/[winpt]/trunk/Src/wptKeyserver.cpp
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Annotation of /trunk/Src/wptKeyserver.cpp

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Revision 226 - (hide annotations)
Mon Jun 12 13:40:21 2006 UTC (18 years, 8 months ago) by twoaday
File size: 35497 byte(s)
Prepare new release.


1 werner 36 /* wptKeyserver.cpp - W32 Keyserver Access
2 twoaday 200 * Copyright (C) 2000-2006 Timo Schulz
3 werner 36 * Copyright (C) 2001 Marco Cunha
4     *
5     * This file is part of WinPT.
6     *
7     * WinPT is free software; you can redistribute it and/or
8     * modify it under the terms of the GNU General Public License
9     * as published by the Free Software Foundation; either version 2
10     * of the License, or (at your option) any later version.
11     *
12     * WinPT is distributed in the hope that it will be useful,
13     * but WITHOUT ANY WARRANTY; without even the implied warranty of
14     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15     * General Public License for more details.
16     *
17     * You should have received a copy of the GNU General Public License
18     * along with WinPT; if not, write to the Free Software Foundation,
19     * Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20     */
21    
22     #ifdef HAVE_CONFIG_H
23     #include <config.h>
24     #endif
25    
26     #include <windows.h>
27 twoaday 150 #include <shlobj.h>
28 werner 36 #include <stdio.h>
29     #include <sys/stat.h>
30     #include <ctype.h>
31    
32     #include "wptKeyserver.h"
33     #include "wptErrors.h"
34     #include "wptTypes.h"
35     #include "wptNLS.h"
36     #include "wptW32API.h"
37     #include "wptGPG.h"
38     #include "wptRegistry.h"
39 twoaday 225 #include "wptUTF8.h"
40 werner 36
41 twoaday 200 /* Map net_errno to a winsock error. */
42 twoaday 119 #define net_errno ((int)WSAGetLastError ())
43    
44 werner 36
45     keyserver server[MAX_KEYSERVERS] = {0};
46 twoaday 180 keyserver_proxy_s proxy = {0};
47 twoaday 119 static const char *server_list[] = {
48 twoaday 193 "hkp://sks.keyserver.penguin.de",
49 werner 36 "hkp://subkeys.pgp.net",
50     "ldap://keyserver.pgp.com",
51     NULL
52     };
53    
54    
55 twoaday 119 static char hkp_errmsg[1024]; /* Holds the error message from the server */
56     static int hkp_err = 0; /* != 0 indicates an error occurred. */
57    
58 twoaday 147 /* Default keyserver and port. */
59     char *default_keyserver = NULL;
60     WORD default_keyserver_port = 0;
61 twoaday 119
62 twoaday 181 /* Default socket timeout. */
63 twoaday 195 static int default_socket_timeout = 6;
64 twoaday 119
65 twoaday 214
66     /* Wrapper for safe memory allocation. */
67     static char*
68     safe_alloc (DWORD n)
69     {
70     char *p;
71    
72     p = new char[n+1];
73     if (!p)
74     BUG (0);
75     memset (p, 0, n);
76     return p;
77     }
78    
79 twoaday 180 /* Basic64 encode the input @inbuf to @outbuf. */
80 werner 36 static void
81 twoaday 180 base64_encode (const char *inbuf, char *outbuf)
82 twoaday 181 {
83     char base64code[] =
84     "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
85 twoaday 180 int index = 0, temp = 0, res = 0;
86     int i = 0, inputlen = 0, len = 0;
87 werner 36
88 twoaday 180 inputlen = strlen (inbuf);
89     for (i = 0; i < inputlen; i++) {
90 werner 36 res = temp;
91 twoaday 180 res = (res << 8) | (inbuf[i] & 0xFF);
92 werner 36 switch (index++) {
93 twoaday 180 case 0:
94     outbuf[len++] = base64code[res >> 2 & 0x3F];
95     res &= 0x3;
96     break;
97     case 1:
98     outbuf[len++] = base64code[res >> 4 & 0x3F];
99     res &= 0xF;
100     break;
101     case 2:
102     outbuf[len++] = base64code[res >> 6 & 0x3F];
103     outbuf[len++] = base64code[res & 0x3F];
104     res = index = 0;
105     break;
106 werner 36 }
107     temp = res;
108     }
109    
110 twoaday 180 if (index == 2) {
111     outbuf[len++] = base64code[temp << 2 & 0x3F];
112     outbuf[len++] = '=';
113 werner 36 }
114 twoaday 180 else if (index == 1) {
115     outbuf[len++] = base64code[temp << 4 & 0x3F];
116     outbuf[len++] = '=';
117     outbuf[len++] = '=';
118     }
119    
120     outbuf[len] = '\0';
121 twoaday 119 }
122 werner 36
123    
124 twoaday 222 /* Check that the given buffer contains a valid keyserver URL
125     and return the prefix length, 0 in case of an error. */
126     static int
127     check_URL (const char *buf)
128     {
129     const char *proto[] = {
130     "ldap://",
131     "http://",
132     "finger://",
133     "hkp://",
134     NULL};
135     int i;
136    
137     if (strlen (buf) < 7)
138     return 0;
139    
140     for (i=0; proto[i] != NULL; i++) {
141     if (strstr (buf, proto[i]))
142     return strlen (proto[i]);
143     }
144     return 0;
145     }
146    
147    
148 werner 36 /* Skip the URL schema and return only the host part of it. */
149 twoaday 119 static const char*
150     skip_type_prefix (const char *hostname)
151 werner 36 {
152 twoaday 222 int pos;
153    
154     if (!hostname)
155     return hostname;
156    
157     pos = check_URL (hostname);
158     if (pos > 0)
159     hostname += pos;
160 werner 36 return hostname;
161     }
162    
163    
164     /* Check that the keyserver response indicates an OK.
165     Return 0 on success. */
166     static int
167     check_hkp_response (const char *resp, int recv)
168 twoaday 119 {
169     char *p, *end;
170 werner 36 int ec, len;
171    
172 twoaday 220 log_debug ("check_hkp_response: '%s'\r\n", resp);
173 werner 36 ec = recv ? WPTERR_WINSOCK_RECVKEY : WPTERR_WINSOCK_SENDKEY;
174     if (!strstr (resp, "HTTP/1.0 200 OK") &&
175     !strstr (resp, "HTTP/1.1 200 OK")) /* http error */
176     return ec;
177     if (strstr (resp, "Public Key Server -- Error")
178     || strstr (resp, "Public Key Server -- Error")
179     || strstr (resp, "No matching keys in database")) {
180     p = strstr (resp, "<p>");
181 twoaday 222 if (p && strlen (p) < sizeof (hkp_errmsg)-1) {
182 werner 36 end = strstr (p, "</p>");
183     len = end? (end - p + 1) : strlen (p);
184 twoaday 119 memset (hkp_errmsg, 0, sizeof (hkp_errmsg));
185 werner 36 strncpy (hkp_errmsg, p, len);
186     hkp_err = 1;
187     }
188     return ec;
189     }
190     return 0;
191     }
192    
193    
194     /* Read a single line (\r\n) from a socket.
195     Return 0 on success. */
196     static int
197     sock_getline (int fd, char *buf, int buflen, int *nbytes)
198     {
199     char ch;
200 twoaday 180 int nread = 0;
201 werner 36
202     if (nbytes)
203     *nbytes = 0;
204     *buf = 0;
205     while (recv (fd, &ch, 1, 0) > 0) {
206     *buf++ = ch;
207 twoaday 180 nread++;
208     if (ch == '\r')
209     continue; /* remove this char. */
210     if (ch == '\n' || nread == (buflen - 1)) {
211 werner 36 *buf = 0;
212     if (nbytes)
213 twoaday 180 *nbytes = nread;
214 werner 36 return 0;
215     }
216     }
217    
218     return -1;
219     }
220    
221    
222     /* Perform a select() on the given fd to find out
223     is there is data for reading. Wait at least @nsecs seconds. */
224     static int
225     sock_select (int fd, int nsecs)
226     {
227     FD_SET rfd;
228     timeval tv = {nsecs, 0};
229    
230     FD_ZERO (&rfd);
231     FD_SET (fd, &rfd);
232 twoaday 119 if (select (fd + 1, &rfd, NULL, NULL, &tv) == SOCKET_ERROR) {
233     log_debug ("sock_select: select() failed ec=%d.\r\n", net_errno);
234 werner 36 return SOCKET_ERROR;
235 twoaday 119 }
236 werner 36 if (FD_ISSET (fd, &rfd))
237     return 1;
238     return 0;
239     }
240    
241    
242 twoaday 119 /* Read from a socket @fd to buffer @buf with a fixed timeout
243     of 10 seconds. The amount of bytes which were read are
244     returned in @nbytes.
245 werner 36 Return value: 0 on success. */
246     static int
247     sock_read (int fd, char *buf, int buflen, int *nbytes)
248 twoaday 181 {
249 twoaday 119 DWORD nread;
250 werner 36 int nleft = buflen;
251     int rc, n = 0;
252 twoaday 195
253     if (nbytes)
254     *nbytes = 0;
255 werner 36 while (nleft > 0) {
256 twoaday 181 if (n >= default_socket_timeout)
257 werner 36 return WPTERR_WINSOCK_TIMEOUT;
258     rc = sock_select (fd, 1);
259     if (rc == SOCKET_ERROR)
260 twoaday 119 return rc;
261     else if (!rc)
262 werner 36 n++;
263     else {
264     nread = recv (fd, buf, nleft, 0);
265 twoaday 119 if (nread == SOCKET_ERROR) {
266     log_debug ("sock_read: recv() failed ec=%d.\r\n", net_errno);
267 werner 36 return SOCKET_ERROR;
268 twoaday 119 }
269 werner 36 else if (!nread)
270     break;
271     nleft -= nread;
272     buf += nread;
273     }
274     }
275     if (nbytes)
276     *nbytes = buflen - nleft;
277    
278     return 0;
279     }
280    
281 twoaday 209
282     /* Helper to create a string from the gpgme data and
283     then release the gpgme data object. */
284     char*
285     data_release_and_get_mem (gpgme_data_t in, int *r_bufferlen)
286     {
287     size_t n;
288     char *buffer, *p;
289    
290     gpg_data_putc (in, '\0');
291     p = gpgme_data_release_and_get_mem (in, &n);
292     buffer = m_strdup (p);
293     if (r_bufferlen)
294     *r_bufferlen = (int)n;
295     gpgme_free (p);
296     return buffer;
297     }
298    
299    
300 twoaday 147 /* Read much data as possible from the socket @fd and
301     return the data in @buffer. Caller must free data.
302     Return value: 0 on success. */
303     int
304     sock_read_ext (int fd, char **buffer, int *r_bufferlen)
305     {
306     gpgme_data_t dh;
307 twoaday 209 char buf[1024];
308 twoaday 147 size_t n=0;
309     int nread, rc;
310 werner 36
311 twoaday 209 if (gpgme_data_new (&dh))
312     BUG (0);
313 twoaday 147 while (n < 10) {
314     rc = sock_select (fd, 1);
315     if (rc == SOCKET_ERROR) {
316     gpgme_data_release (dh);
317     return rc;
318     }
319     else if (!rc)
320     n++;
321     else {
322     nread = recv (fd, buf, sizeof (buf), 0);
323     if (nread == SOCKET_ERROR)
324     return SOCKET_ERROR;
325     else if (!nread)
326     break;
327     gpgme_data_write (dh, buf, nread);
328     }
329     }
330 twoaday 209
331     *buffer = data_release_and_get_mem (dh, r_bufferlen);
332 twoaday 147 return 0;
333     }
334    
335    
336 twoaday 119 /* Write the buffer @buf with the length @buflen to a socket @fd. */
337 werner 36 static int
338     sock_write (int fd, const char *buf, int buflen)
339     {
340 twoaday 119 DWORD nwritten;
341 werner 36 int nleft = buflen;
342    
343     while (nleft > 0) {
344     nwritten = send (fd, buf, nleft, 0);
345 twoaday 119 if (nwritten == SOCKET_ERROR) {
346     log_debug ("sock_write: send() failed ec=%d\r\n", net_errno);
347 werner 36 return SOCKET_ERROR;
348 twoaday 119 }
349 werner 36 nleft -= nwritten;
350 twoaday 180 buf += nwritten;
351 werner 36 }
352    
353     return 0;
354     }
355    
356    
357     /* Initialize the Winsock2 interface.*/
358     int
359     wsock_init (void)
360     {
361     WSADATA wsa;
362    
363 twoaday 119 if (WSAStartup (0x202, &wsa)) {
364     log_debug ("wsock_init: WSAStartup failed ec=%d\r\n", net_errno);
365 werner 36 return WPTERR_WINSOCK_INIT;
366 twoaday 119 }
367 werner 36 return 0;
368     }
369    
370    
371     /* Cleanup the Winsock2 interface. */
372     void
373     wsock_end (void)
374     {
375 twoaday 150 char *p;
376 werner 36 int i;
377    
378 twoaday 150 p = make_special_filename (CSIDL_APPDATA, "winpt\\keyserver.conf", NULL);
379     kserver_save_conf (p);
380     free_if_alloc (p);
381 werner 36 free_if_alloc (default_keyserver);
382     for (i=0; i < MAX_KEYSERVERS; i++) {
383 twoaday 181 if (server[i].used && server[i].name != NULL)
384 werner 36 free_if_alloc (server[i].name);
385     }
386 twoaday 180 kserver_proxy_release (&proxy);
387 werner 36 WSACleanup ();
388 twoaday 222 log_debug ("wsock_end: cleanup finished.\r\n");
389 werner 36 }
390    
391    
392     /* Return a string representation of a winsock error. */
393     const char*
394     wsock_strerror (void)
395 twoaday 211 {
396 werner 36 int ec = WSAGetLastError ();
397    
398 twoaday 211 if (!ec)
399     return "";
400 werner 36 switch (ec) {
401 twoaday 119 case WSAENETDOWN:
402 twoaday 211 return _("Network unreachable");
403    
404     case WSAEHOSTUNREACH:
405     return _("Host unreachable");
406    
407 twoaday 119 case WSAHOST_NOT_FOUND:
408 twoaday 211 return _("Could not resolve host name");
409    
410     case WSAECONNREFUSED:
411     return _("Connection refused");
412    
413 twoaday 119 case WSAETIMEDOUT:
414 twoaday 211 case WSAECONNABORTED:
415     return _("Connection timeout");
416    
417     case WSAENETRESET:
418     case WSAECONNRESET:
419     return _("Connection resetted by peer");
420    
421     case WSAESHUTDOWN:
422     return _("Socket has been shutdown");
423    
424 twoaday 119 default:
425 twoaday 211 break;
426 werner 36 }
427 twoaday 211
428     return "";
429 werner 36 }
430    
431    
432 twoaday 181 /* Set default socket timeout for all reading operations. */
433     void
434     kserver_set_socket_timeout (int nsec)
435     {
436 twoaday 222 if (nsec < 0 || nsec > 3600)
437 twoaday 181 nsec = 0;
438     default_socket_timeout = nsec;
439     }
440    
441    
442 werner 36 /* Return the last keyserver error as a string. */
443     const char*
444     kserver_strerror (void)
445     {
446     if (hkp_err)
447     return hkp_errmsg;
448     return NULL;
449     }
450    
451    
452     /* Read a keyserver from the list at index @idx.
453     Return value: keyserver name at the given position. */
454     const char*
455 twoaday 119 kserver_get_hostname (int idx, int type, WORD *port)
456 werner 36 {
457     if (type == -1) {
458     *port = default_keyserver_port;
459     return default_keyserver;
460     }
461     else if (!type && idx < DIM (server_list)) {
462 twoaday 222 /* XXX: handle non HKP servers. */
463 werner 36 *port = HKP_PORT;
464     return server_list[idx];
465     }
466     return NULL;
467     }
468    
469    
470     /* Check if the computer is connected to the internet.
471     Return 0 on success -1 otherwise. */
472     int
473     kserver_check_inet_connection (void)
474     {
475     int fd;
476    
477     if (!kserver_connect (default_keyserver, default_keyserver_port, &fd)) {
478     closesocket (fd);
479     return 0;
480     }
481 twoaday 220 log_debug ("kserver_check_inet_connection: no inet connection.\r\n");
482 werner 36 return -1;
483     }
484    
485    
486 twoaday 119 /* If the request contains the keyid, it have to be
487     always postfix with '0x'+keyid. This code checks
488     if the keyid is a decimal value and if so if it contains
489 twoaday 180 the '0x'. If not it is inserted. */
490 werner 36 const char*
491     kserver_check_keyid (const char *keyid)
492     {
493 twoaday 222 static char id[22];
494 werner 36
495     if (strstr (keyid, "@"))
496     return keyid; /* email address */
497     if (strncmp (keyid, "0x", 2)) {
498     memset (&id, 0, sizeof (id));
499     _snprintf (id, sizeof (id)-1, "0x%s", keyid);
500     return id;
501     }
502     return keyid;
503 twoaday 119 }
504 werner 36
505    
506 twoaday 119 /* Update the keyserver proxy user. */
507 werner 36 static void
508 twoaday 180 update_proxy_user (const char *proxy_user, const char *proxy_pass)
509 werner 36 {
510     char t[257]; /* user:pass = 127+1+127+1 = 257 */
511     int n = 0;
512    
513     n = 4*strlen (proxy_user) / 3 + 32 + strlen (proxy_pass) + 2;
514     free_if_alloc (proxy.base64_user);
515 twoaday 214 proxy.base64_user = safe_alloc (n+1);
516 werner 36 _snprintf (t, sizeof (t)-1, "%s:%s", proxy_user, proxy_pass);
517 twoaday 180 base64_encode (t, proxy.base64_user);
518 werner 36 free_if_alloc (proxy.user);
519     free_if_alloc (proxy.pass);
520     proxy.user = m_strdup (proxy_user);
521     proxy.pass = m_strdup (proxy_pass);
522 twoaday 119 }
523 werner 36
524    
525     /* Get the port number from the given protocol. */
526     static int
527     port_from_proto (int proto)
528     {
529     switch (proto) {
530 twoaday 226 case KSPROTO_LDAP: return LDAP_PORT;
531 werner 36 case KSPROTO_FINGER: return FINGER_PORT;
532 twoaday 214 case KSPROTO_HTTP: return HKP_PORT;
533 werner 36 }
534     return 0;
535     }
536    
537    
538     /* Get the port number from the given URL. */
539     static int
540 twoaday 180 proto_from_URL (const char *buf)
541 werner 36 {
542 twoaday 214 if (strstr (buf, "ldap"))
543 werner 36 return KSPROTO_LDAP;
544 twoaday 226 else if (strstr (buf, "finger"))
545 werner 36 return KSPROTO_FINGER;
546     return KSPROTO_HKP;
547     }
548    
549    
550 twoaday 220 /* Set the default keyserver.
551     If @hostname is NULL, use the predefined keyserver. */
552 werner 36 void
553 twoaday 119 keyserver_set_default (const char *hostname, WORD port)
554 werner 36 {
555 twoaday 220 if (!port)
556     port = HKP_PORT;
557 twoaday 181 if (hostname != NULL) {
558 werner 36 free_if_alloc (default_keyserver);
559     default_keyserver = m_strdup (hostname);
560     default_keyserver_port = port;
561     }
562 twoaday 220 if (!default_keyserver) {
563 twoaday 181 default_keyserver = m_strdup (DEF_HKP_KEYSERVER);
564 twoaday 220 default_keyserver_port = HKP_PORT;
565     }
566 werner 36 server[0].name = m_strdup (default_keyserver);
567     server[0].used = 1;
568     server[0].port = port;
569     server[0].proto = proto_from_URL (default_keyserver);
570 twoaday 119 }
571 werner 36
572    
573 twoaday 119 /* Skip all kind of whitespace chars in @str. */
574     static const char*
575     skip_whitespace (const char *str)
576 werner 36 {
577 twoaday 119 while (str && *str) {
578 werner 36 if (*str == ' ' ||
579     *str == '\t' ||
580     *str == '\n' ||
581 twoaday 119 *str == '\r') {
582 werner 36 str++;
583     continue;
584     }
585     break;
586     }
587     return str;
588     }
589    
590    
591 twoaday 150 /* Save the keyserver config file in @conf. */
592     int
593     kserver_save_conf (const char *conf)
594     {
595     FILE *fp;
596     int pos;
597    
598     fp = fopen (conf, "wb");
599     if (!fp) {
600     msg_box (NULL, _("Could not save keyserver.conf file"),
601     _("Keyserver"), MB_ERR);
602     return -1;
603     }
604    
605 twoaday 180 fprintf (fp, "# do NOT manually modify this file, it will be "
606     "generated automatically!!\r\n");
607 twoaday 150 for (pos = 0; pos < MAX_KEYSERVERS; pos++) {
608     if (!server[pos].used)
609     continue;
610 twoaday 165 fprintf (fp, "%s:%d\r\n", server[pos].name, server[pos].port);
611 twoaday 150 }
612     fclose (fp);
613     return 0;
614     }
615    
616    
617 twoaday 147 /* Load the keyserver config file @conf. */
618 werner 36 int
619 twoaday 147 kserver_load_conf (const char *conf)
620 twoaday 193 {
621 werner 36 FILE *fp;
622 twoaday 180 char buf[1024], *s, *p;
623 werner 36 char *user = NULL, *pass = NULL;
624 twoaday 119 int no_config=0, chk_pos=0;
625 twoaday 73 int pos;
626 werner 36
627     for (pos = 0; pos < MAX_KEYSERVERS; pos++) {
628     server[pos].used = 0;
629     server[pos].port = HKP_PORT;
630     }
631    
632     fp = fopen (conf, "rb");
633     if (!fp) {
634     for (pos = 0; server_list[pos]; pos++) {
635     server[pos].used = 1;
636     server[pos].name = m_strdup (server_list[pos]);
637     server[pos].proto = proto_from_URL (server_list[pos]);
638     }
639     no_config=1;
640     }
641 twoaday 180 get_reg_proxy_prefs (&proxy);
642 werner 36 if (user && pass)
643 twoaday 180 update_proxy_user (user, pass);
644 werner 36 else if (user && !pass || !user && pass) {
645 twoaday 147 msg_box (NULL, _("Invalid proxy configuration."
646 werner 36 "You need to set a user and a password"
647 twoaday 147 "to use proxy authentication!"),
648     _("Proxy Error"), MB_ERR);
649 werner 36 }
650     /* check if the host has a http:// prefix and skip it */
651 twoaday 147 if (proxy.host && !strncmp (proxy.host, "http://", 7)) {
652 twoaday 119 char *host = m_strdup (proxy.host+7);
653 werner 36 free_if_alloc (proxy.host);
654 twoaday 119 proxy.host = host;
655 werner 36 }
656     free_if_alloc (user);
657     free_if_alloc (pass);
658    
659     pos = 0;
660 twoaday 147 while (fp && !feof (fp)) {
661 werner 36 s = fgets (buf, sizeof (buf)-1, fp);
662     if (!s)
663     break;
664     if (strstr (buf, "\r\n"))
665     buf[strlen (buf)-2] = '\0';
666     if (strstr (buf, "\n"))
667     buf[strlen (buf)-1] = '\0';
668     s = (char *)skip_whitespace (buf);
669     if (*s == '#' || strlen (s) < 7)
670     continue;
671 twoaday 222 chk_pos = check_URL (s);
672     if (!chk_pos) {
673 werner 36 msg_box (NULL, _("All entries of this file must have a valid prefix.\n"
674     "Currently HKP/HTTP, LDAP and FINGER are supported.\n"),
675     _("Keyserver Error"), MB_ERR);
676     continue;
677     }
678     p = strchr (s+chk_pos, ':');
679     server[pos].used = 1;
680     server[pos].proto = proto_from_URL (s);
681     server[pos].port = port_from_proto (server[pos].proto);
682     if (!p)
683     server[pos].name = m_strdup (s);
684     else {
685     server[pos].port = atol (p+1);
686     if (server[pos].port < 0 || server[pos].port > 65536)
687     server[pos].port = HKP_PORT;
688 twoaday 214 server[pos].name = safe_alloc ((p-s)+2);
689 werner 36 memset (server[pos].name, 0, (p-s)+2);
690     memcpy (server[pos].name, s, (p-s));
691     }
692     pos++;
693 twoaday 147 if (pos > MAX_KEYSERVERS) {
694     msg_box (NULL, _("The keyserver limit is exceeded"),
695     _("Keyserver Warning"), MB_INFO);
696 werner 36 break;
697     }
698     }
699     if (fp)
700     fclose (fp);
701 twoaday 73 if (!pos) {
702 twoaday 180 /* only issue an error if the config file exist but
703     it has no valid entries. */
704 werner 36 keyserver_set_default (NULL, HKP_PORT);
705     if (!no_config)
706 twoaday 147 return WPTERR_CONFIG_FILE;
707 werner 36 }
708    
709     return 0;
710 twoaday 147 }
711 werner 36
712    
713 twoaday 119 /* Connect to the keyserver @hostname (port @port).
714     Return value: 0 on success */
715 werner 36 int
716 twoaday 119 kserver_connect (const char *hostname, WORD port, int *conn_fd)
717 twoaday 197 {
718 werner 36 struct hostent *hp;
719     struct sockaddr_in sock;
720 twoaday 197 char host[128] = {0};
721     DWORD iaddr;
722     int rc, fd;
723 werner 36
724     log_debug ("kserver_connect: %s:%d\r\n", hostname, port);
725    
726     if (!port)
727     port = HKP_PORT;
728     if (conn_fd)
729     *conn_fd = 0;
730     hostname = skip_type_prefix (hostname);
731    
732 twoaday 197 if (proxy.host && proxy.proto == PROXY_PROTO_HTTP)
733     port = proxy.port;
734 werner 36 memset (&sock, 0, sizeof (sock));
735     sock.sin_family = AF_INET;
736 twoaday 197 sock.sin_port = htons (port);
737 werner 36 if (proxy.host)
738     strncpy (host, proxy.host, 127);
739     else
740     strncpy (host, hostname, 127);
741 twoaday 197
742 werner 36 if ((iaddr = inet_addr (host)) != INADDR_NONE)
743     memcpy (&sock.sin_addr, &iaddr, sizeof (iaddr));
744     else if ((hp = gethostbyname (host))) {
745     if (hp->h_addrtype != AF_INET || hp->h_length != 4) {
746     log_debug ("gethostbyname: unknown address type.\r\n");
747     return WPTERR_WINSOCK_RESOLVE;
748     }
749     memcpy (&sock.sin_addr, hp->h_addr, hp->h_length);
750     }
751     else {
752 twoaday 119 log_debug ("gethostbyname: failed ec=%d.\r\n", net_errno);
753 werner 36 return WPTERR_WINSOCK_RESOLVE;
754     }
755     fd = socket (AF_INET, SOCK_STREAM, 0);
756     if (fd == INVALID_SOCKET)
757     return WPTERR_WINSOCK_SOCKET;
758     rc = connect (fd, (struct sockaddr *) &sock, sizeof (sock));
759     if (rc == SOCKET_ERROR) {
760 twoaday 119 log_debug ("connect: failed ec=%d.\r\n", net_errno);
761 werner 36 closesocket (fd);
762     return WPTERR_WINSOCK_CONNECT;
763     }
764    
765 twoaday 185 if (proxy.proto == PROXY_PROTO_SOCKS5) {
766 twoaday 180 rc = socks_handshake (&proxy, fd, hostname, port);
767     if (rc) {
768     closesocket (fd);
769     return WPTERR_GENERAL; /* XXX: use better code. */
770     }
771     }
772    
773 werner 36 if (conn_fd)
774     *conn_fd = fd;
775     WSASetLastError (0);
776     return 0;
777 twoaday 119 }
778 werner 36
779    
780 twoaday 222 /* Check if the URL needs to be encoded or not. */
781 twoaday 144 static bool
782     URL_must_encoded (const char *url)
783     {
784     if (strchr (url, '.') || strchr (url, '@') || strchr (url, ' '))
785     return true;
786     return false;
787     }
788    
789    
790     /* Perform URL encoding of the given data. */
791 werner 36 static char*
792 twoaday 214 URL_encode (const char *url, DWORD ulen, DWORD *ret_nlen)
793 werner 36 {
794 twoaday 144 gpgme_data_t hd;
795 twoaday 209 char numbuf[5], *p;
796     size_t i;
797     int nlen;
798 werner 36
799 twoaday 209 if (gpgme_data_new (&hd))
800     BUG (0);
801 twoaday 144 for (i=0; i < ulen; i++) {
802     if (isalnum (url[i]) || url[i] == '-')
803     gpg_data_putc (hd, url[i]);
804     else if (url[i] == ' ')
805     gpg_data_putc (hd, '+');
806 werner 36 else {
807 twoaday 144 sprintf (numbuf, "%%%02X", url[i]);
808     gpgme_data_write (hd, numbuf, strlen (numbuf));
809 werner 36 }
810     }
811 twoaday 144
812 twoaday 209 p = data_release_and_get_mem (hd, &nlen);
813 twoaday 144 if (ret_nlen)
814 twoaday 209 *ret_nlen = nlen;
815 werner 36 return p;
816     }
817    
818    
819     /* Format a request for the given keyid (send). */
820     static char*
821 twoaday 119 kserver_send_request (const char *hostname, WORD port,
822 twoaday 214 const char *pubkey, DWORD octets)
823 werner 36 {
824 twoaday 214 const char *fmt;
825     char *request;
826     char *enc_pubkey;
827     DWORD enc_octets;
828 werner 36 int reqlen;
829    
830 twoaday 119 log_debug ("kserver_send_request: %s:%d\r\n", hostname, port);
831 werner 36
832     if (!port)
833     port = HKP_PORT;
834 twoaday 144 enc_pubkey = URL_encode (pubkey, octets, &enc_octets);
835 twoaday 214 reqlen = 2*strlen (hostname) + 2*32/*port*/ + enc_octets + 32 /*len*/ + 1;
836 werner 36
837 twoaday 180 if (proxy.user && proxy.proto == PROXY_PROTO_HTTP) {
838 twoaday 214 fmt = "POST http://%s:%d/pks/add HTTP/1.0\r\n"
839     "Referer: \r\n"
840     "User-Agent: WinPT/W32\r\n"
841     "Host: %s:%d\r\n"
842     "Proxy-Authorization: Basic %s\r\n"
843     "Content-type: application/x-www-form-urlencoded\r\n"
844     "Content-length: %d\r\n"
845     "\r\n"
846     "keytext=%s"
847     "\r\n";
848     reqlen += strlen (fmt) + strlen (proxy.base64_user) + 1;
849     request = safe_alloc (reqlen+1);
850     _snprintf (request, reqlen, fmt,
851     skip_type_prefix (hostname), port, hostname, port,
852 werner 36 proxy.base64_user, enc_octets+9, enc_pubkey);
853     }
854     else {
855 twoaday 214 fmt = "POST /pks/add HTTP/1.0\r\n"
856     "Referer: \r\n"
857     "User-Agent: WinPT/W32\r\n"
858     "Host: %s:%d\r\n"
859     "Content-type: application/x-www-form-urlencoded\r\n"
860     "Content-length: %d\r\n"
861     "\r\n"
862     "keytext=%s"
863     "\r\n";
864     reqlen += strlen (fmt)+1;
865     request = safe_alloc (reqlen+1);
866     _snprintf (request, reqlen, fmt,
867     skip_type_prefix (hostname), port,
868 twoaday 119 enc_octets+9, enc_pubkey);
869 werner 36 }
870 twoaday 214
871 werner 36 free_if_alloc (enc_pubkey);
872 twoaday 220 log_debug ("request:\r\n%s\r\n", request);
873 werner 36 return request;
874 twoaday 119 }
875 werner 36
876    
877 twoaday 209 /* Interface for receiving a public key. */
878 werner 36 int
879 twoaday 209 kserver_recvkey (const char *hostname, WORD port, const char *keyid,
880     char **r_key, int *r_keylen)
881 twoaday 119 {
882 twoaday 214 const char *fmt;
883 twoaday 119 char *request = NULL;
884     int conn_fd;
885 twoaday 214 int rc, reqlen;
886 twoaday 119
887 werner 36 if (!port)
888     port = HKP_PORT;
889 twoaday 214 hkp_err = 0; /* reset */
890 werner 36 rc = kserver_connect (hostname, port, &conn_fd);
891     if (rc)
892     goto leave;
893 twoaday 214
894     reqlen = strlen (hostname)+32+strlen (keyid)+1;
895 twoaday 180 if (proxy.host && proxy.user && proxy.proto == PROXY_PROTO_HTTP) {
896 twoaday 214 fmt = "GET http://%s:%d/pks/lookup?op=get&search=%s HTTP/1.0\r\n"
897     "Proxy-Authorization: Basic %s\r\n\r\n";
898     reqlen =+ strlen (fmt) + strlen (proxy.base64_user)+1;
899     request = safe_alloc (reqlen+1);
900     _snprintf (request, reqlen, fmt, skip_type_prefix (hostname), port,
901     keyid, proxy.base64_user);
902 werner 36 }
903 twoaday 180 else if (proxy.host && proxy.proto == PROXY_PROTO_HTTP) {
904 twoaday 214 fmt = "GET http://%s:%d/pks/lookup?op=get&search=%s HTTP/1.0\r\n\r\n";
905     reqlen += strlen (fmt)+1;
906     request = safe_alloc (reqlen+1);
907     _snprintf (request, reqlen, fmt, skip_type_prefix (hostname),
908     port, keyid);
909     }
910 werner 36 else {
911 twoaday 214 fmt = "GET /pks/lookup?op=get&search=%s HTTP/1.0\r\n\r\n";
912     reqlen += strlen (fmt)+1;
913     request = safe_alloc (reqlen+1);
914     _snprintf (request, reqlen, fmt, keyid);
915 werner 36 }
916    
917 twoaday 220 log_debug ("request:\r\n%s\r\n", request);
918 werner 36
919     rc = sock_write (conn_fd, request, strlen (request));
920     if (rc == SOCKET_ERROR) {
921     rc = WPTERR_WINSOCK_RECVKEY;
922     goto leave;
923     }
924    
925 twoaday 209 rc = sock_read_ext (conn_fd, r_key, r_keylen);
926 twoaday 147 if (rc == SOCKET_ERROR) {
927 werner 36 rc = WPTERR_WINSOCK_RECVKEY;
928     goto leave;
929     }
930    
931 twoaday 220 log_debug ("response:\r\n%s\r\n", *r_key);
932 twoaday 147 rc = check_hkp_response (*r_key, 1);
933 werner 36 if (rc)
934     goto leave;
935    
936     WSASetLastError (0);
937    
938     leave:
939     closesocket (conn_fd);
940     free_if_alloc (request);
941     return rc;
942 twoaday 119 }
943 werner 36
944    
945     /* Interface to send a public key. */
946     int
947 twoaday 119 kserver_sendkey (const char *hostname, WORD port, const char *pubkey, int len )
948 werner 36 {
949     char *request = NULL;
950 twoaday 195 char log[2048] = {0};
951 twoaday 119 int conn_fd, n;
952     int rc;
953 werner 36
954     hkp_err = 0; /* reset */
955     rc = kserver_connect (hostname, port, &conn_fd);
956     if (rc)
957     goto leave;
958    
959     request = kserver_send_request (hostname, port, pubkey, len);
960     if (request == NULL) {
961     rc = WPTERR_GENERAL;
962     goto leave;
963     }
964    
965 twoaday 119 rc = sock_write (conn_fd, request, strlen (request));
966     if (rc == SOCKET_ERROR) {
967 werner 36 rc = WPTERR_WINSOCK_SENDKEY;
968     goto leave;
969     }
970    
971 twoaday 119 rc = sock_read (conn_fd, log, sizeof (log)-1, &n);
972     if (rc == SOCKET_ERROR) {
973 werner 36 rc = WPTERR_WINSOCK_SENDKEY;
974     goto leave;
975     }
976    
977 twoaday 195 log_debug ("kserver_sendkey: read %d bytes\r\n%s\r\n", n, log);
978 werner 36 rc = check_hkp_response (log, 0);
979 twoaday 119 if (rc)
980 werner 36 goto leave;
981    
982     WSASetLastError (0);
983    
984     leave:
985     closesocket (conn_fd);
986     free_if_alloc (request);
987     return rc;
988 twoaday 119 }
989 werner 36
990    
991 twoaday 185 /* Check keyserver response. */
992     static int
993     kserver_search_chkresp (int fd)
994     {
995     char buf[128];
996     int n=0;
997    
998     /* parse response 'HTTP/1.0 500 OK' */
999 twoaday 214 if (sock_getline (fd, buf, sizeof (buf)-1, &n))
1000 twoaday 185 return WPTERR_KEYSERVER_NOTFOUND;
1001    
1002     log_debug ("kserver_search_chkpresp: %s\r\n", buf);
1003     if (strncmp (buf, "HTTP/1.", 7))
1004     return WPTERR_KEYSERVER_NOTFOUND;
1005     if (strncmp (buf+(8+1), "200", 3))
1006     return WPTERR_KEYSERVER_NOTFOUND;
1007     return 0;
1008     }
1009    
1010    
1011     /* End the keyserver search procedure. */
1012     void
1013     kserver_search_end (int conn_fd)
1014     {
1015     log_debug ("kserver_search_end: fd=%d\r\n", conn_fd);
1016     closesocket (conn_fd);
1017     }
1018    
1019    
1020 twoaday 214 /* Extract the amount of keys from the info record. */
1021     static int
1022     count_keys_in_response (char *buf)
1023     {
1024     char *p;
1025     int recno = 0;
1026     int n = 0;
1027    
1028     /* info:1:4 */
1029     if (strncmp (buf, "info", 4))
1030     return 0;
1031     p = strtok (buf, ":");
1032     while (p != NULL) {
1033     recno++;
1034     if (recno == 3)
1035     n = atoi (p);
1036     p = strtok (NULL, ":");
1037     }
1038     return n;
1039     }
1040    
1041    
1042     /* Start the keyserver search.
1043     Connect to host @hostname and port @port.
1044     The pattern are given in @pattern.
1045     The socket is returned in @conn_fd and @nkeys contains
1046     the amount of keys which were found. */
1047 werner 36 int
1048 twoaday 185 kserver_search_begin (const char *hostname, WORD port,
1049 twoaday 214 const char *pattern, int *conn_fd, int *nkeys)
1050 werner 36 {
1051 twoaday 214 const char *fmt;
1052 twoaday 119 char *request = NULL;
1053 twoaday 185 char *enc_patt = NULL;
1054 twoaday 214 char status[128];
1055 werner 36 int rc, sock_fd;
1056 twoaday 214 int reqlen;
1057 twoaday 144
1058 twoaday 214 *conn_fd = 0;
1059    
1060 werner 36 rc = kserver_connect (hostname, port, &sock_fd);
1061 twoaday 214 if (rc)
1062 werner 36 goto leave;
1063 twoaday 144
1064 twoaday 185 enc_patt = URL_encode (pattern, strlen (pattern), NULL);
1065 twoaday 214 reqlen = strlen (enc_patt) + strlen (hostname) + 32 + 1;
1066    
1067 twoaday 180 if (proxy.host && proxy.user && proxy.proto == PROXY_PROTO_HTTP) {
1068 twoaday 214 fmt = "GET http://%s:%d/pks/lookup?options=mr&op=index&search=%s HTTP/1.0\r\n"
1069     "Proxy-Authorization: Basic %s\r\n\r\n";
1070     reqlen += strlen (proxy.base64_user) + strlen (fmt) + 1;
1071     request = safe_alloc (reqlen+1);
1072     _snprintf (request, reqlen, fmt, skip_type_prefix (hostname), port,
1073     enc_patt, proxy.base64_user);
1074 werner 36 }
1075 twoaday 180 else if (proxy.host && proxy.proto == PROXY_PROTO_HTTP) {
1076 twoaday 214 fmt = "GET http://%s:%d/pks/lookup?options=mr&op=index&search=%s HTTP/1.0\r\n\r\n";
1077     reqlen += strlen (fmt)+1;
1078     request = safe_alloc (reqlen+1);
1079     _snprintf (request, reqlen, skip_type_prefix (hostname), port,
1080     enc_patt);
1081 werner 36 }
1082     else {
1083 twoaday 214 fmt = "GET /pks/lookup?options=mr&op=index&search=%s HTTP/1.0\r\n\r\n";
1084     reqlen += strlen (fmt)+1;
1085     request = safe_alloc (reqlen+1);
1086     _snprintf (request, reqlen, fmt, enc_patt);
1087 werner 36 }
1088 twoaday 214
1089 twoaday 185 log_debug ("kserver_search_begin:\r\n%s\r\n", request);
1090 werner 36 if (sock_write (sock_fd, request, strlen (request)) == SOCKET_ERROR) {
1091     rc = WPTERR_GENERAL;
1092     goto leave;
1093     }
1094    
1095 twoaday 185 rc = kserver_search_chkresp (sock_fd);
1096     if (rc) {
1097     closesocket (sock_fd);
1098     sock_fd = 0;
1099 twoaday 214 goto leave;
1100 twoaday 185 }
1101    
1102 twoaday 214 /* Skip all lines until we reach the "info:" record. */
1103     for (;;) {
1104     if (sock_getline (sock_fd, status, sizeof (status)-1, &reqlen)) {
1105     log_debug ("kserver_search_begin: retrieving status line failed.\r\n");
1106     closesocket (sock_fd);
1107     sock_fd = 0;
1108     rc = WPTERR_GENERAL;
1109     break;
1110     }
1111     if (!strncmp (status, "info:", 5))
1112     break;
1113     }
1114    
1115     if (!rc)
1116     *nkeys = count_keys_in_response (status);
1117 werner 36 *conn_fd = sock_fd;
1118    
1119     leave:
1120     free_if_alloc (request);
1121 twoaday 185 free_if_alloc (enc_patt);
1122 werner 36 return rc;
1123 twoaday 119 }
1124 werner 36
1125    
1126 twoaday 214 /* Parse a single pub record returned by the keyserver. */
1127     static void
1128     parse_pub_record (keyserver_key_s *key, char *buf)
1129     {
1130     enum pub_rec_t {ID=1, KEYID, ALGO, SIZE, CREATE, EXPIRE};
1131     char *p;
1132     int recno = 0;
1133 werner 36
1134 twoaday 214 /* pub:BF3DF9B4:17:1024:925411133:: */
1135     p = strtok (buf, ":");
1136     while (p != NULL) {
1137     recno++;
1138     switch (recno) {
1139     case ID:
1140     break;
1141 werner 36
1142 twoaday 214 case KEYID:
1143     free_if_alloc (key->keyid);
1144     key->keyid = m_strdup (p);
1145     break;
1146    
1147     case ALGO:
1148     key->algo = atoi (p);
1149     break;
1150    
1151     case SIZE:
1152     key->bits = atoi (p);
1153     break;
1154    
1155     case CREATE:
1156     key->creation = strtoul (p, NULL, 10);
1157     break;
1158    
1159     case EXPIRE:
1160     key->expires = strtoul (p, NULL, 10);
1161     break;
1162     }
1163     p = strtok (NULL, ":");
1164     }
1165    
1166     }
1167    
1168    
1169     /* Parse a single user id returned by the keyserver. */
1170     static void
1171     parse_uid_record (keyserver_key_s *key, char *buf)
1172 twoaday 144 {
1173 twoaday 214 enum uid_rec_t {ID=1, UID, CREATE, EXPIRE};
1174     keyserver_uid_s *u, *n;
1175 twoaday 225 char *p, *raw;
1176 twoaday 214 int recno = 0;
1177 twoaday 144
1178 twoaday 214 /* uid:Timo Schulz <[email protected]>:1138440360:: */
1179     u = new keyserver_uid_s;
1180     memset (u, 0, sizeof *u);
1181    
1182     p = strtok (buf, ":");
1183 twoaday 144 while (p != NULL) {
1184 twoaday 214 recno++;
1185    
1186     switch (recno) {
1187     case ID:
1188     break;
1189    
1190     case UID:
1191 twoaday 225 unhexify_buffer (p, &raw);
1192     u->uid = utf8_to_native (raw);
1193     free_if_alloc (raw);
1194 twoaday 214 break;
1195    
1196     case CREATE:
1197     u->creation = strtoul (p, NULL, 10);
1198     break;
1199    
1200     case EXPIRE:
1201     u->expires = strtoul (p, NULL, 10);
1202     break;
1203 twoaday 144 }
1204 twoaday 214
1205     p = strtok (NULL, ":");
1206 twoaday 144 }
1207 twoaday 214 if (!key->uids)
1208     key->uids = u;
1209     else {
1210     for (n = key->uids; n->next; n=n->next)
1211     ;
1212     n->next = u;
1213     }
1214 twoaday 144 }
1215    
1216    
1217 twoaday 214 /* Peek the next 3 bytes to check if the next line
1218     would be a new "pub" record. In this case, return
1219     -1 as an EOF indication, 0 otherwise. */
1220     static int
1221     is_key_eof (int fd)
1222     {
1223     char buf[64];
1224     int n;
1225    
1226     n = recv (fd, buf, 3, MSG_PEEK);
1227     if (n < 3 || strncmp (buf, "pub", 3))
1228     return 0;
1229     return -1;
1230     }
1231    
1232    
1233     /* Return the next key from the search response. */
1234 werner 36 int
1235 twoaday 214 kserver_search_next (int fd, keyserver_key_s **r_key)
1236 werner 36 {
1237 twoaday 214 keyserver_uid_s *uid, *u = NULL;
1238     keyserver_key_s *key;
1239     char buf[512];
1240     int n = 0;
1241     long max = 0;
1242 werner 36
1243 twoaday 185 log_debug ("keyserver_search_next:\r\n");
1244 twoaday 214 *r_key = NULL;
1245 werner 36
1246 twoaday 214 key = new keyserver_key_s;
1247     memset (key, 0, sizeof *key);
1248     for (;;) {
1249     if (sock_getline (fd, buf, sizeof (buf)-1, &n))
1250     break;
1251 twoaday 220 /*log_debug ("record: '%s'\r\n", buf); */
1252 twoaday 214 if (!strncmp (buf, "pub", 3))
1253     parse_pub_record (key, buf);
1254     else
1255     parse_uid_record (key, buf);
1256     if (is_key_eof (fd))
1257     break;
1258     }
1259 twoaday 144
1260 twoaday 214 /* the uid with the newest self sig is used as the
1261     primary user id. */
1262     for (uid = key->uids; uid; uid = uid->next) {
1263     if (uid->creation > max) {
1264     max = uid->creation;
1265     u = uid;
1266 werner 36 }
1267     }
1268    
1269 twoaday 214 key->main_uid = u? u : key->uids;
1270     *r_key = key;
1271 werner 36 return 0;
1272 twoaday 144 }
1273 werner 36
1274    
1275 twoaday 214 /* Release the keyserver key @key and all its elements. */
1276     void
1277     kserver_release_key (keyserver_key_s *key)
1278     {
1279     keyserver_uid_s *u;
1280    
1281     while (key->uids) {
1282     u = key->uids->next;
1283     free_if_alloc (key->uids->uid);
1284     free_if_alloc (key->uids);
1285     key->uids = u;
1286     }
1287     free_if_alloc (key->keyid);
1288     free_if_alloc (key);
1289     }
1290    
1291    
1292 twoaday 119 /* Release mbmers in the proxy context @ctx. */
1293 werner 36 void
1294 twoaday 180 kserver_proxy_release (keyserver_proxy_t ctx)
1295 werner 36 {
1296 twoaday 119 free_if_alloc (ctx->host);
1297     free_if_alloc (ctx->pass);
1298     free_if_alloc (ctx->user);
1299 twoaday 185 ctx->port = ctx->proto = 0;
1300 twoaday 119 }
1301 werner 36
1302    
1303 twoaday 133 /* Spawn a process given by @cmdl. */
1304     static int
1305     spawn_application (char *cmdl)
1306     {
1307     STARTUPINFO si;
1308     PROCESS_INFORMATION pi;
1309     int rc = 0;
1310    
1311     memset (&si, 0, sizeof (si));
1312     si.cb = sizeof (si);
1313     si.dwFlags = STARTF_USESHOWWINDOW;
1314     si.wShowWindow = SW_HIDE;
1315     memset (&pi, 0, sizeof (pi));
1316    
1317     if (!CreateProcess (NULL, cmdl, NULL, NULL, FALSE, 0,
1318     NULL, NULL, &si, &pi)) {
1319     log_box ("Keyserver Plugin", MB_ERR, "Could not spawn helper process");
1320     rc = -1;
1321     }
1322    
1323     CloseHandle (pi.hThread);
1324     WaitForSingleObject (pi.hProcess, INFINITE);
1325     CloseHandle (pi.hProcess);
1326     return rc;
1327     }
1328    
1329    
1330 twoaday 209 static FILE*
1331     do_spawn_ldap_helper (const char *host, const char *keyid)
1332     {
1333     FILE *fp = NULL;
1334     char *p, *sep;
1335     char *ksprg;
1336     char outf[256], inf[256];
1337     size_t n;
1338 werner 36
1339 twoaday 133 p = get_gnupg_prog ();
1340     n = strlen (p) + 1 + 128;
1341 twoaday 214 ksprg = safe_alloc (n+1);
1342 werner 36 if (!ksprg)
1343     BUG (0);
1344 twoaday 133 sep = strrchr (p, '\\');
1345     if (sep != NULL)
1346     p[(sep-p)] = 0;
1347    
1348     _snprintf (ksprg, n, "%s\\gpgkeys_ldap.exe", p);
1349 werner 36 free_if_alloc (p);
1350     if (file_exist_check (ksprg)) {
1351 twoaday 133 log_box ("LDAP Keyserver Plugin", MB_ERR,
1352     "%s: could not find LDAP keyserver module!", ksprg);
1353 twoaday 209 fp = NULL;
1354 werner 36 goto leave;
1355 twoaday 175 }
1356     get_temp_name (outf, sizeof (outf)-1, keyid);
1357     get_temp_name (inf, sizeof (inf)-1, NULL);
1358     fp = fopen (inf, "w+b");
1359     if (!fp) {
1360     log_box ("LDAP Keyserver Plugin", MB_ERR, "%s: %s", inf,
1361 werner 36 winpt_strerror (WPTERR_FILE_OPEN));
1362     goto leave;
1363     }
1364 twoaday 175 fprintf (fp,
1365 twoaday 133 "VERSION 1\n"
1366     "PROGRAM 1.4.3-cvs\n"
1367     "SCHEME ldap\n"
1368 werner 36 "HOST %s\n"
1369     "COMMAND GET\n"
1370     "\n"
1371 twoaday 133 "%s\n",
1372     host? skip_type_prefix (host): "64.94.85.200", keyid);
1373 twoaday 175 fclose (fp);
1374 werner 36
1375 twoaday 214 p = safe_alloc (strlen (ksprg) + strlen (inf) + strlen (outf) + 32);
1376 twoaday 175 sprintf (p, "%s -o %s %s", ksprg, outf, inf);
1377 twoaday 133 if (spawn_application (p)) {
1378 twoaday 209 fp = NULL;
1379 werner 36 goto leave;
1380     }
1381 twoaday 175 fp = fopen (outf, "rb");
1382 twoaday 209 if (!fp)
1383 werner 36 log_box ("LDAP Keyserver Plugin", MB_ERR, "%s: %s", outf,
1384     winpt_strerror (WPTERR_FILE_OPEN));
1385 twoaday 209
1386     leave:
1387     DeleteFile (inf);
1388     DeleteFile (outf);
1389     free_if_alloc (p);
1390     free_if_alloc (ksprg);
1391     return fp;
1392     }
1393    
1394     /* Receive an key via LDAP from host @host with the keyid @keyid.
1395     @key contains the key on success. */
1396     int
1397     ldap_recvkey (const char *host, const char *keyid,
1398     char **r_key, int *r_keylen)
1399     {
1400     gpgme_data_t raw;
1401     FILE *fp;
1402     const char *s;
1403     char buf[512];
1404     int start_key = 0, failed = 0;
1405     int rc = 0;
1406    
1407     fp = do_spawn_ldap_helper (host, keyid);
1408     if (!fp)
1409     return WPTERR_GENERAL;
1410    
1411     if (gpgme_data_new (&raw))
1412     BUG (0);
1413 twoaday 175 while (!feof (fp)) {
1414     s = fgets (buf, sizeof (buf)-1, fp);
1415 twoaday 133 if (!s)
1416 werner 36 break;
1417 twoaday 133 if (strstr (s, "KEY") && strstr (s, "FAILED")) {
1418     failed = 1;
1419     break;
1420     }
1421     if (!start_key && strstr (s, "KEY") && strstr (s, "BEGIN")) {
1422 werner 36 start_key = 1;
1423     continue;
1424 twoaday 209 }
1425 twoaday 133 if (!start_key)
1426 werner 36 continue;
1427 twoaday 209 gpgme_data_write (raw, buf, strlen (buf));
1428     if (strstr (s, "KEY") && strstr (s, "END"))
1429 werner 36 break;
1430     }
1431 twoaday 175 fclose (fp);
1432 werner 36
1433 twoaday 209 if (failed)
1434 werner 36 rc = WPTERR_WINSOCK_RECVKEY;
1435 twoaday 209 *r_key = data_release_and_get_mem (raw, r_keylen);
1436 werner 36 return rc;
1437 twoaday 119 }
1438 werner 36
1439    
1440 twoaday 119 /* Receive an key via FINGER from host @host with the user @user.
1441     On success @key contains the key. */
1442 werner 36 int
1443 twoaday 209 finger_recvkey (const char *host, const char *user,
1444     char **r_key, int *r_keylen)
1445 werner 36 {
1446 twoaday 209 gpgme_data_t raw;
1447     char buf[256];
1448 werner 36 int fd, nread;
1449     int start_key = 0;
1450     int rc=0;
1451    
1452 twoaday 180 rc = kserver_connect (host, FINGER_PORT, &fd);
1453     if (rc)
1454     return rc;
1455 werner 36
1456 twoaday 180 sock_write (fd, user, strlen (user));
1457     sock_write (fd, "\r\n", 2);
1458 werner 36
1459 twoaday 209 if (gpgme_data_new (&raw))
1460     BUG (0);
1461    
1462     for (;;) {
1463 twoaday 180 if (sock_getline (fd, buf, sizeof (buf), &nread))
1464     break;
1465 werner 36 strcat (buf, "\n");
1466     if (strstr (buf, "BEGIN PGP PUBLIC KEY BLOCK")) {
1467 twoaday 209 gpgme_data_write (raw, buf, nread);
1468 werner 36 start_key = 1;
1469     }
1470     else if (strstr (buf, "END PGP PUBLIC KEY BLOCK" ) && start_key) {
1471 twoaday 209 gpgme_data_write (raw, buf, nread);
1472 werner 36 start_key--;
1473     break;
1474     }
1475 twoaday 209 else if (start_key)
1476     gpgme_data_write (raw, buf, nread);
1477 werner 36 }
1478 twoaday 209
1479 werner 36 closesocket (fd);
1480     if (start_key != 0)
1481     rc = WPTERR_WINSOCK_RECVKEY;
1482 twoaday 209 *r_key = data_release_and_get_mem (raw, r_keylen);
1483 werner 36 return rc;
1484     }
1485    
1486    
1487 twoaday 119 /* Check if the given name @name is a valid hostname. */
1488 werner 36 int
1489     check_IP_or_hostname (const char *name)
1490     {
1491     const char *not_allowed = "=!ยง$%&@#*~\\/}][{<>|,;:'";
1492     size_t i, j;
1493    
1494     for (i=0; i < strlen (name); i++) {
1495     for (j =0; j < strlen (not_allowed); j++) {
1496     if (name[i] == not_allowed[j])
1497     return -1;
1498     }
1499     }
1500     return 0;
1501     }
1502 twoaday 214
1503    
1504     /* Split the URL @r_keyserver into the host and the port
1505     part if possible. */
1506     gpgme_error_t
1507     parse_keyserver_url (char **r_keyserver, unsigned short *r_port)
1508     {
1509     char *p;
1510     char *url = *r_keyserver;
1511 twoaday 226 int off = 0;
1512 twoaday 214
1513     /* no port is given so use the default port. */
1514     p = strrchr (url, ':');
1515     if (p == strchr (url, ':')) {
1516     int port = port_from_proto (proto_from_URL (url));
1517     if (!port)
1518     port = HKP_PORT;
1519     *r_port = port;
1520     return 0;
1521     }
1522 twoaday 226
1523     if (url[(p-url)-1] == '/') /* remove / in .de/:11371 */
1524     off = 1;
1525    
1526     *r_keyserver = substr (url, 0, (p-url)-off);
1527 twoaday 214 *r_port = atoi (url+(p-url)+1);
1528 twoaday 220 free_if_alloc (url);
1529 twoaday 214 return 0;
1530     }

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