/[winpt]/trunk/Src/wptKeylist.cpp
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Contents of /trunk/Src/wptKeylist.cpp

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Revision 208 - (show annotations)
Mon May 1 12:22:18 2006 UTC (18 years, 10 months ago) by twoaday
File size: 27296 byte(s)
See ChangeLog.


1 /* wptKeylist.cpp - Keylist element
2 * Copyright (C) 2001-2006 Timo Schulz
3 * Copyright (C) 2004 Andreas Jobs
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 #include <commctrl.h>
28 #include <time.h>
29
30 #include "wptCommonCtl.h"
31 #include "wptTypes.h"
32 #include "wptGPG.h"
33 #include "wptKeylist.h"
34 #include "wptKeyManager.h"
35 #include "wptW32API.h"
36 #include "wptNLS.h"
37 #include "wptErrors.h"
38 #include "wptUTF8.h"
39 #include "wptRegistry.h"
40 #include "wptContext.h"
41 #include "wptVersion.h"
42 #include "resource.h"
43
44 #define key_is_useable(key) (!(key)->revoked && !(key)->expired && !(key)->disabled)
45
46 struct key_array_s {
47 char keyid[32];
48 int checked;
49 };
50
51 static int find_secret_key (gpgme_key_t key);
52
53
54 static key_array_s*
55 key_array_new (int items)
56 {
57 key_array_s *ka;
58 int j;
59
60 if (items == 0)
61 return NULL;
62 ka = new key_array_s[items + 1];
63 if (!ka)
64 BUG (NULL);
65 for (j = 0; j < items; j++)
66 ka[j].checked = 0;
67 return ka;
68 }
69
70
71 static void
72 key_array_release (key_array_s *ka)
73 {
74 free_if_alloc (ka);
75 }
76
77
78 /* Check if the keyid @keyid is in the key array @ka.
79 Return value: 1 if it exists, 0 otherwise. */
80 static int
81 key_array_search (key_array_s *ka, int items, const char *keyid)
82 {
83 int j;
84
85 for (j = 0; j < items; j++) {
86 if (!strcmp (keyid, ka[j].keyid ))
87 return 1;
88 }
89 return 0;
90 }
91
92
93 gpgme_user_id_t
94 get_nth_userid (gpgme_key_t key, int idx)
95 {
96 gpgme_user_id_t t;
97
98 if (!key->uids)
99 return NULL;
100 t = key->uids;
101 while (idx-- && t->next)
102 t = t->next;
103 return t;
104 }
105
106
107 int
108 count_userids (gpgme_key_t key)
109 {
110 gpgme_user_id_t u;
111 int n = 1;
112
113 u = key->uids;
114 if (!u)
115 return 0;
116 while (u->next) {
117 u = u->next;
118 n++;
119 }
120 return n;
121 }
122
123
124 gpgme_subkey_t
125 get_nth_key (gpgme_key_t key, int idx)
126 {
127 gpgme_subkey_t t;
128
129 if (!key->subkeys)
130 return NULL;
131 t = key->subkeys;
132 while (idx-- && t->next)
133 t = t->next;
134 return t;
135 }
136
137
138 int
139 count_subkeys (gpgme_key_t key)
140 {
141 gpgme_subkey_t k;
142 int n = 1;
143
144 k = key->subkeys;
145 if (!k)
146 return 0;
147 while (k->next) {
148 k = k->next;
149 n++;
150 }
151 return n;
152 }
153
154
155 /* Return the self signature of the key @keyid.
156 If first is set, the first self sig will be returned. */
157 gpgme_key_sig_t
158 get_selfsig (gpgme_key_sig_t sigs, const char *keyid, int first)
159 {
160 gpgme_key_sig_t s, self_sig=NULL;
161 long timestamp=0;
162 int off = 0;
163
164 if (strlen (keyid) == 8)
165 off = 8;
166
167 for (s = sigs; s; s = s->next) {
168 if (!strcmp (s->keyid+off, keyid) && s->timestamp > timestamp) {
169 self_sig = s;
170 timestamp = s->timestamp;
171 if (first)
172 break;
173 }
174 }
175 return self_sig;
176 }
177
178
179 const char*
180 get_key_algo (gpgme_key_t key, int keyidx)
181 {
182 static char algo_id[128];
183 gpgme_subkey_t k;
184 char alg[32];
185 const char *subalg;
186 int n=0;
187
188 if (keyidx > 0) {
189 k = get_nth_key (key, keyidx-1);
190 subalg = get_key_pubalgo (k->pubkey_algo);
191 _snprintf (algo_id, DIM (algo_id)-1, "%s", subalg);
192 return algo_id;
193 }
194 strcpy (alg, get_key_pubalgo (key->subkeys->pubkey_algo));
195 n = count_subkeys (key);
196 if (n > 1) {
197 do {
198 k = get_nth_key (key, --n);
199 if (k->revoked || k->expired)
200 continue;
201 else
202 break;
203 } while (n > 0);
204 subalg = get_key_pubalgo (k->pubkey_algo);
205 if (k == key->subkeys)
206 _snprintf (algo_id, DIM (algo_id)-1, "%s", subalg);
207 else
208 _snprintf (algo_id, DIM (algo_id)-1, "%s/%s", alg, subalg);
209 return algo_id;
210 }
211 return get_key_pubalgo (key->subkeys->pubkey_algo);
212 }
213
214
215 const char*
216 get_key_created (long timestamp)
217 {
218 static char timebuf[128];
219 struct tm *warp;
220 const char *dat;
221
222 if (timestamp < 1)
223 return "????" "-??" "-??";
224 dat = get_locale_date (timestamp, timebuf, sizeof (timebuf)-1);
225 if (dat)
226 return dat;
227 warp = localtime (&timestamp);
228 _snprintf (timebuf, sizeof timebuf - 1, "%04d-%02d-%02d",
229 warp->tm_year + 1900, warp->tm_mon + 1, warp->tm_mday);
230 return timebuf;
231 }
232
233
234 /* Return a string presentation of the time @timestamp. */
235 const char*
236 get_key_expire_date (long timestamp)
237 {
238 static char timebuf[64];
239 struct tm *warp;
240 const char *dat;
241
242 if (timestamp == 0)
243 return _("Never");
244 dat = get_locale_date (timestamp, timebuf, sizeof (timebuf)-1);
245 if (dat)
246 return dat;
247 warp = localtime (&timestamp);
248 _snprintf (timebuf, sizeof timebuf -1, "%04d-%02d-%02d",
249 warp->tm_year + 1900, warp->tm_mon + 1, warp->tm_mday);
250 return timebuf;
251 }
252
253
254 const char*
255 get_key_type (gpgme_key_t key)
256 {
257 int type = find_secret_key (key);
258
259 if (type == 1)
260 return _("Key Pair");
261 else if (type == 2)
262 return _("Key Pair (Card)");
263 return _("Public Key");
264 }
265
266
267 const char*
268 get_key_size (gpgme_key_t key, int keyidx)
269 {
270 static char size_id[64];
271 gpgme_subkey_t k;
272 int n, size_main, size_sub;
273
274 if (keyidx > 0) {
275 k = get_nth_key (key, keyidx-1);
276 size_main = k->length;
277 _snprintf (size_id, DIM (size_id)-1, "%d", size_main);
278 return size_id;
279 }
280 size_main = key->subkeys->length;
281 n = count_subkeys (key);
282 if (n > 1) {
283 k = get_nth_key (key, n-1);
284 size_sub = k->length;
285 _snprintf (size_id, sizeof (size_id) - 1, "%d/%d",
286 size_main, size_sub);
287 return size_id;
288 }
289 _snprintf( size_id, sizeof (size_id) - 1, "%d", size_main );
290 return size_id;
291 }
292
293
294 const char*
295 get_key_pubalgo2 (gpgme_pubkey_algo_t alg)
296 {
297 switch (alg) {
298 case GPGME_PK_DSA: return "D";
299 case GPGME_PK_RSA: return "R";
300 case GPGME_PK_ELG: return "G";
301 default: return "?";
302 }
303 return "?";
304 }
305
306
307 const char*
308 get_key_pubalgo (gpgme_pubkey_algo_t alg)
309 {
310 switch (alg) {
311 case GPGME_PK_DSA: return "DSA";
312 case GPGME_PK_ELG:
313 case GPGME_PK_ELG_E: return "ELG";
314 case 0: /* XXX: gpgme returned pubkey algo 0 for a RSA made sig. */
315 case GPGME_PK_RSA: return "RSA";
316 default: return "???";
317 }
318 return "???";
319 }
320
321 const char*
322 get_key_fpr (gpgme_key_t key)
323 {
324 static char fpr_md[64];
325 const char *fpr;
326 char t[16], tmp[40];
327 size_t i=0;
328
329 memset (fpr_md, 0, sizeof (fpr_md));
330 fpr = key->subkeys->fpr;
331 if (!fpr || !*fpr) {
332 memset (tmp, '0', 40);
333 fpr = tmp;
334 }
335 if (strlen (fpr) == 32) {
336 strcat (fpr_md, " ");
337 for (i=0; i < strlen (fpr)/2; i++) {
338 sprintf (t, "%c%c ", fpr[2*i], fpr[2*i+1]);
339 strcat (fpr_md, t);
340 }
341 }
342 else {
343 strcat (fpr_md, " ");
344 for (i = 0; i < strlen (fpr) / 4; i++) {
345 sprintf (t, "%c%c%c%c ", fpr[4*i], fpr[4*i+1], fpr[4*i+2], fpr[4*i+3]);
346 strcat (fpr_md, t);
347 }
348 }
349 return fpr_md;
350 }
351
352
353 /* Extract the key ID from the fingerprint.
354 A long ID will be converted into a short ID. */
355 const char*
356 get_keyid_from_fpr (const char *fpr)
357 {
358 if (!fpr)
359 return "????????";
360 if (strlen (fpr) == 40)
361 fpr += 32;
362 else if (strlen (fpr) == 32)
363 fpr += 24;
364 else if (strlen (fpr) == 16)
365 fpr += 8;
366 else
367 return "????????";
368 return fpr;
369 }
370
371
372 const char*
373 get_key_trust2 (gpgme_key_t key, int val, int uididx, int listmode)
374 {
375 if (key)
376 val = key->owner_trust; /* uididx?? */
377 switch (val) {
378 case GPGME_VALIDITY_UNKNOWN:
379 case GPGME_VALIDITY_UNDEFINED:
380 return _("None");
381 case GPGME_VALIDITY_NEVER:
382 return _("Never");
383 case GPGME_VALIDITY_MARGINAL:
384 return _("Marginal");
385 case GPGME_VALIDITY_FULL:
386 return _("Full");
387 case GPGME_VALIDITY_ULTIMATE:
388 return _("Ultimate");
389 }
390 return "";
391 }
392
393
394 const char*
395 get_key_trust (gpgme_key_t key, int uididx, int listmode)
396 {
397 return get_key_trust2 (key, 0, uididx, listmode);
398 }
399
400
401 const char*
402 get_key_trust_str (int val)
403 {
404 return get_key_trust2 (NULL, val, 0, 0);
405 }
406
407
408 /* Return the status of the key @key. */
409 char*
410 get_key_status (gpgme_key_t key, int uididx, int listmode)
411 {
412 gpgme_user_id_t u;
413 const char *attr;
414 u32 key_attr =0;
415
416 if (uididx < 0 || count_userids (key) > uididx)
417 uididx = 0;
418 if (listmode) {
419 const char *s;
420 if (key->revoked)
421 s = _("Revoked");
422 else if (key->expired)
423 s = _("Expired");
424 else if (key->disabled)
425 s = _("Disabled");
426 else
427 s = "";
428 /* if the key has a special status, we don't continue to figure out
429 the user-id validities. */
430 if (*s)
431 return m_strdup (s);
432 }
433 u = get_nth_userid (key, uididx);
434 key_attr = u->validity;
435 attr = get_key_trust2 (NULL, key_attr, 0, 0);
436 return m_strdup (attr);
437 }
438
439
440 /* Return human readable description of the key @key. */
441 char*
442 get_key_desc (gpgme_key_t key)
443 {
444 gpgme_key_t sk;
445 const char *state, *alg, *type;
446 char *p;
447
448 /* XXX: problems with the German translation. */
449 state = "";
450 if (key->disabled)
451 state = _("Disabled");
452 if (key->expired)
453 state = _("Expired");
454 if (key->revoked)
455 state = _("Revoked");
456 alg = "OpenPGP";
457 if (strlen (key->subkeys->fpr) == 32)
458 alg = "RSA Legacy";
459 type = _("public key");
460 if (!get_seckey (key->subkeys->keyid+8, &sk))
461 type = _("key pair");
462 p = new char[strlen (state) + strlen (alg) + strlen (type) + 4 + 1];
463 if (!p)
464 BUG (0);
465 sprintf (p, "%s %s %s", state, alg, type);
466 return p;
467 }
468
469
470 /* Integer comparsion of @a and @b.
471 Return values: same as in strcmp. */
472 static inline int
473 int_cmp (int a, int b)
474 {
475 if (a == b) return 0;
476 else if (a > b) return 1;
477 else return -1;
478 return 0;
479 }
480
481
482 /* To allow to sort the keys, we need to take care of
483 the expired/revoke status also. */
484 static int
485 get_ext_validity (gpgme_key_t k)
486 {
487 if (k->revoked)
488 return GPGME_VALIDITY_ULTIMATE+1;
489 else if (k->expired)
490 return GPGME_VALIDITY_ULTIMATE+2;
491 else if (k->disabled)
492 return GPGME_VALIDITY_ULTIMATE+3;
493 return k->uids->validity;
494 }
495
496
497 /* List view sorting callback. */
498 static int CALLBACK
499 keylist_cmp_cb (LPARAM first, LPARAM second, LPARAM sortby)
500 {
501 struct keycache_s *aa, *bb;
502 gpgme_key_t a, b;
503 int cmpresult = 0;
504
505 aa = (struct keycache_s *)first;
506 bb = (struct keycache_s *)second;
507 if (!aa || !bb)
508 BUG (NULL);
509 a = aa->key;
510 b = bb->key;
511
512 switch (sortby & ~KEYLIST_SORT_DESC) {
513 case KEY_SORT_USERID:
514 cmpresult = strcmpi (a->uids->uid, b->uids->uid);
515 break;
516
517 case KEY_SORT_KEYID:
518 cmpresult = strcmpi (a->subkeys->keyid+8,
519 b->subkeys->keyid+8);
520 break;
521
522 case KEY_SORT_VALIDITY:
523 cmpresult = int_cmp (get_ext_validity (a),
524 get_ext_validity (b));
525 break;
526
527 case KEY_SORT_OTRUST:
528 cmpresult = int_cmp (a->owner_trust, b->owner_trust);
529 break;
530
531 case KEY_SORT_IS_SECRET:
532 get_seckey (a->subkeys->keyid, &a);
533 get_seckey (b->subkeys->keyid, &b);
534 cmpresult = int_cmp (a? a->secret : 0, b? b->secret : 0);
535 break;
536
537 case KEY_SORT_LEN:
538 cmpresult = int_cmp (a->subkeys->length,
539 b->subkeys->length);
540 break;
541
542 case KEY_SORT_CREATED:
543 cmpresult = int_cmp (a->subkeys->timestamp,
544 b->subkeys->timestamp);
545 break;
546
547 case KEY_SORT_ALGO:
548 cmpresult = int_cmp (a->subkeys->pubkey_algo,
549 b->subkeys->pubkey_algo);
550 break;
551
552 default:
553 cmpresult = strcmpi (a->uids->uid, b->uids->uid);
554 break;
555 }
556 if (sortby & KEYLIST_SORT_DESC)
557 return (~cmpresult + 1);
558 else
559 return cmpresult;
560 }
561
562
563 int
564 keylist_add_groups (listview_ctrl_t lv)
565 {
566 return 0;
567 }
568
569
570 /* Create a listview for listing keys. Use the mode given in @mode
571 and the control is given in @ctrl. */
572 static int
573 keylist_build (listview_ctrl_t *r_lv, HWND ctrl, int mode)
574 {
575 struct listview_column_s klist_enc[] = {
576 {0, 242, (char *)_("User ID")},
577 {1, 80, (char *)_("Key ID")},
578 {3, 46, (char *)_("Size")},
579 {4, 50, (char *)_("Cipher")},
580 {5, 70, (char *)_("Validity")},
581 {0, 0, NULL}
582 };
583 struct listview_column_s klist[] = {
584 {0, 240, (char *)_("User ID")},
585 {1, 78, (char *)_("Key ID")},
586 {2, 52, (char *)_("Type")},
587 {3, 66, (char *)_("Size")},
588 {4, 60, (char *)_("Cipher")},
589 {5, 66, (char *)_("Validity")},
590 {6, 58, (char *)_("Trust")},
591 {7, 72, (char *)_("Creation")},
592 {0, 0, NULL}
593 };
594 HICON ico[2];
595 listview_ctrl_t lv;
596 listview_column_t col;
597 int j, n = 0, ext_chk = 0;
598 int rc = 0;
599
600 listview_new (&lv, ctrl);
601 if (mode & KEYLIST_ENCRYPT_MIN) {
602 col = klist_enc;
603 n = (DIM(klist_enc) -1);
604 ext_chk = 1;
605 }
606 else if ((mode & KEYLIST_SIGN)) {
607 col = klist_enc;
608 n = (DIM(klist_enc) - 1) - 1;
609 ext_chk = 1;
610 }
611 else {
612 col = klist;
613 n = (DIM(klist) - 1);
614 }
615
616 for (j = 0; j < n; j++)
617 listview_add_column (lv, &col[j]);
618 listview_set_ext_style (lv);
619 if (ext_chk)
620 listview_set_chkbox_style (lv);
621 ico[0] = LoadIcon (glob_hinst, (LPCTSTR)IDI_PUBKEY);
622 ico[1] = LoadIcon (glob_hinst, (LPCTSTR)IDI_KEYPAIR);
623 listview_set_image_list (lv, 22, 14, ico, 2);
624 listview_del_all_items (lv);
625
626 *r_lv = lv;
627 return 0;
628 }
629
630
631 static void
632 keylist_load_keycache (listview_ctrl_t lv, int mode,
633 gpg_keycache_t pubkc, gpg_keycache_t seckc)
634 {
635 gpgme_error_t err = gpg_error (GPG_ERR_NO_ERROR);
636 gpgme_key_t key, skey;
637 struct keycache_s *c;
638 const char *keyid;
639
640 if (pubkc && seckc) {
641 gpg_keycache_rewind (pubkc);
642 while (!gpg_keycache_next_key2 (pubkc, 0, &c, &key)) {
643 keyid = key->subkeys->keyid;
644 if (keyid && !gpg_keycache_find_key (seckc, keyid, 0, &skey))
645 keylist_add_key (lv, mode, c, key);
646 }
647 }
648 else if (pubkc) {
649 gpg_keycache_rewind (pubkc);
650 while (!err) {
651 err = gpg_keycache_next_key2 (pubkc, 0, &c, &key);
652 if (!err)
653 keylist_add_key (lv, mode, c, key);
654 }
655 }
656 }
657
658
659 /* Load the list view @ctrl with the keys from the cache.
660 Return value: list view context on success. */
661 listview_ctrl_t
662 keylist_load (HWND ctrl, gpg_keycache_t pubkc, gpg_keycache_t seckc,
663 int mode, int sortby)
664 {
665 listview_ctrl_t lv;
666 int rc = 0;
667
668 rc = keylist_build (&lv, ctrl, mode);
669 if (rc)
670 return NULL;
671 keylist_load_keycache (lv, mode, pubkc, seckc);
672 keylist_sort (lv, sortby);
673 if (mode & KEYLIST_ENCRYPT_MIN)
674 keylist_add_groups (lv);
675 return lv;
676 }
677
678
679 /* Reload the given key list control @lv. */
680 int
681 keylist_reload (listview_ctrl_t lv, gpg_keycache_t pubkc, int mode, int sortby)
682 {
683 listview_del_all_items (lv);
684 keylist_load_keycache (lv, mode, pubkc, NULL);
685 keylist_sort (lv, sortby);
686 return 0;
687 }
688
689
690 void
691 keylist_delete (listview_ctrl_t lv)
692 {
693 if (lv) {
694 listview_release (lv);
695 }
696 }
697
698
699 /* Return if there is a secret for @key.
700 0 means success. */
701 static int
702 find_secret_key (gpgme_key_t key)
703 {
704 const char *keyid;
705 winpt_key_s skey;
706
707 memset (&skey, 0, sizeof (skey));
708 keyid = key->subkeys->keyid;
709 if (!keyid)
710 return 0;
711 winpt_get_seckey (keyid, &skey);
712 if (skey.ext && skey.ext->gloflags.divert_to_card)
713 return 2;
714 return skey.ctx? 1 : 0;
715 }
716
717
718 static int
719 do_addkey (listview_ctrl_t lv, struct keycache_s *ctx, gpgme_key_t key,
720 int uididx, int keyidx, int list)
721 {
722 LV_ITEM lvi;
723 gpgme_user_id_t u;
724 gpgme_subkey_t k;
725 char fmt[128], *p;
726 const char *attr;
727 u32 key_attr;
728 int idx = 0;
729
730 /* we check the pubkey algorithm here to make sure that no ElGamal
731 sign+encrypt key is used in _any_ mode */
732 if (list != 1 && key->subkeys->pubkey_algo == GPGME_PK_ELG) {
733 log_debug ("ElGamal (E+S) key found: %s (%s)\n",
734 key->uids->name, key->subkeys->keyid);
735 return 0;
736 }
737
738 if (listview_add_item2 (lv, " ", (void *)ctx))
739 return WPTERR_GENERAL;
740
741 attr = ctx->uids->uid;
742 memset (&lvi, 0, sizeof lvi);
743 lvi.mask = LVIF_TEXT | LVIF_PARAM | LVIF_IMAGE;
744 lvi.pszText = (char *)attr;
745 lvi.iImage = find_secret_key (key)? 1 : 0;
746 lvi.lParam = (LPARAM )ctx;
747 if (ListView_SetItem (lv->ctrl, &lvi) == FALSE)
748 return WPTERR_GENERAL;
749
750 if (uididx == -1) { /* request the primary user-id of the key. */
751 attr = ctx->uids->uid;
752 uididx = 0;
753 }
754 else {
755 u = get_nth_userid (key, uididx);
756 if (!u || u->revoked || uididx < 0)
757 uididx = 0;
758 u = get_nth_userid (key, uididx);
759 attr = u->uid;
760 }
761 if (attr == NULL || strlen (attr) < 5) { /* normal userids are > 5 chars */
762 attr = _("Invalid User ID");
763 listview_add_sub_item (lv, 0, idx++, attr);
764 }
765 else
766 listview_add_sub_item (lv, 0, idx++, attr);
767 k = get_nth_key (key, keyidx);
768 if (k && k->keyid) {
769 _snprintf (fmt, sizeof fmt -1, "0x%s", k->keyid + 8);
770 listview_add_sub_item (lv, 0, idx++, fmt);
771 }
772 if (list > 0) {
773 key_attr = find_secret_key (key);
774 if (!key_attr)
775 attr = "pub";
776 else
777 attr = key_attr == 1? "pub/sec" : "pub/crd";
778 listview_add_sub_item (lv, 0, idx++, attr);
779 }
780 if (lv->cols >= 2) {
781 attr = get_key_size (key, list == -1? keyidx+1 : 0);
782 if (attr)
783 listview_add_sub_item (lv, 0, idx++, attr);
784 }
785 if (lv->cols >= 3) {
786 attr = get_key_algo (key, list == -1? keyidx+1 : 0);
787 if (attr)
788 listview_add_sub_item( lv, 0, idx++, attr);
789 }
790 if (lv->cols >= 4) {
791 p = get_key_status( key, uididx, list > 0? 1 : 0 );
792 if (!p)
793 return WPTERR_GENERAL;
794 listview_add_sub_item (lv, 0, idx++, p);
795 free_if_alloc (p);
796 }
797 if (lv->cols >= 5) {
798 attr = get_key_trust (key, uididx, list > 0? 1 : 0);
799 listview_add_sub_item (lv, 0, idx++, attr);
800 }
801 if( lv->cols >= 6 ) {
802 k = get_nth_key (key, keyidx);
803 key_attr = k->timestamp;
804 if( key_attr ) {
805 attr = get_key_created (key_attr);
806 listview_add_sub_item( lv, 0, idx++, attr );
807 }
808 }
809
810 return 0;
811 }
812
813
814 /* Update a single column @col but for each element in the
815 listview @lv. */
816 void
817 keylist_upd_col (listview_ctrl_t lv, int col)
818 {
819 gpgme_key_t key;
820 const char *s;
821 char buf[32], *p;
822 int i;
823
824 for (i=0; i < listview_count_items (lv, 0); i++) {
825 key = km_get_key_ptr (lv, i, NULL);
826 if (!key)
827 continue;
828 switch (col) {
829 case KM_COL_KEYID:
830 _snprintf (buf, sizeof (buf)-1, "0x%s", key->subkeys->keyid+8);
831 listview_add_sub_item (lv, i, col, buf);
832 break;
833
834 case KM_COL_CIPHER:
835 s = get_key_algo (key, 0);
836 listview_add_sub_item (lv, i, col, s);
837 break;
838
839 case KM_COL_TYPE:
840 s = find_secret_key (key)? "pub/sec" : "pub";
841 listview_add_sub_item (lv, i, col, s);
842 break;
843
844 case KM_COL_CREAT:
845 s = get_key_created (key->subkeys->timestamp);
846 listview_add_sub_item (lv, i, col, s);
847 break;
848
849 case KM_COL_DESC:
850 p = get_key_desc (key);
851 listview_add_sub_item (lv, i, col, p);
852 free_if_alloc (p);
853 break;
854 }
855 }
856 }
857
858
859 /* Update the listview item at position @pos with the data from
860 the key @key. */
861 void
862 keylist_upd_key (listview_ctrl_t lv, int pos,
863 struct keycache_s *ctx, gpgme_key_t key)
864 {
865 const char *s;
866 char *p;
867 char tmp[32];
868
869 listview_set_item2 (lv, pos, (void *)ctx);
870 /* the only mode we support is KEYLIST_LIST in the Key Manager */
871
872 s = ctx->uids->uid;
873 if (s)
874 listview_add_sub_item (lv, pos, KM_COL_UID, s);
875
876 s = key->subkeys->keyid;
877 if (s) {
878 sprintf (tmp, "0x%s", s+8);
879 listview_add_sub_item (lv, pos, KM_COL_KEYID, tmp);
880 }
881
882 s = find_secret_key (key)? "pub/sec" : "pub";
883 listview_add_sub_item (lv, pos, KM_COL_TYPE, s);
884
885 s = get_key_size (key, 0);
886 if (s)
887 listview_add_sub_item (lv, pos, KM_COL_SIZE, s);
888
889 s = get_key_algo (key, 0);
890 if (s)
891 listview_add_sub_item (lv, pos, KM_COL_CIPHER, s);
892
893 p = get_key_status (key, 0, 1);
894 if (p) {
895 listview_add_sub_item (lv, pos, KM_COL_VALID, p);
896 free_if_alloc (p);
897 }
898
899 s = get_key_trust (key, 0, 1);
900 if (s)
901 listview_add_sub_item (lv, pos, KM_COL_TRUST, s);
902
903 long t = key->subkeys->timestamp;
904 s = get_key_created (t);
905 if (s)
906 listview_add_sub_item (lv, pos, KM_COL_CREAT, s);
907 }
908
909
910 int
911 keylist_add_key (listview_ctrl_t lv, int mode,
912 struct keycache_s *ctx, gpgme_key_t key)
913 {
914 int uids, rc = 0, i;
915 gpgme_subkey_t k;
916
917 /* if the entire key is disabled, just return. */
918 if (key->disabled && !(mode & KEYLIST_LIST))
919 return 0;
920
921 for (k=key->subkeys, i = 0; i < count_subkeys (key); i++, k=k->next) {
922 if (k->invalid) {
923 log_debug ("keylist_add_key: invalid key \"%s\"\n", key->uids->name);
924 continue; /* Don't use invalid keys */
925 }
926
927 if (mode & KEYLIST_ALL) {
928 uids = count_userids (key);
929 rc = do_addkey (lv, ctx, key, uids, i, 0);
930 if (rc)
931 return rc;
932 }
933 else if (mode & KEYLIST_LIST)
934 return do_addkey (lv, ctx, key, -1, i, 1);
935 else if (mode & KEYLIST_ENCRYPT) {
936 if (k->can_encrypt && key_is_useable (k)) {
937 if (mode & KEYLIST_FLAG_FILE) {
938 rc = do_addkey (lv, ctx, key, -1, i, -1);
939 if (rc)
940 return rc;
941 }
942 else {
943 for (uids = 0; uids < count_userids (key); uids++) {
944 rc = do_addkey (lv, ctx, key, uids, i, -1);
945 if (rc)
946 return rc;
947 }
948 }
949 }
950 }
951 else if (mode & KEYLIST_ENCRYPT_MIN) {
952 if( k->can_encrypt && key_is_useable (k))
953 {
954 rc = do_addkey (lv, ctx, key, -1, i, -1);
955 return rc;
956 }
957 }
958 else if (mode & KEYLIST_SIGN) {
959 if (k->can_sign
960 && find_secret_key (key)
961 && key_is_useable (k)) {
962 rc = do_addkey (lv, ctx, key, -1, i, -1);
963 if (rc)
964 return rc;
965 }
966 }
967 }
968
969 return rc;
970 }
971
972
973 int
974 keylist_sort (listview_ctrl_t lv, int sortby)
975 {
976 return listview_sort_items (lv, sortby, keylist_cmp_cb);
977 }
978
979
980 /* Check that the validity @validity is at least >= marginal. */
981 static int
982 key_check_validity (gpgme_key_t key)
983 {
984 gpgme_user_id_t u;
985
986 for (u=key->uids; u; u =u->next) {
987 if (u->validity >= GPGME_VALIDITY_MARGINAL)
988 return -1;
989 }
990
991 return 0;
992 }
993
994
995 /* Extract all selected recipients from the list @lv and return them
996 as a vector. @r_force_trust is >= 1 if one of the recipients is not
997 fully trusted. @r_count returns the number of selected keys.
998 Return value: the key list on success, NULL otherwise. */
999 gpgme_key_t*
1000 keylist_get_recipients (listview_ctrl_t lv, int *r_force_trust, int *r_count)
1001 {
1002 key_array_s *ka = NULL;
1003 keycache_s *c;
1004 gpgme_key_t *keybuf, key;
1005 int count = 0, force_trust = 0;
1006 int n, j, ka_pos = 0, rc = 0;
1007 int k_pos=0;
1008
1009 n = listview_count_items (lv, 0);
1010
1011 ka = key_array_new (n);
1012 if (!ka)
1013 BUG (NULL);
1014
1015 keybuf = (gpgme_key_t*)calloc (n+1, sizeof (gpgme_key_t));
1016 if (!keybuf)
1017 BUG (NULL);
1018
1019 for (j = 0; j < n; j++) {
1020 if (listview_get_item_state (lv, j) || n == 1) {
1021 key = km_get_key_ptr (lv, j, &c);
1022 if (!key)
1023 BUG (0);
1024 if (!key_check_validity (key) &&
1025 !key_array_search (ka, ka_pos, key->subkeys->keyid)) {
1026 char *warn = new char[512+strlen (c->uids->uid) + 1];
1027 if (!warn)
1028 BUG (0);
1029 sprintf (warn,
1030 _("It is NOT certain that the key belongs to the person\n"
1031 "named in the user ID. If you *really* know what you are\n"
1032 "doing, you may answer the next question with yes\n"
1033 "\n"
1034 "Use \"%s\" anyway?"), c->uids->uid);
1035 if (reg_prefs.always_trust)
1036 rc = IDYES;
1037 else
1038 rc = msg_box (NULL, warn, _("Recipients"), MB_ERR_ASK);
1039 if (rc == IDYES) {
1040 keybuf[k_pos++] = key;
1041 force_trust++;
1042 ka[ka_pos].checked = 1;
1043 strcpy (ka[ka_pos++].keyid, key->subkeys->keyid);
1044 count++;
1045 }
1046 free_if_alloc (warn);
1047 }
1048 else {
1049 keybuf[k_pos++] = key;
1050 count++;
1051 }
1052 }
1053 }
1054 key_array_release (ka);
1055 if (r_force_trust)
1056 *r_force_trust = force_trust;
1057 if (r_count)
1058 *r_count = count;
1059 return keybuf;
1060 }
1061
1062
1063 static int
1064 keylist_get_keyflags (gpgme_key_t key)
1065 {
1066 int flags = KEYFLAG_NONE;
1067
1068 if (key->revoked)
1069 flags |= KEYFLAG_REVOKED;
1070 if (key->expired)
1071 flags |= KEYFLAG_EXPIRED;
1072 if (key->disabled)
1073 flags |= KEYFLAG_DISABLED;
1074
1075 return flags;
1076 }
1077
1078
1079 gpgme_key_t*
1080 keylist_enum_recipients (listview_ctrl_t lv, int listype, int *r_count)
1081 {
1082 struct keycache_s *c;
1083 gpgme_key_t *rset;
1084 gpgme_key_t key;
1085 int i, n, id, k_pos=0;
1086
1087 n = listview_count_items (lv, 0);
1088 if (!n)
1089 return 0;
1090 rset = (gpgme_key_t*)calloc (n+1, sizeof (gpgme_key_t));
1091 if (!rset)
1092 BUG (NULL);
1093 for (i = 0; i < n; i++) {
1094 if (!listview_get_item_state (lv, i))
1095 continue;
1096 key = km_get_key_ptr (lv, i, &c);
1097 switch (listype) {
1098 case KEYLIST_LIST:
1099 if (keylist_get_keyflags (key) & KEYFLAG_REVOKED) {
1100 id = printf_box (_("Recipients"), MB_INFO|MB_YESNO,
1101 _("KeyID %s.\nDo you really want to export a revoked key?"),
1102 c->uids->uid);
1103 if (id == IDNO)
1104 continue;
1105 }
1106 break;
1107 }
1108 rset[k_pos++] = key;
1109 }
1110 if (r_count)
1111 *r_count = k_pos;
1112 return rset;
1113 }
1114
1115
1116 void
1117 seclist_destroy (keylist_t *list)
1118 {
1119 keylist_t l2;
1120 while (*list) {
1121 l2 = (*list)->next;
1122 safe_free (*list);
1123 *list = l2;
1124 }
1125 list = NULL;
1126 }
1127
1128
1129 void
1130 seclist_init (HWND dlg, int ctlid, int flags, keylist_t * ret_list)
1131 {
1132 gpg_keycache_t kc = NULL;
1133 gpgme_key_t key = NULL;
1134 HWND kb;
1135 keylist_t list=NULL, l, l2;
1136 long pos = 0;
1137
1138 SendDlgItemMessage (dlg, ctlid, CB_RESETCONTENT, 0, 0);
1139 kb = GetDlgItem (dlg, ctlid);
1140 kc = keycache_get_ctx (0);
1141 if (!kc)
1142 BUG (0);
1143 gpg_keycache_rewind (kc);
1144
1145 while (!gpg_keycache_next_key (kc, 1, &key)) {
1146 char *inf = NULL, *uid = NULL;
1147 const char *id;
1148 const char *keyid;
1149 int algo;
1150 size_t size = 0;
1151
1152 if (flags & KEYLIST_FLAG_SHORT)
1153 id = key->uids->name;
1154 else
1155 id = key->uids->uid;
1156 keyid = key->subkeys->keyid;
1157 algo = key->subkeys->pubkey_algo;
1158 if (!id || !keyid)
1159 continue;
1160 if (key->disabled || !key_is_useable (key->subkeys))
1161 continue;
1162
1163 uid = utf8_to_native (id);
1164 size = strlen (uid) + strlen (keyid) + 32;
1165 inf = new char[size+1];
1166 if (!inf)
1167 BUG (NULL);
1168 _snprintf (inf, size, "%s (%s/0x%s)", uid,
1169 get_key_pubalgo (key->subkeys->pubkey_algo), keyid + 8);
1170 combox_add_string (kb, inf);
1171 free_if_alloc (inf);
1172 free (uid);
1173 l = (struct keylist_s *)calloc (1, sizeof * l);
1174 if (!l)
1175 BUG (0);
1176 l->key = key;
1177 if (!list)
1178 list = l;
1179 else {
1180 for( l2 = list; l2->next; l2 = l2->next )
1181 ;
1182 l2->next = l;
1183 }
1184 }
1185 for (pos = 0, l2=list; pos < SendMessage (kb, CB_GETCOUNT, 0, 0);
1186 pos++, l2=l2->next)
1187 SendMessage (kb, CB_SETITEMDATA, pos, (LPARAM)(DWORD)l2->key);
1188 SendMessage (kb, CB_SETCURSEL, 0, 0);
1189 *ret_list = list;
1190 }
1191
1192
1193 /* Select a secret key from the combo box with the ID @ctlid.
1194 Return the code on success in @ret_key. */
1195 int
1196 seclist_select_key (HWND dlg, int ctlid, gpgme_key_t *ret_key)
1197 {
1198 int pos;
1199 DWORD k = 0;
1200
1201 pos = SendDlgItemMessage (dlg, ctlid, CB_GETCURSEL, 0, 0);
1202 if (pos == CB_ERR) {
1203 msg_box (dlg, _("No key was selected."), _("Secret Key List"), MB_ERR);
1204 *ret_key = NULL;
1205 }
1206 else {
1207 k = SendDlgItemMessage (dlg, ctlid, CB_GETITEMDATA, pos, 0);
1208 *ret_key = (gpgme_key_t)k;
1209 }
1210 return k? 0 : -1;
1211 }

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