xref: /btstack/src/gap.h (revision 9e709c1bc0f25c170203c7b127fc671fe3790e71)
1 /*
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37 
38 /**
39  * @title Genral Access Profile (GAP)
40  *
41  */
42 
43 #ifndef GAP_H
44 #define GAP_H
45 
46 #if defined __cplusplus
47 extern "C" {
48 #endif
49 
50 #include "btstack_defines.h"
51 #include "btstack_util.h"
52 
53 #ifdef ENABLE_CLASSIC
54 #include "classic/btstack_link_key_db.h"
55 #endif
56 
57 // BIG has up to 2 BIS (stereo)
58 #ifndef MAX_NR_BIS
59 #define MAX_NR_BIS 2
60 #endif
61 
62 // CIG usually has up to 2 CIS (stereo)
63 #ifndef MAX_NR_CIS
64 #define MAX_NR_CIS 2
65 #endif
66 
67 typedef enum {
68 
69 	// MITM protection not required
70 	// No encryption required
71 	// No user interaction required
72 	LEVEL_0 = 0,
73 
74 	// MITM protection not required
75 	// No encryption required
76 	// Minimal user interaction desired
77 	LEVEL_1,
78 
79 	// MITM protection not required
80 	// Encryption required
81 	LEVEL_2,
82 
83 	// MITM protection required
84 	// Encryption required
85 	// User interaction acceptable
86 	LEVEL_3,
87 
88 	// MITM protection required
89 	// Encryption required
90 	// 128-bit equivalent strength for link and encryption keys required (P-192 is not enough)
91 	// User interaction acceptable
92 	LEVEL_4,
93 } gap_security_level_t;
94 
95 
96 typedef enum {
97     // non-secure
98     GAP_SECURITY_MODE_1 = 1,
99 
100     // service level enforced security
101     GAP_SECURITY_MODE_2,
102 
103     // link level enforced security
104     GAP_SECURITY_MODE_3,
105 
106     // service level enforced security
107     GAP_SECURITY_MODE_4
108 } gap_security_mode_t;
109 
110 typedef enum {
111 	GAP_SECURITY_NONE,
112 	GAP_SECURITY_ENCRYPTED,		// SSP: JUST WORKS
113 	GAP_SECURITY_AUTHENTICATED, // SSP: numeric comparison, passkey, OOB
114 	// GAP_SECURITY_AUTHORIZED
115 } gap_security_state;
116 
117 typedef enum {
118 	GAP_CONNECTION_INVALID,
119 	GAP_CONNECTION_ACL,
120 	GAP_CONNECTION_SCO,
121 	GAP_CONNECTION_LE
122 } gap_connection_type_t;
123 
124 typedef struct le_connection_parameter_range{
125     uint16_t le_conn_interval_min;
126     uint16_t le_conn_interval_max;
127     uint16_t le_conn_latency_min;
128     uint16_t le_conn_latency_max;
129     uint16_t le_supervision_timeout_min;
130     uint16_t le_supervision_timeout_max;
131 } le_connection_parameter_range_t;
132 
133 typedef enum {
134     GAP_RANDOM_ADDRESS_TYPE_OFF = 0,
135     GAP_RANDOM_ADDRESS_TYPE_STATIC,
136     GAP_RANDOM_ADDRESS_NON_RESOLVABLE,
137     GAP_RANDOM_ADDRESS_RESOLVABLE,
138 } gap_random_address_type_t;
139 
140 // Authorization state
141 typedef enum {
142     AUTHORIZATION_UNKNOWN,
143     AUTHORIZATION_PENDING,
144     AUTHORIZATION_DECLINED,
145     AUTHORIZATION_GRANTED
146 } authorization_state_t;
147 
148 // Extended Advertising Parameters
149 typedef struct {
150     uint16_t        advertising_event_properties;
151     uint16_t        primary_advertising_interval_min;
152     uint16_t        primary_advertising_interval_max;
153     uint8_t         primary_advertising_channel_map;
154     bd_addr_type_t  own_address_type;
155     bd_addr_type_t  peer_address_type;
156     bd_addr_t       peer_address;
157     uint8_t         advertising_filter_policy;
158     int8_t          advertising_tx_power;
159     uint8_t         primary_advertising_phy;
160     uint8_t         secondary_advertising_max_skip;
161     uint8_t         secondary_advertising_phy;
162     uint8_t         advertising_sid;
163     uint8_t         scan_request_notification_enable;
164 } le_extended_advertising_parameters_t;
165 
166 typedef struct {
167     uint16_t  periodic_advertising_interval_min;
168     uint16_t  periodic_advertising_interval_max;
169     uint16_t  periodic_advertising_properties;
170 } le_periodic_advertising_parameters_t;
171 
172 // Extended Advertising Set State
173 typedef struct {
174     btstack_linked_item_t item;
175     le_extended_advertising_parameters_t extended_params;
176     le_periodic_advertising_parameters_t periodic_params;
177     bd_addr_t random_address;
178     const uint8_t * adv_data;
179     const uint8_t * scan_data;
180     const uint8_t * periodic_data;
181     uint16_t  adv_data_len;
182     uint16_t  scan_data_len;
183     uint16_t  periodic_data_len;
184     uint16_t  adv_data_pos;
185     uint16_t  scan_data_pos;
186     uint16_t  periodic_data_pos;
187     uint16_t  enable_timeout;
188     uint8_t   advertising_handle;
189     uint8_t   enable_max_scan_events;
190     bool      periodic_include_adi;
191     uint8_t   state;
192     uint8_t   tasks;
193 } le_advertising_set_t;
194 
195 // Isochronous Streams
196 
197 // -- Broadcast Isochronous Group BIG
198 
199 typedef struct {
200     uint8_t  big_handle;
201     uint8_t  advertising_handle;
202     uint8_t  num_bis;
203     uint32_t sdu_interval_us;
204     uint16_t max_sdu;
205     uint16_t max_transport_latency_ms;
206     uint8_t  rtn;
207     uint8_t  phy;
208     uint8_t  packing;
209     uint8_t  framing;
210     uint8_t  encryption;
211     uint8_t  broadcast_code[16];
212 } le_audio_big_params_t;
213 
214 typedef struct {
215     uint8_t  big_handle;
216     uint8_t  sync_handle;
217     uint8_t  encryption;
218     uint8_t  broadcast_code[16];
219     uint8_t  mse;
220     uint16_t big_sync_timeout_10ms;
221     uint8_t  num_bis;
222     uint8_t bis_indices[MAX_NR_BIS];
223 } le_audio_big_sync_params_t;
224 
225 typedef enum {
226     LE_AUDIO_BIG_STATE_CREATE,
227     LE_AUDIO_BIG_STATE_W4_ESTABLISHED,
228     LE_AUDIO_BIG_STATE_SETUP_ISO_PATH,
229     LE_AUDIO_BIG_STATE_W4_SETUP_ISO_PATH,
230     LE_AUDIO_BIG_STATE_W4_SETUP_ISO_PATH_THEN_TERMINATE,
231     LE_AUDIO_BIG_STATE_SETUP_ISO_PATHS_FAILED,
232     LE_AUDIO_BIG_STATE_ACTIVE,
233     LE_AUDIO_BIG_STATE_TERMINATE,
234     LE_AUDIO_BIG_STATE_W4_TERMINATED_AFTER_SETUP_FAILED,
235     LE_AUDIO_BIG_STATE_W4_TERMINATED,
236 } le_audio_big_state_t;
237 
238 typedef struct {
239 	btstack_linked_item_t item;
240     uint8_t big_handle;
241     le_audio_big_state_t state;
242     union {
243         uint8_t next_bis;
244         uint8_t status;
245     } state_vars;
246     uint8_t num_bis;
247     hci_con_handle_t bis_con_handles[MAX_NR_BIS];
248     const le_audio_big_params_t * params;
249     // request to send
250     bool can_send_now_requested;
251     // previous and current timestamp of number completed event to track ISO intervals
252     bool     num_completed_timestamp_previous_valid;
253     bool     num_completed_timestamp_current_valid;
254     uint32_t num_completed_timestamp_previous_ms;
255     uint32_t num_completed_timestamp_current_ms;
256 
257 } le_audio_big_t;
258 
259 typedef struct {
260     btstack_linked_item_t  item;
261     uint8_t big_handle;
262     le_audio_big_state_t   state;
263     union {
264         uint8_t next_bis;
265         uint8_t status;
266     } state_vars;
267     uint8_t num_bis;
268     hci_con_handle_t bis_con_handles[MAX_NR_BIS];
269     const le_audio_big_sync_params_t * params;
270 } le_audio_big_sync_t;
271 
272 // -- Connected Isochronuous Group CIG
273 
274 typedef enum {
275     LE_AUDIO_CIG_STATE_CREATE,
276     LE_AUDIO_CIG_STATE_W4_ESTABLISHED,
277     LE_AUDIO_CIG_STATE_W4_CIS_REQUEST,
278     LE_AUDIO_CIG_STATE_CREATE_CIS,
279     LE_AUDIO_CIG_STATE_W4_CREATE_CIS,
280     LE_AUDIO_CIG_STATE_SETUP_ISO_PATH,
281     LE_AUDIO_CIG_STATE_W4_SETUP_ISO_PATH,
282     LE_AUDIO_CIG_STATE_ACTIVE,
283     LE_AUDIO_CIG_STATE_REMOVE,
284 } le_audio_cig_state_t;
285 
286 typedef struct {
287     uint8_t  cis_id;
288     uint16_t max_sdu_c_to_p;
289     uint16_t max_sdu_p_to_c;
290     uint8_t phy_c_to_p;
291     uint8_t phy_p_to_c;
292     uint8_t rtn_c_to_p;
293     uint8_t rtn_p_to_c;
294 } le_audio_cis_params_t;
295 
296 typedef struct {
297     uint8_t  cig_id;
298     uint32_t sdu_interval_c_to_p;
299     uint32_t sdu_interval_p_to_c;
300     uint8_t worst_case_sca;
301     uint8_t packing;
302     uint8_t framing;
303     uint16_t max_transport_latency_c_to_p;
304     uint16_t max_transport_latency_p_to_c;
305     uint8_t num_cis;
306     le_audio_cis_params_t cis_params[MAX_NR_CIS];
307 } le_audio_cig_params_t;
308 
309 typedef struct {
310     btstack_linked_item_t item;
311     uint8_t cig_id;
312     le_audio_cig_params_t * params;
313     le_audio_cig_state_t state;
314     union {
315         uint8_t next_cis;
316         uint8_t status;
317     } state_vars;
318     uint8_t num_cis;
319     hci_con_handle_t cis_con_handles[MAX_NR_CIS];
320     hci_con_handle_t acl_con_handles[MAX_NR_CIS];
321     bool cis_setup_active[MAX_NR_CIS];
322     bool cis_established[MAX_NR_CIS];
323     // request to send
324     bool can_send_now_requested;
325 } le_audio_cig_t;
326 
327 /* API_START */
328 
329 // Classic + LE
330 
331 /**
332  * @brief Read RSSI
333  * @param con_handle
334  * @events: GAP_EVENT_RSSI_MEASUREMENT
335  */
336 int gap_read_rssi(hci_con_handle_t con_handle);
337 
338 
339 /**
340  * @brief Gets local address.
341  */
342 void gap_local_bd_addr(bd_addr_t address_buffer);
343 
344 /**
345  * @brief Disconnect connection with handle
346  * @param handle
347  * @return status
348  */
349 uint8_t gap_disconnect(hci_con_handle_t handle);
350 
351 /**
352  * @brief Get connection type
353  * @param con_handle
354  * @result connection_type
355  */
356 gap_connection_type_t gap_get_connection_type(hci_con_handle_t connection_handle);
357 
358 /**
359  * @brief Get HCI connection role
360  * @param con_handle
361  * @result hci_role_t HCI_ROLE_MASTER / HCI_ROLE_SLAVE / HCI_ROLE_INVALID (if connection does not exist)
362  */
363 hci_role_t gap_get_role(hci_con_handle_t connection_handle);
364 
365 // Classic
366 
367 /**
368  * @brief Request role switch
369  * @note this only requests the role switch. A HCI_EVENT_ROLE_CHANGE is emitted and its status field will indicate if the switch was succesful
370  * @param addr
371  * @param hci_role_t HCI_ROLE_MASTER / HCI_ROLE_SLAVE
372  * @result status
373  */
374 uint8_t gap_request_role(const bd_addr_t addr, hci_role_t role);
375 
376 /**
377  * @brief Sets local name.
378  * @note Default name is 'BTstack 00:00:00:00:00:00'
379  * @note '00:00:00:00:00:00' in local_name will be replaced with actual bd addr
380  * @param name is not copied, make sure memory stays valid
381  */
382 void gap_set_local_name(const char * local_name);
383 
384 /**
385  * @brief Set Extended Inquiry Response data
386  * @note If not set, local name will be used for EIR data (see gap_set_local_name)
387  * @note '00:00:00:00:00:00' in local_name will be replaced with actual bd addr
388  * @param eir_data size HCI_EXTENDED_INQUIRY_RESPONSE_DATA_LEN (240) bytes, is not copied make sure memory stays valid
389  */
390 void gap_set_extended_inquiry_response(const uint8_t * data);
391 
392 /**
393  * @brief Set class of device
394  */
395 void gap_set_class_of_device(uint32_t class_of_device);
396 
397 /**
398  * @brief Set default link policy settings for all classic ACL links
399  * @param default_link_policy_settings - see LM_LINK_POLICY_* in bluetooth.h
400  * @note common value: LM_LINK_POLICY_ENABLE_ROLE_SWITCH | LM_LINK_POLICY_ENABLE_SNIFF_MODE to enable role switch and sniff mode
401  */
402 void gap_set_default_link_policy_settings(uint16_t default_link_policy_settings);
403 
404 /**
405  * @brief Set Allow Role Switch param for outgoing classic ACL links
406  * @param allow_role_switch - true: allow remote device to request role switch, false: stay master
407  */
408 void gap_set_allow_role_switch(bool allow_role_switch);
409 
410 /**
411  * @brief Set  link supervision timeout for outgoing classic ACL links
412  * @param default_link_supervision_timeout * 0.625 ms, default 0x7d00 = 20 seconds, 0 = no link supervision timeout
413  */
414 void gap_set_link_supervision_timeout(uint16_t link_supervision_timeout);
415 
416 /**
417  * @brief Enable link watchdog. If no ACL packet is sent within timeout_ms, the link will get disconnected
418  * note: current implementation uses the automatic flush timeout controller feature with a max timeout of 1.28s
419  * @param timeout_ms
420  */
421 void gap_enable_link_watchdog(uint16_t timeout_ms);
422 
423 /**
424  * @brief Enable/disable bonding. Default is enabled.
425  * @param enabled
426  */
427 void gap_set_bondable_mode(int enabled);
428 
429 /**
430  * @brief Get bondable mode.
431  * @return 1 if bondable
432  */
433 int gap_get_bondable_mode(void);
434 
435 /**
436  * @brief Set security mode for all outgoing and incoming connections. Default: GAP_SECURITY_MODE_4
437  * @param security_mode is GAP_SECURITY_MODE_2 or GAP_SECURITY_MODE_4
438  * @return status ERROR_CODE_SUCCESS or ERROR_CODE_UNSUPPORTED_FEATURE_OR_PARAMETER_VALUE
439  */
440 uint8_t gap_set_security_mode(gap_security_mode_t security_mode);
441 
442 /**
443  * @brief Get security mode
444  * @return security_mode
445  */
446 gap_security_mode_t gap_get_security_mode(void);
447 
448 /**
449  * @brief Set security level for all outgoing and incoming connections. Default: LEVEL_2
450  * @param security_level
451  * @note has to be called before services or profiles are initialized
452  */
453 void gap_set_security_level(gap_security_level_t security_level);
454 
455 /**
456  * @brief Get security level
457  * @return security_level
458  */
459 gap_security_level_t gap_get_security_level(void);
460 
461 /**
462  * @brief Set Secure Connections Only Mode for BR/EDR (Classic) Default: false
463  * @param enable
464  */
465 void gap_set_secure_connections_only_mode(bool enable);
466 
467 /**
468  * @breif Get Secure Connections Only Mode
469  * @param enabled
470  */
471 bool gap_get_secure_connections_only_mode(void);
472 
473 /**
474  * @brief Set minimal security level for registered services
475  * @param security_level
476  * @note Called by L2CAP based on registered services
477  */
478 void gap_set_minimal_service_security_level(gap_security_level_t security_level);
479 
480 /**
481  * @brief Register filter for rejecting classic connections. Callback will return 1 accept connection, 0 on reject.
482  */
483 void gap_register_classic_connection_filter(int (*accept_callback)(bd_addr_t addr, hci_link_type_t link_type));
484 
485 /* Configure Secure Simple Pairing */
486 
487 /**
488  * @brief Enable will enable SSP during init. Default: true
489  */
490 void gap_ssp_set_enable(int enable);
491 
492 /**
493  * @brief Set IO Capability. BTstack will return capability to SSP requests
494  */
495 void gap_ssp_set_io_capability(int ssp_io_capability);
496 
497 /**
498  * @brief Set Authentication Requirements using during SSP
499  */
500 void gap_ssp_set_authentication_requirement(int authentication_requirement);
501 
502 /**
503  * @brief Enable/disable Secure Connections. Default: true if supported by Controller
504  */
505 void gap_secure_connections_enable(bool enable);
506 
507 /**
508  * @brief Query if Secure Connections can be used for Classic connections.
509  * @note Requires gap_secure_connections_enable == true and Controller to support it
510  */
511 bool gap_secure_connections_active(void);
512 
513 /**
514  * @brief If set, BTstack will confirm a numeric comparison and enter '000000' if requested.
515  */
516 void gap_ssp_set_auto_accept(int auto_accept);
517 
518 /**
519  * @brief Set required encryption key size for GAP Levels 1-3 on ccassic connections. Default: 16 bytes
520  * @param encryption_key_size in bytes. Valid 7..16
521  */
522 void gap_set_required_encryption_key_size(uint8_t encryption_key_size);
523 
524 /**
525  * @brief Start dedicated bonding with device. Disconnect after bonding.
526  * @param device
527  * @param request MITM protection
528  * @return error, if max num acl connections active
529  * @result GAP_DEDICATED_BONDING_COMPLETE
530  */
531 int gap_dedicated_bonding(bd_addr_t device, int mitm_protection_required);
532 
533 gap_security_level_t gap_security_level_for_link_key_type(link_key_type_t link_key_type);
534 
535 /**
536  * @brief map link keys to secure connection yes/no
537  */
538 bool gap_secure_connection_for_link_key_type(link_key_type_t link_key_type);
539 
540 /**
541  * @brief map link keys to authenticated
542  */
543 bool gap_authenticated_for_link_key_type(link_key_type_t link_key_type);
544 
545 gap_security_level_t gap_security_level(hci_con_handle_t con_handle);
546 
547 void gap_request_security_level(hci_con_handle_t con_handle, gap_security_level_t level);
548 
549 bool gap_mitm_protection_required_for_security_level(gap_security_level_t level);
550 
551 /**
552  * @brief Set Page Scan Type
553  * @param page_scan_interval * 0.625 ms, range: 0x0012..0x1000, default: 0x0800
554  * @param page_scan_windows  * 0.625 ms, range: 0x0011..page_scan_interval, default: 0x0012
555  */
556 void gap_set_page_scan_activity(uint16_t page_scan_interval, uint16_t page_scan_window);
557 
558 /**
559  * @brief Set Page Scan Type
560  * @param page_scan_mode
561  */
562 void gap_set_page_scan_type(page_scan_type_t page_scan_type);
563 
564 /**
565  * @brief Set Page Timeout
566  * @param page_timeout * 0.625 ms, range: 0x0001..0xffff, default: 0x6000 (ca 15 seconds)
567  */
568 void gap_set_page_timeout(uint16_t page_timeout);
569 
570 // LE
571 
572 /**
573  * @brief Set parameters for LE Scan
574  * @param scan_type 0 = passive, 1 = active
575  * @param scan_interval range 0x0004..0x4000, unit 0.625 ms
576  * @param scan_window range 0x0004..0x4000, unit 0.625 ms
577  * @param scanning_filter_policy 0 = all devices, 1 = all from whitelist
578  */
579 void gap_set_scan_params(uint8_t scan_type, uint16_t scan_interval, uint16_t scan_window, uint8_t scanning_filter_policy);
580 
581 /**
582  * @brief Set parameters for LE Scan
583  * @deprecated Use gap_set_scan_params instead
584  */
585 void gap_set_scan_parameters(uint8_t scan_type, uint16_t scan_interval, uint16_t scan_window);
586 
587 /**
588  * @brief Set duplicate filter for LE Scan
589  * @param enabled if enabled, only one advertisements per BD_ADDR is reported, default: false
590  */
591 void gap_set_scan_duplicate_filter(bool enabled);
592 
593 /**
594  * @brief Set PHYs for LE Scan
595  * @param phy bitmask: 1 = LE 1M PHY, 4 = LE Coded PHY
596  */
597 void gap_set_scan_phys(uint8_t phys);
598 
599 /**
600  * @brief Start LE Scan
601  */
602 void gap_start_scan(void);
603 
604 /**
605  * @brief Stop LE Scan
606  */
607 void gap_stop_scan(void);
608 
609 /**
610  * @brief Enable privacy by using random addresses
611  * @param random_address_type to use (incl. OFF)
612  */
613 void gap_random_address_set_mode(gap_random_address_type_t random_address_type);
614 
615 /**
616  * @brief Get privacy mode
617  */
618 gap_random_address_type_t gap_random_address_get_mode(void);
619 
620 /**
621  * @brief Sets update period for random address
622  * @param period_ms in ms
623  */
624  void gap_random_address_set_update_period(int period_ms);
625 
626 /**
627  * @brief Sets a fixed random address for advertising
628  * @param addr
629  * @note Sets random address mode to type static
630  */
631 void gap_random_address_set(const bd_addr_t addr);
632 
633 /**
634  * @brief Set Advertisement Data
635  * @param advertising_data_length
636  * @param advertising_data (max 31 octets)
637  * @note data is not copied, pointer has to stay valid
638  * @note '00:00:00:00:00:00' in advertising_data will be replaced with actual bd addr
639  */
640 void gap_advertisements_set_data(uint8_t advertising_data_length, uint8_t * advertising_data);
641 
642 /**
643  * @brief Set Advertisement Parameters
644  * @param adv_int_min
645  * @param adv_int_max
646  * @param adv_type
647  * @param direct_address_type
648  * @param direct_address
649  * @param channel_map
650  * @param filter_policy
651  * @note own_address_type is used from gap_random_address_set_mode
652  */
653 void gap_advertisements_set_params(uint16_t adv_int_min, uint16_t adv_int_max, uint8_t adv_type,
654 	uint8_t direct_address_typ, bd_addr_t direct_address, uint8_t channel_map, uint8_t filter_policy);
655 
656 /**
657  * @brief Enable/Disable Advertisements. OFF by default.
658  * @param enabled
659  */
660 void gap_advertisements_enable(int enabled);
661 
662 /**
663  * @brief Set Scan Response Data
664  *
665  * @note For scan response data, scannable undirected advertising (ADV_SCAN_IND) need to be used
666  *
667  * @param advertising_data_length
668  * @param advertising_data (max 31 octets)
669  * @note data is not copied, pointer has to stay valid
670  * @note '00:00:00:00:00:00' in scan_response_data will be replaced with actual bd addr
671  */
672 void gap_scan_response_set_data(uint8_t scan_response_data_length, uint8_t * scan_response_data);
673 
674 
675 /**
676  * @brief Set update interval for resolvable private addresses generated by the Controller
677  * @param update_s timeout for updates in seconds
678  * @return status
679  */
680 uint8_t gap_extended_advertising_set_resolvable_private_address_update(uint16_t update_s);
681 
682 /**
683  * @brief Provide storage for new advertising set and setup on Controller
684  * @note Using RPA as own_address_type requires ENABLE_LE_ENHANCED_CONNECTION_COMPLETE_EVENT is required for pairing
685  * @param storage to use by stack, needs to stay valid until adv set is removed with gap_extended_advertising_remove
686  * @param advertising_parameters
687  * @param out_advertising_handle to use with other adv config commands
688  * @return status
689  * @events: GAP_SUBEVENT_ADVERTISING_SET_INSTALLED
690  */
691 uint8_t gap_extended_advertising_setup(le_advertising_set_t * storage, const le_extended_advertising_parameters_t * advertising_parameters, uint8_t * out_advertising_handle);
692 
693 /**
694  * @param Set advertising params for advertising set
695  * @note Using RPA as own_address_type requires ENABLE_LE_ENHANCED_CONNECTION_COMPLETE_EVENT is required for pairing
696  * @param advertising_handle
697  * @param advertising_parameters
698  * @return status
699  */
700 uint8_t gap_extended_advertising_set_params(uint8_t advertising_handle, const le_extended_advertising_parameters_t * advertising_parameters);
701 
702 /**
703  * @param Get advertising params for advertising set, e.g. to update params
704  * @param advertising_handle
705  * @param advertising_parameters
706  * @return status
707  */
708 uint8_t gap_extended_advertising_get_params(uint8_t advertising_handle, le_extended_advertising_parameters_t * advertising_parameters);
709 
710 /**
711  * @param Set periodic advertising params for advertising set
712  * @param advertising_handle
713  * @param advertising_parameters
714  * @return status
715  */
716 uint8_t gap_periodic_advertising_set_params(uint8_t advertising_handle, const le_periodic_advertising_parameters_t * advertising_parameters);
717 
718 /**
719  * @param Get params for periodic advertising set, e.g. to update params
720  * @param advertising_handle
721  * @param advertising_parameters
722  * @return status
723  */
724 uint8_t gap_periodic_advertising_get_params(uint8_t advertising_handle, le_periodic_advertising_parameters_t * advertising_parameters);
725 
726 /**
727  * @param Set random addrress for advertising set
728  * @param advertising_handle
729  * @param random_address
730  * @return status
731  */
732 uint8_t gap_extended_advertising_set_random_address(uint8_t advertising_handle, bd_addr_t random_address);
733 
734 /**
735  * @brief Set Advertising Data for a advertisement set
736  * @param advertising_handle
737  * @param advertising_data_length
738  * @param advertising_data
739  * @return status
740  */
741 uint8_t gap_extended_advertising_set_adv_data(uint8_t advertising_handle, uint16_t advertising_data_length, const uint8_t * advertising_data);
742 
743 /**
744  * @brief Set Scan Response Data for a advertisement set
745  * @param advertising_handle
746  * @param scan_response_data_length
747  * @param scan_response_data
748  * @return status
749  */
750 uint8_t gap_extended_advertising_set_scan_response_data(uint8_t advertising_handle, uint16_t scan_response_data_length, const uint8_t * scan_response_data);
751 
752 /**
753  * @brief Set data for periodic advertisement set
754  * @param advertising_handle
755  * @param periodic_data_length
756  * @param periodic_data
757  * @return status
758  */
759 uint8_t gap_periodic_advertising_set_data(uint8_t advertising_handle, uint16_t periodic_data_length, const uint8_t * periodic_data);
760 
761 /**
762  * @brief Start advertising advertising set
763  * @param advertising_handle
764  * @param timeout in 10ms, or 0 == no timeout
765  * @param num_extended_advertising_events Controller shall send, or 0 == no max number
766  * @return status
767  */
768 uint8_t gap_extended_advertising_start(uint8_t advertising_handle, uint16_t timeout, uint8_t num_extended_advertising_events);
769 
770 /**
771  * @brief Stop advertising
772  * @param advertising_handle
773  * @return status
774  */
775 uint8_t gap_extended_advertising_stop(uint8_t advertising_handle);
776 
777 /**
778  * @brief Start periodic advertising for given advertising set
779  * @param advertising_handle
780  * @param include_adi
781  * @return status
782  */
783 uint8_t gap_periodic_advertising_start(uint8_t advertising_handle, bool include_adi);
784 
785 /**
786  * @brief Stop periodic advertising for given advertising set
787  * @param advertising_handle
788  * @return status
789  */
790 uint8_t gap_periodic_advertising_stop(uint8_t advertising_handle);
791 
792 /**
793  * @brief Set Default Periodic Advertising Sync Transfer Parameters
794  * @note The parameters are used for all subsequent connections over the LE transport.
795  *       If mode != 0, an HCI_LE_Periodic_Advertising_Sync_Transfer_Received event will be emitted by the Controller
796  * @param mode 0 = ignore (default), 1 = periodic advertising events disabled
797  *             2 = periodic advertising events enabled with duplicate filtering
798  *             3 = periodic advertising events enabled with duplicate filtering
799  * @param skip The number of periodic advertising packets that can be skipped after a successful receive
800  * @param sync_timeout Range: 0x000A to 0x4000, Time = N*10 ms, Time Range: 100 ms to 163.84 s
801  * @param cte_type  bit 0 = Do not sync to packets with an AoA Constant Tone Extension
802  *                  bit 1 = Do not sync to packets with an AoD Constant Tone Extension with 1 μs slots
803  *                  bit 2 = Do not sync to packets with an AoD Constant Tone Extension with 2 μs slots
804  *                  bit 3 = Do not sync to packets without a Constant Tone Extension
805  * @return status
806  */
807 uint8_t gap_periodic_advertising_sync_transfer_set_default_parameters(uint8_t mode, uint16_t skip, uint16_t sync_timeout, uint8_t cte_type);
808 
809 /**
810  * @brief Send Periodic Advertising Sync Transfer to connected device
811  * @param con_handle of connected device
812  * @param service_data 16-bit data to transfer to remote host
813  * @param sync_handle of synchronized periodic advertising train to transfer
814  * @return status
815  */
816 uint8_t gap_periodic_advertising_sync_transfer_send(hci_con_handle_t con_handle, uint16_t service_data, hci_con_handle_t sync_handle);
817 
818 /**
819  * @brief Send Periodic Advertising Set Info Transfer to connected device
820  * @param con_handle of connected device
821  * @param service_data 16-bit data to transfer to remote host
822  * @param advertising_handle of local periodic advertising train to transfer
823  * @return status
824  */
825 uint8_t gap_periodic_advertising_set_info_transfer_send(hci_con_handle_t con_handle, uint16_t service_data, uint8_t advertising_handle);
826 
827 /**
828  * @brief Remove advertising set from Controller
829  * @param advertising_handle
830  * @return status
831  * @events GAP_SUBEVENT_ADVERTISING_SET_REMOVED
832  */
833 uint8_t gap_extended_advertising_remove(uint8_t advertising_handle);
834 
835 /**
836  * @brief Create Broadcast Isochronous Group (BIG)
837  * @param storage to use by stack, needs to stay valid until adv set is removed with gap_big_terminate
838  * @param big_params
839  * @return status
840  * @events GAP_SUBEVENT_BIG_CREATED unless interrupted by call to gap_big_terminate
841  */
842 uint8_t gap_big_create(le_audio_big_t * storage, le_audio_big_params_t * big_params);
843 
844 /**
845  * @brief Terminate Broadcast Isochronous Group (BIG)
846  * @param big_handle
847  * @return status
848  * @events GAP_SUBEVENT_BIG_TERMINATED
849  */
850 uint8_t gap_big_terminate(uint8_t big_handle);
851 
852 /**
853  * @brief Synchronize to Broadcast Isochronous Group (BIG)
854  * @param storage to use by stack, needs to stay valid until adv set is removed with gap_big_terminate
855  * @param big_sync_params
856  * @return status
857  * @events GAP_SUBEVENT_BIG_SYNC_CREATED unless interrupted by call to gap_big_sync_terminate
858  */
859 uint8_t gap_big_sync_create(le_audio_big_sync_t * storage, le_audio_big_sync_params_t * big_sync_params);
860 
861 /**
862  * @brief Stop synchronizing to Broadcast Isochronous Group (BIG). Triggers GAP_SUBEVENT_BIG_SYNC_STOPPED
863  * @note Also used to stop synchronizing before BIG Sync was established
864  * @param big_handle
865  * @return status
866  * @events GAP_SUBEVENT_BIG_SYNC_STOPPED
867  */
868 uint8_t gap_big_sync_terminate(uint8_t big_handle);
869 
870 /**
871  * @brief Create Connected Isochronous Group (CIG)
872  * @param storage to use by stack, needs to stay valid until CIG removed with gap_cig_remove
873  * @param cig_params
874  * @return status
875  * @events GAP_SUBEVENT_CIG_CREATED unless interrupted by call to gap_cig_remove
876  */
877 uint8_t gap_cig_create(le_audio_cig_t * storage, le_audio_cig_params_t * cig_params);
878 
879 /**
880  * @brief Remove Connected Isochronous Group (CIG)
881  * @param cig_handle
882  * @return status
883  * @events GAP_SUBEVENT_CIG_TERMINATED
884  */
885 uint8_t gap_cig_remove(uint8_t cig_handle);
886 
887 /**
888  * @brief Create Connected Isochronous Streams (CIS)
889  * @note number of CIS from cig_params in gap_cig_create is used
890  * @param cig_handle
891  * @param cis_con_handles array of CIS Connection Handles
892  * @param acl_con_handles array of ACL Connection Handles
893  * @return status
894  * @events GAP_SUBEVENT_CIS_CREATED unless interrupted by call to gap_cig_remove
895  */
896 uint8_t gap_cis_create(uint8_t cig_handle, hci_con_handle_t cis_con_handles [], hci_con_handle_t acl_con_handles []);
897 
898 /**
899  * @brief Accept Connected Isochronous Stream (CIS)
900  * @param cis_con_handle
901  * @return status
902  * @events GAP_SUBEVENT_CIS_CREATED
903  */
904 uint8_t gap_cis_accept(hci_con_handle_t cis_con_handle);
905 
906 /**
907  * @brief Reject Connected Isochronous Stream (CIS)
908  * @param cis_con_handle
909  * @return status
910  * @events GAP_SUBEVENT_CIS_CREATED
911  */
912 uint8_t gap_cis_reject(hci_con_handle_t cis_con_handle);
913 
914 /**
915  * @brief Set connection parameters for outgoing connections and connection parameter updates
916  * @param conn_scan_interval (unit: 0.625 msec), default: 60 ms
917  * @param conn_scan_window (unit: 0.625 msec), default: 30 ms
918  * @param conn_interval_min (unit: 1.25ms), default: 10 ms
919  * @param conn_interval_max (unit: 1.25ms), default: 30 ms
920  * @param conn_latency, default: 4
921  * @param supervision_timeout (unit: 10ms), default: 720 ms
922  * @param min_ce_length (unit: 0.625ms), default: 10 ms
923  * @param max_ce_length (unit: 0.625ms), default: 30 ms
924  */
925 void gap_set_connection_parameters(uint16_t conn_scan_interval, uint16_t conn_scan_window,
926     uint16_t conn_interval_min, uint16_t conn_interval_max, uint16_t conn_latency,
927     uint16_t supervision_timeout, uint16_t min_ce_length, uint16_t max_ce_length);
928 
929 /**
930  * @brief Set initiating PHYs for outgoing connections
931  * @param phy bitmask: 1 = LE 1M PHY, 2 = LE 2M PHY, 4 = LE Coded PHY
932  */
933 void gap_set_connection_phys(uint8_t phys);
934 
935 /**
936  * @brief Request an update of the connection parameter for a given LE connection
937  * @param handle
938  * @param conn_interval_min (unit: 1.25ms)
939  * @param conn_interval_max (unit: 1.25ms)
940  * @param conn_latency
941  * @param supervision_timeout (unit: 10ms)
942  * @return 0 if ok
943  */
944 int gap_request_connection_parameter_update(hci_con_handle_t con_handle, uint16_t conn_interval_min,
945 	uint16_t conn_interval_max, uint16_t conn_latency, uint16_t supervision_timeout);
946 
947 /**
948  * @brief Updates the connection parameters for a given LE connection
949  * @param handle
950  * @param conn_interval_min (unit: 1.25ms)
951  * @param conn_interval_max (unit: 1.25ms)
952  * @param conn_latency
953  * @param supervision_timeout (unit: 10ms)
954  * @return 0 if ok
955  */
956 int gap_update_connection_parameters(hci_con_handle_t con_handle, uint16_t conn_interval_min,
957 	uint16_t conn_interval_max, uint16_t conn_latency, uint16_t supervision_timeout);
958 
959 /**
960  * @brief Set accepted connection parameter range
961  * @param range
962  */
963 void gap_get_connection_parameter_range(le_connection_parameter_range_t * range);
964 
965 /**
966  * @brief Get accepted connection parameter range
967  * @param range
968  */
969 void gap_set_connection_parameter_range(le_connection_parameter_range_t * range);
970 
971 /**
972  * @brief Test if connection parameters are inside in existing rage
973  * @param conn_interval_min (unit: 1.25ms)
974  * @param conn_interval_max (unit: 1.25ms)
975  * @param conn_latency
976  * @param supervision_timeout (unit: 10ms)
977  * @return 1 if included
978  */
979 int gap_connection_parameter_range_included(le_connection_parameter_range_t * existing_range, uint16_t le_conn_interval_min, uint16_t le_conn_interval_max, uint16_t le_conn_latency, uint16_t le_supervision_timeout);
980 
981 /**
982  * @brief Set max number of connections in LE Peripheral role (if Bluetooth Controller supports it)
983  * @note: default: 1
984  * @param max_peripheral_connections
985  */
986 void gap_set_max_number_peripheral_connections(int max_peripheral_connections);
987 
988 /**
989  * @brief Add Device to Whitelist
990  * @param address_typ
991  * @param address
992  * @return status
993  */
994 uint8_t gap_whitelist_add(bd_addr_type_t address_type, const bd_addr_t address);
995 
996 /**
997  * @brief Remove Device from Whitelist
998  * @param address_typ
999  * @param address
1000  * @return status
1001  */
1002 uint8_t gap_whitelist_remove(bd_addr_type_t address_type, const bd_addr_t address);
1003 
1004 /**
1005  * @brief Clear Whitelist
1006  * @return status
1007  */
1008 uint8_t gap_whitelist_clear(void);
1009 
1010 /**
1011  * @brief Connect to remote LE device
1012  * @return status
1013  */
1014 uint8_t gap_connect(const bd_addr_t addr, bd_addr_type_t addr_type);
1015 
1016 /**
1017  * @brief Connect with Whitelist
1018  * @note Explicit whitelist management and this connect with whitelist replace deprecated gap_auto_connection_* functions
1019  * @return status
1020  */
1021 uint8_t gap_connect_with_whitelist(void);
1022 
1023 /**
1024  * @brief Cancel connection process initiated by gap_connect
1025  * @return status
1026  */
1027 uint8_t gap_connect_cancel(void);
1028 
1029 /**
1030  * @brief Auto Connection Establishment - Start Connecting to device
1031  * @deprecated Please setup Whitelist with gap_whitelist_* and start connecting with gap_connect_with_whitelist
1032  * @param address_type
1033  * @param address
1034  * @return status
1035  */
1036 uint8_t gap_auto_connection_start(bd_addr_type_t address_type, const bd_addr_t address);
1037 
1038 /**
1039  * @brief Auto Connection Establishment - Stop Connecting to device
1040  * @deprecated Please setup Whitelist with gap_whitelist_* and start connecting with gap_connect_with_whitelist
1041  * @param address_type
1042  * @param address
1043  * @return status
1044  */
1045 uint8_t gap_auto_connection_stop(bd_addr_type_t address_type, const bd_addr_t address);
1046 
1047 /**
1048  * @brief Auto Connection Establishment - Stop everything
1049  * @deprecated Please setup Whitelist with gap_whitelist_* and start connecting with gap_connect_with_whitelist
1050  * @note  Convenience function to stop all active auto connection attempts
1051  * @return status
1052  */
1053 uint8_t gap_auto_connection_stop_all(void);
1054 
1055 /**
1056  * @brief Set LE PHY
1057  * @param con_handle
1058  * @param all_phys 0 = set rx/tx, 1 = set only rx, 2 = set only tx
1059  * @param tx_phys 1 = 1M, 2 = 2M, 4 = Coded
1060  * @param rx_phys 1 = 1M, 2 = 2M, 4 = Coded
1061  * @param phy_options 0 = no preferred coding for Coded, 1 = S=2 coding (500 kbit), 2 = S=8 coding (125 kbit)
1062  * @return status
1063  */
1064 uint8_t gap_le_set_phy(hci_con_handle_t con_handle, uint8_t all_phys, uint8_t tx_phys, uint8_t rx_phys, uint16_t phy_options);
1065 
1066 /**
1067  * @brief Get connection interval
1068  * @param con_handle
1069  * @return connection interval, otherwise 0 if error
1070  */
1071 uint16_t gap_le_connection_interval(hci_con_handle_t con_handle);
1072 
1073 /**
1074  *
1075  * @brief Get encryption key size.
1076  * @param con_handle
1077  * @return 0 if not encrypted, 7-16 otherwise
1078  */
1079 uint8_t gap_encryption_key_size(hci_con_handle_t con_handle);
1080 
1081 /**
1082  * @brief Get authentication property.
1083  * @param con_handle
1084  * @return true if bonded with OOB/Passkey (AND MITM protection)
1085  */
1086 bool gap_authenticated(hci_con_handle_t con_handle);
1087 
1088 /**
1089  * @brief Get secure connection property
1090  * @param con_handle
1091  * @return true if bonded usiung LE Secure Connections
1092  */
1093 bool gap_secure_connection(hci_con_handle_t con_handle);
1094 
1095 /**
1096  * @brief Queries authorization state.
1097  * @param con_handle
1098  * @return authorization_state for the current session
1099  */
1100 authorization_state_t gap_authorization_state(hci_con_handle_t con_handle);
1101 
1102 /**
1103  * @brief Get bonded property (BR/EDR/LE)
1104  * @note LE: has to be called after identity resolving is complete
1105  * @param con_handle
1106  * @return true if bonded
1107  */
1108 bool gap_bonded(hci_con_handle_t con_handle);
1109 
1110 // Classic
1111 #ifdef ENABLE_CLASSIC
1112 
1113 /**
1114  * @brief Override page scan mode. Page scan mode enabled by l2cap when services are registered
1115  * @note Might be used to reduce power consumption while Bluetooth module stays powered but no (new)
1116  *       connections are expected
1117  */
1118 void gap_connectable_control(uint8_t enable);
1119 
1120 /**
1121  * @brief Allows to control if device is discoverable. OFF by default.
1122  */
1123 void gap_discoverable_control(uint8_t enable);
1124 
1125 /**
1126  * @brief Deletes link key for remote device with baseband address.
1127  * @param addr
1128  * @note On most desktop ports, the Link Key DB uses a TLV and there is one TLV storage per
1129  *       Controller resp. its Bluetooth Address. As the Bluetooth Address is retrieved during
1130  *       power up, this function only works, when the stack is in working state for these ports.
1131  */
1132 void gap_drop_link_key_for_bd_addr(bd_addr_t addr);
1133 
1134 /**
1135  * @brief Delete all stored link keys
1136  * @note On most desktop ports, the Link Key DB uses a TLV and there is one TLV storage per
1137  *       Controller resp. its Bluetooth Address. As the Bluetooth Address is retrieved during
1138  *       power up, this function only works, when the stack is in working state for these ports.
1139  */
1140 void gap_delete_all_link_keys(void);
1141 
1142 /**
1143  * @brief Store link key for remote device with baseband address
1144  * @param addr
1145  * @param link_key
1146  * @param link_key_type
1147  * @note On most desktop ports, the Link Key DB uses a TLV and there is one TLV storage per
1148  *       Controller resp. its Bluetooth Address. As the Bluetooth Address is retrieved during
1149  *       power up, this function only works, when the stack is in working state for these ports.
1150  */
1151 void gap_store_link_key_for_bd_addr(bd_addr_t addr, link_key_t link_key, link_key_type_t type);
1152 
1153 /**
1154  * @brief Get link for remote device with basband address
1155  * @param addr
1156  * @param link_key (out) is stored here
1157  * @param link_key_type (out) is stored here
1158  * @note On most desktop ports, the Link Key DB uses a TLV and there is one TLV storage per
1159  *       Controller resp. its Bluetooth Address. As the Bluetooth Address is retrieved during
1160  *       power up, this function only works, when the stack is in working state for these ports.
1161  */
1162 bool gap_get_link_key_for_bd_addr(bd_addr_t addr, link_key_t link_key, link_key_type_t * type);
1163 
1164 /**
1165  * @brief Setup Link Key iterator
1166  * @param it
1167  * @return 1 on success
1168  * @note On most desktop ports, the Link Key DB uses a TLV and there is one TLV storage per
1169  *       Controller resp. its Bluetooth Address. As the Bluetooth Address is retrieved during
1170  *       power up, this function only works, when the stack is in working state for these ports.
1171  */
1172 int gap_link_key_iterator_init(btstack_link_key_iterator_t * it);
1173 
1174 /**
1175  * @brief Get next Link Key
1176  * @param it
1177  * @brief addr
1178  * @brief link_key
1179  * @brief type of link key
1180  * @return 1, if valid link key found
1181  * @see note on gap_link_key_iterator_init
1182  */
1183 int gap_link_key_iterator_get_next(btstack_link_key_iterator_t * it, bd_addr_t bd_addr, link_key_t link_key, link_key_type_t * type);
1184 
1185 /**
1186  * @brief Frees resources allocated by iterator_init
1187  * @note Must be called after iteration to free resources
1188  * @param it
1189  * @see note on gap_link_key_iterator_init
1190  */
1191 void gap_link_key_iterator_done(btstack_link_key_iterator_t * it);
1192 
1193 /**
1194  * @brief Start GAP Classic Inquiry
1195  * @param duration in 1.28s units
1196  * @return status
1197  * @events: GAP_EVENT_INQUIRY_RESULT, GAP_EVENT_INQUIRY_COMPLETE
1198  */
1199 int gap_inquiry_start(uint8_t duration_in_1280ms_units);
1200 
1201 /**
1202  * @brief Start GAP Classic Periodic Inquiry
1203  * @param duration in 1.28s units
1204  * @param max_period_length between consecutive inquiries in 1.28s units
1205  * @param min_period_length between consecutive inquiries in 1.28s units
1206  * @return status
1207  * @events: GAP_EVENT_INQUIRY_RESULT, GAP_EVENT_INQUIRY_COMPLETE
1208  */
1209 uint8_t gap_inquiry_periodic_start(uint8_t duration, uint16_t max_period_length, uint16_t min_period_length);
1210 
1211 /**
1212  * @brief Stop GAP Classic Inquiry (regular or periodic)
1213  * @return 0 if ok
1214  * @events GAP_EVENT_INQUIRY_COMPLETE
1215  */
1216 int gap_inquiry_stop(void);
1217 
1218 /**
1219  * @brief Set LAP for GAP Classic Inquiry
1220  * @param lap GAP_IAC_GENERAL_INQUIRY (default), GAP_IAC_LIMITED_INQUIRY
1221  */
1222 void gap_inquiry_set_lap(uint32_t lap);
1223 
1224 /**
1225  * @brief Set Inquiry Scan Activity
1226  * @param inquiry_scan_interval range: 0x0012 to 0x1000; only even values are valid, Time = N * 0.625 ms
1227  * @param inquiry_scan_window range: 0x0011 to 0x1000; Time = N * 0.625 ms
1228  */
1229 void gap_inquiry_set_scan_activity(uint16_t inquiry_scan_interval, uint16_t inquiry_scan_window);
1230 
1231 /**
1232  * @brief Set Inquiry Transmit Power Level
1233  * @param tx_power range: -70 to 20 dBm
1234  */
1235 void gap_inquiry_set_transmit_power_level(int8_t tx_power);
1236 
1237 /**
1238  * @brief Remote Name Request
1239  * @param addr
1240  * @param page_scan_repetition_mode
1241  * @param clock_offset only used when bit 15 is set - pass 0 if not known
1242  * @events HCI_EVENT_REMOTE_NAME_REQUEST_COMPLETE
1243  */
1244 int gap_remote_name_request(const bd_addr_t addr, uint8_t page_scan_repetition_mode, uint16_t clock_offset);
1245 
1246 /**
1247  * @brief Legacy Pairing Pin Code Response
1248  * @note data is not copied, pointer has to stay valid
1249  * @param addr
1250  * @param pin
1251  * @return 0 if ok
1252  */
1253 int gap_pin_code_response(const bd_addr_t addr, const char * pin);
1254 
1255 /**
1256  * @brief Legacy Pairing Pin Code Response for binary data / non-strings
1257  * @note data is not copied, pointer has to stay valid
1258  * @param addr
1259  * @param pin_data
1260  * @param pin_len
1261  * @return 0 if ok
1262  */
1263 int gap_pin_code_response_binary(const bd_addr_t addr, const uint8_t * pin_data, uint8_t pin_len);
1264 
1265 /**
1266  * @brief Abort Legacy Pairing
1267  * @param addr
1268  * @param pin
1269  * @return 0 if ok
1270  */
1271 int gap_pin_code_negative(bd_addr_t addr);
1272 
1273 /**
1274  * @brief SSP Passkey Response
1275  * @param addr
1276  * @param passkey [0..999999]
1277  * @return 0 if ok
1278  */
1279 int gap_ssp_passkey_response(const bd_addr_t addr, uint32_t passkey);
1280 
1281 /**
1282  * @brief Abort SSP Passkey Entry/Pairing
1283  * @param addr
1284  * @param pin
1285  * @return 0 if ok
1286  */
1287 int gap_ssp_passkey_negative(const bd_addr_t addr);
1288 
1289 /**
1290  * @brief Accept SSP Numeric Comparison
1291  * @param addr
1292  * @param passkey
1293  * @return 0 if ok
1294  */
1295 int gap_ssp_confirmation_response(const bd_addr_t addr);
1296 
1297 /**
1298  * @brief Abort SSP Numeric Comparison/Pairing
1299  * @param addr
1300  * @param pin
1301  * @return 0 if ok
1302  */
1303 int gap_ssp_confirmation_negative(const bd_addr_t addr);
1304 
1305 /**
1306  * @brief Generate new OOB data
1307  * @note OOB data will be provided in GAP_EVENT_LOCAL_OOB_DATA and be used in future pairing procedures
1308  */
1309 void gap_ssp_generate_oob_data(void);
1310 
1311 /**
1312  * @brief Report Remote OOB Data
1313  * @note Pairing Hash and Randomizer are expected in big-endian byte format
1314  * @param bd_addr
1315  * @param c_192 Simple Pairing Hash C derived from P-192 public key
1316  * @param r_192 Simple Pairing Randomizer derived from P-192 public key
1317  * @param c_256 Simple Pairing Hash C derived from P-256 public key
1318  * @param r_256 Simple Pairing Randomizer derived from P-256 public key
1319  * @return status
1320  */
1321 uint8_t gap_ssp_remote_oob_data(const bd_addr_t addr, const uint8_t * c_192, const uint8_t * r_192, const uint8_t * c_256, const uint8_t * r_256);
1322 
1323 /**
1324  * Send SSP IO Capabilities Reply
1325  * @note IO Capabilities (Negative) Reply is sent automatically unless ENABLE_EXPLICIT_IO_CAPABILITIES_REPLY
1326  * @param addr
1327  * @return status
1328  */
1329 uint8_t gap_ssp_io_capabilities_response(const bd_addr_t addr);
1330 
1331 /**
1332  * Send SSP IO Capabilities Negative Reply
1333  * @note IO Capabilities (Negative) Reply is sent automatically unless ENABLE_EXPLICIT_IO_CAPABILITIES_REPLY
1334  * @param addr
1335  * @return status
1336  */
1337 uint8_t gap_ssp_io_capabilities_negative(const bd_addr_t addr);
1338 
1339 /**
1340  * Send Link Key Reponse
1341  * @note Link Key (Negative) Reply is sent automatically unless ENABLE_EXPLICIT_LINK_KEY_RESPONSE
1342  * @param addr
1343  * @param link_key
1344  * @param type or INVALID_LINK_KEY if link key not available
1345  * @return status
1346  */
1347  uint8_t gap_send_link_key_response(const bd_addr_t addr, link_key_t link_key, link_key_type_t type);
1348 
1349 /**
1350  * @brief Enter Sniff mode
1351  * @param con_handle
1352  * @param sniff_min_interval range: 0x0002 to 0xFFFE; only even values are valid, Time = N * 0.625 ms
1353  * @param sniff_max_interval range: 0x0002 to 0xFFFE; only even values are valid, Time = N * 0.625 ms
1354  * @param sniff_attempt Number of Baseband receive slots for sniff attempt.
1355  * @param sniff_timeout Number of Baseband receive slots for sniff timeout.
1356  * @return status
1357  */
1358 uint8_t gap_sniff_mode_enter(hci_con_handle_t con_handle, uint16_t sniff_min_interval, uint16_t sniff_max_interval, uint16_t sniff_attempt, uint16_t sniff_timeout);
1359 
1360 /**
1361  * @brief Exit Sniff mode
1362  * @param con_handle
1363  * @return status
1364  */
1365 uint8_t gap_sniff_mode_exit(hci_con_handle_t con_handle);
1366 
1367 /**
1368  * @brief Configure Sniff Subrating
1369  * @param con_handle
1370  * @param max_latency range: 0x0002 to 0xFFFE; Time = N * 0.625 ms
1371  * @param min_remote_timeout range:  0x0002 to 0xFFFE; Time = N * 0.625 ms
1372  * @param min_local_timeout range:  0x0002 to 0xFFFE; Time = N * 0.625 ms
1373  * @return status
1374  */
1375 uint8_t gap_sniff_subrating_configure(hci_con_handle_t con_handle, uint16_t max_latency, uint16_t min_remote_timeout, uint16_t min_local_timeout);
1376 
1377 /**
1378  * @Brief Set QoS
1379  * @param con_handle
1380  * @param service_type
1381  * @param token_rate
1382  * @param peak_bandwidth
1383  * @param latency
1384  * @param delay_variation
1385  * @return status
1386  */
1387 uint8_t gap_qos_set(hci_con_handle_t con_handle, hci_service_type_t service_type, uint32_t token_rate, uint32_t peak_bandwidth, uint32_t latency, uint32_t delay_variation);
1388 
1389 #endif
1390 
1391 // LE
1392 
1393 /**
1394  * @brief Get own addr type and address used for LE for next scan/advertisement/connect operation
1395  */
1396 void gap_le_get_own_address(uint8_t * addr_type, bd_addr_t addr);
1397 
1398 /**
1399  * @brief Get own addr type and address used for LE advertisements (Peripheral)
1400  */
1401 void gap_le_get_own_advertisements_address(uint8_t * addr_type, bd_addr_t addr);
1402 
1403 /**
1404  * @brief Get own addr type and address used for LE Extended Advertisiing (Peripheral)
1405  */
1406 void gap_le_get_own_advertising_set_address(uint8_t * addr_type, bd_addr_t addr, uint8_t advertising_handle);
1407 
1408 /**
1409  * @brief Get own addr type and address used for LE connections (Central)
1410  */
1411 void gap_le_get_own_connection_address(uint8_t * addr_type, bd_addr_t addr);
1412 
1413 /**
1414  * @brief Get state of connection re-encryption for bonded devices when in central role
1415  * @note used by gatt_client and att_server to wait for re-encryption
1416  * @param con_handle
1417  * @return 1 if security setup is active
1418  */
1419 bool gap_reconnect_security_setup_active(hci_con_handle_t con_handle);
1420 
1421 /**
1422  * @brief Delete bonding information for remote device
1423  * @note On most desktop ports, the LE Device DB uses a TLV and there is one TLV storage per
1424  *       Controller resp. its Bluetooth Address. As the Bluetooth Address is retrieved during
1425  *       power up, this function only works, when the stack is in working state for these ports.
1426  * @param address_type
1427  * @param address
1428  */
1429 void gap_delete_bonding(bd_addr_type_t address_type, bd_addr_t address);
1430 
1431 /**
1432  * LE Privacy 1.2 - requires support by Controller and ENABLE_LE_RESOLVING_LIST to be defined
1433  */
1434 
1435 /**
1436  * Set Privacy Mode for use in Resolving List. Default: LE_PRIVACY_MODE_DEVICE
1437  * @note Only applies for new devices added to resolving list, please call before startup
1438  * @param privacy_mode
1439  */
1440 void gap_set_peer_privacy_mode(le_privacy_mode_t privacy_mode );
1441 
1442 /**
1443  * @brief Load LE Device DB entries into Controller Resolving List to allow filtering on
1444  *        bonded devies with resolvable private addresses
1445  * @return EROOR_CODE_SUCCESS if supported by Controller
1446  */
1447 uint8_t gap_load_resolving_list_from_le_device_db(void);
1448 
1449 /**
1450  * @brief Get local persistent IRK
1451  */
1452 const uint8_t * gap_get_persistent_irk(void);
1453 
1454 /* API_END*/
1455 
1456 #if defined __cplusplus
1457 }
1458 #endif
1459 
1460 #endif // GAP_H
1461