --argc, password = *++argv;
441 } else if (!strcmp(p, "-l") && argc > 1) {
442 char *username;
443 --argc, username = *++argv;
444 strncpy(cfg.username, username, sizeof(cfg.username));
445 cfg.username[sizeof(cfg.username) - 1] = '\0';
446 } else if (!strcmp(p, "-m") && argc > 1) {
447 char *filename, *command;
448 int cmdlen, cmdsize;
449 FILE *fp;
450 int c, d;
451
452 --argc, filename = *++argv;
453
454 cmdlen = cmdsize = 0;
455 command = NULL;
456 fp = fopen(filename, "r");
457 if (!fp) {
458 fprintf(stderr, "plink: unable to open command "
459 "file \"%s\"\n", filename);
460 return 1;
461 }
462 do {
463 c = fgetc(fp);
464 d = c;
465 if (c == EOF)
466 d = 0;
467 if (cmdlen >= cmdsize) {
468 cmdsize = cmdlen + 512;
469 command = srealloc(command, cmdsize);
470 }
471 command[cmdlen++] = d;
472 } while (c != EOF);
473 cfg.remote_cmd_ptr = command;
474 cfg.nopty = TRUE; /* command => no terminal */
475 } else if (!strcmp(p, "-P") && argc > 1) {
476 --argc, portnumber = atoi(*++argv);
477 }
478 } else if (*p) {
479 if (!*cfg.host) {
480 char *q = p;
481 /*
482 * If the hostname starts with "telnet:", set the
483 * protocol to Telnet and process the string as a
484 * Telnet URL.
485 */
486 if (!strncmp(q, "telnet:", 7)) {
487 char c;
488
489 q += 7;
490 if (q[0] == '/' && q[1] == '/')
491 q += 2;
492 cfg.protocol = PROT_TELNET;
493 p = q;
494 while (*p && *p != ':' && *p != '/')
495 p++;
496 c = *p;
497 if (*p)
498 *p++ = '\0';
499 if (c == ':')
500 cfg.port = atoi(p);
501 else
502 cfg.port = -1;
503 strncpy(cfg.host, q, sizeof(cfg.host) - 1);
504 cfg.host[sizeof(cfg.host) - 1] = '\0';
505 } else {
506 char *r;
507 /*
508 * Before we process the [user@]host string, we
509 * first check for the presence of a protocol
510 * prefix (a protocol name followed by ",").
511 */
512 r = strchr(p, ',');
513 if (r) {
514 int i, j;
515 for (i = 0; backends[i].backend != NULL; i++) {
516 j = strlen(backends[i].name);
517 if (j == r - p &&
518 !memcmp(backends[i].name, p, j)) {
519 default_protocol = cfg.protocol =
520 backends[i].protocol;
521 portnumber =
522 backends[i].backend->default_port;
523 p = r + 1;
524 break;
525 }
526 }
527 }
528
529 /*
530 * Three cases. Either (a) there's a nonzero
531 * length string followed by an @, in which
532 * case that's user and the remainder is host.
533 * Or (b) there's only one string, not counting
534 * a potential initial @, and it exists in the
535 * saved-sessions database. Or (c) only one
536 * string and it _doesn't_ exist in the
537 * database.
538 */
539 r = strrchr(p, '@');
540 if (r == p)
541 p++, r = NULL; /* discount initial @ */
542 if (r == NULL) {
543 /*
544 * One string.
545 */
546 Config cfg2;
547 do_defaults(p, &cfg2);
548 if (cfg2.host[0] == '\0') {
549 /* No settings for this host; use defaults */
550 strncpy(cfg.host, p, sizeof(cfg.host) - 1);
551 cfg.host[sizeof(cfg.host) - 1] = '\0';
552 cfg.port = default_port;
553 } else {
554 cfg = cfg2;
555 cfg.remote_cmd_ptr = cfg.remote_cmd;
556 }
557 } else {
558 *r++ = '\0';
559 strncpy(cfg.username, p, sizeof(cfg.username) - 1);
560 cfg.username[sizeof(cfg.username) - 1] = '\0';
561 strncpy(cfg.host, r, sizeof(cfg.host) - 1);
562 cfg.host[sizeof(cfg.host) - 1] = '\0';
563 cfg.port = default_port;
564 }
565 }
566 } else {
567 int len = sizeof(cfg.remote_cmd) - 1;
568 char *cp = cfg.remote_cmd;
569 int len2;
570
571 strncpy(cp, p, len);
572 cp[len] = '\0';
573 len2 = strlen(cp);
574 len -= len2;
575 cp += len2;
576 while (--argc) {
577 if (len > 0)
578 len--, *cp++ = ' ';
579 strncpy(cp, *++argv, len);
580 cp[len] = '\0';
581 len2 = strlen(cp);
582 len -= len2;
583 cp += len2;
584 }
585 cfg.nopty = TRUE; /* command => no terminal */
586 break; /* done with cmdline */
587 }
588 }
589 }
590
591 if (!*cfg.host) {
592 usage();
593 }
594
595 if (!*cfg.remote_cmd_ptr)
596 flags |= FLAG_INTERACTIVE;
597
598 /*
599 * Select protocol. This is farmed out into a table in a
600 * separate file to enable an ssh-free variant.
601 */
602 {
603 int i;
604 back = NULL;
605 for (i = 0; backends[i].backend != NULL; i++)
606 if (backends[i].protocol == cfg.protocol) {
607 back = backends[i].backend;
608 break;
609 }
610 if (back == NULL) {
611 fprintf(stderr,
612 "Internal fault: Unsupported protocol found\n");
613 return 1;
614 }
615 }
616
617 /*
618 * Select port.
619 */
620 if (portnumber != -1)
621 cfg.port = portnumber;
622
623 /*
624 * Initialise WinSock.
625 */
626 winsock_ver = MAKEWORD(2, 0);
627 if (WSAStartup(winsock_ver, &wsadata)) {
628 MessageBox(NULL, "Unable to initialise WinSock", "WinSock Error",
629 MB_OK | MB_ICONEXCLAMATION);
630 return 1;
631 }
632 if (LOBYTE(wsadata.wVersion) != 2 || HIBYTE(wsadata.wVersion) != 0) {
633 MessageBox(NULL, "WinSock version is incompatible with 2.0",
634 "WinSock Error", MB_OK | MB_ICONEXCLAMATION);
635 WSACleanup();
636 return 1;
637 }
638 sk_init();
639
640 /*
641 * Start up the connection.
642 */
643 netevent = CreateEvent(NULL, FALSE, FALSE, NULL);
644 {
645 char *error;
646 char *realhost;
647
648 error = back->init(cfg.host, cfg.port, &realhost);
649 if (error) {
650 fprintf(stderr, "Unable to open connection:\n%s", error);
651 return 1;
652 }
653 sfree(realhost);
654 }
655 connopen = 1;
656
657 stdinevent = CreateEvent(NULL, FALSE, FALSE, NULL);
658 stdoutevent = CreateEvent(NULL, FALSE, FALSE, NULL);
659 stderrevent = CreateEvent(NULL, FALSE, FALSE, NULL);
660
661 inhandle = GetStdHandle(STD_INPUT_HANDLE);
662 outhandle = GetStdHandle(STD_OUTPUT_HANDLE);
663 errhandle = GetStdHandle(STD_ERROR_HANDLE);
664 GetConsoleMode(inhandle, &orig_console_mode);
665 SetConsoleMode(inhandle, ENABLE_PROCESSED_INPUT);
666
667 /*
668 * Turn off ECHO and LINE input modes. We don't care if this
669 * call fails, because we know we aren't necessarily running in
670 * a console.
671 */
672 handles[0] = netevent;
673 handles[1] = stdinevent;
674 handles[2] = stdoutevent;
675 handles[3] = stderrevent;
676 sending = FALSE;
677
678 /*
679 * Create spare threads to write to stdout and stderr, so we
680 * can arrange asynchronous writes.
681 */
682 odata.event = stdoutevent;
683 odata.eventback = CreateEvent(NULL, FALSE, FALSE, NULL);
684 odata.is_stderr = 0;
685 odata.busy = odata.done = 0;
686 if (!CreateThread(NULL, 0, stdout_write_thread,
687 &odata, 0, &out_threadid)) {
688 fprintf(stderr, "Unable to create output thread\n");
689 exit(1);
690 }
691 edata.event = stderrevent;
692 edata.eventback = CreateEvent(NULL, FALSE, FALSE, NULL);
693 edata.is_stderr = 1;
694 edata.busy = edata.done = 0;
695 if (!CreateThread(NULL, 0, stdout_write_thread,
696 &edata, 0, &err_threadid)) {
697 fprintf(stderr, "Unable to create error output thread\n");
698 exit(1);
699 }
700
701 while (1) {
702 int n;
703
704 if (!sending && back->sendok()) {
705 /*
706 * Create a separate thread to read from stdin. This is
707 * a total pain, but I can't find another way to do it:
708 *
709 * - an overlapped ReadFile or ReadFileEx just doesn't
710 * happen; we get failure from ReadFileEx, and
711 * ReadFile blocks despite being given an OVERLAPPED
712 * structure. Perhaps we can't do overlapped reads
713 * on consoles. WHY THE HELL NOT?
714 *
715 * - WaitForMultipleObjects(netevent, console) doesn't
716 * work, because it signals the console when
717 * _anything_ happens, including mouse motions and
718 * other things that don't cause data to be readable
719 * - so we're back to ReadFile blocking.
720 */
721 idata.event = stdinevent;
722 idata.eventback = CreateEvent(NULL, FALSE, FALSE, NULL);
723 if (!CreateThread(NULL, 0, stdin_read_thread,
724 &idata, 0, &in_threadid)) {
725 fprintf(stderr, "Unable to create input thread\n");
726 exit(1);
727 }
728 sending = TRUE;
729 }
730
731 n = WaitForMultipleObjects(4, handles, FALSE, INFINITE);
732 if (n == 0) {
733 WSANETWORKEVENTS things;
734 SOCKET socket;
735 extern SOCKET first_socket(int *), next_socket(int *);
736 extern int select_result(WPARAM, LPARAM);
737 int i, socketstate;
738
739 /*
740 * We must not call select_result() for any socket
741 * until we have finished enumerating within the tree.
742 * This is because select_result() may close the socket
743 * and modify the tree.
744 */
745 /* Count the active sockets. */
746 i = 0;
747 for (socket = first_socket(&socketstate);
748 socket != INVALID_SOCKET;
749 socket = next_socket(&socketstate)) i++;
750
751 /* Expand the buffer if necessary. */
752 if (i > sksize) {
753 sksize = i + 16;
754 sklist = srealloc(sklist, sksize * sizeof(*sklist));
755 }
756
757 /* Retrieve the sockets into sklist. */
758 skcount = 0;
759 for (socket = first_socket(&socketstate);
760 socket != INVALID_SOCKET;
761 socket = next_socket(&socketstate)) {
762 sklist[skcount++] = socket;
763 }
764
765 /* Now we're done enumerating; go through the list. */
766 for (i = 0; i < skcount; i++) {
767 WPARAM wp;
768 socket = sklist[i];
769 wp = (WPARAM) socket;
770 if (!WSAEnumNetworkEvents(socket, NULL, &things)) {
771 noise_ultralight(socket);
772 noise_ultralight(things.lNetworkEvents);
773 if (things.lNetworkEvents & FD_READ)
774 connopen &= select_result(wp, (LPARAM) FD_READ);
775 if (things.lNetworkEvents & FD_CLOSE)
776 connopen &= select_result(wp, (LPARAM) FD_CLOSE);
777 if (things.lNetworkEvents & FD_OOB)
778 connopen &= select_result(wp, (LPARAM) FD_OOB);
779 if (things.lNetworkEvents & FD_WRITE)
780 connopen &= select_result(wp, (LPARAM) FD_WRITE);
781 if (things.lNetworkEvents & FD_ACCEPT)
782 connopen &= select_result(wp, (LPARAM) FD_ACCEPT);
783
784 }
785 }
786 } else if (n == 1) {
787 reading = 0;
788 noise_ultralight(idata.len);
789 if (idata.len > 0) {
790 back->send(idata.buffer, idata.len);
791 } else {
792 back->special(TS_EOF);
793 }
794 } else if (n == 2) {
795 odata.busy = 0;
796 if (!odata.writeret) {
797 fprintf(stderr, "Unable to write to standard output\n");
798 exit(0);
799 }
800 bufchain_consume(&stdout_data, odata.lenwritten);
801 if (bufchain_size(&stdout_data) > 0)
802 try_output(0);
803 back->unthrottle(bufchain_size(&stdout_data) +
804 bufchain_size(&stderr_data));
805 } else if (n == 3) {
806 edata.busy = 0;
807 if (!edata.writeret) {
808 fprintf(stderr, "Unable to write to standard output\n");
809 exit(0);
810 }
811 bufchain_consume(&stderr_data, edata.lenwritten);
812 if (bufchain_size(&stderr_data) > 0)
813 try_output(1);
814 back->unthrottle(bufchain_size(&stdout_data) +
815 bufchain_size(&stderr_data));
816 }
817 if (!reading && back->sendbuffer() < MAX_STDIN_BACKLOG) {
818 SetEvent(idata.eventback);
819 reading = 1;
820 }
821 if (!connopen || back->socket() == NULL)
822 break; /* we closed the connection */
823 }
824 WSACleanup();
825 return 0;
826 }