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 /* Special own address types for LL privacy (used in adv & scan parameters) */ 26 #define BT_HCI_OWN_ADDR_RPA_OR_PUBLIC 0x02 27 #define BT_HCI_OWN_ADDR_RPA_OR_RANDOM 0x03 28 #define BT_HCI_OWN_ADDR_RPA_MASK 0x02 29 30 #define BT_HCI_PEER_ADDR_RPA_UNRESOLVED 0xfe 31 #define BT_HCI_PEER_ADDR_ANONYMOUS 0xff 32 33 #define BT_ENC_KEY_SIZE_MIN 0x07 34 #define BT_ENC_KEY_SIZE_MAX 0x10 35 36 #define BT_HCI_ADV_HANDLE_INVALID 0xff 37 #define BT_HCI_SYNC_HANDLE_INVALID 0xffff 38 #define BT_HCI_PAWR_SUBEVENT_MAX 128 39 40 struct bt_hci_evt_hdr { 41 uint8_t evt; 42 uint8_t len; 43 } __packed; 44 #define BT_HCI_EVT_HDR_SIZE 2 45 46 #define BT_ACL_START_NO_FLUSH 0x00 47 #define BT_ACL_CONT 0x01 48 #define BT_ACL_START 0x02 49 #define BT_ACL_COMPLETE 0x03 50 51 #define BT_ACL_POINT_TO_POINT 0x00 52 #define BT_ACL_BROADCAST 0x01 53 54 #define BT_ACL_HANDLE_MASK BIT_MASK(12) 55 56 #define bt_acl_handle(h) ((h) & BT_ACL_HANDLE_MASK) 57 #define bt_acl_flags(h) ((h) >> 12) 58 #define bt_acl_flags_pb(f) ((f) & BIT_MASK(2)) 59 #define bt_acl_flags_bc(f) ((f) >> 2) 60 #define bt_acl_handle_pack(h, f) ((h) | ((f) << 12)) 61 62 struct bt_hci_acl_hdr { 63 uint16_t handle; 64 uint16_t len; 65 } __packed; 66 #define BT_HCI_ACL_HDR_SIZE 4 67 68 #define BT_ISO_START 0x00 69 #define BT_ISO_CONT 0x01 70 #define BT_ISO_SINGLE 0x02 71 #define BT_ISO_END 0x03 72 73 #define bt_iso_handle(h) ((h) & 0x0fff) 74 #define bt_iso_flags(h) ((h) >> 12) 75 #define bt_iso_flags_pb(f) ((f) & 0x0003) 76 #define bt_iso_flags_ts(f) (((f) >> 2) & 0x0001) 77 #define bt_iso_pack_flags(pb, ts) \ 78 (((pb) & 0x0003) | (((ts) & 0x0001) << 2)) 79 #define bt_iso_handle_pack(h, pb, ts) \ 80 ((h) | (bt_iso_pack_flags(pb, ts) << 12)) 81 #define bt_iso_hdr_len(h) ((h) & BIT_MASK(14)) 82 83 #define BT_ISO_DATA_VALID 0x00 84 #define BT_ISO_DATA_INVALID 0x01 85 #define BT_ISO_DATA_NOP 0x02 86 87 #define bt_iso_pkt_len(h) ((h) & 0x3fff) 88 #define bt_iso_pkt_flags(h) ((h) >> 14) 89 #define bt_iso_pkt_len_pack(h, f) ((h) | ((f) << 14)) 90 91 struct bt_hci_iso_data_hdr { 92 uint16_t sn; 93 uint16_t slen; 94 } __packed; 95 #define BT_HCI_ISO_DATA_HDR_SIZE 4 96 97 struct bt_hci_iso_ts_data_hdr { 98 uint32_t ts; 99 struct bt_hci_iso_data_hdr data; 100 } __packed; 101 #define BT_HCI_ISO_TS_DATA_HDR_SIZE 8 102 103 struct bt_hci_iso_hdr { 104 uint16_t handle; /* 12 bit handle, 2 bit PB flags, 1 bit TS_Flag, 1 bit RFU */ 105 uint16_t len; /* 14 bits, 2 bits RFU */ 106 } __packed; 107 #define BT_HCI_ISO_HDR_SIZE 4 108 109 struct bt_hci_cmd_hdr { 110 uint16_t opcode; 111 uint8_t param_len; 112 } __packed; 113 #define BT_HCI_CMD_HDR_SIZE 3 114 115 /* Supported Commands */ 116 #define BT_CMD_TEST(cmd, octet, bit) (cmd[octet] & BIT(bit)) 117 #define BT_CMD_LE_STATES(cmd) BT_CMD_TEST(cmd, 28, 3) 118 119 #define BT_FEAT_TEST(feat, page, octet, bit) (feat[page][octet] & BIT(bit)) 120 121 #define BT_FEAT_BREDR(feat) !BT_FEAT_TEST(feat, 0, 4, 5) 122 #define BT_FEAT_LE(feat) BT_FEAT_TEST(feat, 0, 4, 6) 123 #define BT_FEAT_EXT_FEATURES(feat) BT_FEAT_TEST(feat, 0, 7, 7) 124 #define BT_FEAT_HOST_SSP(feat) BT_FEAT_TEST(feat, 1, 0, 0) 125 #define BT_FEAT_SC(feat) BT_FEAT_TEST(feat, 2, 1, 0) 126 127 #define BT_FEAT_LMP_ESCO_CAPABLE(feat) BT_FEAT_TEST(feat, 0, 3, 7) 128 #define BT_FEAT_HV2_PKT(feat) BT_FEAT_TEST(feat, 0, 1, 4) 129 #define BT_FEAT_HV3_PKT(feat) BT_FEAT_TEST(feat, 0, 1, 5) 130 #define BT_FEAT_EV4_PKT(feat) BT_FEAT_TEST(feat, 0, 4, 0) 131 #define BT_FEAT_EV5_PKT(feat) BT_FEAT_TEST(feat, 0, 4, 1) 132 #define BT_FEAT_2EV3_PKT(feat) BT_FEAT_TEST(feat, 0, 5, 5) 133 #define BT_FEAT_3EV3_PKT(feat) BT_FEAT_TEST(feat, 0, 5, 6) 134 #define BT_FEAT_3SLOT_PKT(feat) BT_FEAT_TEST(feat, 0, 5, 7) 135 136 /* LE features */ 137 #define BT_LE_FEAT_BIT_ENC 0 138 #define BT_LE_FEAT_BIT_CONN_PARAM_REQ 1 139 #define BT_LE_FEAT_BIT_EXT_REJ_IND 2 140 #define BT_LE_FEAT_BIT_PER_INIT_FEAT_XCHG 3 141 #define BT_LE_FEAT_BIT_PING 4 142 #define BT_LE_FEAT_BIT_DLE 5 143 #define BT_LE_FEAT_BIT_PRIVACY 6 144 #define BT_LE_FEAT_BIT_EXT_SCAN 7 145 #define BT_LE_FEAT_BIT_PHY_2M 8 146 #define BT_LE_FEAT_BIT_SMI_TX 9 147 #define BT_LE_FEAT_BIT_SMI_RX 10 148 #define BT_LE_FEAT_BIT_PHY_CODED 11 149 #define BT_LE_FEAT_BIT_EXT_ADV 12 150 #define BT_LE_FEAT_BIT_PER_ADV 13 151 #define BT_LE_FEAT_BIT_CHAN_SEL_ALGO_2 14 152 #define BT_LE_FEAT_BIT_PWR_CLASS_1 15 153 #define BT_LE_FEAT_BIT_MIN_USED_CHAN_PROC 16 154 #define BT_LE_FEAT_BIT_CONN_CTE_REQ 17 155 #define BT_LE_FEAT_BIT_CONN_CTE_RESP 18 156 #define BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_TX 19 157 #define BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_RX 20 158 #define BT_LE_FEAT_BIT_ANT_SWITCH_TX_AOD 21 159 #define BT_LE_FEAT_BIT_ANT_SWITCH_RX_AOA 22 160 #define BT_LE_FEAT_BIT_RX_CTE 23 161 #define BT_LE_FEAT_BIT_PAST_SEND 24 162 #define BT_LE_FEAT_BIT_PAST_RECV 25 163 #define BT_LE_FEAT_BIT_SCA_UPDATE 26 164 #define BT_LE_FEAT_BIT_REMOTE_PUB_KEY_VALIDATE 27 165 #define BT_LE_FEAT_BIT_CIS_CENTRAL 28 166 #define BT_LE_FEAT_BIT_CIS_PERIPHERAL 29 167 #define BT_LE_FEAT_BIT_ISO_BROADCASTER 30 168 #define BT_LE_FEAT_BIT_SYNC_RECEIVER 31 169 #define BT_LE_FEAT_BIT_ISO_CHANNELS 32 170 #define BT_LE_FEAT_BIT_PWR_CTRL_REQ 33 171 #define BT_LE_FEAT_BIT_PWR_CHG_IND 34 172 #define BT_LE_FEAT_BIT_PATH_LOSS_MONITOR 35 173 #define BT_LE_FEAT_BIT_PER_ADV_ADI_SUPP 36 174 #define BT_LE_FEAT_BIT_CONN_SUBRATING 37 175 #define BT_LE_FEAT_BIT_CONN_SUBRATING_HOST_SUPP 38 176 #define BT_LE_FEAT_BIT_CHANNEL_CLASSIFICATION 39 177 178 #define BT_LE_FEAT_BIT_PAWR_ADVERTISER 43 179 #define BT_LE_FEAT_BIT_PAWR_SCANNER 44 180 181 #define BT_LE_FEAT_TEST(feat, n) (feat[(n) >> 3] & \ 182 BIT((n) & 7)) 183 184 #define BT_FEAT_LE_ENCR(feat) BT_LE_FEAT_TEST(feat, \ 185 BT_LE_FEAT_BIT_ENC) 186 #define BT_FEAT_LE_CONN_PARAM_REQ_PROC(feat) BT_LE_FEAT_TEST(feat, \ 187 BT_LE_FEAT_BIT_CONN_PARAM_REQ) 188 #define BT_FEAT_LE_PER_INIT_FEAT_XCHG(feat) BT_LE_FEAT_TEST(feat, \ 189 BT_LE_FEAT_BIT_PER_INIT_FEAT_XCHG) 190 #define BT_FEAT_LE_DLE(feat) BT_LE_FEAT_TEST(feat, \ 191 BT_LE_FEAT_BIT_DLE) 192 #define BT_FEAT_LE_PHY_2M(feat) BT_LE_FEAT_TEST(feat, \ 193 BT_LE_FEAT_BIT_PHY_2M) 194 #define BT_FEAT_LE_PHY_CODED(feat) BT_LE_FEAT_TEST(feat, \ 195 BT_LE_FEAT_BIT_PHY_CODED) 196 #define BT_FEAT_LE_PRIVACY(feat) BT_LE_FEAT_TEST(feat, \ 197 BT_LE_FEAT_BIT_PRIVACY) 198 #define BT_FEAT_LE_EXT_ADV(feat) BT_LE_FEAT_TEST(feat, \ 199 BT_LE_FEAT_BIT_EXT_ADV) 200 #define BT_FEAT_LE_EXT_PER_ADV(feat) BT_LE_FEAT_TEST(feat, \ 201 BT_LE_FEAT_BIT_PER_ADV) 202 #define BT_FEAT_LE_CONNECTION_CTE_REQ(feat) BT_LE_FEAT_TEST(feat, \ 203 BT_LE_FEAT_BIT_CONN_CTE_REQ) 204 #define BT_FEAT_LE_CONNECTION_CTE_RESP(feat) BT_LE_FEAT_TEST(feat, \ 205 BT_LE_FEAT_BIT_CONN_CTE_RESP) 206 #define BT_FEAT_LE_CONNECTIONLESS_CTE_TX(feat) BT_LE_FEAT_TEST(feat, \ 207 BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_TX) 208 #define BT_FEAT_LE_CONNECTIONLESS_CTE_RX(feat) BT_LE_FEAT_TEST(feat, \ 209 BT_LE_FEAT_BIT_CONNECTIONLESS_CTE_RX) 210 #define BT_FEAT_LE_ANT_SWITCH_TX_AOD(feat) BT_LE_FEAT_TEST(feat, \ 211 BT_LE_FEAT_BIT_ANT_SWITCH_TX_AOD) 212 #define BT_FEAT_LE_ANT_SWITCH_RX_AOA(feat) BT_LE_FEAT_TEST(feat, \ 213 BT_LE_FEAT_BIT_ANT_SWITCH_RX_AOA) 214 #define BT_FEAT_LE_RX_CTE(feat) BT_LE_FEAT_TEST(feat, \ 215 BT_LE_FEAT_BIT_RX_CTE) 216 #define BT_FEAT_LE_PAST_SEND(feat) BT_LE_FEAT_TEST(feat, \ 217 BT_LE_FEAT_BIT_PAST_SEND) 218 #define BT_FEAT_LE_PAST_RECV(feat) BT_LE_FEAT_TEST(feat, \ 219 BT_LE_FEAT_BIT_PAST_RECV) 220 #define BT_FEAT_LE_CIS_CENTRAL(feat) BT_LE_FEAT_TEST(feat, \ 221 BT_LE_FEAT_BIT_CIS_CENTRAL) 222 #define BT_FEAT_LE_CIS_PERIPHERAL(feat) BT_LE_FEAT_TEST(feat, \ 223 BT_LE_FEAT_BIT_CIS_PERIPHERAL) 224 #define BT_FEAT_LE_ISO_BROADCASTER(feat) BT_LE_FEAT_TEST(feat, \ 225 BT_LE_FEAT_BIT_ISO_BROADCASTER) 226 #define BT_FEAT_LE_SYNC_RECEIVER(feat) BT_LE_FEAT_TEST(feat, \ 227 BT_LE_FEAT_BIT_SYNC_RECEIVER) 228 #define BT_FEAT_LE_ISO_CHANNELS(feat) BT_LE_FEAT_TEST(feat, \ 229 BT_LE_FEAT_BIT_ISO_CHANNELS) 230 #define BT_FEAT_LE_PWR_CTRL_REQ(feat) BT_LE_FEAT_TEST(feat, \ 231 BT_LE_FEAT_BIT_PWR_CTRL_REQ) 232 #define BT_FEAT_LE_PWR_CHG_IND(feat) BT_LE_FEAT_TEST(feat, \ 233 BT_LE_FEAT_BIT_PWR_CHG_IND) 234 #define BT_FEAT_LE_PATH_LOSS_MONITOR(feat) BT_LE_FEAT_TEST(feat, \ 235 BT_LE_FEAT_BIT_PATH_LOSS_MONITOR) 236 #define BT_FEAT_LE_PER_ADV_ADI_SUPP(feat) BT_LE_FEAT_TEST(feat, \ 237 BT_LE_FEAT_BIT_PER_ADV_ADI_SUPP) 238 #define BT_FEAT_LE_CONN_SUBRATING(feat) BT_LE_FEAT_TEST(feat, \ 239 BT_LE_FEAT_BIT_CONN_SUBRATING) 240 #define BT_FEAT_LE_CONN_SUBRATING_HOST_SUPP(feat) BT_LE_FEAT_TEST(feat, \ 241 BT_LE_FEAT_BIT_CONN_SUBRATING_HOST_SUPP) 242 #define BT_FEAT_LE_CHANNEL_CLASSIFICATION(feat) BT_LE_FEAT_TEST(feat, \ 243 BT_LE_FEAT_BIT_CHANNEL_CLASSIFICATION) 244 #define BT_FEAT_LE_PAWR_ADVERTISER(feat) BT_LE_FEAT_TEST(feat, \ 245 BT_LE_FEAT_BIT_PAWR_ADVERTISER) 246 #define BT_FEAT_LE_PAWR_SCANNER(feat) BT_LE_FEAT_TEST(feat, \ 247 BT_LE_FEAT_BIT_PAWR_SCANNER) 248 249 #define BT_FEAT_LE_CIS(feat) (BT_FEAT_LE_CIS_CENTRAL(feat) | \ 250 BT_FEAT_LE_CIS_PERIPHERAL(feat)) 251 #define BT_FEAT_LE_BIS(feat) (BT_FEAT_LE_ISO_BROADCASTER(feat) | \ 252 BT_FEAT_LE_SYNC_RECEIVER(feat)) 253 #define BT_FEAT_LE_ISO(feat) (BT_FEAT_LE_CIS(feat) | \ 254 BT_FEAT_LE_BIS(feat)) 255 256 /* LE States */ 257 #define BT_LE_STATES_PER_CONN_ADV(states) (states & 0x0000004000000000) 258 259 /* Bonding/authentication types */ 260 #define BT_HCI_NO_BONDING 0x00 261 #define BT_HCI_NO_BONDING_MITM 0x01 262 #define BT_HCI_DEDICATED_BONDING 0x02 263 #define BT_HCI_DEDICATED_BONDING_MITM 0x03 264 #define BT_HCI_GENERAL_BONDING 0x04 265 #define BT_HCI_GENERAL_BONDING_MITM 0x05 266 267 /* 268 * MITM protection is enabled in SSP authentication requirements octet when 269 * LSB bit is set. 270 */ 271 #define BT_MITM 0x01 272 273 /* I/O capabilities */ 274 #define BT_IO_DISPLAY_ONLY 0x00 275 #define BT_IO_DISPLAY_YESNO 0x01 276 #define BT_IO_KEYBOARD_ONLY 0x02 277 #define BT_IO_NO_INPUT_OUTPUT 0x03 278 279 /* SCO packet types */ 280 #define HCI_PKT_TYPE_HV1 0x0020 281 #define HCI_PKT_TYPE_HV2 0x0040 282 #define HCI_PKT_TYPE_HV3 0x0080 283 284 /* eSCO packet types */ 285 #define HCI_PKT_TYPE_ESCO_HV1 0x0001 286 #define HCI_PKT_TYPE_ESCO_HV2 0x0002 287 #define HCI_PKT_TYPE_ESCO_HV3 0x0004 288 #define HCI_PKT_TYPE_ESCO_EV3 0x0008 289 #define HCI_PKT_TYPE_ESCO_EV4 0x0010 290 #define HCI_PKT_TYPE_ESCO_EV5 0x0020 291 #define HCI_PKT_TYPE_ESCO_2EV3 0x0040 292 #define HCI_PKT_TYPE_ESCO_3EV3 0x0080 293 #define HCI_PKT_TYPE_ESCO_2EV5 0x0100 294 #define HCI_PKT_TYPE_ESCO_3EV5 0x0200 295 296 297 #define ESCO_PKT_MASK (HCI_PKT_TYPE_ESCO_HV1 | \ 298 HCI_PKT_TYPE_ESCO_HV2 | \ 299 HCI_PKT_TYPE_ESCO_HV3) 300 #define SCO_PKT_MASK (HCI_PKT_TYPE_HV1 | \ 301 HCI_PKT_TYPE_HV2 | \ 302 HCI_PKT_TYPE_HV3) 303 #define EDR_ESCO_PKT_MASK (HCI_PKT_TYPE_ESCO_2EV3 | \ 304 HCI_PKT_TYPE_ESCO_3EV3 | \ 305 HCI_PKT_TYPE_ESCO_2EV5 | \ 306 HCI_PKT_TYPE_ESCO_3EV5) 307 308 /* HCI BR/EDR link types */ 309 #define BT_HCI_SCO 0x00 310 #define BT_HCI_ACL 0x01 311 #define BT_HCI_ESCO 0x02 312 313 /* OpCode Group Fields */ 314 #define BT_OGF_LINK_CTRL 0x01 315 #define BT_OGF_BASEBAND 0x03 316 #define BT_OGF_INFO 0x04 317 #define BT_OGF_STATUS 0x05 318 #define BT_OGF_LE 0x08 319 #define BT_OGF_VS 0x3f 320 321 /* Construct OpCode from OGF and OCF */ 322 #define BT_OP(ogf, ocf) ((ocf) | ((ogf) << 10)) 323 324 /* Invalid opcode */ 325 #define BT_OP_NOP 0x0000 326 327 /* Obtain OGF from OpCode */ 328 #define BT_OGF(opcode) (((opcode) >> 10) & BIT_MASK(6)) 329 /* Obtain OCF from OpCode */ 330 #define BT_OCF(opcode) ((opcode) & BIT_MASK(10)) 331 332 #define BT_HCI_OP_INQUIRY BT_OP(BT_OGF_LINK_CTRL, 0x0001) 333 struct bt_hci_op_inquiry { 334 uint8_t lap[3]; 335 uint8_t length; 336 uint8_t num_rsp; 337 } __packed; 338 339 #define BT_HCI_OP_INQUIRY_CANCEL BT_OP(BT_OGF_LINK_CTRL, 0x0002) 340 341 #define BT_HCI_OP_CONNECT BT_OP(BT_OGF_LINK_CTRL, 0x0005) 342 struct bt_hci_cp_connect { 343 bt_addr_t bdaddr; 344 uint16_t packet_type; 345 uint8_t pscan_rep_mode; 346 uint8_t reserved; 347 uint16_t clock_offset; 348 uint8_t allow_role_switch; 349 } __packed; 350 351 #define BT_HCI_OP_DISCONNECT BT_OP(BT_OGF_LINK_CTRL, 0x0006) 352 struct bt_hci_cp_disconnect { 353 uint16_t handle; 354 uint8_t reason; 355 } __packed; 356 357 #define BT_HCI_OP_CONNECT_CANCEL BT_OP(BT_OGF_LINK_CTRL, 0x0008) 358 struct bt_hci_cp_connect_cancel { 359 bt_addr_t bdaddr; 360 } __packed; 361 struct bt_hci_rp_connect_cancel { 362 uint8_t status; 363 bt_addr_t bdaddr; 364 } __packed; 365 366 #define BT_HCI_OP_ACCEPT_CONN_REQ BT_OP(BT_OGF_LINK_CTRL, 0x0009) 367 struct bt_hci_cp_accept_conn_req { 368 bt_addr_t bdaddr; 369 uint8_t role; 370 } __packed; 371 372 #define BT_HCI_OP_SETUP_SYNC_CONN BT_OP(BT_OGF_LINK_CTRL, 0x0028) 373 struct bt_hci_cp_setup_sync_conn { 374 uint16_t handle; 375 uint32_t tx_bandwidth; 376 uint32_t rx_bandwidth; 377 uint16_t max_latency; 378 uint16_t content_format; 379 uint8_t retrans_effort; 380 uint16_t pkt_type; 381 } __packed; 382 383 #define BT_HCI_OP_ACCEPT_SYNC_CONN_REQ BT_OP(BT_OGF_LINK_CTRL, 0x0029) 384 struct bt_hci_cp_accept_sync_conn_req { 385 bt_addr_t bdaddr; 386 uint32_t tx_bandwidth; 387 uint32_t rx_bandwidth; 388 uint16_t max_latency; 389 uint16_t content_format; 390 uint8_t retrans_effort; 391 uint16_t pkt_type; 392 } __packed; 393 394 #define BT_HCI_OP_REJECT_CONN_REQ BT_OP(BT_OGF_LINK_CTRL, 0x000a) 395 struct bt_hci_cp_reject_conn_req { 396 bt_addr_t bdaddr; 397 uint8_t reason; 398 } __packed; 399 400 #define BT_HCI_OP_LINK_KEY_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x000b) 401 struct bt_hci_cp_link_key_reply { 402 bt_addr_t bdaddr; 403 uint8_t link_key[16]; 404 } __packed; 405 406 #define BT_HCI_OP_LINK_KEY_NEG_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x000c) 407 struct bt_hci_cp_link_key_neg_reply { 408 bt_addr_t bdaddr; 409 } __packed; 410 411 #define BT_HCI_OP_PIN_CODE_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x000d) 412 struct bt_hci_cp_pin_code_reply { 413 bt_addr_t bdaddr; 414 uint8_t pin_len; 415 uint8_t pin_code[16]; 416 } __packed; 417 struct bt_hci_rp_pin_code_reply { 418 uint8_t status; 419 bt_addr_t bdaddr; 420 } __packed; 421 422 #define BT_HCI_OP_PIN_CODE_NEG_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x000e) 423 struct bt_hci_cp_pin_code_neg_reply { 424 bt_addr_t bdaddr; 425 } __packed; 426 struct bt_hci_rp_pin_code_neg_reply { 427 uint8_t status; 428 bt_addr_t bdaddr; 429 } __packed; 430 431 #define BT_HCI_OP_AUTH_REQUESTED BT_OP(BT_OGF_LINK_CTRL, 0x0011) 432 struct bt_hci_cp_auth_requested { 433 uint16_t handle; 434 } __packed; 435 436 #define BT_HCI_OP_SET_CONN_ENCRYPT BT_OP(BT_OGF_LINK_CTRL, 0x0013) 437 struct bt_hci_cp_set_conn_encrypt { 438 uint16_t handle; 439 uint8_t encrypt; 440 } __packed; 441 442 #define BT_HCI_OP_REMOTE_NAME_REQUEST BT_OP(BT_OGF_LINK_CTRL, 0x0019) 443 struct bt_hci_cp_remote_name_request { 444 bt_addr_t bdaddr; 445 uint8_t pscan_rep_mode; 446 uint8_t reserved; 447 uint16_t clock_offset; 448 } __packed; 449 450 #define BT_HCI_OP_REMOTE_NAME_CANCEL BT_OP(BT_OGF_LINK_CTRL, 0x001a) 451 struct bt_hci_cp_remote_name_cancel { 452 bt_addr_t bdaddr; 453 } __packed; 454 struct bt_hci_rp_remote_name_cancel { 455 uint8_t status; 456 bt_addr_t bdaddr; 457 } __packed; 458 459 #define BT_HCI_OP_READ_REMOTE_FEATURES BT_OP(BT_OGF_LINK_CTRL, 0x001b) 460 struct bt_hci_cp_read_remote_features { 461 uint16_t handle; 462 } __packed; 463 464 #define BT_HCI_OP_READ_REMOTE_EXT_FEATURES BT_OP(BT_OGF_LINK_CTRL, 0x001c) 465 struct bt_hci_cp_read_remote_ext_features { 466 uint16_t handle; 467 uint8_t page; 468 } __packed; 469 470 #define BT_HCI_OP_READ_REMOTE_VERSION_INFO BT_OP(BT_OGF_LINK_CTRL, 0x001d) 471 struct bt_hci_cp_read_remote_version_info { 472 uint16_t handle; 473 } __packed; 474 475 #define BT_HCI_OP_IO_CAPABILITY_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x002b) 476 struct bt_hci_cp_io_capability_reply { 477 bt_addr_t bdaddr; 478 uint8_t capability; 479 uint8_t oob_data; 480 uint8_t authentication; 481 } __packed; 482 483 #define BT_HCI_OP_USER_CONFIRM_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x002c) 484 #define BT_HCI_OP_USER_CONFIRM_NEG_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x002d) 485 struct bt_hci_cp_user_confirm_reply { 486 bt_addr_t bdaddr; 487 } __packed; 488 struct bt_hci_rp_user_confirm_reply { 489 uint8_t status; 490 bt_addr_t bdaddr; 491 } __packed; 492 493 #define BT_HCI_OP_USER_PASSKEY_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x002e) 494 struct bt_hci_cp_user_passkey_reply { 495 bt_addr_t bdaddr; 496 uint32_t passkey; 497 } __packed; 498 499 #define BT_HCI_OP_USER_PASSKEY_NEG_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x002f) 500 struct bt_hci_cp_user_passkey_neg_reply { 501 bt_addr_t bdaddr; 502 } __packed; 503 504 #define BT_HCI_OP_IO_CAPABILITY_NEG_REPLY BT_OP(BT_OGF_LINK_CTRL, 0x0034) 505 struct bt_hci_cp_io_capability_neg_reply { 506 bt_addr_t bdaddr; 507 uint8_t reason; 508 } __packed; 509 510 #define BT_HCI_OP_SET_EVENT_MASK BT_OP(BT_OGF_BASEBAND, 0x0001) 511 struct bt_hci_cp_set_event_mask { 512 uint8_t events[8]; 513 } __packed; 514 515 #define BT_HCI_OP_RESET BT_OP(BT_OGF_BASEBAND, 0x0003) 516 517 #define BT_HCI_OP_WRITE_LOCAL_NAME BT_OP(BT_OGF_BASEBAND, 0x0013) 518 struct bt_hci_write_local_name { 519 uint8_t local_name[248]; 520 } __packed; 521 522 #define BT_HCI_OP_READ_CONN_ACCEPT_TIMEOUT BT_OP(BT_OGF_BASEBAND, 0x0015) 523 struct bt_hci_rp_read_conn_accept_timeout { 524 uint8_t status; 525 uint16_t conn_accept_timeout; 526 } __packed; 527 528 #define BT_HCI_OP_WRITE_CONN_ACCEPT_TIMEOUT BT_OP(BT_OGF_BASEBAND, 0x0016) 529 struct bt_hci_cp_write_conn_accept_timeout { 530 uint16_t conn_accept_timeout; 531 } __packed; 532 533 struct bt_hci_rp_write_conn_accept_timeout { 534 uint8_t status; 535 } __packed; 536 537 #define BT_HCI_OP_WRITE_PAGE_TIMEOUT BT_OP(BT_OGF_BASEBAND, 0x0018) 538 539 #define BT_HCI_OP_WRITE_SCAN_ENABLE BT_OP(BT_OGF_BASEBAND, 0x001a) 540 #define BT_BREDR_SCAN_DISABLED 0x00 541 #define BT_BREDR_SCAN_INQUIRY 0x01 542 #define BT_BREDR_SCAN_PAGE 0x02 543 544 #define BT_HCI_OP_WRITE_CLASS_OF_DEVICE BT_OP(BT_OGF_BASEBAND, 0x0024) 545 struct bt_hci_cp_write_class_of_device { 546 uint8_t class_of_device[3]; 547 } __packed; 548 549 #define BT_TX_POWER_LEVEL_CURRENT 0x00 550 #define BT_TX_POWER_LEVEL_MAX 0x01 551 #define BT_HCI_OP_READ_TX_POWER_LEVEL BT_OP(BT_OGF_BASEBAND, 0x002d) 552 struct bt_hci_cp_read_tx_power_level { 553 uint16_t handle; 554 uint8_t type; 555 } __packed; 556 557 struct bt_hci_rp_read_tx_power_level { 558 uint8_t status; 559 uint16_t handle; 560 int8_t tx_power_level; 561 } __packed; 562 563 #define BT_HCI_CTL_TO_HOST_FLOW_DISABLE 0x00 564 #define BT_HCI_CTL_TO_HOST_FLOW_ENABLE 0x01 565 #define BT_HCI_OP_SET_CTL_TO_HOST_FLOW BT_OP(BT_OGF_BASEBAND, 0x0031) 566 struct bt_hci_cp_set_ctl_to_host_flow { 567 uint8_t flow_enable; 568 } __packed; 569 570 #define BT_HCI_OP_HOST_BUFFER_SIZE BT_OP(BT_OGF_BASEBAND, 0x0033) 571 struct bt_hci_cp_host_buffer_size { 572 uint16_t acl_mtu; 573 uint8_t sco_mtu; 574 uint16_t acl_pkts; 575 uint16_t sco_pkts; 576 } __packed; 577 578 struct bt_hci_handle_count { 579 uint16_t handle; 580 uint16_t count; 581 } __packed; 582 583 #define BT_HCI_OP_HOST_NUM_COMPLETED_PACKETS BT_OP(BT_OGF_BASEBAND, 0x0035) 584 struct bt_hci_cp_host_num_completed_packets { 585 uint8_t num_handles; 586 struct bt_hci_handle_count h[0]; 587 } __packed; 588 589 #define BT_HCI_OP_WRITE_INQUIRY_MODE BT_OP(BT_OGF_BASEBAND, 0x0045) 590 struct bt_hci_cp_write_inquiry_mode { 591 uint8_t mode; 592 } __packed; 593 594 #define BT_HCI_OP_WRITE_SSP_MODE BT_OP(BT_OGF_BASEBAND, 0x0056) 595 struct bt_hci_cp_write_ssp_mode { 596 uint8_t mode; 597 } __packed; 598 599 #define BT_HCI_OP_SET_EVENT_MASK_PAGE_2 BT_OP(BT_OGF_BASEBAND, 0x0063) 600 struct bt_hci_cp_set_event_mask_page_2 { 601 uint8_t events_page_2[8]; 602 } __packed; 603 604 #define BT_HCI_OP_LE_WRITE_LE_HOST_SUPP BT_OP(BT_OGF_BASEBAND, 0x006d) 605 struct bt_hci_cp_write_le_host_supp { 606 uint8_t le; 607 uint8_t simul; 608 } __packed; 609 610 #define BT_HCI_OP_WRITE_SC_HOST_SUPP BT_OP(BT_OGF_BASEBAND, 0x007a) 611 struct bt_hci_cp_write_sc_host_supp { 612 uint8_t sc_support; 613 } __packed; 614 615 #define BT_HCI_OP_READ_AUTH_PAYLOAD_TIMEOUT BT_OP(BT_OGF_BASEBAND, 0x007b) 616 struct bt_hci_cp_read_auth_payload_timeout { 617 uint16_t handle; 618 } __packed; 619 620 struct bt_hci_rp_read_auth_payload_timeout { 621 uint8_t status; 622 uint16_t handle; 623 uint16_t auth_payload_timeout; 624 } __packed; 625 626 #define BT_HCI_OP_WRITE_AUTH_PAYLOAD_TIMEOUT BT_OP(BT_OGF_BASEBAND, 0x007c) 627 struct bt_hci_cp_write_auth_payload_timeout { 628 uint16_t handle; 629 uint16_t auth_payload_timeout; 630 } __packed; 631 632 struct bt_hci_rp_write_auth_payload_timeout { 633 uint8_t status; 634 uint16_t handle; 635 } __packed; 636 637 #define BT_HCI_OP_CONFIGURE_DATA_PATH BT_OP(BT_OGF_BASEBAND, 0x0083) 638 struct bt_hci_cp_configure_data_path { 639 uint8_t data_path_dir; 640 uint8_t data_path_id; 641 uint8_t vs_config_len; 642 uint8_t vs_config[0]; 643 } __packed; 644 645 struct bt_hci_rp_configure_data_path { 646 uint8_t status; 647 } __packed; 648 649 /* HCI version from Assigned Numbers */ 650 #define BT_HCI_VERSION_1_0B 0 651 #define BT_HCI_VERSION_1_1 1 652 #define BT_HCI_VERSION_1_2 2 653 #define BT_HCI_VERSION_2_0 3 654 #define BT_HCI_VERSION_2_1 4 655 #define BT_HCI_VERSION_3_0 5 656 #define BT_HCI_VERSION_4_0 6 657 #define BT_HCI_VERSION_4_1 7 658 #define BT_HCI_VERSION_4_2 8 659 #define BT_HCI_VERSION_5_0 9 660 #define BT_HCI_VERSION_5_1 10 661 #define BT_HCI_VERSION_5_2 11 662 #define BT_HCI_VERSION_5_3 12 663 #define BT_HCI_VERSION_5_4 13 664 665 #define BT_HCI_OP_READ_LOCAL_VERSION_INFO BT_OP(BT_OGF_INFO, 0x0001) 666 struct bt_hci_rp_read_local_version_info { 667 uint8_t status; 668 uint8_t hci_version; 669 uint16_t hci_revision; 670 uint8_t lmp_version; 671 uint16_t manufacturer; 672 uint16_t lmp_subversion; 673 } __packed; 674 675 #define BT_HCI_OP_READ_SUPPORTED_COMMANDS BT_OP(BT_OGF_INFO, 0x0002) 676 struct bt_hci_rp_read_supported_commands { 677 uint8_t status; 678 uint8_t commands[64]; 679 } __packed; 680 681 #define BT_HCI_OP_READ_LOCAL_EXT_FEATURES BT_OP(BT_OGF_INFO, 0x0004) 682 struct bt_hci_cp_read_local_ext_features { 683 uint8_t page; 684 }; 685 struct bt_hci_rp_read_local_ext_features { 686 uint8_t status; 687 uint8_t page; 688 uint8_t max_page; 689 uint8_t ext_features[8]; 690 } __packed; 691 692 #define BT_HCI_OP_READ_LOCAL_FEATURES BT_OP(BT_OGF_INFO, 0x0003) 693 struct bt_hci_rp_read_local_features { 694 uint8_t status; 695 uint8_t features[8]; 696 } __packed; 697 698 #define BT_HCI_OP_READ_BUFFER_SIZE BT_OP(BT_OGF_INFO, 0x0005) 699 struct bt_hci_rp_read_buffer_size { 700 uint8_t status; 701 uint16_t acl_max_len; 702 uint8_t sco_max_len; 703 uint16_t acl_max_num; 704 uint16_t sco_max_num; 705 } __packed; 706 707 #define BT_HCI_OP_READ_BD_ADDR BT_OP(BT_OGF_INFO, 0x0009) 708 struct bt_hci_rp_read_bd_addr { 709 uint8_t status; 710 bt_addr_t bdaddr; 711 } __packed; 712 713 /* logic transport type bits as returned when reading supported codecs */ 714 #define BT_HCI_CODEC_TRANSPORT_MASK_BREDR_ACL BIT(0) 715 #define BT_HCI_CODEC_TRANSPORT_MASK_BREDR_SCO BIT(1) 716 #define BT_HCI_CODEC_TRANSPORT_MASK_LE_CIS BIT(2) 717 #define BT_HCI_CODEC_TRANSPORT_MASK_LE_BIS BIT(3) 718 719 /* logic transport types for reading codec capabilities and controller delays */ 720 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_BREDR_ACL 0x00 721 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_BREDR_SCO 0x01 722 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_LE_CIS 0x02 723 #define BT_HCI_LOGICAL_TRANSPORT_TYPE_LE_BIS 0x03 724 725 /* audio datapath directions */ 726 #define BT_HCI_DATAPATH_DIR_HOST_TO_CTLR 0x00 727 #define BT_HCI_DATAPATH_DIR_CTLR_TO_HOST 0x01 728 729 /* audio datapath IDs */ 730 #define BT_HCI_DATAPATH_ID_HCI 0x00 731 #define BT_HCI_DATAPATH_ID_VS 0x01 732 #define BT_HCI_DATAPATH_ID_VS_END 0xfe 733 734 /* coding format assigned numbers, used for codec IDs */ 735 #define BT_HCI_CODING_FORMAT_ULAW_LOG 0x00 736 #define BT_HCI_CODING_FORMAT_ALAW_LOG 0x01 737 #define BT_HCI_CODING_FORMAT_CVSD 0x02 738 #define BT_HCI_CODING_FORMAT_TRANSPARENT 0x03 739 #define BT_HCI_CODING_FORMAT_LINEAR_PCM 0x04 740 #define BT_HCI_CODING_FORMAT_MSBC 0x05 741 #define BT_HCI_CODING_FORMAT_VS 0xFF 742 743 744 #define BT_HCI_OP_READ_CODECS BT_OP(BT_OGF_INFO, 0x000b) 745 struct bt_hci_std_codec_info { 746 uint8_t codec_id; 747 } __packed; 748 struct bt_hci_std_codecs { 749 uint8_t num_codecs; 750 struct bt_hci_std_codec_info codec_info[0]; 751 } __packed; 752 struct bt_hci_vs_codec_info { 753 uint16_t company_id; 754 uint16_t codec_id; 755 } __packed; 756 struct bt_hci_vs_codecs { 757 uint8_t num_codecs; 758 struct bt_hci_vs_codec_info codec_info[0]; 759 } __packed; 760 struct bt_hci_rp_read_codecs { 761 uint8_t status; 762 /* other fields filled in dynamically */ 763 uint8_t codecs[0]; 764 } __packed; 765 766 #define BT_HCI_OP_READ_CODECS_V2 BT_OP(BT_OGF_INFO, 0x000d) 767 struct bt_hci_std_codec_info_v2 { 768 uint8_t codec_id; 769 uint8_t transports; /* bitmap */ 770 } __packed; 771 struct bt_hci_std_codecs_v2 { 772 uint8_t num_codecs; 773 struct bt_hci_std_codec_info_v2 codec_info[0]; 774 } __packed; 775 struct bt_hci_vs_codec_info_v2 { 776 uint16_t company_id; 777 uint16_t codec_id; 778 uint8_t transports; /* bitmap */ 779 } __packed; 780 struct bt_hci_vs_codecs_v2 { 781 uint8_t num_codecs; 782 struct bt_hci_vs_codec_info_v2 codec_info[0]; 783 } __packed; 784 struct bt_hci_rp_read_codecs_v2 { 785 uint8_t status; 786 /* other fields filled in dynamically */ 787 uint8_t codecs[0]; 788 } __packed; 789 790 struct bt_hci_cp_codec_id { 791 uint8_t coding_format; 792 uint16_t company_id; 793 uint16_t vs_codec_id; 794 } __packed; 795 796 #define BT_HCI_OP_READ_CODEC_CAPABILITIES BT_OP(BT_OGF_INFO, 0x000e) 797 struct bt_hci_cp_read_codec_capabilities { 798 struct bt_hci_cp_codec_id codec_id; 799 uint8_t transport; 800 uint8_t direction; 801 } __packed; 802 struct bt_hci_codec_capability_info { 803 uint8_t length; 804 uint8_t data[0]; 805 } __packed; 806 struct bt_hci_rp_read_codec_capabilities { 807 uint8_t status; 808 uint8_t num_capabilities; 809 /* other fields filled in dynamically */ 810 uint8_t capabilities[0]; 811 } __packed; 812 813 #define BT_HCI_OP_READ_CTLR_DELAY BT_OP(BT_OGF_INFO, 0x000f) 814 struct bt_hci_cp_read_ctlr_delay { 815 struct bt_hci_cp_codec_id codec_id; 816 uint8_t transport; 817 uint8_t direction; 818 uint8_t codec_config_len; 819 uint8_t codec_config[0]; 820 } __packed; 821 struct bt_hci_rp_read_ctlr_delay { 822 uint8_t status; 823 uint8_t min_ctlr_delay[3]; 824 uint8_t max_ctlr_delay[3]; 825 } __packed; 826 827 #define BT_HCI_OP_READ_RSSI BT_OP(BT_OGF_STATUS, 0x0005) 828 struct bt_hci_cp_read_rssi { 829 uint16_t handle; 830 } __packed; 831 struct bt_hci_rp_read_rssi { 832 uint8_t status; 833 uint16_t handle; 834 int8_t rssi; 835 } __packed; 836 837 #define BT_HCI_ENCRYPTION_KEY_SIZE_MIN 7 838 #define BT_HCI_ENCRYPTION_KEY_SIZE_MAX 16 839 840 #define BT_HCI_OP_READ_ENCRYPTION_KEY_SIZE BT_OP(BT_OGF_STATUS, 0x0008) 841 struct bt_hci_cp_read_encryption_key_size { 842 uint16_t handle; 843 } __packed; 844 struct bt_hci_rp_read_encryption_key_size { 845 uint8_t status; 846 uint16_t handle; 847 uint8_t key_size; 848 } __packed; 849 850 /* BLE */ 851 852 #define BT_HCI_OP_LE_SET_EVENT_MASK BT_OP(BT_OGF_LE, 0x0001) 853 struct bt_hci_cp_le_set_event_mask { 854 uint8_t events[8]; 855 } __packed; 856 857 #define BT_HCI_OP_LE_READ_BUFFER_SIZE BT_OP(BT_OGF_LE, 0x0002) 858 struct bt_hci_rp_le_read_buffer_size { 859 uint8_t status; 860 uint16_t le_max_len; 861 uint8_t le_max_num; 862 } __packed; 863 864 #define BT_HCI_OP_LE_READ_LOCAL_FEATURES BT_OP(BT_OGF_LE, 0x0003) 865 struct bt_hci_rp_le_read_local_features { 866 uint8_t status; 867 uint8_t features[8]; 868 } __packed; 869 870 #define BT_HCI_OP_LE_SET_RANDOM_ADDRESS BT_OP(BT_OGF_LE, 0x0005) 871 struct bt_hci_cp_le_set_random_address { 872 bt_addr_t bdaddr; 873 } __packed; 874 875 #define BT_HCI_ADV_IND 0x00 876 #define BT_HCI_ADV_DIRECT_IND 0x01 877 #define BT_HCI_ADV_SCAN_IND 0x02 878 #define BT_HCI_ADV_NONCONN_IND 0x03 879 #define BT_HCI_ADV_DIRECT_IND_LOW_DUTY 0x04 880 #define BT_HCI_ADV_SCAN_RSP 0x04 881 882 #define BT_LE_ADV_INTERVAL_MIN 0x0020 883 #define BT_LE_ADV_INTERVAL_MAX 0x4000 884 #define BT_LE_ADV_INTERVAL_DEFAULT 0x0800 885 886 #define BT_LE_ADV_CHAN_MAP_CHAN_37 0x01 887 #define BT_LE_ADV_CHAN_MAP_CHAN_38 0x02 888 #define BT_LE_ADV_CHAN_MAP_CHAN_39 0x04 889 #define BT_LE_ADV_CHAN_MAP_ALL 0x07 890 891 #define BT_LE_ADV_FP_NO_FILTER 0x00 892 #define BT_LE_ADV_FP_FILTER_SCAN_REQ 0x01 893 #define BT_LE_ADV_FP_FILTER_CONN_IND 0x02 894 #define BT_LE_ADV_FP_FILTER_BOTH 0x03 895 896 #define BT_HCI_OP_LE_SET_ADV_PARAM BT_OP(BT_OGF_LE, 0x0006) 897 struct bt_hci_cp_le_set_adv_param { 898 uint16_t min_interval; 899 uint16_t max_interval; 900 uint8_t type; 901 uint8_t own_addr_type; 902 bt_addr_le_t direct_addr; 903 uint8_t channel_map; 904 uint8_t filter_policy; 905 } __packed; 906 907 #define BT_HCI_OP_LE_READ_ADV_CHAN_TX_POWER BT_OP(BT_OGF_LE, 0x0007) 908 struct bt_hci_rp_le_read_chan_tx_power { 909 uint8_t status; 910 int8_t tx_power_level; 911 } __packed; 912 913 #define BT_HCI_OP_LE_SET_ADV_DATA BT_OP(BT_OGF_LE, 0x0008) 914 struct bt_hci_cp_le_set_adv_data { 915 uint8_t len; 916 uint8_t data[31]; 917 } __packed; 918 919 #define BT_HCI_OP_LE_SET_SCAN_RSP_DATA BT_OP(BT_OGF_LE, 0x0009) 920 struct bt_hci_cp_le_set_scan_rsp_data { 921 uint8_t len; 922 uint8_t data[31]; 923 } __packed; 924 925 #define BT_HCI_LE_ADV_DISABLE 0x00 926 #define BT_HCI_LE_ADV_ENABLE 0x01 927 928 #define BT_HCI_OP_LE_SET_ADV_ENABLE BT_OP(BT_OGF_LE, 0x000a) 929 struct bt_hci_cp_le_set_adv_enable { 930 uint8_t enable; 931 } __packed; 932 933 /* Scan types */ 934 #define BT_HCI_OP_LE_SET_SCAN_PARAM BT_OP(BT_OGF_LE, 0x000b) 935 #define BT_HCI_LE_SCAN_PASSIVE 0x00 936 #define BT_HCI_LE_SCAN_ACTIVE 0x01 937 938 #define BT_HCI_LE_SCAN_FP_BASIC_NO_FILTER 0x00 939 #define BT_HCI_LE_SCAN_FP_BASIC_FILTER 0x01 940 #define BT_HCI_LE_SCAN_FP_EXT_NO_FILTER 0x02 941 #define BT_HCI_LE_SCAN_FP_EXT_FILTER 0x03 942 943 struct bt_hci_cp_le_set_scan_param { 944 uint8_t scan_type; 945 uint16_t interval; 946 uint16_t window; 947 uint8_t addr_type; 948 uint8_t filter_policy; 949 } __packed; 950 951 #define BT_HCI_OP_LE_SET_SCAN_ENABLE BT_OP(BT_OGF_LE, 0x000c) 952 953 #define BT_HCI_LE_SCAN_DISABLE 0x00 954 #define BT_HCI_LE_SCAN_ENABLE 0x01 955 956 #define BT_HCI_LE_SCAN_FILTER_DUP_DISABLE 0x00 957 #define BT_HCI_LE_SCAN_FILTER_DUP_ENABLE 0x01 958 959 struct bt_hci_cp_le_set_scan_enable { 960 uint8_t enable; 961 uint8_t filter_dup; 962 } __packed; 963 964 #define BT_HCI_OP_LE_CREATE_CONN BT_OP(BT_OGF_LE, 0x000d) 965 966 #define BT_HCI_LE_CREATE_CONN_FP_NO_FILTER 0x00 967 #define BT_HCI_LE_CREATE_CONN_FP_FILTER 0x01 968 969 struct bt_hci_cp_le_create_conn { 970 uint16_t scan_interval; 971 uint16_t scan_window; 972 uint8_t filter_policy; 973 bt_addr_le_t peer_addr; 974 uint8_t own_addr_type; 975 uint16_t conn_interval_min; 976 uint16_t conn_interval_max; 977 uint16_t conn_latency; 978 uint16_t supervision_timeout; 979 uint16_t min_ce_len; 980 uint16_t max_ce_len; 981 } __packed; 982 983 #define BT_HCI_OP_LE_CREATE_CONN_CANCEL BT_OP(BT_OGF_LE, 0x000e) 984 985 #define BT_HCI_OP_LE_READ_FAL_SIZE BT_OP(BT_OGF_LE, 0x000f) 986 struct bt_hci_rp_le_read_fal_size { 987 uint8_t status; 988 uint8_t fal_size; 989 } __packed; 990 991 #define BT_HCI_OP_LE_CLEAR_FAL BT_OP(BT_OGF_LE, 0x0010) 992 993 #define BT_HCI_OP_LE_ADD_DEV_TO_FAL BT_OP(BT_OGF_LE, 0x0011) 994 struct bt_hci_cp_le_add_dev_to_fal { 995 bt_addr_le_t addr; 996 } __packed; 997 998 #define BT_HCI_OP_LE_REM_DEV_FROM_FAL BT_OP(BT_OGF_LE, 0x0012) 999 struct bt_hci_cp_le_rem_dev_from_fal { 1000 bt_addr_le_t addr; 1001 } __packed; 1002 1003 #define BT_HCI_OP_LE_CONN_UPDATE BT_OP(BT_OGF_LE, 0x0013) 1004 struct hci_cp_le_conn_update { 1005 uint16_t handle; 1006 uint16_t conn_interval_min; 1007 uint16_t conn_interval_max; 1008 uint16_t conn_latency; 1009 uint16_t supervision_timeout; 1010 uint16_t min_ce_len; 1011 uint16_t max_ce_len; 1012 } __packed; 1013 1014 #define BT_HCI_OP_LE_SET_HOST_CHAN_CLASSIF BT_OP(BT_OGF_LE, 0x0014) 1015 struct bt_hci_cp_le_set_host_chan_classif { 1016 uint8_t ch_map[5]; 1017 } __packed; 1018 1019 #define BT_HCI_OP_LE_READ_CHAN_MAP BT_OP(BT_OGF_LE, 0x0015) 1020 struct bt_hci_cp_le_read_chan_map { 1021 uint16_t handle; 1022 } __packed; 1023 struct bt_hci_rp_le_read_chan_map { 1024 uint8_t status; 1025 uint16_t handle; 1026 uint8_t ch_map[5]; 1027 } __packed; 1028 1029 #define BT_HCI_OP_LE_READ_REMOTE_FEATURES BT_OP(BT_OGF_LE, 0x0016) 1030 struct bt_hci_cp_le_read_remote_features { 1031 uint16_t handle; 1032 } __packed; 1033 1034 #define BT_HCI_OP_LE_ENCRYPT BT_OP(BT_OGF_LE, 0x0017) 1035 struct bt_hci_cp_le_encrypt { 1036 uint8_t key[16]; 1037 uint8_t plaintext[16]; 1038 } __packed; 1039 struct bt_hci_rp_le_encrypt { 1040 uint8_t status; 1041 uint8_t enc_data[16]; 1042 } __packed; 1043 1044 #define BT_HCI_OP_LE_RAND BT_OP(BT_OGF_LE, 0x0018) 1045 struct bt_hci_rp_le_rand { 1046 uint8_t status; 1047 uint8_t rand[8]; 1048 } __packed; 1049 1050 #define BT_HCI_OP_LE_START_ENCRYPTION BT_OP(BT_OGF_LE, 0x0019) 1051 struct bt_hci_cp_le_start_encryption { 1052 uint16_t handle; 1053 uint64_t rand; 1054 uint16_t ediv; 1055 uint8_t ltk[16]; 1056 } __packed; 1057 1058 #define BT_HCI_OP_LE_LTK_REQ_REPLY BT_OP(BT_OGF_LE, 0x001a) 1059 struct bt_hci_cp_le_ltk_req_reply { 1060 uint16_t handle; 1061 uint8_t ltk[16]; 1062 } __packed; 1063 struct bt_hci_rp_le_ltk_req_reply { 1064 uint8_t status; 1065 uint16_t handle; 1066 } __packed; 1067 1068 #define BT_HCI_OP_LE_LTK_REQ_NEG_REPLY BT_OP(BT_OGF_LE, 0x001b) 1069 struct bt_hci_cp_le_ltk_req_neg_reply { 1070 uint16_t handle; 1071 } __packed; 1072 struct bt_hci_rp_le_ltk_req_neg_reply { 1073 uint8_t status; 1074 uint16_t handle; 1075 } __packed; 1076 1077 #define BT_HCI_OP_LE_READ_SUPP_STATES BT_OP(BT_OGF_LE, 0x001c) 1078 struct bt_hci_rp_le_read_supp_states { 1079 uint8_t status; 1080 uint8_t le_states[8]; 1081 } __packed; 1082 1083 #define BT_HCI_OP_LE_RX_TEST BT_OP(BT_OGF_LE, 0x001d) 1084 struct bt_hci_cp_le_rx_test { 1085 uint8_t rx_ch; 1086 } __packed; 1087 1088 #define BT_HCI_TEST_PKT_PAYLOAD_PRBS9 0x00 1089 #define BT_HCI_TEST_PKT_PAYLOAD_11110000 0x01 1090 #define BT_HCI_TEST_PKT_PAYLOAD_10101010 0x02 1091 #define BT_HCI_TEST_PKT_PAYLOAD_PRBS15 0x03 1092 #define BT_HCI_TEST_PKT_PAYLOAD_11111111 0x04 1093 #define BT_HCI_TEST_PKT_PAYLOAD_00000000 0x05 1094 #define BT_HCI_TEST_PKT_PAYLOAD_00001111 0x06 1095 #define BT_HCI_TEST_PKT_PAYLOAD_01010101 0x07 1096 1097 #define BT_HCI_OP_LE_TX_TEST BT_OP(BT_OGF_LE, 0x001e) 1098 struct bt_hci_cp_le_tx_test { 1099 uint8_t tx_ch; 1100 uint8_t test_data_len; 1101 uint8_t pkt_payload; 1102 } __packed; 1103 1104 #define BT_HCI_OP_LE_TEST_END BT_OP(BT_OGF_LE, 0x001f) 1105 struct bt_hci_rp_le_test_end { 1106 uint8_t status; 1107 uint16_t rx_pkt_count; 1108 } __packed; 1109 1110 #define BT_HCI_OP_LE_CONN_PARAM_REQ_REPLY BT_OP(BT_OGF_LE, 0x0020) 1111 struct bt_hci_cp_le_conn_param_req_reply { 1112 uint16_t handle; 1113 uint16_t interval_min; 1114 uint16_t interval_max; 1115 uint16_t latency; 1116 uint16_t timeout; 1117 uint16_t min_ce_len; 1118 uint16_t max_ce_len; 1119 } __packed; 1120 struct bt_hci_rp_le_conn_param_req_reply { 1121 uint8_t status; 1122 uint16_t handle; 1123 } __packed; 1124 1125 #define BT_HCI_OP_LE_CONN_PARAM_REQ_NEG_REPLY BT_OP(BT_OGF_LE, 0x0021) 1126 struct bt_hci_cp_le_conn_param_req_neg_reply { 1127 uint16_t handle; 1128 uint8_t reason; 1129 } __packed; 1130 struct bt_hci_rp_le_conn_param_req_neg_reply { 1131 uint8_t status; 1132 uint16_t handle; 1133 } __packed; 1134 1135 #define BT_HCI_OP_LE_SET_DATA_LEN BT_OP(BT_OGF_LE, 0x0022) 1136 struct bt_hci_cp_le_set_data_len { 1137 uint16_t handle; 1138 uint16_t tx_octets; 1139 uint16_t tx_time; 1140 } __packed; 1141 struct bt_hci_rp_le_set_data_len { 1142 uint8_t status; 1143 uint16_t handle; 1144 } __packed; 1145 1146 #define BT_HCI_OP_LE_READ_DEFAULT_DATA_LEN BT_OP(BT_OGF_LE, 0x0023) 1147 struct bt_hci_rp_le_read_default_data_len { 1148 uint8_t status; 1149 uint16_t max_tx_octets; 1150 uint16_t max_tx_time; 1151 } __packed; 1152 1153 #define BT_HCI_OP_LE_WRITE_DEFAULT_DATA_LEN BT_OP(BT_OGF_LE, 0x0024) 1154 struct bt_hci_cp_le_write_default_data_len { 1155 uint16_t max_tx_octets; 1156 uint16_t max_tx_time; 1157 } __packed; 1158 1159 #define BT_HCI_OP_LE_P256_PUBLIC_KEY BT_OP(BT_OGF_LE, 0x0025) 1160 1161 #define BT_HCI_OP_LE_GENERATE_DHKEY BT_OP(BT_OGF_LE, 0x0026) 1162 struct bt_hci_cp_le_generate_dhkey { 1163 uint8_t key[64]; 1164 } __packed; 1165 1166 1167 #define BT_HCI_OP_LE_GENERATE_DHKEY_V2 BT_OP(BT_OGF_LE, 0x005e) 1168 1169 #define BT_HCI_LE_KEY_TYPE_GENERATED 0x00 1170 #define BT_HCI_LE_KEY_TYPE_DEBUG 0x01 1171 1172 struct bt_hci_cp_le_generate_dhkey_v2 { 1173 uint8_t key[64]; 1174 uint8_t key_type; 1175 } __packed; 1176 1177 1178 #define BT_HCI_OP_LE_ADD_DEV_TO_RL BT_OP(BT_OGF_LE, 0x0027) 1179 struct bt_hci_cp_le_add_dev_to_rl { 1180 bt_addr_le_t peer_id_addr; 1181 uint8_t peer_irk[16]; 1182 uint8_t local_irk[16]; 1183 } __packed; 1184 1185 #define BT_HCI_OP_LE_REM_DEV_FROM_RL BT_OP(BT_OGF_LE, 0x0028) 1186 struct bt_hci_cp_le_rem_dev_from_rl { 1187 bt_addr_le_t peer_id_addr; 1188 } __packed; 1189 1190 #define BT_HCI_OP_LE_CLEAR_RL BT_OP(BT_OGF_LE, 0x0029) 1191 1192 #define BT_HCI_OP_LE_READ_RL_SIZE BT_OP(BT_OGF_LE, 0x002a) 1193 struct bt_hci_rp_le_read_rl_size { 1194 uint8_t status; 1195 uint8_t rl_size; 1196 } __packed; 1197 1198 #define BT_HCI_OP_LE_READ_PEER_RPA BT_OP(BT_OGF_LE, 0x002b) 1199 struct bt_hci_cp_le_read_peer_rpa { 1200 bt_addr_le_t peer_id_addr; 1201 } __packed; 1202 struct bt_hci_rp_le_read_peer_rpa { 1203 uint8_t status; 1204 bt_addr_t peer_rpa; 1205 } __packed; 1206 1207 #define BT_HCI_OP_LE_READ_LOCAL_RPA BT_OP(BT_OGF_LE, 0x002c) 1208 struct bt_hci_cp_le_read_local_rpa { 1209 bt_addr_le_t peer_id_addr; 1210 } __packed; 1211 struct bt_hci_rp_le_read_local_rpa { 1212 uint8_t status; 1213 bt_addr_t local_rpa; 1214 } __packed; 1215 1216 #define BT_HCI_ADDR_RES_DISABLE 0x00 1217 #define BT_HCI_ADDR_RES_ENABLE 0x01 1218 1219 #define BT_HCI_OP_LE_SET_ADDR_RES_ENABLE BT_OP(BT_OGF_LE, 0x002d) 1220 struct bt_hci_cp_le_set_addr_res_enable { 1221 uint8_t enable; 1222 } __packed; 1223 1224 #define BT_HCI_OP_LE_SET_RPA_TIMEOUT BT_OP(BT_OGF_LE, 0x002e) 1225 struct bt_hci_cp_le_set_rpa_timeout { 1226 uint16_t rpa_timeout; 1227 } __packed; 1228 1229 #define BT_HCI_OP_LE_READ_MAX_DATA_LEN BT_OP(BT_OGF_LE, 0x002f) 1230 struct bt_hci_rp_le_read_max_data_len { 1231 uint8_t status; 1232 uint16_t max_tx_octets; 1233 uint16_t max_tx_time; 1234 uint16_t max_rx_octets; 1235 uint16_t max_rx_time; 1236 } __packed; 1237 1238 #define BT_HCI_LE_PHY_1M 0x01 1239 #define BT_HCI_LE_PHY_2M 0x02 1240 #define BT_HCI_LE_PHY_CODED 0x03 1241 1242 #define BT_HCI_OP_LE_READ_PHY BT_OP(BT_OGF_LE, 0x0030) 1243 struct bt_hci_cp_le_read_phy { 1244 uint16_t handle; 1245 } __packed; 1246 struct bt_hci_rp_le_read_phy { 1247 uint8_t status; 1248 uint16_t handle; 1249 uint8_t tx_phy; 1250 uint8_t rx_phy; 1251 } __packed; 1252 1253 #define BT_HCI_LE_PHY_TX_ANY BIT(0) 1254 #define BT_HCI_LE_PHY_RX_ANY BIT(1) 1255 1256 #define BT_HCI_LE_PHY_PREFER_1M BIT(0) 1257 #define BT_HCI_LE_PHY_PREFER_2M BIT(1) 1258 #define BT_HCI_LE_PHY_PREFER_CODED BIT(2) 1259 1260 #define BT_HCI_OP_LE_SET_DEFAULT_PHY BT_OP(BT_OGF_LE, 0x0031) 1261 struct bt_hci_cp_le_set_default_phy { 1262 uint8_t all_phys; 1263 uint8_t tx_phys; 1264 uint8_t rx_phys; 1265 } __packed; 1266 1267 #define BT_HCI_LE_PHY_CODED_ANY 0x00 1268 #define BT_HCI_LE_PHY_CODED_S2 0x01 1269 #define BT_HCI_LE_PHY_CODED_S8 0x02 1270 1271 #define BT_HCI_OP_LE_SET_PHY BT_OP(BT_OGF_LE, 0x0032) 1272 struct bt_hci_cp_le_set_phy { 1273 uint16_t handle; 1274 uint8_t all_phys; 1275 uint8_t tx_phys; 1276 uint8_t rx_phys; 1277 uint16_t phy_opts; 1278 } __packed; 1279 1280 #define BT_HCI_LE_MOD_INDEX_STANDARD 0x00 1281 #define BT_HCI_LE_MOD_INDEX_STABLE 0x01 1282 1283 #define BT_HCI_LE_RX_PHY_1M 0x01 1284 #define BT_HCI_LE_RX_PHY_2M 0x02 1285 #define BT_HCI_LE_RX_PHY_CODED 0x03 1286 1287 #define BT_HCI_OP_LE_ENH_RX_TEST BT_OP(BT_OGF_LE, 0x0033) 1288 struct bt_hci_cp_le_enh_rx_test { 1289 uint8_t rx_ch; 1290 uint8_t phy; 1291 uint8_t mod_index; 1292 } __packed; 1293 1294 #define BT_HCI_LE_TX_PHY_1M 0x01 1295 #define BT_HCI_LE_TX_PHY_2M 0x02 1296 #define BT_HCI_LE_TX_PHY_CODED_S8 0x03 1297 #define BT_HCI_LE_TX_PHY_CODED_S2 0x04 1298 1299 #define BT_HCI_OP_LE_ENH_TX_TEST BT_OP(BT_OGF_LE, 0x0034) 1300 struct bt_hci_cp_le_enh_tx_test { 1301 uint8_t tx_ch; 1302 uint8_t test_data_len; 1303 uint8_t pkt_payload; 1304 uint8_t phy; 1305 } __packed; 1306 1307 #define BT_HCI_OP_LE_SET_ADV_SET_RANDOM_ADDR BT_OP(BT_OGF_LE, 0x0035) 1308 struct bt_hci_cp_le_set_adv_set_random_addr { 1309 uint8_t handle; 1310 bt_addr_t bdaddr; 1311 } __packed; 1312 1313 #define BT_HCI_LE_ADV_PROP_CONN BIT(0) 1314 #define BT_HCI_LE_ADV_PROP_SCAN BIT(1) 1315 #define BT_HCI_LE_ADV_PROP_DIRECT BIT(2) 1316 #define BT_HCI_LE_ADV_PROP_HI_DC_CONN BIT(3) 1317 #define BT_HCI_LE_ADV_PROP_LEGACY BIT(4) 1318 #define BT_HCI_LE_ADV_PROP_ANON BIT(5) 1319 #define BT_HCI_LE_ADV_PROP_TX_POWER BIT(6) 1320 1321 #define BT_HCI_LE_PRIM_ADV_INTERVAL_MIN 0x000020 1322 #define BT_HCI_LE_PRIM_ADV_INTERVAL_MAX 0xFFFFFF 1323 1324 #define BT_HCI_LE_ADV_SCAN_REQ_ENABLE 1 1325 #define BT_HCI_LE_ADV_SCAN_REQ_DISABLE 0 1326 1327 #define BT_HCI_LE_ADV_TX_POWER_NO_PREF 0x7F 1328 1329 #define BT_HCI_LE_ADV_HANDLE_MAX 0xEF 1330 1331 #define BT_HCI_LE_EXT_ADV_SID_INVALID 0xFF 1332 1333 #define BT_HCI_OP_LE_SET_EXT_ADV_PARAM BT_OP(BT_OGF_LE, 0x0036) 1334 struct bt_hci_cp_le_set_ext_adv_param { 1335 uint8_t handle; 1336 uint16_t props; 1337 uint8_t prim_min_interval[3]; 1338 uint8_t prim_max_interval[3]; 1339 uint8_t prim_channel_map; 1340 uint8_t own_addr_type; 1341 bt_addr_le_t peer_addr; 1342 uint8_t filter_policy; 1343 int8_t tx_power; 1344 uint8_t prim_adv_phy; 1345 uint8_t sec_adv_max_skip; 1346 uint8_t sec_adv_phy; 1347 uint8_t sid; 1348 uint8_t scan_req_notify_enable; 1349 } __packed; 1350 struct bt_hci_rp_le_set_ext_adv_param { 1351 uint8_t status; 1352 int8_t tx_power; 1353 } __packed; 1354 1355 #define BT_HCI_LE_EXT_ADV_OP_INTERM_FRAG 0x00 1356 #define BT_HCI_LE_EXT_ADV_OP_FIRST_FRAG 0x01 1357 #define BT_HCI_LE_EXT_ADV_OP_LAST_FRAG 0x02 1358 #define BT_HCI_LE_EXT_ADV_OP_COMPLETE_DATA 0x03 1359 #define BT_HCI_LE_EXT_ADV_OP_UNCHANGED_DATA 0x04 1360 1361 #define BT_HCI_LE_EXT_ADV_FRAG_ENABLED 0x00 1362 #define BT_HCI_LE_EXT_ADV_FRAG_DISABLED 0x01 1363 1364 #define BT_HCI_LE_EXT_ADV_FRAG_MAX_LEN 251 1365 1366 #define BT_HCI_OP_LE_SET_EXT_ADV_DATA BT_OP(BT_OGF_LE, 0x0037) 1367 struct bt_hci_cp_le_set_ext_adv_data { 1368 uint8_t handle; 1369 uint8_t op; 1370 uint8_t frag_pref; 1371 uint8_t len; 1372 uint8_t data[0]; 1373 } __packed; 1374 1375 #define BT_HCI_OP_LE_SET_EXT_SCAN_RSP_DATA BT_OP(BT_OGF_LE, 0x0038) 1376 struct bt_hci_cp_le_set_ext_scan_rsp_data { 1377 uint8_t handle; 1378 uint8_t op; 1379 uint8_t frag_pref; 1380 uint8_t len; 1381 uint8_t data[0]; 1382 } __packed; 1383 1384 #define BT_HCI_OP_LE_SET_EXT_ADV_ENABLE BT_OP(BT_OGF_LE, 0x0039) 1385 struct bt_hci_ext_adv_set { 1386 uint8_t handle; 1387 uint16_t duration; 1388 uint8_t max_ext_adv_evts; 1389 } __packed; 1390 1391 struct bt_hci_cp_le_set_ext_adv_enable { 1392 uint8_t enable; 1393 uint8_t set_num; 1394 struct bt_hci_ext_adv_set s[0]; 1395 } __packed; 1396 1397 #define BT_HCI_OP_LE_READ_MAX_ADV_DATA_LEN BT_OP(BT_OGF_LE, 0x003a) 1398 struct bt_hci_rp_le_read_max_adv_data_len { 1399 uint8_t status; 1400 uint16_t max_adv_data_len; 1401 } __packed; 1402 1403 #define BT_HCI_OP_LE_READ_NUM_ADV_SETS BT_OP(BT_OGF_LE, 0x003b) 1404 struct bt_hci_rp_le_read_num_adv_sets { 1405 uint8_t status; 1406 uint8_t num_sets; 1407 } __packed; 1408 1409 #define BT_HCI_OP_LE_REMOVE_ADV_SET BT_OP(BT_OGF_LE, 0x003c) 1410 struct bt_hci_cp_le_remove_adv_set { 1411 uint8_t handle; 1412 } __packed; 1413 1414 #define BT_HCI_OP_CLEAR_ADV_SETS BT_OP(BT_OGF_LE, 0x003d) 1415 1416 #define BT_HCI_LE_PER_ADV_INTERVAL_MIN 0x0006 1417 #define BT_HCI_LE_PER_ADV_INTERVAL_MAX 0xFFFF 1418 1419 #define BT_HCI_OP_LE_SET_PER_ADV_PARAM BT_OP(BT_OGF_LE, 0x003e) 1420 struct bt_hci_cp_le_set_per_adv_param { 1421 uint8_t handle; 1422 uint16_t min_interval; 1423 uint16_t max_interval; 1424 uint16_t props; 1425 } __packed; 1426 1427 #define BT_HCI_LE_PER_ADV_OP_INTERM_FRAG 0x00 1428 #define BT_HCI_LE_PER_ADV_OP_FIRST_FRAG 0x01 1429 #define BT_HCI_LE_PER_ADV_OP_LAST_FRAG 0x02 1430 #define BT_HCI_LE_PER_ADV_OP_COMPLETE_DATA 0x03 1431 1432 #define BT_HCI_LE_PER_ADV_FRAG_MAX_LEN 252 1433 1434 #define BT_HCI_OP_LE_SET_PER_ADV_DATA BT_OP(BT_OGF_LE, 0x003f) 1435 struct bt_hci_cp_le_set_per_adv_data { 1436 uint8_t handle; 1437 uint8_t op; 1438 uint8_t len; 1439 uint8_t data[0]; 1440 } __packed; 1441 1442 #define BT_HCI_LE_SET_PER_ADV_ENABLE_ENABLE BIT(0) 1443 #define BT_HCI_LE_SET_PER_ADV_ENABLE_ADI BIT(1) 1444 1445 #define BT_HCI_OP_LE_SET_PER_ADV_ENABLE BT_OP(BT_OGF_LE, 0x0040) 1446 struct bt_hci_cp_le_set_per_adv_enable { 1447 uint8_t enable; 1448 uint8_t handle; 1449 } __packed; 1450 1451 #define BT_HCI_OP_LE_SET_EXT_SCAN_PARAM BT_OP(BT_OGF_LE, 0x0041) 1452 struct bt_hci_ext_scan_phy { 1453 uint8_t type; 1454 uint16_t interval; 1455 uint16_t window; 1456 } __packed; 1457 1458 #define BT_HCI_LE_EXT_SCAN_PHY_1M BIT(0) 1459 #define BT_HCI_LE_EXT_SCAN_PHY_2M BIT(1) 1460 #define BT_HCI_LE_EXT_SCAN_PHY_CODED BIT(2) 1461 1462 struct bt_hci_cp_le_set_ext_scan_param { 1463 uint8_t own_addr_type; 1464 uint8_t filter_policy; 1465 uint8_t phys; 1466 struct bt_hci_ext_scan_phy p[0]; 1467 } __packed; 1468 1469 /* Extends BT_HCI_LE_SCAN_FILTER_DUP */ 1470 #define BT_HCI_LE_EXT_SCAN_FILTER_DUP_ENABLE_RESET 0x02 1471 1472 #define BT_HCI_OP_LE_SET_EXT_SCAN_ENABLE BT_OP(BT_OGF_LE, 0x0042) 1473 struct bt_hci_cp_le_set_ext_scan_enable { 1474 uint8_t enable; 1475 uint8_t filter_dup; 1476 uint16_t duration; 1477 uint16_t period; 1478 } __packed; 1479 1480 #define BT_HCI_OP_LE_EXT_CREATE_CONN BT_OP(BT_OGF_LE, 0x0043) 1481 #define BT_HCI_OP_LE_EXT_CREATE_CONN_V2 BT_OP(BT_OGF_LE, 0x0085) 1482 struct bt_hci_ext_conn_phy { 1483 uint16_t scan_interval; 1484 uint16_t scan_window; 1485 uint16_t conn_interval_min; 1486 uint16_t conn_interval_max; 1487 uint16_t conn_latency; 1488 uint16_t supervision_timeout; 1489 uint16_t min_ce_len; 1490 uint16_t max_ce_len; 1491 } __packed; 1492 1493 struct bt_hci_cp_le_ext_create_conn { 1494 uint8_t filter_policy; 1495 uint8_t own_addr_type; 1496 bt_addr_le_t peer_addr; 1497 uint8_t phys; 1498 struct bt_hci_ext_conn_phy p[0]; 1499 } __packed; 1500 1501 struct bt_hci_cp_le_ext_create_conn_v2 { 1502 uint8_t adv_handle; 1503 uint8_t subevent; 1504 uint8_t filter_policy; 1505 uint8_t own_addr_type; 1506 bt_addr_le_t peer_addr; 1507 uint8_t phys; 1508 struct bt_hci_ext_conn_phy p[0]; 1509 } __packed; 1510 1511 #define BT_HCI_OP_LE_SET_PER_ADV_SUBEVENT_DATA BT_OP(BT_OGF_LE, 0x0082) 1512 struct bt_hci_cp_le_set_pawr_subevent_data_element { 1513 uint8_t subevent; 1514 uint8_t response_slot_start; 1515 uint8_t response_slot_count; 1516 uint8_t subevent_data_length; 1517 uint8_t subevent_data[0]; 1518 } __packed; 1519 1520 struct bt_hci_cp_le_set_pawr_subevent_data { 1521 uint8_t adv_handle; 1522 uint8_t num_subevents; 1523 struct bt_hci_cp_le_set_pawr_subevent_data_element subevents[0]; 1524 } __packed; 1525 1526 1527 #define BT_HCI_OP_LE_SET_PER_ADV_RESPONSE_DATA BT_OP(BT_OGF_LE, 0x0083) 1528 struct bt_hci_cp_le_set_pawr_response_data { 1529 uint16_t sync_handle; 1530 uint16_t request_event; 1531 uint8_t request_subevent; 1532 uint8_t response_subevent; 1533 uint8_t response_slot; 1534 uint8_t response_data_length; 1535 uint8_t response_data[0]; 1536 } __packed; 1537 1538 #define BT_HCI_OP_LE_SET_PER_ADV_SYNC_SUBEVENT BT_OP(BT_OGF_LE, 0x0084) 1539 struct bt_hci_cp_le_set_pawr_sync_subevent { 1540 uint16_t sync_handle; 1541 uint16_t periodic_adv_properties; 1542 uint8_t num_subevents; 1543 uint8_t subevents[0]; 1544 } __packed; 1545 1546 1547 #define BT_HCI_OP_LE_SET_PER_ADV_PARAM_V2 BT_OP(BT_OGF_LE, 0x0086) 1548 struct bt_hci_cp_le_set_per_adv_param_v2 { 1549 uint8_t handle; 1550 uint16_t min_interval; 1551 uint16_t max_interval; 1552 uint16_t props; 1553 uint8_t num_subevents; 1554 uint8_t subevent_interval; 1555 uint8_t response_slot_delay; 1556 uint8_t response_slot_spacing; 1557 uint8_t num_response_slots; 1558 } __packed; 1559 1560 1561 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_FP_USE_LIST BIT(0) 1562 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_FP_REPORTS_DISABLED BIT(1) 1563 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_FP_FILTER_DUPLICATE BIT(2) 1564 1565 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_FILTERING 0 1566 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_AOA BIT(0) 1567 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_AOD_1US BIT(1) 1568 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_AOD_2US BIT(2) 1569 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_NO_CTE BIT(3) 1570 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_ONLY_CTE BIT(4) 1571 /* Constants to check correctness of CTE type */ 1572 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_ALLOWED_BITS 5 1573 #define BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_INVALID_VALUE \ 1574 (~BIT_MASK(BT_HCI_LE_PER_ADV_CREATE_SYNC_CTE_TYPE_ALLOWED_BITS)) 1575 1576 #define BT_HCI_OP_LE_PER_ADV_CREATE_SYNC BT_OP(BT_OGF_LE, 0x0044) 1577 struct bt_hci_cp_le_per_adv_create_sync { 1578 uint8_t options; 1579 uint8_t sid; 1580 bt_addr_le_t addr; 1581 uint16_t skip; 1582 uint16_t sync_timeout; 1583 uint8_t cte_type; 1584 } __packed; 1585 1586 #define BT_HCI_OP_LE_PER_ADV_CREATE_SYNC_CANCEL BT_OP(BT_OGF_LE, 0x0045) 1587 1588 #define BT_HCI_OP_LE_PER_ADV_TERMINATE_SYNC BT_OP(BT_OGF_LE, 0x0046) 1589 struct bt_hci_cp_le_per_adv_terminate_sync { 1590 uint16_t handle; 1591 } __packed; 1592 1593 #define BT_HCI_OP_LE_ADD_DEV_TO_PER_ADV_LIST BT_OP(BT_OGF_LE, 0x0047) 1594 struct bt_hci_cp_le_add_dev_to_per_adv_list { 1595 bt_addr_le_t addr; 1596 uint8_t sid; 1597 } __packed; 1598 1599 #define BT_HCI_OP_LE_REM_DEV_FROM_PER_ADV_LIST BT_OP(BT_OGF_LE, 0x0048) 1600 struct bt_hci_cp_le_rem_dev_from_per_adv_list { 1601 bt_addr_le_t addr; 1602 uint8_t sid; 1603 } __packed; 1604 1605 #define BT_HCI_OP_LE_CLEAR_PER_ADV_LIST BT_OP(BT_OGF_LE, 0x0049) 1606 1607 #define BT_HCI_OP_LE_READ_PER_ADV_LIST_SIZE BT_OP(BT_OGF_LE, 0x004a) 1608 struct bt_hci_rp_le_read_per_adv_list_size { 1609 uint8_t status; 1610 uint8_t list_size; 1611 } __packed; 1612 1613 #define BT_HCI_OP_LE_READ_TX_POWER BT_OP(BT_OGF_LE, 0x004b) 1614 struct bt_hci_rp_le_read_tx_power { 1615 uint8_t status; 1616 int8_t min_tx_power; 1617 int8_t max_tx_power; 1618 } __packed; 1619 1620 #define BT_HCI_OP_LE_READ_RF_PATH_COMP BT_OP(BT_OGF_LE, 0x004c) 1621 struct bt_hci_rp_le_read_rf_path_comp { 1622 uint8_t status; 1623 int16_t tx_path_comp; 1624 int16_t rx_path_comp; 1625 } __packed; 1626 1627 #define BT_HCI_OP_LE_WRITE_RF_PATH_COMP BT_OP(BT_OGF_LE, 0x004d) 1628 struct bt_hci_cp_le_write_rf_path_comp { 1629 int16_t tx_path_comp; 1630 int16_t rx_path_comp; 1631 } __packed; 1632 1633 #define BT_HCI_LE_PRIVACY_MODE_NETWORK 0x00 1634 #define BT_HCI_LE_PRIVACY_MODE_DEVICE 0x01 1635 1636 #define BT_HCI_OP_LE_SET_PRIVACY_MODE BT_OP(BT_OGF_LE, 0x004e) 1637 struct bt_hci_cp_le_set_privacy_mode { 1638 bt_addr_le_t id_addr; 1639 uint8_t mode; 1640 } __packed; 1641 1642 #define BT_HCI_LE_TEST_CTE_DISABLED 0x00 1643 #define BT_HCI_LE_TEST_CTE_TYPE_ANY 0x00 1644 #define BT_HCI_LE_TEST_SLOT_DURATION_ANY 0x00 1645 #define BT_HCI_LE_TEST_SWITCH_PATTERN_LEN_ANY 0x00 1646 1647 #define BT_HCI_OP_LE_RX_TEST_V3 BT_OP(BT_OGF_LE, 0x004f) 1648 struct bt_hci_cp_le_rx_test_v3 { 1649 uint8_t rx_ch; 1650 uint8_t phy; 1651 uint8_t mod_index; 1652 uint8_t expected_cte_len; 1653 uint8_t expected_cte_type; 1654 uint8_t slot_durations; 1655 uint8_t switch_pattern_len; 1656 uint8_t ant_ids[0]; 1657 } __packed; 1658 1659 #define BT_HCI_OP_LE_TX_TEST_V3 BT_OP(BT_OGF_LE, 0x0050) 1660 1661 struct bt_hci_cp_le_tx_test_v3 { 1662 uint8_t tx_ch; 1663 uint8_t test_data_len; 1664 uint8_t pkt_payload; 1665 uint8_t phy; 1666 uint8_t cte_len; 1667 uint8_t cte_type; 1668 uint8_t switch_pattern_len; 1669 uint8_t ant_ids[0]; 1670 } __packed; 1671 1672 /* Min and max Constant Tone Extension length in 8us units */ 1673 #define BT_HCI_LE_CTE_LEN_MIN 0x2 1674 #define BT_HCI_LE_CTE_LEN_MAX 0x14 1675 1676 #define BT_HCI_LE_AOA_CTE 0x0 1677 #define BT_HCI_LE_AOD_CTE_1US 0x1 1678 #define BT_HCI_LE_AOD_CTE_2US 0x2 1679 #define BT_HCI_LE_NO_CTE 0xFF 1680 1681 #define BT_HCI_LE_CTE_COUNT_MIN 0x1 1682 #define BT_HCI_LE_CTE_COUNT_MAX 0x10 1683 1684 #define BT_HCI_OP_LE_SET_CL_CTE_TX_PARAMS BT_OP(BT_OGF_LE, 0x0051) 1685 struct bt_hci_cp_le_set_cl_cte_tx_params { 1686 uint8_t handle; 1687 uint8_t cte_len; 1688 uint8_t cte_type; 1689 uint8_t cte_count; 1690 uint8_t switch_pattern_len; 1691 uint8_t ant_ids[0]; 1692 } __packed; 1693 1694 #define BT_HCI_OP_LE_SET_CL_CTE_TX_ENABLE BT_OP(BT_OGF_LE, 0x0052) 1695 struct bt_hci_cp_le_set_cl_cte_tx_enable { 1696 uint8_t handle; 1697 uint8_t cte_enable; 1698 } __packed; 1699 1700 #define BT_HCI_LE_ANTENNA_SWITCHING_SLOT_1US 0x1 1701 #define BT_HCI_LE_ANTENNA_SWITCHING_SLOT_2US 0x2 1702 1703 #define BT_HCI_LE_SAMPLE_CTE_ALL 0x0 1704 #define BT_HCI_LE_SAMPLE_CTE_COUNT_MIN 0x1 1705 #define BT_HCI_LE_SAMPLE_CTE_COUNT_MAX 0x10 1706 1707 #define BT_HCI_OP_LE_SET_CL_CTE_SAMPLING_ENABLE BT_OP(BT_OGF_LE, 0x0053) 1708 struct bt_hci_cp_le_set_cl_cte_sampling_enable { 1709 uint16_t sync_handle; 1710 uint8_t sampling_enable; 1711 uint8_t slot_durations; 1712 uint8_t max_sampled_cte; 1713 uint8_t switch_pattern_len; 1714 uint8_t ant_ids[0]; 1715 } __packed; 1716 1717 struct bt_hci_rp_le_set_cl_cte_sampling_enable { 1718 uint8_t status; 1719 uint16_t sync_handle; 1720 } __packed; 1721 1722 #define BT_HCI_OP_LE_SET_CONN_CTE_RX_PARAMS BT_OP(BT_OGF_LE, 0x0054) 1723 struct bt_hci_cp_le_set_conn_cte_rx_params { 1724 uint16_t handle; 1725 uint8_t sampling_enable; 1726 uint8_t slot_durations; 1727 uint8_t switch_pattern_len; 1728 uint8_t ant_ids[0]; 1729 } __packed; 1730 1731 struct bt_hci_rp_le_set_conn_cte_rx_params { 1732 uint8_t status; 1733 uint16_t handle; 1734 } __packed; 1735 1736 #define BT_HCI_LE_AOA_CTE_RSP BIT(0) 1737 #define BT_HCI_LE_AOD_CTE_RSP_1US BIT(1) 1738 #define BT_HCI_LE_AOD_CTE_RSP_2US BIT(2) 1739 1740 #define BT_HCI_LE_SWITCH_PATTERN_LEN_MIN 0x2 1741 #define BT_HCI_LE_SWITCH_PATTERN_LEN_MAX 0x4B 1742 1743 #define BT_HCI_OP_LE_SET_CONN_CTE_TX_PARAMS BT_OP(BT_OGF_LE, 0x0055) 1744 struct bt_hci_cp_le_set_conn_cte_tx_params { 1745 uint16_t handle; 1746 uint8_t cte_types; 1747 uint8_t switch_pattern_len; 1748 uint8_t ant_ids[0]; 1749 } __packed; 1750 1751 struct bt_hci_rp_le_set_conn_cte_tx_params { 1752 uint8_t status; 1753 uint16_t handle; 1754 } __packed; 1755 1756 /* Interval between consecutive CTE request procedure starts in number of connection events. */ 1757 #define BT_HCI_REQUEST_CTE_ONCE 0x0 1758 #define BT_HCI_REQUEST_CTE_INTERVAL_MIN 0x1 1759 #define BT_HCI_REQUEST_CTE_INTERVAL_MAX 0xFFFF 1760 1761 #define BT_HCI_OP_LE_CONN_CTE_REQ_ENABLE BT_OP(BT_OGF_LE, 0x0056) 1762 struct bt_hci_cp_le_conn_cte_req_enable { 1763 uint16_t handle; 1764 uint8_t enable; 1765 uint16_t cte_request_interval; 1766 uint8_t requested_cte_length; 1767 uint8_t requested_cte_type; 1768 } __packed; 1769 1770 struct bt_hci_rp_le_conn_cte_req_enable { 1771 uint8_t status; 1772 uint16_t handle; 1773 } __packed; 1774 1775 #define BT_HCI_OP_LE_CONN_CTE_RSP_ENABLE BT_OP(BT_OGF_LE, 0x0057) 1776 struct bt_hci_cp_le_conn_cte_rsp_enable { 1777 uint16_t handle; 1778 uint8_t enable; 1779 } __packed; 1780 1781 struct bt_hci_rp_le_conn_cte_rsp_enable { 1782 uint8_t status; 1783 uint16_t handle; 1784 } __packed; 1785 1786 #define BT_HCI_LE_1US_AOD_TX BIT(0) 1787 #define BT_HCI_LE_1US_AOD_RX BIT(1) 1788 #define BT_HCI_LE_1US_AOA_RX BIT(2) 1789 1790 #define BT_HCI_LE_NUM_ANT_MIN 0x1 1791 #define BT_HCI_LE_NUM_ANT_MAX 0x4B 1792 1793 #define BT_HCI_LE_MAX_SWITCH_PATTERN_LEN_MIN 0x2 1794 #define BT_HCI_LE_MAX_SWITCH_PATTERN_LEN_MAX 0x4B 1795 1796 #define BT_HCI_LE_MAX_CTE_LEN_MIN 0x2 1797 #define BT_HCI_LE_MAX_CTE_LEN_MAX 0x14 1798 1799 #define BT_HCI_OP_LE_READ_ANT_INFO BT_OP(BT_OGF_LE, 0x0058) 1800 struct bt_hci_rp_le_read_ant_info { 1801 uint8_t status; 1802 uint8_t switch_sample_rates; 1803 uint8_t num_ant; 1804 uint8_t max_switch_pattern_len; 1805 uint8_t max_cte_len; 1806 }; 1807 1808 #define BT_HCI_LE_SET_PER_ADV_RECV_ENABLE_ENABLE BIT(0) 1809 #define BT_HCI_LE_SET_PER_ADV_RECV_ENABLE_FILTER_DUPLICATE BIT(1) 1810 1811 #define BT_HCI_OP_LE_SET_PER_ADV_RECV_ENABLE BT_OP(BT_OGF_LE, 0x0059) 1812 struct bt_hci_cp_le_set_per_adv_recv_enable { 1813 uint16_t handle; 1814 uint8_t enable; 1815 } __packed; 1816 1817 #define BT_HCI_OP_LE_PER_ADV_SYNC_TRANSFER BT_OP(BT_OGF_LE, 0x005a) 1818 struct bt_hci_cp_le_per_adv_sync_transfer { 1819 uint16_t conn_handle; 1820 uint16_t service_data; 1821 uint16_t sync_handle; 1822 } __packed; 1823 1824 struct bt_hci_rp_le_per_adv_sync_transfer { 1825 uint8_t status; 1826 uint16_t conn_handle; 1827 } __packed; 1828 1829 #define BT_HCI_OP_LE_PER_ADV_SET_INFO_TRANSFER BT_OP(BT_OGF_LE, 0x005b) 1830 struct bt_hci_cp_le_per_adv_set_info_transfer { 1831 uint16_t conn_handle; 1832 uint16_t service_data; 1833 uint8_t adv_handle; 1834 } __packed; 1835 1836 struct bt_hci_rp_le_per_adv_set_info_transfer { 1837 uint8_t status; 1838 uint16_t conn_handle; 1839 } __packed; 1840 1841 #define BT_HCI_LE_PAST_MODE_NO_SYNC 0x00 1842 #define BT_HCI_LE_PAST_MODE_NO_REPORTS 0x01 1843 #define BT_HCI_LE_PAST_MODE_SYNC 0x02 1844 #define BT_HCI_LE_PAST_MODE_SYNC_FILTER_DUPLICATES 0x03 1845 1846 #define BT_HCI_LE_PAST_CTE_TYPE_NO_AOA BIT(0) 1847 #define BT_HCI_LE_PAST_CTE_TYPE_NO_AOD_1US BIT(1) 1848 #define BT_HCI_LE_PAST_CTE_TYPE_NO_AOD_2US BIT(2) 1849 #define BT_HCI_LE_PAST_CTE_TYPE_NO_CTE BIT(3) 1850 #define BT_HCI_LE_PAST_CTE_TYPE_ONLY_CTE BIT(4) 1851 1852 #define BT_HCI_OP_LE_PAST_PARAM BT_OP(BT_OGF_LE, 0x005c) 1853 struct bt_hci_cp_le_past_param { 1854 uint16_t conn_handle; 1855 uint8_t mode; 1856 uint16_t skip; 1857 uint16_t timeout; 1858 uint8_t cte_type; 1859 } __packed; 1860 1861 struct bt_hci_rp_le_past_param { 1862 uint8_t status; 1863 uint16_t conn_handle; 1864 } __packed; 1865 1866 #define BT_HCI_OP_LE_DEFAULT_PAST_PARAM BT_OP(BT_OGF_LE, 0x005d) 1867 struct bt_hci_cp_le_default_past_param { 1868 uint8_t mode; 1869 uint16_t skip; 1870 uint16_t timeout; 1871 uint8_t cte_type; 1872 } __packed; 1873 1874 struct bt_hci_rp_le_default_past_param { 1875 uint8_t status; 1876 } __packed; 1877 1878 #define BT_HCI_OP_LE_READ_BUFFER_SIZE_V2 BT_OP(BT_OGF_LE, 0x0060) 1879 struct bt_hci_rp_le_read_buffer_size_v2 { 1880 uint8_t status; 1881 uint16_t acl_max_len; 1882 uint8_t acl_max_num; 1883 uint16_t iso_max_len; 1884 uint8_t iso_max_num; 1885 } __packed; 1886 1887 #define BT_HCI_OP_LE_READ_ISO_TX_SYNC BT_OP(BT_OGF_LE, 0x0061) 1888 struct bt_hci_cp_le_read_iso_tx_sync { 1889 uint16_t handle; 1890 } __packed; 1891 1892 struct bt_hci_rp_le_read_iso_tx_sync { 1893 uint8_t status; 1894 uint16_t handle; 1895 uint16_t seq; 1896 uint32_t timestamp; 1897 uint8_t offset[3]; 1898 } __packed; 1899 1900 #define BT_HCI_ISO_CIG_ID_MAX 0xFE 1901 #define BT_HCI_ISO_CIS_COUNT_MAX 0x1F 1902 #define BT_HCI_ISO_SDU_INTERVAL_MIN 0x0000FF 1903 #define BT_HCI_ISO_SDU_INTERVAL_MAX 0x0FFFFF 1904 #define BT_HCI_ISO_WORST_CASE_SCA_VALID_MASK 0x07 1905 #define BT_HCI_ISO_PACKING_VALID_MASK 0x01 1906 #define BT_HCI_ISO_FRAMING_VALID_MASK 0x01 1907 #define BT_HCI_ISO_MAX_TRANSPORT_LATENCY_MIN 0x0005 1908 #define BT_HCI_ISO_MAX_TRANSPORT_LATENCY_MAX 0x0FA0 1909 #define BT_HCI_ISO_CIS_ID_VALID_MAX 0xEF 1910 #define BT_HCI_ISO_MAX_SDU_VALID_MASK 0x0FFF 1911 #define BT_HCI_ISO_PHY_VALID_MASK 0x07 1912 #define BT_HCI_ISO_INTERVAL_MIN 0x0004 1913 #define BT_HCI_ISO_INTERVAL_MAX 0x0C80 1914 1915 #define BT_HCI_OP_LE_SET_CIG_PARAMS BT_OP(BT_OGF_LE, 0x0062) 1916 struct bt_hci_cis_params { 1917 uint8_t cis_id; 1918 uint16_t c_sdu; 1919 uint16_t p_sdu; 1920 uint8_t c_phy; 1921 uint8_t p_phy; 1922 uint8_t c_rtn; 1923 uint8_t p_rtn; 1924 } __packed; 1925 1926 struct bt_hci_cp_le_set_cig_params { 1927 uint8_t cig_id; 1928 uint8_t c_interval[3]; 1929 uint8_t p_interval[3]; 1930 uint8_t sca; 1931 uint8_t packing; 1932 uint8_t framing; 1933 uint16_t c_latency; 1934 uint16_t p_latency; 1935 uint8_t num_cis; 1936 struct bt_hci_cis_params cis[0]; 1937 } __packed; 1938 1939 struct bt_hci_rp_le_set_cig_params { 1940 uint8_t status; 1941 uint8_t cig_id; 1942 uint8_t num_handles; 1943 uint16_t handle[0]; 1944 } __packed; 1945 1946 #define BT_HCI_OP_LE_SET_CIG_PARAMS_TEST BT_OP(BT_OGF_LE, 0x0063) 1947 struct bt_hci_cis_params_test { 1948 uint8_t cis_id; 1949 uint8_t nse; 1950 uint16_t c_sdu; 1951 uint16_t p_sdu; 1952 uint16_t c_pdu; 1953 uint16_t p_pdu; 1954 uint8_t c_phy; 1955 uint8_t p_phy; 1956 uint8_t c_bn; 1957 uint8_t p_bn; 1958 } __packed; 1959 1960 struct bt_hci_cp_le_set_cig_params_test { 1961 uint8_t cig_id; 1962 uint8_t c_interval[3]; 1963 uint8_t p_interval[3]; 1964 uint8_t c_ft; 1965 uint8_t p_ft; 1966 uint16_t iso_interval; 1967 uint8_t sca; 1968 uint8_t packing; 1969 uint8_t framing; 1970 uint8_t num_cis; 1971 struct bt_hci_cis_params_test cis[0]; 1972 } __packed; 1973 1974 struct bt_hci_rp_le_set_cig_params_test { 1975 uint8_t status; 1976 uint8_t cig_id; 1977 uint8_t num_handles; 1978 uint16_t handle[0]; 1979 } __packed; 1980 1981 #define BT_HCI_OP_LE_CREATE_CIS BT_OP(BT_OGF_LE, 0x0064) 1982 struct bt_hci_cis { 1983 uint16_t cis_handle; 1984 uint16_t acl_handle; 1985 } __packed; 1986 1987 struct bt_hci_cp_le_create_cis { 1988 uint8_t num_cis; 1989 struct bt_hci_cis cis[0]; 1990 } __packed; 1991 1992 #define BT_HCI_OP_LE_REMOVE_CIG BT_OP(BT_OGF_LE, 0x0065) 1993 struct bt_hci_cp_le_remove_cig { 1994 uint8_t cig_id; 1995 } __packed; 1996 1997 struct bt_hci_rp_le_remove_cig { 1998 uint8_t status; 1999 uint8_t cig_id; 2000 } __packed; 2001 2002 #define BT_HCI_OP_LE_ACCEPT_CIS BT_OP(BT_OGF_LE, 0x0066) 2003 struct bt_hci_cp_le_accept_cis { 2004 uint16_t handle; 2005 } __packed; 2006 2007 #define BT_HCI_OP_LE_REJECT_CIS BT_OP(BT_OGF_LE, 0x0067) 2008 struct bt_hci_cp_le_reject_cis { 2009 uint16_t handle; 2010 uint8_t reason; 2011 } __packed; 2012 2013 struct bt_hci_rp_le_reject_cis { 2014 uint8_t status; 2015 uint16_t handle; 2016 } __packed; 2017 2018 #define BT_HCI_OP_LE_CREATE_BIG BT_OP(BT_OGF_LE, 0x0068) 2019 struct bt_hci_cp_le_create_big { 2020 uint8_t big_handle; 2021 uint8_t adv_handle; 2022 uint8_t num_bis; 2023 uint8_t sdu_interval[3]; 2024 uint16_t max_sdu; 2025 uint16_t max_latency; 2026 uint8_t rtn; 2027 uint8_t phy; 2028 uint8_t packing; 2029 uint8_t framing; 2030 uint8_t encryption; 2031 uint8_t bcode[16]; 2032 } __packed; 2033 2034 #define BT_HCI_OP_LE_CREATE_BIG_TEST BT_OP(BT_OGF_LE, 0x0069) 2035 struct bt_hci_cp_le_create_big_test { 2036 uint8_t big_handle; 2037 uint8_t adv_handle; 2038 uint8_t num_bis; 2039 uint8_t sdu_interval[3]; 2040 uint16_t iso_interval; 2041 uint8_t nse; 2042 uint16_t max_sdu; 2043 uint16_t max_pdu; 2044 uint8_t phy; 2045 uint8_t packing; 2046 uint8_t framing; 2047 uint8_t bn; 2048 uint8_t irc; 2049 uint8_t pto; 2050 uint8_t encryption; 2051 uint8_t bcode[16]; 2052 } __packed; 2053 2054 #define BT_HCI_OP_LE_TERMINATE_BIG BT_OP(BT_OGF_LE, 0x006a) 2055 struct bt_hci_cp_le_terminate_big { 2056 uint8_t big_handle; 2057 uint8_t reason; 2058 } __packed; 2059 2060 #define BT_HCI_OP_LE_BIG_CREATE_SYNC BT_OP(BT_OGF_LE, 0x006b) 2061 struct bt_hci_cp_le_big_create_sync { 2062 uint8_t big_handle; 2063 uint16_t sync_handle; 2064 uint8_t encryption; 2065 uint8_t bcode[16]; 2066 uint8_t mse; 2067 uint16_t sync_timeout; 2068 uint8_t num_bis; 2069 uint8_t bis[0]; 2070 } __packed; 2071 2072 #define BT_HCI_OP_LE_BIG_TERMINATE_SYNC BT_OP(BT_OGF_LE, 0x006c) 2073 struct bt_hci_cp_le_big_terminate_sync { 2074 uint8_t big_handle; 2075 } __packed; 2076 2077 struct bt_hci_rp_le_big_terminate_sync { 2078 uint8_t status; 2079 uint8_t big_handle; 2080 } __packed; 2081 2082 #define BT_HCI_OP_LE_REQ_PEER_SC BT_OP(BT_OGF_LE, 0x006d) 2083 struct bt_hci_cp_le_req_peer_sca { 2084 uint16_t handle; 2085 } __packed; 2086 2087 #define BT_HCI_OP_LE_SETUP_ISO_PATH BT_OP(BT_OGF_LE, 0x006e) 2088 struct bt_hci_cp_le_setup_iso_path { 2089 uint16_t handle; 2090 uint8_t path_dir; 2091 uint8_t path_id; 2092 struct bt_hci_cp_codec_id codec_id; 2093 uint8_t controller_delay[3]; 2094 uint8_t codec_config_len; 2095 uint8_t codec_config[0]; 2096 } __packed; 2097 2098 struct bt_hci_rp_le_setup_iso_path { 2099 uint8_t status; 2100 uint16_t handle; 2101 } __packed; 2102 2103 #define BT_HCI_OP_LE_REMOVE_ISO_PATH BT_OP(BT_OGF_LE, 0x006f) 2104 struct bt_hci_cp_le_remove_iso_path { 2105 uint16_t handle; 2106 uint8_t path_dir; 2107 } __packed; 2108 2109 struct bt_hci_rp_le_remove_iso_path { 2110 uint8_t status; 2111 uint16_t handle; 2112 } __packed; 2113 2114 #define BT_HCI_ISO_TEST_ZERO_SIZE_SDU 0 2115 #define BT_HCI_ISO_TEST_VARIABLE_SIZE_SDU 1 2116 #define BT_HCI_ISO_TEST_MAX_SIZE_SDU 2 2117 2118 #define BT_HCI_OP_LE_ISO_TRANSMIT_TEST BT_OP(BT_OGF_LE, 0x0070) 2119 struct bt_hci_cp_le_iso_transmit_test { 2120 uint16_t handle; 2121 uint8_t payload_type; 2122 } __packed; 2123 2124 struct bt_hci_rp_le_iso_transmit_test { 2125 uint8_t status; 2126 uint16_t handle; 2127 } __packed; 2128 2129 #define BT_HCI_OP_LE_ISO_RECEIVE_TEST BT_OP(BT_OGF_LE, 0x0071) 2130 struct bt_hci_cp_le_iso_receive_test { 2131 uint16_t handle; 2132 uint8_t payload_type; 2133 } __packed; 2134 2135 struct bt_hci_rp_le_iso_receive_test { 2136 uint8_t status; 2137 uint16_t handle; 2138 } __packed; 2139 2140 #define BT_HCI_OP_LE_ISO_READ_TEST_COUNTERS BT_OP(BT_OGF_LE, 0x0072) 2141 struct bt_hci_cp_le_read_test_counters { 2142 uint16_t handle; 2143 } __packed; 2144 2145 struct bt_hci_rp_le_read_test_counters { 2146 uint8_t status; 2147 uint16_t handle; 2148 uint32_t received_cnt; 2149 uint32_t missed_cnt; 2150 uint32_t failed_cnt; 2151 } __packed; 2152 2153 #define BT_HCI_OP_LE_ISO_TEST_END BT_OP(BT_OGF_LE, 0x0073) 2154 struct bt_hci_cp_le_iso_test_end { 2155 uint16_t handle; 2156 } __packed; 2157 2158 struct bt_hci_rp_le_iso_test_end { 2159 uint8_t status; 2160 uint16_t handle; 2161 uint32_t received_cnt; 2162 uint32_t missed_cnt; 2163 uint32_t failed_cnt; 2164 } __packed; 2165 2166 #define BT_HCI_OP_LE_SET_HOST_FEATURE BT_OP(BT_OGF_LE, 0x0074) 2167 struct bt_hci_cp_le_set_host_feature { 2168 uint8_t bit_number; 2169 uint8_t bit_value; 2170 } __packed; 2171 2172 struct bt_hci_rp_le_set_host_feature { 2173 uint8_t status; 2174 } __packed; 2175 2176 #define BT_HCI_OP_LE_READ_ISO_LINK_QUALITY BT_OP(BT_OGF_LE, 0x0075) 2177 struct bt_hci_cp_le_read_iso_link_quality { 2178 uint16_t handle; 2179 } __packed; 2180 2181 struct bt_hci_rp_le_read_iso_link_quality { 2182 uint8_t status; 2183 uint16_t handle; 2184 uint32_t tx_unacked_packets; 2185 uint32_t tx_flushed_packets; 2186 uint32_t tx_last_subevent_packets; 2187 uint32_t retransmitted_packets; 2188 uint32_t crc_error_packets; 2189 uint32_t rx_unreceived_packets; 2190 uint32_t duplicate_packets; 2191 } __packed; 2192 2193 #define BT_HCI_OP_LE_TX_TEST_V4 BT_OP(BT_OGF_LE, 0x007B) 2194 2195 struct bt_hci_cp_le_tx_test_v4 { 2196 uint8_t tx_ch; 2197 uint8_t test_data_len; 2198 uint8_t pkt_payload; 2199 uint8_t phy; 2200 uint8_t cte_len; 2201 uint8_t cte_type; 2202 uint8_t switch_pattern_len; 2203 uint8_t ant_ids[0]; 2204 } __packed; 2205 2206 #define BT_HCI_TX_TEST_POWER_MIN -0x7F 2207 #define BT_HCI_TX_TEST_POWER_MAX 0x14 2208 2209 #define BT_HCI_TX_TEST_POWER_MIN_SET 0x7E 2210 #define BT_HCI_TX_TEST_POWER_MAX_SET 0x7F 2211 2212 /* Helper structure for Tx power parameter in the HCI Tx Test v4 command. 2213 * Previous parameter of this command is variable size so having separated structure 2214 * for this parameter helps in command parameters unpacking. 2215 */ 2216 struct bt_hci_cp_le_tx_test_v4_tx_power { 2217 int8_t tx_power; 2218 } __packed; 2219 2220 /* Event definitions */ 2221 2222 #define BT_HCI_EVT_UNKNOWN 0x00 2223 #define BT_HCI_EVT_VENDOR 0xff 2224 2225 #define BT_HCI_EVT_INQUIRY_COMPLETE 0x01 2226 struct bt_hci_evt_inquiry_complete { 2227 uint8_t status; 2228 } __packed; 2229 2230 #define BT_HCI_EVT_CONN_COMPLETE 0x03 2231 struct bt_hci_evt_conn_complete { 2232 uint8_t status; 2233 uint16_t handle; 2234 bt_addr_t bdaddr; 2235 uint8_t link_type; 2236 uint8_t encr_enabled; 2237 } __packed; 2238 2239 #define BT_HCI_EVT_CONN_REQUEST 0x04 2240 struct bt_hci_evt_conn_request { 2241 bt_addr_t bdaddr; 2242 uint8_t dev_class[3]; 2243 uint8_t link_type; 2244 } __packed; 2245 2246 #define BT_HCI_EVT_DISCONN_COMPLETE 0x05 2247 struct bt_hci_evt_disconn_complete { 2248 uint8_t status; 2249 uint16_t handle; 2250 uint8_t reason; 2251 } __packed; 2252 2253 #define BT_HCI_EVT_AUTH_COMPLETE 0x06 2254 struct bt_hci_evt_auth_complete { 2255 uint8_t status; 2256 uint16_t handle; 2257 } __packed; 2258 2259 #define BT_HCI_EVT_REMOTE_NAME_REQ_COMPLETE 0x07 2260 struct bt_hci_evt_remote_name_req_complete { 2261 uint8_t status; 2262 bt_addr_t bdaddr; 2263 uint8_t name[248]; 2264 } __packed; 2265 2266 #define BT_HCI_EVT_ENCRYPT_CHANGE 0x08 2267 struct bt_hci_evt_encrypt_change { 2268 uint8_t status; 2269 uint16_t handle; 2270 uint8_t encrypt; 2271 } __packed; 2272 2273 #define BT_HCI_EVT_REMOTE_FEATURES 0x0b 2274 struct bt_hci_evt_remote_features { 2275 uint8_t status; 2276 uint16_t handle; 2277 uint8_t features[8]; 2278 } __packed; 2279 2280 #define BT_HCI_EVT_REMOTE_VERSION_INFO 0x0c 2281 struct bt_hci_evt_remote_version_info { 2282 uint8_t status; 2283 uint16_t handle; 2284 uint8_t version; 2285 uint16_t manufacturer; 2286 uint16_t subversion; 2287 } __packed; 2288 2289 #define BT_HCI_EVT_CMD_COMPLETE 0x0e 2290 struct bt_hci_evt_cmd_complete { 2291 uint8_t ncmd; 2292 uint16_t opcode; 2293 } __packed; 2294 2295 struct bt_hci_evt_cc_status { 2296 uint8_t status; 2297 } __packed; 2298 2299 #define BT_HCI_EVT_CMD_STATUS 0x0f 2300 struct bt_hci_evt_cmd_status { 2301 uint8_t status; 2302 uint8_t ncmd; 2303 uint16_t opcode; 2304 } __packed; 2305 2306 #define BT_HCI_EVT_HARDWARE_ERROR 0x10 2307 struct bt_hci_evt_hardware_error { 2308 uint8_t hardware_code; 2309 } __packed; 2310 2311 #define BT_HCI_EVT_ROLE_CHANGE 0x12 2312 struct bt_hci_evt_role_change { 2313 uint8_t status; 2314 bt_addr_t bdaddr; 2315 uint8_t role; 2316 } __packed; 2317 2318 #define BT_HCI_EVT_NUM_COMPLETED_PACKETS 0x13 2319 struct bt_hci_evt_num_completed_packets { 2320 uint8_t num_handles; 2321 struct bt_hci_handle_count h[0]; 2322 } __packed; 2323 2324 #define BT_HCI_EVT_PIN_CODE_REQ 0x16 2325 struct bt_hci_evt_pin_code_req { 2326 bt_addr_t bdaddr; 2327 } __packed; 2328 2329 #define BT_HCI_EVT_LINK_KEY_REQ 0x17 2330 struct bt_hci_evt_link_key_req { 2331 bt_addr_t bdaddr; 2332 } __packed; 2333 2334 /* Link Key types */ 2335 #define BT_LK_COMBINATION 0x00 2336 #define BT_LK_LOCAL_UNIT 0x01 2337 #define BT_LK_REMOTE_UNIT 0x02 2338 #define BT_LK_DEBUG_COMBINATION 0x03 2339 #define BT_LK_UNAUTH_COMBINATION_P192 0x04 2340 #define BT_LK_AUTH_COMBINATION_P192 0x05 2341 #define BT_LK_CHANGED_COMBINATION 0x06 2342 #define BT_LK_UNAUTH_COMBINATION_P256 0x07 2343 #define BT_LK_AUTH_COMBINATION_P256 0x08 2344 2345 #define BT_HCI_EVT_LINK_KEY_NOTIFY 0x18 2346 struct bt_hci_evt_link_key_notify { 2347 bt_addr_t bdaddr; 2348 uint8_t link_key[16]; 2349 uint8_t key_type; 2350 } __packed; 2351 2352 /* Overflow link types */ 2353 #define BT_OVERFLOW_LINK_SYNCH 0x00 2354 #define BT_OVERFLOW_LINK_ACL 0x01 2355 #define BT_OVERFLOW_LINK_ISO 0x02 2356 2357 #define BT_HCI_EVT_DATA_BUF_OVERFLOW 0x1a 2358 struct bt_hci_evt_data_buf_overflow { 2359 uint8_t link_type; 2360 } __packed; 2361 2362 #define BT_HCI_EVT_INQUIRY_RESULT_WITH_RSSI 0x22 2363 struct bt_hci_evt_inquiry_result_with_rssi { 2364 bt_addr_t addr; 2365 uint8_t pscan_rep_mode; 2366 uint8_t reserved; 2367 uint8_t cod[3]; 2368 uint16_t clock_offset; 2369 int8_t rssi; 2370 } __packed; 2371 2372 #define BT_HCI_EVT_REMOTE_EXT_FEATURES 0x23 2373 struct bt_hci_evt_remote_ext_features { 2374 uint8_t status; 2375 uint16_t handle; 2376 uint8_t page; 2377 uint8_t max_page; 2378 uint8_t features[8]; 2379 } __packed; 2380 2381 #define BT_HCI_EVT_LE_PER_ADV_SYNC_ESTABLISHED_V2 0x24 2382 struct bt_hci_evt_le_per_adv_sync_established_v2 { 2383 uint8_t status; 2384 uint16_t handle; 2385 uint8_t sid; 2386 bt_addr_le_t adv_addr; 2387 uint8_t phy; 2388 uint16_t interval; 2389 uint8_t clock_accuracy; 2390 uint8_t num_subevents; 2391 uint8_t subevent_interval; 2392 uint8_t response_slot_delay; 2393 uint8_t response_slot_spacing; 2394 } __packed; 2395 2396 #define BT_HCI_EVT_LE_PER_ADVERTISING_REPORT_V2 0x25 2397 struct bt_hci_evt_le_per_advertising_report_v2 { 2398 uint16_t handle; 2399 int8_t tx_power; 2400 int8_t rssi; 2401 uint8_t cte_type; 2402 uint16_t periodic_event_counter; 2403 uint8_t subevent; 2404 uint8_t data_status; 2405 uint8_t length; 2406 uint8_t data[0]; 2407 } __packed; 2408 2409 #define BT_HCI_EVT_LE_PAST_RECEIVED_V2 0x26 2410 struct bt_hci_evt_le_past_received_v2 { 2411 uint8_t status; 2412 uint16_t conn_handle; 2413 uint16_t service_data; 2414 uint16_t sync_handle; 2415 uint8_t adv_sid; 2416 bt_addr_le_t addr; 2417 uint8_t phy; 2418 uint16_t interval; 2419 uint8_t clock_accuracy; 2420 uint8_t num_subevents; 2421 uint8_t subevent_interval; 2422 uint8_t response_slot_delay; 2423 uint8_t response_slot_spacing; 2424 } __packed; 2425 2426 #define BT_HCI_EVT_LE_PER_ADV_SUBEVENT_DATA_REQUEST 0x27 2427 struct bt_hci_evt_le_per_adv_subevent_data_request { 2428 uint8_t adv_handle; 2429 uint8_t subevent_start; 2430 uint8_t subevent_data_count; 2431 } __packed; 2432 2433 #define BT_HCI_EVT_LE_PER_ADV_RESPONSE_REPORT 0x28 2434 2435 struct bt_hci_evt_le_per_adv_response { 2436 int8_t tx_power; 2437 int8_t rssi; 2438 uint8_t cte_type; 2439 uint8_t response_slot; 2440 uint8_t data_status; 2441 uint8_t data_length; 2442 uint8_t data[0]; 2443 } __packed; 2444 2445 struct bt_hci_evt_le_per_adv_response_report { 2446 uint8_t adv_handle; 2447 uint8_t subevent; 2448 uint8_t tx_status; 2449 uint8_t num_responses; 2450 struct bt_hci_evt_le_per_adv_response responses[0]; 2451 } __packed; 2452 2453 #define BT_HCI_EVT_LE_ENH_CONN_COMPLETE_V2 0x29 2454 struct bt_hci_evt_le_enh_conn_complete_v2 { 2455 uint8_t status; 2456 uint16_t handle; 2457 uint8_t role; 2458 bt_addr_le_t peer_addr; 2459 bt_addr_t local_rpa; 2460 bt_addr_t peer_rpa; 2461 uint16_t interval; 2462 uint16_t latency; 2463 uint16_t supv_timeout; 2464 uint8_t clock_accuracy; 2465 uint8_t adv_handle; 2466 uint16_t sync_handle; 2467 } __packed; 2468 2469 #define BT_HCI_EVT_SYNC_CONN_COMPLETE 0x2c 2470 struct bt_hci_evt_sync_conn_complete { 2471 uint8_t status; 2472 uint16_t handle; 2473 bt_addr_t bdaddr; 2474 uint8_t link_type; 2475 uint8_t tx_interval; 2476 uint8_t retansmission_window; 2477 uint16_t rx_pkt_length; 2478 uint16_t tx_pkt_length; 2479 uint8_t air_mode; 2480 } __packed; 2481 2482 #define BT_HCI_EVT_EXTENDED_INQUIRY_RESULT 0x2f 2483 struct bt_hci_evt_extended_inquiry_result { 2484 uint8_t num_reports; 2485 bt_addr_t addr; 2486 uint8_t pscan_rep_mode; 2487 uint8_t reserved; 2488 uint8_t cod[3]; 2489 uint16_t clock_offset; 2490 int8_t rssi; 2491 uint8_t eir[240]; 2492 } __packed; 2493 2494 #define BT_HCI_EVT_ENCRYPT_KEY_REFRESH_COMPLETE 0x30 2495 struct bt_hci_evt_encrypt_key_refresh_complete { 2496 uint8_t status; 2497 uint16_t handle; 2498 } __packed; 2499 2500 #define BT_HCI_EVT_IO_CAPA_REQ 0x31 2501 struct bt_hci_evt_io_capa_req { 2502 bt_addr_t bdaddr; 2503 } __packed; 2504 2505 #define BT_HCI_EVT_IO_CAPA_RESP 0x32 2506 struct bt_hci_evt_io_capa_resp { 2507 bt_addr_t bdaddr; 2508 uint8_t capability; 2509 uint8_t oob_data; 2510 uint8_t authentication; 2511 } __packed; 2512 2513 #define BT_HCI_EVT_USER_CONFIRM_REQ 0x33 2514 struct bt_hci_evt_user_confirm_req { 2515 bt_addr_t bdaddr; 2516 uint32_t passkey; 2517 } __packed; 2518 2519 #define BT_HCI_EVT_USER_PASSKEY_REQ 0x34 2520 struct bt_hci_evt_user_passkey_req { 2521 bt_addr_t bdaddr; 2522 } __packed; 2523 2524 #define BT_HCI_EVT_SSP_COMPLETE 0x36 2525 struct bt_hci_evt_ssp_complete { 2526 uint8_t status; 2527 bt_addr_t bdaddr; 2528 } __packed; 2529 2530 #define BT_HCI_EVT_USER_PASSKEY_NOTIFY 0x3b 2531 struct bt_hci_evt_user_passkey_notify { 2532 bt_addr_t bdaddr; 2533 uint32_t passkey; 2534 } __packed; 2535 2536 #define BT_HCI_EVT_LE_META_EVENT 0x3e 2537 struct bt_hci_evt_le_meta_event { 2538 uint8_t subevent; 2539 } __packed; 2540 2541 #define BT_HCI_EVT_AUTH_PAYLOAD_TIMEOUT_EXP 0x57 2542 struct bt_hci_evt_auth_payload_timeout_exp { 2543 uint16_t handle; 2544 } __packed; 2545 2546 #define BT_HCI_ROLE_CENTRAL 0x00 2547 #define BT_HCI_ROLE_PERIPHERAL 0x01 2548 2549 #define BT_HCI_EVT_LE_CONN_COMPLETE 0x01 2550 struct bt_hci_evt_le_conn_complete { 2551 uint8_t status; 2552 uint16_t handle; 2553 uint8_t role; 2554 bt_addr_le_t peer_addr; 2555 uint16_t interval; 2556 uint16_t latency; 2557 uint16_t supv_timeout; 2558 uint8_t clock_accuracy; 2559 } __packed; 2560 2561 #define BT_HCI_LE_RSSI_NOT_AVAILABLE 0x7F 2562 2563 #define BT_HCI_EVT_LE_ADVERTISING_REPORT 0x02 2564 struct bt_hci_evt_le_advertising_info { 2565 uint8_t evt_type; 2566 bt_addr_le_t addr; 2567 uint8_t length; 2568 uint8_t data[0]; 2569 } __packed; 2570 struct bt_hci_evt_le_advertising_report { 2571 uint8_t num_reports; 2572 struct bt_hci_evt_le_advertising_info adv_info[0]; 2573 } __packed; 2574 2575 #define BT_HCI_EVT_LE_CONN_UPDATE_COMPLETE 0x03 2576 struct bt_hci_evt_le_conn_update_complete { 2577 uint8_t status; 2578 uint16_t handle; 2579 uint16_t interval; 2580 uint16_t latency; 2581 uint16_t supv_timeout; 2582 } __packed; 2583 2584 #define BT_HCI_EVT_LE_REMOTE_FEAT_COMPLETE 0x04 2585 struct bt_hci_evt_le_remote_feat_complete { 2586 uint8_t status; 2587 uint16_t handle; 2588 uint8_t features[8]; 2589 } __packed; 2590 2591 #define BT_HCI_EVT_LE_LTK_REQUEST 0x05 2592 struct bt_hci_evt_le_ltk_request { 2593 uint16_t handle; 2594 uint64_t rand; 2595 uint16_t ediv; 2596 } __packed; 2597 2598 #define BT_HCI_EVT_LE_CONN_PARAM_REQ 0x06 2599 struct bt_hci_evt_le_conn_param_req { 2600 uint16_t handle; 2601 uint16_t interval_min; 2602 uint16_t interval_max; 2603 uint16_t latency; 2604 uint16_t timeout; 2605 } __packed; 2606 2607 #define BT_HCI_EVT_LE_DATA_LEN_CHANGE 0x07 2608 struct bt_hci_evt_le_data_len_change { 2609 uint16_t handle; 2610 uint16_t max_tx_octets; 2611 uint16_t max_tx_time; 2612 uint16_t max_rx_octets; 2613 uint16_t max_rx_time; 2614 } __packed; 2615 2616 #define BT_HCI_EVT_LE_P256_PUBLIC_KEY_COMPLETE 0x08 2617 struct bt_hci_evt_le_p256_public_key_complete { 2618 uint8_t status; 2619 uint8_t key[64]; 2620 } __packed; 2621 2622 #define BT_HCI_EVT_LE_GENERATE_DHKEY_COMPLETE 0x09 2623 struct bt_hci_evt_le_generate_dhkey_complete { 2624 uint8_t status; 2625 uint8_t dhkey[32]; 2626 } __packed; 2627 2628 #define BT_HCI_EVT_LE_ENH_CONN_COMPLETE 0x0a 2629 struct bt_hci_evt_le_enh_conn_complete { 2630 uint8_t status; 2631 uint16_t handle; 2632 uint8_t role; 2633 bt_addr_le_t peer_addr; 2634 bt_addr_t local_rpa; 2635 bt_addr_t peer_rpa; 2636 uint16_t interval; 2637 uint16_t latency; 2638 uint16_t supv_timeout; 2639 uint8_t clock_accuracy; 2640 } __packed; 2641 2642 #define BT_HCI_EVT_LE_DIRECT_ADV_REPORT 0x0b 2643 struct bt_hci_evt_le_direct_adv_info { 2644 uint8_t evt_type; 2645 bt_addr_le_t addr; 2646 bt_addr_le_t dir_addr; 2647 int8_t rssi; 2648 } __packed; 2649 struct bt_hci_evt_le_direct_adv_report { 2650 uint8_t num_reports; 2651 struct bt_hci_evt_le_direct_adv_info direct_adv_info[0]; 2652 } __packed; 2653 2654 #define BT_HCI_EVT_LE_PHY_UPDATE_COMPLETE 0x0c 2655 struct bt_hci_evt_le_phy_update_complete { 2656 uint8_t status; 2657 uint16_t handle; 2658 uint8_t tx_phy; 2659 uint8_t rx_phy; 2660 } __packed; 2661 2662 #define BT_HCI_EVT_LE_EXT_ADVERTISING_REPORT 0x0d 2663 2664 #define BT_HCI_LE_ADV_EVT_TYPE_CONN BIT(0) 2665 #define BT_HCI_LE_ADV_EVT_TYPE_SCAN BIT(1) 2666 #define BT_HCI_LE_ADV_EVT_TYPE_DIRECT BIT(2) 2667 #define BT_HCI_LE_ADV_EVT_TYPE_SCAN_RSP BIT(3) 2668 #define BT_HCI_LE_ADV_EVT_TYPE_LEGACY BIT(4) 2669 2670 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS(ev_type) (((ev_type) >> 5) & 0x03) 2671 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_COMPLETE 0 2672 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_PARTIAL 1 2673 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_INCOMPLETE 2 2674 #define BT_HCI_LE_ADV_EVT_TYPE_DATA_STATUS_RX_FAILED 0xFF 2675 2676 struct bt_hci_evt_le_ext_advertising_info { 2677 uint16_t evt_type; 2678 bt_addr_le_t addr; 2679 uint8_t prim_phy; 2680 uint8_t sec_phy; 2681 uint8_t sid; 2682 int8_t tx_power; 2683 int8_t rssi; 2684 uint16_t interval; 2685 bt_addr_le_t direct_addr; 2686 uint8_t length; 2687 uint8_t data[0]; 2688 } __packed; 2689 struct bt_hci_evt_le_ext_advertising_report { 2690 uint8_t num_reports; 2691 struct bt_hci_evt_le_ext_advertising_info adv_info[0]; 2692 } __packed; 2693 2694 #define BT_HCI_EVT_LE_PER_ADV_SYNC_ESTABLISHED 0x0e 2695 struct bt_hci_evt_le_per_adv_sync_established { 2696 uint8_t status; 2697 uint16_t handle; 2698 uint8_t sid; 2699 bt_addr_le_t adv_addr; 2700 uint8_t phy; 2701 uint16_t interval; 2702 uint8_t clock_accuracy; 2703 } __packed; 2704 2705 #define BT_HCI_EVT_LE_PER_ADVERTISING_REPORT 0x0f 2706 struct bt_hci_evt_le_per_advertising_report { 2707 uint16_t handle; 2708 int8_t tx_power; 2709 int8_t rssi; 2710 uint8_t cte_type; 2711 uint8_t data_status; 2712 uint8_t length; 2713 uint8_t data[0]; 2714 } __packed; 2715 2716 #define BT_HCI_EVT_LE_PER_ADV_SYNC_LOST 0x10 2717 struct bt_hci_evt_le_per_adv_sync_lost { 2718 uint16_t handle; 2719 } __packed; 2720 2721 #define BT_HCI_EVT_LE_SCAN_TIMEOUT 0x11 2722 2723 #define BT_HCI_EVT_LE_ADV_SET_TERMINATED 0x12 2724 struct bt_hci_evt_le_adv_set_terminated { 2725 uint8_t status; 2726 uint8_t adv_handle; 2727 uint16_t conn_handle; 2728 uint8_t num_completed_ext_adv_evts; 2729 } __packed; 2730 2731 #define BT_HCI_EVT_LE_SCAN_REQ_RECEIVED 0x13 2732 struct bt_hci_evt_le_scan_req_received { 2733 uint8_t handle; 2734 bt_addr_le_t addr; 2735 } __packed; 2736 2737 #define BT_HCI_LE_CHAN_SEL_ALGO_1 0x00 2738 #define BT_HCI_LE_CHAN_SEL_ALGO_2 0x01 2739 2740 #define BT_HCI_EVT_LE_CHAN_SEL_ALGO 0x14 2741 struct bt_hci_evt_le_chan_sel_algo { 2742 uint16_t handle; 2743 uint8_t chan_sel_algo; 2744 } __packed; 2745 2746 #define BT_HCI_LE_CTE_CRC_OK 0x0 2747 #define BT_HCI_LE_CTE_CRC_ERR_CTE_BASED_TIME 0x1 2748 #define BT_HCI_LE_CTE_CRC_ERR_CTE_BASED_OTHER 0x2 2749 #define BT_HCI_LE_CTE_INSUFFICIENT_RESOURCES 0xFF 2750 2751 #define B_HCI_LE_CTE_REPORT_SAMPLE_COUNT_MIN 0x9 2752 #define B_HCI_LE_CTE_REPORT_SAMPLE_COUNT_MAX 0x52 2753 2754 #define BT_HCI_LE_CTE_REPORT_NO_VALID_SAMPLE 0x80 2755 2756 #define BT_HCI_EVT_LE_CONNECTIONLESS_IQ_REPORT 0x15 2757 struct bt_hci_le_iq_sample { 2758 int8_t i; 2759 int8_t q; 2760 }; 2761 2762 struct bt_hci_evt_le_connectionless_iq_report { 2763 uint16_t sync_handle; 2764 uint8_t chan_idx; 2765 int16_t rssi; 2766 uint8_t rssi_ant_id; 2767 uint8_t cte_type; 2768 uint8_t slot_durations; 2769 uint8_t packet_status; 2770 uint16_t per_evt_counter; 2771 uint8_t sample_count; 2772 struct bt_hci_le_iq_sample sample[0]; 2773 } __packed; 2774 2775 #define BT_HCI_EVT_LE_CONNECTION_IQ_REPORT 0x16 2776 struct bt_hci_evt_le_connection_iq_report { 2777 uint16_t conn_handle; 2778 uint8_t rx_phy; 2779 uint8_t data_chan_idx; 2780 int16_t rssi; 2781 uint8_t rssi_ant_id; 2782 uint8_t cte_type; 2783 uint8_t slot_durations; 2784 uint8_t packet_status; 2785 uint16_t conn_evt_counter; 2786 uint8_t sample_count; 2787 struct bt_hci_le_iq_sample sample[0]; 2788 } __packed; 2789 2790 #define BT_HCI_CTE_REQ_STATUS_RSP_WITHOUT_CTE 0x0 2791 2792 #define BT_HCI_EVT_LE_CTE_REQUEST_FAILED 0x17 2793 struct bt_hci_evt_le_cte_req_failed { 2794 /* According to BT 5.3 Core Spec the status field may have following 2795 * values: 2796 * - BT_HCI_CTE_REQ_STATUS_RSP_WITHOUT_CTE when received LL_CTE_RSP_PDU without CTE. 2797 * - Other Controller error code for peer rejected request. 2798 */ 2799 uint8_t status; 2800 uint16_t conn_handle; 2801 } __packed; 2802 2803 #define BT_HCI_EVT_LE_PAST_RECEIVED 0x18 2804 struct bt_hci_evt_le_past_received { 2805 uint8_t status; 2806 uint16_t conn_handle; 2807 uint16_t service_data; 2808 uint16_t sync_handle; 2809 uint8_t adv_sid; 2810 bt_addr_le_t addr; 2811 uint8_t phy; 2812 uint16_t interval; 2813 uint8_t clock_accuracy; 2814 } __packed; 2815 2816 #define BT_HCI_EVT_LE_CIS_ESTABLISHED 0x19 2817 struct bt_hci_evt_le_cis_established { 2818 uint8_t status; 2819 uint16_t conn_handle; 2820 uint8_t cig_sync_delay[3]; 2821 uint8_t cis_sync_delay[3]; 2822 uint8_t c_latency[3]; 2823 uint8_t p_latency[3]; 2824 uint8_t c_phy; 2825 uint8_t p_phy; 2826 uint8_t nse; 2827 uint8_t c_bn; 2828 uint8_t p_bn; 2829 uint8_t c_ft; 2830 uint8_t p_ft; 2831 uint16_t c_max_pdu; 2832 uint16_t p_max_pdu; 2833 uint16_t interval; 2834 } __packed; 2835 2836 #define BT_HCI_EVT_LE_CIS_REQ 0x1a 2837 struct bt_hci_evt_le_cis_req { 2838 uint16_t acl_handle; 2839 uint16_t cis_handle; 2840 uint8_t cig_id; 2841 uint8_t cis_id; 2842 } __packed; 2843 2844 #define BT_HCI_EVT_LE_BIG_COMPLETE 0x1b 2845 struct bt_hci_evt_le_big_complete { 2846 uint8_t status; 2847 uint8_t big_handle; 2848 uint8_t sync_delay[3]; 2849 uint8_t latency[3]; 2850 uint8_t phy; 2851 uint8_t nse; 2852 uint8_t bn; 2853 uint8_t pto; 2854 uint8_t irc; 2855 uint16_t max_pdu; 2856 uint16_t iso_interval; 2857 uint8_t num_bis; 2858 uint16_t handle[0]; 2859 } __packed; 2860 2861 #define BT_HCI_EVT_LE_BIG_TERMINATE 0x1c 2862 struct bt_hci_evt_le_big_terminate { 2863 uint8_t big_handle; 2864 uint8_t reason; 2865 } __packed; 2866 2867 #define BT_HCI_EVT_LE_BIG_SYNC_ESTABLISHED 0x1d 2868 struct bt_hci_evt_le_big_sync_established { 2869 uint8_t status; 2870 uint8_t big_handle; 2871 uint8_t latency[3]; 2872 uint8_t nse; 2873 uint8_t bn; 2874 uint8_t pto; 2875 uint8_t irc; 2876 uint16_t max_pdu; 2877 uint16_t iso_interval; 2878 uint8_t num_bis; 2879 uint16_t handle[0]; 2880 } __packed; 2881 2882 #define BT_HCI_EVT_LE_BIG_SYNC_LOST 0x1e 2883 struct bt_hci_evt_le_big_sync_lost { 2884 uint8_t big_handle; 2885 uint8_t reason; 2886 } __packed; 2887 2888 #define BT_HCI_EVT_LE_REQ_PEER_SCA_COMPLETE 0x1f 2889 struct bt_hci_evt_le_req_peer_sca_complete { 2890 uint8_t status; 2891 uint16_t handle; 2892 uint8_t sca; 2893 } __packed; 2894 2895 #define BT_HCI_EVT_LE_BIGINFO_ADV_REPORT 0x22 2896 struct bt_hci_evt_le_biginfo_adv_report { 2897 uint16_t sync_handle; 2898 uint8_t num_bis; 2899 uint8_t nse; 2900 uint16_t iso_interval; 2901 uint8_t bn; 2902 uint8_t pto; 2903 uint8_t irc; 2904 uint16_t max_pdu; 2905 uint8_t sdu_interval[3]; 2906 uint16_t max_sdu; 2907 uint8_t phy; 2908 uint8_t framing; 2909 uint8_t encryption; 2910 } __packed; 2911 2912 /* Event mask bits */ 2913 2914 #define BT_EVT_BIT(n) (1ULL << (n)) 2915 2916 #define BT_EVT_MASK_INQUIRY_COMPLETE BT_EVT_BIT(0) 2917 #define BT_EVT_MASK_CONN_COMPLETE BT_EVT_BIT(2) 2918 #define BT_EVT_MASK_CONN_REQUEST BT_EVT_BIT(3) 2919 #define BT_EVT_MASK_DISCONN_COMPLETE BT_EVT_BIT(4) 2920 #define BT_EVT_MASK_AUTH_COMPLETE BT_EVT_BIT(5) 2921 #define BT_EVT_MASK_REMOTE_NAME_REQ_COMPLETE BT_EVT_BIT(6) 2922 #define BT_EVT_MASK_ENCRYPT_CHANGE BT_EVT_BIT(7) 2923 #define BT_EVT_MASK_REMOTE_FEATURES BT_EVT_BIT(10) 2924 #define BT_EVT_MASK_REMOTE_VERSION_INFO BT_EVT_BIT(11) 2925 #define BT_EVT_MASK_HARDWARE_ERROR BT_EVT_BIT(15) 2926 #define BT_EVT_MASK_ROLE_CHANGE BT_EVT_BIT(17) 2927 #define BT_EVT_MASK_PIN_CODE_REQ BT_EVT_BIT(21) 2928 #define BT_EVT_MASK_LINK_KEY_REQ BT_EVT_BIT(22) 2929 #define BT_EVT_MASK_LINK_KEY_NOTIFY BT_EVT_BIT(23) 2930 #define BT_EVT_MASK_DATA_BUFFER_OVERFLOW BT_EVT_BIT(25) 2931 #define BT_EVT_MASK_INQUIRY_RESULT_WITH_RSSI BT_EVT_BIT(33) 2932 #define BT_EVT_MASK_REMOTE_EXT_FEATURES BT_EVT_BIT(34) 2933 #define BT_EVT_MASK_SYNC_CONN_COMPLETE BT_EVT_BIT(43) 2934 #define BT_EVT_MASK_EXTENDED_INQUIRY_RESULT BT_EVT_BIT(46) 2935 #define BT_EVT_MASK_ENCRYPT_KEY_REFRESH_COMPLETE BT_EVT_BIT(47) 2936 #define BT_EVT_MASK_IO_CAPA_REQ BT_EVT_BIT(48) 2937 #define BT_EVT_MASK_IO_CAPA_RESP BT_EVT_BIT(49) 2938 #define BT_EVT_MASK_USER_CONFIRM_REQ BT_EVT_BIT(50) 2939 #define BT_EVT_MASK_USER_PASSKEY_REQ BT_EVT_BIT(51) 2940 #define BT_EVT_MASK_SSP_COMPLETE BT_EVT_BIT(53) 2941 #define BT_EVT_MASK_USER_PASSKEY_NOTIFY BT_EVT_BIT(58) 2942 #define BT_EVT_MASK_LE_META_EVENT BT_EVT_BIT(61) 2943 2944 /* Page 2 */ 2945 #define BT_EVT_MASK_NUM_COMPLETE_DATA_BLOCKS BT_EVT_BIT(8) 2946 #define BT_EVT_MASK_TRIGG_CLOCK_CAPTURE BT_EVT_BIT(14) 2947 #define BT_EVT_MASK_SYNCH_TRAIN_COMPLETE BT_EVT_BIT(15) 2948 #define BT_EVT_MASK_SYNCH_TRAIN_RX BT_EVT_BIT(16) 2949 #define BT_EVT_MASK_CL_PER_BC_RX BT_EVT_BIT(17) 2950 #define BT_EVT_MASK_CL_PER_BC_TIMEOUT BT_EVT_BIT(18) 2951 #define BT_EVT_MASK_TRUNC_PAGE_COMPLETE BT_EVT_BIT(19) 2952 #define BT_EVT_MASK_PER_PAGE_RSP_TIMEOUT BT_EVT_BIT(20) 2953 #define BT_EVT_MASK_CL_PER_BC_CH_MAP_CHANGE BT_EVT_BIT(21) 2954 #define BT_EVT_MASK_INQUIRY_RSP_NOT BT_EVT_BIT(22) 2955 #define BT_EVT_MASK_AUTH_PAYLOAD_TIMEOUT_EXP BT_EVT_BIT(23) 2956 #define BT_EVT_MASK_SAM_STATUS_CHANGE BT_EVT_BIT(24) 2957 2958 #define BT_EVT_MASK_LE_CONN_COMPLETE BT_EVT_BIT(0) 2959 #define BT_EVT_MASK_LE_ADVERTISING_REPORT BT_EVT_BIT(1) 2960 #define BT_EVT_MASK_LE_CONN_UPDATE_COMPLETE BT_EVT_BIT(2) 2961 #define BT_EVT_MASK_LE_REMOTE_FEAT_COMPLETE BT_EVT_BIT(3) 2962 #define BT_EVT_MASK_LE_LTK_REQUEST BT_EVT_BIT(4) 2963 #define BT_EVT_MASK_LE_CONN_PARAM_REQ BT_EVT_BIT(5) 2964 #define BT_EVT_MASK_LE_DATA_LEN_CHANGE BT_EVT_BIT(6) 2965 #define BT_EVT_MASK_LE_P256_PUBLIC_KEY_COMPLETE BT_EVT_BIT(7) 2966 #define BT_EVT_MASK_LE_GENERATE_DHKEY_COMPLETE BT_EVT_BIT(8) 2967 #define BT_EVT_MASK_LE_ENH_CONN_COMPLETE BT_EVT_BIT(9) 2968 #define BT_EVT_MASK_LE_DIRECT_ADV_REPORT BT_EVT_BIT(10) 2969 #define BT_EVT_MASK_LE_PHY_UPDATE_COMPLETE BT_EVT_BIT(11) 2970 #define BT_EVT_MASK_LE_EXT_ADVERTISING_REPORT BT_EVT_BIT(12) 2971 #define BT_EVT_MASK_LE_PER_ADV_SYNC_ESTABLISHED BT_EVT_BIT(13) 2972 #define BT_EVT_MASK_LE_PER_ADVERTISING_REPORT BT_EVT_BIT(14) 2973 #define BT_EVT_MASK_LE_PER_ADV_SYNC_LOST BT_EVT_BIT(15) 2974 #define BT_EVT_MASK_LE_SCAN_TIMEOUT BT_EVT_BIT(16) 2975 #define BT_EVT_MASK_LE_ADV_SET_TERMINATED BT_EVT_BIT(17) 2976 #define BT_EVT_MASK_LE_SCAN_REQ_RECEIVED BT_EVT_BIT(18) 2977 #define BT_EVT_MASK_LE_CHAN_SEL_ALGO BT_EVT_BIT(19) 2978 #define BT_EVT_MASK_LE_CONNECTIONLESS_IQ_REPORT BT_EVT_BIT(20) 2979 #define BT_EVT_MASK_LE_CONNECTION_IQ_REPORT BT_EVT_BIT(21) 2980 #define BT_EVT_MASK_LE_CTE_REQUEST_FAILED BT_EVT_BIT(22) 2981 #define BT_EVT_MASK_LE_PAST_RECEIVED BT_EVT_BIT(23) 2982 #define BT_EVT_MASK_LE_CIS_ESTABLISHED BT_EVT_BIT(24) 2983 #define BT_EVT_MASK_LE_CIS_REQ BT_EVT_BIT(25) 2984 #define BT_EVT_MASK_LE_BIG_COMPLETE BT_EVT_BIT(26) 2985 #define BT_EVT_MASK_LE_BIG_TERMINATED BT_EVT_BIT(27) 2986 #define BT_EVT_MASK_LE_BIG_SYNC_ESTABLISHED BT_EVT_BIT(28) 2987 #define BT_EVT_MASK_LE_BIG_SYNC_LOST BT_EVT_BIT(29) 2988 #define BT_EVT_MASK_LE_REQ_PEER_SCA_COMPLETE BT_EVT_BIT(30) 2989 #define BT_EVT_MASK_LE_PATH_LOSS_THRESHOLD BT_EVT_BIT(31) 2990 #define BT_EVT_MASK_LE_TRANSMIT_POWER_REPORTING BT_EVT_BIT(32) 2991 #define BT_EVT_MASK_LE_BIGINFO_ADV_REPORT BT_EVT_BIT(33) 2992 2993 #define BT_EVT_MASK_LE_PER_ADV_SYNC_ESTABLISHED_V2 BT_EVT_BIT(35) 2994 #define BT_EVT_MASK_LE_PER_ADVERTISING_REPORT_V2 BT_EVT_BIT(36) 2995 #define BT_EVT_MASK_LE_PAST_RECEIVED_V2 BT_EVT_BIT(37) 2996 #define BT_EVT_MASK_LE_PER_ADV_SUBEVENT_DATA_REQ BT_EVT_BIT(38) 2997 #define BT_EVT_MASK_LE_PER_ADV_RESPONSE_REPORT BT_EVT_BIT(39) 2998 #define BT_EVT_MASK_LE_ENH_CONN_COMPLETE_V2 BT_EVT_BIT(40) 2999 3000 /** HCI Error Codes, BT Core Spec v5.4 [Vol 1, Part F]. */ 3001 #define BT_HCI_ERR_SUCCESS 0x00 3002 #define BT_HCI_ERR_UNKNOWN_CMD 0x01 3003 #define BT_HCI_ERR_UNKNOWN_CONN_ID 0x02 3004 #define BT_HCI_ERR_HW_FAILURE 0x03 3005 #define BT_HCI_ERR_PAGE_TIMEOUT 0x04 3006 #define BT_HCI_ERR_AUTH_FAIL 0x05 3007 #define BT_HCI_ERR_PIN_OR_KEY_MISSING 0x06 3008 #define BT_HCI_ERR_MEM_CAPACITY_EXCEEDED 0x07 3009 #define BT_HCI_ERR_CONN_TIMEOUT 0x08 3010 #define BT_HCI_ERR_CONN_LIMIT_EXCEEDED 0x09 3011 #define BT_HCI_ERR_SYNC_CONN_LIMIT_EXCEEDED 0x0a 3012 #define BT_HCI_ERR_CONN_ALREADY_EXISTS 0x0b 3013 #define BT_HCI_ERR_CMD_DISALLOWED 0x0c 3014 #define BT_HCI_ERR_INSUFFICIENT_RESOURCES 0x0d 3015 #define BT_HCI_ERR_INSUFFICIENT_SECURITY 0x0e 3016 #define BT_HCI_ERR_BD_ADDR_UNACCEPTABLE 0x0f 3017 #define BT_HCI_ERR_CONN_ACCEPT_TIMEOUT 0x10 3018 #define BT_HCI_ERR_UNSUPP_FEATURE_PARAM_VAL 0x11 3019 #define BT_HCI_ERR_INVALID_PARAM 0x12 3020 #define BT_HCI_ERR_REMOTE_USER_TERM_CONN 0x13 3021 #define BT_HCI_ERR_REMOTE_LOW_RESOURCES 0x14 3022 #define BT_HCI_ERR_REMOTE_POWER_OFF 0x15 3023 #define BT_HCI_ERR_LOCALHOST_TERM_CONN 0x16 3024 #define BT_HCI_ERR_REPEATED_ATTEMPTS 0x17 3025 #define BT_HCI_ERR_PAIRING_NOT_ALLOWED 0x18 3026 #define BT_HCI_ERR_UNKNOWN_LMP_PDU 0x19 3027 #define BT_HCI_ERR_UNSUPP_REMOTE_FEATURE 0x1a 3028 #define BT_HCI_ERR_SCO_OFFSET_REJECTED 0x1b 3029 #define BT_HCI_ERR_SCO_INTERVAL_REJECTED 0x1c 3030 #define BT_HCI_ERR_SCO_AIR_MODE_REJECTED 0x1d 3031 #define BT_HCI_ERR_INVALID_LL_PARAM 0x1e 3032 #define BT_HCI_ERR_UNSPECIFIED 0x1f 3033 #define BT_HCI_ERR_UNSUPP_LL_PARAM_VAL 0x20 3034 #define BT_HCI_ERR_ROLE_CHANGE_NOT_ALLOWED 0x21 3035 #define BT_HCI_ERR_LL_RESP_TIMEOUT 0x22 3036 #define BT_HCI_ERR_LL_PROC_COLLISION 0x23 3037 #define BT_HCI_ERR_LMP_PDU_NOT_ALLOWED 0x24 3038 #define BT_HCI_ERR_ENC_MODE_NOT_ACCEPTABLE 0x25 3039 #define BT_HCI_ERR_LINK_KEY_CANNOT_BE_CHANGED 0x26 3040 #define BT_HCI_ERR_REQUESTED_QOS_NOT_SUPPORTED 0x27 3041 #define BT_HCI_ERR_INSTANT_PASSED 0x28 3042 #define BT_HCI_ERR_PAIRING_NOT_SUPPORTED 0x29 3043 #define BT_HCI_ERR_DIFF_TRANS_COLLISION 0x2a 3044 #define BT_HCI_ERR_QOS_UNACCEPTABLE_PARAM 0x2c 3045 #define BT_HCI_ERR_QOS_REJECTED 0x2d 3046 #define BT_HCI_ERR_CHAN_ASSESS_NOT_SUPPORTED 0x2e 3047 #define BT_HCI_ERR_INSUFF_SECURITY 0x2f 3048 #define BT_HCI_ERR_PARAM_OUT_OF_MANDATORY_RANGE 0x30 3049 #define BT_HCI_ERR_ROLE_SWITCH_PENDING 0x32 3050 #define BT_HCI_ERR_RESERVED_SLOT_VIOLATION 0x34 3051 #define BT_HCI_ERR_ROLE_SWITCH_FAILED 0x35 3052 #define BT_HCI_ERR_EXT_INQ_RESP_TOO_LARGE 0x36 3053 #define BT_HCI_ERR_SIMPLE_PAIR_NOT_SUPP_BY_HOST 0x37 3054 #define BT_HCI_ERR_HOST_BUSY_PAIRING 0x38 3055 #define BT_HCI_ERR_CONN_REJECTED_DUE_TO_NO_CHAN 0x39 3056 #define BT_HCI_ERR_CONTROLLER_BUSY 0x3a 3057 #define BT_HCI_ERR_UNACCEPT_CONN_PARAM 0x3b 3058 #define BT_HCI_ERR_ADV_TIMEOUT 0x3c 3059 #define BT_HCI_ERR_TERM_DUE_TO_MIC_FAIL 0x3d 3060 #define BT_HCI_ERR_CONN_FAIL_TO_ESTAB 0x3e 3061 #define BT_HCI_ERR_MAC_CONN_FAILED 0x3f 3062 #define BT_HCI_ERR_CLOCK_ADJUST_REJECTED 0x40 3063 #define BT_HCI_ERR_SUBMAP_NOT_DEFINED 0x41 3064 #define BT_HCI_ERR_UNKNOWN_ADV_IDENTIFIER 0x42 3065 #define BT_HCI_ERR_LIMIT_REACHED 0x43 3066 #define BT_HCI_ERR_OP_CANCELLED_BY_HOST 0x44 3067 #define BT_HCI_ERR_PACKET_TOO_LONG 0x45 3068 #define BT_HCI_ERR_TOO_LATE 0x46 3069 #define BT_HCI_ERR_TOO_EARLY 0x47 3070 3071 #ifdef __cplusplus 3072 } 3073 #endif 3074 3075 #endif /* ZEPHYR_INCLUDE_BLUETOOTH_HCI_TYPES_H_ */ 3076