1 /* hci.h - Bluetooth Host Control Interface types */
2 
3 /*
4  * Copyright (c) 2015-2016 Intel Corporation
5  * Copyright (c) 2023 Nordic Semiconductor ASA
6  *
7  * SPDX-License-Identifier: Apache-2.0
8  */
9 #ifndef ZEPHYR_INCLUDE_BLUETOOTH_HCI_TYPES_H_
10 #define ZEPHYR_INCLUDE_BLUETOOTH_HCI_TYPES_H_
11 
12 #include <stdbool.h>
13 #include <stdint.h>
14 #include <string.h>
15 
16 #include <zephyr/toolchain.h>
17 #include <zephyr/types.h>
18 #include <zephyr/sys/util.h>
19 #include <zephyr/bluetooth/addr.h>
20 
21 #ifdef __cplusplus
22 extern "C" {
23 #endif
24 
25 /* Bluetooth spec v5.4 Vol 4, Part A Table 2.1: HCI packet indicators
26  * The following definitions are intended for use with the UART Transport Layer and
27  * may be reused with other transport layers if desired.
28  */
29 #define BT_HCI_H4_NONE                  0x00    /* None of the known packet types */
30 #define BT_HCI_H4_CMD                   0x01    /* HCI Command packet */
31 #define BT_HCI_H4_ACL                   0x02    /* HCI ACL Data packet */
32 #define BT_HCI_H4_SCO                   0x03    /* HCI Synchronous Data packet */
33 #define BT_HCI_H4_EVT                   0x04    /* HCI Event packet */
34 #define BT_HCI_H4_ISO                   0x05    /* HCI ISO Data packet */
35 
36 #define BT_HCI_OWN_ADDR_PUBLIC          0x00
37 #define BT_HCI_OWN_ADDR_RANDOM          0x01
38 #define BT_HCI_OWN_ADDR_RPA_OR_PUBLIC   0x02
39 #define BT_HCI_OWN_ADDR_RPA_OR_RANDOM   0x03
40 #define BT_HCI_OWN_ADDR_RPA_MASK        0x02
41 
42 #define BT_HCI_PEER_ADDR_RPA_UNRESOLVED 0xfe
43 #define BT_HCI_PEER_ADDR_ANONYMOUS      0xff
44 
45 #define BT_ENC_KEY_SIZE_MIN             0x07
46 #define BT_ENC_KEY_SIZE_MAX             0x10
47 
48 #define BT_HCI_ADV_HANDLE_INVALID       0xff
49 #define BT_HCI_SYNC_HANDLE_INVALID      0xffff
50 #define BT_HCI_PAWR_SUBEVENT_MAX        128
51 
52 /* Bluetooth spec v5.4 Vol 4, Part E - 5.4.3 HCI Synchronous Data Packets */
53 struct bt_hci_sco_hdr {
54 	uint16_t handle; /* 12 bit handle, 2 bit Packet Status Flag, 1 bit RFU */
55 	uint8_t  len;
56 } __packed;
57 #define BT_HCI_SCO_HDR_SIZE             3
58 
59 /* Bluetooth spec v5.4 Vol 4, Part E - 5.4.4 HCI Event Packet */
60 struct bt_hci_evt_hdr {
61 	uint8_t  evt;
62 	uint8_t  len;
63 } __packed;
64 #define BT_HCI_EVT_HDR_SIZE             2
65 
66 #define BT_ACL_START_NO_FLUSH           0x00
67 #define BT_ACL_CONT                     0x01
68 #define BT_ACL_START                    0x02
69 #define BT_ACL_COMPLETE                 0x03
70 
71 #define BT_ACL_POINT_TO_POINT           0x00
72 #define BT_ACL_BROADCAST                0x01
73 
74 #define BT_ACL_HANDLE_MASK              BIT_MASK(12)
75 
76 #define bt_acl_handle(h)                ((h) & BT_ACL_HANDLE_MASK)
77 #define bt_acl_flags(h)                 ((h) >> 12)
78 #define bt_acl_flags_pb(f)              ((f) & BIT_MASK(2))
79 #define bt_acl_flags_bc(f)              ((f) >> 2)
80 #define bt_acl_handle_pack(h, f)        ((h) | ((f) << 12))
81 
82 /* Bluetooth spec v5.4 Vol 4, Part E - 5.4.2 ACL Data Packets */
83 struct bt_hci_acl_hdr {
84 	uint16_t handle;
85 	uint16_t len;
86 } __packed;
87 #define BT_HCI_ACL_HDR_SIZE             4
88 
89 #define BT_ISO_START                    0x00
90 #define BT_ISO_CONT                     0x01
91 #define BT_ISO_SINGLE                   0x02
92 #define BT_ISO_END                      0x03
93 
94 #define bt_iso_handle(h)                ((h) & 0x0fff)
95 #define bt_iso_flags(h)                 ((h) >> 12)
96 #define bt_iso_flags_pb(f)              ((f) & 0x0003)
97 #define bt_iso_flags_ts(f)              (((f) >> 2) & 0x0001)
98 #define bt_iso_pack_flags(pb, ts) \
99 	(((pb) & 0x0003) | (((ts) & 0x0001) << 2))
100 #define bt_iso_handle_pack(h, pb, ts) \
101 	((h) | (bt_iso_pack_flags(pb, ts) << 12))
102 #define bt_iso_hdr_len(h)                ((h) & BIT_MASK(14))
103 
104 #define BT_ISO_DATA_VALID                0x00
105 #define BT_ISO_DATA_INVALID              0x01
106 #define BT_ISO_DATA_NOP                  0x02
107 
108 #define bt_iso_pkt_len(h)                ((h) & BIT_MASK(12))
109 #define bt_iso_pkt_flags(h)              ((h) >> 14)
110 #define bt_iso_pkt_len_pack(h, f)        (((h) & BIT_MASK(12)) | ((f) << 14))
111 
112 struct bt_hci_iso_sdu_hdr {
113 	uint16_t sn;
114 	uint16_t slen; /* 12 bit len, 2 bit RFU, 2 bit packet status */
115 } __packed;
116 #define BT_HCI_ISO_SDU_HDR_SIZE          4
117 
118 struct bt_hci_iso_sdu_ts_hdr {
119 	uint32_t ts;
120 	struct bt_hci_iso_sdu_hdr sdu;
121 } __packed;
122 #define BT_HCI_ISO_SDU_TS_HDR_SIZE       8
123 
124 /* Bluetooth spec v5.4 Vol 4, Part E - 5.4.5 HCI ISO Data Packets */
125 struct bt_hci_iso_hdr {
126 	uint16_t handle; /* 12 bit handle, 2 bit PB flags, 1 bit TS_Flag, 1 bit RFU */
127 	uint16_t len; /* 14 bits, 2 bits RFU */
128 } __packed;
129 #define BT_HCI_ISO_HDR_SIZE             4
130 
131 /* Bluetooth spec v5.4 Vol 4, Part E - 5.4.1 HCI Command Packet */
132 struct bt_hci_cmd_hdr {
133 	uint16_t opcode;
134 	uint8_t  param_len;
135 } __packed;
136 #define BT_HCI_CMD_HDR_SIZE             3
137 
138 /* Supported Commands */
139 #define BT_CMD_TEST(cmd, octet, bit)            (cmd[octet] & BIT(bit))
140 #define BT_CMD_LE_STATES(cmd)                   BT_CMD_TEST(cmd, 28, 3)
141 
142 #define BT_FEAT_TEST(feat, page, octet, bit)    (feat[page][octet] & BIT(bit))
143 
144 #define BT_FEAT_BREDR(feat)                     !BT_FEAT_TEST(feat, 0, 4, 5)
145 #define BT_FEAT_LE(feat)                        BT_FEAT_TEST(feat, 0, 4, 6)
146 #define BT_FEAT_EXT_FEATURES(feat)              BT_FEAT_TEST(feat, 0, 7, 7)
147 #define BT_FEAT_HOST_SSP(feat)                  BT_FEAT_TEST(feat, 1, 0, 0)
148 #define BT_FEAT_SC(feat)                        BT_FEAT_TEST(feat, 2, 1, 0)
149 
150 #define BT_FEAT_LMP_SCO_CAPABLE(feat)           BT_FEAT_TEST(feat, 0, 1, 3)
151 #define BT_FEAT_LMP_ESCO_CAPABLE(feat)          BT_FEAT_TEST(feat, 0, 3, 7)
152 #define BT_FEAT_HV2_PKT(feat)                   BT_FEAT_TEST(feat, 0, 1, 4)
153 #define BT_FEAT_HV3_PKT(feat)                   BT_FEAT_TEST(feat, 0, 1, 5)
154 #define BT_FEAT_EV4_PKT(feat)                   BT_FEAT_TEST(feat, 0, 4, 0)
155 #define BT_FEAT_EV5_PKT(feat)                   BT_FEAT_TEST(feat, 0, 4, 1)
156 #define BT_FEAT_2EV3_PKT(feat)                  BT_FEAT_TEST(feat, 0, 5, 5)
157 #define BT_FEAT_3EV3_PKT(feat)                  BT_FEAT_TEST(feat, 0, 5, 6)
158 #define BT_FEAT_3SLOT_PKT(feat)                 BT_FEAT_TEST(feat, 0, 5, 7)
159 
160 /* LE features */
161 #define BT_LE_FEAT_BIT_ENC                      0
162 #define BT_LE_FEAT_BIT_CONN_PARAM_REQ           1
163 #define BT_LE_FEAT_BIT_EXT_REJ_IND              2
164 #define BT_LE_FEAT_BIT_PER_INIT_FEAT_XCHG       3
165 #define BT_LE_FEAT_BIT_PING                     4
166 #define BT_LE_FEAT_BIT_DLE                      5
167 #define BT_LE_FEAT_BIT_PRIVACY                  6
168 #define BT_LE_FEAT_BIT_EXT_SCAN                 7
169 #define BT_LE_FEAT_BIT_PHY_2M                   8
170 #define BT_LE_FEAT_BIT_SMI_TX                   9
171 #define BT_LE_FEAT_BIT_SMI_RX                   10
172 #define BT_LE_FEAT_BIT_PHY_CODED                11
173 #define BT_LE_FEAT_BIT_EXT_ADV                  12
174 #define BT_LE_FEAT_BIT_PER_ADV                  13
175 #define BT_LE_FEAT_BIT_CHAN_SEL_ALGO_2          14
176 #define BT_LE_FEAT_BIT_PWR_CLASS_1              15
177 #define BT_LE_FEAT_BIT_MIN_USED_CHAN_PROC       16
178 #define BT_LE_FEAT_BIT_CONN_CTE_REQ             17
179 #define BT_LE_FEAT_BIT_CONN_CTE_RESP            18
180 #define BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_TX    19
181 #define BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_RX    20
182 #define BT_LE_FEAT_BIT_ANT_SWITCH_TX_AOD        21
183 #define BT_LE_FEAT_BIT_ANT_SWITCH_RX_AOA        22
184 #define BT_LE_FEAT_BIT_RX_CTE                   23
185 #define BT_LE_FEAT_BIT_PAST_SEND                24
186 #define BT_LE_FEAT_BIT_PAST_RECV                25
187 #define BT_LE_FEAT_BIT_SCA_UPDATE               26
188 #define BT_LE_FEAT_BIT_REMOTE_PUB_KEY_VALIDATE  27
189 #define BT_LE_FEAT_BIT_CIS_CENTRAL              28
190 #define BT_LE_FEAT_BIT_CIS_PERIPHERAL           29
191 #define BT_LE_FEAT_BIT_ISO_BROADCASTER          30
192 #define BT_LE_FEAT_BIT_SYNC_RECEIVER            31
193 #define BT_LE_FEAT_BIT_ISO_CHANNELS             32
194 #define BT_LE_FEAT_BIT_PWR_CTRL_REQ             33
195 #define BT_LE_FEAT_BIT_PWR_CHG_IND              34
196 #define BT_LE_FEAT_BIT_PATH_LOSS_MONITOR        35
197 #define BT_LE_FEAT_BIT_PER_ADV_ADI_SUPP         36
198 #define BT_LE_FEAT_BIT_CONN_SUBRATING           37
199 #define BT_LE_FEAT_BIT_CONN_SUBRATING_HOST_SUPP 38
200 #define BT_LE_FEAT_BIT_CHANNEL_CLASSIFICATION   39
201 #define BT_LE_FEAT_BIT_ADV_CODING_SEL           40
202 #define BT_LE_FEAT_BIT_ADV_CODING_SEL_HOST      41
203 #define BT_LE_FEAT_BIT_DECISION_ADV_FILTER      42
204 #define BT_LE_FEAT_BIT_PAWR_ADVERTISER          43
205 #define BT_LE_FEAT_BIT_PAWR_SCANNER             44
206 #define BT_LE_FEAT_BIT_UNSEG_FRAMED_MODE        45
207 #define BT_LE_FEAT_BIT_CHANNEL_SOUNDING         46
208 #define BT_LE_FEAT_BIT_CHANNEL_SOUNDING_HOST    47
209 #define BT_LE_FEAT_BIT_CHANNEL_SOUNDING_TONE_QUAL_IND    48
210 #define BT_LE_FEAT_BIT_LL_EXTENDED_FEAT_SET     63
211 
212 #define BT_LE_FEAT_TEST(feat, n)                (feat[(n) >> 3] & \
213 						 BIT((n) & 7))
214 
215 #define BT_FEAT_LE_ENCR(feat)                     BT_LE_FEAT_TEST(feat, \
216 						  BT_LE_FEAT_BIT_ENC)
217 #define BT_FEAT_LE_CONN_PARAM_REQ_PROC(feat)      BT_LE_FEAT_TEST(feat, \
218 						  BT_LE_FEAT_BIT_CONN_PARAM_REQ)
219 #define BT_FEAT_LE_PER_INIT_FEAT_XCHG(feat)       BT_LE_FEAT_TEST(feat, \
220 						  BT_LE_FEAT_BIT_PER_INIT_FEAT_XCHG)
221 #define BT_FEAT_LE_DLE(feat)                      BT_LE_FEAT_TEST(feat, \
222 						  BT_LE_FEAT_BIT_DLE)
223 #define BT_FEAT_LE_PHY_2M(feat)                   BT_LE_FEAT_TEST(feat, \
224 						  BT_LE_FEAT_BIT_PHY_2M)
225 #define BT_FEAT_LE_PHY_CODED(feat)                BT_LE_FEAT_TEST(feat, \
226 						  BT_LE_FEAT_BIT_PHY_CODED)
227 #define BT_FEAT_LE_PRIVACY(feat)                  BT_LE_FEAT_TEST(feat, \
228 						  BT_LE_FEAT_BIT_PRIVACY)
229 #define BT_FEAT_LE_EXT_ADV(feat)                  BT_LE_FEAT_TEST(feat, \
230 						  BT_LE_FEAT_BIT_EXT_ADV)
231 #define BT_FEAT_LE_EXT_PER_ADV(feat)              BT_LE_FEAT_TEST(feat, \
232 						  BT_LE_FEAT_BIT_PER_ADV)
233 #define BT_FEAT_LE_CONNECTION_CTE_REQ(feat)       BT_LE_FEAT_TEST(feat, \
234 						  BT_LE_FEAT_BIT_CONN_CTE_REQ)
235 #define BT_FEAT_LE_CONNECTION_CTE_RESP(feat)      BT_LE_FEAT_TEST(feat, \
236 						  BT_LE_FEAT_BIT_CONN_CTE_RESP)
237 #define BT_FEAT_LE_CONNECTIONLESS_CTE_TX(feat)    BT_LE_FEAT_TEST(feat, \
238 						  BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_TX)
239 #define BT_FEAT_LE_CONNECTIONLESS_CTE_RX(feat)    BT_LE_FEAT_TEST(feat, \
240 						  BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_RX)
241 #define BT_FEAT_LE_ANT_SWITCH_TX_AOD(feat)        BT_LE_FEAT_TEST(feat, \
242 						  BT_LE_FEAT_BIT_ANT_SWITCH_TX_AOD)
243 #define BT_FEAT_LE_ANT_SWITCH_RX_AOA(feat)        BT_LE_FEAT_TEST(feat, \
244 						  BT_LE_FEAT_BIT_ANT_SWITCH_RX_AOA)
245 #define BT_FEAT_LE_RX_CTE(feat)                   BT_LE_FEAT_TEST(feat, \
246 						  BT_LE_FEAT_BIT_RX_CTE)
247 #define BT_FEAT_LE_PAST_SEND(feat)                BT_LE_FEAT_TEST(feat, \
248 						  BT_LE_FEAT_BIT_PAST_SEND)
249 #define BT_FEAT_LE_PAST_RECV(feat)                BT_LE_FEAT_TEST(feat, \
250 						  BT_LE_FEAT_BIT_PAST_RECV)
251 #define BT_FEAT_LE_CIS_CENTRAL(feat)              BT_LE_FEAT_TEST(feat, \
252 						  BT_LE_FEAT_BIT_CIS_CENTRAL)
253 #define BT_FEAT_LE_CIS_PERIPHERAL(feat)           BT_LE_FEAT_TEST(feat, \
254 						  BT_LE_FEAT_BIT_CIS_PERIPHERAL)
255 #define BT_FEAT_LE_ISO_BROADCASTER(feat)          BT_LE_FEAT_TEST(feat, \
256 						  BT_LE_FEAT_BIT_ISO_BROADCASTER)
257 #define BT_FEAT_LE_SYNC_RECEIVER(feat)            BT_LE_FEAT_TEST(feat, \
258 						  BT_LE_FEAT_BIT_SYNC_RECEIVER)
259 #define BT_FEAT_LE_ISO_CHANNELS(feat)             BT_LE_FEAT_TEST(feat, \
260 						  BT_LE_FEAT_BIT_ISO_CHANNELS)
261 #define BT_FEAT_LE_PWR_CTRL_REQ(feat)             BT_LE_FEAT_TEST(feat, \
262 						  BT_LE_FEAT_BIT_PWR_CTRL_REQ)
263 #define BT_FEAT_LE_PWR_CHG_IND(feat)              BT_LE_FEAT_TEST(feat, \
264 						  BT_LE_FEAT_BIT_PWR_CHG_IND)
265 #define BT_FEAT_LE_PATH_LOSS_MONITOR(feat)        BT_LE_FEAT_TEST(feat, \
266 						  BT_LE_FEAT_BIT_PATH_LOSS_MONITOR)
267 #define BT_FEAT_LE_PER_ADV_ADI_SUPP(feat)         BT_LE_FEAT_TEST(feat, \
268 						  BT_LE_FEAT_BIT_PER_ADV_ADI_SUPP)
269 #define BT_FEAT_LE_CONN_SUBRATING(feat)           BT_LE_FEAT_TEST(feat, \
270 						  BT_LE_FEAT_BIT_CONN_SUBRATING)
271 #define BT_FEAT_LE_CONN_SUBRATING_HOST_SUPP(feat) BT_LE_FEAT_TEST(feat, \
272 						  BT_LE_FEAT_BIT_CONN_SUBRATING_HOST_SUPP)
273 #define BT_FEAT_LE_CHANNEL_CLASSIFICATION(feat)   BT_LE_FEAT_TEST(feat, \
274 						  BT_LE_FEAT_BIT_CHANNEL_CLASSIFICATION)
275 #define BT_FEAT_LE_ADV_CODING_SEL(feat)	          BT_LE_FEAT_TEST(feat, \
276 						  BT_LE_FEAT_BIT_ADV_CODING_SEL)
277 #define BT_FEAT_LE_ADV_CODING_SEL_HOST(feat)	  BT_LE_FEAT_TEST(feat, \
278 						  BT_LE_FEAT_BIT_ADV_CODING_SEL_HOST)
279 #define BT_FEAT_LE_PAWR_ADVERTISER(feat)	  BT_LE_FEAT_TEST(feat, \
280 						  BT_LE_FEAT_BIT_PAWR_ADVERTISER)
281 #define BT_FEAT_LE_PAWR_SCANNER(feat)             BT_LE_FEAT_TEST(feat, \
282 						  BT_LE_FEAT_BIT_PAWR_SCANNER)
283 #define BT_FEAT_LE_CHANNEL_SOUNDING(feat)         BT_LE_FEAT_TEST(feat, \
284 						  BT_LE_FEAT_BIT_CHANNEL_SOUNDING)
285 #define BT_FEAT_LE_CHANNEL_SOUNDING_HOST(feat)    BT_LE_FEAT_TEST(feat, \
286 						  BT_LE_FEAT_BIT_CHANNEL_SOUNDING_HOST)
287 
288 #define BT_FEAT_LE_CIS(feat)            (BT_FEAT_LE_CIS_CENTRAL(feat) | \
289 					BT_FEAT_LE_CIS_PERIPHERAL(feat))
290 #define BT_FEAT_LE_BIS(feat)            (BT_FEAT_LE_ISO_BROADCASTER(feat) | \
291 					BT_FEAT_LE_SYNC_RECEIVER(feat))
292 #define BT_FEAT_LE_ISO(feat)            (BT_FEAT_LE_CIS(feat) | \
293 					BT_FEAT_LE_BIS(feat))
294 
295 /* LE States. See Core_v5.4, Vol 4, Part E, Section 7.8.27 */
296 #define BT_LE_STATES_PER_CONN_ADV(states)     (states & BIT64_MASK(38))
297 
298 #if defined(CONFIG_BT_SCAN_AND_INITIATE_IN_PARALLEL)
299 /* Both passive and active scanner can be run in parallel with initiator. */
300 #define BT_LE_STATES_SCAN_INIT(states) ((states) & BIT64_MASK(22) && \
301 					(states) & BIT64_MASK(23))
302 
303 #else
304 #define BT_LE_STATES_SCAN_INIT(states)  0
305 #endif
306 
307 /* Bonding/authentication types */
308 #define BT_HCI_NO_BONDING                       0x00
309 #define BT_HCI_NO_BONDING_MITM                  0x01
310 #define BT_HCI_DEDICATED_BONDING                0x02
311 #define BT_HCI_DEDICATED_BONDING_MITM           0x03
312 #define BT_HCI_GENERAL_BONDING                  0x04
313 #define BT_HCI_GENERAL_BONDING_MITM             0x05
314 
315 /*
316  * MITM protection is enabled in SSP authentication requirements octet when
317  * LSB bit is set.
318  */
319 #define BT_MITM                                 0x01
320 
321 /* I/O capabilities */
322 #define BT_IO_DISPLAY_ONLY                      0x00
323 #define BT_IO_DISPLAY_YESNO                     0x01
324 #define BT_IO_KEYBOARD_ONLY                     0x02
325 #define BT_IO_NO_INPUT_OUTPUT                   0x03
326 
327 /* SCO packet types */
328 #define HCI_PKT_TYPE_HV1                        0x0020
329 #define HCI_PKT_TYPE_HV2                        0x0040
330 #define HCI_PKT_TYPE_HV3                        0x0080
331 
332 /* eSCO packet types */
333 #define HCI_PKT_TYPE_SCO_HV1                    0x0001
334 #define HCI_PKT_TYPE_SCO_HV2                    0x0002
335 #define HCI_PKT_TYPE_SCO_HV3                    0x0004
336 #define HCI_PKT_TYPE_ESCO_EV3                   0x0008
337 #define HCI_PKT_TYPE_ESCO_EV4                   0x0010
338 #define HCI_PKT_TYPE_ESCO_EV5                   0x0020
339 #define HCI_PKT_TYPE_ESCO_2EV3                  0x0040
340 #define HCI_PKT_TYPE_ESCO_3EV3                  0x0080
341 #define HCI_PKT_TYPE_ESCO_2EV5                  0x0100
342 #define HCI_PKT_TYPE_ESCO_3EV5                  0x0200
343 
344 
345 #define ESCO_PKT_MASK                           (HCI_PKT_TYPE_SCO_HV1 | \
346 						 HCI_PKT_TYPE_SCO_HV2 | \
347 						 HCI_PKT_TYPE_SCO_HV3 | \
348 						 HCI_PKT_TYPE_ESCO_EV3 | \
349 						 HCI_PKT_TYPE_ESCO_EV4 | \
350 						 HCI_PKT_TYPE_ESCO_EV5)
351 #define SCO_PKT_MASK                            (HCI_PKT_TYPE_SCO_HV1 | \
352 						 HCI_PKT_TYPE_SCO_HV2 | \
353 						 HCI_PKT_TYPE_SCO_HV3)
354 #define EDR_ESCO_PKT_MASK                       (HCI_PKT_TYPE_ESCO_2EV3 | \
355 						 HCI_PKT_TYPE_ESCO_3EV3 | \
356 						 HCI_PKT_TYPE_ESCO_2EV5 | \
357 						 HCI_PKT_TYPE_ESCO_3EV5)
358 
359 /* HCI BR/EDR link types */
360 #define BT_HCI_SCO                              0x00
361 #define BT_HCI_ACL                              0x01
362 #define BT_HCI_ESCO                             0x02
363 
364 /* OpCode Group Fields */
365 #define BT_OGF_LINK_CTRL                        0x01
366 #define BT_OGF_BASEBAND                         0x03
367 #define BT_OGF_INFO                             0x04
368 #define BT_OGF_STATUS                           0x05
369 #define BT_OGF_LE                               0x08
370 #define BT_OGF_VS                               0x3f
371 
372 /* Construct OpCode from OGF and OCF */
373 #define BT_OP(ogf, ocf)                         ((ocf) | ((ogf) << 10))
374 
375 /* Invalid opcode */
376 #define BT_OP_NOP				0x0000
377 
378 /* Obtain OGF from OpCode */
379 #define BT_OGF(opcode)                          (((opcode) >> 10) & BIT_MASK(6))
380 /* Obtain OCF from OpCode */
381 #define BT_OCF(opcode)                          ((opcode) & BIT_MASK(10))
382 
383 #define BT_HCI_OP_INQUIRY                       BT_OP(BT_OGF_LINK_CTRL, 0x0001) /* 0x0401 */
384 struct bt_hci_op_inquiry {
385 	uint8_t lap[3];
386 	uint8_t length;
387 	uint8_t num_rsp;
388 } __packed;
389 
390 #define BT_HCI_OP_INQUIRY_CANCEL                BT_OP(BT_OGF_LINK_CTRL, 0x0002) /* 0x0402 */
391 
392 #define BT_HCI_OP_CONNECT                       BT_OP(BT_OGF_LINK_CTRL, 0x0005) /* 0x0405 */
393 struct bt_hci_cp_connect {
394 	bt_addr_t bdaddr;
395 	uint16_t  packet_type;
396 	uint8_t   pscan_rep_mode;
397 	uint8_t   reserved;
398 	uint16_t  clock_offset;
399 	uint8_t   allow_role_switch;
400 } __packed;
401 
402 #define BT_HCI_OP_DISCONNECT                    BT_OP(BT_OGF_LINK_CTRL, 0x0006) /* 0x0406 */
403 struct bt_hci_cp_disconnect {
404 	uint16_t handle;
405 	uint8_t  reason;
406 } __packed;
407 
408 #define BT_HCI_OP_CONNECT_CANCEL                BT_OP(BT_OGF_LINK_CTRL, 0x0008) /* 0x0408 */
409 struct bt_hci_cp_connect_cancel {
410 	bt_addr_t bdaddr;
411 } __packed;
412 struct bt_hci_rp_connect_cancel {
413 	uint8_t   status;
414 	bt_addr_t bdaddr;
415 } __packed;
416 
417 #define BT_HCI_OP_ACCEPT_CONN_REQ               BT_OP(BT_OGF_LINK_CTRL, 0x0009) /* 0x0409 */
418 struct bt_hci_cp_accept_conn_req {
419 	bt_addr_t bdaddr;
420 	uint8_t   role;
421 } __packed;
422 
423 #define BT_HCI_OP_SETUP_SYNC_CONN               BT_OP(BT_OGF_LINK_CTRL, 0x0028) /* 0x0428 */
424 struct bt_hci_cp_setup_sync_conn {
425 	uint16_t  handle;
426 	uint32_t  tx_bandwidth;
427 	uint32_t  rx_bandwidth;
428 	uint16_t  max_latency;
429 	uint16_t  content_format;
430 	uint8_t   retrans_effort;
431 	uint16_t  pkt_type;
432 } __packed;
433 
434 #define BT_HCI_OP_ACCEPT_SYNC_CONN_REQ          BT_OP(BT_OGF_LINK_CTRL, 0x0029) /* 0x0429 */
435 struct bt_hci_cp_accept_sync_conn_req {
436 	bt_addr_t bdaddr;
437 	uint32_t  tx_bandwidth;
438 	uint32_t  rx_bandwidth;
439 	uint16_t  max_latency;
440 	uint16_t  content_format;
441 	uint8_t   retrans_effort;
442 	uint16_t  pkt_type;
443 } __packed;
444 
445 #define BT_HCI_OP_REJECT_CONN_REQ               BT_OP(BT_OGF_LINK_CTRL, 0x000a) /* 0x040a */
446 struct bt_hci_cp_reject_conn_req {
447 	bt_addr_t bdaddr;
448 	uint8_t   reason;
449 } __packed;
450 
451 #define BT_HCI_OP_LINK_KEY_REPLY                BT_OP(BT_OGF_LINK_CTRL, 0x000b) /* 0x040b */
452 struct bt_hci_cp_link_key_reply {
453 	bt_addr_t bdaddr;
454 	uint8_t   link_key[16];
455 } __packed;
456 
457 #define BT_HCI_OP_LINK_KEY_NEG_REPLY            BT_OP(BT_OGF_LINK_CTRL, 0x000c) /* 0x040c */
458 struct bt_hci_cp_link_key_neg_reply {
459 	bt_addr_t bdaddr;
460 } __packed;
461 
462 #define BT_HCI_OP_PIN_CODE_REPLY                BT_OP(BT_OGF_LINK_CTRL, 0x000d) /* 0x040d */
463 struct bt_hci_cp_pin_code_reply {
464 	bt_addr_t bdaddr;
465 	uint8_t   pin_len;
466 	uint8_t   pin_code[16];
467 } __packed;
468 struct bt_hci_rp_pin_code_reply {
469 	uint8_t      status;
470 	bt_addr_t bdaddr;
471 } __packed;
472 
473 #define BT_HCI_OP_PIN_CODE_NEG_REPLY            BT_OP(BT_OGF_LINK_CTRL, 0x000e) /* 0x040e */
474 struct bt_hci_cp_pin_code_neg_reply {
475 	bt_addr_t bdaddr;
476 } __packed;
477 struct bt_hci_rp_pin_code_neg_reply {
478 	uint8_t   status;
479 	bt_addr_t bdaddr;
480 } __packed;
481 
482 #define BT_HCI_OP_AUTH_REQUESTED                BT_OP(BT_OGF_LINK_CTRL, 0x0011) /* 0x0411 */
483 struct bt_hci_cp_auth_requested {
484 	uint16_t handle;
485 } __packed;
486 
487 #define BT_HCI_OP_SET_CONN_ENCRYPT              BT_OP(BT_OGF_LINK_CTRL, 0x0013) /* 0x0413 */
488 struct bt_hci_cp_set_conn_encrypt {
489 	uint16_t handle;
490 	uint8_t  encrypt;
491 } __packed;
492 
493 #define BT_HCI_OP_REMOTE_NAME_REQUEST           BT_OP(BT_OGF_LINK_CTRL, 0x0019) /* 0x0419 */
494 struct bt_hci_cp_remote_name_request {
495 	bt_addr_t bdaddr;
496 	uint8_t   pscan_rep_mode;
497 	uint8_t   reserved;
498 	uint16_t  clock_offset;
499 } __packed;
500 
501 #define BT_HCI_OP_REMOTE_NAME_CANCEL            BT_OP(BT_OGF_LINK_CTRL, 0x001a) /* 0x041a */
502 struct bt_hci_cp_remote_name_cancel {
503 	bt_addr_t bdaddr;
504 } __packed;
505 struct bt_hci_rp_remote_name_cancel {
506 	uint8_t   status;
507 	bt_addr_t bdaddr;
508 } __packed;
509 
510 #define BT_HCI_OP_READ_REMOTE_FEATURES          BT_OP(BT_OGF_LINK_CTRL, 0x001b) /* 0x041b */
511 struct bt_hci_cp_read_remote_features {
512 	uint16_t handle;
513 } __packed;
514 
515 #define BT_HCI_OP_READ_REMOTE_EXT_FEATURES      BT_OP(BT_OGF_LINK_CTRL, 0x001c) /* 0x041c */
516 struct bt_hci_cp_read_remote_ext_features {
517 	uint16_t handle;
518 	uint8_t  page;
519 } __packed;
520 
521 #define BT_HCI_OP_READ_REMOTE_VERSION_INFO      BT_OP(BT_OGF_LINK_CTRL, 0x001d) /* 0x041d */
522 struct bt_hci_cp_read_remote_version_info {
523 	uint16_t handle;
524 } __packed;
525 
526 #define BT_HCI_OP_IO_CAPABILITY_REPLY           BT_OP(BT_OGF_LINK_CTRL, 0x002b) /* 0x042b */
527 struct bt_hci_cp_io_capability_reply {
528 	bt_addr_t bdaddr;
529 	uint8_t   capability;
530 	uint8_t   oob_data;
531 	uint8_t   authentication;
532 } __packed;
533 
534 #define BT_HCI_OP_USER_CONFIRM_REPLY            BT_OP(BT_OGF_LINK_CTRL, 0x002c) /* 0x042c */
535 #define BT_HCI_OP_USER_CONFIRM_NEG_REPLY        BT_OP(BT_OGF_LINK_CTRL, 0x002d) /* 0x042d */
536 struct bt_hci_cp_user_confirm_reply {
537 	bt_addr_t bdaddr;
538 } __packed;
539 struct bt_hci_rp_user_confirm_reply {
540 	uint8_t   status;
541 	bt_addr_t bdaddr;
542 } __packed;
543 
544 #define BT_HCI_OP_USER_PASSKEY_REPLY            BT_OP(BT_OGF_LINK_CTRL, 0x002e) /* 0x042e */
545 struct bt_hci_cp_user_passkey_reply {
546 	bt_addr_t bdaddr;
547 	uint32_t  passkey;
548 } __packed;
549 
550 #define BT_HCI_OP_USER_PASSKEY_NEG_REPLY        BT_OP(BT_OGF_LINK_CTRL, 0x002f) /* 0x042f */
551 struct bt_hci_cp_user_passkey_neg_reply {
552 	bt_addr_t bdaddr;
553 } __packed;
554 
555 #define BT_HCI_OP_IO_CAPABILITY_NEG_REPLY       BT_OP(BT_OGF_LINK_CTRL, 0x0034) /* 0x0434 */
556 struct bt_hci_cp_io_capability_neg_reply {
557 	bt_addr_t bdaddr;
558 	uint8_t   reason;
559 } __packed;
560 
561 #define BT_HCI_OP_SET_EVENT_MASK                BT_OP(BT_OGF_BASEBAND, 0x0001) /* 0x0c01 */
562 struct bt_hci_cp_set_event_mask {
563 	uint8_t  events[8];
564 } __packed;
565 
566 #define BT_HCI_OP_RESET                         BT_OP(BT_OGF_BASEBAND, 0x0003) /* 0x0c03 */
567 
568 #define BT_HCI_OP_WRITE_LOCAL_NAME              BT_OP(BT_OGF_BASEBAND, 0x0013) /* 0x0c13 */
569 struct bt_hci_write_local_name {
570 	uint8_t local_name[248];
571 } __packed;
572 
573 #define BT_HCI_OP_READ_CONN_ACCEPT_TIMEOUT      BT_OP(BT_OGF_BASEBAND, 0x0015) /* 0x0c15 */
574 struct bt_hci_rp_read_conn_accept_timeout {
575 	uint8_t  status;
576 	uint16_t conn_accept_timeout;
577 } __packed;
578 
579 #define BT_HCI_OP_WRITE_CONN_ACCEPT_TIMEOUT     BT_OP(BT_OGF_BASEBAND, 0x0016) /* 0x0c16 */
580 struct bt_hci_cp_write_conn_accept_timeout {
581 	uint16_t conn_accept_timeout;
582 } __packed;
583 
584 struct bt_hci_rp_write_conn_accept_timeout {
585 	uint8_t  status;
586 } __packed;
587 
588 #define BT_HCI_OP_WRITE_PAGE_TIMEOUT            BT_OP(BT_OGF_BASEBAND, 0x0018) /* 0x0c18 */
589 
590 #define BT_HCI_OP_WRITE_SCAN_ENABLE             BT_OP(BT_OGF_BASEBAND, 0x001a) /* 0x0c1a */
591 #define BT_BREDR_SCAN_DISABLED                  0x00
592 #define BT_BREDR_SCAN_INQUIRY                   0x01
593 #define BT_BREDR_SCAN_PAGE                      0x02
594 
595 #define BT_HCI_OP_READ_CLASS_OF_DEVICE          BT_OP(BT_OGF_BASEBAND, 0x0023) /* 0x0c23 */
596 struct bt_hci_rp_read_class_of_device {
597 	uint8_t  status;
598 	uint8_t  class_of_device[3];
599 } __packed;
600 
601 #define BT_COD(major_service, major_device, minor_device)                         \
602 	(((uint32_t)major_service << 13) | ((uint32_t)major_device << 8) |            \
603 	 ((uint32_t)minor_device << 2))
604 #define BT_COD_VALID(cod) ((0 == (cod[0] & (BIT(0) | BIT(1)))) ? true : false)
605 #define BT_COD_MAJOR_SERVICE_CLASSES(cod)                                         \
606 	((((uint32_t)cod[2] & 0xFF) >> 5) | (((uint32_t)cod[1] & 0xD0) >> 5))
607 #define BT_COD_MAJOR_DEVICE_CLASS(cod) ((((uint32_t)cod[1]) & 0x1FUL))
608 #define BT_COD_MINOR_DEVICE_CLASS(cod) (((((uint32_t)cod[0]) & 0xFF) >> 2))
609 
610 #define BT_COD_MAJOR_MISC           0x00
611 #define BT_COD_MAJOR_COMPUTER       0x01
612 #define BT_COD_MAJOR_PHONE          0x02
613 #define BT_COD_MAJOR_LAN_NETWORK_AP 0x03
614 #define BT_COD_MAJOR_AUDIO_VIDEO    0x04
615 #define BT_COD_MAJOR_PERIPHERAL     0x05
616 #define BT_COD_MAJOR_IMAGING        0x06
617 #define BT_COD_MAJOR_WEARABLE       0x07
618 #define BT_COD_MAJOR_TOY            0x08
619 #define BT_COD_MAJOR_HEALTH         0x09
620 #define BT_COD_MAJOR_UNCATEGORIZED  0x1F
621 
622 /* Minor Device Class field - Computer Major Class */
623 #define BT_COD_MAJOR_COMPUTER_MINOR_UNCATEGORIZED         0x00
624 #define BT_COD_MAJOR_COMPUTER_MINOR_DESKTOP               0x01
625 #define BT_COD_MAJOR_COMPUTER_MINOR_SERVER_CLASS_COMPUTER 0x02
626 #define BT_COD_MAJOR_COMPUTER_MINOR_LAPTOP                0x03
627 #define BT_COD_MAJOR_COMPUTER_MINOR_HANDHELD_PC_PDA       0x04
628 #define BT_COD_MAJOR_COMPUTER_MINOR_PALM_SIZE_PC_PDA      0x05
629 #define BT_COD_MAJOR_COMPUTER_MINOR_WEARABLE_COMPUTER     0x06
630 #define BT_COD_MAJOR_COMPUTER_MINOR_TABLET                0x07
631 
632 /* Minor Device Class field - Phone Major Class */
633 #define BT_COD_MAJOR_PHONE_MINOR_UNCATEGORIZED             0x00
634 #define BT_COD_MAJOR_PHONE_MINOR_CELLULAR                  0x01
635 #define BT_COD_MAJOR_PHONE_MINOR_CORDLESS                  0x02
636 #define BT_COD_MAJOR_PHONE_MINOR_SMARTPHONE                0x03
637 #define BT_COD_MAJOR_PHONE_MINOR_WIRED_MODEM_VOICE_GATEWAY 0x04
638 #define BT_COD_MAJOR_PHONE_MINOR_ISDN                      0x05
639 
640 /* Minor Device Class field - Audio/Video Major Class */
641 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_UNCATEGORIZED             0x00
642 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_WEARABLE_HEADSET          0x01
643 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_HANDS_FREE                0x02
644 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_RFU                       0x03
645 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_MICROPHONE                0x04
646 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_LOUDSPEAKER               0x05
647 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_HEADPHONES                0x06
648 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_PORTABLE_AUDIO            0x07
649 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_CAR_AUDIO                 0x08
650 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_SET_TOP_BOX               0x09
651 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_HIFI_AUDIO                0x0A
652 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_VCR                       0x0B
653 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_VIDEO_CAMERA              0x0C
654 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_CAMCORDER                 0x0D
655 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_VIDEO_MONITOR             0x0E
656 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_VIDEO_DISPLAY_LOUDSPEAKER 0x0F
657 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_VIDEO_CONFERENCING        0x10
658 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_RFU2                      0x11
659 #define BT_COD_MAJOR_AUDIO_VIDEO_MINOR_GAME_TOY                  0x12
660 
661 #define BT_HCI_OP_WRITE_CLASS_OF_DEVICE         BT_OP(BT_OGF_BASEBAND, 0x0024) /* 0x0c24 */
662 struct bt_hci_cp_write_class_of_device {
663 	uint8_t  class_of_device[3];
664 } __packed;
665 
666 #define BT_TX_POWER_LEVEL_CURRENT               0x00
667 #define BT_TX_POWER_LEVEL_MAX                   0x01
668 #define BT_HCI_OP_READ_TX_POWER_LEVEL           BT_OP(BT_OGF_BASEBAND, 0x002d) /* 0x0c2d */
669 struct bt_hci_cp_read_tx_power_level {
670 	uint16_t handle;
671 	uint8_t  type;
672 } __packed;
673 
674 struct bt_hci_rp_read_tx_power_level {
675 	uint8_t  status;
676 	uint16_t handle;
677 	int8_t   tx_power_level;
678 } __packed;
679 
680 #define BT_HCI_LE_TX_POWER_PHY_1M               0x01
681 #define BT_HCI_LE_TX_POWER_PHY_2M               0x02
682 #define BT_HCI_LE_TX_POWER_PHY_CODED_S8         0x03
683 #define BT_HCI_LE_TX_POWER_PHY_CODED_S2         0x04
684 #define BT_HCI_OP_LE_ENH_READ_TX_POWER_LEVEL    BT_OP(BT_OGF_LE, 0x0076) /* 0x2076 */
685 struct bt_hci_cp_le_read_tx_power_level {
686 	uint16_t handle;
687 	uint8_t  phy;
688 } __packed;
689 
690 struct bt_hci_rp_le_read_tx_power_level {
691 	uint8_t  status;
692 	uint16_t handle;
693 	uint8_t  phy;
694 	int8_t   current_tx_power_level;
695 	int8_t   max_tx_power_level;
696 } __packed;
697 
698 #define BT_HCI_OP_LE_READ_REMOTE_TX_POWER_LEVEL	BT_OP(BT_OGF_LE, 0x0077) /* 0x2077 */
699 
700 #define BT_HCI_LE_TX_POWER_REPORT_DISABLE       0x00
701 #define BT_HCI_LE_TX_POWER_REPORT_ENABLE        0x01
702 #define BT_HCI_OP_LE_SET_TX_POWER_REPORT_ENABLE BT_OP(BT_OGF_LE, 0x007A) /* 0x207A */
703 struct bt_hci_cp_le_set_tx_power_report_enable {
704 	uint16_t handle;
705 	uint8_t  local_enable;
706 	uint8_t  remote_enable;
707 } __packed;
708 
709 struct bt_hci_cp_le_set_path_loss_reporting_parameters {
710 	uint16_t handle;
711 	uint8_t  high_threshold;
712 	uint8_t  high_hysteresis;
713 	uint8_t  low_threshold;
714 	uint8_t  low_hysteresis;
715 	uint16_t min_time_spent;
716 } __packed;
717 
718 struct bt_hci_cp_le_set_path_loss_reporting_enable {
719 	uint16_t handle;
720 	uint8_t  enable;
721 } __packed;
722 
723 #define BT_HCI_OP_LE_SET_PATH_LOSS_REPORTING_PARAMETERS BT_OP(BT_OGF_LE, 0x0078) /* 0x2078 */
724 
725 #define BT_HCI_LE_PATH_LOSS_REPORTING_DISABLE       0x00
726 #define BT_HCI_LE_PATH_LOSS_REPORTING_ENABLE        0x01
727 #define BT_HCI_OP_LE_SET_PATH_LOSS_REPORTING_ENABLE BT_OP(BT_OGF_LE, 0x0079) /* 0x2079 */
728 
729 struct bt_hci_cp_le_set_default_subrate {
730 	uint16_t subrate_min;
731 	uint16_t subrate_max;
732 	uint16_t max_latency;
733 	uint16_t continuation_number;
734 	uint16_t supervision_timeout;
735 } __packed;
736 
737 struct bt_hci_cp_le_subrate_request {
738 	uint16_t handle;
739 	uint16_t subrate_min;
740 	uint16_t subrate_max;
741 	uint16_t max_latency;
742 	uint16_t continuation_number;
743 	uint16_t supervision_timeout;
744 } __packed;
745 
746 #define BT_HCI_OP_LE_SET_DEFAULT_SUBRATE BT_OP(BT_OGF_LE, 0x007D) /* 0x207D */
747 #define BT_HCI_OP_LE_SUBRATE_REQUEST     BT_OP(BT_OGF_LE, 0x007E) /* 0x207E */
748 
749 #define BT_HCI_CTL_TO_HOST_FLOW_DISABLE         0x00
750 #define BT_HCI_CTL_TO_HOST_FLOW_ENABLE          0x01
751 #define BT_HCI_OP_SET_CTL_TO_HOST_FLOW          BT_OP(BT_OGF_BASEBAND, 0x0031) /* 0x0c31 */
752 struct bt_hci_cp_set_ctl_to_host_flow {
753 	uint8_t  flow_enable;
754 } __packed;
755 
756 #define BT_HCI_OP_HOST_BUFFER_SIZE              BT_OP(BT_OGF_BASEBAND, 0x0033) /* 0x0c33 */
757 struct bt_hci_cp_host_buffer_size {
758 	uint16_t acl_mtu;
759 	uint8_t  sco_mtu;
760 	uint16_t acl_pkts;
761 	uint16_t sco_pkts;
762 } __packed;
763 
764 struct bt_hci_handle_count {
765 	uint16_t handle;
766 	uint16_t count;
767 } __packed;
768 
769 #define BT_HCI_OP_HOST_NUM_COMPLETED_PACKETS    BT_OP(BT_OGF_BASEBAND, 0x0035) /* 0x0c35 */
770 struct bt_hci_cp_host_num_completed_packets {
771 	uint8_t  num_handles;
772 	struct bt_hci_handle_count h[0];
773 } __packed;
774 
775 #define BT_HCI_OP_WRITE_CURRENT_IAC_LAP         BT_OP(BT_OGF_BASEBAND, 0x003a) /* 0x0c3a */
776 struct bt_hci_iac_lap {
777 	uint8_t iac[3];
778 } __packed;
779 
780 struct bt_hci_cp_write_current_iac_lap {
781 	uint8_t  num_current_iac;
782 	struct bt_hci_iac_lap lap[0];
783 } __packed;
784 
785 #define BT_HCI_OP_WRITE_INQUIRY_MODE            BT_OP(BT_OGF_BASEBAND, 0x0045) /* 0x0c45 */
786 struct bt_hci_cp_write_inquiry_mode {
787 	uint8_t  mode;
788 } __packed;
789 
790 #define BT_HCI_OP_WRITE_SSP_MODE                BT_OP(BT_OGF_BASEBAND, 0x0056) /* 0x0c56 */
791 struct bt_hci_cp_write_ssp_mode {
792 	uint8_t mode;
793 } __packed;
794 
795 #define BT_HCI_OP_SET_EVENT_MASK_PAGE_2         BT_OP(BT_OGF_BASEBAND, 0x0063) /* 0x0c63 */
796 struct bt_hci_cp_set_event_mask_page_2 {
797 	uint8_t  events_page_2[8];
798 } __packed;
799 
800 #define BT_HCI_OP_LE_WRITE_LE_HOST_SUPP         BT_OP(BT_OGF_BASEBAND, 0x006d) /* 0x0c6d */
801 struct bt_hci_cp_write_le_host_supp {
802 	uint8_t  le;
803 	uint8_t  simul;
804 } __packed;
805 
806 #define BT_HCI_OP_WRITE_SC_HOST_SUPP            BT_OP(BT_OGF_BASEBAND, 0x007a) /* 0x0c7a */
807 struct bt_hci_cp_write_sc_host_supp {
808 	uint8_t  sc_support;
809 } __packed;
810 
811 #define BT_HCI_OP_READ_AUTH_PAYLOAD_TIMEOUT     BT_OP(BT_OGF_BASEBAND, 0x007b) /* 0x0c7b */
812 struct bt_hci_cp_read_auth_payload_timeout {
813 	uint16_t handle;
814 } __packed;
815 
816 struct bt_hci_rp_read_auth_payload_timeout {
817 	uint8_t  status;
818 	uint16_t handle;
819 	uint16_t auth_payload_timeout;
820 } __packed;
821 
822 #define BT_HCI_OP_WRITE_AUTH_PAYLOAD_TIMEOUT    BT_OP(BT_OGF_BASEBAND, 0x007c) /* 0x0c7c */
823 struct bt_hci_cp_write_auth_payload_timeout {
824 	uint16_t handle;
825 	uint16_t auth_payload_timeout;
826 } __packed;
827 
828 struct bt_hci_rp_write_auth_payload_timeout {
829 	uint8_t  status;
830 	uint16_t handle;
831 } __packed;
832 
833 #define BT_HCI_OP_CONFIGURE_DATA_PATH           BT_OP(BT_OGF_BASEBAND, 0x0083) /* 0x0c83 */
834 struct bt_hci_cp_configure_data_path {
835 	uint8_t  data_path_dir;
836 	uint8_t  data_path_id;
837 	uint8_t  vs_config_len;
838 	uint8_t  vs_config[0];
839 } __packed;
840 
841 struct bt_hci_rp_configure_data_path {
842 	uint8_t  status;
843 } __packed;
844 
845 /* HCI version from Assigned Numbers */
846 #define BT_HCI_VERSION_1_0B                     0
847 #define BT_HCI_VERSION_1_1                      1
848 #define BT_HCI_VERSION_1_2                      2
849 #define BT_HCI_VERSION_2_0                      3
850 #define BT_HCI_VERSION_2_1                      4
851 #define BT_HCI_VERSION_3_0                      5
852 #define BT_HCI_VERSION_4_0                      6
853 #define BT_HCI_VERSION_4_1                      7
854 #define BT_HCI_VERSION_4_2                      8
855 #define BT_HCI_VERSION_5_0                      9
856 #define BT_HCI_VERSION_5_1                      10
857 #define BT_HCI_VERSION_5_2                      11
858 #define BT_HCI_VERSION_5_3                      12
859 #define BT_HCI_VERSION_5_4                      13
860 #define BT_HCI_VERSION_6_0                      14
861 
862 #define BT_HCI_OP_READ_LOCAL_VERSION_INFO       BT_OP(BT_OGF_INFO, 0x0001) /* 0x1001 */
863 struct bt_hci_rp_read_local_version_info {
864 	uint8_t  status;
865 	uint8_t  hci_version;
866 	uint16_t hci_revision;
867 	uint8_t  lmp_version;
868 	uint16_t manufacturer;
869 	uint16_t lmp_subversion;
870 } __packed;
871 
872 #define BT_HCI_OP_READ_SUPPORTED_COMMANDS       BT_OP(BT_OGF_INFO, 0x0002) /* 0x1002 */
873 struct bt_hci_rp_read_supported_commands {
874 	uint8_t  status;
875 	uint8_t  commands[64];
876 } __packed;
877 
878 #define BT_HCI_OP_READ_LOCAL_EXT_FEATURES       BT_OP(BT_OGF_INFO, 0x0004) /* 0x1004 */
879 struct bt_hci_cp_read_local_ext_features {
880 	uint8_t page;
881 };
882 struct bt_hci_rp_read_local_ext_features {
883 	uint8_t  status;
884 	uint8_t  page;
885 	uint8_t  max_page;
886 	uint8_t  ext_features[8];
887 } __packed;
888 
889 #define BT_HCI_OP_READ_LOCAL_FEATURES           BT_OP(BT_OGF_INFO, 0x0003) /* 0x1003 */
890 struct bt_hci_rp_read_local_features {
891 	uint8_t  status;
892 	uint8_t  features[8];
893 } __packed;
894 
895 #define BT_HCI_OP_READ_BUFFER_SIZE              BT_OP(BT_OGF_INFO, 0x0005) /* 0x1005 */
896 struct bt_hci_rp_read_buffer_size {
897 	uint8_t  status;
898 	uint16_t acl_max_len;
899 	uint8_t  sco_max_len;
900 	uint16_t acl_max_num;
901 	uint16_t sco_max_num;
902 } __packed;
903 
904 #define BT_HCI_OP_READ_BD_ADDR                  BT_OP(BT_OGF_INFO, 0x0009) /* 0x1009 */
905 struct bt_hci_rp_read_bd_addr {
906 	uint8_t   status;
907 	bt_addr_t bdaddr;
908 } __packed;
909 
910 /* logic transport type bits as returned when reading supported codecs */
911 #define BT_HCI_CODEC_TRANSPORT_MASK_BREDR_ACL BIT(0)
912 #define BT_HCI_CODEC_TRANSPORT_MASK_BREDR_SCO BIT(1)
913 #define BT_HCI_CODEC_TRANSPORT_MASK_LE_CIS    BIT(2)
914 #define BT_HCI_CODEC_TRANSPORT_MASK_LE_BIS    BIT(3)
915 
916 /* logic transport types for reading codec capabilities and controller delays */
917 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_BREDR_ACL 0x00
918 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_BREDR_SCO 0x01
919 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_LE_CIS    0x02
920 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_LE_BIS    0x03
921 
922 /* audio datapath directions */
923 #define BT_HCI_DATAPATH_DIR_HOST_TO_CTLR 0x00
924 #define BT_HCI_DATAPATH_DIR_CTLR_TO_HOST 0x01
925 
926 /* audio datapath IDs */
927 #define BT_HCI_DATAPATH_ID_HCI      0x00
928 #define BT_HCI_DATAPATH_ID_VS       0x01
929 #define BT_HCI_DATAPATH_ID_VS_END   0xfe
930 
931 /* coding format assigned numbers, used for codec IDs */
932 #define BT_HCI_CODING_FORMAT_ULAW_LOG    0x00
933 #define BT_HCI_CODING_FORMAT_ALAW_LOG    0x01
934 #define BT_HCI_CODING_FORMAT_CVSD        0x02
935 #define BT_HCI_CODING_FORMAT_TRANSPARENT 0x03
936 #define BT_HCI_CODING_FORMAT_LINEAR_PCM  0x04
937 #define BT_HCI_CODING_FORMAT_MSBC        0x05
938 #define BT_HCI_CODING_FORMAT_LC3         0x06
939 #define BT_HCI_CODING_FORMAT_G729A       0x07
940 #define BT_HCI_CODING_FORMAT_VS          0xFF
941 
942 
943 #define BT_HCI_OP_READ_CODECS                   BT_OP(BT_OGF_INFO, 0x000b) /* 0x100b */
944 struct bt_hci_std_codec_info {
945 	uint8_t codec_id;
946 } __packed;
947 struct bt_hci_std_codecs {
948 	uint8_t num_codecs;
949 	struct bt_hci_std_codec_info codec_info[0];
950 } __packed;
951 struct bt_hci_vs_codec_info {
952 	uint16_t company_id;
953 	uint16_t codec_id;
954 } __packed;
955 struct bt_hci_vs_codecs {
956 	uint8_t num_codecs;
957 	struct bt_hci_vs_codec_info codec_info[0];
958 } __packed;
959 struct bt_hci_rp_read_codecs {
960 	uint8_t status;
961 	/* other fields filled in dynamically */
962 	uint8_t codecs[0];
963 } __packed;
964 
965 #define BT_HCI_OP_READ_CODECS_V2                BT_OP(BT_OGF_INFO, 0x000d) /* 0x100d */
966 struct bt_hci_std_codec_info_v2 {
967 	uint8_t codec_id;
968 	uint8_t transports; /* bitmap */
969 } __packed;
970 struct bt_hci_std_codecs_v2 {
971 	uint8_t num_codecs;
972 	struct bt_hci_std_codec_info_v2 codec_info[0];
973 } __packed;
974 struct bt_hci_vs_codec_info_v2 {
975 	uint16_t company_id;
976 	uint16_t codec_id;
977 	uint8_t transports; /* bitmap */
978 } __packed;
979 struct bt_hci_vs_codecs_v2 {
980 	uint8_t num_codecs;
981 	struct bt_hci_vs_codec_info_v2 codec_info[0];
982 } __packed;
983 struct bt_hci_rp_read_codecs_v2 {
984 	uint8_t status;
985 	/* other fields filled in dynamically */
986 	uint8_t codecs[0];
987 } __packed;
988 
989 struct bt_hci_cp_codec_id {
990 	uint8_t coding_format;
991 	uint16_t company_id;
992 	uint16_t vs_codec_id;
993 } __packed;
994 
995 #define BT_HCI_OP_READ_CODEC_CAPABILITIES       BT_OP(BT_OGF_INFO, 0x000e) /* 0x100e */
996 struct bt_hci_cp_read_codec_capabilities {
997 	struct bt_hci_cp_codec_id codec_id;
998 	uint8_t transport;
999 	uint8_t direction;
1000 } __packed;
1001 struct bt_hci_codec_capability_info {
1002 	uint8_t length;
1003 	uint8_t data[0];
1004 } __packed;
1005 struct bt_hci_rp_read_codec_capabilities {
1006 	uint8_t status;
1007 	uint8_t num_capabilities;
1008 	/* other fields filled in dynamically */
1009 	uint8_t capabilities[0];
1010 } __packed;
1011 
1012 #define BT_HCI_OP_READ_CTLR_DELAY               BT_OP(BT_OGF_INFO, 0x000f) /* 0x100f */
1013 struct bt_hci_cp_read_ctlr_delay {
1014 	struct bt_hci_cp_codec_id codec_id;
1015 	uint8_t transport;
1016 	uint8_t direction;
1017 	uint8_t codec_config_len;
1018 	uint8_t codec_config[0];
1019 } __packed;
1020 struct bt_hci_rp_read_ctlr_delay {
1021 	uint8_t status;
1022 	uint8_t min_ctlr_delay[3];
1023 	uint8_t max_ctlr_delay[3];
1024 } __packed;
1025 
1026 #define BT_HCI_OP_READ_RSSI                     BT_OP(BT_OGF_STATUS, 0x0005) /* 0x1405 */
1027 struct bt_hci_cp_read_rssi {
1028 	uint16_t handle;
1029 } __packed;
1030 struct bt_hci_rp_read_rssi {
1031 	uint8_t  status;
1032 	uint16_t handle;
1033 	int8_t   rssi;
1034 } __packed;
1035 
1036 #define BT_HCI_ENCRYPTION_KEY_SIZE_MIN          7
1037 #define BT_HCI_ENCRYPTION_KEY_SIZE_MAX          16
1038 
1039 #define BT_HCI_OP_READ_ENCRYPTION_KEY_SIZE      BT_OP(BT_OGF_STATUS, 0x0008) /* 0x1408 */
1040 struct bt_hci_cp_read_encryption_key_size {
1041 	uint16_t handle;
1042 } __packed;
1043 struct bt_hci_rp_read_encryption_key_size {
1044 	uint8_t  status;
1045 	uint16_t handle;
1046 	uint8_t  key_size;
1047 } __packed;
1048 
1049 /* Bluetooth LE */
1050 
1051 #define BT_HCI_OP_LE_SET_EVENT_MASK             BT_OP(BT_OGF_LE, 0x0001) /* 0x2001 */
1052 struct bt_hci_cp_le_set_event_mask {
1053 	uint8_t events[8];
1054 } __packed;
1055 
1056 #define BT_HCI_OP_LE_READ_BUFFER_SIZE           BT_OP(BT_OGF_LE, 0x0002) /* 0x2002 */
1057 struct bt_hci_rp_le_read_buffer_size {
1058 	uint8_t  status;
1059 	uint16_t le_max_len;
1060 	uint8_t  le_max_num;
1061 } __packed;
1062 
1063 #define BT_HCI_OP_LE_READ_LOCAL_FEATURES        BT_OP(BT_OGF_LE, 0x0003) /* 0x2003 */
1064 struct bt_hci_rp_le_read_local_features {
1065 	uint8_t  status;
1066 	uint8_t  features[8];
1067 } __packed;
1068 
1069 #define BT_HCI_OP_LE_SET_RANDOM_ADDRESS         BT_OP(BT_OGF_LE, 0x0005) /* 0x2005 */
1070 struct bt_hci_cp_le_set_random_address {
1071 	bt_addr_t bdaddr;
1072 } __packed;
1073 
1074 #define BT_HCI_ADV_IND                          0x00
1075 #define BT_HCI_ADV_DIRECT_IND                   0x01
1076 #define BT_HCI_ADV_SCAN_IND                     0x02
1077 #define BT_HCI_ADV_NONCONN_IND                  0x03
1078 #define BT_HCI_ADV_DIRECT_IND_LOW_DUTY          0x04
1079 #define BT_HCI_ADV_SCAN_RSP                     0x04
1080 
1081 #define BT_LE_ADV_INTERVAL_MIN                  0x0020
1082 #define BT_LE_ADV_INTERVAL_MAX                  0x4000
1083 #define BT_LE_ADV_INTERVAL_DEFAULT              0x0800
1084 
1085 #define BT_LE_ADV_CHAN_MAP_CHAN_37              0x01
1086 #define BT_LE_ADV_CHAN_MAP_CHAN_38              0x02
1087 #define BT_LE_ADV_CHAN_MAP_CHAN_39              0x04
1088 #define BT_LE_ADV_CHAN_MAP_ALL                  0x07
1089 
1090 #define BT_LE_ADV_FP_NO_FILTER                  0x00
1091 #define BT_LE_ADV_FP_FILTER_SCAN_REQ            0x01
1092 #define BT_LE_ADV_FP_FILTER_CONN_IND            0x02
1093 #define BT_LE_ADV_FP_FILTER_BOTH                0x03
1094 
1095 #define BT_HCI_OP_LE_SET_ADV_PARAM              BT_OP(BT_OGF_LE, 0x0006) /* 0x2006 */
1096 struct bt_hci_cp_le_set_adv_param {
1097 	uint16_t     min_interval;
1098 	uint16_t     max_interval;
1099 	uint8_t      type;
1100 	uint8_t      own_addr_type;
1101 	bt_addr_le_t direct_addr;
1102 	uint8_t      channel_map;
1103 	uint8_t      filter_policy;
1104 } __packed;
1105 
1106 #define BT_HCI_OP_LE_READ_ADV_CHAN_TX_POWER     BT_OP(BT_OGF_LE, 0x0007) /* 0x2007 */
1107 struct bt_hci_rp_le_read_chan_tx_power {
1108 	uint8_t status;
1109 	int8_t  tx_power_level;
1110 } __packed;
1111 
1112 #define BT_HCI_OP_LE_SET_ADV_DATA               BT_OP(BT_OGF_LE, 0x0008) /* 0x2008 */
1113 struct bt_hci_cp_le_set_adv_data {
1114 	uint8_t  len;
1115 	uint8_t  data[31];
1116 } __packed;
1117 
1118 #define BT_HCI_OP_LE_SET_SCAN_RSP_DATA          BT_OP(BT_OGF_LE, 0x0009) /* 0x2009 */
1119 struct bt_hci_cp_le_set_scan_rsp_data {
1120 	uint8_t  len;
1121 	uint8_t  data[31];
1122 } __packed;
1123 
1124 #define BT_HCI_LE_ADV_DISABLE                   0x00
1125 #define BT_HCI_LE_ADV_ENABLE                    0x01
1126 
1127 #define BT_HCI_OP_LE_SET_ADV_ENABLE             BT_OP(BT_OGF_LE, 0x000a) /* 0x200a */
1128 struct bt_hci_cp_le_set_adv_enable {
1129 	uint8_t  enable;
1130 } __packed;
1131 
1132 /* Scan types */
1133 #define BT_HCI_OP_LE_SET_SCAN_PARAM             BT_OP(BT_OGF_LE, 0x000b) /* 0x200b */
1134 #define BT_HCI_LE_SCAN_PASSIVE                  0x00
1135 #define BT_HCI_LE_SCAN_ACTIVE                   0x01
1136 
1137 #define BT_HCI_LE_SCAN_FP_BASIC_NO_FILTER       0x00
1138 #define BT_HCI_LE_SCAN_FP_BASIC_FILTER          0x01
1139 #define BT_HCI_LE_SCAN_FP_EXT_NO_FILTER         0x02
1140 #define BT_HCI_LE_SCAN_FP_EXT_FILTER            0x03
1141 
1142 struct bt_hci_cp_le_set_scan_param {
1143 	uint8_t  scan_type;
1144 	uint16_t interval;
1145 	uint16_t window;
1146 	uint8_t  addr_type;
1147 	uint8_t  filter_policy;
1148 } __packed;
1149 
1150 #define BT_HCI_OP_LE_SET_SCAN_ENABLE            BT_OP(BT_OGF_LE, 0x000c) /* 0x200c */
1151 
1152 #define BT_HCI_LE_SCAN_DISABLE                  0x00
1153 #define BT_HCI_LE_SCAN_ENABLE                   0x01
1154 
1155 #define BT_HCI_LE_SCAN_FILTER_DUP_DISABLE       0x00
1156 #define BT_HCI_LE_SCAN_FILTER_DUP_ENABLE        0x01
1157 
1158 struct bt_hci_cp_le_set_scan_enable {
1159 	uint8_t  enable;
1160 	uint8_t  filter_dup;
1161 } __packed;
1162 
1163 #define BT_HCI_OP_LE_CREATE_CONN                BT_OP(BT_OGF_LE, 0x000d) /* 0x200d */
1164 
1165 #define BT_HCI_LE_CREATE_CONN_FP_NO_FILTER      0x00
1166 #define BT_HCI_LE_CREATE_CONN_FP_FILTER         0x01
1167 
1168 struct bt_hci_cp_le_create_conn {
1169 	uint16_t     scan_interval;
1170 	uint16_t     scan_window;
1171 	uint8_t      filter_policy;
1172 	bt_addr_le_t peer_addr;
1173 	uint8_t      own_addr_type;
1174 	uint16_t     conn_interval_min;
1175 	uint16_t     conn_interval_max;
1176 	uint16_t     conn_latency;
1177 	uint16_t     supervision_timeout;
1178 	uint16_t     min_ce_len;
1179 	uint16_t     max_ce_len;
1180 } __packed;
1181 
1182 #define BT_HCI_OP_LE_CREATE_CONN_CANCEL         BT_OP(BT_OGF_LE, 0x000e) /* 0x200e */
1183 
1184 #define BT_HCI_OP_LE_READ_FAL_SIZE               BT_OP(BT_OGF_LE, 0x000f) /* 0x200f */
1185 struct bt_hci_rp_le_read_fal_size {
1186 	uint8_t  status;
1187 	uint8_t  fal_size;
1188 } __packed;
1189 
1190 #define BT_HCI_OP_LE_CLEAR_FAL                   BT_OP(BT_OGF_LE, 0x0010) /* 0x2010 */
1191 
1192 #define BT_HCI_OP_LE_ADD_DEV_TO_FAL              BT_OP(BT_OGF_LE, 0x0011) /* 0x2011 */
1193 struct bt_hci_cp_le_add_dev_to_fal {
1194 	bt_addr_le_t  addr;
1195 } __packed;
1196 
1197 #define BT_HCI_OP_LE_REM_DEV_FROM_FAL            BT_OP(BT_OGF_LE, 0x0012) /* 0x2012 */
1198 struct bt_hci_cp_le_rem_dev_from_fal {
1199 	bt_addr_le_t  addr;
1200 } __packed;
1201 
1202 #define BT_HCI_OP_LE_CONN_UPDATE                BT_OP(BT_OGF_LE, 0x0013) /* 0x2013 */
1203 struct hci_cp_le_conn_update {
1204 	uint16_t handle;
1205 	uint16_t conn_interval_min;
1206 	uint16_t conn_interval_max;
1207 	uint16_t conn_latency;
1208 	uint16_t supervision_timeout;
1209 	uint16_t min_ce_len;
1210 	uint16_t max_ce_len;
1211 } __packed;
1212 
1213 #define BT_HCI_OP_LE_SET_HOST_CHAN_CLASSIF      BT_OP(BT_OGF_LE, 0x0014) /* 0x2014 */
1214 struct bt_hci_cp_le_set_host_chan_classif {
1215 	uint8_t  ch_map[5];
1216 } __packed;
1217 
1218 #define BT_HCI_OP_LE_READ_CHAN_MAP              BT_OP(BT_OGF_LE, 0x0015) /* 0x2015 */
1219 struct bt_hci_cp_le_read_chan_map {
1220 	uint16_t handle;
1221 } __packed;
1222 struct bt_hci_rp_le_read_chan_map {
1223 	uint8_t  status;
1224 	uint16_t handle;
1225 	uint8_t  ch_map[5];
1226 } __packed;
1227 
1228 #define BT_HCI_OP_LE_READ_REMOTE_FEATURES       BT_OP(BT_OGF_LE, 0x0016) /* 0x2016 */
1229 struct bt_hci_cp_le_read_remote_features {
1230 	uint16_t  handle;
1231 } __packed;
1232 
1233 #define BT_HCI_OP_LE_ENCRYPT                    BT_OP(BT_OGF_LE, 0x0017) /* 0x2017 */
1234 struct bt_hci_cp_le_encrypt {
1235 	uint8_t  key[16];
1236 	uint8_t  plaintext[16];
1237 } __packed;
1238 struct bt_hci_rp_le_encrypt {
1239 	uint8_t  status;
1240 	uint8_t  enc_data[16];
1241 } __packed;
1242 
1243 #define BT_HCI_OP_LE_RAND                       BT_OP(BT_OGF_LE, 0x0018) /* 0x2018 */
1244 struct bt_hci_rp_le_rand {
1245 	uint8_t  status;
1246 	uint8_t  rand[8];
1247 } __packed;
1248 
1249 #define BT_HCI_OP_LE_START_ENCRYPTION           BT_OP(BT_OGF_LE, 0x0019) /* 0x2019 */
1250 struct bt_hci_cp_le_start_encryption {
1251 	uint16_t handle;
1252 	uint64_t rand;
1253 	uint16_t ediv;
1254 	uint8_t  ltk[16];
1255 } __packed;
1256 
1257 #define BT_HCI_OP_LE_LTK_REQ_REPLY              BT_OP(BT_OGF_LE, 0x001a) /* 0x201a */
1258 struct bt_hci_cp_le_ltk_req_reply {
1259 	uint16_t handle;
1260 	uint8_t  ltk[16];
1261 } __packed;
1262 struct bt_hci_rp_le_ltk_req_reply {
1263 	uint8_t  status;
1264 	uint16_t handle;
1265 } __packed;
1266 
1267 #define BT_HCI_OP_LE_LTK_REQ_NEG_REPLY          BT_OP(BT_OGF_LE, 0x001b) /* 0x201b */
1268 struct bt_hci_cp_le_ltk_req_neg_reply {
1269 	uint16_t handle;
1270 } __packed;
1271 struct bt_hci_rp_le_ltk_req_neg_reply {
1272 	uint8_t  status;
1273 	uint16_t handle;
1274 } __packed;
1275 
1276 #define BT_HCI_OP_LE_READ_SUPP_STATES           BT_OP(BT_OGF_LE, 0x001c) /* 0x201c */
1277 struct bt_hci_rp_le_read_supp_states {
1278 	uint8_t  status;
1279 	uint8_t  le_states[8];
1280 } __packed;
1281 
1282 #define BT_HCI_OP_LE_RX_TEST                    BT_OP(BT_OGF_LE, 0x001d) /* 0x201d */
1283 struct bt_hci_cp_le_rx_test {
1284 	uint8_t  rx_ch;
1285 } __packed;
1286 
1287 #define BT_HCI_TEST_PKT_PAYLOAD_PRBS9           0x00
1288 #define BT_HCI_TEST_PKT_PAYLOAD_11110000        0x01
1289 #define BT_HCI_TEST_PKT_PAYLOAD_10101010        0x02
1290 #define BT_HCI_TEST_PKT_PAYLOAD_PRBS15          0x03
1291 #define BT_HCI_TEST_PKT_PAYLOAD_11111111        0x04
1292 #define BT_HCI_TEST_PKT_PAYLOAD_00000000        0x05
1293 #define BT_HCI_TEST_PKT_PAYLOAD_00001111        0x06
1294 #define BT_HCI_TEST_PKT_PAYLOAD_01010101        0x07
1295 
1296 #define BT_HCI_OP_LE_TX_TEST                    BT_OP(BT_OGF_LE, 0x001e) /* 0x201e */
1297 struct bt_hci_cp_le_tx_test {
1298 	uint8_t  tx_ch;
1299 	uint8_t  test_data_len;
1300 	uint8_t  pkt_payload;
1301 } __packed;
1302 
1303 #define BT_HCI_OP_LE_TEST_END                   BT_OP(BT_OGF_LE, 0x001f) /* 0x201f */
1304 struct bt_hci_rp_le_test_end {
1305 	uint8_t  status;
1306 	uint16_t rx_pkt_count;
1307 } __packed;
1308 
1309 #define BT_HCI_OP_LE_CONN_PARAM_REQ_REPLY       BT_OP(BT_OGF_LE, 0x0020) /* 0x2020 */
1310 struct bt_hci_cp_le_conn_param_req_reply {
1311 	uint16_t handle;
1312 	uint16_t interval_min;
1313 	uint16_t interval_max;
1314 	uint16_t latency;
1315 	uint16_t timeout;
1316 	uint16_t min_ce_len;
1317 	uint16_t max_ce_len;
1318 } __packed;
1319 struct bt_hci_rp_le_conn_param_req_reply {
1320 	uint8_t  status;
1321 	uint16_t handle;
1322 } __packed;
1323 
1324 #define BT_HCI_OP_LE_CONN_PARAM_REQ_NEG_REPLY   BT_OP(BT_OGF_LE, 0x0021) /* 0x2021 */
1325 struct bt_hci_cp_le_conn_param_req_neg_reply {
1326 	uint16_t handle;
1327 	uint8_t  reason;
1328 } __packed;
1329 struct bt_hci_rp_le_conn_param_req_neg_reply {
1330 	uint8_t  status;
1331 	uint16_t handle;
1332 } __packed;
1333 
1334 #define BT_HCI_OP_LE_SET_DATA_LEN               BT_OP(BT_OGF_LE, 0x0022) /* 0x2022 */
1335 struct bt_hci_cp_le_set_data_len {
1336 	uint16_t handle;
1337 	uint16_t tx_octets;
1338 	uint16_t tx_time;
1339 } __packed;
1340 struct bt_hci_rp_le_set_data_len {
1341 	uint8_t  status;
1342 	uint16_t handle;
1343 } __packed;
1344 
1345 #define BT_HCI_OP_LE_READ_DEFAULT_DATA_LEN      BT_OP(BT_OGF_LE, 0x0023) /* 0x2023 */
1346 struct bt_hci_rp_le_read_default_data_len {
1347 	uint8_t  status;
1348 	uint16_t max_tx_octets;
1349 	uint16_t max_tx_time;
1350 } __packed;
1351 
1352 #define BT_HCI_OP_LE_WRITE_DEFAULT_DATA_LEN     BT_OP(BT_OGF_LE, 0x0024) /* 0x2024 */
1353 struct bt_hci_cp_le_write_default_data_len {
1354 	uint16_t max_tx_octets;
1355 	uint16_t max_tx_time;
1356 } __packed;
1357 
1358 #define BT_HCI_OP_LE_P256_PUBLIC_KEY            BT_OP(BT_OGF_LE, 0x0025) /* 0x2025 */
1359 
1360 #define BT_HCI_OP_LE_GENERATE_DHKEY             BT_OP(BT_OGF_LE, 0x0026) /* 0x2026 */
1361 struct bt_hci_cp_le_generate_dhkey {
1362 	uint8_t key[64];
1363 } __packed;
1364 
1365 
1366 #define BT_HCI_OP_LE_GENERATE_DHKEY_V2          BT_OP(BT_OGF_LE, 0x005e) /* 0x205e */
1367 
1368 #define BT_HCI_LE_KEY_TYPE_GENERATED            0x00
1369 #define BT_HCI_LE_KEY_TYPE_DEBUG                0x01
1370 
1371 struct bt_hci_cp_le_generate_dhkey_v2 {
1372 	uint8_t key[64];
1373 	uint8_t key_type;
1374 } __packed;
1375 
1376 
1377 #define BT_HCI_OP_LE_ADD_DEV_TO_RL              BT_OP(BT_OGF_LE, 0x0027) /* 0x2027 */
1378 struct bt_hci_cp_le_add_dev_to_rl {
1379 	bt_addr_le_t  peer_id_addr;
1380 	uint8_t       peer_irk[16];
1381 	uint8_t       local_irk[16];
1382 } __packed;
1383 
1384 #define BT_HCI_OP_LE_REM_DEV_FROM_RL            BT_OP(BT_OGF_LE, 0x0028) /* 0x2028 */
1385 struct bt_hci_cp_le_rem_dev_from_rl {
1386 	bt_addr_le_t  peer_id_addr;
1387 } __packed;
1388 
1389 #define BT_HCI_OP_LE_CLEAR_RL                   BT_OP(BT_OGF_LE, 0x0029) /* 0x2029 */
1390 
1391 #define BT_HCI_OP_LE_READ_RL_SIZE               BT_OP(BT_OGF_LE, 0x002a) /* 0x202a */
1392 struct bt_hci_rp_le_read_rl_size {
1393 	uint8_t  status;
1394 	uint8_t  rl_size;
1395 } __packed;
1396 
1397 #define BT_HCI_OP_LE_READ_PEER_RPA              BT_OP(BT_OGF_LE, 0x002b) /* 0x202b */
1398 struct bt_hci_cp_le_read_peer_rpa {
1399 	bt_addr_le_t  peer_id_addr;
1400 } __packed;
1401 struct bt_hci_rp_le_read_peer_rpa {
1402 	uint8_t    status;
1403 	bt_addr_t  peer_rpa;
1404 } __packed;
1405 
1406 #define BT_HCI_OP_LE_READ_LOCAL_RPA             BT_OP(BT_OGF_LE, 0x002c) /* 0x202c */
1407 struct bt_hci_cp_le_read_local_rpa {
1408 	bt_addr_le_t  peer_id_addr;
1409 } __packed;
1410 struct bt_hci_rp_le_read_local_rpa {
1411 	uint8_t    status;
1412 	bt_addr_t  local_rpa;
1413 } __packed;
1414 
1415 #define BT_HCI_ADDR_RES_DISABLE                 0x00
1416 #define BT_HCI_ADDR_RES_ENABLE                  0x01
1417 
1418 #define BT_HCI_OP_LE_SET_ADDR_RES_ENABLE        BT_OP(BT_OGF_LE, 0x002d) /* 0x202d */
1419 struct bt_hci_cp_le_set_addr_res_enable {
1420 	uint8_t  enable;
1421 } __packed;
1422 
1423 #define BT_HCI_OP_LE_SET_RPA_TIMEOUT            BT_OP(BT_OGF_LE, 0x002e) /* 0x202e */
1424 struct bt_hci_cp_le_set_rpa_timeout {
1425 	uint16_t rpa_timeout;
1426 } __packed;
1427 
1428 /* All limits according to BT Core spec 5.4 [Vol 4, Part E, 7.8.46] */
1429 #define BT_HCI_LE_MAX_TX_OCTETS_MIN             0x001B
1430 #define BT_HCI_LE_MAX_TX_OCTETS_MAX             0x00FB
1431 #define BT_HCI_LE_MAX_RX_OCTETS_MIN             0x001B
1432 #define BT_HCI_LE_MAX_RX_OCTETS_MAX             0x00FB
1433 
1434 #define BT_HCI_LE_MAX_TX_TIME_MIN               0x0148
1435 #define BT_HCI_LE_MAX_TX_TIME_MAX               0x4290
1436 #define BT_HCI_LE_MAX_RX_TIME_MIN               0x0148
1437 #define BT_HCI_LE_MAX_RX_TIME_MAX               0x4290
1438 
1439 #define BT_HCI_OP_LE_READ_MAX_DATA_LEN          BT_OP(BT_OGF_LE, 0x002f) /* 0x202f */
1440 struct bt_hci_rp_le_read_max_data_len {
1441 	uint8_t  status;
1442 	uint16_t max_tx_octets;
1443 	uint16_t max_tx_time;
1444 	uint16_t max_rx_octets;
1445 	uint16_t max_rx_time;
1446 } __packed;
1447 
1448 #define BT_HCI_LE_PHY_1M                        0x01
1449 #define BT_HCI_LE_PHY_2M                        0x02
1450 #define BT_HCI_LE_PHY_CODED                     0x03
1451 
1452 #define BT_HCI_OP_LE_READ_PHY                   BT_OP(BT_OGF_LE, 0x0030) /* 0x2030 */
1453 struct bt_hci_cp_le_read_phy {
1454 	uint16_t handle;
1455 } __packed;
1456 struct bt_hci_rp_le_read_phy {
1457 	uint8_t  status;
1458 	uint16_t handle;
1459 	uint8_t  tx_phy;
1460 	uint8_t  rx_phy;
1461 } __packed;
1462 
1463 #define BT_HCI_LE_PHY_TX_ANY                    BIT(0)
1464 #define BT_HCI_LE_PHY_RX_ANY                    BIT(1)
1465 
1466 #define BT_HCI_LE_PHY_PREFER_1M                 BIT(0)
1467 #define BT_HCI_LE_PHY_PREFER_2M                 BIT(1)
1468 #define BT_HCI_LE_PHY_PREFER_CODED              BIT(2)
1469 
1470 #define BT_HCI_OP_LE_SET_DEFAULT_PHY            BT_OP(BT_OGF_LE, 0x0031) /* 0x2031 */
1471 struct bt_hci_cp_le_set_default_phy {
1472 	uint8_t all_phys;
1473 	uint8_t tx_phys;
1474 	uint8_t rx_phys;
1475 } __packed;
1476 
1477 #define BT_HCI_LE_PHY_CODED_ANY                 0x00
1478 #define BT_HCI_LE_PHY_CODED_S2                  0x01
1479 #define BT_HCI_LE_PHY_CODED_S8                  0x02
1480 
1481 #define BT_HCI_OP_LE_SET_PHY                    BT_OP(BT_OGF_LE, 0x0032) /* 0x2032 */
1482 struct bt_hci_cp_le_set_phy {
1483 	uint16_t  handle;
1484 	uint8_t   all_phys;
1485 	uint8_t   tx_phys;
1486 	uint8_t   rx_phys;
1487 	uint16_t  phy_opts;
1488 } __packed;
1489 
1490 #define BT_HCI_LE_MOD_INDEX_STANDARD            0x00
1491 #define BT_HCI_LE_MOD_INDEX_STABLE              0x01
1492 
1493 #define BT_HCI_LE_RX_PHY_1M                     0x01
1494 #define BT_HCI_LE_RX_PHY_2M                     0x02
1495 #define BT_HCI_LE_RX_PHY_CODED                  0x03
1496 
1497 #define BT_HCI_OP_LE_ENH_RX_TEST                BT_OP(BT_OGF_LE, 0x0033) /* 0x2033 */
1498 struct bt_hci_cp_le_enh_rx_test {
1499 	uint8_t  rx_ch;
1500 	uint8_t  phy;
1501 	uint8_t  mod_index;
1502 } __packed;
1503 
1504 #define BT_HCI_LE_TX_PHY_1M                     0x01
1505 #define BT_HCI_LE_TX_PHY_2M                     0x02
1506 #define BT_HCI_LE_TX_PHY_CODED_S8               0x03
1507 #define BT_HCI_LE_TX_PHY_CODED_S2               0x04
1508 
1509 #define BT_HCI_OP_LE_ENH_TX_TEST                BT_OP(BT_OGF_LE, 0x0034) /* 0x2034 */
1510 struct bt_hci_cp_le_enh_tx_test {
1511 	uint8_t  tx_ch;
1512 	uint8_t  test_data_len;
1513 	uint8_t  pkt_payload;
1514 	uint8_t  phy;
1515 } __packed;
1516 
1517 #define BT_HCI_OP_LE_SET_ADV_SET_RANDOM_ADDR    BT_OP(BT_OGF_LE, 0x0035) /* 0x2035 */
1518 struct bt_hci_cp_le_set_adv_set_random_addr {
1519 	uint8_t   handle;
1520 	bt_addr_t bdaddr;
1521 } __packed;
1522 
1523 #define BT_HCI_LE_ADV_PROP_CONN                 BIT(0)
1524 #define BT_HCI_LE_ADV_PROP_SCAN                 BIT(1)
1525 #define BT_HCI_LE_ADV_PROP_DIRECT               BIT(2)
1526 #define BT_HCI_LE_ADV_PROP_HI_DC_CONN           BIT(3)
1527 #define BT_HCI_LE_ADV_PROP_LEGACY               BIT(4)
1528 #define BT_HCI_LE_ADV_PROP_ANON                 BIT(5)
1529 #define BT_HCI_LE_ADV_PROP_TX_POWER             BIT(6)
1530 
1531 #define BT_HCI_LE_PRIM_ADV_INTERVAL_MIN         0x000020
1532 #define BT_HCI_LE_PRIM_ADV_INTERVAL_MAX         0xFFFFFF
1533 
1534 #define BT_HCI_LE_ADV_SCAN_REQ_ENABLE  1
1535 #define BT_HCI_LE_ADV_SCAN_REQ_DISABLE 0
1536 
1537 #define BT_HCI_LE_ADV_TX_POWER_NO_PREF 0x7F
1538 
1539 #define BT_HCI_LE_ADV_HANDLE_MAX       0xEF
1540 
1541 #define BT_HCI_LE_EXT_ADV_SID_INVALID  0xFF
1542 
1543 #define BT_HCI_OP_LE_SET_EXT_ADV_PARAM          BT_OP(BT_OGF_LE, 0x0036) /* 0x2036 */
1544 struct bt_hci_cp_le_set_ext_adv_param {
1545 	uint8_t      handle;
1546 	uint16_t     props;
1547 	uint8_t      prim_min_interval[3];
1548 	uint8_t      prim_max_interval[3];
1549 	uint8_t      prim_channel_map;
1550 	uint8_t      own_addr_type;
1551 	bt_addr_le_t peer_addr;
1552 	uint8_t      filter_policy;
1553 	int8_t       tx_power;
1554 	uint8_t      prim_adv_phy;
1555 	uint8_t      sec_adv_max_skip;
1556 	uint8_t      sec_adv_phy;
1557 	uint8_t      sid;
1558 	uint8_t      scan_req_notify_enable;
1559 } __packed;
1560 struct bt_hci_rp_le_set_ext_adv_param {
1561 	uint8_t status;
1562 	int8_t  tx_power;
1563 } __packed;
1564 
1565 #define BT_HCI_LE_ADV_PHY_OPTION_NO_REQUIRED 0x00
1566 #define BT_HCI_LE_ADV_PHY_OPTION_REQUIRE_S2  0x03
1567 #define BT_HCI_LE_ADV_PHY_OPTION_REQUIRE_S8  0x04
1568 
1569 #define BT_HCI_OP_LE_SET_EXT_ADV_PARAM_V2        BT_OP(BT_OGF_LE, 0x007F) /* 0x207F */
1570 struct bt_hci_cp_le_set_ext_adv_param_v2 {
1571 	uint8_t      handle;
1572 	uint16_t     props;
1573 	uint8_t      prim_min_interval[3];
1574 	uint8_t      prim_max_interval[3];
1575 	uint8_t      prim_channel_map;
1576 	uint8_t      own_addr_type;
1577 	bt_addr_le_t peer_addr;
1578 	uint8_t      filter_policy;
1579 	int8_t       tx_power;
1580 	uint8_t      prim_adv_phy;
1581 	uint8_t      sec_adv_max_skip;
1582 	uint8_t      sec_adv_phy;
1583 	uint8_t      sid;
1584 	uint8_t      scan_req_notify_enable;
1585 	uint8_t      prim_adv_phy_opt;
1586 	uint8_t      sec_adv_phy_opt;
1587 } __packed;
1588 
1589 #define BT_HCI_LE_EXT_ADV_OP_INTERM_FRAG        0x00
1590 #define BT_HCI_LE_EXT_ADV_OP_FIRST_FRAG         0x01
1591 #define BT_HCI_LE_EXT_ADV_OP_LAST_FRAG          0x02
1592 #define BT_HCI_LE_EXT_ADV_OP_COMPLETE_DATA      0x03
1593 #define BT_HCI_LE_EXT_ADV_OP_UNCHANGED_DATA     0x04
1594 
1595 #define BT_HCI_LE_EXT_ADV_FRAG_ENABLED          0x00
1596 #define BT_HCI_LE_EXT_ADV_FRAG_DISABLED         0x01
1597 
1598 #define BT_HCI_LE_EXT_ADV_FRAG_MAX_LEN          251
1599 
1600 #define BT_HCI_OP_LE_SET_EXT_ADV_DATA           BT_OP(BT_OGF_LE, 0x0037) /* 0x2037 */
1601 struct bt_hci_cp_le_set_ext_adv_data {
1602 	uint8_t  handle;
1603 	uint8_t  op;
1604 	uint8_t  frag_pref;
1605 	uint8_t  len;
1606 	uint8_t  data[0];
1607 } __packed;
1608 
1609 #define BT_HCI_OP_LE_SET_EXT_SCAN_RSP_DATA      BT_OP(BT_OGF_LE, 0x0038) /* 0x2038 */
1610 struct bt_hci_cp_le_set_ext_scan_rsp_data {
1611 	uint8_t  handle;
1612 	uint8_t  op;
1613 	uint8_t  frag_pref;
1614 	uint8_t  len;
1615 	uint8_t  data[0];
1616 } __packed;
1617 
1618 #define BT_HCI_OP_LE_SET_EXT_ADV_ENABLE         BT_OP(BT_OGF_LE, 0x0039) /* 0x2039 */
1619 struct bt_hci_ext_adv_set {
1620 	uint8_t  handle;
1621 	uint16_t duration;
1622 	uint8_t  max_ext_adv_evts;
1623 } __packed;
1624 
1625 struct bt_hci_cp_le_set_ext_adv_enable {
1626 	uint8_t  enable;
1627 	uint8_t  set_num;
1628 	struct bt_hci_ext_adv_set s[0];
1629 } __packed;
1630 
1631 #define BT_HCI_OP_LE_READ_MAX_ADV_DATA_LEN      BT_OP(BT_OGF_LE, 0x003a) /* 0x203a */
1632 struct bt_hci_rp_le_read_max_adv_data_len {
1633 	uint8_t  status;
1634 	uint16_t max_adv_data_len;
1635 } __packed;
1636 
1637 #define BT_HCI_OP_LE_READ_NUM_ADV_SETS          BT_OP(BT_OGF_LE, 0x003b) /* 0x203b */
1638 struct bt_hci_rp_le_read_num_adv_sets {
1639 	uint8_t  status;
1640 	uint8_t  num_sets;
1641 } __packed;
1642 
1643 #define BT_HCI_OP_LE_REMOVE_ADV_SET             BT_OP(BT_OGF_LE, 0x003c) /* 0x203c */
1644 struct bt_hci_cp_le_remove_adv_set {
1645 	uint8_t  handle;
1646 } __packed;
1647 
1648 #define BT_HCI_OP_CLEAR_ADV_SETS                BT_OP(BT_OGF_LE, 0x003d) /* 0x203d */
1649 
1650 #define BT_HCI_LE_PER_ADV_INTERVAL_MIN          0x0006
1651 #define BT_HCI_LE_PER_ADV_INTERVAL_MAX          0xFFFF
1652 
1653 #define BT_HCI_OP_LE_SET_PER_ADV_PARAM          BT_OP(BT_OGF_LE, 0x003e) /* 0x203e */
1654 struct bt_hci_cp_le_set_per_adv_param {
1655 	uint8_t  handle;
1656 	uint16_t min_interval;
1657 	uint16_t max_interval;
1658 	uint16_t props;
1659 } __packed;
1660 
1661 #define BT_HCI_LE_PER_ADV_OP_INTERM_FRAG        0x00
1662 #define BT_HCI_LE_PER_ADV_OP_FIRST_FRAG         0x01
1663 #define BT_HCI_LE_PER_ADV_OP_LAST_FRAG          0x02
1664 #define BT_HCI_LE_PER_ADV_OP_COMPLETE_DATA      0x03
1665 
1666 #define BT_HCI_LE_PER_ADV_FRAG_MAX_LEN          252
1667 
1668 #define BT_HCI_OP_LE_SET_PER_ADV_DATA           BT_OP(BT_OGF_LE, 0x003f) /* 0x203f */
1669 struct bt_hci_cp_le_set_per_adv_data {
1670 	uint8_t  handle;
1671 	uint8_t  op;
1672 	uint8_t  len;
1673 	uint8_t  data[0];
1674 } __packed;
1675 
1676 #define BT_HCI_LE_SET_PER_ADV_ENABLE_ENABLE     BIT(0)
1677 #define BT_HCI_LE_SET_PER_ADV_ENABLE_ADI        BIT(1)
1678 
1679 #define BT_HCI_OP_LE_SET_PER_ADV_ENABLE         BT_OP(BT_OGF_LE, 0x0040) /* 0x2040 */
1680 struct bt_hci_cp_le_set_per_adv_enable {
1681 	uint8_t  enable;
1682 	uint8_t  handle;
1683 } __packed;
1684 
1685 #define BT_HCI_OP_LE_SET_EXT_SCAN_PARAM         BT_OP(BT_OGF_LE, 0x0041) /* 0x2041 */
1686 struct bt_hci_ext_scan_phy {
1687 	uint8_t  type;
1688 	uint16_t interval;
1689 	uint16_t window;
1690 } __packed;
1691 
1692 #define BT_HCI_LE_EXT_SCAN_PHY_1M               BIT(0)
1693 #define BT_HCI_LE_EXT_SCAN_PHY_2M               BIT(1)
1694 #define BT_HCI_LE_EXT_SCAN_PHY_CODED            BIT(2)
1695 
1696 struct bt_hci_cp_le_set_ext_scan_param {
1697 	uint8_t  own_addr_type;
1698 	uint8_t  filter_policy;
1699 	uint8_t  phys;
1700 	struct bt_hci_ext_scan_phy p[0];
1701 } __packed;
1702 
1703 /* Extends BT_HCI_LE_SCAN_FILTER_DUP */
1704 #define BT_HCI_LE_EXT_SCAN_FILTER_DUP_ENABLE_RESET  0x02
1705 
1706 #define BT_HCI_OP_LE_SET_EXT_SCAN_ENABLE        BT_OP(BT_OGF_LE, 0x0042) /* 0x2042 */
1707 struct bt_hci_cp_le_set_ext_scan_enable {
1708 	uint8_t  enable;
1709 	uint8_t  filter_dup;
1710 	uint16_t duration;
1711 	uint16_t period;
1712 } __packed;
1713 
1714 #define BT_HCI_OP_LE_EXT_CREATE_CONN            BT_OP(BT_OGF_LE, 0x0043) /* 0x2043 */
1715 #define BT_HCI_OP_LE_EXT_CREATE_CONN_V2         BT_OP(BT_OGF_LE, 0x0085) /* 0x2085 */
1716 struct bt_hci_ext_conn_phy {
1717 	uint16_t scan_interval;
1718 	uint16_t scan_window;
1719 	uint16_t conn_interval_min;
1720 	uint16_t conn_interval_max;
1721 	uint16_t conn_latency;
1722 	uint16_t supervision_timeout;
1723 	uint16_t min_ce_len;
1724 	uint16_t max_ce_len;
1725 } __packed;
1726 
1727 struct bt_hci_cp_le_ext_create_conn {
1728 	uint8_t      filter_policy;
1729 	uint8_t      own_addr_type;
1730 	bt_addr_le_t peer_addr;
1731 	uint8_t      phys;
1732 	struct bt_hci_ext_conn_phy p[0];
1733 } __packed;
1734 
1735 struct bt_hci_cp_le_ext_create_conn_v2 {
1736 	uint8_t      adv_handle;
1737 	uint8_t      subevent;
1738 	uint8_t      filter_policy;
1739 	uint8_t      own_addr_type;
1740 	bt_addr_le_t peer_addr;
1741 	uint8_t      phys;
1742 	struct bt_hci_ext_conn_phy p[0];
1743 } __packed;
1744 
1745 #define BT_HCI_OP_LE_SET_PER_ADV_SUBEVENT_DATA  BT_OP(BT_OGF_LE, 0x0082) /* 0x2082 */
1746 struct bt_hci_cp_le_set_pawr_subevent_data_element {
1747 	uint8_t subevent;
1748 	uint8_t response_slot_start;
1749 	uint8_t response_slot_count;
1750 	uint8_t subevent_data_length;
1751 	uint8_t subevent_data[0];
1752 } __packed;
1753 
1754 struct bt_hci_cp_le_set_pawr_subevent_data {
1755 	uint8_t adv_handle;
1756 	uint8_t num_subevents;
1757 	struct bt_hci_cp_le_set_pawr_subevent_data_element subevents[0];
1758 } __packed;
1759 
1760 
1761 #define BT_HCI_OP_LE_SET_PER_ADV_RESPONSE_DATA  BT_OP(BT_OGF_LE, 0x0083) /* 0x2083 */
1762 struct bt_hci_cp_le_set_pawr_response_data {
1763 	uint16_t sync_handle;
1764 	uint16_t request_event;
1765 	uint8_t  request_subevent;
1766 	uint8_t  response_subevent;
1767 	uint8_t  response_slot;
1768 	uint8_t  response_data_length;
1769 	uint8_t  response_data[0];
1770 } __packed;
1771 
1772 #define BT_HCI_OP_LE_SET_PER_ADV_SYNC_SUBEVENT  BT_OP(BT_OGF_LE, 0x0084) /* 0x2084 */
1773 struct bt_hci_cp_le_set_pawr_sync_subevent {
1774 	uint16_t sync_handle;
1775 	uint16_t periodic_adv_properties;
1776 	uint8_t  num_subevents;
1777 	uint8_t  subevents[0];
1778 } __packed;
1779 
1780 
1781 #define BT_HCI_OP_LE_SET_PER_ADV_PARAM_V2       BT_OP(BT_OGF_LE, 0x0086) /* 0x2086 */
1782 struct bt_hci_cp_le_set_per_adv_param_v2 {
1783 	uint8_t  handle;
1784 	uint16_t min_interval;
1785 	uint16_t max_interval;
1786 	uint16_t props;
1787 	uint8_t  num_subevents;
1788 	uint8_t  subevent_interval;
1789 	uint8_t  response_slot_delay;
1790 	uint8_t  response_slot_spacing;
1791 	uint8_t  num_response_slots;
1792 } __packed;
1793 
1794 
1795 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_FP_USE_LIST               BIT(0)
1796 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_FP_REPORTS_DISABLED       BIT(1)
1797 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_FP_FILTER_DUPLICATE       BIT(2)
1798 
1799 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_FILTERING     0
1800 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_AOA           BIT(0)
1801 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_AOD_1US       BIT(1)
1802 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_AOD_2US       BIT(2)
1803 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_CTE           BIT(3)
1804 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_ONLY_CTE         BIT(4)
1805 /* Constants to check correctness of CTE type */
1806 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_ALLOWED_BITS 5
1807 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_INVALID_VALUE \
1808 	(~BIT_MASK(BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_ALLOWED_BITS))
1809 
1810 #define BT_HCI_OP_LE_PER_ADV_CREATE_SYNC        BT_OP(BT_OGF_LE, 0x0044) /* 0x2044 */
1811 struct bt_hci_cp_le_per_adv_create_sync {
1812 	uint8_t      options;
1813 	uint8_t      sid;
1814 	bt_addr_le_t addr;
1815 	uint16_t     skip;
1816 	uint16_t     sync_timeout;
1817 	uint8_t      cte_type;
1818 } __packed;
1819 
1820 #define BT_HCI_OP_LE_PER_ADV_CREATE_SYNC_CANCEL BT_OP(BT_OGF_LE, 0x0045) /* 0x2045 */
1821 
1822 #define BT_HCI_OP_LE_PER_ADV_TERMINATE_SYNC     BT_OP(BT_OGF_LE, 0x0046) /* 0x2046 */
1823 struct bt_hci_cp_le_per_adv_terminate_sync {
1824 	uint16_t handle;
1825 } __packed;
1826 
1827 #define BT_HCI_OP_LE_ADD_DEV_TO_PER_ADV_LIST    BT_OP(BT_OGF_LE, 0x0047) /* 0x2047 */
1828 struct bt_hci_cp_le_add_dev_to_per_adv_list {
1829 	bt_addr_le_t addr;
1830 	uint8_t      sid;
1831 } __packed;
1832 
1833 #define BT_HCI_OP_LE_REM_DEV_FROM_PER_ADV_LIST  BT_OP(BT_OGF_LE, 0x0048) /* 0x2048 */
1834 struct bt_hci_cp_le_rem_dev_from_per_adv_list {
1835 	bt_addr_le_t addr;
1836 	uint8_t      sid;
1837 } __packed;
1838 
1839 #define BT_HCI_OP_LE_CLEAR_PER_ADV_LIST         BT_OP(BT_OGF_LE, 0x0049) /* 0x2049 */
1840 
1841 #define BT_HCI_OP_LE_READ_PER_ADV_LIST_SIZE     BT_OP(BT_OGF_LE, 0x004a) /* 0x204a */
1842 struct bt_hci_rp_le_read_per_adv_list_size {
1843 	uint8_t  status;
1844 	uint8_t  list_size;
1845 } __packed;
1846 
1847 #define BT_HCI_OP_LE_READ_TX_POWER              BT_OP(BT_OGF_LE, 0x004b) /* 0x204b */
1848 struct bt_hci_rp_le_read_tx_power {
1849 	uint8_t status;
1850 	int8_t  min_tx_power;
1851 	int8_t  max_tx_power;
1852 } __packed;
1853 
1854 #define BT_HCI_OP_LE_READ_RF_PATH_COMP          BT_OP(BT_OGF_LE, 0x004c) /* 0x204c */
1855 struct bt_hci_rp_le_read_rf_path_comp {
1856 	uint8_t status;
1857 	int16_t tx_path_comp;
1858 	int16_t rx_path_comp;
1859 } __packed;
1860 
1861 #define BT_HCI_OP_LE_WRITE_RF_PATH_COMP         BT_OP(BT_OGF_LE, 0x004d) /* 0x204d */
1862 struct bt_hci_cp_le_write_rf_path_comp {
1863 	int16_t  tx_path_comp;
1864 	int16_t  rx_path_comp;
1865 } __packed;
1866 
1867 #define BT_HCI_LE_PRIVACY_MODE_NETWORK          0x00
1868 #define BT_HCI_LE_PRIVACY_MODE_DEVICE           0x01
1869 
1870 #define BT_HCI_OP_LE_SET_PRIVACY_MODE           BT_OP(BT_OGF_LE, 0x004e) /* 0x204e */
1871 struct bt_hci_cp_le_set_privacy_mode {
1872 	bt_addr_le_t id_addr;
1873 	uint8_t         mode;
1874 } __packed;
1875 
1876 #define BT_HCI_LE_TEST_CTE_DISABLED             0x00
1877 #define BT_HCI_LE_TEST_CTE_TYPE_ANY             0x00
1878 #define BT_HCI_LE_TEST_SLOT_DURATION_ANY        0x00
1879 #define BT_HCI_LE_TEST_SWITCH_PATTERN_LEN_ANY   0x00
1880 
1881 #define BT_HCI_OP_LE_RX_TEST_V3                 BT_OP(BT_OGF_LE, 0x004f) /* 0x204f */
1882 struct bt_hci_cp_le_rx_test_v3 {
1883 	uint8_t  rx_ch;
1884 	uint8_t  phy;
1885 	uint8_t  mod_index;
1886 	uint8_t  expected_cte_len;
1887 	uint8_t  expected_cte_type;
1888 	uint8_t  slot_durations;
1889 	uint8_t  switch_pattern_len;
1890 	uint8_t  ant_ids[0];
1891 } __packed;
1892 
1893 #define BT_HCI_OP_LE_TX_TEST_V3                 BT_OP(BT_OGF_LE, 0x0050) /* 0x2050 */
1894 
1895 struct bt_hci_cp_le_tx_test_v3 {
1896 	uint8_t  tx_ch;
1897 	uint8_t  test_data_len;
1898 	uint8_t  pkt_payload;
1899 	uint8_t  phy;
1900 	uint8_t  cte_len;
1901 	uint8_t  cte_type;
1902 	uint8_t  switch_pattern_len;
1903 	uint8_t  ant_ids[0];
1904 } __packed;
1905 
1906 /* Min and max Constant Tone Extension length in 8us units */
1907 #define BT_HCI_LE_CTE_LEN_MIN                  0x2
1908 #define BT_HCI_LE_CTE_LEN_MAX                  0x14
1909 
1910 #define BT_HCI_LE_AOA_CTE                      0x0
1911 #define BT_HCI_LE_AOD_CTE_1US                  0x1
1912 #define BT_HCI_LE_AOD_CTE_2US                  0x2
1913 #define BT_HCI_LE_NO_CTE                       0xFF
1914 
1915 #define BT_HCI_LE_CTE_COUNT_MIN                0x1
1916 #define BT_HCI_LE_CTE_COUNT_MAX                0x10
1917 
1918 #define BT_HCI_OP_LE_SET_CL_CTE_TX_PARAMS      BT_OP(BT_OGF_LE, 0x0051) /* 0x2051 */
1919 struct bt_hci_cp_le_set_cl_cte_tx_params {
1920 	uint8_t handle;
1921 	uint8_t cte_len;
1922 	uint8_t cte_type;
1923 	uint8_t cte_count;
1924 	uint8_t switch_pattern_len;
1925 	uint8_t ant_ids[0];
1926 } __packed;
1927 
1928 #define BT_HCI_OP_LE_SET_CL_CTE_TX_ENABLE      BT_OP(BT_OGF_LE, 0x0052) /* 0x2052 */
1929 struct bt_hci_cp_le_set_cl_cte_tx_enable {
1930 	uint8_t handle;
1931 	uint8_t cte_enable;
1932 } __packed;
1933 
1934 #define BT_HCI_LE_ANTENNA_SWITCHING_SLOT_1US   0x1
1935 #define BT_HCI_LE_ANTENNA_SWITCHING_SLOT_2US   0x2
1936 
1937 #define BT_HCI_LE_SAMPLE_CTE_ALL               0x0
1938 #define BT_HCI_LE_SAMPLE_CTE_COUNT_MIN         0x1
1939 #define BT_HCI_LE_SAMPLE_CTE_COUNT_MAX         0x10
1940 
1941 #define BT_HCI_OP_LE_SET_CL_CTE_SAMPLING_ENABLE BT_OP(BT_OGF_LE, 0x0053) /* 0x2053 */
1942 struct bt_hci_cp_le_set_cl_cte_sampling_enable {
1943 	uint16_t sync_handle;
1944 	uint8_t  sampling_enable;
1945 	uint8_t  slot_durations;
1946 	uint8_t  max_sampled_cte;
1947 	uint8_t  switch_pattern_len;
1948 	uint8_t  ant_ids[0];
1949 } __packed;
1950 
1951 struct bt_hci_rp_le_set_cl_cte_sampling_enable {
1952 	uint8_t  status;
1953 	uint16_t sync_handle;
1954 } __packed;
1955 
1956 #define BT_HCI_OP_LE_SET_CONN_CTE_RX_PARAMS BT_OP(BT_OGF_LE, 0x0054) /* 0x2054 */
1957 struct bt_hci_cp_le_set_conn_cte_rx_params {
1958 	uint16_t handle;
1959 	uint8_t  sampling_enable;
1960 	uint8_t  slot_durations;
1961 	uint8_t  switch_pattern_len;
1962 	uint8_t  ant_ids[0];
1963 } __packed;
1964 
1965 struct bt_hci_rp_le_set_conn_cte_rx_params {
1966 	uint8_t  status;
1967 	uint16_t handle;
1968 } __packed;
1969 
1970 #define BT_HCI_LE_AOA_CTE_RSP                   BIT(0)
1971 #define BT_HCI_LE_AOD_CTE_RSP_1US               BIT(1)
1972 #define BT_HCI_LE_AOD_CTE_RSP_2US               BIT(2)
1973 
1974 #define BT_HCI_LE_SWITCH_PATTERN_LEN_MIN        0x2
1975 #define BT_HCI_LE_SWITCH_PATTERN_LEN_MAX        0x4B
1976 
1977 #define BT_HCI_OP_LE_SET_CONN_CTE_TX_PARAMS     BT_OP(BT_OGF_LE, 0x0055) /* 0x2055 */
1978 struct bt_hci_cp_le_set_conn_cte_tx_params {
1979 	uint16_t handle;
1980 	uint8_t  cte_types;
1981 	uint8_t  switch_pattern_len;
1982 	uint8_t  ant_ids[0];
1983 } __packed;
1984 
1985 struct bt_hci_rp_le_set_conn_cte_tx_params {
1986 	uint8_t  status;
1987 	uint16_t handle;
1988 } __packed;
1989 
1990 /* Interval between consecutive CTE request procedure starts in number of connection events. */
1991 #define BT_HCI_REQUEST_CTE_ONCE                0x0
1992 #define BT_HCI_REQUEST_CTE_INTERVAL_MIN        0x1
1993 #define BT_HCI_REQUEST_CTE_INTERVAL_MAX        0xFFFF
1994 
1995 #define BT_HCI_OP_LE_CONN_CTE_REQ_ENABLE       BT_OP(BT_OGF_LE, 0x0056) /* 0x2056 */
1996 struct bt_hci_cp_le_conn_cte_req_enable {
1997 	uint16_t handle;
1998 	uint8_t  enable;
1999 	uint16_t cte_request_interval;
2000 	uint8_t  requested_cte_length;
2001 	uint8_t  requested_cte_type;
2002 } __packed;
2003 
2004 struct bt_hci_rp_le_conn_cte_req_enable {
2005 	uint8_t  status;
2006 	uint16_t handle;
2007 } __packed;
2008 
2009 #define BT_HCI_OP_LE_CONN_CTE_RSP_ENABLE       BT_OP(BT_OGF_LE, 0x0057) /* 0x2057 */
2010 struct bt_hci_cp_le_conn_cte_rsp_enable {
2011 	uint16_t handle;
2012 	uint8_t  enable;
2013 } __packed;
2014 
2015 struct bt_hci_rp_le_conn_cte_rsp_enable {
2016 	uint8_t  status;
2017 	uint16_t handle;
2018 } __packed;
2019 
2020 #define BT_HCI_LE_1US_AOD_TX                    BIT(0)
2021 #define BT_HCI_LE_1US_AOD_RX                    BIT(1)
2022 #define BT_HCI_LE_1US_AOA_RX                    BIT(2)
2023 
2024 #define BT_HCI_LE_NUM_ANT_MIN                   0x1
2025 #define BT_HCI_LE_NUM_ANT_MAX                   0x4B
2026 
2027 #define BT_HCI_LE_MAX_SWITCH_PATTERN_LEN_MIN    0x2
2028 #define BT_HCI_LE_MAX_SWITCH_PATTERN_LEN_MAX    0x4B
2029 
2030 #define BT_HCI_LE_MAX_CTE_LEN_MIN               0x2
2031 #define BT_HCI_LE_MAX_CTE_LEN_MAX               0x14
2032 
2033 #define BT_HCI_OP_LE_READ_ANT_INFO              BT_OP(BT_OGF_LE, 0x0058) /* 0x2058 */
2034 struct bt_hci_rp_le_read_ant_info {
2035 	uint8_t status;
2036 	uint8_t switch_sample_rates;
2037 	uint8_t num_ant;
2038 	uint8_t max_switch_pattern_len;
2039 	uint8_t max_cte_len;
2040 };
2041 
2042 #define BT_HCI_LE_SET_PER_ADV_RECV_ENABLE_ENABLE           BIT(0)
2043 #define BT_HCI_LE_SET_PER_ADV_RECV_ENABLE_FILTER_DUPLICATE BIT(1)
2044 
2045 #define BT_HCI_OP_LE_SET_PER_ADV_RECV_ENABLE     BT_OP(BT_OGF_LE, 0x0059) /* 0x2059 */
2046 struct bt_hci_cp_le_set_per_adv_recv_enable {
2047 	uint16_t handle;
2048 	uint8_t  enable;
2049 } __packed;
2050 
2051 #define BT_HCI_OP_LE_PER_ADV_SYNC_TRANSFER      BT_OP(BT_OGF_LE, 0x005a) /* 0x205a */
2052 struct bt_hci_cp_le_per_adv_sync_transfer {
2053 	uint16_t conn_handle;
2054 	uint16_t service_data;
2055 	uint16_t sync_handle;
2056 } __packed;
2057 
2058 struct bt_hci_rp_le_per_adv_sync_transfer {
2059 	uint8_t  status;
2060 	uint16_t conn_handle;
2061 } __packed;
2062 
2063 #define BT_HCI_OP_LE_PER_ADV_SET_INFO_TRANSFER  BT_OP(BT_OGF_LE, 0x005b) /* 0x205b */
2064 struct bt_hci_cp_le_per_adv_set_info_transfer {
2065 	uint16_t conn_handle;
2066 	uint16_t service_data;
2067 	uint8_t  adv_handle;
2068 } __packed;
2069 
2070 struct bt_hci_rp_le_per_adv_set_info_transfer {
2071 	uint8_t  status;
2072 	uint16_t conn_handle;
2073 } __packed;
2074 
2075 #define BT_HCI_LE_PAST_MODE_NO_SYNC                0x00
2076 #define BT_HCI_LE_PAST_MODE_NO_REPORTS             0x01
2077 #define BT_HCI_LE_PAST_MODE_SYNC                   0x02
2078 #define BT_HCI_LE_PAST_MODE_SYNC_FILTER_DUPLICATES 0x03
2079 
2080 #define BT_HCI_LE_PAST_CTE_TYPE_NO_AOA           BIT(0)
2081 #define BT_HCI_LE_PAST_CTE_TYPE_NO_AOD_1US       BIT(1)
2082 #define BT_HCI_LE_PAST_CTE_TYPE_NO_AOD_2US       BIT(2)
2083 #define BT_HCI_LE_PAST_CTE_TYPE_NO_CTE           BIT(3)
2084 #define BT_HCI_LE_PAST_CTE_TYPE_ONLY_CTE         BIT(4)
2085 
2086 #define BT_HCI_OP_LE_PAST_PARAM                 BT_OP(BT_OGF_LE, 0x005c) /* 0x205c */
2087 struct bt_hci_cp_le_past_param {
2088 	uint16_t conn_handle;
2089 	uint8_t  mode;
2090 	uint16_t skip;
2091 	uint16_t timeout;
2092 	uint8_t  cte_type;
2093 } __packed;
2094 
2095 struct bt_hci_rp_le_past_param {
2096 	uint8_t  status;
2097 	uint16_t conn_handle;
2098 } __packed;
2099 
2100 #define BT_HCI_OP_LE_DEFAULT_PAST_PARAM         BT_OP(BT_OGF_LE, 0x005d) /* 0x205d */
2101 struct bt_hci_cp_le_default_past_param {
2102 	uint8_t  mode;
2103 	uint16_t skip;
2104 	uint16_t timeout;
2105 	uint8_t  cte_type;
2106 } __packed;
2107 
2108 struct bt_hci_rp_le_default_past_param {
2109 	uint8_t  status;
2110 } __packed;
2111 
2112 #define BT_HCI_OP_LE_READ_BUFFER_SIZE_V2        BT_OP(BT_OGF_LE, 0x0060) /* 0x2060 */
2113 struct bt_hci_rp_le_read_buffer_size_v2 {
2114 	uint8_t  status;
2115 	uint16_t acl_max_len;
2116 	uint8_t  acl_max_num;
2117 	uint16_t iso_max_len;
2118 	uint8_t  iso_max_num;
2119 } __packed;
2120 
2121 #define BT_HCI_OP_LE_READ_ISO_TX_SYNC           BT_OP(BT_OGF_LE, 0x0061) /* 0x2061 */
2122 struct bt_hci_cp_le_read_iso_tx_sync {
2123 	uint16_t handle;
2124 } __packed;
2125 
2126 struct bt_hci_rp_le_read_iso_tx_sync {
2127 	uint8_t  status;
2128 	uint16_t handle;
2129 	uint16_t seq;
2130 	uint32_t timestamp;
2131 	uint8_t  offset[3];
2132 } __packed;
2133 
2134 #define BT_HCI_ISO_CIG_ID_MAX                   0xFE
2135 #define BT_HCI_ISO_CIS_COUNT_MAX                0x1F
2136 #define BT_HCI_ISO_SDU_INTERVAL_MIN             0x0000FF
2137 #define BT_HCI_ISO_SDU_INTERVAL_MAX             0x0FFFFF
2138 #define BT_HCI_ISO_WORST_CASE_SCA_VALID_MASK    0x07
2139 #define BT_HCI_ISO_PACKING_VALID_MASK           0x01
2140 #define BT_HCI_ISO_FRAMING_VALID_MASK           0x01
2141 #define BT_HCI_ISO_MAX_TRANSPORT_LATENCY_MIN    0x0005
2142 #define BT_HCI_ISO_MAX_TRANSPORT_LATENCY_MAX    0x0FA0
2143 #define BT_HCI_ISO_CIS_ID_VALID_MAX             0xEF
2144 #define BT_HCI_ISO_MAX_SDU_VALID_MASK           0x0FFF
2145 #define BT_HCI_ISO_PHY_VALID_MASK               0x07
2146 #define BT_HCI_ISO_INTERVAL_MIN                 0x0004
2147 #define BT_HCI_ISO_INTERVAL_MAX                 0x0C80
2148 
2149 #define BT_HCI_OP_LE_SET_CIG_PARAMS             BT_OP(BT_OGF_LE, 0x0062) /* 0x2062 */
2150 struct bt_hci_cis_params {
2151 	uint8_t  cis_id;
2152 	uint16_t c_sdu;
2153 	uint16_t p_sdu;
2154 	uint8_t  c_phy;
2155 	uint8_t  p_phy;
2156 	uint8_t  c_rtn;
2157 	uint8_t  p_rtn;
2158 } __packed;
2159 
2160 struct bt_hci_cp_le_set_cig_params {
2161 	uint8_t  cig_id;
2162 	uint8_t  c_interval[3];
2163 	uint8_t  p_interval[3];
2164 	uint8_t  sca;
2165 	uint8_t  packing;
2166 	uint8_t  framing;
2167 	uint16_t c_latency;
2168 	uint16_t p_latency;
2169 	uint8_t  num_cis;
2170 	struct bt_hci_cis_params cis[0];
2171 } __packed;
2172 
2173 struct bt_hci_rp_le_set_cig_params {
2174 	uint8_t  status;
2175 	uint8_t  cig_id;
2176 	uint8_t  num_handles;
2177 	uint16_t handle[0];
2178 } __packed;
2179 
2180 #define BT_HCI_OP_LE_SET_CIG_PARAMS_TEST        BT_OP(BT_OGF_LE, 0x0063) /* 0x2063 */
2181 struct bt_hci_cis_params_test {
2182 	uint8_t  cis_id;
2183 	uint8_t  nse;
2184 	uint16_t c_sdu;
2185 	uint16_t p_sdu;
2186 	uint16_t c_pdu;
2187 	uint16_t p_pdu;
2188 	uint8_t  c_phy;
2189 	uint8_t  p_phy;
2190 	uint8_t  c_bn;
2191 	uint8_t  p_bn;
2192 } __packed;
2193 
2194 struct bt_hci_cp_le_set_cig_params_test {
2195 	uint8_t  cig_id;
2196 	uint8_t  c_interval[3];
2197 	uint8_t  p_interval[3];
2198 	uint8_t  c_ft;
2199 	uint8_t  p_ft;
2200 	uint16_t iso_interval;
2201 	uint8_t  sca;
2202 	uint8_t  packing;
2203 	uint8_t  framing;
2204 	uint8_t  num_cis;
2205 	struct bt_hci_cis_params_test cis[0];
2206 } __packed;
2207 
2208 struct bt_hci_rp_le_set_cig_params_test {
2209 	uint8_t  status;
2210 	uint8_t  cig_id;
2211 	uint8_t  num_handles;
2212 	uint16_t handle[0];
2213 } __packed;
2214 
2215 #define BT_HCI_OP_LE_CREATE_CIS                 BT_OP(BT_OGF_LE, 0x0064) /* 0x2064 */
2216 struct bt_hci_cis {
2217 	uint16_t  cis_handle;
2218 	uint16_t  acl_handle;
2219 } __packed;
2220 
2221 struct bt_hci_cp_le_create_cis {
2222 	uint8_t  num_cis;
2223 	struct bt_hci_cis cis[0];
2224 } __packed;
2225 
2226 #define BT_HCI_OP_LE_REMOVE_CIG                 BT_OP(BT_OGF_LE, 0x0065) /* 0x2065 */
2227 struct bt_hci_cp_le_remove_cig {
2228 	uint8_t  cig_id;
2229 } __packed;
2230 
2231 struct bt_hci_rp_le_remove_cig {
2232 	uint8_t  status;
2233 	uint8_t  cig_id;
2234 } __packed;
2235 
2236 #define BT_HCI_OP_LE_ACCEPT_CIS                 BT_OP(BT_OGF_LE, 0x0066) /* 0x2066 */
2237 struct bt_hci_cp_le_accept_cis {
2238 	uint16_t handle;
2239 } __packed;
2240 
2241 #define BT_HCI_OP_LE_REJECT_CIS                 BT_OP(BT_OGF_LE, 0x0067) /* 0x2067 */
2242 struct bt_hci_cp_le_reject_cis {
2243 	uint16_t handle;
2244 	uint8_t  reason;
2245 } __packed;
2246 
2247 struct bt_hci_rp_le_reject_cis {
2248 	uint8_t  status;
2249 	uint16_t handle;
2250 } __packed;
2251 
2252 #define BT_HCI_OP_LE_CREATE_BIG                 BT_OP(BT_OGF_LE, 0x0068) /* 0x2068 */
2253 struct bt_hci_cp_le_create_big {
2254 	uint8_t  big_handle;
2255 	uint8_t  adv_handle;
2256 	uint8_t  num_bis;
2257 	uint8_t  sdu_interval[3];
2258 	uint16_t max_sdu;
2259 	uint16_t max_latency;
2260 	uint8_t  rtn;
2261 	uint8_t  phy;
2262 	uint8_t  packing;
2263 	uint8_t  framing;
2264 	uint8_t  encryption;
2265 	uint8_t  bcode[16];
2266 } __packed;
2267 
2268 #define BT_HCI_OP_LE_CREATE_BIG_TEST            BT_OP(BT_OGF_LE, 0x0069) /* 0x2069 */
2269 struct bt_hci_cp_le_create_big_test {
2270 	uint8_t  big_handle;
2271 	uint8_t  adv_handle;
2272 	uint8_t  num_bis;
2273 	uint8_t  sdu_interval[3];
2274 	uint16_t iso_interval;
2275 	uint8_t  nse;
2276 	uint16_t max_sdu;
2277 	uint16_t max_pdu;
2278 	uint8_t  phy;
2279 	uint8_t  packing;
2280 	uint8_t  framing;
2281 	uint8_t  bn;
2282 	uint8_t  irc;
2283 	uint8_t  pto;
2284 	uint8_t  encryption;
2285 	uint8_t  bcode[16];
2286 } __packed;
2287 
2288 #define BT_HCI_OP_LE_TERMINATE_BIG              BT_OP(BT_OGF_LE, 0x006a) /* 0x206a */
2289 struct bt_hci_cp_le_terminate_big {
2290 	uint8_t  big_handle;
2291 	uint8_t  reason;
2292 } __packed;
2293 
2294 #define BT_HCI_OP_LE_BIG_CREATE_SYNC            BT_OP(BT_OGF_LE, 0x006b) /* 0x206b */
2295 struct bt_hci_cp_le_big_create_sync {
2296 	uint8_t  big_handle;
2297 	uint16_t sync_handle;
2298 	uint8_t  encryption;
2299 	uint8_t  bcode[16];
2300 	uint8_t  mse;
2301 	uint16_t sync_timeout;
2302 	uint8_t  num_bis;
2303 	uint8_t  bis[0];
2304 } __packed;
2305 
2306 #define BT_HCI_OP_LE_BIG_TERMINATE_SYNC         BT_OP(BT_OGF_LE, 0x006c) /* 0x206c */
2307 struct bt_hci_cp_le_big_terminate_sync {
2308 	uint8_t  big_handle;
2309 } __packed;
2310 
2311 struct bt_hci_rp_le_big_terminate_sync {
2312 	uint8_t  status;
2313 	uint8_t  big_handle;
2314 } __packed;
2315 
2316 #define BT_HCI_OP_LE_REQ_PEER_SC                BT_OP(BT_OGF_LE, 0x006d) /* 0x206d */
2317 struct bt_hci_cp_le_req_peer_sca {
2318 	uint16_t handle;
2319 } __packed;
2320 
2321 #define BT_HCI_OP_LE_SETUP_ISO_PATH             BT_OP(BT_OGF_LE, 0x006e) /* 0x206e */
2322 struct bt_hci_cp_le_setup_iso_path {
2323 	uint16_t handle;
2324 	uint8_t  path_dir;
2325 	uint8_t  path_id;
2326 	struct bt_hci_cp_codec_id codec_id;
2327 	uint8_t  controller_delay[3];
2328 	uint8_t  codec_config_len;
2329 	uint8_t  codec_config[0];
2330 } __packed;
2331 
2332 struct bt_hci_rp_le_setup_iso_path {
2333 	uint8_t  status;
2334 	uint16_t handle;
2335 } __packed;
2336 
2337 #define BT_HCI_OP_LE_REMOVE_ISO_PATH            BT_OP(BT_OGF_LE, 0x006f) /* 0x206f */
2338 struct bt_hci_cp_le_remove_iso_path {
2339 	uint16_t handle;
2340 	uint8_t  path_dir;
2341 } __packed;
2342 
2343 struct bt_hci_rp_le_remove_iso_path {
2344 	uint8_t  status;
2345 	uint16_t handle;
2346 } __packed;
2347 
2348 #define BT_HCI_ISO_TEST_ZERO_SIZE_SDU     0
2349 #define BT_HCI_ISO_TEST_VARIABLE_SIZE_SDU 1
2350 #define BT_HCI_ISO_TEST_MAX_SIZE_SDU      2
2351 
2352 #define BT_HCI_OP_LE_ISO_TRANSMIT_TEST          BT_OP(BT_OGF_LE, 0x0070) /* 0x2070 */
2353 struct bt_hci_cp_le_iso_transmit_test {
2354 	uint16_t handle;
2355 	uint8_t  payload_type;
2356 } __packed;
2357 
2358 struct bt_hci_rp_le_iso_transmit_test {
2359 	uint8_t  status;
2360 	uint16_t handle;
2361 } __packed;
2362 
2363 #define BT_HCI_OP_LE_ISO_RECEIVE_TEST           BT_OP(BT_OGF_LE, 0x0071) /* 0x2071 */
2364 struct bt_hci_cp_le_iso_receive_test {
2365 	uint16_t handle;
2366 	uint8_t  payload_type;
2367 } __packed;
2368 
2369 struct bt_hci_rp_le_iso_receive_test {
2370 	uint8_t  status;
2371 	uint16_t handle;
2372 } __packed;
2373 
2374 #define BT_HCI_OP_LE_ISO_READ_TEST_COUNTERS     BT_OP(BT_OGF_LE, 0x0072) /* 0x2072 */
2375 struct bt_hci_cp_le_read_test_counters {
2376 	uint16_t handle;
2377 } __packed;
2378 
2379 struct bt_hci_rp_le_read_test_counters {
2380 	uint8_t  status;
2381 	uint16_t handle;
2382 	uint32_t received_cnt;
2383 	uint32_t missed_cnt;
2384 	uint32_t failed_cnt;
2385 } __packed;
2386 
2387 #define BT_HCI_OP_LE_ISO_TEST_END               BT_OP(BT_OGF_LE, 0x0073) /* 0x2073 */
2388 struct bt_hci_cp_le_iso_test_end {
2389 	uint16_t handle;
2390 } __packed;
2391 
2392 struct bt_hci_rp_le_iso_test_end {
2393 	uint8_t  status;
2394 	uint16_t handle;
2395 	uint32_t received_cnt;
2396 	uint32_t missed_cnt;
2397 	uint32_t failed_cnt;
2398 } __packed;
2399 
2400 #define BT_HCI_OP_LE_SET_HOST_FEATURE           BT_OP(BT_OGF_LE, 0x0074) /* 0x2074 */
2401 struct bt_hci_cp_le_set_host_feature {
2402 	uint8_t  bit_number;
2403 	uint8_t  bit_value;
2404 } __packed;
2405 
2406 struct bt_hci_rp_le_set_host_feature {
2407 	uint8_t  status;
2408 } __packed;
2409 
2410 #define BT_HCI_OP_LE_READ_ISO_LINK_QUALITY      BT_OP(BT_OGF_LE, 0x0075) /* 0x2075 */
2411 struct bt_hci_cp_le_read_iso_link_quality {
2412 	uint16_t handle;
2413 } __packed;
2414 
2415 struct bt_hci_rp_le_read_iso_link_quality {
2416 	uint8_t  status;
2417 	uint16_t handle;
2418 	uint32_t tx_unacked_packets;
2419 	uint32_t tx_flushed_packets;
2420 	uint32_t tx_last_subevent_packets;
2421 	uint32_t retransmitted_packets;
2422 	uint32_t crc_error_packets;
2423 	uint32_t rx_unreceived_packets;
2424 	uint32_t duplicate_packets;
2425 } __packed;
2426 
2427 #define BT_HCI_OP_LE_TX_TEST_V4                 BT_OP(BT_OGF_LE, 0x007B) /* 0x207B */
2428 
2429 struct bt_hci_cp_le_tx_test_v4 {
2430 	uint8_t  tx_ch;
2431 	uint8_t  test_data_len;
2432 	uint8_t  pkt_payload;
2433 	uint8_t  phy;
2434 	uint8_t  cte_len;
2435 	uint8_t  cte_type;
2436 	uint8_t  switch_pattern_len;
2437 	uint8_t  ant_ids[0];
2438 } __packed;
2439 
2440 #define BT_HCI_TX_TEST_POWER_MIN -0x7F
2441 #define BT_HCI_TX_TEST_POWER_MAX 0x14
2442 
2443 #define BT_HCI_TX_TEST_POWER_MIN_SET 0x7E
2444 #define BT_HCI_TX_TEST_POWER_MAX_SET 0x7F
2445 
2446 /* Helper structure for Tx power parameter in the HCI Tx Test v4 command.
2447  * Previous parameter of this command is variable size so having separated structure
2448  * for this parameter helps in command parameters unpacking.
2449  */
2450 struct bt_hci_cp_le_tx_test_v4_tx_power {
2451 	int8_t tx_power;
2452 } __packed;
2453 
2454 #define BT_HCI_OP_LE_CS_READ_LOCAL_SUPPORTED_CAPABILITIES BT_OP(BT_OGF_LE, 0x0089) /* 0x2089 */
2455 
2456 struct bt_hci_rp_le_read_local_supported_capabilities {
2457 	uint8_t  status;
2458 	uint8_t  num_config_supported;
2459 	uint16_t max_consecutive_procedures_supported;
2460 	uint8_t  num_antennas_supported;
2461 	uint8_t  max_antenna_paths_supported;
2462 	uint8_t  roles_supported;
2463 	uint8_t  modes_supported;
2464 	uint8_t  rtt_capability;
2465 	uint8_t  rtt_aa_only_n;
2466 	uint8_t  rtt_sounding_n;
2467 	uint8_t  rtt_random_payload_n;
2468 	uint16_t nadm_sounding_capability;
2469 	uint16_t nadm_random_capability;
2470 	uint8_t  cs_sync_phys_supported;
2471 	uint16_t subfeatures_supported;
2472 	uint16_t t_ip1_times_supported;
2473 	uint16_t t_ip2_times_supported;
2474 	uint16_t t_fcs_times_supported;
2475 	uint16_t t_pm_times_supported;
2476 	uint8_t  t_sw_time_supported;
2477 	uint8_t  tx_snr_capability;
2478 } __packed;
2479 
2480 #define BT_HCI_OP_LE_CS_READ_REMOTE_SUPPORTED_CAPABILITIES BT_OP(BT_OGF_LE, 0x008A) /* 0x208A */
2481 
2482 struct bt_hci_cp_le_read_remote_supported_capabilities {
2483 	uint16_t handle;
2484 } __packed;
2485 
2486 #define BT_HCI_OP_LE_CS_WRITE_CACHED_REMOTE_SUPPORTED_CAPABILITIES \
2487 	BT_OP(BT_OGF_LE, 0x008B) /* 0x208B */
2488 
2489 struct bt_hci_cp_le_write_cached_remote_supported_capabilities {
2490 	uint16_t handle;
2491 	uint8_t  num_config_supported;
2492 	uint16_t max_consecutive_procedures_supported;
2493 	uint8_t  num_antennas_supported;
2494 	uint8_t  max_antenna_paths_supported;
2495 	uint8_t  roles_supported;
2496 	uint8_t  modes_supported;
2497 	uint8_t  rtt_capability;
2498 	uint8_t  rtt_aa_only_n;
2499 	uint8_t  rtt_sounding_n;
2500 	uint8_t  rtt_random_payload_n;
2501 	uint16_t nadm_sounding_capability;
2502 	uint16_t nadm_random_capability;
2503 	uint8_t  cs_sync_phys_supported;
2504 	uint16_t subfeatures_supported;
2505 	uint16_t t_ip1_times_supported;
2506 	uint16_t t_ip2_times_supported;
2507 	uint16_t t_fcs_times_supported;
2508 	uint16_t t_pm_times_supported;
2509 	uint8_t  t_sw_time_supported;
2510 	uint8_t  tx_snr_capability;
2511 } __packed;
2512 
2513 #define BT_HCI_OP_LE_CS_SECURITY_ENABLE BT_OP(BT_OGF_LE, 0x008C) /* 0x208C */
2514 
2515 struct bt_hci_cp_le_security_enable {
2516 	uint16_t handle;
2517 } __packed;
2518 
2519 #define BT_HCI_OP_LE_CS_SET_DEFAULT_SETTINGS BT_OP(BT_OGF_LE, 0x008D) /* 0x208D */
2520 
2521 #define BT_HCI_OP_LE_CS_INITIATOR_ROLE_MASK BIT(0)
2522 #define BT_HCI_OP_LE_CS_REFLECTOR_ROLE_MASK BIT(1)
2523 
2524 #define BT_HCI_OP_LE_CS_MIN_MAX_TX_POWER -127
2525 #define BT_HCI_OP_LE_CS_MAX_MAX_TX_POWER 20
2526 
2527 #define BT_HCI_OP_LE_CS_ANTENNA_SEL_ONE   0x01
2528 #define BT_HCI_OP_LE_CS_ANTENNA_SEL_TWO   0x02
2529 #define BT_HCI_OP_LE_CS_ANTENNA_SEL_THREE 0x03
2530 #define BT_HCI_OP_LE_CS_ANTENNA_SEL_FOUR  0x04
2531 #define BT_HCI_OP_LE_CS_ANTENNA_SEL_REP   0xFE
2532 #define BT_HCI_OP_LE_CS_ANTENNA_SEL_NONE  0xFF
2533 
2534 struct bt_hci_cp_le_cs_set_default_settings {
2535 	uint16_t handle;
2536 	uint8_t  role_enable;
2537 	uint8_t  cs_sync_antenna_selection;
2538 	int8_t   max_tx_power;
2539 } __packed;
2540 
2541 #define BT_HCI_OP_LE_CS_READ_REMOTE_FAE_TABLE BT_OP(BT_OGF_LE, 0x008E) /* 0x208E */
2542 
2543 struct bt_hci_cp_le_read_remote_fae_table {
2544 	uint16_t handle;
2545 } __packed;
2546 
2547 #define BT_HCI_OP_LE_CS_WRITE_CACHED_REMOTE_FAE_TABLE BT_OP(BT_OGF_LE, 0x008F) /* 0x208F */
2548 
2549 struct bt_hci_cp_le_write_cached_remote_fae_table {
2550 	uint16_t handle;
2551 	int8_t   remote_fae_table[72];
2552 } __packed;
2553 
2554 #define BT_HCI_OP_LE_CS_SET_CHANNEL_CLASSIFICATION BT_OP(BT_OGF_LE, 0x0092) /* 0x2092 */
2555 
2556 #define BT_HCI_OP_LE_CS_SET_PROCEDURE_PARAMETERS BT_OP(BT_OGF_LE, 0x0093) /* 0x2093 */
2557 
2558 #define BT_HCI_OP_LE_CS_PROCEDURE_PHY_1M       0x01
2559 #define BT_HCI_OP_LE_CS_PROCEDURE_PHY_2M       0x02
2560 #define BT_HCI_OP_LE_CS_PROCEDURE_PHY_CODED_S8 0x03
2561 #define BT_HCI_OP_LE_CS_PROCEDURE_PHY_CODED_S2 0x04
2562 
2563 struct bt_hci_cp_le_set_procedure_parameters {
2564 	uint16_t handle;
2565 	uint8_t  config_id;
2566 	uint16_t max_procedure_len;
2567 	uint16_t min_procedure_interval;
2568 	uint16_t max_procedure_interval;
2569 	uint16_t max_procedure_count;
2570 	uint8_t  min_subevent_len[3];
2571 	uint8_t  max_subevent_len[3];
2572 	uint8_t  tone_antenna_config_selection;
2573 	uint8_t  phy;
2574 	uint8_t  tx_power_delta;
2575 	uint8_t  preferred_peer_antenna;
2576 	uint8_t  snr_control_initiator;
2577 	uint8_t  snr_control_reflector;
2578 } __packed;
2579 
2580 #define BT_HCI_OP_LE_CS_PROCEDURE_ENABLE BT_OP(BT_OGF_LE, 0x0094) /* 0x2094 */
2581 
2582 #define BT_HCI_OP_LE_CS_PROCEDURES_DISABLED 0x00
2583 #define BT_HCI_OP_LE_CS_PROCEDURES_ENABLED  0x01
2584 
2585 struct bt_hci_cp_le_procedure_enable {
2586 	uint16_t handle;
2587 	uint8_t  config_id;
2588 	uint8_t  enable;
2589 } __packed;
2590 
2591 #define BT_HCI_OP_LE_CS_TEST BT_OP(BT_OGF_LE, 0x0095) /* 0x2095 */
2592 
2593 #define BT_HCI_OP_LE_CS_MAIN_MODE_1 0x1
2594 #define BT_HCI_OP_LE_CS_MAIN_MODE_2 0x2
2595 #define BT_HCI_OP_LE_CS_MAIN_MODE_3 0x3
2596 
2597 #define BT_HCI_OP_LE_CS_SUB_MODE_1 0x1
2598 #define BT_HCI_OP_LE_CS_SUB_MODE_2 0x2
2599 #define BT_HCI_OP_LE_CS_SUB_MODE_3 0x3
2600 #define BT_HCI_OP_LE_CS_SUB_MODE_UNUSED 0xFF
2601 
2602 #define BT_HCI_OP_LE_CS_INITIATOR_ROLE 0x0
2603 #define BT_HCI_OP_LE_CS_REFLECTOR_ROLE 0x1
2604 
2605 #define BT_HCI_OP_LE_CS_RTT_TYPE_AA_ONLY     0x0
2606 #define BT_HCI_OP_LE_CS_RTT_TYPE_32BIT_SOUND 0x1
2607 #define BT_HCI_OP_LE_CS_RTT_TYPE_96BIT_SOUND 0x2
2608 #define BT_HCI_OP_LE_CS_RTT_TYPE_32BIT_RAND  0x3
2609 #define BT_HCI_OP_LE_CS_RTT_TYPE_64BIT_RAND  0x4
2610 #define BT_HCI_OP_LE_CS_RTT_TYPE_96BIT_RAND  0x5
2611 #define BT_HCI_OP_LE_CS_RTT_TYPE_128BIT_RAND 0x6
2612 
2613 #define BT_HCI_OP_LE_CS_CS_SYNC_1M     0x1
2614 #define BT_HCI_OP_LE_CS_CS_SYNC_2M     0x2
2615 #define BT_HCI_OP_LE_CS_CS_SYNC_2M_2BT 0x3
2616 
2617 #define BT_HCI_OP_LE_CS_TEST_MINIMIZE_TX_POWER 0x7E
2618 #define BT_HCI_OP_LE_CS_TEST_MAXIMIZE_TX_POWER 0x7F
2619 
2620 #define BT_HCI_OP_LE_CS_ACI_0 0x0
2621 #define BT_HCI_OP_LE_CS_ACI_1 0x1
2622 #define BT_HCI_OP_LE_CS_ACI_2 0x2
2623 #define BT_HCI_OP_LE_CS_ACI_3 0x3
2624 #define BT_HCI_OP_LE_CS_ACI_4 0x4
2625 #define BT_HCI_OP_LE_CS_ACI_5 0x5
2626 #define BT_HCI_OP_LE_CS_ACI_6 0x6
2627 #define BT_HCI_OP_LE_CS_ACI_7 0x7
2628 
2629 #define BT_HCI_OP_LE_CS_SNR_18 0x0
2630 #define BT_HCI_OP_LE_CS_SNR_21 0x1
2631 #define BT_HCI_OP_LE_CS_SNR_24 0x2
2632 #define BT_HCI_OP_LE_CS_SNR_27 0x3
2633 #define BT_HCI_OP_LE_CS_SNR_30 0x4
2634 #define BT_HCI_OP_LE_CS_SNR_NOT_USED 0xFF
2635 
2636 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_0_MASK BIT(0)
2637 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_2_MASK BIT(2)
2638 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_3_MASK BIT(3)
2639 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_4_MASK BIT(4)
2640 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_5_MASK BIT(5)
2641 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_6_MASK BIT(6)
2642 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_7_MASK BIT(7)
2643 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_8_MASK BIT(8)
2644 #define BT_HCI_OP_LE_CS_TEST_OVERRIDE_CONFIG_10_MASK BIT(10)
2645 
2646 #define BT_HCI_OP_LE_CS_TEST_CHSEL_TYPE_3B 0x0
2647 #define BT_HCI_OP_LE_CS_TEST_CHSEL_TYPE_3C 0x1
2648 
2649 #define BT_HCI_OP_LE_CS_TEST_CH3C_SHAPE_HAT 0x0
2650 #define BT_HCI_OP_LE_CS_TEST_CH3C_SHAPE_X   0x1
2651 
2652 #define BT_HCI_OP_LE_CS_TEST_TONE_EXT_NONE 0x0
2653 #define BT_HCI_OP_LE_CS_TEST_TONE_EXT_INIT 0x1
2654 #define BT_HCI_OP_LE_CS_TEST_TONE_EXT_REFL 0x2
2655 #define BT_HCI_OP_LE_CS_TEST_TONE_EXT_BOTH 0x3
2656 #define BT_HCI_OP_LE_CS_TEST_TONE_EXT_REPEAT 0x4
2657 
2658 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_00 0x0
2659 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_01 0x1
2660 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_02 0x2
2661 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_03 0x3
2662 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_04 0x4
2663 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_05 0x5
2664 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_06 0x6
2665 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_07 0x7
2666 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_08 0x8
2667 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_09 0x9
2668 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_10 0xA
2669 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_11 0xB
2670 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_12 0xC
2671 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_13 0xD
2672 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_14 0xE
2673 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_15 0xF
2674 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_16 0x10
2675 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_17 0x11
2676 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_18 0x12
2677 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_19 0x13
2678 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_20 0x14
2679 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_21 0x15
2680 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_22 0x16
2681 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_23 0x17
2682 #define BT_HCI_OP_LE_CS_TEST_AP_INDEX_LOOP 0xFF
2683 
2684 #define BT_HCI_OP_LE_CS_TEST_SS_MARKER_2_POSITION_NOT_PRESENT 0xFF
2685 
2686 #define BT_HCI_OP_LE_CS_TEST_SS_MARKER_VAL_0011 0x0
2687 #define BT_HCI_OP_LE_CS_TEST_SS_MARKER_VAL_1100 0x1
2688 #define BT_HCI_OP_LE_CS_TEST_SS_MARKER_VAL_LOOP 0x2
2689 
2690 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_PRBS9    0x00
2691 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_11110000 0x01
2692 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_10101010 0x02
2693 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_PRBS15   0x03
2694 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_11111111 0x04
2695 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_00000000 0x05
2696 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_00001111 0x06
2697 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_01010101 0x07
2698 #define BT_HCI_OP_LE_CS_TEST_PAYLOAD_USER     0x80
2699 
2700 struct bt_hci_op_le_cs_test {
2701 	uint8_t  main_mode_type;
2702 	uint8_t  sub_mode_type;
2703 	uint8_t  main_mode_repetition;
2704 	uint8_t  mode_0_steps;
2705 	uint8_t  role;
2706 	uint8_t  rtt_type;
2707 	uint8_t  cs_sync_phy;
2708 	uint8_t  cs_sync_antenna_selection;
2709 	uint8_t  subevent_len[3];
2710 	uint16_t subevent_interval;
2711 	uint8_t  max_num_subevents;
2712 	uint8_t  transmit_power_level;
2713 	uint8_t  t_ip1_time;
2714 	uint8_t  t_ip2_time;
2715 	uint8_t  t_fcs_time;
2716 	uint8_t  t_pm_time;
2717 	uint8_t  t_sw_time;
2718 	uint8_t  tone_antenna_config_selection;
2719 	uint8_t  reserved;
2720 	uint8_t  snr_control_initiator;
2721 	uint8_t  snr_control_reflector;
2722 	uint16_t drbg_nonce;
2723 	uint8_t  channel_map_repetition;
2724 	uint16_t override_config;
2725 	uint8_t  override_parameters_length;
2726 	uint8_t  override_parameters_data[];
2727 } __packed;
2728 
2729 #define BT_HCI_OP_LE_CS_CREATE_CONFIG BT_OP(BT_OGF_LE, 0x0090) /* 0x2090 */
2730 
2731 struct bt_hci_cp_le_cs_create_config {
2732 	uint16_t handle;
2733 	uint8_t  config_id;
2734 	uint8_t  create_context;
2735 	uint8_t  main_mode_type;
2736 	uint8_t  sub_mode_type;
2737 	uint8_t  min_main_mode_steps;
2738 	uint8_t  max_main_mode_steps;
2739 	uint8_t  main_mode_repetition;
2740 	uint8_t  mode_0_steps;
2741 	uint8_t  role;
2742 	uint8_t  rtt_type;
2743 	uint8_t  cs_sync_phy;
2744 	uint8_t  channel_map[10];
2745 	uint8_t  channel_map_repetition;
2746 	uint8_t  channel_selection_type;
2747 	uint8_t  ch3c_shape;
2748 	uint8_t  ch3c_jump;
2749 	uint8_t  reserved;
2750 } __packed;
2751 
2752 #define BT_HCI_OP_LE_CS_REMOVE_CONFIG BT_OP(BT_OGF_LE, 0x0091) /* 0x2091 */
2753 
2754 struct bt_hci_cp_le_cs_remove_config {
2755 	uint16_t handle;
2756 	uint8_t  config_id;
2757 } __packed;
2758 
2759 #define BT_HCI_OP_LE_CS_TEST_END BT_OP(BT_OGF_LE, 0x0096) /* 0x2096 */
2760 
2761 /* Event definitions */
2762 
2763 #define BT_HCI_EVT_UNKNOWN                      0x00
2764 #define BT_HCI_EVT_VENDOR                       0xff
2765 
2766 #define BT_HCI_EVT_INQUIRY_COMPLETE             0x01
2767 struct bt_hci_evt_inquiry_complete {
2768 	uint8_t status;
2769 } __packed;
2770 
2771 #define BT_HCI_EVT_CONN_COMPLETE                0x03
2772 struct bt_hci_evt_conn_complete {
2773 	uint8_t   status;
2774 	uint16_t  handle;
2775 	bt_addr_t bdaddr;
2776 	uint8_t   link_type;
2777 	uint8_t   encr_enabled;
2778 } __packed;
2779 
2780 #define BT_HCI_EVT_CONN_REQUEST                 0x04
2781 struct bt_hci_evt_conn_request {
2782 	bt_addr_t bdaddr;
2783 	uint8_t   dev_class[3];
2784 	uint8_t   link_type;
2785 } __packed;
2786 
2787 #define BT_HCI_EVT_DISCONN_COMPLETE             0x05
2788 struct bt_hci_evt_disconn_complete {
2789 	uint8_t  status;
2790 	uint16_t handle;
2791 	uint8_t  reason;
2792 } __packed;
2793 
2794 #define BT_HCI_EVT_AUTH_COMPLETE                0x06
2795 struct bt_hci_evt_auth_complete {
2796 	uint8_t  status;
2797 	uint16_t handle;
2798 } __packed;
2799 
2800 #define BT_HCI_EVT_REMOTE_NAME_REQ_COMPLETE     0x07
2801 struct bt_hci_evt_remote_name_req_complete {
2802 	uint8_t   status;
2803 	bt_addr_t bdaddr;
2804 	uint8_t   name[248];
2805 } __packed;
2806 
2807 /* Encryption Value */
2808 #define BT_HCI_ENCRYPTION_OFF           0x00
2809 #define BT_HCI_ENCRYPTION_ON_LE_AES_CCM 0x01
2810 #define BT_HCI_ENCRYPTION_ON_BR_E0      0x01
2811 #define BT_HCI_ENCRYPTION_ON_BR_AES_CCM 0x02
2812 
2813 #define BT_HCI_EVT_ENCRYPT_CHANGE               0x08
2814 struct bt_hci_evt_encrypt_change {
2815 	uint8_t  status;
2816 	uint16_t handle;
2817 	uint8_t  encrypt;
2818 } __packed;
2819 
2820 #define BT_HCI_EVT_REMOTE_FEATURES              0x0b
2821 struct bt_hci_evt_remote_features {
2822 	uint8_t  status;
2823 	uint16_t handle;
2824 	uint8_t  features[8];
2825 } __packed;
2826 
2827 #define BT_HCI_EVT_REMOTE_VERSION_INFO          0x0c
2828 struct bt_hci_evt_remote_version_info {
2829 	uint8_t  status;
2830 	uint16_t handle;
2831 	uint8_t  version;
2832 	uint16_t manufacturer;
2833 	uint16_t subversion;
2834 } __packed;
2835 
2836 #define BT_HCI_EVT_CMD_COMPLETE                 0x0e
2837 struct bt_hci_evt_cmd_complete {
2838 	uint8_t  ncmd;
2839 	uint16_t opcode;
2840 } __packed;
2841 
2842 struct bt_hci_evt_cc_status {
2843 	uint8_t  status;
2844 } __packed;
2845 
2846 #define BT_HCI_EVT_CMD_STATUS                   0x0f
2847 struct bt_hci_evt_cmd_status {
2848 	uint8_t  status;
2849 	uint8_t  ncmd;
2850 	uint16_t opcode;
2851 } __packed;
2852 
2853 #define BT_HCI_EVT_HARDWARE_ERROR               0x10
2854 struct bt_hci_evt_hardware_error {
2855 	uint8_t  hardware_code;
2856 } __packed;
2857 
2858 #define BT_HCI_EVT_ROLE_CHANGE                  0x12
2859 struct bt_hci_evt_role_change {
2860 	uint8_t   status;
2861 	bt_addr_t bdaddr;
2862 	uint8_t   role;
2863 } __packed;
2864 
2865 #define BT_HCI_EVT_NUM_COMPLETED_PACKETS        0x13
2866 struct bt_hci_evt_num_completed_packets {
2867 	uint8_t  num_handles;
2868 	struct bt_hci_handle_count h[0];
2869 } __packed;
2870 
2871 #define BT_HCI_EVT_PIN_CODE_REQ                 0x16
2872 struct bt_hci_evt_pin_code_req {
2873 	bt_addr_t bdaddr;
2874 } __packed;
2875 
2876 #define BT_HCI_EVT_LINK_KEY_REQ                 0x17
2877 struct bt_hci_evt_link_key_req {
2878 	bt_addr_t bdaddr;
2879 } __packed;
2880 
2881 /* Link Key types */
2882 #define BT_LK_COMBINATION                       0x00
2883 #define BT_LK_LOCAL_UNIT                        0x01
2884 #define BT_LK_REMOTE_UNIT                       0x02
2885 #define BT_LK_DEBUG_COMBINATION                 0x03
2886 #define BT_LK_UNAUTH_COMBINATION_P192           0x04
2887 #define BT_LK_AUTH_COMBINATION_P192             0x05
2888 #define BT_LK_CHANGED_COMBINATION               0x06
2889 #define BT_LK_UNAUTH_COMBINATION_P256           0x07
2890 #define BT_LK_AUTH_COMBINATION_P256             0x08
2891 
2892 #define BT_HCI_EVT_LINK_KEY_NOTIFY              0x18
2893 struct bt_hci_evt_link_key_notify {
2894 	bt_addr_t bdaddr;
2895 	uint8_t   link_key[16];
2896 	uint8_t   key_type;
2897 } __packed;
2898 
2899 /* Overflow link types */
2900 #define BT_OVERFLOW_LINK_SYNCH                  0x00
2901 #define BT_OVERFLOW_LINK_ACL                    0x01
2902 #define BT_OVERFLOW_LINK_ISO                    0x02
2903 
2904 #define BT_HCI_EVT_DATA_BUF_OVERFLOW            0x1a
2905 struct bt_hci_evt_data_buf_overflow {
2906 	uint8_t  link_type;
2907 } __packed;
2908 
2909 #define BT_HCI_EVT_INQUIRY_RESULT_WITH_RSSI     0x22
2910 struct bt_hci_evt_inquiry_result_with_rssi {
2911 	bt_addr_t addr;
2912 	uint8_t   pscan_rep_mode;
2913 	uint8_t   reserved;
2914 	uint8_t   cod[3];
2915 	uint16_t  clock_offset;
2916 	int8_t    rssi;
2917 } __packed;
2918 
2919 #define BT_HCI_EVT_REMOTE_EXT_FEATURES          0x23
2920 struct bt_hci_evt_remote_ext_features {
2921 	uint8_t  status;
2922 	uint16_t handle;
2923 	uint8_t  page;
2924 	uint8_t  max_page;
2925 	uint8_t  features[8];
2926 } __packed;
2927 
2928 #define BT_HCI_EVT_LE_PER_ADV_SYNC_ESTABLISHED_V2 0x24
2929 struct bt_hci_evt_le_per_adv_sync_established_v2 {
2930 	uint8_t      status;
2931 	uint16_t     handle;
2932 	uint8_t      sid;
2933 	bt_addr_le_t adv_addr;
2934 	uint8_t      phy;
2935 	uint16_t     interval;
2936 	uint8_t      clock_accuracy;
2937 	uint8_t      num_subevents;
2938 	uint8_t      subevent_interval;
2939 	uint8_t      response_slot_delay;
2940 	uint8_t      response_slot_spacing;
2941 } __packed;
2942 
2943 #define BT_HCI_EVT_LE_PER_ADVERTISING_REPORT_V2 0x25
2944 struct bt_hci_evt_le_per_advertising_report_v2 {
2945 	uint16_t handle;
2946 	int8_t   tx_power;
2947 	int8_t   rssi;
2948 	uint8_t  cte_type;
2949 	uint16_t periodic_event_counter;
2950 	uint8_t  subevent;
2951 	uint8_t  data_status;
2952 	uint8_t  length;
2953 	uint8_t  data[0];
2954 } __packed;
2955 
2956 #define BT_HCI_EVT_LE_PAST_RECEIVED_V2 0x26
2957 struct bt_hci_evt_le_past_received_v2 {
2958 	uint8_t      status;
2959 	uint16_t     conn_handle;
2960 	uint16_t     service_data;
2961 	uint16_t     sync_handle;
2962 	uint8_t      adv_sid;
2963 	bt_addr_le_t addr;
2964 	uint8_t      phy;
2965 	uint16_t     interval;
2966 	uint8_t      clock_accuracy;
2967 	uint8_t      num_subevents;
2968 	uint8_t      subevent_interval;
2969 	uint8_t      response_slot_delay;
2970 	uint8_t      response_slot_spacing;
2971 } __packed;
2972 
2973 #define BT_HCI_EVT_LE_PER_ADV_SUBEVENT_DATA_REQUEST 0x27
2974 struct bt_hci_evt_le_per_adv_subevent_data_request {
2975 	uint8_t adv_handle;
2976 	uint8_t subevent_start;
2977 	uint8_t subevent_data_count;
2978 } __packed;
2979 
2980 #define BT_HCI_EVT_LE_PER_ADV_RESPONSE_REPORT 0x28
2981 
2982 struct bt_hci_evt_le_per_adv_response {
2983 	int8_t  tx_power;
2984 	int8_t  rssi;
2985 	uint8_t cte_type;
2986 	uint8_t response_slot;
2987 	uint8_t data_status;
2988 	uint8_t data_length;
2989 	uint8_t data[0];
2990 } __packed;
2991 
2992 struct bt_hci_evt_le_per_adv_response_report {
2993 	uint8_t adv_handle;
2994 	uint8_t subevent;
2995 	uint8_t tx_status;
2996 	uint8_t num_responses;
2997 	struct bt_hci_evt_le_per_adv_response responses[0];
2998 } __packed;
2999 
3000 #define BT_HCI_EVT_LE_ENH_CONN_COMPLETE_V2 0x29
3001 struct bt_hci_evt_le_enh_conn_complete_v2 {
3002 	uint8_t      status;
3003 	uint16_t     handle;
3004 	uint8_t      role;
3005 	bt_addr_le_t peer_addr;
3006 	bt_addr_t    local_rpa;
3007 	bt_addr_t    peer_rpa;
3008 	uint16_t     interval;
3009 	uint16_t     latency;
3010 	uint16_t     supv_timeout;
3011 	uint8_t      clock_accuracy;
3012 	uint8_t      adv_handle;
3013 	uint16_t     sync_handle;
3014 } __packed;
3015 
3016 #define BT_HCI_EVT_SYNC_CONN_COMPLETE           0x2c
3017 struct bt_hci_evt_sync_conn_complete {
3018 	uint8_t    status;
3019 	uint16_t   handle;
3020 	bt_addr_t  bdaddr;
3021 	uint8_t    link_type;
3022 	uint8_t    tx_interval;
3023 	uint8_t    retansmission_window;
3024 	uint16_t   rx_pkt_length;
3025 	uint16_t   tx_pkt_length;
3026 	uint8_t    air_mode;
3027 } __packed;
3028 
3029 #define BT_HCI_EVT_EXTENDED_INQUIRY_RESULT      0x2f
3030 struct bt_hci_evt_extended_inquiry_result {
3031 	uint8_t    num_reports;
3032 	bt_addr_t  addr;
3033 	uint8_t    pscan_rep_mode;
3034 	uint8_t    reserved;
3035 	uint8_t    cod[3];
3036 	uint16_t   clock_offset;
3037 	int8_t     rssi;
3038 	uint8_t    eir[240];
3039 } __packed;
3040 
3041 #define BT_HCI_EVT_ENCRYPT_KEY_REFRESH_COMPLETE 0x30
3042 struct bt_hci_evt_encrypt_key_refresh_complete {
3043 	uint8_t  status;
3044 	uint16_t handle;
3045 } __packed;
3046 
3047 #define BT_HCI_EVT_IO_CAPA_REQ                  0x31
3048 struct bt_hci_evt_io_capa_req {
3049 	bt_addr_t bdaddr;
3050 } __packed;
3051 
3052 #define BT_HCI_EVT_IO_CAPA_RESP                 0x32
3053 struct bt_hci_evt_io_capa_resp {
3054 	bt_addr_t bdaddr;
3055 	uint8_t   capability;
3056 	uint8_t   oob_data;
3057 	uint8_t   authentication;
3058 } __packed;
3059 
3060 #define BT_HCI_EVT_USER_CONFIRM_REQ             0x33
3061 struct bt_hci_evt_user_confirm_req {
3062 	bt_addr_t bdaddr;
3063 	uint32_t  passkey;
3064 } __packed;
3065 
3066 #define BT_HCI_EVT_USER_PASSKEY_REQ             0x34
3067 struct bt_hci_evt_user_passkey_req {
3068 	bt_addr_t bdaddr;
3069 } __packed;
3070 
3071 #define BT_HCI_EVT_SSP_COMPLETE                 0x36
3072 struct bt_hci_evt_ssp_complete {
3073 	uint8_t   status;
3074 	bt_addr_t bdaddr;
3075 } __packed;
3076 
3077 #define BT_HCI_EVT_USER_PASSKEY_NOTIFY          0x3b
3078 struct bt_hci_evt_user_passkey_notify {
3079 	bt_addr_t bdaddr;
3080 	uint32_t  passkey;
3081 } __packed;
3082 
3083 #define BT_HCI_EVT_LE_META_EVENT                0x3e
3084 struct bt_hci_evt_le_meta_event {
3085 	uint8_t  subevent;
3086 } __packed;
3087 
3088 #define BT_HCI_EVT_AUTH_PAYLOAD_TIMEOUT_EXP     0x57
3089 struct bt_hci_evt_auth_payload_timeout_exp {
3090 	uint16_t handle;
3091 } __packed;
3092 
3093 #define BT_HCI_ROLE_CENTRAL                     0x00
3094 #define BT_HCI_ROLE_PERIPHERAL                  0x01
3095 
3096 #define BT_HCI_EVT_LE_CONN_COMPLETE             0x01
3097 struct bt_hci_evt_le_conn_complete {
3098 	uint8_t      status;
3099 	uint16_t     handle;
3100 	uint8_t      role;
3101 	bt_addr_le_t peer_addr;
3102 	uint16_t     interval;
3103 	uint16_t     latency;
3104 	uint16_t     supv_timeout;
3105 	uint8_t      clock_accuracy;
3106 } __packed;
3107 
3108 #define BT_HCI_LE_RSSI_NOT_AVAILABLE            0x7F
3109 
3110 #define BT_HCI_EVT_LE_ADVERTISING_REPORT        0x02
3111 struct bt_hci_evt_le_advertising_info {
3112 	uint8_t      evt_type;
3113 	bt_addr_le_t addr;
3114 	uint8_t      length;
3115 	uint8_t      data[0];
3116 } __packed;
3117 struct bt_hci_evt_le_advertising_report {
3118 	uint8_t num_reports;
3119 	struct bt_hci_evt_le_advertising_info adv_info[0];
3120 } __packed;
3121 
3122 /** All limits according to BT Core Spec v5.4 [Vol 4, Part E]. */
3123 #define BT_HCI_LE_INTERVAL_MIN           0x0006
3124 #define BT_HCI_LE_INTERVAL_MAX           0x0c80
3125 #define BT_HCI_LE_PERIPHERAL_LATENCY_MAX 0x01f3
3126 #define BT_HCI_LE_SUPERVISON_TIMEOUT_MIN 0x000a
3127 #define BT_HCI_LE_SUPERVISON_TIMEOUT_MAX 0x0c80
3128 
3129 #define BT_HCI_EVT_LE_CONN_UPDATE_COMPLETE      0x03
3130 struct bt_hci_evt_le_conn_update_complete {
3131 	uint8_t  status;
3132 	uint16_t handle;
3133 	uint16_t interval;
3134 	uint16_t latency;
3135 	uint16_t supv_timeout;
3136 } __packed;
3137 
3138 #define BT_HCI_EVT_LE_REMOTE_FEAT_COMPLETE      0x04
3139 struct bt_hci_evt_le_remote_feat_complete {
3140 	uint8_t  status;
3141 	uint16_t handle;
3142 	uint8_t  features[8];
3143 } __packed;
3144 
3145 #define BT_HCI_EVT_LE_LTK_REQUEST               0x05
3146 struct bt_hci_evt_le_ltk_request {
3147 	uint16_t handle;
3148 	uint64_t rand;
3149 	uint16_t ediv;
3150 } __packed;
3151 
3152 #define BT_HCI_EVT_LE_CONN_PARAM_REQ            0x06
3153 struct bt_hci_evt_le_conn_param_req {
3154 	uint16_t handle;
3155 	uint16_t interval_min;
3156 	uint16_t interval_max;
3157 	uint16_t latency;
3158 	uint16_t timeout;
3159 } __packed;
3160 
3161 #define BT_HCI_EVT_LE_DATA_LEN_CHANGE           0x07
3162 struct bt_hci_evt_le_data_len_change {
3163 	uint16_t handle;
3164 	uint16_t max_tx_octets;
3165 	uint16_t max_tx_time;
3166 	uint16_t max_rx_octets;
3167 	uint16_t max_rx_time;
3168 } __packed;
3169 
3170 #define BT_HCI_EVT_LE_P256_PUBLIC_KEY_COMPLETE  0x08
3171 struct bt_hci_evt_le_p256_public_key_complete {
3172 	uint8_t status;
3173 	uint8_t key[64];
3174 } __packed;
3175 
3176 #define BT_HCI_EVT_LE_GENERATE_DHKEY_COMPLETE   0x09
3177 struct bt_hci_evt_le_generate_dhkey_complete {
3178 	uint8_t status;
3179 	uint8_t dhkey[32];
3180 } __packed;
3181 
3182 #define BT_HCI_EVT_LE_ENH_CONN_COMPLETE         0x0a
3183 struct bt_hci_evt_le_enh_conn_complete {
3184 	uint8_t      status;
3185 	uint16_t     handle;
3186 	uint8_t      role;
3187 	bt_addr_le_t peer_addr;
3188 	bt_addr_t    local_rpa;
3189 	bt_addr_t    peer_rpa;
3190 	uint16_t     interval;
3191 	uint16_t     latency;
3192 	uint16_t     supv_timeout;
3193 	uint8_t      clock_accuracy;
3194 } __packed;
3195 
3196 #define BT_HCI_EVT_LE_DIRECT_ADV_REPORT         0x0b
3197 struct bt_hci_evt_le_direct_adv_info {
3198 	uint8_t      evt_type;
3199 	bt_addr_le_t addr;
3200 	bt_addr_le_t dir_addr;
3201 	int8_t       rssi;
3202 } __packed;
3203 struct bt_hci_evt_le_direct_adv_report {
3204 	uint8_t num_reports;
3205 	struct bt_hci_evt_le_direct_adv_info direct_adv_info[0];
3206 } __packed;
3207 
3208 #define BT_HCI_EVT_LE_PHY_UPDATE_COMPLETE       0x0c
3209 struct bt_hci_evt_le_phy_update_complete {
3210 	uint8_t  status;
3211 	uint16_t handle;
3212 	uint8_t  tx_phy;
3213 	uint8_t  rx_phy;
3214 } __packed;
3215 
3216 #define BT_HCI_EVT_LE_EXT_ADVERTISING_REPORT    0x0d
3217 
3218 #define BT_HCI_LE_ADV_EVT_TYPE_CONN                 BIT(0)
3219 #define BT_HCI_LE_ADV_EVT_TYPE_SCAN                 BIT(1)
3220 #define BT_HCI_LE_ADV_EVT_TYPE_DIRECT               BIT(2)
3221 #define BT_HCI_LE_ADV_EVT_TYPE_SCAN_RSP             BIT(3)
3222 #define BT_HCI_LE_ADV_EVT_TYPE_LEGACY               BIT(4)
3223 
3224 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS(ev_type) (((ev_type) >> 5) & 0x03)
3225 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_COMPLETE   0
3226 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_PARTIAL    1
3227 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_INCOMPLETE 2
3228 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_RX_FAILED  0xFF
3229 
3230 /* Advertising Coding Selection extended advertising report PHY values.
3231  * Only used when Kconfig BT_EXT_ADV_CODING_SELECTION is enabled.
3232  */
3233 #define BT_HCI_LE_ADV_EVT_PHY_1M                0x01
3234 #define BT_HCI_LE_ADV_EVT_PHY_2M                0x02
3235 #define BT_HCI_LE_ADV_EVT_PHY_CODED_S8          0x03
3236 #define BT_HCI_LE_ADV_EVT_PHY_CODED_S2          0x04
3237 
3238 struct bt_hci_evt_le_ext_advertising_info {
3239 	uint16_t     evt_type;
3240 	bt_addr_le_t addr;
3241 	uint8_t      prim_phy;
3242 	uint8_t      sec_phy;
3243 	uint8_t      sid;
3244 	int8_t       tx_power;
3245 	int8_t       rssi;
3246 	uint16_t     interval;
3247 	bt_addr_le_t direct_addr;
3248 	uint8_t      length;
3249 	uint8_t      data[0];
3250 } __packed;
3251 struct bt_hci_evt_le_ext_advertising_report {
3252 	uint8_t num_reports;
3253 	struct bt_hci_evt_le_ext_advertising_info adv_info[0];
3254 } __packed;
3255 
3256 #define BT_HCI_EVT_LE_PER_ADV_SYNC_ESTABLISHED  0x0e
3257 struct bt_hci_evt_le_per_adv_sync_established {
3258 	uint8_t      status;
3259 	uint16_t     handle;
3260 	uint8_t      sid;
3261 	bt_addr_le_t adv_addr;
3262 	uint8_t      phy;
3263 	uint16_t     interval;
3264 	uint8_t      clock_accuracy;
3265 } __packed;
3266 
3267 #define BT_HCI_EVT_LE_PER_ADVERTISING_REPORT    0x0f
3268 struct bt_hci_evt_le_per_advertising_report {
3269 	uint16_t handle;
3270 	int8_t   tx_power;
3271 	int8_t   rssi;
3272 	uint8_t  cte_type;
3273 	uint8_t  data_status;
3274 	uint8_t  length;
3275 	uint8_t  data[0];
3276 } __packed;
3277 
3278 #define BT_HCI_EVT_LE_PER_ADV_SYNC_LOST         0x10
3279 struct bt_hci_evt_le_per_adv_sync_lost {
3280 	uint16_t handle;
3281 } __packed;
3282 
3283 #define BT_HCI_EVT_LE_SCAN_TIMEOUT              0x11
3284 
3285 #define BT_HCI_EVT_LE_ADV_SET_TERMINATED        0x12
3286 struct bt_hci_evt_le_adv_set_terminated {
3287 	uint8_t  status;
3288 	uint8_t  adv_handle;
3289 	uint16_t conn_handle;
3290 	uint8_t  num_completed_ext_adv_evts;
3291 } __packed;
3292 
3293 #define BT_HCI_EVT_LE_SCAN_REQ_RECEIVED         0x13
3294 struct bt_hci_evt_le_scan_req_received {
3295 	uint8_t      handle;
3296 	bt_addr_le_t addr;
3297 } __packed;
3298 
3299 #define BT_HCI_LE_CHAN_SEL_ALGO_1               0x00
3300 #define BT_HCI_LE_CHAN_SEL_ALGO_2               0x01
3301 
3302 #define BT_HCI_EVT_LE_CHAN_SEL_ALGO             0x14
3303 struct bt_hci_evt_le_chan_sel_algo {
3304 	uint16_t handle;
3305 	uint8_t  chan_sel_algo;
3306 } __packed;
3307 
3308 #define BT_HCI_LE_CTE_CRC_OK                    0x0
3309 #define BT_HCI_LE_CTE_CRC_ERR_CTE_BASED_TIME    0x1
3310 #define BT_HCI_LE_CTE_CRC_ERR_CTE_BASED_OTHER   0x2
3311 #define BT_HCI_LE_CTE_INSUFFICIENT_RESOURCES    0xFF
3312 
3313 #define B_HCI_LE_CTE_REPORT_SAMPLE_COUNT_MIN    0x9
3314 #define B_HCI_LE_CTE_REPORT_SAMPLE_COUNT_MAX    0x52
3315 
3316 #define BT_HCI_LE_CTE_REPORT_NO_VALID_SAMPLE    0x80
3317 
3318 #define BT_HCI_EVT_LE_CONNECTIONLESS_IQ_REPORT  0x15
3319 struct bt_hci_le_iq_sample {
3320 	int8_t i;
3321 	int8_t q;
3322 };
3323 
3324 struct bt_hci_evt_le_connectionless_iq_report {
3325 	uint16_t sync_handle;
3326 	uint8_t  chan_idx;
3327 	int16_t  rssi;
3328 	uint8_t  rssi_ant_id;
3329 	uint8_t  cte_type;
3330 	uint8_t  slot_durations;
3331 	uint8_t  packet_status;
3332 	uint16_t per_evt_counter;
3333 	uint8_t  sample_count;
3334 	struct bt_hci_le_iq_sample sample[0];
3335 } __packed;
3336 
3337 #define BT_HCI_EVT_LE_CONNECTION_IQ_REPORT      0x16
3338 struct bt_hci_evt_le_connection_iq_report {
3339 	uint16_t conn_handle;
3340 	uint8_t  rx_phy;
3341 	uint8_t  data_chan_idx;
3342 	int16_t  rssi;
3343 	uint8_t  rssi_ant_id;
3344 	uint8_t  cte_type;
3345 	uint8_t  slot_durations;
3346 	uint8_t  packet_status;
3347 	uint16_t conn_evt_counter;
3348 	uint8_t  sample_count;
3349 	struct bt_hci_le_iq_sample sample[0];
3350 } __packed;
3351 
3352 #define BT_HCI_CTE_REQ_STATUS_RSP_WITHOUT_CTE  0x0
3353 
3354 #define BT_HCI_EVT_LE_CTE_REQUEST_FAILED       0x17
3355 struct bt_hci_evt_le_cte_req_failed {
3356 	/* According to BT 5.3 Core Spec the status field may have following
3357 	 * values:
3358 	 * - BT_HCI_CTE_REQ_STATUS_RSP_WITHOUT_CTE when received LL_CTE_RSP_PDU without CTE.
3359 	 * - Other Controller error code for peer rejected request.
3360 	 */
3361 	uint8_t  status;
3362 	uint16_t conn_handle;
3363 } __packed;
3364 
3365 #define BT_HCI_EVT_LE_PAST_RECEIVED                0x18
3366 struct bt_hci_evt_le_past_received {
3367 	uint8_t      status;
3368 	uint16_t     conn_handle;
3369 	uint16_t     service_data;
3370 	uint16_t     sync_handle;
3371 	uint8_t      adv_sid;
3372 	bt_addr_le_t addr;
3373 	uint8_t      phy;
3374 	uint16_t     interval;
3375 	uint8_t      clock_accuracy;
3376 } __packed;
3377 
3378 #define BT_HCI_EVT_LE_CIS_ESTABLISHED           0x19
3379 struct bt_hci_evt_le_cis_established {
3380 	uint8_t  status;
3381 	uint16_t conn_handle;
3382 	uint8_t  cig_sync_delay[3];
3383 	uint8_t  cis_sync_delay[3];
3384 	uint8_t  c_latency[3];
3385 	uint8_t  p_latency[3];
3386 	uint8_t  c_phy;
3387 	uint8_t  p_phy;
3388 	uint8_t  nse;
3389 	uint8_t  c_bn;
3390 	uint8_t  p_bn;
3391 	uint8_t  c_ft;
3392 	uint8_t  p_ft;
3393 	uint16_t c_max_pdu;
3394 	uint16_t p_max_pdu;
3395 	uint16_t interval;
3396 } __packed;
3397 
3398 #define BT_HCI_EVT_LE_CIS_REQ                   0x1a
3399 struct bt_hci_evt_le_cis_req {
3400 	uint16_t acl_handle;
3401 	uint16_t cis_handle;
3402 	uint8_t  cig_id;
3403 	uint8_t  cis_id;
3404 } __packed;
3405 
3406 #define BT_HCI_EVT_LE_BIG_COMPLETE              0x1b
3407 struct bt_hci_evt_le_big_complete {
3408 	uint8_t  status;
3409 	uint8_t  big_handle;
3410 	uint8_t  sync_delay[3];
3411 	uint8_t  latency[3];
3412 	uint8_t  phy;
3413 	uint8_t  nse;
3414 	uint8_t  bn;
3415 	uint8_t  pto;
3416 	uint8_t  irc;
3417 	uint16_t max_pdu;
3418 	uint16_t iso_interval;
3419 	uint8_t  num_bis;
3420 	uint16_t handle[0];
3421 } __packed;
3422 
3423 #define BT_HCI_EVT_LE_BIG_TERMINATE             0x1c
3424 struct bt_hci_evt_le_big_terminate {
3425 	uint8_t  big_handle;
3426 	uint8_t  reason;
3427 } __packed;
3428 
3429 #define BT_HCI_EVT_LE_BIG_SYNC_ESTABLISHED      0x1d
3430 struct bt_hci_evt_le_big_sync_established {
3431 	uint8_t  status;
3432 	uint8_t  big_handle;
3433 	uint8_t  latency[3];
3434 	uint8_t  nse;
3435 	uint8_t  bn;
3436 	uint8_t  pto;
3437 	uint8_t  irc;
3438 	uint16_t max_pdu;
3439 	uint16_t iso_interval;
3440 	uint8_t  num_bis;
3441 	uint16_t handle[0];
3442 } __packed;
3443 
3444 #define BT_HCI_EVT_LE_BIG_SYNC_LOST             0x1e
3445 struct bt_hci_evt_le_big_sync_lost {
3446 	uint8_t  big_handle;
3447 	uint8_t  reason;
3448 } __packed;
3449 
3450 #define BT_HCI_EVT_LE_REQ_PEER_SCA_COMPLETE     0x1f
3451 struct bt_hci_evt_le_req_peer_sca_complete {
3452 	uint8_t  status;
3453 	uint16_t handle;
3454 	uint8_t  sca;
3455 } __packed;
3456 
3457 #define	BT_HCI_LE_ZONE_ENTERED_LOW      0x0
3458 #define	BT_HCI_LE_ZONE_ENTERED_MIDDLE   0x1
3459 #define	BT_HCI_LE_ZONE_ENTERED_HIGH     0x2
3460 #define	BT_HCI_LE_PATH_LOSS_UNAVAILABLE 0xFF
3461 
3462 #define BT_HCI_EVT_LE_PATH_LOSS_THRESHOLD                   0x20
3463 struct bt_hci_evt_le_path_loss_threshold {
3464 	uint16_t handle;
3465 	uint8_t  current_path_loss;
3466 	uint8_t  zone_entered;
3467 } __packed;
3468 
3469 /** Reason for Transmit power reporting.
3470  */
3471 /* Local Transmit power changed. */
3472 #define	BT_HCI_LE_TX_POWER_REPORT_REASON_LOCAL_CHANGED         0x00
3473 /* Remote Transmit power changed. */
3474 #define	BT_HCI_LE_TX_POWER_REPORT_REASON_REMOTE_CHANGED        0x01
3475 /* HCI_LE_Read_Remote_Transmit_Power_Level command completed. */
3476 #define	BT_HCI_LE_TX_POWER_REPORT_REASON_READ_REMOTE_COMPLETED 0x02
3477 
3478 #define BT_HCI_EVT_LE_TRANSMIT_POWER_REPORT     0x21
3479 struct bt_hci_evt_le_transmit_power_report {
3480 	uint8_t	 status;
3481 	uint16_t handle;
3482 	uint8_t  reason;
3483 	uint8_t  phy;
3484 	int8_t   tx_power_level;
3485 	uint8_t  tx_power_level_flag;
3486 	int8_t   delta;
3487 } __packed;
3488 
3489 #define BT_HCI_EVT_LE_BIGINFO_ADV_REPORT        0x22
3490 struct bt_hci_evt_le_biginfo_adv_report {
3491 	uint16_t sync_handle;
3492 	uint8_t  num_bis;
3493 	uint8_t  nse;
3494 	uint16_t iso_interval;
3495 	uint8_t  bn;
3496 	uint8_t  pto;
3497 	uint8_t  irc;
3498 	uint16_t max_pdu;
3499 	uint8_t  sdu_interval[3];
3500 	uint16_t max_sdu;
3501 	uint8_t  phy;
3502 	uint8_t  framing;
3503 	uint8_t  encryption;
3504 } __packed;
3505 
3506 /** All limits according to BT Core Spec v5.4 [Vol 4, Part E]. */
3507 #define BT_HCI_LE_SUBRATE_FACTOR_MIN   0x0001
3508 #define BT_HCI_LE_SUBRATE_FACTOR_MAX   0x01f4
3509 #define BT_HCI_LE_CONTINUATION_NUM_MAX 0x01f3
3510 
3511 #define BT_HCI_EVT_LE_SUBRATE_CHANGE            0x23
3512 struct bt_hci_evt_le_subrate_change {
3513 	uint8_t  status;
3514 	uint16_t handle;
3515 	uint16_t subrate_factor;
3516 	uint16_t peripheral_latency;
3517 	uint16_t continuation_number;
3518 	uint16_t supervision_timeout;
3519 } __packed;
3520 
3521 #define BT_HCI_EVT_LE_CIS_ESTABLISHED_V2 0x2a
3522 struct bt_hci_evt_le_cis_established_v2 {
3523 	uint8_t  status;
3524 	uint16_t conn_handle;
3525 	uint8_t  cig_sync_delay[3];
3526 	uint8_t  cis_sync_delay[3];
3527 	uint8_t  c_latency[3];
3528 	uint8_t  p_latency[3];
3529 	uint8_t  c_phy;
3530 	uint8_t  p_phy;
3531 	uint8_t  nse;
3532 	uint8_t  c_bn;
3533 	uint8_t  p_bn;
3534 	uint8_t  c_ft;
3535 	uint8_t  p_ft;
3536 	uint16_t c_max_pdu;
3537 	uint16_t p_max_pdu;
3538 	uint16_t interval;
3539 	uint8_t  sub_interval[3];
3540 	uint16_t c_max_sdu;
3541 	uint16_t p_max_sdu;
3542 	uint8_t  c_sdu_interval[3];
3543 	uint8_t  p_sdu_interval[3];
3544 	uint8_t  framing;
3545 } __packed;
3546 
3547 #define BT_HCI_LE_CS_INITIATOR_ROLE_MASK BIT(0)
3548 #define BT_HCI_LE_CS_REFLECTOR_ROLE_MASK BIT(1)
3549 
3550 #define BT_HCI_LE_CS_MODES_SUPPORTED_MODE_3_MASK BIT(0)
3551 
3552 #define BT_HCI_LE_CS_RTT_AA_ONLY_N_10NS_MASK        BIT(0)
3553 #define BT_HCI_LE_CS_RTT_SOUNDING_N_10NS_MASK       BIT(1)
3554 #define BT_HCI_LE_CS_RTT_RANDOM_PAYLOAD_N_10NS_MASK BIT(2)
3555 
3556 #define BT_HCI_LE_CS_NADM_SOUNDING_CAPABILITY_PHASE_BASED_MASK BIT(0)
3557 #define BT_HCI_LE_CS_NADM_RANDOM_CAPABILITY_PHASE_BASED_MASK BIT(0)
3558 
3559 #define BT_HCI_LE_CS_SYNC_PHYS_2M_MASK BIT(1)
3560 #define BT_HCI_LE_CS_SYNC_PHYS_2M_2BT_MASK BIT(2)
3561 
3562 #define BT_HCI_LE_CS_SUBFEATURE_NO_TX_FAE_MASK BIT(1)
3563 #define BT_HCI_LE_CS_SUBFEATURE_CHSEL_ALG_3C_MASK BIT(2)
3564 #define BT_HCI_LE_CS_SUBFEATURE_PBR_FROM_RTT_SOUNDING_SEQ_MASK BIT(3)
3565 
3566 #define BT_HCI_LE_CS_T_IP1_TIME_10US_MASK BIT(0)
3567 #define BT_HCI_LE_CS_T_IP1_TIME_20US_MASK BIT(1)
3568 #define BT_HCI_LE_CS_T_IP1_TIME_30US_MASK BIT(2)
3569 #define BT_HCI_LE_CS_T_IP1_TIME_40US_MASK BIT(3)
3570 #define BT_HCI_LE_CS_T_IP1_TIME_50US_MASK BIT(4)
3571 #define BT_HCI_LE_CS_T_IP1_TIME_60US_MASK BIT(5)
3572 #define BT_HCI_LE_CS_T_IP1_TIME_80US_MASK BIT(6)
3573 
3574 #define BT_HCI_LE_CS_T_IP2_TIME_10US_MASK BIT(0)
3575 #define BT_HCI_LE_CS_T_IP2_TIME_20US_MASK BIT(1)
3576 #define BT_HCI_LE_CS_T_IP2_TIME_30US_MASK BIT(2)
3577 #define BT_HCI_LE_CS_T_IP2_TIME_40US_MASK BIT(3)
3578 #define BT_HCI_LE_CS_T_IP2_TIME_50US_MASK BIT(4)
3579 #define BT_HCI_LE_CS_T_IP2_TIME_60US_MASK BIT(5)
3580 #define BT_HCI_LE_CS_T_IP2_TIME_80US_MASK BIT(6)
3581 
3582 #define BT_HCI_LE_CS_T_FCS_TIME_15US_MASK   BIT(0)
3583 #define BT_HCI_LE_CS_T_FCS_TIME_20US_MASK   BIT(1)
3584 #define BT_HCI_LE_CS_T_FCS_TIME_30US_MASK   BIT(2)
3585 #define BT_HCI_LE_CS_T_FCS_TIME_40US_MASK   BIT(3)
3586 #define BT_HCI_LE_CS_T_FCS_TIME_50US_MASK   BIT(4)
3587 #define BT_HCI_LE_CS_T_FCS_TIME_60US_MASK   BIT(5)
3588 #define BT_HCI_LE_CS_T_FCS_TIME_80US_MASK   BIT(6)
3589 #define BT_HCI_LE_CS_T_FCS_TIME_100US_MASK  BIT(7)
3590 #define BT_HCI_LE_CS_T_FCS_TIME_1200US_MASK BIT(8)
3591 
3592 #define BT_HCI_LE_CS_T_PM_TIME_10US_MASK BIT(0)
3593 #define BT_HCI_LE_CS_T_PM_TIME_20US_MASK BIT(1)
3594 
3595 #define BT_HCI_LE_CS_TX_SNR_CAPABILITY_18DB_MASK BIT(0)
3596 #define BT_HCI_LE_CS_TX_SNR_CAPABILITY_21DB_MASK BIT(1)
3597 #define BT_HCI_LE_CS_TX_SNR_CAPABILITY_24DB_MASK BIT(2)
3598 #define BT_HCI_LE_CS_TX_SNR_CAPABILITY_27DB_MASK BIT(3)
3599 #define BT_HCI_LE_CS_TX_SNR_CAPABILITY_30DB_MASK BIT(4)
3600 
3601 #define BT_HCI_EVT_LE_CS_READ_REMOTE_SUPPORTED_CAPABILITIES_COMPLETE 0x2C
3602 struct bt_hci_evt_le_cs_read_remote_supported_capabilities_complete {
3603 	uint8_t  status;
3604 	uint16_t conn_handle;
3605 	uint8_t  num_config_supported;
3606 	uint16_t max_consecutive_procedures_supported;
3607 	uint8_t  num_antennas_supported;
3608 	uint8_t  max_antenna_paths_supported;
3609 	uint8_t  roles_supported;
3610 	uint8_t  modes_supported;
3611 	uint8_t  rtt_capability;
3612 	uint8_t  rtt_aa_only_n;
3613 	uint8_t  rtt_sounding_n;
3614 	uint8_t  rtt_random_payload_n;
3615 	uint16_t nadm_sounding_capability;
3616 	uint16_t nadm_random_capability;
3617 	uint8_t  cs_sync_phys_supported;
3618 	uint16_t subfeatures_supported;
3619 	uint16_t t_ip1_times_supported;
3620 	uint16_t t_ip2_times_supported;
3621 	uint16_t t_fcs_times_supported;
3622 	uint16_t t_pm_times_supported;
3623 	uint8_t  t_sw_time_supported;
3624 	uint8_t  tx_snr_capability;
3625 } __packed;
3626 
3627 #define BT_HCI_EVT_LE_CS_READ_REMOTE_FAE_TABLE_COMPLETE 0x2D
3628 struct bt_hci_evt_le_cs_read_remote_fae_table_complete {
3629 	uint8_t  status;
3630 	uint16_t conn_handle;
3631 	int8_t   remote_fae_table[72];
3632 } __packed;
3633 
3634 #define BT_HCI_LE_CS_CONFIG_ACTION_REMOVED 0x00
3635 #define BT_HCI_LE_CS_CONFIG_ACTION_CREATED 0x01
3636 
3637 #define BT_HCI_EVT_LE_CS_SECURITY_ENABLE_COMPLETE 0x2E
3638 struct bt_hci_evt_le_cs_security_enable_complete {
3639 	uint8_t  status;
3640 	uint16_t handle;
3641 } __packed;
3642 
3643 #define BT_HCI_EVT_LE_CS_CONFIG_COMPLETE 0x2F
3644 struct bt_hci_evt_le_cs_config_complete {
3645 	uint8_t  status;
3646 	uint16_t handle;
3647 	uint8_t  config_id;
3648 	uint8_t  action;
3649 	uint8_t  main_mode_type;
3650 	uint8_t  sub_mode_type;
3651 	uint8_t  min_main_mode_steps;
3652 	uint8_t  max_main_mode_steps;
3653 	uint8_t  main_mode_repetition;
3654 	uint8_t  mode_0_steps;
3655 	uint8_t  role;
3656 	uint8_t  rtt_type;
3657 	uint8_t  cs_sync_phy;
3658 	uint8_t  channel_map[10];
3659 	uint8_t  channel_map_repetition;
3660 	uint8_t  channel_selection_type;
3661 	uint8_t  ch3c_shape;
3662 	uint8_t  ch3c_jump;
3663 	uint8_t  reserved;
3664 	uint8_t  t_ip1_time;
3665 	uint8_t  t_ip2_time;
3666 	uint8_t  t_fcs_time;
3667 	uint8_t  t_pm_time;
3668 } __packed;
3669 
3670 #define BT_HCI_LE_CS_TEST_CONN_HANDLE 0x0FFF
3671 
3672 #define BT_HCI_LE_CS_PROCEDURE_DONE_STATUS_COMPLETE 0x0
3673 #define BT_HCI_LE_CS_PROCEDURE_DONE_STATUS_PARTIAL  0x1
3674 #define BT_HCI_LE_CS_PROCEDURE_DONE_STATUS_ABORTED  0xF
3675 
3676 #define BT_HCI_LE_CS_SUBEVENT_DONE_STATUS_COMPLETE 0x0
3677 #define BT_HCI_LE_CS_SUBEVENT_DONE_STATUS_PARTIAL  0x1
3678 #define BT_HCI_LE_CS_SUBEVENT_DONE_STATUS_ABORTED  0xF
3679 
3680 #define BT_HCI_LE_CS_PROCEDURE_ABORT_REASON_NO_ABORT                     0x0
3681 #define BT_HCI_LE_CS_PROCEDURE_ABORT_REASON_LOCAL_HOST_OR_REMOTE_REQUEST 0x1
3682 #define BT_HCI_LE_CS_PROCEDURE_ABORT_REASON_TOO_FEW_CHANNELS             0x2
3683 #define BT_HCI_LE_CS_PROCEDURE_ABORT_REASON_CHMAP_INSTANT_PASSED         0x3
3684 #define BT_HCI_LE_CS_PROCEDURE_ABORT_REASON_UNSPECIFIED                  0xF
3685 
3686 #define BT_HCI_LE_CS_SUBEVENT_ABORT_REASON_NO_ABORT                     0x0
3687 #define BT_HCI_LE_CS_SUBEVENT_ABORT_REASON_LOCAL_HOST_OR_REMOTE_REQUEST 0x1
3688 #define BT_HCI_LE_CS_SUBEVENT_ABORT_REASON_NO_CS_SYNC_RECEIVED          0x2
3689 #define BT_HCI_LE_CS_SUBEVENT_ABORT_REASON_SCHED_CONFLICT               0x3
3690 #define BT_HCI_LE_CS_SUBEVENT_ABORT_REASON_UNSPECIFIED                  0xF
3691 
3692 #define BT_HCI_LE_CS_SUBEVENT_RESULT_N_AP_IGNORED 0x00
3693 #define BT_HCI_LE_CS_SUBEVENT_RESULT_N_AP_1       0x01
3694 #define BT_HCI_LE_CS_SUBEVENT_RESULT_N_AP_2       0x02
3695 #define BT_HCI_LE_CS_SUBEVENT_RESULT_N_AP_3       0x03
3696 #define BT_HCI_LE_CS_SUBEVENT_RESULT_N_AP_4       0x04
3697 
3698 #define BT_HCI_LE_CS_SUBEVENT_RESULT_FREQ_COMPENSATION_NOT_AVAILABLE 0xC000
3699 
3700 #define BT_HCI_LE_CS_SUBEVENT_RESULT_PCT_NOT_AVAILABLE 0xFFFFFFFF
3701 
3702 #define BT_HCI_LE_CS_REF_POWER_LEVEL_UNAVAILABLE 0x7F
3703 
3704 #define BT_HCI_LE_CS_PCT_I_MASK 0x000FFF
3705 #define BT_HCI_LE_CS_PCT_Q_MASK 0xFFF000
3706 
3707 #define BT_HCI_LE_CS_TONE_QUALITY_HIGH        0x0
3708 #define BT_HCI_LE_CS_TONE_QUALITY_MED         0x1
3709 #define BT_HCI_LE_CS_TONE_QUALITY_LOW         0x2
3710 #define BT_HCI_LE_CS_TONE_QUALITY_UNAVAILABLE 0x3
3711 
3712 #define BT_HCI_LE_CS_NOT_TONE_EXT_SLOT              0x0
3713 #define BT_HCI_LE_CS_TONE_EXT_SLOT_EXT_NOT_EXPECTED 0x1
3714 #define BT_HCI_LE_CS_TONE_EXT_SLOT_EXT_EXPECTED     0x2
3715 
3716 #define BT_HCI_LE_CS_TIME_DIFFERENCE_NOT_AVAILABLE ((int16_t)0x8000)
3717 
3718 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_EXT_UNLIKELY  0x00
3719 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_VERY_UNLIKELY 0x01
3720 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_UNLIKELY      0x02
3721 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_POSSIBLE      0x03
3722 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_LIKELY        0x04
3723 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_VERY_LIKELY   0x05
3724 #define BT_HCI_LE_CS_PACKET_NADM_ATTACK_EXT_LIKELY    0x06
3725 #define BT_HCI_LE_CS_PACKET_NADM_UNKNOWN              0xFF
3726 
3727 #define BT_HCI_LE_CS_PACKET_QUALITY_AA_CHECK_SUCCESSFUL	      0x0
3728 #define BT_HCI_LE_CS_PACKET_QUALITY_AA_CHECK_BIT_ERRORS_FOUND 0x1
3729 #define BT_HCI_LE_CS_PACKET_QUALITY_AA_CHECK_AA_NOT_FOUND     0x2
3730 
3731 #define BT_HCI_LE_CS_PACKET_RSSI_NOT_AVAILABLE 0x7F
3732 
3733 #define BT_HCI_EVT_LE_CS_SUBEVENT_RESULT 0x31
3734 /** Subevent result step data format: Mode 0 Initiator  */
3735 struct bt_hci_le_cs_step_data_mode_0_initiator {
3736 #ifdef CONFIG_LITTLE_ENDIAN
3737 	uint8_t  packet_quality_aa_check: 4;
3738 	uint8_t  packet_quality_bit_errors: 4;
3739 #else
3740 	uint8_t  packet_quality_bit_errors: 4;
3741 	uint8_t  packet_quality_aa_check: 4;
3742 #endif /* CONFIG_LITTLE_ENDIAN */
3743 	uint8_t  packet_rssi;
3744 	uint8_t  packet_antenna;
3745 	uint16_t measured_freq_offset;
3746 } __packed;
3747 
3748 /** Subevent result step data format: Mode 0 Reflector  */
3749 struct bt_hci_le_cs_step_data_mode_0_reflector {
3750 #ifdef CONFIG_LITTLE_ENDIAN
3751 	uint8_t packet_quality_aa_check: 4;
3752 	uint8_t packet_quality_bit_errors: 4;
3753 #else
3754 	uint8_t packet_quality_bit_errors: 4;
3755 	uint8_t packet_quality_aa_check: 4;
3756 #endif /* CONFIG_LITTLE_ENDIAN */
3757 	uint8_t packet_rssi;
3758 	uint8_t packet_antenna;
3759 } __packed;
3760 
3761 /** Subevent result step data format: Mode 1  */
3762 struct bt_hci_le_cs_step_data_mode_1 {
3763 #ifdef CONFIG_LITTLE_ENDIAN
3764 	uint8_t packet_quality_aa_check: 4;
3765 	uint8_t packet_quality_bit_errors: 4;
3766 #else
3767 	uint8_t packet_quality_bit_errors: 4;
3768 	uint8_t packet_quality_aa_check: 4;
3769 #endif /* CONFIG_LITTLE_ENDIAN */
3770 	uint8_t packet_nadm;
3771 	uint8_t packet_rssi;
3772 	union {
3773 		int16_t toa_tod_initiator;
3774 		int16_t tod_toa_reflector;
3775 	};
3776 	uint8_t packet_antenna;
3777 } __packed;
3778 
3779 /** Subevent result step data format: Mode 1 with sounding sequence RTT support */
3780 struct bt_hci_le_cs_step_data_mode_1_ss_rtt {
3781 #ifdef CONFIG_LITTLE_ENDIAN
3782 	uint8_t packet_quality_aa_check: 4;
3783 	uint8_t packet_quality_bit_errors: 4;
3784 #else
3785 	uint8_t packet_quality_bit_errors: 4;
3786 	uint8_t packet_quality_aa_check: 4;
3787 #endif /* CONFIG_LITTLE_ENDIAN */
3788 	uint8_t packet_nadm;
3789 	uint8_t packet_rssi;
3790 	union {
3791 		int16_t toa_tod_initiator;
3792 		int16_t tod_toa_reflector;
3793 	};
3794 	uint8_t packet_antenna;
3795 	uint8_t packet_pct1[4];
3796 	uint8_t packet_pct2[4];
3797 } __packed;
3798 
3799 
3800 /** Format for per-antenna path step data in modes 2 and 3 */
3801 struct bt_hci_le_cs_step_data_tone_info {
3802 	uint8_t phase_correction_term[3];
3803 #ifdef CONFIG_LITTLE_ENDIAN
3804 	uint8_t quality_indicator: 4;
3805 	uint8_t extension_indicator: 4;
3806 #else
3807 	uint8_t extension_indicator: 4;
3808 	uint8_t quality_indicator: 4;
3809 #endif /* CONFIG_LITTLE_ENDIAN */
3810 } __packed;
3811 
3812 /** Subevent result step data format: Mode 2 */
3813 struct bt_hci_le_cs_step_data_mode_2 {
3814 	uint8_t antenna_permutation_index;
3815 	struct bt_hci_le_cs_step_data_tone_info tone_info[];
3816 } __packed;
3817 
3818 /** Subevent result step data format: Mode 3 */
3819 struct bt_hci_le_cs_step_data_mode_3 {
3820 #ifdef CONFIG_LITTLE_ENDIAN
3821 	uint8_t packet_quality_aa_check: 4;
3822 	uint8_t packet_quality_bit_errors: 4;
3823 #else
3824 	uint8_t packet_quality_bit_errors: 4;
3825 	uint8_t packet_quality_aa_check: 4;
3826 #endif /* CONFIG_LITTLE_ENDIAN */
3827 	uint8_t packet_nadm;
3828 	uint8_t packet_rssi;
3829 	union {
3830 		int16_t toa_tod_initiator;
3831 		int16_t tod_toa_reflector;
3832 	};
3833 	uint8_t packet_antenna;
3834 	uint8_t antenna_permutation_index;
3835 	struct bt_hci_le_cs_step_data_tone_info tone_info[];
3836 } __packed;
3837 
3838 /** Subevent result step data format: Mode 3 with sounding sequence RTT support */
3839 struct bt_hci_le_cs_step_data_mode_3_ss_rtt {
3840 #ifdef CONFIG_LITTLE_ENDIAN
3841 	uint8_t packet_quality_aa_check: 4;
3842 	uint8_t packet_quality_bit_errors: 4;
3843 #else
3844 	uint8_t packet_quality_bit_errors: 4;
3845 	uint8_t packet_quality_aa_check: 4;
3846 #endif /* CONFIG_LITTLE_ENDIAN */
3847 	uint8_t packet_nadm;
3848 	uint8_t packet_rssi;
3849 	union {
3850 		int16_t toa_tod_initiator;
3851 		int16_t tod_toa_reflector;
3852 	};
3853 	uint8_t packet_antenna;
3854 	uint8_t packet_pct1[4];
3855 	uint8_t packet_pct2[4];
3856 	uint8_t antenna_permutation_index;
3857 	struct bt_hci_le_cs_step_data_tone_info tone_info[];
3858 } __packed;
3859 
3860 struct bt_hci_evt_le_cs_subevent_result_step {
3861 	uint8_t step_mode;
3862 	uint8_t step_channel;
3863 	uint8_t step_data_length;
3864 	uint8_t step_data[];
3865 } __packed;
3866 
3867 struct bt_hci_evt_le_cs_subevent_result {
3868 	uint16_t conn_handle;
3869 	uint8_t  config_id;
3870 	uint16_t start_acl_conn_event_counter;
3871 	uint16_t procedure_counter;
3872 	uint16_t frequency_compensation;
3873 	uint8_t  reference_power_level;
3874 	uint8_t  procedure_done_status;
3875 	uint8_t  subevent_done_status;
3876 #ifdef CONFIG_LITTLE_ENDIAN
3877 	uint8_t  procedure_abort_reason: 4;
3878 	uint8_t  subevent_abort_reason: 4;
3879 #else
3880 	uint8_t  subevent_abort_reason: 4;
3881 	uint8_t  procedure_abort_reason: 4;
3882 #endif /* CONFIG_LITTLE_ENDIAN */
3883 	uint8_t  num_antenna_paths;
3884 	uint8_t  num_steps_reported;
3885 	uint8_t  steps[];
3886 } __packed;
3887 
3888 #define BT_HCI_EVT_LE_CS_SUBEVENT_RESULT_CONTINUE 0x32
3889 
3890 struct bt_hci_evt_le_cs_subevent_result_continue {
3891 	uint16_t conn_handle;
3892 	uint8_t  config_id;
3893 	uint8_t  procedure_done_status;
3894 	uint8_t  subevent_done_status;
3895 #ifdef CONFIG_LITTLE_ENDIAN
3896 	uint8_t  procedure_abort_reason: 4;
3897 	uint8_t  subevent_abort_reason: 4;
3898 #else
3899 	uint8_t  subevent_abort_reason: 4;
3900 	uint8_t  procedure_abort_reason: 4;
3901 #endif /* CONFIG_LITTLE_ENDIAN */
3902 	uint8_t  num_antenna_paths;
3903 	uint8_t  num_steps_reported;
3904 	uint8_t  steps[];
3905 } __packed;
3906 
3907 #define BT_HCI_EVT_LE_CS_TEST_END_COMPLETE 0x33
3908 struct bt_hci_evt_le_cs_test_end_complete {
3909 	uint8_t status;
3910 } __packed;
3911 
3912 #define BT_HCI_EVT_LE_CS_PROCEDURE_ENABLE_COMPLETE 0x30
3913 struct bt_hci_evt_le_cs_procedure_enable_complete {
3914 	uint8_t  status;
3915 	uint16_t handle;
3916 	uint8_t  config_id;
3917 	uint8_t  state;
3918 	uint8_t  tone_antenna_config_selection;
3919 	uint8_t  selected_tx_power;
3920 	uint8_t  subevent_len[3];
3921 	uint8_t  subevents_per_event;
3922 	uint16_t subevent_interval;
3923 	uint16_t event_interval;
3924 	uint16_t procedure_interval;
3925 	uint16_t procedure_count;
3926 	uint16_t max_procedure_len;
3927 } __packed;
3928 
3929 /* Event mask bits */
3930 
3931 #define BT_EVT_BIT(n) (1ULL << (n))
3932 
3933 #define BT_EVT_MASK_INQUIRY_COMPLETE             BT_EVT_BIT(0)
3934 #define BT_EVT_MASK_CONN_COMPLETE                BT_EVT_BIT(2)
3935 #define BT_EVT_MASK_CONN_REQUEST                 BT_EVT_BIT(3)
3936 #define BT_EVT_MASK_DISCONN_COMPLETE             BT_EVT_BIT(4)
3937 #define BT_EVT_MASK_AUTH_COMPLETE                BT_EVT_BIT(5)
3938 #define BT_EVT_MASK_REMOTE_NAME_REQ_COMPLETE     BT_EVT_BIT(6)
3939 #define BT_EVT_MASK_ENCRYPT_CHANGE               BT_EVT_BIT(7)
3940 #define BT_EVT_MASK_REMOTE_FEATURES              BT_EVT_BIT(10)
3941 #define BT_EVT_MASK_REMOTE_VERSION_INFO          BT_EVT_BIT(11)
3942 #define BT_EVT_MASK_HARDWARE_ERROR               BT_EVT_BIT(15)
3943 #define BT_EVT_MASK_ROLE_CHANGE                  BT_EVT_BIT(17)
3944 #define BT_EVT_MASK_PIN_CODE_REQ                 BT_EVT_BIT(21)
3945 #define BT_EVT_MASK_LINK_KEY_REQ                 BT_EVT_BIT(22)
3946 #define BT_EVT_MASK_LINK_KEY_NOTIFY              BT_EVT_BIT(23)
3947 #define BT_EVT_MASK_DATA_BUFFER_OVERFLOW         BT_EVT_BIT(25)
3948 #define BT_EVT_MASK_INQUIRY_RESULT_WITH_RSSI     BT_EVT_BIT(33)
3949 #define BT_EVT_MASK_REMOTE_EXT_FEATURES          BT_EVT_BIT(34)
3950 #define BT_EVT_MASK_SYNC_CONN_COMPLETE           BT_EVT_BIT(43)
3951 #define BT_EVT_MASK_EXTENDED_INQUIRY_RESULT      BT_EVT_BIT(46)
3952 #define BT_EVT_MASK_ENCRYPT_KEY_REFRESH_COMPLETE BT_EVT_BIT(47)
3953 #define BT_EVT_MASK_IO_CAPA_REQ                  BT_EVT_BIT(48)
3954 #define BT_EVT_MASK_IO_CAPA_RESP                 BT_EVT_BIT(49)
3955 #define BT_EVT_MASK_USER_CONFIRM_REQ             BT_EVT_BIT(50)
3956 #define BT_EVT_MASK_USER_PASSKEY_REQ             BT_EVT_BIT(51)
3957 #define BT_EVT_MASK_SSP_COMPLETE                 BT_EVT_BIT(53)
3958 #define BT_EVT_MASK_USER_PASSKEY_NOTIFY          BT_EVT_BIT(58)
3959 #define BT_EVT_MASK_LE_META_EVENT                BT_EVT_BIT(61)
3960 
3961 /* Page 2 */
3962 #define BT_EVT_MASK_NUM_COMPLETE_DATA_BLOCKS     BT_EVT_BIT(8)
3963 #define BT_EVT_MASK_TRIGG_CLOCK_CAPTURE          BT_EVT_BIT(14)
3964 #define BT_EVT_MASK_SYNCH_TRAIN_COMPLETE         BT_EVT_BIT(15)
3965 #define BT_EVT_MASK_SYNCH_TRAIN_RX               BT_EVT_BIT(16)
3966 #define BT_EVT_MASK_CL_PER_BC_RX                 BT_EVT_BIT(17)
3967 #define BT_EVT_MASK_CL_PER_BC_TIMEOUT            BT_EVT_BIT(18)
3968 #define BT_EVT_MASK_TRUNC_PAGE_COMPLETE          BT_EVT_BIT(19)
3969 #define BT_EVT_MASK_PER_PAGE_RSP_TIMEOUT         BT_EVT_BIT(20)
3970 #define BT_EVT_MASK_CL_PER_BC_CH_MAP_CHANGE      BT_EVT_BIT(21)
3971 #define BT_EVT_MASK_INQUIRY_RSP_NOT              BT_EVT_BIT(22)
3972 #define BT_EVT_MASK_AUTH_PAYLOAD_TIMEOUT_EXP     BT_EVT_BIT(23)
3973 #define BT_EVT_MASK_SAM_STATUS_CHANGE            BT_EVT_BIT(24)
3974 
3975 #define BT_EVT_MASK_LE_CONN_COMPLETE             BT_EVT_BIT(0)
3976 #define BT_EVT_MASK_LE_ADVERTISING_REPORT        BT_EVT_BIT(1)
3977 #define BT_EVT_MASK_LE_CONN_UPDATE_COMPLETE      BT_EVT_BIT(2)
3978 #define BT_EVT_MASK_LE_REMOTE_FEAT_COMPLETE      BT_EVT_BIT(3)
3979 #define BT_EVT_MASK_LE_LTK_REQUEST               BT_EVT_BIT(4)
3980 #define BT_EVT_MASK_LE_CONN_PARAM_REQ            BT_EVT_BIT(5)
3981 #define BT_EVT_MASK_LE_DATA_LEN_CHANGE           BT_EVT_BIT(6)
3982 #define BT_EVT_MASK_LE_P256_PUBLIC_KEY_COMPLETE  BT_EVT_BIT(7)
3983 #define BT_EVT_MASK_LE_GENERATE_DHKEY_COMPLETE   BT_EVT_BIT(8)
3984 #define BT_EVT_MASK_LE_ENH_CONN_COMPLETE         BT_EVT_BIT(9)
3985 #define BT_EVT_MASK_LE_DIRECT_ADV_REPORT         BT_EVT_BIT(10)
3986 #define BT_EVT_MASK_LE_PHY_UPDATE_COMPLETE       BT_EVT_BIT(11)
3987 #define BT_EVT_MASK_LE_EXT_ADVERTISING_REPORT    BT_EVT_BIT(12)
3988 #define BT_EVT_MASK_LE_PER_ADV_SYNC_ESTABLISHED  BT_EVT_BIT(13)
3989 #define BT_EVT_MASK_LE_PER_ADVERTISING_REPORT    BT_EVT_BIT(14)
3990 #define BT_EVT_MASK_LE_PER_ADV_SYNC_LOST         BT_EVT_BIT(15)
3991 #define BT_EVT_MASK_LE_SCAN_TIMEOUT              BT_EVT_BIT(16)
3992 #define BT_EVT_MASK_LE_ADV_SET_TERMINATED        BT_EVT_BIT(17)
3993 #define BT_EVT_MASK_LE_SCAN_REQ_RECEIVED         BT_EVT_BIT(18)
3994 #define BT_EVT_MASK_LE_CHAN_SEL_ALGO             BT_EVT_BIT(19)
3995 #define BT_EVT_MASK_LE_CONNECTIONLESS_IQ_REPORT  BT_EVT_BIT(20)
3996 #define BT_EVT_MASK_LE_CONNECTION_IQ_REPORT      BT_EVT_BIT(21)
3997 #define BT_EVT_MASK_LE_CTE_REQUEST_FAILED        BT_EVT_BIT(22)
3998 #define BT_EVT_MASK_LE_PAST_RECEIVED             BT_EVT_BIT(23)
3999 #define BT_EVT_MASK_LE_CIS_ESTABLISHED           BT_EVT_BIT(24)
4000 #define BT_EVT_MASK_LE_CIS_REQ                   BT_EVT_BIT(25)
4001 #define BT_EVT_MASK_LE_BIG_COMPLETE              BT_EVT_BIT(26)
4002 #define BT_EVT_MASK_LE_BIG_TERMINATED            BT_EVT_BIT(27)
4003 #define BT_EVT_MASK_LE_BIG_SYNC_ESTABLISHED      BT_EVT_BIT(28)
4004 #define BT_EVT_MASK_LE_BIG_SYNC_LOST             BT_EVT_BIT(29)
4005 #define BT_EVT_MASK_LE_REQ_PEER_SCA_COMPLETE     BT_EVT_BIT(30)
4006 #define BT_EVT_MASK_LE_PATH_LOSS_THRESHOLD       BT_EVT_BIT(31)
4007 #define BT_EVT_MASK_LE_TRANSMIT_POWER_REPORTING  BT_EVT_BIT(32)
4008 #define BT_EVT_MASK_LE_BIGINFO_ADV_REPORT        BT_EVT_BIT(33)
4009 #define BT_EVT_MASK_LE_SUBRATE_CHANGE            BT_EVT_BIT(34)
4010 
4011 #define BT_EVT_MASK_LE_PER_ADV_SYNC_ESTABLISHED_V2 BT_EVT_BIT(35)
4012 #define BT_EVT_MASK_LE_PER_ADVERTISING_REPORT_V2   BT_EVT_BIT(36)
4013 #define BT_EVT_MASK_LE_PAST_RECEIVED_V2            BT_EVT_BIT(37)
4014 #define BT_EVT_MASK_LE_PER_ADV_SUBEVENT_DATA_REQ   BT_EVT_BIT(38)
4015 #define BT_EVT_MASK_LE_PER_ADV_RESPONSE_REPORT     BT_EVT_BIT(39)
4016 #define BT_EVT_MASK_LE_ENH_CONN_COMPLETE_V2        BT_EVT_BIT(40)
4017 #define BT_EVT_MASK_LE_CIS_ESTABLISHED_V2          BT_EVT_BIT(41)
4018 
4019 #define BT_EVT_MASK_LE_CS_READ_REMOTE_SUPPORTED_CAPABILITIES_COMPLETE BT_EVT_BIT(43)
4020 #define BT_EVT_MASK_LE_CS_READ_REMOTE_FAE_TABLE_COMPLETE              BT_EVT_BIT(44)
4021 #define BT_EVT_MASK_LE_CS_SECURITY_ENABLE_COMPLETE                    BT_EVT_BIT(45)
4022 #define BT_EVT_MASK_LE_CS_CONFIG_COMPLETE                             BT_EVT_BIT(46)
4023 #define BT_EVT_MASK_LE_CS_PROCEDURE_ENABLE_COMPLETE                   BT_EVT_BIT(47)
4024 #define BT_EVT_MASK_LE_CS_SUBEVENT_RESULT                             BT_EVT_BIT(48)
4025 #define BT_EVT_MASK_LE_CS_SUBEVENT_RESULT_CONTINUE                    BT_EVT_BIT(49)
4026 #define BT_EVT_MASK_LE_CS_TEST_END_COMPLETE                           BT_EVT_BIT(50)
4027 
4028 /** HCI Error Codes, BT Core Spec v5.4 [Vol 1, Part F]. */
4029 #define BT_HCI_ERR_SUCCESS                      0x00
4030 #define BT_HCI_ERR_UNKNOWN_CMD                  0x01
4031 #define BT_HCI_ERR_UNKNOWN_CONN_ID              0x02
4032 #define BT_HCI_ERR_HW_FAILURE                   0x03
4033 #define BT_HCI_ERR_PAGE_TIMEOUT                 0x04
4034 #define BT_HCI_ERR_AUTH_FAIL                    0x05
4035 #define BT_HCI_ERR_PIN_OR_KEY_MISSING           0x06
4036 #define BT_HCI_ERR_MEM_CAPACITY_EXCEEDED        0x07
4037 #define BT_HCI_ERR_CONN_TIMEOUT                 0x08
4038 #define BT_HCI_ERR_CONN_LIMIT_EXCEEDED          0x09
4039 #define BT_HCI_ERR_SYNC_CONN_LIMIT_EXCEEDED     0x0a
4040 #define BT_HCI_ERR_CONN_ALREADY_EXISTS          0x0b
4041 #define BT_HCI_ERR_CMD_DISALLOWED               0x0c
4042 #define BT_HCI_ERR_INSUFFICIENT_RESOURCES       0x0d
4043 #define BT_HCI_ERR_INSUFFICIENT_SECURITY        0x0e
4044 #define BT_HCI_ERR_BD_ADDR_UNACCEPTABLE         0x0f
4045 #define BT_HCI_ERR_CONN_ACCEPT_TIMEOUT          0x10
4046 #define BT_HCI_ERR_UNSUPP_FEATURE_PARAM_VAL     0x11
4047 #define BT_HCI_ERR_INVALID_PARAM                0x12
4048 #define BT_HCI_ERR_REMOTE_USER_TERM_CONN        0x13
4049 #define BT_HCI_ERR_REMOTE_LOW_RESOURCES         0x14
4050 #define BT_HCI_ERR_REMOTE_POWER_OFF             0x15
4051 #define BT_HCI_ERR_LOCALHOST_TERM_CONN          0x16
4052 #define BT_HCI_ERR_REPEATED_ATTEMPTS            0x17
4053 #define BT_HCI_ERR_PAIRING_NOT_ALLOWED          0x18
4054 #define BT_HCI_ERR_UNKNOWN_LMP_PDU              0x19
4055 #define BT_HCI_ERR_UNSUPP_REMOTE_FEATURE        0x1a
4056 #define BT_HCI_ERR_SCO_OFFSET_REJECTED          0x1b
4057 #define BT_HCI_ERR_SCO_INTERVAL_REJECTED        0x1c
4058 #define BT_HCI_ERR_SCO_AIR_MODE_REJECTED        0x1d
4059 #define BT_HCI_ERR_INVALID_LL_PARAM             0x1e
4060 #define BT_HCI_ERR_UNSPECIFIED                  0x1f
4061 #define BT_HCI_ERR_UNSUPP_LL_PARAM_VAL          0x20
4062 #define BT_HCI_ERR_ROLE_CHANGE_NOT_ALLOWED      0x21
4063 #define BT_HCI_ERR_LL_RESP_TIMEOUT              0x22
4064 #define BT_HCI_ERR_LL_PROC_COLLISION            0x23
4065 #define BT_HCI_ERR_LMP_PDU_NOT_ALLOWED          0x24
4066 #define BT_HCI_ERR_ENC_MODE_NOT_ACCEPTABLE      0x25
4067 #define BT_HCI_ERR_LINK_KEY_CANNOT_BE_CHANGED   0x26
4068 #define BT_HCI_ERR_REQUESTED_QOS_NOT_SUPPORTED  0x27
4069 #define BT_HCI_ERR_INSTANT_PASSED               0x28
4070 #define BT_HCI_ERR_PAIRING_NOT_SUPPORTED        0x29
4071 #define BT_HCI_ERR_DIFF_TRANS_COLLISION         0x2a
4072 #define BT_HCI_ERR_QOS_UNACCEPTABLE_PARAM       0x2c
4073 #define BT_HCI_ERR_QOS_REJECTED                 0x2d
4074 #define BT_HCI_ERR_CHAN_ASSESS_NOT_SUPPORTED    0x2e
4075 #define BT_HCI_ERR_INSUFF_SECURITY              0x2f
4076 #define BT_HCI_ERR_PARAM_OUT_OF_MANDATORY_RANGE 0x30
4077 #define BT_HCI_ERR_ROLE_SWITCH_PENDING          0x32
4078 #define BT_HCI_ERR_RESERVED_SLOT_VIOLATION      0x34
4079 #define BT_HCI_ERR_ROLE_SWITCH_FAILED           0x35
4080 #define BT_HCI_ERR_EXT_INQ_RESP_TOO_LARGE       0x36
4081 #define BT_HCI_ERR_SIMPLE_PAIR_NOT_SUPP_BY_HOST 0x37
4082 #define BT_HCI_ERR_HOST_BUSY_PAIRING            0x38
4083 #define BT_HCI_ERR_CONN_REJECTED_DUE_TO_NO_CHAN 0x39
4084 #define BT_HCI_ERR_CONTROLLER_BUSY              0x3a
4085 #define BT_HCI_ERR_UNACCEPT_CONN_PARAM          0x3b
4086 #define BT_HCI_ERR_ADV_TIMEOUT                  0x3c
4087 #define BT_HCI_ERR_TERM_DUE_TO_MIC_FAIL         0x3d
4088 #define BT_HCI_ERR_CONN_FAIL_TO_ESTAB           0x3e
4089 #define BT_HCI_ERR_MAC_CONN_FAILED              0x3f
4090 #define BT_HCI_ERR_CLOCK_ADJUST_REJECTED        0x40
4091 #define BT_HCI_ERR_SUBMAP_NOT_DEFINED           0x41
4092 #define BT_HCI_ERR_UNKNOWN_ADV_IDENTIFIER       0x42
4093 #define BT_HCI_ERR_LIMIT_REACHED                0x43
4094 #define BT_HCI_ERR_OP_CANCELLED_BY_HOST         0x44
4095 #define BT_HCI_ERR_PACKET_TOO_LONG              0x45
4096 #define BT_HCI_ERR_TOO_LATE                     0x46
4097 #define BT_HCI_ERR_TOO_EARLY                    0x47
4098 
4099 #ifdef __cplusplus
4100 }
4101 #endif
4102 
4103 #endif /* ZEPHYR_INCLUDE_BLUETOOTH_HCI_TYPES_H_ */
4104