Coverage Report

Created: 2026-07-28 07:11

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/hostap/wpa_supplicant/config_file.c
Line
Count
Source
1
/*
2
 * WPA Supplicant / Configuration backend: text file
3
 * Copyright (c) 2003-2019, Jouni Malinen <j@w1.fi>
4
 *
5
 * This software may be distributed under the terms of the BSD license.
6
 * See README for more details.
7
 *
8
 * This file implements a configuration backend for text files. All the
9
 * configuration information is stored in a text file that uses a format
10
 * described in the sample configuration file, wpa_supplicant.conf.
11
 */
12
13
#include "includes.h"
14
#ifdef ANDROID
15
#include <sys/stat.h>
16
#endif /* ANDROID */
17
18
#include "common.h"
19
#include "config.h"
20
#include "base64.h"
21
#include "uuid.h"
22
#include "common/ieee802_1x_defs.h"
23
#include "p2p/p2p.h"
24
#include "eap_peer/eap_methods.h"
25
#include "eap_peer/eap.h"
26
#include "utils/config.h"
27
28
29
static int wpa_config_validate_network(struct wpa_ssid *ssid, int line)
30
0
{
31
0
  int errors = 0;
32
33
0
  if (ssid->passphrase) {
34
0
    if (ssid->psk_set) {
35
0
      wpa_printf(MSG_ERROR, "Line %d: both PSK and "
36
0
           "passphrase configured.", line);
37
0
      errors++;
38
0
    }
39
0
    wpa_config_update_psk(ssid);
40
0
  }
41
42
0
  if (ssid->disabled == 2)
43
0
    ssid->p2p_persistent_group = 1;
44
45
0
  if ((ssid->group_cipher & WPA_CIPHER_CCMP) &&
46
0
      !(ssid->pairwise_cipher & (WPA_CIPHER_CCMP | WPA_CIPHER_CCMP_256 |
47
0
               WPA_CIPHER_GCMP | WPA_CIPHER_GCMP_256 |
48
0
               WPA_CIPHER_NONE))) {
49
    /* Group cipher cannot be stronger than the pairwise cipher. */
50
0
    wpa_printf(MSG_DEBUG, "Line %d: removed CCMP from group cipher"
51
0
         " list since it was not allowed for pairwise "
52
0
         "cipher", line);
53
0
    ssid->group_cipher &= ~WPA_CIPHER_CCMP;
54
0
  }
55
56
0
  if (is_6ghz_freq(ssid->frequency) && ssid->mode == WPAS_MODE_MESH &&
57
0
      ssid->key_mgmt == WPA_KEY_MGMT_NONE) {
58
0
    wpa_printf(MSG_ERROR,
59
0
         "Line %d: key_mgmt for mesh network in 6 GHz should be SAE",
60
0
         line);
61
0
    errors++;
62
0
  }
63
0
  if (ssid->mode == WPAS_MODE_MESH &&
64
0
      (ssid->key_mgmt != WPA_KEY_MGMT_NONE &&
65
0
      ssid->key_mgmt != WPA_KEY_MGMT_SAE)) {
66
0
    wpa_printf(MSG_ERROR,
67
0
         "Line %d: key_mgmt for mesh network should be open or SAE",
68
0
         line);
69
0
    errors++;
70
0
  }
71
72
#ifdef CONFIG_OCV
73
  if (ssid->ocv && ssid->ieee80211w == NO_MGMT_FRAME_PROTECTION) {
74
    wpa_printf(MSG_ERROR,
75
         "Line %d: PMF needs to be enabled whenever using OCV",
76
         line);
77
    errors++;
78
  }
79
#endif /* CONFIG_OCV */
80
81
0
  return errors;
82
0
}
83
84
85
static struct wpa_ssid * wpa_config_read_network(FILE *f, int *line, int id)
86
0
{
87
0
  struct wpa_ssid *ssid;
88
0
  int errors = 0, end = 0;
89
0
  char buf[2000], *pos, *pos2;
90
91
0
  wpa_printf(MSG_MSGDUMP, "Line: %d - start of a new network block",
92
0
       *line);
93
0
  ssid = os_zalloc(sizeof(*ssid));
94
0
  if (ssid == NULL)
95
0
    return NULL;
96
0
  dl_list_init(&ssid->psk_list);
97
0
  ssid->id = id;
98
99
0
  wpa_config_set_network_defaults(ssid);
100
101
0
  while (wpa_config_get_line(buf, sizeof(buf), f, line, &pos)) {
102
0
    if (os_strcmp(pos, "}") == 0) {
103
0
      end = 1;
104
0
      break;
105
0
    }
106
107
0
    pos2 = os_strchr(pos, '=');
108
0
    if (pos2 == NULL) {
109
0
      wpa_printf(MSG_ERROR, "Line %d: Invalid SSID line "
110
0
           "'%s'.", *line, pos);
111
0
      errors++;
112
0
      continue;
113
0
    }
114
115
0
    *pos2++ = '\0';
116
0
    if (*pos2 == '"') {
117
0
      if (os_strchr(pos2 + 1, '"') == NULL) {
118
0
        wpa_printf(MSG_ERROR, "Line %d: invalid "
119
0
             "quotation '%s'.", *line, pos2);
120
0
        errors++;
121
0
        continue;
122
0
      }
123
0
    }
124
125
0
    if (wpa_config_set(ssid, pos, pos2, *line) < 0) {
126
0
#ifndef CONFIG_WEP
127
0
      if (os_strcmp(pos, "wep_key0") == 0 ||
128
0
          os_strcmp(pos, "wep_key1") == 0 ||
129
0
          os_strcmp(pos, "wep_key2") == 0 ||
130
0
          os_strcmp(pos, "wep_key3") == 0 ||
131
0
          os_strcmp(pos, "wep_tx_keyidx") == 0) {
132
0
        wpa_printf(MSG_ERROR,
133
0
             "Line %d: unsupported WEP parameter",
134
0
             *line);
135
0
        ssid->disabled = 1;
136
0
        continue;
137
0
      }
138
0
#endif /* CONFIG_WEP */
139
0
      errors++;
140
0
    }
141
0
  }
142
143
0
  if (!end) {
144
0
    wpa_printf(MSG_ERROR, "Line %d: network block was not "
145
0
         "terminated properly.", *line);
146
0
    errors++;
147
0
  }
148
149
0
  errors += wpa_config_validate_network(ssid, *line);
150
151
0
  if (errors) {
152
0
    wpa_config_free_ssid(ssid);
153
0
    ssid = NULL;
154
0
  }
155
156
0
  return ssid;
157
0
}
158
159
160
static struct wpa_cred * wpa_config_read_cred(FILE *f, int *line, int id)
161
0
{
162
0
  struct wpa_cred *cred;
163
0
  int errors = 0, end = 0;
164
0
  char buf[256], *pos, *pos2;
165
166
0
  wpa_printf(MSG_MSGDUMP, "Line: %d - start of a new cred block", *line);
167
0
  cred = os_zalloc(sizeof(*cred));
168
0
  if (cred == NULL)
169
0
    return NULL;
170
0
  cred->id = id;
171
0
  cred->sim_num = DEFAULT_USER_SELECTED_SIM;
172
173
0
  while (wpa_config_get_line(buf, sizeof(buf), f, line, &pos)) {
174
0
    if (os_strcmp(pos, "}") == 0) {
175
0
      end = 1;
176
0
      break;
177
0
    }
178
179
0
    pos2 = os_strchr(pos, '=');
180
0
    if (pos2 == NULL) {
181
0
      wpa_printf(MSG_ERROR, "Line %d: Invalid cred line "
182
0
           "'%s'.", *line, pos);
183
0
      errors++;
184
0
      continue;
185
0
    }
186
187
0
    *pos2++ = '\0';
188
0
    if (*pos2 == '"') {
189
0
      if (os_strchr(pos2 + 1, '"') == NULL) {
190
0
        wpa_printf(MSG_ERROR, "Line %d: invalid "
191
0
             "quotation '%s'.", *line, pos2);
192
0
        errors++;
193
0
        continue;
194
0
      }
195
0
    }
196
197
0
    if (wpa_config_set_cred(cred, pos, pos2, *line) < 0)
198
0
      errors++;
199
0
  }
200
201
0
  if (!end) {
202
0
    wpa_printf(MSG_ERROR, "Line %d: cred block was not "
203
0
         "terminated properly.", *line);
204
0
    errors++;
205
0
  }
206
207
0
  if (errors) {
208
0
    wpa_config_free_cred(cred);
209
0
    cred = NULL;
210
0
  }
211
212
0
  return cred;
213
0
}
214
215
216
#ifndef CONFIG_NO_CONFIG_BLOBS
217
static struct wpa_config_blob * wpa_config_read_blob(FILE *f, int *line,
218
                 const char *name)
219
0
{
220
0
  struct wpa_config_blob *blob;
221
0
  char buf[256], *pos;
222
0
  char *encoded = NULL, *nencoded;
223
0
  int end = 0;
224
0
  size_t encoded_len = 0, len;
225
226
0
  wpa_printf(MSG_MSGDUMP, "Line: %d - start of a new named blob '%s'",
227
0
       *line, name);
228
229
0
  while (wpa_config_get_line(buf, sizeof(buf), f, line, &pos)) {
230
0
    if (os_strcmp(pos, "}") == 0) {
231
0
      end = 1;
232
0
      break;
233
0
    }
234
235
0
    len = os_strlen(pos);
236
0
    nencoded = os_realloc(encoded, encoded_len + len);
237
0
    if (nencoded == NULL) {
238
0
      wpa_printf(MSG_ERROR, "Line %d: not enough memory for "
239
0
           "blob", *line);
240
0
      os_free(encoded);
241
0
      return NULL;
242
0
    }
243
0
    encoded = nencoded;
244
0
    os_memcpy(encoded + encoded_len, pos, len);
245
0
    encoded_len += len;
246
0
  }
247
248
0
  if (!end || !encoded) {
249
0
    wpa_printf(MSG_ERROR, "Line %d: blob was not terminated "
250
0
         "properly", *line);
251
0
    os_free(encoded);
252
0
    return NULL;
253
0
  }
254
255
0
  blob = os_zalloc(sizeof(*blob));
256
0
  if (blob == NULL) {
257
0
    os_free(encoded);
258
0
    return NULL;
259
0
  }
260
0
  blob->name = os_strdup(name);
261
0
  blob->data = base64_decode(encoded, encoded_len, &blob->len);
262
0
  os_free(encoded);
263
264
0
  if (blob->name == NULL || blob->data == NULL) {
265
0
    wpa_config_free_blob(blob);
266
0
    return NULL;
267
0
  }
268
269
0
  return blob;
270
0
}
271
272
273
static int wpa_config_process_blob(struct wpa_config *config, FILE *f,
274
           int *line, char *bname)
275
0
{
276
0
  char *name_end;
277
0
  struct wpa_config_blob *blob;
278
279
0
  name_end = os_strchr(bname, '=');
280
0
  if (name_end == NULL) {
281
0
    wpa_printf(MSG_ERROR, "Line %d: no blob name terminator",
282
0
         *line);
283
0
    return -1;
284
0
  }
285
0
  *name_end = '\0';
286
287
0
  blob = wpa_config_read_blob(f, line, bname);
288
0
  if (blob == NULL) {
289
0
    wpa_printf(MSG_ERROR, "Line %d: failed to read blob %s",
290
0
         *line, bname);
291
0
    return -1;
292
0
  }
293
0
  wpa_config_set_blob(config, blob);
294
0
  return 0;
295
0
}
296
#endif /* CONFIG_NO_CONFIG_BLOBS */
297
298
299
static struct wpa_dev_ik * wpa_config_read_identity(FILE *f, int *line, int id)
300
0
{
301
0
  struct wpa_dev_ik *identity;
302
0
  int errors = 0, end = 0;
303
0
  char buf[256], *pos, *pos2;
304
305
0
  wpa_printf(MSG_MSGDUMP, "Line: %d - start of a new identity block",
306
0
       *line);
307
0
  identity = os_zalloc(sizeof(*identity));
308
0
  if (!identity)
309
0
    return NULL;
310
0
  identity->id = id;
311
312
0
  while (wpa_config_get_line(buf, sizeof(buf), f, line, &pos)) {
313
0
    if (os_strcmp(pos, "}") == 0) {
314
0
      end = 1;
315
0
      break;
316
0
    }
317
318
0
    pos2 = os_strchr(pos, '=');
319
0
    if (!pos2) {
320
0
      wpa_printf(MSG_ERROR,
321
0
           "Line %d: Invalid identity line '%s'.",
322
0
           *line, pos);
323
0
      errors++;
324
0
      continue;
325
0
    }
326
327
0
    *pos2++ = '\0';
328
0
    if (*pos2 == '"') {
329
0
      if (os_strchr(pos2 + 1, '"') == NULL) {
330
0
        wpa_printf(MSG_ERROR,
331
0
             "Line %d: invalid quotation '%s'.",
332
0
             *line, pos2);
333
0
        errors++;
334
0
        continue;
335
0
      }
336
0
    }
337
338
0
    if (wpa_config_set_identity(identity, pos, pos2, *line) < 0)
339
0
      errors++;
340
0
  }
341
342
0
  if (!end) {
343
0
    wpa_printf(MSG_ERROR,
344
0
         "Line %d: identity block was not terminated properly.",
345
0
         *line);
346
0
    errors++;
347
0
  }
348
349
0
  if (errors) {
350
0
    wpa_config_free_identity(identity);
351
0
    identity = NULL;
352
0
  }
353
354
0
  return identity;
355
0
}
356
357
358
struct wpa_config * wpa_config_read(const char *name, struct wpa_config *cfgp,
359
            bool ro, bool show_details)
360
0
{
361
0
  FILE *f;
362
0
  char buf[1024], *pos;
363
0
  int errors = 0, line = 0;
364
0
  struct wpa_ssid *ssid, *tail, *head;
365
0
  struct wpa_cred *cred, *cred_tail, *cred_head;
366
0
  struct wpa_dev_ik *identity, *identity_tail, *identity_head;
367
0
  struct wpa_config *config;
368
0
  static int id = 0;
369
0
  static int cred_id = 0;
370
0
  static int base_identity_id = 0;
371
0
  int identity_id = base_identity_id;
372
373
0
  if (name == NULL)
374
0
    return NULL;
375
0
  if (cfgp)
376
0
    config = cfgp;
377
0
  else
378
0
    config = wpa_config_alloc_empty(NULL, NULL);
379
0
  if (config == NULL) {
380
0
    wpa_printf(MSG_ERROR, "Failed to allocate config file "
381
0
         "structure");
382
0
    return NULL;
383
0
  }
384
0
  tail = head = config->ssid;
385
0
  while (tail && tail->next)
386
0
    tail = tail->next;
387
0
  cred_tail = cred_head = config->cred;
388
0
  while (cred_tail && cred_tail->next)
389
0
    cred_tail = cred_tail->next;
390
0
  identity_tail = identity_head = config->identity;
391
0
  while (identity_tail && identity_tail->next)
392
0
    identity_tail = identity_tail->next;
393
394
0
  wpa_printf(MSG_DEBUG, "Reading configuration file '%s'", name);
395
0
  f = fopen(name, "r");
396
0
  if (f == NULL) {
397
0
    if (show_details)
398
0
      wpa_printf(MSG_ERROR,
399
0
           "Failed to open config file '%s', error: %s",
400
0
           name, strerror(errno));
401
0
    if (config != cfgp)
402
0
      os_free(config);
403
0
    return NULL;
404
0
  }
405
406
0
  while (wpa_config_get_line(buf, sizeof(buf), f, &line, &pos)) {
407
0
#ifndef WPA_IGNORE_CONFIG_ERRORS
408
0
    if (errors && !show_details)
409
0
      break;
410
0
#endif /* WPA_IGNORE_CONFIG_ERRORS */
411
412
0
    if (os_strcmp(pos, "network={") == 0) {
413
0
      ssid = wpa_config_read_network(f, &line, id++);
414
0
      if (ssid == NULL) {
415
0
        wpa_printf(MSG_ERROR, "Line %d: failed to "
416
0
             "parse network block.", line);
417
0
        errors++;
418
0
        continue;
419
0
      }
420
0
      ssid->go_dik_id += base_identity_id;
421
0
      ssid->ro = ro;
422
0
      if (head == NULL) {
423
0
        head = tail = ssid;
424
0
      } else {
425
0
        tail->next = ssid;
426
0
        tail = ssid;
427
0
      }
428
0
      if (wpa_config_add_prio_network(config, ssid)) {
429
0
        wpa_printf(MSG_ERROR, "Line %d: failed to add "
430
0
             "network block to priority list.",
431
0
             line);
432
0
        errors++;
433
0
        continue;
434
0
      }
435
0
    } else if (os_strcmp(pos, "cred={") == 0) {
436
0
      cred = wpa_config_read_cred(f, &line, cred_id++);
437
0
      if (cred == NULL) {
438
0
        wpa_printf(MSG_ERROR, "Line %d: failed to "
439
0
             "parse cred block.", line);
440
0
        errors++;
441
0
        continue;
442
0
      }
443
0
      if (cred_head == NULL) {
444
0
        cred_head = cred_tail = cred;
445
0
      } else {
446
0
        cred_tail->next = cred;
447
0
        cred_tail = cred;
448
0
      }
449
0
#ifndef CONFIG_NO_CONFIG_BLOBS
450
0
    } else if (os_strncmp(pos, "blob-base64-", 12) == 0) {
451
0
      if (wpa_config_process_blob(config, f, &line, pos + 12)
452
0
          < 0) {
453
0
        wpa_printf(MSG_ERROR, "Line %d: failed to "
454
0
             "process blob.", line);
455
0
        errors++;
456
0
        continue;
457
0
      }
458
0
#endif /* CONFIG_NO_CONFIG_BLOBS */
459
0
    } else if (os_strcmp(pos, "identity={") == 0) {
460
0
      identity = wpa_config_read_identity(f, &line,
461
0
                  ++identity_id);
462
0
      if (!identity) {
463
0
        wpa_printf(MSG_ERROR,
464
0
             "Line %d: failed to parse identity block.",
465
0
             line);
466
0
        errors++;
467
0
        continue;
468
0
      }
469
0
      if (!identity_head) {
470
0
        identity_head = identity_tail = identity;
471
0
      } else {
472
0
        identity_tail->next = identity;
473
0
        identity_tail = identity;
474
0
      }
475
0
    } else if (wpa_config_process_global(config, pos, line,
476
0
                 show_details) < 0) {
477
0
      if (show_details)
478
0
        wpa_printf(MSG_ERROR,
479
0
             "Line %d: Invalid configuration line '%s'.",
480
0
             line, pos);
481
0
      errors++;
482
0
      continue;
483
0
    }
484
0
  }
485
486
0
  fclose(f);
487
488
0
  config->ssid = head;
489
0
  wpa_config_debug_dump_networks(config);
490
0
  config->cred = cred_head;
491
0
  config->identity = identity_head;
492
493
0
  base_identity_id = identity_id;
494
495
0
#ifndef WPA_IGNORE_CONFIG_ERRORS
496
0
  if (errors) {
497
0
    if (config != cfgp)
498
0
      wpa_config_free(config);
499
0
    config = NULL;
500
0
    head = NULL;
501
0
  }
502
0
#endif /* WPA_IGNORE_CONFIG_ERRORS */
503
504
0
  return config;
505
0
}
506
507
508
#ifndef CONFIG_NO_CONFIG_WRITE
509
510
static void write_str(FILE *f, const char *field, struct wpa_ssid *ssid)
511
0
{
512
0
  char *value = wpa_config_get(ssid, field);
513
0
  if (value == NULL)
514
0
    return;
515
0
  fprintf(f, "\t%s=%s\n", field, value);
516
0
  str_clear_free(value);
517
0
}
518
519
520
static void write_int(FILE *f, const char *field, int value, int def)
521
0
{
522
0
  if (value == def)
523
0
    return;
524
0
  fprintf(f, "\t%s=%d\n", field, value);
525
0
}
526
527
528
static void write_bssid(FILE *f, struct wpa_ssid *ssid)
529
0
{
530
0
  char *value = wpa_config_get(ssid, "bssid");
531
0
  if (value == NULL)
532
0
    return;
533
0
  fprintf(f, "\tbssid=%s\n", value);
534
0
  os_free(value);
535
0
}
536
537
538
static void write_bssid_hint(FILE *f, struct wpa_ssid *ssid)
539
0
{
540
0
  char *value = wpa_config_get(ssid, "bssid_hint");
541
542
0
  if (!value)
543
0
    return;
544
0
  fprintf(f, "\tbssid_hint=%s\n", value);
545
0
  os_free(value);
546
0
}
547
548
549
static void write_psk(FILE *f, struct wpa_ssid *ssid)
550
0
{
551
0
  char *value;
552
553
0
  if (ssid->mem_only_psk)
554
0
    return;
555
556
0
  value = wpa_config_get(ssid, "psk");
557
0
  if (value == NULL)
558
0
    return;
559
0
  fprintf(f, "\tpsk=%s\n", value);
560
0
  os_free(value);
561
0
}
562
563
564
static void write_proto(FILE *f, struct wpa_ssid *ssid)
565
0
{
566
0
  char *value;
567
568
0
  if (ssid->proto == DEFAULT_PROTO)
569
0
    return;
570
571
0
  value = wpa_config_get(ssid, "proto");
572
0
  if (value == NULL)
573
0
    return;
574
0
  if (value[0])
575
0
    fprintf(f, "\tproto=%s\n", value);
576
0
  os_free(value);
577
0
}
578
579
580
static void write_key_mgmt(FILE *f, struct wpa_ssid *ssid)
581
0
{
582
0
  char *value;
583
584
0
  if (ssid->key_mgmt == DEFAULT_KEY_MGMT)
585
0
    return;
586
587
0
  value = wpa_config_get(ssid, "key_mgmt");
588
0
  if (value == NULL)
589
0
    return;
590
0
  if (value[0])
591
0
    fprintf(f, "\tkey_mgmt=%s\n", value);
592
0
  os_free(value);
593
0
}
594
595
596
static void write_pairwise(FILE *f, struct wpa_ssid *ssid)
597
0
{
598
0
  char *value;
599
600
0
  if (ssid->pairwise_cipher == DEFAULT_PAIRWISE)
601
0
    return;
602
603
0
  value = wpa_config_get(ssid, "pairwise");
604
0
  if (value == NULL)
605
0
    return;
606
0
  if (value[0])
607
0
    fprintf(f, "\tpairwise=%s\n", value);
608
0
  os_free(value);
609
0
}
610
611
612
static void write_group(FILE *f, struct wpa_ssid *ssid)
613
0
{
614
0
  char *value;
615
616
0
  if (ssid->group_cipher == DEFAULT_GROUP)
617
0
    return;
618
619
0
  value = wpa_config_get(ssid, "group");
620
0
  if (value == NULL)
621
0
    return;
622
0
  if (value[0])
623
0
    fprintf(f, "\tgroup=%s\n", value);
624
0
  os_free(value);
625
0
}
626
627
628
static void write_group_mgmt(FILE *f, struct wpa_ssid *ssid)
629
0
{
630
0
  char *value;
631
632
0
  if (!ssid->group_mgmt_cipher)
633
0
    return;
634
635
0
  value = wpa_config_get(ssid, "group_mgmt");
636
0
  if (!value)
637
0
    return;
638
0
  if (value[0])
639
0
    fprintf(f, "\tgroup_mgmt=%s\n", value);
640
0
  os_free(value);
641
0
}
642
643
644
static void write_auth_alg(FILE *f, struct wpa_ssid *ssid)
645
0
{
646
0
  char *value;
647
648
0
  if (ssid->auth_alg == 0)
649
0
    return;
650
651
0
  value = wpa_config_get(ssid, "auth_alg");
652
0
  if (value == NULL)
653
0
    return;
654
0
  if (value[0])
655
0
    fprintf(f, "\tauth_alg=%s\n", value);
656
0
  os_free(value);
657
0
}
658
659
660
#ifdef IEEE8021X_EAPOL
661
static void write_eap(FILE *f, struct wpa_ssid *ssid)
662
0
{
663
0
  char *value;
664
665
0
  value = wpa_config_get(ssid, "eap");
666
0
  if (value == NULL)
667
0
    return;
668
669
0
  if (value[0])
670
0
    fprintf(f, "\teap=%s\n", value);
671
0
  os_free(value);
672
0
}
673
#endif /* IEEE8021X_EAPOL */
674
675
676
#ifdef CONFIG_WEP
677
static void write_wep_key(FILE *f, int idx, struct wpa_ssid *ssid)
678
{
679
  char field[20], *value;
680
  int res;
681
682
  res = os_snprintf(field, sizeof(field), "wep_key%d", idx);
683
  if (os_snprintf_error(sizeof(field), res))
684
    return;
685
  value = wpa_config_get(ssid, field);
686
  if (value) {
687
    fprintf(f, "\t%s=%s\n", field, value);
688
    os_free(value);
689
  }
690
}
691
#endif /* CONFIG_WEP */
692
693
694
#ifdef CONFIG_P2P
695
696
static void write_go_p2p_dev_addr(FILE *f, struct wpa_ssid *ssid)
697
{
698
  char *value = wpa_config_get(ssid, "go_p2p_dev_addr");
699
  if (value == NULL)
700
    return;
701
  fprintf(f, "\tgo_p2p_dev_addr=%s\n", value);
702
  os_free(value);
703
}
704
705
static void write_p2p_client_list(FILE *f, struct wpa_ssid *ssid)
706
{
707
  char *value = wpa_config_get(ssid, "p2p_client_list");
708
  if (value == NULL)
709
    return;
710
  fprintf(f, "\tp2p_client_list=%s\n", value);
711
  os_free(value);
712
}
713
714
715
static void write_p2p2_client_list(FILE *f, struct wpa_ssid *ssid)
716
{
717
  char *value = wpa_config_get(ssid, "p2p2_client_list");
718
719
  if (!value)
720
    return;
721
  fprintf(f, "\tp2p2_client_list=%s\n", value);
722
  os_free(value);
723
}
724
725
726
static void write_psk_list(FILE *f, struct wpa_ssid *ssid)
727
{
728
  struct psk_list_entry *psk;
729
  char hex[32 * 2 + 1];
730
731
  dl_list_for_each(psk, &ssid->psk_list, struct psk_list_entry, list) {
732
    wpa_snprintf_hex(hex, sizeof(hex), psk->psk, sizeof(psk->psk));
733
    fprintf(f, "\tpsk_list=%s" MACSTR "-%s\n",
734
      psk->p2p ? "P2P-" : "", MAC2STR(psk->addr), hex);
735
  }
736
}
737
738
#endif /* CONFIG_P2P */
739
740
741
#ifdef CONFIG_MACSEC
742
743
static void write_mka_cak(FILE *f, struct wpa_ssid *ssid)
744
{
745
  char *value;
746
747
  if (!(ssid->mka_psk_set & MKA_PSK_SET_CAK))
748
    return;
749
750
  value = wpa_config_get(ssid, "mka_cak");
751
  if (!value)
752
    return;
753
  fprintf(f, "\tmka_cak=%s\n", value);
754
  os_free(value);
755
}
756
757
758
static void write_mka_ckn(FILE *f, struct wpa_ssid *ssid)
759
{
760
  char *value;
761
762
  if (!(ssid->mka_psk_set & MKA_PSK_SET_CKN))
763
    return;
764
765
  value = wpa_config_get(ssid, "mka_ckn");
766
  if (!value)
767
    return;
768
  fprintf(f, "\tmka_ckn=%s\n", value);
769
  os_free(value);
770
}
771
772
#endif /* CONFIG_MACSEC */
773
774
775
static void wpa_config_write_network(FILE *f, struct wpa_ssid *ssid,
776
             struct wpa_config *config)
777
0
{
778
0
#define STR(t) write_str(f, #t, ssid)
779
0
#define INT(t) write_int(f, #t, ssid->t, 0)
780
0
#define INTe(t, m) write_int(f, #t, ssid->eap.m, 0)
781
0
#define INT_DEF(t, def) write_int(f, #t, ssid->t, def)
782
0
#define INT_DEFe(t, m, def) write_int(f, #t, ssid->eap.m, def)
783
784
0
  STR(ssid);
785
0
  INT(scan_ssid);
786
0
  write_bssid(f, ssid);
787
0
  write_bssid_hint(f, ssid);
788
0
  write_str(f, "bssid_ignore", ssid);
789
0
  write_str(f, "bssid_accept", ssid);
790
0
  write_psk(f, ssid);
791
0
  INT(mem_only_psk);
792
0
  STR(sae_password);
793
0
  STR(sae_password_id);
794
0
  write_int(f, "sae_pwe", ssid->sae_pwe, DEFAULT_SAE_PWE);
795
0
  INT(sae_password_id_change);
796
0
  write_proto(f, ssid);
797
0
  write_key_mgmt(f, ssid);
798
0
  INT_DEF(bg_scan_period, DEFAULT_BG_SCAN_PERIOD);
799
0
  write_pairwise(f, ssid);
800
0
  write_group(f, ssid);
801
0
  write_group_mgmt(f, ssid);
802
0
  write_auth_alg(f, ssid);
803
0
  STR(bgscan);
804
0
  STR(autoscan);
805
0
  STR(scan_freq);
806
0
  STR(freq_list);
807
0
#ifdef IEEE8021X_EAPOL
808
0
  write_eap(f, ssid);
809
0
  STR(identity);
810
0
  STR(anonymous_identity);
811
0
  STR(imsi_identity);
812
0
  STR(machine_identity);
813
0
  STR(password);
814
0
  STR(machine_password);
815
0
  STR(ca_cert);
816
0
  STR(ca_path);
817
0
  STR(client_cert);
818
0
  STR(private_key);
819
0
  STR(private_key_passwd);
820
0
  STR(subject_match);
821
0
  STR(check_cert_subject);
822
0
  STR(altsubject_match);
823
0
  STR(domain_suffix_match);
824
0
  STR(domain_match);
825
0
  STR(ca_cert2);
826
0
  STR(ca_path2);
827
0
  STR(client_cert2);
828
0
  STR(private_key2);
829
0
  STR(private_key2_passwd);
830
0
  STR(subject_match2);
831
0
  STR(check_cert_subject2);
832
0
  STR(altsubject_match2);
833
0
  STR(domain_suffix_match2);
834
0
  STR(domain_match2);
835
0
  STR(machine_ca_cert);
836
0
  STR(machine_ca_path);
837
0
  STR(machine_client_cert);
838
0
  STR(machine_private_key);
839
0
  STR(machine_private_key_passwd);
840
0
  STR(machine_subject_match);
841
0
  STR(machine_check_cert_subject);
842
0
  STR(machine_altsubject_match);
843
0
  STR(machine_domain_suffix_match);
844
0
  STR(machine_domain_match);
845
0
  STR(phase1);
846
0
  STR(phase2);
847
0
  STR(machine_phase2);
848
0
  STR(pcsc);
849
0
  STR(pin);
850
0
  STR(engine_id);
851
0
  STR(key_id);
852
0
  STR(cert_id);
853
0
  STR(ca_cert_id);
854
0
  STR(key2_id);
855
0
  STR(pin2);
856
0
  STR(engine2_id);
857
0
  STR(cert2_id);
858
0
  STR(ca_cert2_id);
859
0
  INTe(engine, cert.engine);
860
0
  INTe(engine2, phase2_cert.engine);
861
0
  INTe(machine_engine, machine_cert.engine);
862
0
  INT_DEF(eapol_flags, DEFAULT_EAPOL_FLAGS);
863
0
  STR(openssl_ciphers);
864
0
  INTe(erp, erp);
865
0
#endif /* IEEE8021X_EAPOL */
866
#ifdef CONFIG_WEP
867
  {
868
    int i;
869
870
    for (i = 0; i < 4; i++)
871
      write_wep_key(f, i, ssid);
872
    INT(wep_tx_keyidx);
873
  }
874
#endif /* CONFIG_WEP */
875
0
  INT(priority);
876
0
#ifdef IEEE8021X_EAPOL
877
0
  INT_DEF(eap_workaround, DEFAULT_EAP_WORKAROUND);
878
0
  STR(pac_file);
879
0
  INT_DEFe(fragment_size, fragment_size, DEFAULT_FRAGMENT_SIZE);
880
0
  INTe(ocsp, cert.ocsp);
881
0
  INTe(ocsp2, phase2_cert.ocsp);
882
0
  INTe(machine_ocsp, machine_cert.ocsp);
883
0
  INT_DEFe(sim_num, sim_num, DEFAULT_USER_SELECTED_SIM);
884
0
#endif /* IEEE8021X_EAPOL */
885
0
  INT(mode);
886
#ifdef CONFIG_MESH
887
  INT(no_auto_peer);
888
  INT_DEF(mesh_fwding, DEFAULT_MESH_FWDING);
889
#endif /* CONFIG_MESH */
890
0
  INT(frequency);
891
0
  INT(enable_edmg);
892
0
  INT(edmg_channel);
893
0
  INT(fixed_freq);
894
#ifdef CONFIG_ACS
895
  INT(acs);
896
#endif /* CONFIG_ACS */
897
0
  write_int(f, "proactive_key_caching", ssid->proactive_key_caching, -1);
898
0
  INT(disabled);
899
0
  INT(mixed_cell);
900
0
  INT_DEF(vht, 1);
901
0
  INT_DEF(ht, 1);
902
0
  INT(ht40);
903
0
  INT_DEF(he, 1);
904
0
  INT_DEF(max_oper_chwidth, DEFAULT_MAX_OPER_CHWIDTH);
905
0
  INT(vht_center_freq1);
906
0
  INT(vht_center_freq2);
907
0
  INT(pbss);
908
0
  INT(wps_disabled);
909
0
  INT(fils_dh_group);
910
0
  write_int(f, "ieee80211w", ssid->ieee80211w,
911
0
      MGMT_FRAME_PROTECTION_DEFAULT);
912
0
  STR(id_str);
913
#ifdef CONFIG_P2P
914
  write_go_p2p_dev_addr(f, ssid);
915
  write_p2p_client_list(f, ssid);
916
  write_p2p2_client_list(f, ssid);
917
  write_psk_list(f, ssid);
918
  {
919
    struct wpa_dev_ik *dev_ik;
920
    int i = 1, go_dik_id = 0;
921
922
    for (dev_ik = config->identity;
923
         dev_ik;
924
         dev_ik = dev_ik->next, i++) {
925
      if (dev_ik->id == ssid->go_dik_id) {
926
        go_dik_id = i;
927
        break;
928
      }
929
    }
930
    write_int(f, "go_dik_id", go_dik_id, 0);
931
  }
932
#endif /* CONFIG_P2P */
933
0
  INT(ap_max_inactivity);
934
0
  INT(dtim_period);
935
0
  INT(beacon_int);
936
#ifdef CONFIG_MACSEC
937
  INT(macsec_policy);
938
  write_mka_cak(f, ssid);
939
  write_mka_ckn(f, ssid);
940
  INT(macsec_integ_only);
941
  INT(macsec_replay_protect);
942
  INT(macsec_replay_window);
943
  INT(macsec_offload);
944
  INT(macsec_port);
945
  INT_DEF(mka_priority, DEFAULT_PRIO_NOT_KEY_SERVER);
946
  INT(macsec_csindex);
947
  INT(macsec_icv_indicator);
948
#endif /* CONFIG_MACSEC */
949
0
#ifdef CONFIG_HS20
950
0
  INT(update_identifier);
951
0
  STR(roaming_consortium_selection);
952
0
#endif /* CONFIG_HS20 */
953
0
  write_int(f, "mac_addr", ssid->mac_addr, -1);
954
#ifdef CONFIG_MESH
955
  STR(mesh_basic_rates);
956
  INT_DEF(dot11MeshMaxRetries, DEFAULT_MESH_MAX_RETRIES);
957
  INT_DEF(dot11MeshRetryTimeout, DEFAULT_MESH_RETRY_TIMEOUT);
958
  INT_DEF(dot11MeshConfirmTimeout, DEFAULT_MESH_CONFIRM_TIMEOUT);
959
  INT_DEF(dot11MeshHoldingTimeout, DEFAULT_MESH_HOLDING_TIMEOUT);
960
  INT_DEF(mesh_rssi_threshold, DEFAULT_MESH_RSSI_THRESHOLD);
961
#endif /* CONFIG_MESH */
962
0
  INT(wpa_ptk_rekey);
963
0
  INT(wpa_deny_ptk0_rekey);
964
0
  INT(group_rekey);
965
0
  INT(ignore_broadcast_ssid);
966
#ifdef CONFIG_DPP
967
  STR(dpp_connector);
968
  STR(dpp_netaccesskey);
969
  INT(dpp_netaccesskey_expiry);
970
  STR(dpp_csign);
971
  STR(dpp_pp_key);
972
  INT(dpp_pfs);
973
  INT(dpp_connector_privacy);
974
#endif /* CONFIG_DPP */
975
0
  INT(owe_group);
976
0
  INT(owe_only);
977
0
  INT(owe_ptk_workaround);
978
0
  INT(multi_ap_backhaul_sta);
979
0
  INT(ft_eap_pmksa_caching);
980
0
  INT(multi_ap_profile);
981
0
  INT(beacon_prot);
982
0
  INT(transition_disable);
983
0
  INT(sae_pk);
984
#ifdef CONFIG_HT_OVERRIDES
985
  INT_DEF(disable_ht, DEFAULT_DISABLE_HT);
986
  INT_DEF(disable_ht40, DEFAULT_DISABLE_HT40);
987
  INT_DEF(disable_sgi, DEFAULT_DISABLE_SGI);
988
  INT_DEF(disable_ldpc, DEFAULT_DISABLE_LDPC);
989
  INT(ht40_intolerant);
990
  INT_DEF(tx_stbc, DEFAULT_TX_STBC);
991
  INT_DEF(rx_stbc, DEFAULT_RX_STBC);
992
  INT_DEF(disable_max_amsdu, DEFAULT_DISABLE_MAX_AMSDU);
993
  INT_DEF(ampdu_factor, DEFAULT_AMPDU_FACTOR);
994
  INT_DEF(ampdu_density, DEFAULT_AMPDU_DENSITY);
995
  STR(ht_mcs);
996
#endif /* CONFIG_HT_OVERRIDES */
997
#ifdef CONFIG_VHT_OVERRIDES
998
  INT(disable_vht);
999
  INT(vht_capa);
1000
  INT(vht_capa_mask);
1001
  INT_DEF(vht_rx_mcs_nss_1, -1);
1002
  INT_DEF(vht_rx_mcs_nss_2, -1);
1003
  INT_DEF(vht_rx_mcs_nss_3, -1);
1004
  INT_DEF(vht_rx_mcs_nss_4, -1);
1005
  INT_DEF(vht_rx_mcs_nss_5, -1);
1006
  INT_DEF(vht_rx_mcs_nss_6, -1);
1007
  INT_DEF(vht_rx_mcs_nss_7, -1);
1008
  INT_DEF(vht_rx_mcs_nss_8, -1);
1009
  INT_DEF(vht_tx_mcs_nss_1, -1);
1010
  INT_DEF(vht_tx_mcs_nss_2, -1);
1011
  INT_DEF(vht_tx_mcs_nss_3, -1);
1012
  INT_DEF(vht_tx_mcs_nss_4, -1);
1013
  INT_DEF(vht_tx_mcs_nss_5, -1);
1014
  INT_DEF(vht_tx_mcs_nss_6, -1);
1015
  INT_DEF(vht_tx_mcs_nss_7, -1);
1016
  INT_DEF(vht_tx_mcs_nss_8, -1);
1017
#endif /* CONFIG_VHT_OVERRIDES */
1018
#ifdef CONFIG_HE_OVERRIDES
1019
  INT(disable_he);
1020
#endif /* CONFIG_HE_OVERRIDES */
1021
0
  INT(disable_eht);
1022
0
  INT(disable_uhr);
1023
0
  INT(enable_4addr_mode);
1024
0
  INT(max_idle);
1025
0
  INT(ssid_protection);
1026
0
  INT_DEF(rsn_overriding, RSN_OVERRIDING_NOT_SET);
1027
#ifdef CONFIG_SAE
1028
  if (ssid->alt_sae_password_ids) {
1029
    struct wpabuf_array *ids = ssid->alt_sae_password_ids;
1030
    unsigned int idx;
1031
    char hex[255 * 2 + 1];
1032
1033
    for (idx = 0; idx < ids->num; idx++) {
1034
      wpa_snprintf_hex(hex, sizeof(hex),
1035
           wpabuf_head(ids->buf[idx]),
1036
           wpabuf_len(ids->buf[idx]));
1037
      fprintf(f, "\talt_sae_password_ids=%s\n", hex);
1038
    }
1039
  }
1040
#endif /* CONFIG_SAE */
1041
#ifdef CONFIG_PMKSA_PRIVACY
1042
  INT(pmksa_privacy);
1043
#endif /* CONFIG_PMKSA_PRIVACY */
1044
#ifdef CONFIG_IEEE8021X_AUTH
1045
  INT(eap_over_auth_frame);
1046
#endif /* CONFIG_IEEE8021X_AUTH */
1047
0
  INT_DEF(drop_unicast_ip_in_l2_multicast, 1);
1048
0
  INT_DEF(always_use_proxy_arp, 0);
1049
0
#undef STR
1050
0
#undef INT
1051
0
#undef INT_DEF
1052
0
}
1053
1054
1055
static void wpa_config_write_cred(FILE *f, struct wpa_cred *cred)
1056
0
{
1057
0
  size_t i;
1058
1059
0
  if (cred->priority)
1060
0
    fprintf(f, "\tpriority=%d\n", cred->priority);
1061
0
  if (cred->pcsc)
1062
0
    fprintf(f, "\tpcsc=%d\n", cred->pcsc);
1063
0
  if (cred->realm)
1064
0
    fprintf(f, "\trealm=\"%s\"\n", cred->realm);
1065
0
  if (cred->username)
1066
0
    fprintf(f, "\tusername=\"%s\"\n", cred->username);
1067
0
  if (cred->password && cred->ext_password)
1068
0
    fprintf(f, "\tpassword=ext:%s\n", cred->password);
1069
0
  else if (cred->password)
1070
0
    fprintf(f, "\tpassword=\"%s\"\n", cred->password);
1071
0
  if (cred->ca_cert)
1072
0
    fprintf(f, "\tca_cert=\"%s\"\n", cred->ca_cert);
1073
0
  if (cred->client_cert)
1074
0
    fprintf(f, "\tclient_cert=\"%s\"\n", cred->client_cert);
1075
0
  if (cred->private_key)
1076
0
    fprintf(f, "\tprivate_key=\"%s\"\n", cred->private_key);
1077
0
  if (cred->private_key_passwd)
1078
0
    fprintf(f, "\tprivate_key_passwd=\"%s\"\n",
1079
0
      cred->private_key_passwd);
1080
0
  if (cred->imsi)
1081
0
    fprintf(f, "\timsi=\"%s\"\n", cred->imsi);
1082
0
  if (cred->milenage)
1083
0
    fprintf(f, "\tmilenage=\"%s\"\n", cred->milenage);
1084
0
  for (i = 0; i < cred->num_domain; i++)
1085
0
    fprintf(f, "\tdomain=\"%s\"\n", cred->domain[i]);
1086
0
  if (cred->domain_suffix_match)
1087
0
    fprintf(f, "\tdomain_suffix_match=\"%s\"\n",
1088
0
      cred->domain_suffix_match);
1089
0
  if (cred->eap_method) {
1090
0
    const char *name;
1091
0
    name = eap_get_name(cred->eap_method[0].vendor,
1092
0
            cred->eap_method[0].method);
1093
0
    if (name)
1094
0
      fprintf(f, "\teap=%s\n", name);
1095
0
  }
1096
0
  if (cred->phase1)
1097
0
    fprintf(f, "\tphase1=\"%s\"\n", cred->phase1);
1098
0
  if (cred->phase2)
1099
0
    fprintf(f, "\tphase2=\"%s\"\n", cred->phase2);
1100
0
  if (cred->excluded_ssid) {
1101
0
    size_t j;
1102
0
    for (i = 0; i < cred->num_excluded_ssid; i++) {
1103
0
      struct excluded_ssid *e = &cred->excluded_ssid[i];
1104
0
      fprintf(f, "\texcluded_ssid=");
1105
0
      for (j = 0; j < e->ssid_len; j++)
1106
0
        fprintf(f, "%02x", e->ssid[j]);
1107
0
      fprintf(f, "\n");
1108
0
    }
1109
0
  }
1110
0
  if (cred->roaming_partner) {
1111
0
    for (i = 0; i < cred->num_roaming_partner; i++) {
1112
0
      struct roaming_partner *p = &cred->roaming_partner[i];
1113
0
      fprintf(f, "\troaming_partner=\"%s,%d,%u,%s\"\n",
1114
0
        p->fqdn, p->exact_match, p->priority,
1115
0
        p->country);
1116
0
    }
1117
0
  }
1118
0
  if (cred->update_identifier)
1119
0
    fprintf(f, "\tupdate_identifier=%d\n", cred->update_identifier);
1120
1121
0
  if (cred->provisioning_sp)
1122
0
    fprintf(f, "\tprovisioning_sp=\"%s\"\n", cred->provisioning_sp);
1123
0
  if (cred->sp_priority)
1124
0
    fprintf(f, "\tsp_priority=%d\n", cred->sp_priority);
1125
1126
0
  if (cred->min_dl_bandwidth_home)
1127
0
    fprintf(f, "\tmin_dl_bandwidth_home=%u\n",
1128
0
      cred->min_dl_bandwidth_home);
1129
0
  if (cred->min_ul_bandwidth_home)
1130
0
    fprintf(f, "\tmin_ul_bandwidth_home=%u\n",
1131
0
      cred->min_ul_bandwidth_home);
1132
0
  if (cred->min_dl_bandwidth_roaming)
1133
0
    fprintf(f, "\tmin_dl_bandwidth_roaming=%u\n",
1134
0
      cred->min_dl_bandwidth_roaming);
1135
0
  if (cred->min_ul_bandwidth_roaming)
1136
0
    fprintf(f, "\tmin_ul_bandwidth_roaming=%u\n",
1137
0
      cred->min_ul_bandwidth_roaming);
1138
1139
0
  if (cred->max_bss_load)
1140
0
    fprintf(f, "\tmax_bss_load=%u\n",
1141
0
      cred->max_bss_load);
1142
1143
0
  if (cred->ocsp)
1144
0
    fprintf(f, "\tocsp=%d\n", cred->ocsp);
1145
1146
0
  if (cred->num_req_conn_capab) {
1147
0
    for (i = 0; i < cred->num_req_conn_capab; i++) {
1148
0
      int *ports;
1149
1150
0
      fprintf(f, "\treq_conn_capab=%u",
1151
0
        cred->req_conn_capab_proto[i]);
1152
0
      ports = cred->req_conn_capab_port[i];
1153
0
      if (ports) {
1154
0
        int j;
1155
0
        for (j = 0; ports[j] != -1; j++) {
1156
0
          fprintf(f, "%s%d", j > 0 ? "," : ":",
1157
0
            ports[j]);
1158
0
        }
1159
0
      }
1160
0
      fprintf(f, "\n");
1161
0
    }
1162
0
  }
1163
1164
0
  if (cred->num_home_ois) {
1165
0
    size_t j;
1166
1167
0
    fprintf(f, "\thome_ois=\"");
1168
0
    for (i = 0; i < cred->num_home_ois; i++) {
1169
0
      if (i > 0)
1170
0
        fprintf(f, ",");
1171
0
      for (j = 0; j < cred->home_ois_len[i]; j++)
1172
0
        fprintf(f, "%02x",
1173
0
          cred->home_ois[i][j]);
1174
0
    }
1175
0
    fprintf(f, "\"\n");
1176
0
  }
1177
1178
0
  if (cred->num_required_home_ois) {
1179
0
    size_t j;
1180
1181
0
    fprintf(f, "\trequired_home_ois=\"");
1182
0
    for (i = 0; i < cred->num_required_home_ois; i++) {
1183
0
      if (i > 0)
1184
0
        fprintf(f, ",");
1185
0
      for (j = 0; j < cred->required_home_ois_len[i]; j++)
1186
0
        fprintf(f, "%02x",
1187
0
          cred->required_home_ois[i][j]);
1188
0
    }
1189
0
    fprintf(f, "\"\n");
1190
0
  }
1191
1192
0
  if (cred->num_roaming_consortiums) {
1193
0
    size_t j;
1194
1195
0
    fprintf(f, "\troaming_consortiums=\"");
1196
0
    for (i = 0; i < cred->num_roaming_consortiums; i++) {
1197
0
      if (i > 0)
1198
0
        fprintf(f, ",");
1199
0
      for (j = 0; j < cred->roaming_consortiums_len[i]; j++)
1200
0
        fprintf(f, "%02x",
1201
0
          cred->roaming_consortiums[i][j]);
1202
0
    }
1203
0
    fprintf(f, "\"\n");
1204
0
  }
1205
1206
0
  if (cred->sim_num != DEFAULT_USER_SELECTED_SIM)
1207
0
    fprintf(f, "\tsim_num=%d\n", cred->sim_num);
1208
1209
0
  if (cred->engine)
1210
0
    fprintf(f, "\tengine=%d\n", cred->engine);
1211
0
  if (cred->engine_id)
1212
0
    fprintf(f, "\tengine_id=\"%s\"\n", cred->engine_id);
1213
0
  if (cred->key_id)
1214
0
    fprintf(f, "\tkey_id=\"%s\"\n", cred->key_id);
1215
0
  if (cred->cert_id)
1216
0
    fprintf(f, "\tcert_id=\"%s\"\n", cred->cert_id);
1217
0
  if (cred->ca_cert_id)
1218
0
    fprintf(f, "\tca_cert_id=\"%s\"\n", cred->ca_cert_id);
1219
1220
0
  if (cred->imsi_privacy_cert)
1221
0
    fprintf(f, "\timsi_privacy_cert=\"%s\"\n",
1222
0
      cred->imsi_privacy_cert);
1223
0
  if (cred->imsi_privacy_attr)
1224
0
    fprintf(f, "\timsi_privacy_attr=\"%s\"\n",
1225
0
      cred->imsi_privacy_attr);
1226
0
}
1227
1228
1229
#ifndef CONFIG_NO_CONFIG_BLOBS
1230
static int wpa_config_write_blob(FILE *f, struct wpa_config_blob *blob)
1231
0
{
1232
0
  char *encoded;
1233
1234
0
  encoded = base64_encode(blob->data, blob->len, NULL);
1235
0
  if (encoded == NULL)
1236
0
    return -1;
1237
1238
0
  fprintf(f, "\nblob-base64-%s={\n%s}\n", blob->name, encoded);
1239
0
  os_free(encoded);
1240
0
  return 0;
1241
0
}
1242
#endif /* CONFIG_NO_CONFIG_BLOBS */
1243
1244
1245
static void write_global_bin(FILE *f, const char *field,
1246
           const struct wpabuf *val)
1247
0
{
1248
0
  size_t i;
1249
0
  const u8 *pos;
1250
1251
0
  if (val == NULL)
1252
0
    return;
1253
1254
0
  fprintf(f, "%s=", field);
1255
0
  pos = wpabuf_head(val);
1256
0
  for (i = 0; i < wpabuf_len(val); i++)
1257
0
    fprintf(f, "%02X", *pos++);
1258
0
  fprintf(f, "\n");
1259
0
}
1260
1261
1262
static void wpa_config_write_global(FILE *f, struct wpa_config *config)
1263
0
{
1264
#ifdef CONFIG_CTRL_IFACE
1265
  if (config->ctrl_interface)
1266
    fprintf(f, "ctrl_interface=%s\n", config->ctrl_interface);
1267
  if (config->ctrl_interface_group)
1268
    fprintf(f, "ctrl_interface_group=%s\n",
1269
      config->ctrl_interface_group);
1270
#endif /* CONFIG_CTRL_IFACE */
1271
0
  if (config->eapol_version != DEFAULT_EAPOL_VERSION)
1272
0
    fprintf(f, "eapol_version=%d\n", config->eapol_version);
1273
0
  if (config->ap_scan != DEFAULT_AP_SCAN)
1274
0
    fprintf(f, "ap_scan=%d\n", config->ap_scan);
1275
0
  if (config->disable_scan_offload)
1276
0
    fprintf(f, "disable_scan_offload=%d\n",
1277
0
      config->disable_scan_offload);
1278
0
  if (config->fast_reauth != DEFAULT_FAST_REAUTH)
1279
0
    fprintf(f, "fast_reauth=%d\n", config->fast_reauth);
1280
0
#ifndef CONFIG_OPENSC_ENGINE_PATH
1281
0
  if (config->opensc_engine_path)
1282
0
    fprintf(f, "opensc_engine_path=%s\n",
1283
0
      config->opensc_engine_path);
1284
0
#endif /* CONFIG_OPENSC_ENGINE_PATH */
1285
0
#ifndef CONFIG_PKCS11_ENGINE_PATH
1286
0
  if (config->pkcs11_engine_path)
1287
0
    fprintf(f, "pkcs11_engine_path=%s\n",
1288
0
      config->pkcs11_engine_path);
1289
0
#endif /* CONFIG_PKCS11_ENGINE_PATH */
1290
0
#ifndef CONFIG_PKCS11_MODULE_PATH
1291
0
  if (config->pkcs11_module_path)
1292
0
    fprintf(f, "pkcs11_module_path=%s\n",
1293
0
      config->pkcs11_module_path);
1294
0
#endif /* CONFIG_PKCS11_MODULE_PATH */
1295
0
  if (config->openssl_ciphers)
1296
0
    fprintf(f, "openssl_ciphers=%s\n", config->openssl_ciphers);
1297
0
  if (config->pcsc_reader)
1298
0
    fprintf(f, "pcsc_reader=%s\n", config->pcsc_reader);
1299
0
  if (config->pcsc_pin)
1300
0
    fprintf(f, "pcsc_pin=%s\n", config->pcsc_pin);
1301
0
  if (config->driver_param)
1302
0
    fprintf(f, "driver_param=%s\n", config->driver_param);
1303
0
  if (config->dot11RSNAConfigPMKLifetime)
1304
0
    fprintf(f, "dot11RSNAConfigPMKLifetime=%u\n",
1305
0
      config->dot11RSNAConfigPMKLifetime);
1306
0
  if (config->dot11RSNAConfigPMKReauthThreshold)
1307
0
    fprintf(f, "dot11RSNAConfigPMKReauthThreshold=%u\n",
1308
0
      config->dot11RSNAConfigPMKReauthThreshold);
1309
0
  if (config->dot11RSNAConfigSATimeout)
1310
0
    fprintf(f, "dot11RSNAConfigSATimeout=%u\n",
1311
0
      config->dot11RSNAConfigSATimeout);
1312
0
  if (config->update_config)
1313
0
    fprintf(f, "update_config=%d\n", config->update_config);
1314
#ifdef CONFIG_WPS
1315
0
  if (!is_nil_uuid(config->uuid)) {
1316
0
    char buf[40];
1317
0
    uuid_bin2str(config->uuid, buf, sizeof(buf));
1318
0
    fprintf(f, "uuid=%s\n", buf);
1319
0
  }
1320
0
  if (config->auto_uuid)
1321
0
    fprintf(f, "auto_uuid=%d\n", config->auto_uuid);
1322
0
  if (config->device_name)
1323
0
    fprintf(f, "device_name=%s\n", config->device_name);
1324
0
  if (config->manufacturer)
1325
0
    fprintf(f, "manufacturer=%s\n", config->manufacturer);
1326
0
  if (config->model_name)
1327
0
    fprintf(f, "model_name=%s\n", config->model_name);
1328
0
  if (config->model_number)
1329
0
    fprintf(f, "model_number=%s\n", config->model_number);
1330
0
  if (config->serial_number)
1331
0
    fprintf(f, "serial_number=%s\n", config->serial_number);
1332
  {
1333
    char _buf[WPS_DEV_TYPE_BUFSIZE], *buf;
1334
    buf = wps_dev_type_bin2str(config->device_type,
1335
             _buf, sizeof(_buf));
1336
0
    if (os_strcmp(buf, "0-00000000-0") != 0)
1337
0
      fprintf(f, "device_type=%s\n", buf);
1338
  }
1339
0
  if (WPA_GET_BE32(config->os_version))
1340
0
    fprintf(f, "os_version=%08x\n",
1341
0
      WPA_GET_BE32(config->os_version));
1342
0
  if (config->config_methods)
1343
0
    fprintf(f, "config_methods=%s\n", config->config_methods);
1344
0
  if (config->wps_cred_processing)
1345
0
    fprintf(f, "wps_cred_processing=%d\n",
1346
0
      config->wps_cred_processing);
1347
0
  if (config->wps_cred_add_sae)
1348
0
    fprintf(f, "wps_cred_add_sae=%d\n",
1349
0
      config->wps_cred_add_sae);
1350
0
  if (config->wps_vendor_ext_m1) {
1351
0
    int i, len = wpabuf_len(config->wps_vendor_ext_m1);
1352
0
    const u8 *p = wpabuf_head_u8(config->wps_vendor_ext_m1);
1353
0
    if (len > 0) {
1354
0
      fprintf(f, "wps_vendor_ext_m1=");
1355
0
      for (i = 0; i < len; i++)
1356
0
        fprintf(f, "%02x", *p++);
1357
0
      fprintf(f, "\n");
1358
0
    }
1359
0
  }
1360
#endif /* CONFIG_WPS */
1361
#ifdef CONFIG_P2P
1362
  {
1363
    int i;
1364
    char _buf[WPS_DEV_TYPE_BUFSIZE], *buf;
1365
1366
    for (i = 0; i < config->num_sec_device_types; i++) {
1367
      buf = wps_dev_type_bin2str(config->sec_device_type[i],
1368
               _buf, sizeof(_buf));
1369
      if (buf)
1370
        fprintf(f, "sec_device_type=%s\n", buf);
1371
    }
1372
  }
1373
  if (config->p2p_listen_reg_class)
1374
    fprintf(f, "p2p_listen_reg_class=%d\n",
1375
      config->p2p_listen_reg_class);
1376
  if (config->p2p_listen_channel)
1377
    fprintf(f, "p2p_listen_channel=%d\n",
1378
      config->p2p_listen_channel);
1379
  if (config->p2p_oper_reg_class)
1380
    fprintf(f, "p2p_oper_reg_class=%d\n",
1381
      config->p2p_oper_reg_class);
1382
  if (config->p2p_oper_channel)
1383
    fprintf(f, "p2p_oper_channel=%d\n", config->p2p_oper_channel);
1384
  if (config->p2p_go_intent != DEFAULT_P2P_GO_INTENT)
1385
    fprintf(f, "p2p_go_intent=%d\n", config->p2p_go_intent);
1386
  if (config->p2p_ssid_postfix)
1387
    fprintf(f, "p2p_ssid_postfix=%s\n", config->p2p_ssid_postfix);
1388
  if (config->persistent_reconnect)
1389
    fprintf(f, "persistent_reconnect=%d\n",
1390
      config->persistent_reconnect);
1391
  if (config->p2p_intra_bss != DEFAULT_P2P_INTRA_BSS)
1392
    fprintf(f, "p2p_intra_bss=%d\n", config->p2p_intra_bss);
1393
  if (config->p2p_group_idle)
1394
    fprintf(f, "p2p_group_idle=%d\n", config->p2p_group_idle);
1395
  if (config->p2p_passphrase_len)
1396
    fprintf(f, "p2p_passphrase_len=%u\n",
1397
      config->p2p_passphrase_len);
1398
  if (config->p2p_pref_chan) {
1399
    unsigned int i;
1400
    fprintf(f, "p2p_pref_chan=");
1401
    for (i = 0; i < config->num_p2p_pref_chan; i++) {
1402
      fprintf(f, "%s%u:%u", i > 0 ? "," : "",
1403
        config->p2p_pref_chan[i].op_class,
1404
        config->p2p_pref_chan[i].chan);
1405
    }
1406
    fprintf(f, "\n");
1407
  }
1408
  if (config->p2p_no_go_freq.num) {
1409
    char *val = freq_range_list_str(&config->p2p_no_go_freq);
1410
    if (val) {
1411
      fprintf(f, "p2p_no_go_freq=%s\n", val);
1412
      os_free(val);
1413
    }
1414
  }
1415
  if (config->p2p_add_cli_chan)
1416
    fprintf(f, "p2p_add_cli_chan=%d\n", config->p2p_add_cli_chan);
1417
  if (config->p2p_optimize_listen_chan !=
1418
      DEFAULT_P2P_OPTIMIZE_LISTEN_CHAN)
1419
    fprintf(f, "p2p_optimize_listen_chan=%d\n",
1420
      config->p2p_optimize_listen_chan);
1421
  if (config->p2p_go_ht40)
1422
    fprintf(f, "p2p_go_ht40=%d\n", config->p2p_go_ht40);
1423
  if (config->p2p_go_vht)
1424
    fprintf(f, "p2p_go_vht=%d\n", config->p2p_go_vht);
1425
  if (config->p2p_go_he)
1426
    fprintf(f, "p2p_go_he=%d\n", config->p2p_go_he);
1427
  if (config->p2p_go_edmg)
1428
    fprintf(f, "p2p_go_edmg=%d\n", config->p2p_go_edmg);
1429
  if (config->p2p_go_ctwindow != DEFAULT_P2P_GO_CTWINDOW)
1430
    fprintf(f, "p2p_go_ctwindow=%d\n", config->p2p_go_ctwindow);
1431
  if (config->p2p_disabled)
1432
    fprintf(f, "p2p_disabled=%d\n", config->p2p_disabled);
1433
  if (config->p2p_no_group_iface)
1434
    fprintf(f, "p2p_no_group_iface=%d\n",
1435
      config->p2p_no_group_iface);
1436
  if (config->p2p_ignore_shared_freq)
1437
    fprintf(f, "p2p_ignore_shared_freq=%d\n",
1438
      config->p2p_ignore_shared_freq);
1439
  if (config->p2p_cli_probe)
1440
    fprintf(f, "p2p_cli_probe=%d\n", config->p2p_cli_probe);
1441
  if (config->p2p_go_freq_change_policy != DEFAULT_P2P_GO_FREQ_MOVE)
1442
    fprintf(f, "p2p_go_freq_change_policy=%u\n",
1443
      config->p2p_go_freq_change_policy);
1444
1445
  if (config->p2p_6ghz_disable)
1446
    fprintf(f, "p2p_6ghz_disable=%d\n", config->p2p_6ghz_disable);
1447
1448
  if (config->p2p_bootstrap_methods)
1449
    fprintf(f, "p2p_bootstrap_methods=%d\n",
1450
      config->p2p_bootstrap_methods);
1451
  if (config->p2p_pasn_type)
1452
    fprintf(f, "p2p_pasn_type=%d\n", config->p2p_pasn_type);
1453
  if (config->p2p_comeback_after)
1454
    fprintf(f, "p2p_comeback_after=%d\n",
1455
      config->p2p_comeback_after);
1456
  if (config->p2p_twt_power_mgmt)
1457
    fprintf(f, "p2p_twt_power_mgmt=%d\n",
1458
      config->p2p_twt_power_mgmt);
1459
  if (config->p2p_chan_switch_req_enable)
1460
    fprintf(f, "p2p_chan_switch_req_enable=%d\n",
1461
      config->p2p_chan_switch_req_enable);
1462
  if (config->p2p_reg_info)
1463
    fprintf(f, "p2p_reg_info=%d\n", config->p2p_reg_info);
1464
  if (config->p2p_assisted_dfs_chan_enable)
1465
    fprintf(f, "p2p_assisted_dfs_chan_enable=%d\n",
1466
      config->p2p_assisted_dfs_chan_enable);
1467
1468
  if (WPA_GET_BE32(config->ip_addr_go))
1469
    fprintf(f, "ip_addr_go=%u.%u.%u.%u\n",
1470
      config->ip_addr_go[0], config->ip_addr_go[1],
1471
      config->ip_addr_go[2], config->ip_addr_go[3]);
1472
  if (WPA_GET_BE32(config->ip_addr_mask))
1473
    fprintf(f, "ip_addr_mask=%u.%u.%u.%u\n",
1474
      config->ip_addr_mask[0], config->ip_addr_mask[1],
1475
      config->ip_addr_mask[2], config->ip_addr_mask[3]);
1476
  if (WPA_GET_BE32(config->ip_addr_start))
1477
    fprintf(f, "ip_addr_start=%u.%u.%u.%u\n",
1478
      config->ip_addr_start[0], config->ip_addr_start[1],
1479
      config->ip_addr_start[2], config->ip_addr_start[3]);
1480
  if (WPA_GET_BE32(config->ip_addr_end))
1481
    fprintf(f, "ip_addr_end=%u.%u.%u.%u\n",
1482
      config->ip_addr_end[0], config->ip_addr_end[1],
1483
      config->ip_addr_end[2], config->ip_addr_end[3]);
1484
#endif /* CONFIG_P2P */
1485
0
  if (config->country[0] && config->country[1]) {
1486
0
    fprintf(f, "country=%c%c\n",
1487
0
      config->country[0], config->country[1]);
1488
0
  }
1489
0
  if (config->bss_max_count != DEFAULT_BSS_MAX_COUNT)
1490
0
    fprintf(f, "bss_max_count=%u\n", config->bss_max_count);
1491
0
  if (config->bss_expiration_age != DEFAULT_BSS_EXPIRATION_AGE)
1492
0
    fprintf(f, "bss_expiration_age=%u\n",
1493
0
      config->bss_expiration_age);
1494
0
  if (config->bss_expiration_scan_count !=
1495
0
      DEFAULT_BSS_EXPIRATION_SCAN_COUNT)
1496
0
    fprintf(f, "bss_expiration_scan_count=%u\n",
1497
0
      config->bss_expiration_scan_count);
1498
0
  if (config->filter_ssids)
1499
0
    fprintf(f, "filter_ssids=%d\n", config->filter_ssids);
1500
0
  if (config->filter_rssi)
1501
0
    fprintf(f, "filter_rssi=%d\n", config->filter_rssi);
1502
0
  if (config->max_num_sta != DEFAULT_MAX_NUM_STA)
1503
0
    fprintf(f, "max_num_sta=%u\n", config->max_num_sta);
1504
0
  if (config->ap_isolate != DEFAULT_AP_ISOLATE)
1505
0
    fprintf(f, "ap_isolate=%u\n", config->ap_isolate);
1506
0
  if (config->disassoc_low_ack)
1507
0
    fprintf(f, "disassoc_low_ack=%d\n", config->disassoc_low_ack);
1508
0
#ifdef CONFIG_HS20
1509
0
  if (config->hs20)
1510
0
    fprintf(f, "hs20=1\n");
1511
0
#endif /* CONFIG_HS20 */
1512
0
#ifdef CONFIG_INTERWORKING
1513
0
  if (config->interworking)
1514
0
    fprintf(f, "interworking=%d\n", config->interworking);
1515
0
  if (!is_zero_ether_addr(config->hessid))
1516
0
    fprintf(f, "hessid=" MACSTR "\n", MAC2STR(config->hessid));
1517
0
  if (config->access_network_type != DEFAULT_ACCESS_NETWORK_TYPE)
1518
0
    fprintf(f, "access_network_type=%d\n",
1519
0
      config->access_network_type);
1520
0
  if (config->go_interworking)
1521
0
    fprintf(f, "go_interworking=%d\n", config->go_interworking);
1522
0
  if (config->go_access_network_type)
1523
0
    fprintf(f, "go_access_network_type=%d\n",
1524
0
      config->go_access_network_type);
1525
0
  if (config->go_internet)
1526
0
    fprintf(f, "go_internet=%d\n", config->go_internet);
1527
0
  if (config->go_venue_group)
1528
0
    fprintf(f, "go_venue_group=%d\n", config->go_venue_group);
1529
0
  if (config->go_venue_type)
1530
0
    fprintf(f, "go_venue_type=%d\n", config->go_venue_type);
1531
0
#endif /* CONFIG_INTERWORKING */
1532
0
  if (config->pbc_in_m1)
1533
0
    fprintf(f, "pbc_in_m1=%d\n", config->pbc_in_m1);
1534
0
  if (config->wps_nfc_pw_from_config) {
1535
0
    if (config->wps_nfc_dev_pw_id)
1536
0
      fprintf(f, "wps_nfc_dev_pw_id=%d\n",
1537
0
        config->wps_nfc_dev_pw_id);
1538
0
    write_global_bin(f, "wps_nfc_dh_pubkey",
1539
0
         config->wps_nfc_dh_pubkey);
1540
0
    write_global_bin(f, "wps_nfc_dh_privkey",
1541
0
         config->wps_nfc_dh_privkey);
1542
0
    write_global_bin(f, "wps_nfc_dev_pw", config->wps_nfc_dev_pw);
1543
0
  }
1544
1545
0
  if (config->ext_password_backend)
1546
0
    fprintf(f, "ext_password_backend=%s\n",
1547
0
      config->ext_password_backend);
1548
0
  if (config->p2p_go_max_inactivity != DEFAULT_P2P_GO_MAX_INACTIVITY)
1549
0
    fprintf(f, "p2p_go_max_inactivity=%d\n",
1550
0
      config->p2p_go_max_inactivity);
1551
0
  if (config->auto_interworking)
1552
0
    fprintf(f, "auto_interworking=%d\n",
1553
0
      config->auto_interworking);
1554
0
  if (config->okc)
1555
0
    fprintf(f, "okc=%d\n", config->okc);
1556
0
  if (config->pmf)
1557
0
    fprintf(f, "pmf=%d\n", config->pmf);
1558
0
  if (config->dtim_period)
1559
0
    fprintf(f, "dtim_period=%d\n", config->dtim_period);
1560
0
  if (config->beacon_int)
1561
0
    fprintf(f, "beacon_int=%d\n", config->beacon_int);
1562
1563
0
  if (config->sae_check_mfp)
1564
0
    fprintf(f, "sae_check_mfp=%d\n", config->sae_check_mfp);
1565
1566
0
  if (config->sae_groups) {
1567
0
    int i;
1568
0
    fprintf(f, "sae_groups=");
1569
0
    for (i = 0; config->sae_groups[i] > 0; i++) {
1570
0
      fprintf(f, "%s%d", i > 0 ? " " : "",
1571
0
        config->sae_groups[i]);
1572
0
    }
1573
0
    fprintf(f, "\n");
1574
0
  }
1575
1576
0
  if (config->sae_pwe)
1577
0
    fprintf(f, "sae_pwe=%d\n", config->sae_pwe);
1578
1579
0
  if (config->sae_pmkid_in_assoc)
1580
0
    fprintf(f, "sae_pmkid_in_assoc=%d\n",
1581
0
      config->sae_pmkid_in_assoc);
1582
1583
0
  if (config->ap_vendor_elements) {
1584
0
    int i, len = wpabuf_len(config->ap_vendor_elements);
1585
0
    const u8 *p = wpabuf_head_u8(config->ap_vendor_elements);
1586
0
    if (len > 0) {
1587
0
      fprintf(f, "ap_vendor_elements=");
1588
0
      for (i = 0; i < len; i++)
1589
0
        fprintf(f, "%02x", *p++);
1590
0
      fprintf(f, "\n");
1591
0
    }
1592
0
  }
1593
1594
0
  if (config->ap_assocresp_elements) {
1595
0
    int i, len = wpabuf_len(config->ap_assocresp_elements);
1596
0
    const u8 *p = wpabuf_head_u8(config->ap_assocresp_elements);
1597
1598
0
    if (len > 0) {
1599
0
      fprintf(f, "ap_assocresp_elements=");
1600
0
      for (i = 0; i < len; i++)
1601
0
        fprintf(f, "%02x", *p++);
1602
0
      fprintf(f, "\n");
1603
0
    }
1604
0
  }
1605
1606
0
  if (config->ignore_old_scan_res)
1607
0
    fprintf(f, "ignore_old_scan_res=%d\n",
1608
0
      config->ignore_old_scan_res);
1609
1610
0
  if (config->freq_list && config->freq_list[0]) {
1611
0
    int i;
1612
0
    fprintf(f, "freq_list=");
1613
0
    for (i = 0; config->freq_list[i]; i++) {
1614
0
      fprintf(f, "%s%d", i > 0 ? " " : "",
1615
0
        config->freq_list[i]);
1616
0
    }
1617
0
    fprintf(f, "\n");
1618
0
  }
1619
0
  if (config->initial_freq_list && config->initial_freq_list[0]) {
1620
0
    int i;
1621
0
    fprintf(f, "initial_freq_list=");
1622
0
    for (i = 0; config->initial_freq_list[i]; i++) {
1623
0
      fprintf(f, "%s%d", i > 0 ? " " : "",
1624
0
        config->initial_freq_list[i]);
1625
0
    }
1626
0
    fprintf(f, "\n");
1627
0
  }
1628
0
  if (config->scan_cur_freq != DEFAULT_SCAN_CUR_FREQ)
1629
0
    fprintf(f, "scan_cur_freq=%d\n", config->scan_cur_freq);
1630
1631
0
  if (config->scan_res_valid_for_connect !=
1632
0
      DEFAULT_SCAN_RES_VALID_FOR_CONNECT)
1633
0
    fprintf(f, "scan_res_valid_for_connect=%d\n",
1634
0
      config->scan_res_valid_for_connect);
1635
1636
0
  if (config->sched_scan_interval)
1637
0
    fprintf(f, "sched_scan_interval=%u\n",
1638
0
      config->sched_scan_interval);
1639
1640
0
  if (config->sched_scan_start_delay)
1641
0
    fprintf(f, "sched_scan_start_delay=%u\n",
1642
0
      config->sched_scan_start_delay);
1643
1644
0
  if (config->external_sim)
1645
0
    fprintf(f, "external_sim=%d\n", config->external_sim);
1646
1647
0
  if (config->tdls_external_control)
1648
0
    fprintf(f, "tdls_external_control=%d\n",
1649
0
      config->tdls_external_control);
1650
1651
0
  if (config->wowlan_triggers)
1652
0
    fprintf(f, "wowlan_triggers=%s\n",
1653
0
      config->wowlan_triggers);
1654
1655
0
  if (config->bgscan)
1656
0
    fprintf(f, "bgscan=\"%s\"\n", config->bgscan);
1657
1658
0
  if (config->autoscan)
1659
0
    fprintf(f, "autoscan=%s\n", config->autoscan);
1660
1661
0
  if (config->p2p_search_delay != DEFAULT_P2P_SEARCH_DELAY)
1662
0
    fprintf(f, "p2p_search_delay=%u\n",
1663
0
      config->p2p_search_delay);
1664
1665
0
  if (config->mac_addr)
1666
0
    fprintf(f, "mac_addr=%d\n", config->mac_addr);
1667
1668
0
  if (config->rand_addr_lifetime != DEFAULT_RAND_ADDR_LIFETIME)
1669
0
    fprintf(f, "rand_addr_lifetime=%u\n",
1670
0
      config->rand_addr_lifetime);
1671
1672
0
  if (config->preassoc_mac_addr)
1673
0
    fprintf(f, "preassoc_mac_addr=%d\n", config->preassoc_mac_addr);
1674
1675
0
  if (config->key_mgmt_offload != DEFAULT_KEY_MGMT_OFFLOAD)
1676
0
    fprintf(f, "key_mgmt_offload=%d\n", config->key_mgmt_offload);
1677
1678
0
  if (config->user_mpm != DEFAULT_USER_MPM)
1679
0
    fprintf(f, "user_mpm=%d\n", config->user_mpm);
1680
1681
0
  if (config->max_peer_links != DEFAULT_MAX_PEER_LINKS)
1682
0
    fprintf(f, "max_peer_links=%d\n", config->max_peer_links);
1683
1684
0
  if (config->cert_in_cb != DEFAULT_CERT_IN_CB)
1685
0
    fprintf(f, "cert_in_cb=%d\n", config->cert_in_cb);
1686
1687
0
  if (config->mesh_max_inactivity != DEFAULT_MESH_MAX_INACTIVITY)
1688
0
    fprintf(f, "mesh_max_inactivity=%d\n",
1689
0
      config->mesh_max_inactivity);
1690
1691
0
  if (config->mesh_fwding != DEFAULT_MESH_FWDING)
1692
0
    fprintf(f, "mesh_fwding=%d\n", config->mesh_fwding);
1693
1694
0
  if (config->dot11RSNASAERetransPeriod !=
1695
0
      DEFAULT_DOT11_RSNA_SAE_RETRANS_PERIOD)
1696
0
    fprintf(f, "dot11RSNASAERetransPeriod=%d\n",
1697
0
      config->dot11RSNASAERetransPeriod);
1698
1699
0
  if (config->passive_scan)
1700
0
    fprintf(f, "passive_scan=%d\n", config->passive_scan);
1701
1702
0
  if (config->reassoc_same_bss_optim)
1703
0
    fprintf(f, "reassoc_same_bss_optim=%d\n",
1704
0
      config->reassoc_same_bss_optim);
1705
1706
0
  if (config->wps_priority)
1707
0
    fprintf(f, "wps_priority=%d\n", config->wps_priority);
1708
1709
0
  if (config->wpa_rsc_relaxation != DEFAULT_WPA_RSC_RELAXATION)
1710
0
    fprintf(f, "wpa_rsc_relaxation=%d\n",
1711
0
      config->wpa_rsc_relaxation);
1712
1713
0
  if (config->sched_scan_plans)
1714
0
    fprintf(f, "sched_scan_plans=%s\n", config->sched_scan_plans);
1715
1716
#ifdef CONFIG_MBO
1717
0
  if (config->non_pref_chan)
1718
0
    fprintf(f, "non_pref_chan=%s\n", config->non_pref_chan);
1719
0
  if (config->mbo_cell_capa != DEFAULT_MBO_CELL_CAPA)
1720
0
    fprintf(f, "mbo_cell_capa=%u\n", config->mbo_cell_capa);
1721
0
  if (config->disassoc_imminent_rssi_threshold !=
1722
0
      DEFAULT_DISASSOC_IMMINENT_RSSI_THRESHOLD)
1723
0
    fprintf(f, "disassoc_imminent_rssi_threshold=%d\n",
1724
0
      config->disassoc_imminent_rssi_threshold);
1725
0
  if (config->oce != DEFAULT_OCE_SUPPORT)
1726
0
    fprintf(f, "oce=%u\n", config->oce);
1727
#endif /* CONFIG_MBO */
1728
1729
0
  if (config->gas_address3)
1730
0
    fprintf(f, "gas_address3=%d\n", config->gas_address3);
1731
1732
0
  if (config->ftm_responder)
1733
0
    fprintf(f, "ftm_responder=%d\n", config->ftm_responder);
1734
0
  if (config->ftm_initiator)
1735
0
    fprintf(f, "ftm_initiator=%d\n", config->ftm_initiator);
1736
1737
0
  if (config->twt_requester)
1738
0
    fprintf(f, "twt_requester=%d\n", config->twt_requester);
1739
1740
0
  if (config->fst_group_id)
1741
0
    fprintf(f, "fst_group_id=%s\n", config->fst_group_id);
1742
0
  if (config->fst_priority)
1743
0
    fprintf(f, "fst_priority=%d\n", config->fst_priority);
1744
0
  if (config->fst_llt)
1745
0
    fprintf(f, "fst_llt=%d\n", config->fst_llt);
1746
1747
0
  if (config->gas_rand_addr_lifetime != DEFAULT_RAND_ADDR_LIFETIME)
1748
0
    fprintf(f, "gas_rand_addr_lifetime=%u\n",
1749
0
      config->gas_rand_addr_lifetime);
1750
0
  if (config->gas_rand_mac_addr)
1751
0
    fprintf(f, "gas_rand_mac_addr=%d\n", config->gas_rand_mac_addr);
1752
0
  if (config->dpp_config_processing)
1753
0
    fprintf(f, "dpp_config_processing=%d\n",
1754
0
      config->dpp_config_processing);
1755
0
  if (config->dpp_name)
1756
0
    fprintf(f, "dpp_name=%s\n", config->dpp_name);
1757
0
  if (config->dpp_mud_url)
1758
0
    fprintf(f, "dpp_mud_url=%s\n", config->dpp_mud_url);
1759
0
  if (config->dpp_extra_conf_req_name)
1760
0
    fprintf(f, "dpp_extra_conf_req_name=%s\n",
1761
0
      config->dpp_extra_conf_req_name);
1762
0
  if (config->dpp_extra_conf_req_value)
1763
0
    fprintf(f, "dpp_extra_conf_req_value=%s\n",
1764
0
      config->dpp_extra_conf_req_value);
1765
0
  if (config->dpp_connector_privacy_default)
1766
0
    fprintf(f, "dpp_connector_privacy_default=%d\n",
1767
0
      config->dpp_connector_privacy_default);
1768
0
  if (config->coloc_intf_reporting)
1769
0
    fprintf(f, "coloc_intf_reporting=%d\n",
1770
0
      config->coloc_intf_reporting);
1771
0
  if (config->p2p_device_random_mac_addr)
1772
0
    fprintf(f, "p2p_device_random_mac_addr=%d\n",
1773
0
      config->p2p_device_random_mac_addr);
1774
0
  if (!is_zero_ether_addr(config->p2p_device_persistent_mac_addr))
1775
0
    fprintf(f, "p2p_device_persistent_mac_addr=" MACSTR "\n",
1776
0
      MAC2STR(config->p2p_device_persistent_mac_addr));
1777
0
  if (config->p2p_interface_random_mac_addr)
1778
0
    fprintf(f, "p2p_interface_random_mac_addr=%d\n",
1779
0
      config->p2p_interface_random_mac_addr);
1780
0
  if (config->disable_btm)
1781
0
    fprintf(f, "disable_btm=1\n");
1782
0
  if (config->extended_key_id != DEFAULT_EXTENDED_KEY_ID)
1783
0
    fprintf(f, "extended_key_id=%d\n",
1784
0
      config->extended_key_id);
1785
0
  if (config->wowlan_disconnect_on_deinit)
1786
0
    fprintf(f, "wowlan_disconnect_on_deinit=%d\n",
1787
0
      config->wowlan_disconnect_on_deinit);
1788
0
  if (config->rsn_overriding)
1789
0
    fprintf(f, "rsn_overriding=%d\n", config->rsn_overriding);
1790
#ifdef CONFIG_TESTING_OPTIONS
1791
  if (config->mld_force_single_link)
1792
    fprintf(f, "mld_force_single_link=1\n");
1793
  if (config->mld_connect_band_pref != MLD_CONNECT_BAND_PREF_AUTO)
1794
    fprintf(f, "mld_connect_band_pref=%d\n",
1795
      config->mld_connect_band_pref);
1796
  if (!is_zero_ether_addr(config->mld_connect_bssid_pref))
1797
    fprintf(f, "mld_connect_bssid_pref=" MACSTR "\n",
1798
      MAC2STR(config->mld_connect_bssid_pref));
1799
#endif /* CONFIG_TESTING_OPTIONS */
1800
0
  if (config->ft_prepend_pmkid)
1801
0
    fprintf(f, "ft_prepend_pmkid=%d\n", config->ft_prepend_pmkid);
1802
0
  if (config->dik) {
1803
0
    fprintf(f, "dik_cipher=%d\n", config->dik_cipher);
1804
0
    write_global_bin(f, "dik", config->dik);
1805
0
  }
1806
0
  if (config->wfa_gen_capa)
1807
0
    fprintf(f, "wfa_gen_capa=%d\n", config->wfa_gen_capa);
1808
0
  write_global_bin(f, "wfa_gen_capa_supp", config->wfa_gen_capa_supp);
1809
0
  if (config->disable_op_classes_80_80_mhz)
1810
0
    fprintf(f, "disable_op_classes_80_80_mhz=%d\n",
1811
0
      config->disable_op_classes_80_80_mhz);
1812
0
  if (config->pr_pasn_type)
1813
0
    fprintf(f, "pr_pasn_type=%d\n", config->pr_pasn_type);
1814
0
  if (config->pr_preferred_role)
1815
0
    fprintf(f, "pr_preferred_role=%d\n", config->pr_preferred_role);
1816
1817
#ifdef CONFIG_PASN
1818
  if (config->pasn_groups) {
1819
    int i;
1820
1821
    fprintf(f, "pasn_groups=");
1822
    for (i = 0; config->pasn_groups[i] > 0; i++) {
1823
      fprintf(f, "%s%d", i > 0 ? " " : "",
1824
        config->pasn_groups[i]);
1825
    }
1826
    fprintf(f, "\n");
1827
  }
1828
#endif /* CONFIG_PASN */
1829
0
}
Unexecuted instantiation: config_file.c:wpa_config_write_global
Unexecuted instantiation: config_file.c:wpa_config_write_global
1830
1831
static void wpa_config_write_identity(FILE *f, struct wpa_dev_ik *dev_ik)
1832
0
{
1833
0
  fprintf(f, "\tdik_cipher=%d\n", dev_ik->dik_cipher);
1834
1835
0
  if (dev_ik->dik)
1836
0
    write_global_bin(f, "\tdik", dev_ik->dik);
1837
1838
0
  if (dev_ik->pmk)
1839
0
    write_global_bin(f, "\tpmk", dev_ik->pmk);
1840
1841
0
  if (dev_ik->pmkid)
1842
0
    write_global_bin(f, "\tpmkid", dev_ik->pmkid);
1843
0
}
1844
1845
#endif /* CONFIG_NO_CONFIG_WRITE */
1846
1847
1848
int wpa_config_write(const char *name, struct wpa_config *config)
1849
0
{
1850
0
#ifndef CONFIG_NO_CONFIG_WRITE
1851
0
  FILE *f;
1852
0
  struct wpa_ssid *ssid;
1853
0
  struct wpa_cred *cred;
1854
0
  struct wpa_dev_ik *dev_ik;
1855
0
#ifndef CONFIG_NO_CONFIG_BLOBS
1856
0
  struct wpa_config_blob *blob;
1857
0
#endif /* CONFIG_NO_CONFIG_BLOBS */
1858
0
  int ret = 0;
1859
0
  const char *orig_name = name;
1860
0
  int tmp_len;
1861
0
  char *tmp_name;
1862
1863
0
  if (!name) {
1864
0
    wpa_printf(MSG_ERROR, "No configuration file for writing");
1865
0
    return -1;
1866
0
  }
1867
1868
0
  tmp_len = os_strlen(name) + 5; /* allow space for .tmp suffix */
1869
0
  tmp_name = os_malloc(tmp_len);
1870
0
  if (tmp_name) {
1871
0
    os_snprintf(tmp_name, tmp_len, "%s.tmp", name);
1872
0
    name = tmp_name;
1873
0
  }
1874
1875
0
  wpa_printf(MSG_DEBUG, "Writing configuration file '%s'", name);
1876
1877
0
  f = fopen(name, "w");
1878
0
  if (f == NULL) {
1879
0
    wpa_printf(MSG_DEBUG, "Failed to open '%s' for writing", name);
1880
0
    os_free(tmp_name);
1881
0
    return -1;
1882
0
  }
1883
1884
0
  wpa_config_write_global(f, config);
1885
1886
0
  for (cred = config->cred; cred; cred = cred->next) {
1887
0
    if (cred->temporary)
1888
0
      continue;
1889
0
    fprintf(f, "\ncred={\n");
1890
0
    wpa_config_write_cred(f, cred);
1891
0
    fprintf(f, "}\n");
1892
0
  }
1893
1894
0
  for (ssid = config->ssid; ssid; ssid = ssid->next) {
1895
0
    if (ssid->key_mgmt == WPA_KEY_MGMT_WPS || ssid->temporary ||
1896
0
        ssid->ro)
1897
0
      continue; /* do not save temporary networks */
1898
0
    if (wpa_key_mgmt_wpa_psk_no_sae(ssid->key_mgmt) &&
1899
0
        !ssid->psk_set && !ssid->passphrase)
1900
0
      continue; /* do not save invalid network */
1901
0
    if (wpa_key_mgmt_sae(ssid->key_mgmt) &&
1902
0
        !ssid->passphrase && !ssid->sae_password &&
1903
0
        !ssid->pmk_valid)
1904
0
      continue; /* do not save invalid network */
1905
0
    fprintf(f, "\nnetwork={\n");
1906
0
    wpa_config_write_network(f, ssid, config);
1907
0
    fprintf(f, "}\n");
1908
0
  }
1909
1910
0
  for (dev_ik = config->identity; dev_ik; dev_ik = dev_ik->next) {
1911
0
    fprintf(f, "\nidentity={\n");
1912
0
    wpa_config_write_identity(f, dev_ik);
1913
0
    fprintf(f, "}\n");
1914
0
  }
1915
1916
0
#ifndef CONFIG_NO_CONFIG_BLOBS
1917
0
  for (blob = config->blobs; blob; blob = blob->next) {
1918
0
    ret = wpa_config_write_blob(f, blob);
1919
0
    if (ret)
1920
0
      break;
1921
0
  }
1922
0
#endif /* CONFIG_NO_CONFIG_BLOBS */
1923
1924
0
  os_fdatasync(f);
1925
1926
0
  fclose(f);
1927
1928
0
  if (tmp_name) {
1929
0
    int chmod_ret = 0;
1930
1931
#ifdef ANDROID
1932
    chmod_ret = chmod(tmp_name,
1933
          S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP);
1934
#endif /* ANDROID */
1935
0
    if (chmod_ret != 0 || rename(tmp_name, orig_name) != 0)
1936
0
      ret = -1;
1937
1938
0
    os_free(tmp_name);
1939
0
  }
1940
1941
0
  wpa_printf(MSG_DEBUG, "Configuration file '%s' written %ssuccessfully",
1942
0
       orig_name, ret ? "un" : "");
1943
0
  return ret;
1944
#else /* CONFIG_NO_CONFIG_WRITE */
1945
  return -1;
1946
#endif /* CONFIG_NO_CONFIG_WRITE */
1947
0
}