1 /*
2 * hostapd / Configuration definitions and helpers functions
3 * Copyright (c) 2003-2024, Jouni Malinen <[email protected]>
4 *
5 * This software may be distributed under the terms of the BSD license.
6 * See README for more details.
7 */
8
9 #ifndef HOSTAPD_CONFIG_H
10 #define HOSTAPD_CONFIG_H
11
12 #include "common/defs.h"
13 #include "utils/list.h"
14 #include "ip_addr.h"
15 #include "common/wpa_common.h"
16 #include "common/ieee802_11_defs.h"
17 #include "common/ieee802_11_common.h"
18 #include "crypto/sha256.h"
19 #include "wps/wps.h"
20 #include "fst/fst.h"
21 #include "vlan.h"
22
23 enum macaddr_acl {
24 ACCEPT_UNLESS_DENIED = 0,
25 DENY_UNLESS_ACCEPTED = 1,
26 USE_EXTERNAL_RADIUS_AUTH = 2
27 };
28
29 /**
30 * mesh_conf - local MBSS state and settings
31 */
32 struct mesh_conf {
33 u8 meshid[32];
34 u8 meshid_len;
35 /* Active Path Selection Protocol Identifier */
36 u8 mesh_pp_id;
37 /* Active Path Selection Metric Identifier */
38 u8 mesh_pm_id;
39 /* Congestion Control Mode Identifier */
40 u8 mesh_cc_id;
41 /* Synchronization Protocol Identifier */
42 u8 mesh_sp_id;
43 /* Authentication Protocol Identifier */
44 u8 mesh_auth_id;
45 u8 *rsn_ie;
46 int rsn_ie_len;
47 #define MESH_CONF_SEC_NONE BIT(0)
48 #define MESH_CONF_SEC_AUTH BIT(1)
49 #define MESH_CONF_SEC_AMPE BIT(2)
50 unsigned int security;
51 enum mfp_options ieee80211w;
52 int ocv;
53 unsigned int pairwise_cipher;
54 unsigned int group_cipher;
55 unsigned int mgmt_group_cipher;
56 int dot11MeshMaxRetries;
57 int dot11MeshRetryTimeout; /* msec */
58 int dot11MeshConfirmTimeout; /* msec */
59 int dot11MeshHoldingTimeout; /* msec */
60 int mesh_fwding;
61 };
62
63 #define MAX_STA_COUNT 2007
64 #define MAX_VLAN_ID 4094
65
66 typedef u8 macaddr[ETH_ALEN];
67
68 struct mac_acl_entry {
69 macaddr addr;
70 struct vlan_description vlan_id;
71 };
72
73 struct hostapd_radius_servers;
74 struct ft_remote_r0kh;
75 struct ft_remote_r1kh;
76
77 #ifdef CONFIG_WEP
78 #define NUM_WEP_KEYS 4
79 struct hostapd_wep_keys {
80 u8 idx;
81 u8 *key[NUM_WEP_KEYS];
82 size_t len[NUM_WEP_KEYS];
83 int keys_set;
84 size_t default_len; /* key length used for dynamic key generation */
85 };
86 #endif /* CONFIG_WEP */
87
88 typedef enum hostap_security_policy {
89 SECURITY_PLAINTEXT = 0,
90 #ifdef CONFIG_WEP
91 SECURITY_STATIC_WEP = 1,
92 #endif /* CONFIG_WEP */
93 SECURITY_IEEE_802_1X = 2,
94 SECURITY_WPA_PSK = 3,
95 SECURITY_WPA = 4,
96 SECURITY_OSEN = 5
97 } secpolicy;
98
99 struct hostapd_ssid {
100 u8 ssid[SSID_MAX_LEN];
101 size_t ssid_len;
102 u32 short_ssid;
103 unsigned int ssid_set:1;
104 unsigned int utf8_ssid:1;
105 unsigned int wpa_passphrase_set:1;
106 unsigned int wpa_psk_set:1;
107
108 char vlan[IFNAMSIZ + 1];
109 secpolicy security_policy;
110
111 struct hostapd_wpa_psk *wpa_psk;
112 char *wpa_passphrase;
113 char *wpa_psk_file;
114 struct sae_pt *pt;
115
116 #ifdef CONFIG_WEP
117 struct hostapd_wep_keys wep;
118 #endif /* CONFIG_WEP */
119
120 #define DYNAMIC_VLAN_DISABLED 0
121 #define DYNAMIC_VLAN_OPTIONAL 1
122 #define DYNAMIC_VLAN_REQUIRED 2
123 int dynamic_vlan;
124 #define DYNAMIC_VLAN_NAMING_WITHOUT_DEVICE 0
125 #define DYNAMIC_VLAN_NAMING_WITH_DEVICE 1
126 #define DYNAMIC_VLAN_NAMING_END 2
127 int vlan_naming;
128 int per_sta_vif;
129 #ifdef CONFIG_FULL_DYNAMIC_VLAN
130 char *vlan_tagged_interface;
131 #endif /* CONFIG_FULL_DYNAMIC_VLAN */
132 };
133
134
135 #define VLAN_ID_WILDCARD -1
136
137 struct hostapd_vlan {
138 struct hostapd_vlan *next;
139 int vlan_id; /* VLAN ID or -1 (VLAN_ID_WILDCARD) for wildcard entry */
140 struct vlan_description vlan_desc;
141 char ifname[IFNAMSIZ + 1];
142 char bridge[IFNAMSIZ + 1];
143 int configured;
144 int dynamic_vlan;
145 #ifdef CONFIG_FULL_DYNAMIC_VLAN
146
147 #define DVLAN_CLEAN_WLAN_PORT 0x8
148 int clean;
149 #endif /* CONFIG_FULL_DYNAMIC_VLAN */
150 };
151
152 #define PMK_LEN 32
153 #define KEYID_LEN 32
154 #define MIN_PASSPHRASE_LEN 8
155 #define MAX_PASSPHRASE_LEN 63
156 struct hostapd_sta_wpa_psk_short {
157 struct hostapd_sta_wpa_psk_short *next;
158 unsigned int is_passphrase:1;
159 u8 psk[PMK_LEN];
160 char passphrase[MAX_PASSPHRASE_LEN + 1];
161 int ref; /* (number of references held) - 1 */
162 };
163
164 struct hostapd_wpa_psk {
165 struct hostapd_wpa_psk *next;
166 int group;
167 char keyid[KEYID_LEN];
168 int wps;
169 u8 psk[PMK_LEN];
170 u8 addr[ETH_ALEN];
171 u8 p2p_dev_addr[ETH_ALEN];
172 int vlan_id;
173 };
174
175 struct hostapd_eap_user {
176 struct hostapd_eap_user *next;
177 u8 *identity;
178 size_t identity_len;
179 struct {
180 int vendor;
181 u32 method;
182 } methods[EAP_MAX_METHODS];
183 u8 *password;
184 size_t password_len;
185 u8 *salt;
186 size_t salt_len; /* non-zero when password is salted */
187 int phase2;
188 int force_version;
189 unsigned int wildcard_prefix:1;
190 unsigned int password_hash:1; /* whether password is hashed with
191 * nt_password_hash() */
192 unsigned int remediation:1;
193 unsigned int macacl:1;
194 int ttls_auth; /* EAP_TTLS_AUTH_* bitfield */
195 struct hostapd_radius_attr *accept_attr;
196 u32 t_c_timestamp;
197 };
198
199 struct hostapd_radius_attr {
200 u8 type;
201 struct wpabuf *val;
202 struct hostapd_radius_attr *next;
203 };
204
205
206 #define NUM_TX_QUEUES 4
207 #define MAX_ROAMING_CONSORTIUM_LEN 15
208
209 struct hostapd_roaming_consortium {
210 u8 len;
211 u8 oi[MAX_ROAMING_CONSORTIUM_LEN];
212 };
213
214 struct hostapd_lang_string {
215 u8 lang[3];
216 u8 name_len;
217 u8 name[252];
218 };
219
220 struct hostapd_venue_url {
221 u8 venue_number;
222 u8 url_len;
223 u8 url[254];
224 };
225
226 #define MAX_NAI_REALMS 10
227 #define MAX_NAI_REALMLEN 255
228 #define MAX_NAI_EAP_METHODS 5
229 #define MAX_NAI_AUTH_TYPES 4
230 struct hostapd_nai_realm_data {
231 u8 encoding;
232 char realm_buf[MAX_NAI_REALMLEN + 1];
233 char *realm[MAX_NAI_REALMS];
234 u8 eap_method_count;
235 struct hostapd_nai_realm_eap {
236 u8 eap_method;
237 u8 num_auths;
238 u8 auth_id[MAX_NAI_AUTH_TYPES];
239 u8 auth_val[MAX_NAI_AUTH_TYPES];
240 } eap_method[MAX_NAI_EAP_METHODS];
241 };
242
243 struct anqp_element {
244 struct dl_list list;
245 u16 infoid;
246 struct wpabuf *payload;
247 };
248
249 struct fils_realm {
250 struct dl_list list;
251 u8 hash[2];
252 char realm[];
253 };
254
255 struct sae_password_entry {
256 struct sae_password_entry *next;
257 char *password;
258 char *identifier;
259 u8 peer_addr[ETH_ALEN];
260 int vlan_id;
261 struct sae_pt *pt;
262 struct sae_pk *pk;
263 };
264
265 struct dpp_controller_conf {
266 struct dpp_controller_conf *next;
267 u8 pkhash[SHA256_MAC_LEN];
268 struct hostapd_ip_addr ipaddr;
269 };
270
271 struct airtime_sta_weight {
272 struct airtime_sta_weight *next;
273 unsigned int weight;
274 u8 addr[ETH_ALEN];
275 };
276
277 #define EXT_CAPA_MAX_LEN 15
278
279 /**
280 * struct hostapd_bss_config - Per-BSS configuration
281 */
282 struct hostapd_bss_config {
283 char iface[IFNAMSIZ + 1];
284 char bridge[IFNAMSIZ + 1];
285 char vlan_bridge[IFNAMSIZ + 1];
286 char wds_bridge[IFNAMSIZ + 1];
287 int bridge_hairpin; /* hairpin_mode on bridge members */
288
289 enum hostapd_logger_level logger_syslog_level, logger_stdout_level;
290
291 unsigned int logger_syslog; /* module bitfield */
292 unsigned int logger_stdout; /* module bitfield */
293
294 int max_num_sta; /* maximum number of STAs in station table */
295
296 int dtim_period;
297 unsigned int bss_load_update_period;
298 unsigned int chan_util_avg_period;
299
300 int ieee802_1x; /* use IEEE 802.1X */
301 int eapol_version;
302 int eap_server; /* Use internal EAP server instead of external
303 * RADIUS server */
304 struct hostapd_eap_user *eap_user;
305 char *eap_user_sqlite;
306 char *eap_sim_db;
307 unsigned int eap_sim_db_timeout;
308 int eap_server_erp; /* Whether ERP is enabled on internal EAP server */
309 struct hostapd_ip_addr own_ip_addr;
310 char *nas_identifier;
311 struct hostapd_radius_servers *radius;
312 int radius_require_message_authenticator;
313 int acct_interim_interval;
314 int radius_request_cui;
315 struct hostapd_radius_attr *radius_auth_req_attr;
316 struct hostapd_radius_attr *radius_acct_req_attr;
317 char *radius_req_attr_sqlite;
318 int radius_das_port;
319 unsigned int radius_das_time_window;
320 int radius_das_require_event_timestamp;
321 int radius_das_require_message_authenticator;
322 struct hostapd_ip_addr radius_das_client_addr;
323 u8 *radius_das_shared_secret;
324 size_t radius_das_shared_secret_len;
325
326 struct hostapd_ssid ssid;
327
328 char *eap_req_id_text; /* optional displayable message sent with
329 * EAP Request-Identity */
330 size_t eap_req_id_text_len;
331 int eapol_key_index_workaround;
332
333 #ifdef CONFIG_WEP
334 size_t default_wep_key_len;
335 int individual_wep_key_len;
336 int wep_rekeying_period;
337 int broadcast_key_idx_min, broadcast_key_idx_max;
338 #endif /* CONFIG_WEP */
339 int eap_reauth_period;
340 int erp_send_reauth_start;
341 char *erp_domain;
342 #ifdef CONFIG_TESTING_OPTIONS
343 bool eap_skip_prot_success;
344 #endif /* CONFIG_TESTING_OPTIONS */
345
346 enum macaddr_acl macaddr_acl;
347 struct mac_acl_entry *accept_mac;
348 int num_accept_mac;
349 struct mac_acl_entry *deny_mac;
350 int num_deny_mac;
351 int wds_sta;
352 int isolate;
353 int start_disabled;
354
355 int auth_algs; /* bitfield of allowed IEEE 802.11 authentication
356 * algorithms, WPA_AUTH_ALG_{OPEN,SHARED,LEAP} */
357
358 int wpa; /* bitfield of WPA_PROTO_WPA, WPA_PROTO_RSN */
359 int extended_key_id;
360 int wpa_key_mgmt;
361 int rsn_override_key_mgmt;
362 int rsn_override_key_mgmt_2;
363 enum mfp_options ieee80211w;
364 enum mfp_options rsn_override_mfp;
365 enum mfp_options rsn_override_mfp_2;
366 int group_mgmt_cipher;
367 int beacon_prot;
368 /* dot11AssociationSAQueryMaximumTimeout (in TUs) */
369 unsigned int assoc_sa_query_max_timeout;
370 /* dot11AssociationSAQueryRetryTimeout (in TUs) */
371 int assoc_sa_query_retry_timeout;
372 #ifdef CONFIG_OCV
373 int ocv; /* Operating Channel Validation */
374 #endif /* CONFIG_OCV */
375 enum {
376 PSK_RADIUS_IGNORED = 0,
377 PSK_RADIUS_ACCEPTED = 1,
378 PSK_RADIUS_REQUIRED = 2,
379 PSK_RADIUS_DURING_4WAY_HS = 3,
380 } wpa_psk_radius;
381 int wpa_pairwise;
382 int group_cipher; /* wpa_group value override from configuation */
383 int wpa_group;
384 int wpa_group_rekey;
385 int wpa_group_rekey_set;
386 int wpa_strict_rekey;
387 int wpa_gmk_rekey;
388 int wpa_ptk_rekey;
389 enum ptk0_rekey_handling wpa_deny_ptk0_rekey;
390 u32 wpa_group_update_count;
391 u32 wpa_pairwise_update_count;
392 int wpa_disable_eapol_key_retries;
393 int rsn_pairwise;
394 int rsn_override_pairwise;
395 int rsn_override_pairwise_2;
396 int rsn_preauth;
397 char *rsn_preauth_interfaces;
398
399 int rsn_override_omit_rsnxe;
400
401 #ifdef CONFIG_IEEE80211R_AP
402 /* IEEE 802.11r - Fast BSS Transition */
403 u8 mobility_domain[MOBILITY_DOMAIN_ID_LEN];
404 u8 r1_key_holder[FT_R1KH_ID_LEN];
405 u32 r0_key_lifetime; /* PMK-R0 lifetime seconds */
406 int rkh_pos_timeout;
407 int rkh_neg_timeout;
408 int rkh_pull_timeout; /* ms */
409 int rkh_pull_retries;
410 u32 reassociation_deadline;
411 struct ft_remote_r0kh *r0kh_list;
412 struct ft_remote_r1kh *r1kh_list;
413 int pmk_r1_push;
414 int ft_over_ds;
415 int ft_psk_generate_local;
416 int r1_max_key_lifetime;
417 char *rxkh_file;
418 #endif /* CONFIG_IEEE80211R_AP */
419
420 char *ctrl_interface; /* directory for UNIX domain sockets */
421 #ifndef CONFIG_NATIVE_WINDOWS
422 gid_t ctrl_interface_gid;
423 #endif /* CONFIG_NATIVE_WINDOWS */
424 int ctrl_interface_gid_set;
425
426 char *ca_cert;
427 char *server_cert;
428 char *server_cert2;
429 char *private_key;
430 char *private_key2;
431 char *private_key_passwd;
432 char *private_key_passwd2;
433 char *check_cert_subject;
434 int check_crl;
435 int check_crl_strict;
436 unsigned int crl_reload_interval;
437 unsigned int tls_session_lifetime;
438 unsigned int tls_flags;
439 unsigned int max_auth_rounds;
440 unsigned int max_auth_rounds_short;
441 char *ocsp_stapling_response;
442 char *ocsp_stapling_response_multi;
443 char *dh_file;
444 char *openssl_ciphers;
445 char *openssl_ecdh_curves;
446 u8 *pac_opaque_encr_key;
447 u8 *eap_fast_a_id;
448 size_t eap_fast_a_id_len;
449 char *eap_fast_a_id_info;
450 int eap_fast_prov;
451 int pac_key_lifetime;
452 int pac_key_refresh_time;
453 int eap_teap_auth;
454 int eap_teap_pac_no_inner;
455 int eap_teap_separate_result;
456 int eap_teap_id;
457 int eap_teap_method_sequence;
458 int eap_sim_aka_result_ind;
459 int eap_sim_id;
460 char *imsi_privacy_key;
461 int eap_sim_aka_fast_reauth_limit;
462 int tnc;
463 int fragment_size;
464 u16 pwd_group;
465
466 char *radius_server_clients;
467 int radius_server_auth_port;
468 int radius_server_acct_port;
469 int radius_server_ipv6;
470
471 int use_pae_group_addr; /* Whether to send EAPOL frames to PAE group
472 * address instead of individual address
473 * (for driver_wired.c).
474 */
475
476 int ap_max_inactivity;
477 int bss_max_idle;
478 int max_acceptable_idle_period;
479 bool no_disconnect_on_group_keyerror;
480 int ignore_broadcast_ssid;
481 int no_probe_resp_if_max_sta;
482
483 int wmm_enabled;
484 int wmm_uapsd;
485
486 struct hostapd_vlan *vlan;
487
488 macaddr bssid;
489
490 /*
491 * Maximum listen interval that STAs can use when associating with this
492 * BSS. If a STA tries to use larger value, the association will be
493 * denied with status code 51.
494 */
495 u16 max_listen_interval;
496
497 int disable_pmksa_caching;
498 int okc; /* Opportunistic Key Caching */
499
500 int wps_state;
501 #ifdef CONFIG_WPS
502 int wps_independent;
503 int ap_setup_locked;
504 u8 uuid[16];
505 char *wps_pin_requests;
506 char *device_name;
507 char *manufacturer;
508 char *model_name;
509 char *model_number;
510 char *serial_number;
511 u8 device_type[WPS_DEV_TYPE_LEN];
512 char *config_methods;
513 u8 os_version[4];
514 char *ap_pin;
515 int skip_cred_build;
516 u8 *extra_cred;
517 size_t extra_cred_len;
518 int wps_cred_processing;
519 int wps_cred_add_sae;
520 int force_per_enrollee_psk;
521 u8 *ap_settings;
522 size_t ap_settings_len;
523 struct hostapd_ssid multi_ap_backhaul_ssid;
524 char *upnp_iface;
525 char *friendly_name;
526 char *manufacturer_url;
527 char *model_description;
528 char *model_url;
529 char *upc;
530 struct wpabuf *wps_vendor_ext[MAX_WPS_VENDOR_EXTENSIONS];
531 struct wpabuf *wps_application_ext;
532 int wps_nfc_pw_from_config;
533 int wps_nfc_dev_pw_id;
534 struct wpabuf *wps_nfc_dh_pubkey;
535 struct wpabuf *wps_nfc_dh_privkey;
536 struct wpabuf *wps_nfc_dev_pw;
537 #endif /* CONFIG_WPS */
538 int pbc_in_m1;
539 char *server_id;
540
541 #define P2P_ENABLED BIT(0)
542 #define P2P_GROUP_OWNER BIT(1)
543 #define P2P_GROUP_FORMATION BIT(2)
544 #define P2P_MANAGE BIT(3)
545 #define P2P_ALLOW_CROSS_CONNECTION BIT(4)
546 int p2p;
547 #ifdef CONFIG_P2P
548 u8 ip_addr_go[4];
549 u8 ip_addr_mask[4];
550 u8 ip_addr_start[4];
551 u8 ip_addr_end[4];
552 #endif /* CONFIG_P2P */
553
554 int disassoc_low_ack;
555 int skip_inactivity_poll;
556
557 #define TDLS_PROHIBIT BIT(0)
558 #define TDLS_PROHIBIT_CHAN_SWITCH BIT(1)
559 int tdls;
560 bool disable_11n;
561 bool disable_11ac;
562 bool disable_11ax;
563 bool disable_11be;
564
565 /* IEEE 802.11v */
566 int time_advertisement;
567 char *time_zone;
568 int wnm_sleep_mode;
569 int wnm_sleep_mode_no_keys;
570 int bss_transition;
571
572 /* IEEE 802.11u - Interworking */
573 int interworking;
574 int access_network_type;
575 int internet;
576 int asra;
577 int esr;
578 int uesa;
579 int venue_info_set;
580 u8 venue_group;
581 u8 venue_type;
582 u8 hessid[ETH_ALEN];
583
584 /* IEEE 802.11u - Roaming Consortium list */
585 unsigned int roaming_consortium_count;
586 struct hostapd_roaming_consortium *roaming_consortium;
587
588 /* IEEE 802.11u - Venue Name duples */
589 unsigned int venue_name_count;
590 struct hostapd_lang_string *venue_name;
591
592 /* Venue URL duples */
593 unsigned int venue_url_count;
594 struct hostapd_venue_url *venue_url;
595
596 /* IEEE 802.11u - Network Authentication Type */
597 u8 *network_auth_type;
598 size_t network_auth_type_len;
599
600 /* IEEE 802.11u - IP Address Type Availability */
601 u8 ipaddr_type_availability;
602 u8 ipaddr_type_configured;
603
604 /* IEEE 802.11u - 3GPP Cellular Network */
605 u8 *anqp_3gpp_cell_net;
606 size_t anqp_3gpp_cell_net_len;
607
608 /* IEEE 802.11u - Domain Name */
609 u8 *domain_name;
610 size_t domain_name_len;
611
612 unsigned int nai_realm_count;
613 struct hostapd_nai_realm_data *nai_realm_data;
614
615 struct dl_list anqp_elem; /* list of struct anqp_element */
616
617 u16 gas_comeback_delay;
618 size_t gas_frag_limit;
619 int gas_address3;
620
621 u8 qos_map_set[16 + 2 * 21];
622 unsigned int qos_map_set_len;
623
624 int osen;
625 int proxy_arp;
626 int na_mcast_to_ucast;
627
628 #ifdef CONFIG_HS20
629 int hs20;
630 int hs20_release;
631 int disable_dgaf;
632 u16 anqp_domain_id;
633 unsigned int hs20_oper_friendly_name_count;
634 struct hostapd_lang_string *hs20_oper_friendly_name;
635 u8 *hs20_wan_metrics;
636 u8 *hs20_connection_capability;
637 size_t hs20_connection_capability_len;
638 u8 *hs20_operating_class;
639 u8 hs20_operating_class_len;
640 struct hs20_icon {
641 u16 width;
642 u16 height;
643 char language[3];
644 char type[256];
645 char name[256];
646 char file[256];
647 } *hs20_icons;
648 size_t hs20_icons_count;
649 u8 osu_ssid[SSID_MAX_LEN];
650 size_t osu_ssid_len;
651 struct hs20_osu_provider {
652 unsigned int friendly_name_count;
653 struct hostapd_lang_string *friendly_name;
654 char *server_uri;
655 int *method_list;
656 char **icons;
657 size_t icons_count;
658 char *osu_nai;
659 char *osu_nai2;
660 unsigned int service_desc_count;
661 struct hostapd_lang_string *service_desc;
662 } *hs20_osu_providers, *last_osu;
663 size_t hs20_osu_providers_count;
664 size_t hs20_osu_providers_nai_count;
665 char **hs20_operator_icon;
666 size_t hs20_operator_icon_count;
667 unsigned int hs20_deauth_req_timeout;
668 char *subscr_remediation_url;
669 u8 subscr_remediation_method;
670 char *hs20_sim_provisioning_url;
671 char *t_c_filename;
672 u32 t_c_timestamp;
673 char *t_c_server_url;
674 #endif /* CONFIG_HS20 */
675
676 u8 wps_rf_bands; /* RF bands for WPS (WPS_RF_*) */
677
678 #ifdef CONFIG_RADIUS_TEST
679 char *dump_msk_file;
680 #endif /* CONFIG_RADIUS_TEST */
681
682 struct wpabuf *vendor_elements;
683 struct wpabuf *assocresp_elements;
684
685 unsigned int anti_clogging_threshold;
686 unsigned int sae_sync;
687 int sae_require_mfp;
688 int sae_confirm_immediate;
689 enum sae_pwe sae_pwe;
690 int *sae_groups;
691 struct sae_password_entry *sae_passwords;
692
693 char *wowlan_triggers; /* Wake-on-WLAN triggers */
694
695 #ifdef CONFIG_TESTING_OPTIONS
696 u8 bss_load_test[5];
697 u8 bss_load_test_set;
698 struct wpabuf *own_ie_override;
699 struct wpabuf *rsne_override;
700 struct wpabuf *rsnoe_override;
701 struct wpabuf *rsno2e_override;
702 struct wpabuf *rsnxe_override;
703 struct wpabuf *rsnxoe_override;
704 int sae_reflection_attack;
705 int sae_commit_status;
706 int sae_pk_omit;
707 int sae_pk_password_check_skip;
708 struct wpabuf *sae_commit_override;
709 struct wpabuf *rsne_override_eapol;
710 struct wpabuf *rsnxe_override_eapol;
711 struct wpabuf *rsne_override_ft;
712 struct wpabuf *rsnxe_override_ft;
713 struct wpabuf *gtk_rsc_override;
714 struct wpabuf *igtk_rsc_override;
715 int no_beacon_rsnxe;
716 int skip_prune_assoc;
717 int ft_rsnxe_used;
718 unsigned int oci_freq_override_eapol_m3;
719 unsigned int oci_freq_override_eapol_g1;
720 unsigned int oci_freq_override_saquery_req;
721 unsigned int oci_freq_override_saquery_resp;
722 unsigned int oci_freq_override_ft_assoc;
723 unsigned int oci_freq_override_fils_assoc;
724 unsigned int oci_freq_override_wnm_sleep;
725 struct wpabuf *eapol_m1_elements;
726 struct wpabuf *eapol_m3_elements;
727 bool eapol_m3_no_encrypt;
728 bool eapol_key_reserved_random;
729 int test_assoc_comeback_type;
730 struct wpabuf *presp_elements;
731
732 #ifdef CONFIG_IEEE80211BE
733 u16 eht_oper_puncturing_override;
734 #endif /* CONFIG_IEEE80211BE */
735 #endif /* CONFIG_TESTING_OPTIONS */
736
737 #define MESH_ENABLED BIT(0)
738 int mesh;
739 int mesh_fwding;
740
741 u8 radio_measurements[RRM_CAPABILITIES_IE_LEN];
742
743 int vendor_vht;
744 int use_sta_nsts;
745
746 char *no_probe_resp_if_seen_on;
747 char *no_auth_if_seen_on;
748
749 int pbss;
750
751 #ifdef CONFIG_MBO
752 int mbo_enabled;
753 /**
754 * oce - Enable OCE in AP and/or STA-CFON mode
755 * - BIT(0) is Reserved
756 * - Set BIT(1) to enable OCE in STA-CFON mode
757 * - Set BIT(2) to enable OCE in AP mode
758 */
759 unsigned int oce;
760 int mbo_cell_data_conn_pref;
761 #endif /* CONFIG_MBO */
762
763 int ftm_responder;
764 int ftm_initiator;
765
766 #ifdef CONFIG_FILS
767 u8 fils_cache_id[FILS_CACHE_ID_LEN];
768 int fils_cache_id_set;
769 struct dl_list fils_realms; /* list of struct fils_realm */
770 int fils_dh_group;
771 struct hostapd_ip_addr dhcp_server;
772 int dhcp_rapid_commit_proxy;
773 unsigned int fils_hlp_wait_time;
774 u16 dhcp_server_port;
775 u16 dhcp_relay_port;
776 u32 fils_discovery_min_int;
777 u32 fils_discovery_max_int;
778 #endif /* CONFIG_FILS */
779
780 int multicast_to_unicast;
781 int bridge_multicast_to_unicast;
782
783 int broadcast_deauth;
784
785 int notify_mgmt_frames;
786
787 #ifdef CONFIG_DPP
788 char *dpp_name;
789 char *dpp_mud_url;
790 char *dpp_extra_conf_req_name;
791 char *dpp_extra_conf_req_value;
792 char *dpp_connector;
793 struct wpabuf *dpp_netaccesskey;
794 unsigned int dpp_netaccesskey_expiry;
795 struct wpabuf *dpp_csign;
796 #ifdef CONFIG_DPP2
797 struct dpp_controller_conf *dpp_controller;
798 int dpp_relay_port;
799 int dpp_configurator_connectivity;
800 int dpp_pfs;
801 #endif /* CONFIG_DPP2 */
802 #endif /* CONFIG_DPP */
803
804 #ifdef CONFIG_OWE
805 macaddr owe_transition_bssid;
806 u8 owe_transition_ssid[SSID_MAX_LEN];
807 size_t owe_transition_ssid_len;
808 char owe_transition_ifname[IFNAMSIZ + 1];
809 int *owe_groups;
810 int owe_ptk_workaround;
811 #endif /* CONFIG_OWE */
812
813 int coloc_intf_reporting;
814
815 u8 send_probe_response;
816
817 u8 transition_disable;
818
819 #define BACKHAUL_BSS 1
820 #define FRONTHAUL_BSS 2
821 int multi_ap; /* bitmap of BACKHAUL_BSS, FRONTHAUL_BSS */
822 int multi_ap_profile;
823 /* Multi-AP Profile-1 clients not allowed to connect */
824 #define PROFILE1_CLIENT_ASSOC_DISALLOW BIT(0)
825 /* Multi-AP Profile-2 clients not allowed to connect */
826 #define PROFILE2_CLIENT_ASSOC_DISALLOW BIT(1)
827 unsigned int multi_ap_client_disallow;
828 /* Primary VLAN ID to use in Multi-AP */
829 int multi_ap_vlanid;
830
831 #ifdef CONFIG_AIRTIME_POLICY
832 unsigned int airtime_weight;
833 int airtime_limit;
834 struct airtime_sta_weight *airtime_weight_list;
835 #endif /* CONFIG_AIRTIME_POLICY */
836
837 #ifdef CONFIG_MACSEC
838 /**
839 * macsec_policy - Determines the policy for MACsec secure session
840 *
841 * 0: MACsec not in use (default)
842 * 1: MACsec enabled - Should secure, accept key server's advice to
843 * determine whether to use a secure session or not.
844 */
845 int macsec_policy;
846
847 /**
848 * macsec_integ_only - Determines how MACsec are transmitted
849 *
850 * This setting applies only when MACsec is in use, i.e.,
851 * - macsec_policy is enabled
852 * - the key server has decided to enable MACsec
853 *
854 * 0: Encrypt traffic (default)
855 * 1: Integrity only
856 */
857 int macsec_integ_only;
858
859 /**
860 * macsec_replay_protect - Enable MACsec replay protection
861 *
862 * This setting applies only when MACsec is in use, i.e.,
863 * - macsec_policy is enabled
864 * - the key server has decided to enable MACsec
865 *
866 * 0: Replay protection disabled (default)
867 * 1: Replay protection enabled
868 */
869 int macsec_replay_protect;
870
871 /**
872 * macsec_replay_window - MACsec replay protection window
873 *
874 * A window in which replay is tolerated, to allow receipt of frames
875 * that have been misordered by the network.
876 *
877 * This setting applies only when MACsec replay protection active, i.e.,
878 * - macsec_replay_protect is enabled
879 * - the key server has decided to enable MACsec
880 *
881 * 0: No replay window, strict check (default)
882 * 1..2^32-1: number of packets that could be misordered
883 */
884 u32 macsec_replay_window;
885
886 /**
887 * macsec_offload - Enable MACsec offload
888 *
889 * This setting applies only when MACsec is in use, i.e.,
890 * - macsec_policy is enabled
891 * - the key server has decided to enable MACsec
892 *
893 * 0 = MACSEC_OFFLOAD_OFF (default)
894 * 1 = MACSEC_OFFLOAD_PHY
895 * 2 = MACSEC_OFFLOAD_MAC
896 */
897 int macsec_offload;
898
899 /**
900 * macsec_port - MACsec port (in SCI)
901 *
902 * Port component of the SCI.
903 *
904 * Range: 1-65534 (default: 1)
905 */
906 int macsec_port;
907
908 /**
909 * mka_priority - Priority of MKA Actor
910 *
911 * Range: 0-255 (default: 255)
912 */
913 int mka_priority;
914
915 /**
916 * macsec_csindex - Cipher suite index for MACsec
917 *
918 * Range: 0-1 (default: 0)
919 */
920 int macsec_csindex;
921
922 /**
923 * mka_ckn - MKA pre-shared CKN
924 */
925 #define MACSEC_CKN_MAX_LEN 32
926 size_t mka_ckn_len;
927 u8 mka_ckn[MACSEC_CKN_MAX_LEN];
928
929 /**
930 * mka_cak - MKA pre-shared CAK
931 */
932 #define MACSEC_CAK_MAX_LEN 32
933 size_t mka_cak_len;
934 u8 mka_cak[MACSEC_CAK_MAX_LEN];
935
936 #define MKA_PSK_SET_CKN BIT(0)
937 #define MKA_PSK_SET_CAK BIT(1)
938 #define MKA_PSK_SET (MKA_PSK_SET_CKN | MKA_PSK_SET_CAK)
939 /**
940 * mka_psk_set - Whether mka_ckn and mka_cak are set
941 */
942 u8 mka_psk_set;
943 #endif /* CONFIG_MACSEC */
944
945 #ifdef CONFIG_PASN
946 /* Whether to allow PASN-UNAUTH */
947 int pasn_noauth;
948
949 #ifdef CONFIG_TESTING_OPTIONS
950 /*
951 * Normally, KDK should be derived if and only if both sides support
952 * secure LTF. Allow forcing KDK derivation for testing purposes.
953 */
954 int force_kdk_derivation;
955
956 /* If set, corrupt the MIC in the 2nd Authentication frame of PASN */
957 int pasn_corrupt_mic;
958 #endif /* CONFIG_TESTING_OPTIONS */
959
960 int *pasn_groups;
961
962 /*
963 * The time in TUs after which the non-AP STA is requested to retry the
964 * PASN authentication in case there are too many parallel operations.
965 */
966 u16 pasn_comeback_after;
967 #endif /* CONFIG_PASN */
968
969 unsigned int unsol_bcast_probe_resp_interval;
970
971 u8 ext_capa_mask[EXT_CAPA_MAX_LEN];
972 u8 ext_capa[EXT_CAPA_MAX_LEN];
973
974 u8 rnr;
975 char *config_id;
976 bool xrates_supported;
977
978 bool ssid_protection;
979
980 #ifdef CONFIG_IEEE80211BE
981 /* The AP is part of an AP MLD */
982 u8 mld_ap;
983
984 /* The MLD ID to which the AP MLD is affiliated with */
985 u8 mld_id;
986
987 /* The AP's MLD MAC address within the AP MLD */
988 u8 mld_addr[ETH_ALEN];
989
990 #ifdef CONFIG_TESTING_OPTIONS
991 /*
992 * If set indicate the AP as disabled in the RNR element included in the
993 * other APs in the AP MLD.
994 */
995 bool mld_indicate_disabled;
996 #endif /* CONFIG_TESTING_OPTIONS */
997 #endif /* CONFIG_IEEE80211BE */
998 };
999
1000 /**
1001 * struct he_phy_capabilities_info - HE PHY capabilities
1002 */
1003 struct he_phy_capabilities_info {
1004 bool he_su_beamformer;
1005 bool he_su_beamformee;
1006 bool he_mu_beamformer;
1007 };
1008
1009 /**
1010 * struct he_operation - HE operation
1011 */
1012 struct he_operation {
1013 u8 he_bss_color;
1014 u8 he_bss_color_disabled;
1015 u8 he_bss_color_partial;
1016 u8 he_default_pe_duration;
1017 u8 he_twt_required;
1018 u8 he_twt_responder;
1019 u16 he_rts_threshold;
1020 u8 he_er_su_disable;
1021 u16 he_basic_mcs_nss_set;
1022 };
1023
1024 /**
1025 * struct spatial_reuse - Spatial reuse
1026 */
1027 struct spatial_reuse {
1028 u8 sr_control;
1029 u8 non_srg_obss_pd_max_offset;
1030 u8 srg_obss_pd_min_offset;
1031 u8 srg_obss_pd_max_offset;
1032 u8 srg_bss_color_bitmap[8];
1033 u8 srg_partial_bssid_bitmap[8];
1034 };
1035
1036 /**
1037 * struct eht_phy_capabilities_info - EHT PHY capabilities
1038 */
1039 struct eht_phy_capabilities_info {
1040 bool su_beamformer;
1041 bool su_beamformee;
1042 bool mu_beamformer;
1043 };
1044
1045 /**
1046 * struct hostapd_config - Per-radio interface configuration
1047 */
1048 struct hostapd_config {
1049 struct hostapd_bss_config **bss, *last_bss;
1050 size_t num_bss;
1051
1052 u16 beacon_int;
1053 int rts_threshold;
1054 int fragm_threshold;
1055 u8 op_class;
1056 u8 channel;
1057 int enable_edmg;
1058 u8 edmg_channel;
1059 u8 acs;
1060 struct wpa_freq_range_list acs_ch_list;
1061 struct wpa_freq_range_list acs_freq_list;
1062 u8 acs_freq_list_present;
1063 int acs_exclude_dfs;
1064 u8 min_tx_power;
1065 enum hostapd_hw_mode hw_mode; /* HOSTAPD_MODE_IEEE80211A, .. */
1066 bool hw_mode_set;
1067 int acs_exclude_6ghz_non_psc;
1068 int enable_background_radar;
1069 enum {
1070 LONG_PREAMBLE = 0,
1071 SHORT_PREAMBLE = 1
1072 } preamble;
1073
1074 int *supported_rates;
1075 int *basic_rates;
1076 unsigned int beacon_rate;
1077 enum beacon_rate_type rate_type;
1078
1079 const struct wpa_driver_ops *driver;
1080 char *driver_params;
1081
1082 int ap_table_max_size;
1083 int ap_table_expiration_time;
1084
1085 unsigned int track_sta_max_num;
1086 unsigned int track_sta_max_age;
1087
1088 char country[3]; /* first two octets: country code as described in
1089 * ISO/IEC 3166-1. Third octet:
1090 * ' ' (ascii 32): all environments
1091 * 'O': Outdoor environemnt only
1092 * 'I': Indoor environment only
1093 * 'X': Used with noncountry entity ("XXX")
1094 * 0x00..0x31: identifying IEEE 802.11 standard
1095 * Annex E table (0x04 = global table)
1096 */
1097
1098 int ieee80211d;
1099
1100 int ieee80211h; /* DFS */
1101
1102 /*
1103 * Local power constraint is an octet encoded as an unsigned integer in
1104 * units of decibels. Invalid value -1 indicates that Power Constraint
1105 * element will not be added.
1106 */
1107 int local_pwr_constraint;
1108
1109 /* Control Spectrum Management bit */
1110 int spectrum_mgmt_required;
1111
1112 struct hostapd_tx_queue_params tx_queue[NUM_TX_QUEUES];
1113
1114 /*
1115 * WMM AC parameters, in same order as 802.1D, i.e.
1116 * 0 = BE (best effort)
1117 * 1 = BK (background)
1118 * 2 = VI (video)
1119 * 3 = VO (voice)
1120 */
1121 struct hostapd_wmm_ac_params wmm_ac_params[4];
1122
1123 int ht_op_mode_fixed;
1124 u16 ht_capab;
1125 int ieee80211n;
1126 int secondary_channel;
1127 int no_pri_sec_switch;
1128 int require_ht;
1129 int obss_interval;
1130 u32 vht_capab;
1131 int ieee80211ac;
1132 int require_vht;
1133 enum oper_chan_width vht_oper_chwidth;
1134 u8 vht_oper_centr_freq_seg0_idx;
1135 u8 vht_oper_centr_freq_seg1_idx;
1136 u8 ht40_plus_minus_allowed;
1137
1138 /* Use driver-generated interface addresses when adding multiple BSSs */
1139 u8 use_driver_iface_addr;
1140
1141 #ifdef CONFIG_FST
1142 struct fst_iface_cfg fst_cfg;
1143 #endif /* CONFIG_FST */
1144
1145 #ifdef CONFIG_P2P
1146 u8 p2p_go_ctwindow;
1147 #endif /* CONFIG_P2P */
1148
1149 #ifdef CONFIG_TESTING_OPTIONS
1150 double ignore_probe_probability;
1151 double ignore_auth_probability;
1152 double ignore_assoc_probability;
1153 double ignore_reassoc_probability;
1154 double corrupt_gtk_rekey_mic_probability;
1155 int ecsa_ie_only;
1156 unsigned int skip_send_eapol;
1157 unsigned int enable_eapol_large_timeout;
1158 bool delay_eapol_tx;
1159 #endif /* CONFIG_TESTING_OPTIONS */
1160
1161 #ifdef CONFIG_ACS
1162 unsigned int acs_num_scans;
1163 struct acs_bias {
1164 int channel;
1165 double bias;
1166 } *acs_chan_bias;
1167 unsigned int num_acs_chan_bias;
1168 #endif /* CONFIG_ACS */
1169
1170 struct wpabuf *lci;
1171 struct wpabuf *civic;
1172 int stationary_ap;
1173
1174 int ieee80211ax;
1175 #ifdef CONFIG_IEEE80211AX
1176 struct he_phy_capabilities_info he_phy_capab;
1177 struct he_operation he_op;
1178 struct ieee80211_he_mu_edca_parameter_set he_mu_edca;
1179 struct spatial_reuse spr;
1180 enum oper_chan_width he_oper_chwidth;
1181 u8 he_oper_centr_freq_seg0_idx;
1182 u8 he_oper_centr_freq_seg1_idx;
1183 u8 he_6ghz_max_mpdu;
1184 u8 he_6ghz_max_ampdu_len_exp;
1185 u8 he_6ghz_rx_ant_pat;
1186 u8 he_6ghz_tx_ant_pat;
1187 u8 he_6ghz_reg_pwr_type;
1188
1189 int reg_def_cli_eirp_psd;
1190 int reg_sub_cli_eirp_psd;
1191
1192 /*
1193 * This value should be used when regulatory client EIRP PSD values
1194 * advertised by an AP that is an SP AP or an indoor SP AP are
1195 * insufficient to ensure that regulatory client limits on total EIRP
1196 * are always met for all transmission bandwidths within the bandwidth
1197 * of the AP’s BSS.
1198 */
1199 int reg_def_cli_eirp;
1200
1201 bool require_he;
1202 #endif /* CONFIG_IEEE80211AX */
1203
1204 /* VHT enable/disable config from CHAN_SWITCH */
1205 #define CH_SWITCH_VHT_ENABLED BIT(0)
1206 #define CH_SWITCH_VHT_DISABLED BIT(1)
1207 unsigned int ch_switch_vht_config;
1208
1209 /* HE enable/disable config from CHAN_SWITCH */
1210 #define CH_SWITCH_HE_ENABLED BIT(0)
1211 #define CH_SWITCH_HE_DISABLED BIT(1)
1212 unsigned int ch_switch_he_config;
1213
1214 int rssi_reject_assoc_rssi;
1215 int rssi_reject_assoc_timeout;
1216 int rssi_ignore_probe_request;
1217
1218 #ifdef CONFIG_AIRTIME_POLICY
1219 enum {
1220 AIRTIME_MODE_OFF = 0,
1221 AIRTIME_MODE_STATIC = 1,
1222 AIRTIME_MODE_DYNAMIC = 2,
1223 AIRTIME_MODE_LIMIT = 3,
1224 __AIRTIME_MODE_MAX,
1225 } airtime_mode;
1226 unsigned int airtime_update_interval;
1227 #define AIRTIME_MODE_MAX (__AIRTIME_MODE_MAX - 1)
1228 #endif /* CONFIG_AIRTIME_POLICY */
1229
1230 int ieee80211be;
1231 #ifdef CONFIG_IEEE80211BE
1232 enum oper_chan_width eht_oper_chwidth;
1233 u8 eht_oper_centr_freq_seg0_idx;
1234 struct eht_phy_capabilities_info eht_phy_capab;
1235 u16 punct_bitmap; /* a bitmap of disabled 20 MHz channels */
1236 u8 punct_acs_threshold;
1237 u8 eht_default_pe_duration;
1238 u8 eht_bw320_offset;
1239 #endif /* CONFIG_IEEE80211BE */
1240
1241 /* EHT enable/disable config from CHAN_SWITCH */
1242 #define CH_SWITCH_EHT_ENABLED BIT(0)
1243 #define CH_SWITCH_EHT_DISABLED BIT(1)
1244 unsigned int ch_switch_eht_config;
1245
1246 enum mbssid {
1247 MBSSID_DISABLED = 0,
1248 MBSSID_ENABLED = 1,
1249 ENHANCED_MBSSID_ENABLED = 2,
1250 } mbssid;
1251
1252 /* Whether to enable TWT responder in HT and VHT modes */
1253 bool ht_vht_twt_responder;
1254 };
1255
1256
1257 static inline enum oper_chan_width
hostapd_get_oper_chwidth(struct hostapd_config * conf)1258 hostapd_get_oper_chwidth(struct hostapd_config *conf)
1259 {
1260 #ifdef CONFIG_IEEE80211BE
1261 if (conf->ieee80211be)
1262 return conf->eht_oper_chwidth;
1263 #endif /* CONFIG_IEEE80211BE */
1264 #ifdef CONFIG_IEEE80211AX
1265 if (conf->ieee80211ax)
1266 return conf->he_oper_chwidth;
1267 #endif /* CONFIG_IEEE80211AX */
1268 return conf->vht_oper_chwidth;
1269 }
1270
1271 static inline void
hostapd_set_oper_chwidth(struct hostapd_config * conf,enum oper_chan_width oper_chwidth)1272 hostapd_set_oper_chwidth(struct hostapd_config *conf,
1273 enum oper_chan_width oper_chwidth)
1274 {
1275 #ifdef CONFIG_IEEE80211BE
1276 if (conf->ieee80211be)
1277 conf->eht_oper_chwidth = oper_chwidth;
1278 if (oper_chwidth == CONF_OPER_CHWIDTH_320MHZ)
1279 oper_chwidth = CONF_OPER_CHWIDTH_160MHZ;
1280 #endif /* CONFIG_IEEE80211BE */
1281 #ifdef CONFIG_IEEE80211AX
1282 if (conf->ieee80211ax)
1283 conf->he_oper_chwidth = oper_chwidth;
1284 #endif /* CONFIG_IEEE80211AX */
1285 conf->vht_oper_chwidth = oper_chwidth;
1286 }
1287
1288 static inline u8
hostapd_get_oper_centr_freq_seg0_idx(struct hostapd_config * conf)1289 hostapd_get_oper_centr_freq_seg0_idx(struct hostapd_config *conf)
1290 {
1291 #ifdef CONFIG_IEEE80211BE
1292 if (conf->ieee80211be)
1293 return conf->eht_oper_centr_freq_seg0_idx;
1294 #endif /* CONFIG_IEEE80211BE */
1295 #ifdef CONFIG_IEEE80211AX
1296 if (conf->ieee80211ax)
1297 return conf->he_oper_centr_freq_seg0_idx;
1298 #endif /* CONFIG_IEEE80211AX */
1299 return conf->vht_oper_centr_freq_seg0_idx;
1300 }
1301
1302 static inline void
hostapd_set_oper_centr_freq_seg0_idx(struct hostapd_config * conf,u8 oper_centr_freq_seg0_idx)1303 hostapd_set_oper_centr_freq_seg0_idx(struct hostapd_config *conf,
1304 u8 oper_centr_freq_seg0_idx)
1305 {
1306 #ifdef CONFIG_IEEE80211BE
1307 if (conf->ieee80211be)
1308 conf->eht_oper_centr_freq_seg0_idx = oper_centr_freq_seg0_idx;
1309 if (is_6ghz_op_class(conf->op_class) &&
1310 center_idx_to_bw_6ghz(oper_centr_freq_seg0_idx) == 4)
1311 oper_centr_freq_seg0_idx +=
1312 conf->channel > oper_centr_freq_seg0_idx ? 16 : -16;
1313 #endif /* CONFIG_IEEE80211BE */
1314 #ifdef CONFIG_IEEE80211AX
1315 if (conf->ieee80211ax)
1316 conf->he_oper_centr_freq_seg0_idx = oper_centr_freq_seg0_idx;
1317 #endif /* CONFIG_IEEE80211AX */
1318 conf->vht_oper_centr_freq_seg0_idx = oper_centr_freq_seg0_idx;
1319 }
1320
1321 static inline u8
hostapd_get_oper_centr_freq_seg1_idx(struct hostapd_config * conf)1322 hostapd_get_oper_centr_freq_seg1_idx(struct hostapd_config *conf)
1323 {
1324 #ifdef CONFIG_IEEE80211AX
1325 if (conf->ieee80211ax)
1326 return conf->he_oper_centr_freq_seg1_idx;
1327 #endif /* CONFIG_IEEE80211AX */
1328 return conf->vht_oper_centr_freq_seg1_idx;
1329 }
1330
1331 static inline void
hostapd_set_oper_centr_freq_seg1_idx(struct hostapd_config * conf,u8 oper_centr_freq_seg1_idx)1332 hostapd_set_oper_centr_freq_seg1_idx(struct hostapd_config *conf,
1333 u8 oper_centr_freq_seg1_idx)
1334 {
1335 #ifdef CONFIG_IEEE80211AX
1336 if (conf->ieee80211ax)
1337 conf->he_oper_centr_freq_seg1_idx = oper_centr_freq_seg1_idx;
1338 #endif /* CONFIG_IEEE80211AX */
1339 conf->vht_oper_centr_freq_seg1_idx = oper_centr_freq_seg1_idx;
1340 }
1341
1342 static inline u8
hostapd_get_bw320_offset(struct hostapd_config * conf)1343 hostapd_get_bw320_offset(struct hostapd_config *conf)
1344 {
1345 #ifdef CONFIG_IEEE80211BE
1346 if (conf->ieee80211be && is_6ghz_op_class(conf->op_class) &&
1347 hostapd_get_oper_chwidth(conf) == CONF_OPER_CHWIDTH_320MHZ)
1348 return conf->eht_bw320_offset;
1349 #endif /* CONFIG_IEEE80211BE */
1350 return 0;
1351 }
1352
1353 static inline void
hostapd_set_and_check_bw320_offset(struct hostapd_config * conf,u8 bw320_offset)1354 hostapd_set_and_check_bw320_offset(struct hostapd_config *conf,
1355 u8 bw320_offset)
1356 {
1357 #ifdef CONFIG_IEEE80211BE
1358 if (conf->ieee80211be && is_6ghz_op_class(conf->op_class) &&
1359 op_class_to_ch_width(conf->op_class) == CONF_OPER_CHWIDTH_320MHZ) {
1360 if (conf->channel) {
1361 /* If the channel is set, then calculate bw320_offset
1362 * by center frequency segment 0.
1363 */
1364 u8 seg0 = hostapd_get_oper_centr_freq_seg0_idx(conf);
1365
1366 conf->eht_bw320_offset = (seg0 - 31) % 64 ? 2 : 1;
1367 } else {
1368 /* If the channel is not set, bw320_offset indicates
1369 * preferred offset of 320 MHz.
1370 */
1371 conf->eht_bw320_offset = bw320_offset;
1372 }
1373 } else {
1374 conf->eht_bw320_offset = 0;
1375 }
1376 #endif /* CONFIG_IEEE80211BE */
1377 }
1378
1379
1380 int hostapd_mac_comp(const void *a, const void *b);
1381 struct hostapd_config * hostapd_config_defaults(void);
1382 void hostapd_config_defaults_bss(struct hostapd_bss_config *bss);
1383 void hostapd_config_free_radius_attr(struct hostapd_radius_attr *attr);
1384 void hostapd_config_free_eap_user(struct hostapd_eap_user *user);
1385 void hostapd_config_free_eap_users(struct hostapd_eap_user *user);
1386 void hostapd_config_clear_wpa_psk(struct hostapd_wpa_psk **p);
1387 void hostapd_config_clear_rxkhs(struct hostapd_bss_config *conf);
1388 void hostapd_config_free_bss(struct hostapd_bss_config *conf);
1389 void hostapd_config_free(struct hostapd_config *conf);
1390 int hostapd_maclist_found(struct mac_acl_entry *list, int num_entries,
1391 const u8 *addr, struct vlan_description *vlan_id);
1392 int hostapd_rate_found(int *list, int rate);
1393 const u8 * hostapd_get_psk(const struct hostapd_bss_config *conf,
1394 const u8 *addr, const u8 *p2p_dev_addr,
1395 const u8 *prev_psk, int *vlan_id);
1396 int hostapd_setup_wpa_psk(struct hostapd_bss_config *conf);
1397 int hostapd_vlan_valid(struct hostapd_vlan *vlan,
1398 struct vlan_description *vlan_desc);
1399 const char * hostapd_get_vlan_id_ifname(struct hostapd_vlan *vlan,
1400 int vlan_id);
1401 struct hostapd_radius_attr *
1402 hostapd_config_get_radius_attr(struct hostapd_radius_attr *attr, u8 type);
1403 struct hostapd_radius_attr * hostapd_parse_radius_attr(const char *value);
1404 int hostapd_config_check(struct hostapd_config *conf, int full_config);
1405 void hostapd_set_security_params(struct hostapd_bss_config *bss,
1406 int full_config);
1407 int hostapd_sae_pw_id_in_use(struct hostapd_bss_config *conf);
1408 bool hostapd_sae_pk_in_use(struct hostapd_bss_config *conf);
1409 bool hostapd_sae_pk_exclusively(struct hostapd_bss_config *conf);
1410 int hostapd_setup_sae_pt(struct hostapd_bss_config *conf);
1411 int hostapd_acl_comp(const void *a, const void *b);
1412 int hostapd_add_acl_maclist(struct mac_acl_entry **acl, int *num,
1413 int vlan_id, const u8 *addr);
1414 void hostapd_remove_acl_mac(struct mac_acl_entry **acl, int *num,
1415 const u8 *addr);
1416
1417 #endif /* HOSTAPD_CONFIG_H */
1418