1 |
/* wptGPGME.cpp - WinPT GPGME interface |
/* wptGPGME.cpp - WinPT GPGME interface |
2 |
* Copyright (C) 2001-2005 Timo Schulz |
* Copyright (C) 2001-2005 Timo Schulz |
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* |
* |
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* This file is part of WinPT. |
* This file is part of WinPT. |
5 |
* |
* |
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* WinPT is free software; you can redistribute it and/or |
* WinPT is free software; you can redistribute it and/or |
7 |
* modify it under the terms of the GNU General Public License |
* modify it under the terms of the GNU General Public License |
8 |
* as published by the Free Software Foundation; either version 2 |
* as published by the Free Software Foundation; either version 2 |
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* of the License, or (at your option) any later version. |
* of the License, or (at your option) any later version. |
10 |
* |
* |
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* WinPT is distributed in the hope that it will be useful, |
* WinPT is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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* General Public License for more details. |
* General Public License for more details. |
15 |
* |
* |
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* You should have received a copy of the GNU General Public License |
* You should have received a copy of the GNU General Public License |
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* along with WinPT; if not, write to the Free Software Foundation, |
* along with WinPT; if not, write to the Free Software Foundation, |
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* Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA |
* Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA |
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*/ |
*/ |
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|
|
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#include <sys/types.h> |
#ifdef HAVE_CONFIG_H |
22 |
#include <windows.h> |
#include <config.h> |
23 |
|
#endif |
24 |
#include "../resource.h" |
|
25 |
#include "wptNLS.h" |
#include <sys/types.h> |
26 |
#include "wptGPG.h" |
#include <sys/types.h> |
27 |
#include "wptErrors.h" |
#include <windows.h> |
28 |
#include "wptTypes.h" |
|
29 |
#include "wptW32API.h" |
#include "resource.h" |
30 |
#include "wptVersion.h" |
#include "wptNLS.h" |
31 |
#include "wptCommonCtl.h" |
#include "wptGPG.h" |
32 |
#include "wptContext.h" |
#include "wptErrors.h" |
33 |
#include "wptRegistry.h" |
#include "wptTypes.h" |
34 |
#include "wptDlgs.h" |
#include "wptW32API.h" |
35 |
|
#include "wptVersion.h" |
36 |
#include "openpgp.h" |
#include "wptCommonCtl.h" |
37 |
|
#include "wptContext.h" |
38 |
BOOL CALLBACK keycache_dlg_proc (HWND dlg, UINT msg, WPARAM wparam, LPARAM lparam); |
#include "wptRegistry.h" |
39 |
void progress_cleanup (progress_filter_s * pfx); |
#include "wptDlgs.h" |
40 |
|
|
41 |
static gpg_keycache_t pub = NULL; |
#include "openpgp.h" |
42 |
static gpg_keycache_t sec = NULL; |
|
43 |
static unsigned int reload = 0; |
BOOL CALLBACK keycache_dlg_proc (HWND dlg, UINT msg, WPARAM wparam, LPARAM lparam); |
44 |
static char *gpg_secring = NULL; |
void progress_cleanup (progress_filter_s * pfx); |
45 |
|
|
46 |
|
static gpg_keycache_t pub = NULL; |
47 |
/* Reload the key cache. */ |
static gpg_keycache_t sec = NULL; |
48 |
void |
static unsigned int reload = 0; |
49 |
keycache_reload (HWND dlg) |
static char *gpg_secring = NULL; |
50 |
{ |
|
51 |
refresh_cache_s rcs; |
|
52 |
|
/* Reload the key cache. */ |
53 |
memset (&rcs, 0, sizeof rcs); |
void |
54 |
rcs.kr_reload = rcs.kr_update = 1; |
keycache_reload (HWND dlg) |
55 |
rcs.tr_update = 0; |
{ |
56 |
DialogBoxParam (glob_hinst, (LPCSTR)IDD_WINPT_KEYCACHE, dlg, |
refresh_cache_s rcs; |
57 |
keycache_dlg_proc, (LPARAM)&rcs); |
|
58 |
} |
memset (&rcs, 0, sizeof rcs); |
59 |
|
rcs.kr_reload = rcs.kr_update = 1; |
60 |
|
rcs.tr_update = 0; |
61 |
/* Release both key cache objects. If @cleanup is 1, |
DialogBoxParam (glob_hinst, (LPCSTR)IDD_WINPT_KEYCACHE, dlg, |
62 |
also release other global structs. */ |
keycache_dlg_proc, (LPARAM)&rcs); |
63 |
void |
} |
64 |
keycache_release (int cleanup) |
|
65 |
{ |
|
66 |
int n = gpg_keycache_get_size (pub); |
/* Release both key cache objects. If @cleanup is 1, |
67 |
char tmpbuf[64]; |
also release other global structs. */ |
68 |
|
void |
69 |
/* XXX: update the value when the cache has changed. */ |
keycache_release (int cleanup) |
70 |
sprintf (tmpbuf, "%d", n); |
{ |
71 |
set_reg_key (HKEY_CURRENT_USER, "Software\\WinPT", "nKeys", tmpbuf); |
int n = gpg_keycache_get_size (pub); |
72 |
|
char tmpbuf[64]; |
73 |
if (pub) { |
|
74 |
gpg_keycache_release (pub); |
/* XXX: update the value when the cache has changed. */ |
75 |
pub = NULL; |
sprintf (tmpbuf, "%d", n); |
76 |
} |
set_reg_key (HKEY_CURRENT_USER, "Software\\WinPT", "nKeys", tmpbuf); |
77 |
if (sec) { |
|
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gpg_keycache_release (sec); |
if (pub) { |
79 |
sec = NULL; |
gpg_keycache_release (pub); |
80 |
} |
pub = NULL; |
81 |
if (cleanup) { |
} |
82 |
if (gpg_secring) |
if (sec) { |
83 |
free (gpg_secring); |
gpg_keycache_release (sec); |
84 |
gpg_secring = NULL; |
sec = NULL; |
85 |
} |
} |
86 |
} |
if (cleanup) { |
87 |
|
if (gpg_secring) |
88 |
|
free (gpg_secring); |
89 |
/* Update the key with the keyid @keyid in the key cache. |
gpg_secring = NULL; |
90 |
If @is_sec is 1, the secret key cache is used. */ |
} |
91 |
gpgme_error_t |
} |
92 |
keycache_update (int is_sec, const char *keyid) |
|
93 |
{ |
|
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gpg_keycache_t ctx = pub; |
/* Update the key with the keyid @keyid in the key cache. |
95 |
gpgme_error_t err; |
If @is_sec is 1, the secret key cache is used. */ |
96 |
|
gpgme_error_t |
97 |
if (is_sec) |
keycache_update (int is_sec, const char *keyid) |
98 |
ctx = sec; |
{ |
99 |
err = gpg_keycache_update_key (ctx, is_sec, pub, keyid); |
gpg_keycache_t ctx = pub; |
100 |
if (is_sec) |
gpgme_error_t err; |
101 |
gpg_keycache_prepare_single (ctx, keyid, NULL, gpg_secring); |
|
102 |
return err; |
if (is_sec) |
103 |
} |
ctx = sec; |
104 |
|
err = gpg_keycache_update_key (ctx, is_sec, pub, keyid); |
105 |
/* XXX: cache_keyring_names must be called then the GPG homedir changes! */ |
if (is_sec) |
106 |
|
gpg_keycache_prepare_single (ctx, keyid, NULL, gpg_secring); |
107 |
gpgme_error_t |
return err; |
108 |
keycache_init (const char *pubring, const char * secring) |
} |
109 |
{ |
|
110 |
struct progress_filter_s pfx; |
/* XXX: cache_keyring_names must be called then the GPG homedir changes! */ |
111 |
gpgme_error_t err; |
|
112 |
int val = 0; |
/* Initialize both cache contexts. Use @pubring for the public |
113 |
char * p; |
keyring and @secring for the secret keyring. */ |
114 |
|
gpgme_error_t |
115 |
if (secring != NULL) { |
keycache_init (const char *pubring, const char *secring) |
116 |
free_if_alloc (gpg_secring); |
{ |
117 |
gpg_secring = get_gnupg_keyring (0, NO_STRICT); |
struct progress_filter_s pfx; |
118 |
} |
gpgme_error_t err; |
119 |
|
int val = 0; |
120 |
if (reload) { |
char *p; |
121 |
keycache_release (0); |
|
122 |
reload = 0; |
if (secring != NULL) { |
123 |
} |
free_if_alloc (gpg_secring); |
124 |
p = get_reg_entry (HKEY_CURRENT_USER, "Software\\WinPT", "nKeys"); |
gpg_secring = get_gnupg_keyring (0, NO_STRICT); |
125 |
if (p && *p != ' ') { |
} |
126 |
val = atoi (p); |
|
127 |
free_if_alloc (p); |
if (reload) { |
128 |
memset (&pfx, 0, sizeof (pfx)); |
keycache_release (0); |
129 |
} |
reload = 0; |
130 |
|
} |
131 |
err = gpg_keycache_new (&pub); |
p = get_reg_entry (HKEY_CURRENT_USER, "Software\\WinPT", "nKeys"); |
132 |
if (err) |
if (p && *p != ' ') { |
133 |
return err; |
val = atoi (p); |
134 |
if (val != 0) |
free_if_alloc (p); |
135 |
gpg_keycache_set_cb (pub, progress_callback, &pfx, val); |
memset (&pfx, 0, sizeof (pfx)); |
136 |
err = gpg_keycache_new (&sec); |
} |
137 |
if (!err) |
|
138 |
err = gpg_keycache_init (pub, NULL, 0); |
err = gpg_keycache_new (&pub); |
139 |
if (!err) |
if (err) |
140 |
err = gpg_keycache_init( sec, NULL, 1 ); |
return err; |
141 |
if( !err && pubring && *pubring ) |
if (val != 0) |
142 |
err = gpg_keycache_prepare( pub, pubring, NULL ); |
gpg_keycache_set_cb (pub, progress_callback, &pfx, val); |
143 |
if( !err && secring && * secring ) |
err = gpg_keycache_new (&sec); |
144 |
err = gpg_keycache_prepare( sec, NULL, secring ); |
if (!err) |
145 |
if (!err) |
err = gpg_keycache_init (pub, NULL, 0); |
146 |
gpg_keycache_sync (pub, sec); |
if (!err) |
147 |
if (val != 0) |
err = gpg_keycache_init( sec, NULL, 1 ); |
148 |
progress_cleanup (&pfx); |
if( !err && pubring && *pubring ) |
149 |
return err; |
err = gpg_keycache_prepare( pub, pubring, NULL ); |
150 |
} /* keycache_init */ |
if( !err && secring && * secring ) |
151 |
|
err = gpg_keycache_prepare( sec, NULL, secring ); |
152 |
|
if (!err) |
153 |
void |
gpg_keycache_sync (pub, sec); |
154 |
keycache_set_reload( int yes ) |
if (val != 0) |
155 |
{ |
progress_cleanup (&pfx); |
156 |
reload = yes; |
return err; |
157 |
} /* keycache_set_reload */ |
} |
158 |
|
|
159 |
|
|
160 |
int |
/* If @val = 1 indicate to reload the cache. */ |
161 |
keycache_get_reload( void ) |
void |
162 |
{ |
keycache_set_reload (int val) |
163 |
return reload; |
{ |
164 |
} /* keycache_get_reload */ |
reload = val; |
165 |
|
} |
166 |
|
|
167 |
gpg_keycache_t |
|
168 |
keycache_get_ctx (int is_pub) |
/* Return the reload cache flag. */ |
169 |
{ |
int |
170 |
return is_pub? pub : sec; |
keycache_get_reload (void) |
171 |
} |
{ |
172 |
|
return reload; |
173 |
|
} |
174 |
/* Get the GPG key with keyid @keyid from the cache. Return it |
|
175 |
in @r_key on success. */ |
|
176 |
static int |
/* Return the public cache context if @is_pub is set |
177 |
get_key_from_cache (const char *keyid, gpgme_key_t *r_key, |
the secre cache context otherwise. */ |
178 |
struct keycache_s **c, int secret) |
gpg_keycache_t |
179 |
{ |
keycache_get_ctx (int is_pub) |
180 |
gpg_keycache_t cache; |
{ |
181 |
gpgme_error_t err; |
return is_pub? pub : sec; |
182 |
int mode = secret? KEYCACHE_PRV : KEYCACHE_PUB; |
} |
183 |
|
|
184 |
if (!keyid) |
|
185 |
return WPTERR_GENERAL; |
/* Get the GPG key with keyid @keyid from the cache. Return it |
186 |
if (r_key) |
in @r_key on success. */ |
187 |
*r_key = NULL; |
static int |
188 |
cache = keycache_get_ctx (mode); |
get_key_from_cache (const char *keyid, gpgme_key_t *r_key, |
189 |
if (!cache) |
struct keycache_s **c, int secret) |
190 |
BUG( NULL ); |
{ |
191 |
if (!c) |
gpg_keycache_t cache; |
192 |
err = gpg_keycache_find_key (cache, keyid, 0, r_key); |
gpgme_error_t err; |
193 |
else |
int mode = secret? KEYCACHE_PRV : KEYCACHE_PUB; |
194 |
err = gpg_keycache_find_key2 (cache, keyid, 0, r_key, c); |
|
195 |
return err? WPTERR_GENERAL : 0; |
if (!keyid) |
196 |
} |
return WPTERR_GENERAL; |
197 |
|
if (r_key) |
198 |
|
*r_key = NULL; |
199 |
/* Get GPG key with keyid @keyid directly from GPG and return |
cache = keycache_get_ctx (mode); |
200 |
it in @r_key on success. */ |
if (!cache) |
201 |
static int |
BUG( NULL ); |
202 |
get_key_directly (const char *keyid, gpgme_key_t *r_key, int secret) |
if (!c) |
203 |
{ |
err = gpg_keycache_find_key (cache, keyid, 0, r_key); |
204 |
gpgme_ctx_t ctx; |
else |
205 |
gpgme_error_t err; |
err = gpg_keycache_find_key2 (cache, keyid, 0, r_key, c); |
206 |
|
return err? WPTERR_GENERAL : 0; |
207 |
err = gpgme_new (&ctx); |
} |
208 |
if (err) |
|
209 |
return WPTERR_GENERAL; |
|
210 |
err = gpgme_get_key (ctx, keyid, r_key, secret); |
/* Get GPG key with keyid @keyid directly from GPG and return |
211 |
gpgme_release (ctx); |
it in @r_key on success. */ |
212 |
return err? WPTERR_GENERAL : 0; |
static int |
213 |
} |
get_key_directly (const char *keyid, gpgme_key_t *r_key, int secret) |
214 |
|
{ |
215 |
|
gpgme_ctx_t ctx; |
216 |
int |
gpgme_error_t err; |
217 |
winpt_get_pubkey (const char *keyid, winpt_key_s *k) |
|
218 |
{ |
err = gpgme_new (&ctx); |
219 |
int rc; |
if (err) |
220 |
|
return WPTERR_GENERAL; |
221 |
rc = get_key_from_cache (keyid, &k->ctx, &k->ext, 0); |
err = gpgme_get_key (ctx, keyid, r_key, secret); |
222 |
if (rc) |
gpgme_release (ctx); |
223 |
return rc; |
return err? WPTERR_GENERAL : 0; |
224 |
k->is_v3 = k->ctx->subkeys->pubkey_algo == GPGME_PK_RSA && strlen (k->ctx->subkeys->fpr) == 32; |
} |
225 |
k->is_protected = k->ext->gloflags.is_protected; |
|
226 |
k->keyid = k->ctx->subkeys->keyid; |
|
227 |
k->uid = k->ctx->uids->uid; |
/* Search the public key with @keyid as the keyid in the cache and |
228 |
return rc; |
return the item in @k. */ |
229 |
} |
int |
230 |
|
winpt_get_pubkey (const char *keyid, winpt_key_s *k) |
231 |
|
{ |
232 |
int |
int rc; |
233 |
winpt_get_seckey (const char *keyid, winpt_key_s *k) |
|
234 |
{ |
rc = get_key_from_cache (keyid, &k->ctx, &k->ext, 0); |
235 |
int rc; |
if (rc) |
236 |
rc = get_key_from_cache (keyid, &k->ctx, &k->ext, 1); |
return rc; |
237 |
if (rc) |
k->is_v3 = k->ctx->subkeys->pubkey_algo == GPGME_PK_RSA && |
238 |
return rc; |
strlen (k->ctx->subkeys->fpr) == 32; |
239 |
k->is_v3 = k->ctx->subkeys->pubkey_algo == GPGME_PK_RSA && strlen (k->ctx->subkeys->fpr) == 32; |
k->is_protected = k->ext->gloflags.is_protected; |
240 |
k->is_protected = k->ext->gloflags.is_protected; |
k->keyid = k->ctx->subkeys->keyid; |
241 |
k->keyid = k->ctx->subkeys->keyid; |
k->uid = k->ctx->uids->uid; |
242 |
k->uid = k->ctx->uids->uid; |
return rc; |
243 |
return rc; |
} |
244 |
} |
|
245 |
|
|
246 |
|
int |
247 |
int |
winpt_get_seckey (const char *keyid, winpt_key_s *k) |
248 |
get_pubkey (const char *keyid, gpgme_key_t *ret_key) |
{ |
249 |
{ |
int rc; |
250 |
int rc = 0; |
rc = get_key_from_cache (keyid, &k->ctx, &k->ext, 1); |
251 |
|
if (rc) |
252 |
if (pub && sec) |
return rc; |
253 |
rc = get_key_from_cache (keyid, ret_key, NULL, 0); |
k->is_v3 = k->ctx->subkeys->pubkey_algo == GPGME_PK_RSA && |
254 |
else |
strlen (k->ctx->subkeys->fpr) == 32; |
255 |
rc = get_key_directly (keyid, ret_key, 0); |
k->is_protected = k->ext->gloflags.is_protected; |
256 |
return rc; |
k->keyid = k->ctx->subkeys->keyid; |
257 |
} |
k->uid = k->ctx->uids->uid; |
258 |
|
return rc; |
259 |
|
} |
260 |
int |
|
261 |
get_seckey (const char *keyid, gpgme_key_t *ret_skey) |
|
262 |
{ |
int |
263 |
int rc = 0; |
get_pubkey (const char *keyid, gpgme_key_t *ret_key) |
264 |
|
{ |
265 |
if (pub && sec) |
int rc; |
266 |
rc = get_key_from_cache (keyid, ret_skey, NULL, 1); |
|
267 |
else |
if (pub && sec) |
268 |
rc = get_key_directly (keyid, ret_skey, 1); |
rc = get_key_from_cache (keyid, ret_key, NULL, 0); |
269 |
return rc; |
else |
270 |
} |
rc = get_key_directly (keyid, ret_key, 0); |
271 |
|
return rc; |
272 |
|
} |
273 |
/* Search for insecure ElGamal keys and return the |
|
274 |
number of founded keys. */ |
|
275 |
int |
int |
276 |
count_insecure_elgkeys (void) |
get_seckey (const char *keyid, gpgme_key_t *ret_skey) |
277 |
{ |
{ |
278 |
gpg_keycache_t pc; |
int rc; |
279 |
gpgme_key_t key; |
|
280 |
int n=0; |
if (pub && sec) |
281 |
|
rc = get_key_from_cache (keyid, ret_skey, NULL, 1); |
282 |
pc = keycache_get_ctx (1); |
else |
283 |
if (!pc) |
rc = get_key_directly (keyid, ret_skey, 1); |
284 |
BUG (0); |
return rc; |
285 |
while (!gpg_keycache_next_key (pc, 0, &key)) { |
} |
286 |
if (key->subkeys->pubkey_algo == GPGME_PK_ELG) |
|
287 |
n++; |
|
288 |
} |
/* Search for insecure ElGamal keys and return the |
289 |
gpg_keycache_rewind (pc); |
number of founded keys. */ |
290 |
return n; |
int |
291 |
} |
count_insecure_elgkeys (void) |
292 |
|
{ |
293 |
|
gpg_keycache_t pc; |
294 |
|
gpgme_key_t key; |
295 |
|
int n=0; |
296 |
|
|
297 |
|
pc = keycache_get_ctx (1); |
298 |
|
if (!pc) |
299 |
|
BUG (0); |
300 |
|
while (!gpg_keycache_next_key (pc, 0, &key)) { |
301 |
|
if (key->subkeys->pubkey_algo == GPGME_PK_ELG) |
302 |
|
n++; |
303 |
|
} |
304 |
|
gpg_keycache_rewind (pc); |
305 |
|
return n; |
306 |
|
} |